mirror of https://github.com/tidwall/tile38.git
750 lines
14 KiB
Go
750 lines
14 KiB
Go
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// Copyright 2012-2018 The NATS Authors
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package server
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import (
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"fmt"
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)
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type pubArg struct {
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subject []byte
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reply []byte
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sid []byte
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szb []byte
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size int
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}
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type parseState struct {
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state int
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as int
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drop int
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pa pubArg
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argBuf []byte
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msgBuf []byte
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scratch [MAX_CONTROL_LINE_SIZE]byte
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}
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// Parser constants
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const (
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OP_START = iota
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OP_PLUS
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OP_PLUS_O
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OP_PLUS_OK
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OP_MINUS
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OP_MINUS_E
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OP_MINUS_ER
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OP_MINUS_ERR
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OP_MINUS_ERR_SPC
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MINUS_ERR_ARG
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OP_C
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OP_CO
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OP_CON
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OP_CONN
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OP_CONNE
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OP_CONNEC
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OP_CONNECT
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CONNECT_ARG
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OP_P
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OP_PU
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OP_PUB
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OP_PUB_SPC
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PUB_ARG
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OP_PI
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OP_PIN
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OP_PING
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OP_PO
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OP_PON
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OP_PONG
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MSG_PAYLOAD
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MSG_END
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OP_S
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OP_SU
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OP_SUB
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OP_SUB_SPC
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SUB_ARG
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OP_U
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OP_UN
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OP_UNS
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OP_UNSU
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OP_UNSUB
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OP_UNSUB_SPC
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UNSUB_ARG
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OP_M
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OP_MS
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OP_MSG
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OP_MSG_SPC
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MSG_ARG
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OP_I
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OP_IN
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OP_INF
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OP_INFO
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INFO_ARG
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)
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func (c *client) parse(buf []byte) error {
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var i int
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var b byte
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mcl := MAX_CONTROL_LINE_SIZE
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if c.srv != nil && c.srv.getOpts() != nil {
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mcl = c.srv.getOpts().MaxControlLine
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}
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// snapshot this, and reset when we receive a
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// proper CONNECT if needed.
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authSet := c.isAuthTimerSet()
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// Move to loop instead of range syntax to allow jumping of i
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for i = 0; i < len(buf); i++ {
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b = buf[i]
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switch c.state {
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case OP_START:
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if b != 'C' && b != 'c' && authSet {
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goto authErr
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}
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switch b {
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case 'P', 'p':
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c.state = OP_P
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case 'S', 's':
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c.state = OP_S
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case 'U', 'u':
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c.state = OP_U
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case 'M', 'm':
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if c.typ == CLIENT {
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goto parseErr
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} else {
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c.state = OP_M
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}
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case 'C', 'c':
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c.state = OP_C
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case 'I', 'i':
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c.state = OP_I
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case '+':
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c.state = OP_PLUS
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case '-':
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c.state = OP_MINUS
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default:
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goto parseErr
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}
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case OP_P:
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switch b {
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case 'U', 'u':
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c.state = OP_PU
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case 'I', 'i':
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c.state = OP_PI
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case 'O', 'o':
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c.state = OP_PO
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default:
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goto parseErr
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}
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case OP_PU:
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switch b {
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case 'B', 'b':
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c.state = OP_PUB
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default:
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goto parseErr
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}
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case OP_PUB:
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switch b {
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case ' ', '\t':
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c.state = OP_PUB_SPC
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default:
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goto parseErr
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}
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case OP_PUB_SPC:
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switch b {
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case ' ', '\t':
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continue
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default:
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c.state = PUB_ARG
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c.as = i
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}
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case PUB_ARG:
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switch b {
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case '\r':
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c.drop = 1
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case '\n':
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var arg []byte
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if c.argBuf != nil {
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arg = c.argBuf
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} else {
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arg = buf[c.as : i-c.drop]
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}
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if err := c.processPub(arg); err != nil {
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return err
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}
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c.drop, c.as, c.state = OP_START, i+1, MSG_PAYLOAD
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// If we don't have a saved buffer then jump ahead with
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// the index. If this overruns what is left we fall out
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// and process split buffer.
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if c.msgBuf == nil {
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i = c.as + c.pa.size - LEN_CR_LF
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}
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default:
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if c.argBuf != nil {
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c.argBuf = append(c.argBuf, b)
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}
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}
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case MSG_PAYLOAD:
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if c.msgBuf != nil {
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// copy as much as we can to the buffer and skip ahead.
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toCopy := c.pa.size - len(c.msgBuf)
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avail := len(buf) - i
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if avail < toCopy {
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toCopy = avail
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}
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if toCopy > 0 {
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start := len(c.msgBuf)
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// This is needed for copy to work.
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c.msgBuf = c.msgBuf[:start+toCopy]
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copy(c.msgBuf[start:], buf[i:i+toCopy])
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// Update our index
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i = (i + toCopy) - 1
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} else {
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// Fall back to append if needed.
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c.msgBuf = append(c.msgBuf, b)
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}
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if len(c.msgBuf) >= c.pa.size {
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c.state = MSG_END
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}
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} else if i-c.as >= c.pa.size {
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c.state = MSG_END
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}
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case MSG_END:
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switch b {
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case '\n':
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if c.msgBuf != nil {
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c.msgBuf = append(c.msgBuf, b)
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} else {
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c.msgBuf = buf[c.as : i+1]
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}
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// strict check for proto
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if len(c.msgBuf) != c.pa.size+LEN_CR_LF {
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goto parseErr
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}
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c.processMsg(c.msgBuf)
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c.argBuf, c.msgBuf = nil, nil
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c.drop, c.as, c.state = 0, i+1, OP_START
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default:
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if c.msgBuf != nil {
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c.msgBuf = append(c.msgBuf, b)
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}
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continue
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}
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case OP_S:
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switch b {
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case 'U', 'u':
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c.state = OP_SU
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default:
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goto parseErr
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}
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case OP_SU:
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switch b {
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case 'B', 'b':
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c.state = OP_SUB
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default:
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goto parseErr
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}
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case OP_SUB:
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switch b {
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case ' ', '\t':
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c.state = OP_SUB_SPC
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default:
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goto parseErr
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}
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case OP_SUB_SPC:
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switch b {
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case ' ', '\t':
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continue
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default:
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c.state = SUB_ARG
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c.as = i
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}
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case SUB_ARG:
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switch b {
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case '\r':
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c.drop = 1
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case '\n':
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var arg []byte
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if c.argBuf != nil {
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arg = c.argBuf
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c.argBuf = nil
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} else {
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arg = buf[c.as : i-c.drop]
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}
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if err := c.processSub(arg); err != nil {
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return err
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}
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c.drop, c.as, c.state = 0, i+1, OP_START
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default:
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if c.argBuf != nil {
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c.argBuf = append(c.argBuf, b)
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}
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}
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case OP_U:
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switch b {
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case 'N', 'n':
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c.state = OP_UN
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default:
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goto parseErr
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}
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case OP_UN:
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switch b {
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case 'S', 's':
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c.state = OP_UNS
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default:
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goto parseErr
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}
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case OP_UNS:
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switch b {
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case 'U', 'u':
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c.state = OP_UNSU
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default:
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goto parseErr
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}
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case OP_UNSU:
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switch b {
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case 'B', 'b':
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c.state = OP_UNSUB
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default:
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goto parseErr
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}
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case OP_UNSUB:
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switch b {
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case ' ', '\t':
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c.state = OP_UNSUB_SPC
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default:
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goto parseErr
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}
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case OP_UNSUB_SPC:
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switch b {
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case ' ', '\t':
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continue
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default:
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c.state = UNSUB_ARG
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c.as = i
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}
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case UNSUB_ARG:
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switch b {
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case '\r':
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c.drop = 1
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case '\n':
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var arg []byte
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if c.argBuf != nil {
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arg = c.argBuf
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c.argBuf = nil
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} else {
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arg = buf[c.as : i-c.drop]
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}
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if err := c.processUnsub(arg); err != nil {
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return err
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}
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c.drop, c.as, c.state = 0, i+1, OP_START
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default:
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if c.argBuf != nil {
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c.argBuf = append(c.argBuf, b)
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}
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}
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case OP_PI:
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switch b {
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case 'N', 'n':
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c.state = OP_PIN
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default:
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goto parseErr
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}
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case OP_PIN:
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switch b {
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case 'G', 'g':
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c.state = OP_PING
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default:
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goto parseErr
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}
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case OP_PING:
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switch b {
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case '\n':
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c.processPing()
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c.drop, c.state = 0, OP_START
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}
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case OP_PO:
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switch b {
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case 'N', 'n':
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c.state = OP_PON
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default:
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goto parseErr
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}
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case OP_PON:
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switch b {
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case 'G', 'g':
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c.state = OP_PONG
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default:
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goto parseErr
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}
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case OP_PONG:
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switch b {
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case '\n':
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c.processPong()
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c.drop, c.state = 0, OP_START
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}
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case OP_C:
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switch b {
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case 'O', 'o':
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c.state = OP_CO
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default:
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goto parseErr
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}
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case OP_CO:
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switch b {
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case 'N', 'n':
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c.state = OP_CON
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default:
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goto parseErr
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}
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case OP_CON:
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switch b {
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case 'N', 'n':
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c.state = OP_CONN
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default:
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goto parseErr
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}
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case OP_CONN:
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switch b {
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case 'E', 'e':
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c.state = OP_CONNE
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default:
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goto parseErr
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}
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case OP_CONNE:
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switch b {
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case 'C', 'c':
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c.state = OP_CONNEC
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default:
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goto parseErr
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}
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case OP_CONNEC:
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switch b {
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case 'T', 't':
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c.state = OP_CONNECT
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default:
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goto parseErr
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}
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case OP_CONNECT:
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switch b {
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case ' ', '\t':
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continue
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default:
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c.state = CONNECT_ARG
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c.as = i
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}
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case CONNECT_ARG:
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switch b {
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case '\r':
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c.drop = 1
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case '\n':
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var arg []byte
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if c.argBuf != nil {
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arg = c.argBuf
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c.argBuf = nil
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} else {
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arg = buf[c.as : i-c.drop]
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}
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if err := c.processConnect(arg); err != nil {
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return err
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}
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c.drop, c.state = 0, OP_START
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// Reset notion on authSet
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authSet = c.isAuthTimerSet()
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default:
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if c.argBuf != nil {
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c.argBuf = append(c.argBuf, b)
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}
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}
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case OP_M:
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switch b {
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case 'S', 's':
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c.state = OP_MS
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default:
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goto parseErr
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}
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case OP_MS:
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switch b {
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case 'G', 'g':
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c.state = OP_MSG
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default:
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goto parseErr
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}
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case OP_MSG:
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switch b {
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case ' ', '\t':
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c.state = OP_MSG_SPC
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default:
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goto parseErr
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}
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case OP_MSG_SPC:
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switch b {
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case ' ', '\t':
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continue
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default:
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c.state = MSG_ARG
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c.as = i
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}
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case MSG_ARG:
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|
switch b {
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|
case '\r':
|
||
|
c.drop = 1
|
||
|
case '\n':
|
||
|
var arg []byte
|
||
|
if c.argBuf != nil {
|
||
|
arg = c.argBuf
|
||
|
} else {
|
||
|
arg = buf[c.as : i-c.drop]
|
||
|
}
|
||
|
if err := c.processMsgArgs(arg); err != nil {
|
||
|
return err
|
||
|
}
|
||
|
c.drop, c.as, c.state = 0, i+1, MSG_PAYLOAD
|
||
|
|
||
|
// jump ahead with the index. If this overruns
|
||
|
// what is left we fall out and process split
|
||
|
// buffer.
|
||
|
i = c.as + c.pa.size - 1
|
||
|
default:
|
||
|
if c.argBuf != nil {
|
||
|
c.argBuf = append(c.argBuf, b)
|
||
|
}
|
||
|
}
|
||
|
case OP_I:
|
||
|
switch b {
|
||
|
case 'N', 'n':
|
||
|
c.state = OP_IN
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_IN:
|
||
|
switch b {
|
||
|
case 'F', 'f':
|
||
|
c.state = OP_INF
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_INF:
|
||
|
switch b {
|
||
|
case 'O', 'o':
|
||
|
c.state = OP_INFO
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_INFO:
|
||
|
switch b {
|
||
|
case ' ', '\t':
|
||
|
continue
|
||
|
default:
|
||
|
c.state = INFO_ARG
|
||
|
c.as = i
|
||
|
}
|
||
|
case INFO_ARG:
|
||
|
switch b {
|
||
|
case '\r':
|
||
|
c.drop = 1
|
||
|
case '\n':
|
||
|
var arg []byte
|
||
|
if c.argBuf != nil {
|
||
|
arg = c.argBuf
|
||
|
c.argBuf = nil
|
||
|
} else {
|
||
|
arg = buf[c.as : i-c.drop]
|
||
|
}
|
||
|
if err := c.processInfo(arg); err != nil {
|
||
|
return err
|
||
|
}
|
||
|
c.drop, c.as, c.state = 0, i+1, OP_START
|
||
|
default:
|
||
|
if c.argBuf != nil {
|
||
|
c.argBuf = append(c.argBuf, b)
|
||
|
}
|
||
|
}
|
||
|
case OP_PLUS:
|
||
|
switch b {
|
||
|
case 'O', 'o':
|
||
|
c.state = OP_PLUS_O
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_PLUS_O:
|
||
|
switch b {
|
||
|
case 'K', 'k':
|
||
|
c.state = OP_PLUS_OK
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_PLUS_OK:
|
||
|
switch b {
|
||
|
case '\n':
|
||
|
c.drop, c.state = 0, OP_START
|
||
|
}
|
||
|
case OP_MINUS:
|
||
|
switch b {
|
||
|
case 'E', 'e':
|
||
|
c.state = OP_MINUS_E
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_MINUS_E:
|
||
|
switch b {
|
||
|
case 'R', 'r':
|
||
|
c.state = OP_MINUS_ER
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_MINUS_ER:
|
||
|
switch b {
|
||
|
case 'R', 'r':
|
||
|
c.state = OP_MINUS_ERR
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_MINUS_ERR:
|
||
|
switch b {
|
||
|
case ' ', '\t':
|
||
|
c.state = OP_MINUS_ERR_SPC
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
case OP_MINUS_ERR_SPC:
|
||
|
switch b {
|
||
|
case ' ', '\t':
|
||
|
continue
|
||
|
default:
|
||
|
c.state = MINUS_ERR_ARG
|
||
|
c.as = i
|
||
|
}
|
||
|
case MINUS_ERR_ARG:
|
||
|
switch b {
|
||
|
case '\r':
|
||
|
c.drop = 1
|
||
|
case '\n':
|
||
|
var arg []byte
|
||
|
if c.argBuf != nil {
|
||
|
arg = c.argBuf
|
||
|
c.argBuf = nil
|
||
|
} else {
|
||
|
arg = buf[c.as : i-c.drop]
|
||
|
}
|
||
|
c.processErr(string(arg))
|
||
|
c.drop, c.as, c.state = 0, i+1, OP_START
|
||
|
default:
|
||
|
if c.argBuf != nil {
|
||
|
c.argBuf = append(c.argBuf, b)
|
||
|
}
|
||
|
}
|
||
|
default:
|
||
|
goto parseErr
|
||
|
}
|
||
|
}
|
||
|
|
||
|
// Check for split buffer scenarios for any ARG state.
|
||
|
if c.state == SUB_ARG || c.state == UNSUB_ARG || c.state == PUB_ARG ||
|
||
|
c.state == MSG_ARG || c.state == MINUS_ERR_ARG ||
|
||
|
c.state == CONNECT_ARG || c.state == INFO_ARG {
|
||
|
// Setup a holder buffer to deal with split buffer scenario.
|
||
|
if c.argBuf == nil {
|
||
|
c.argBuf = c.scratch[:0]
|
||
|
c.argBuf = append(c.argBuf, buf[c.as:i-c.drop]...)
|
||
|
}
|
||
|
// Check for violations of control line length here. Note that this is not
|
||
|
// exact at all but the performance hit is too great to be precise, and
|
||
|
// catching here should prevent memory exhaustion attacks.
|
||
|
if len(c.argBuf) > mcl {
|
||
|
c.sendErr("Maximum Control Line Exceeded")
|
||
|
c.closeConnection(MaxControlLineExceeded)
|
||
|
return ErrMaxControlLine
|
||
|
}
|
||
|
}
|
||
|
|
||
|
// Check for split msg
|
||
|
if (c.state == MSG_PAYLOAD || c.state == MSG_END) && c.msgBuf == nil {
|
||
|
// We need to clone the pubArg if it is still referencing the
|
||
|
// read buffer and we are not able to process the msg.
|
||
|
if c.argBuf == nil {
|
||
|
// Works also for MSG_ARG, when message comes from ROUTE.
|
||
|
c.clonePubArg()
|
||
|
}
|
||
|
|
||
|
// If we will overflow the scratch buffer, just create a
|
||
|
// new buffer to hold the split message.
|
||
|
if c.pa.size > cap(c.scratch)-len(c.argBuf) {
|
||
|
lrem := len(buf[c.as:])
|
||
|
|
||
|
// Consider it a protocol error when the remaining payload
|
||
|
// is larger than the reported size for PUB. It can happen
|
||
|
// when processing incomplete messages from rogue clients.
|
||
|
if lrem > c.pa.size+LEN_CR_LF {
|
||
|
goto parseErr
|
||
|
}
|
||
|
c.msgBuf = make([]byte, lrem, c.pa.size+LEN_CR_LF)
|
||
|
copy(c.msgBuf, buf[c.as:])
|
||
|
} else {
|
||
|
c.msgBuf = c.scratch[len(c.argBuf):len(c.argBuf)]
|
||
|
c.msgBuf = append(c.msgBuf, (buf[c.as:])...)
|
||
|
}
|
||
|
}
|
||
|
|
||
|
return nil
|
||
|
|
||
|
authErr:
|
||
|
c.authViolation()
|
||
|
return ErrAuthorization
|
||
|
|
||
|
parseErr:
|
||
|
c.sendErr("Unknown Protocol Operation")
|
||
|
snip := protoSnippet(i, buf)
|
||
|
err := fmt.Errorf("%s parser ERROR, state=%d, i=%d: proto='%s...'",
|
||
|
c.typeString(), c.state, i, snip)
|
||
|
return err
|
||
|
}
|
||
|
|
||
|
func protoSnippet(start int, buf []byte) string {
|
||
|
stop := start + PROTO_SNIPPET_SIZE
|
||
|
bufSize := len(buf)
|
||
|
if start >= bufSize {
|
||
|
return `""`
|
||
|
}
|
||
|
if stop > bufSize {
|
||
|
stop = bufSize - 1
|
||
|
}
|
||
|
return fmt.Sprintf("%q", buf[start:stop])
|
||
|
}
|
||
|
|
||
|
// clonePubArg is used when the split buffer scenario has the pubArg in the existing read buffer, but
|
||
|
// we need to hold onto it into the next read.
|
||
|
func (c *client) clonePubArg() {
|
||
|
c.argBuf = c.scratch[:0]
|
||
|
c.argBuf = append(c.argBuf, c.pa.subject...)
|
||
|
c.argBuf = append(c.argBuf, c.pa.reply...)
|
||
|
c.argBuf = append(c.argBuf, c.pa.sid...)
|
||
|
c.argBuf = append(c.argBuf, c.pa.szb...)
|
||
|
|
||
|
c.pa.subject = c.argBuf[:len(c.pa.subject)]
|
||
|
|
||
|
if c.pa.reply != nil {
|
||
|
c.pa.reply = c.argBuf[len(c.pa.subject) : len(c.pa.subject)+len(c.pa.reply)]
|
||
|
}
|
||
|
|
||
|
if c.pa.sid != nil {
|
||
|
c.pa.sid = c.argBuf[len(c.pa.subject)+len(c.pa.reply) : len(c.pa.subject)+len(c.pa.reply)+len(c.pa.sid)]
|
||
|
}
|
||
|
|
||
|
c.pa.szb = c.argBuf[len(c.pa.subject)+len(c.pa.reply)+len(c.pa.sid):]
|
||
|
}
|