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345 lines
9.2 KiB
345 lines
9.2 KiB
/*******************************************************************************
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* Copyright (C) 2018 Cadence Design Systems, Inc.
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to use this Software with Cadence processor cores only and
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* not with any other processors and platforms, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice shall be included
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* in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
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* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
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* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
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* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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******************************************************************************/
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#define MODULE_TAG UTEST
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#include "xaf-utils-test.h"
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#include "audio/xa_vorbis_dec_api.h"
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#include "audio/xa-audio-decoder-api.h"
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#include "xa_playback.h"
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#define PRINT_USAGE do { fprintf(stderr, "\nUsage: %s <input-file>\n", argv[0]); \
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fprintf(stderr, " Only .ogg and .pcm files are supported. \n"); \
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fprintf(stderr, " Playback is configured @ 48kHz, 2 ch, 16 bits pcm. \n"); \
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fprintf(stderr, " pcm output is written to dec-out.pcm, by default. \n\n"); \
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} while(0)
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#define NUM_COMP_IN_GRAPH 1
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void *p_input, *p_output;
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pthread_t dec_thread;
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FILE *fp, *ofp=NULL;
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xaf_info_t comp_info;
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void *pb_handle = NULL;
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unsigned int card = 0;
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unsigned int device = 0;
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unsigned int period_size = 1024;
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unsigned int period_count = 4;
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/* ...playback format */
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xaf_format_t pb_format;
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int g_pthread_exit_code=0x12345678;
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void thread_exit_handler(int sig)
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{
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/* ...unused arg */
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(void) sig;
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pthread_exit(0);
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}
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static int vorbis_setup(void *p_decoder)
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{
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int param[2];
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/* 1: Raw decode, 0: Ogg decode */
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param[0] = XA_VORBISDEC_CONFIG_PARAM_RAW_VORBIS_FILE_MODE;
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param[1] = 0;
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XF_CHK_API(xaf_comp_set_config(p_decoder, 1, ¶m[0]));
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return 0;
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}
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static int pcm_setup(void *p_pcm)
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{
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int param[6];
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param[0] = XA_CODEC_CONFIG_PARAM_SAMPLE_RATE;
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param[1] = pb_format.sample_rate;
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param[2] = XA_CODEC_CONFIG_PARAM_CHANNELS;
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param[3] = pb_format.channels;
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param[4] = XA_CODEC_CONFIG_PARAM_PCM_WIDTH;
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param[5] = pb_format.pcm_width;
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XF_CHK_API(xaf_comp_set_config(p_pcm, 3, ¶m[0]));
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return 0;
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}
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static int consume_output(void *p_buf, int buf_length, void *p_output)
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{
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XAF_CHK_PTR(p_buf);
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XAF_CHK_PTR(p_output);
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#if !defined BOARD
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FILE *fp = p_output;
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fwrite(p_buf, 1, buf_length, fp);
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if (xa_playback_buf(pb_handle, p_buf, buf_length)) {
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TRACE(ERROR, _b("Playback Failed \n"));
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return -1;
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}
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#else
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#endif
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return 0;
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}
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static int read_input(void *p_buf, int buf_length, int *read_length, void *p_input)
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{
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XAF_CHK_PTR(p_buf);
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XAF_CHK_PTR(read_length);
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XAF_CHK_PTR(p_input);
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#if !defined BOARD
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FILE *fp = p_input;
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*read_length = fread(p_buf, 1, buf_length, fp);
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#else
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#endif
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return 0;
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}
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static int comp_process_entry(void *arg)
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{
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void *p_comp;
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xaf_comp_status comp_status;
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int input_over, read_length;
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void *pg_pthread_exit_code = (void*)&g_pthread_exit_code;
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XAF_CHK_PTR(arg);
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XAF_CHK_PTR(p_input);
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XAF_CHK_PTR(p_output);
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p_comp = arg;
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input_over = 0;
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XF_CHK_API(xaf_comp_process(NULL, p_comp, NULL, 0, XAF_EXEC_FLAG));
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while (1)
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{
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XF_CHK_API(xaf_comp_get_status(NULL, p_comp, &comp_status, &comp_info));
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if (comp_status == XAF_EXEC_DONE) break;
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if (comp_status == XAF_NEED_INPUT && !input_over)
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{
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void *p_buf = (void *)comp_info.buf;
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int size = comp_info.length;
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XF_CHK_API(read_input(p_buf, size, &read_length, p_input));
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if (read_length)
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XF_CHK_API(xaf_comp_process(NULL, p_comp, (void *)comp_info.buf, read_length, XAF_INPUT_READY_FLAG));
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else
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{
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XF_CHK_API(xaf_comp_process(NULL, p_comp, NULL, 0, XAF_INPUT_OVER_FLAG));
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input_over = 1;
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}
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}
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if (comp_status == XAF_OUTPUT_READY)
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{
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void *p_buf = (void *)comp_info.buf;
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int size = comp_info.length;
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XF_CHK_API(consume_output(p_buf, size, p_output));
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XF_CHK_API(xaf_comp_process(NULL, p_comp, (void *)comp_info.buf, comp_info.length, XAF_NEED_OUTPUT_FLAG));
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}
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}
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pthread_exit(pg_pthread_exit_code);
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return 0;
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}
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int main(int argc, const char **argv)
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{
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void *p_adev = NULL;
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void *p_decoder;
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mem_obj_t* mem_handle;
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int num_comp = NUM_COMP_IN_GRAPH;
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xaf_comp_status dec_status;
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void *dec_inbuf[2];
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int buf_length = XAF_INBUF_SIZE;
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int read_length;
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int i;
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xf_id_t dec_id;
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int (*dec_setup)(void *p_comp);
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const char *ext;
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int pthread_error;
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void *pthread_exit_code;
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struct sigaction actions;
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memset(&actions, 0, sizeof(actions));
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sigemptyset(&actions.sa_mask);
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actions.sa_flags = 0;
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actions.sa_handler = thread_exit_handler;
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sigaction(SIGUSR1,&actions,NULL);
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/* ...initialize playback format */
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pb_format.sample_rate = 48000;
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pb_format.channels = 2;
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pb_format.pcm_width = 16;
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audio_frmwk_buf_size = 0; //unused
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audio_comp_buf_size = 0; //unused
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print_banner("\'Audio decoder(PCM/Ogg-Vorbis)\'");
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/* ...initialize tracing facility */
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TRACE_INIT("Xtensa Audio Framework - Sample Application");
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#if !defined BOARD
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/* ...check input arguments */
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if (argc != 2)
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{
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TRACE(ERROR, _b("Usage: ./xaf-test <input-file-.ogg/.pcm>\n"));
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PRINT_USAGE;
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return 0;
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}
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ext = strrchr(argv[1], '.');
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if (!ext)
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{
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PRINT_USAGE;
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return 0;
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}
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ext++;
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if (!strcmp(ext, "pcm")) {
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dec_id = "audio-decoder/pcm";
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dec_setup = pcm_setup;
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}
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else if (!strcmp(ext, "ogg")) {
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dec_id = "audio-decoder/vorbis";
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dec_setup = vorbis_setup;
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}
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else {
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TRACE(ERROR, _x("Unknown Decoder Extension '%s'"), ext);
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PRINT_USAGE;
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exit(-1);
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}
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/* ...open file */
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if ((fp = fopen(argv[1], "rb")) == NULL)
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{
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TRACE(ERROR, _x("Failed to open '%s': %d"), argv[1], errno);
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exit(-1);
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}
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if ((ofp = fopen("/data/dec-out.pcm", "wb")) == NULL)
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{
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TRACE(ERROR, _x("Failed to open '%s': %d"), "/data/dec-out.pcm", errno);
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exit(-1);
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}
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p_input = fp;
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p_output = ofp;
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#endif
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mem_handle = mem_init(); //initialize memory handler
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XF_CHK_API(xaf_adev_open(&p_adev, audio_frmwk_buf_size, audio_comp_buf_size, mem_malloc, mem_free));
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/* ...create decoder component */
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XF_CHK_API(xaf_comp_create(p_adev, &p_decoder, dec_id, 2, 1, &dec_inbuf[0], XAF_DECODER));
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XF_CHK_API(dec_setup(p_decoder));
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/* ...start decoder component */
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XF_CHK_API(xaf_comp_process(p_adev, p_decoder, NULL, 0, XAF_START_FLAG));
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/* ...feed input to decoder component */
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for (i=0; i<2; i++)
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{
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XF_CHK_API(read_input(dec_inbuf[i], buf_length, &read_length, p_input));
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if (read_length)
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XF_CHK_API(xaf_comp_process(p_adev, p_decoder, dec_inbuf[i], read_length, XAF_INPUT_READY_FLAG));
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else
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break;
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}
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/* ...initialization loop */
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while (1)
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{
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XF_CHK_API(xaf_comp_get_status(p_adev, p_decoder, &dec_status, &comp_info));
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if (dec_status == XAF_INIT_DONE || dec_status == XAF_EXEC_DONE)
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{
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pb_handle = xa_playback_open(card, device, pb_format.channels, pb_format.sample_rate,
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pb_format.pcm_width, period_size, period_count);
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if (!pb_handle) {
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TRACE(ERROR, _x("Playback open error\n"));
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return -1;
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}
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break;
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}
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if (dec_status == XAF_NEED_INPUT)
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{
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void *p_buf = (void *) comp_info.buf;
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int size = comp_info.length;
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XF_CHK_API(read_input(p_buf, size, &read_length, p_input));
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if (read_length)
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XF_CHK_API(xaf_comp_process(p_adev, p_decoder, p_buf, read_length, XAF_INPUT_READY_FLAG));
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else
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break;
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}
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}
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if (dec_status != XAF_INIT_DONE)
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{
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TRACE(ERROR, _x("Failed to init"));
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exit(-1);
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}
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pthread_create(&dec_thread, 0, (void *(*)(void *))&comp_process_entry, p_decoder);
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pthread_error = pthread_join(dec_thread, (void **) &pthread_exit_code);
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if(pthread_error)
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{
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TRACE(ERROR, _b("decode thread join error:%x\n"), pthread_error);
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}
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/* ...exec done, clean-up */
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XF_CHK_API(xaf_comp_delete(p_decoder));
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xa_playback_close(pb_handle);
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XF_CHK_API(xaf_adev_close(p_adev, 0 /*unused*/));
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if (fp) fclose(fp);
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if (ofp) fclose(ofp);
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mem_exit();
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XF_CHK_API(print_mem_mcps_info(mem_handle, num_comp));
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return 0;
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}
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