]> cloudbase.mooo.com Git - irmp.git/blobdiff - irmp.c
Version 2.9.7: added port to to ESP8266 and TEENSY, added PANASONIC protocol, added...
[irmp.git] / irmp.c
diff --git a/irmp.c b/irmp.c
index c8bc29f0acce60f7a951c36d44a5056a6e86b970..ac7d68922dc2f460b47f1934f64954a4a875c335 100644 (file)
--- a/irmp.c
+++ b/irmp.c
@@ -1,20 +1,18 @@
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  * irmp.c - infrared multi-protocol decoder, supports several remote control protocols\r
  *\r
- * Copyright (c) 2009-2012 Frank Meyer - frank(at)fli4l.de\r
+ * Copyright (c) 2009-2015 Frank Meyer - frank(at)fli4l.de\r
  *\r
- * $Id: irmp.c,v 1.131 2012/11/18 17:51:26 fm Exp $\r
+ * $Id: irmp.c,v 1.181 2015/11/17 13:51:45 fm Exp $\r
  *\r
- * ATMEGA88 @ 8 MHz\r
- *\r
- * Supported mikrocontrollers:\r
+ * Supported AVR mikrocontrollers:\r
  *\r
  * ATtiny87,  ATtiny167\r
  * ATtiny45,  ATtiny85\r
- * ATtiny84\r
+ * ATtiny44,  ATtiny84\r
  * ATmega8,   ATmega16,  ATmega32\r
  * ATmega162\r
- * ATmega164, ATmega324, ATmega644,  ATmega644P, ATmega1284\r
+ * ATmega164, ATmega324, ATmega644,  ATmega644P, ATmega1284, ATmega1284P\r
  * ATmega88,  ATmega88P, ATmega168,  ATmega168P, ATmega328P\r
  *\r
  * This program is free software; you can redistribute it and/or modify\r
 #endif\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 ||                   \\r
+    IRMP_SUPPORT_S100_PROTOCOL == 1 ||                  \\r
     IRMP_SUPPORT_RC6_PROTOCOL == 1 ||                   \\r
     IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1 ||    \\r
     IRMP_SUPPORT_SIEMENS_OR_RUWIDO_PROTOCOL == 1 ||     \\r
-    IRMP_SUPPORT_IR60_PROTOCOL\r
+    IRMP_SUPPORT_IR60_PROTOCOL == 1 ||                  \\r
+    IRMP_SUPPORT_A1TVBOX_PROTOCOL == 1 ||               \\r
+    IRMP_SUPPORT_MERLIN_PROTOCOL == 1 ||                \\r
+    IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
 #  define IRMP_SUPPORT_MANCHESTER                   1\r
 #else\r
 #  define IRMP_SUPPORT_MANCHESTER                   0\r
 #  define IRMP_SUPPORT_SERIAL                       0\r
 #endif\r
 \r
-#define IRMP_KEY_REPETITION_LEN                 (uint16_t)(F_INTERRUPTS * 150.0e-3 + 0.5)           // autodetect key repetition within 150 msec\r
+#define IRMP_KEY_REPETITION_LEN                 (uint_fast16_t)(F_INTERRUPTS * 150.0e-3 + 0.5)           // autodetect key repetition within 150 msec\r
 \r
 #define MIN_TOLERANCE_00                        1.0                           // -0%\r
 #define MAX_TOLERANCE_00                        1.0                           // +0%\r
 \r
+#define MIN_TOLERANCE_02                        0.98                          // -2%\r
+#define MAX_TOLERANCE_02                        1.02                          // +2%\r
+\r
+#define MIN_TOLERANCE_03                        0.97                          // -3%\r
+#define MAX_TOLERANCE_03                        1.03                          // +3%\r
+\r
 #define MIN_TOLERANCE_05                        0.95                          // -5%\r
 #define MAX_TOLERANCE_05                        1.05                          // +5%\r
 \r
 #define MIN_TOLERANCE_70                        0.3                           // -70%\r
 #define MAX_TOLERANCE_70                        1.7                           // +70%\r
 \r
-#define SIRCS_START_BIT_PULSE_LEN_MIN           ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIRCS_START_BIT_PULSE_LEN_MAX           ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIRCS_START_BIT_PAUSE_LEN_MIN           ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SIRCS_START_BIT_PULSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIRCS_START_BIT_PULSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIRCS_START_BIT_PAUSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
 #if IRMP_SUPPORT_NETBOX_PROTOCOL                // only 5% to avoid conflict with NETBOX:\r
-#  define SIRCS_START_BIT_PAUSE_LEN_MAX         ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
+#  define SIRCS_START_BIT_PAUSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
 #else                                           // only 5% + 1 to avoid conflict with RC6:\r
-#  define SIRCS_START_BIT_PAUSE_LEN_MAX         ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
-#endif\r
-#define SIRCS_1_PULSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIRCS_1_PULSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIRCS_0_PULSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIRCS_0_PULSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIRCS_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIRCS_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define NEC_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define NEC_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define NEC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define NEC_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define NEC_1_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_1_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define NEC_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define NEC_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#  define SIRCS_START_BIT_PAUSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#endif\r
+#define SIRCS_1_PULSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIRCS_1_PULSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIRCS_0_PULSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIRCS_0_PULSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIRCS_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIRCS_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define NEC_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define NEC_START_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_START_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define NEC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define NEC_PULSE_LEN_MIN                       ((uint_fast8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_PULSE_LEN_MAX                       ((uint_fast8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define NEC_1_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_1_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define NEC_0_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define NEC_0_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
 // autodetect nec repetition frame within 50 msec:\r
 // NEC seems to send the first repetition frame after 40ms, further repetition frames after 100 ms\r
 #if 0\r
-#define NEC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint16_t)(F_INTERRUPTS * NEC_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
+#define NEC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint_fast16_t)(F_INTERRUPTS * NEC_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
 #else\r
-#define NEC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint16_t)(F_INTERRUPTS * 100.0e-3 * MAX_TOLERANCE_20 + 0.5)\r
-#endif\r
-\r
-#define SAMSUNG_START_BIT_PULSE_LEN_MIN         ((uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SAMSUNG_START_BIT_PULSE_LEN_MAX         ((uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SAMSUNG_START_BIT_PAUSE_LEN_MIN         ((uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SAMSUNG_START_BIT_PAUSE_LEN_MAX         ((uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SAMSUNG_PULSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define SAMSUNG_PULSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define SAMSUNG_1_PAUSE_LEN_MIN                 ((uint8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define SAMSUNG_1_PAUSE_LEN_MAX                 ((uint8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define SAMSUNG_0_PAUSE_LEN_MIN                 ((uint8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define SAMSUNG_0_PAUSE_LEN_MAX                 ((uint8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-\r
-#define MATSUSHITA_START_BIT_PULSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define MATSUSHITA_START_BIT_PULSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define MATSUSHITA_START_BIT_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define MATSUSHITA_START_BIT_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define MATSUSHITA_PULSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define MATSUSHITA_PULSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define MATSUSHITA_1_PAUSE_LEN_MIN              ((uint8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define MATSUSHITA_1_PAUSE_LEN_MAX              ((uint8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define MATSUSHITA_0_PAUSE_LEN_MIN              ((uint8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define MATSUSHITA_0_PAUSE_LEN_MAX              ((uint8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-\r
-#define KASEIKYO_START_BIT_PULSE_LEN_MIN        ((uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KASEIKYO_START_BIT_PULSE_LEN_MAX        ((uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KASEIKYO_START_BIT_PAUSE_LEN_MIN        ((uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KASEIKYO_START_BIT_PAUSE_LEN_MAX        ((uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KASEIKYO_PULSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MIN_TOLERANCE_50 + 0.5) - 1)\r
-#define KASEIKYO_PULSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MAX_TOLERANCE_50 + 0.5) + 1)\r
-#define KASEIKYO_1_PAUSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define KASEIKYO_1_PAUSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define KASEIKYO_0_PAUSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5) - 1)\r
-#define KASEIKYO_0_PAUSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5) + 1)\r
-\r
-#define RECS80_START_BIT_PULSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MIN_TOLERANCE_00 + 0.5) - 1)\r
-#define RECS80_START_BIT_PULSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80_START_BIT_PAUSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80_START_BIT_PAUSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80_PULSE_LEN_MIN                    ((uint8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80_PULSE_LEN_MAX                    ((uint8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80_1_PAUSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80_1_PAUSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80_0_PAUSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80_0_PAUSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define NEC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint_fast16_t)(F_INTERRUPTS * 100.0e-3 * MAX_TOLERANCE_20 + 0.5)\r
+#endif\r
+\r
+#define SAMSUNG_START_BIT_PULSE_LEN_MIN         ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SAMSUNG_START_BIT_PULSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SAMSUNG_START_BIT_PAUSE_LEN_MIN         ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SAMSUNG_START_BIT_PAUSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SAMSUNG_PULSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define SAMSUNG_PULSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define SAMSUNG_1_PAUSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define SAMSUNG_1_PAUSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define SAMSUNG_0_PAUSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define SAMSUNG_0_PAUSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+\r
+#define MATSUSHITA_START_BIT_PULSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define MATSUSHITA_START_BIT_PULSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define MATSUSHITA_START_BIT_PAUSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define MATSUSHITA_START_BIT_PAUSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define MATSUSHITA_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define MATSUSHITA_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define MATSUSHITA_1_PAUSE_LEN_MIN              ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define MATSUSHITA_1_PAUSE_LEN_MAX              ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define MATSUSHITA_0_PAUSE_LEN_MIN              ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define MATSUSHITA_0_PAUSE_LEN_MAX              ((uint_fast8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+\r
+#define KASEIKYO_START_BIT_PULSE_LEN_MIN        ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define KASEIKYO_START_BIT_PULSE_LEN_MAX        ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define KASEIKYO_START_BIT_PAUSE_LEN_MIN        ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define KASEIKYO_START_BIT_PAUSE_LEN_MAX        ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define KASEIKYO_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define KASEIKYO_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define KASEIKYO_1_PAUSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define KASEIKYO_1_PAUSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define KASEIKYO_0_PAUSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define KASEIKYO_0_PAUSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define PANASONIC_START_BIT_PULSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define PANASONIC_START_BIT_PULSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define PANASONIC_START_BIT_PAUSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define PANASONIC_START_BIT_PAUSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define PANASONIC_PULSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define PANASONIC_PULSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define PANASONIC_1_PAUSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PANASONIC_1_PAUSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define PANASONIC_0_PAUSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PANASONIC_0_PAUSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * PANASONIC_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define RECS80_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RECS80_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RECS80_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RECS80_PULSE_LEN_MIN                    ((uint_fast8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RECS80_PULSE_LEN_MAX                    ((uint_fast8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RECS80_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RECS80_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
 \r
 \r
 #if IRMP_SUPPORT_BOSE_PROTOCOL == 1 // BOSE conflicts with RC5, so keep tolerance for RC5 minimal here:\r
-#define RC5_START_BIT_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
-#define RC5_START_BIT_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RC5_START_BIT_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RC5_START_BIT_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#else\r
+#define RC5_START_BIT_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC5_START_BIT_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#endif\r
+\r
+#define RC5_BIT_LEN_MIN                         ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC5_BIT_LEN_MAX                         ((uint_fast8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#if IRMP_SUPPORT_BOSE_PROTOCOL == 1 // BOSE conflicts with S100, so keep tolerance for S100 minimal here:\r
+#define S100_START_BIT_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define S100_START_BIT_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
 #else\r
-#define RC5_START_BIT_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC5_START_BIT_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define S100_START_BIT_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define S100_START_BIT_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
 #endif\r
 \r
-#define RC5_BIT_LEN_MIN                         ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC5_BIT_LEN_MAX                         ((uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define S100_BIT_LEN_MIN                         ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define S100_BIT_LEN_MAX                         ((uint_fast8_t)(F_INTERRUPTS * S100_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
 \r
-#define DENON_PULSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define DENON_PULSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define DENON_1_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define DENON_1_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define DENON_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define DENON_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define DENON_1_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define DENON_1_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
 // RUWIDO (see t-home-mediareceiver-15kHz.txt) conflicts here with DENON\r
-#define DENON_0_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define DENON_0_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define DENON_AUTO_REPETITION_PAUSE_LEN         ((uint16_t)(F_INTERRUPTS * DENON_AUTO_REPETITION_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define THOMSON_PULSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * THOMSON_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define THOMSON_PULSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * THOMSON_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define THOMSON_1_PAUSE_LEN_MIN                 ((uint8_t)(F_INTERRUPTS * THOMSON_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define THOMSON_1_PAUSE_LEN_MAX                 ((uint8_t)(F_INTERRUPTS * THOMSON_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define THOMSON_0_PAUSE_LEN_MIN                 ((uint8_t)(F_INTERRUPTS * THOMSON_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define THOMSON_0_PAUSE_LEN_MAX                 ((uint8_t)(F_INTERRUPTS * THOMSON_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define RC6_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC6_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RC6_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC6_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RC6_TOGGLE_BIT_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC6_TOGGLE_BIT_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RC6_BIT_PULSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC6_BIT_PULSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_60 + 0.5) + 1)       // pulses: 300 - 800\r
-#define RC6_BIT_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RC6_BIT_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_20 + 0.5) + 1)       // pauses: 300 - 600\r
-\r
-#define RECS80EXT_START_BIT_PULSE_LEN_MIN       ((uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MIN_TOLERANCE_00 + 0.5) - 1)\r
-#define RECS80EXT_START_BIT_PULSE_LEN_MAX       ((uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MAX_TOLERANCE_00 + 0.5) + 1)\r
-#define RECS80EXT_START_BIT_PAUSE_LEN_MIN       ((uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
-#define RECS80EXT_START_BIT_PAUSE_LEN_MAX       ((uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
-#define RECS80EXT_PULSE_LEN_MIN                 ((uint8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80EXT_PULSE_LEN_MAX                 ((uint8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80EXT_1_PAUSE_LEN_MIN               ((uint8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80EXT_1_PAUSE_LEN_MAX               ((uint8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RECS80EXT_0_PAUSE_LEN_MIN               ((uint8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RECS80EXT_0_PAUSE_LEN_MAX               ((uint8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define NUBERT_START_BIT_PULSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_START_BIT_PULSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NUBERT_START_BIT_PAUSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_START_BIT_PAUSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NUBERT_1_PULSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_1_PULSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NUBERT_1_PAUSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_1_PAUSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NUBERT_0_PULSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_0_PULSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NUBERT_0_PAUSE_LEN_MIN                  ((uint8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NUBERT_0_PAUSE_LEN_MAX                  ((uint8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-\r
-#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define DENON_0_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define DENON_0_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define DENON_AUTO_REPETITION_PAUSE_LEN         ((uint_fast16_t)(F_INTERRUPTS * DENON_AUTO_REPETITION_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define THOMSON_PULSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * THOMSON_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define THOMSON_PULSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * THOMSON_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define THOMSON_1_PAUSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * THOMSON_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define THOMSON_1_PAUSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * THOMSON_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define THOMSON_0_PAUSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * THOMSON_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define THOMSON_0_PAUSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * THOMSON_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define RC6_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RC6_START_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_START_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RC6_TOGGLE_BIT_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_TOGGLE_BIT_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RC6_BIT_PULSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_BIT_PULSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_60 + 0.5) + 1)       // pulses: 300 - 800\r
+#define RC6_BIT_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_BIT_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_20 + 0.5) + 1)       // pauses: 300 - 600\r
+\r
+#define RECS80EXT_START_BIT_PULSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RECS80EXT_START_BIT_PULSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RECS80EXT_START_BIT_PAUSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80EXT_START_BIT_PAUSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RECS80EXT_PULSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RECS80EXT_PULSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RECS80EXT_1_PAUSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80EXT_1_PAUSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RECS80EXT_0_PAUSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RECS80EXT_0_PAUSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define NUBERT_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NUBERT_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NUBERT_1_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_1_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NUBERT_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NUBERT_0_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_0_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NUBERT_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NUBERT_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define FAN_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * FAN_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * FAN_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FAN_START_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * FAN_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_START_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * FAN_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FAN_1_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FAN_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_1_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FAN_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FAN_1_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FAN_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_1_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FAN_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FAN_0_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FAN_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_0_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FAN_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FAN_0_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FAN_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FAN_0_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FAN_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define SPEAKER_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define SPEAKER_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define SPEAKER_1_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_1_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define SPEAKER_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define SPEAKER_0_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_0_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define SPEAKER_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define SPEAKER_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * SPEAKER_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
 #define BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX   ((PAUSE_LEN)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1) // value must be below IRMP_TIMEOUT\r
-#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_PULSE_LEN_MIN              ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_PULSE_LEN_MAX              ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_1_PAUSE_LEN_MIN            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_1_PAUSE_LEN_MAX            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_0_PAUSE_LEN_MIN            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_0_PAUSE_LEN_MAX            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_R_PAUSE_LEN_MIN            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_R_PAUSE_LEN_MAX            ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MIN  ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MAX  ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define IR60_TIMEOUT_LEN                        ((uint8_t)(F_INTERRUPTS * IR60_TIMEOUT_TIME * 0.5))\r
-#define GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN    ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX    ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define GRUNDIG_NOKIA_IR60_BIT_LEN_MIN          ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define GRUNDIG_NOKIA_IR60_BIT_LEN_MAX          ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN    ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_PRE_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) + 1)\r
-#define GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX    ((uint8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_PRE_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-\r
-#define SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN       ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX       ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN       ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX       ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define FDC_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)   // 5%: avoid conflict with NETBOX\r
-#define FDC_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
-#define FDC_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
-#define FDC_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
-#define FDC_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define FDC_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MAX_TOLERANCE_50 + 0.5) + 1)\r
-#define FDC_1_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * FDC_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define FDC_1_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * FDC_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX   ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_PULSE_LEN_MIN              ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_PULSE_LEN_MAX              ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_1_PAUSE_LEN_MIN            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_1_PAUSE_LEN_MAX            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_0_PAUSE_LEN_MIN            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_0_PAUSE_LEN_MAX            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_R_PAUSE_LEN_MIN            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_R_PAUSE_LEN_MAX            ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MIN  ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MAX  ((uint_fast8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define IR60_TIMEOUT_LEN                        ((uint_fast8_t)(F_INTERRUPTS * IR60_TIMEOUT_TIME * 0.5))\r
+#define GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN    ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX    ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define GRUNDIG_NOKIA_IR60_BIT_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define GRUNDIG_NOKIA_IR60_BIT_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN    ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_PRE_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) + 1)\r
+#define GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX    ((uint_fast8_t)(F_INTERRUPTS * GRUNDIG_NOKIA_IR60_PRE_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN       ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX       ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * SIEMENS_OR_RUWIDO_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define FDC_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)   // 5%: avoid conflict with NETBOX\r
+#define FDC_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
+#define FDC_START_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define FDC_START_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5))\r
+#define FDC_PULSE_LEN_MIN                       ((uint_fast8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define FDC_PULSE_LEN_MAX                       ((uint_fast8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MAX_TOLERANCE_50 + 0.5) + 1)\r
+#define FDC_1_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FDC_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_1_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FDC_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
 #if 0\r
-#define FDC_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)   // could be negative: 255\r
+#define FDC_0_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)   // could be negative: 255\r
 #else\r
 #define FDC_0_PAUSE_LEN_MIN                     (1)                                                                         // simply use 1\r
 #endif\r
-#define FDC_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define RCCAR_START_BIT_PULSE_LEN_MIN           ((uint8_t)(F_INTERRUPTS * RCCAR_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RCCAR_START_BIT_PULSE_LEN_MAX           ((uint8_t)(F_INTERRUPTS * RCCAR_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RCCAR_START_BIT_PAUSE_LEN_MIN           ((uint8_t)(F_INTERRUPTS * RCCAR_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define RCCAR_START_BIT_PAUSE_LEN_MAX           ((uint8_t)(F_INTERRUPTS * RCCAR_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define RCCAR_PULSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * RCCAR_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define RCCAR_PULSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * RCCAR_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define RCCAR_1_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RCCAR_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define RCCAR_1_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RCCAR_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define RCCAR_0_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * RCCAR_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define RCCAR_0_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * RCCAR_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-\r
-#define JVC_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define JVC_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define JVC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * (JVC_FRAME_REPEAT_PAUSE_TIME - IRMP_TIMEOUT_TIME) * MIN_TOLERANCE_40 + 0.5) - 1)  // HACK!\r
-#define JVC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * (JVC_FRAME_REPEAT_PAUSE_TIME - IRMP_TIMEOUT_TIME) * MAX_TOLERANCE_70 + 0.5) - 1)  // HACK!\r
-#define JVC_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * JVC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define JVC_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * JVC_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define JVC_1_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * JVC_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define JVC_1_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * JVC_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define JVC_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * JVC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define JVC_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * JVC_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define FDC_0_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define RCCAR_START_BIT_PULSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * RCCAR_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RCCAR_START_BIT_PULSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * RCCAR_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RCCAR_START_BIT_PAUSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * RCCAR_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RCCAR_START_BIT_PAUSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * RCCAR_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RCCAR_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * RCCAR_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RCCAR_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * RCCAR_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RCCAR_1_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RCCAR_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define RCCAR_1_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RCCAR_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define RCCAR_0_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * RCCAR_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define RCCAR_0_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * RCCAR_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+\r
+#define JVC_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define JVC_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define JVC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * (JVC_FRAME_REPEAT_PAUSE_TIME - IRMP_TIMEOUT_TIME) * MIN_TOLERANCE_40 + 0.5) - 1)  // HACK!\r
+#define JVC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * (JVC_FRAME_REPEAT_PAUSE_TIME - IRMP_TIMEOUT_TIME) * MAX_TOLERANCE_70 + 0.5) - 1)  // HACK!\r
+#define JVC_PULSE_LEN_MIN                       ((uint_fast8_t)(F_INTERRUPTS * JVC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define JVC_PULSE_LEN_MAX                       ((uint_fast8_t)(F_INTERRUPTS * JVC_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define JVC_1_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * JVC_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define JVC_1_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * JVC_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define JVC_0_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * JVC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define JVC_0_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * JVC_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
 // autodetect JVC repetition frame within 50 msec:\r
-#define JVC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint16_t)(F_INTERRUPTS * JVC_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-\r
-#define NIKON_START_BIT_PULSE_LEN_MIN           ((uint8_t)(F_INTERRUPTS * NIKON_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_START_BIT_PULSE_LEN_MAX           ((uint8_t)(F_INTERRUPTS * NIKON_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_START_BIT_PAUSE_LEN_MIN           ((uint16_t)(F_INTERRUPTS * NIKON_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_START_BIT_PAUSE_LEN_MAX           ((uint16_t)(F_INTERRUPTS * NIKON_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_REPEAT_START_BIT_PAUSE_LEN_MIN    ((uint8_t)(F_INTERRUPTS * NIKON_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_REPEAT_START_BIT_PAUSE_LEN_MAX    ((uint8_t)(F_INTERRUPTS * NIKON_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_PULSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * NIKON_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_PULSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * NIKON_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_1_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * NIKON_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_1_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * NIKON_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_0_PAUSE_LEN_MIN                   ((uint8_t)(F_INTERRUPTS * NIKON_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
-#define NIKON_0_PAUSE_LEN_MAX                   ((uint8_t)(F_INTERRUPTS * NIKON_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
-#define NIKON_FRAME_REPEAT_PAUSE_LEN_MAX        (uint16_t)(F_INTERRUPTS * NIKON_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-\r
-#define KATHREIN_START_BIT_PULSE_LEN_MIN        ((uint8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_START_BIT_PULSE_LEN_MAX        ((uint8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_START_BIT_PAUSE_LEN_MIN        ((uint8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_START_BIT_PAUSE_LEN_MAX        ((uint8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_1_PULSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KATHREIN_1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_1_PULSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KATHREIN_1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_1_PAUSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KATHREIN_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_1_PAUSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KATHREIN_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_0_PULSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KATHREIN_0_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_0_PULSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KATHREIN_0_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_0_PAUSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KATHREIN_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_0_PAUSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KATHREIN_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define KATHREIN_SYNC_BIT_PAUSE_LEN_MIN         ((uint8_t)(F_INTERRUPTS * KATHREIN_SYNC_BIT_PAUSE_LEN_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define KATHREIN_SYNC_BIT_PAUSE_LEN_MAX         ((uint8_t)(F_INTERRUPTS * KATHREIN_SYNC_BIT_PAUSE_LEN_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-\r
-#define NETBOX_START_BIT_PULSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * NETBOX_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define NETBOX_START_BIT_PULSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * NETBOX_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define NETBOX_START_BIT_PAUSE_LEN_MIN          ((uint8_t)(F_INTERRUPTS * NETBOX_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
-#define NETBOX_START_BIT_PAUSE_LEN_MAX          ((uint8_t)(F_INTERRUPTS * NETBOX_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
-#define NETBOX_PULSE_LEN                        ((uint8_t)(F_INTERRUPTS * NETBOX_PULSE_TIME))\r
-#define NETBOX_PAUSE_LEN                        ((uint8_t)(F_INTERRUPTS * NETBOX_PAUSE_TIME))\r
-#define NETBOX_PULSE_REST_LEN                   ((uint8_t)(F_INTERRUPTS * NETBOX_PULSE_TIME / 4))\r
-#define NETBOX_PAUSE_REST_LEN                   ((uint8_t)(F_INTERRUPTS * NETBOX_PAUSE_TIME / 4))\r
-\r
-#define LEGO_START_BIT_PULSE_LEN_MIN            ((uint8_t)(F_INTERRUPTS * LEGO_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define LEGO_START_BIT_PULSE_LEN_MAX            ((uint8_t)(F_INTERRUPTS * LEGO_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define LEGO_START_BIT_PAUSE_LEN_MIN            ((uint8_t)(F_INTERRUPTS * LEGO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define LEGO_START_BIT_PAUSE_LEN_MAX            ((uint8_t)(F_INTERRUPTS * LEGO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define LEGO_PULSE_LEN_MIN                      ((uint8_t)(F_INTERRUPTS * LEGO_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define LEGO_PULSE_LEN_MAX                      ((uint8_t)(F_INTERRUPTS * LEGO_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define LEGO_1_PAUSE_LEN_MIN                    ((uint8_t)(F_INTERRUPTS * LEGO_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define LEGO_1_PAUSE_LEN_MAX                    ((uint8_t)(F_INTERRUPTS * LEGO_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-#define LEGO_0_PAUSE_LEN_MIN                    ((uint8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
-#define LEGO_0_PAUSE_LEN_MAX                    ((uint8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
-\r
-#define BOSE_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * BOSE_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define BOSE_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * BOSE_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define BOSE_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * BOSE_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define BOSE_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * BOSE_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define BOSE_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * BOSE_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define BOSE_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * BOSE_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define BOSE_1_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * BOSE_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define BOSE_1_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * BOSE_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define BOSE_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * BOSE_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
-#define BOSE_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * BOSE_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
-#define BOSE_FRAME_REPEAT_PAUSE_LEN_MAX          (uint16_t)(F_INTERRUPTS * 100.0e-3 * MAX_TOLERANCE_20 + 0.5)\r
-\r
-#define AUTO_FRAME_REPETITION_LEN               (uint16_t)(F_INTERRUPTS * AUTO_FRAME_REPETITION_TIME + 0.5)       // use uint16_t!\r
+#define JVC_FRAME_REPEAT_PAUSE_LEN_MAX          (uint_fast16_t)(F_INTERRUPTS * JVC_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
+\r
+#define NIKON_START_BIT_PULSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * NIKON_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_START_BIT_PULSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * NIKON_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_START_BIT_PAUSE_LEN_MIN           ((uint_fast16_t)(F_INTERRUPTS * NIKON_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_START_BIT_PAUSE_LEN_MAX           ((uint_fast16_t)(F_INTERRUPTS * NIKON_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_REPEAT_START_BIT_PAUSE_LEN_MIN    ((uint_fast8_t)(F_INTERRUPTS * NIKON_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_REPEAT_START_BIT_PAUSE_LEN_MAX    ((uint_fast8_t)(F_INTERRUPTS * NIKON_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * NIKON_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * NIKON_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_1_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * NIKON_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_1_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * NIKON_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_0_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * NIKON_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define NIKON_0_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * NIKON_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define NIKON_FRAME_REPEAT_PAUSE_LEN_MAX        (uint_fast16_t)(F_INTERRUPTS * NIKON_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
+\r
+#define KATHREIN_START_BIT_PULSE_LEN_MIN        ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_START_BIT_PULSE_LEN_MAX        ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_START_BIT_PAUSE_LEN_MIN        ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_START_BIT_PAUSE_LEN_MAX        ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_1_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_1_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_1_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_1_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_1_PAUSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_1_PAUSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_0_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_0_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_0_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_0_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_0_PAUSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_0_PAUSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define KATHREIN_SYNC_BIT_PAUSE_LEN_MIN         ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_SYNC_BIT_PAUSE_LEN_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define KATHREIN_SYNC_BIT_PAUSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * KATHREIN_SYNC_BIT_PAUSE_LEN_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define NETBOX_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * NETBOX_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define NETBOX_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * NETBOX_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define NETBOX_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * NETBOX_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define NETBOX_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * NETBOX_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define NETBOX_PULSE_LEN                        ((uint_fast8_t)(F_INTERRUPTS * NETBOX_PULSE_TIME))\r
+#define NETBOX_PAUSE_LEN                        ((uint_fast8_t)(F_INTERRUPTS * NETBOX_PAUSE_TIME))\r
+#define NETBOX_PULSE_REST_LEN                   ((uint_fast8_t)(F_INTERRUPTS * NETBOX_PULSE_TIME / 4))\r
+#define NETBOX_PAUSE_REST_LEN                   ((uint_fast8_t)(F_INTERRUPTS * NETBOX_PAUSE_TIME / 4))\r
+\r
+#define LEGO_START_BIT_PULSE_LEN_MIN            ((uint_fast8_t)(F_INTERRUPTS * LEGO_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define LEGO_START_BIT_PULSE_LEN_MAX            ((uint_fast8_t)(F_INTERRUPTS * LEGO_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define LEGO_START_BIT_PAUSE_LEN_MIN            ((uint_fast8_t)(F_INTERRUPTS * LEGO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define LEGO_START_BIT_PAUSE_LEN_MAX            ((uint_fast8_t)(F_INTERRUPTS * LEGO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define LEGO_PULSE_LEN_MIN                      ((uint_fast8_t)(F_INTERRUPTS * LEGO_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define LEGO_PULSE_LEN_MAX                      ((uint_fast8_t)(F_INTERRUPTS * LEGO_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define LEGO_1_PAUSE_LEN_MIN                    ((uint_fast8_t)(F_INTERRUPTS * LEGO_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define LEGO_1_PAUSE_LEN_MAX                    ((uint_fast8_t)(F_INTERRUPTS * LEGO_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define LEGO_0_PAUSE_LEN_MIN                    ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define LEGO_0_PAUSE_LEN_MAX                    ((uint_fast8_t)(F_INTERRUPTS * LEGO_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+\r
+#define BOSE_START_BIT_PULSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * BOSE_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define BOSE_START_BIT_PULSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * BOSE_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define BOSE_START_BIT_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * BOSE_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define BOSE_START_BIT_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * BOSE_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define BOSE_PULSE_LEN_MIN                       ((uint_fast8_t)(F_INTERRUPTS * BOSE_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define BOSE_PULSE_LEN_MAX                       ((uint_fast8_t)(F_INTERRUPTS * BOSE_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define BOSE_1_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * BOSE_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define BOSE_1_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * BOSE_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define BOSE_0_PAUSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * BOSE_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define BOSE_0_PAUSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * BOSE_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define BOSE_FRAME_REPEAT_PAUSE_LEN_MAX          (uint_fast16_t)(F_INTERRUPTS * 100.0e-3 * MAX_TOLERANCE_20 + 0.5)\r
+\r
+#define A1TVBOX_START_BIT_PULSE_LEN_MIN         ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define A1TVBOX_START_BIT_PULSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define A1TVBOX_START_BIT_PAUSE_LEN_MIN         ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define A1TVBOX_START_BIT_PAUSE_LEN_MAX         ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define A1TVBOX_BIT_PULSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define A1TVBOX_BIT_PULSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define A1TVBOX_BIT_PAUSE_LEN_MIN               ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define A1TVBOX_BIT_PAUSE_LEN_MAX               ((uint_fast8_t)(F_INTERRUPTS * A1TVBOX_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+\r
+#define MERLIN_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * MERLIN_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define MERLIN_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * MERLIN_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define MERLIN_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * MERLIN_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define MERLIN_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * MERLIN_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define MERLIN_BIT_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * MERLIN_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define MERLIN_BIT_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * MERLIN_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define MERLIN_BIT_PAUSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * MERLIN_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define MERLIN_BIT_PAUSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * MERLIN_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+\r
+#define ORTEK_START_BIT_PULSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * ORTEK_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ORTEK_START_BIT_PULSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * ORTEK_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define ORTEK_START_BIT_PAUSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * ORTEK_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ORTEK_START_BIT_PAUSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * ORTEK_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define ORTEK_BIT_PULSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * ORTEK_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ORTEK_BIT_PULSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * ORTEK_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define ORTEK_BIT_PAUSE_LEN_MIN                 ((uint_fast8_t)(F_INTERRUPTS * ORTEK_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ORTEK_BIT_PAUSE_LEN_MAX                 ((uint_fast8_t)(F_INTERRUPTS * ORTEK_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+\r
+#define TELEFUNKEN_START_BIT_PULSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define TELEFUNKEN_START_BIT_PULSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define TELEFUNKEN_START_BIT_PAUSE_LEN_MIN      ((uint_fast8_t)(F_INTERRUPTS * (TELEFUNKEN_START_BIT_PAUSE_TIME) * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define TELEFUNKEN_START_BIT_PAUSE_LEN_MAX      ((uint_fast8_t)(F_INTERRUPTS * (TELEFUNKEN_START_BIT_PAUSE_TIME) * MAX_TOLERANCE_10 + 0.5) - 1)\r
+#define TELEFUNKEN_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_PULSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define TELEFUNKEN_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_PULSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define TELEFUNKEN_1_PAUSE_LEN_MIN              ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define TELEFUNKEN_1_PAUSE_LEN_MAX              ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+#define TELEFUNKEN_0_PAUSE_LEN_MIN              ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5) - 1)\r
+#define TELEFUNKEN_0_PAUSE_LEN_MAX              ((uint_fast8_t)(F_INTERRUPTS * TELEFUNKEN_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5) + 1)\r
+// autodetect TELEFUNKEN repetition frame within 50 msec:\r
+// #define TELEFUNKEN_FRAME_REPEAT_PAUSE_LEN_MAX   (uint_fast16_t)(F_INTERRUPTS * TELEFUNKEN_FRAME_REPEAT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
+\r
+#define ROOMBA_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ROOMBA_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define ROOMBA_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define ROOMBA_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define ROOMBA_1_PAUSE_LEN_EXACT                ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_1_PAUSE_TIME + 0.5))\r
+#define ROOMBA_1_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define ROOMBA_1_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define ROOMBA_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define ROOMBA_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define ROOMBA_0_PAUSE_LEN                      ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_0_PAUSE_TIME))\r
+#define ROOMBA_0_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define ROOMBA_0_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define ROOMBA_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define ROOMBA_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * ROOMBA_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define RCMM32_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RCMM32_START_BIT_PULSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RCMM32_START_BIT_PULSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RCMM32_START_BIT_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RCMM32_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_BIT_PULSE_LEN_MIN                ((uint_fast8_t)(F_INTERRUPTS * RCMM32_PULSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_BIT_PULSE_LEN_MAX                ((uint_fast8_t)(F_INTERRUPTS * RCMM32_PULSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_BIT_00_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_00_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_BIT_00_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_00_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_BIT_01_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_01_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_BIT_01_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_01_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_BIT_10_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_10_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_BIT_10_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_10_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+#define RCMM32_BIT_11_PAUSE_LEN_MIN             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_11_PAUSE_TIME * MIN_TOLERANCE_05 + 0.5) - 1)\r
+#define RCMM32_BIT_11_PAUSE_LEN_MAX             ((uint_fast8_t)(F_INTERRUPTS * RCMM32_11_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1)\r
+\r
+#define PENTAX_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * PENTAX_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define PENTAX_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * PENTAX_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define PENTAX_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * PENTAX_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define PENTAX_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * PENTAX_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define PENTAX_1_PAUSE_LEN_EXACT                ((uint_fast8_t)(F_INTERRUPTS * PENTAX_1_PAUSE_TIME + 0.5))\r
+#define PENTAX_PULSE_LEN_MIN                    ((uint_fast8_t)(F_INTERRUPTS * PENTAX_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PENTAX_PULSE_LEN_MAX                    ((uint_fast8_t)(F_INTERRUPTS * PENTAX_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define PENTAX_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * PENTAX_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PENTAX_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * PENTAX_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define PENTAX_0_PAUSE_LEN                      ((uint_fast8_t)(F_INTERRUPTS * PENTAX_0_PAUSE_TIME))\r
+#define PENTAX_PULSE_LEN_MIN                    ((uint_fast8_t)(F_INTERRUPTS * PENTAX_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PENTAX_PULSE_LEN_MAX                    ((uint_fast8_t)(F_INTERRUPTS * PENTAX_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define PENTAX_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * PENTAX_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define PENTAX_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * PENTAX_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define ACP24_START_BIT_PULSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * ACP24_START_BIT_PULSE_TIME * MIN_TOLERANCE_15 + 0.5) - 1)\r
+#define ACP24_START_BIT_PULSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * ACP24_START_BIT_PULSE_TIME * MAX_TOLERANCE_15 + 0.5) + 1)\r
+#define ACP24_START_BIT_PAUSE_LEN_MIN           ((uint_fast8_t)(F_INTERRUPTS * ACP24_START_BIT_PAUSE_TIME * MIN_TOLERANCE_15 + 0.5) - 1)\r
+#define ACP24_START_BIT_PAUSE_LEN_MAX           ((uint_fast8_t)(F_INTERRUPTS * ACP24_START_BIT_PAUSE_TIME * MAX_TOLERANCE_15 + 0.5) + 1)\r
+#define ACP24_PULSE_LEN_MIN                     ((uint_fast8_t)(F_INTERRUPTS * ACP24_PULSE_TIME * MIN_TOLERANCE_15 + 0.5) - 1)\r
+#define ACP24_PULSE_LEN_MAX                     ((uint_fast8_t)(F_INTERRUPTS * ACP24_PULSE_TIME * MAX_TOLERANCE_15 + 0.5) + 1)\r
+#define ACP24_1_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * ACP24_1_PAUSE_TIME * MIN_TOLERANCE_15 + 0.5) - 1)\r
+#define ACP24_1_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * ACP24_1_PAUSE_TIME * MAX_TOLERANCE_15 + 0.5) + 1)\r
+#define ACP24_0_PAUSE_LEN_MIN                   ((uint_fast8_t)(F_INTERRUPTS * ACP24_0_PAUSE_TIME * MIN_TOLERANCE_15 + 0.5) - 1)\r
+#define ACP24_0_PAUSE_LEN_MAX                   ((uint_fast8_t)(F_INTERRUPTS * ACP24_0_PAUSE_TIME * MAX_TOLERANCE_15 + 0.5) + 1)\r
+\r
+#define RADIO1_START_BIT_PULSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RADIO1_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RADIO1_START_BIT_PULSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RADIO1_START_BIT_PULSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RADIO1_START_BIT_PAUSE_LEN_MIN          ((uint_fast8_t)(F_INTERRUPTS * RADIO1_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RADIO1_START_BIT_PAUSE_LEN_MAX          ((uint_fast8_t)(F_INTERRUPTS * RADIO1_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\r
+#define RADIO1_1_PAUSE_LEN_EXACT                ((uint_fast8_t)(F_INTERRUPTS * RADIO1_1_PAUSE_TIME + 0.5))\r
+#define RADIO1_1_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RADIO1_1_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RADIO1_1_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_1_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RADIO1_1_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_1_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RADIO1_0_PAUSE_LEN                      ((uint_fast8_t)(F_INTERRUPTS * RADIO1_0_PAUSE_TIME))\r
+#define RADIO1_0_PULSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_0_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RADIO1_0_PULSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_0_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define RADIO1_0_PAUSE_LEN_MIN                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define RADIO1_0_PAUSE_LEN_MAX                  ((uint_fast8_t)(F_INTERRUPTS * RADIO1_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define AUTO_FRAME_REPETITION_LEN               (uint_fast16_t)(F_INTERRUPTS * AUTO_FRAME_REPETITION_TIME + 0.5)       // use uint_fast16_t!\r
 \r
 #ifdef ANALYZE\r
 #  define ANALYZE_PUTCHAR(a)                    { if (! silent)             { putchar (a);          } }\r
 #  define ANALYZE_ONLY_NORMAL_PUTCHAR(a)        { if (! silent && !verbose) { putchar (a);          } }\r
 #  define ANALYZE_PRINTF(...)                   { if (verbose)              { printf (__VA_ARGS__); } }\r
+#  define ANALYZE_ONLY_NORMAL_PRINTF(...)       { if (! silent && !verbose) { printf (__VA_ARGS__); } }\r
 #  define ANALYZE_NEWLINE()                     { if (verbose)              { putchar ('\n');       } }\r
 static int                                      silent;\r
 static int                                      time_counter;\r
 static int                                      verbose;\r
+\r
+/*******************************                not every PIC compiler knows variadic macros :-(\r
 #else\r
 #  define ANALYZE_PUTCHAR(a)\r
 #  define ANALYZE_ONLY_NORMAL_PUTCHAR(a)\r
 #  define ANALYZE_PRINTF(...)\r
+#  define ANALYZE_ONLY_NORMAL_PRINTF(...)\r
+#  endif\r
 #  define ANALYZE_NEWLINE()\r
+*********************************/\r
 #endif\r
 \r
 #if IRMP_USE_CALLBACK == 1\r
-static void                                     (*irmp_callback_ptr) (uint8_t);\r
+static void                                     (*irmp_callback_ptr) (uint_fast8_t);\r
 #endif // IRMP_USE_CALLBACK == 1\r
 \r
+#define PARITY_CHECK_OK                         1\r
+#define PARITY_CHECK_FAILED                     0\r
+\r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *  Protocol names\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-#if IRMP_PROTOCOL_NAMES == 1\r
-char *\r
-irmp_protocol_names[IRMP_N_PROTOCOLS + 1] =\r
+#if defined(UNIX_OR_WINDOWS) || IRMP_PROTOCOL_NAMES == 1\r
+static const char proto_unknown[]       PROGMEM = "UNKNOWN";\r
+static const char proto_sircs[]         PROGMEM = "SIRCS";\r
+static const char proto_nec[]           PROGMEM = "NEC";\r
+static const char proto_samsung[]       PROGMEM = "SAMSUNG";\r
+static const char proto_matsushita[]    PROGMEM = "MATSUSH";\r
+static const char proto_kaseikyo[]      PROGMEM = "KASEIKYO";\r
+static const char proto_recs80[]        PROGMEM = "RECS80";\r
+static const char proto_rc5[]           PROGMEM = "RC5";\r
+static const char proto_denon[]         PROGMEM = "DENON";\r
+static const char proto_rc6[]           PROGMEM = "RC6";\r
+static const char proto_samsung32[]     PROGMEM = "SAMSG32";\r
+static const char proto_apple[]         PROGMEM = "APPLE";\r
+static const char proto_recs80ext[]     PROGMEM = "RECS80EX";\r
+static const char proto_nubert[]        PROGMEM = "NUBERT";\r
+static const char proto_bang_olufsen[]  PROGMEM = "BANG OLU";\r
+static const char proto_grundig[]       PROGMEM = "GRUNDIG";\r
+static const char proto_nokia[]         PROGMEM = "NOKIA";\r
+static const char proto_siemens[]       PROGMEM = "SIEMENS";\r
+static const char proto_fdc[]           PROGMEM = "FDC";\r
+static const char proto_rccar[]         PROGMEM = "RCCAR";\r
+static const char proto_jvc[]           PROGMEM = "JVC";\r
+static const char proto_rc6a[]          PROGMEM = "RC6A";\r
+static const char proto_nikon[]         PROGMEM = "NIKON";\r
+static const char proto_ruwido[]        PROGMEM = "RUWIDO";\r
+static const char proto_ir60[]          PROGMEM = "IR60";\r
+static const char proto_kathrein[]      PROGMEM = "KATHREIN";\r
+static const char proto_netbox[]        PROGMEM = "NETBOX";\r
+static const char proto_nec16[]         PROGMEM = "NEC16";\r
+static const char proto_nec42[]         PROGMEM = "NEC42";\r
+static const char proto_lego[]          PROGMEM = "LEGO";\r
+static const char proto_thomson[]       PROGMEM = "THOMSON";\r
+static const char proto_bose[]          PROGMEM = "BOSE";\r
+static const char proto_a1tvbox[]       PROGMEM = "A1TVBOX";\r
+static const char proto_ortek[]         PROGMEM = "ORTEK";\r
+static const char proto_telefunken[]    PROGMEM = "TELEFUNKEN";\r
+static const char proto_roomba[]        PROGMEM = "ROOMBA";\r
+static const char proto_rcmm32[]        PROGMEM = "RCMM32";\r
+static const char proto_rcmm24[]        PROGMEM = "RCMM24";\r
+static const char proto_rcmm12[]        PROGMEM = "RCMM12";\r
+static const char proto_speaker[]       PROGMEM = "SPEAKER";\r
+static const char proto_lgair[]         PROGMEM = "LGAIR";\r
+static const char proto_samsung48[]     PROGMEM = "SAMSG48";\r
+static const char proto_merlin[]        PROGMEM = "MERLIN";\r
+static const char proto_pentax[]        PROGMEM = "PENTAX";\r
+static const char proto_fan[]           PROGMEM = "FAN";\r
+static const char proto_s100[]          PROGMEM = "S100";\r
+static const char proto_acp24[]         PROGMEM = "ACP24";\r
+static const char proto_technics[]      PROGMEM = "TECHNICS";\r
+static const char proto_panasonic[]     PROGMEM = "PANASONIC";\r
+\r
+static const char proto_radio1[]        PROGMEM = "RADIO1";\r
+\r
+const char * const\r
+irmp_protocol_names[IRMP_N_PROTOCOLS + 1] PROGMEM =\r
 {\r
-    "UNKNOWN",\r
-    "SIRCS",\r
-    "NEC",\r
-    "SAMSUNG",\r
-    "MATSUSH",\r
-    "KASEIKYO",\r
-    "RECS80",\r
-    "RC5",\r
-    "DENON",\r
-    "RC6",\r
-    "SAMSG32",\r
-    "APPLE",\r
-    "RECS80EX",\r
-    "NUBERT",\r
-    "BANG OLU",\r
-    "GRUNDIG",\r
-    "NOKIA",\r
-    "SIEMENS",\r
-    "FDC",\r
-    "RCCAR",\r
-    "JVC",\r
-    "RC6A",\r
-    "NIKON",\r
-    "RUWIDO",\r
-    "IR60",\r
-    "KATHREIN",\r
-    "NETBOX",\r
-    "NEC16",\r
-    "NEC42",\r
-    "LEGO",\r
-    "THOMSON",\r
-    "BOSE"\r
+    proto_unknown,\r
+    proto_sircs,\r
+    proto_nec,\r
+    proto_samsung,\r
+    proto_matsushita,\r
+    proto_kaseikyo,\r
+    proto_recs80,\r
+    proto_rc5,\r
+    proto_denon,\r
+    proto_rc6,\r
+    proto_samsung32,\r
+    proto_apple,\r
+    proto_recs80ext,\r
+    proto_nubert,\r
+    proto_bang_olufsen,\r
+    proto_grundig,\r
+    proto_nokia,\r
+    proto_siemens,\r
+    proto_fdc,\r
+    proto_rccar,\r
+    proto_jvc,\r
+    proto_rc6a,\r
+    proto_nikon,\r
+    proto_ruwido,\r
+    proto_ir60,\r
+    proto_kathrein,\r
+    proto_netbox,\r
+    proto_nec16,\r
+    proto_nec42,\r
+    proto_lego,\r
+    proto_thomson,\r
+    proto_bose,\r
+    proto_a1tvbox,\r
+    proto_ortek,\r
+    proto_telefunken,\r
+    proto_roomba,\r
+    proto_rcmm32,\r
+    proto_rcmm24,\r
+    proto_rcmm12,\r
+    proto_speaker,\r
+    proto_lgair,\r
+    proto_samsung48,\r
+    proto_merlin,\r
+    proto_pentax,\r
+    proto_fan,\r
+    proto_s100,\r
+    proto_acp24,\r
+    proto_technics,\r
+    proto_panasonic,\r
+    proto_radio1\r
 };\r
+\r
 #endif\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *  Logging\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-#if IRMP_LOGGING == 1                                               // logging via UART\r
-\r
-#if IRMP_EXT_LOGGING == 1                                           // use external logging\r
-#include "irmpextlog.h"\r
-#else                                                               // normal UART log (IRMP_EXT_LOGGING == 0)\r
-#define BAUD                                    9600L\r
-#include <util/setbaud.h>\r
+#if IRMP_LOGGING == 1                                                   // logging via UART\r
+\r
+#if defined(ARM_STM32F4XX)\r
+#  define  STM32_GPIO_CLOCK   RCC_AHB1Periph_GPIOA                      // UART2 on PA2\r
+#  define  STM32_UART_CLOCK   RCC_APB1Periph_USART2\r
+#  define  STM32_GPIO_PORT    GPIOA\r
+#  define  STM32_GPIO_PIN     GPIO_Pin_2\r
+#  define  STM32_GPIO_SOURCE  GPIO_PinSource2\r
+#  define  STM32_UART_AF      GPIO_AF_USART2\r
+#  define  STM32_UART_COM     USART2\r
+#  define  STM32_UART_BAUD    115200                                    // 115200 Baud\r
+#  include "stm32f4xx_usart.h"\r
+#elif defined(ARM_STM32F10X)\r
+#  define  STM32_UART_COM     USART3                                    // UART3 on PB10\r
+#elif defined(ARDUINO)                                                 // Arduino Serial implementation\r
+#  if defined(USB_SERIAL)\r
+#    include "usb_serial.h"\r
+#  else\r
+#    error USB_SERIAL not defined in ARDUINO Environment\r
+#  endif\r
+#else\r
+#  if IRMP_EXT_LOGGING == 1                                             // use external logging\r
+#    include "irmpextlog.h"\r
+#  else                                                                 // normal UART log (IRMP_EXT_LOGGING == 0)\r
+#    define BAUD                                    9600L\r
+#  ifndef UNIX_OR_WINDOWS\r
+#    include <util/setbaud.h>\r
+#  endif\r
 \r
 #ifdef UBRR0H\r
 \r
@@ -466,7 +734,7 @@ irmp_protocol_names[IRMP_N_PROTOCOLS + 1] =
 #define UART0_TXEN_BIT_VALUE                    (1<<TXEN0)\r
 #define UART0_UDR                               UDR0\r
 #define UART0_U2X                               U2X0\r
-        \r
+\r
 #else\r
 \r
 #define UART0_UBRRH                             UBRRH\r
@@ -488,6 +756,7 @@ irmp_protocol_names[IRMP_N_PROTOCOLS + 1] =
 \r
 #endif //UBRR0H\r
 #endif //IRMP_EXT_LOGGING\r
+#endif //ARM_STM32F4XX\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *  Initialize  UART\r
@@ -497,6 +766,96 @@ irmp_protocol_names[IRMP_N_PROTOCOLS + 1] =
 void\r
 irmp_uart_init (void)\r
 {\r
+#ifndef UNIX_OR_WINDOWS\r
+#if defined(ARM_STM32F4XX)\r
+    GPIO_InitTypeDef GPIO_InitStructure;\r
+    USART_InitTypeDef USART_InitStructure;\r
+\r
+    // Clock enable vom TX Pin\r
+    RCC_AHB1PeriphClockCmd(STM32_GPIO_CLOCK, ENABLE);\r
+\r
+    // Clock enable der UART\r
+    RCC_APB1PeriphClockCmd(STM32_UART_CLOCK, ENABLE);\r
+\r
+    // UART Alternative-Funktion mit dem IO-Pin verbinden\r
+    GPIO_PinAFConfig(STM32_GPIO_PORT,STM32_GPIO_SOURCE,STM32_UART_AF);\r
+\r
+    // UART als Alternative-Funktion mit PushPull\r
+    GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF;\r
+    GPIO_InitStructure.GPIO_Speed = GPIO_Speed_100MHz;\r
+    GPIO_InitStructure.GPIO_OType = GPIO_OType_PP;\r
+    GPIO_InitStructure.GPIO_PuPd = GPIO_PuPd_UP;\r
+\r
+    // TX-Pin\r
+    GPIO_InitStructure.GPIO_Pin = STM32_GPIO_PIN;\r
+    GPIO_Init(STM32_GPIO_PORT, &GPIO_InitStructure);\r
+\r
+    // Oversampling\r
+    USART_OverSampling8Cmd(STM32_UART_COM, ENABLE);\r
+\r
+    // init mit Baudrate, 8Databits, 1Stopbit, keine Parität, kein RTS+CTS\r
+    USART_InitStructure.USART_BaudRate = STM32_UART_BAUD;\r
+    USART_InitStructure.USART_WordLength = USART_WordLength_8b;\r
+    USART_InitStructure.USART_StopBits = USART_StopBits_1;\r
+    USART_InitStructure.USART_Parity = USART_Parity_No;\r
+    USART_InitStructure.USART_HardwareFlowControl = USART_HardwareFlowControl_None;\r
+    USART_InitStructure.USART_Mode = USART_Mode_Tx;\r
+    USART_Init(STM32_UART_COM, &USART_InitStructure);\r
+\r
+    // UART enable\r
+    USART_Cmd(STM32_UART_COM, ENABLE);\r
+\r
+#elif defined(ARM_STM32F10X)\r
+    GPIO_InitTypeDef GPIO_InitStructure;\r
+    USART_InitTypeDef USART_InitStructure;\r
+\r
+    // Clock enable vom TX Pin\r
+    RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOB, ENABLE); // UART3 an PB10\r
+\r
+    // Clock enable der UART\r
+    RCC_APB1PeriphClockCmd(RCC_APB1Periph_USART3, ENABLE);\r
+\r
+    // UART als Alternative-Funktion mit PushPull\r
+    GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;\r
+    GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz;\r
+\r
+    // TX-Pin\r
+    GPIO_InitStructure.GPIO_Pin = GPIO_Pin_10;\r
+    GPIO_Init(GPIOB, &GPIO_InitStructure);\r
+\r
+    // Oversampling\r
+    USART_OverSampling8Cmd(STM32_UART_COM, ENABLE);\r
+\r
+    // init mit Baudrate, 8Databits, 1Stopbit, keine Parität, kein RTS+CTS\r
+    USART_InitStructure.USART_BaudRate = 115200;\r
+    USART_InitStructure.USART_WordLength = USART_WordLength_8b;\r
+    USART_InitStructure.USART_StopBits = USART_StopBits_1;\r
+    USART_InitStructure.USART_Parity = USART_Parity_No;\r
+    USART_InitStructure.USART_HardwareFlowControl = USART_HardwareFlowControl_None;\r
+    USART_InitStructure.USART_Mode = USART_Mode_Tx;\r
+    USART_Init(STM32_UART_COM, &USART_InitStructure);\r
+\r
+    // UART enable\r
+    USART_Cmd(STM32_UART_COM, ENABLE);\r
+       \r
+#elif defined(ARDUINO)\r
+    // we use the Arduino Serial Imlementation\r
+    // you have to call Serial.begin(SER_BAUD); in Arduino setup() function\r
+\r
+#elif defined (__AVR_XMEGA__)\r
+\r
+    PMIC.CTRL |= PMIC_HILVLEN_bm;\r
+\r
+    USARTC1.BAUDCTRLB = 0;\r
+    USARTC1.BAUDCTRLA = F_CPU / 153600 - 1;\r
+    USARTC1.CTRLA = USART_RXCINTLVL_HI_gc; // High Level (Empfangen)\r
+    USARTC1.CTRLB = USART_TXEN_bm | USART_RXEN_bm; //Aktiviert Senden und Empfangen\r
+    USARTC1.CTRLC = USART_CHSIZE_8BIT_gc; //Größe der Zeichen: 8 Bit\r
+    PORTC.DIR |= (1<<7);  //TXD als Ausgang setzen\r
+    PORTC.DIR &= ~(1<<6);\r
+\r
+#else\r
+\r
 #if (IRMP_EXT_LOGGING == 0)                                                                         // use UART\r
     UART0_UBRRH = UBRRH_VALUE;                                                                      // set baud rate\r
     UART0_UBRRL = UBRRL_VALUE;\r
@@ -510,8 +869,10 @@ irmp_uart_init (void)
     UART0_UCSRC = UART0_UCSZ1_BIT_VALUE | UART0_UCSZ0_BIT_VALUE | UART0_URSEL_BIT_VALUE;\r
     UART0_UCSRB |= UART0_TXEN_BIT_VALUE;                                                            // enable UART TX\r
 #else                                                                                               // other log method\r
-        initextlog();                                                         \r
+    initextlog();\r
 #endif //IRMP_EXT_LOGGING\r
+#endif //ARM_STM32F4XX\r
+#endif // UNIX_OR_WINDOWS\r
 }\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
@@ -523,16 +884,50 @@ irmp_uart_init (void)
 void\r
 irmp_uart_putc (unsigned char ch)\r
 {\r
+#ifndef UNIX_OR_WINDOWS\r
+#if defined(ARM_STM32F4XX) || defined(ARM_STM32F10X)\r
+    // warten bis altes Byte gesendet wurde\r
+    while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET)\r
+    {\r
+       ;\r
+    }\r
+\r
+    USART_SendData(STM32_UART_COM, ch);\r
+\r
+    if (ch == '\n')\r
+    {\r
+       while (USART_GetFlagStatus(STM32_UART_COM, USART_FLAG_TXE) == RESET);\r
+       USART_SendData(STM32_UART_COM, '\r');\r
+    }\r
+\r
+#elif defined(ARDUINO)\r
+    // we use the Arduino Serial Imlementation\r
+    usb_serial_putchar(ch);\r
+\r
+#else\r
 #if (IRMP_EXT_LOGGING == 0)\r
+       \r
+       #       if defined (__AVR_XMEGA__)\r
+       while (!(USARTC1.STATUS & USART_DREIF_bm));\r
+       USARTC1.DATA = ch;\r
+       \r
+       #       else //AVR_MEGA\r
     while (!(UART0_UCSRA & UART0_UDRE_BIT_VALUE))\r
     {\r
-        ;\r
+       ;\r
     }\r
 \r
     UART0_UDR = ch;\r
+       #endif //__AVR_XMEGA__\r
 #else\r
-    sendextlog(ch); //Use external log\r
-#endif\r
+\r
+    sendextlog(ch);                                                         // use external log\r
+\r
+#endif //IRMP_EXT_LOGGING\r
+#endif //ARM_STM32F4XX\r
+#else\r
+    fputc (ch, stderr);\r
+#endif // UNIX_OR_WINDOWS\r
 }\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
@@ -545,71 +940,90 @@ irmp_uart_putc (unsigned char ch)
 #define DATALEN                         700                                 // log buffer size\r
 \r
 static void\r
-irmp_log (uint8_t val)\r
+irmp_log (uint_fast8_t val)\r
 {\r
-    static uint8_t  buf[DATALEN];                                           // logging buffer\r
-    static uint16_t buf_idx;                                                // number of written bits\r
-    static uint8_t  startcycles;                                            // current number of start-zeros\r
-    static uint16_t cnt;                                                    // counts sequenced highbits - to detect end\r
+    static uint8_t          buf[DATALEN];                                   // logging buffer\r
+    static uint_fast16_t    buf_idx;                                        // index\r
+    static uint_fast8_t     startcycles;                                    // current number of start-zeros\r
+    static uint_fast16_t    cnt;                                            // counts sequenced highbits - to detect end\r
+    static uint_fast8_t     last_val = 1;\r
 \r
     if (! val && (startcycles < STARTCYCLES) && !buf_idx)                   // prevent that single random zeros init logging\r
     {\r
-        startcycles++;\r
+       startcycles++;\r
     }\r
     else\r
     {\r
-        startcycles = 0;\r
-\r
-        if (! val || (val && buf_idx != 0))                                 // start or continue logging on "0", "1" cannot init logging\r
-        {\r
-            if (buf_idx < DATALEN * 8)                                      // index in range?\r
-            {                                                               // yes\r
-                if (val)\r
-                {\r
-                    buf[(buf_idx / 8)] |=  (1<<(buf_idx % 8));              // set bit\r
-                }\r
-                else\r
-                {\r
-                    buf[(buf_idx / 8)] &= ~(1<<(buf_idx % 8));              // reset bit\r
-                }\r
-\r
-                buf_idx++;\r
-            }\r
-\r
-            if (val)\r
-            {                                                               // if high received then look at log-stop condition\r
-                cnt++;\r
-\r
-                if (cnt > ENDBITS)\r
-                {                                                           // if stop condition is true, output on uart\r
-                    uint16_t i;\r
-\r
-                    for (i = 0; i < STARTCYCLES; i++)\r
-                    {\r
-                        irmp_uart_putc ('0');                               // the ignored starting zeros\r
-                    }\r
-\r
-                    for (i = 0; i < (buf_idx - ENDBITS + 20) / 8; i++)      // transform bitset into uart chars\r
-                    {\r
-                        uint8_t d = buf[i];\r
-                        uint8_t j;\r
-\r
-                        for (j = 0; j < 8; j++)\r
-                        {\r
-                            irmp_uart_putc ((d & 1) + '0');\r
-                            d >>= 1;\r
-                        }\r
-                    }\r
-\r
-                    irmp_uart_putc ('\n');\r
-                    buf_idx = 0;\r
-                }\r
-            }\r
-            else\r
-            {\r
-                cnt = 0;\r
-            }\r
-        }\r
+       startcycles = 0;\r
+\r
+       if (! val || buf_idx != 0)                                          // start or continue logging on "0", "1" cannot init logging\r
+       {\r
+           if (last_val == val)\r
+           {\r
+               cnt++;\r
+\r
+               if (val && cnt > ENDBITS)                                   // if high received then look at log-stop condition\r
+               {                                                           // if stop condition is true, output on uart\r
+                   uint_fast8_t     i8;\r
+                   uint_fast16_t    i;\r
+                   uint_fast16_t    j;\r
+                   uint_fast8_t     v = '1';\r
+                   uint_fast16_t    d;\r
+\r
+                   for (i8 = 0; i8 < STARTCYCLES; i8++)\r
+                   {\r
+                       irmp_uart_putc ('0');                               // the ignored starting zeros\r
+                   }\r
+\r
+                   for (i = 0; i < buf_idx; i++)\r
+                   {\r
+                       d = buf[i];\r
+\r
+                       if (d == 0xff)\r
+                       {\r
+                           i++;\r
+                           d = buf[i];\r
+                           i++;\r
+                           d |= ((uint_fast16_t) buf[i] << 8);\r
+                       }\r
+\r
+                       for (j = 0; j < d; j++)\r
+                       {\r
+                           irmp_uart_putc (v);\r
+                       }\r
+\r
+                       v = (v == '1') ? '0' : '1';\r
+                   }\r
+\r
+                   for (i8 = 0; i8 < 20; i8++)\r
+                   {\r
+                       irmp_uart_putc ('1');\r
+                   }\r
+\r
+                   irmp_uart_putc ('\n');\r
+                   buf_idx = 0;\r
+                   last_val = 1;\r
+                   cnt = 0;\r
+               }\r
+           }\r
+           else if (buf_idx < DATALEN - 3)\r
+           {\r
+               if (cnt >= 0xff)\r
+               {\r
+                   buf[buf_idx++]  = 0xff;\r
+                   buf[buf_idx++]  = (cnt & 0xff);\r
+                   buf[buf_idx]    = (cnt >> 8);\r
+               }\r
+               else\r
+               {\r
+                   buf[buf_idx] = cnt;\r
+               }\r
+\r
+               buf_idx++;\r
+               cnt = 1;\r
+               last_val = val;\r
+           }\r
+       }\r
     }\r
 }\r
 \r
@@ -619,23 +1033,23 @@ irmp_log (uint8_t val)
 \r
 typedef struct\r
 {\r
-    uint8_t    protocol;                                                // ir protocol\r
-    uint8_t    pulse_1_len_min;                                         // minimum length of pulse with bit value 1\r
-    uint8_t    pulse_1_len_max;                                         // maximum length of pulse with bit value 1\r
-    uint8_t    pause_1_len_min;                                         // minimum length of pause with bit value 1\r
-    uint8_t    pause_1_len_max;                                         // maximum length of pause with bit value 1\r
-    uint8_t    pulse_0_len_min;                                         // minimum length of pulse with bit value 0\r
-    uint8_t    pulse_0_len_max;                                         // maximum length of pulse with bit value 0\r
-    uint8_t    pause_0_len_min;                                         // minimum length of pause with bit value 0\r
-    uint8_t    pause_0_len_max;                                         // maximum length of pause with bit value 0\r
-    uint8_t    address_offset;                                          // address offset\r
-    uint8_t    address_end;                                             // end of address\r
-    uint8_t    command_offset;                                          // command offset\r
-    uint8_t    command_end;                                             // end of command\r
-    uint8_t    complete_len;                                            // complete length of frame\r
-    uint8_t    stop_bit;                                                // flag: frame has stop bit\r
-    uint8_t    lsb_first;                                               // flag: LSB first\r
-    uint8_t    flags;                                                   // some flags\r
+    uint_fast8_t    protocol;                                                // ir protocol\r
+    uint_fast8_t    pulse_1_len_min;                                         // minimum length of pulse with bit value 1\r
+    uint_fast8_t    pulse_1_len_max;                                         // maximum length of pulse with bit value 1\r
+    uint_fast8_t    pause_1_len_min;                                         // minimum length of pause with bit value 1\r
+    uint_fast8_t    pause_1_len_max;                                         // maximum length of pause with bit value 1\r
+    uint_fast8_t    pulse_0_len_min;                                         // minimum length of pulse with bit value 0\r
+    uint_fast8_t    pulse_0_len_max;                                         // maximum length of pulse with bit value 0\r
+    uint_fast8_t    pause_0_len_min;                                         // minimum length of pause with bit value 0\r
+    uint_fast8_t    pause_0_len_max;                                         // maximum length of pause with bit value 0\r
+    uint_fast8_t    address_offset;                                          // address offset\r
+    uint_fast8_t    address_end;                                             // end of address\r
+    uint_fast8_t    command_offset;                                          // command offset\r
+    uint_fast8_t    command_end;                                             // end of command\r
+    uint_fast8_t    complete_len;                                            // complete length of frame\r
+    uint_fast8_t    stop_bit;                                                // flag: frame has stop bit\r
+    uint_fast8_t    lsb_first;                                               // flag: LSB first\r
+    uint_fast8_t    flags;                                                   // some flags\r
 } IRMP_PARAMETER;\r
 \r
 #if IRMP_SUPPORT_SIRCS_PROTOCOL == 1\r
@@ -734,6 +1148,31 @@ static const PROGMEM IRMP_PARAMETER nec42_param =
 \r
 #endif\r
 \r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER lgair_param =\r
+{\r
+    IRMP_LGAIR_PROTOCOL,                                                // protocol:        ir protocol\r
+    NEC_PULSE_LEN_MIN,                                                  // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    NEC_PULSE_LEN_MAX,                                                  // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    NEC_1_PAUSE_LEN_MIN,                                                // pause_1_len_min: minimum length of pause with bit value 1\r
+    NEC_1_PAUSE_LEN_MAX,                                                // pause_1_len_max: maximum length of pause with bit value 1\r
+    NEC_PULSE_LEN_MIN,                                                  // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    NEC_PULSE_LEN_MAX,                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    NEC_0_PAUSE_LEN_MIN,                                                // pause_0_len_min: minimum length of pause with bit value 0\r
+    NEC_0_PAUSE_LEN_MAX,                                                // pause_0_len_max: maximum length of pause with bit value 0\r
+    LGAIR_ADDRESS_OFFSET,                                               // address_offset:  address offset\r
+    LGAIR_ADDRESS_OFFSET + LGAIR_ADDRESS_LEN,                           // address_end:     end of address\r
+    LGAIR_COMMAND_OFFSET,                                               // command_offset:  command offset\r
+    LGAIR_COMMAND_OFFSET + LGAIR_COMMAND_LEN,                           // command_end:     end of command\r
+    LGAIR_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame\r
+    NEC_STOP_BIT,                                                       // stop_bit:        flag: frame has stop bit\r
+    NEC_LSB,                                                            // lsb_first:       flag: LSB first\r
+    NEC_FLAGS                                                           // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
 \r
 static const PROGMEM IRMP_PARAMETER samsung_param =\r
@@ -759,6 +1198,31 @@ static const PROGMEM IRMP_PARAMETER samsung_param =
 \r
 #endif\r
 \r
+#if IRMP_SUPPORT_TELEFUNKEN_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER telefunken_param =\r
+{\r
+    IRMP_TELEFUNKEN_PROTOCOL,                                           // protocol:        ir protocol\r
+    TELEFUNKEN_PULSE_LEN_MIN,                                           // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    TELEFUNKEN_PULSE_LEN_MAX,                                           // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    TELEFUNKEN_1_PAUSE_LEN_MIN,                                         // pause_1_len_min: minimum length of pause with bit value 1\r
+    TELEFUNKEN_1_PAUSE_LEN_MAX,                                         // pause_1_len_max: maximum length of pause with bit value 1\r
+    TELEFUNKEN_PULSE_LEN_MIN,                                           // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    TELEFUNKEN_PULSE_LEN_MAX,                                           // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    TELEFUNKEN_0_PAUSE_LEN_MIN,                                         // pause_0_len_min: minimum length of pause with bit value 0\r
+    TELEFUNKEN_0_PAUSE_LEN_MAX,                                         // pause_0_len_max: maximum length of pause with bit value 0\r
+    TELEFUNKEN_ADDRESS_OFFSET,                                          // address_offset:  address offset\r
+    TELEFUNKEN_ADDRESS_OFFSET + TELEFUNKEN_ADDRESS_LEN,                 // address_end:     end of address\r
+    TELEFUNKEN_COMMAND_OFFSET,                                          // command_offset:  command offset\r
+    TELEFUNKEN_COMMAND_OFFSET + TELEFUNKEN_COMMAND_LEN,                 // command_end:     end of command\r
+    TELEFUNKEN_COMPLETE_DATA_LEN,                                       // complete_len:    complete length of frame\r
+    TELEFUNKEN_STOP_BIT,                                                // stop_bit:        flag: frame has stop bit\r
+    TELEFUNKEN_LSB,                                                     // lsb_first:       flag: LSB first\r
+    TELEFUNKEN_FLAGS                                                    // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
 #if IRMP_SUPPORT_MATSUSHITA_PROTOCOL == 1\r
 \r
 static const PROGMEM IRMP_PARAMETER matsushita_param =\r
@@ -809,6 +1273,31 @@ static const PROGMEM IRMP_PARAMETER kaseikyo_param =
 \r
 #endif\r
 \r
+#if IRMP_SUPPORT_PANASONIC_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER panasonic_param =\r
+{\r
+    IRMP_PANASONIC_PROTOCOL,                                            // protocol:        ir protocol\r
+    PANASONIC_PULSE_LEN_MIN,                                            // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    PANASONIC_PULSE_LEN_MAX,                                            // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    PANASONIC_1_PAUSE_LEN_MIN,                                          // pause_1_len_min: minimum length of pause with bit value 1\r
+    PANASONIC_1_PAUSE_LEN_MAX,                                          // pause_1_len_max: maximum length of pause with bit value 1\r
+    PANASONIC_PULSE_LEN_MIN,                                            // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    PANASONIC_PULSE_LEN_MAX,                                            // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    PANASONIC_0_PAUSE_LEN_MIN,                                          // pause_0_len_min: minimum length of pause with bit value 0\r
+    PANASONIC_0_PAUSE_LEN_MAX,                                          // pause_0_len_max: maximum length of pause with bit value 0\r
+    PANASONIC_ADDRESS_OFFSET,                                           // address_offset:  address offset\r
+    PANASONIC_ADDRESS_OFFSET + PANASONIC_ADDRESS_LEN,                   // address_end:     end of address\r
+    PANASONIC_COMMAND_OFFSET,                                           // command_offset:  command offset\r
+    PANASONIC_COMMAND_OFFSET + PANASONIC_COMMAND_LEN,                   // command_end:     end of command\r
+    PANASONIC_COMPLETE_DATA_LEN,                                        // complete_len:    complete length of frame\r
+    PANASONIC_STOP_BIT,                                                 // stop_bit:        flag: frame has stop bit\r
+    PANASONIC_LSB,                                                      // lsb_first:       flag: LSB first\r
+    PANASONIC_FLAGS                                                     // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
 #if IRMP_SUPPORT_RECS80_PROTOCOL == 1\r
 \r
 static const PROGMEM IRMP_PARAMETER recs80_param =\r
@@ -859,6 +1348,31 @@ static const PROGMEM IRMP_PARAMETER rc5_param =
 \r
 #endif\r
 \r
+#if IRMP_SUPPORT_S100_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER s100_param =\r
+{\r
+    IRMP_S100_PROTOCOL,                                                 // protocol:        ir protocol\r
+    S100_BIT_LEN_MIN,                                                   // pulse_1_len_min: here: minimum length of short pulse\r
+    S100_BIT_LEN_MAX,                                                   // pulse_1_len_max: here: maximum length of short pulse\r
+    S100_BIT_LEN_MIN,                                                   // pause_1_len_min: here: minimum length of short pause\r
+    S100_BIT_LEN_MAX,                                                   // pause_1_len_max: here: maximum length of short pause\r
+    0,                                                                  // pulse_0_len_min: here: not used\r
+    0,                                                                  // pulse_0_len_max: here: not used\r
+    0,                                                                  // pause_0_len_min: here: not used\r
+    0,                                                                  // pause_0_len_max: here: not used\r
+    S100_ADDRESS_OFFSET,                                                // address_offset:  address offset\r
+    S100_ADDRESS_OFFSET + S100_ADDRESS_LEN,                             // address_end:     end of address\r
+    S100_COMMAND_OFFSET,                                                // command_offset:  command offset\r
+    S100_COMMAND_OFFSET + S100_COMMAND_LEN,                             // command_end:     end of command\r
+    S100_COMPLETE_DATA_LEN,                                             // complete_len:    complete length of frame\r
+    S100_STOP_BIT,                                                      // stop_bit:        flag: frame has stop bit\r
+    S100_LSB,                                                           // lsb_first:       flag: LSB first\r
+    S100_FLAGS                                                          // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
 \r
 static const PROGMEM IRMP_PARAMETER denon_param =\r
@@ -960,6 +1474,56 @@ static const PROGMEM IRMP_PARAMETER nubert_param =
 \r
 #endif\r
 \r
+#if IRMP_SUPPORT_FAN_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER fan_param =\r
+{\r
+    IRMP_FAN_PROTOCOL,                                                  // protocol:        ir protocol\r
+    FAN_1_PULSE_LEN_MIN,                                                // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    FAN_1_PULSE_LEN_MAX,                                                // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    FAN_1_PAUSE_LEN_MIN,                                                // pause_1_len_min: minimum length of pause with bit value 1\r
+    FAN_1_PAUSE_LEN_MAX,                                                // pause_1_len_max: maximum length of pause with bit value 1\r
+    FAN_0_PULSE_LEN_MIN,                                                // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    FAN_0_PULSE_LEN_MAX,                                                // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    FAN_0_PAUSE_LEN_MIN,                                                // pause_0_len_min: minimum length of pause with bit value 0\r
+    FAN_0_PAUSE_LEN_MAX,                                                // pause_0_len_max: maximum length of pause with bit value 0\r
+    FAN_ADDRESS_OFFSET,                                                 // address_offset:  address offset\r
+    FAN_ADDRESS_OFFSET + FAN_ADDRESS_LEN,                               // address_end:     end of address\r
+    FAN_COMMAND_OFFSET,                                                 // command_offset:  command offset\r
+    FAN_COMMAND_OFFSET + FAN_COMMAND_LEN,                               // command_end:     end of command\r
+    FAN_COMPLETE_DATA_LEN,                                              // complete_len:    complete length of frame\r
+    FAN_STOP_BIT,                                                       // stop_bit:        flag: frame has NO stop bit\r
+    FAN_LSB,                                                            // lsb_first:       flag: LSB first\r
+    FAN_FLAGS                                                           // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_SPEAKER_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER speaker_param =\r
+{\r
+    IRMP_SPEAKER_PROTOCOL,                                              // protocol:        ir protocol\r
+    SPEAKER_1_PULSE_LEN_MIN,                                            // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    SPEAKER_1_PULSE_LEN_MAX,                                            // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    SPEAKER_1_PAUSE_LEN_MIN,                                            // pause_1_len_min: minimum length of pause with bit value 1\r
+    SPEAKER_1_PAUSE_LEN_MAX,                                            // pause_1_len_max: maximum length of pause with bit value 1\r
+    SPEAKER_0_PULSE_LEN_MIN,                                            // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    SPEAKER_0_PULSE_LEN_MAX,                                            // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    SPEAKER_0_PAUSE_LEN_MIN,                                            // pause_0_len_min: minimum length of pause with bit value 0\r
+    SPEAKER_0_PAUSE_LEN_MAX,                                            // pause_0_len_max: maximum length of pause with bit value 0\r
+    SPEAKER_ADDRESS_OFFSET,                                             // address_offset:  address offset\r
+    SPEAKER_ADDRESS_OFFSET + SPEAKER_ADDRESS_LEN,                       // address_end:     end of address\r
+    SPEAKER_COMMAND_OFFSET,                                             // command_offset:  command offset\r
+    SPEAKER_COMMAND_OFFSET + SPEAKER_COMMAND_LEN,                       // command_end:     end of command\r
+    SPEAKER_COMPLETE_DATA_LEN,                                          // complete_len:    complete length of frame\r
+    SPEAKER_STOP_BIT,                                                   // stop_bit:        flag: frame has stop bit\r
+    SPEAKER_LSB,                                                        // lsb_first:       flag: LSB first\r
+    SPEAKER_FLAGS                                                       // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
 #if IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
 \r
 static const PROGMEM IRMP_PARAMETER bang_olufsen_param =\r
@@ -987,7 +1551,7 @@ static const PROGMEM IRMP_PARAMETER bang_olufsen_param =
 \r
 #if IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1\r
 \r
-static uint8_t first_bit;\r
+static uint_fast8_t first_bit;\r
 \r
 static const PROGMEM IRMP_PARAMETER grundig_param =\r
 {\r
@@ -1238,24 +1802,230 @@ static const PROGMEM IRMP_PARAMETER bose_param =
 \r
 #endif\r
 \r
-static uint8_t                              irmp_bit;                   // current bit position\r
-static IRMP_PARAMETER                       irmp_param;\r
+#if IRMP_SUPPORT_A1TVBOX_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER a1tvbox_param =\r
+{\r
+    IRMP_A1TVBOX_PROTOCOL,                                              // protocol:        ir protocol\r
+\r
+    A1TVBOX_BIT_PULSE_LEN_MIN,                                          // pulse_1_len_min: here: minimum length of short pulse\r
+    A1TVBOX_BIT_PULSE_LEN_MAX,                                          // pulse_1_len_max: here: maximum length of short pulse\r
+    A1TVBOX_BIT_PAUSE_LEN_MIN,                                          // pause_1_len_min: here: minimum length of short pause\r
+    A1TVBOX_BIT_PAUSE_LEN_MAX,                                          // pause_1_len_max: here: maximum length of short pause\r
+    0,                                                                  // pulse_0_len_min: here: not used\r
+    0,                                                                  // pulse_0_len_max: here: not used\r
+    0,                                                                  // pause_0_len_min: here: not used\r
+    0,                                                                  // pause_0_len_max: here: not used\r
+    A1TVBOX_ADDRESS_OFFSET,                                             // address_offset:  address offset\r
+    A1TVBOX_ADDRESS_OFFSET + A1TVBOX_ADDRESS_LEN,                       // address_end:     end of address\r
+    A1TVBOX_COMMAND_OFFSET,                                             // command_offset:  command offset\r
+    A1TVBOX_COMMAND_OFFSET + A1TVBOX_COMMAND_LEN,                       // command_end:     end of command\r
+    A1TVBOX_COMPLETE_DATA_LEN,                                          // complete_len:    complete length of frame\r
+    A1TVBOX_STOP_BIT,                                                   // stop_bit:        flag: frame has stop bit\r
+    A1TVBOX_LSB,                                                        // lsb_first:       flag: LSB first\r
+    A1TVBOX_FLAGS                                                       // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_MERLIN_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER merlin_param =\r
+{\r
+    IRMP_MERLIN_PROTOCOL,                                               // protocol:        ir protocol\r
+\r
+    MERLIN_BIT_PULSE_LEN_MIN,                                           // pulse_1_len_min: here: minimum length of short pulse\r
+    MERLIN_BIT_PULSE_LEN_MAX,                                           // pulse_1_len_max: here: maximum length of short pulse\r
+    MERLIN_BIT_PAUSE_LEN_MIN,                                           // pause_1_len_min: here: minimum length of short pause\r
+    MERLIN_BIT_PAUSE_LEN_MAX,                                           // pause_1_len_max: here: maximum length of short pause\r
+    0,                                                                  // pulse_0_len_min: here: not used\r
+    0,                                                                  // pulse_0_len_max: here: not used\r
+    0,                                                                  // pause_0_len_min: here: not used\r
+    0,                                                                  // pause_0_len_max: here: not used\r
+    MERLIN_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    MERLIN_ADDRESS_OFFSET + MERLIN_ADDRESS_LEN,                         // address_end:     end of address\r
+    MERLIN_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    MERLIN_COMMAND_OFFSET + MERLIN_COMMAND_LEN,                         // command_end:     end of command\r
+    MERLIN_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    MERLIN_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    MERLIN_LSB,                                                         // lsb_first:       flag: LSB first\r
+    MERLIN_FLAGS                                                        // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER ortek_param =\r
+{\r
+    IRMP_ORTEK_PROTOCOL,                                                // protocol:        ir protocol\r
+\r
+    ORTEK_BIT_PULSE_LEN_MIN,                                            // pulse_1_len_min: here: minimum length of short pulse\r
+    ORTEK_BIT_PULSE_LEN_MAX,                                            // pulse_1_len_max: here: maximum length of short pulse\r
+    ORTEK_BIT_PAUSE_LEN_MIN,                                            // pause_1_len_min: here: minimum length of short pause\r
+    ORTEK_BIT_PAUSE_LEN_MAX,                                            // pause_1_len_max: here: maximum length of short pause\r
+    0,                                                                  // pulse_0_len_min: here: not used\r
+    0,                                                                  // pulse_0_len_max: here: not used\r
+    0,                                                                  // pause_0_len_min: here: not used\r
+    0,                                                                  // pause_0_len_max: here: not used\r
+    ORTEK_ADDRESS_OFFSET,                                               // address_offset:  address offset\r
+    ORTEK_ADDRESS_OFFSET + ORTEK_ADDRESS_LEN,                           // address_end:     end of address\r
+    ORTEK_COMMAND_OFFSET,                                               // command_offset:  command offset\r
+    ORTEK_COMMAND_OFFSET + ORTEK_COMMAND_LEN,                           // command_end:     end of command\r
+    ORTEK_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame\r
+    ORTEK_STOP_BIT,                                                     // stop_bit:        flag: frame has stop bit\r
+    ORTEK_LSB,                                                          // lsb_first:       flag: LSB first\r
+    ORTEK_FLAGS                                                         // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_ROOMBA_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER roomba_param =\r
+{\r
+    IRMP_ROOMBA_PROTOCOL,                                               // protocol:        ir protocol\r
+    ROOMBA_1_PULSE_LEN_MIN,                                             // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    ROOMBA_1_PULSE_LEN_MAX,                                             // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    ROOMBA_1_PAUSE_LEN_MIN,                                             // pause_1_len_min: minimum length of pause with bit value 1\r
+    ROOMBA_1_PAUSE_LEN_MAX,                                             // pause_1_len_max: maximum length of pause with bit value 1\r
+    ROOMBA_0_PULSE_LEN_MIN,                                             // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    ROOMBA_0_PULSE_LEN_MAX,                                             // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    ROOMBA_0_PAUSE_LEN_MIN,                                             // pause_0_len_min: minimum length of pause with bit value 0\r
+    ROOMBA_0_PAUSE_LEN_MAX,                                             // pause_0_len_max: maximum length of pause with bit value 0\r
+    ROOMBA_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    ROOMBA_ADDRESS_OFFSET + ROOMBA_ADDRESS_LEN,                         // address_end:     end of address\r
+    ROOMBA_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    ROOMBA_COMMAND_OFFSET + ROOMBA_COMMAND_LEN,                         // command_end:     end of command\r
+    ROOMBA_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    ROOMBA_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    ROOMBA_LSB,                                                         // lsb_first:       flag: LSB first\r
+    ROOMBA_FLAGS                                                        // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER rcmm_param =\r
+{\r
+    IRMP_RCMM32_PROTOCOL,                                               // protocol:        ir protocol\r
+\r
+    RCMM32_BIT_PULSE_LEN_MIN,                                           // pulse_1_len_min: here: minimum length of short pulse\r
+    RCMM32_BIT_PULSE_LEN_MAX,                                           // pulse_1_len_max: here: maximum length of short pulse\r
+    0,                                                                  // pause_1_len_min: here: minimum length of short pause\r
+    0,                                                                  // pause_1_len_max: here: maximum length of short pause\r
+    RCMM32_BIT_PULSE_LEN_MIN,                                           // pulse_0_len_min: here: not used\r
+    RCMM32_BIT_PULSE_LEN_MAX,                                           // pulse_0_len_max: here: not used\r
+    0,                                                                  // pause_0_len_min: here: not used\r
+    0,                                                                  // pause_0_len_max: here: not used\r
+    RCMM32_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    RCMM32_ADDRESS_OFFSET + RCMM32_ADDRESS_LEN,                         // address_end:     end of address\r
+    RCMM32_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    RCMM32_COMMAND_OFFSET + RCMM32_COMMAND_LEN,                         // command_end:     end of command\r
+    RCMM32_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    RCMM32_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    RCMM32_LSB,                                                         // lsb_first:       flag: LSB first\r
+    RCMM32_FLAGS                                                        // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_PENTAX_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER pentax_param =\r
+{\r
+    IRMP_PENTAX_PROTOCOL,                                               // protocol:        ir protocol\r
+    PENTAX_PULSE_LEN_MIN,                                               // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    PENTAX_PULSE_LEN_MAX,                                               // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    PENTAX_1_PAUSE_LEN_MIN,                                             // pause_1_len_min: minimum length of pause with bit value 1\r
+    PENTAX_1_PAUSE_LEN_MAX,                                             // pause_1_len_max: maximum length of pause with bit value 1\r
+    PENTAX_PULSE_LEN_MIN,                                               // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    PENTAX_PULSE_LEN_MAX,                                               // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    PENTAX_0_PAUSE_LEN_MIN,                                             // pause_0_len_min: minimum length of pause with bit value 0\r
+    PENTAX_0_PAUSE_LEN_MAX,                                             // pause_0_len_max: maximum length of pause with bit value 0\r
+    PENTAX_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    PENTAX_ADDRESS_OFFSET + PENTAX_ADDRESS_LEN,                         // address_end:     end of address\r
+    PENTAX_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    PENTAX_COMMAND_OFFSET + PENTAX_COMMAND_LEN,                         // command_end:     end of command\r
+    PENTAX_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    PENTAX_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    PENTAX_LSB,                                                         // lsb_first:       flag: LSB first\r
+    PENTAX_FLAGS                                                        // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_ACP24_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER acp24_param =\r
+{\r
+    IRMP_ACP24_PROTOCOL,                                                // protocol:        ir protocol\r
+    ACP24_PULSE_LEN_MIN,                                                // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    ACP24_PULSE_LEN_MAX,                                                // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    ACP24_1_PAUSE_LEN_MIN,                                              // pause_1_len_min: minimum length of pause with bit value 1\r
+    ACP24_1_PAUSE_LEN_MAX,                                              // pause_1_len_max: maximum length of pause with bit value 1\r
+    ACP24_PULSE_LEN_MIN,                                                // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    ACP24_PULSE_LEN_MAX,                                                // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    ACP24_0_PAUSE_LEN_MIN,                                              // pause_0_len_min: minimum length of pause with bit value 0\r
+    ACP24_0_PAUSE_LEN_MAX,                                              // pause_0_len_max: maximum length of pause with bit value 0\r
+    ACP24_ADDRESS_OFFSET,                                               // address_offset:  address offset\r
+    ACP24_ADDRESS_OFFSET + ACP24_ADDRESS_LEN,                           // address_end:     end of address\r
+    ACP24_COMMAND_OFFSET,                                               // command_offset:  command offset\r
+    ACP24_COMMAND_OFFSET + ACP24_COMMAND_LEN,                           // command_end:     end of command\r
+    ACP24_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame\r
+    ACP24_STOP_BIT,                                                     // stop_bit:        flag: frame has stop bit\r
+    ACP24_LSB,                                                          // lsb_first:       flag: LSB first\r
+    ACP24_FLAGS                                                         // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_RADIO1_PROTOCOL == 1\r
+\r
+static const PROGMEM IRMP_PARAMETER radio1_param =\r
+{\r
+    IRMP_RADIO1_PROTOCOL,                                               // protocol:        ir protocol\r
+\r
+    RADIO1_1_PULSE_LEN_MIN,                                             // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    RADIO1_1_PULSE_LEN_MAX,                                             // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    RADIO1_1_PAUSE_LEN_MIN,                                             // pause_1_len_min: minimum length of pause with bit value 1\r
+    RADIO1_1_PAUSE_LEN_MAX,                                             // pause_1_len_max: maximum length of pause with bit value 1\r
+    RADIO1_0_PULSE_LEN_MIN,                                             // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    RADIO1_0_PULSE_LEN_MAX,                                             // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    RADIO1_0_PAUSE_LEN_MIN,                                             // pause_0_len_min: minimum length of pause with bit value 0\r
+    RADIO1_0_PAUSE_LEN_MAX,                                             // pause_0_len_max: maximum length of pause with bit value 0\r
+    RADIO1_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    RADIO1_ADDRESS_OFFSET + RADIO1_ADDRESS_LEN,                         // address_end:     end of address\r
+    RADIO1_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    RADIO1_COMMAND_OFFSET + RADIO1_COMMAND_LEN,                         // command_end:     end of command\r
+    RADIO1_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    RADIO1_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    RADIO1_LSB,                                                         // lsb_first:       flag: LSB first\r
+    RADIO1_FLAGS                                                        // flags:           some flags\r
+};\r
+\r
+#endif\r
+\r
+static uint_fast8_t                             irmp_bit;                   // current bit position\r
+static IRMP_PARAMETER                           irmp_param;\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
-static IRMP_PARAMETER                       irmp_param2;\r
+static IRMP_PARAMETER                           irmp_param2;\r
 #endif\r
 \r
-static volatile uint8_t                     irmp_ir_detected;\r
-static volatile uint8_t                     irmp_protocol;\r
-static volatile uint16_t                    irmp_address;\r
-static volatile uint16_t                    irmp_command;\r
-static volatile uint16_t                    irmp_id;                    // only used for SAMSUNG protocol\r
-static volatile uint8_t                     irmp_flags;\r
-// static volatile uint8_t                  irmp_busy_flag;\r
+static volatile uint_fast8_t                     irmp_ir_detected = FALSE;\r
+static volatile uint_fast8_t                     irmp_protocol;\r
+static volatile uint_fast16_t                    irmp_address;\r
+static volatile uint_fast16_t                    irmp_command;\r
+static volatile uint_fast16_t                    irmp_id;                    // only used for SAMSUNG protocol\r
+static volatile uint_fast8_t                     irmp_flags;\r
+// static volatile uint_fast8_t                  irmp_busy_flag;\r
 \r
 #ifdef ANALYZE\r
 #define input(x)                            (x)\r
-static uint8_t                              IRMP_PIN;\r
+static uint_fast8_t                              IRMP_PIN;\r
+static uint_fast8_t                              radio;\r
 #endif\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
@@ -1269,38 +2039,45 @@ irmp_init (void)
 {\r
 #if defined(PIC_CCS) || defined(PIC_C18)                                // PIC: do nothing\r
 #elif defined (ARM_STM32)                                               // STM32\r
-   GPIO_InitTypeDef     GPIO_InitStructure;\r
-\r
-   /* GPIOx clock enable */\r
- #if defined (ARM_STM32L1XX)\r
-   RCC_AHBPeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
- #elif defined (ARM_STM32F10X)\r
-   RCC_APB2PeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
- #elif defined (ARM_STM32F4XX)\r
-   RCC_AHB1PeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
- #endif\r
-\r
-   /* GPIO Configuration */\r
-   GPIO_InitStructure.GPIO_Pin = IRMP_BIT;\r
- #if defined (ARM_STM32L1XX) || defined (ARM_STM32F4XX)\r
-   GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN;\r
-   GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz;\r
-   GPIO_InitStructure.GPIO_OType = GPIO_OType_PP;\r
-   GPIO_InitStructure.GPIO_PuPd = GPIO_PuPd_NOPULL;\r
- #elif defined (ARM_STM32F10X)\r
-   GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz;\r
-   GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;\r
- #endif\r
-   GPIO_Init(IRMP_PORT, &GPIO_InitStructure);\r
+    GPIO_InitTypeDef     GPIO_InitStructure;\r
+\r
+    /* GPIOx clock enable */\r
+#  if defined (ARM_STM32L1XX)\r
+    RCC_AHBPeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
+#  elif defined (ARM_STM32F10X)\r
+    RCC_APB2PeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
+#  elif defined (ARM_STM32F4XX)\r
+    RCC_AHB1PeriphClockCmd(IRMP_PORT_RCC, ENABLE);\r
+#  endif\r
+\r
+    /* GPIO Configuration */\r
+    GPIO_InitStructure.GPIO_Pin = IRMP_BIT;\r
+#  if defined (ARM_STM32L1XX) || defined (ARM_STM32F4XX)\r
+    GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN;\r
+    GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz;\r
+    GPIO_InitStructure.GPIO_OType = GPIO_OType_PP;\r
+    GPIO_InitStructure.GPIO_PuPd = GPIO_PuPd_NOPULL;\r
+#  elif defined (ARM_STM32F10X)\r
+    GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz;\r
+    GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;\r
+#  endif\r
+    GPIO_Init(IRMP_PORT, &GPIO_InitStructure);\r
+\r
 #elif defined(STELLARIS_ARM_CORTEX_M4)\r
-     // Enable the GPIO port\r
-     ROM_SysCtlPeripheralEnable(IRMP_PORT_PERIPH);\r
-\r
-     // Set as an input\r
-     ROM_GPIODirModeSet(IRMP_PORT_BASE, IRMP_PORT_PIN, GPIO_DIR_MODE_IN);\r
-     ROM_GPIOPadConfigSet(IRMP_PORT_BASE, IRMP_PORT_PIN,\r
-                          GPIO_STRENGTH_2MA,\r
-                          GPIO_PIN_TYPE_STD_WPU);\r
+    // Enable the GPIO port\r
+    ROM_SysCtlPeripheralEnable(IRMP_PORT_PERIPH);\r
+\r
+    // Set as an input\r
+    ROM_GPIODirModeSet(IRMP_PORT_BASE, IRMP_PORT_PIN, GPIO_DIR_MODE_IN);\r
+    ROM_GPIOPadConfigSet(IRMP_PORT_BASE, IRMP_PORT_PIN, GPIO_STRENGTH_2MA, GPIO_PIN_TYPE_STD_WPU);\r
+\r
+#elif defined(__SDCC_stm8)                                              // STM8\r
+    IRMP_GPIO_STRUCT->DDR &= ~(1<<IRMP_BIT);                            // pin is input\r
+    IRMP_GPIO_STRUCT->CR1 |= (1<<IRMP_BIT);                             // activate pullup\r
+\r
+#elif defined (TEENSY_ARM_CORTEX_M4)                                   // TEENSY\r
+    pinMode(IRMP_PIN, INPUT);\r
+\r
 #else                                                                   // AVR\r
     IRMP_PORT &= ~(1<<IRMP_BIT);                                        // deactivate pullup\r
     IRMP_DDR &= ~(1<<IRMP_BIT);                                         // set pin to input\r
@@ -1318,198 +2095,226 @@ irmp_init (void)
  *  @return    TRUE: successful, FALSE: failed\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-uint8_t\r
+uint_fast8_t\r
 irmp_get_data (IRMP_DATA * irmp_data_p)\r
 {\r
-    uint8_t   rtc = FALSE;\r
+    uint_fast8_t   rtc = FALSE;\r
 \r
     if (irmp_ir_detected)\r
     {\r
-        switch (irmp_protocol)\r
-        {\r
+       switch (irmp_protocol)\r
+       {\r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-            case IRMP_SAMSUNG_PROTOCOL:\r
-                if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
-                {\r
-                    irmp_command &= 0xff;\r
-                    irmp_command |= irmp_id << 8;\r
-                    rtc = TRUE;\r
-                }\r
-                break;\r
+           case IRMP_SAMSUNG_PROTOCOL:\r
+               if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
+               {\r
+                   irmp_command &= 0xff;\r
+                   irmp_command |= irmp_id << 8;\r
+                   rtc = TRUE;\r
+               }\r
+               break;\r
+\r
+#if IRMP_SUPPORT_SAMSUNG48_PROTOCOL == 1\r
+           case IRMP_SAMSUNG48_PROTOCOL:\r
+               irmp_command = (irmp_command & 0x00FF) | ((irmp_id & 0x00FF) << 8);\r
+               rtc = TRUE;\r
+               break;\r
 #endif\r
+#endif\r
+\r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
-            case IRMP_NEC_PROTOCOL:\r
-                if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
-                {\r
-                    irmp_command &= 0xff;\r
-                    rtc = TRUE;\r
-                }\r
-                else if (irmp_address == 0x87EE)\r
-                {\r
-                    ANALYZE_PRINTF ("Switching to APPLE protocol\n");\r
-                    irmp_protocol = IRMP_APPLE_PROTOCOL;\r
-                    irmp_address = (irmp_command & 0xFF00) >> 8;\r
-                    irmp_command &= 0x00FF;\r
-                    rtc = TRUE;\r
-                }\r
-                break;\r
+           case IRMP_NEC_PROTOCOL:\r
+               if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
+               {\r
+                   irmp_command &= 0xff;\r
+                   rtc = TRUE;\r
+               }\r
+               else if (irmp_address == 0x87EE)\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("Switching to APPLE protocol\n");\r
+#endif // ANALYZE\r
+                   irmp_protocol = IRMP_APPLE_PROTOCOL;\r
+                   irmp_address = (irmp_command & 0xFF00) >> 8;\r
+                   irmp_command &= 0x00FF;\r
+                   rtc = TRUE;\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_BOSE_PROTOCOL == 1\r
-            case IRMP_BOSE_PROTOCOL:\r
-                if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
-                {\r
-                    irmp_command &= 0xff;\r
-                    rtc = TRUE;\r
-                }\r
-                break;\r
+           case IRMP_BOSE_PROTOCOL:\r
+               if ((irmp_command >> 8) == (~irmp_command & 0x00FF))\r
+               {\r
+                   irmp_command &= 0xff;\r
+                   rtc = TRUE;\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_SIEMENS_OR_RUWIDO_PROTOCOL == 1\r
-            case IRMP_SIEMENS_PROTOCOL:\r
-            case IRMP_RUWIDO_PROTOCOL:\r
-                if (((irmp_command >> 1) & 0x0001) == (~irmp_command & 0x0001))\r
-                {\r
-                    irmp_command >>= 1;\r
-                    rtc = TRUE;\r
-                }\r
-                break;\r
+           case IRMP_SIEMENS_PROTOCOL:\r
+           case IRMP_RUWIDO_PROTOCOL:\r
+               if (((irmp_command >> 1) & 0x0001) == (~irmp_command & 0x0001))\r
+               {\r
+                   irmp_command >>= 1;\r
+                   rtc = TRUE;\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_KATHREIN_PROTOCOL == 1\r
-            case IRMP_KATHREIN_PROTOCOL:\r
-                if (irmp_command != 0x0000)\r
-                {\r
-                    rtc = TRUE;\r
-                }\r
-                break;\r
+           case IRMP_KATHREIN_PROTOCOL:\r
+               if (irmp_command != 0x0000)\r
+               {\r
+                   rtc = TRUE;\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-            case IRMP_RC5_PROTOCOL:\r
-                irmp_address &= ~0x20;                              // clear toggle bit\r
-                rtc = TRUE;\r
-                break;\r
+           case IRMP_RC5_PROTOCOL:\r
+               irmp_address &= ~0x20;                              // clear toggle bit\r
+               rtc = TRUE;\r
+               break;\r
+#endif\r
+#if IRMP_SUPPORT_S100_PROTOCOL == 1\r
+           case IRMP_S100_PROTOCOL:\r
+               irmp_address &= ~0x20;                              // clear toggle bit\r
+               rtc = TRUE;\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_IR60_PROTOCOL == 1\r
-            case IRMP_IR60_PROTOCOL:\r
-                if (irmp_command != 0x007d)                         // 0x007d (== 62<<1 + 1) is start instruction frame\r
-                {\r
-                    rtc = TRUE;\r
-                }\r
-                else\r
-                {\r
-                    ANALYZE_PRINTF("Info IR60: got start instruction frame\n");\r
-                }\r
-                break;\r
+           case IRMP_IR60_PROTOCOL:\r
+               if (irmp_command != 0x007d)                         // 0x007d (== 62<<1 + 1) is start instruction frame\r
+               {\r
+                   rtc = TRUE;\r
+               }\r
+               else\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF("Info IR60: got start instruction frame\n");\r
+#endif // ANALYZE\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-            case IRMP_RCCAR_PROTOCOL:\r
-                // frame in irmp_data:\r
-                // Bit 12 11 10 9  8  7  6  5  4  3  2  1  0\r
-                //     V  D7 D6 D5 D4 D3 D2 D1 D0 A1 A0 C1 C0   //         10 9  8  7  6  5  4  3  2  1  0\r
-                irmp_address = (irmp_command & 0x000C) >> 2;    // addr:   0  0  0  0  0  0  0  0  0  A1 A0\r
-                irmp_command = ((irmp_command & 0x1000) >> 2) | // V-Bit:  V  0  0  0  0  0  0  0  0  0  0\r
-                               ((irmp_command & 0x0003) << 8) | // C-Bits: 0  C1 C0 0  0  0  0  0  0  0  0\r
-                               ((irmp_command & 0x0FF0) >> 4);  // D-Bits:          D7 D6 D5 D4 D3 D2 D1 D0\r
-                rtc = TRUE;                                     // Summe:  V  C1 C0 D7 D6 D5 D4 D3 D2 D1 D0\r
-                break;\r
+           case IRMP_RCCAR_PROTOCOL:\r
+               // frame in irmp_data:\r
+               // Bit 12 11 10 9  8  7  6  5  4  3  2  1  0\r
+               //     V  D7 D6 D5 D4 D3 D2 D1 D0 A1 A0 C1 C0   //         10 9  8  7  6  5  4  3  2  1  0\r
+               irmp_address = (irmp_command & 0x000C) >> 2;    // addr:   0  0  0  0  0  0  0  0  0  A1 A0\r
+               irmp_command = ((irmp_command & 0x1000) >> 2) | // V-Bit:  V  0  0  0  0  0  0  0  0  0  0\r
+                              ((irmp_command & 0x0003) << 8) | // C-Bits: 0  C1 C0 0  0  0  0  0  0  0  0\r
+                              ((irmp_command & 0x0FF0) >> 4);  // D-Bits:          D7 D6 D5 D4 D3 D2 D1 D0\r
+               rtc = TRUE;                                     // Summe:  V  C1 C0 D7 D6 D5 D4 D3 D2 D1 D0\r
+               break;\r
 #endif\r
 \r
 #if IRMP_SUPPORT_NETBOX_PROTOCOL == 1                           // squeeze code to 8 bit, upper bit indicates release-key\r
-            case IRMP_NETBOX_PROTOCOL:\r
-                if (irmp_command & 0x1000)                      // last bit set?\r
-                {\r
-                    if ((irmp_command & 0x1f) == 0x15)          // key pressed: 101 01 (LSB)\r
-                    {\r
-                        irmp_command >>= 5;\r
-                        irmp_command &= 0x7F;\r
-                        rtc = TRUE;\r
-                    }\r
-                    else if ((irmp_command & 0x1f) == 0x10)     // key released: 000 01 (LSB)\r
-                    {\r
-                        irmp_command >>= 5;\r
-                        irmp_command |= 0x80;\r
-                        rtc = TRUE;\r
-                    }\r
-                    else\r
-                    {\r
-                        ANALYZE_PRINTF("error NETBOX: bit6/7 must be 0/1\n");\r
-                    }\r
-                }\r
-                else\r
-                {\r
-                    ANALYZE_PRINTF("error NETBOX: last bit not set\n");\r
-                }\r
-                break;\r
+           case IRMP_NETBOX_PROTOCOL:\r
+               if (irmp_command & 0x1000)                      // last bit set?\r
+               {\r
+                   if ((irmp_command & 0x1f) == 0x15)          // key pressed: 101 01 (LSB)\r
+                   {\r
+                       irmp_command >>= 5;\r
+                       irmp_command &= 0x7F;\r
+                       rtc = TRUE;\r
+                   }\r
+                   else if ((irmp_command & 0x1f) == 0x10)     // key released: 000 01 (LSB)\r
+                   {\r
+                       irmp_command >>= 5;\r
+                       irmp_command |= 0x80;\r
+                       rtc = TRUE;\r
+                   }\r
+                   else\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF("error NETBOX: bit6/7 must be 0/1\n");\r
+#endif // ANALYZE\r
+                   }\r
+               }\r
+               else\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF("error NETBOX: last bit not set\n");\r
+#endif // ANALYZE\r
+               }\r
+               break;\r
 #endif\r
 #if IRMP_SUPPORT_LEGO_PROTOCOL == 1\r
-            case IRMP_LEGO_PROTOCOL:\r
-            {\r
-                uint8_t crc = 0x0F ^ ((irmp_command & 0xF000) >> 12) ^ ((irmp_command & 0x0F00) >> 8) ^ ((irmp_command & 0x00F0) >> 4);\r
-\r
-                if ((irmp_command & 0x000F) == crc)\r
-                {\r
-                    irmp_command >>= 4;\r
-                    rtc = TRUE;\r
-                }\r
-                else\r
-                {\r
-                    ANALYZE_PRINTF ("CRC error in LEGO protocol\n");\r
-                    // rtc = TRUE;                              // don't accept codes with CRC errors\r
-                }\r
-                break;\r
-            }\r
-#endif\r
-            default:\r
-            {\r
-                rtc = TRUE;\r
-                break;\r
-            }\r
-        }\r
-\r
-        if (rtc)\r
-        {\r
-            irmp_data_p->protocol = irmp_protocol;\r
-            irmp_data_p->address = irmp_address;\r
-            irmp_data_p->command = irmp_command;\r
-            irmp_data_p->flags   = irmp_flags;\r
-            irmp_command = 0;\r
-            irmp_address = 0;\r
-            irmp_flags   = 0;\r
-        }\r
-\r
-        irmp_ir_detected = FALSE;\r
+           case IRMP_LEGO_PROTOCOL:\r
+           {\r
+               uint_fast8_t crc = 0x0F ^ ((irmp_command & 0xF000) >> 12) ^ ((irmp_command & 0x0F00) >> 8) ^ ((irmp_command & 0x00F0) >> 4);\r
+\r
+               if ((irmp_command & 0x000F) == crc)\r
+               {\r
+                   irmp_command >>= 4;\r
+                   rtc = TRUE;\r
+               }\r
+               else\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("CRC error in LEGO protocol\n");\r
+#endif // ANALYZE\r
+                   // rtc = TRUE;                              // don't accept codes with CRC errors\r
+               }\r
+               break;\r
+           }\r
+#endif\r
+\r
+           default:\r
+           {\r
+               rtc = TRUE;\r
+               break;\r
+           }\r
+       }\r
+\r
+       if (rtc)\r
+       {\r
+           irmp_data_p->protocol = irmp_protocol;\r
+           irmp_data_p->address = irmp_address;\r
+           irmp_data_p->command = irmp_command;\r
+           irmp_data_p->flags   = irmp_flags;\r
+           irmp_command = 0;\r
+           irmp_address = 0;\r
+           irmp_flags   = 0;\r
+       }\r
+\r
+       irmp_ir_detected = FALSE;\r
     }\r
 \r
     return rtc;\r
 }\r
 \r
-// uint8_t\r
-// irmp_is_busy (void)\r
-// {\r
-//     return irmp_busy_flag;\r
-// }\r
-\r
 #if IRMP_USE_CALLBACK == 1\r
 void\r
-irmp_set_callback_ptr (void (*cb)(uint8_t))\r
+irmp_set_callback_ptr (void (*cb)(uint_fast8_t))\r
 {\r
     irmp_callback_ptr = cb;\r
 }\r
 #endif // IRMP_USE_CALLBACK == 1\r
 \r
 // these statics must not be volatile, because they are only used by irmp_store_bit(), which is called by irmp_ISR()\r
-static uint16_t irmp_tmp_address;                                                       // ir address\r
-static uint16_t irmp_tmp_command;                                                       // ir command\r
+static uint_fast16_t irmp_tmp_address;                                      // ir address\r
+static uint_fast16_t irmp_tmp_command;                                      // ir command\r
 \r
-#if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1) || IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-static uint16_t irmp_tmp_address2;                                                      // ir address\r
-static uint16_t irmp_tmp_command2;                                                      // ir command\r
+#if (IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)) || IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
+static uint_fast16_t irmp_tmp_address2;                                     // ir address\r
+static uint_fast16_t irmp_tmp_command2;                                     // ir command\r
+#endif\r
+\r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+static uint_fast16_t irmp_lgair_address;                                    // ir address\r
+static uint_fast16_t irmp_lgair_command;                                    // ir command\r
 #endif\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-static uint16_t irmp_tmp_id;                                                            // ir id (only SAMSUNG)\r
+static uint_fast16_t irmp_tmp_id;                                           // ir id (only SAMSUNG)\r
 #endif\r
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
-static uint8_t  xor_check[6];                                                           // check kaseikyo "parity" bits\r
-static uint8_t  genre2;                                                                 // save genre2 bits here, later copied to MSB in flags\r
+static uint8_t      xor_check[6];                                           // check kaseikyo "parity" bits\r
+static uint_fast8_t genre2;                                                 // save genre2 bits here, later copied to MSB in flags\r
+#endif\r
+\r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+static uint_fast8_t  parity;                                                // number of '1' of the first 14 bits, check if even.\r
 #endif\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
@@ -1519,48 +2324,155 @@ static uint8_t  genre2;
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
 // verhindert, dass irmp_store_bit() inline compiliert wird:\r
-// static void irmp_store_bit (uint8_t) __attribute__ ((noinline));\r
+// static void irmp_store_bit (uint_fast8_t) __attribute__ ((noinline));\r
 \r
 static void\r
-irmp_store_bit (uint8_t value)\r
+irmp_store_bit (uint_fast8_t value)\r
 {\r
+#if IRMP_SUPPORT_ACP24_PROTOCOL == 1\r
+    if (irmp_param.protocol == IRMP_ACP24_PROTOCOL)                                                 // squeeze 64 bits into 16 bits:\r
+    {\r
+       if (value)\r
+       {\r
+           // ACP24-Frame:\r
+           //           1         2         3         4         5         6\r
+           // 0123456789012345678901234567890123456789012345678901234567890123456789\r
+           // N VVMMM    ? ???    t vmA x                 y                     TTTT\r
+           //\r
+           // irmp_data_p->command:\r
+           //\r
+           //         5432109876543210\r
+           //         NAVVvMMMmtxyTTTT\r
+\r
+           switch (irmp_bit)\r
+           {\r
+               case  0: irmp_tmp_command |= (1<<15); break;                                        // N\r
+               case  2: irmp_tmp_command |= (1<<13); break;                                        // V\r
+               case  3: irmp_tmp_command |= (1<<12); break;                                        // V\r
+               case  4: irmp_tmp_command |= (1<<10); break;                                        // M\r
+               case  5: irmp_tmp_command |= (1<< 9); break;                                        // M\r
+               case  6: irmp_tmp_command |= (1<< 8); break;                                        // M\r
+               case 20: irmp_tmp_command |= (1<< 6); break;                                        // t\r
+               case 22: irmp_tmp_command |= (1<<11); break;                                        // v\r
+               case 23: irmp_tmp_command |= (1<< 7); break;                                        // m\r
+               case 24: irmp_tmp_command |= (1<<14); break;                                        // A\r
+               case 26: irmp_tmp_command |= (1<< 5); break;                                        // x\r
+               case 44: irmp_tmp_command |= (1<< 4); break;                                        // y\r
+               case 66: irmp_tmp_command |= (1<< 3); break;                                        // T\r
+               case 67: irmp_tmp_command |= (1<< 2); break;                                        // T\r
+               case 68: irmp_tmp_command |= (1<< 1); break;                                        // T\r
+               case 69: irmp_tmp_command |= (1<< 0); break;                                        // T\r
+           }\r
+       }\r
+    }\r
+    else\r
+#endif // IRMP_SUPPORT_ACP24_PROTOCOL\r
+\r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+    if (irmp_param.protocol == IRMP_ORTEK_PROTOCOL)\r
+    {\r
+       if (irmp_bit < 14)\r
+       {\r
+           if (value)\r
+           {\r
+               parity++;\r
+           }\r
+       }\r
+       else if (irmp_bit == 14)\r
+       {\r
+           if (value)                                                                                      // value == 1: even parity\r
+           {\r
+               if (parity & 0x01)\r
+               {\r
+                   parity = PARITY_CHECK_FAILED;\r
+               }\r
+               else\r
+               {\r
+                   parity = PARITY_CHECK_OK;\r
+               }\r
+           }\r
+           else\r
+           {\r
+               if (parity & 0x01)                                                                          // value == 0: odd parity\r
+               {\r
+                   parity = PARITY_CHECK_OK;\r
+               }\r
+               else\r
+               {\r
+                   parity = PARITY_CHECK_FAILED;\r
+               }\r
+           }\r
+       }\r
+    }\r
+    else\r
+#endif\r
+    {\r
+       ;\r
+    }\r
+\r
 #if IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1\r
     if (irmp_bit == 0 && irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL)\r
     {\r
-        first_bit = value;\r
+       first_bit = value;\r
     }\r
     else\r
 #endif\r
 \r
     if (irmp_bit >= irmp_param.address_offset && irmp_bit < irmp_param.address_end)\r
     {\r
-        if (irmp_param.lsb_first)\r
-        {\r
-            irmp_tmp_address |= (((uint16_t) (value)) << (irmp_bit - irmp_param.address_offset));   // CV wants cast\r
-        }\r
-        else\r
-        {\r
-            irmp_tmp_address <<= 1;\r
-            irmp_tmp_address |= value;\r
-        }\r
+       if (irmp_param.lsb_first)\r
+       {\r
+           irmp_tmp_address |= (((uint_fast16_t) (value)) << (irmp_bit - irmp_param.address_offset));   // CV wants cast\r
+       }\r
+       else\r
+       {\r
+           irmp_tmp_address <<= 1;\r
+           irmp_tmp_address |= value;\r
+       }\r
     }\r
     else if (irmp_bit >= irmp_param.command_offset && irmp_bit < irmp_param.command_end)\r
     {\r
-        if (irmp_param.lsb_first)\r
-        {\r
-            irmp_tmp_command |= (((uint16_t) (value)) << (irmp_bit - irmp_param.command_offset));   // CV wants cast\r
-        }\r
-        else\r
-        {\r
-            irmp_tmp_command <<= 1;\r
-            irmp_tmp_command |= value;\r
-        }\r
+       if (irmp_param.lsb_first)\r
+       {\r
+#if IRMP_SUPPORT_SAMSUNG48_PROTOCOL == 1\r
+           if (irmp_param.protocol == IRMP_SAMSUNG48_PROTOCOL && irmp_bit >= 32)\r
+           {\r
+               irmp_tmp_id |= (((uint_fast16_t) (value)) << (irmp_bit - 32));   // CV wants cast\r
+           }\r
+           else\r
+#endif\r
+           {\r
+               irmp_tmp_command |= (((uint_fast16_t) (value)) << (irmp_bit - irmp_param.command_offset));   // CV wants cast\r
+           }\r
+       }\r
+       else\r
+       {\r
+           irmp_tmp_command <<= 1;\r
+           irmp_tmp_command |= value;\r
+       }\r
+    }\r
+\r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+    if (irmp_param.protocol == IRMP_NEC_PROTOCOL || irmp_param.protocol == IRMP_NEC42_PROTOCOL)\r
+    {\r
+       if (irmp_bit < 8)\r
+       {\r
+           irmp_lgair_address <<= 1;                                                               // LGAIR uses MSB\r
+           irmp_lgair_address |= value;\r
+       }\r
+       else if (irmp_bit < 24)\r
+       {\r
+           irmp_lgair_command <<= 1;                                                               // LGAIR uses MSB\r
+           irmp_lgair_command |= value;\r
+       }\r
     }\r
+    // NO else!\r
+#endif\r
 \r
 #if IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
     if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && irmp_bit >= 13 && irmp_bit < 26)\r
     {\r
-        irmp_tmp_address2 |= (((uint16_t) (value)) << (irmp_bit - 13));                             // CV wants cast\r
+       irmp_tmp_address2 |= (((uint_fast16_t) (value)) << (irmp_bit - 13));                             // CV wants cast\r
     }\r
     else\r
 #endif\r
@@ -1568,7 +2480,7 @@ irmp_store_bit (uint8_t value)
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
     if (irmp_param.protocol == IRMP_SAMSUNG_PROTOCOL && irmp_bit >= SAMSUNG_ID_OFFSET && irmp_bit < SAMSUNG_ID_OFFSET + SAMSUNG_ID_LEN)\r
     {\r
-        irmp_tmp_id |= (((uint16_t) (value)) << (irmp_bit - SAMSUNG_ID_OFFSET));                    // store with LSB first\r
+       irmp_tmp_id |= (((uint_fast16_t) (value)) << (irmp_bit - SAMSUNG_ID_OFFSET));                    // store with LSB first\r
     }\r
     else\r
 #endif\r
@@ -1576,31 +2488,31 @@ irmp_store_bit (uint8_t value)
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
     if (irmp_param.protocol == IRMP_KASEIKYO_PROTOCOL)\r
     {\r
-        if (irmp_bit >= 20 && irmp_bit < 24)\r
-        {\r
-            irmp_tmp_command |= (((uint16_t) (value)) << (irmp_bit - 8));       // store 4 system bits (genre 1) in upper nibble with LSB first\r
-        }\r
-        else if (irmp_bit >= 24 && irmp_bit < 28)\r
-        {\r
-            genre2 |= (((uint8_t) (value)) << (irmp_bit - 20));                 // store 4 system bits (genre 2) in upper nibble with LSB first\r
-        }\r
-\r
-        if (irmp_bit < KASEIKYO_COMPLETE_DATA_LEN)\r
-        {\r
-            if (value)\r
-            {\r
-                xor_check[irmp_bit / 8] |= 1 << (irmp_bit % 8);\r
-            }\r
-            else\r
-            {\r
-                xor_check[irmp_bit / 8] &= ~(1 << (irmp_bit % 8));\r
-            }\r
-        }\r
+       if (irmp_bit >= 20 && irmp_bit < 24)\r
+       {\r
+           irmp_tmp_command |= (((uint_fast16_t) (value)) << (irmp_bit - 8));       // store 4 system bits (genre 1) in upper nibble with LSB first\r
+       }\r
+       else if (irmp_bit >= 24 && irmp_bit < 28)\r
+       {\r
+           genre2 |= (((uint_fast8_t) (value)) << (irmp_bit - 20));                 // store 4 system bits (genre 2) in upper nibble with LSB first\r
+       }\r
+\r
+       if (irmp_bit < KASEIKYO_COMPLETE_DATA_LEN)\r
+       {\r
+           if (value)\r
+           {\r
+               xor_check[irmp_bit / 8] |= 1 << (irmp_bit % 8);\r
+           }\r
+           else\r
+           {\r
+               xor_check[irmp_bit / 8] &= ~(1 << (irmp_bit % 8));\r
+           }\r
+       }\r
     }\r
     else\r
 #endif\r
     {\r
-        ;\r
+       ;\r
     }\r
 \r
     irmp_bit++;\r
@@ -1614,26 +2526,26 @@ irmp_store_bit (uint8_t value)
  */\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
 static void\r
-irmp_store_bit2 (uint8_t value)\r
+irmp_store_bit2 (uint_fast8_t value)\r
 {\r
-    uint8_t irmp_bit2;\r
+    uint_fast8_t irmp_bit2;\r
 \r
     if (irmp_param.protocol)\r
     {\r
-        irmp_bit2 = irmp_bit - 2;\r
+       irmp_bit2 = irmp_bit - 2;\r
     }\r
     else\r
     {\r
-        irmp_bit2 = irmp_bit - 1;\r
+       irmp_bit2 = irmp_bit - 1;\r
     }\r
 \r
     if (irmp_bit2 >= irmp_param2.address_offset && irmp_bit2 < irmp_param2.address_end)\r
     {\r
-        irmp_tmp_address2 |= (((uint16_t) (value)) << (irmp_bit2 - irmp_param2.address_offset));   // CV wants cast\r
+       irmp_tmp_address2 |= (((uint_fast16_t) (value)) << (irmp_bit2 - irmp_param2.address_offset));   // CV wants cast\r
     }\r
     else if (irmp_bit2 >= irmp_param2.command_offset && irmp_bit2 < irmp_param2.command_end)\r
     {\r
-        irmp_tmp_command2 |= (((uint16_t) (value)) << (irmp_bit2 - irmp_param2.command_offset));   // CV wants cast\r
+       irmp_tmp_command2 |= (((uint_fast16_t) (value)) << (irmp_bit2 - irmp_param2.command_offset));   // CV wants cast\r
     }\r
 }\r
 #endif // IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
@@ -1643,48 +2555,53 @@ irmp_store_bit2 (uint8_t value)
  *  @details  ISR routine, called 10000 times per second\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-uint8_t\r
+uint_fast8_t\r
 irmp_ISR (void)\r
 {\r
-    static uint8_t      irmp_start_bit_detected;                                // flag: start bit detected\r
-    static uint8_t      wait_for_space;                                         // flag: wait for data bit space\r
-    static uint8_t      wait_for_start_space;                                   // flag: wait for start bit space\r
-    static uint8_t      irmp_pulse_time;                                        // count bit time for pulse\r
-    static PAUSE_LEN    irmp_pause_time;                                        // count bit time for pause\r
-    static uint16_t     last_irmp_address = 0xFFFF;                             // save last irmp address to recognize key repetition\r
-    static uint16_t     last_irmp_command = 0xFFFF;                             // save last irmp command to recognize key repetition\r
-    static uint16_t     repetition_len;                                         // SIRCS repeats frame 2-5 times with 45 ms pause\r
-    static uint8_t      repetition_frame_number;\r
+    static uint_fast8_t     irmp_start_bit_detected;                                // flag: start bit detected\r
+    static uint_fast8_t     wait_for_space;                                         // flag: wait for data bit space\r
+    static uint_fast8_t     wait_for_start_space;                                   // flag: wait for start bit space\r
+    static uint_fast8_t     irmp_pulse_time;                                        // count bit time for pulse\r
+    static PAUSE_LEN        irmp_pause_time;                                        // count bit time for pause\r
+    static uint_fast16_t    last_irmp_address = 0xFFFF;                             // save last irmp address to recognize key repetition\r
+    static uint_fast16_t    last_irmp_command = 0xFFFF;                             // save last irmp command to recognize key repetition\r
+    static uint_fast16_t    key_repetition_len;                                     // SIRCS repeats frame 2-5 times with 45 ms pause\r
+    static uint_fast8_t     repetition_frame_number;\r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-    static uint16_t     last_irmp_denon_command;                                // save last irmp command to recognize DENON frame repetition\r
+    static uint_fast16_t    last_irmp_denon_command;                                // save last irmp command to recognize DENON frame repetition\r
+    static uint_fast16_t    denon_repetition_len = 0xFFFF;                          // denon repetition len of 2nd auto generated frame\r
 #endif\r
-#if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-    static uint8_t      rc5_cmd_bit6;                                           // bit 6 of RC5 command is the inverted 2nd start bit\r
+#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_S100_PROTOCOL == 1\r
+    static uint_fast8_t     rc5_cmd_bit6;                                           // bit 6 of RC5 command is the inverted 2nd start bit\r
 #endif\r
 #if IRMP_SUPPORT_MANCHESTER == 1\r
-    static PAUSE_LEN    last_pause;                                             // last pause value\r
+    static PAUSE_LEN        last_pause;                                             // last pause value\r
 #endif\r
 #if IRMP_SUPPORT_MANCHESTER == 1 || IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
-    static uint8_t      last_value;                                             // last bit value\r
+    static uint_fast8_t     last_value;                                             // last bit value\r
 #endif\r
-    uint8_t             irmp_input;                                             // input value\r
+    uint_fast8_t            irmp_input;                                             // input value\r
 \r
 #ifdef ANALYZE\r
     time_counter++;\r
-#endif\r
+#endif // ANALYZE\r
 \r
+#if defined(__SDCC_stm8)\r
+    irmp_input = input(IRMP_GPIO_STRUCT->IDR)\r
+#else\r
     irmp_input = input(IRMP_PIN);\r
+#endif\r
 \r
 #if IRMP_USE_CALLBACK == 1\r
     if (irmp_callback_ptr)\r
     {\r
-        static uint8_t last_inverted_input;\r
+       static uint_fast8_t last_inverted_input;\r
 \r
-        if (last_inverted_input != !irmp_input)\r
-        {\r
-            (*irmp_callback_ptr) (! irmp_input);\r
-            last_inverted_input = !irmp_input;\r
-        }\r
+       if (last_inverted_input != !irmp_input)\r
+       {\r
+           (*irmp_callback_ptr) (! irmp_input);\r
+           last_inverted_input = !irmp_input;\r
+       }\r
     }\r
 #endif // IRMP_USE_CALLBACK == 1\r
 \r
@@ -1692,1557 +2609,2236 @@ irmp_ISR (void)
 \r
     if (! irmp_ir_detected)                                                     // ir code already detected?\r
     {                                                                           // no...\r
-        if (! irmp_start_bit_detected)                                          // start bit detected?\r
-        {                                                                       // no...\r
-            if (! irmp_input)                                                   // receiving burst?\r
-            {                                                                   // yes...\r
+       if (! irmp_start_bit_detected)                                          // start bit detected?\r
+       {                                                                       // no...\r
+           if (! irmp_input)                                                   // receiving burst?\r
+           {                                                                   // yes...\r
 //              irmp_busy_flag = TRUE;\r
 #ifdef ANALYZE\r
-                if (! irmp_pulse_time)\r
-                {\r
-                    ANALYZE_PRINTF("%8.3fms [starting pulse]\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
-                }\r
-#endif\r
-                irmp_pulse_time++;                                              // increment counter\r
-            }\r
-            else\r
-            {                                                                   // no...\r
-                if (irmp_pulse_time)                                            // it's dark....\r
-                {                                                               // set flags for counting the time of darkness...\r
-                    irmp_start_bit_detected = 1;\r
-                    wait_for_start_space    = 1;\r
-                    wait_for_space          = 0;\r
-                    irmp_tmp_command        = 0;\r
-                    irmp_tmp_address        = 0;\r
+               if (! irmp_pulse_time)\r
+               {\r
+                   ANALYZE_PRINTF("%8.3fms [starting pulse]\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
+               }\r
+#endif // ANALYZE\r
+               irmp_pulse_time++;                                              // increment counter\r
+           }\r
+           else\r
+           {                                                                   // no...\r
+               if (irmp_pulse_time)                                            // it's dark....\r
+               {                                                               // set flags for counting the time of darkness...\r
+                   irmp_start_bit_detected = 1;\r
+                   wait_for_start_space    = 1;\r
+                   wait_for_space          = 0;\r
+                   irmp_tmp_command        = 0;\r
+                   irmp_tmp_address        = 0;\r
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
-                    genre2                  = 0;\r
+                   genre2                  = 0;\r
+#endif\r
+#if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
+                   irmp_tmp_id = 0;\r
 #endif\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1) || IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-                    irmp_tmp_command2       = 0;\r
-                    irmp_tmp_address2       = 0;\r
+                   irmp_tmp_command2       = 0;\r
+                   irmp_tmp_address2       = 0;\r
 #endif\r
-\r
-                    irmp_bit                = 0xff;\r
-                    irmp_pause_time         = 1;                                // 1st pause: set to 1, not to 0!\r
-#if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-                    rc5_cmd_bit6            = 0;                                // fm 2010-03-07: bugfix: reset it after incomplete RC5 frame!\r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+                   irmp_lgair_command      = 0;\r
+                   irmp_lgair_address      = 0;\r
+#endif\r
+                   irmp_bit                = 0xff;\r
+                   irmp_pause_time         = 1;                                // 1st pause: set to 1, not to 0!\r
+#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_S100_PROTOCOL == 1\r
+                   rc5_cmd_bit6            = 0;                                // fm 2010-03-07: bugfix: reset it after incomplete RC5 frame!\r
 #endif\r
-                }\r
-                else\r
-                {\r
-                    if (repetition_len < 0xFFFF)                                // avoid overflow of counter\r
-                    {\r
-                        repetition_len++;\r
+               }\r
+               else\r
+               {\r
+                   if (key_repetition_len < 0xFFFF)                            // avoid overflow of counter\r
+                   {\r
+                       key_repetition_len++;\r
 \r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-                        if (repetition_len >= DENON_AUTO_REPETITION_PAUSE_LEN && last_irmp_denon_command != 0)\r
-                        {\r
-                            ANALYZE_PRINTF ("%8.3fms error 6: did not receive inverted command repetition\n",\r
-                                            (double) (time_counter * 1000) / F_INTERRUPTS);\r
-                            last_irmp_denon_command = 0;\r
-                        }\r
+                       if (denon_repetition_len < 0xFFFF)                      // avoid overflow of counter\r
+                       {\r
+                           denon_repetition_len++;\r
+\r
+                           if (denon_repetition_len >= DENON_AUTO_REPETITION_PAUSE_LEN && last_irmp_denon_command != 0)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("%8.3fms warning: did not receive inverted command repetition\n",\r
+                                               (double) (time_counter * 1000) / F_INTERRUPTS);\r
+#endif // ANALYZE\r
+                               last_irmp_denon_command = 0;\r
+                               denon_repetition_len = 0xFFFF;\r
+                           }\r
+                       }\r
 #endif // IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-                    }\r
-                }\r
-            }\r
-        }\r
-        else\r
-        {\r
-            if (wait_for_start_space)                                           // we have received start bit...\r
-            {                                                                   // ...and are counting the time of darkness\r
-                if (irmp_input)                                                 // still dark?\r
-                {                                                               // yes\r
-                    irmp_pause_time++;                                          // increment counter\r
+                   }\r
+               }\r
+           }\r
+       }\r
+       else\r
+       {\r
+           if (wait_for_start_space)                                           // we have received start bit...\r
+           {                                                                   // ...and are counting the time of darkness\r
+               if (irmp_input)                                                 // still dark?\r
+               {                                                               // yes\r
+                   irmp_pause_time++;                                          // increment counter\r
 \r
 #if IRMP_SUPPORT_NIKON_PROTOCOL == 1\r
-                    if (((irmp_pulse_time < NIKON_START_BIT_PULSE_LEN_MIN || irmp_pulse_time > NIKON_START_BIT_PULSE_LEN_MAX) && irmp_pause_time > IRMP_TIMEOUT_LEN) ||\r
-                         irmp_pause_time > IRMP_TIMEOUT_NIKON_LEN)\r
+                   if (((irmp_pulse_time < NIKON_START_BIT_PULSE_LEN_MIN || irmp_pulse_time > NIKON_START_BIT_PULSE_LEN_MAX) && irmp_pause_time > IRMP_TIMEOUT_LEN) ||\r
+                        irmp_pause_time > IRMP_TIMEOUT_NIKON_LEN)\r
 #else\r
-                    if (irmp_pause_time > IRMP_TIMEOUT_LEN)                     // timeout?\r
+                   if (irmp_pause_time > IRMP_TIMEOUT_LEN)                     // timeout?\r
 #endif\r
-                    {                                                           // yes...\r
+                   {                                                           // yes...\r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                        if (irmp_protocol == IRMP_JVC_PROTOCOL)                 // don't show eror if JVC protocol, irmp_pulse_time has been set below!\r
-                        {\r
-                            ;\r
-                        }\r
-                        else\r
+                       if (irmp_protocol == IRMP_JVC_PROTOCOL)                 // don't show eror if JVC protocol, irmp_pulse_time has been set below!\r
+                       {\r
+                           ;\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                        {\r
-                            ANALYZE_PRINTF ("%8.3fms error 1: pause after start bit pulse %d too long: %d\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_pulse_time, irmp_pause_time);\r
-                            ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-                        }\r
-//                      irmp_busy_flag = FALSE;\r
-                        irmp_start_bit_detected = 0;                            // reset flags, let's wait for another start bit\r
-                        irmp_pulse_time         = 0;\r
-                        irmp_pause_time         = 0;\r
-                    }\r
-                }\r
-                else\r
-                {                                                               // receiving first data pulse!\r
-                    IRMP_PARAMETER * irmp_param_p = (IRMP_PARAMETER *) 0;\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("%8.3fms error 1: pause after start bit pulse %d too long: %d\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_pulse_time, irmp_pause_time);\r
+                           ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                       }\r
+\r
+                       irmp_start_bit_detected = 0;                            // reset flags, let's wait for another start bit\r
+                       irmp_pulse_time         = 0;\r
+                       irmp_pause_time         = 0;\r
+                   }\r
+               }\r
+               else\r
+               {                                                               // receiving first data pulse!\r
+                   IRMP_PARAMETER * irmp_param_p;\r
+                   irmp_param_p = (IRMP_PARAMETER *) 0;\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
-                    irmp_param2.protocol = 0;\r
+                   irmp_param2.protocol = 0;\r
 #endif\r
 \r
-                    ANALYZE_PRINTF ("%8.3fms [start-bit: pulse = %2d, pause = %2d]\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_pulse_time, irmp_pause_time);\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("%8.3fms [start-bit: pulse = %2d, pause = %2d]\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_pulse_time, irmp_pause_time);\r
+#endif // ANALYZE\r
 \r
 #if IRMP_SUPPORT_SIRCS_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= SIRCS_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SIRCS_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= SIRCS_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SIRCS_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's SIRCS\r
-                        ANALYZE_PRINTF ("protocol = SIRCS, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        SIRCS_START_BIT_PULSE_LEN_MIN, SIRCS_START_BIT_PULSE_LEN_MAX,\r
-                                        SIRCS_START_BIT_PAUSE_LEN_MIN, SIRCS_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) (IRMP_PARAMETER *) &sircs_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= SIRCS_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SIRCS_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= SIRCS_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SIRCS_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's SIRCS\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = SIRCS, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       SIRCS_START_BIT_PULSE_LEN_MIN, SIRCS_START_BIT_PULSE_LEN_MAX,\r
+                                       SIRCS_START_BIT_PAUSE_LEN_MIN, SIRCS_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &sircs_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SIRCS_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                    if (irmp_protocol == IRMP_JVC_PROTOCOL &&                                                       // last protocol was JVC, awaiting repeat frame\r
-                        irmp_pulse_time >= JVC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= JVC_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= JVC_REPEAT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= JVC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = NEC or JVC (type 1) repeat frame, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        JVC_START_BIT_PULSE_LEN_MIN, JVC_START_BIT_PULSE_LEN_MAX,\r
-                                        JVC_REPEAT_START_BIT_PAUSE_LEN_MIN, JVC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
-                    }\r
-                    else\r
+                   if (irmp_protocol == IRMP_JVC_PROTOCOL &&                                                       // last protocol was JVC, awaiting repeat frame\r
+                       irmp_pulse_time >= JVC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= JVC_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= JVC_REPEAT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= JVC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NEC or JVC (type 1) repeat frame, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       JVC_START_BIT_PULSE_LEN_MIN, JVC_START_BIT_PULSE_LEN_MAX,\r
+                                       JVC_REPEAT_START_BIT_PAUSE_LEN_MIN, JVC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= NEC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
+                   if (irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= NEC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
 #if IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-                        ANALYZE_PRINTF ("protocol = NEC42, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
-                                        NEC_START_BIT_PAUSE_LEN_MIN, NEC_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nec42_param;\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NEC42, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
+                                       NEC_START_BIT_PAUSE_LEN_MIN, NEC_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nec42_param;\r
 #else\r
-                        ANALYZE_PRINTF ("protocol = NEC, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
-                                        NEC_START_BIT_PAUSE_LEN_MIN, NEC_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NEC, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
+                                       NEC_START_BIT_PAUSE_LEN_MIN, NEC_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
 #endif\r
-\r
-                    }\r
-                    else if (irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN        && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
-                             irmp_pause_time >= NEC_REPEAT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's NEC\r
+                   }\r
+                   else if (irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN        && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
+                            irmp_pause_time >= NEC_REPEAT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's NEC\r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                        if (irmp_protocol == IRMP_JVC_PROTOCOL)                 // last protocol was JVC, awaiting repeat frame\r
-                        {                                                       // some jvc remote controls use nec repetition frame for jvc repetition frame\r
-                            ANALYZE_PRINTF ("protocol = JVC repeat frame type 2, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
-                                            NEC_REPEAT_START_BIT_PAUSE_LEN_MIN, NEC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
-                            irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
-                        }\r
-                        else\r
+                       if (irmp_protocol == IRMP_JVC_PROTOCOL)                 // last protocol was JVC, awaiting repeat frame\r
+                       {                                                       // some jvc remote controls use nec repetition frame for jvc repetition frame\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("protocol = JVC repeat frame type 2, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
+                                           NEC_REPEAT_START_BIT_PAUSE_LEN_MIN, NEC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                           irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                        {\r
-                            ANALYZE_PRINTF ("protocol = NEC (repetition frame), start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
-                                            NEC_REPEAT_START_BIT_PAUSE_LEN_MIN, NEC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("protocol = NEC (repetition frame), start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
+                                           NEC_REPEAT_START_BIT_PAUSE_LEN_MIN, NEC_REPEAT_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
 \r
-                            irmp_param_p = (IRMP_PARAMETER *) &nec_rep_param;\r
-                        }\r
-                    }\r
-                    else\r
+                           irmp_param_p = (IRMP_PARAMETER *) &nec_rep_param;\r
+                       }\r
+                   }\r
+                   else\r
 \r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                    if (irmp_protocol == IRMP_JVC_PROTOCOL &&                   // last protocol was JVC, awaiting repeat frame\r
-                        irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= NEC_0_PAUSE_LEN_MIN         && irmp_pause_time <= NEC_0_PAUSE_LEN_MAX)\r
-                    {                                                           // it's JVC repetition type 3\r
-                        ANALYZE_PRINTF ("protocol = JVC repeat frame type 3, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
-                                        NEC_0_PAUSE_LEN_MIN, NEC_0_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
-                    }\r
-                    else\r
+                   if (irmp_protocol == IRMP_JVC_PROTOCOL &&                   // last protocol was JVC, awaiting repeat frame\r
+                       irmp_pulse_time >= NEC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NEC_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= NEC_0_PAUSE_LEN_MIN         && irmp_pause_time <= NEC_0_PAUSE_LEN_MAX)\r
+                   {                                                           // it's JVC repetition type 3\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = JVC repeat frame type 3, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX,\r
+                                       NEC_0_PAUSE_LEN_MIN, NEC_0_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nec_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
 \r
 #endif // IRMP_SUPPORT_NEC_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_TELEFUNKEN_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= TELEFUNKEN_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= TELEFUNKEN_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= TELEFUNKEN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= TELEFUNKEN_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = TELEFUNKEN, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       TELEFUNKEN_START_BIT_PULSE_LEN_MIN, TELEFUNKEN_START_BIT_PULSE_LEN_MAX,\r
+                                       TELEFUNKEN_START_BIT_PAUSE_LEN_MIN, TELEFUNKEN_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &telefunken_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_TELEFUNKEN_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_ROOMBA_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= ROOMBA_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= ROOMBA_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= ROOMBA_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= ROOMBA_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = ROOMBA, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       ROOMBA_START_BIT_PULSE_LEN_MIN, ROOMBA_START_BIT_PULSE_LEN_MAX,\r
+                                       ROOMBA_START_BIT_PAUSE_LEN_MIN, ROOMBA_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &roomba_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_ROOMBA_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_ACP24_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= ACP24_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= ACP24_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= ACP24_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= ACP24_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = ACP24, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       ACP24_START_BIT_PULSE_LEN_MIN, ACP24_START_BIT_PULSE_LEN_MAX,\r
+                                       ACP24_START_BIT_PAUSE_LEN_MIN, ACP24_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &acp24_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_ROOMBA_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_PENTAX_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= PENTAX_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= PENTAX_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= PENTAX_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= PENTAX_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = PENTAX, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       PENTAX_START_BIT_PULSE_LEN_MIN, PENTAX_START_BIT_PULSE_LEN_MAX,\r
+                                       PENTAX_START_BIT_PAUSE_LEN_MIN, PENTAX_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &pentax_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_PENTAX_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_NIKON_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= NIKON_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NIKON_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= NIKON_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NIKON_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = NIKON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NIKON_START_BIT_PULSE_LEN_MIN, NIKON_START_BIT_PULSE_LEN_MAX,\r
-                                        NIKON_START_BIT_PAUSE_LEN_MIN, NIKON_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nikon_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= NIKON_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NIKON_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= NIKON_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NIKON_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NIKON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NIKON_START_BIT_PULSE_LEN_MIN, NIKON_START_BIT_PULSE_LEN_MAX,\r
+                                       NIKON_START_BIT_PAUSE_LEN_MIN, NIKON_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nikon_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_NIKON_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= SAMSUNG_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= SAMSUNG_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's SAMSUNG\r
-                        ANALYZE_PRINTF ("protocol = SAMSUNG, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        SAMSUNG_START_BIT_PULSE_LEN_MIN, SAMSUNG_START_BIT_PULSE_LEN_MAX,\r
-                                        SAMSUNG_START_BIT_PAUSE_LEN_MIN, SAMSUNG_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &samsung_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= SAMSUNG_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= SAMSUNG_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's SAMSUNG\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = SAMSUNG, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       SAMSUNG_START_BIT_PULSE_LEN_MIN, SAMSUNG_START_BIT_PULSE_LEN_MAX,\r
+                                       SAMSUNG_START_BIT_PAUSE_LEN_MIN, SAMSUNG_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &samsung_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_MATSUSHITA_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= MATSUSHITA_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= MATSUSHITA_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= MATSUSHITA_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= MATSUSHITA_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's MATSUSHITA\r
-                        ANALYZE_PRINTF ("protocol = MATSUSHITA, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        MATSUSHITA_START_BIT_PULSE_LEN_MIN, MATSUSHITA_START_BIT_PULSE_LEN_MAX,\r
-                                        MATSUSHITA_START_BIT_PAUSE_LEN_MIN, MATSUSHITA_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &matsushita_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= MATSUSHITA_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= MATSUSHITA_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= MATSUSHITA_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= MATSUSHITA_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's MATSUSHITA\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = MATSUSHITA, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       MATSUSHITA_START_BIT_PULSE_LEN_MIN, MATSUSHITA_START_BIT_PULSE_LEN_MAX,\r
+                                       MATSUSHITA_START_BIT_PAUSE_LEN_MIN, MATSUSHITA_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &matsushita_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_MATSUSHITA_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= KASEIKYO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= KASEIKYO_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= KASEIKYO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KASEIKYO_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's KASEIKYO\r
-                        ANALYZE_PRINTF ("protocol = KASEIKYO, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        KASEIKYO_START_BIT_PULSE_LEN_MIN, KASEIKYO_START_BIT_PULSE_LEN_MAX,\r
-                                        KASEIKYO_START_BIT_PAUSE_LEN_MIN, KASEIKYO_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &kaseikyo_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= KASEIKYO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= KASEIKYO_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= KASEIKYO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KASEIKYO_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's KASEIKYO\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = KASEIKYO, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       KASEIKYO_START_BIT_PULSE_LEN_MIN, KASEIKYO_START_BIT_PULSE_LEN_MAX,\r
+                                       KASEIKYO_START_BIT_PAUSE_LEN_MIN, KASEIKYO_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &kaseikyo_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_PANASONIC_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= PANASONIC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= PANASONIC_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= PANASONIC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= PANASONIC_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's PANASONIC\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = PANASONIC, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       PANASONIC_START_BIT_PULSE_LEN_MIN, PANASONIC_START_BIT_PULSE_LEN_MAX,\r
+                                       PANASONIC_START_BIT_PAUSE_LEN_MIN, PANASONIC_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &panasonic_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_PANASONIC_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_RADIO1_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= RADIO1_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RADIO1_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RADIO1_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RADIO1_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RADIO1, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RADIO1_START_BIT_PULSE_LEN_MIN, RADIO1_START_BIT_PULSE_LEN_MAX,\r
+                                       RADIO1_START_BIT_PAUSE_LEN_MIN, RADIO1_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &radio1_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_RRADIO1_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_RECS80_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= RECS80_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RECS80_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= RECS80_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RECS80_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's RECS80\r
-                        ANALYZE_PRINTF ("protocol = RECS80, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        RECS80_START_BIT_PULSE_LEN_MIN, RECS80_START_BIT_PULSE_LEN_MAX,\r
-                                        RECS80_START_BIT_PAUSE_LEN_MIN, RECS80_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &recs80_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= RECS80_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RECS80_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RECS80_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RECS80_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's RECS80\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RECS80, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RECS80_START_BIT_PULSE_LEN_MIN, RECS80_START_BIT_PULSE_LEN_MAX,\r
+                                       RECS80_START_BIT_PAUSE_LEN_MIN, RECS80_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &recs80_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_RECS80_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_S100_PROTOCOL == 1\r
+                   if (((irmp_pulse_time >= S100_START_BIT_LEN_MIN     && irmp_pulse_time <= S100_START_BIT_LEN_MAX) ||\r
+                        (irmp_pulse_time >= 2 * S100_START_BIT_LEN_MIN && irmp_pulse_time <= 2 * S100_START_BIT_LEN_MAX)) &&\r
+                       ((irmp_pause_time >= S100_START_BIT_LEN_MIN     && irmp_pause_time <= S100_START_BIT_LEN_MAX) ||\r
+                        (irmp_pause_time >= 2 * S100_START_BIT_LEN_MIN && irmp_pause_time <= 2 * S100_START_BIT_LEN_MAX)))\r
+                   {                                                           // it's S100\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = S100, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX,\r
+                                       2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX,\r
+                                       S100_START_BIT_LEN_MIN, S100_START_BIT_LEN_MAX,\r
+                                       2 * S100_START_BIT_LEN_MIN, 2 * S100_START_BIT_LEN_MAX);\r
+#endif // ANALYZE\r
+\r
+                       irmp_param_p = (IRMP_PARAMETER *) &s100_param;\r
+                       last_pause = irmp_pause_time;\r
+\r
+                       if ((irmp_pulse_time > S100_START_BIT_LEN_MAX && irmp_pulse_time <= 2 * S100_START_BIT_LEN_MAX) ||\r
+                           (irmp_pause_time > S100_START_BIT_LEN_MAX && irmp_pause_time <= 2 * S100_START_BIT_LEN_MAX))\r
+                       {\r
+                         last_value  = 0;\r
+                         rc5_cmd_bit6 = 1<<6;\r
+                       }\r
+                       else\r
+                       {\r
+                         last_value  = 1;\r
+                       }\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_S100_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-                    if (((irmp_pulse_time >= RC5_START_BIT_LEN_MIN     && irmp_pulse_time <= RC5_START_BIT_LEN_MAX) ||\r
-                         (irmp_pulse_time >= 2 * RC5_START_BIT_LEN_MIN && irmp_pulse_time <= 2 * RC5_START_BIT_LEN_MAX)) &&\r
-                        ((irmp_pause_time >= RC5_START_BIT_LEN_MIN     && irmp_pause_time <= RC5_START_BIT_LEN_MAX) ||\r
-                         (irmp_pause_time >= 2 * RC5_START_BIT_LEN_MIN && irmp_pause_time <= 2 * RC5_START_BIT_LEN_MAX)))\r
-                    {                                                           // it's RC5\r
+                   if (((irmp_pulse_time >= RC5_START_BIT_LEN_MIN     && irmp_pulse_time <= RC5_START_BIT_LEN_MAX) ||\r
+                        (irmp_pulse_time >= 2 * RC5_START_BIT_LEN_MIN && irmp_pulse_time <= 2 * RC5_START_BIT_LEN_MAX)) &&\r
+                       ((irmp_pause_time >= RC5_START_BIT_LEN_MIN     && irmp_pause_time <= RC5_START_BIT_LEN_MAX) ||\r
+                        (irmp_pause_time >= 2 * RC5_START_BIT_LEN_MIN && irmp_pause_time <= 2 * RC5_START_BIT_LEN_MAX)))\r
+                   {                                                           // it's RC5\r
 #if IRMP_SUPPORT_FDC_PROTOCOL == 1\r
-                        if (irmp_pulse_time >= FDC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= FDC_START_BIT_PULSE_LEN_MAX &&\r
-                            irmp_pause_time >= FDC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= FDC_START_BIT_PAUSE_LEN_MAX)\r
-                        {\r
-                            ANALYZE_PRINTF ("protocol = RC5 or FDC\n");\r
-                            ANALYZE_PRINTF ("FDC start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            FDC_START_BIT_PULSE_LEN_MIN, FDC_START_BIT_PULSE_LEN_MAX,\r
-                                            FDC_START_BIT_PAUSE_LEN_MIN, FDC_START_BIT_PAUSE_LEN_MAX);\r
-                            ANALYZE_PRINTF ("RC5 start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX);\r
-                            memcpy_P (&irmp_param2, &fdc_param, sizeof (IRMP_PARAMETER));\r
-                        }\r
-                        else\r
+                       if (irmp_pulse_time >= FDC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= FDC_START_BIT_PULSE_LEN_MAX &&\r
+                           irmp_pause_time >= FDC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= FDC_START_BIT_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("protocol = RC5 or FDC\n");\r
+                           ANALYZE_PRINTF ("FDC start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           FDC_START_BIT_PULSE_LEN_MIN, FDC_START_BIT_PULSE_LEN_MAX,\r
+                                           FDC_START_BIT_PAUSE_LEN_MIN, FDC_START_BIT_PAUSE_LEN_MAX);\r
+                           ANALYZE_PRINTF ("RC5 start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX);\r
+#endif // ANALYZE\r
+                           memcpy_P (&irmp_param2, &fdc_param, sizeof (IRMP_PARAMETER));\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_FDC_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                        if (irmp_pulse_time >= RCCAR_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_START_BIT_PULSE_LEN_MAX &&\r
-                            irmp_pause_time >= RCCAR_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_START_BIT_PAUSE_LEN_MAX)\r
-                        {\r
-                            ANALYZE_PRINTF ("protocol = RC5 or RCCAR\n");\r
-                            ANALYZE_PRINTF ("RCCAR start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            RCCAR_START_BIT_PULSE_LEN_MIN, RCCAR_START_BIT_PULSE_LEN_MAX,\r
-                                            RCCAR_START_BIT_PAUSE_LEN_MIN, RCCAR_START_BIT_PAUSE_LEN_MAX);\r
-                            ANALYZE_PRINTF ("RC5 start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX);\r
-                            memcpy_P (&irmp_param2, &rccar_param, sizeof (IRMP_PARAMETER));\r
-                        }\r
-                        else\r
+                       if (irmp_pulse_time >= RCCAR_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_START_BIT_PULSE_LEN_MAX &&\r
+                           irmp_pause_time >= RCCAR_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_START_BIT_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("protocol = RC5 or RCCAR\n");\r
+                           ANALYZE_PRINTF ("RCCAR start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           RCCAR_START_BIT_PULSE_LEN_MIN, RCCAR_START_BIT_PULSE_LEN_MAX,\r
+                                           RCCAR_START_BIT_PAUSE_LEN_MIN, RCCAR_START_BIT_PAUSE_LEN_MAX);\r
+                           ANALYZE_PRINTF ("RC5 start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX);\r
+#endif // ANALYZE\r
+                           memcpy_P (&irmp_param2, &rccar_param, sizeof (IRMP_PARAMETER));\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                        {\r
-                            ANALYZE_PRINTF ("protocol = RC5, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
-                                            2 * RC5_START_BIT_LEN_MIN, 2 * RC5_START_BIT_LEN_MAX,\r
-                                            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
-                                            2 * RC5_START_BIT_LEN_MIN, 2 * RC5_START_BIT_LEN_MAX);\r
-                        }\r
-\r
-                        irmp_param_p = (IRMP_PARAMETER *) &rc5_param;\r
-                        last_pause = irmp_pause_time;\r
-\r
-                        if ((irmp_pulse_time > RC5_START_BIT_LEN_MAX && irmp_pulse_time <= 2 * RC5_START_BIT_LEN_MAX) ||\r
-                            (irmp_pause_time > RC5_START_BIT_LEN_MAX && irmp_pause_time <= 2 * RC5_START_BIT_LEN_MAX))\r
-                        {\r
-                          last_value  = 0;\r
-                          rc5_cmd_bit6 = 1<<6;\r
-                        }\r
-                        else\r
-                        {\r
-                          last_value  = 1;\r
-                        }\r
-                    }\r
-                    else\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("protocol = RC5, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
+                                           2 * RC5_START_BIT_LEN_MIN, 2 * RC5_START_BIT_LEN_MAX,\r
+                                           RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
+                                           2 * RC5_START_BIT_LEN_MIN, 2 * RC5_START_BIT_LEN_MAX);\r
+#endif // ANALYZE\r
+                       }\r
+\r
+                       irmp_param_p = (IRMP_PARAMETER *) &rc5_param;\r
+                       last_pause = irmp_pause_time;\r
+\r
+                       if ((irmp_pulse_time > RC5_START_BIT_LEN_MAX && irmp_pulse_time <= 2 * RC5_START_BIT_LEN_MAX) ||\r
+                           (irmp_pause_time > RC5_START_BIT_LEN_MAX && irmp_pause_time <= 2 * RC5_START_BIT_LEN_MAX))\r
+                       {\r
+                         last_value  = 0;\r
+                         rc5_cmd_bit6 = 1<<6;\r
+                       }\r
+                       else\r
+                       {\r
+                         last_value  = 1;\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_RC5_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-                    if ( (irmp_pulse_time >= DENON_PULSE_LEN_MIN && irmp_pulse_time <= DENON_PULSE_LEN_MAX) &&\r
-                        ((irmp_pause_time >= DENON_1_PAUSE_LEN_MIN && irmp_pause_time <= DENON_1_PAUSE_LEN_MAX) ||\r
-                         (irmp_pause_time >= DENON_0_PAUSE_LEN_MIN && irmp_pause_time <= DENON_0_PAUSE_LEN_MAX)))\r
-                    {                                                           // it's DENON\r
-                        ANALYZE_PRINTF ("protocol = DENON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
-                                        DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX,\r
-                                        DENON_1_PAUSE_LEN_MIN, DENON_1_PAUSE_LEN_MAX,\r
-                                        DENON_0_PAUSE_LEN_MIN, DENON_0_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &denon_param;\r
-                    }\r
-                    else\r
+                   if ( (irmp_pulse_time >= DENON_PULSE_LEN_MIN && irmp_pulse_time <= DENON_PULSE_LEN_MAX) &&\r
+                       ((irmp_pause_time >= DENON_1_PAUSE_LEN_MIN && irmp_pause_time <= DENON_1_PAUSE_LEN_MAX) ||\r
+                        (irmp_pause_time >= DENON_0_PAUSE_LEN_MIN && irmp_pause_time <= DENON_0_PAUSE_LEN_MAX)))\r
+                   {                                                           // it's DENON\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = DENON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
+                                       DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX,\r
+                                       DENON_1_PAUSE_LEN_MIN, DENON_1_PAUSE_LEN_MAX,\r
+                                       DENON_0_PAUSE_LEN_MIN, DENON_0_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &denon_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_DENON_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_THOMSON_PROTOCOL == 1\r
-                    if ( (irmp_pulse_time >= THOMSON_PULSE_LEN_MIN && irmp_pulse_time <= THOMSON_PULSE_LEN_MAX) &&\r
-                        ((irmp_pause_time >= THOMSON_1_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_1_PAUSE_LEN_MAX) ||\r
-                         (irmp_pause_time >= THOMSON_0_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_0_PAUSE_LEN_MAX)))\r
-                    {                                                           // it's THOMSON\r
-                        ANALYZE_PRINTF ("protocol = THOMSON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
-                                        THOMSON_PULSE_LEN_MIN, THOMSON_PULSE_LEN_MAX,\r
-                                        THOMSON_1_PAUSE_LEN_MIN, THOMSON_1_PAUSE_LEN_MAX,\r
-                                        THOMSON_0_PAUSE_LEN_MIN, THOMSON_0_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &thomson_param;\r
-                    }\r
-                    else\r
+                   if ( (irmp_pulse_time >= THOMSON_PULSE_LEN_MIN && irmp_pulse_time <= THOMSON_PULSE_LEN_MAX) &&\r
+                       ((irmp_pause_time >= THOMSON_1_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_1_PAUSE_LEN_MAX) ||\r
+                        (irmp_pause_time >= THOMSON_0_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_0_PAUSE_LEN_MAX)))\r
+                   {                                                           // it's THOMSON\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = THOMSON, start bit timings: pulse: %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
+                                       THOMSON_PULSE_LEN_MIN, THOMSON_PULSE_LEN_MAX,\r
+                                       THOMSON_1_PAUSE_LEN_MIN, THOMSON_1_PAUSE_LEN_MAX,\r
+                                       THOMSON_0_PAUSE_LEN_MIN, THOMSON_0_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &thomson_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_THOMSON_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_BOSE_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= BOSE_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= BOSE_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= BOSE_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= BOSE_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = BOSE, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        BOSE_START_BIT_PULSE_LEN_MIN, BOSE_START_BIT_PULSE_LEN_MAX,\r
-                                        BOSE_START_BIT_PAUSE_LEN_MIN, BOSE_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &bose_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= BOSE_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= BOSE_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= BOSE_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= BOSE_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = BOSE, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       BOSE_START_BIT_PULSE_LEN_MIN, BOSE_START_BIT_PULSE_LEN_MAX,\r
+                                       BOSE_START_BIT_PAUSE_LEN_MIN, BOSE_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &bose_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_BOSE_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= RC6_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RC6_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= RC6_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RC6_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's RC6\r
-                        ANALYZE_PRINTF ("protocol = RC6, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        RC6_START_BIT_PULSE_LEN_MIN, RC6_START_BIT_PULSE_LEN_MAX,\r
-                                        RC6_START_BIT_PAUSE_LEN_MIN, RC6_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &rc6_param;\r
-                        last_pause = 0;\r
-                        last_value = 1;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= RC6_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RC6_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RC6_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RC6_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's RC6\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RC6, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RC6_START_BIT_PULSE_LEN_MIN, RC6_START_BIT_PULSE_LEN_MAX,\r
+                                       RC6_START_BIT_PAUSE_LEN_MIN, RC6_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &rc6_param;\r
+                       last_pause = 0;\r
+                       last_value = 1;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_RECS80EXT_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= RECS80EXT_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RECS80EXT_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= RECS80EXT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RECS80EXT_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's RECS80EXT\r
-                        ANALYZE_PRINTF ("protocol = RECS80EXT, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        RECS80EXT_START_BIT_PULSE_LEN_MIN, RECS80EXT_START_BIT_PULSE_LEN_MAX,\r
-                                        RECS80EXT_START_BIT_PAUSE_LEN_MIN, RECS80EXT_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &recs80ext_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= RECS80EXT_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RECS80EXT_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RECS80EXT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RECS80EXT_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's RECS80EXT\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RECS80EXT, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RECS80EXT_START_BIT_PULSE_LEN_MIN, RECS80EXT_START_BIT_PULSE_LEN_MAX,\r
+                                       RECS80EXT_START_BIT_PAUSE_LEN_MIN, RECS80EXT_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &recs80ext_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_RECS80EXT_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_NUBERT_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= NUBERT_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NUBERT_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= NUBERT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NUBERT_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's NUBERT\r
-                        ANALYZE_PRINTF ("protocol = NUBERT, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NUBERT_START_BIT_PULSE_LEN_MIN, NUBERT_START_BIT_PULSE_LEN_MAX,\r
-                                        NUBERT_START_BIT_PAUSE_LEN_MIN, NUBERT_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &nubert_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= NUBERT_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NUBERT_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= NUBERT_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NUBERT_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's NUBERT\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NUBERT, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NUBERT_START_BIT_PULSE_LEN_MIN, NUBERT_START_BIT_PULSE_LEN_MAX,\r
+                                       NUBERT_START_BIT_PAUSE_LEN_MIN, NUBERT_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &nubert_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_NUBERT_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_FAN_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= FAN_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= FAN_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= FAN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= FAN_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's FAN\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = FAN, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       FAN_START_BIT_PULSE_LEN_MIN, FAN_START_BIT_PULSE_LEN_MAX,\r
+                                       FAN_START_BIT_PAUSE_LEN_MIN, FAN_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &fan_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_FAN_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_SPEAKER_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= SPEAKER_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SPEAKER_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= SPEAKER_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SPEAKER_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's SPEAKER\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = SPEAKER, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       SPEAKER_START_BIT_PULSE_LEN_MIN, SPEAKER_START_BIT_PULSE_LEN_MAX,\r
+                                       SPEAKER_START_BIT_PAUSE_LEN_MIN, SPEAKER_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &speaker_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_SPEAKER_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN && irmp_pulse_time <= BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX)\r
-                    {                                                           // it's BANG_OLUFSEN\r
-                        ANALYZE_PRINTF ("protocol = BANG_OLUFSEN\n");\r
-                        ANALYZE_PRINTF ("start bit 1 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX,\r
-                                        BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX);\r
-                        ANALYZE_PRINTF ("start bit 2 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX,\r
-                                        BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX);\r
-                        ANALYZE_PRINTF ("start bit 3 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX,\r
-                                        BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX);\r
-                        ANALYZE_PRINTF ("start bit 4 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX,\r
-                                        BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &bang_olufsen_param;\r
-                        last_value = 0;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN && irmp_pulse_time <= BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX)\r
+                   {                                                           // it's BANG_OLUFSEN\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = BANG_OLUFSEN\n");\r
+                       ANALYZE_PRINTF ("start bit 1 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX,\r
+                                       BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX);\r
+                       ANALYZE_PRINTF ("start bit 2 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX,\r
+                                       BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX);\r
+                       ANALYZE_PRINTF ("start bit 3 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX,\r
+                                       BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX);\r
+                       ANALYZE_PRINTF ("start bit 4 timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX,\r
+                                       BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &bang_olufsen_param;\r
+                       last_value = 0;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN && irmp_pulse_time <= GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX &&\r
-                        irmp_pause_time >= GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN && irmp_pause_time <= GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX)\r
-                    {                                                           // it's GRUNDIG\r
-                        ANALYZE_PRINTF ("protocol = GRUNDIG, pre bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN, GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX,\r
-                                        GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN, GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &grundig_param;\r
-                        last_pause = irmp_pause_time;\r
-                        last_value  = 1;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN && irmp_pulse_time <= GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX &&\r
+                       irmp_pause_time >= GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN && irmp_pause_time <= GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX)\r
+                   {                                                           // it's GRUNDIG\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = GRUNDIG, pre bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN, GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX,\r
+                                       GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN, GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &grundig_param;\r
+                       last_pause = irmp_pause_time;\r
+                       last_value  = 1;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_MERLIN_PROTOCOL == 1 // check MERLIN before RUWIDO!\r
+                   if (irmp_pulse_time >= MERLIN_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= MERLIN_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= MERLIN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= MERLIN_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's MERLIN\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = MERLIN, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       MERLIN_START_BIT_PULSE_LEN_MIN, MERLIN_START_BIT_PULSE_LEN_MAX,\r
+                                       MERLIN_START_BIT_PAUSE_LEN_MIN, MERLIN_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &merlin_param;\r
+                       last_pause = 0;\r
+                       last_value = 1;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_MERLIN_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_SIEMENS_OR_RUWIDO_PROTOCOL == 1\r
-                    if (((irmp_pulse_time >= SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX) ||\r
-                         (irmp_pulse_time >= 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX)) &&\r
-                        ((irmp_pause_time >= SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX) || \r
-                         (irmp_pause_time >= 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX)))\r
-                    {                                                           // it's RUWIDO or SIEMENS\r
-                        ANALYZE_PRINTF ("protocol = RUWIDO, start bit timings: pulse: %3d - %3d or %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
-                                        SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN,   SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX,\r
-                                        2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX,\r
-                                        SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN,   SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX,\r
-                                        2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &ruwido_param;\r
-                        last_pause = irmp_pause_time;\r
-                        last_value  = 1;\r
-                    }\r
-                    else\r
+                   if (((irmp_pulse_time >= SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX) ||\r
+                        (irmp_pulse_time >= 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX)) &&\r
+                       ((irmp_pause_time >= SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX) ||\r
+                        (irmp_pause_time >= 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX)))\r
+                   {                                                           // it's RUWIDO or SIEMENS\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RUWIDO, start bit timings: pulse: %3d - %3d or %3d - %3d, pause: %3d - %3d or %3d - %3d\n",\r
+                                       SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN,   SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX,\r
+                                       2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX,\r
+                                       SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN,   SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX,\r
+                                       2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &ruwido_param;\r
+                       last_pause = irmp_pause_time;\r
+                       last_value  = 1;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SIEMENS_OR_RUWIDO_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_FDC_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= FDC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= FDC_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= FDC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= FDC_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = FDC, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        FDC_START_BIT_PULSE_LEN_MIN, FDC_START_BIT_PULSE_LEN_MAX,\r
-                                        FDC_START_BIT_PAUSE_LEN_MIN, FDC_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &fdc_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= FDC_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= FDC_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= FDC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= FDC_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = FDC, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       FDC_START_BIT_PULSE_LEN_MIN, FDC_START_BIT_PULSE_LEN_MAX,\r
+                                       FDC_START_BIT_PAUSE_LEN_MIN, FDC_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &fdc_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_FDC_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= RCCAR_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= RCCAR_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = RCCAR, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        RCCAR_START_BIT_PULSE_LEN_MIN, RCCAR_START_BIT_PULSE_LEN_MAX,\r
-                                        RCCAR_START_BIT_PAUSE_LEN_MIN, RCCAR_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &rccar_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= RCCAR_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RCCAR_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RCCAR, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RCCAR_START_BIT_PULSE_LEN_MIN, RCCAR_START_BIT_PULSE_LEN_MAX,\r
+                                       RCCAR_START_BIT_PAUSE_LEN_MIN, RCCAR_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &rccar_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_KATHREIN_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= KATHREIN_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= KATHREIN_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= KATHREIN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's KATHREIN\r
-                        ANALYZE_PRINTF ("protocol = KATHREIN, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        KATHREIN_START_BIT_PULSE_LEN_MIN, KATHREIN_START_BIT_PULSE_LEN_MAX,\r
-                                        KATHREIN_START_BIT_PAUSE_LEN_MIN, KATHREIN_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &kathrein_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= KATHREIN_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= KATHREIN_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= KATHREIN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's KATHREIN\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = KATHREIN, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       KATHREIN_START_BIT_PULSE_LEN_MIN, KATHREIN_START_BIT_PULSE_LEN_MAX,\r
+                                       KATHREIN_START_BIT_PAUSE_LEN_MIN, KATHREIN_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &kathrein_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_KATHREIN_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_NETBOX_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= NETBOX_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NETBOX_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= NETBOX_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NETBOX_START_BIT_PAUSE_LEN_MAX)\r
-                    {                                                           // it's NETBOX\r
-                        ANALYZE_PRINTF ("protocol = NETBOX, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        NETBOX_START_BIT_PULSE_LEN_MIN, NETBOX_START_BIT_PULSE_LEN_MAX,\r
-                                        NETBOX_START_BIT_PAUSE_LEN_MIN, NETBOX_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &netbox_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= NETBOX_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= NETBOX_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= NETBOX_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NETBOX_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's NETBOX\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = NETBOX, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       NETBOX_START_BIT_PULSE_LEN_MIN, NETBOX_START_BIT_PULSE_LEN_MAX,\r
+                                       NETBOX_START_BIT_PAUSE_LEN_MIN, NETBOX_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &netbox_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_NETBOX_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_LEGO_PROTOCOL == 1\r
-                    if (irmp_pulse_time >= LEGO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= LEGO_START_BIT_PULSE_LEN_MAX &&\r
-                        irmp_pause_time >= LEGO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= LEGO_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = LEGO, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
-                                        LEGO_START_BIT_PULSE_LEN_MIN, LEGO_START_BIT_PULSE_LEN_MAX,\r
-                                        LEGO_START_BIT_PAUSE_LEN_MIN, LEGO_START_BIT_PAUSE_LEN_MAX);\r
-                        irmp_param_p = (IRMP_PARAMETER *) &lego_param;\r
-                    }\r
-                    else\r
+                   if (irmp_pulse_time >= LEGO_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= LEGO_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= LEGO_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= LEGO_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = LEGO, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       LEGO_START_BIT_PULSE_LEN_MIN, LEGO_START_BIT_PULSE_LEN_MAX,\r
+                                       LEGO_START_BIT_PAUSE_LEN_MIN, LEGO_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &lego_param;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_LEGO_PROTOCOL == 1\r
 \r
-                    {\r
-                        ANALYZE_PRINTF ("protocol = UNKNOWN\n");\r
-//                      irmp_busy_flag = FALSE;\r
-                        irmp_start_bit_detected = 0;                            // wait for another start bit...\r
-                    }\r
-\r
-                    if (irmp_start_bit_detected)\r
-                    {\r
-                        memcpy_P (&irmp_param, irmp_param_p, sizeof (IRMP_PARAMETER));\r
-\r
-#ifdef ANALYZE\r
-                        if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse_1: %3d - %3d\n", irmp_param.pulse_1_len_min, irmp_param.pulse_1_len_max);\r
-                            ANALYZE_PRINTF ("pause_1: %3d - %3d\n", irmp_param.pause_1_len_min, irmp_param.pause_1_len_max);\r
-                        }\r
-                        else\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse: %3d - %3d or %3d - %3d\n", irmp_param.pulse_1_len_min, irmp_param.pulse_1_len_max,\r
-                                            2 * irmp_param.pulse_1_len_min, 2 * irmp_param.pulse_1_len_max);\r
-                            ANALYZE_PRINTF ("pause: %3d - %3d or %3d - %3d\n", irmp_param.pause_1_len_min, irmp_param.pause_1_len_max,\r
-                                            2 * irmp_param.pause_1_len_min, 2 * irmp_param.pause_1_len_max);\r
-                        }\r
+#if IRMP_SUPPORT_A1TVBOX_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= A1TVBOX_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= A1TVBOX_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= A1TVBOX_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= A1TVBOX_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's A1TVBOX\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = A1TVBOX, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       A1TVBOX_START_BIT_PULSE_LEN_MIN, A1TVBOX_START_BIT_PULSE_LEN_MAX,\r
+                                       A1TVBOX_START_BIT_PAUSE_LEN_MIN, A1TVBOX_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &a1tvbox_param;\r
+                       last_pause = 0;\r
+                       last_value = 1;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_A1TVBOX_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= ORTEK_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= ORTEK_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= ORTEK_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= ORTEK_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's ORTEK (Hama)\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = ORTEK, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       ORTEK_START_BIT_PULSE_LEN_MIN, ORTEK_START_BIT_PULSE_LEN_MAX,\r
+                                       ORTEK_START_BIT_PAUSE_LEN_MIN, ORTEK_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &ortek_param;\r
+                       last_pause  = 0;\r
+                       last_value  = 1;\r
+                       parity      = 0;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+                   if (irmp_pulse_time >= RCMM32_START_BIT_PULSE_LEN_MIN && irmp_pulse_time <= RCMM32_START_BIT_PULSE_LEN_MAX &&\r
+                       irmp_pause_time >= RCMM32_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= RCMM32_START_BIT_PAUSE_LEN_MAX)\r
+                   {                                                           // it's RCMM\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = RCMM, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                       RCMM32_START_BIT_PULSE_LEN_MIN, RCMM32_START_BIT_PULSE_LEN_MAX,\r
+                                       RCMM32_START_BIT_PAUSE_LEN_MIN, RCMM32_START_BIT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                       irmp_param_p = (IRMP_PARAMETER *) &rcmm_param;\r
+                   }\r
+                   else\r
+#endif // IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("protocol = UNKNOWN\n");\r
+#endif // ANALYZE\r
+                       irmp_start_bit_detected = 0;                            // wait for another start bit...\r
+                   }\r
+\r
+                   if (irmp_start_bit_detected)\r
+                   {\r
+                       memcpy_P (&irmp_param, irmp_param_p, sizeof (IRMP_PARAMETER));\r
+\r
+                       if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse_1: %3d - %3d\n", irmp_param.pulse_1_len_min, irmp_param.pulse_1_len_max);\r
+                           ANALYZE_PRINTF ("pause_1: %3d - %3d\n", irmp_param.pause_1_len_min, irmp_param.pause_1_len_max);\r
+#endif // ANALYZE\r
+                       }\r
+                       else\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse: %3d - %3d or %3d - %3d\n", irmp_param.pulse_1_len_min, irmp_param.pulse_1_len_max,\r
+                                           2 * irmp_param.pulse_1_len_min, 2 * irmp_param.pulse_1_len_max);\r
+                           ANALYZE_PRINTF ("pause: %3d - %3d or %3d - %3d\n", irmp_param.pause_1_len_min, irmp_param.pause_1_len_max,\r
+                                           2 * irmp_param.pause_1_len_min, 2 * irmp_param.pause_1_len_max);\r
+#endif // ANALYZE\r
+                       }\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
-                        if (irmp_param2.protocol)\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse_0: %3d - %3d\n", irmp_param2.pulse_0_len_min, irmp_param2.pulse_0_len_max);\r
-                            ANALYZE_PRINTF ("pause_0: %3d - %3d\n", irmp_param2.pause_0_len_min, irmp_param2.pause_0_len_max);\r
-                            ANALYZE_PRINTF ("pulse_1: %3d - %3d\n", irmp_param2.pulse_1_len_min, irmp_param2.pulse_1_len_max);\r
-                            ANALYZE_PRINTF ("pause_1: %3d - %3d\n", irmp_param2.pause_1_len_min, irmp_param2.pause_1_len_max);\r
-                        }\r
+                       if (irmp_param2.protocol)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse_0: %3d - %3d\n", irmp_param2.pulse_0_len_min, irmp_param2.pulse_0_len_max);\r
+                           ANALYZE_PRINTF ("pause_0: %3d - %3d\n", irmp_param2.pause_0_len_min, irmp_param2.pause_0_len_max);\r
+                           ANALYZE_PRINTF ("pulse_1: %3d - %3d\n", irmp_param2.pulse_1_len_min, irmp_param2.pulse_1_len_max);\r
+                           ANALYZE_PRINTF ("pause_1: %3d - %3d\n", irmp_param2.pause_1_len_min, irmp_param2.pause_1_len_max);\r
+#endif // ANALYZE\r
+                       }\r
 #endif\r
 \r
 \r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_RC6_PROTOCOL)\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse_toggle: %3d - %3d\n", RC6_TOGGLE_BIT_LEN_MIN, RC6_TOGGLE_BIT_LEN_MAX);\r
-                        }\r
-#endif\r
-\r
-                        if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse_0: %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
-                            ANALYZE_PRINTF ("pause_0: %3d - %3d\n", irmp_param.pause_0_len_min, irmp_param.pause_0_len_max);\r
-                        }\r
-                        else\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse: %3d - %3d or %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max,\r
-                                            2 * irmp_param.pulse_0_len_min, 2 * irmp_param.pulse_0_len_max);\r
-                            ANALYZE_PRINTF ("pause: %3d - %3d or %3d - %3d\n", irmp_param.pause_0_len_min, irmp_param.pause_0_len_max,\r
-                                            2 * irmp_param.pause_0_len_min, 2 * irmp_param.pause_0_len_max);\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_RC6_PROTOCOL)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse_toggle: %3d - %3d\n", RC6_TOGGLE_BIT_LEN_MIN, RC6_TOGGLE_BIT_LEN_MAX);\r
+#endif // ANALYZE\r
+                       }\r
+#endif\r
 \r
+                       if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse_0: %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
+                           ANALYZE_PRINTF ("pause_0: %3d - %3d\n", irmp_param.pause_0_len_min, irmp_param.pause_0_len_max);\r
+#endif // ANALYZE\r
+                       }\r
+                       else\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("pulse: %3d - %3d or %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max,\r
+                                           2 * irmp_param.pulse_0_len_min, 2 * irmp_param.pulse_0_len_max);\r
+                           ANALYZE_PRINTF ("pause: %3d - %3d or %3d - %3d\n", irmp_param.pause_0_len_min, irmp_param.pause_0_len_max,\r
+                                           2 * irmp_param.pause_0_len_min, 2 * irmp_param.pause_0_len_max);\r
+#endif // ANALYZE\r
+                       }\r
+\r
+#ifdef ANALYZE\r
 #if IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_BANG_OLUFSEN_PROTOCOL)\r
-                        {\r
-                            ANALYZE_PRINTF ("pulse_r: %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
-                            ANALYZE_PRINTF ("pause_r: %3d - %3d\n", BANG_OLUFSEN_R_PAUSE_LEN_MIN, BANG_OLUFSEN_R_PAUSE_LEN_MAX);\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_BANG_OLUFSEN_PROTOCOL)\r
+                       {\r
+                           ANALYZE_PRINTF ("pulse_r: %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
+                           ANALYZE_PRINTF ("pause_r: %3d - %3d\n", BANG_OLUFSEN_R_PAUSE_LEN_MIN, BANG_OLUFSEN_R_PAUSE_LEN_MAX);\r
+                       }\r
 #endif\r
 \r
-                        ANALYZE_PRINTF ("command_offset: %2d\n", irmp_param.command_offset);\r
-                        ANALYZE_PRINTF ("command_len:    %3d\n", irmp_param.command_end - irmp_param.command_offset);\r
-                        ANALYZE_PRINTF ("complete_len:   %3d\n", irmp_param.complete_len);\r
-                        ANALYZE_PRINTF ("stop_bit:       %3d\n", irmp_param.stop_bit);\r
+                       ANALYZE_PRINTF ("command_offset: %2d\n", irmp_param.command_offset);\r
+                       ANALYZE_PRINTF ("command_len:    %3d\n", irmp_param.command_end - irmp_param.command_offset);\r
+                       ANALYZE_PRINTF ("complete_len:   %3d\n", irmp_param.complete_len);\r
+                       ANALYZE_PRINTF ("stop_bit:       %3d\n", irmp_param.stop_bit);\r
 #endif // ANALYZE\r
-                    }\r
+                   }\r
 \r
-                    irmp_bit = 0;\r
+                   irmp_bit = 0;\r
 \r
 #if IRMP_SUPPORT_MANCHESTER == 1\r
-                    if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) &&\r
-                         irmp_param.protocol != IRMP_RUWIDO_PROTOCOL && // Manchester, but not RUWIDO\r
-                         irmp_param.protocol != IRMP_RC6_PROTOCOL)      // Manchester, but not RC6\r
-                    {\r
-                        if (irmp_pause_time > irmp_param.pulse_1_len_max && irmp_pause_time <= 2 * irmp_param.pulse_1_len_max)\r
-                        {\r
-                            ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                            ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '0' : '1');\r
-                            ANALYZE_NEWLINE ();\r
-                            irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 0 : 1);\r
-                        }\r
-                        else if (! last_value)  // && irmp_pause_time >= irmp_param.pause_1_len_min && irmp_pause_time <= irmp_param.pause_1_len_max)\r
-                        {\r
-                            ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-\r
-                            ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '1' : '0');\r
-                            ANALYZE_NEWLINE ();\r
-                            irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 : 0);\r
-                        }\r
-                    }\r
-                    else\r
+                   if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) &&\r
+                        irmp_param.protocol != IRMP_RUWIDO_PROTOCOL && // Manchester, but not RUWIDO\r
+                        irmp_param.protocol != IRMP_RC6_PROTOCOL)      // Manchester, but not RC6\r
+                   {\r
+                       if (irmp_pause_time > irmp_param.pulse_1_len_max && irmp_pause_time <= 2 * irmp_param.pulse_1_len_max)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                           ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '0' : '1');\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 0 : 1);\r
+                       }\r
+                       else if (! last_value)  // && irmp_pause_time >= irmp_param.pause_1_len_min && irmp_pause_time <= irmp_param.pause_1_len_max)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                           ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '1' : '0');\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 : 0);\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_MANCHESTER == 1\r
 \r
 #if IRMP_SUPPORT_SERIAL == 1\r
-                    if (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL)\r
-                    {\r
-                        ; // do nothing\r
-                    }\r
-                    else\r
+                   if (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL)\r
+                   {\r
+                       ; // do nothing\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SERIAL == 1\r
 \r
 \r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_DENON_PROTOCOL)\r
-                    {\r
-                        ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-\r
-                        if (irmp_pause_time >= DENON_1_PAUSE_LEN_MIN && irmp_pause_time <= DENON_1_PAUSE_LEN_MAX)\r
-                        {                                                       // pause timings correct for "1"?\r
-                          ANALYZE_PUTCHAR ('1');                                  // yes, store 1\r
-                          ANALYZE_NEWLINE ();\r
-                          irmp_store_bit (1);\r
-                        }\r
-                        else // if (irmp_pause_time >= DENON_0_PAUSE_LEN_MIN && irmp_pause_time <= DENON_0_PAUSE_LEN_MAX)\r
-                        {                                                       // pause timings correct for "0"?\r
-                          ANALYZE_PUTCHAR ('0');                                  // yes, store 0\r
-                          ANALYZE_NEWLINE ();\r
-                          irmp_store_bit (0);\r
-                        }\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_DENON_PROTOCOL)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+#endif // ANALYZE\r
+\r
+                       if (irmp_pause_time >= DENON_1_PAUSE_LEN_MIN && irmp_pause_time <= DENON_1_PAUSE_LEN_MAX)\r
+                       {                                                       // pause timings correct for "1"?\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('1');                                  // yes, store 1\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_store_bit (1);\r
+                       }\r
+                       else // if (irmp_pause_time >= DENON_0_PAUSE_LEN_MIN && irmp_pause_time <= DENON_0_PAUSE_LEN_MAX)\r
+                       {                                                       // pause timings correct for "0"?\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('0');                                  // yes, store 0\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_store_bit (0);\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_DENON_PROTOCOL == 1\r
 #if IRMP_SUPPORT_THOMSON_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_THOMSON_PROTOCOL)\r
-                    {\r
-                        ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-\r
-                        if (irmp_pause_time >= THOMSON_1_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_1_PAUSE_LEN_MAX)\r
-                        {                                                       // pause timings correct for "1"?\r
-                          ANALYZE_PUTCHAR ('1');                                  // yes, store 1\r
-                          ANALYZE_NEWLINE ();\r
-                          irmp_store_bit (1);\r
-                        }\r
-                        else // if (irmp_pause_time >= THOMSON_0_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_0_PAUSE_LEN_MAX)\r
-                        {                                                       // pause timings correct for "0"?\r
-                          ANALYZE_PUTCHAR ('0');                                  // yes, store 0\r
-                          ANALYZE_NEWLINE ();\r
-                          irmp_store_bit (0);\r
-                        }\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_THOMSON_PROTOCOL)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+#endif // ANALYZE\r
+\r
+                       if (irmp_pause_time >= THOMSON_1_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_1_PAUSE_LEN_MAX)\r
+                       {                                                       // pause timings correct for "1"?\r
+#ifdef ANALYZE\r
+                         ANALYZE_PUTCHAR ('1');                                  // yes, store 1\r
+                         ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                         irmp_store_bit (1);\r
+                       }\r
+                       else // if (irmp_pause_time >= THOMSON_0_PAUSE_LEN_MIN && irmp_pause_time <= THOMSON_0_PAUSE_LEN_MAX)\r
+                       {                                                       // pause timings correct for "0"?\r
+#ifdef ANALYZE\r
+                         ANALYZE_PUTCHAR ('0');                                  // yes, store 0\r
+                         ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                         irmp_store_bit (0);\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_THOMSON_PROTOCOL == 1\r
-                    {\r
-                        ;                                                       // else do nothing\r
-                    }\r
-\r
-                    irmp_pulse_time = 1;                                        // set counter to 1, not 0\r
-                    irmp_pause_time = 0;\r
-                    wait_for_start_space = 0;\r
-                }\r
-            }\r
-            else if (wait_for_space)                                            // the data section....\r
-            {                                                                   // counting the time of darkness....\r
-                uint8_t got_light = FALSE;\r
-\r
-                if (irmp_input)                                                 // still dark?\r
-                {                                                               // yes...\r
-                    if (irmp_bit == irmp_param.complete_len && irmp_param.stop_bit == 1)\r
-                    {\r
-                        if (\r
+                   {\r
+                       ;                                                       // else do nothing\r
+                   }\r
+\r
+                   irmp_pulse_time = 1;                                        // set counter to 1, not 0\r
+                   irmp_pause_time = 0;\r
+                   wait_for_start_space = 0;\r
+               }\r
+           }\r
+           else if (wait_for_space)                                            // the data section....\r
+           {                                                                   // counting the time of darkness....\r
+               uint_fast8_t got_light = FALSE;\r
+\r
+               if (irmp_input)                                                 // still dark?\r
+               {                                                               // yes...\r
+                   if (irmp_bit == irmp_param.complete_len && irmp_param.stop_bit == 1)\r
+                   {\r
+                       if (\r
 #if IRMP_SUPPORT_MANCHESTER == 1\r
-                            (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) ||\r
+                           (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) ||\r
 #endif\r
 #if IRMP_SUPPORT_SERIAL == 1\r
-                            (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL) ||\r
-#endif\r
-                            (irmp_pulse_time >= irmp_param.pulse_0_len_min && irmp_pulse_time <= irmp_param.pulse_0_len_max))\r
-                        {\r
-#ifdef ANALYZE\r
-                            if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
-                            {\r
-                                ANALYZE_PRINTF ("stop bit detected\n");\r
-                            }\r
-#endif\r
-                            irmp_param.stop_bit = 0;\r
-                        }\r
-                        else\r
-                        {\r
-                            ANALYZE_PRINTF ("error: stop bit timing wrong, irmp_bit = %d, irmp_pulse_time = %d, pulse_0_len_min = %d, pulse_0_len_max = %d\n",\r
-                                            irmp_bit, irmp_pulse_time, irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
-\r
-//                          irmp_busy_flag = FALSE;\r
-                            irmp_start_bit_detected = 0;                        // wait for another start bit...\r
-                            irmp_pulse_time         = 0;\r
-                            irmp_pause_time         = 0;\r
-                        }\r
-                    }\r
-                    else\r
-                    {\r
-                        irmp_pause_time++;                                                          // increment counter\r
+                           (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL) ||\r
+#endif\r
+                           (irmp_pulse_time >= irmp_param.pulse_0_len_min && irmp_pulse_time <= irmp_param.pulse_0_len_max))\r
+                       {\r
+#ifdef ANALYZE\r
+                           if (! (irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))\r
+                           {\r
+                               ANALYZE_PRINTF ("stop bit detected\n");\r
+                           }\r
+#endif // ANALYZE\r
+                           irmp_param.stop_bit = 0;\r
+                       }\r
+                       else\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("error: stop bit timing wrong, irmp_bit = %d, irmp_pulse_time = %d, pulse_0_len_min = %d, pulse_0_len_max = %d\n",\r
+                                           irmp_bit, irmp_pulse_time, irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
+#endif // ANALYZE\r
+                           irmp_start_bit_detected = 0;                        // wait for another start bit...\r
+                           irmp_pulse_time         = 0;\r
+                           irmp_pause_time         = 0;\r
+                       }\r
+                   }\r
+                   else\r
+                   {\r
+                       irmp_pause_time++;                                                          // increment counter\r
 \r
 #if IRMP_SUPPORT_SIRCS_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_SIRCS_PROTOCOL &&                           // Sony has a variable number of bits:\r
-                            irmp_pause_time > SIRCS_PAUSE_LEN_MAX &&                                // minimum is 12\r
-                            irmp_bit >= 12 - 1)                                                     // pause too long?\r
-                        {                                                                           // yes, break and close this frame\r
-                            irmp_param.complete_len = irmp_bit + 1;                                 // set new complete length\r
-                            got_light = TRUE;                                                       // this is a lie, but helps (generates stop bit)\r
-                            irmp_tmp_address |= (irmp_bit - SIRCS_MINIMUM_DATA_LEN + 1) << 8;       // new: store number of additional bits in upper byte of address!\r
-                            irmp_param.command_end = irmp_param.command_offset + irmp_bit + 1;      // correct command length\r
-                            irmp_pause_time = SIRCS_PAUSE_LEN_MAX - 1;                              // correct pause length\r
-                        }\r
-                        else\r
+                       if (irmp_param.protocol == IRMP_SIRCS_PROTOCOL &&                           // Sony has a variable number of bits:\r
+                           irmp_pause_time > SIRCS_PAUSE_LEN_MAX &&                                // minimum is 12\r
+                           irmp_bit >= 12 - 1)                                                     // pause too long?\r
+                       {                                                                           // yes, break and close this frame\r
+                           irmp_param.complete_len = irmp_bit + 1;                                 // set new complete length\r
+                           got_light = TRUE;                                                       // this is a lie, but helps (generates stop bit)\r
+                           irmp_tmp_address |= (irmp_bit - SIRCS_MINIMUM_DATA_LEN + 1) << 8;       // new: store number of additional bits in upper byte of address!\r
+                           irmp_param.command_end = irmp_param.command_offset + irmp_bit + 1;      // correct command length\r
+                           irmp_pause_time = SIRCS_PAUSE_LEN_MAX - 1;                              // correct pause length\r
+                       }\r
+                       else\r
+#endif\r
+#if IRMP_SUPPORT_FAN_PROTOCOL == 1\r
+                       if (irmp_param.protocol == IRMP_FAN_PROTOCOL &&                             // FAN has no stop bit.\r
+                           irmp_bit >= FAN_COMPLETE_DATA_LEN - 1)                                  // last bit in frame\r
+                       {                                                                           // yes, break and close this frame\r
+                           if (irmp_pulse_time <= FAN_0_PULSE_LEN_MAX && irmp_pause_time >= FAN_0_PAUSE_LEN_MIN)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Generating virtual stop bit\n");\r
+#endif // ANALYZE\r
+                               got_light = TRUE;                                                   // this is a lie, but helps (generates stop bit)\r
+                           }\r
+                           else if (irmp_pulse_time >= FAN_1_PULSE_LEN_MIN && irmp_pause_time >= FAN_1_PAUSE_LEN_MIN)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Generating virtual stop bit\n");\r
+#endif // ANALYZE\r
+                               got_light = TRUE;                                                   // this is a lie, but helps (generates stop bit)\r
+                           }\r
+                       }\r
+                       else\r
 #endif\r
 #if IRMP_SUPPORT_SERIAL == 1\r
-                        // NETBOX generates no stop bit, here is the timeout condition:\r
-                        if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL) && irmp_param.protocol == IRMP_NETBOX_PROTOCOL &&\r
-                            irmp_pause_time >= NETBOX_PULSE_LEN * (NETBOX_COMPLETE_DATA_LEN - irmp_bit))\r
-                        {\r
-                            got_light = TRUE;                                                       // this is a lie, but helps (generates stop bit)\r
-                        }\r
-                        else\r
+                       // NETBOX generates no stop bit, here is the timeout condition:\r
+                       if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL) && irmp_param.protocol == IRMP_NETBOX_PROTOCOL &&\r
+                           irmp_pause_time >= NETBOX_PULSE_LEN * (NETBOX_COMPLETE_DATA_LEN - irmp_bit))\r
+                       {\r
+                           got_light = TRUE;                                                       // this is a lie, but helps (generates stop bit)\r
+                       }\r
+                       else\r
 #endif\r
 #if IRMP_SUPPORT_GRUNDIG_NOKIA_IR60_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL && !irmp_param.stop_bit)\r
-                        {\r
-                            if (irmp_pause_time > IR60_TIMEOUT_LEN && (irmp_bit == 5 || irmp_bit == 6))\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to IR60 protocol\n");\r
-                                got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
-                                irmp_param.stop_bit = TRUE;                             // set flag\r
-\r
-                                irmp_param.protocol         = IRMP_IR60_PROTOCOL;       // change protocol\r
-                                irmp_param.complete_len     = IR60_COMPLETE_DATA_LEN;   // correct complete len\r
-                                irmp_param.address_offset   = IR60_ADDRESS_OFFSET;\r
-                                irmp_param.address_end      = IR60_ADDRESS_OFFSET + IR60_ADDRESS_LEN;\r
-                                irmp_param.command_offset   = IR60_COMMAND_OFFSET;\r
-                                irmp_param.command_end      = IR60_COMMAND_OFFSET + IR60_COMMAND_LEN;\r
-\r
-                                irmp_tmp_command <<= 1;\r
-                                irmp_tmp_command |= first_bit;\r
-                            }\r
-                            else if (irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN - 2)\r
-                            {                                                           // special manchester decoder\r
-                                irmp_param.complete_len = GRUNDIG_COMPLETE_DATA_LEN;    // correct complete len\r
-                                got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
-                                irmp_param.stop_bit = TRUE;                             // set flag\r
-                            }\r
-                            else if (irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN)\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to NOKIA protocol\n");\r
-                                irmp_param.protocol         = IRMP_NOKIA_PROTOCOL;      // change protocol\r
-                                irmp_param.address_offset   = NOKIA_ADDRESS_OFFSET;\r
-                                irmp_param.address_end      = NOKIA_ADDRESS_OFFSET + NOKIA_ADDRESS_LEN;\r
-                                irmp_param.command_offset   = NOKIA_COMMAND_OFFSET;\r
-                                irmp_param.command_end      = NOKIA_COMMAND_OFFSET + NOKIA_COMMAND_LEN;\r
-\r
-                                if (irmp_tmp_command & 0x300)\r
-                                {\r
-                                    irmp_tmp_address = (irmp_tmp_command >> 8);\r
-                                    irmp_tmp_command &= 0xFF;\r
-                                }\r
-                            }\r
-                        }\r
-                        else\r
+                       if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL && !irmp_param.stop_bit)\r
+                       {\r
+                           if (irmp_pause_time > IR60_TIMEOUT_LEN && (irmp_bit == 5 || irmp_bit == 6))\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to IR60 protocol\n");\r
+#endif // ANALYZE\r
+                               got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
+                               irmp_param.stop_bit = TRUE;                             // set flag\r
+\r
+                               irmp_param.protocol         = IRMP_IR60_PROTOCOL;       // change protocol\r
+                               irmp_param.complete_len     = IR60_COMPLETE_DATA_LEN;   // correct complete len\r
+                               irmp_param.address_offset   = IR60_ADDRESS_OFFSET;\r
+                               irmp_param.address_end      = IR60_ADDRESS_OFFSET + IR60_ADDRESS_LEN;\r
+                               irmp_param.command_offset   = IR60_COMMAND_OFFSET;\r
+                               irmp_param.command_end      = IR60_COMMAND_OFFSET + IR60_COMMAND_LEN;\r
+\r
+                               irmp_tmp_command <<= 1;\r
+                               irmp_tmp_command |= first_bit;\r
+                           }\r
+                           else if (irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN - 2)\r
+                           {                                                           // special manchester decoder\r
+                               irmp_param.complete_len = GRUNDIG_COMPLETE_DATA_LEN;    // correct complete len\r
+                               got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
+                               irmp_param.stop_bit = TRUE;                             // set flag\r
+                           }\r
+                           else if (irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to NOKIA protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                               irmp_param.protocol         = IRMP_NOKIA_PROTOCOL;      // change protocol\r
+                               irmp_param.address_offset   = NOKIA_ADDRESS_OFFSET;\r
+                               irmp_param.address_end      = NOKIA_ADDRESS_OFFSET + NOKIA_ADDRESS_LEN;\r
+                               irmp_param.command_offset   = NOKIA_COMMAND_OFFSET;\r
+                               irmp_param.command_end      = NOKIA_COMMAND_OFFSET + NOKIA_COMMAND_LEN;\r
+\r
+                               if (irmp_tmp_command & 0x300)\r
+                               {\r
+                                   irmp_tmp_address = (irmp_tmp_command >> 8);\r
+                                   irmp_tmp_command &= 0xFF;\r
+                               }\r
+                           }\r
+                       }\r
+                       else\r
 #endif\r
 #if IRMP_SUPPORT_SIEMENS_OR_RUWIDO_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_RUWIDO_PROTOCOL && !irmp_param.stop_bit)\r
-                        {\r
-                            if (irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= RUWIDO_COMPLETE_DATA_LEN - 2)\r
-                            {                                                           // special manchester decoder\r
-                                irmp_param.complete_len = RUWIDO_COMPLETE_DATA_LEN;     // correct complete len\r
-                                got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
-                                irmp_param.stop_bit = TRUE;                             // set flag\r
-                            }\r
-                            else if (irmp_bit >= RUWIDO_COMPLETE_DATA_LEN)\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to SIEMENS protocol\n");\r
-                                irmp_param.protocol         = IRMP_SIEMENS_PROTOCOL;    // change protocol\r
-                                irmp_param.address_offset   = SIEMENS_ADDRESS_OFFSET;\r
-                                irmp_param.address_end      = SIEMENS_ADDRESS_OFFSET + SIEMENS_ADDRESS_LEN;\r
-                                irmp_param.command_offset   = SIEMENS_COMMAND_OFFSET;\r
-                                irmp_param.command_end      = SIEMENS_COMMAND_OFFSET + SIEMENS_COMMAND_LEN;\r
-\r
-                                //                   76543210\r
-                                // RUWIDO:  AAAAAAAAACCCCCCCp\r
-                                // SIEMENS: AAAAAAAAAAACCCCCCCCCCp\r
-                                irmp_tmp_address <<= 2;\r
-                                irmp_tmp_address |= (irmp_tmp_command >> 6);\r
-                                irmp_tmp_command &= 0x003F;\r
-                                irmp_tmp_command <<= 4;\r
-                                irmp_tmp_command |= last_value;\r
-                            }\r
-                        }\r
-                        else\r
+                       if (irmp_param.protocol == IRMP_RUWIDO_PROTOCOL && !irmp_param.stop_bit)\r
+                       {\r
+                           if (irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= RUWIDO_COMPLETE_DATA_LEN - 2)\r
+                           {                                                           // special manchester decoder\r
+                               irmp_param.complete_len = RUWIDO_COMPLETE_DATA_LEN;     // correct complete len\r
+                               got_light = TRUE;                                       // this is a lie, but generates a stop bit ;-)\r
+                               irmp_param.stop_bit = TRUE;                             // set flag\r
+                           }\r
+                           else if (irmp_bit >= RUWIDO_COMPLETE_DATA_LEN)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to SIEMENS protocol\n");\r
+#endif // ANALYZE\r
+                               irmp_param.protocol         = IRMP_SIEMENS_PROTOCOL;    // change protocol\r
+                               irmp_param.address_offset   = SIEMENS_ADDRESS_OFFSET;\r
+                               irmp_param.address_end      = SIEMENS_ADDRESS_OFFSET + SIEMENS_ADDRESS_LEN;\r
+                               irmp_param.command_offset   = SIEMENS_COMMAND_OFFSET;\r
+                               irmp_param.command_end      = SIEMENS_COMMAND_OFFSET + SIEMENS_COMMAND_LEN;\r
+\r
+                               //                   76543210\r
+                               // RUWIDO:  AAAAAAAAACCCCCCCp\r
+                               // SIEMENS: AAAAAAAAAAACCCCCCCCCCp\r
+                               irmp_tmp_address <<= 2;\r
+                               irmp_tmp_address |= (irmp_tmp_command >> 6);\r
+                               irmp_tmp_command &= 0x003F;\r
+//                              irmp_tmp_command <<= 4;\r
+                               irmp_tmp_command |= last_value;\r
+                           }\r
+                       }\r
+                       else\r
+#endif\r
+#if IRMP_SUPPORT_ROOMBA_PROTOCOL == 1\r
+                       if (irmp_param.protocol == IRMP_ROOMBA_PROTOCOL &&                          // Roomba has no stop bit\r
+                           irmp_bit >= ROOMBA_COMPLETE_DATA_LEN - 1)                               // it's the last data bit...\r
+                       {                                                                           // break and close this frame\r
+                           if (irmp_pulse_time >= ROOMBA_1_PULSE_LEN_MIN && irmp_pulse_time <= ROOMBA_1_PULSE_LEN_MAX)\r
+                           {\r
+                               irmp_pause_time = ROOMBA_1_PAUSE_LEN_EXACT;\r
+                           }\r
+                           else if (irmp_pulse_time >= ROOMBA_0_PULSE_LEN_MIN && irmp_pulse_time <= ROOMBA_0_PULSE_LEN_MAX)\r
+                           {\r
+                               irmp_pause_time = ROOMBA_0_PAUSE_LEN;\r
+                           }\r
+\r
+                           got_light = TRUE;                                                       // this is a lie, but helps (generates stop bit)\r
+                       }\r
+                       else\r
 #endif\r
 #if IRMP_SUPPORT_MANCHESTER == 1\r
-                        if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) &&\r
-                            irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= irmp_param.complete_len - 2 && !irmp_param.stop_bit)\r
-                        {                                                       // special manchester decoder\r
-                            got_light = TRUE;                                   // this is a lie, but generates a stop bit ;-)\r
-                            irmp_param.stop_bit = TRUE;                         // set flag\r
-                        }\r
-                        else\r
+                       if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER) &&\r
+                           irmp_pause_time >= 2 * irmp_param.pause_1_len_max && irmp_bit >= irmp_param.complete_len - 2 && !irmp_param.stop_bit)\r
+                       {                                                       // special manchester decoder\r
+                           got_light = TRUE;                                   // this is a lie, but generates a stop bit ;-)\r
+                           irmp_param.stop_bit = TRUE;                         // set flag\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_MANCHESTER == 1\r
-                        if (irmp_pause_time > IRMP_TIMEOUT_LEN)                 // timeout?\r
-                        {                                                       // yes...\r
-                            if (irmp_bit == irmp_param.complete_len - 1 && irmp_param.stop_bit == 0)\r
-                            {\r
-                                irmp_bit++;\r
-                            }\r
+                       if (irmp_pause_time > IRMP_TIMEOUT_LEN)                 // timeout?\r
+                       {                                                       // yes...\r
+                           if (irmp_bit == irmp_param.complete_len - 1 && irmp_param.stop_bit == 0)\r
+                           {\r
+                               irmp_bit++;\r
+                           }\r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                            else if (irmp_param.protocol == IRMP_NEC_PROTOCOL && (irmp_bit == 16 || irmp_bit == 17))      // it was a JVC stop bit\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to JVC protocol, irmp_bit = %d\n", irmp_bit);\r
-                                irmp_param.stop_bit     = TRUE;                                     // set flag\r
-                                irmp_param.protocol     = IRMP_JVC_PROTOCOL;                        // switch protocol\r
-                                irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
-                                irmp_tmp_command        = (irmp_tmp_address >> 4);                  // set command: upper 12 bits are command bits\r
-                                irmp_tmp_address        = irmp_tmp_address & 0x000F;                // lower 4 bits are address bits\r
-                                irmp_start_bit_detected = 1;                                        // tricky: don't wait for another start bit...\r
-                            }\r
+                           else if (irmp_param.protocol == IRMP_NEC_PROTOCOL && (irmp_bit == 16 || irmp_bit == 17))      // it was a JVC stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to JVC protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.protocol     = IRMP_JVC_PROTOCOL;                        // switch protocol\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
+                               irmp_tmp_command        = (irmp_tmp_address >> 4);                  // set command: upper 12 bits are command bits\r
+                               irmp_tmp_address        = irmp_tmp_address & 0x000F;                // lower 4 bits are address bits\r
+                               irmp_start_bit_detected = 1;                                        // tricky: don't wait for another start bit...\r
+                           }\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+                           else if (irmp_param.protocol == IRMP_NEC_PROTOCOL && (irmp_bit == 28 || irmp_bit == 29))      // it was a LGAIR stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to LGAIR protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.protocol     = IRMP_LGAIR_PROTOCOL;                      // switch protocol\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
+                               irmp_tmp_command        = irmp_lgair_command;                       // set command: upper 8 bits are command bits\r
+                               irmp_tmp_address        = irmp_lgair_address;                       // lower 4 bits are address bits\r
+                               irmp_start_bit_detected = 1;                                        // tricky: don't wait for another start bit...\r
+                           }\r
+#endif // IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
 \r
 #if IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
-                            else if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && irmp_bit == 32)  // it was a NEC stop bit\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to NEC protocol\n");\r
-                                irmp_param.stop_bit     = TRUE;                                     // set flag\r
-                                irmp_param.protocol     = IRMP_NEC_PROTOCOL;                        // switch protocol\r
-                                irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
-\r
-                                //        0123456789ABC0123456789ABC0123456701234567\r
-                                // NEC42: AAAAAAAAAAAAAaaaaaaaaaaaaaCCCCCCCCcccccccc\r
-                                // NEC:   AAAAAAAAaaaaaaaaCCCCCCCCcccccccc\r
-                                irmp_tmp_address        |= (irmp_tmp_address2 & 0x0007) << 13;      // fm 2012-02-13: 12 -> 13\r
-                                irmp_tmp_command        = (irmp_tmp_address2 >> 3) | (irmp_tmp_command << 10);\r
-                            }\r
+                           else if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && irmp_bit == 32)      // it was a NEC stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to NEC protocol\n");\r
+#endif // ANALYZE\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.protocol     = IRMP_NEC_PROTOCOL;                        // switch protocol\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
+\r
+                               //        0123456789ABC0123456789ABC0123456701234567\r
+                               // NEC42: AAAAAAAAAAAAAaaaaaaaaaaaaaCCCCCCCCcccccccc\r
+                               // NEC:   AAAAAAAAaaaaaaaaCCCCCCCCcccccccc\r
+                               irmp_tmp_address        |= (irmp_tmp_address2 & 0x0007) << 13;      // fm 2012-02-13: 12 -> 13\r
+                               irmp_tmp_command        = (irmp_tmp_address2 >> 3) | (irmp_tmp_command << 10);\r
+                           }\r
 #endif // IRMP_SUPPORT_NEC_PROTOCOL == 1\r
+#if IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
+                           else if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && irmp_bit == 28)      // it was a NEC stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to LGAIR protocol\n");\r
+#endif // ANALYZE\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.protocol     = IRMP_LGAIR_PROTOCOL;                      // switch protocol\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
+                               irmp_tmp_address        = irmp_lgair_address;\r
+                               irmp_tmp_command        = irmp_lgair_command;\r
+                           }\r
+#endif // IRMP_SUPPORT_LGAIR_PROTOCOL == 1\r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                            else if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && (irmp_bit == 16 || irmp_bit == 17))  // it was a JVC stop bit\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to JVC protocol, irmp_bit = %d\n", irmp_bit);\r
-                                irmp_param.stop_bit     = TRUE;                                     // set flag\r
-                                irmp_param.protocol     = IRMP_JVC_PROTOCOL;                        // switch protocol\r
-                                irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
-\r
-                                //        0123456789ABC0123456789ABC0123456701234567\r
-                                // NEC42: AAAAAAAAAAAAAaaaaaaaaaaaaaCCCCCCCCcccccccc\r
-                                // JVC:   AAAACCCCCCCCCCCC\r
-                                irmp_tmp_command        = (irmp_tmp_address >> 4) | (irmp_tmp_address2 << 9);   // set command: upper 12 bits are command bits\r
-                                irmp_tmp_address        = irmp_tmp_address & 0x000F;                            // lower 4 bits are address bits\r
-                            }\r
+                           else if (irmp_param.protocol == IRMP_NEC42_PROTOCOL && (irmp_bit == 16 || irmp_bit == 17))  // it was a JVC stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to JVC protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.protocol     = IRMP_JVC_PROTOCOL;                        // switch protocol\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length: 16 or 17\r
+\r
+                               //        0123456789ABC0123456789ABC0123456701234567\r
+                               // NEC42: AAAAAAAAAAAAAaaaaaaaaaaaaaCCCCCCCCcccccccc\r
+                               // JVC:   AAAACCCCCCCCCCCC\r
+                               irmp_tmp_command        = (irmp_tmp_address >> 4) | (irmp_tmp_address2 << 9);   // set command: upper 12 bits are command bits\r
+                               irmp_tmp_address        = irmp_tmp_address & 0x000F;                            // lower 4 bits are address bits\r
+                           }\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
 #endif // IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-                            else\r
-                            {\r
-                                ANALYZE_PRINTF ("error 2: pause %d after data bit %d too long\n", irmp_pause_time, irmp_bit);\r
-                                ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-\r
-//                              irmp_busy_flag = FALSE;\r
-                                irmp_start_bit_detected = 0;                    // wait for another start bit...\r
-                                irmp_pulse_time         = 0;\r
-                                irmp_pause_time         = 0;\r
-                            }\r
-                        }\r
-                    }\r
-                }\r
-                else\r
-                {                                                               // got light now!\r
-                    got_light = TRUE;\r
-                }\r
-\r
-                if (got_light)\r
-                {\r
-                    ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+\r
+#if IRMP_SUPPORT_SAMSUNG48_PROTOCOL == 1\r
+                           else if (irmp_param.protocol == IRMP_SAMSUNG48_PROTOCOL && irmp_bit == 32)          // it was a SAMSUNG32 stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to SAMSUNG32 protocol\n");\r
+#endif // ANALYZE\r
+                               irmp_param.protocol         = IRMP_SAMSUNG32_PROTOCOL;\r
+                               irmp_param.command_offset   = SAMSUNG32_COMMAND_OFFSET;\r
+                               irmp_param.command_end      = SAMSUNG32_COMMAND_OFFSET + SAMSUNG32_COMMAND_LEN;\r
+                               irmp_param.complete_len     = SAMSUNG32_COMPLETE_DATA_LEN;\r
+                           }\r
+#endif // IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+                           else if (irmp_param.protocol == IRMP_RCMM32_PROTOCOL && (irmp_bit == 12 || irmp_bit == 24))  // it was a RCMM stop bit\r
+                           {\r
+                               if (irmp_bit == 12)\r
+                               {\r
+                                   irmp_tmp_command = (irmp_tmp_address & 0xFF);                   // set command: lower 8 bits are command bits\r
+                                   irmp_tmp_address >>= 8;                                         // upper 4 bits are address bits\r
+\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("Switching to RCMM12 protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                                   irmp_param.protocol     = IRMP_RCMM12_PROTOCOL;                 // switch protocol\r
+                               }\r
+                               else // if ((irmp_bit == 24)\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("Switching to RCMM24 protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                                   irmp_param.protocol     = IRMP_RCMM24_PROTOCOL;                 // switch protocol\r
+                               }\r
+                               irmp_param.stop_bit     = TRUE;                                     // set flag\r
+                               irmp_param.complete_len = irmp_bit;                                 // patch length\r
+                           }\r
+#endif // IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_TECHNICS_PROTOCOL == 1\r
+                           else if (irmp_param.protocol == IRMP_MATSUSHITA_PROTOCOL && irmp_bit == 22)  // it was a TECHNICS stop bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to TECHNICS protocol, irmp_bit = %d\n", irmp_bit);\r
+#endif // ANALYZE\r
+                               // Situation:\r
+                               // The first 12 bits have been stored in irmp_tmp_command (LSB first)\r
+                               // The following 10 bits have been stored in irmp_tmp_address (LSB first)\r
+                               // The code of TECHNICS is:\r
+                               //   cccccccccccCCCCCCCCCCC (11 times c and 11 times C)\r
+                               //   ccccccccccccaaaaaaaaaa\r
+                               // where C is inverted value of c\r
+\r
+                               irmp_tmp_address <<= 1;\r
+                               if (irmp_tmp_command & (1<<11))\r
+                               {\r
+                                   irmp_tmp_address |= 1;\r
+                                   irmp_tmp_command &= ~(1<<11);\r
+                               }\r
+\r
+                               if (irmp_tmp_command == ((~irmp_tmp_address) & 0x07FF))\r
+                               {\r
+                                   irmp_tmp_address = 0;\r
+\r
+                                   irmp_param.protocol     = IRMP_TECHNICS_PROTOCOL;                   // switch protocol\r
+                                   irmp_param.complete_len = irmp_bit;                                 // patch length\r
+                               }\r
+                               else\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("error 8: TECHNICS frame error\n");\r
+                                   ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                                   irmp_start_bit_detected = 0;                    // wait for another start bit...\r
+                                   irmp_pulse_time         = 0;\r
+                                   irmp_pause_time         = 0;\r
+                               }\r
+                           }\r
+#endif // IRMP_SUPPORT_TECHNICS_PROTOCOL == 1\r
+                           else\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("error 2: pause %d after data bit %d too long\n", irmp_pause_time, irmp_bit);\r
+                               ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                               irmp_start_bit_detected = 0;                    // wait for another start bit...\r
+                               irmp_pulse_time         = 0;\r
+                               irmp_pause_time         = 0;\r
+                           }\r
+                       }\r
+                   }\r
+               }\r
+               else\r
+               {                                                               // got light now!\r
+                   got_light = TRUE;\r
+               }\r
+\r
+               if (got_light)\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("%8.3fms [bit %2d: pulse = %3d, pause = %3d] ", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+#endif // ANALYZE\r
 \r
 #if IRMP_SUPPORT_MANCHESTER == 1\r
-                    if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))                                     // Manchester\r
-                    {\r
+                   if ((irmp_param.flags & IRMP_PARAM_FLAG_IS_MANCHESTER))                                     // Manchester\r
+                   {\r
 #if 1\r
-                        if (irmp_pulse_time > irmp_param.pulse_1_len_max /* && irmp_pulse_time <= 2 * irmp_param.pulse_1_len_max */)\r
+                       if (irmp_pulse_time > irmp_param.pulse_1_len_max /* && irmp_pulse_time <= 2 * irmp_param.pulse_1_len_max */)\r
 #else // better, but some IR-RCs use asymmetric timings :-/\r
-                        if (irmp_pulse_time > irmp_param.pulse_1_len_max && irmp_pulse_time <= 2 * irmp_param.pulse_1_len_max &&\r
-                            irmp_pause_time <= 2 * irmp_param.pause_1_len_max)\r
+                       if (irmp_pulse_time > irmp_param.pulse_1_len_max && irmp_pulse_time <= 2 * irmp_param.pulse_1_len_max &&\r
+                           irmp_pause_time <= 2 * irmp_param.pause_1_len_max)\r
 #endif\r
-                        {\r
+                       {\r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                            if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 4 && irmp_pulse_time > RC6_TOGGLE_BIT_LEN_MIN)         // RC6 toggle bit\r
-                            {\r
-                                ANALYZE_PUTCHAR ('T');\r
-                                if (irmp_param.complete_len == RC6_COMPLETE_DATA_LEN_LONG)                      // RC6 mode 6A\r
-                                {\r
-                                    irmp_store_bit (1);\r
-                                    last_value = 1;\r
-                                }\r
-                                else                                                                            // RC6 mode 0\r
-                                {\r
-                                    irmp_store_bit (0);\r
-                                    last_value = 0;\r
-                                }\r
-                                ANALYZE_NEWLINE ();\r
-                            }\r
-                            else\r
+                           if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 4 && irmp_pulse_time > RC6_TOGGLE_BIT_LEN_MIN)         // RC6 toggle bit\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('T');\r
+#endif // ANALYZE\r
+                               if (irmp_param.complete_len == RC6_COMPLETE_DATA_LEN_LONG)                      // RC6 mode 6A\r
+                               {\r
+                                   irmp_store_bit (1);\r
+                                   last_value = 1;\r
+                               }\r
+                               else                                                                            // RC6 mode 0\r
+                               {\r
+                                   irmp_store_bit (0);\r
+                                   last_value = 0;\r
+                               }\r
+#ifdef ANALYZE\r
+                               ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           }\r
+                           else\r
 #endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                            {\r
-                                ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '0' : '1');\r
-                                irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 0  :  1 );\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '0' : '1');\r
+#endif // ANALYZE\r
+                               irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 0  :  1 );\r
 \r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                                if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 4 && irmp_pulse_time > RC6_TOGGLE_BIT_LEN_MIN)      // RC6 toggle bit\r
-                                {\r
-                                    ANALYZE_PUTCHAR ('T');\r
-                                    irmp_store_bit (1);\r
-\r
-                                    if (irmp_pause_time > 2 * irmp_param.pause_1_len_max)\r
-                                    {\r
-                                        last_value = 0;\r
-                                    }\r
-                                    else\r
-                                    {\r
-                                        last_value = 1;\r
-                                    }\r
-                                    ANALYZE_NEWLINE ();\r
-                                }\r
-                                else\r
+                               if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 4 && irmp_pulse_time > RC6_TOGGLE_BIT_LEN_MIN)      // RC6 toggle bit\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PUTCHAR ('T');\r
+#endif // ANALYZE\r
+                                   irmp_store_bit (1);\r
+\r
+                                   if (irmp_pause_time > 2 * irmp_param.pause_1_len_max)\r
+                                   {\r
+                                       last_value = 0;\r
+                                   }\r
+                                   else\r
+                                   {\r
+                                       last_value = 1;\r
+                                   }\r
+#ifdef ANALYZE\r
+                                   ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                               }\r
+                               else\r
 #endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                                {\r
-                                    ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '1' : '0');\r
-                                    irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 :   0 );\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PUTCHAR ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? '1' : '0');\r
+#endif // ANALYZE\r
+                                   irmp_store_bit ((irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 :   0 );\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
-                                    if (! irmp_param2.protocol)\r
-#endif\r
-                                    {\r
-                                        ANALYZE_NEWLINE ();\r
-                                    }\r
-                                    last_value = (irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 : 0;\r
-                                }\r
-                            }\r
-                        }\r
-                        else if (irmp_pulse_time >= irmp_param.pulse_1_len_min && irmp_pulse_time <= irmp_param.pulse_1_len_max\r
-                                 /* && irmp_pause_time <= 2 * irmp_param.pause_1_len_max */)\r
-                        {\r
-                            uint8_t manchester_value;\r
-\r
-                            if (last_pause > irmp_param.pause_1_len_max && last_pause <= 2 * irmp_param.pause_1_len_max)\r
-                            {\r
-                                manchester_value = last_value ? 0 : 1;\r
-                                last_value  = manchester_value;\r
-                            }\r
-                            else\r
-                            {\r
-                                manchester_value = last_value;\r
-                            }\r
-\r
-                            ANALYZE_PUTCHAR (manchester_value + '0');\r
+                                   if (! irmp_param2.protocol)\r
+#endif\r
+                                   {\r
+#ifdef ANALYZE\r
+                                       ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                                   }\r
+                                   last_value = (irmp_param.flags & IRMP_PARAM_FLAG_1ST_PULSE_IS_1) ? 1 : 0;\r
+                               }\r
+                           }\r
+                       }\r
+                       else if (irmp_pulse_time >= irmp_param.pulse_1_len_min && irmp_pulse_time <= irmp_param.pulse_1_len_max\r
+                                /* && irmp_pause_time <= 2 * irmp_param.pause_1_len_max */)\r
+                       {\r
+                           uint_fast8_t manchester_value;\r
+\r
+                           if (last_pause > irmp_param.pause_1_len_max && last_pause <= 2 * irmp_param.pause_1_len_max)\r
+                           {\r
+                               manchester_value = last_value ? 0 : 1;\r
+                               last_value  = manchester_value;\r
+                           }\r
+                           else\r
+                           {\r
+                               manchester_value = last_value;\r
+                           }\r
+\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR (manchester_value + '0');\r
+#endif // ANALYZE\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && (IRMP_SUPPORT_FDC_PROTOCOL == 1 || IRMP_SUPPORT_RCCAR_PROTOCOL == 1)\r
-                            if (! irmp_param2.protocol)\r
+                           if (! irmp_param2.protocol)\r
 #endif\r
-                            {\r
-                                ANALYZE_NEWLINE ();\r
-                            }\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           }\r
 \r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                            if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 1 && manchester_value == 1)     // RC6 mode != 0 ???\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to RC6A protocol\n");\r
-                                irmp_param.complete_len = RC6_COMPLETE_DATA_LEN_LONG;\r
-                                irmp_param.address_offset = 5;\r
-                                irmp_param.address_end = irmp_param.address_offset + 15;\r
-                                irmp_param.command_offset = irmp_param.address_end + 1;                                 // skip 1 system bit, changes like a toggle bit\r
-                                irmp_param.command_end = irmp_param.command_offset + 16 - 1;\r
-                                irmp_tmp_address = 0;\r
-                            }\r
+                           if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_bit == 1 && manchester_value == 1)     // RC6 mode != 0 ???\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to RC6A protocol\n");\r
+#endif // ANALYZE\r
+                               irmp_param.complete_len = RC6_COMPLETE_DATA_LEN_LONG;\r
+                               irmp_param.address_offset = 5;\r
+                               irmp_param.address_end = irmp_param.address_offset + 15;\r
+                               irmp_param.command_offset = irmp_param.address_end + 1;                                 // skip 1 system bit, changes like a toggle bit\r
+                               irmp_param.command_end = irmp_param.command_offset + 16 - 1;\r
+                               irmp_tmp_address = 0;\r
+                           }\r
 #endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
 \r
-                            irmp_store_bit (manchester_value);\r
-                        }\r
-                        else\r
-                        {\r
+                           irmp_store_bit (manchester_value);\r
+                       }\r
+                       else\r
+                       {\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && IRMP_SUPPORT_FDC_PROTOCOL == 1\r
-                            if (irmp_param2.protocol == IRMP_FDC_PROTOCOL &&\r
-                                irmp_pulse_time >= FDC_PULSE_LEN_MIN && irmp_pulse_time <= FDC_PULSE_LEN_MAX &&\r
-                                ((irmp_pause_time >= FDC_1_PAUSE_LEN_MIN && irmp_pause_time <= FDC_1_PAUSE_LEN_MAX) ||\r
-                                 (irmp_pause_time >= FDC_0_PAUSE_LEN_MIN && irmp_pause_time <= FDC_0_PAUSE_LEN_MAX)))\r
-                            {\r
-                                ANALYZE_PUTCHAR ('?');\r
-                                irmp_param.protocol = 0;                // switch to FDC, see below\r
-                            }\r
-                            else\r
+                           if (irmp_param2.protocol == IRMP_FDC_PROTOCOL &&\r
+                               irmp_pulse_time >= FDC_PULSE_LEN_MIN && irmp_pulse_time <= FDC_PULSE_LEN_MAX &&\r
+                               ((irmp_pause_time >= FDC_1_PAUSE_LEN_MIN && irmp_pause_time <= FDC_1_PAUSE_LEN_MAX) ||\r
+                                (irmp_pause_time >= FDC_0_PAUSE_LEN_MIN && irmp_pause_time <= FDC_0_PAUSE_LEN_MAX)))\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('?');\r
+#endif // ANALYZE\r
+                               irmp_param.protocol = 0;                // switch to FDC, see below\r
+                           }\r
+                           else\r
 #endif // IRMP_SUPPORT_FDC_PROTOCOL == 1\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                            if (irmp_param2.protocol == IRMP_RCCAR_PROTOCOL &&\r
-                                irmp_pulse_time >= RCCAR_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_PULSE_LEN_MAX &&\r
-                                ((irmp_pause_time >= RCCAR_1_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_1_PAUSE_LEN_MAX) ||\r
-                                 (irmp_pause_time >= RCCAR_0_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_0_PAUSE_LEN_MAX)))\r
-                            {\r
-                                ANALYZE_PUTCHAR ('?');\r
-                                irmp_param.protocol = 0;                // switch to RCCAR, see below\r
-                            }\r
-                            else\r
+                           if (irmp_param2.protocol == IRMP_RCCAR_PROTOCOL &&\r
+                               irmp_pulse_time >= RCCAR_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_PULSE_LEN_MAX &&\r
+                               ((irmp_pause_time >= RCCAR_1_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_1_PAUSE_LEN_MAX) ||\r
+                                (irmp_pause_time >= RCCAR_0_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_0_PAUSE_LEN_MAX)))\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('?');\r
+#endif // ANALYZE\r
+                               irmp_param.protocol = 0;                // switch to RCCAR, see below\r
+                           }\r
+                           else\r
 #endif // IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                            {\r
-                                ANALYZE_PUTCHAR ('?');\r
-                                ANALYZE_NEWLINE ();\r
-                                ANALYZE_PRINTF ("error 3 manchester: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                                ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                              irmp_busy_flag = FALSE;\r
-                                irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
-                                irmp_pause_time         = 0;\r
-                            }\r
-                        }\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('?');\r
+                               ANALYZE_NEWLINE ();\r
+                               ANALYZE_PRINTF ("error 3 manchester: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                               ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                               irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
+                               irmp_pause_time         = 0;\r
+                           }\r
+                       }\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && IRMP_SUPPORT_FDC_PROTOCOL == 1\r
-                        if (irmp_param2.protocol == IRMP_FDC_PROTOCOL && irmp_pulse_time >= FDC_PULSE_LEN_MIN && irmp_pulse_time <= FDC_PULSE_LEN_MAX)\r
-                        {\r
-                            if (irmp_pause_time >= FDC_1_PAUSE_LEN_MIN && irmp_pause_time <= FDC_1_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PRINTF ("   1 (FDC)\n");\r
-                                irmp_store_bit2 (1);\r
-                            }\r
-                            else if (irmp_pause_time >= FDC_0_PAUSE_LEN_MIN && irmp_pause_time <= FDC_0_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PRINTF ("   0 (FDC)\n");\r
-                                irmp_store_bit2 (0);\r
-                            }\r
-\r
-                            if (! irmp_param.protocol)\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to FDC protocol\n");\r
-                                memcpy (&irmp_param, &irmp_param2, sizeof (IRMP_PARAMETER));\r
-                                irmp_param2.protocol = 0;\r
-                                irmp_tmp_address = irmp_tmp_address2;\r
-                                irmp_tmp_command = irmp_tmp_command2;\r
-                            }\r
-                        }\r
+                       if (irmp_param2.protocol == IRMP_FDC_PROTOCOL && irmp_pulse_time >= FDC_PULSE_LEN_MIN && irmp_pulse_time <= FDC_PULSE_LEN_MAX)\r
+                       {\r
+                           if (irmp_pause_time >= FDC_1_PAUSE_LEN_MIN && irmp_pause_time <= FDC_1_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("   1 (FDC)\n");\r
+#endif // ANALYZE\r
+                               irmp_store_bit2 (1);\r
+                           }\r
+                           else if (irmp_pause_time >= FDC_0_PAUSE_LEN_MIN && irmp_pause_time <= FDC_0_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("   0 (FDC)\n");\r
+#endif // ANALYZE\r
+                               irmp_store_bit2 (0);\r
+                           }\r
+\r
+                           if (! irmp_param.protocol)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to FDC protocol\n");\r
+#endif // ANALYZE\r
+                               memcpy (&irmp_param, &irmp_param2, sizeof (IRMP_PARAMETER));\r
+                               irmp_param2.protocol = 0;\r
+                               irmp_tmp_address = irmp_tmp_address2;\r
+                               irmp_tmp_command = irmp_tmp_command2;\r
+                           }\r
+                       }\r
 #endif // IRMP_SUPPORT_FDC_PROTOCOL == 1\r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1 && IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
-                        if (irmp_param2.protocol == IRMP_RCCAR_PROTOCOL && irmp_pulse_time >= RCCAR_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_PULSE_LEN_MAX)\r
-                        {\r
-                            if (irmp_pause_time >= RCCAR_1_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_1_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PRINTF ("   1 (RCCAR)\n");\r
-                                irmp_store_bit2 (1);\r
-                            }\r
-                            else if (irmp_pause_time >= RCCAR_0_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_0_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PRINTF ("   0 (RCCAR)\n");\r
-                                irmp_store_bit2 (0);\r
-                            }\r
-\r
-                            if (! irmp_param.protocol)\r
-                            {\r
-                                ANALYZE_PRINTF ("Switching to RCCAR protocol\n");\r
-                                memcpy (&irmp_param, &irmp_param2, sizeof (IRMP_PARAMETER));\r
-                                irmp_param2.protocol = 0;\r
-                                irmp_tmp_address = irmp_tmp_address2;\r
-                                irmp_tmp_command = irmp_tmp_command2;\r
-                            }\r
-                        }\r
+                       if (irmp_param2.protocol == IRMP_RCCAR_PROTOCOL && irmp_pulse_time >= RCCAR_PULSE_LEN_MIN && irmp_pulse_time <= RCCAR_PULSE_LEN_MAX)\r
+                       {\r
+                           if (irmp_pause_time >= RCCAR_1_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_1_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("   1 (RCCAR)\n");\r
+#endif // ANALYZE\r
+                               irmp_store_bit2 (1);\r
+                           }\r
+                           else if (irmp_pause_time >= RCCAR_0_PAUSE_LEN_MIN && irmp_pause_time <= RCCAR_0_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("   0 (RCCAR)\n");\r
+#endif // ANALYZE\r
+                               irmp_store_bit2 (0);\r
+                           }\r
+\r
+                           if (! irmp_param.protocol)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Switching to RCCAR protocol\n");\r
+#endif // ANALYZE\r
+                               memcpy (&irmp_param, &irmp_param2, sizeof (IRMP_PARAMETER));\r
+                               irmp_param2.protocol = 0;\r
+                               irmp_tmp_address = irmp_tmp_address2;\r
+                               irmp_tmp_command = irmp_tmp_command2;\r
+                           }\r
+                       }\r
 #endif // IRMP_SUPPORT_RCCAR_PROTOCOL == 1\r
 \r
-                        last_pause      = irmp_pause_time;\r
-                        wait_for_space  = 0;\r
-                    }\r
-                    else\r
+                       last_pause      = irmp_pause_time;\r
+                       wait_for_space  = 0;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_MANCHESTER == 1\r
 \r
 #if IRMP_SUPPORT_SERIAL == 1\r
-                    if (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL)\r
-                    {\r
-                        while (irmp_bit < irmp_param.complete_len && irmp_pulse_time > irmp_param.pulse_1_len_max)\r
-                        {\r
-                            ANALYZE_PUTCHAR ('1');\r
-                            irmp_store_bit (1);\r
-\r
-                            if (irmp_pulse_time >= irmp_param.pulse_1_len_min)\r
-                            {\r
-                                irmp_pulse_time -= irmp_param.pulse_1_len_min;\r
-                            }\r
-                            else\r
-                            {\r
-                                irmp_pulse_time = 0;\r
-                            }\r
-                        }\r
-\r
-                        while (irmp_bit < irmp_param.complete_len && irmp_pause_time > irmp_param.pause_1_len_max)\r
-                        {\r
-                            ANALYZE_PUTCHAR ('0');\r
-                            irmp_store_bit (0);\r
-\r
-                            if (irmp_pause_time >= irmp_param.pause_1_len_min)\r
-                            {\r
-                                irmp_pause_time -= irmp_param.pause_1_len_min;\r
-                            }\r
-                            else\r
-                            {\r
-                                irmp_pause_time = 0;\r
-                            }\r
-                        }\r
-                        ANALYZE_NEWLINE ();\r
-                        wait_for_space = 0;\r
-                    }\r
-                    else\r
+                   if (irmp_param.flags & IRMP_PARAM_FLAG_IS_SERIAL)\r
+                   {\r
+                       while (irmp_bit < irmp_param.complete_len && irmp_pulse_time > irmp_param.pulse_1_len_max)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('1');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (1);\r
+\r
+                           if (irmp_pulse_time >= irmp_param.pulse_1_len_min)\r
+                           {\r
+                               irmp_pulse_time -= irmp_param.pulse_1_len_min;\r
+                           }\r
+                           else\r
+                           {\r
+                               irmp_pulse_time = 0;\r
+                           }\r
+                       }\r
+\r
+                       while (irmp_bit < irmp_param.complete_len && irmp_pause_time > irmp_param.pause_1_len_max)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('0');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (0);\r
+\r
+                           if (irmp_pause_time >= irmp_param.pause_1_len_min)\r
+                           {\r
+                               irmp_pause_time -= irmp_param.pause_1_len_min;\r
+                           }\r
+                           else\r
+                           {\r
+                               irmp_pause_time = 0;\r
+                           }\r
+                       }\r
+#ifdef ANALYZE\r
+                       ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SERIAL == 1\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_SAMSUNG_PROTOCOL && irmp_bit == 16)       // Samsung: 16th bit\r
-                    {\r
-                        if (irmp_pulse_time >= SAMSUNG_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_PULSE_LEN_MAX &&\r
-                            irmp_pause_time >= SAMSUNG_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_START_BIT_PAUSE_LEN_MAX)\r
-                        {\r
-                            ANALYZE_PRINTF ("SYNC\n");\r
-                            wait_for_space = 0;\r
-                            irmp_tmp_id = 0;\r
-                            irmp_bit++;\r
-                        }\r
-                        else  if (irmp_pulse_time >= SAMSUNG_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_PULSE_LEN_MAX)\r
-                        {\r
-                            irmp_param.protocol         = IRMP_SAMSUNG32_PROTOCOL;\r
-                            irmp_param.command_offset   = SAMSUNG32_COMMAND_OFFSET;\r
-                            irmp_param.command_end      = SAMSUNG32_COMMAND_OFFSET + SAMSUNG32_COMMAND_LEN;\r
-                            irmp_param.complete_len     = SAMSUNG32_COMPLETE_DATA_LEN;\r
-\r
-                            if (irmp_pause_time >= SAMSUNG_1_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_1_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PUTCHAR ('1');\r
-                                ANALYZE_NEWLINE ();\r
-                                irmp_store_bit (1);\r
-                                wait_for_space = 0;\r
-                            }\r
-                            else\r
-                            {\r
-                                ANALYZE_PUTCHAR ('0');\r
-                                ANALYZE_NEWLINE ();\r
-                                irmp_store_bit (0);\r
-                                wait_for_space = 0;\r
-                            }\r
-\r
-                            ANALYZE_PRINTF ("Switching to SAMSUNG32 protocol\n");\r
-                        }\r
-                        else\r
-                        {                                                           // timing incorrect!\r
-                            ANALYZE_PRINTF ("error 3 Samsung: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                            ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                          irmp_busy_flag = FALSE;\r
-                            irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
-                            irmp_pause_time         = 0;\r
-                        }\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_SAMSUNG_PROTOCOL && irmp_bit == 16)       // Samsung: 16th bit\r
+                   {\r
+                       if (irmp_pulse_time >= SAMSUNG_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_PULSE_LEN_MAX &&\r
+                           irmp_pause_time >= SAMSUNG_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_START_BIT_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("SYNC\n");\r
+#endif // ANALYZE\r
+                           wait_for_space = 0;\r
+                           irmp_bit++;\r
+                       }\r
+                       else  if (irmp_pulse_time >= SAMSUNG_PULSE_LEN_MIN && irmp_pulse_time <= SAMSUNG_PULSE_LEN_MAX)\r
+                       {\r
+#if IRMP_SUPPORT_SAMSUNG48_PROTOCOL == 1\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("Switching to SAMSUNG48 protocol ");\r
+#endif // ANALYZE\r
+                           irmp_param.protocol         = IRMP_SAMSUNG48_PROTOCOL;\r
+                           irmp_param.command_offset   = SAMSUNG48_COMMAND_OFFSET;\r
+                           irmp_param.command_end      = SAMSUNG48_COMMAND_OFFSET + SAMSUNG48_COMMAND_LEN;\r
+                           irmp_param.complete_len     = SAMSUNG48_COMPLETE_DATA_LEN;\r
+#else\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("Switching to SAMSUNG32 protocol ");\r
+#endif // ANALYZE\r
+                           irmp_param.protocol         = IRMP_SAMSUNG32_PROTOCOL;\r
+                           irmp_param.command_offset   = SAMSUNG32_COMMAND_OFFSET;\r
+                           irmp_param.command_end      = SAMSUNG32_COMMAND_OFFSET + SAMSUNG32_COMMAND_LEN;\r
+                           irmp_param.complete_len     = SAMSUNG32_COMPLETE_DATA_LEN;\r
+#endif\r
+                           if (irmp_pause_time >= SAMSUNG_1_PAUSE_LEN_MIN && irmp_pause_time <= SAMSUNG_1_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('1');\r
+                               ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                               irmp_store_bit (1);\r
+                               wait_for_space = 0;\r
+                           }\r
+                           else\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PUTCHAR ('0');\r
+                               ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                               irmp_store_bit (0);\r
+                               wait_for_space = 0;\r
+                           }\r
+                       }\r
+                       else\r
+                       {                                                           // timing incorrect!\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("error 3 Samsung: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                           ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                           irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
+                           irmp_pause_time         = 0;\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_SAMSUNG_PROTOCOL\r
 \r
 #if IRMP_SUPPORT_NEC16_PROTOCOL\r
 #if IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_NEC42_PROTOCOL &&\r
+                   if (irmp_param.protocol == IRMP_NEC42_PROTOCOL &&\r
 #else // IRMP_SUPPORT_NEC_PROTOCOL instead\r
-                    if (irmp_param.protocol == IRMP_NEC_PROTOCOL &&\r
+                   if (irmp_param.protocol == IRMP_NEC_PROTOCOL &&\r
 #endif // IRMP_SUPPORT_NEC42_PROTOCOL == 1\r
-                        irmp_bit == 8 && irmp_pause_time >= NEC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_START_BIT_PAUSE_LEN_MAX)\r
-                    {\r
-                        ANALYZE_PRINTF ("Switching to NEC16 protocol\n");\r
-                        irmp_param.protocol         = IRMP_NEC16_PROTOCOL;\r
-                        irmp_param.address_offset   = NEC16_ADDRESS_OFFSET;\r
-                        irmp_param.address_end      = NEC16_ADDRESS_OFFSET + NEC16_ADDRESS_LEN;\r
-                        irmp_param.command_offset   = NEC16_COMMAND_OFFSET;\r
-                        irmp_param.command_end      = NEC16_COMMAND_OFFSET + NEC16_COMMAND_LEN;\r
-                        irmp_param.complete_len     = NEC16_COMPLETE_DATA_LEN;\r
-                        wait_for_space = 0;\r
-                    }\r
-                    else\r
+                       irmp_bit == 8 && irmp_pause_time >= NEC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_START_BIT_PAUSE_LEN_MAX)\r
+                   {\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("Switching to NEC16 protocol\n");\r
+#endif // ANALYZE\r
+                       irmp_param.protocol         = IRMP_NEC16_PROTOCOL;\r
+                       irmp_param.address_offset   = NEC16_ADDRESS_OFFSET;\r
+                       irmp_param.address_end      = NEC16_ADDRESS_OFFSET + NEC16_ADDRESS_LEN;\r
+                       irmp_param.command_offset   = NEC16_COMMAND_OFFSET;\r
+                       irmp_param.command_end      = NEC16_COMMAND_OFFSET + NEC16_COMMAND_LEN;\r
+                       irmp_param.complete_len     = NEC16_COMPLETE_DATA_LEN;\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_NEC16_PROTOCOL\r
 \r
 #if IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_BANG_OLUFSEN_PROTOCOL)\r
-                    {\r
-                        if (irmp_pulse_time >= BANG_OLUFSEN_PULSE_LEN_MIN && irmp_pulse_time <= BANG_OLUFSEN_PULSE_LEN_MAX)\r
-                        {\r
-                            if (irmp_bit == 1)                                      // Bang & Olufsen: 3rd bit\r
-                            {\r
-                                if (irmp_pause_time >= BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX)\r
-                                {\r
-                                    ANALYZE_PRINTF ("3rd start bit\n");\r
-                                    wait_for_space = 0;\r
-                                    irmp_bit++;\r
-                                }\r
-                                else\r
-                                {                                                   // timing incorrect!\r
-                                    ANALYZE_PRINTF ("error 3a B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                                    ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                                  irmp_busy_flag = FALSE;\r
-                                    irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
-                                    irmp_pause_time         = 0;\r
-                                }\r
-                            }\r
-                            else if (irmp_bit == 19)                                // Bang & Olufsen: trailer bit\r
-                            {\r
-                                if (irmp_pause_time >= BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MAX)\r
-                                {\r
-                                    ANALYZE_PRINTF ("trailer bit\n");\r
-                                    wait_for_space = 0;\r
-                                    irmp_bit++;\r
-                                }\r
-                                else\r
-                                {                                                   // timing incorrect!\r
-                                    ANALYZE_PRINTF ("error 3b B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                                    ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                                  irmp_busy_flag = FALSE;\r
-                                    irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
-                                    irmp_pause_time         = 0;\r
-                                }\r
-                            }\r
-                            else\r
-                            {\r
-                                if (irmp_pause_time >= BANG_OLUFSEN_1_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_1_PAUSE_LEN_MAX)\r
-                                {                                                   // pulse & pause timings correct for "1"?\r
-                                    ANALYZE_PUTCHAR ('1');\r
-                                    ANALYZE_NEWLINE ();\r
-                                    irmp_store_bit (1);\r
-                                    last_value = 1;\r
-                                    wait_for_space = 0;\r
-                                }\r
-                                else if (irmp_pause_time >= BANG_OLUFSEN_0_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_0_PAUSE_LEN_MAX)\r
-                                {                                                   // pulse & pause timings correct for "0"?\r
-                                    ANALYZE_PUTCHAR ('0');\r
-                                    ANALYZE_NEWLINE ();\r
-                                    irmp_store_bit (0);\r
-                                    last_value = 0;\r
-                                    wait_for_space = 0;\r
-                                }\r
-                                else if (irmp_pause_time >= BANG_OLUFSEN_R_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_R_PAUSE_LEN_MAX)\r
-                                {\r
-                                    ANALYZE_PUTCHAR (last_value + '0');\r
-                                    ANALYZE_NEWLINE ();\r
-                                    irmp_store_bit (last_value);\r
-                                    wait_for_space = 0;\r
-                                }\r
-                                else\r
-                                {                                                   // timing incorrect!\r
-                                    ANALYZE_PRINTF ("error 3c B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                                    ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                                  irmp_busy_flag = FALSE;\r
-                                    irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
-                                    irmp_pause_time         = 0;\r
-                                }\r
-                            }\r
-                        }\r
-                        else\r
-                        {                                                           // timing incorrect!\r
-                            ANALYZE_PRINTF ("error 3d B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                            ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                          irmp_busy_flag = FALSE;\r
-                            irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
-                            irmp_pause_time         = 0;\r
-                        }\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_BANG_OLUFSEN_PROTOCOL)\r
+                   {\r
+                       if (irmp_pulse_time >= BANG_OLUFSEN_PULSE_LEN_MIN && irmp_pulse_time <= BANG_OLUFSEN_PULSE_LEN_MAX)\r
+                       {\r
+                           if (irmp_bit == 1)                                      // Bang & Olufsen: 3rd bit\r
+                           {\r
+                               if (irmp_pause_time >= BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX)\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("3rd start bit\n");\r
+#endif // ANALYZE\r
+                                   wait_for_space = 0;\r
+                                   irmp_bit++;\r
+                               }\r
+                               else\r
+                               {                                                   // timing incorrect!\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("error 3a B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                                   ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                                   irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
+                                   irmp_pause_time         = 0;\r
+                               }\r
+                           }\r
+                           else if (irmp_bit == 19)                                // Bang & Olufsen: trailer bit\r
+                           {\r
+                               if (irmp_pause_time >= BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MAX)\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("trailer bit\n");\r
+#endif // ANALYZE\r
+                                   wait_for_space = 0;\r
+                                   irmp_bit++;\r
+                               }\r
+                               else\r
+                               {                                                   // timing incorrect!\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("error 3b B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                                   ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                                   irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
+                                   irmp_pause_time         = 0;\r
+                               }\r
+                           }\r
+                           else\r
+                           {\r
+                               if (irmp_pause_time >= BANG_OLUFSEN_1_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_1_PAUSE_LEN_MAX)\r
+                               {                                                   // pulse & pause timings correct for "1"?\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PUTCHAR ('1');\r
+                                   ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                                   irmp_store_bit (1);\r
+                                   last_value = 1;\r
+                                   wait_for_space = 0;\r
+                               }\r
+                               else if (irmp_pause_time >= BANG_OLUFSEN_0_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_0_PAUSE_LEN_MAX)\r
+                               {                                                   // pulse & pause timings correct for "0"?\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PUTCHAR ('0');\r
+                                   ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                                   irmp_store_bit (0);\r
+                                   last_value = 0;\r
+                                   wait_for_space = 0;\r
+                               }\r
+                               else if (irmp_pause_time >= BANG_OLUFSEN_R_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_R_PAUSE_LEN_MAX)\r
+                               {\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PUTCHAR (last_value + '0');\r
+                                   ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                                   irmp_store_bit (last_value);\r
+                                   wait_for_space = 0;\r
+                               }\r
+                               else\r
+                               {                                                   // timing incorrect!\r
+#ifdef ANALYZE\r
+                                   ANALYZE_PRINTF ("error 3c B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                                   ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                                   irmp_start_bit_detected = 0;                    // reset flags and wait for next start bit\r
+                                   irmp_pause_time         = 0;\r
+                               }\r
+                           }\r
+                       }\r
+                       else\r
+                       {                                                           // timing incorrect!\r
+#ifdef ANALYZE\r
+                           ANALYZE_PRINTF ("error 3d B&O: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                           ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                           irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
+                           irmp_pause_time         = 0;\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL\r
 \r
-                    if (irmp_pulse_time >= irmp_param.pulse_1_len_min && irmp_pulse_time <= irmp_param.pulse_1_len_max &&\r
-                        irmp_pause_time >= irmp_param.pause_1_len_min && irmp_pause_time <= irmp_param.pause_1_len_max)\r
-                    {                                                               // pulse & pause timings correct for "1"?\r
-                        ANALYZE_PUTCHAR ('1');\r
-                        ANALYZE_NEWLINE ();\r
-                        irmp_store_bit (1);\r
-                        wait_for_space = 0;\r
-                    }\r
-                    else if (irmp_pulse_time >= irmp_param.pulse_0_len_min && irmp_pulse_time <= irmp_param.pulse_0_len_max &&\r
-                             irmp_pause_time >= irmp_param.pause_0_len_min && irmp_pause_time <= irmp_param.pause_0_len_max)\r
-                    {                                                               // pulse & pause timings correct for "0"?\r
-                        ANALYZE_PUTCHAR ('0');\r
-                        ANALYZE_NEWLINE ();\r
-                        irmp_store_bit (0);\r
-                        wait_for_space = 0;\r
-                    }\r
-                    else\r
+#if IRMP_SUPPORT_RCMM_PROTOCOL == 1\r
+                   if (irmp_param.protocol == IRMP_RCMM32_PROTOCOL)\r
+                   {\r
+                       if (irmp_pause_time >= RCMM32_BIT_00_PAUSE_LEN_MIN && irmp_pause_time <= RCMM32_BIT_00_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('0');\r
+                           ANALYZE_PUTCHAR ('0');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (0);\r
+                           irmp_store_bit (0);\r
+                       }\r
+                       else if (irmp_pause_time >= RCMM32_BIT_01_PAUSE_LEN_MIN && irmp_pause_time <= RCMM32_BIT_01_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('0');\r
+                           ANALYZE_PUTCHAR ('1');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (0);\r
+                           irmp_store_bit (1);\r
+                       }\r
+                       else if (irmp_pause_time >= RCMM32_BIT_10_PAUSE_LEN_MIN && irmp_pause_time <= RCMM32_BIT_10_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('1');\r
+                           ANALYZE_PUTCHAR ('0');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (1);\r
+                           irmp_store_bit (0);\r
+                       }\r
+                       else if (irmp_pause_time >= RCMM32_BIT_11_PAUSE_LEN_MIN && irmp_pause_time <= RCMM32_BIT_11_PAUSE_LEN_MAX)\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('1');\r
+                           ANALYZE_PUTCHAR ('1');\r
+#endif // ANALYZE\r
+                           irmp_store_bit (1);\r
+                           irmp_store_bit (1);\r
+                       }\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("\n");\r
+#endif // ANALYZE\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else\r
+#endif\r
+\r
+                   if (irmp_pulse_time >= irmp_param.pulse_1_len_min && irmp_pulse_time <= irmp_param.pulse_1_len_max &&\r
+                       irmp_pause_time >= irmp_param.pause_1_len_min && irmp_pause_time <= irmp_param.pause_1_len_max)\r
+                   {                                                               // pulse & pause timings correct for "1"?\r
+#ifdef ANALYZE\r
+                       ANALYZE_PUTCHAR ('1');\r
+                       ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                       irmp_store_bit (1);\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else if (irmp_pulse_time >= irmp_param.pulse_0_len_min && irmp_pulse_time <= irmp_param.pulse_0_len_max &&\r
+                            irmp_pause_time >= irmp_param.pause_0_len_min && irmp_pause_time <= irmp_param.pause_0_len_max)\r
+                   {                                                               // pulse & pause timings correct for "0"?\r
+#ifdef ANALYZE\r
+                       ANALYZE_PUTCHAR ('0');\r
+                       ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                       irmp_store_bit (0);\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else\r
 #if IRMP_SUPPORT_KATHREIN_PROTOCOL\r
 \r
-                    if (irmp_param.protocol == IRMP_KATHREIN_PROTOCOL &&\r
-                        irmp_pulse_time >= KATHREIN_1_PULSE_LEN_MIN && irmp_pulse_time <= KATHREIN_1_PULSE_LEN_MAX &&\r
-                        (((irmp_bit == 8 || irmp_bit == 6) &&\r
-                                irmp_pause_time >= KATHREIN_SYNC_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_SYNC_BIT_PAUSE_LEN_MAX) ||\r
-                         (irmp_bit == 12 &&\r
-                                irmp_pause_time >= KATHREIN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_START_BIT_PAUSE_LEN_MAX)))\r
-\r
-                    {\r
-                        if (irmp_bit == 8)\r
-                        {\r
-                            irmp_bit++;\r
-                            ANALYZE_PUTCHAR ('S');\r
-                            ANALYZE_NEWLINE ();\r
-                            irmp_tmp_command <<= 1;\r
-                        }\r
-                        else\r
-                        {\r
-                            ANALYZE_PUTCHAR ('S');\r
-                            ANALYZE_NEWLINE ();\r
-                            irmp_store_bit (1);\r
-                        }\r
-                        wait_for_space = 0;\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_KATHREIN_PROTOCOL &&\r
+                       irmp_pulse_time >= KATHREIN_1_PULSE_LEN_MIN && irmp_pulse_time <= KATHREIN_1_PULSE_LEN_MAX &&\r
+                       (((irmp_bit == 8 || irmp_bit == 6) &&\r
+                               irmp_pause_time >= KATHREIN_SYNC_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_SYNC_BIT_PAUSE_LEN_MAX) ||\r
+                        (irmp_bit == 12 &&\r
+                               irmp_pause_time >= KATHREIN_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= KATHREIN_START_BIT_PAUSE_LEN_MAX)))\r
+\r
+                   {\r
+                       if (irmp_bit == 8)\r
+                       {\r
+                           irmp_bit++;\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('S');\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_tmp_command <<= 1;\r
+                       }\r
+                       else\r
+                       {\r
+#ifdef ANALYZE\r
+                           ANALYZE_PUTCHAR ('S');\r
+                           ANALYZE_NEWLINE ();\r
+#endif // ANALYZE\r
+                           irmp_store_bit (1);\r
+                       }\r
+                       wait_for_space = 0;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_KATHREIN_PROTOCOL\r
-                    {                                                               // timing incorrect!\r
-                        ANALYZE_PRINTF ("error 3: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
-                        ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-//                      irmp_busy_flag = FALSE;\r
-                        irmp_start_bit_detected = 0;                                // reset flags and wait for next start bit\r
-                        irmp_pause_time         = 0;\r
-                    }\r
-\r
-                    irmp_pulse_time = 1;                                            // set counter to 1, not 0\r
-                }\r
-            }\r
-            else\r
-            {                                                                       // counting the pulse length ...\r
-                if (! irmp_input)                                                   // still light?\r
-                {                                                                   // yes...\r
-                    irmp_pulse_time++;                                              // increment counter\r
-                }\r
-                else\r
-                {                                                                   // now it's dark!\r
-                    wait_for_space  = 1;                                            // let's count the time (see above)\r
-                    irmp_pause_time = 1;                                            // set pause counter to 1, not 0\r
-                }\r
-            }\r
-\r
-            if (irmp_start_bit_detected && irmp_bit == irmp_param.complete_len && irmp_param.stop_bit == 0)    // enough bits received?\r
-            {\r
-                if (last_irmp_command == irmp_tmp_command && repetition_len < AUTO_FRAME_REPETITION_LEN)\r
-                {\r
-                    repetition_frame_number++;\r
-                }\r
-                else\r
-                {\r
-                    repetition_frame_number = 0;\r
-                }\r
+                   {                                                               // timing incorrect!\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("error 3: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                       ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+                       irmp_start_bit_detected = 0;                                // reset flags and wait for next start bit\r
+                       irmp_pause_time         = 0;\r
+                   }\r
+\r
+                   irmp_pulse_time = 1;                                            // set counter to 1, not 0\r
+               }\r
+           }\r
+           else\r
+           {                                                                       // counting the pulse length ...\r
+               if (! irmp_input)                                                   // still light?\r
+               {                                                                   // yes...\r
+                   irmp_pulse_time++;                                              // increment counter\r
+               }\r
+               else\r
+               {                                                                   // now it's dark!\r
+                   wait_for_space  = 1;                                            // let's count the time (see above)\r
+                   irmp_pause_time = 1;                                            // set pause counter to 1, not 0\r
+               }\r
+           }\r
+\r
+           if (irmp_start_bit_detected && irmp_bit == irmp_param.complete_len && irmp_param.stop_bit == 0)    // enough bits received?\r
+           {\r
+               if (last_irmp_command == irmp_tmp_command && key_repetition_len < AUTO_FRAME_REPETITION_LEN)\r
+               {\r
+                   repetition_frame_number++;\r
+               }\r
+               else\r
+               {\r
+                   repetition_frame_number = 0;\r
+               }\r
 \r
 #if IRMP_SUPPORT_SIRCS_PROTOCOL == 1\r
-                // if SIRCS protocol and the code will be repeated within 50 ms, we will ignore 2nd and 3rd repetition frame\r
-                if (irmp_param.protocol == IRMP_SIRCS_PROTOCOL && (repetition_frame_number == 1 || repetition_frame_number == 2))\r
-                {\r
-                    ANALYZE_PRINTF ("code skipped: SIRCS auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
-                                    repetition_frame_number + 1, repetition_len, AUTO_FRAME_REPETITION_LEN);\r
-                    repetition_len = 0;\r
-                }\r
-                else\r
+               // if SIRCS protocol and the code will be repeated within 50 ms, we will ignore 2nd and 3rd repetition frame\r
+               if (irmp_param.protocol == IRMP_SIRCS_PROTOCOL && (repetition_frame_number == 1 || repetition_frame_number == 2))\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: SIRCS auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
+#endif\r
+\r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+               // if ORTEK protocol and the code will be repeated within 50 ms, we will ignore 2nd repetition frame\r
+               if (irmp_param.protocol == IRMP_ORTEK_PROTOCOL && repetition_frame_number == 1)\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: ORTEK auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
 #endif\r
 \r
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
-                // if KASEIKYO protocol and the code will be repeated within 50 ms, we will ignore 2nd repetition frame\r
-                if (irmp_param.protocol == IRMP_KASEIKYO_PROTOCOL && repetition_frame_number == 1)\r
-                {\r
-                    ANALYZE_PRINTF ("code skipped: KASEIKYO auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
-                                    repetition_frame_number + 1, repetition_len, AUTO_FRAME_REPETITION_LEN);\r
-                    repetition_len = 0;\r
-                }\r
-                else\r
+               // if KASEIKYO protocol and the code will be repeated within 50 ms, we will ignore 2nd repetition frame\r
+               if (irmp_param.protocol == IRMP_KASEIKYO_PROTOCOL && repetition_frame_number == 1)\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: KASEIKYO auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
 #endif\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-                // if SAMSUNG32 protocol and the code will be repeated within 50 ms, we will ignore every 2nd frame\r
-                if (irmp_param.protocol == IRMP_SAMSUNG32_PROTOCOL && (repetition_frame_number & 0x01))\r
-                {\r
-                    ANALYZE_PRINTF ("code skipped: SAMSUNG32 auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
-                                    repetition_frame_number + 1, repetition_len, AUTO_FRAME_REPETITION_LEN);\r
-                    repetition_len = 0;\r
-                }\r
-                else\r
+               // if SAMSUNG32 or SAMSUNG48 protocol and the code will be repeated within 50 ms, we will ignore every 2nd frame\r
+               if ((irmp_param.protocol == IRMP_SAMSUNG32_PROTOCOL || irmp_param.protocol == IRMP_SAMSUNG48_PROTOCOL) && (repetition_frame_number & 0x01))\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: SAMSUNG32/SAMSUNG48 auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
 #endif\r
 \r
 #if IRMP_SUPPORT_NUBERT_PROTOCOL == 1\r
-                // if NUBERT protocol and the code will be repeated within 50 ms, we will ignore every 2nd frame\r
-                if (irmp_param.protocol == IRMP_NUBERT_PROTOCOL && (repetition_frame_number & 0x01))\r
-                {\r
-                    ANALYZE_PRINTF ("code skipped: NUBERT auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
-                                    repetition_frame_number + 1, repetition_len, AUTO_FRAME_REPETITION_LEN);\r
-                    repetition_len = 0;\r
-                }\r
-                else\r
+               // if NUBERT protocol and the code will be repeated within 50 ms, we will ignore every 2nd frame\r
+               if (irmp_param.protocol == IRMP_NUBERT_PROTOCOL && (repetition_frame_number & 0x01))\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: NUBERT auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
+#endif\r
+\r
+#if IRMP_SUPPORT_SPEAKER_PROTOCOL == 1\r
+               // if SPEAKER protocol and the code will be repeated within 50 ms, we will ignore every 2nd frame\r
+               if (irmp_param.protocol == IRMP_SPEAKER_PROTOCOL && (repetition_frame_number & 0x01))\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("code skipped: SPEAKER auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                   repetition_frame_number + 1, key_repetition_len, AUTO_FRAME_REPETITION_LEN);\r
+#endif // ANALYZE\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
 #endif\r
 \r
-                {\r
-                    ANALYZE_PRINTF ("%8.3fms code detected, length = %d\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit);\r
-                    irmp_ir_detected = TRUE;\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_PRINTF ("%8.3fms code detected, length = %d\n", (double) (time_counter * 1000) / F_INTERRUPTS, irmp_bit);\r
+#endif // ANALYZE\r
+                   irmp_ir_detected = TRUE;\r
 \r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_DENON_PROTOCOL)\r
-                    {                                                               // check for repetition frame\r
-                        if ((~irmp_tmp_command & 0x3FF) == last_irmp_denon_command) // command bits must be inverted\r
-                        {\r
-                            irmp_tmp_command = last_irmp_denon_command;             // use command received before!\r
-                            last_irmp_denon_command = 0;\r
-\r
-                            irmp_protocol = irmp_param.protocol;                    // store protocol\r
-                            irmp_address = irmp_tmp_address;                        // store address\r
-                            irmp_command = irmp_tmp_command ;                       // store command\r
-                        }\r
-                        else\r
-                        {\r
-                            if ((irmp_tmp_command & 0x03) == 0)\r
-                            {\r
-                                ANALYZE_PRINTF ("%8.3fms waiting for inverted command repetition\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
-                                last_irmp_denon_command = irmp_tmp_command;\r
-                            }\r
-                            else\r
-                            {\r
-                                ANALYZE_PRINTF ("%8.3fms got unexpected inverted command, ignoring it\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
-                                last_irmp_denon_command = 0;\r
-                            }\r
-                            irmp_ir_detected = FALSE;\r
-                            repetition_len = 0;\r
-                        }\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_DENON_PROTOCOL)\r
+                   {                                                               // check for repetition frame\r
+                       if ((~irmp_tmp_command & 0x3FF) == last_irmp_denon_command) // command bits must be inverted\r
+                       {\r
+                           irmp_tmp_command = last_irmp_denon_command;             // use command received before!\r
+                           last_irmp_denon_command = 0;\r
+\r
+                           irmp_protocol = irmp_param.protocol;                    // store protocol\r
+                           irmp_address = irmp_tmp_address;                        // store address\r
+                           irmp_command = irmp_tmp_command;                        // store command\r
+                       }\r
+                       else\r
+                       {\r
+                           if ((irmp_tmp_command & 0x01) == 0x00)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("%8.3fms info Denon: waiting for inverted command repetition\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
+#endif // ANALYZE\r
+                               last_irmp_denon_command = irmp_tmp_command;\r
+                               denon_repetition_len = 0;\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+                           else\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("%8.3fms warning Denon: got unexpected inverted command, ignoring it\n", (double) (time_counter * 1000) / F_INTERRUPTS);\r
+#endif // ANALYZE\r
+                               last_irmp_denon_command = 0;\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+                       }\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_DENON_PROTOCOL\r
 \r
 #if IRMP_SUPPORT_GRUNDIG_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL && irmp_tmp_command == 0x01ff)\r
-                    {                                                               // Grundig start frame?\r
-                        ANALYZE_PRINTF ("Detected GRUNDIG start frame, ignoring it\n");\r
-                        irmp_ir_detected = FALSE;\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL && irmp_tmp_command == 0x01ff)\r
+                   {                                                               // Grundig start frame?\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("Detected GRUNDIG start frame, ignoring it\n");\r
+#endif // ANALYZE\r
+                       irmp_ir_detected = FALSE;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_GRUNDIG_PROTOCOL\r
 \r
 #if IRMP_SUPPORT_NOKIA_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_NOKIA_PROTOCOL && irmp_tmp_address == 0x00ff && irmp_tmp_command == 0x00fe)\r
-                    {                                                               // Nokia start frame?\r
-                        ANALYZE_PRINTF ("Detected NOKIA start frame, ignoring it\n");\r
-                        irmp_ir_detected = FALSE;\r
-                    }\r
-                    else\r
+                   if (irmp_param.protocol == IRMP_NOKIA_PROTOCOL && irmp_tmp_address == 0x00ff && irmp_tmp_command == 0x00fe)\r
+                   {                                                               // Nokia start frame?\r
+#ifdef ANALYZE\r
+                       ANALYZE_PRINTF ("Detected NOKIA start frame, ignoring it\n");\r
+#endif // ANALYZE\r
+                       irmp_ir_detected = FALSE;\r
+                   }\r
+                   else\r
 #endif // IRMP_SUPPORT_NOKIA_PROTOCOL\r
-                    {\r
+                   {\r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_NEC_PROTOCOL && irmp_bit == 0)  // repetition frame\r
-                        {\r
-                            if (repetition_len < NEC_FRAME_REPEAT_PAUSE_LEN_MAX)\r
-                            {\r
-                                ANALYZE_PRINTF ("Detected NEC repetition frame, repetition_len = %d\n", repetition_len);\r
-                                irmp_tmp_address = last_irmp_address;                   // address is last address\r
-                                irmp_tmp_command = last_irmp_command;                   // command is last command\r
-                                irmp_flags |= IRMP_FLAG_REPETITION;\r
-                                repetition_len = 0;\r
-                            }\r
-                            else\r
-                            {\r
-                                ANALYZE_PRINTF ("Detected NEC repetition frame, ignoring it: timeout occured, repetition_len = %d > %d\n",\r
-                                                repetition_len, NEC_FRAME_REPEAT_PAUSE_LEN_MAX);\r
-                                irmp_ir_detected = FALSE;\r
-                            }\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_NEC_PROTOCOL && irmp_bit == 0)  // repetition frame\r
+                       {\r
+                           if (key_repetition_len < NEC_FRAME_REPEAT_PAUSE_LEN_MAX)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Detected NEC repetition frame, key_repetition_len = %d\n", key_repetition_len);\r
+                               ANALYZE_ONLY_NORMAL_PRINTF("REPETETION FRAME                ");\r
+#endif // ANALYZE\r
+                               irmp_tmp_address = last_irmp_address;                   // address is last address\r
+                               irmp_tmp_command = last_irmp_command;                   // command is last command\r
+                               irmp_flags |= IRMP_FLAG_REPETITION;\r
+                               key_repetition_len = 0;\r
+                           }\r
+                           else\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("Detected NEC repetition frame, ignoring it: timeout occured, key_repetition_len = %d > %d\n",\r
+                                               key_repetition_len, NEC_FRAME_REPEAT_PAUSE_LEN_MAX);\r
+#endif // ANALYZE\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+                       }\r
 #endif // IRMP_SUPPORT_NEC_PROTOCOL\r
 \r
 #if IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_KASEIKYO_PROTOCOL)\r
-                        {\r
-                            uint8_t xor_value;\r
-                            // ANALYZE_PRINTF ("0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x\n",\r
-                            //                 xor_check[0], xor_check[1], xor_check[2], xor_check[3], xor_check[4], xor_check[5]);\r
-\r
-                            xor_value = (xor_check[0] & 0x0F) ^ ((xor_check[0] & 0xF0) >> 4) ^ (xor_check[1] & 0x0F) ^ ((xor_check[1] & 0xF0) >> 4);\r
-\r
-                            if (xor_value != (xor_check[2] & 0x0F))\r
-                            {\r
-                                ANALYZE_PRINTF ("error 4: wrong XOR check for customer id: 0x%1x 0x%1x\n", xor_value, xor_check[2] & 0x0F);\r
-                                irmp_ir_detected = FALSE;\r
-                            }\r
-\r
-                            xor_value = xor_check[2] ^ xor_check[3] ^ xor_check[4];\r
-\r
-                            if (xor_value != xor_check[5])\r
-                            {\r
-                                ANALYZE_PRINTF ("error 5: wrong XOR check for data bits: 0x%02x 0x%02x\n", xor_value, xor_check[5]);\r
-                                irmp_ir_detected = FALSE;\r
-                            }\r
-\r
-                            irmp_flags |= genre2;       // write the genre2 bits into MSB of the flag byte\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_KASEIKYO_PROTOCOL)\r
+                       {\r
+                           uint_fast8_t xor_value;\r
+\r
+                           xor_value = (xor_check[0] & 0x0F) ^ ((xor_check[0] & 0xF0) >> 4) ^ (xor_check[1] & 0x0F) ^ ((xor_check[1] & 0xF0) >> 4);\r
+\r
+                           if (xor_value != (xor_check[2] & 0x0F))\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("error 4: wrong XOR check for customer id: 0x%1x 0x%1x\n", xor_value, xor_check[2] & 0x0F);\r
+#endif // ANALYZE\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+\r
+                           xor_value = xor_check[2] ^ xor_check[3] ^ xor_check[4];\r
+\r
+                           if (xor_value != xor_check[5])\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("error 5: wrong XOR check for data bits: 0x%02x 0x%02x\n", xor_value, xor_check[5]);\r
+#endif // ANALYZE\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+\r
+                           irmp_flags |= genre2;       // write the genre2 bits into MSB of the flag byte\r
+                       }\r
 #endif // IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+                       if (irmp_param.protocol == IRMP_ORTEK_PROTOCOL)\r
+                       {\r
+                           if (parity == PARITY_CHECK_FAILED)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("error 6: parity check failed\n");\r
+#endif // ANALYZE\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+\r
+                           if ((irmp_tmp_address & 0x03) == 0x02)\r
+                           {\r
+#ifdef ANALYZE\r
+                               ANALYZE_PRINTF ("code skipped: ORTEK end of transmission frame (key release)\n");\r
+#endif // ANALYZE\r
+                               irmp_ir_detected = FALSE;\r
+                           }\r
+                           irmp_tmp_address >>= 2;\r
+                       }\r
+#endif // IRMP_SUPPORT_ORTEK_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_param.complete_len == RC6_COMPLETE_DATA_LEN_LONG)     // RC6 mode = 6?\r
-                        {\r
-                            irmp_protocol = IRMP_RC6A_PROTOCOL;\r
-                        }\r
-                        else\r
+                       if (irmp_param.protocol == IRMP_RC6_PROTOCOL && irmp_param.complete_len == RC6_COMPLETE_DATA_LEN_LONG)     // RC6 mode = 6?\r
+                       {\r
+                           irmp_protocol = IRMP_RC6A_PROTOCOL;\r
+                       }\r
+                       else\r
 #endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
-                        {\r
-                            irmp_protocol = irmp_param.protocol;\r
-                        }\r
+                       {\r
+                           irmp_protocol = irmp_param.protocol;\r
+                       }\r
 \r
 #if IRMP_SUPPORT_FDC_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_FDC_PROTOCOL)\r
-                        {\r
-                            if (irmp_tmp_command & 0x000F)                          // released key?\r
-                            {\r
-                                irmp_tmp_command = (irmp_tmp_command >> 4) | 0x80;  // yes, set bit 7\r
-                            }\r
-                            else\r
-                            {\r
-                                irmp_tmp_command >>= 4;                             // no, it's a pressed key\r
-                            }\r
-                            irmp_tmp_command |= (irmp_tmp_address << 2) & 0x0F00;   // 000000CCCCAAAAAA -> 0000CCCC00000000\r
-                            irmp_tmp_address &= 0x003F;\r
-                        }\r
-#endif\r
-\r
-                        irmp_address = irmp_tmp_address;                            // store address\r
+                       if (irmp_param.protocol == IRMP_FDC_PROTOCOL)\r
+                       {\r
+                           if (irmp_tmp_command & 0x000F)                          // released key?\r
+                           {\r
+                               irmp_tmp_command = (irmp_tmp_command >> 4) | 0x80;  // yes, set bit 7\r
+                           }\r
+                           else\r
+                           {\r
+                               irmp_tmp_command >>= 4;                             // no, it's a pressed key\r
+                           }\r
+                           irmp_tmp_command |= (irmp_tmp_address << 2) & 0x0F00;   // 000000CCCCAAAAAA -> 0000CCCC00000000\r
+                           irmp_tmp_address &= 0x003F;\r
+                       }\r
+#endif\r
+\r
+                       irmp_address = irmp_tmp_address;                            // store address\r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_NEC_PROTOCOL)\r
-                        {\r
-                            last_irmp_address = irmp_tmp_address;                   // store as last address, too\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_NEC_PROTOCOL)\r
+                       {\r
+                           last_irmp_address = irmp_tmp_address;                   // store as last address, too\r
+                       }\r
 #endif\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-                        if (irmp_param.protocol == IRMP_RC5_PROTOCOL)\r
-                        {\r
-                            irmp_tmp_command |= rc5_cmd_bit6;                       // store bit 6\r
-                        }\r
+                       if (irmp_param.protocol == IRMP_RC5_PROTOCOL)\r
+                       {\r
+                           irmp_tmp_command |= rc5_cmd_bit6;                       // store bit 6\r
+                       }\r
 #endif\r
-                        irmp_command = irmp_tmp_command;                            // store command\r
+#if IRMP_SUPPORT_S100_PROTOCOL == 1\r
+                       if (irmp_param.protocol == IRMP_S100_PROTOCOL)\r
+                       {\r
+                           irmp_tmp_command |= rc5_cmd_bit6;                       // store bit 6\r
+                       }\r
+#endif\r
+                       irmp_command = irmp_tmp_command;                            // store command\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
-                        irmp_id = irmp_tmp_id;\r
-#endif\r
-                    }\r
-                }\r
-\r
-                if (irmp_ir_detected)\r
-                {\r
-                    if (last_irmp_command == irmp_tmp_command &&\r
-                        last_irmp_address == irmp_tmp_address &&\r
-                        repetition_len < IRMP_KEY_REPETITION_LEN)\r
-                    {\r
-                        irmp_flags |= IRMP_FLAG_REPETITION;\r
-                    }\r
-\r
-                    last_irmp_address = irmp_tmp_address;                           // store as last address, too\r
-                    last_irmp_command = irmp_tmp_command;                           // store as last command, too\r
-\r
-                    repetition_len = 0;\r
-                }\r
-                else\r
-                {\r
-                    ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
-                }\r
-\r
-//              irmp_busy_flag          = FALSE;\r
-                irmp_start_bit_detected = 0;                                        // and wait for next start bit\r
-                irmp_tmp_command        = 0;\r
-                irmp_pulse_time         = 0;\r
-                irmp_pause_time         = 0;\r
+                       irmp_id = irmp_tmp_id;\r
+#endif\r
+                   }\r
+               }\r
+\r
+               if (irmp_ir_detected)\r
+               {\r
+                   if (last_irmp_command == irmp_tmp_command &&\r
+                       last_irmp_address == irmp_tmp_address &&\r
+                       key_repetition_len < IRMP_KEY_REPETITION_LEN)\r
+                   {\r
+                       irmp_flags |= IRMP_FLAG_REPETITION;\r
+                   }\r
+\r
+                   last_irmp_address = irmp_tmp_address;                           // store as last address, too\r
+                   last_irmp_command = irmp_tmp_command;                           // store as last command, too\r
+\r
+                   key_repetition_len = 0;\r
+               }\r
+               else\r
+               {\r
+#ifdef ANALYZE\r
+                   ANALYZE_ONLY_NORMAL_PUTCHAR ('\n');\r
+#endif // ANALYZE\r
+               }\r
+\r
+               irmp_start_bit_detected = 0;                                        // and wait for next start bit\r
+               irmp_tmp_command        = 0;\r
+               irmp_pulse_time         = 0;\r
+               irmp_pause_time         = 0;\r
 \r
 #if IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-                if (irmp_protocol == IRMP_JVC_PROTOCOL)                             // the stop bit of JVC frame is also start bit of next frame\r
-                {                                                                   // set pulse time here!\r
-                    irmp_pulse_time = ((uint8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME));\r
-                }\r
+               if (irmp_protocol == IRMP_JVC_PROTOCOL)                             // the stop bit of JVC frame is also start bit of next frame\r
+               {                                                                   // set pulse time here!\r
+                   irmp_pulse_time = ((uint_fast8_t)(F_INTERRUPTS * JVC_START_BIT_PULSE_TIME));\r
+               }\r
 #endif // IRMP_SUPPORT_JVC_PROTOCOL == 1\r
-            }\r
-        }\r
+           }\r
+       }\r
     }\r
 \r
 #if defined(STELLARIS_ARM_CORTEX_M4)\r
@@ -3263,143 +4859,16 @@ irmp_ISR (void)
  * Compile it under linux with:\r
  * cc irmp.c -o irmp\r
  *\r
- * usage: ./irmp [-v|-s|-a|-l|-p] < file\r
+ * usage: ./irmp [-v|-s|-a|-l] < file\r
  *\r
  * options:\r
  *   -v verbose\r
  *   -s silent\r
  *   -a analyze\r
  *   -l list pulse/pauses\r
- *   -p print timings\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
 \r
-static void\r
-print_timings (void)\r
-{\r
-    printf ("IRMP_TIMEOUT_LEN:        %d [%d byte(s)]\n", IRMP_TIMEOUT_LEN, sizeof (PAUSE_LEN));\r
-    printf ("IRMP_KEY_REPETITION_LEN  %d\n", IRMP_KEY_REPETITION_LEN);\r
-    puts ("");\r
-    printf ("PROTOCOL       S  S-PULSE    S-PAUSE    PULSE-0    PAUSE-0    PULSE-1    PAUSE-1\n");\r
-    printf ("====================================================================================\n");\r
-    printf ("SIRCS          1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            SIRCS_START_BIT_PULSE_LEN_MIN, SIRCS_START_BIT_PULSE_LEN_MAX, SIRCS_START_BIT_PAUSE_LEN_MIN, SIRCS_START_BIT_PAUSE_LEN_MAX,\r
-            SIRCS_0_PULSE_LEN_MIN, SIRCS_0_PULSE_LEN_MAX, SIRCS_PAUSE_LEN_MIN, SIRCS_PAUSE_LEN_MAX,\r
-            SIRCS_1_PULSE_LEN_MIN, SIRCS_1_PULSE_LEN_MAX, SIRCS_PAUSE_LEN_MIN, SIRCS_PAUSE_LEN_MAX);\r
-\r
-    printf ("NEC            1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX, NEC_START_BIT_PAUSE_LEN_MIN, NEC_START_BIT_PAUSE_LEN_MAX,\r
-            NEC_PULSE_LEN_MIN, NEC_PULSE_LEN_MAX, NEC_0_PAUSE_LEN_MIN, NEC_0_PAUSE_LEN_MAX,\r
-            NEC_PULSE_LEN_MIN, NEC_PULSE_LEN_MAX, NEC_1_PAUSE_LEN_MIN, NEC_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("NEC (rep)      1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            NEC_START_BIT_PULSE_LEN_MIN, NEC_START_BIT_PULSE_LEN_MAX, NEC_REPEAT_START_BIT_PAUSE_LEN_MIN, NEC_REPEAT_START_BIT_PAUSE_LEN_MAX,\r
-            NEC_PULSE_LEN_MIN, NEC_PULSE_LEN_MAX, NEC_0_PAUSE_LEN_MIN, NEC_0_PAUSE_LEN_MAX,\r
-            NEC_PULSE_LEN_MIN, NEC_PULSE_LEN_MAX, NEC_1_PAUSE_LEN_MIN, NEC_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("SAMSUNG        1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            SAMSUNG_START_BIT_PULSE_LEN_MIN, SAMSUNG_START_BIT_PULSE_LEN_MAX, SAMSUNG_START_BIT_PAUSE_LEN_MIN, SAMSUNG_START_BIT_PAUSE_LEN_MAX,\r
-            SAMSUNG_PULSE_LEN_MIN, SAMSUNG_PULSE_LEN_MAX, SAMSUNG_0_PAUSE_LEN_MIN, SAMSUNG_0_PAUSE_LEN_MAX,\r
-            SAMSUNG_PULSE_LEN_MIN, SAMSUNG_PULSE_LEN_MAX, SAMSUNG_1_PAUSE_LEN_MIN, SAMSUNG_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("MATSUSHITA     1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            MATSUSHITA_START_BIT_PULSE_LEN_MIN, MATSUSHITA_START_BIT_PULSE_LEN_MAX, MATSUSHITA_START_BIT_PAUSE_LEN_MIN, MATSUSHITA_START_BIT_PAUSE_LEN_MAX,\r
-            MATSUSHITA_PULSE_LEN_MIN, MATSUSHITA_PULSE_LEN_MAX, MATSUSHITA_0_PAUSE_LEN_MIN, MATSUSHITA_0_PAUSE_LEN_MAX,\r
-            MATSUSHITA_PULSE_LEN_MIN, MATSUSHITA_PULSE_LEN_MAX, MATSUSHITA_1_PAUSE_LEN_MIN, MATSUSHITA_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("KASEIKYO       1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            KASEIKYO_START_BIT_PULSE_LEN_MIN, KASEIKYO_START_BIT_PULSE_LEN_MAX, KASEIKYO_START_BIT_PAUSE_LEN_MIN, KASEIKYO_START_BIT_PAUSE_LEN_MAX,\r
-            KASEIKYO_PULSE_LEN_MIN, KASEIKYO_PULSE_LEN_MAX, KASEIKYO_0_PAUSE_LEN_MIN, KASEIKYO_0_PAUSE_LEN_MAX,\r
-            KASEIKYO_PULSE_LEN_MIN, KASEIKYO_PULSE_LEN_MAX, KASEIKYO_1_PAUSE_LEN_MIN, KASEIKYO_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("RECS80         1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            RECS80_START_BIT_PULSE_LEN_MIN, RECS80_START_BIT_PULSE_LEN_MAX, RECS80_START_BIT_PAUSE_LEN_MIN, RECS80_START_BIT_PAUSE_LEN_MAX,\r
-            RECS80_PULSE_LEN_MIN, RECS80_PULSE_LEN_MAX, RECS80_0_PAUSE_LEN_MIN, RECS80_0_PAUSE_LEN_MAX,\r
-            RECS80_PULSE_LEN_MIN, RECS80_PULSE_LEN_MAX, RECS80_1_PAUSE_LEN_MIN, RECS80_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("RC5            1  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX, RC5_START_BIT_LEN_MIN, RC5_START_BIT_LEN_MAX,\r
-            RC5_BIT_LEN_MIN, RC5_BIT_LEN_MAX);\r
-\r
-    printf ("DENON          1  %3d - %3d             %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX,\r
-            DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX, DENON_0_PAUSE_LEN_MIN, DENON_0_PAUSE_LEN_MAX,\r
-            DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX, DENON_1_PAUSE_LEN_MIN, DENON_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("THOMSON        1  %3d - %3d             %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            THOMSON_PULSE_LEN_MIN, THOMSON_PULSE_LEN_MAX,\r
-            THOMSON_PULSE_LEN_MIN, THOMSON_PULSE_LEN_MAX, THOMSON_0_PAUSE_LEN_MIN, THOMSON_0_PAUSE_LEN_MAX,\r
-            THOMSON_PULSE_LEN_MIN, THOMSON_PULSE_LEN_MAX, THOMSON_1_PAUSE_LEN_MIN, THOMSON_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("RC6            1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            RC6_START_BIT_PULSE_LEN_MIN, RC6_START_BIT_PULSE_LEN_MAX, RC6_START_BIT_PAUSE_LEN_MIN, RC6_START_BIT_PAUSE_LEN_MAX,\r
-            RC6_BIT_PULSE_LEN_MIN, RC6_BIT_PULSE_LEN_MAX, RC6_BIT_PAUSE_LEN_MIN, RC6_BIT_PAUSE_LEN_MAX);\r
-\r
-    printf ("RECS80EXT      1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            RECS80EXT_START_BIT_PULSE_LEN_MIN, RECS80EXT_START_BIT_PULSE_LEN_MAX, RECS80EXT_START_BIT_PAUSE_LEN_MIN, RECS80EXT_START_BIT_PAUSE_LEN_MAX,\r
-            RECS80EXT_PULSE_LEN_MIN, RECS80EXT_PULSE_LEN_MAX, RECS80EXT_0_PAUSE_LEN_MIN, RECS80EXT_0_PAUSE_LEN_MAX,\r
-            RECS80EXT_PULSE_LEN_MIN, RECS80EXT_PULSE_LEN_MAX, RECS80EXT_1_PAUSE_LEN_MIN, RECS80EXT_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("NUBERT         1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            NUBERT_START_BIT_PULSE_LEN_MIN, NUBERT_START_BIT_PULSE_LEN_MAX, NUBERT_START_BIT_PAUSE_LEN_MIN, NUBERT_START_BIT_PAUSE_LEN_MAX,\r
-            NUBERT_0_PULSE_LEN_MIN, NUBERT_0_PULSE_LEN_MAX, NUBERT_0_PAUSE_LEN_MIN, NUBERT_0_PAUSE_LEN_MAX,\r
-            NUBERT_1_PULSE_LEN_MIN, NUBERT_1_PULSE_LEN_MAX, NUBERT_1_PAUSE_LEN_MIN, NUBERT_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("BANG_OLUFSEN   1  %3d - %3d  %3d - %3d\n",\r
-            BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX,\r
-            BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX);\r
-\r
-    printf ("BANG_OLUFSEN   2  %3d - %3d  %3d - %3d\n",\r
-            BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX,\r
-            BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX);\r
-\r
-    printf ("BANG_OLUFSEN   3  %3d - %3d  %3d - %3d\n",\r
-            BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX,\r
-            BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX);\r
-\r
-    printf ("BANG_OLUFSEN   4  %3d - %3d  %3d - %3d\n",\r
-            BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX,\r
-            BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX);\r
-\r
-    printf ("BANG_OLUFSEN   -                        %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            BANG_OLUFSEN_PULSE_LEN_MIN, BANG_OLUFSEN_PULSE_LEN_MAX, BANG_OLUFSEN_0_PAUSE_LEN_MIN, BANG_OLUFSEN_0_PAUSE_LEN_MAX,\r
-            BANG_OLUFSEN_PULSE_LEN_MIN, BANG_OLUFSEN_PULSE_LEN_MAX, BANG_OLUFSEN_1_PAUSE_LEN_MIN, BANG_OLUFSEN_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("GRUNDIG/NOKIA  1  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            GRUNDIG_NOKIA_IR60_START_BIT_LEN_MIN, GRUNDIG_NOKIA_IR60_START_BIT_LEN_MAX,\r
-            GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MIN, GRUNDIG_NOKIA_IR60_PRE_PAUSE_LEN_MAX,\r
-            GRUNDIG_NOKIA_IR60_BIT_LEN_MIN, GRUNDIG_NOKIA_IR60_BIT_LEN_MAX);\r
-\r
-    printf ("SIEMENS/RUWIDO 1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MIN, SIEMENS_OR_RUWIDO_START_BIT_PULSE_LEN_MAX,\r
-            SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MIN, SIEMENS_OR_RUWIDO_START_BIT_PAUSE_LEN_MAX,\r
-            SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MIN, SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MAX,\r
-            SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MIN, SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MAX,\r
-            2 * SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_BIT_PULSE_LEN_MAX,\r
-            2 * SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MIN, 2 * SIEMENS_OR_RUWIDO_BIT_PAUSE_LEN_MAX);\r
-\r
-    printf ("FDC            1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            FDC_START_BIT_PULSE_LEN_MIN, FDC_START_BIT_PULSE_LEN_MAX, FDC_START_BIT_PAUSE_LEN_MIN, FDC_START_BIT_PAUSE_LEN_MAX,\r
-            FDC_PULSE_LEN_MIN, FDC_PULSE_LEN_MAX, FDC_0_PAUSE_LEN_MIN, FDC_0_PAUSE_LEN_MAX,\r
-            FDC_PULSE_LEN_MIN, FDC_PULSE_LEN_MAX, FDC_1_PAUSE_LEN_MIN, FDC_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("RCCAR          1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            RCCAR_START_BIT_PULSE_LEN_MIN, RCCAR_START_BIT_PULSE_LEN_MAX, RCCAR_START_BIT_PAUSE_LEN_MIN, RCCAR_START_BIT_PAUSE_LEN_MAX,\r
-            RCCAR_PULSE_LEN_MIN, RCCAR_PULSE_LEN_MAX, RCCAR_0_PAUSE_LEN_MIN, RCCAR_0_PAUSE_LEN_MAX,\r
-            RCCAR_PULSE_LEN_MIN, RCCAR_PULSE_LEN_MAX, RCCAR_1_PAUSE_LEN_MIN, RCCAR_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("NIKON          1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            NIKON_START_BIT_PULSE_LEN_MIN, NIKON_START_BIT_PULSE_LEN_MAX, NIKON_START_BIT_PAUSE_LEN_MIN, NIKON_START_BIT_PAUSE_LEN_MAX,\r
-            NIKON_PULSE_LEN_MIN, NIKON_PULSE_LEN_MAX, NIKON_0_PAUSE_LEN_MIN, NIKON_0_PAUSE_LEN_MAX,\r
-            NIKON_PULSE_LEN_MIN, NIKON_PULSE_LEN_MAX, NIKON_1_PAUSE_LEN_MIN, NIKON_1_PAUSE_LEN_MAX);\r
-\r
-    printf ("LEGO           1  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d  %3d - %3d\n",\r
-            LEGO_START_BIT_PULSE_LEN_MIN, LEGO_START_BIT_PULSE_LEN_MAX, LEGO_START_BIT_PAUSE_LEN_MIN, LEGO_START_BIT_PAUSE_LEN_MAX,\r
-            LEGO_PULSE_LEN_MIN, LEGO_PULSE_LEN_MAX, LEGO_0_PAUSE_LEN_MIN, LEGO_0_PAUSE_LEN_MAX,\r
-            LEGO_PULSE_LEN_MIN, LEGO_PULSE_LEN_MAX, LEGO_1_PAUSE_LEN_MIN, LEGO_1_PAUSE_LEN_MAX);\r
-\r
-}\r
-\r
 void\r
 print_spectrum (char * text, int * buf, int is_pulse)\r
 {\r
@@ -3414,69 +4883,69 @@ print_spectrum (char * text, int * buf, int is_pulse)
     double  average = 0;\r
     double  tolerance;\r
 \r
-    puts ("-------------------------------------------------------------------------------");\r
+    puts ("-----------------------------------------------------------------------------");\r
     printf ("%s:\n", text);\r
 \r
     for (i = 0; i < 256; i++)\r
     {\r
-        if (buf[i] > max_value)\r
-        {\r
-            max_value = buf[i];\r
-        }\r
+       if (buf[i] > max_value)\r
+       {\r
+           max_value = buf[i];\r
+       }\r
     }\r
 \r
-    for (i = 1; i < 100; i++)\r
+    for (i = 1; i < 200; i++)\r
     {\r
-        if (buf[i] > 0)\r
-        {\r
-            printf ("%3d ", i);\r
-            value = (buf[i] * 60) / max_value;\r
-\r
-            for (j = 0; j < value; j++)\r
-            {\r
-                putchar ('o');\r
-            }\r
-            printf (" %d\n", buf[i]);\r
-\r
-            sum += i * buf[i];\r
-            counter += buf[i];\r
-        }\r
-        else\r
-        {\r
-            max = i - 1;\r
-\r
-            if (counter > 0)\r
-            {\r
-                average = (float) sum / (float) counter;\r
-\r
-                if (is_pulse)\r
-                {\r
-                    printf ("pulse ");\r
-                }\r
-                else\r
-                {\r
-                    printf ("pause ");\r
-                }\r
-\r
-                printf ("avg: %4.1f=%6.1f us, ", average, (1000000. * average) / (float) F_INTERRUPTS);\r
-                printf ("min: %2d=%6.1f us, ", min, (1000000. * min) / (float) F_INTERRUPTS);\r
-                printf ("max: %2d=%6.1f us, ", max, (1000000. * max) / (float) F_INTERRUPTS);\r
-\r
-                tolerance = (max - average);\r
-\r
-                if (average - min > tolerance)\r
-                {\r
-                    tolerance = average - min;\r
-                }\r
-\r
-                tolerance = tolerance * 100 / average;\r
-                printf ("tol: %4.1f%%\n", tolerance);\r
-            }\r
-\r
-            counter = 0;\r
-            sum = 0;\r
-            min = i + 1;\r
-        }\r
+       if (buf[i] > 0)\r
+       {\r
+           printf ("%3d ", i);\r
+           value = (buf[i] * 60) / max_value;\r
+\r
+           for (j = 0; j < value; j++)\r
+           {\r
+               putchar ('o');\r
+           }\r
+           printf (" %d\n", buf[i]);\r
+\r
+           sum += i * buf[i];\r
+           counter += buf[i];\r
+       }\r
+       else\r
+       {\r
+           max = i - 1;\r
+\r
+           if (counter > 0)\r
+           {\r
+               average = (float) sum / (float) counter;\r
+\r
+               if (is_pulse)\r
+               {\r
+                   printf ("pulse ");\r
+               }\r
+               else\r
+               {\r
+                   printf ("pause ");\r
+               }\r
+\r
+               printf ("avg: %4.1f=%6.1f us, ", average, (1000000. * average) / (float) F_INTERRUPTS);\r
+               printf ("min: %2d=%6.1f us, ", min, (1000000. * min) / (float) F_INTERRUPTS);\r
+               printf ("max: %2d=%6.1f us, ", max, (1000000. * max) / (float) F_INTERRUPTS);\r
+\r
+               tolerance = (max - average);\r
+\r
+               if (average - min > tolerance)\r
+               {\r
+                   tolerance = average - min;\r
+               }\r
+\r
+               tolerance = tolerance * 100 / average;\r
+               printf ("tol: %4.1f%%\n", tolerance);\r
+           }\r
+\r
+           counter = 0;\r
+           sum = 0;\r
+           min = i + 1;\r
+       }\r
     }\r
 }\r
 \r
@@ -3515,102 +4984,102 @@ print_spectrum (char * text, int * buf, int is_pulse)
 #define KEY_MOUSE_1         0x9E            // keycode = 0x0400\r
 #define KEY_MOUSE_2         0x9F            // keycode = 0x0800\r
 \r
-static uint8_t\r
-get_fdc_key (uint16_t cmd)\r
+static uint_fast8_t\r
+get_fdc_key (uint_fast16_t cmd)\r
 {\r
     static uint8_t key_table[128] =\r
     {\r
      // 0    1    2    3    4    5    6    7    8    9    A    B    C    D    E    F\r
-        0,  '^', '1', '2', '3', '4', '5', '6', '7', '8', '9', '0', 'ß', '´',  0,  '\b',\r
+       0,  '^', '1', '2', '3', '4', '5', '6', '7', '8', '9', '0', 'ß', '´',  0,  '\b',\r
        '\t','q', 'w', 'e', 'r', 't', 'z', 'u', 'i', 'o', 'p', 'ü', '+',  0,   0,  'a',\r
        's', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'ö', 'ä', '#',  '\r', 0,  '<', 'y', 'x',\r
        'c', 'v', 'b', 'n', 'm', ',', '.', '-',  0,   0,   0,   0,   0,  ' ',  0,   0,\r
 \r
-        0,  '°', '!', '"', '§', '$', '%', '&', '/', '(', ')', '=', '?', '`',  0,  '\b',\r
+       0,  '°', '!', '"', '§', '$', '%', '&', '/', '(', ')', '=', '?', '`',  0,  '\b',\r
        '\t','Q', 'W', 'E', 'R', 'T', 'Z', 'U', 'I', 'O', 'P', 'Ãœ', '*',  0,   0,  'A',\r
        'S', 'D', 'F', 'G', 'H', 'J', 'K', 'L', 'Ö', 'Ä', '\'','\r', 0,  '>', 'Y', 'X',\r
        'C', 'V', 'B', 'N', 'M', ';', ':', '_',  0,   0,   0,   0,   0,  ' ',  0,   0\r
     };\r
-    static uint8_t state;\r
+    static uint_fast8_t state;\r
 \r
-    uint8_t key = 0;\r
+    uint_fast8_t key = 0;\r
 \r
     switch (cmd)\r
     {\r
-        case 0x002C: state |=  STATE_LEFT_SHIFT;    break;              // pressed left shift\r
-        case 0x00AC: state &= ~STATE_LEFT_SHIFT;    break;              // released left shift\r
-        case 0x0039: state |=  STATE_RIGHT_SHIFT;   break;              // pressed right shift\r
-        case 0x00B9: state &= ~STATE_RIGHT_SHIFT;   break;              // released right shift\r
-        case 0x003A: state |=  STATE_LEFT_CTRL;     break;              // pressed left ctrl\r
-        case 0x00BA: state &= ~STATE_LEFT_CTRL;     break;              // released left ctrl\r
-        case 0x003C: state |=  STATE_LEFT_ALT;      break;              // pressed left alt\r
-        case 0x00BC: state &= ~STATE_LEFT_ALT;      break;              // released left alt\r
-        case 0x003E: state |=  STATE_RIGHT_ALT;     break;              // pressed left alt\r
-        case 0x00BE: state &= ~STATE_RIGHT_ALT;     break;              // released left alt\r
-\r
-        case 0x006e: key = KEY_ESCAPE;              break;\r
-        case 0x004b: key = KEY_INSERT;              break;\r
-        case 0x004c: key = KEY_DELETE;              break;\r
-        case 0x004f: key = KEY_LEFT;                break;\r
-        case 0x0050: key = KEY_HOME;                break;\r
-        case 0x0051: key = KEY_END;                 break;\r
-        case 0x0053: key = KEY_UP;                  break;\r
-        case 0x0054: key = KEY_DOWN;                break;\r
-        case 0x0055: key = KEY_PAGE_UP;             break;\r
-        case 0x0056: key = KEY_PAGE_DOWN;           break;\r
-        case 0x0059: key = KEY_RIGHT;               break;\r
-        case 0x0400: key = KEY_MOUSE_1;             break;\r
-        case 0x0800: key = KEY_MOUSE_2;             break;\r
-\r
-        default:\r
-        {\r
-            if (!(cmd & 0x80))                      // pressed key\r
-            {\r
-                if (cmd >= 0x70 && cmd <= 0x7F)     // function keys\r
-                {\r
-                    key = cmd + 0x10;               // 7x -> 8x\r
-                }\r
-                else if (cmd < 64)                  // key listed in key_table\r
-                {\r
-                    if (state & (STATE_LEFT_ALT | STATE_RIGHT_ALT))\r
-                    {\r
-                        switch (cmd)\r
-                        {\r
-                            case 0x0003: key = '²';     break;\r
-                            case 0x0008: key = '{';     break;\r
-                            case 0x0009: key = '[';     break;\r
-                            case 0x000A: key = ']';     break;\r
-                            case 0x000B: key = '}';     break;\r
-                            case 0x000C: key = '\\';    break;\r
-                            case 0x001C: key = '~';     break;\r
-                            case 0x002D: key = '|';     break;\r
-                            case 0x0034: key = 0xB5;    break; // Mu\r
-                        }\r
-                    }\r
-                    else if (state & (STATE_LEFT_CTRL))\r
-                    {\r
-                        if (key_table[cmd] >= 'a' && key_table[cmd] <= 'z')\r
-                        {\r
-                            key = key_table[cmd] - 'a' + 1;\r
-                        }\r
-                        else\r
-                        {\r
-                            key = key_table[cmd];\r
-                        }\r
-                    }\r
-                    else\r
-                    {\r
-                        int idx = cmd + ((state & (STATE_LEFT_SHIFT | STATE_RIGHT_SHIFT)) ? 64 : 0);\r
-\r
-                        if (key_table[idx])\r
-                        {\r
-                            key = key_table[idx];\r
-                        }\r
-                    }\r
-                }\r
-            }\r
-            break;\r
-        }\r
+       case 0x002C: state |=  STATE_LEFT_SHIFT;    break;              // pressed left shift\r
+       case 0x00AC: state &= ~STATE_LEFT_SHIFT;    break;              // released left shift\r
+       case 0x0039: state |=  STATE_RIGHT_SHIFT;   break;              // pressed right shift\r
+       case 0x00B9: state &= ~STATE_RIGHT_SHIFT;   break;              // released right shift\r
+       case 0x003A: state |=  STATE_LEFT_CTRL;     break;              // pressed left ctrl\r
+       case 0x00BA: state &= ~STATE_LEFT_CTRL;     break;              // released left ctrl\r
+       case 0x003C: state |=  STATE_LEFT_ALT;      break;              // pressed left alt\r
+       case 0x00BC: state &= ~STATE_LEFT_ALT;      break;              // released left alt\r
+       case 0x003E: state |=  STATE_RIGHT_ALT;     break;              // pressed left alt\r
+       case 0x00BE: state &= ~STATE_RIGHT_ALT;     break;              // released left alt\r
+\r
+       case 0x006e: key = KEY_ESCAPE;              break;\r
+       case 0x004b: key = KEY_INSERT;              break;\r
+       case 0x004c: key = KEY_DELETE;              break;\r
+       case 0x004f: key = KEY_LEFT;                break;\r
+       case 0x0050: key = KEY_HOME;                break;\r
+       case 0x0051: key = KEY_END;                 break;\r
+       case 0x0053: key = KEY_UP;                  break;\r
+       case 0x0054: key = KEY_DOWN;                break;\r
+       case 0x0055: key = KEY_PAGE_UP;             break;\r
+       case 0x0056: key = KEY_PAGE_DOWN;           break;\r
+       case 0x0059: key = KEY_RIGHT;               break;\r
+       case 0x0400: key = KEY_MOUSE_1;             break;\r
+       case 0x0800: key = KEY_MOUSE_2;             break;\r
+\r
+       default:\r
+       {\r
+           if (!(cmd & 0x80))                      // pressed key\r
+           {\r
+               if (cmd >= 0x70 && cmd <= 0x7F)     // function keys\r
+               {\r
+                   key = cmd + 0x10;               // 7x -> 8x\r
+               }\r
+               else if (cmd < 64)                  // key listed in key_table\r
+               {\r
+                   if (state & (STATE_LEFT_ALT | STATE_RIGHT_ALT))\r
+                   {\r
+                       switch (cmd)\r
+                       {\r
+                           case 0x0003: key = '²';     break;\r
+                           case 0x0008: key = '{';     break;\r
+                           case 0x0009: key = '[';     break;\r
+                           case 0x000A: key = ']';     break;\r
+                           case 0x000B: key = '}';     break;\r
+                           case 0x000C: key = '\\';    break;\r
+                           case 0x001C: key = '~';     break;\r
+                           case 0x002D: key = '|';     break;\r
+                           case 0x0034: key = 0xB5;    break; // Mu\r
+                       }\r
+                   }\r
+                   else if (state & (STATE_LEFT_CTRL))\r
+                   {\r
+                       if (key_table[cmd] >= 'a' && key_table[cmd] <= 'z')\r
+                       {\r
+                           key = key_table[cmd] - 'a' + 1;\r
+                       }\r
+                       else\r
+                       {\r
+                           key = key_table[cmd];\r
+                       }\r
+                   }\r
+                   else\r
+                   {\r
+                       int idx = cmd + ((state & (STATE_LEFT_SHIFT | STATE_RIGHT_SHIFT)) ? 64 : 0);\r
+\r
+                       if (key_table[idx])\r
+                       {\r
+                           key = key_table[idx];\r
+                       }\r
+                   }\r
+               }\r
+           }\r
+           break;\r
+       }\r
     }\r
 \r
     return (key);\r
@@ -3619,86 +5088,117 @@ get_fdc_key (uint16_t cmd)
 static int         analyze = FALSE;\r
 static int         list = FALSE;\r
 static IRMP_DATA   irmp_data;\r
+static int         expected_protocol;\r
+static int         expected_address;\r
+static int         expected_command;\r
+static int         do_check_expected_values;\r
 \r
 static void\r
 next_tick (void)\r
 {\r
     if (! analyze && ! list)\r
     {\r
-        (void) irmp_ISR ();\r
-\r
-        if (irmp_get_data (&irmp_data))\r
-        {\r
-            uint8_t key;\r
-\r
-            ANALYZE_ONLY_NORMAL_PUTCHAR (' ');\r
-\r
-            if (verbose)\r
-            {\r
-                printf ("%8.3fms ", (double) (time_counter * 1000) / F_INTERRUPTS);\r
-            }\r
-\r
-            if (irmp_data.protocol == IRMP_FDC_PROTOCOL && (key = get_fdc_key (irmp_data.command)) != 0)\r
-            {\r
-                if ((key >= 0x20 && key < 0x7F) || key >= 0xA0)\r
-                {\r
-                    printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x, asc = 0x%02x, key = '%c'\n",\r
-                            irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags, key, key);\r
-                }\r
-                else if (key == '\r' || key == '\t' || key == KEY_ESCAPE || (key >= 0x80 && key <= 0x9F))                 // function keys\r
-                {\r
-                    char * p = (char *) NULL;\r
-\r
-                    switch (key)\r
-                    {\r
-                        case '\t'                : p = "TAB";           break;\r
-                        case '\r'                : p = "CR";            break;\r
-                        case KEY_ESCAPE          : p = "ESCAPE";        break;\r
-                        case KEY_MENUE           : p = "MENUE";         break;\r
-                        case KEY_BACK            : p = "BACK";          break;\r
-                        case KEY_FORWARD         : p = "FORWARD";       break;\r
-                        case KEY_ADDRESS         : p = "ADDRESS";       break;\r
-                        case KEY_WINDOW          : p = "WINDOW";        break;\r
-                        case KEY_1ST_PAGE        : p = "1ST_PAGE";      break;\r
-                        case KEY_STOP            : p = "STOP";          break;\r
-                        case KEY_MAIL            : p = "MAIL";          break;\r
-                        case KEY_FAVORITES       : p = "FAVORITES";     break;\r
-                        case KEY_NEW_PAGE        : p = "NEW_PAGE";      break;\r
-                        case KEY_SETUP           : p = "SETUP";         break;\r
-                        case KEY_FONT            : p = "FONT";          break;\r
-                        case KEY_PRINT           : p = "PRINT";         break;\r
-                        case KEY_ON_OFF          : p = "ON_OFF";        break;\r
-\r
-                        case KEY_INSERT          : p = "INSERT";        break;\r
-                        case KEY_DELETE          : p = "DELETE";        break;\r
-                        case KEY_LEFT            : p = "LEFT";          break;\r
-                        case KEY_HOME            : p = "HOME";          break;\r
-                        case KEY_END             : p = "END";           break;\r
-                        case KEY_UP              : p = "UP";            break;\r
-                        case KEY_DOWN            : p = "DOWN";          break;\r
-                        case KEY_PAGE_UP         : p = "PAGE_UP";       break;\r
-                        case KEY_PAGE_DOWN       : p = "PAGE_DOWN";     break;\r
-                        case KEY_RIGHT           : p = "RIGHT";         break;\r
-                        case KEY_MOUSE_1         : p = "KEY_MOUSE_1";   break;\r
-                        case KEY_MOUSE_2         : p = "KEY_MOUSE_2";   break;\r
-                        default                  : p = "<UNKNWON>";     break;\r
-                    }\r
-\r
-                    printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x, asc = 0x%02x, key = %s\n",\r
-                            irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags, key, p);\r
-                }\r
-                else\r
-                {\r
-                    printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x, asc = 0x%02x\n",\r
-                            irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags, key);\r
-                }\r
-            }\r
-            else\r
-            {\r
-                printf ("p = %2d, a = 0x%04x, c = 0x%04x, f = 0x%02x\n",\r
-                        irmp_data.protocol, irmp_data.address, irmp_data.command, irmp_data.flags);\r
-            }\r
-        }\r
+       (void) irmp_ISR ();\r
+\r
+       if (irmp_get_data (&irmp_data))\r
+       {\r
+           uint_fast8_t key;\r
+\r
+           ANALYZE_ONLY_NORMAL_PUTCHAR (' ');\r
+\r
+           if (verbose)\r
+           {\r
+               printf ("%8.3fms ", (double) (time_counter * 1000) / F_INTERRUPTS);\r
+           }\r
+\r
+           if (irmp_data.protocol == IRMP_ACP24_PROTOCOL)\r
+           {\r
+               uint16_t    temp = (irmp_data.command & 0x000F) + 15;\r
+\r
+               printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, temp=%d",\r
+                       irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, temp);\r
+           }\r
+           else if (irmp_data.protocol == IRMP_FDC_PROTOCOL && (key = get_fdc_key (irmp_data.command)) != 0)\r
+           {\r
+               if ((key >= 0x20 && key < 0x7F) || key >= 0xA0)\r
+               {\r
+                   printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x, key='%c'",\r
+                           irmp_data.protocol,  irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key, key);\r
+               }\r
+               else if (key == '\r' || key == '\t' || key == KEY_ESCAPE || (key >= 0x80 && key <= 0x9F))                 // function keys\r
+               {\r
+                   char * p = (char *) NULL;\r
+\r
+                   switch (key)\r
+                   {\r
+                       case '\t'                : p = "TAB";           break;\r
+                       case '\r'                : p = "CR";            break;\r
+                       case KEY_ESCAPE          : p = "ESCAPE";        break;\r
+                       case KEY_MENUE           : p = "MENUE";         break;\r
+                       case KEY_BACK            : p = "BACK";          break;\r
+                       case KEY_FORWARD         : p = "FORWARD";       break;\r
+                       case KEY_ADDRESS         : p = "ADDRESS";       break;\r
+                       case KEY_WINDOW          : p = "WINDOW";        break;\r
+                       case KEY_1ST_PAGE        : p = "1ST_PAGE";      break;\r
+                       case KEY_STOP            : p = "STOP";          break;\r
+                       case KEY_MAIL            : p = "MAIL";          break;\r
+                       case KEY_FAVORITES       : p = "FAVORITES";     break;\r
+                       case KEY_NEW_PAGE        : p = "NEW_PAGE";      break;\r
+                       case KEY_SETUP           : p = "SETUP";         break;\r
+                       case KEY_FONT            : p = "FONT";          break;\r
+                       case KEY_PRINT           : p = "PRINT";         break;\r
+                       case KEY_ON_OFF          : p = "ON_OFF";        break;\r
+\r
+                       case KEY_INSERT          : p = "INSERT";        break;\r
+                       case KEY_DELETE          : p = "DELETE";        break;\r
+                       case KEY_LEFT            : p = "LEFT";          break;\r
+                       case KEY_HOME            : p = "HOME";          break;\r
+                       case KEY_END             : p = "END";           break;\r
+                       case KEY_UP              : p = "UP";            break;\r
+                       case KEY_DOWN            : p = "DOWN";          break;\r
+                       case KEY_PAGE_UP         : p = "PAGE_UP";       break;\r
+                       case KEY_PAGE_DOWN       : p = "PAGE_DOWN";     break;\r
+                       case KEY_RIGHT           : p = "RIGHT";         break;\r
+                       case KEY_MOUSE_1         : p = "KEY_MOUSE_1";   break;\r
+                       case KEY_MOUSE_2         : p = "KEY_MOUSE_2";   break;\r
+                       default                  : p = "<UNKNWON>";     break;\r
+                   }\r
+\r
+                   printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x, key=%s",\r
+                           irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key, p);\r
+               }\r
+               else\r
+               {\r
+                   printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x, asc=0x%02x",\r
+                           irmp_data.protocol,  irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags, key);\r
+               }\r
+           }\r
+           else\r
+           {\r
+               printf ("p=%2d (%s), a=0x%04x, c=0x%04x, f=0x%02x",\r
+                       irmp_data.protocol, irmp_protocol_names[irmp_data.protocol], irmp_data.address, irmp_data.command, irmp_data.flags);\r
+           }\r
+\r
+           if (do_check_expected_values)\r
+           {\r
+               if (irmp_data.protocol != expected_protocol ||\r
+                   irmp_data.address  != expected_address  ||\r
+                   irmp_data.command  != expected_command)\r
+               {\r
+                   printf ("\nerror 7: expected values differ: p=%2d (%s), a=0x%04x, c=0x%04x\n",\r
+                           expected_protocol, irmp_protocol_names[expected_protocol], expected_address, expected_command);\r
+               }\r
+               else\r
+               {\r
+                   printf (" checked!\n");\r
+               }\r
+               do_check_expected_values = FALSE;                           // only check 1st frame in a line!\r
+           }\r
+           else\r
+           {\r
+               putchar ('\n');\r
+           }\r
+       }\r
     }\r
 }\r
 \r
@@ -3721,170 +5221,237 @@ main (int argc, char ** argv)
 \r
     if (argc == 2)\r
     {\r
-        if (! strcmp (argv[1], "-v"))\r
-        {\r
-            verbose = TRUE;\r
-        }\r
-        else if (! strcmp (argv[1], "-l"))\r
-        {\r
-            list = TRUE;\r
-        }\r
-        else if (! strcmp (argv[1], "-a"))\r
-        {\r
-            analyze = TRUE;\r
-        }\r
-        else if (! strcmp (argv[1], "-s"))\r
-        {\r
-            silent = TRUE;\r
-        }\r
-        else if (! strcmp (argv[1], "-p"))\r
-        {\r
-            print_timings ();\r
-            return (0);\r
-        }\r
+       if (! strcmp (argv[1], "-v"))\r
+       {\r
+           verbose = TRUE;\r
+       }\r
+       else if (! strcmp (argv[1], "-l"))\r
+       {\r
+           list = TRUE;\r
+       }\r
+       else if (! strcmp (argv[1], "-a"))\r
+       {\r
+           analyze = TRUE;\r
+       }\r
+       else if (! strcmp (argv[1], "-s"))\r
+       {\r
+           silent = TRUE;\r
+       }\r
+       else if (! strcmp (argv[1], "-r"))\r
+       {\r
+           radio = TRUE;\r
+       }\r
     }\r
 \r
     for (i = 0; i < 256; i++)\r
     {\r
-        start_pulses[i] = 0;\r
-        start_pauses[i] = 0;\r
-        pulses[i] = 0;\r
-        pauses[i] = 0;\r
+       start_pulses[i] = 0;\r
+       start_pauses[i] = 0;\r
+       pulses[i] = 0;\r
+       pauses[i] = 0;\r
     }\r
 \r
     IRMP_PIN = 0xFF;\r
 \r
     while ((ch = getchar ()) != EOF)\r
     {\r
-        if (ch == '_' || ch == '0')\r
-        {\r
-            if (last_ch != ch)\r
-            {\r
-                if (pause > 0)\r
-                {\r
-                    if (list)\r
-                    {\r
-                        printf ("pause: %d\n", pause);\r
-                    }\r
-\r
-                    if (analyze)\r
-                    {\r
-                        if (first_pause)\r
-                        {\r
-                            if (pause < 256)\r
-                            {\r
-                                start_pauses[pause]++;\r
-                            }\r
-                            first_pause = FALSE;\r
-                        }\r
-                        else\r
-                        {\r
-                            if (pause < 256)\r
-                            {\r
-                                pauses[pause]++;\r
-                            }\r
-                        }\r
-                    }\r
-                }\r
-                pause = 0;\r
-            }\r
-            pulse++;\r
-            IRMP_PIN = 0x00;\r
-        }\r
-        else if (ch == 0xaf || ch == '-' || ch == '1')\r
-        {\r
-            if (last_ch != ch)\r
-            {\r
-                if (list)\r
-                {\r
-                    printf ("pulse: %d ", pulse);\r
-                }\r
-\r
-                if (analyze)\r
-                {\r
-                    if (first_pulse)\r
-                    {\r
-                        if (pulse < 256)\r
-                        {\r
-                            start_pulses[pulse]++;\r
-                        }\r
-                        first_pulse = FALSE;\r
-                    }\r
-                    else\r
-                    {\r
-                        if (pulse < 256)\r
-                        {\r
-                            pulses[pulse]++;\r
-                        }\r
-                    }\r
-                }\r
-                pulse = 0;\r
-            }\r
-\r
-            pause++;\r
-            IRMP_PIN = 0xff;\r
-        }\r
-        else if (ch == '\n')\r
-        {\r
-            IRMP_PIN = 0xff;\r
-            time_counter = 0;\r
-\r
-            if (list && pause > 0)\r
-            {\r
-                printf ("pause: %d\n", pause);\r
-            }\r
-            pause = 0;\r
-\r
-            if (! analyze)\r
-            {\r
-                for (i = 0; i < (int) ((10000.0 * F_INTERRUPTS) / 10000); i++)               // newline: long pause of 10000 msec\r
-                {\r
-                    next_tick ();\r
-                }\r
-            }\r
-            first_pulse = TRUE;\r
-            first_pause = TRUE;\r
-        }\r
-        else if (ch == '#')\r
-        {\r
-            time_counter = 0;\r
-\r
-            if (analyze)\r
-            {\r
-                while ((ch = getchar()) != '\n' && ch != EOF)\r
-                {\r
-                    ;\r
-                }\r
-            }\r
-            else\r
-            {\r
-                puts ("-------------------------------------------------------------------");\r
-                putchar (ch);\r
-\r
-                while ((ch = getchar()) != '\n' && ch != EOF)\r
-                {\r
-                    if (ch != '\r')                                                         // ignore CR in DOS/Windows files\r
-                    {\r
-                        putchar (ch);\r
-                    }\r
-                }\r
-                putchar ('\n');\r
-            }\r
-\r
-        }\r
-\r
-        last_ch = ch;\r
-\r
-        next_tick ();\r
+       if (ch == '_' || ch == '0')\r
+       {\r
+           if (last_ch != ch)\r
+           {\r
+               if (pause > 0)\r
+               {\r
+                   if (list)\r
+                   {\r
+                       printf ("pause: %d\n", pause);\r
+                   }\r
+\r
+                   if (analyze)\r
+                   {\r
+                       if (first_pause)\r
+                       {\r
+                           if (pause < 256)\r
+                           {\r
+                               start_pauses[pause]++;\r
+                           }\r
+                           first_pause = FALSE;\r
+                       }\r
+                       else\r
+                       {\r
+                           if (pause < 256)\r
+                           {\r
+                               pauses[pause]++;\r
+                           }\r
+                       }\r
+                   }\r
+               }\r
+               pause = 0;\r
+           }\r
+           pulse++;\r
+           IRMP_PIN = 0x00;\r
+       }\r
+       else if (ch == 0xaf || ch == '-' || ch == '1')\r
+       {\r
+           if (last_ch != ch)\r
+           {\r
+               if (list)\r
+               {\r
+                   printf ("pulse: %d ", pulse);\r
+               }\r
+\r
+               if (analyze)\r
+               {\r
+                   if (first_pulse)\r
+                   {\r
+                       if (pulse < 256)\r
+                       {\r
+                           start_pulses[pulse]++;\r
+                       }\r
+                       first_pulse = FALSE;\r
+                   }\r
+                   else\r
+                   {\r
+                       if (pulse < 256)\r
+                       {\r
+                           pulses[pulse]++;\r
+                       }\r
+                   }\r
+               }\r
+               pulse = 0;\r
+           }\r
+\r
+           pause++;\r
+           IRMP_PIN = 0xff;\r
+       }\r
+       else if (ch == '\n')\r
+       {\r
+           IRMP_PIN = 0xff;\r
+           time_counter = 0;\r
+\r
+           if (list && pause > 0)\r
+           {\r
+               printf ("pause: %d\n", pause);\r
+           }\r
+           pause = 0;\r
+\r
+           if (! analyze)\r
+           {\r
+               for (i = 0; i < (int) ((10000.0 * F_INTERRUPTS) / 10000); i++)               // newline: long pause of 10000 msec\r
+               {\r
+                   next_tick ();\r
+               }\r
+           }\r
+           first_pulse = TRUE;\r
+           first_pause = TRUE;\r
+       }\r
+       else if (ch == '#')\r
+       {\r
+           time_counter = 0;\r
+\r
+           if (analyze)\r
+           {\r
+               while ((ch = getchar()) != '\n' && ch != EOF)\r
+               {\r
+                   ;\r
+               }\r
+           }\r
+           else\r
+           {\r
+               char            buf[1024];\r
+               char *          p;\r
+               int             idx = -1;\r
+\r
+               puts ("----------------------------------------------------------------------");\r
+               putchar (ch);\r
+\r
+\r
+               while ((ch = getchar()) != '\n' && ch != EOF)\r
+               {\r
+                   if (ch != '\r')                                                         // ignore CR in DOS/Windows files\r
+                   {\r
+                       if (ch == '[' && idx == -1)\r
+                       {\r
+                           idx = 0;\r
+                       }\r
+                       else if (idx >= 0)\r
+                       {\r
+                           if (ch == ']')\r
+                           {\r
+                               do_check_expected_values = FALSE;\r
+                               buf[idx] = '\0';\r
+                               idx = -1;\r
+\r
+                               expected_protocol = atoi (buf);\r
+\r
+                               if (expected_protocol > 0)\r
+                               {\r
+                                   p = buf;\r
+                                   while (*p)\r
+                                   {\r
+                                       if (*p == 'x')\r
+                                       {\r
+                                           p++;\r
+\r
+                                           if (sscanf (p, "%x", &expected_address) == 1)\r
+                                           {\r
+                                               do_check_expected_values = TRUE;\r
+                                           }\r
+                                           break;\r
+                                       }\r
+                                       p++;\r
+                                   }\r
+\r
+                                   if (do_check_expected_values)\r
+                                   {\r
+                                       do_check_expected_values = FALSE;\r
+\r
+                                       while (*p)\r
+                                       {\r
+                                           if (*p == 'x')\r
+                                           {\r
+                                               p++;\r
+\r
+                                               if (sscanf (p, "%x", &expected_command) == 1)\r
+                                               {\r
+                                                   do_check_expected_values = TRUE;\r
+                                               }\r
+                                               break;\r
+                                           }\r
+                                           p++;\r
+                                       }\r
+\r
+                                       if (do_check_expected_values)\r
+                                       {\r
+                                           // printf ("!%2d %04x %04x!\n", expected_protocol, expected_address, expected_command);\r
+                                       }\r
+                                   }\r
+                               }\r
+                           }\r
+                           else if (idx < 1024 - 2)\r
+                           {\r
+                               buf[idx++] = ch;\r
+                           }\r
+                       }\r
+                       putchar (ch);\r
+                   }\r
+               }\r
+               putchar ('\n');\r
+           }\r
+\r
+       }\r
+\r
+       last_ch = ch;\r
+\r
+       next_tick ();\r
     }\r
 \r
     if (analyze)\r
     {\r
-        print_spectrum ("START PULSES", start_pulses, TRUE);\r
-        print_spectrum ("START PAUSES", start_pauses, FALSE);\r
-        print_spectrum ("PULSES", pulses, TRUE);\r
-        print_spectrum ("PAUSES", pauses, FALSE);\r
-        puts ("-------------------------------------------------------------------------------");\r
+       print_spectrum ("START PULSES", start_pulses, TRUE);\r
+       print_spectrum ("START PAUSES", start_pauses, FALSE);\r
+       print_spectrum ("PULSES", pulses, TRUE);\r
+       print_spectrum ("PAUSES", pauses, FALSE);\r
+       puts ("-----------------------------------------------------------------------------");\r
     }\r
     return 0;\r
 }\r