caddy/caddyhttp/httpserver/replacer.go
Carter 59b1e8b0bc Now logging the request body
Logging the request body if the Content-Type is application/json or
application/xml
2016-08-10 10:04:57 -04:00

263 lines
6.9 KiB
Go

package httpserver
import (
"io/ioutil"
"log"
"net"
"net/http"
"net/http/httputil"
"net/url"
"os"
"path"
"strconv"
"strings"
"time"
)
// requestReplacer is a strings.Replacer which is used to
// encode literal \r and \n characters and keep everything
// on one line
var requestReplacer = strings.NewReplacer(
"\r", "\\r",
"\n", "\\n",
)
// Replacer is a type which can replace placeholder
// substrings in a string with actual values from a
// http.Request and ResponseRecorder. Always use
// NewReplacer to get one of these. Any placeholders
// made with Set() should overwrite existing values if
// the key is already used.
type Replacer interface {
Replace(string) string
Set(key, value string)
}
// replacer implements Replacer. customReplacements
// is used to store custom replacements created with
// Set() until the time of replacement, at which point
// they will be used to overwrite other replacements
// if there is a name conflict.
type replacer struct {
replacements map[string]func() string
customReplacements map[string]func() string
emptyValue string
responseRecorder *ResponseRecorder
}
// NewReplacer makes a new replacer based on r and rr which
// are used for request and response placeholders, respectively.
// Request placeholders are created immediately, whereas
// response placeholders are not created until Replace()
// is invoked. rr may be nil if it is not available.
// emptyValue should be the string that is used in place
// of empty string (can still be empty string).
func NewReplacer(r *http.Request, rr *ResponseRecorder, emptyValue string) Replacer {
rep := &replacer{
responseRecorder: rr,
customReplacements: make(map[string]func() string),
replacements: map[string]func() string{
"{method}": func() string { return r.Method },
"{scheme}": func() string {
if r.TLS != nil {
return "https"
}
return "http"
},
"{hostname}": func() string {
name, err := os.Hostname()
if err != nil {
return ""
}
return name
},
"{host}": func() string { return r.Host },
"{hostonly}": func() string {
host, _, err := net.SplitHostPort(r.Host)
if err != nil {
return r.Host
}
return host
},
"{path}": func() string { return r.URL.Path },
"{path_escaped}": func() string { return url.QueryEscape(r.URL.Path) },
"{query}": func() string { return r.URL.RawQuery },
"{query_escaped}": func() string { return url.QueryEscape(r.URL.RawQuery) },
"{fragment}": func() string { return r.URL.Fragment },
"{proto}": func() string { return r.Proto },
"{remote}": func() string {
if fwdFor := r.Header.Get("X-Forwarded-For"); fwdFor != "" {
return fwdFor
}
host, _, err := net.SplitHostPort(r.RemoteAddr)
if err != nil {
return r.RemoteAddr
}
return host
},
"{port}": func() string {
_, port, err := net.SplitHostPort(r.RemoteAddr)
if err != nil {
return ""
}
return port
},
"{uri}": func() string { return r.URL.RequestURI() },
"{uri_escaped}": func() string { return url.QueryEscape(r.URL.RequestURI()) },
"{when}": func() string { return time.Now().Format(timeFormat) },
"{file}": func() string {
_, file := path.Split(r.URL.Path)
return file
},
"{dir}": func() string {
dir, _ := path.Split(r.URL.Path)
return dir
},
"{request}": func() string {
dump, err := httputil.DumpRequest(r, false)
if err != nil {
return ""
}
return requestReplacer.Replace(string(dump))
},
"{request_body}": func() string {
if !canLogRequest(r) {
return ""
}
body, err := ioutil.ReadAll(r.Body)
if err != nil {
log.Printf("[WARNING] Cannot read request body %v", err)
return ""
}
return string(body)
},
},
emptyValue: emptyValue,
}
// Header placeholders (case-insensitive)
for header, values := range r.Header {
values := values
rep.replacements[headerReplacer+strings.ToLower(header)+"}"] = func() string { return strings.Join(values, ",") }
}
return rep
}
func canLogRequest(r *http.Request) (canLog bool) {
if r.Method == "POST" || r.Method == "PUT" {
for _, cType := range r.Header[headerContentType] {
// the cType could have charset and other info
if strings.Index(cType, contentTypeJSON) > -1 || strings.Index(cType, contentTypeXML) > -1 {
canLog = true
break
}
}
}
return
}
// Replace performs a replacement of values on s and returns
// the string with the replaced values.
func (r *replacer) Replace(s string) string {
// Do not attempt replacements if no placeholder is found.
if !strings.ContainsAny(s, "{}") {
return s
}
// Make response placeholders now
if r.responseRecorder != nil {
r.replacements["{status}"] = func() string { return strconv.Itoa(r.responseRecorder.status) }
r.replacements["{size}"] = func() string { return strconv.Itoa(r.responseRecorder.size) }
r.replacements["{latency}"] = func() string {
dur := time.Since(r.responseRecorder.start)
return roundDuration(dur).String()
}
}
// Include custom placeholders, overwriting existing ones if necessary
for key, val := range r.customReplacements {
r.replacements[key] = val
}
// Header replacements - these are case-insensitive, so we can't just use strings.Replace()
for strings.Contains(s, headerReplacer) {
idxStart := strings.Index(s, headerReplacer)
endOffset := idxStart + len(headerReplacer)
idxEnd := strings.Index(s[endOffset:], "}")
if idxEnd > -1 {
placeholder := strings.ToLower(s[idxStart : endOffset+idxEnd+1])
replacement := ""
if getReplacement, ok := r.replacements[placeholder]; ok {
replacement = getReplacement()
}
if replacement == "" {
replacement = r.emptyValue
}
s = s[:idxStart] + replacement + s[endOffset+idxEnd+1:]
} else {
break
}
}
// Regular replacements - these are easier because they're case-sensitive
for placeholder, getReplacement := range r.replacements {
if !strings.Contains(s, placeholder) {
continue
}
replacement := getReplacement()
if replacement == "" {
replacement = r.emptyValue
}
s = strings.Replace(s, placeholder, replacement, -1)
}
return s
}
func roundDuration(d time.Duration) time.Duration {
if d >= time.Millisecond {
return round(d, time.Millisecond)
} else if d >= time.Microsecond {
return round(d, time.Microsecond)
}
return d
}
// round rounds d to the nearest r
func round(d, r time.Duration) time.Duration {
if r <= 0 {
return d
}
neg := d < 0
if neg {
d = -d
}
if m := d % r; m+m < r {
d = d - m
} else {
d = d + r - m
}
if neg {
return -d
}
return d
}
// Set sets key to value in the r.customReplacements map.
func (r *replacer) Set(key, value string) {
r.customReplacements["{"+key+"}"] = func() string { return value }
}
const (
timeFormat = "02/Jan/2006:15:04:05 -0700"
headerReplacer = "{>"
headerContentType = "Content-Type"
contentTypeJSON = "application/json"
contentTypeXML = "application/xml"
)