mirror of
https://github.com/klzgrad/naiveproxy.git
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308 lines
9.4 KiB
C++
308 lines
9.4 KiB
C++
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// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/disk_cache/blockfile/file.h"
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#include <limits.h>
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#include <stdint.h>
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#include <limits>
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#include <utility>
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#include "base/bind.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/macros.h"
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#include "base/task_scheduler/post_task.h"
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#include "net/base/net_errors.h"
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#include "net/disk_cache/blockfile/in_flight_io.h"
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#include "net/disk_cache/disk_cache.h"
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namespace {
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// This class represents a single asynchronous IO operation while it is being
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// bounced between threads.
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class FileBackgroundIO : public disk_cache::BackgroundIO {
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public:
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// Other than the actual parameters for the IO operation (including the
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// |callback| that must be notified at the end), we need the controller that
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// is keeping track of all operations. When done, we notify the controller
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// (we do NOT invoke the callback), in the worker thead that completed the
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// operation.
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FileBackgroundIO(disk_cache::File* file, const void* buf, size_t buf_len,
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size_t offset, disk_cache::FileIOCallback* callback,
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disk_cache::InFlightIO* controller)
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: disk_cache::BackgroundIO(controller), callback_(callback), file_(file),
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buf_(buf), buf_len_(buf_len), offset_(offset) {
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}
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disk_cache::FileIOCallback* callback() {
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return callback_;
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}
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disk_cache::File* file() {
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return file_;
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}
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// Read and Write are the operations that can be performed asynchronously.
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// The actual parameters for the operation are setup in the constructor of
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// the object. Both methods should be called from a worker thread, by posting
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// a task to the WorkerPool (they are RunnableMethods). When finished,
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// controller->OnIOComplete() is called.
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void Read();
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void Write();
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private:
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~FileBackgroundIO() override {}
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disk_cache::FileIOCallback* callback_;
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disk_cache::File* file_;
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const void* buf_;
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size_t buf_len_;
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size_t offset_;
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DISALLOW_COPY_AND_ASSIGN(FileBackgroundIO);
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};
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// The specialized controller that keeps track of current operations.
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class FileInFlightIO : public disk_cache::InFlightIO {
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public:
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FileInFlightIO() {}
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~FileInFlightIO() override {}
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// These methods start an asynchronous operation. The arguments have the same
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// semantics of the File asynchronous operations, with the exception that the
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// operation never finishes synchronously.
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void PostRead(disk_cache::File* file, void* buf, size_t buf_len,
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size_t offset, disk_cache::FileIOCallback* callback);
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void PostWrite(disk_cache::File* file, const void* buf, size_t buf_len,
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size_t offset, disk_cache::FileIOCallback* callback);
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protected:
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// Invokes the users' completion callback at the end of the IO operation.
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// |cancel| is true if the actual task posted to the thread is still
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// queued (because we are inside WaitForPendingIO), and false if said task is
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// the one performing the call.
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void OnOperationComplete(disk_cache::BackgroundIO* operation,
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bool cancel) override;
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private:
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DISALLOW_COPY_AND_ASSIGN(FileInFlightIO);
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};
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// ---------------------------------------------------------------------------
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// Runs on a worker thread.
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void FileBackgroundIO::Read() {
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if (file_->Read(const_cast<void*>(buf_), buf_len_, offset_)) {
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result_ = static_cast<int>(buf_len_);
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} else {
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result_ = net::ERR_CACHE_READ_FAILURE;
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}
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NotifyController();
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}
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// Runs on a worker thread.
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void FileBackgroundIO::Write() {
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bool rv = file_->Write(buf_, buf_len_, offset_);
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result_ = rv ? static_cast<int>(buf_len_) : net::ERR_CACHE_WRITE_FAILURE;
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NotifyController();
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}
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// ---------------------------------------------------------------------------
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void FileInFlightIO::PostRead(disk_cache::File *file, void* buf, size_t buf_len,
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size_t offset, disk_cache::FileIOCallback *callback) {
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scoped_refptr<FileBackgroundIO> operation(
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new FileBackgroundIO(file, buf, buf_len, offset, callback, this));
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file->AddRef(); // Balanced on OnOperationComplete()
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base::PostTaskWithTraits(
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FROM_HERE,
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{base::MayBlock(), base::TaskShutdownBehavior::CONTINUE_ON_SHUTDOWN},
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base::Bind(&FileBackgroundIO::Read, operation.get()));
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OnOperationPosted(operation.get());
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}
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void FileInFlightIO::PostWrite(disk_cache::File* file, const void* buf,
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size_t buf_len, size_t offset,
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disk_cache::FileIOCallback* callback) {
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scoped_refptr<FileBackgroundIO> operation(
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new FileBackgroundIO(file, buf, buf_len, offset, callback, this));
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file->AddRef(); // Balanced on OnOperationComplete()
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base::PostTaskWithTraits(
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FROM_HERE,
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{base::MayBlock(), base::TaskShutdownBehavior::CONTINUE_ON_SHUTDOWN},
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base::Bind(&FileBackgroundIO::Write, operation.get()));
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OnOperationPosted(operation.get());
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}
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// Runs on the IO thread.
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void FileInFlightIO::OnOperationComplete(disk_cache::BackgroundIO* operation,
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bool cancel) {
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FileBackgroundIO* op = static_cast<FileBackgroundIO*>(operation);
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disk_cache::FileIOCallback* callback = op->callback();
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int bytes = operation->result();
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// Release the references acquired in PostRead / PostWrite.
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op->file()->Release();
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callback->OnFileIOComplete(bytes);
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}
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// A static object that will broker all async operations.
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FileInFlightIO* s_file_operations = NULL;
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// Returns the current FileInFlightIO.
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FileInFlightIO* GetFileInFlightIO() {
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if (!s_file_operations) {
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s_file_operations = new FileInFlightIO;
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}
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return s_file_operations;
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}
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// Deletes the current FileInFlightIO.
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void DeleteFileInFlightIO() {
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DCHECK(s_file_operations);
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delete s_file_operations;
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s_file_operations = NULL;
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}
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} // namespace
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namespace disk_cache {
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File::File(base::File file)
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: init_(true), mixed_(true), base_file_(std::move(file)) {}
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bool File::Init(const base::FilePath& name) {
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if (base_file_.IsValid())
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return false;
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int flags = base::File::FLAG_OPEN | base::File::FLAG_READ |
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base::File::FLAG_WRITE;
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base_file_.Initialize(name, flags);
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return base_file_.IsValid();
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}
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bool File::IsValid() const {
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return base_file_.IsValid();
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}
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bool File::Read(void* buffer, size_t buffer_len, size_t offset) {
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DCHECK(base_file_.IsValid());
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if (buffer_len > static_cast<size_t>(std::numeric_limits<int32_t>::max()) ||
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offset > static_cast<size_t>(std::numeric_limits<int32_t>::max())) {
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return false;
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}
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int ret = base_file_.Read(offset, static_cast<char*>(buffer), buffer_len);
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return (static_cast<size_t>(ret) == buffer_len);
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}
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bool File::Write(const void* buffer, size_t buffer_len, size_t offset) {
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DCHECK(base_file_.IsValid());
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if (buffer_len > static_cast<size_t>(std::numeric_limits<int32_t>::max()) ||
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offset > static_cast<size_t>(std::numeric_limits<int32_t>::max())) {
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return false;
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}
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int ret = base_file_.Write(offset, static_cast<const char*>(buffer),
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buffer_len);
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return (static_cast<size_t>(ret) == buffer_len);
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}
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// We have to increase the ref counter of the file before performing the IO to
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// prevent the completion to happen with an invalid handle (if the file is
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// closed while the IO is in flight).
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bool File::Read(void* buffer, size_t buffer_len, size_t offset,
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FileIOCallback* callback, bool* completed) {
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DCHECK(base_file_.IsValid());
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if (!callback) {
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if (completed)
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*completed = true;
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return Read(buffer, buffer_len, offset);
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}
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if (buffer_len > ULONG_MAX || offset > ULONG_MAX)
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return false;
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GetFileInFlightIO()->PostRead(this, buffer, buffer_len, offset, callback);
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*completed = false;
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return true;
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}
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bool File::Write(const void* buffer, size_t buffer_len, size_t offset,
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FileIOCallback* callback, bool* completed) {
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DCHECK(base_file_.IsValid());
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if (!callback) {
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if (completed)
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*completed = true;
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return Write(buffer, buffer_len, offset);
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}
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return AsyncWrite(buffer, buffer_len, offset, callback, completed);
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}
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bool File::SetLength(size_t length) {
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DCHECK(base_file_.IsValid());
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if (length > std::numeric_limits<uint32_t>::max())
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return false;
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return base_file_.SetLength(length);
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}
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size_t File::GetLength() {
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DCHECK(base_file_.IsValid());
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int64_t len = base_file_.GetLength();
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if (len < 0)
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return 0;
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if (len > static_cast<int64_t>(std::numeric_limits<uint32_t>::max()))
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return std::numeric_limits<uint32_t>::max();
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return static_cast<size_t>(len);
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}
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// Static.
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void File::WaitForPendingIO(int* num_pending_io) {
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// We may be running unit tests so we should allow be able to reset the
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// message loop.
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GetFileInFlightIO()->WaitForPendingIO();
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DeleteFileInFlightIO();
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}
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// Static.
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void File::DropPendingIO() {
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GetFileInFlightIO()->DropPendingIO();
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DeleteFileInFlightIO();
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}
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File::~File() {
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}
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base::PlatformFile File::platform_file() const {
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return base_file_.GetPlatformFile();
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}
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bool File::AsyncWrite(const void* buffer, size_t buffer_len, size_t offset,
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FileIOCallback* callback, bool* completed) {
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DCHECK(base_file_.IsValid());
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if (buffer_len > ULONG_MAX || offset > ULONG_MAX)
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return false;
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GetFileInFlightIO()->PostWrite(this, buffer, buffer_len, offset, callback);
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if (completed)
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*completed = false;
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return true;
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}
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} // namespace disk_cache
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