mirror of
https://github.com/caddyserver/caddy.git
synced 2024-12-11 12:47:57 +08:00
562 lines
14 KiB
Go
562 lines
14 KiB
Go
// Copyright 2015 Light Code Labs, LLC
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//
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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 httpserver
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import (
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"bytes"
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"crypto/sha256"
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"crypto/x509"
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"encoding/pem"
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"fmt"
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"io"
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"io/ioutil"
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"net"
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"net/http"
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"net/http/httputil"
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"net/url"
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"os"
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"path"
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"strconv"
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"strings"
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"time"
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"github.com/mholt/caddy"
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"github.com/mholt/caddy/caddytls"
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)
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// requestReplacer is a strings.Replacer which is used to
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// encode literal \r and \n characters and keep everything
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// on one line
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var requestReplacer = strings.NewReplacer(
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"\r", "\\r",
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"\n", "\\n",
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)
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var now = time.Now
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// Replacer is a type which can replace placeholder
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// substrings in a string with actual values from a
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// http.Request and ResponseRecorder. Always use
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// NewReplacer to get one of these. Any placeholders
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// made with Set() should overwrite existing values if
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// the key is already used.
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type Replacer interface {
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Replace(string) string
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Set(key, value string)
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}
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// replacer implements Replacer. customReplacements
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// is used to store custom replacements created with
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// Set() until the time of replacement, at which point
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// they will be used to overwrite other replacements
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// if there is a name conflict.
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type replacer struct {
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customReplacements map[string]string
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emptyValue string
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responseRecorder *ResponseRecorder
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request *http.Request
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requestBody *limitWriter
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}
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type limitWriter struct {
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w bytes.Buffer
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remain int
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}
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func newLimitWriter(max int) *limitWriter {
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return &limitWriter{
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w: bytes.Buffer{},
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remain: max,
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}
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}
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func (lw *limitWriter) Write(p []byte) (int, error) {
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// skip if we are full
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if lw.remain <= 0 {
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return len(p), nil
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}
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if n := len(p); n > lw.remain {
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p = p[:lw.remain]
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}
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n, err := lw.w.Write(p)
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lw.remain -= n
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return n, err
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}
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func (lw *limitWriter) String() string {
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return lw.w.String()
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}
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// NewReplacer makes a new replacer based on r and rr which
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// are used for request and response placeholders, respectively.
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// Request placeholders are created immediately, whereas
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// response placeholders are not created until Replace()
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// is invoked. rr may be nil if it is not available.
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// emptyValue should be the string that is used in place
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// of empty string (can still be empty string).
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func NewReplacer(r *http.Request, rr *ResponseRecorder, emptyValue string) Replacer {
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repl := &replacer{
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request: r,
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responseRecorder: rr,
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emptyValue: emptyValue,
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}
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// extract customReplacements from a request replacer when present.
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if existing, ok := r.Context().Value(ReplacerCtxKey).(*replacer); ok {
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repl.requestBody = existing.requestBody
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repl.customReplacements = existing.customReplacements
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} else {
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// if there is no existing replacer, build one from scratch.
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rb := newLimitWriter(MaxLogBodySize)
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if r.Body != nil {
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r.Body = struct {
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io.Reader
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io.Closer
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}{io.TeeReader(r.Body, rb), io.Closer(r.Body)}
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}
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repl.requestBody = rb
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repl.customReplacements = make(map[string]string)
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}
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return repl
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}
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func canLogRequest(r *http.Request) bool {
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if r.Method == "POST" || r.Method == "PUT" {
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for _, cType := range r.Header[headerContentType] {
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// the cType could have charset and other info
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if strings.Contains(cType, contentTypeJSON) || strings.Contains(cType, contentTypeXML) {
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return true
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}
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}
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}
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return false
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}
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// unescapeBraces finds escaped braces in s and returns
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// a string with those braces unescaped.
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func unescapeBraces(s string) string {
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s = strings.Replace(s, "\\{", "{", -1)
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s = strings.Replace(s, "\\}", "}", -1)
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return s
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}
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// Replace performs a replacement of values on s and returns
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// the string with the replaced values.
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func (r *replacer) Replace(s string) string {
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// Do not attempt replacements if no placeholder is found.
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if !strings.ContainsAny(s, "{}") {
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return s
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}
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result := ""
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Placeholders: // process each placeholder in sequence
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for {
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var idxStart, idxEnd int
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idxOffset := 0
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for { // find first unescaped opening brace
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searchSpace := s[idxOffset:]
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idxStart = strings.Index(searchSpace, "{")
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if idxStart == -1 {
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// no more placeholders
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break Placeholders
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}
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if idxStart == 0 || searchSpace[idxStart-1] != '\\' {
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// preceding character is not an escape
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idxStart += idxOffset
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break
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}
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// the brace we found was escaped
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// search the rest of the string next
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idxOffset += idxStart + 1
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}
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idxOffset = 0
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for { // find first unescaped closing brace
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searchSpace := s[idxStart+idxOffset:]
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idxEnd = strings.Index(searchSpace, "}")
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if idxEnd == -1 {
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// unpaired placeholder
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break Placeholders
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}
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if idxEnd == 0 || searchSpace[idxEnd-1] != '\\' {
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// preceding character is not an escape
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idxEnd += idxOffset + idxStart
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break
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}
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// the brace we found was escaped
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// search the rest of the string next
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idxOffset += idxEnd + 1
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}
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// get a replacement for the unescaped placeholder
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placeholder := unescapeBraces(s[idxStart : idxEnd+1])
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replacement := r.getSubstitution(placeholder)
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// append unescaped prefix + replacement
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result += strings.TrimPrefix(unescapeBraces(s[:idxStart]), "\\") + replacement
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// strip out scanned parts
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s = s[idxEnd+1:]
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}
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// append unscanned parts
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return result + unescapeBraces(s)
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}
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func roundDuration(d time.Duration) time.Duration {
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if d >= time.Millisecond {
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return round(d, time.Millisecond)
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} else if d >= time.Microsecond {
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return round(d, time.Microsecond)
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}
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return d
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}
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// round rounds d to the nearest r
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func round(d, r time.Duration) time.Duration {
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if r <= 0 {
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return d
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}
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neg := d < 0
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if neg {
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d = -d
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}
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if m := d % r; m+m < r {
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d = d - m
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} else {
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d = d + r - m
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}
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if neg {
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return -d
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}
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return d
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}
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// getPeerCert returns peer certificate
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func (r *replacer) getPeerCert() *x509.Certificate {
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if r.request.TLS != nil && len(r.request.TLS.PeerCertificates) > 0 {
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return r.request.TLS.PeerCertificates[0]
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}
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return nil
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}
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// getSubstitution retrieves value from corresponding key
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func (r *replacer) getSubstitution(key string) string {
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// search custom replacements first
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if value, ok := r.customReplacements[key]; ok {
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return value
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}
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// search request headers then
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if key[1] == '>' {
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want := key[2 : len(key)-1]
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for key, values := range r.request.Header {
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// Header placeholders (case-insensitive)
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if strings.EqualFold(key, want) {
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return strings.Join(values, ",")
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}
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}
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}
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// search response headers then
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if r.responseRecorder != nil && key[1] == '<' {
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want := key[2 : len(key)-1]
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for key, values := range r.responseRecorder.Header() {
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// Header placeholders (case-insensitive)
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if strings.EqualFold(key, want) {
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return strings.Join(values, ",")
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}
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}
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}
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// next check for cookies
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if key[1] == '~' {
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name := key[2 : len(key)-1]
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if cookie, err := r.request.Cookie(name); err == nil {
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return cookie.Value
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}
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}
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// next check for query argument
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if key[1] == '?' {
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query := r.request.URL.Query()
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name := key[2 : len(key)-1]
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return query.Get(name)
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}
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// search default replacements in the end
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switch key {
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case "{method}":
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return r.request.Method
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case "{scheme}":
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if r.request.TLS != nil {
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return "https"
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}
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return "http"
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case "{hostname}":
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name, err := os.Hostname()
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if err != nil {
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return r.emptyValue
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}
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return name
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case "{host}":
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return r.request.Host
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case "{hostonly}":
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host, _, err := net.SplitHostPort(r.request.Host)
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if err != nil {
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return r.request.Host
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}
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return host
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case "{path}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return u.Path
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case "{path_escaped}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return url.QueryEscape(u.Path)
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case "{request_id}":
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reqid, _ := r.request.Context().Value(RequestIDCtxKey).(string)
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return reqid
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case "{rewrite_path}":
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return r.request.URL.Path
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case "{rewrite_path_escaped}":
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return url.QueryEscape(r.request.URL.Path)
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case "{query}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return u.RawQuery
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case "{query_escaped}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return url.QueryEscape(u.RawQuery)
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case "{fragment}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return u.Fragment
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case "{proto}":
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return r.request.Proto
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case "{remote}":
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host, _, err := net.SplitHostPort(r.request.RemoteAddr)
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if err != nil {
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return r.request.RemoteAddr
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}
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return host
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case "{port}":
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_, port, err := net.SplitHostPort(r.request.RemoteAddr)
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if err != nil {
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return r.emptyValue
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}
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return port
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case "{uri}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return u.RequestURI()
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case "{uri_escaped}":
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u, _ := r.request.Context().Value(OriginalURLCtxKey).(url.URL)
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return url.QueryEscape(u.RequestURI())
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case "{rewrite_uri}":
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return r.request.URL.RequestURI()
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case "{rewrite_uri_escaped}":
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return url.QueryEscape(r.request.URL.RequestURI())
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case "{when}":
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return now().Format(timeFormat)
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case "{when_iso_local}":
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return now().Format(timeFormatISO)
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case "{when_iso}":
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return now().UTC().Format(timeFormatISOUTC)
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case "{when_unix}":
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return strconv.FormatInt(now().Unix(), 10)
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case "{when_unix_ms}":
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return strconv.FormatInt(nanoToMilliseconds(now().UnixNano()), 10)
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case "{file}":
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_, file := path.Split(r.request.URL.Path)
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return file
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case "{dir}":
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dir, _ := path.Split(r.request.URL.Path)
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return dir
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case "{request}":
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dump, err := httputil.DumpRequest(r.request, false)
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if err != nil {
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return r.emptyValue
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}
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return requestReplacer.Replace(string(dump))
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case "{request_body}":
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if !canLogRequest(r.request) {
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return r.emptyValue
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}
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_, err := ioutil.ReadAll(r.request.Body)
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if err != nil {
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if err == ErrMaxBytesExceeded {
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return r.emptyValue
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}
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}
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return requestReplacer.Replace(r.requestBody.String())
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case "{mitm}":
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if val, ok := r.request.Context().Value(caddy.CtxKey("mitm")).(bool); ok {
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if val {
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return "likely"
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}
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return "unlikely"
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}
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return "unknown"
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case "{status}":
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if r.responseRecorder == nil {
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return r.emptyValue
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}
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return strconv.Itoa(r.responseRecorder.status)
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case "{size}":
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if r.responseRecorder == nil {
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return r.emptyValue
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}
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return strconv.Itoa(r.responseRecorder.size)
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case "{latency}":
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if r.responseRecorder == nil {
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return r.emptyValue
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}
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return roundDuration(time.Since(r.responseRecorder.start)).String()
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case "{latency_ms}":
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if r.responseRecorder == nil {
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return r.emptyValue
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}
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elapsedDuration := time.Since(r.responseRecorder.start)
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return strconv.FormatInt(convertToMilliseconds(elapsedDuration), 10)
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case "{tls_protocol}":
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if r.request.TLS != nil {
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if name, err := caddytls.GetSupportedProtocolName(r.request.TLS.Version); err == nil {
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return name
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} else {
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return "tls" // this should never happen, but guard in case
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}
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}
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return r.emptyValue // because not using a secure channel
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case "{tls_cipher}":
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if r.request.TLS != nil {
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if name, err := caddytls.GetSupportedCipherName(r.request.TLS.CipherSuite); err == nil {
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return name
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} else {
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return "UNKNOWN" // this should never happen, but guard in case
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}
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}
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return r.emptyValue
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case "{tls_client_escaped_cert}":
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cert := r.getPeerCert()
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if cert != nil {
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pemBlock := pem.Block{
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Type: "CERTIFICATE",
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Bytes: cert.Raw,
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}
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return url.QueryEscape(string(pem.EncodeToMemory(&pemBlock)))
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}
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return r.emptyValue
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case "{tls_client_fingerprint}":
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cert := r.getPeerCert()
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if cert != nil {
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return fmt.Sprintf("%x", sha256.Sum256(cert.Raw))
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}
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return r.emptyValue
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case "{tls_client_i_dn}":
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cert := r.getPeerCert()
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if cert != nil {
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return cert.Issuer.String()
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}
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return r.emptyValue
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case "{tls_client_raw_cert}":
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cert := r.getPeerCert()
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if cert != nil {
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return string(cert.Raw)
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}
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return r.emptyValue
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case "{tls_client_s_dn}":
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cert := r.getPeerCert()
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if cert != nil {
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return cert.Subject.String()
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}
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return r.emptyValue
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case "{tls_client_serial}":
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cert := r.getPeerCert()
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if cert != nil {
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return fmt.Sprintf("%x", cert.SerialNumber)
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}
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return r.emptyValue
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case "{tls_client_v_end}":
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cert := r.getPeerCert()
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if cert != nil {
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return cert.NotAfter.In(time.UTC).Format("Jan 02 15:04:05 2006 MST")
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}
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return r.emptyValue
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case "{tls_client_v_remain}":
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cert := r.getPeerCert()
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if cert != nil {
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now := time.Now().In(time.UTC)
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days := int64(cert.NotAfter.Sub(now).Seconds() / 86400)
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return strconv.FormatInt(days, 10)
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}
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return r.emptyValue
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case "{tls_client_v_start}":
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cert := r.getPeerCert()
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if cert != nil {
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return cert.NotBefore.Format("Jan 02 15:04:05 2006 MST")
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}
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return r.emptyValue
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case "{server_port}":
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_, port, err := net.SplitHostPort(r.request.Host)
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if err != nil {
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if r.request.TLS != nil {
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return "443"
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} else {
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return "80"
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}
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}
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return port
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default:
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// {labelN}
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if strings.HasPrefix(key, "{label") {
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nStr := key[6 : len(key)-1] // get the integer N in "{labelN}"
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n, err := strconv.Atoi(nStr)
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if err != nil || n < 1 {
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return r.emptyValue
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}
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labels := strings.Split(r.request.Host, ".")
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if n > len(labels) {
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return r.emptyValue
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}
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return labels[n-1]
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}
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}
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return r.emptyValue
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}
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func nanoToMilliseconds(d int64) int64 {
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return d / 1e6
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}
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// convertToMilliseconds returns the number of milliseconds in the given duration
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|
func convertToMilliseconds(d time.Duration) int64 {
|
|
return nanoToMilliseconds(d.Nanoseconds())
|
|
}
|
|
|
|
// Set sets key to value in the r.customReplacements map.
|
|
func (r *replacer) Set(key, value string) {
|
|
r.customReplacements["{"+key+"}"] = value
|
|
}
|
|
|
|
const (
|
|
timeFormat = "02/Jan/2006:15:04:05 -0700"
|
|
timeFormatISO = "2006-01-02T15:04:05" // ISO 8601 with timezone to be assumed as local
|
|
timeFormatISOUTC = "2006-01-02T15:04:05Z" // ISO 8601 with timezone to be assumed as UTC
|
|
headerContentType = "Content-Type"
|
|
contentTypeJSON = "application/json"
|
|
contentTypeXML = "application/xml"
|
|
// MaxLogBodySize limits the size of logged request's body
|
|
MaxLogBodySize = 100 * 1024
|
|
)
|