no_audio_codec.cc 13 KB

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  1. #include "no_audio_codec.h"
  2. #include <esp_log.h>
  3. #include <cmath>
  4. #include <cstring>
  5. #define TAG "NoAudioCodec"
  6. NoAudioCodec::~NoAudioCodec() {
  7. if (rx_handle_ != nullptr) {
  8. ESP_ERROR_CHECK(i2s_channel_disable(rx_handle_));
  9. }
  10. if (tx_handle_ != nullptr) {
  11. ESP_ERROR_CHECK(i2s_channel_disable(tx_handle_));
  12. }
  13. }
  14. NoAudioCodecDuplex::NoAudioCodecDuplex(int input_sample_rate, int output_sample_rate, gpio_num_t bclk, gpio_num_t ws, gpio_num_t dout, gpio_num_t din) {
  15. duplex_ = true;
  16. input_sample_rate_ = input_sample_rate;
  17. output_sample_rate_ = output_sample_rate;
  18. i2s_chan_config_t chan_cfg = {
  19. .id = I2S_NUM_0,
  20. .role = I2S_ROLE_MASTER,
  21. .dma_desc_num = 6,
  22. .dma_frame_num = 240,
  23. .auto_clear_after_cb = true,
  24. .auto_clear_before_cb = false,
  25. .intr_priority = 0,
  26. };
  27. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, &tx_handle_, &rx_handle_));
  28. i2s_std_config_t std_cfg = {
  29. .clk_cfg = {
  30. .sample_rate_hz = (uint32_t)output_sample_rate_,
  31. .clk_src = I2S_CLK_SRC_DEFAULT,
  32. .mclk_multiple = I2S_MCLK_MULTIPLE_256,
  33. #ifdef I2S_HW_VERSION_2
  34. .ext_clk_freq_hz = 0,
  35. #endif
  36. },
  37. .slot_cfg = {
  38. .data_bit_width = I2S_DATA_BIT_WIDTH_32BIT,
  39. .slot_bit_width = I2S_SLOT_BIT_WIDTH_AUTO,
  40. .slot_mode = I2S_SLOT_MODE_MONO,
  41. .slot_mask = I2S_STD_SLOT_LEFT,
  42. .ws_width = I2S_DATA_BIT_WIDTH_32BIT,
  43. .ws_pol = false,
  44. .bit_shift = true,
  45. #ifdef I2S_HW_VERSION_2
  46. .left_align = true,
  47. .big_endian = false,
  48. .bit_order_lsb = false
  49. #endif
  50. },
  51. .gpio_cfg = {
  52. .mclk = I2S_GPIO_UNUSED,
  53. .bclk = bclk,
  54. .ws = ws,
  55. .dout = dout,
  56. .din = din,
  57. .invert_flags = {
  58. .mclk_inv = false,
  59. .bclk_inv = false,
  60. .ws_inv = false
  61. }
  62. }
  63. };
  64. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_handle_, &std_cfg));
  65. ESP_ERROR_CHECK(i2s_channel_init_std_mode(rx_handle_, &std_cfg));
  66. ESP_LOGI(TAG, "Duplex channels created");
  67. }
  68. ATK_NoAudioCodecDuplex::ATK_NoAudioCodecDuplex(int input_sample_rate, int output_sample_rate, gpio_num_t bclk, gpio_num_t ws, gpio_num_t dout, gpio_num_t din) {
  69. duplex_ = true;
  70. input_sample_rate_ = input_sample_rate;
  71. output_sample_rate_ = output_sample_rate;
  72. i2s_chan_config_t chan_cfg = {
  73. .id = I2S_NUM_0,
  74. .role = I2S_ROLE_MASTER,
  75. .dma_desc_num = 6,
  76. .dma_frame_num = 240,
  77. .auto_clear_after_cb = true,
  78. .auto_clear_before_cb = false,
  79. .intr_priority = 0,
  80. };
  81. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, &tx_handle_, &rx_handle_));
  82. i2s_std_config_t std_cfg = {
  83. .clk_cfg = {
  84. .sample_rate_hz = (uint32_t)output_sample_rate_,
  85. .clk_src = I2S_CLK_SRC_DEFAULT,
  86. .mclk_multiple = I2S_MCLK_MULTIPLE_256,
  87. #ifdef I2S_HW_VERSION_2
  88. .ext_clk_freq_hz = 0,
  89. #endif
  90. },
  91. .slot_cfg = {
  92. .data_bit_width = I2S_DATA_BIT_WIDTH_16BIT,
  93. .slot_bit_width = I2S_SLOT_BIT_WIDTH_AUTO,
  94. .slot_mode = I2S_SLOT_MODE_STEREO,
  95. .slot_mask = I2S_STD_SLOT_BOTH,
  96. .ws_width = I2S_DATA_BIT_WIDTH_16BIT,
  97. .ws_pol = false,
  98. .bit_shift = true,
  99. #ifdef I2S_HW_VERSION_2
  100. .left_align = true,
  101. .big_endian = false,
  102. .bit_order_lsb = false
  103. #endif
  104. },
  105. .gpio_cfg = {
  106. .mclk = I2S_GPIO_UNUSED,
  107. .bclk = bclk,
  108. .ws = ws,
  109. .dout = dout,
  110. .din = din,
  111. .invert_flags = {
  112. .mclk_inv = false,
  113. .bclk_inv = false,
  114. .ws_inv = false
  115. }
  116. }
  117. };
  118. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_handle_, &std_cfg));
  119. ESP_ERROR_CHECK(i2s_channel_init_std_mode(rx_handle_, &std_cfg));
  120. ESP_LOGI(TAG, "Duplex channels created");
  121. }
  122. NoAudioCodecSimplex::NoAudioCodecSimplex(int input_sample_rate, int output_sample_rate, gpio_num_t spk_bclk, gpio_num_t spk_ws, gpio_num_t spk_dout, gpio_num_t mic_sck, gpio_num_t mic_ws, gpio_num_t mic_din) {
  123. duplex_ = false;
  124. input_sample_rate_ = input_sample_rate;
  125. output_sample_rate_ = output_sample_rate;
  126. // Create a new channel for speaker
  127. i2s_chan_config_t chan_cfg = {
  128. .id = (i2s_port_t)0,
  129. .role = I2S_ROLE_MASTER,
  130. .dma_desc_num = 6,
  131. .dma_frame_num = 240,
  132. .auto_clear_after_cb = true,
  133. .auto_clear_before_cb = false,
  134. .intr_priority = 0,
  135. };
  136. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, &tx_handle_, nullptr));
  137. i2s_std_config_t std_cfg = {
  138. .clk_cfg = {
  139. .sample_rate_hz = (uint32_t)output_sample_rate_,
  140. .clk_src = I2S_CLK_SRC_DEFAULT,
  141. .mclk_multiple = I2S_MCLK_MULTIPLE_256,
  142. #ifdef I2S_HW_VERSION_2
  143. .ext_clk_freq_hz = 0,
  144. #endif
  145. },
  146. .slot_cfg = {
  147. .data_bit_width = I2S_DATA_BIT_WIDTH_32BIT,
  148. .slot_bit_width = I2S_SLOT_BIT_WIDTH_AUTO,
  149. .slot_mode = I2S_SLOT_MODE_MONO,
  150. .slot_mask = I2S_STD_SLOT_LEFT,
  151. .ws_width = I2S_DATA_BIT_WIDTH_32BIT,
  152. .ws_pol = false,
  153. .bit_shift = true,
  154. #ifdef I2S_HW_VERSION_2
  155. .left_align = true,
  156. .big_endian = false,
  157. .bit_order_lsb = false
  158. #endif
  159. },
  160. .gpio_cfg = {
  161. .mclk = I2S_GPIO_UNUSED,
  162. .bclk = spk_bclk,
  163. .ws = spk_ws,
  164. .dout = spk_dout,
  165. .din = I2S_GPIO_UNUSED,
  166. .invert_flags = {
  167. .mclk_inv = false,
  168. .bclk_inv = false,
  169. .ws_inv = false
  170. }
  171. }
  172. };
  173. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_handle_, &std_cfg));
  174. // Create a new channel for MIC
  175. chan_cfg.id = (i2s_port_t)1;
  176. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, nullptr, &rx_handle_));
  177. std_cfg.clk_cfg.sample_rate_hz = (uint32_t)input_sample_rate_;
  178. std_cfg.gpio_cfg.bclk = mic_sck;
  179. std_cfg.gpio_cfg.ws = mic_ws;
  180. std_cfg.gpio_cfg.dout = I2S_GPIO_UNUSED;
  181. std_cfg.gpio_cfg.din = mic_din;
  182. ESP_ERROR_CHECK(i2s_channel_init_std_mode(rx_handle_, &std_cfg));
  183. ESP_LOGI(TAG, "Simplex channels created");
  184. }
  185. NoAudioCodecSimplex::NoAudioCodecSimplex(int input_sample_rate, int output_sample_rate, gpio_num_t spk_bclk, gpio_num_t spk_ws, gpio_num_t spk_dout, i2s_std_slot_mask_t spk_slot_mask, gpio_num_t mic_sck, gpio_num_t mic_ws, gpio_num_t mic_din, i2s_std_slot_mask_t mic_slot_mask){
  186. duplex_ = false;
  187. input_sample_rate_ = input_sample_rate;
  188. output_sample_rate_ = output_sample_rate;
  189. // Create a new channel for speaker
  190. i2s_chan_config_t chan_cfg = {
  191. .id = (i2s_port_t)0,
  192. .role = I2S_ROLE_MASTER,
  193. .dma_desc_num = 6,
  194. .dma_frame_num = 240,
  195. .auto_clear_after_cb = true,
  196. .auto_clear_before_cb = false,
  197. .intr_priority = 0,
  198. };
  199. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, &tx_handle_, nullptr));
  200. i2s_std_config_t std_cfg = {
  201. .clk_cfg = {
  202. .sample_rate_hz = (uint32_t)output_sample_rate_,
  203. .clk_src = I2S_CLK_SRC_DEFAULT,
  204. .mclk_multiple = I2S_MCLK_MULTIPLE_256,
  205. #ifdef I2S_HW_VERSION_2
  206. .ext_clk_freq_hz = 0,
  207. #endif
  208. },
  209. .slot_cfg = {
  210. .data_bit_width = I2S_DATA_BIT_WIDTH_32BIT,
  211. .slot_bit_width = I2S_SLOT_BIT_WIDTH_AUTO,
  212. .slot_mode = I2S_SLOT_MODE_MONO,
  213. .slot_mask = spk_slot_mask,
  214. .ws_width = I2S_DATA_BIT_WIDTH_32BIT,
  215. .ws_pol = false,
  216. .bit_shift = true,
  217. #ifdef I2S_HW_VERSION_2
  218. .left_align = true,
  219. .big_endian = false,
  220. .bit_order_lsb = false
  221. #endif
  222. },
  223. .gpio_cfg = {
  224. .mclk = I2S_GPIO_UNUSED,
  225. .bclk = spk_bclk,
  226. .ws = spk_ws,
  227. .dout = spk_dout,
  228. .din = I2S_GPIO_UNUSED,
  229. .invert_flags = {
  230. .mclk_inv = false,
  231. .bclk_inv = false,
  232. .ws_inv = false
  233. }
  234. }
  235. };
  236. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_handle_, &std_cfg));
  237. // Create a new channel for MIC
  238. chan_cfg.id = (i2s_port_t)1;
  239. ESP_ERROR_CHECK(i2s_new_channel(&chan_cfg, nullptr, &rx_handle_));
  240. std_cfg.clk_cfg.sample_rate_hz = (uint32_t)input_sample_rate_;
  241. std_cfg.slot_cfg.slot_mask = mic_slot_mask;
  242. std_cfg.gpio_cfg.bclk = mic_sck;
  243. std_cfg.gpio_cfg.ws = mic_ws;
  244. std_cfg.gpio_cfg.dout = I2S_GPIO_UNUSED;
  245. std_cfg.gpio_cfg.din = mic_din;
  246. ESP_ERROR_CHECK(i2s_channel_init_std_mode(rx_handle_, &std_cfg));
  247. ESP_LOGI(TAG, "Simplex channels created");
  248. }
  249. NoAudioCodecSimplexPdm::NoAudioCodecSimplexPdm(int input_sample_rate, int output_sample_rate, gpio_num_t spk_bclk, gpio_num_t spk_ws, gpio_num_t spk_dout, gpio_num_t mic_sck, gpio_num_t mic_din) {
  250. duplex_ = false;
  251. input_sample_rate_ = input_sample_rate;
  252. output_sample_rate_ = output_sample_rate;
  253. // Create a new channel for speaker
  254. i2s_chan_config_t tx_chan_cfg = I2S_CHANNEL_DEFAULT_CONFIG((i2s_port_t)1, I2S_ROLE_MASTER);
  255. tx_chan_cfg.dma_desc_num = 6;
  256. tx_chan_cfg.dma_frame_num = 240;
  257. tx_chan_cfg.auto_clear_after_cb = true;
  258. tx_chan_cfg.auto_clear_before_cb = false;
  259. tx_chan_cfg.intr_priority = 0;
  260. ESP_ERROR_CHECK(i2s_new_channel(&tx_chan_cfg, &tx_handle_, NULL));
  261. i2s_std_config_t tx_std_cfg = {
  262. .clk_cfg = {
  263. .sample_rate_hz = (uint32_t)output_sample_rate_,
  264. .clk_src = I2S_CLK_SRC_DEFAULT,
  265. .mclk_multiple = I2S_MCLK_MULTIPLE_256,
  266. #ifdef I2S_HW_VERSION_2
  267. .ext_clk_freq_hz = 0,
  268. #endif
  269. },
  270. .slot_cfg = I2S_STD_MSB_SLOT_DEFAULT_CONFIG(I2S_DATA_BIT_WIDTH_32BIT, I2S_SLOT_MODE_MONO),
  271. .gpio_cfg = {
  272. .mclk = I2S_GPIO_UNUSED,
  273. .bclk = spk_bclk,
  274. .ws = spk_ws,
  275. .dout = spk_dout,
  276. .din = I2S_GPIO_UNUSED,
  277. .invert_flags = {
  278. .mclk_inv = false,
  279. .bclk_inv = false,
  280. .ws_inv = false,
  281. },
  282. },
  283. };
  284. ESP_ERROR_CHECK(i2s_channel_init_std_mode(tx_handle_, &tx_std_cfg));
  285. #if SOC_I2S_SUPPORTS_PDM_RX
  286. // Create a new channel for MIC in PDM mode
  287. i2s_chan_config_t rx_chan_cfg = I2S_CHANNEL_DEFAULT_CONFIG((i2s_port_t)0, I2S_ROLE_MASTER);
  288. ESP_ERROR_CHECK(i2s_new_channel(&rx_chan_cfg, NULL, &rx_handle_));
  289. i2s_pdm_rx_config_t pdm_rx_cfg = {
  290. .clk_cfg = I2S_PDM_RX_CLK_DEFAULT_CONFIG((uint32_t)input_sample_rate_),
  291. /* The data bit-width of PDM mode is fixed to 16 */
  292. .slot_cfg = I2S_PDM_RX_SLOT_DEFAULT_CONFIG(I2S_DATA_BIT_WIDTH_16BIT, I2S_SLOT_MODE_MONO),
  293. .gpio_cfg = {
  294. .clk = mic_sck,
  295. .din = mic_din,
  296. .invert_flags = {
  297. .clk_inv = false,
  298. },
  299. },
  300. };
  301. ESP_ERROR_CHECK(i2s_channel_init_pdm_rx_mode(rx_handle_, &pdm_rx_cfg));
  302. #else
  303. ESP_LOGE(TAG, "PDM is not supported");
  304. #endif
  305. ESP_LOGI(TAG, "Simplex channels created");
  306. }
  307. int NoAudioCodec::Write(const int16_t* data, int samples) {
  308. std::vector<int32_t> buffer(samples);
  309. // output_volume_: 0-100
  310. // volume_factor_: 0-65536
  311. int32_t volume_factor = pow(double(output_volume_) / 100.0, 2) * 65536;
  312. for (int i = 0; i < samples; i++) {
  313. int64_t temp = int64_t(data[i]) * volume_factor; // 使用 int64_t 进行乘法运算
  314. if (temp > INT32_MAX) {
  315. buffer[i] = INT32_MAX;
  316. } else if (temp < INT32_MIN) {
  317. buffer[i] = INT32_MIN;
  318. } else {
  319. buffer[i] = static_cast<int32_t>(temp);
  320. }
  321. }
  322. size_t bytes_written;
  323. ESP_ERROR_CHECK(i2s_channel_write(tx_handle_, buffer.data(), samples * sizeof(int32_t), &bytes_written, portMAX_DELAY));
  324. return bytes_written / sizeof(int32_t);
  325. }
  326. int NoAudioCodec::Read(int16_t* dest, int samples) {
  327. size_t bytes_read;
  328. std::vector<int32_t> bit32_buffer(samples);
  329. if (i2s_channel_read(rx_handle_, bit32_buffer.data(), samples * sizeof(int32_t), &bytes_read, portMAX_DELAY) != ESP_OK) {
  330. ESP_LOGE(TAG, "Read Failed!");
  331. return 0;
  332. }
  333. samples = bytes_read / sizeof(int32_t);
  334. for (int i = 0; i < samples; i++) {
  335. int32_t value = bit32_buffer[i] >> 12;
  336. dest[i] = (value > INT16_MAX) ? INT16_MAX : (value < -INT16_MAX) ? -INT16_MAX : (int16_t)value;
  337. }
  338. return samples;
  339. }
  340. int NoAudioCodecSimplexPdm::Read(int16_t* dest, int samples) {
  341. size_t bytes_read;
  342. // PDM 解调后的数据位宽为 16 位
  343. std::vector<int16_t> bit16_buffer(samples);
  344. if (i2s_channel_read(rx_handle_, bit16_buffer.data(), samples * sizeof(int16_t), &bytes_read, portMAX_DELAY) != ESP_OK) {
  345. ESP_LOGE(TAG, "Read Failed!");
  346. return 0;
  347. }
  348. // 计算实际读取的样本数
  349. samples = bytes_read / sizeof(int16_t);
  350. // 将 16 位数据直接复制到目标缓冲区
  351. memcpy(dest, bit16_buffer.data(), samples * sizeof(int16_t));
  352. return samples;
  353. }