mirror of
https://github.com/vlang/v.git
synced 2023-08-10 21:13:21 +03:00
186 lines
5.5 KiB
V
186 lines
5.5 KiB
V
[manualfree]
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module websocket
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import encoding.base64
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import strings
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// handshake manages the websocket handshake process
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fn (mut ws Client) handshake() ? {
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nonce := get_nonce(ws.nonce_size)
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seckey := base64.encode_str(nonce)
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mut sb := strings.new_builder(1024)
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defer {
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unsafe { sb.free() }
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}
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sb.write_string('GET ')
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sb.write_string(ws.uri.resource)
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sb.write_string(ws.uri.querystring)
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sb.write_string(' HTTP/1.1\r\nHost: ')
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sb.write_string(ws.uri.hostname)
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sb.write_string(':')
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sb.write_string(ws.uri.port)
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sb.write_string('\r\nUpgrade: websocket\r\nConnection: Upgrade\r\n')
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sb.write_string('Sec-WebSocket-Key: ')
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sb.write_string(seckey)
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sb.write_string('\r\nSec-WebSocket-Version: 13')
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for key in ws.header.keys() {
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val := ws.header.values_str(key).join(',')
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sb.write_string('\r\n$key:$val')
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}
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sb.write_string('\r\n\r\n')
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handshake := sb.str()
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defer {
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unsafe { handshake.free() }
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}
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handshake_bytes := handshake.bytes()
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ws.debug_log('sending handshake: $handshake')
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ws.socket_write(handshake_bytes) ?
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ws.read_handshake(seckey) ?
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unsafe { handshake_bytes.free() }
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}
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// handle_server_handshake manages websocket server handshake process
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fn (mut s Server) handle_server_handshake(mut c Client) ?(string, &ServerClient) {
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msg := c.read_handshake_str() ?
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handshake_response, client := s.parse_client_handshake(msg, mut c) ?
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unsafe { msg.free() }
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return handshake_response, client
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}
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// parse_client_handshake parses result from handshake process
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fn (mut s Server) parse_client_handshake(client_handshake string, mut c Client) ?(string, &ServerClient) {
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s.logger.debug('server-> client handshake:\n$client_handshake')
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lines := client_handshake.split_into_lines()
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get_tokens := lines[0].split(' ')
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if get_tokens.len < 3 {
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return error_with_code('unexpected get operation, $get_tokens', 1)
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}
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if get_tokens[0].trim_space() != 'GET' {
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return error_with_code("unexpected request '${get_tokens[0]}', expected 'GET'",
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2)
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}
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if get_tokens[2].trim_space() != 'HTTP/1.1' {
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return error_with_code("unexpected request $get_tokens, expected 'HTTP/1.1'",
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3)
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}
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mut seckey := ''
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mut flags := []Flag{}
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mut key := ''
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for i in 1 .. lines.len {
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if lines[i].len <= 0 || lines[i] == '\r\n' {
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continue
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}
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keys := lines[i].split(':')
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match keys[0] {
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'Upgrade', 'upgrade' {
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flags << .has_upgrade
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}
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'Connection', 'connection' {
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flags << .has_connection
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}
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'Sec-WebSocket-Key', 'sec-websocket-key' {
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key = keys[1].trim_space()
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s.logger.debug('server-> got key: $key')
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seckey = create_key_challenge_response(key) ?
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s.logger.debug('server-> challenge: $seckey, response: ${keys[1]}')
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flags << .has_accept
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}
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else {
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// we ignore other headers like protocol for now
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}
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}
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unsafe { keys.free() }
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}
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if flags.len < 3 {
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return error_with_code('invalid client handshake, $client_handshake', 4)
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}
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server_handshake := 'HTTP/1.1 101 Switching Protocols\r\nUpgrade: websocket\r\nConnection: Upgrade\r\nSec-WebSocket-Accept: $seckey\r\n\r\n'
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server_client := &ServerClient{
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resource_name: get_tokens[1]
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client_key: key
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client: c
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server: s
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}
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unsafe {
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lines.free()
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flags.free()
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get_tokens.free()
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seckey.free()
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key.free()
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}
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return server_handshake, server_client
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}
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// read_handshake_str returns the handshake response
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fn (mut ws Client) read_handshake_str() ?string {
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mut total_bytes_read := 0
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mut msg := [1024]byte{}
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mut buffer := [1]byte{}
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for total_bytes_read < 1024 {
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bytes_read := ws.socket_read_ptr(byteptr(&buffer), 1) ?
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if bytes_read == 0 {
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return error_with_code('unexpected no response from handshake', 5)
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}
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msg[total_bytes_read] = buffer[0]
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total_bytes_read++
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if total_bytes_read > 5 && msg[total_bytes_read - 1] == `\n`
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&& msg[total_bytes_read - 2] == `\r` && msg[total_bytes_read - 3] == `\n`
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&& msg[total_bytes_read - 4] == `\r` {
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break
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}
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}
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res := msg[..total_bytes_read].bytestr()
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return res
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}
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// read_handshake reads the handshake result and check if valid
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fn (mut ws Client) read_handshake(seckey string) ? {
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mut msg := ws.read_handshake_str() ?
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ws.check_handshake_response(msg, seckey) ?
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unsafe { msg.free() }
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}
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// check_handshake_response checks the response from handshake and returns
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// the response and secure key provided by the websocket client
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fn (mut ws Client) check_handshake_response(handshake_response string, seckey string) ? {
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ws.debug_log('handshake response:\n$handshake_response')
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lines := handshake_response.split_into_lines()
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header := lines[0]
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if !header.starts_with('HTTP/1.1 101') && !header.starts_with('HTTP/1.0 101') {
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return error_with_code('handshake_handler: invalid HTTP status response code, $header',
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6)
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}
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for i in 1 .. lines.len {
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if lines[i].len <= 0 || lines[i] == '\r\n' {
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continue
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}
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keys := lines[i].split(':')
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match keys[0] {
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'Upgrade', 'upgrade' {
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ws.flags << .has_upgrade
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}
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'Connection', 'connection' {
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ws.flags << .has_connection
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}
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'Sec-WebSocket-Accept', 'sec-websocket-accept' {
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ws.debug_log('seckey: $seckey')
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challenge := create_key_challenge_response(seckey) ?
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ws.debug_log('challenge: $challenge, response: ${keys[1]}')
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if keys[1].trim_space() != challenge {
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return error_with_code('handshake_handler: Sec-WebSocket-Accept header does not match computed sha1/base64 response.',
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7)
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}
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ws.flags << .has_accept
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unsafe { challenge.free() }
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}
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else {}
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}
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unsafe { keys.free() }
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}
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unsafe { lines.free() }
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if ws.flags.len < 3 {
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ws.close(1002, 'invalid websocket HTTP headers') ?
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return error_with_code('invalid websocket HTTP headers', 8)
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}
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}
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