/* * Copyright (c) XMEDIA. All rights reserved. */ #include #include #include #include #include #include #include #include #include //#include "sample_comm.h" #include "xmedia_audio_common.h" #include "xmedia_audio_ai.h" #include "xmedia_audio_vqe.h" #include "xmedia_audio_vqe_enhance_v1.h" #include "xmedia_audio_vqe_enhance_v2.h" #include "sample_comm_audio.h" #include "config_parameter/config_load_parameter.h" #define SAMPLE_AUDIO_DBG printf #define MAX_FILE_NAME_LEN 128 #define FRAME_TIME 10 //ms #define DEFAULT_AI_FRAME_NUM 50 typedef struct user_input_args { xmedia_char* sample; audio_sample_rate sample_rate; audio_sample_rate usr_sample_rate; audio_channel channels; xmedia_bool binder_mode; audio_sample_rate file_samplerate; char input_file_name[MAX_FILE_NAME_LEN]; char output_file_name[MAX_FILE_NAME_LEN]; FILE *input_fd[2]; FILE *output_fd[2]; } user_input_args; static user_input_args g_user_input_args; static sample_ai_config g_ai_config; static sample_ao_config g_ao_config; static xmedia_s32 g_codec_vol; static xmedia_s32 g_ao_vol; static xmedia_s32 sample_ai_config_init(xmedia_void) { g_ai_config.dev = XMEDIA_AI_DEV_ADC0; sample_comm_ai_get_default_attr(g_ai_config.dev, &g_ai_config.dev_attr); g_ai_config.dev_attr.channels = g_user_input_args.channels; g_ai_config.dev_attr.sample_rate = g_user_input_args.sample_rate; g_ai_config.dev_attr.pcm_samples_per_frame = g_user_input_args.sample_rate / 100; g_ai_config.dev_attr.pcm_frame_num = DEFAULT_AI_FRAME_NUM; g_ai_config.dev_attr.mode = AUDIO_DEV_WORK_MODE_QUEUE; g_ai_config.chn_attr.sample_rate = g_user_input_args.sample_rate; g_ai_config.chn_attr.interleaved = XMEDIA_TRUE; g_ai_config.source = AI_EC_SOURCE_AO_DAC0; g_ai_config.ec_chn_id = 0; g_ai_config.vqe_enable = XMEDIA_FALSE; return XMEDIA_SUCCESS; } static xmedia_s32 sample_ao_config_init(xmedia_void) { g_ao_config.dev = XMEDIA_AO_DEV_DAC0; sample_comm_ao_get_default_attr(g_ao_config.dev, &g_ao_config.dev_attr); g_ao_config.dev_attr.channels = g_user_input_args.channels; g_ao_config.dev_attr.sample_rate = g_user_input_args.sample_rate; g_ao_config.dev_attr.pcm_samples_per_frame = g_user_input_args.sample_rate / 100; g_ao_config.dev_attr.mode = AUDIO_DEV_WORK_MODE_QUEUE; g_ao_config.vqe_enable = XMEDIA_FALSE; g_ao_config.frame_info.frm_rate = g_user_input_args.sample_rate; g_ao_config.frame_info.frm_chn = g_user_input_args.channels; g_ao_config.frame_info.frm_bit = AUDIO_BIT_DEPTH_16; return XMEDIA_SUCCESS; } static xmedia_s32 sample_init_audio() { return sample_comm_audio_init(); } static xmedia_s32 sample_start_ai() { xmedia_s32 ret; ret = sample_ai_config_init(); CHECK_RET(ret, "sample_ai_config_init"); ret = sample_comm_ai_start(&g_ai_config); CHECK_RET(ret, "sample_comm_ai_start"); ret = sample_comm_ai_create_output_thread_to_file(&g_ai_config, g_user_input_args.output_fd); CHECK_RET(ret, "sample_comm_ai_create_output_thread_to_file"); return ret; } static xmedia_s32 sample_start_ao() { xmedia_s32 ret; ret = sample_ao_config_init(); CHECK_RET(ret, "sample_ao_config_init"); ret = sample_comm_ao_start(&g_ao_config); sample_comm_ao_create_input_thread_from_file(&g_ao_config, g_user_input_args.input_fd); return ret; } static xmedia_s32 sample_deinit_audio() { return sample_comm_audio_exit(); } static xmedia_s32 sample_stop_ai() { xmedia_s32 ret; ret = sample_comm_ai_destroy_output_thread_to_file(&g_ai_config); CHECK_RET(ret, "sample_comm_ai_destroy_data_thread"); ret = sample_comm_ai_stop(&g_ai_config); CHECK_RET(ret, "sample_comm_ai_stop"); return ret; } static xmedia_s32 sample_stop_ao() { xmedia_s32 ret; ret = sample_comm_ao_destroy_input_thread_from_file(&g_ao_config); CHECK_RET(ret, "sample_comm_ao_create_input_thread_from_file"); ret = sample_comm_ao_stop(&g_ao_config); CHECK_RET(ret, "sample_comm_ao_stop"); return ret; } static xmedia_s32 sample_audio_aiao(xmedia_void) { xmedia_s32 ret; ret = sample_init_audio(); if (ret != XMEDIA_SUCCESS) { goto ERR_INIT_AUDIO; } ret = sample_start_ao(); if (ret != XMEDIA_SUCCESS) { goto ERR_START_AO; } ret = sample_comm_ao_set_volume(&g_ao_config, g_ao_vol); if (ret != XMEDIA_SUCCESS) { goto ERR_START_AO; } ret = sample_start_ai(); if (ret != XMEDIA_SUCCESS) { goto ERR_START_AI; } ret = sample_comm_ai_set_dev_param(&g_ai_config, AI_PARAM_SET_CODEC_ADC_GAIN, (xmedia_void*)&g_codec_vol); if (ret != XMEDIA_SUCCESS) { goto ERR_SET_GAIN; } while(1) { int val; xmedia_char input_cmd[32]; SAMPLE_AUDIO_DBG("\nInput 'q' ENTER to exit\n"); SAMPLE_AUDIO_DBG("Input 'sivXX' to set input vol to xx dB\n"); SAMPLE_AUDIO_DBG("Input 'giv' to get input vol\n"); SAMPLE_AUDIO_DBG("Input 'sovXX' to set ao vqe vol to xx\n"); SAMPLE_AUDIO_DBG("Input 'gov' to get ao vqe vol to xx\n"); fgets(input_cmd, (sizeof(input_cmd) - 1), stdin); if (input_cmd[0] == 's' && input_cmd[1] == 'i' && input_cmd[2] == 'v') { val = atoi(input_cmd + 3); ret = sample_comm_ai_set_dev_param(&g_ai_config, AI_PARAM_SET_CODEC_ADC_GAIN, (xmedia_void*)&val); SAMPLE_AUDIO_DBG("\nSet codec input volume %d return 0x%x\n", val, ret); } else if (input_cmd[0] == 'g' && input_cmd[1] == 'i' && input_cmd[2] == 'v') { ret = sample_comm_ai_set_dev_param(&g_ai_config, AI_PARAM_GET_CODEC_ADC_GAIN, (xmedia_void*)&val); SAMPLE_AUDIO_DBG("\nGet codec input volume(%d) return 0x%x\n", val, ret); } else if (input_cmd[0] == 's' && input_cmd[1] == 'o' && input_cmd[2] == 'v') { val = atoi(input_cmd + 3); ret = sample_comm_ao_set_volume(&g_ao_config, val); SAMPLE_AUDIO_DBG("\nSet ao vqe volume %d return 0x%x\n", val, ret); } else if (input_cmd[0] == 'g' && input_cmd[1] == 'o' && input_cmd[2] == 'v') { ret = sample_comm_ao_get_volume(&g_ao_config, &val); SAMPLE_AUDIO_DBG("\nGet ao vqe volume(%d) return 0x%x\n", val, ret); } else if (input_cmd[0] == 'q') { SAMPLE_AUDIO_DBG("Ready to exit\n"); break; } } ERR_SET_GAIN: sample_stop_ai(); ERR_START_AI: sample_stop_ao(); ERR_START_AO: ERR_INIT_AUDIO: sample_deinit_audio(); return ret; } static xmedia_void user_args_usage(user_input_args* args) { SAMPLE_AUDIO_DBG("Usage:./aq_utils_test_aiao [Samplerate] [Channel] [CodecInputVol] [AoVol] [MicFile] [SpkFile]\n"); SAMPLE_AUDIO_DBG("Parameter comment as follows:\n"); SAMPLE_AUDIO_DBG(" [Samplerate]: Work Samplerate, 8000 or 16000 \n"); SAMPLE_AUDIO_DBG(" [Channel]: dev chn, 1 or 2 \n"); SAMPLE_AUDIO_DBG(" [CodecInputVol]: audiocodec mic input volume, range:[-95~48] \n"); SAMPLE_AUDIO_DBG(" [AoVol]: ao vqe volume, range:[-81~18] \n"); SAMPLE_AUDIO_DBG(" [MicFile]: file for saving mic data\n"); SAMPLE_AUDIO_DBG(" [SpkFile]: file for speaker playback\n"); SAMPLE_AUDIO_DBG("Examples as follows:\n"); SAMPLE_AUDIO_DBG(" ./aq_utils_test_aiao 16000 1 20 0 /tmp/mic.pcm /tmp/test_signal_loopback_16k_1ch_16bit.pcm\n"); SAMPLE_AUDIO_DBG(" ./aq_utils_test_aiao 8000 2 20 0 /tmp/mic.pcm /tmp/test_signal_loopback_8k_1ch_16bit.pcm\n"); } static xmedia_s32 user_args_init(int argc, char* argv[], user_input_args* user_in_args) { user_in_args->sample = argv[0]; if ((argc >= 2) && (strcmp(argv[1], "-h")) == 0) { user_args_usage(user_in_args); return XMEDIA_FAILURE; } if (argc != 7) { SAMPLE_AUDIO_DBG("Invalid argc:%d\n", argc); user_args_usage(user_in_args); return XMEDIA_FAILURE; } user_in_args->sample_rate = atoi(argv[1]); user_in_args->channels = atoi(argv[2]); g_codec_vol = atoi(argv[3]); g_ao_vol = atoi(argv[4]); user_in_args->binder_mode = XMEDIA_TRUE; memcpy(user_in_args->output_file_name, argv[5], strlen(argv[5])); if (strcmp(user_in_args->output_file_name, "null")) { user_in_args->output_fd[0] = fopen(user_in_args->output_file_name, "w+"); if (user_in_args->output_fd[0] == NULL) { SAMPLE_AUDIO_DBG("Open %s failed\n", user_in_args->output_file_name); return XMEDIA_FAILURE; } } memcpy(user_in_args->input_file_name, argv[6], strlen(argv[6])); if (strcmp(user_in_args->input_file_name, "null")) { user_in_args->input_fd[0] = fopen(user_in_args->input_file_name, "rb"); if (user_in_args->input_fd[0] == NULL) { SAMPLE_AUDIO_DBG("Open %s failed\n", user_in_args->input_file_name); fclose(user_in_args->output_fd[0]); return XMEDIA_FAILURE; } } if (user_in_args->output_fd[0] != NULL) { SAMPLE_AUDIO_DBG(" mic0_file_name:%s\n", user_in_args->output_file_name); } return XMEDIA_SUCCESS; } static xmedia_void user_args_deinit(user_input_args* user_in_args) { if (user_in_args->output_fd[1] != NULL) { fclose(user_in_args->output_fd[1]); user_in_args->output_fd[1] = NULL; } if (user_in_args->output_fd[0] != NULL) { fclose(user_in_args->output_fd[0]); user_in_args->output_fd[0] = NULL; } if (user_in_args->input_fd[1] != NULL) { fclose(user_in_args->input_fd[1]); user_in_args->input_fd[1] = NULL; } if (user_in_args->input_fd[0] != NULL) { fclose(user_in_args->input_fd[0]); user_in_args->input_fd[0] = NULL; } } xmedia_s32 main(int argc, char* argv[]) { xmedia_s32 ret; ret = user_args_init(argc, argv, &g_user_input_args); if (ret != XMEDIA_SUCCESS) { SAMPLE_AUDIO_DBG("user_args_init failed(0x%x)\n\n", ret); return ret; } SAMPLE_AUDIO_DBG("user_args_init ok\n"); ret = sample_audio_aiao(); if (ret != XMEDIA_SUCCESS) { SAMPLE_AUDIO_DBG("sample_auido_ai failed(0x%x)\n", ret); } user_args_deinit(&g_user_input_args); SAMPLE_AUDIO_DBG("exit %s\n", g_user_input_args.sample); return ret; }