16 Commits

Author SHA1 Message Date
Rafi Khan
4cdac5fcc8 Revert "Added ESP32 IR receive support (IRsend not implemented yet)." 2017-04-05 10:27:46 -06:00
Rafi Khan
e0c2649b9f Merge pull request #425 from marcmerlin/master
Added ESP32 IR receive support (IRsend not implemented yet).
2017-04-01 12:55:05 -06:00
Marc MERLIN
419c948c29 Fixed rev to 2.3.3 and added info on timer used. 2017-04-01 08:32:37 -07:00
Marc MERLIN
9133814e60 Rev'ed to 2.2.4. 2017-03-31 23:10:07 -07:00
Marc MERLIN
3875097df9 Merge branch 'master' of github.com:marcmerlin/Arduino-IRremote 2017-03-31 22:33:16 -07:00
Marc MERLIN
88b294a0cd change no-op defines from '1' to ''. 2017-03-31 22:32:48 -07:00
Marc MERLIN
ffdb6081ae Merge branch 'master' into master 2017-03-31 22:04:36 -07:00
Marc MERLIN
6b8f2bdbfc move comment about 'or else' chips that use TIMER2. 2017-03-31 22:01:31 -07:00
Marc MERLIN
eae9de4307 Cleaned up ESP32 integration, reverted ESP32 ifdefs on irreceive examples.
- fixed indenting on existing code in a few places for consistency
- introduced IR_TIMER_USE_ESP32 for ifdefs within the code as per
  request
- added comments explaining what's missing for irsend support on ESP32
- IRrecvDemo.ino gets a warning before and after interrupt is enabled in
  case it causes a crash

TESTED=IoTuz ESP32 board and original 328p arduino to make sure current
code did not break.
2017-03-31 21:52:52 -07:00
Rafi Khan
513e104515 Merge pull request #427 from philipphenkel/lego_pf_integer_overflow_2
Fix calculation of pause length in LEGO PF protocol
2017-03-27 16:25:19 -06:00
Philipp Henkel
ccc9d0135c Add Lego fix to change and bump version up to 2.2.3 2017-03-27 19:57:25 +02:00
Philipp Henkel
257a15130f Fix calculation of pause length in LEGO PF protocol
Fix #384 Integer overflow in LEGO Power Functions affects pause between
messages
Is rebased version of PR #385
2017-03-26 22:32:55 +02:00
Marc MERLIN
1b56da6cc7 Rename ESP32 timer name so that it doesn't conflict with other timers. 2017-03-19 21:28:14 -07:00
Marc MERLIN
aa8f7b31fe Added ESP32 IR receive support (IRsend not implemented yet).
- disable a lot of defines not relevant to ESP32, set them to 1 (no-op)
- change default IR pin to 35 from 11
- changed serial speed to 115200 (9600 is too slow to keep up with IR input)
- irSend disables code that will not compile on ESP32. It won't work,
  but it won't break compilation either.
2017-03-19 20:27:56 -07:00
Rafi Khan
048efb23a2 Merge pull request #414 from z3t0/z3t0-patch-1
Update ISSUE_TEMPLATE.md
2017-02-06 22:26:51 -06:00
Rafi Khan
4f24b696cf Update ISSUE_TEMPLATE.md 2017-02-03 21:18:47 -06:00
13 changed files with 54 additions and 221 deletions

View File

@@ -15,9 +15,8 @@ These are the active contributors of this project that you may contact if there
- [csBlueChip](https://github.com/csbluechip) : Active contributor, who contributed major and vital changes to the code base.
- [Sebazzz](https://github.com/sebazz): Contributor
- [lumbric](https://github.com/lumbric): Contributor
- [ElectricRCAircraftGuy](https://github.com/electricrcaircraftguy): Contributor
- [henkel](https://github.com/henkel): Contributor
- [ElectricRCAircraftGuy](https://github.com/electricrcaircraftguy): Active Contributor
- [philipphenkel](https://github.com/philipphenkel): Active Contributor
- [MCUdude](https://github.com/MCUdude): Contributor
- [salocinx](https://github.com/salocinx): Contributor
Note: This list is being updated constantly so please let [z3t0](https://github.com/z3t0) know if you have been missed.

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@@ -79,9 +79,6 @@
#define DECODE_LEGO_PF 0 // NOT WRITTEN
#define SEND_LEGO_PF 1
#define DECODE_CDTV 1
#define SEND_CDTV 1
//------------------------------------------------------------------------------
// When sending a Pronto code we request to send either the "once" code
// or the "repeat" code
@@ -122,7 +119,6 @@ typedef
DENON,
PRONTO,
LEGO_PF,
CDTV,
}
decode_type_t;
@@ -251,13 +247,9 @@ class IRrecv
# if DECODE_DENON
bool decodeDenon (decode_results *results) ;
# endif
//......................................................................
//......................................................................
# if DECODE_LEGO_PF
bool decodeLegoPowerFunctions (decode_results *results) ;
# endif
//......................................................................
# if DECODE_CDTV
bool decodeCDTV (decode_results *results) ;
# endif
} ;
@@ -343,13 +335,9 @@ class IRsend
# if SEND_PRONTO
void sendPronto (char* code, bool repeat, bool fallback) ;
# endif
//......................................................................
//......................................................................
# if SEND_LEGO_PF
void sendLegoPowerFunctions (uint16_t data, bool repeat = true) ;
# endif
//......................................................................
# if SEND_CDTV
void sendCDTV (unsigned long data, int nbits) ;
# endif
} ;

View File

@@ -108,6 +108,6 @@ EXTERN volatile irparams_t irparams;
#define SPACE 1
// All board specific stuff has been moved to its own file, included here.
#include "IRremoteBoardDefs.h"
#include "boarddefs.h"
#endif

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@@ -14,8 +14,12 @@
Use [a gist](gist.github.com) if the code exceeds 30 lines
**checklist:**
- [] I have **read** the README.md file thoroughly
- [] I have searched existing issues to see if there is anything I have missed.
- [] The latest [release](https://github.com/z3t0/Arduino-IRremote/releases/latest) is used
- [] Any code referenced is provided
- [] Any code referenced is provided and if over 30 lines a gist is linked INSTEAD of it being pasted in here
- [] The title of the issue is helpful and relevant
** We will start to close issues that do not follow these guidelines as it doesn't help the contributors who spend time trying to solve issues if the community ignores guidelines!**
The above is a short template allowing you to make detailed issues!

View File

@@ -8,7 +8,7 @@ This library enables you to send and receive using infra-red signals on an Ardui
Tutorials and more information will be made available on [the official homepage](http://z3t0.github.io/Arduino-IRremote/).
## Version - 2.2.1
## Version - 2.2.3
## Installation
1. Navigate to the [Releases](https://github.com/z3t0/Arduino-IRremote/releases) page.

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@@ -17,8 +17,8 @@
// Whynter A/C ARC-110WD added by Francesco Meschia
//******************************************************************************
#ifndef IRremoteBoardDefs_h
#define IRremoteBoardDefs_h
#ifndef boarddefs_h
#define boarddefs_h
//------------------------------------------------------------------------------
// Defines for blinking the LED
@@ -545,4 +545,4 @@
# error "Internal code configuration error, no known IR_USE_TIMER# defined\n"
#endif
#endif // ! IRremoteBoardDefs_h
#endif // ! boarddefs_h

View File

@@ -1,8 +1,7 @@
## 2.3.0 - 2017/02/06
- Added Commodore Amiga CDTV Support [ISSUE #407](https://github.com/z3t0/Arduino-IRremote/issues/407) [PR #413](https://github.com/z3t0/Arduino-IRremote/pull/413)
## 2.2.3 - 2017/03/27
- Fix calculation of pause length in LEGO PF protocol [PR #427](https://github.com/z3t0/Arduino-IRremote/pull/427)
## 2.2.2 - 2017/01/20
- Renamed "boarddefs.h" [ISSUE #375](https://github.com/z3t0/Arduino-IRremote/issues/375)
- Fixed naming bug [PR #398](https://github.com/z3t0/Arduino-IRremote/pull/398)
## 2.2.1 - 2016/07/27

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@@ -1,6 +1,6 @@
/*
* LegoPowerFunctionsTest: LEGO Power Functions Tests
* Copyright (c) 2016 Philipp Henkel
* Copyright (c) 2016, 2017 Philipp Henkel
*/
#include <ir_Lego_PF_BitStreamEncoder.h>
@@ -78,14 +78,14 @@ void testMessageBitCount(LegoPfBitStreamEncoder& bitStreamEncoder) {
logTestResult(bitCount == 18);
}
boolean check(LegoPfBitStreamEncoder& bitStreamEncoder, int markDuration, int pauseDuration) {
boolean check(LegoPfBitStreamEncoder& bitStreamEncoder, unsigned long markDuration, unsigned long pauseDuration) {
bool result = true;
result = result && bitStreamEncoder.getMarkDuration() == markDuration;
result = result && bitStreamEncoder.getPauseDuration() == pauseDuration;
return result;
}
boolean checkNext(LegoPfBitStreamEncoder& bitStreamEncoder, int markDuration, int pauseDuration) {
boolean checkNext(LegoPfBitStreamEncoder& bitStreamEncoder, unsigned long markDuration, unsigned long pauseDuration) {
bool result = bitStreamEncoder.next();
result = result && check(bitStreamEncoder, markDuration, pauseDuration);
return result;
@@ -129,16 +129,16 @@ void testMessage407Repeated(LegoPfBitStreamEncoder& bitStreamEncoder) {
bool result = true;
result = result && check(bitStreamEncoder, 158, 1026);
result = result && checkDataBitsOfMessage407(bitStreamEncoder);
result = result && checkNext(bitStreamEncoder, 158, 1026 + 5 * 16000 - 10844);
result = result && checkNext(bitStreamEncoder, 158, 1026L + 5L * 16000L - 10844L);
result = result && checkNext(bitStreamEncoder, 158, 1026);
result = result && checkDataBitsOfMessage407(bitStreamEncoder);
result = result && checkNext(bitStreamEncoder, 158, 1026 + 5 * 16000 - 10844);
result = result && checkNext(bitStreamEncoder, 158, 1026L + 5L * 16000L - 10844L);
result = result && checkNext(bitStreamEncoder, 158, 1026);
result = result && checkDataBitsOfMessage407(bitStreamEncoder);
result = result && checkNext(bitStreamEncoder, 158, 1026 + 8 * 16000 - 10844);
result = result && checkNext(bitStreamEncoder, 158, 1026L + 8L * 16000L - 10844L);
result = result && checkNext(bitStreamEncoder, 158, 1026);
result = result && checkDataBitsOfMessage407(bitStreamEncoder);
result = result && checkNext(bitStreamEncoder, 158, 1026 + 8 * 16000 - 10844);
result = result && checkNext(bitStreamEncoder, 158, 1026L + 8L * 16000L - 10844L);
result = result && checkNext(bitStreamEncoder, 158, 1026);
result = result && checkDataBitsOfMessage407(bitStreamEncoder);
result = result && checkNext(bitStreamEncoder, 158, 1026);
@@ -191,7 +191,3 @@ void testGetMessageLengthAllLow(LegoPfBitStreamEncoder& bitStreamEncoder) {
bitStreamEncoder.reset(0x0, false);
logTestResult(bitStreamEncoder.getMessageLength() == 9104);
}

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@@ -85,11 +85,6 @@ int IRrecv::decode (decode_results *results)
if (decodeLegoPowerFunctions(results)) return true ;
#endif
#if DECODE_CDTV
DBG_PRINTLN("Attempting Commodore Amiga CDTV decode");
if (decodeCDTV(results)) return true;
#endif
// decodeHash returns a hash on any input.
// Thus, it needs to be last in the list.
// If you add any decodes, add them before this.

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@@ -1,148 +0,0 @@
#include "IRremote.h"
#include "IRremoteInt.h"
//==============================================================================
// COMMODORE AMIGA CD-TV
//==============================================================================
//==============================================================================
// CCCC DDDD TTTTT V V
// C D D T V V
// C D D T V V
// C D D T V V
// CCCC DDDD T V
//==============================================================================
//==============================================================================
// MEASUREMENTS
//==============================================================================
/*Encoding: UNKNOWN
Code : 72A03D6B(32 bits)
Timing[51] :
+8900, -4450 + 400, -1200 + 350, -400 + 400, -400
+ 400, -400 + 400, -1200 + 400, -400 + 350, -450
+ 350, -400 + 400, -400 + 400, -350 + 450, -400
+ 350, -450 + 350, -400 + 400, -1200 + 400, -1200
+ 350, -1200 + 400, -450 + 350, -1200 + 400, -1200
+ 350, -1200 + 400, -1200 + 350, -1250 + 350, -1200
+ 400, -1200 + 350
unsigned int rawData[51] = { 8900,4450, 400,1200, 350,400, 400,400, 400,400, 400,1200, 400,400, 350,450, 350,400, 400,400, 400,350, 450,400, 350,450, 350,400, 400,1200, 400,1200, 350,1200, 400,450, 350,1200, 400,1200, 350,1200, 400,1200, 350,1250, 350,1200, 400,1200, 350 }; // UNKNOWN 72A03D6B
*/
// NOTE: The array dump above begins at index = 1; therefore offset = 1 in the code below
//==============================================================================
#define CDTV_BITS 24
// timing intervals in usec
#define CDTV_HDR_MARK 8850 // start burst
#define CDTV_HDR_SPACE 4450 // pause after start
#define CDTV_BIT_MARK 350 // pulse
#define CDTV_ONE_SPACE 1250 // receive a '1'
#define CDTV_ZERO_SPACE 450 // receive a '0'
#define CDTV_RPT_SPACE 2250 // repeat signal
// message sizes measured in raw pulses
#define CDTV_RAW_REPEAT_LENGTH 4 // CDTV_HDR_MARK + CDTV_HDR_SPACE + CDTV_BIT_MARK
#define CDTV_RAW_SIGNAL_LENGTH 52 // CDTV_HDR_MARK + CDTV_HDR_SPACE + CDTV_BITS * (CDTV_BIT_MARK + CDTV_ZERO_SPACE | CDTV_ONE_SPACE)
//+=============================================================================
#if SEND_CDTV
void IRsend::sendCDTV(unsigned long data, int nbits) {
// set IR carrier frequency
enableIROut(40);
// send header
mark(CDTV_HDR_MARK);
space(CDTV_HDR_SPACE);
// send data
for (unsigned long mask = 1UL << (nbits - 1); mask; mask >>= 1) {
if (data & mask) {
mark(CDTV_BIT_MARK);
space(CDTV_ONE_SPACE);
} else {
mark(CDTV_BIT_MARK);
space(CDTV_ZERO_SPACE);
}
}
// send footer
mark(CDTV_BIT_MARK);
// always end with the LED off
space(0);
}
#endif
//+=============================================================================
// CDTV have a repeat signal that is 4-bits long [#FFFFFF]
//
#if DECODE_CDTV
bool IRrecv::decodeCDTV(decode_results *results) {
unsigned long data = 0; // we decode into this field; start with empty placeholder
int offset = 1; // skip first entry since it has not a lot of meaning
// check if header mark is within range
if (!MATCH_MARK(results->rawbuf[offset], CDTV_HDR_MARK)) {
return false;
}
offset++; // -> offset[2]
// check for 4-bit repeat signal
if ((irparams.rawlen == CDTV_RAW_REPEAT_LENGTH)
&& MATCH_SPACE(results->rawbuf[offset], CDTV_RPT_SPACE)
&& MATCH_MARK(results->rawbuf[offset+1], CDTV_BIT_MARK)) {
results->bits = 4;
results->value = 0xFFFFFF;
results->decode_type = CDTV;
return true;
}
// check on minimal raw length for decoding the 24-bit signal correctly
if (irparams.rawlen < CDTV_RAW_SIGNAL_LENGTH) {
return false;
}
// check header space
if (!MATCH_SPACE(results->rawbuf[offset], CDTV_HDR_SPACE)) {
return false;
}
offset++; // -> offset[3]
// build the data
for (int i = 0; i < CDTV_BITS; i++) {
// check if data mark is available; otherwise break
if (!MATCH_MARK(results->rawbuf[offset], CDTV_BIT_MARK)) {
return false;
}
offset++; // -> offset[4->28]
// append this bit
if (MATCH_SPACE(results->rawbuf[offset], CDTV_ONE_SPACE)) {
data = (data << 1) | 1;
} else if (MATCH_SPACE(results->rawbuf[offset], CDTV_ZERO_SPACE)) {
data = (data << 1) | 0;
} else {
return false;
}
offset++;
}
// validate checksum by comparing lower 12-bits with inverted higher 12-bits
unsigned long lo = data & 0xFFF; // extract lower 12-bit
unsigned long hi = data >> 12; // extract higher 12-bit
// success if (low XOR high == 0xFFF)
if (lo^hi == 0xFFF) {
results->bits = CDTV_BITS;
results->value = data;
results->decode_type = CDTV;
return true;
}
return false;
}
#endif

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@@ -4,7 +4,7 @@
// L E E O O
// L EEEE E EEE O O
// L E E E O O LEGO Power Functions
// LLLLLL EEEEEE EEEE OOOO Copyright (c) 2016 Philipp Henkel
// LLLLLL EEEEEE EEEE OOOO Copyright (c) 2016, 2017 Philipp Henkel
//==============================================================================
//+=============================================================================
@@ -14,25 +14,25 @@ class LegoPfBitStreamEncoder {
private:
uint16_t data;
bool repeatMessage;
int messageBitIdx;
int repeatCount;
int messageLength;
// HIGH data bit = IR mark + high pause
// LOW data bit = IR mark + low pause
static const int LOW_BIT_DURATION = 421;
static const int HIGH_BIT_DURATION = 711;
static const int START_BIT_DURATION = 1184;
static const int STOP_BIT_DURATION = 1184;
static const int IR_MARK_DURATION = 158;
static const int HIGH_PAUSE_DURATION = HIGH_BIT_DURATION - IR_MARK_DURATION;
static const int LOW_PAUSE_DURATION = LOW_BIT_DURATION - IR_MARK_DURATION;
static const int START_PAUSE_DURATION = START_BIT_DURATION - IR_MARK_DURATION;
static const int STOP_PAUSE_DURATION = STOP_BIT_DURATION - IR_MARK_DURATION;
static const int MESSAGE_BITS = 18;
static const int MAX_MESSAGE_LENGTH = 16000;
uint8_t messageBitIdx;
uint8_t repeatCount;
uint16_t messageLength;
public:
// HIGH data bit = IR mark + high pause
// LOW data bit = IR mark + low pause
static const uint16_t LOW_BIT_DURATION = 421;
static const uint16_t HIGH_BIT_DURATION = 711;
static const uint16_t START_BIT_DURATION = 1184;
static const uint16_t STOP_BIT_DURATION = 1184;
static const uint8_t IR_MARK_DURATION = 158;
static const uint16_t HIGH_PAUSE_DURATION = HIGH_BIT_DURATION - IR_MARK_DURATION;
static const uint16_t LOW_PAUSE_DURATION = LOW_BIT_DURATION - IR_MARK_DURATION;
static const uint16_t START_PAUSE_DURATION = START_BIT_DURATION - IR_MARK_DURATION;
static const uint16_t STOP_PAUSE_DURATION = STOP_BIT_DURATION - IR_MARK_DURATION;
static const uint8_t MESSAGE_BITS = 18;
static const uint16_t MAX_MESSAGE_LENGTH = 16000;
void reset(uint16_t data, bool repeatMessage) {
this->data = data;
this->repeatMessage = repeatMessage;
@@ -43,9 +43,9 @@ class LegoPfBitStreamEncoder {
int getChannelId() const { return 1 + ((data >> 12) & 0x3); }
int getMessageLength() const {
uint16_t getMessageLength() const {
// Sum up all marks
int length = MESSAGE_BITS * IR_MARK_DURATION;
uint16_t length = MESSAGE_BITS * IR_MARK_DURATION;
// Sum up all pauses
length += START_PAUSE_DURATION;
@@ -75,9 +75,9 @@ class LegoPfBitStreamEncoder {
}
}
int getMarkDuration() const { return IR_MARK_DURATION; }
uint8_t getMarkDuration() const { return IR_MARK_DURATION; }
int getPauseDuration() const {
uint32_t getPauseDuration() const {
if (messageBitIdx == 0)
return START_PAUSE_DURATION;
else if (messageBitIdx < MESSAGE_BITS - 1) {
@@ -88,13 +88,13 @@ class LegoPfBitStreamEncoder {
}
private:
int getDataBitPause() const {
uint16_t getDataBitPause() const {
const int pos = MESSAGE_BITS - 2 - messageBitIdx;
const bool isHigh = data & (1 << pos);
return isHigh ? HIGH_PAUSE_DURATION : LOW_PAUSE_DURATION;
}
int getStopPause() const {
uint32_t getStopPause() const {
if (repeatMessage) {
return getRepeatStopPause();
} else {
@@ -102,12 +102,12 @@ class LegoPfBitStreamEncoder {
}
}
int getRepeatStopPause() const {
uint32_t getRepeatStopPause() const {
if (repeatCount == 0 || repeatCount == 1) {
return STOP_PAUSE_DURATION + 5 * MAX_MESSAGE_LENGTH - messageLength;
return STOP_PAUSE_DURATION + (uint32_t)5 * MAX_MESSAGE_LENGTH - messageLength;
} else if (repeatCount == 2 || repeatCount == 3) {
return STOP_PAUSE_DURATION
+ (6 + 2 * getChannelId()) * MAX_MESSAGE_LENGTH - messageLength;
+ (uint32_t)(6 + 2 * getChannelId()) * MAX_MESSAGE_LENGTH - messageLength;
} else {
return STOP_PAUSE_DURATION;
}

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@@ -7,7 +7,7 @@
"type": "git",
"url": "https://github.com/z3t0/Arduino-IRremote.git"
},
"version": "2.2.1",
"version": "2.2.3",
"frameworks": "arduino",
"platforms": "atmelavr",
"authors" :

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@@ -1,5 +1,5 @@
name=IRremote
version=2.2.1
version=2.2.3
author=shirriff
maintainer=shirriff
sentence=Send and receive infrared signals with multiple protocols