#include "net/http/http_stream_parser.h"
#include <algorithm>
#include <memory>
#include <utility>
#include "base/compiler_specific.h"
#include "base/functional/bind.h"
#include "base/logging.h"
#include "base/memory/raw_ptr.h"
#include "base/metrics/histogram_macros.h"
#include "base/numerics/clamped_math.h"
#include "base/strings/string_util.h"
#include "base/values.h"
#include "net/base/io_buffer.h"
#include "net/base/ip_endpoint.h"
#include "net/base/upload_data_stream.h"
#include "net/http/http_chunked_decoder.h"
#include "net/http/http_log_util.h"
#include "net/http/http_request_headers.h"
#include "net/http/http_request_info.h"
#include "net/http/http_response_headers.h"
#include "net/http/http_response_info.h"
#include "net/http/http_status_code.h"
#include "net/http/http_util.h"
#include "net/log/net_log_event_type.h"
#include "net/socket/ssl_client_socket.h"
#include "net/socket/stream_socket.h"
#include "net/ssl/ssl_cert_request_info.h"
#include "net/ssl/ssl_info.h"
#include "url/url_canon.h"
namespace net {
namespace {
const uint64_t kMaxMergedHeaderAndBodySize = 1400;
const size_t kRequestBodyBufferSize = 1 << 14;
std::string GetResponseHeaderLines(const HttpResponseHeaders& headers) {
std::string raw_headers = headers.raw_headers();
const char* null_separated_headers = raw_headers.c_str();
const char* header_line = null_separated_headers;
std::string cr_separated_headers;
while (header_line[0] != 0) {
cr_separated_headers += header_line;
cr_separated_headers += "\n";
header_line += strlen(header_line) + 1;
}
return cr_separated_headers;
}
base::Value::Dict NetLogSendRequestBodyParams(uint64_t length,
bool is_chunked,
bool did_merge) {
base::Value::Dict dict;
dict.Set("length", static_cast<int>(length));
dict.Set("is_chunked", is_chunked);
dict.Set("did_merge", did_merge);
return dict;
}
void NetLogSendRequestBody(const NetLogWithSource& net_log,
uint64_t length,
bool is_chunked,
bool did_merge) {
net_log.AddEvent(NetLogEventType::HTTP_TRANSACTION_SEND_REQUEST_BODY, [&] {
return NetLogSendRequestBodyParams(length, is_chunked, did_merge);
});
}
bool ShouldTryReadingOnUploadError(int error_code) {
return (error_code == ERR_CONNECTION_RESET);
}
}
class HttpStreamParser::SeekableIOBuffer : public IOBuffer {
public:
explicit SeekableIOBuffer(int capacity)
: IOBuffer(capacity), real_data_(data_), capacity_(capacity) {}
void DidConsume(int bytes) {
SetOffset(used_ + bytes);
}
int BytesRemaining() const {
return size_ - used_;
}
void SetOffset(int bytes) {
DCHECK_GE(bytes, 0);
DCHECK_LE(bytes, size_);
used_ = bytes;
data_ = real_data_ + used_;
}
void DidAppend(int bytes) {
DCHECK_GE(bytes, 0);
DCHECK_GE(size_ + bytes, 0);
DCHECK_LE(size_ + bytes, capacity_);
size_ += bytes;
}
void Clear() {
size_ = 0;
SetOffset(0);
}
int size() const { return size_; }
int capacity() const { return capacity_; }
private:
~SeekableIOBuffer() override {
data_ = real_data_;
}
raw_ptr<char, DanglingUntriaged | AllowPtrArithmetic> real_data_;
const int capacity_;
int size_ = 0;
int used_ = 0;
};
const size_t HttpStreamParser::kChunkHeaderFooterSize = 12;
HttpStreamParser::HttpStreamParser(StreamSocket* stream_socket,
bool connection_is_reused,
const HttpRequestInfo* request,
GrowableIOBuffer* read_buffer,
const NetLogWithSource& net_log)
: request_(request),
read_buf_(read_buffer),
response_header_start_offset_(std::string::npos),
stream_socket_(stream_socket),
connection_is_reused_(connection_is_reused),
net_log_(net_log) {
io_callback_ = base::BindRepeating(&HttpStreamParser::OnIOComplete,
weak_ptr_factory_.GetWeakPtr());
}
HttpStreamParser::~HttpStreamParser() = default;
int HttpStreamParser::SendRequest(
const std::string& request_line,
const HttpRequestHeaders& headers,
const NetworkTrafficAnnotationTag& traffic_annotation,
HttpResponseInfo* response,
CompletionOnceCallback callback) {
DCHECK_EQ(STATE_NONE, io_state_);
DCHECK(callback_.is_null());
DCHECK(!callback.is_null());
DCHECK(response);
NetLogRequestHeaders(net_log_,
NetLogEventType::HTTP_TRANSACTION_SEND_REQUEST_HEADERS,
request_line, &headers);
DVLOG(1) << __func__ << "() request_line = \"" << request_line << "\""
<< " headers = \"" << headers.ToString() << "\"";
traffic_annotation_ = MutableNetworkTrafficAnnotationTag(traffic_annotation);
response_ = response;
IPEndPoint ip_endpoint;
int result = stream_socket_->GetPeerAddress(&ip_endpoint);
if (result != OK)
return result;
response_->remote_endpoint = ip_endpoint;
std::string request = request_line + headers.ToString();
request_headers_length_ = request.size();
if (request_->upload_data_stream != nullptr) {
request_body_send_buf_ =
base::MakeRefCounted<SeekableIOBuffer>(kRequestBodyBufferSize);
if (request_->upload_data_stream->is_chunked()) {
request_body_read_buf_ = base::MakeRefCounted<SeekableIOBuffer>(
kRequestBodyBufferSize - kChunkHeaderFooterSize);
} else {
request_body_read_buf_ = request_body_send_buf_;
}
}
io_state_ = STATE_SEND_HEADERS;
bool did_merge = false;
if (ShouldMergeRequestHeadersAndBody(request, request_->upload_data_stream)) {
int merged_size = static_cast<int>(
request_headers_length_ + request_->upload_data_stream->size());
scoped_refptr<IOBuffer> merged_request_headers_and_body =
base::MakeRefCounted<IOBuffer>(merged_size);
request_headers_ = base::MakeRefCounted<DrainableIOBuffer>(
merged_request_headers_and_body, merged_size);
memcpy(request_headers_->data(), request.data(), request_headers_length_);
request_headers_->DidConsume(request_headers_length_);
uint64_t todo = request_->upload_data_stream->size();
while (todo) {
int consumed = request_->upload_data_stream->Read(
request_headers_.get(), static_cast<int>(todo),
CompletionOnceCallback());
DCHECK_GT(consumed, 0);
request_headers_->DidConsume(consumed);
todo -= consumed;
}
DCHECK(request_->upload_data_stream->IsEOF());
request_headers_->SetOffset(0);
did_merge = true;
NetLogSendRequestBody(net_log_, request_->upload_data_stream->size(),
false,
true );
}
if (!did_merge) {
scoped_refptr<StringIOBuffer> headers_io_buf =
base::MakeRefCounted<StringIOBuffer>(request);
request_headers_ = base::MakeRefCounted<DrainableIOBuffer>(
std::move(headers_io_buf), request.size());
}
result = DoLoop(OK);
if (result == ERR_IO_PENDING)
callback_ = std::move(callback);
return result > 0 ? OK : result;
}
int HttpStreamParser::ConfirmHandshake(CompletionOnceCallback callback) {
int ret = stream_socket_->ConfirmHandshake(
base::BindOnce(&HttpStreamParser::RunConfirmHandshakeCallback,
weak_ptr_factory_.GetWeakPtr()));
if (ret == ERR_IO_PENDING)
confirm_handshake_callback_ = std::move(callback);
return ret;
}
int HttpStreamParser::ReadResponseHeaders(CompletionOnceCallback callback) {
DCHECK(io_state_ == STATE_NONE || io_state_ == STATE_DONE);
DCHECK(callback_.is_null());
DCHECK(!callback.is_null());
DCHECK_EQ(0, read_buf_unused_offset_);
DCHECK(SendRequestBuffersEmpty());
if (io_state_ == STATE_DONE)
return ERR_CONNECTION_CLOSED;
int result = OK;
io_state_ = STATE_READ_HEADERS;
if (read_buf_->offset() > 0) {
result = read_buf_->offset();
read_buf_->set_offset(0);
}
if (result > 0)
io_state_ = STATE_READ_HEADERS_COMPLETE;
result = DoLoop(result);
if (result == ERR_IO_PENDING)
callback_ = std::move(callback);
return result > 0 ? OK : result;
}
int HttpStreamParser::ReadResponseBody(IOBuffer* buf,
int buf_len,
CompletionOnceCallback callback) {
DCHECK(io_state_ == STATE_NONE || io_state_ == STATE_DONE);
DCHECK(callback_.is_null());
DCHECK(!callback.is_null());
DCHECK_LE(buf_len, kMaxBufSize);
DCHECK(SendRequestBuffersEmpty());
CHECK(buf);
if (io_state_ == STATE_DONE)
return OK;
user_read_buf_ = buf;
user_read_buf_len_ = buf_len;
io_state_ = STATE_READ_BODY;
request_ = nullptr;
int result = DoLoop(OK);
if (result == ERR_IO_PENDING)
callback_ = std::move(callback);
return result;
}
void HttpStreamParser::OnIOComplete(int result) {
result = DoLoop(result);
if (result != ERR_IO_PENDING && !callback_.is_null()) {
std::move(callback_).Run(result);
}
}
int HttpStreamParser::DoLoop(int result) {
do {
DCHECK_NE(ERR_IO_PENDING, result);
DCHECK_NE(STATE_DONE, io_state_);
DCHECK_NE(STATE_NONE, io_state_);
State state = io_state_;
io_state_ = STATE_NONE;
switch (state) {
case STATE_SEND_HEADERS:
DCHECK_EQ(OK, result);
result = DoSendHeaders();
DCHECK_NE(STATE_NONE, io_state_);
break;
case STATE_SEND_HEADERS_COMPLETE:
result = DoSendHeadersComplete(result);
DCHECK_NE(STATE_NONE, io_state_);
break;
case STATE_SEND_BODY:
DCHECK_EQ(OK, result);
result = DoSendBody();
DCHECK_NE(STATE_NONE, io_state_);
break;
case STATE_SEND_BODY_COMPLETE:
result = DoSendBodyComplete(result);
DCHECK_NE(STATE_NONE, io_state_);
break;
case STATE_SEND_REQUEST_READ_BODY_COMPLETE:
result = DoSendRequestReadBodyComplete(result);
DCHECK_NE(STATE_NONE, io_state_);
break;
case STATE_SEND_REQUEST_COMPLETE:
result = DoSendRequestComplete(result);
break;
case STATE_READ_HEADERS:
net_log_.BeginEvent(NetLogEventType::HTTP_STREAM_PARSER_READ_HEADERS);
DCHECK_GE(result, 0);
result = DoReadHeaders();
break;
case STATE_READ_HEADERS_COMPLETE:
result = DoReadHeadersComplete(result);
net_log_.EndEventWithNetErrorCode(
NetLogEventType::HTTP_STREAM_PARSER_READ_HEADERS, result);
break;
case STATE_READ_BODY:
DCHECK_GE(result, 0);
result = DoReadBody();
break;
case STATE_READ_BODY_COMPLETE:
result = DoReadBodyComplete(result);
break;
default:
NOTREACHED();
break;
}
} while (result != ERR_IO_PENDING &&
(io_state_ != STATE_DONE && io_state_ != STATE_NONE));
return result;
}
int HttpStreamParser::DoSendHeaders() {
int bytes_remaining = request_headers_->BytesRemaining();
DCHECK_GT(bytes_remaining, 0);
if (bytes_remaining == request_headers_->size())
response_->request_time = base::Time::Now();
io_state_ = STATE_SEND_HEADERS_COMPLETE;
return stream_socket_->Write(
request_headers_.get(), bytes_remaining, io_callback_,
NetworkTrafficAnnotationTag(traffic_annotation_));
}
int HttpStreamParser::DoSendHeadersComplete(int result) {
if (result < 0) {
io_state_ = STATE_SEND_REQUEST_COMPLETE;
if (request_headers_->BytesConsumed() >= request_headers_length_ &&
ShouldTryReadingOnUploadError(result)) {
upload_error_ = result;
return OK;
}
return result;
}
sent_bytes_ += result;
request_headers_->DidConsume(result);
if (request_headers_->BytesRemaining() > 0) {
io_state_ = STATE_SEND_HEADERS;
return OK;
}
if (request_->upload_data_stream != nullptr &&
(request_->upload_data_stream->is_chunked() ||
(request_->upload_data_stream->size() > 0 &&
!request_->upload_data_stream->IsEOF()))) {
NetLogSendRequestBody(net_log_, request_->upload_data_stream->size(),
request_->upload_data_stream->is_chunked(),
false );
io_state_ = STATE_SEND_BODY;
return OK;
}
io_state_ = STATE_SEND_REQUEST_COMPLETE;
return OK;
}
int HttpStreamParser::DoSendBody() {
if (request_body_send_buf_->BytesRemaining() > 0) {
io_state_ = STATE_SEND_BODY_COMPLETE;
return stream_socket_->Write(
request_body_send_buf_.get(), request_body_send_buf_->BytesRemaining(),
io_callback_, NetworkTrafficAnnotationTag(traffic_annotation_));
}
if (request_->upload_data_stream->is_chunked() && sent_last_chunk_) {
io_state_ = STATE_SEND_REQUEST_COMPLETE;
return OK;
}
request_body_read_buf_->Clear();
io_state_ = STATE_SEND_REQUEST_READ_BODY_COMPLETE;
return request_->upload_data_stream->Read(
request_body_read_buf_.get(), request_body_read_buf_->capacity(),
base::BindOnce(&HttpStreamParser::OnIOComplete,
weak_ptr_factory_.GetWeakPtr()));
}
int HttpStreamParser::DoSendBodyComplete(int result) {
if (result < 0) {
io_state_ = STATE_SEND_REQUEST_COMPLETE;
if (ShouldTryReadingOnUploadError(result)) {
upload_error_ = result;
return OK;
}
return result;
}
sent_bytes_ += result;
request_body_send_buf_->DidConsume(result);
io_state_ = STATE_SEND_BODY;
return OK;
}
int HttpStreamParser::DoSendRequestReadBodyComplete(int result) {
if (result < 0) {
io_state_ = STATE_SEND_REQUEST_COMPLETE;
return result;
}
if (request_->upload_data_stream->is_chunked()) {
if (result == 0) {
DCHECK(request_->upload_data_stream->IsEOF());
sent_last_chunk_ = true;
}
const base::StringPiece payload(request_body_read_buf_->data(), result);
request_body_send_buf_->Clear();
result = EncodeChunk(payload,
request_body_send_buf_->data(),
request_body_send_buf_->capacity());
}
if (result == 0) {
DCHECK(request_->upload_data_stream->IsEOF());
DCHECK(!request_->upload_data_stream->is_chunked());
io_state_ = STATE_SEND_REQUEST_COMPLETE;
} else if (result > 0) {
request_body_send_buf_->DidAppend(result);
result = 0;
io_state_ = STATE_SEND_BODY;
}
return result;
}
int HttpStreamParser::DoSendRequestComplete(int result) {
DCHECK_NE(result, ERR_IO_PENDING);
request_headers_ = nullptr;
request_body_send_buf_ = nullptr;
request_body_read_buf_ = nullptr;
return result;
}
int HttpStreamParser::DoReadHeaders() {
io_state_ = STATE_READ_HEADERS_COMPLETE;
if (read_buf_->RemainingCapacity() == 0)
read_buf_->SetCapacity(read_buf_->capacity() + kHeaderBufInitialSize);
CHECK(read_buf_->data());
return stream_socket_->Read(read_buf_.get(), read_buf_->RemainingCapacity(),
io_callback_);
}
int HttpStreamParser::DoReadHeadersComplete(int result) {
result = HandleReadHeaderResult(result);
if (io_state_ == STATE_READ_HEADERS || upload_error_ == OK)
return result;
DCHECK_NE(ERR_IO_PENDING, result);
if (result < 0) {
io_state_ = STATE_DONE;
response_->headers = nullptr;
return upload_error_;
}
int response_code_class = response_->headers->response_code() / 100;
if (response_code_class == 1 || response_code_class == 4 ||
response_code_class == 5) {
return result;
}
io_state_ = STATE_DONE;
response_->headers = nullptr;
return upload_error_;
}
int HttpStreamParser::DoReadBody() {
io_state_ = STATE_READ_BODY_COMPLETE;
CHECK(user_read_buf_.get());
if (read_buf_->offset()) {
int available = read_buf_->offset() - read_buf_unused_offset_;
if (available) {
CHECK_GT(available, 0);
int bytes_from_buffer = std::min(available, user_read_buf_len_);
memcpy(user_read_buf_->data(),
read_buf_->StartOfBuffer() + read_buf_unused_offset_,
bytes_from_buffer);
read_buf_unused_offset_ += bytes_from_buffer;
if (bytes_from_buffer == available) {
read_buf_->SetCapacity(0);
read_buf_unused_offset_ = 0;
}
return bytes_from_buffer;
} else {
read_buf_->SetCapacity(0);
read_buf_unused_offset_ = 0;
}
}
if (IsResponseBodyComplete())
return 0;
DCHECK_EQ(0, read_buf_->offset());
return stream_socket_->Read(user_read_buf_.get(), user_read_buf_len_,
io_callback_);
}
int HttpStreamParser::DoReadBodyComplete(int result) {
if (result == 0 && !IsResponseBodyComplete() && CanFindEndOfResponse()) {
if (chunked_decoder_.get())
result = ERR_INCOMPLETE_CHUNKED_ENCODING;
else
result = ERR_CONTENT_LENGTH_MISMATCH;
}
if (result > 0)
received_bytes_ += result;
if (result > 0 && chunked_decoder_.get()) {
result = chunked_decoder_->FilterBuf(user_read_buf_->data(), result);
if (result == 0 && !chunked_decoder_->reached_eof()) {
io_state_ = STATE_READ_BODY;
return OK;
}
}
if (result > 0)
response_body_read_ += result;
if (result <= 0 || IsResponseBodyComplete()) {
io_state_ = STATE_DONE;
int additional_save_amount = read_buf_->offset() - read_buf_unused_offset_;
int save_amount = 0;
if (chunked_decoder_.get()) {
save_amount = chunked_decoder_->bytes_after_eof();
} else if (response_body_length_ >= 0) {
int64_t extra_data_read = response_body_read_ - response_body_length_;
if (extra_data_read > 0) {
save_amount = static_cast<int>(extra_data_read);
if (result > 0)
result -= save_amount;
}
}
CHECK_LE(save_amount + additional_save_amount, kMaxBufSize);
if (read_buf_->capacity() < save_amount + additional_save_amount) {
read_buf_->SetCapacity(save_amount + additional_save_amount);
}
if (save_amount) {
received_bytes_ -= save_amount;
memcpy(read_buf_->StartOfBuffer(), user_read_buf_->data() + result,
save_amount);
}
read_buf_->set_offset(save_amount);
if (additional_save_amount) {
memmove(read_buf_->data(),
read_buf_->StartOfBuffer() + read_buf_unused_offset_,
additional_save_amount);
read_buf_->set_offset(save_amount + additional_save_amount);
}
read_buf_unused_offset_ = 0;
} else {
user_read_buf_ = nullptr;
user_read_buf_len_ = 0;
}
return result;
}
int HttpStreamParser::HandleReadHeaderResult(int result) {
DCHECK_EQ(0, read_buf_unused_offset_);
if (result == 0)
result = ERR_CONNECTION_CLOSED;
if (result == ERR_CONNECTION_CLOSED) {
if (read_buf_->offset() == 0) {
io_state_ = STATE_DONE;
if (!connection_is_reused_)
return ERR_EMPTY_RESPONSE;
return result;
}
if (request_->url.SchemeIsCryptographic()) {
io_state_ = STATE_DONE;
return ERR_RESPONSE_HEADERS_TRUNCATED;
}
int end_offset;
if (response_header_start_offset_ != std::string::npos) {
io_state_ = STATE_READ_BODY_COMPLETE;
end_offset = read_buf_->offset();
} else {
end_offset = 0;
}
int rv = ParseResponseHeaders(end_offset);
if (rv < 0)
return rv;
return result;
}
if (result < 0) {
io_state_ = STATE_DONE;
return result;
}
if (read_buf_->offset() == 0) {
response_->response_time = base::Time::Now();
current_response_start_time_ = base::TimeTicks::Now();
}
if (first_response_start_time_.is_null())
first_response_start_time_ = current_response_start_time_;
read_buf_->set_offset(read_buf_->offset() + result);
DCHECK_LE(read_buf_->offset(), read_buf_->capacity());
DCHECK_GT(result, 0);
int end_of_header_offset = FindAndParseResponseHeaders(result);
if (end_of_header_offset < -1)
return end_of_header_offset;
if (end_of_header_offset == -1) {
io_state_ = STATE_READ_HEADERS;
if (read_buf_->offset() >= kMaxHeaderBufSize) {
io_state_ = STATE_DONE;
return ERR_RESPONSE_HEADERS_TOO_BIG;
}
} else {
CalculateResponseBodySize();
if (response_body_length_ == 0) {
int extra_bytes = read_buf_->offset() - end_of_header_offset;
if (extra_bytes) {
CHECK_GT(extra_bytes, 0);
memmove(read_buf_->StartOfBuffer(),
read_buf_->StartOfBuffer() + end_of_header_offset,
extra_bytes);
}
read_buf_->SetCapacity(extra_bytes);
if (response_->headers->response_code() / 100 == 1) {
response_header_start_offset_ = std::string::npos;
response_body_length_ = -1;
if (response_->headers->response_code() == net::HTTP_EARLY_HINTS &&
first_early_hints_time_.is_null()) {
first_early_hints_time_ = current_response_start_time_;
}
} else {
response_is_keep_alive_ = response_->headers->IsKeepAlive();
io_state_ = STATE_DONE;
}
return OK;
}
if (response_->headers->response_code() / 100 != 1) {
DCHECK(non_informational_response_start_time_.is_null());
non_informational_response_start_time_ = current_response_start_time_;
}
response_is_keep_alive_ = response_->headers->IsKeepAlive();
read_buf_unused_offset_ = end_of_header_offset;
}
return OK;
}
void HttpStreamParser::RunConfirmHandshakeCallback(int rv) {
std::move(confirm_handshake_callback_).Run(rv);
}
int HttpStreamParser::FindAndParseResponseHeaders(int new_bytes) {
DCHECK_GT(new_bytes, 0);
DCHECK_EQ(0, read_buf_unused_offset_);
size_t end_offset = std::string::npos;
if (response_header_start_offset_ == std::string::npos) {
response_header_start_offset_ = HttpUtil::LocateStartOfStatusLine(
read_buf_->StartOfBuffer(), read_buf_->offset());
}
if (response_header_start_offset_ != std::string::npos) {
size_t lower_bound =
(base::ClampedNumeric<size_t>(read_buf_->offset()) - new_bytes - 3)
.RawValue();
size_t search_start = std::max(response_header_start_offset_, lower_bound);
end_offset = HttpUtil::LocateEndOfHeaders(
read_buf_->StartOfBuffer(), read_buf_->offset(), search_start);
} else if (read_buf_->offset() >= 8) {
end_offset = 0;
}
if (end_offset == std::string::npos)
return -1;
int rv = ParseResponseHeaders(end_offset);
if (rv < 0)
return rv;
return end_offset;
}
int HttpStreamParser::ParseResponseHeaders(int end_offset) {
scoped_refptr<HttpResponseHeaders> headers;
DCHECK_EQ(0, read_buf_unused_offset_);
if (response_header_start_offset_ != std::string::npos) {
received_bytes_ += end_offset;
headers = HttpResponseHeaders::TryToCreate(
base::StringPiece(read_buf_->StartOfBuffer(), end_offset));
if (!headers)
return net::ERR_INVALID_HTTP_RESPONSE;
has_seen_status_line_ = true;
} else {
if (has_seen_status_line_) {
return ERR_INVALID_HTTP_RESPONSE;
}
base::StringPiece scheme = request_->url.scheme_piece();
if (url::DefaultPortForScheme(scheme.data(), scheme.length()) !=
request_->url.EffectiveIntPort()) {
if (read_buf_->offset() < 3 || scheme != "http" ||
!base::EqualsCaseInsensitiveASCII(
base::StringPiece(read_buf_->StartOfBuffer(), 3), "icy")) {
return ERR_INVALID_HTTP_RESPONSE;
}
}
headers = base::MakeRefCounted<HttpResponseHeaders>(
std::string("HTTP/0.9 200 OK"));
}
if (!headers->IsChunkEncoded()) {
if (HttpUtil::HeadersContainMultipleCopiesOfField(*headers,
"Content-Length"))
return ERR_RESPONSE_HEADERS_MULTIPLE_CONTENT_LENGTH;
}
if (HttpUtil::HeadersContainMultipleCopiesOfField(*headers,
"Content-Disposition"))
return ERR_RESPONSE_HEADERS_MULTIPLE_CONTENT_DISPOSITION;
if (HttpUtil::HeadersContainMultipleCopiesOfField(*headers, "Location"))
return ERR_RESPONSE_HEADERS_MULTIPLE_LOCATION;
response_->headers = headers;
if (headers->GetHttpVersion() == HttpVersion(0, 9)) {
response_->connection_info = HttpResponseInfo::CONNECTION_INFO_HTTP0_9;
} else if (headers->GetHttpVersion() == HttpVersion(1, 0)) {
response_->connection_info = HttpResponseInfo::CONNECTION_INFO_HTTP1_0;
} else if (headers->GetHttpVersion() == HttpVersion(1, 1)) {
response_->connection_info = HttpResponseInfo::CONNECTION_INFO_HTTP1_1;
}
DVLOG(1) << __func__ << "() content_length = \""
<< response_->headers->GetContentLength() << "\n\""
<< " headers = \"" << GetResponseHeaderLines(*response_->headers)
<< "\"";
return OK;
}
void HttpStreamParser::CalculateResponseBodySize() {
if (response_->headers->response_code() / 100 == 1) {
response_body_length_ = 0;
} else {
switch (response_->headers->response_code()) {
case net::HTTP_NO_CONTENT:
case net::HTTP_RESET_CONTENT:
case net::HTTP_NOT_MODIFIED:
response_body_length_ = 0;
break;
}
}
if (request_->method == "HEAD")
response_body_length_ = 0;
if (response_body_length_ == -1) {
if (response_->headers->IsChunkEncoded()) {
chunked_decoder_ = std::make_unique<HttpChunkedDecoder>();
} else {
response_body_length_ = response_->headers->GetContentLength();
}
}
}
bool HttpStreamParser::IsResponseBodyComplete() const {
if (chunked_decoder_.get())
return chunked_decoder_->reached_eof();
if (response_body_length_ != -1)
return response_body_read_ >= response_body_length_;
return false;
}
bool HttpStreamParser::CanFindEndOfResponse() const {
return chunked_decoder_.get() || response_body_length_ >= 0;
}
bool HttpStreamParser::IsMoreDataBuffered() const {
return read_buf_->offset() > read_buf_unused_offset_;
}
bool HttpStreamParser::CanReuseConnection() const {
if (!CanFindEndOfResponse())
return false;
if (!response_is_keep_alive_)
return false;
if (IsResponseBodyComplete() && IsMoreDataBuffered())
return false;
return stream_socket_->IsConnected();
}
void HttpStreamParser::OnConnectionClose() {
stream_socket_ = nullptr;
}
void HttpStreamParser::GetSSLInfo(SSLInfo* ssl_info) {
if (!request_->url.SchemeIsCryptographic() ||
!stream_socket_->GetSSLInfo(ssl_info)) {
ssl_info->Reset();
}
}
void HttpStreamParser::GetSSLCertRequestInfo(
SSLCertRequestInfo* cert_request_info) {
cert_request_info->Reset();
if (request_->url.SchemeIsCryptographic())
stream_socket_->GetSSLCertRequestInfo(cert_request_info);
}
int HttpStreamParser::EncodeChunk(base::StringPiece payload,
char* output,
size_t output_size) {
if (output_size < payload.size() + kChunkHeaderFooterSize)
return ERR_INVALID_ARGUMENT;
char* cursor = output;
const int num_chars = base::snprintf(output, output_size,
"%X\r\n",
static_cast<int>(payload.size()));
cursor += num_chars;
if (payload.size() > 0) {
memcpy(cursor, payload.data(), payload.size());
cursor += payload.size();
}
memcpy(cursor, "\r\n", 2);
cursor += 2;
return cursor - output;
}
bool HttpStreamParser::ShouldMergeRequestHeadersAndBody(
const std::string& request_headers,
const UploadDataStream* request_body) {
if (request_body != nullptr &&
request_body->IsInMemory() && request_body->size() > 0) {
uint64_t merged_size = request_headers.size() + request_body->size();
if (merged_size <= kMaxMergedHeaderAndBodySize)
return true;
}
return false;
}
bool HttpStreamParser::SendRequestBuffersEmpty() {
return request_headers_ == nullptr && request_body_send_buf_ == nullptr &&
request_body_read_buf_ == nullptr;
}
}