
This is a cleanup step for having root-relative includes, include_dirs shouldn't be needed anymore. BUG=1662 R=phoglund@webrtc.org, tina.legrand@webrtc.org Review URL: https://webrtc-codereview.appspot.com/1984004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@4512 4adac7df-926f-26a2-2b94-8c16560cd09d
498 lines
13 KiB
C++
498 lines
13 KiB
C++
/*
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* Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "TestFEC.h"
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#include <assert.h>
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#include <iostream>
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#include "audio_coding_module_typedefs.h"
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#include "common_types.h"
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#include "engine_configurations.h"
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#include "trace.h"
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#include "utility.h"
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#include "webrtc/test/testsupport/fileutils.h"
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namespace webrtc {
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TestFEC::TestFEC(int testMode)
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: _acmA(NULL),
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_acmB(NULL),
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_channelA2B(NULL),
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_testCntr(0) {
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_testMode = testMode;
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}
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TestFEC::~TestFEC() {
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if (_acmA != NULL) {
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AudioCodingModule::Destroy(_acmA);
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_acmA = NULL;
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}
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if (_acmB != NULL) {
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AudioCodingModule::Destroy(_acmB);
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_acmB = NULL;
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}
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if (_channelA2B != NULL) {
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delete _channelA2B;
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_channelA2B = NULL;
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}
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}
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void TestFEC::Perform() {
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if (_testMode == 0) {
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printf("Running FEC Test");
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WEBRTC_TRACE(kTraceStateInfo, kTraceAudioCoding, -1,
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"---------- TestFEC ----------");
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}
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const std::string file_name = webrtc::test::ResourcePath(
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"audio_coding/testfile32kHz", "pcm");
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_inFileA.Open(file_name, 32000, "rb");
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bool fecEnabled;
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_acmA = AudioCodingModule::Create(0);
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_acmB = AudioCodingModule::Create(1);
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_acmA->InitializeReceiver();
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_acmB->InitializeReceiver();
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uint8_t numEncoders = _acmA->NumberOfCodecs();
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CodecInst myCodecParam;
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if (_testMode != 0) {
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printf("Registering codecs at receiver... \n");
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}
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for (uint8_t n = 0; n < numEncoders; n++) {
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_acmB->Codec(n, &myCodecParam);
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if (_testMode != 0) {
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printf("%s\n", myCodecParam.plname);
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}
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_acmB->RegisterReceiveCodec(myCodecParam);
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}
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// Create and connect the channel
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_channelA2B = new Channel;
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_acmA->RegisterTransportCallback(_channelA2B);
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_channelA2B->RegisterReceiverACM(_acmB);
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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#ifndef WEBRTC_CODEC_G722
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printf("G722 needs to be activated to run this test\n");
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exit(-1);
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#endif
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char nameG722[] = "G722";
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RegisterSendCodec('A', nameG722, 16000);
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char nameCN[] = "CN";
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RegisterSendCodec('A', nameCN, 16000);
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char nameRED[] = "RED";
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RegisterSendCodec('A', nameRED);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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char nameISAC[] = "iSAC";
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RegisterSendCodec('A', nameISAC, 16000);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADVeryAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameISAC, 32000);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADVeryAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameISAC, 32000);
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OpenOutFile(_testCntr);
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SetVAD(false, false, VADNormal);
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 16000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 32000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 16000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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_channelA2B->SetFECTestWithPacketLoss(true);
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameG722);
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RegisterSendCodec('A', nameCN, 16000);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameISAC, 16000);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADVeryAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameISAC, 32000);
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OpenOutFile(_testCntr);
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SetVAD(true, true, VADVeryAggr);
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_acmA->SetFECStatus(false);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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OpenOutFile(_testCntr);
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Run();
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_outFileB.Close();
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if (_testMode != 0) {
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printf("===============================================================\n");
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printf("%d ", _testCntr++);
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} else {
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printf(".");
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}
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RegisterSendCodec('A', nameISAC, 32000);
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OpenOutFile(_testCntr);
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SetVAD(false, false, VADNormal);
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_acmA->SetFECStatus(true);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 16000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 32000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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RegisterSendCodec('A', nameISAC, 16000);
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fecEnabled = _acmA->FECStatus();
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if (_testMode != 0) {
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printf("FEC currently %s\n", (fecEnabled ? "ON" : "OFF"));
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DisplaySendReceiveCodec();
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}
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Run();
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_outFileB.Close();
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if (_testMode == 0) {
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printf("Done!\n");
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}
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}
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int32_t TestFEC::SetVAD(bool enableDTX, bool enableVAD, ACMVADMode vadMode) {
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if (_testMode != 0) {
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printf("DTX %s; VAD %s; VAD-Mode %d\n", enableDTX ? "ON" : "OFF",
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enableVAD ? "ON" : "OFF", (int16_t) vadMode);
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}
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return _acmA->SetVAD(enableDTX, enableVAD, vadMode);
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}
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int16_t TestFEC::RegisterSendCodec(char side, char* codecName,
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int32_t samplingFreqHz) {
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if (_testMode != 0) {
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if (samplingFreqHz > 0) {
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printf("Registering %s-%d for side %c\n", codecName, samplingFreqHz,
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side);
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} else {
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printf("Registering %s for side %c\n", codecName, side);
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}
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}
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std::cout << std::flush;
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AudioCodingModule* myACM;
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switch (side) {
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case 'A': {
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myACM = _acmA;
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break;
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}
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case 'B': {
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myACM = _acmB;
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break;
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}
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default:
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return -1;
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}
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if (myACM == NULL) {
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assert(false);
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return -1;
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}
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CodecInst myCodecParam;
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CHECK_ERROR(
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AudioCodingModule::Codec(codecName, &myCodecParam, samplingFreqHz, 1));
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CHECK_ERROR(myACM->RegisterSendCodec(myCodecParam));
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// initialization was succesful
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return 0;
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}
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void TestFEC::Run() {
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AudioFrame audioFrame;
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uint16_t msecPassed = 0;
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uint32_t secPassed = 0;
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int32_t outFreqHzB = _outFileB.SamplingFrequency();
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while (!_inFileA.EndOfFile()) {
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_inFileA.Read10MsData(audioFrame);
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CHECK_ERROR(_acmA->Add10MsData(audioFrame));
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CHECK_ERROR(_acmA->Process());
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CHECK_ERROR(_acmB->PlayoutData10Ms(outFreqHzB, &audioFrame));
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_outFileB.Write10MsData(audioFrame.data_, audioFrame.samples_per_channel_);
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msecPassed += 10;
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if (msecPassed >= 1000) {
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msecPassed = 0;
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secPassed++;
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}
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if (((secPassed % 5) == 4) && (msecPassed == 0) && (_testCntr > 14)) {
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printf("%3u:%3u ", secPassed, msecPassed);
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_acmA->SetFECStatus(false);
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printf("FEC currently %s\n", (_acmA->FECStatus() ? "ON" : "OFF"));
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}
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if (((secPassed % 5) == 4) && (msecPassed >= 990) && (_testCntr > 14)) {
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printf("%3u:%3u ", secPassed, msecPassed);
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_acmA->SetFECStatus(true);
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printf("FEC currently %s\n", (_acmA->FECStatus() ? "ON" : "OFF"));
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}
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}
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_inFileA.Rewind();
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}
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void TestFEC::OpenOutFile(int16_t test_number) {
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std::string file_name;
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std::stringstream file_stream;
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file_stream << webrtc::test::OutputPath();
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if (_testMode == 0) {
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file_stream << "TestFEC_autoFile_";
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} else {
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file_stream << "TestFEC_outFile_";
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}
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file_stream << test_number << ".pcm";
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file_name = file_stream.str();
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_outFileB.Open(file_name, 16000, "wb");
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}
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void TestFEC::DisplaySendReceiveCodec() {
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CodecInst myCodecParam;
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_acmA->SendCodec(&myCodecParam);
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printf("%s -> ", myCodecParam.plname);
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_acmB->ReceiveCodec(&myCodecParam);
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printf("%s\n", myCodecParam.plname);
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}
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} // namespace webrtc
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