ir_transmit.c 3.0 KB

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  1. #include <string.h>
  2. #include "freertos/FreeRTOS.h"
  3. #include "freertos/task.h"
  4. #include "freertos/queue.h"
  5. #include "esp_log.h"
  6. #include "driver/rmt.h"
  7. #include "toshiba_ir.h"
  8. #include "config.h"
  9. // RMT values
  10. #define RMT_TX_CHANNEL RMT_CHANNEL_0
  11. #define RMT_TX_GPIO GPIO_NUM_26
  12. // channel clock period = 1 uS
  13. #define RMT_CLK_DIV 80
  14. // Variable that holds the IR protocol transmission. 1 start bit, 72 data bits and one stop bit
  15. rmt_item32_t toshiba_rmt[1 + 72 + 1 + 1];
  16. QueueHandle_t toshibaTxQueue = NULL;
  17. void toshibaTxTask(void *pvParameter)
  18. {
  19. ESP_LOGI("IR_TRANSMIT", "toshibaTxTask() starting.");
  20. uint8_t data[8];
  21. while( true ) {
  22. if( xQueueReceive( toshibaTxQueue, data, 100 ) == pdTRUE ) {
  23. ESP_LOGI("IR_TRANSMIT","Received a TX from MQTT");
  24. uint8_t irPair = 1;
  25. for(uint8_t b=0;b<kToshibaNumberOfBits;b++) {
  26. uint8_t byteNo = b / 8;
  27. uint8_t shiftBits = b % 8;
  28. uint8_t bit_data = (1u << (7-shiftBits)) & data[byteNo];
  29. uint32_t space = bit_data ? kToshibaAcOneSpace : kToshibaAcZeroSpace;
  30. toshiba_rmt[irPair].val = (kToshibaAcBitMark << 0) | (1 << 15) | (space << 16); // Header of IR Transmit
  31. irPair++;
  32. }
  33. ESP_ERROR_CHECK(rmt_write_items(RMT_TX_CHANNEL, &(toshiba_rmt[0]), 1+72+1, true));
  34. }
  35. }
  36. }
  37. void initIrTransmit() {
  38. const esp_err_t uninstRetVal = rmt_driver_uninstall(RMT_TX_CHANNEL);
  39. ESP_LOGI("IR_TRANSMIT","Uninst: %u", uninstRetVal);
  40. rmt_config_t rmt_tx;
  41. memset(&rmt_tx,0,sizeof(rmt_config_t));
  42. rmt_tx.rmt_mode = RMT_MODE_TX;
  43. rmt_tx.channel = RMT_TX_CHANNEL;
  44. rmt_tx.gpio_num = GPIO_IR_TX_DATA;
  45. rmt_tx.mem_block_num = 1;
  46. rmt_tx.clk_div = RMT_CLK_DIV;
  47. rmt_tx.tx_config.loop_en = false;
  48. rmt_tx.tx_config.carrier_duty_percent = 30;
  49. rmt_tx.tx_config.carrier_freq_hz = 38000;
  50. rmt_tx.tx_config.carrier_level = RMT_CARRIER_LEVEL_HIGH;
  51. rmt_tx.tx_config.carrier_en = true;
  52. rmt_tx.tx_config.idle_level = RMT_IDLE_LEVEL_LOW;
  53. rmt_tx.tx_config.idle_output_en = true;
  54. rmt_tx.flags = 0;
  55. ESP_LOGI("IR_TRANSMIT","Install driver....");
  56. ESP_ERROR_CHECK( rmt_config(&rmt_tx) );
  57. const esp_err_t retVal = rmt_driver_install(rmt_tx.channel, 0, 0);
  58. if( retVal != ESP_OK ) {
  59. ESP_LOGE("IR_TRANSMIT","Error on driver install %u",retVal);
  60. return;
  61. }
  62. //ESP_ERROR_CHECK( rmt_driver_install(rmt_tx.channel, 0, 0) );
  63. // Init the ir data field
  64. toshiba_rmt[0].val = (kToshibaAcHdrMark << 0) | (1 << 15) | (kToshibaAcHdrSpace << 16); // Header of IR Transmit
  65. toshiba_rmt[73].val = (kToshibaAcBitMark << 0) | (1 << 15) | (kToshibaAcZeroSpace << 16); // Header of IR Transmit
  66. toshiba_rmt[74].val = (1 << 16); // End marker
  67. // 0x47503FC
  68. // 0x1FE823A
  69. for(int i=1;i<73;i++) {
  70. toshiba_rmt[i].val = (kToshibaAcBitMark << 0) | (1 << 15) | (kToshibaAcZeroSpace << 16); // Header of IR Transmit
  71. }
  72. toshibaTxQueue = xQueueCreate( 5, kToshibaNumberOfBytes );
  73. xTaskCreatePinnedToCore(toshibaTxTask, "toshibaTxTask", 1024*10, NULL, 2, NULL,0);
  74. ESP_LOGI("IR_TRANSMIT","Init done.");
  75. }