]> cloudbase.mooo.com Git - irmp.git/blobdiff - irmp.c
git-svn-id: svn://mikrocontroller.net/irmp@23 aeb2e35e-bfc4-4214-b83c-9e8de998ed28
[irmp.git] / irmp.c
diff --git a/irmp.c b/irmp.c
index 51cf89ae128ec60edf818631718d082988e6cf11..afcf5e6905fd5d7f968500c6c2f2871643e2aa42 100644 (file)
--- a/irmp.c
+++ b/irmp.c
@@ -3,7 +3,7 @@
  *\r
  * Copyright (c) 2009-2010 Frank Meyer - frank(at)fli4l.de\r
  *\r
- * $Id: irmp.c,v 1.15 2010/04/12 10:15:40 fm Exp $\r
+ * $Id: irmp.c,v 1.39 2010/06/10 10:09:47 fm Exp $\r
  *\r
  * ATMEGA88 @ 8 MHz\r
  *\r
@@ -12,6 +12,7 @@
  * SIRCS      - Sony\r
  * NEC        - NEC, Yamaha, Canon, Tevion, Harman/Kardon, Hitachi, JVC, Pioneer, Toshiba, Xoro, Orion, and many other Japanese manufacturers\r
  * SAMSUNG    - Samsung\r
+ * SAMSUNG32  - Samsung\r
  * MATSUSHITA - Matsushita\r
  * KASEIKYO   - Panasonic, Denon & other Japanese manufacturers (members of "Japan's Association for Electric Home Application")\r
  * RECS80     - Philips, Nokia, Thomson, Nordmende, Telefunken, Saba\r
  * RC6        - Philips and other European manufacturers\r
  * APPLE      - Apple\r
  * NUBERT     - Nubert Subwoofer System\r
+ * B&O        - Bang & Olufsen\r
  * PANASONIC  - Panasonic (older, yet not implemented)\r
+ * GRUNDIG    - Grundig\r
+ * NOKIA      - Nokia\r
+ * SIEMENS    - Siemens, e.g. Gigaset M740AV\r
  *\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *\r
  *\r
  *   data "0":                 data "1":\r
  *   ------________________    ------______________\r
- *   275us      1050us         275us   1900us\r
+ *   275us       775us         275us   1900us\r
  *\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *\r
  *\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *\r
+ *   GRUNDIG\r
+ *   -------\r
+ *\r
+ *   packet:  1 start frame + 19,968ms pause + N info frames + 117,76ms pause + 1 stop frame\r
+ *   frame: 1 pre bit + 1 start bit + 9 data bits + no stop bit\r
+ *   pause between info frames: 117,76ms\r
+ *\r
+ *   data of start frame:   9 x 1\r
+ *   data of info  frame:   9 command bits\r
+ *   data of stop  frame:   9 x 1\r
+ *\r
+ *   pre bit:              start bit           data "0":            data "1":\r
+ *   ------____________    ------______        ______------         ------______             \r
+ *   528us  2639us         528us  528us        528us  528us         528us  528us\r
+ *\r
+ *---------------------------------------------------------------------------------------------------------------------------------------------------\r
+ *\r
+ *   NOKIA:\r
+ *   ------\r
+ *\r
+ *   Timing similar to Grundig, but 16 data bits:\r
+ *   frame: 1 pre bit + 1 start bit + 8 command bits + 8 address bits + no stop bit\r
+ *\r
+ *---------------------------------------------------------------------------------------------------------------------------------------------------\r
+ *\r
  *   PANASONIC (older protocol, yet not implemented, see also MATSUSHITA, timing very similar)\r
  *   -----------------------------------------------------------------------------------------\r
  *\r
@@ -286,13 +316,28 @@ typedef unsigned int16  uint16_t;
 #include "irmp.h"\r
 #include "irmpconfig.h"\r
 \r
+#if IRMP_SUPPORT_GRUNDIG_PROTOCOL == 1 || IRMP_SUPPORT_NOKIA_PROTOCOL == 1\r
+#define IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL  1\r
+#else\r
+#define IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL  0\r
+#endif\r
+\r
 #define IRMP_TIMEOUT_TIME                       16500.0e-6                    // timeout after 16.5 ms darkness\r
 #define IRMP_TIMEOUT_LEN                        (uint8_t)(F_INTERRUPTS * IRMP_TIMEOUT_TIME + 0.5)\r
-#define IRMP_REPETITION_TIME                    (uint16_t)(F_INTERRUPTS * 100.0e-3 + 0.5)  // autodetect key repetition within 100 msec\r
+#define IRMP_KEY_REPETITION_LEN                 (uint16_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_05                        0.95                          // -5%\r
+#define MAX_TOLERANCE_05                        1.05                          // +5%\r
 \r
 #define MIN_TOLERANCE_10                        0.9                           // -10%\r
 #define MAX_TOLERANCE_10                        1.1                           // +10%\r
 \r
+#define MIN_TOLERANCE_15                        0.85                          // -15%\r
+#define MAX_TOLERANCE_15                        1.15                          // +15%\r
+\r
 #define MIN_TOLERANCE_20                        0.8                           // -20%\r
 #define MAX_TOLERANCE_20                        1.2                           // +20%\r
 \r
@@ -308,179 +353,229 @@ typedef unsigned int16  uint16_t;
 #define MIN_TOLERANCE_60                        0.4                           // -60%\r
 #define MAX_TOLERANCE_60                        1.6                           // +60%\r
 \r
-#define SIRCS_START_BIT_PULSE_LEN_MIN           (uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define SIRCS_START_BIT_PULSE_LEN_MAX           (uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define SIRCS_START_BIT_PAUSE_LEN_MIN           (uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SIRCS_START_BIT_PAUSE_LEN_MAX           (uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define SIRCS_1_PULSE_LEN_MIN                   (uint8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define SIRCS_1_PULSE_LEN_MAX                   (uint8_t)(F_INTERRUPTS * SIRCS_1_PULSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define SIRCS_0_PULSE_LEN_MIN                   (uint8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SIRCS_0_PULSE_LEN_MAX                   (uint8_t)(F_INTERRUPTS * SIRCS_0_PULSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-#define SIRCS_PAUSE_LEN_MIN                     (uint8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SIRCS_PAUSE_LEN_MAX                     (uint8_t)(F_INTERRUPTS * SIRCS_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-\r
-#define NEC_START_BIT_PULSE_LEN_MIN             (uint8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_START_BIT_PULSE_LEN_MAX             (uint8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NEC_START_BIT_PAUSE_LEN_MIN             (uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_START_BIT_PAUSE_LEN_MAX             (uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NEC_REPEAT_START_BIT_PAUSE_LEN_MIN      (uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_REPEAT_START_BIT_PAUSE_LEN_MAX      (uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NEC_PULSE_LEN_MIN                       (uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_PULSE_LEN_MAX                       (uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NEC_1_PAUSE_LEN_MIN                     (uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_1_PAUSE_LEN_MAX                     (uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NEC_0_PAUSE_LEN_MIN                     (uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NEC_0_PAUSE_LEN_MAX                     (uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-\r
-#define SAMSUNG_START_BIT_PULSE_LEN_MIN         (uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define SAMSUNG_START_BIT_PULSE_LEN_MAX         (uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define SAMSUNG_START_BIT_PAUSE_LEN_MIN         (uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define SAMSUNG_START_BIT_PAUSE_LEN_MAX         (uint8_t)(F_INTERRUPTS * SAMSUNG_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define SAMSUNG_PULSE_LEN_MIN                   (uint8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SAMSUNG_PULSE_LEN_MAX                   (uint8_t)(F_INTERRUPTS * SAMSUNG_PULSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-#define SAMSUNG_1_PAUSE_LEN_MIN                 (uint8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SAMSUNG_1_PAUSE_LEN_MAX                 (uint8_t)(F_INTERRUPTS * SAMSUNG_1_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-#define SAMSUNG_0_PAUSE_LEN_MIN                 (uint8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define SAMSUNG_0_PAUSE_LEN_MAX                 (uint8_t)(F_INTERRUPTS * SAMSUNG_0_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-\r
-#define MATSUSHITA_START_BIT_PULSE_LEN_MIN      (uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define MATSUSHITA_START_BIT_PULSE_LEN_MAX      (uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define MATSUSHITA_START_BIT_PAUSE_LEN_MIN      (uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define MATSUSHITA_START_BIT_PAUSE_LEN_MAX      (uint8_t)(F_INTERRUPTS * MATSUSHITA_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define MATSUSHITA_PULSE_LEN_MIN                (uint8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define MATSUSHITA_PULSE_LEN_MAX                (uint8_t)(F_INTERRUPTS * MATSUSHITA_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define MATSUSHITA_1_PAUSE_LEN_MIN              (uint8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define MATSUSHITA_1_PAUSE_LEN_MAX              (uint8_t)(F_INTERRUPTS * MATSUSHITA_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define MATSUSHITA_0_PAUSE_LEN_MIN              (uint8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define MATSUSHITA_0_PAUSE_LEN_MAX              (uint8_t)(F_INTERRUPTS * MATSUSHITA_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-\r
-#define KASEIKYO_START_BIT_PULSE_LEN_MIN        (uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define KASEIKYO_START_BIT_PULSE_LEN_MAX        (uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define KASEIKYO_START_BIT_PAUSE_LEN_MIN        (uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define KASEIKYO_START_BIT_PAUSE_LEN_MAX        (uint8_t)(F_INTERRUPTS * KASEIKYO_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define KASEIKYO_PULSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define KASEIKYO_PULSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * KASEIKYO_PULSE_TIME * MAX_TOLERANCE_60 + 0.5)\r
-#define KASEIKYO_1_PAUSE_LEN_MIN                (uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define KASEIKYO_1_PAUSE_LEN_MAX                (uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-#define KASEIKYO_0_PAUSE_LEN_MIN                (uint8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define KASEIKYO_0_PAUSE_LEN_MAX                (uint8_t)(F_INTERRUPTS * KASEIKYO_0_PAUSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-\r
-#define RECS80_START_BIT_PULSE_LEN_MIN          (uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RECS80_START_BIT_PULSE_LEN_MAX          (uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RECS80_START_BIT_PAUSE_LEN_MIN          (uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80_START_BIT_PAUSE_LEN_MAX          (uint8_t)(F_INTERRUPTS * RECS80_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define RECS80_PULSE_LEN_MIN                    (uint8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RECS80_PULSE_LEN_MAX                    (uint8_t)(F_INTERRUPTS * RECS80_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RECS80_1_PAUSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80_1_PAUSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * RECS80_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define RECS80_0_PAUSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80_0_PAUSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * RECS80_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-\r
-#define RC5_START_BIT_LEN_MIN                   (uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RC5_START_BIT_LEN_MAX                   (uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RC5_BIT_LEN_MIN                         (uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RC5_BIT_LEN_MAX                         (uint8_t)(F_INTERRUPTS * RC5_BIT_TIME * MAX_TOLERANCE_20 + 0.5)\r
-\r
-#define DENON_PULSE_LEN_MIN                     (uint8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MIN_TOLERANCE_50 + 0.5)\r
-#define DENON_PULSE_LEN_MAX                     (uint8_t)(F_INTERRUPTS * DENON_PULSE_TIME * MAX_TOLERANCE_50 + 0.5)\r
-#define DENON_1_PAUSE_LEN_MIN                   (uint8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define DENON_1_PAUSE_LEN_MAX                   (uint8_t)(F_INTERRUPTS * DENON_1_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define DENON_0_PAUSE_LEN_MIN                   (uint8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define DENON_0_PAUSE_LEN_MAX                   (uint8_t)(F_INTERRUPTS * DENON_0_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-\r
-#define RC6_START_BIT_PULSE_LEN_MIN             (uint8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define RC6_START_BIT_PULSE_LEN_MAX             (uint8_t)(F_INTERRUPTS * RC6_START_BIT_PULSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define RC6_START_BIT_PAUSE_LEN_MIN             (uint8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define RC6_START_BIT_PAUSE_LEN_MAX             (uint8_t)(F_INTERRUPTS * RC6_START_BIT_PAUSE_TIME * MAX_TOLERANCE_30 + 0.5)\r
-#define RC6_TOGGLE_BIT_LEN_MIN                  (uint8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RC6_TOGGLE_BIT_LEN_MAX                  (uint8_t)(F_INTERRUPTS * RC6_TOGGLE_BIT_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RC6_BIT_LEN_MIN                         (uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_30 + 0.5)\r
-#define RC6_BIT_LEN_MAX                         (uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_30 + 0.5)\r
-\r
-#define RECS80EXT_START_BIT_PULSE_LEN_MIN       (uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RECS80EXT_START_BIT_PULSE_LEN_MAX       (uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RECS80EXT_START_BIT_PAUSE_LEN_MIN       (uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80EXT_START_BIT_PAUSE_LEN_MAX       (uint8_t)(F_INTERRUPTS * RECS80EXT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define RECS80EXT_PULSE_LEN_MIN                 (uint8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define RECS80EXT_PULSE_LEN_MAX                 (uint8_t)(F_INTERRUPTS * RECS80EXT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define RECS80EXT_1_PAUSE_LEN_MIN               (uint8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80EXT_1_PAUSE_LEN_MAX               (uint8_t)(F_INTERRUPTS * RECS80EXT_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define RECS80EXT_0_PAUSE_LEN_MIN               (uint8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define RECS80EXT_0_PAUSE_LEN_MAX               (uint8_t)(F_INTERRUPTS * RECS80EXT_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-\r
-#define NUBERT_START_BIT_PULSE_LEN_MIN          (uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_START_BIT_PULSE_LEN_MAX          (uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NUBERT_START_BIT_PAUSE_LEN_MIN          (uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_START_BIT_PAUSE_LEN_MAX          (uint8_t)(F_INTERRUPTS * NUBERT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NUBERT_1_PULSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_1_PULSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * NUBERT_1_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NUBERT_1_PAUSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_1_PAUSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * NUBERT_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NUBERT_0_PULSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_0_PULSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * NUBERT_0_PULSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-#define NUBERT_0_PAUSE_LEN_MIN                  (uint8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5)\r
-#define NUBERT_0_PAUSE_LEN_MAX                  (uint8_t)(F_INTERRUPTS * NUBERT_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5)\r
-\r
-#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT2_PULSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT2_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT3_PULSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT4_PULSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX   (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT4_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_PULSE_LEN_MIN              (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MIN_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_PULSE_LEN_MAX              (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_PULSE_TIME * MAX_TOLERANCE_20 + 0.5)\r
-#define BANG_OLUFSEN_1_PAUSE_LEN_MIN            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_1_PAUSE_LEN_MAX            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_1_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_0_PAUSE_LEN_MIN            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_0_PAUSE_LEN_MAX            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_0_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_R_PAUSE_LEN_MIN            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_R_PAUSE_LEN_MAX            (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_R_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MIN  (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MIN_TOLERANCE_10 + 0.5)\r
-#define BANG_OLUFSEN_TRAILER_BIT_PAUSE_LEN_MAX  (uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_TRAILER_BIT_PAUSE_TIME * MAX_TOLERANCE_10 + 0.5)\r
-\r
-#define AUTO_REPETITION_LEN                     (uint16_t)(F_INTERRUPTS * AUTO_REPETITION_TIME + 0.5)       // use uint16_t!\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_PAUSE_LEN_MAX           ((uint8_t)(F_INTERRUPTS * SIRCS_START_BIT_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1) // only 5% to avoid conflict with RC6\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_40 + 0.5) - 1)\r
+#define NEC_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define NEC_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define NEC_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * NEC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define NEC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define NEC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * NEC_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define NEC_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define NEC_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * NEC_PULSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define NEC_1_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define NEC_1_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * NEC_1_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\r
+#define NEC_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MIN_TOLERANCE_40 + 0.5) - 1)\r
+#define NEC_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * NEC_0_PAUSE_TIME * MAX_TOLERANCE_40 + 0.5) + 1)\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_60 + 0.5) + 1)\r
+#define KASEIKYO_1_PAUSE_LEN_MIN                ((uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MIN_TOLERANCE_50 + 0.5) - 1)\r
+#define KASEIKYO_1_PAUSE_LEN_MAX                ((uint8_t)(F_INTERRUPTS * KASEIKYO_1_PAUSE_TIME * MAX_TOLERANCE_50 + 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
+\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 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
+\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_10 + 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_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
+\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_LEN_MIN                         ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MIN_TOLERANCE_10 + 0.5) - 1)\r
+#define RC6_BIT_LEN_MAX                         ((uint8_t)(F_INTERRUPTS * RC6_BIT_TIME * MAX_TOLERANCE_10 + 0.5) + 1)\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 BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX   ((uint8_t)(F_INTERRUPTS * BANG_OLUFSEN_START_BIT3_PAUSE_TIME * MAX_TOLERANCE_05 + 0.5) + 1) // 10% is too big (uint8_t)\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 GRUNDIG_OR_NOKIA_START_BIT_LEN_MIN      ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_BIT_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX      ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_BIT_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define GRUNDIG_OR_NOKIA_BIT_LEN_MIN            ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_BIT_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define GRUNDIG_OR_NOKIA_BIT_LEN_MAX            ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_BIT_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_PRE_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) + 1)\r
+#define GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * GRUNDIG_OR_NOKIA_PRE_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define SIEMENS_START_BIT_LEN_MIN               ((uint8_t)(F_INTERRUPTS * SIEMENS_BIT_TIME * 1 + 0.5) - 1)\r
+#define SIEMENS_START_BIT_LEN_MAX               ((uint8_t)(F_INTERRUPTS * SIEMENS_BIT_TIME * 1 + 0.5) + 1)\r
+#define SIEMENS_BIT_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * SIEMENS_BIT_TIME * 1 + 0.5) - 1)\r
+#define SIEMENS_BIT_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * SIEMENS_BIT_TIME * 1 + 0.5) + 1)\r
+\r
+#define FDC_START_BIT_PULSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_START_BIT_PULSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PULSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FDC_START_BIT_PAUSE_LEN_MIN             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_START_BIT_PAUSE_LEN_MAX             ((uint8_t)(F_INTERRUPTS * FDC_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FDC_REPEAT_START_BIT_PAUSE_LEN_MIN      ((uint8_t)(F_INTERRUPTS * FDC_REPEAT_START_BIT_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_REPEAT_START_BIT_PAUSE_LEN_MAX      ((uint8_t)(F_INTERRUPTS * FDC_REPEAT_START_BIT_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+#define FDC_PULSE_LEN_MIN                       ((uint8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_PULSE_LEN_MAX                       ((uint8_t)(F_INTERRUPTS * FDC_PULSE_TIME * MAX_TOLERANCE_20 + 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 FDC_0_PAUSE_LEN_MIN                     ((uint8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MIN_TOLERANCE_20 + 0.5) - 1)\r
+#define FDC_0_PAUSE_LEN_MAX                     ((uint8_t)(F_INTERRUPTS * FDC_0_PAUSE_TIME * MAX_TOLERANCE_20 + 0.5) + 1)\r
+\r
+#define AUTO_FRAME_REPETITION_LEN               (uint16_t)(F_INTERRUPTS * AUTO_FRAME_REPETITION_TIME + 0.5)       // use uint16_t!\r
 \r
 #ifdef DEBUG\r
-#define DEBUG_PUTCHAR(a)                        { if (! silent) { putchar (a);              } }\r
-#define DEBUG_PRINTF(...)                       { if (! silent) { printf (__VA_ARGS__);   } }\r
-static int silent;\r
+#define DEBUG_PUTCHAR(a)                        { if (! silent)             { putchar (a);          } }\r
+#define DEBUG_ONLY_NORMAL_PUTCHAR(a)            { if (! silent && !verbose) { putchar (a);          } }\r
+#define DEBUG_PRINTF(...)                       { if (verbose)              { printf (__VA_ARGS__); } }\r
+#define DEBUG_NEWLINE()                         { if (verbose)              { putchar ('\n');       } }\r
+static int      silent;\r
+static int      time_counter;\r
+static int      verbose;\r
 #else\r
 #define DEBUG_PUTCHAR(a)\r
+#define DEBUG_ONLY_NORMAL_PUTCHAR(a)\r
 #define DEBUG_PRINTF(...)\r
+#define DEBUG_NEWLINE()\r
 #endif\r
 \r
 #if IRMP_LOGGING == 1\r
-#define irmp_logIsr(x)                          irmp_logIr((x) ? 1:0)\r
-#define UART_BAUD                               9600L\r
-\r
-// calculate real baud rate:\r
-#define UBRR_VAL                                ((F_CPU+UART_BAUD*8)/(UART_BAUD*16)-1)      // round\r
-#define BAUD_REAL                               (F_CPU/(16*(UBRR_VAL+1)))                   // real baudrate\r
-\r
-#ifdef CODEVISION\r
-#if ((BAUD_REAL*1000)/UART_BAUD-1000) > 10\r
-#  error Error of baud rate of RS232 UARTx is more than 1%. That is too high!\r
+#define BAUD                                    9600L\r
+#include <util/setbaud.h>\r
+\r
+#ifdef UBRR0H\r
+\r
+#define UART0_UBRRH                             UBRR0H\r
+#define UART0_UBRRL                             UBRR0L\r
+#define UART0_UCSRA                             UCSR0A\r
+#define UART0_UCSRB                             UCSR0B\r
+#define UART0_UCSRC                             UCSR0C\r
+#define UART0_UDRE_BIT_VALUE                    (1<<UDRE0)\r
+#define UART0_UCSZ1_BIT_VALUE                   (1<<UCSZ01)\r
+#define UART0_UCSZ0_BIT_VALUE                   (1<<UCSZ00)\r
+#ifdef URSEL0\r
+#define UART0_URSEL_BIT_VALUE                   (1<<URSEL0)\r
+#else\r
+#define UART0_URSEL_BIT_VALUE                   (0)\r
 #endif\r
+#define UART0_TXEN_BIT_VALUE                    (1<<TXEN0)\r
+#define UART0_UDR                               UDR0\r
 \r
-#else // not CODEVISION\r
-\r
-#define BAUD_ERROR                              ((BAUD_REAL*1000)/UART_BAUD-1000)           // error in promille\r
+#else\r
 \r
-#if ((BAUD_ERROR > 10) || (-BAUD_ERROR < 10))\r
-#  error Error of baud rate of RS232 UARTx is more than 1%. That is too high!\r
+#define UART0_UBRRH                             UBRRH\r
+#define UART0_UBRRL                             UBRRL\r
+#define UART0_UCSRA                             UCSRA\r
+#define UART0_UCSRB                             UCSRB\r
+#define UART0_UCSRC                             UCSRC\r
+#define UART0_UDRE_BIT_VALUE                    (1<<UDRE)\r
+#define UART0_UCSZ1_BIT_VALUE                   (1<<UCSZ1)\r
+#define UART0_UCSZ0_BIT_VALUE                   (1<<UCSZ0)\r
+#ifdef URSEL\r
+#define UART0_URSEL_BIT_VALUE                   (1<<URSEL)\r
+#else\r
+#define UART0_URSEL_BIT_VALUE                   (0)\r
 #endif\r
+#define UART0_TXEN_BIT_VALUE                    (1<<TXEN)\r
+#define UART0_UDR                               UDR\r
 \r
-#endif // CODEVISION\r
+#endif\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *  Initialize  UART\r
@@ -490,9 +585,17 @@ static int silent;
 void\r
 irmp_uart_init (void)\r
 {\r
-    UCSR0B |= (1<<TXEN0);                                                         // activate UART0 TX\r
-    UBRR0H = UBRR_VAL >> 8;                                                       // store baudrate (upper byte)\r
-    UBRR0L = UBRR_VAL & 0xFF;                                                     // store baudrate (lower byte)\r
+    UART0_UBRRH = UBRRH_VALUE;                                                                      // set baud rate\r
+    UART0_UBRRL = UBRRL_VALUE;\r
+\r
+#if USE_2X\r
+    UART0_UCSRA = (1<<U2X);\r
+#else\r
+    UART0_UCSRA = 0;\r
+#endif\r
+\r
+    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
 }\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
@@ -504,71 +607,74 @@ irmp_uart_init (void)
 void\r
 irmp_uart_putc (unsigned char ch)\r
 {\r
-    while (!(UCSR0A & (1<<UDRE0)))\r
+    while (!(UART0_UCSRA & UART0_UDRE_BIT_VALUE))\r
     {\r
         ;\r
     }\r
 \r
-    UDR0 = ch;\r
+    UART0_UDR = ch;\r
 }\r
 \r
 /*---------------------------------------------------------------------------------------------------------------------------------------------------\r
  *  Log IR signal\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-#define c_startcycles                     2                         // min count of zeros before start of logging\r
-#define c_endBits                      1000                         // log buffer size\r
-#define c_datalen                       700                         // number of sequenced highbits to detect end\r
+\r
+#define STARTCYCLES                       2                                 // min count of zeros before start of logging\r
+#define ENDBITS                        1000                                 // number of sequenced highbits to detect end\r
+#define DATALEN                         700                                 // log buffer size\r
 \r
 static void\r
-irmp_logIr (uint8_t val)\r
+irmp_log (uint8_t val)\r
 {\r
-    static uint8_t  s_data[c_datalen];                                  // logging buffer\r
-    static uint16_t s_dataIdx;                                          // number of written bits\r
-    static uint8_t  s_startcycles;                                      // current number of start-zeros\r
-    static uint16_t s_ctr;                                              // counts sequenced highbits - to detect end\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
 \r
-    if ((val == 0) && (s_startcycles < c_startcycles) && !s_dataIdx)    // prevent that single random zeros init logging\r
+    if (! val && (startcycles < STARTCYCLES) && !buf_idx)                   // prevent that single random zeros init logging\r
     {\r
-        ++s_startcycles;\r
+        startcycles++;\r
     }\r
     else\r
     {\r
-        s_startcycles = 0;\r
+        startcycles = 0;\r
 \r
-        if (    (val == 0)                                              // start or continue logging on "0"\r
-            || ((val == 1) && (s_dataIdx != 0)))                        // "1" cannot init logging\r
+        if (! val || (val && buf_idx != 0))                                 // start or continue logging on "0", "1" cannot init logging\r
         {\r
-            if (val)\r
-            {                                                           // set or clear bit in bitarray\r
-                s_data[(s_dataIdx / 8)] |=  (1<<(s_dataIdx % 8));\r
-            }\r
-            else\r
-            {\r
-                s_data[(s_dataIdx / 8)] &= ~(1<<(s_dataIdx % 8));\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
-            ++s_dataIdx;\r
+                buf_idx++;\r
+            }\r
 \r
             if (val)\r
-            {                                                           // if high received then look at log-stop condition\r
-                ++s_ctr;\r
+            {                                                               // if high received then look at log-stop condition\r
+                cnt++;\r
 \r
-                if (s_ctr > c_endBits)\r
-                {                                                       // if stop condition (200 sequenced ones) meets, output on uart\r
+                if (cnt > ENDBITS)\r
+                {                                                           // if stop condition is true, output on uart\r
                     uint16_t i;\r
 \r
-                    for (i = 0; i < c_startcycles; ++i)\r
+                    for (i = 0; i < STARTCYCLES; i++)\r
                     {\r
-                        irmp_uart_putc ('0');                                   // the ignored starting zeros\r
+                        irmp_uart_putc ('0');                               // the ignored starting zeros\r
                     }\r
 \r
-                    for (i = 0;i < (s_dataIdx - c_endBits + 20) / 8; ++i)       // transform bitset into uart chars\r
+                    for (i = 0; i < (buf_idx - ENDBITS + 20) / 8; i++)      // transform bitset into uart chars\r
                     {\r
-                        uint8_t d = s_data[i];\r
+                        uint8_t d = buf[i];\r
                         uint8_t j;\r
 \r
-                        for (j = 0;j<8;++j)\r
+                        for (j = 0; j < 8; j++)\r
                         {\r
                             irmp_uart_putc ((d & 1) + '0');\r
                             d >>= 1;\r
@@ -576,19 +682,19 @@ irmp_logIr (uint8_t val)
                     }\r
 \r
                     irmp_uart_putc ('\n');\r
-                    s_dataIdx = 0;\r
+                    buf_idx = 0;\r
                 }\r
             }\r
             else\r
             {\r
-                s_ctr = 0;\r
+                cnt = 0;\r
             }\r
         }\r
     }\r
 }\r
 \r
 #else\r
-#define irmp_logIsr(x)\r
+#define irmp_log(val)\r
 #endif\r
 \r
 typedef struct\r
@@ -615,22 +721,22 @@ typedef struct
 \r
 static PROGMEM IRMP_PARAMETER sircs_param =\r
 {\r
-    IRMP_SIRCS_PROTOCOL,\r
-    SIRCS_1_PULSE_LEN_MIN,\r
-    SIRCS_1_PULSE_LEN_MAX,\r
-    SIRCS_PAUSE_LEN_MIN,\r
-    SIRCS_PAUSE_LEN_MAX,\r
-    SIRCS_0_PULSE_LEN_MIN,\r
-    SIRCS_0_PULSE_LEN_MAX,\r
-    SIRCS_PAUSE_LEN_MIN,\r
-    SIRCS_PAUSE_LEN_MAX,\r
-    SIRCS_ADDRESS_OFFSET,\r
-    SIRCS_ADDRESS_OFFSET + SIRCS_ADDRESS_LEN,\r
-    SIRCS_COMMAND_OFFSET,\r
-    SIRCS_COMMAND_OFFSET + SIRCS_COMMAND_LEN,\r
-    SIRCS_COMPLETE_DATA_LEN,\r
-    SIRCS_STOP_BIT,\r
-    SIRCS_LSB\r
+    IRMP_SIRCS_PROTOCOL,                                                // protocol:        ir protocol\r
+    SIRCS_1_PULSE_LEN_MIN,                                              // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    SIRCS_1_PULSE_LEN_MAX,                                              // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    SIRCS_PAUSE_LEN_MIN,                                                // pause_1_len_min: minimum length of pause with bit value 1\r
+    SIRCS_PAUSE_LEN_MAX,                                                // pause_1_len_max: maximum length of pause with bit value 1\r
+    SIRCS_0_PULSE_LEN_MIN,                                              // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    SIRCS_0_PULSE_LEN_MAX,                                              // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    SIRCS_PAUSE_LEN_MIN,                                                // pause_0_len_min: minimum length of pause with bit value 0\r
+    SIRCS_PAUSE_LEN_MAX,                                                // pause_0_len_max: maximum length of pause with bit value 0\r
+    SIRCS_ADDRESS_OFFSET,                                               // address_offset:  address offset\r
+    SIRCS_ADDRESS_OFFSET + SIRCS_ADDRESS_LEN,                           // address_end:     end of address\r
+    SIRCS_COMMAND_OFFSET,                                               // command_offset:  command offset\r
+    SIRCS_COMMAND_OFFSET + SIRCS_COMMAND_LEN,                           // command_end:     end of command\r
+    SIRCS_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame\r
+    SIRCS_STOP_BIT,                                                     // stop_bit:        flag: frame has stop bit\r
+    SIRCS_LSB                                                           // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -639,22 +745,42 @@ static PROGMEM IRMP_PARAMETER sircs_param =
 \r
 static PROGMEM IRMP_PARAMETER nec_param =\r
 {\r
-    IRMP_NEC_PROTOCOL,\r
-    NEC_PULSE_LEN_MIN,\r
-    NEC_PULSE_LEN_MAX,\r
-    NEC_1_PAUSE_LEN_MIN,\r
-    NEC_1_PAUSE_LEN_MAX,\r
-    NEC_PULSE_LEN_MIN,\r
-    NEC_PULSE_LEN_MAX,\r
-    NEC_0_PAUSE_LEN_MIN,\r
-    NEC_0_PAUSE_LEN_MAX,\r
-    NEC_ADDRESS_OFFSET,\r
-    NEC_ADDRESS_OFFSET + NEC_ADDRESS_LEN,\r
-    NEC_COMMAND_OFFSET,\r
-    NEC_COMMAND_OFFSET + NEC_COMMAND_LEN,\r
-    NEC_COMPLETE_DATA_LEN,\r
-    NEC_STOP_BIT,\r
-    NEC_LSB\r
+    IRMP_NEC_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
+    NEC_ADDRESS_OFFSET,                                                 // address_offset:  address offset\r
+    NEC_ADDRESS_OFFSET + NEC_ADDRESS_LEN,                               // address_end:     end of address\r
+    NEC_COMMAND_OFFSET,                                                 // command_offset:  command offset\r
+    NEC_COMMAND_OFFSET + NEC_COMMAND_LEN,                               // command_end:     end of command\r
+    NEC_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
+};\r
+\r
+static PROGMEM IRMP_PARAMETER nec_rep_param =\r
+{\r
+    IRMP_NEC_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
+    0,                                                                  // address_offset:  address offset\r
+    0,                                                                  // address_end:     end of address\r
+    0,                                                                  // command_offset:  command offset\r
+    0,                                                                  // command_end:     end of command\r
+    0,                                                                  // 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
 };\r
 \r
 #endif\r
@@ -663,22 +789,22 @@ static PROGMEM IRMP_PARAMETER nec_param =
 \r
 static PROGMEM IRMP_PARAMETER samsung_param =\r
 {\r
-    IRMP_SAMSUNG_PROTOCOL,\r
-    SAMSUNG_PULSE_LEN_MIN,\r
-    SAMSUNG_PULSE_LEN_MAX,\r
-    SAMSUNG_1_PAUSE_LEN_MIN,\r
-    SAMSUNG_1_PAUSE_LEN_MAX,\r
-    SAMSUNG_PULSE_LEN_MIN,\r
-    SAMSUNG_PULSE_LEN_MAX,\r
-    SAMSUNG_0_PAUSE_LEN_MIN,\r
-    SAMSUNG_0_PAUSE_LEN_MAX,\r
-    SAMSUNG_ADDRESS_OFFSET,\r
-    SAMSUNG_ADDRESS_OFFSET + SAMSUNG_ADDRESS_LEN,\r
-    SAMSUNG_COMMAND_OFFSET,\r
-    SAMSUNG_COMMAND_OFFSET + SAMSUNG_COMMAND_LEN,\r
-    SAMSUNG_COMPLETE_DATA_LEN,\r
-    SAMSUNG_STOP_BIT,\r
-    SAMSUNG_LSB\r
+    IRMP_SAMSUNG_PROTOCOL,                                              // protocol:        ir protocol\r
+    SAMSUNG_PULSE_LEN_MIN,                                              // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    SAMSUNG_PULSE_LEN_MAX,                                              // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    SAMSUNG_1_PAUSE_LEN_MIN,                                            // pause_1_len_min: minimum length of pause with bit value 1\r
+    SAMSUNG_1_PAUSE_LEN_MAX,                                            // pause_1_len_max: maximum length of pause with bit value 1\r
+    SAMSUNG_PULSE_LEN_MIN,                                              // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    SAMSUNG_PULSE_LEN_MAX,                                              // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    SAMSUNG_0_PAUSE_LEN_MIN,                                            // pause_0_len_min: minimum length of pause with bit value 0\r
+    SAMSUNG_0_PAUSE_LEN_MAX,                                            // pause_0_len_max: maximum length of pause with bit value 0\r
+    SAMSUNG_ADDRESS_OFFSET,                                             // address_offset:  address offset\r
+    SAMSUNG_ADDRESS_OFFSET + SAMSUNG_ADDRESS_LEN,                       // address_end:     end of address\r
+    SAMSUNG_COMMAND_OFFSET,                                             // command_offset:  command offset\r
+    SAMSUNG_COMMAND_OFFSET + SAMSUNG_COMMAND_LEN,                       // command_end:     end of command\r
+    SAMSUNG_COMPLETE_DATA_LEN,                                          // complete_len:    complete length of frame\r
+    SAMSUNG_STOP_BIT,                                                   // stop_bit:        flag: frame has stop bit\r
+    SAMSUNG_LSB                                                         // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -687,22 +813,22 @@ static PROGMEM IRMP_PARAMETER samsung_param =
 \r
 static PROGMEM IRMP_PARAMETER matsushita_param =\r
 {\r
-    IRMP_MATSUSHITA_PROTOCOL,\r
-    MATSUSHITA_PULSE_LEN_MIN,\r
-    MATSUSHITA_PULSE_LEN_MAX,\r
-    MATSUSHITA_1_PAUSE_LEN_MIN,\r
-    MATSUSHITA_1_PAUSE_LEN_MAX,\r
-    MATSUSHITA_PULSE_LEN_MIN,\r
-    MATSUSHITA_PULSE_LEN_MAX,\r
-    MATSUSHITA_0_PAUSE_LEN_MIN,\r
-    MATSUSHITA_0_PAUSE_LEN_MAX,\r
-    MATSUSHITA_ADDRESS_OFFSET,\r
-    MATSUSHITA_ADDRESS_OFFSET + MATSUSHITA_ADDRESS_LEN,\r
-    MATSUSHITA_COMMAND_OFFSET,\r
-    MATSUSHITA_COMMAND_OFFSET + MATSUSHITA_COMMAND_LEN,\r
-    MATSUSHITA_COMPLETE_DATA_LEN,\r
-    MATSUSHITA_STOP_BIT,\r
-    MATSUSHITA_LSB\r
+    IRMP_MATSUSHITA_PROTOCOL,                                           // protocol:        ir protocol\r
+    MATSUSHITA_PULSE_LEN_MIN,                                           // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    MATSUSHITA_PULSE_LEN_MAX,                                           // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    MATSUSHITA_1_PAUSE_LEN_MIN,                                         // pause_1_len_min: minimum length of pause with bit value 1\r
+    MATSUSHITA_1_PAUSE_LEN_MAX,                                         // pause_1_len_max: maximum length of pause with bit value 1\r
+    MATSUSHITA_PULSE_LEN_MIN,                                           // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    MATSUSHITA_PULSE_LEN_MAX,                                           // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    MATSUSHITA_0_PAUSE_LEN_MIN,                                         // pause_0_len_min: minimum length of pause with bit value 0\r
+    MATSUSHITA_0_PAUSE_LEN_MAX,                                         // pause_0_len_max: maximum length of pause with bit value 0\r
+    MATSUSHITA_ADDRESS_OFFSET,                                          // address_offset:  address offset\r
+    MATSUSHITA_ADDRESS_OFFSET + MATSUSHITA_ADDRESS_LEN,                 // address_end:     end of address\r
+    MATSUSHITA_COMMAND_OFFSET,                                          // command_offset:  command offset\r
+    MATSUSHITA_COMMAND_OFFSET + MATSUSHITA_COMMAND_LEN,                 // command_end:     end of command\r
+    MATSUSHITA_COMPLETE_DATA_LEN,                                       // complete_len:    complete length of frame\r
+    MATSUSHITA_STOP_BIT,                                                // stop_bit:        flag: frame has stop bit\r
+    MATSUSHITA_LSB                                                      // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -711,22 +837,22 @@ static PROGMEM IRMP_PARAMETER matsushita_param =
 \r
 static PROGMEM IRMP_PARAMETER kaseikyo_param =\r
 {\r
-    IRMP_KASEIKYO_PROTOCOL,\r
-    KASEIKYO_PULSE_LEN_MIN,\r
-    KASEIKYO_PULSE_LEN_MAX,\r
-    KASEIKYO_1_PAUSE_LEN_MIN,\r
-    KASEIKYO_1_PAUSE_LEN_MAX,\r
-    KASEIKYO_PULSE_LEN_MIN,\r
-    KASEIKYO_PULSE_LEN_MAX,\r
-    KASEIKYO_0_PAUSE_LEN_MIN,\r
-    KASEIKYO_0_PAUSE_LEN_MAX,\r
-    KASEIKYO_ADDRESS_OFFSET,\r
-    KASEIKYO_ADDRESS_OFFSET + KASEIKYO_ADDRESS_LEN,\r
-    KASEIKYO_COMMAND_OFFSET,\r
-    KASEIKYO_COMMAND_OFFSET + KASEIKYO_COMMAND_LEN,\r
-    KASEIKYO_COMPLETE_DATA_LEN,\r
-    KASEIKYO_STOP_BIT,\r
-    KASEIKYO_LSB\r
+    IRMP_KASEIKYO_PROTOCOL,                                             // protocol:        ir protocol\r
+    KASEIKYO_PULSE_LEN_MIN,                                             // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    KASEIKYO_PULSE_LEN_MAX,                                             // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    KASEIKYO_1_PAUSE_LEN_MIN,                                           // pause_1_len_min: minimum length of pause with bit value 1\r
+    KASEIKYO_1_PAUSE_LEN_MAX,                                           // pause_1_len_max: maximum length of pause with bit value 1\r
+    KASEIKYO_PULSE_LEN_MIN,                                             // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    KASEIKYO_PULSE_LEN_MAX,                                             // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    KASEIKYO_0_PAUSE_LEN_MIN,                                           // pause_0_len_min: minimum length of pause with bit value 0\r
+    KASEIKYO_0_PAUSE_LEN_MAX,                                           // pause_0_len_max: maximum length of pause with bit value 0\r
+    KASEIKYO_ADDRESS_OFFSET,                                            // address_offset:  address offset\r
+    KASEIKYO_ADDRESS_OFFSET + KASEIKYO_ADDRESS_LEN,                     // address_end:     end of address\r
+    KASEIKYO_COMMAND_OFFSET,                                            // command_offset:  command offset\r
+    KASEIKYO_COMMAND_OFFSET + KASEIKYO_COMMAND_LEN,                     // command_end:     end of command\r
+    KASEIKYO_COMPLETE_DATA_LEN,                                         // complete_len:    complete length of frame\r
+    KASEIKYO_STOP_BIT,                                                  // stop_bit:        flag: frame has stop bit\r
+    KASEIKYO_LSB                                                        // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -735,22 +861,22 @@ static PROGMEM IRMP_PARAMETER kaseikyo_param =
 \r
 static PROGMEM IRMP_PARAMETER recs80_param =\r
 {\r
-    IRMP_RECS80_PROTOCOL,\r
-    RECS80_PULSE_LEN_MIN,\r
-    RECS80_PULSE_LEN_MAX,\r
-    RECS80_1_PAUSE_LEN_MIN,\r
-    RECS80_1_PAUSE_LEN_MAX,\r
-    RECS80_PULSE_LEN_MIN,\r
-    RECS80_PULSE_LEN_MAX,\r
-    RECS80_0_PAUSE_LEN_MIN,\r
-    RECS80_0_PAUSE_LEN_MAX,\r
-    RECS80_ADDRESS_OFFSET,\r
-    RECS80_ADDRESS_OFFSET + RECS80_ADDRESS_LEN,\r
-    RECS80_COMMAND_OFFSET,\r
-    RECS80_COMMAND_OFFSET + RECS80_COMMAND_LEN,\r
-    RECS80_COMPLETE_DATA_LEN,\r
-    RECS80_STOP_BIT,\r
-    RECS80_LSB\r
+    IRMP_RECS80_PROTOCOL,                                               // protocol:        ir protocol\r
+    RECS80_PULSE_LEN_MIN,                                               // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    RECS80_PULSE_LEN_MAX,                                               // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    RECS80_1_PAUSE_LEN_MIN,                                             // pause_1_len_min: minimum length of pause with bit value 1\r
+    RECS80_1_PAUSE_LEN_MAX,                                             // pause_1_len_max: maximum length of pause with bit value 1\r
+    RECS80_PULSE_LEN_MIN,                                               // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    RECS80_PULSE_LEN_MAX,                                               // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    RECS80_0_PAUSE_LEN_MIN,                                             // pause_0_len_min: minimum length of pause with bit value 0\r
+    RECS80_0_PAUSE_LEN_MAX,                                             // pause_0_len_max: maximum length of pause with bit value 0\r
+    RECS80_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    RECS80_ADDRESS_OFFSET + RECS80_ADDRESS_LEN,                         // address_end:     end of address\r
+    RECS80_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    RECS80_COMMAND_OFFSET + RECS80_COMMAND_LEN,                         // command_end:     end of command\r
+    RECS80_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    RECS80_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    RECS80_LSB                                                          // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -759,22 +885,22 @@ static PROGMEM IRMP_PARAMETER recs80_param =
 \r
 static PROGMEM IRMP_PARAMETER rc5_param =\r
 {\r
-    IRMP_RC5_PROTOCOL,\r
-    RC5_BIT_LEN_MIN,\r
-    RC5_BIT_LEN_MAX,\r
-    RC5_BIT_LEN_MIN,\r
-    RC5_BIT_LEN_MAX,\r
-    1,                                // tricky: use this as stop bit length\r
-    1,\r
-    1,\r
-    1,\r
-    RC5_ADDRESS_OFFSET,\r
-    RC5_ADDRESS_OFFSET + RC5_ADDRESS_LEN,\r
-    RC5_COMMAND_OFFSET,\r
-    RC5_COMMAND_OFFSET + RC5_COMMAND_LEN,\r
-    RC5_COMPLETE_DATA_LEN,\r
-    RC5_STOP_BIT,\r
-    RC5_LSB\r
+    IRMP_RC5_PROTOCOL,                                                  // protocol:        ir protocol\r
+    RC5_BIT_LEN_MIN,                                                    // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    RC5_BIT_LEN_MAX,                                                    // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    RC5_BIT_LEN_MIN,                                                    // pause_1_len_min: minimum length of pause with bit value 1\r
+    RC5_BIT_LEN_MAX,                                                    // pause_1_len_max: maximum length of pause with bit value 1\r
+    1,  // tricky: use this as stop bit length                          // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    1,                                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    1,                                                                  // pause_0_len_min: minimum length of pause with bit value 0\r
+    1,                                                                  // pause_0_len_max: maximum length of pause with bit value 0\r
+    RC5_ADDRESS_OFFSET,                                                 // address_offset:  address offset\r
+    RC5_ADDRESS_OFFSET + RC5_ADDRESS_LEN,                               // address_end:     end of address\r
+    RC5_COMMAND_OFFSET,                                                 // command_offset:  command offset\r
+    RC5_COMMAND_OFFSET + RC5_COMMAND_LEN,                               // command_end:     end of command\r
+    RC5_COMPLETE_DATA_LEN,                                              // complete_len:    complete length of frame\r
+    RC5_STOP_BIT,                                                       // stop_bit:        flag: frame has stop bit\r
+    RC5_LSB                                                             // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -783,22 +909,22 @@ static PROGMEM IRMP_PARAMETER rc5_param =
 \r
 static PROGMEM IRMP_PARAMETER denon_param =\r
 {\r
-    IRMP_DENON_PROTOCOL,\r
-    DENON_PULSE_LEN_MIN,\r
-    DENON_PULSE_LEN_MAX,\r
-    DENON_1_PAUSE_LEN_MIN,\r
-    DENON_1_PAUSE_LEN_MAX,\r
-    DENON_PULSE_LEN_MIN,\r
-    DENON_PULSE_LEN_MAX,\r
-    DENON_0_PAUSE_LEN_MIN,\r
-    DENON_0_PAUSE_LEN_MAX,\r
-    DENON_ADDRESS_OFFSET,\r
-    DENON_ADDRESS_OFFSET + DENON_ADDRESS_LEN,\r
-    DENON_COMMAND_OFFSET,\r
-    DENON_COMMAND_OFFSET + DENON_COMMAND_LEN,\r
-    DENON_COMPLETE_DATA_LEN,\r
-    DENON_STOP_BIT,\r
-    DENON_LSB\r
+    IRMP_DENON_PROTOCOL,                                                // protocol:        ir protocol\r
+    DENON_PULSE_LEN_MIN,                                                // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    DENON_PULSE_LEN_MAX,                                                // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    DENON_1_PAUSE_LEN_MIN,                                              // pause_1_len_min: minimum length of pause with bit value 1\r
+    DENON_1_PAUSE_LEN_MAX,                                              // pause_1_len_max: maximum length of pause with bit value 1\r
+    DENON_PULSE_LEN_MIN,                                                // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    DENON_PULSE_LEN_MAX,                                                // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    DENON_0_PAUSE_LEN_MIN,                                              // pause_0_len_min: minimum length of pause with bit value 0\r
+    DENON_0_PAUSE_LEN_MAX,                                              // pause_0_len_max: maximum length of pause with bit value 0\r
+    DENON_ADDRESS_OFFSET,                                               // address_offset:  address offset\r
+    DENON_ADDRESS_OFFSET + DENON_ADDRESS_LEN,                           // address_end:     end of address\r
+    DENON_COMMAND_OFFSET,                                               // command_offset:  command offset\r
+    DENON_COMMAND_OFFSET + DENON_COMMAND_LEN,                           // command_end:     end of command\r
+    DENON_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame\r
+    DENON_STOP_BIT,                                                     // stop_bit:        flag: frame has stop bit\r
+    DENON_LSB                                                           // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -807,22 +933,22 @@ static PROGMEM IRMP_PARAMETER denon_param =
 \r
 static PROGMEM IRMP_PARAMETER rc6_param =\r
 {\r
-    IRMP_RC6_PROTOCOL,\r
-    RC6_BIT_LEN_MIN,\r
-    RC6_BIT_LEN_MAX,\r
-    RC6_BIT_LEN_MIN,\r
-    RC6_BIT_LEN_MAX,\r
-    1,                                // tricky: use this as stop bit length\r
-    1,\r
-    1,\r
-    1,\r
-    RC6_ADDRESS_OFFSET,\r
-    RC6_ADDRESS_OFFSET + RC6_ADDRESS_LEN,\r
-    RC6_COMMAND_OFFSET,\r
-    RC6_COMMAND_OFFSET + RC6_COMMAND_LEN,\r
-    RC6_COMPLETE_DATA_LEN_SHORT,\r
-    RC6_STOP_BIT,\r
-    RC6_LSB\r
+    IRMP_RC6_PROTOCOL,                                                  // protocol:        ir protocol\r
+    RC6_BIT_LEN_MIN,                                                    // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    RC6_BIT_LEN_MAX,                                                    // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    RC6_BIT_LEN_MIN,                                                    // pause_1_len_min: minimum length of pause with bit value 1\r
+    RC6_BIT_LEN_MAX,                                                    // pause_1_len_max: maximum length of pause with bit value 1\r
+    1,  // tricky: use this as stop bit length                          // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    1,                                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    1,                                                                  // pause_0_len_min: minimum length of pause with bit value 0\r
+    1,                                                                  // pause_0_len_max: maximum length of pause with bit value 0\r
+    RC6_ADDRESS_OFFSET,                                                 // address_offset:  address offset\r
+    RC6_ADDRESS_OFFSET + RC6_ADDRESS_LEN,                               // address_end:     end of address\r
+    RC6_COMMAND_OFFSET,                                                 // command_offset:  command offset\r
+    RC6_COMMAND_OFFSET + RC6_COMMAND_LEN,                               // command_end:     end of command\r
+    RC6_COMPLETE_DATA_LEN_SHORT,                                        // complete_len:    complete length of frame\r
+    RC6_STOP_BIT,                                                       // stop_bit:        flag: frame has stop bit\r
+    RC6_LSB                                                             // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -831,22 +957,22 @@ static PROGMEM IRMP_PARAMETER rc6_param =
 \r
 static PROGMEM IRMP_PARAMETER recs80ext_param =\r
 {\r
-    IRMP_RECS80EXT_PROTOCOL,\r
-    RECS80EXT_PULSE_LEN_MIN,\r
-    RECS80EXT_PULSE_LEN_MAX,\r
-    RECS80EXT_1_PAUSE_LEN_MIN,\r
-    RECS80EXT_1_PAUSE_LEN_MAX,\r
-    RECS80EXT_PULSE_LEN_MIN,\r
-    RECS80EXT_PULSE_LEN_MAX,\r
-    RECS80EXT_0_PAUSE_LEN_MIN,\r
-    RECS80EXT_0_PAUSE_LEN_MAX,\r
-    RECS80EXT_ADDRESS_OFFSET,\r
-    RECS80EXT_ADDRESS_OFFSET + RECS80EXT_ADDRESS_LEN,\r
-    RECS80EXT_COMMAND_OFFSET,\r
-    RECS80EXT_COMMAND_OFFSET + RECS80EXT_COMMAND_LEN,\r
-    RECS80EXT_COMPLETE_DATA_LEN,\r
-    RECS80EXT_STOP_BIT,\r
-    RECS80EXT_LSB\r
+    IRMP_RECS80EXT_PROTOCOL,                                            // protocol:        ir protocol\r
+    RECS80EXT_PULSE_LEN_MIN,                                            // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    RECS80EXT_PULSE_LEN_MAX,                                            // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    RECS80EXT_1_PAUSE_LEN_MIN,                                          // pause_1_len_min: minimum length of pause with bit value 1\r
+    RECS80EXT_1_PAUSE_LEN_MAX,                                          // pause_1_len_max: maximum length of pause with bit value 1\r
+    RECS80EXT_PULSE_LEN_MIN,                                            // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    RECS80EXT_PULSE_LEN_MAX,                                            // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    RECS80EXT_0_PAUSE_LEN_MIN,                                          // pause_0_len_min: minimum length of pause with bit value 0\r
+    RECS80EXT_0_PAUSE_LEN_MAX,                                          // pause_0_len_max: maximum length of pause with bit value 0\r
+    RECS80EXT_ADDRESS_OFFSET,                                           // address_offset:  address offset\r
+    RECS80EXT_ADDRESS_OFFSET + RECS80EXT_ADDRESS_LEN,                   // address_end:     end of address\r
+    RECS80EXT_COMMAND_OFFSET,                                           // command_offset:  command offset\r
+    RECS80EXT_COMMAND_OFFSET + RECS80EXT_COMMAND_LEN,                   // command_end:     end of command\r
+    RECS80EXT_COMPLETE_DATA_LEN,                                        // complete_len:    complete length of frame\r
+    RECS80EXT_STOP_BIT,                                                 // stop_bit:        flag: frame has stop bit\r
+    RECS80EXT_LSB                                                       // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -855,22 +981,22 @@ static PROGMEM IRMP_PARAMETER recs80ext_param =
 \r
 static PROGMEM IRMP_PARAMETER nubert_param =\r
 {\r
-    IRMP_NUBERT_PROTOCOL,\r
-    NUBERT_1_PULSE_LEN_MIN,\r
-    NUBERT_1_PULSE_LEN_MAX,\r
-    NUBERT_1_PAUSE_LEN_MIN,\r
-    NUBERT_1_PAUSE_LEN_MAX,\r
-    NUBERT_0_PULSE_LEN_MIN,\r
-    NUBERT_0_PULSE_LEN_MAX,\r
-    NUBERT_0_PAUSE_LEN_MIN,\r
-    NUBERT_0_PAUSE_LEN_MAX,\r
-    NUBERT_ADDRESS_OFFSET,\r
-    NUBERT_ADDRESS_OFFSET + NUBERT_ADDRESS_LEN,\r
-    NUBERT_COMMAND_OFFSET,\r
-    NUBERT_COMMAND_OFFSET + NUBERT_COMMAND_LEN,\r
-    NUBERT_COMPLETE_DATA_LEN,\r
-    NUBERT_STOP_BIT,\r
-    NUBERT_LSB\r
+    IRMP_NUBERT_PROTOCOL,                                               // protocol:        ir protocol\r
+    NUBERT_1_PULSE_LEN_MIN,                                             // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    NUBERT_1_PULSE_LEN_MAX,                                             // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    NUBERT_1_PAUSE_LEN_MIN,                                             // pause_1_len_min: minimum length of pause with bit value 1\r
+    NUBERT_1_PAUSE_LEN_MAX,                                             // pause_1_len_max: maximum length of pause with bit value 1\r
+    NUBERT_0_PULSE_LEN_MIN,                                             // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    NUBERT_0_PULSE_LEN_MAX,                                             // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    NUBERT_0_PAUSE_LEN_MIN,                                             // pause_0_len_min: minimum length of pause with bit value 0\r
+    NUBERT_0_PAUSE_LEN_MAX,                                             // pause_0_len_max: maximum length of pause with bit value 0\r
+    NUBERT_ADDRESS_OFFSET,                                              // address_offset:  address offset\r
+    NUBERT_ADDRESS_OFFSET + NUBERT_ADDRESS_LEN,                         // address_end:     end of address\r
+    NUBERT_COMMAND_OFFSET,                                              // command_offset:  command offset\r
+    NUBERT_COMMAND_OFFSET + NUBERT_COMMAND_LEN,                         // command_end:     end of command\r
+    NUBERT_COMPLETE_DATA_LEN,                                           // complete_len:    complete length of frame\r
+    NUBERT_STOP_BIT,                                                    // stop_bit:        flag: frame has stop bit\r
+    NUBERT_LSB                                                          // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
@@ -879,34 +1005,106 @@ static PROGMEM IRMP_PARAMETER nubert_param =
 \r
 static PROGMEM IRMP_PARAMETER bang_olufsen_param =\r
 {\r
-    IRMP_BANG_OLUFSEN_PROTOCOL,\r
-    BANG_OLUFSEN_PULSE_LEN_MIN,\r
-    BANG_OLUFSEN_PULSE_LEN_MAX,\r
-    BANG_OLUFSEN_1_PAUSE_LEN_MIN,\r
-    BANG_OLUFSEN_1_PAUSE_LEN_MAX,\r
-    BANG_OLUFSEN_PULSE_LEN_MIN,\r
-    BANG_OLUFSEN_PULSE_LEN_MAX,\r
-    BANG_OLUFSEN_0_PAUSE_LEN_MIN,\r
-    BANG_OLUFSEN_0_PAUSE_LEN_MAX,\r
-    BANG_OLUFSEN_ADDRESS_OFFSET,\r
-    BANG_OLUFSEN_ADDRESS_OFFSET + BANG_OLUFSEN_ADDRESS_LEN,\r
-    BANG_OLUFSEN_COMMAND_OFFSET,\r
-    BANG_OLUFSEN_COMMAND_OFFSET + BANG_OLUFSEN_COMMAND_LEN,\r
-    BANG_OLUFSEN_COMPLETE_DATA_LEN,\r
-    BANG_OLUFSEN_STOP_BIT,\r
-    BANG_OLUFSEN_LSB\r
+    IRMP_BANG_OLUFSEN_PROTOCOL,                                         // protocol:        ir protocol\r
+    BANG_OLUFSEN_PULSE_LEN_MIN,                                         // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    BANG_OLUFSEN_PULSE_LEN_MAX,                                         // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    BANG_OLUFSEN_1_PAUSE_LEN_MIN,                                       // pause_1_len_min: minimum length of pause with bit value 1\r
+    BANG_OLUFSEN_1_PAUSE_LEN_MAX,                                       // pause_1_len_max: maximum length of pause with bit value 1\r
+    BANG_OLUFSEN_PULSE_LEN_MIN,                                         // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    BANG_OLUFSEN_PULSE_LEN_MAX,                                         // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    BANG_OLUFSEN_0_PAUSE_LEN_MIN,                                       // pause_0_len_min: minimum length of pause with bit value 0\r
+    BANG_OLUFSEN_0_PAUSE_LEN_MAX,                                       // pause_0_len_max: maximum length of pause with bit value 0\r
+    BANG_OLUFSEN_ADDRESS_OFFSET,                                        // address_offset:  address offset\r
+    BANG_OLUFSEN_ADDRESS_OFFSET + BANG_OLUFSEN_ADDRESS_LEN,             // address_end:     end of address\r
+    BANG_OLUFSEN_COMMAND_OFFSET,                                        // command_offset:  command offset\r
+    BANG_OLUFSEN_COMMAND_OFFSET + BANG_OLUFSEN_COMMAND_LEN,             // command_end:     end of command\r
+    BANG_OLUFSEN_COMPLETE_DATA_LEN,                                     // complete_len:    complete length of frame\r
+    BANG_OLUFSEN_STOP_BIT,                                              // stop_bit:        flag: frame has stop bit\r
+    BANG_OLUFSEN_LSB                                                    // lsb_first:       flag: LSB first\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1\r
+\r
+static PROGMEM IRMP_PARAMETER grundig_param =\r
+{\r
+    IRMP_GRUNDIG_PROTOCOL,                                              // protocol:        ir protocol\r
+    GRUNDIG_OR_NOKIA_BIT_LEN_MIN,                                       // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    GRUNDIG_OR_NOKIA_BIT_LEN_MAX,                                       // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    GRUNDIG_OR_NOKIA_BIT_LEN_MIN,                                       // pause_1_len_min: minimum length of pause with bit value 1\r
+    GRUNDIG_OR_NOKIA_BIT_LEN_MAX,                                       // pause_1_len_max: maximum length of pause with bit value 1\r
+    1,  // tricky: use this as stop bit length                          // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    1,                                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    1,                                                                  // pause_0_len_min: minimum length of pause with bit value 0\r
+    1,                                                                  // pause_0_len_max: maximum length of pause with bit value 0\r
+    GRUNDIG_ADDRESS_OFFSET,                                             // address_offset:  address offset\r
+    GRUNDIG_ADDRESS_OFFSET + GRUNDIG_ADDRESS_LEN,                       // address_end:     end of address\r
+    GRUNDIG_COMMAND_OFFSET,                                             // command_offset:  command offset\r
+    GRUNDIG_COMMAND_OFFSET + GRUNDIG_COMMAND_LEN + 1,                   // command_end:     end of command (USE 1 bit MORE to STORE NOKIA DATA!)\r
+    NOKIA_COMPLETE_DATA_LEN,                                            // complete_len:    complete length of frame, here: NOKIA instead of GRUNDIG!\r
+    GRUNDIG_OR_NOKIA_STOP_BIT,                                          // stop_bit:        flag: frame has stop bit\r
+    GRUNDIG_OR_NOKIA_LSB                                                // lsb_first:       flag: LSB first\r
 };\r
 \r
 #endif\r
 \r
-static uint8_t                              irmp_bit;                                           // current bit position\r
+#if IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+\r
+static PROGMEM IRMP_PARAMETER siemens_param =\r
+{\r
+    IRMP_SIEMENS_PROTOCOL,                                              // protocol:        ir protocol\r
+    SIEMENS_BIT_LEN_MIN,                                                // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    SIEMENS_BIT_LEN_MAX,                                                // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    SIEMENS_BIT_LEN_MIN,                                                // pause_1_len_min: minimum length of pause with bit value 1\r
+    SIEMENS_BIT_LEN_MAX,                                                // pause_1_len_max: maximum length of pause with bit value 1\r
+    1,  // tricky: use this as stop bit length                          // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    1,                                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    1,                                                                  // pause_0_len_min: minimum length of pause with bit value 0\r
+    1,                                                                  // pause_0_len_max: maximum length of pause with bit value 0\r
+    SIEMENS_ADDRESS_OFFSET,                                             // address_offset:  address offset\r
+    SIEMENS_ADDRESS_OFFSET + SIEMENS_ADDRESS_LEN,                       // address_end:     end of address\r
+    SIEMENS_COMMAND_OFFSET,                                             // command_offset:  command offset\r
+    SIEMENS_COMMAND_OFFSET + SIEMENS_COMMAND_LEN,                       // command_end:     end of command\r
+    SIEMENS_COMPLETE_DATA_LEN,                                          // complete_len:    complete length of frame\r
+    SIEMENS_STOP_BIT,                                                   // stop_bit:        flag: frame has stop bit\r
+    SIEMENS_LSB                                                         // lsb_first:       flag: LSB first\r
+};\r
+\r
+#endif\r
+\r
+#if IRMP_SUPPORT_FDC_PROTOCOL == 1\r
+\r
+static PROGMEM IRMP_PARAMETER fdc_param =\r
+{\r
+    IRMP_FDC_PROTOCOL,                                                  // protocol:        ir protocol\r
+    FDC_PULSE_LEN_MIN,                                                  // pulse_1_len_min: minimum length of pulse with bit value 1\r
+    FDC_PULSE_LEN_MAX,                                                  // pulse_1_len_max: maximum length of pulse with bit value 1\r
+    FDC_1_PAUSE_LEN_MIN,                                                // pause_1_len_min: minimum length of pause with bit value 1\r
+    FDC_1_PAUSE_LEN_MAX,                                                // pause_1_len_max: maximum length of pause with bit value 1\r
+    FDC_PULSE_LEN_MIN,                                                  // pulse_0_len_min: minimum length of pulse with bit value 0\r
+    FDC_PULSE_LEN_MAX,                                                  // pulse_0_len_max: maximum length of pulse with bit value 0\r
+    FDC_0_PAUSE_LEN_MIN,                                                // pause_0_len_min: minimum length of pause with bit value 0\r
+    FDC_0_PAUSE_LEN_MAX,                                                // pause_0_len_max: maximum length of pause with bit value 0\r
+    FDC_ADDRESS_OFFSET,                                                 // address_offset:  address offset\r
+    FDC_ADDRESS_OFFSET + FDC_ADDRESS_LEN,                               // address_end:     end of address\r
+    FDC_COMMAND_OFFSET,                                                 // command_offset:  command offset\r
+    FDC_COMMAND_OFFSET + FDC_COMMAND_LEN,                               // command_end:     end of command\r
+    FDC_COMPLETE_DATA_LEN,                                              // complete_len:    complete length of frame\r
+    FDC_STOP_BIT,                                                       // stop_bit:        flag: frame has stop bit\r
+    FDC_LSB                                                             // lsb_first:       flag: LSB first\r
+};\r
+\r
+#endif\r
+\r
+static uint8_t                              irmp_bit;                   // current bit position\r
 static IRMP_PARAMETER                       irmp_param;\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 uint16_t                    irmp_id;                    // only used for SAMSUNG protocol\r
 static volatile uint8_t                     irmp_flags;\r
 \r
 #ifdef DEBUG\r
@@ -923,8 +1121,8 @@ void
 irmp_init (void)\r
 {\r
 #ifndef PIC_CCS_COMPILER\r
-    IRMP_PORT &= ~(1<<IRMP_BIT);                                                                  // deactivate pullup\r
-    IRMP_DDR &= ~(1<<IRMP_BIT);                                                                   // set pin to input\r
+    IRMP_PORT &= ~(1<<IRMP_BIT);                                        // deactivate pullup\r
+    IRMP_DDR &= ~(1<<IRMP_BIT);                                         // set pin to input\r
 #endif // PIC_CCS_COMPILER\r
 \r
 #if IRMP_LOGGING == 1\r
@@ -1051,7 +1249,7 @@ irmp_store_bit (uint8_t value)
  *  @details  ISR routine, called 10000 times per second\r
  *---------------------------------------------------------------------------------------------------------------------------------------------------\r
  */\r
-void\r
+uint8_t\r
 irmp_ISR (void)\r
 {\r
     static uint8_t    irmp_start_bit_detected;                                  // flag: start bit detected\r
@@ -1062,30 +1260,42 @@ irmp_ISR (void)
     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_counter;                                       // SIRCS repeats frame 2-5 times with 45 ms pause\r
+    static uint8_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
 #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
 #endif\r
-#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_RC6_PROTOCOL == 1\r
+#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_RC6_PROTOCOL == 1 || IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
     static uint8_t    last_pause;                                               // last pause value\r
 #endif\r
-#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_RC6_PROTOCOL == 1 || IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
+#if IRMP_SUPPORT_RC5_PROTOCOL == 1 || IRMP_SUPPORT_RC6_PROTOCOL == 1 || IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1 || \\r
+    IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1 || IRMP_SUPPORT_SIEMENS_PROTOCOL == 1 \r
     static uint8_t    last_value;                                               // last bit value\r
 #endif\r
     uint8_t           irmp_input;                                               // input value\r
 \r
+#ifdef DEBUG\r
+    time_counter++;\r
+#endif\r
+\r
     irmp_input = input(IRMP_PIN);\r
 \r
-    irmp_logIsr(irmp_input);                                                    // log ir signal, if IRMP_LOGGING defined\r
+    irmp_log(irmp_input);                                                       // log ir signal, if IRMP_LOGGING defined\r
 \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
+            if (! irmp_input)                                                   // receiving burst?\r
             {                                                                   // yes...\r
+#ifdef DEBUG\r
+                if (! irmp_pulse_time)\r
+                {\r
+                    DEBUG_PRINTF("%8d [starting pulse]\n", time_counter);\r
+                }\r
+#endif\r
                 irmp_pulse_time++;                                              // increment counter\r
             }\r
             else\r
@@ -1119,7 +1329,8 @@ irmp_ISR (void)
 \r
                     if (irmp_pause_time > IRMP_TIMEOUT_LEN)                     // timeout?\r
                     {                                                           // yes...\r
-                        DEBUG_PRINTF ("error 1: pause after start bit %d too long: %d\n", irmp_pulse_time, irmp_pause_time);\r
+                        DEBUG_PRINTF ("error 1: pause after start bit pulse %d too long: %d\n", irmp_pulse_time, irmp_pause_time);\r
+                        DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\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
@@ -1127,48 +1338,39 @@ irmp_ISR (void)
                 }\r
                 else\r
                 {                                                               // receiving first data pulse!\r
+                    IRMP_PARAMETER * irmp_param_p = (IRMP_PARAMETER *) 0;\r
+\r
                     DEBUG_PRINTF ("start-bit: pulse = %d, pause = %d\n", irmp_pulse_time, irmp_pause_time);\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
+                    {                                                           // it's SIRCS\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &sircs_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) (IRMP_PARAMETER *) &sircs_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_SIRCS_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
-                         (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_pause_time <= NEC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
-                        {\r
-                            DEBUG_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
-                        else\r
-                        {\r
-                            DEBUG_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
-                        }\r
-\r
-                        memcpy_P (&irmp_param, &nec_param, sizeof (IRMP_PARAMETER));\r
-\r
-                        if (irmp_pause_time <= NEC_REPEAT_START_BIT_PAUSE_LEN_MAX)\r
-                        {\r
-                            irmp_param.address_offset  = 0;\r
-                            irmp_param.address_end     = 0;\r
-                            irmp_param.command_offset  = 0;\r
-                            irmp_param.command_end     = 0;\r
-                            irmp_param.complete_len    = 0;\r
-                        }\r
+                        irmp_pause_time >= NEC_START_BIT_PAUSE_LEN_MIN && irmp_pause_time <= NEC_START_BIT_PAUSE_LEN_MAX)\r
+                    {\r
+                        DEBUG_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
+                    }\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
+                        DEBUG_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
+                        irmp_param_p = (IRMP_PARAMETER *) &nec_rep_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_NEC_PROTOCOL == 1\r
@@ -1176,11 +1378,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's SAMSUNG\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &samsung_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &samsung_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
@@ -1188,11 +1390,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's MATSUSHITA\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &matsushita_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &matsushita_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_MATSUSHITA_PROTOCOL == 1\r
@@ -1200,11 +1402,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's KASEIKYO\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &kaseikyo_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &kaseikyo_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_KASEIKYO_PROTOCOL == 1\r
@@ -1212,11 +1414,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's RECS80\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &recs80_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &recs80_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_RECS80_PROTOCOL == 1\r
@@ -1226,11 +1428,11 @@ irmp_ISR (void)
                          (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
+                    {                                                           // it's RC5\r
                         DEBUG_PRINTF ("protocol = 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_param, &rc5_param, sizeof (IRMP_PARAMETER));\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
@@ -1256,7 +1458,7 @@ irmp_ISR (void)
                                         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
-                        memcpy_P (&irmp_param, &denon_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &denon_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_DENON_PROTOCOL == 1\r
@@ -1268,7 +1470,7 @@ irmp_ISR (void)
                         DEBUG_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
-                        memcpy_P (&irmp_param, &rc6_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &rc6_param;\r
                         last_pause = 0;\r
                         last_value = 0;\r
                     }\r
@@ -1278,11 +1480,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's RECS80EXT\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &recs80ext_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &recs80ext_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_RECS80EXT_PROTOCOL == 1\r
@@ -1290,11 +1492,11 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's NUBERT\r
                         DEBUG_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
-                        memcpy_P (&irmp_param, &nubert_param, sizeof (IRMP_PARAMETER));\r
+                        irmp_param_p = (IRMP_PARAMETER *) &nubert_param;\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_NUBERT_PROTOCOL == 1\r
@@ -1302,7 +1504,7 @@ irmp_ISR (void)
 #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
+                    {                                                           // it's BANG_OLUFSEN\r
                         DEBUG_PRINTF ("protocol = BANG_OLUFSEN\n");\r
                         DEBUG_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
@@ -1316,12 +1518,53 @@ irmp_ISR (void)
                         DEBUG_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
-                        memcpy_P (&irmp_param, &bang_olufsen_param, sizeof (IRMP_PARAMETER));\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_OR_NOKIA_PROTOCOL == 1\r
+                    if (irmp_pulse_time >= GRUNDIG_OR_NOKIA_START_BIT_LEN_MIN && irmp_pulse_time <= GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX &&\r
+                        irmp_pause_time >= GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MIN && irmp_pause_time <= GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MAX)\r
+                    {                                                           // it's GRUNDIG\r
+                        DEBUG_PRINTF ("protocol = GRUNDIG, pre bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                        GRUNDIG_OR_NOKIA_START_BIT_LEN_MIN, GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX,\r
+                                        GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MIN, GRUNDIG_OR_NOKIA_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
+#endif // IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+                    if (((irmp_pulse_time >= SIEMENS_START_BIT_LEN_MIN && irmp_pulse_time <= SIEMENS_START_BIT_LEN_MAX) ||\r
+                         (irmp_pulse_time >= 2 * SIEMENS_START_BIT_LEN_MIN && irmp_pulse_time <= 2 * SIEMENS_START_BIT_LEN_MAX)) &&\r
+                        ((irmp_pause_time >= SIEMENS_START_BIT_LEN_MIN && irmp_pause_time <= SIEMENS_START_BIT_LEN_MAX) ||\r
+                         (irmp_pause_time >= 2 * SIEMENS_START_BIT_LEN_MIN && irmp_pause_time <= 2 * SIEMENS_START_BIT_LEN_MAX)))\r
+                    {                                                           // it's SIEMENS\r
+                        DEBUG_PRINTF ("protocol = SIEMENS, start bit timings: pulse: %3d - %3d, pause: %3d - %3d\n",\r
+                                        SIEMENS_START_BIT_LEN_MIN, SIEMENS_START_BIT_LEN_MAX,\r
+                                        SIEMENS_START_BIT_LEN_MIN, SIEMENS_START_BIT_LEN_MAX);\r
+                        irmp_param_p = (IRMP_PARAMETER *) &siemens_param;\r
+                        last_pause = irmp_pause_time;\r
+                        last_value  = 1;\r
+                    }\r
+                    else\r
+#endif // IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\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
+                        DEBUG_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
+#endif // IRMP_SUPPORT_NEC_PROTOCOL == 1\r
+\r
                     {\r
                         DEBUG_PRINTF ("protocol = UNKNOWN\n");\r
                         irmp_start_bit_detected = 0;                            // wait for another start bit...\r
@@ -1329,8 +1572,11 @@ irmp_ISR (void)
 \r
                     if (irmp_start_bit_detected)\r
                     {\r
+                        memcpy_P (&irmp_param, irmp_param_p, sizeof (IRMP_PARAMETER));\r
+\r
                         DEBUG_PRINTF ("pulse_1: %3d - %3d\n", irmp_param.pulse_1_len_min, irmp_param.pulse_1_len_max);\r
                         DEBUG_PRINTF ("pause_1: %3d - %3d\n", irmp_param.pause_1_len_min, irmp_param.pause_1_len_max);\r
+\r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
                         if (irmp_param.protocol == IRMP_RC6_PROTOCOL)\r
                         {\r
@@ -1339,6 +1585,7 @@ irmp_ISR (void)
 #endif\r
                         DEBUG_PRINTF ("pulse_0: %3d - %3d\n", irmp_param.pulse_0_len_min, irmp_param.pulse_0_len_max);\r
                         DEBUG_PRINTF ("pause_0: %3d - %3d\n", irmp_param.pause_0_len_min, irmp_param.pause_0_len_max);\r
+\r
 #if IRMP_SUPPORT_BANG_OLUFSEN_PROTOCOL == 1\r
                         if (irmp_param.protocol == IRMP_BANG_OLUFSEN_PROTOCOL)\r
                         {\r
@@ -1348,9 +1595,9 @@ irmp_ISR (void)
 #endif\r
 \r
                         DEBUG_PRINTF ("command_offset: %2d\n", irmp_param.command_offset);\r
-                        DEBUG_PRINTF ("command_len:   %3d\n", irmp_param.command_end - irmp_param.command_offset);\r
-                        DEBUG_PRINTF ("complete_len:  %3d\n", irmp_param.complete_len);\r
-                        DEBUG_PRINTF ("stop_bit:      %3d\n", irmp_param.stop_bit);\r
+                        DEBUG_PRINTF ("command_len:    %3d\n", irmp_param.command_end - irmp_param.command_offset);\r
+                        DEBUG_PRINTF ("complete_len:   %3d\n", irmp_param.complete_len);\r
+                        DEBUG_PRINTF ("stop_bit:       %3d\n", irmp_param.stop_bit);\r
                     }\r
 \r
                     irmp_bit = 0;\r
@@ -1360,37 +1607,79 @@ irmp_ISR (void)
                     {\r
                         if (irmp_pause_time > RC5_START_BIT_LEN_MAX && irmp_pause_time <= 2 * RC5_START_BIT_LEN_MAX)\r
                         {\r
-                          DEBUG_PRINTF ("[bit %2d: pulse = %3d, pause = %3d] ", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
                           DEBUG_PUTCHAR ('1');\r
-                          DEBUG_PUTCHAR ('\n');\r
+                          DEBUG_NEWLINE ();\r
                           irmp_store_bit (1);\r
                         }\r
                         else if (! last_value)\r
                         {\r
-                          DEBUG_PRINTF ("[bit %2d: pulse = %3d, pause = %3d] ", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
                           DEBUG_PUTCHAR ('0');\r
-                          DEBUG_PUTCHAR ('\n');\r
+                          DEBUG_NEWLINE ();\r
                           irmp_store_bit (0);\r
                         }\r
                     }\r
                     else\r
 #endif // IRMP_SUPPORT_RC5_PROTOCOL == 1\r
 \r
+#if IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1\r
+                    if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL || irmp_param.protocol == IRMP_NOKIA_PROTOCOL)\r
+                    {\r
+                        if (irmp_pause_time > GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX && irmp_pause_time <= 2 * GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX)\r
+                        {\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PUTCHAR ('0');\r
+                          DEBUG_NEWLINE ();\r
+                          irmp_store_bit (0);\r
+                        }\r
+                        else if (! last_value)\r
+                        {\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PUTCHAR ('1');\r
+                          DEBUG_NEWLINE ();\r
+                          irmp_store_bit (1);\r
+                        }\r
+                    }\r
+                    else\r
+#endif // IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+                    if (irmp_param.protocol == IRMP_SIEMENS_PROTOCOL)\r
+                    {\r
+                        if (irmp_pause_time > SIEMENS_START_BIT_LEN_MAX && irmp_pause_time <= 2 * SIEMENS_START_BIT_LEN_MAX)\r
+                        {\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PUTCHAR ('0');\r
+                          DEBUG_NEWLINE ();\r
+                          irmp_store_bit (0);\r
+                        }\r
+                        else if (! last_value)\r
+                        {\r
+                          DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                          DEBUG_PUTCHAR ('1');\r
+                          DEBUG_NEWLINE ();\r
+                          irmp_store_bit (1);\r
+                        }\r
+                    }\r
+                    else\r
+#endif // IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+\r
 #if IRMP_SUPPORT_DENON_PROTOCOL == 1\r
                     if (irmp_param.protocol == IRMP_DENON_PROTOCOL)\r
                     {\r
-                        DEBUG_PRINTF ("[bit %2d: pulse = %3d, pause = %3d] ", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                        DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, 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
                           DEBUG_PUTCHAR ('1');                                  // yes, store 1\r
-                          DEBUG_PUTCHAR ('\n');\r
+                          DEBUG_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
                           DEBUG_PUTCHAR ('0');                                  // yes, store 0\r
-                          DEBUG_PUTCHAR ('\n');\r
+                          DEBUG_NEWLINE ();\r
                           irmp_store_bit (0);\r
                         }\r
                     }\r
@@ -1412,7 +1701,11 @@ irmp_ISR (void)
                         if (irmp_pulse_time >= irmp_param.pulse_0_len_min && irmp_pulse_time <= irmp_param.pulse_0_len_max)\r
                         {\r
 #ifdef DEBUG\r
-                            if (irmp_param.protocol != IRMP_RC5_PROTOCOL)\r
+                            if (irmp_param.protocol != IRMP_RC5_PROTOCOL &&\r
+                                irmp_param.protocol != IRMP_RC6_PROTOCOL &&\r
+                                irmp_param.protocol != IRMP_GRUNDIG_PROTOCOL &&\r
+                                irmp_param.protocol != IRMP_NOKIA_PROTOCOL &&\r
+                                irmp_param.protocol != IRMP_SIEMENS_PROTOCOL)\r
                             {\r
                                 DEBUG_PRINTF ("stop bit detected\n");\r
                             }\r
@@ -1437,7 +1730,7 @@ irmp_ISR (void)
                             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
+                            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_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
@@ -1449,7 +1742,7 @@ irmp_ISR (void)
                             irmp_pause_time > 2 * RC5_BIT_LEN_MAX && irmp_bit >= RC5_COMPLETE_DATA_LEN - 2 && !irmp_param.stop_bit)\r
                         {                                                       // special rc5 decoder\r
                             got_light = TRUE;                                   // this is a lie, but generates a stop bit ;-)\r
-                            irmp_param.stop_bit = TRUE;                                    // set flag\r
+                            irmp_param.stop_bit = TRUE;                         // set flag\r
                         }\r
                         else\r
 #endif\r
@@ -1458,7 +1751,54 @@ irmp_ISR (void)
                             irmp_pause_time > 2 * RC6_BIT_LEN_MAX && irmp_bit >= irmp_param.complete_len - 2 && !irmp_param.stop_bit)\r
                         {                                                       // special rc6 decoder\r
                             got_light = TRUE;                                   // this is a lie, but generates a stop bit ;-)\r
-                            irmp_param.stop_bit = TRUE;                                    // set flag\r
+                            irmp_param.stop_bit = TRUE;                         // set flag\r
+                        }\r
+                        else\r
+#endif\r
+#if IRMP_SUPPORT_GRUNDIG_PROTOCOL == 1\r
+                        if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL &&\r
+                            irmp_pause_time > 2 * GRUNDIG_OR_NOKIA_BIT_LEN_MAX && irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN - 2 && !irmp_param.stop_bit)\r
+                        {                                                           // special Grundig/Nokia 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\r
+#endif\r
+#if IRMP_SUPPORT_NOKIA_PROTOCOL == 1\r
+                        if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL &&\r
+                            irmp_bit >= GRUNDIG_COMPLETE_DATA_LEN)\r
+                        {\r
+                            DEBUG_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
+                        else\r
+#endif\r
+#if IRMP_SUPPORT_NOKIA_PROTOCOL == 1\r
+                        if (irmp_param.protocol == IRMP_NOKIA_PROTOCOL &&\r
+                            irmp_pause_time > 2 * GRUNDIG_OR_NOKIA_BIT_LEN_MAX && irmp_bit >= NOKIA_COMPLETE_DATA_LEN - 2 && !irmp_param.stop_bit)\r
+                        {                                                           // special Grundig/Nokia 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\r
+#if IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+                        if (irmp_param.protocol == IRMP_SIEMENS_PROTOCOL &&\r
+                            irmp_pause_time > 2 * SIEMENS_BIT_LEN_MAX && irmp_bit >= SIEMENS_COMPLETE_DATA_LEN - 2 && !irmp_param.stop_bit)\r
+                        {                                                       // special rc5 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\r
@@ -1471,6 +1811,7 @@ irmp_ISR (void)
                             else\r
                             {\r
                                 DEBUG_PRINTF ("error 2: pause %d after data bit %d too long\n", irmp_pause_time, irmp_bit);\r
+                                DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\r
 \r
                                 irmp_start_bit_detected = 0;                    // wait for another start bit...\r
                                 irmp_pulse_time         = 0;\r
@@ -1486,17 +1827,17 @@ irmp_ISR (void)
 \r
                 if (got_light)\r
                 {\r
-                    DEBUG_PRINTF ("[bit %2d: pulse = %3d, pause = %3d] ", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                    DEBUG_PRINTF ("%8d [bit %2d: pulse = %3d, pause = %3d] ", time_counter, irmp_bit, irmp_pulse_time, irmp_pause_time);\r
 \r
 #if IRMP_SUPPORT_RC5_PROTOCOL == 1\r
-                    if (irmp_param.protocol == IRMP_RC5_PROTOCOL)                 // special rc5 decoder\r
+                    if (irmp_param.protocol == IRMP_RC5_PROTOCOL)               // special rc5 decoder\r
                     {\r
                         if (irmp_pulse_time > RC5_BIT_LEN_MAX && irmp_pulse_time <= 2 * RC5_BIT_LEN_MAX)\r
                         {\r
                             DEBUG_PUTCHAR ('1');\r
                             irmp_store_bit (1);\r
                             DEBUG_PUTCHAR ('0');\r
-                            DEBUG_PUTCHAR ('\n');\r
+                            DEBUG_NEWLINE ();\r
                             irmp_store_bit (0);\r
                             last_value = 0;\r
                         }\r
@@ -1516,7 +1857,7 @@ irmp_ISR (void)
                             }\r
 \r
                             DEBUG_PUTCHAR (rc5_value + '0');\r
-                            DEBUG_PUTCHAR ('\n');\r
+                            DEBUG_NEWLINE ();\r
                             irmp_store_bit (rc5_value);\r
                         }\r
 \r
@@ -1526,6 +1867,45 @@ irmp_ISR (void)
                     else\r
 #endif\r
 \r
+#if IRMP_SUPPORT_GRUNDIG_OR_NOKIA_PROTOCOL == 1\r
+                    if (irmp_param.protocol == IRMP_GRUNDIG_PROTOCOL ||             // special Grundig decoder\r
+                        irmp_param.protocol == IRMP_NOKIA_PROTOCOL)                 // special Nokia decoder\r
+                    {\r
+                        if (irmp_pulse_time > GRUNDIG_OR_NOKIA_BIT_LEN_MAX && irmp_pulse_time <= 2 * GRUNDIG_OR_NOKIA_BIT_LEN_MAX)\r
+                        {\r
+                            DEBUG_PUTCHAR ('0');\r
+                            irmp_store_bit (0);\r
+                            DEBUG_PUTCHAR ('1');\r
+                            DEBUG_NEWLINE ();\r
+                            irmp_store_bit (1);\r
+                            last_value = 1;\r
+                        }\r
+\r
+                        else // if (irmp_pulse_time >= GRUNDIG_BIT_LEN_MIN && irmp_pulse_time <= GRUNDIG_OR_NOKIA_BIT_LEN_MAX)\r
+                        {\r
+                            uint8_t grundig_value;\r
+\r
+                            if (last_pause > GRUNDIG_OR_NOKIA_BIT_LEN_MAX && last_pause <= 2 * GRUNDIG_OR_NOKIA_BIT_LEN_MAX)\r
+                            {\r
+                                grundig_value = last_value ? 0 : 1;\r
+                                last_value  = grundig_value;\r
+                            }\r
+                            else\r
+                            {\r
+                                grundig_value = last_value;\r
+                            }\r
+\r
+                            DEBUG_PUTCHAR (grundig_value + '0');\r
+                            DEBUG_NEWLINE ();\r
+                            irmp_store_bit (grundig_value);\r
+                        }\r
+\r
+                        last_pause = irmp_pause_time;\r
+                        wait_for_space = 0;\r
+                    }\r
+                    else\r
+#endif\r
+\r
 #if IRMP_SUPPORT_RC6_PROTOCOL == 1\r
                     if (irmp_param.protocol == IRMP_RC6_PROTOCOL)               // special rc6 decoder\r
                     {\r
@@ -1543,7 +1923,7 @@ irmp_ISR (void)
                                 DEBUG_PUTCHAR ('0');\r
                                 irmp_store_bit (0);\r
                                 last_value = 0;\r
-                                DEBUG_PUTCHAR ('\n');\r
+                                DEBUG_NEWLINE ();\r
                                 break;\r
 \r
                             default:\r
@@ -1552,7 +1932,7 @@ irmp_ISR (void)
                                     DEBUG_PUTCHAR ('0');\r
                                     irmp_store_bit (0);\r
                                     DEBUG_PUTCHAR ('1');\r
-                                    DEBUG_PUTCHAR ('\n');\r
+                                    DEBUG_NEWLINE ();\r
                                     irmp_store_bit (1);\r
                                     last_value = 1;\r
                                 }\r
@@ -1576,7 +1956,7 @@ irmp_ISR (void)
                                     }\r
 \r
                                     DEBUG_PUTCHAR (rc5_value + '0');\r
-                                    DEBUG_PUTCHAR ('\n');\r
+                                    DEBUG_NEWLINE ();\r
                                     irmp_store_bit (rc5_value);\r
                                 }\r
 \r
@@ -1587,6 +1967,44 @@ irmp_ISR (void)
                         wait_for_space = 0;\r
                     }\r
                     else\r
+#endif // IRMP_SUPPORT_RC6_PROTOCOL == 1\r
+\r
+#if IRMP_SUPPORT_SIEMENS_PROTOCOL == 1\r
+                    if (irmp_param.protocol == IRMP_SIEMENS_PROTOCOL)               // special siemens decoder\r
+                    {\r
+                        if (irmp_pulse_time > SIEMENS_BIT_LEN_MAX && irmp_pulse_time <= 2 * SIEMENS_BIT_LEN_MAX)\r
+                        {\r
+                            DEBUG_PUTCHAR ('0');\r
+                            irmp_store_bit (0);\r
+                            DEBUG_PUTCHAR ('1');\r
+                            DEBUG_NEWLINE ();\r
+                            irmp_store_bit (1);\r
+                            last_value = 1;\r
+                        }\r
+\r
+                        else // if (irmp_pulse_time >= SIEMENS_BIT_LEN_MIN && irmp_pulse_time <= SIEMENS_BIT_LEN_MAX)\r
+                        {\r
+                            uint8_t siemens_value;\r
+\r
+                            if (last_pause > SIEMENS_BIT_LEN_MAX && last_pause <= 2 * SIEMENS_BIT_LEN_MAX)\r
+                            {\r
+                                siemens_value = last_value ? 0 : 1;\r
+                                last_value  = siemens_value;\r
+                            }\r
+                            else\r
+                            {\r
+                                siemens_value = last_value;\r
+                            }\r
+\r
+                            DEBUG_PUTCHAR (siemens_value + '0');\r
+                            DEBUG_NEWLINE ();\r
+                            irmp_store_bit (siemens_value);\r
+                        }\r
+\r
+                        last_pause = irmp_pause_time;\r
+                        wait_for_space = 0;\r
+                    }\r
+                    else\r
 #endif\r
 \r
 #if IRMP_SUPPORT_SAMSUNG_PROTOCOL == 1\r
@@ -1602,36 +2020,35 @@ irmp_ISR (void)
                         }\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
                                 DEBUG_PUTCHAR ('1');\r
-                                DEBUG_PUTCHAR ('\n');\r
+                                DEBUG_NEWLINE ();\r
                                 irmp_store_bit (1);\r
                                 wait_for_space = 0;\r
                             }\r
                             else\r
                             {\r
                                 DEBUG_PUTCHAR ('0');\r
-                                DEBUG_PUTCHAR ('\n');\r
+                                DEBUG_NEWLINE ();\r
                                 irmp_store_bit (0);\r
                                 wait_for_space = 0;\r
                             }\r
 \r
                             DEBUG_PRINTF ("Switching to SAMSUNG32 protocol\n");\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
                         else\r
                         {                                                           // timing incorrect!\r
                             DEBUG_PRINTF ("error 3 Samsung: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                            DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\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
                     else\r
 #endif // IRMP_SUPPORT_SAMSUNG_PROTOCOL\r
@@ -1641,7 +2058,7 @@ irmp_ISR (void)
                     {\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
+                            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
@@ -1651,15 +2068,14 @@ irmp_ISR (void)
                                     irmp_bit++;\r
                                 }\r
                                 else\r
-                                {                                                       // timing incorrect!\r
+                                {                                                   // timing incorrect!\r
                                     DEBUG_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
-                                    irmp_start_bit_detected = 0;                        // reset flags and wait for next start bit\r
+                                    DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\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
-                            else if (irmp_bit == 19)                                    // Bang & Olufsen: trailer bit\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
@@ -1669,28 +2085,27 @@ irmp_ISR (void)
                                     irmp_bit++;\r
                                 }\r
                                 else\r
-                                {                                                       // timing incorrect!\r
+                                {                                                   // timing incorrect!\r
                                     DEBUG_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
-                                    irmp_start_bit_detected = 0;                          // reset flags and wait for next start bit\r
+                                    DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\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
                             else\r
                             {\r
-                                if (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
+                                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
                                     DEBUG_PUTCHAR ('1');\r
-                                    DEBUG_PUTCHAR ('\n');\r
+                                    DEBUG_NEWLINE ();\r
                                     irmp_store_bit (1);\r
                                     last_value = 1;\r
                                     wait_for_space = 0;\r
                                 }\r
-                                else if (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
+                                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
                                     DEBUG_PUTCHAR ('0');\r
-                                    DEBUG_PUTCHAR ('\n');\r
+                                    DEBUG_NEWLINE ();\r
                                     irmp_store_bit (0);\r
                                     last_value = 0;\r
                                     wait_for_space = 0;\r
@@ -1698,22 +2113,24 @@ irmp_ISR (void)
                                 else if (irmp_pause_time >= BANG_OLUFSEN_R_PAUSE_LEN_MIN && irmp_pause_time <= BANG_OLUFSEN_R_PAUSE_LEN_MAX)\r
                                 {\r
                                     DEBUG_PUTCHAR (last_value + '0');\r
-                                    DEBUG_PUTCHAR ('\n');\r
+                                    DEBUG_NEWLINE ();\r
                                     irmp_store_bit (last_value);\r
                                     wait_for_space = 0;\r
                                 }\r
                                 else\r
-                                {                                                       // timing incorrect!\r
+                                {                                                   // timing incorrect!\r
                                     DEBUG_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
-                                    irmp_start_bit_detected = 0;                          // reset flags and wait for next start bit\r
+                                    DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\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
+                        {                                                           // timing incorrect!\r
                             DEBUG_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
-                            irmp_start_bit_detected = 0;                                // reset flags and wait for next start bit\r
+                            DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\r
+                            irmp_start_bit_detected = 0;                            // reset flags and wait for next start bit\r
                             irmp_pause_time         = 0;\r
                         }\r
                     }\r
@@ -1724,7 +2141,7 @@ irmp_ISR (void)
                         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
                         DEBUG_PUTCHAR ('1');\r
-                        DEBUG_PUTCHAR ('\n');\r
+                        DEBUG_NEWLINE ();\r
                         irmp_store_bit (1);\r
                         wait_for_space = 0;\r
                     }\r
@@ -1732,13 +2149,14 @@ irmp_ISR (void)
                              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
                         DEBUG_PUTCHAR ('0');\r
-                        DEBUG_PUTCHAR ('\n');\r
+                        DEBUG_NEWLINE ();\r
                         irmp_store_bit (0);\r
                         wait_for_space = 0;\r
                     }\r
                     else\r
                     {                                                               // timing incorrect!\r
                         DEBUG_PRINTF ("error 3: timing not correct: data bit %d,  pulse: %d, pause: %d\n", irmp_bit, irmp_pulse_time, irmp_pause_time);\r
+                        DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\r
                         irmp_start_bit_detected = 0;                                // reset flags and wait for next start bit\r
                         irmp_pause_time         = 0;\r
                     }\r
@@ -1748,7 +2166,7 @@ irmp_ISR (void)
             }\r
             else\r
             {                                                                       // counting the pulse length ...\r
-                if (!irmp_input)                                                    // still light?\r
+                if (! irmp_input)                                                   // still light?\r
                 {                                                                   // yes...\r
                     irmp_pulse_time++;                                              // increment counter\r
                 }\r
@@ -1761,17 +2179,48 @@ irmp_ISR (void)
 \r
             if (irmp_bit == irmp_param.complete_len && irmp_param.stop_bit == 0)    // enough bits received?\r
             {\r
-                // if SIRCS/SAMSUNG32 protocol and the code will be repeated within 50 ms, we will ignore it.\r
-                if ((irmp_param.protocol == IRMP_SIRCS_PROTOCOL ||\r
-                     irmp_param.protocol == IRMP_SAMSUNG32_PROTOCOL ||\r
-                     irmp_param.protocol == IRMP_NUBERT_PROTOCOL) &&\r
-                    last_irmp_command == irmp_tmp_command && repetition_counter < AUTO_REPETITION_LEN)\r
+                if (last_irmp_command == irmp_tmp_command && repetition_counter < 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
+                    DEBUG_PRINTF ("code skipped: SIRCS auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                    repetition_frame_number + 1, repetition_counter, AUTO_FRAME_REPETITION_LEN);\r
+                    repetition_counter = 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
-                    DEBUG_PRINTF ("code skipped, recognized SIRCS, SAMSUNG32 or NUBERT repetition, counter = %d, auto repetition len = %d\n",\r
-                                    repetition_counter, AUTO_REPETITION_LEN);\r
+                    DEBUG_PRINTF ("code skipped: SAMSUNG32 auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                    repetition_frame_number + 1, repetition_counter, AUTO_FRAME_REPETITION_LEN);\r
                     repetition_counter = 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
+                    DEBUG_PRINTF ("code skipped: NUBERT auto repetition frame #%d, counter = %d, auto repetition len = %d\n",\r
+                                    repetition_frame_number + 1, repetition_counter, AUTO_FRAME_REPETITION_LEN);\r
+                    repetition_counter = 0;\r
+                }\r
+                else\r
+#endif\r
+\r
                 {\r
                     DEBUG_PRINTF ("code detected, length = %d\n", irmp_bit);\r
                     irmp_ir_detected = TRUE;\r
@@ -1796,6 +2245,24 @@ irmp_ISR (void)
                     }\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
+                        DEBUG_PRINTF ("Detected GRUNDIG start frame, ignoring it\n");\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
+                        DEBUG_PRINTF ("Detected NOKIA start frame, ignoring it\n");\r
+                        irmp_ir_detected = FALSE;\r
+                    }\r
+                    else\r
+#endif // IRMP_SUPPORT_NOKIA_PROTOCOL\r
                     {\r
 #if IRMP_SUPPORT_NEC_PROTOCOL == 1\r
                         if (irmp_param.protocol == IRMP_NEC_PROTOCOL && irmp_bit == 0)  // repetition frame\r
@@ -1826,7 +2293,7 @@ irmp_ISR (void)
                 {\r
                     if (last_irmp_command == irmp_command &&\r
                         last_irmp_address == irmp_address &&\r
-                        repetition_counter < IRMP_REPETITION_TIME)\r
+                        repetition_counter < IRMP_KEY_REPETITION_LEN)\r
                     {\r
                         irmp_flags |= IRMP_FLAG_REPETITION;\r
                     }\r
@@ -1836,6 +2303,10 @@ irmp_ISR (void)
 \r
                     repetition_counter = 0;\r
                 }\r
+                else\r
+                {\r
+                    DEBUG_ONLY_NORMAL_PUTCHAR ('\n');\r
+                }\r
 \r
                 irmp_start_bit_detected = 0;                                        // and wait for next start bit\r
                 irmp_tmp_command        = 0;\r
@@ -1844,6 +2315,7 @@ irmp_ISR (void)
             }\r
         }\r
     }\r
+    return (irmp_ir_detected);\r
 }\r
 \r
 #ifdef DEBUG\r
@@ -1853,13 +2325,57 @@ irmp_ISR (void)
 // Compile it under linux with:\r
 // cc irmp.c -o irmp\r
 //\r
-// usage: ./irmp [-v|-s|-a] < file\r
+// usage: ./irmp [-v|-s|-a|-p] < file\r
+\r
+static void\r
+print_timings (void)\r
+{\r
+    printf ("PROTOCOL       START BIT NO.   START BIT PULSE     START BIT PAUSE\n");\r
+    printf ("====================================================================================\n");\r
+    printf ("SIRCS          1               %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
+    printf ("NEC            1               %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
+    printf ("NEC (rep)      1               %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
+    printf ("SAMSUNG        1               %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
+    printf ("MATSUSHITA     1               %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
+    printf ("KASEIKYO       1               %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
+    printf ("RECS80         1               %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
+    printf ("RC5            1               %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
+    printf ("DENON          1               %3d - %3d           %3d - %3d or %3d - %3d\n",\r
+            DENON_PULSE_LEN_MIN, DENON_PULSE_LEN_MAX, DENON_1_PAUSE_LEN_MIN, DENON_1_PAUSE_LEN_MAX, DENON_0_PAUSE_LEN_MIN, DENON_0_PAUSE_LEN_MAX);\r
+    printf ("RC6            1               %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
+    printf ("RECS80EXT      1               %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
+    printf ("NUBERT         1               %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
+    printf ("BANG_OLUFSEN   1               %3d - %3d           %3d - %3d\n",\r
+            BANG_OLUFSEN_START_BIT1_PULSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PULSE_LEN_MAX, BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT1_PAUSE_LEN_MAX);\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, BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT2_PAUSE_LEN_MAX);\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, BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT3_PAUSE_LEN_MAX);\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, BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MIN, BANG_OLUFSEN_START_BIT4_PAUSE_LEN_MAX);\r
+    printf ("GRUNDIG/NOKIA  1               %3d - %3d           %3d - %3d\n",\r
+            GRUNDIG_OR_NOKIA_START_BIT_LEN_MIN, GRUNDIG_OR_NOKIA_START_BIT_LEN_MAX, GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MIN, GRUNDIG_OR_NOKIA_PRE_PAUSE_LEN_MAX);\r
+    printf ("SIEMENS        1               %3d - %3d           %3d - %3d\n",\r
+            SIEMENS_START_BIT_LEN_MIN, SIEMENS_START_BIT_LEN_MAX, SIEMENS_START_BIT_LEN_MIN, SIEMENS_START_BIT_LEN_MAX);\r
+    printf ("FDC            1               %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
+}\r
 \r
 int\r
 main (int argc, char ** argv)\r
 {\r
     int         i;\r
-    int         verbose = FALSE;\r
     int         analyze = FALSE;\r
     int         ch;\r
     int         last_ch = 0;\r
@@ -1910,12 +2426,16 @@ main (int argc, char ** argv)
         else if (! strcmp (argv[1], "-a"))\r
         {\r
             analyze = TRUE;\r
-            verbose = 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
     }\r
 \r
     IRMP_PIN = 0xFF;\r
@@ -1926,7 +2446,7 @@ main (int argc, char ** argv)
         {\r
             if (last_ch != ch)\r
             {\r
-                if (verbose && pause > 0)\r
+                if (analyze && pause > 0)\r
                 {\r
                     printf ("pause: %d\n", pause);\r
 \r
@@ -1991,7 +2511,7 @@ main (int argc, char ** argv)
         {\r
             if (last_ch != ch)\r
             {\r
-                if (verbose)\r
+                if (analyze)\r
                 {\r
                     printf ("pulse: %d ", pulse);\r
 \r
@@ -2048,7 +2568,7 @@ main (int argc, char ** argv)
         {\r
             IRMP_PIN = 0xff;\r
 \r
-            if (verbose && pause > 0)\r
+            if (analyze && pause > 0)\r
             {\r
                 printf ("pause: %d\n", pause);\r
             }\r
@@ -2058,7 +2578,7 @@ main (int argc, char ** argv)
             {\r
                 for (i = 0; i < 8000; i++)                                              // newline: long pause of 800 msec\r
                 {\r
-                    irmp_ISR ();\r
+                    (void) irmp_ISR ();\r
                 }\r
             }\r
             first_pulse = TRUE;\r
@@ -2071,7 +2591,7 @@ main (int argc, char ** argv)
 \r
             while ((ch = getchar()) != '\n' && ch != EOF)\r
             {\r
-                if (ch != '\r')                                                     // ignore CR in DOS/Windows files\r
+                if (ch != '\r')                                                         // ignore CR in DOS/Windows files\r
                 {\r
                     putchar (ch);\r
                 }\r
@@ -2083,12 +2603,13 @@ main (int argc, char ** argv)
 \r
         if (! analyze)\r
         {\r
-            irmp_ISR ();\r
+            (void) irmp_ISR ();\r
         }\r
 \r
         if (irmp_get_data (&irmp_data))\r
         {\r
-            printf ("protcol = %d, address = 0x%04x, code = 0x%04x, flags = 0x%02x\n",\r
+            DEBUG_ONLY_NORMAL_PUTCHAR (' ');\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