Files
gk-sdk/sample/audio/aq_utils/aq_utils_test_speaker_vol.c

216 lines
6.3 KiB
C
Executable File

/*
* Copyright (c) XMEDIA. All rights reserved.
*/
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
#include <unistd.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <sys/ioctl.h>
#include <fcntl.h>
#include <pthread.h>
#include "xmedia_audio_common.h"
#include "xmedia_audio_ao.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"
#define SAMPLE_AUDIO_DBG printf
#define SLEEP_TIME 10000 /* 5ms */
#define INPUT_CMD_LENGTH 32
#define SEED_FRAME_TIME 10 /*10ms*/
#define ACQUIRE_FRAME_STATUS 1
#define SEND_FRAME_STATUS 0
#define DEFAULT_AO_FRAME_NUM 30
#define SAMPLE_GET_INPUTCMD(input_cmd) fgets((char *)(input_cmd), (sizeof(input_cmd) - 1), stdin)
static sample_ao_config g_ao_config = {0};
static xmedia_s32 gain = 0;
typedef struct {
xmedia_char *sample;
xmedia_char *dev_rate;
xmedia_char *dev_chn;
xmedia_char *gain;
xmedia_char *in_stream;
} input_arg;
typedef struct {
FILE *in_stream[2];
ao_dev dev;
ao_chn chn;
xmedia_u32 vqe;
xmedia_u32 frm_rate;
xmedia_u32 frm_chn;
xmedia_u32 dev_rate;
xmedia_u32 dev_chn;
xmedia_u32 frame_pcm_sample;
audio_dev_work_mode mode;
xmedia_u32 pcm_samples;
} sample_ctx;
static xmedia_s32 sample_ctx_init(const input_arg *arg, sample_ctx *ctx)
{
xmedia_u32 i;
ctx->dev = XMEDIA_AO_DEV_DAC0;
ctx->dev_rate = atoi(arg->dev_rate);
ctx->dev_chn = atoi(arg->dev_chn);
ctx->frm_rate = atoi(arg->dev_rate);
ctx->frm_chn = atoi(arg->dev_chn);
ctx->mode = AUDIO_DEV_WORK_MODE_QUEUE;
ctx->frame_pcm_sample = ctx->dev_rate / 100;
ctx->vqe = 0;
gain = atoi(arg->gain);
for(i = 0; i < 2; i++) {
ctx->in_stream[i] = fopen(arg->in_stream, "rb");
if (ctx->in_stream[i] == XMEDIA_NULL) {
SAMPLE_AUDIO_DBG("open file %s error!\n", arg->in_stream);
return XMEDIA_FAILURE;
}
}
return XMEDIA_SUCCESS;
}
static xmedia_s32 sample_ctx_deinit(sample_ctx *ctx)
{
xmedia_u32 i;
for(i = 0; i < 2; i++) {
if (ctx->in_stream[i] != XMEDIA_NULL) {
fclose(ctx->in_stream[i]);
ctx->in_stream[i] = XMEDIA_NULL;
}
}
return XMEDIA_SUCCESS;
}
static xmedia_s32 sample_ao_config_init(sample_ctx* ctx)
{
g_ao_config.dev = ctx->dev;
sample_comm_ao_get_default_attr(g_ao_config.dev, &g_ao_config.dev_attr);
g_ao_config.dev_attr.pcm_frame_max_num = 10;
g_ao_config.dev_attr.channels = ctx->dev_chn;
g_ao_config.dev_attr.sample_rate = ctx->dev_rate;
g_ao_config.dev_attr.pcm_samples_per_frame = ctx->frame_pcm_sample;
g_ao_config.dev_attr.pcm_frame_max_num = DEFAULT_AO_FRAME_NUM;
g_ao_config.dev_attr.mode = ctx->mode;
g_ao_config.frame_info.frm_rate = ctx->frm_rate;
g_ao_config.frame_info.frm_chn = ctx->frm_chn;
g_ao_config.frame_info.frm_bit = AUDIO_BIT_DEPTH_16;
g_ao_config.vqe_enable = ctx->vqe;
return XMEDIA_SUCCESS;
}
static xmedia_s32 sample_start_ao(sample_ctx* ctx)
{
xmedia_s32 ret;
ret = sample_ao_config_init(ctx);
CHECK_RET(ret, "sample_ao_config_init");
ret = sample_comm_ao_start(&g_ao_config);
CHECK_RET(ret, "sample_comm_ao_start");
sample_comm_ao_create_input_thread_from_file(&g_ao_config, ctx->in_stream);
return ret;
}
static xmedia_s32 sample_stop_ao()
{
xmedia_s32 ret;
sample_comm_ao_destroy_input_thread_from_file(&g_ao_config);
ret = sample_comm_ao_stop(&g_ao_config);
CHECK_RET(ret, "sample_comm_ao_stop");
return ret;
}
static xmedia_void usage(input_arg *arg)
{
SAMPLE_AUDIO_DBG("Usage:./aq_utils_test_speaker_vol [Samplerate] [Chn] [AoVol] [SpkFile]\n");
SAMPLE_AUDIO_DBG("Parameter comment as follows:\n");
SAMPLE_AUDIO_DBG(" [Samplerate]: Work Samplerate, 8000 or 16000\n");
SAMPLE_AUDIO_DBG(" [Chn]: channel, 1 or 2\n");
SAMPLE_AUDIO_DBG(" [AoVol]: ao vqe volume, range:[-81~18]\n");
SAMPLE_AUDIO_DBG(" [SpkFile]: file for speaker playback\n");
SAMPLE_AUDIO_DBG("Examples as follows:\n");
SAMPLE_AUDIO_DBG(" ./aq_utils_test_speaker_vol 16000 1 0 test_signal_spk_volumn_16k_1ch_16bit.pcm\n");
SAMPLE_AUDIO_DBG(" ./aq_utils_test_speaker_vol 8000 1 0 test_signal_spk_volumn_8k_1ch_16bit.pcm\n");
}
xmedia_s32 main(int argc, char* argv[])
{
xmedia_s32 ret;
sample_ctx ctx;
xmedia_s32 val = 0;
input_arg *arg = (input_arg *)argv;
xmedia_char input_cmd[INPUT_CMD_LENGTH];
if (argc != sizeof(input_arg) / sizeof(xmedia_char *)) {
usage(arg);
return -1;
}
memset(&ctx, 0, sizeof(sample_ctx));
ret = sample_ctx_init(arg, &ctx);
if (ret != XMEDIA_SUCCESS) {
SAMPLE_AUDIO_DBG("call sample_ctx_init failed(0x%x)\n", ret);
return ret;
}
sample_comm_audio_init();
ret = sample_start_ao(&ctx);
if (ret != XMEDIA_SUCCESS) {
SAMPLE_AUDIO_DBG("call sample_start_ao failed(0x%x)\n", ret);
goto START_AO_ERR;
}
ret = sample_comm_ao_set_volume(&g_ao_config, gain);
if (ret != XMEDIA_SUCCESS) {
SAMPLE_AUDIO_DBG("call sample_start_ao failed(0x%x)\n", ret);
goto SET_VOL_ERR;
}
while(1) {
SAMPLE_AUDIO_DBG("\nInput 'q' ENTER to exit\n");
SAMPLE_AUDIO_DBG("Input 'svXX' to set ao vqe volume to xx\n");
SAMPLE_AUDIO_DBG("Input 'gv' to get ao vqe volume\n");
fgets(input_cmd, (sizeof(input_cmd) - 1), stdin);
if (input_cmd[0] == 's' && input_cmd[1] == 'v' ) {
val = atoi(input_cmd + 2);
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] == '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;
}
}
SET_VOL_ERR:
sample_stop_ao();
START_AO_ERR:
sample_comm_audio_exit();
sample_ctx_deinit(&ctx);
SAMPLE_AUDIO_DBG("exit %s\n", arg->sample);
return ret;
}