This source file includes following definitions.
- Trim
- has_content
- declared_content_length_
- ProcessChunk
- ShiftLine
- ParseRequest
- ParseHeaders
- ParseContent
- GetRequest
- GetMethodType
#include "net/test/embedded_test_server/http_request.h"
#include <algorithm>
#include "base/logging.h"
#include "base/strings/string_util.h"
#include "base/strings/string_number_conversions.h"
#include "base/strings/string_split.h"
namespace net {
namespace test_server {
namespace {
size_t kRequestSizeLimit = 64 * 1024 * 1024;
std::string Trim(const std::string& value) {
std::string result;
base::TrimString(value, " \t", &result);
return result;
}
}
HttpRequest::HttpRequest() : method(METHOD_UNKNOWN),
has_content(false) {
}
HttpRequest::~HttpRequest() {
}
HttpRequestParser::HttpRequestParser()
: http_request_(new HttpRequest()),
buffer_position_(0),
state_(STATE_HEADERS),
declared_content_length_(0) {
}
HttpRequestParser::~HttpRequestParser() {
}
void HttpRequestParser::ProcessChunk(const base::StringPiece& data) {
data.AppendToString(&buffer_);
DCHECK_LE(buffer_.size() + data.size(), kRequestSizeLimit) <<
"The HTTP request is too large.";
}
std::string HttpRequestParser::ShiftLine() {
size_t eoln_position = buffer_.find("\r\n", buffer_position_);
DCHECK_NE(std::string::npos, eoln_position);
const int line_length = eoln_position - buffer_position_;
std::string result = buffer_.substr(buffer_position_, line_length);
buffer_position_ += line_length + 2;
return result;
}
HttpRequestParser::ParseResult HttpRequestParser::ParseRequest() {
DCHECK_NE(STATE_ACCEPTED, state_);
if (state_ == STATE_HEADERS) {
if (ParseHeaders() == ACCEPTED)
return ACCEPTED;
}
if (state_ == STATE_CONTENT) {
if (ParseContent() == ACCEPTED)
return ACCEPTED;
}
return WAITING;
}
HttpRequestParser::ParseResult HttpRequestParser::ParseHeaders() {
if (buffer_.find("\r\n\r\n", buffer_position_) == std::string::npos)
return WAITING;
{
const std::string header_line = ShiftLine();
std::vector<std::string> header_line_tokens;
base::SplitString(header_line, ' ', &header_line_tokens);
DCHECK_EQ(3u, header_line_tokens.size());
http_request_->method = GetMethodType(StringToLowerASCII(
header_line_tokens[0]));
http_request_->relative_url = header_line_tokens[1];
const std::string protocol = StringToLowerASCII(header_line_tokens[2]);
CHECK(protocol == "http/1.0" || protocol == "http/1.1") <<
"Protocol not supported: " << protocol;
}
{
std::string header_name;
while (true) {
std::string header_line = ShiftLine();
if (header_line.empty())
break;
if (header_line[0] == ' ' || header_line[0] == '\t') {
std::string header_value =
Trim(header_line.substr(1, header_line.size() - 1));
http_request_->headers[header_name] += " " + header_value;
} else {
size_t delimiter_pos = header_line.find(":");
DCHECK_NE(std::string::npos, delimiter_pos) << "Syntax error.";
header_name = Trim(header_line.substr(0, delimiter_pos));
std::string header_value = Trim(header_line.substr(
delimiter_pos + 1,
header_line.size() - delimiter_pos - 1));
http_request_->headers[header_name] = header_value;
}
}
}
declared_content_length_ = 0;
if (http_request_->headers.count("Content-Length") > 0) {
http_request_->has_content = true;
const bool success = base::StringToSizeT(
http_request_->headers["Content-Length"],
&declared_content_length_);
DCHECK(success) << "Malformed Content-Length header's value.";
}
if (declared_content_length_ == 0) {
state_ = STATE_ACCEPTED;
return ACCEPTED;
}
state_ = STATE_CONTENT;
return WAITING;
}
HttpRequestParser::ParseResult HttpRequestParser::ParseContent() {
const size_t available_bytes = buffer_.size() - buffer_position_;
const size_t fetch_bytes = std::min(
available_bytes,
declared_content_length_ - http_request_->content.size());
http_request_->content.append(buffer_.data() + buffer_position_,
fetch_bytes);
buffer_position_ += fetch_bytes;
if (declared_content_length_ == http_request_->content.size()) {
state_ = STATE_ACCEPTED;
return ACCEPTED;
}
state_ = STATE_CONTENT;
return WAITING;
}
scoped_ptr<HttpRequest> HttpRequestParser::GetRequest() {
DCHECK_EQ(STATE_ACCEPTED, state_);
scoped_ptr<HttpRequest> result = http_request_.Pass();
state_ = STATE_HEADERS;
http_request_.reset(new HttpRequest());
buffer_.clear();
buffer_position_ = 0;
declared_content_length_ = 0;
return result.Pass();
}
HttpMethod HttpRequestParser::GetMethodType(const std::string& token) const {
if (token == "get") {
return METHOD_GET;
} else if (token == "head") {
return METHOD_HEAD;
} else if (token == "post") {
return METHOD_POST;
} else if (token == "put") {
return METHOD_PUT;
} else if (token == "delete") {
return METHOD_DELETE;
} else if (token == "patch") {
return METHOD_PATCH;
}
NOTREACHED() << "Method not implemented: " << token;
return METHOD_UNKNOWN;
}
}
}