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Followup to https://webrtc-review.googlesource.com/c/4821 Bug: webrtc:6424, webrtc:7811 Change-Id: I6a4d8b52937256832509ebd33123c7b004263d8f Reviewed-on: https://webrtc-review.googlesource.com/c/101181 Reviewed-by: Karl Wiberg <kwiberg@webrtc.org> Commit-Queue: Niels Moller <nisse@webrtc.org> Cr-Commit-Position: refs/heads/master@{#26199}
561 lines
15 KiB
C++
561 lines
15 KiB
C++
/*
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* Copyright 2004 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 <errno.h>
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#include <string.h>
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#include <algorithm>
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#include <string>
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#include "rtc_base/checks.h"
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#include "rtc_base/location.h"
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#include "rtc_base/messagequeue.h"
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#include "rtc_base/stream.h"
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#include "rtc_base/thread.h"
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#if defined(WEBRTC_WIN)
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#include <windows.h>
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#define fileno _fileno
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#include "rtc_base/stringutils.h"
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#endif
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namespace rtc {
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///////////////////////////////////////////////////////////////////////////////
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// StreamInterface
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///////////////////////////////////////////////////////////////////////////////
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StreamInterface::~StreamInterface() {}
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StreamResult StreamInterface::WriteAll(const void* data,
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size_t data_len,
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size_t* written,
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int* error) {
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StreamResult result = SR_SUCCESS;
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size_t total_written = 0, current_written;
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while (total_written < data_len) {
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result = Write(static_cast<const char*>(data) + total_written,
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data_len - total_written, ¤t_written, error);
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if (result != SR_SUCCESS)
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break;
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total_written += current_written;
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}
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if (written)
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*written = total_written;
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return result;
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}
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StreamResult StreamInterface::ReadAll(void* buffer,
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size_t buffer_len,
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size_t* read,
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int* error) {
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StreamResult result = SR_SUCCESS;
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size_t total_read = 0, current_read;
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while (total_read < buffer_len) {
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result = Read(static_cast<char*>(buffer) + total_read,
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buffer_len - total_read, ¤t_read, error);
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if (result != SR_SUCCESS)
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break;
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total_read += current_read;
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}
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if (read)
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*read = total_read;
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return result;
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}
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void StreamInterface::PostEvent(Thread* t, int events, int err) {
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t->Post(RTC_FROM_HERE, this, MSG_POST_EVENT,
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new StreamEventData(events, err));
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}
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void StreamInterface::PostEvent(int events, int err) {
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PostEvent(Thread::Current(), events, err);
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}
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bool StreamInterface::SetPosition(size_t position) {
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return false;
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}
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bool StreamInterface::GetPosition(size_t* position) const {
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return false;
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}
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bool StreamInterface::Flush() {
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return false;
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}
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bool StreamInterface::ReserveSize(size_t size) {
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return true;
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}
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StreamInterface::StreamInterface() {}
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void StreamInterface::OnMessage(Message* msg) {
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if (MSG_POST_EVENT == msg->message_id) {
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StreamEventData* pe = static_cast<StreamEventData*>(msg->pdata);
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SignalEvent(this, pe->events, pe->error);
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delete msg->pdata;
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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// StreamAdapterInterface
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///////////////////////////////////////////////////////////////////////////////
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StreamAdapterInterface::StreamAdapterInterface(StreamInterface* stream,
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bool owned)
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: stream_(stream), owned_(owned) {
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if (nullptr != stream_)
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stream_->SignalEvent.connect(this, &StreamAdapterInterface::OnEvent);
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}
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StreamState StreamAdapterInterface::GetState() const {
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return stream_->GetState();
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}
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StreamResult StreamAdapterInterface::Read(void* buffer,
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size_t buffer_len,
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size_t* read,
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int* error) {
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return stream_->Read(buffer, buffer_len, read, error);
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}
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StreamResult StreamAdapterInterface::Write(const void* data,
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size_t data_len,
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size_t* written,
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int* error) {
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return stream_->Write(data, data_len, written, error);
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}
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void StreamAdapterInterface::Close() {
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stream_->Close();
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}
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bool StreamAdapterInterface::SetPosition(size_t position) {
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return stream_->SetPosition(position);
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}
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bool StreamAdapterInterface::GetPosition(size_t* position) const {
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return stream_->GetPosition(position);
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}
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bool StreamAdapterInterface::ReserveSize(size_t size) {
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return stream_->ReserveSize(size);
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}
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bool StreamAdapterInterface::Flush() {
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return stream_->Flush();
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}
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void StreamAdapterInterface::Attach(StreamInterface* stream, bool owned) {
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if (nullptr != stream_)
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stream_->SignalEvent.disconnect(this);
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if (owned_)
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delete stream_;
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stream_ = stream;
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owned_ = owned;
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if (nullptr != stream_)
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stream_->SignalEvent.connect(this, &StreamAdapterInterface::OnEvent);
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}
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StreamInterface* StreamAdapterInterface::Detach() {
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if (nullptr != stream_)
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stream_->SignalEvent.disconnect(this);
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StreamInterface* stream = stream_;
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stream_ = nullptr;
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return stream;
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}
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StreamAdapterInterface::~StreamAdapterInterface() {
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if (owned_)
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delete stream_;
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}
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void StreamAdapterInterface::OnEvent(StreamInterface* stream,
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int events,
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int err) {
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SignalEvent(this, events, err);
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}
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///////////////////////////////////////////////////////////////////////////////
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// FileStream
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///////////////////////////////////////////////////////////////////////////////
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FileStream::FileStream() : file_(nullptr) {}
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FileStream::~FileStream() {
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FileStream::Close();
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}
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bool FileStream::Open(const std::string& filename,
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const char* mode,
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int* error) {
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Close();
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#if defined(WEBRTC_WIN)
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std::wstring wfilename;
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if (Utf8ToWindowsFilename(filename, &wfilename)) {
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file_ = _wfopen(wfilename.c_str(), ToUtf16(mode).c_str());
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} else {
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if (error) {
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*error = -1;
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return false;
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}
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}
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#else
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file_ = fopen(filename.c_str(), mode);
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#endif
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if (!file_ && error) {
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*error = errno;
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}
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return (file_ != nullptr);
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}
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bool FileStream::OpenShare(const std::string& filename,
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const char* mode,
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int shflag,
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int* error) {
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Close();
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#if defined(WEBRTC_WIN)
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std::wstring wfilename;
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if (Utf8ToWindowsFilename(filename, &wfilename)) {
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file_ = _wfsopen(wfilename.c_str(), ToUtf16(mode).c_str(), shflag);
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if (!file_ && error) {
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*error = errno;
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return false;
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}
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return file_ != nullptr;
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} else {
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if (error) {
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*error = -1;
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}
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return false;
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}
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#else
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return Open(filename, mode, error);
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#endif
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}
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bool FileStream::DisableBuffering() {
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if (!file_)
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return false;
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return (setvbuf(file_, nullptr, _IONBF, 0) == 0);
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}
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StreamState FileStream::GetState() const {
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return (file_ == nullptr) ? SS_CLOSED : SS_OPEN;
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}
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StreamResult FileStream::Read(void* buffer,
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size_t buffer_len,
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size_t* read,
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int* error) {
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if (!file_)
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return SR_EOS;
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size_t result = fread(buffer, 1, buffer_len, file_);
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if ((result == 0) && (buffer_len > 0)) {
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if (feof(file_))
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return SR_EOS;
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if (error)
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*error = errno;
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return SR_ERROR;
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}
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if (read)
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*read = result;
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return SR_SUCCESS;
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}
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StreamResult FileStream::Write(const void* data,
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size_t data_len,
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size_t* written,
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int* error) {
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if (!file_)
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return SR_EOS;
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size_t result = fwrite(data, 1, data_len, file_);
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if ((result == 0) && (data_len > 0)) {
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if (error)
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*error = errno;
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return SR_ERROR;
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}
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if (written)
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*written = result;
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return SR_SUCCESS;
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}
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void FileStream::Close() {
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if (file_) {
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DoClose();
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file_ = nullptr;
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}
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}
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bool FileStream::SetPosition(size_t position) {
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if (!file_)
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return false;
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return (fseek(file_, static_cast<int>(position), SEEK_SET) == 0);
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}
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bool FileStream::GetPosition(size_t* position) const {
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RTC_DCHECK(nullptr != position);
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if (!file_)
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return false;
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long result = ftell(file_);
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if (result < 0)
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return false;
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if (position)
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*position = result;
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return true;
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}
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bool FileStream::ReserveSize(size_t size) {
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// TODO: extend the file to the proper length
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return true;
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}
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bool FileStream::Flush() {
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if (file_) {
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return (0 == fflush(file_));
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}
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// try to flush empty file?
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RTC_NOTREACHED();
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return false;
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}
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void FileStream::DoClose() {
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fclose(file_);
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}
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///////////////////////////////////////////////////////////////////////////////
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// FifoBuffer
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///////////////////////////////////////////////////////////////////////////////
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FifoBuffer::FifoBuffer(size_t size)
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: state_(SS_OPEN),
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buffer_(new char[size]),
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buffer_length_(size),
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data_length_(0),
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read_position_(0),
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owner_(Thread::Current()) {
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// all events are done on the owner_ thread
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}
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FifoBuffer::FifoBuffer(size_t size, Thread* owner)
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: state_(SS_OPEN),
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buffer_(new char[size]),
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buffer_length_(size),
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data_length_(0),
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read_position_(0),
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owner_(owner) {
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// all events are done on the owner_ thread
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}
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FifoBuffer::~FifoBuffer() {}
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bool FifoBuffer::GetBuffered(size_t* size) const {
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CritScope cs(&crit_);
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*size = data_length_;
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return true;
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}
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bool FifoBuffer::SetCapacity(size_t size) {
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CritScope cs(&crit_);
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if (data_length_ > size) {
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return false;
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}
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if (size != buffer_length_) {
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char* buffer = new char[size];
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const size_t copy = data_length_;
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const size_t tail_copy = std::min(copy, buffer_length_ - read_position_);
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memcpy(buffer, &buffer_[read_position_], tail_copy);
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memcpy(buffer + tail_copy, &buffer_[0], copy - tail_copy);
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buffer_.reset(buffer);
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read_position_ = 0;
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buffer_length_ = size;
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}
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return true;
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}
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StreamResult FifoBuffer::ReadOffset(void* buffer,
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size_t bytes,
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size_t offset,
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size_t* bytes_read) {
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CritScope cs(&crit_);
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return ReadOffsetLocked(buffer, bytes, offset, bytes_read);
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}
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StreamResult FifoBuffer::WriteOffset(const void* buffer,
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size_t bytes,
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size_t offset,
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size_t* bytes_written) {
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CritScope cs(&crit_);
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return WriteOffsetLocked(buffer, bytes, offset, bytes_written);
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}
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StreamState FifoBuffer::GetState() const {
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CritScope cs(&crit_);
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return state_;
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}
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StreamResult FifoBuffer::Read(void* buffer,
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size_t bytes,
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size_t* bytes_read,
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int* error) {
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CritScope cs(&crit_);
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const bool was_writable = data_length_ < buffer_length_;
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size_t copy = 0;
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StreamResult result = ReadOffsetLocked(buffer, bytes, 0, ©);
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if (result == SR_SUCCESS) {
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// If read was successful then adjust the read position and number of
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// bytes buffered.
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read_position_ = (read_position_ + copy) % buffer_length_;
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data_length_ -= copy;
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if (bytes_read) {
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*bytes_read = copy;
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}
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// if we were full before, and now we're not, post an event
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if (!was_writable && copy > 0) {
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PostEvent(owner_, SE_WRITE, 0);
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}
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}
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return result;
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}
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StreamResult FifoBuffer::Write(const void* buffer,
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size_t bytes,
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size_t* bytes_written,
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int* error) {
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CritScope cs(&crit_);
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const bool was_readable = (data_length_ > 0);
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size_t copy = 0;
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StreamResult result = WriteOffsetLocked(buffer, bytes, 0, ©);
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if (result == SR_SUCCESS) {
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// If write was successful then adjust the number of readable bytes.
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data_length_ += copy;
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if (bytes_written) {
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*bytes_written = copy;
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}
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// if we didn't have any data to read before, and now we do, post an event
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if (!was_readable && copy > 0) {
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PostEvent(owner_, SE_READ, 0);
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}
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}
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return result;
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}
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void FifoBuffer::Close() {
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CritScope cs(&crit_);
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state_ = SS_CLOSED;
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}
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const void* FifoBuffer::GetReadData(size_t* size) {
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CritScope cs(&crit_);
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*size = (read_position_ + data_length_ <= buffer_length_)
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? data_length_
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: buffer_length_ - read_position_;
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return &buffer_[read_position_];
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}
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void FifoBuffer::ConsumeReadData(size_t size) {
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CritScope cs(&crit_);
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RTC_DCHECK(size <= data_length_);
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const bool was_writable = data_length_ < buffer_length_;
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read_position_ = (read_position_ + size) % buffer_length_;
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data_length_ -= size;
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if (!was_writable && size > 0) {
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PostEvent(owner_, SE_WRITE, 0);
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}
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}
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void* FifoBuffer::GetWriteBuffer(size_t* size) {
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CritScope cs(&crit_);
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if (state_ == SS_CLOSED) {
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return nullptr;
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}
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// if empty, reset the write position to the beginning, so we can get
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// the biggest possible block
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if (data_length_ == 0) {
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read_position_ = 0;
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}
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const size_t write_position =
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(read_position_ + data_length_) % buffer_length_;
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*size = (write_position > read_position_ || data_length_ == 0)
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? buffer_length_ - write_position
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: read_position_ - write_position;
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return &buffer_[write_position];
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}
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void FifoBuffer::ConsumeWriteBuffer(size_t size) {
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CritScope cs(&crit_);
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RTC_DCHECK(size <= buffer_length_ - data_length_);
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const bool was_readable = (data_length_ > 0);
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data_length_ += size;
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if (!was_readable && size > 0) {
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PostEvent(owner_, SE_READ, 0);
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}
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}
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bool FifoBuffer::GetWriteRemaining(size_t* size) const {
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CritScope cs(&crit_);
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*size = buffer_length_ - data_length_;
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return true;
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}
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StreamResult FifoBuffer::ReadOffsetLocked(void* buffer,
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size_t bytes,
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size_t offset,
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size_t* bytes_read) {
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if (offset >= data_length_) {
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return (state_ != SS_CLOSED) ? SR_BLOCK : SR_EOS;
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}
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const size_t available = data_length_ - offset;
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const size_t read_position = (read_position_ + offset) % buffer_length_;
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const size_t copy = std::min(bytes, available);
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const size_t tail_copy = std::min(copy, buffer_length_ - read_position);
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char* const p = static_cast<char*>(buffer);
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memcpy(p, &buffer_[read_position], tail_copy);
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memcpy(p + tail_copy, &buffer_[0], copy - tail_copy);
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if (bytes_read) {
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*bytes_read = copy;
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}
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return SR_SUCCESS;
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}
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StreamResult FifoBuffer::WriteOffsetLocked(const void* buffer,
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size_t bytes,
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size_t offset,
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size_t* bytes_written) {
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if (state_ == SS_CLOSED) {
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return SR_EOS;
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}
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if (data_length_ + offset >= buffer_length_) {
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return SR_BLOCK;
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}
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const size_t available = buffer_length_ - data_length_ - offset;
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const size_t write_position =
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(read_position_ + data_length_ + offset) % buffer_length_;
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const size_t copy = std::min(bytes, available);
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const size_t tail_copy = std::min(copy, buffer_length_ - write_position);
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const char* const p = static_cast<const char*>(buffer);
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memcpy(&buffer_[write_position], p, tail_copy);
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memcpy(&buffer_[0], p + tail_copy, copy - tail_copy);
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if (bytes_written) {
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*bytes_written = copy;
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}
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return SR_SUCCESS;
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}
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} // namespace rtc
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