mirror of
https://github.com/klzgrad/naiveproxy.git
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408 lines
13 KiB
C++
408 lines
13 KiB
C++
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// Copyright 2016 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/socket/socket_bio_adapter.h"
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#include <string.h>
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#include <algorithm>
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#include "base/bind.h"
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#include "base/feature_list.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "net/base/io_buffer.h"
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#include "net/base/net_errors.h"
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#include "net/socket/socket.h"
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#include "net/socket/stream_socket.h"
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#include "net/ssl/openssl_ssl_util.h"
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#include "net/traffic_annotation/network_traffic_annotation.h"
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#include "third_party/boringssl/src/include/openssl/bio.h"
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namespace {
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net::NetworkTrafficAnnotationTag kTrafficAnnotation =
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net::DefineNetworkTrafficAnnotation("socket_bio_adapter", R"(
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semantics {
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sender: "Socket BIO Adapter"
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description:
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"SocketBIOAdapter is used only internal to //net code as an internal "
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"detail to implement a TLS connection for a Socket class, and is not "
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"being called directly outside of this abstraction."
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trigger:
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"Establishing a TLS connection to a remote endpoint. There are many "
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"different ways in which a TLS connection may be triggered, such as "
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"loading an HTTPS URL."
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data:
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"All data sent or received over a TLS connection. This traffic may "
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"either be the handshake or application data. During the handshake, "
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"the target host name, user's IP, data related to previous "
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"handshake, client certificates, and channel ID, may be sent. When "
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"the connection is used to load an HTTPS URL, the application data "
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"includes cookies, request headers, and the response body."
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destination: OTHER
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destination_other:
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"Any destination the implementing socket is connected to."
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}
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policy {
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cookies_allowed: NO
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setting: "This feature cannot be disabled."
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policy_exception_justification: "Essential for navigation."
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})");
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} // namespace
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namespace net {
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SocketBIOAdapter::SocketBIOAdapter(StreamSocket* socket,
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int read_buffer_capacity,
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int write_buffer_capacity,
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Delegate* delegate)
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: socket_(socket),
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read_buffer_capacity_(read_buffer_capacity),
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read_offset_(0),
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read_result_(0),
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write_buffer_capacity_(write_buffer_capacity),
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write_buffer_used_(0),
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write_error_(OK),
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delegate_(delegate),
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weak_factory_(this) {
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bio_.reset(BIO_new(&kBIOMethod));
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bio_->ptr = this;
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bio_->init = 1;
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read_callback_ = base::BindRepeating(&SocketBIOAdapter::OnSocketReadComplete,
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weak_factory_.GetWeakPtr());
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write_callback_ = base::BindRepeating(
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&SocketBIOAdapter::OnSocketWriteComplete, weak_factory_.GetWeakPtr());
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}
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SocketBIOAdapter::~SocketBIOAdapter() {
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// BIOs are reference-counted and may outlive the adapter. Clear the pointer
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// so future operations fail.
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bio_->ptr = nullptr;
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}
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bool SocketBIOAdapter::HasPendingReadData() {
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return read_result_ > 0;
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}
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size_t SocketBIOAdapter::GetAllocationSize() const {
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size_t buffer_size = 0;
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if (read_buffer_)
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buffer_size += read_buffer_capacity_;
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if (write_buffer_)
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buffer_size += write_buffer_capacity_;
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return buffer_size;
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}
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int SocketBIOAdapter::BIORead(char* out, int len) {
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if (len <= 0)
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return len;
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// If there is no result available synchronously, report any Write() errors
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// that were observed. Otherwise the application may have encountered a socket
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// error while writing that would otherwise not be reported until the
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// application attempted to write again - which it may never do. See
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// https://crbug.com/249848.
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if (write_error_ != OK && write_error_ != ERR_IO_PENDING &&
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(read_result_ == 0 || read_result_ == ERR_IO_PENDING)) {
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OpenSSLPutNetError(FROM_HERE, write_error_);
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return -1;
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}
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if (read_result_ == 0) {
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// Instantiate the read buffer and read from the socket. Although only |len|
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// bytes were requested, intentionally read to the full buffer size. The SSL
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// layer reads the record header and body in separate reads to avoid
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// overreading, but issuing one is more efficient. SSL sockets are not
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// reused after shutdown for non-SSL traffic, so overreading is fine.
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DCHECK(!read_buffer_);
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DCHECK_EQ(0, read_offset_);
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read_buffer_ = base::MakeRefCounted<IOBuffer>(read_buffer_capacity_);
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int result = ERR_READ_IF_READY_NOT_IMPLEMENTED;
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if (base::FeatureList::IsEnabled(Socket::kReadIfReadyExperiment)) {
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result = socket_->ReadIfReady(
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read_buffer_.get(), read_buffer_capacity_,
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base::Bind(&SocketBIOAdapter::OnSocketReadIfReadyComplete,
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weak_factory_.GetWeakPtr()));
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if (result == ERR_IO_PENDING)
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read_buffer_ = nullptr;
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}
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if (result == ERR_READ_IF_READY_NOT_IMPLEMENTED) {
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result = socket_->Read(read_buffer_.get(), read_buffer_capacity_,
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read_callback_);
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}
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if (result == ERR_IO_PENDING) {
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read_result_ = ERR_IO_PENDING;
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} else {
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HandleSocketReadResult(result);
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}
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}
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// There is a pending Read(). Inform the caller to retry when it completes.
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if (read_result_ == ERR_IO_PENDING) {
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BIO_set_retry_read(bio());
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return -1;
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}
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// If the last Read() failed, report the error.
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if (read_result_ < 0) {
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OpenSSLPutNetError(FROM_HERE, read_result_);
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return -1;
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}
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// Report the result of the last Read() if non-empty.
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CHECK_LT(read_offset_, read_result_);
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len = std::min(len, read_result_ - read_offset_);
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memcpy(out, read_buffer_->data() + read_offset_, len);
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read_offset_ += len;
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// Release the buffer when empty.
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if (read_offset_ == read_result_) {
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read_buffer_ = nullptr;
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read_offset_ = 0;
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read_result_ = 0;
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}
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return len;
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}
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void SocketBIOAdapter::HandleSocketReadResult(int result) {
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DCHECK_NE(ERR_IO_PENDING, result);
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// If an EOF, canonicalize to ERR_CONNECTION_CLOSED here, so that higher
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// levels don't report success.
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if (result == 0)
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result = ERR_CONNECTION_CLOSED;
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read_result_ = result;
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// The read buffer is no longer needed.
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if (read_result_ <= 0)
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read_buffer_ = nullptr;
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}
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void SocketBIOAdapter::OnSocketReadComplete(int result) {
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DCHECK_EQ(ERR_IO_PENDING, read_result_);
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HandleSocketReadResult(result);
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delegate_->OnReadReady();
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}
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void SocketBIOAdapter::OnSocketReadIfReadyComplete(int result) {
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DCHECK_EQ(ERR_IO_PENDING, read_result_);
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DCHECK_GE(OK, result);
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// Do not use HandleSocketReadResult() because result == OK doesn't mean EOF.
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read_result_ = result;
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delegate_->OnReadReady();
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}
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int SocketBIOAdapter::BIOWrite(const char* in, int len) {
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if (len <= 0)
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return len;
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// If the write buffer is not empty, there must be a pending Write() to flush
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// it.
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DCHECK(write_buffer_used_ == 0 || write_error_ == ERR_IO_PENDING);
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// If a previous Write() failed, report the error.
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if (write_error_ != OK && write_error_ != ERR_IO_PENDING) {
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OpenSSLPutNetError(FROM_HERE, write_error_);
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return -1;
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}
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// Instantiate the write buffer if needed.
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if (!write_buffer_) {
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DCHECK_EQ(0, write_buffer_used_);
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write_buffer_ = base::MakeRefCounted<GrowableIOBuffer>();
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write_buffer_->SetCapacity(write_buffer_capacity_);
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}
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// If the ring buffer is full, inform the caller to try again later.
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if (write_buffer_used_ == write_buffer_->capacity()) {
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BIO_set_retry_write(bio());
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return -1;
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}
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int bytes_copied = 0;
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// If there is space after the offset, fill it.
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if (write_buffer_used_ < write_buffer_->RemainingCapacity()) {
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int chunk =
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std::min(write_buffer_->RemainingCapacity() - write_buffer_used_, len);
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memcpy(write_buffer_->data() + write_buffer_used_, in, chunk);
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in += chunk;
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len -= chunk;
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bytes_copied += chunk;
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write_buffer_used_ += chunk;
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}
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// If there is still space for remaining data, try to wrap around.
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if (len > 0 && write_buffer_used_ < write_buffer_->capacity()) {
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// If there were any room after the offset, the previous branch would have
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// filled it.
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CHECK_LE(write_buffer_->RemainingCapacity(), write_buffer_used_);
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int write_offset = write_buffer_used_ - write_buffer_->RemainingCapacity();
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int chunk = std::min(len, write_buffer_->capacity() - write_buffer_used_);
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memcpy(write_buffer_->StartOfBuffer() + write_offset, in, chunk);
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in += chunk;
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len -= chunk;
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bytes_copied += chunk;
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write_buffer_used_ += chunk;
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}
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// Either the buffer is now full or there is no more input.
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DCHECK(len == 0 || write_buffer_used_ == write_buffer_->capacity());
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// Schedule a socket Write() if necessary. (The ring buffer may previously
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// have been empty.)
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SocketWrite();
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// If a read-interrupting write error was synchronously discovered,
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// asynchronously notify OnReadReady. See https://crbug.com/249848. Avoid
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// reentrancy by deferring it to a later event loop iteration.
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if (write_error_ != OK && write_error_ != ERR_IO_PENDING &&
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read_result_ == ERR_IO_PENDING) {
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE, base::Bind(&SocketBIOAdapter::CallOnReadReady,
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weak_factory_.GetWeakPtr()));
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}
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return bytes_copied;
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}
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void SocketBIOAdapter::SocketWrite() {
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while (write_error_ == OK && write_buffer_used_ > 0) {
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int write_size =
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std::min(write_buffer_used_, write_buffer_->RemainingCapacity());
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int result = socket_->Write(write_buffer_.get(), write_size,
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write_callback_, kTrafficAnnotation);
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if (result == ERR_IO_PENDING) {
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write_error_ = ERR_IO_PENDING;
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return;
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}
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HandleSocketWriteResult(result);
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}
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}
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void SocketBIOAdapter::HandleSocketWriteResult(int result) {
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DCHECK_NE(ERR_IO_PENDING, result);
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if (result < 0) {
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write_error_ = result;
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// The write buffer is no longer needed.
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write_buffer_ = nullptr;
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write_buffer_used_ = 0;
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return;
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}
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// Advance the ring buffer.
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write_buffer_->set_offset(write_buffer_->offset() + result);
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write_buffer_used_ -= result;
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if (write_buffer_->RemainingCapacity() == 0)
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write_buffer_->set_offset(0);
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write_error_ = OK;
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// Release the write buffer if empty.
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if (write_buffer_used_ == 0)
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write_buffer_ = nullptr;
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}
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void SocketBIOAdapter::OnSocketWriteComplete(int result) {
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DCHECK_EQ(ERR_IO_PENDING, write_error_);
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bool was_full = write_buffer_used_ == write_buffer_->capacity();
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HandleSocketWriteResult(result);
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SocketWrite();
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// If transitioning from being unable to accept data to being able to, signal
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// OnWriteReady.
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if (was_full) {
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base::WeakPtr<SocketBIOAdapter> guard(weak_factory_.GetWeakPtr());
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delegate_->OnWriteReady();
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// OnWriteReady may delete the adapter.
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if (!guard)
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return;
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}
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// Write errors are fed back into BIO_read once the read buffer is empty. If
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// BIO_read is currently blocked, signal early that a read result is ready.
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if (result < 0 && read_result_ == ERR_IO_PENDING)
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delegate_->OnReadReady();
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}
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void SocketBIOAdapter::CallOnReadReady() {
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if (read_result_ == ERR_IO_PENDING)
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delegate_->OnReadReady();
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}
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SocketBIOAdapter* SocketBIOAdapter::GetAdapter(BIO* bio) {
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DCHECK_EQ(&kBIOMethod, bio->method);
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SocketBIOAdapter* adapter = reinterpret_cast<SocketBIOAdapter*>(bio->ptr);
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if (adapter)
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DCHECK_EQ(bio, adapter->bio());
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return adapter;
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}
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int SocketBIOAdapter::BIOWriteWrapper(BIO* bio, const char* in, int len) {
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BIO_clear_retry_flags(bio);
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SocketBIOAdapter* adapter = GetAdapter(bio);
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if (!adapter) {
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OpenSSLPutNetError(FROM_HERE, ERR_UNEXPECTED);
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return -1;
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}
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return adapter->BIOWrite(in, len);
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}
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int SocketBIOAdapter::BIOReadWrapper(BIO* bio, char* out, int len) {
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BIO_clear_retry_flags(bio);
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SocketBIOAdapter* adapter = GetAdapter(bio);
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if (!adapter) {
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OpenSSLPutNetError(FROM_HERE, ERR_UNEXPECTED);
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return -1;
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}
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return adapter->BIORead(out, len);
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}
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long SocketBIOAdapter::BIOCtrlWrapper(BIO* bio,
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int cmd,
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long larg,
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void* parg) {
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switch (cmd) {
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case BIO_CTRL_FLUSH:
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// The SSL stack requires BIOs handle BIO_flush.
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return 1;
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}
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NOTIMPLEMENTED();
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return 0;
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}
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const BIO_METHOD SocketBIOAdapter::kBIOMethod = {
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0, // type (unused)
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nullptr, // name (unused)
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SocketBIOAdapter::BIOWriteWrapper,
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SocketBIOAdapter::BIOReadWrapper,
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nullptr, // puts
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nullptr, // gets
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SocketBIOAdapter::BIOCtrlWrapper,
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nullptr, // create
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nullptr, // destroy
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nullptr, // callback_ctrl
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};
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} // namespace net
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