119 lines
3.7 KiB
C
119 lines
3.7 KiB
C
#include "agc_process.h"
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#include "typesdef.h"
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#include "osal/string.h"
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#include "osal/task.h"
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#include "osal_file.h"
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#include "custom_mem.h"
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#ifndef MIN
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#define MIN(A, B) ((A) < (B) ? (A) : (B))
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#endif
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static void *agcInst = NULL;
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int agc_init(int16_t agcMode, uint32_t sampleRate)
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{
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agcInst = WebRtcAgc_Create();
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if (agcInst == NULL) return -1;
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int minLevel = 0;
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int maxLevel = 1024;
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WebRtcAgcConfig agcConfig;
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agcConfig.compressionGaindB = 50; // default 9 dB
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agcConfig.limiterEnable = 1; // default kAgcTrue (on)
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agcConfig.targetLevelDbfs = 12; // default 3 (-3 dBOv)
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int status = WebRtcAgc_Init(agcInst, minLevel, maxLevel, agcMode, sampleRate);
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if (status != 0) {
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printf("WebRtcAgc_Init fail\n");
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WebRtcAgc_Free(agcInst);
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return -1;
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}
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status = WebRtcAgc_set_config(agcInst, agcConfig);
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if (status != 0) {
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printf("WebRtcAgc_set_config fail\n");
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WebRtcAgc_Free(agcInst);
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return -1;
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}
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return 0;
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}
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int agc_process(int16_t *buffer, uint32_t sampleRate, size_t samplesCount) {
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if (!buffer) return -1;
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if (samplesCount == 0) return -1;
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size_t samples = MIN(160, sampleRate / 100);
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if (samples == 0) return -1;
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int16_t *input = buffer;
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size_t nTotal = (samplesCount / samples);
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size_t num_bands = 1;
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int inMicLevel, outMicLevel = -1;
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int16_t out_buffer[samples];
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int16_t *out16 = out_buffer;
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uint8_t saturationWarning = 1; //是否有溢出发生,增益放大以后的最大值超过了65536
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int16_t echo = 0; //增益放大是否考虑回声影响
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for (int i = 0; i < nTotal; i++) {
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inMicLevel = 0;
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int nAgcRet = WebRtcAgc_Process(agcInst, (const int16_t *const *) &input, num_bands, samples,
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(int16_t *const *) &out16, inMicLevel, &outMicLevel, echo,
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&saturationWarning);
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if (nAgcRet != 0) {
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os_printf("failed in WebRtcAgc_Process\n");
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WebRtcAgc_Free(agcInst);
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return -1;
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}
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os_memcpy(input, out_buffer, samples * sizeof(int16_t));
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input += samples;
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}
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const size_t remainedSamples = samplesCount - nTotal * samples;
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if (remainedSamples > 0) {
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if (nTotal > 0) {
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input = input - samples + remainedSamples;
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}
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inMicLevel = 0;
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int nAgcRet = WebRtcAgc_Process(agcInst, (const int16_t *const *) &input, num_bands, samples,
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(int16_t *const *) &out16, inMicLevel, &outMicLevel, echo,
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&saturationWarning);
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if (nAgcRet != 0) {
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os_printf("failed in WebRtcAgc_Process during filtering the last chunk\n");
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WebRtcAgc_Free(agcInst);
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return -1;
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}
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os_memcpy(&input[samples-remainedSamples], &out_buffer[samples-remainedSamples], remainedSamples * sizeof(int16_t));
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input += samples;
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}
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return 1;
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}
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//static int16 read_data[240];
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//void agc_test(void)
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//{
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// void *in_fp = osal_fopen("infile.pcm","rb");
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// void *out_fp = osal_fopen("outfile.pcm","wb");
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//
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// int read_len = -1;
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// while(1)
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// {
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// read_len = osal_fread(read_data, 2, 240, in_fp);
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// if(read_len < 480)
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// break;
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// agc_process(read_data, 8000, 240);
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// osal_fwrite(read_data, 2, 240, out_fp);
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// }
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// osal_fclose(in_fp);
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// osal_fclose(out_fp);
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// printf("\n*******agc test finish********\n");
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//}
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//struct os_task agc_test_task;
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//void agc_test_thread(void)
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//{
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// printf("\n**********agc_test_thread*************\n");
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// agc_init(kAgcModeAdaptiveDigital, 8000);
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// OS_TASK_INIT("agc_test",&agc_test_task,agc_test,0,OS_TASK_PRIORITY_NORMAL,2048);
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//}
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