mirror of
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353 lines
12 KiB
C++
353 lines
12 KiB
C++
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/*
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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 "TwoWayCommunication.h"
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#include <ctype.h>
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#include <stdio.h>
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#include <string.h>
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#ifdef WIN32
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#include <Windows.h>
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#endif
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#include "gtest/gtest.h"
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#include "webrtc/engine_configurations.h"
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#include "webrtc/common_types.h"
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#include "webrtc/modules/audio_coding/main/test/PCMFile.h"
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#include "webrtc/modules/audio_coding/main/test/utility.h"
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#include "webrtc/system_wrappers/interface/trace.h"
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#include "webrtc/test/testsupport/fileutils.h"
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namespace webrtc {
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#define MAX_FILE_NAME_LENGTH_BYTE 500
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TwoWayCommunication::TwoWayCommunication(int testMode)
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: _acmA(AudioCodingModule::Create(1)),
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_acmB(AudioCodingModule::Create(2)),
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_acmRefA(AudioCodingModule::Create(3)),
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_acmRefB(AudioCodingModule::Create(4)),
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_testMode(testMode) {}
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TwoWayCommunication::~TwoWayCommunication() {
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delete _channel_A2B;
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delete _channel_B2A;
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delete _channelRef_A2B;
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delete _channelRef_B2A;
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#ifdef WEBRTC_DTMF_DETECTION
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if (_dtmfDetectorA != NULL) {
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delete _dtmfDetectorA;
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}
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if (_dtmfDetectorB != NULL) {
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delete _dtmfDetectorB;
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}
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#endif
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_inFileA.Close();
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_inFileB.Close();
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_outFileA.Close();
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_outFileB.Close();
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_outFileRefA.Close();
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_outFileRefB.Close();
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}
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void TwoWayCommunication::ChooseCodec(uint8_t* codecID_A,
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uint8_t* codecID_B) {
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scoped_ptr<AudioCodingModule> tmpACM(AudioCodingModule::Create(0));
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uint8_t noCodec = tmpACM->NumberOfCodecs();
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CodecInst codecInst;
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printf("List of Supported Codecs\n");
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printf("========================\n");
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for (uint8_t codecCntr = 0; codecCntr < noCodec; codecCntr++) {
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EXPECT_EQ(tmpACM->Codec(codecCntr, &codecInst), 0);
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printf("%d- %s\n", codecCntr, codecInst.plname);
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}
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printf("\nChoose a send codec for side A [0]: ");
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char myStr[15] = "";
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EXPECT_TRUE(fgets(myStr, 10, stdin) != NULL);
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*codecID_A = (uint8_t) atoi(myStr);
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printf("\nChoose a send codec for side B [0]: ");
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EXPECT_TRUE(fgets(myStr, 10, stdin) != NULL);
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*codecID_B = (uint8_t) atoi(myStr);
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printf("\n");
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}
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void TwoWayCommunication::SetUp() {
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uint8_t codecID_A;
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uint8_t codecID_B;
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ChooseCodec(&codecID_A, &codecID_B);
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CodecInst codecInst_A;
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CodecInst codecInst_B;
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CodecInst dummyCodec;
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EXPECT_EQ(0, _acmA->Codec(codecID_A, &codecInst_A));
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EXPECT_EQ(0, _acmB->Codec(codecID_B, &codecInst_B));
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EXPECT_EQ(0, _acmA->Codec(6, &dummyCodec));
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//--- Set A codecs
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EXPECT_EQ(0, _acmA->RegisterSendCodec(codecInst_A));
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EXPECT_EQ(0, _acmA->RegisterReceiveCodec(codecInst_B));
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#ifdef WEBRTC_DTMF_DETECTION
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_dtmfDetectorA = new(DTMFDetector);
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EXPECT_GT(_acmA->RegisterIncomingMessagesCallback(_dtmfDetectorA, ACMUSA),
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-1);
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#endif
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//--- Set ref-A codecs
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EXPECT_EQ(0, _acmRefA->RegisterSendCodec(codecInst_A));
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EXPECT_EQ(0, _acmRefA->RegisterReceiveCodec(codecInst_B));
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//--- Set B codecs
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EXPECT_EQ(0, _acmB->RegisterSendCodec(codecInst_B));
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EXPECT_EQ(0, _acmB->RegisterReceiveCodec(codecInst_A));
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#ifdef WEBRTC_DTMF_DETECTION
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_dtmfDetectorB = new(DTMFDetector);
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EXPECT_GT(_acmB->RegisterIncomingMessagesCallback(_dtmfDetectorB, ACMUSA),
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-1);
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#endif
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//--- Set ref-B codecs
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EXPECT_EQ(0, _acmRefB->RegisterSendCodec(codecInst_B));
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EXPECT_EQ(0, _acmRefB->RegisterReceiveCodec(codecInst_A));
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uint16_t frequencyHz;
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//--- Input A
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std::string in_file_name = webrtc::test::ResourcePath(
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"audio_coding/testfile32kHz", "pcm");
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frequencyHz = 32000;
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printf("Enter input file at side A [%s]: ", in_file_name.c_str());
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PCMFile::ChooseFile(&in_file_name, 499, &frequencyHz);
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_inFileA.Open(in_file_name, frequencyHz, "rb");
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//--- Output A
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std::string out_file_a = webrtc::test::OutputPath() + "outA.pcm";
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printf("Output file at side A: %s\n", out_file_a.c_str());
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printf("Sampling frequency (in Hz) of the above file: %u\n", frequencyHz);
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_outFileA.Open(out_file_a, frequencyHz, "wb");
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std::string ref_file_name = webrtc::test::OutputPath() + "ref_outA.pcm";
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_outFileRefA.Open(ref_file_name, frequencyHz, "wb");
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//--- Input B
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in_file_name = webrtc::test::ResourcePath("audio_coding/testfile32kHz",
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"pcm");
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frequencyHz = 32000;
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printf("\n\nEnter input file at side B [%s]: ", in_file_name.c_str());
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PCMFile::ChooseFile(&in_file_name, 499, &frequencyHz);
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_inFileB.Open(in_file_name, frequencyHz, "rb");
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//--- Output B
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std::string out_file_b = webrtc::test::OutputPath() + "outB.pcm";
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printf("Output file at side B: %s\n", out_file_b.c_str());
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printf("Sampling frequency (in Hz) of the above file: %u\n", frequencyHz);
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_outFileB.Open(out_file_b, frequencyHz, "wb");
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ref_file_name = webrtc::test::OutputPath() + "ref_outB.pcm";
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_outFileRefB.Open(ref_file_name, frequencyHz, "wb");
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//--- Set A-to-B channel
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_channel_A2B = new Channel;
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_acmA->RegisterTransportCallback(_channel_A2B);
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_channel_A2B->RegisterReceiverACM(_acmB.get());
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//--- Do the same for the reference
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_channelRef_A2B = new Channel;
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_acmRefA->RegisterTransportCallback(_channelRef_A2B);
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_channelRef_A2B->RegisterReceiverACM(_acmRefB.get());
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//--- Set B-to-A channel
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_channel_B2A = new Channel;
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_acmB->RegisterTransportCallback(_channel_B2A);
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_channel_B2A->RegisterReceiverACM(_acmA.get());
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//--- Do the same for reference
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_channelRef_B2A = new Channel;
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_acmRefB->RegisterTransportCallback(_channelRef_B2A);
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_channelRef_B2A->RegisterReceiverACM(_acmRefA.get());
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// The clicks will be more obvious when we
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// are in FAX mode.
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EXPECT_EQ(_acmB->SetPlayoutMode(fax), 0);
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EXPECT_EQ(_acmRefB->SetPlayoutMode(fax), 0);
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}
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void TwoWayCommunication::SetUpAutotest() {
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CodecInst codecInst_A;
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CodecInst codecInst_B;
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CodecInst dummyCodec;
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EXPECT_EQ(0, _acmA->Codec("ISAC", &codecInst_A, 16000, 1));
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EXPECT_EQ(0, _acmB->Codec("L16", &codecInst_B, 8000, 1));
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EXPECT_EQ(0, _acmA->Codec(6, &dummyCodec));
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//--- Set A codecs
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EXPECT_EQ(0, _acmA->RegisterSendCodec(codecInst_A));
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EXPECT_EQ(0, _acmA->RegisterReceiveCodec(codecInst_B));
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#ifdef WEBRTC_DTMF_DETECTION
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_dtmfDetectorA = new(DTMFDetector);
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EXPECT_EQ(0, _acmA->RegisterIncomingMessagesCallback(_dtmfDetectorA, ACMUSA));
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#endif
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//--- Set ref-A codecs
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EXPECT_GT(_acmRefA->RegisterSendCodec(codecInst_A), -1);
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EXPECT_GT(_acmRefA->RegisterReceiveCodec(codecInst_B), -1);
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//--- Set B codecs
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EXPECT_GT(_acmB->RegisterSendCodec(codecInst_B), -1);
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EXPECT_GT(_acmB->RegisterReceiveCodec(codecInst_A), -1);
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#ifdef WEBRTC_DTMF_DETECTION
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_dtmfDetectorB = new(DTMFDetector);
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EXPECT_EQ(0, _acmB->RegisterIncomingMessagesCallback(_dtmfDetectorB, ACMUSA));
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#endif
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//--- Set ref-B codecs
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EXPECT_EQ(0, _acmRefB->RegisterSendCodec(codecInst_B));
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EXPECT_EQ(0, _acmRefB->RegisterReceiveCodec(codecInst_A));
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uint16_t frequencyHz;
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//--- Input A and B
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std::string in_file_name = webrtc::test::ResourcePath(
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"audio_coding/testfile32kHz", "pcm");
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frequencyHz = 16000;
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_inFileA.Open(in_file_name, frequencyHz, "rb");
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_inFileB.Open(in_file_name, frequencyHz, "rb");
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//--- Output A
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std::string output_file_a = webrtc::test::OutputPath() + "outAutotestA.pcm";
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frequencyHz = 16000;
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_outFileA.Open(output_file_a, frequencyHz, "wb");
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std::string output_ref_file_a = webrtc::test::OutputPath()
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+ "ref_outAutotestA.pcm";
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_outFileRefA.Open(output_ref_file_a, frequencyHz, "wb");
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//--- Output B
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std::string output_file_b = webrtc::test::OutputPath() + "outAutotestB.pcm";
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frequencyHz = 16000;
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_outFileB.Open(output_file_b, frequencyHz, "wb");
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std::string output_ref_file_b = webrtc::test::OutputPath()
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+ "ref_outAutotestB.pcm";
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_outFileRefB.Open(output_ref_file_b, frequencyHz, "wb");
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//--- Set A-to-B channel
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_channel_A2B = new Channel;
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_acmA->RegisterTransportCallback(_channel_A2B);
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_channel_A2B->RegisterReceiverACM(_acmB.get());
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//--- Do the same for the reference
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_channelRef_A2B = new Channel;
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_acmRefA->RegisterTransportCallback(_channelRef_A2B);
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_channelRef_A2B->RegisterReceiverACM(_acmRefB.get());
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//--- Set B-to-A channel
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_channel_B2A = new Channel;
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_acmB->RegisterTransportCallback(_channel_B2A);
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_channel_B2A->RegisterReceiverACM(_acmA.get());
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//--- Do the same for reference
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_channelRef_B2A = new Channel;
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_acmRefB->RegisterTransportCallback(_channelRef_B2A);
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_channelRef_B2A->RegisterReceiverACM(_acmRefA.get());
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// The clicks will be more obvious when we
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// are in FAX mode.
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EXPECT_EQ(0, _acmB->SetPlayoutMode(fax));
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EXPECT_EQ(0, _acmRefB->SetPlayoutMode(fax));
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}
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void TwoWayCommunication::Perform() {
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if (_testMode == 0) {
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SetUpAutotest();
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} else {
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SetUp();
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}
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unsigned int msecPassed = 0;
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unsigned int secPassed = 0;
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int32_t outFreqHzA = _outFileA.SamplingFrequency();
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int32_t outFreqHzB = _outFileB.SamplingFrequency();
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AudioFrame audioFrame;
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CodecInst codecInst_B;
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CodecInst dummy;
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EXPECT_EQ(0, _acmB->SendCodec(&codecInst_B));
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// In the following loop we tests that the code can handle misuse of the APIs.
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// In the middle of a session with data flowing between two sides, called A
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// and B, APIs will be called, like ResetEncoder(), and the code should
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// continue to run, and be able to recover.
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bool expect_error_add = false;
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bool expect_error_process = false;
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while (!_inFileA.EndOfFile() && !_inFileB.EndOfFile()) {
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msecPassed += 10;
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EXPECT_GT(_inFileA.Read10MsData(audioFrame), 0);
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EXPECT_EQ(0, _acmA->Add10MsData(audioFrame));
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EXPECT_EQ(0, _acmRefA->Add10MsData(audioFrame));
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EXPECT_GT(_inFileB.Read10MsData(audioFrame), 0);
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// Expect call to pass except for the time when no send codec is registered.
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if (!expect_error_add) {
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EXPECT_EQ(0, _acmB->Add10MsData(audioFrame));
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} else {
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EXPECT_EQ(-1, _acmB->Add10MsData(audioFrame));
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}
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// Expect to pass except for the time when there either is no send codec
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// registered, or no receive codec.
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if (!expect_error_process) {
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EXPECT_GT(_acmB->Process(), -1);
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} else {
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EXPECT_EQ(_acmB->Process(), -1);
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}
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EXPECT_EQ(0, _acmRefB->Add10MsData(audioFrame));
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EXPECT_GT(_acmA->Process(), -1);
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EXPECT_GT(_acmRefA->Process(), -1);
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EXPECT_GT(_acmRefB->Process(), -1);
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EXPECT_EQ(0, _acmA->PlayoutData10Ms(outFreqHzA, &audioFrame));
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_outFileA.Write10MsData(audioFrame);
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EXPECT_EQ(0, _acmRefA->PlayoutData10Ms(outFreqHzA, &audioFrame));
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_outFileRefA.Write10MsData(audioFrame);
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EXPECT_EQ(0, _acmB->PlayoutData10Ms(outFreqHzB, &audioFrame));
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_outFileB.Write10MsData(audioFrame);
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EXPECT_EQ(0, _acmRefB->PlayoutData10Ms(outFreqHzB, &audioFrame));
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_outFileRefB.Write10MsData(audioFrame);
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// Update time counters each time a second of data has passed.
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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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// Call RestEncoder for ACM on side A, and InitializeSender for ACM on
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// side B.
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if (((secPassed % 5) == 4) && (msecPassed == 0)) {
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EXPECT_EQ(0, _acmA->ResetEncoder());
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EXPECT_EQ(0, _acmB->InitializeSender());
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expect_error_add = true;
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expect_error_process = true;
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}
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// Re-register send codec on side B.
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if (((secPassed % 5) == 4) && (msecPassed >= 990)) {
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EXPECT_EQ(0, _acmB->RegisterSendCodec(codecInst_B));
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EXPECT_EQ(0, _acmB->SendCodec(&dummy));
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expect_error_add = false;
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expect_error_process = false;
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}
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// Reset decoder on side B, and initialize receiver on side A.
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if (((secPassed % 7) == 6) && (msecPassed == 0)) {
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EXPECT_EQ(0, _acmB->ResetDecoder());
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EXPECT_EQ(0, _acmA->InitializeReceiver());
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}
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// Re-register codec on side A.
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if (((secPassed % 7) == 6) && (msecPassed >= 990)) {
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EXPECT_EQ(0, _acmA->RegisterReceiveCodec(codecInst_B));
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}
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}
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}
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} // namespace webrtc
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