mirror of
https://github.com/Relintai/pandemonium_engine.git
synced 2024-12-30 07:37:16 +01:00
552 lines
14 KiB
C++
552 lines
14 KiB
C++
#include "http_parser.h"
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#include "../http/web_server_request.h"
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#include "./http_parser/http_parser.h"
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#include "simple_web_server_request.h"
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Ref<SimpleWebServerRequest> HTTPParser::get_next_request() {
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ERR_FAIL_COND_V(_requests.size() == 0, Ref<SimpleWebServerRequest>());
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Ref<SimpleWebServerRequest> rn = _requests[0];
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_requests.remove(0);
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return rn;
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}
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int HTTPParser::get_request_count() const {
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return _requests.size();
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}
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bool HTTPParser::is_ready() const {
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return _is_ready;
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}
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bool HTTPParser::is_finished() const {
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return !_request.is_valid();
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}
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void HTTPParser::reset() {
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_partial_data = "";
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_is_ready = false;
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_content_type = REQUEST_CONTENT_URLENCODED;
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}
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//returns the index where processing was ended -> start of the next query if != data_length
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int HTTPParser::read_from_buffer(const char *p_buffer, const int p_data_length) {
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int parsed_bytes = 0;
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parsed_bytes = static_cast<int>(http_parser_execute(parser, settings, p_buffer, p_data_length));
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return parsed_bytes;
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}
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HTTPParser::HTTPParser() {
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_is_ready = false;
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_content_type = REQUEST_CONTENT_URLENCODED;
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_in_multipart_boundary = false;
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_in_boundary_header = false;
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_multipart_form_is_file = false;
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settings = memnew(http_parser_settings);
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settings->on_message_begin = _on_message_begin_cb;
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settings->on_url = _on_url_cb;
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settings->on_status = _on_status_cb;
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settings->on_header_field = _on_header_field_cb;
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settings->on_header_value = _on_header_value_cb;
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settings->on_headers_complete = _on_headers_complete_cb;
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settings->on_body = _on_body_cb;
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settings->on_message_complete = _on_message_complete_cb;
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settings->on_chunk_header = _on_chunk_header_cb;
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settings->on_chunk_complete = _on_chunk_complete_cb;
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//parser = malloc(sizeof(http_parser));
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parser = memnew(http_parser);
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http_parser_init(parser, HTTP_REQUEST);
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parser->data = this;
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}
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HTTPParser::~HTTPParser() {
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memdelete(parser);
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memdelete(settings);
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parser = nullptr;
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}
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void HTTPParser::_bind_methods() {
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}
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String HTTPParser::chr_len_to_str(const char *at, size_t length) {
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String ret;
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ret.resize(length + 1);
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CharType *p = ret.ptrw();
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for (size_t i = 0; i <= length; ++i) {
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p[i] = at[i];
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}
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return ret;
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}
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void HTTPParser::HTTPParser::process_multipart_data() {
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int iter = 0;
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//process one element per loop
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while (true) {
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//first boundary -> ignore, with everything before it
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if (!_in_multipart_boundary) {
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int boundary_index = _partial_data.find(_multipart_boundary);
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if (boundary_index == -1) {
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return;
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}
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boundary_index += _multipart_boundary.size();
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_partial_data = _partial_data.substr(boundary_index);
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_in_multipart_boundary = true;
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_in_boundary_header = true;
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continue;
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}
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//find the first \n\n -> process boundary_header
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//cut it out from the string.
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if (_in_boundary_header) {
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int header_end_index = _partial_data.find("\r\n\r\n");
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if (header_end_index != -1) {
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String header = _partial_data.substr_index(0, header_end_index);
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_partial_data = _partial_data.substr(header_end_index + 4);
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header = header.strip_edges();
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//ERR_PRINT("HEADER");
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//ERR_PRINT(header);
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_process_multipart_header(header);
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_in_boundary_header = false;
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continue;
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}
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//Boundary header has not yet fully arrived, return
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return;
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}
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//Multipart body
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int boundary_index = _partial_data.find(_multipart_boundary);
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if (boundary_index == -1) {
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//TODO
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//if file-> append everything to the HTTPTempFile, except the last boundary.size() - 1 characters from the string.
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//should probably only happen after a while to save on memory use like maybe a meg or two (should be configurable)
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// Should probably also be configurable whether it happens or not at all
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return;
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}
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//ERR_PRINT("BODY");
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String data = _partial_data.substr_index(0, boundary_index - 4); //to strip the 2 \r\n from before the boundary
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//ERR_PRINT(data);
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if (_multipart_form_is_file) {
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if (data == "") {
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_in_boundary_header = true;
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continue;
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}
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CharString cs = data.ascii();
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PoolByteArray file_data;
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file_data.resize(cs.length());
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PoolByteArray::Write w = file_data.write();
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for (int i = 0; i < cs.length(); i++) {
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w[i] = cs[i];
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}
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w.release();
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_request->add_file(_multipart_form_name, _multipart_form_filename, file_data);
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} else {
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_request->add_parameter(_multipart_form_name, data);
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}
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boundary_index += _multipart_boundary.size();
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_partial_data = _partial_data.substr(boundary_index);
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if (_partial_data.begins_with("--")) {
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//done
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return;
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}
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_in_boundary_header = true;
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//Safety for now
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++iter;
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ERR_FAIL_COND(iter == 10000);
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}
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}
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void HTTPParser::_process_multipart_header(const String &header) {
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_multipart_form_name = "";
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_multipart_form_filename = "";
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_multipart_form_content_type = "";
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_multipart_form_is_file = false;
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int nlc = header.get_slice_count("\r\n");
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for (int i = 0; i < nlc; ++i) {
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String l = header.get_slice("\r\n", i);
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int sc = l.get_slice_count(":");
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if (sc != 2) {
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continue;
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}
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String key = l.get_slicec(':', 0);
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String val = l.get_slicec(':', 1);
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if (key == "Content-Disposition") {
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int c = val.get_slice_count(";");
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for (int j = 0; j < c; ++j) {
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String vs = val.get_slicec(';', j).strip_edges();
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if (vs.get_slice_count("=") != 2) {
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continue;
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}
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String kk = vs.get_slicec('=', 0);
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if (kk == "name") {
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_multipart_form_name = vs.get_slicec('=', 1);
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if (_multipart_form_name.length() >= 2 && _multipart_form_name.begins_with("\"") && _multipart_form_name.ends_with("\"")) {
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_multipart_form_name.remove(0);
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_multipart_form_name.remove(_multipart_form_name.size() - 1);
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}
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} else if (kk == "filename") {
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_multipart_form_filename = vs.get_slicec('=', 1);
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_multipart_form_is_file = true;
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if (_multipart_form_name.length() >= 2 && _multipart_form_name.begins_with("\"") && _multipart_form_name.ends_with("\"")) {
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_multipart_form_name.remove(0);
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_multipart_form_name.remove(_multipart_form_name.size() - 1);
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}
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}
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}
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} else if (key == "Content-Type") {
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_multipart_form_content_type = val;
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} else {
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//Shouldn't happen, should probably close connection
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}
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}
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}
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void HTTPParser::process_urlenc_data() {
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if (_partial_data == "") {
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return;
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}
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Vector<String> params = _partial_data.split("&", false);
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for (int i = 0; i < params.size(); ++i) {
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String p = params[i];
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//Ignore if it has no, or more than one =
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const CharType *c = p.ptr();
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int eqc = 0;
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for (int j = 0; j < p.length(); ++j) {
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if (c[j] == '=') {
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++eqc;
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if (eqc > 1) {
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break;
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}
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}
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}
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if (eqc > 1 || eqc == 0) {
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continue;
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}
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String key = p.get_slicec('=', 0).replace("+", " ").percent_decode();
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String value = p.get_slicec('=', 1).replace("+", " ").percent_decode();
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_request->add_parameter(key, value);
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}
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}
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#define MESSAGE_DEBUG 0
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int HTTPParser::on_message_begin() {
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if (_request.is_valid()) {
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ERR_PRINT("Request was valid!");
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}
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_in_header = true;
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_content_type = REQUEST_CONTENT_URLENCODED;
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_multipart_boundary = "";
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_in_multipart_boundary = false;
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_in_multipart_boundary = false;
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_in_boundary_header = false;
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_multipart_form_is_file = false;
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_request.instance();
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switch (parser->method) {
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case http_method::HTTP_DELETE:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_DELETE);
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break;
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case http_method::HTTP_GET:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_GET);
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break;
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case http_method::HTTP_HEAD:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_HEAD);
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break;
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case http_method::HTTP_POST:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_POST);
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break;
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case http_method::HTTP_PUT:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_PUT);
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break;
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case http_method::HTTP_OPTIONS:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_OPTIONS);
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break;
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case http_method::HTTP_PATCH:
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_request->set_method(HTTPServerEnums::HTTP_METHOD_PATCH);
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break;
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default:
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//TODO close the connection
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_request->set_method(HTTPServerEnums::HTTP_METHOD_INVALID);
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break;
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}
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#if MESSAGE_DEBUG
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ERR_PRINT("begin");
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#endif
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return 0;
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}
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int HTTPParser::on_url(const char *at, size_t length) {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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String s = chr_len_to_str(at, length);
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#if MESSAGE_DEBUG
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ERR_PRINT("url " + s);
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#endif
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_request->set_parser_path(s);
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return 0;
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}
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int HTTPParser::on_status(const char *at, size_t length) {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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String s = chr_len_to_str(at, length);
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#if MESSAGE_DEBUG
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ERR_PRINT("status " + s);
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#endif
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return 0;
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}
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int HTTPParser::on_header_field(const char *at, size_t length) {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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String s = chr_len_to_str(at, length);
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#if MESSAGE_DEBUG
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ERR_PRINT("header_field " + s);
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#endif
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_queued_header_field = s;
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return 0;
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}
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int HTTPParser::on_header_value(const char *at, size_t length) {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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String s = chr_len_to_str(at, length);
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#if MESSAGE_DEBUG
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ERR_PRINT("header_val " + s);
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#endif
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_request->add_parameter(_queued_header_field, s);
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if (_queued_header_field == "Host") {
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_request->set_host(s);
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} else if (_queued_header_field == "Content-Type") {
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// It can be:
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// application/x-www-form-urlencoded (default) -> ignore, as its the default
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// text/plain -> useful only for debugging "They are not reliably interpretable by computer"
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// multipart/form-data
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if (s.begins_with("multipart/form-data")) {
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_content_type = REQUEST_CONTENT_MULTIPART_FORM_DATA;
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int bs = s.find("boundary=");
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if (bs == -1) {
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//Error! boundary must exist TODO set an error variable and close the connection
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return 0;
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}
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bs += 9; //skip ahead to the end of "boundary="
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_multipart_boundary = s.substr(bs);
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_multipart_boundary = _multipart_boundary.strip_edges();
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//TODO can be inside quoted
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//Append -- if it doesn't have it already
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//It shouldn't be longer that 70 chars
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//The CRLF preceeding could also be appended for simpler logic
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if (_multipart_boundary == "") {
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//Error! TODO set an error variable and close the connection
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}
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} else if (s.begins_with("text/plain")) {
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_content_type = REQUEST_CONTENT_TEXT_PLAIN;
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//maybe just close the connection?
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}
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} else if (_queued_header_field == "Cookie") {
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Vector<String> cookies = s.split(";");
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for (int i = 0; i < cookies.size(); ++i) {
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String c = cookies[i].strip_edges();
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if (c.get_slice_count("=") != 2) {
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continue;
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}
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String key = c.get_slice("=", 0);
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String val = c.get_slice("=", 1);
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_request->add_cookie_data(key, val);
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}
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}
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//TODO close connection on chunked connection (for now)
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return 0;
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}
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int HTTPParser::on_headers_complete() {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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#if MESSAGE_DEBUG
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ERR_PRINT("headers_complete");
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#endif
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//Check content length, and send error if bigger than server limit (add)
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_in_header = false;
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_partial_data = "";
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return 0;
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}
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int HTTPParser::on_body(const char *at, size_t length) {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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String s = chr_len_to_str(at, length);
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#if MESSAGE_DEBUG
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ERR_PRINT("on_body " + s);
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#endif
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_partial_data += s;
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if (_content_type == REQUEST_CONTENT_MULTIPART_FORM_DATA) {
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process_multipart_data();
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}
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return 0;
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}
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int HTTPParser::on_message_complete() {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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#if MESSAGE_DEBUG
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ERR_PRINT("msg_copmlete");
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#endif
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//if (_content_type == REQUEST_CONTENT_MULTIPART_FORM_DATA) {
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// process_multipart_data();
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//} else
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if (_content_type == REQUEST_CONTENT_URLENCODED) {
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process_urlenc_data();
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}
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_requests.push_back(_request);
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_request.unref();
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return 0;
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}
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int HTTPParser::on_chunk_header() {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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#if MESSAGE_DEBUG
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ERR_PRINT("chunk_header");
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#endif
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return 0;
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}
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int HTTPParser::on_chunk_complete() {
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ERR_FAIL_COND_V(!_request.is_valid(), 0);
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#if MESSAGE_DEBUG
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ERR_PRINT("chunk_complete");
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#endif
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return 0;
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}
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int HTTPParser::_on_message_begin_cb(http_parser *parser) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_message_begin();
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}
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int HTTPParser::_on_url_cb(http_parser *parser, const char *at, size_t length) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_url(at, length);
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}
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int HTTPParser::_on_status_cb(http_parser *parser, const char *at, size_t length) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_status(at, length);
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}
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int HTTPParser::_on_header_field_cb(http_parser *parser, const char *at, size_t length) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_header_field(at, length);
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}
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int HTTPParser::_on_header_value_cb(http_parser *parser, const char *at, size_t length) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_header_value(at, length);
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}
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int HTTPParser::_on_headers_complete_cb(http_parser *parser) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_headers_complete();
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}
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int HTTPParser::_on_body_cb(http_parser *parser, const char *at, size_t length) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_body(at, length);
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}
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int HTTPParser::_on_message_complete_cb(http_parser *parser) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_message_complete();
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}
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int HTTPParser::_on_chunk_header_cb(http_parser *parser) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_chunk_header();
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}
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int HTTPParser::_on_chunk_complete_cb(http_parser *parser) {
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HTTPParser *p = reinterpret_cast<HTTPParser *>(parser->data);
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return p->on_chunk_complete();
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}
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