705 lines
19 KiB
Smarty
705 lines
19 KiB
Smarty
// Copyright 2012 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Package cookiejar implements an in-memory RFC 6265-compliant http.CookieJar.
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//
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// This implementation is a fork of net/http/cookiejar which also
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// implements methods for dumping the cookies to persistent
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// storage and retrieving them.
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package cookiejar
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import (
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"fmt"
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"net"
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"net/http"
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"net/url"
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"os"
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"path/filepath"
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"runtime"
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"sort"
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"strings"
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"sync"
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"time"
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"github.com/pkg/errors"
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"golang.org/x/net/publicsuffix"
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)
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// PublicSuffixList provides the public suffix of a domain. For example:
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// - the public suffix of "example.com" is "com",
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// - the public suffix of "foo1.foo2.foo3.co.uk" is "co.uk", and
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// - the public suffix of "bar.pvt.k12.ma.us" is "pvt.k12.ma.us".
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//
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// Implementations of PublicSuffixList must be safe for concurrent use by
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// multiple goroutines.
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//
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// An implementation that always returns "" is valid and may be useful for
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// testing but it is not secure: it means that the HTTP server for foo.com can
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// set a cookie for bar.com.
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//
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// A public suffix list implementation is in the package
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// golang.org/x/net/publicsuffix.
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type PublicSuffixList interface {
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// PublicSuffix returns the public suffix of domain.
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//
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// TODO: specify which of the caller and callee is responsible for IP
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// addresses, for leading and trailing dots, for case sensitivity, and
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// for IDN/Punycode.
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PublicSuffix(domain string) string
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// String returns a description of the source of this public suffix
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// list. The description will typically contain something like a time
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// stamp or version number.
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String() string
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}
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// Options are the options for creating a new Jar.
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type Options struct {
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// PublicSuffixList is the public suffix list that determines whether
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// an HTTP server can set a cookie for a domain.
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//
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// If this is nil, the public suffix list implementation in golang.org/x/net/publicsuffix
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// is used.
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PublicSuffixList PublicSuffixList
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// Filename holds the file to use for storage of the cookies.
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// If it is empty, the value of DefaultCookieFile will be used.
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Filename string
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// NoPersist specifies whether no persistence should be used
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// (useful for tests). If this is true, the value of Filename will be
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// ignored.
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NoPersist bool
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}
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// Jar implements the http.CookieJar interface from the net/http package.
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type Jar struct {
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// filename holds the file that the cookies were loaded from.
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filename string
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psList PublicSuffixList
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// mu locks the remaining fields.
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mu sync.Mutex
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// entries is a set of entries, keyed by their eTLD+1 and subkeyed by
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// their name/domain/path.
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entries map[string]map[string]entry
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}
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var noOptions Options
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// New returns a new cookie jar. A nil *Options is equivalent to a zero
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// Options.
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//
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// New will return an error if the cookies could not be loaded
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// from the file for any reason than if the file does not exist.
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func New(o *Options) (*Jar, error) {
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return newAtTime(o, time.Now())
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}
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// newAtTime is like New but takes the current time as a parameter.
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func newAtTime(o *Options, now time.Time) (*Jar, error) {
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jar := &Jar{
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entries: make(map[string]map[string]entry),
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}
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if o == nil {
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o = &noOptions
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}
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if jar.psList = o.PublicSuffixList; jar.psList == nil {
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jar.psList = publicsuffix.List
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}
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if !o.NoPersist {
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if jar.filename = o.Filename; jar.filename == "" {
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jar.filename = DefaultCookieFile()
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}
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if err := jar.load(); err != nil {
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return nil, errors.Wrap(err, "cannot load cookies")
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}
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}
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jar.deleteExpired(now)
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return jar, nil
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}
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// homeDir returns the OS-specific home path as specified in the environment.
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func homeDir() string {
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if runtime.GOOS == "windows" {
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return filepath.Join(os.Getenv("HOMEDRIVE"), os.Getenv("HOMEPATH"))
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}
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return os.Getenv("HOME")
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}
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// entry is the internal representation of a cookie.
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//
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// This struct type is not used outside of this package per se, but the exported
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// fields are those of RFC 6265.
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// Note that this structure is marshaled to JSON, so backward-compatibility
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// should be preserved.
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type entry struct {
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Name string
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Value string
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Domain string
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Path string
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Secure bool
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HttpOnly bool
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Persistent bool
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HostOnly bool
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Expires time.Time
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Creation time.Time
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LastAccess time.Time
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// Updated records when the cookie was updated.
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// This is different from creation time because a cookie
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// can be changed without updating the creation time.
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Updated time.Time
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// CanonicalHost stores the original canonical host name
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// that the cookie was associated with. We store this
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// so that even if the public suffix list changes (for example
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// when storing/loading cookies) we can still get the correct
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// jar keys.
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CanonicalHost string
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}
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// id returns the domain;path;name triple of e as an id.
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func (e *entry) id() string {
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return id(e.Domain, e.Path, e.Name)
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}
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// id returns the domain;path;name triple as an id.
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func id(domain, path, name string) string {
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return fmt.Sprintf("%s;%s;%s", domain, path, name)
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}
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// shouldSend determines whether e's cookie qualifies to be included in a
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// request to host/path. It is the caller's responsibility to check if the
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// cookie is expired.
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func (e *entry) shouldSend(https bool, host, path string) bool {
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return e.domainMatch(host) && e.pathMatch(path) && (https || !e.Secure)
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}
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// domainMatch implements "domain-match" of RFC 6265 section 5.1.3.
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func (e *entry) domainMatch(host string) bool {
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if e.Domain == host {
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return true
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}
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return !e.HostOnly && hasDotSuffix(host, e.Domain)
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}
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// pathMatch implements "path-match" according to RFC 6265 section 5.1.4.
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func (e *entry) pathMatch(requestPath string) bool {
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if requestPath == e.Path {
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return true
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}
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if strings.HasPrefix(requestPath, e.Path) {
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if e.Path[len(e.Path)-1] == '/' {
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return true // The "/any/" matches "/any/path" case.
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} else if requestPath[len(e.Path)] == '/' {
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return true // The "/any" matches "/any/path" case.
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}
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}
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return false
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}
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// hasDotSuffix reports whether s ends in "."+suffix.
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func hasDotSuffix(s, suffix string) bool {
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return len(s) > len(suffix) && s[len(s)-len(suffix)-1] == '.' && s[len(s)-len(suffix):] == suffix
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}
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type byCanonicalHost struct {
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byPathLength
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}
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func (s byCanonicalHost) Less(i, j int) bool {
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e0, e1 := &s.byPathLength[i], &s.byPathLength[j]
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if e0.CanonicalHost != e1.CanonicalHost {
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return e0.CanonicalHost < e1.CanonicalHost
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}
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return s.byPathLength.Less(i, j)
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}
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// byPathLength is a []entry sort.Interface that sorts according to RFC 6265
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// section 5.4 point 2: by longest path and then by earliest creation time.
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type byPathLength []entry
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func (s byPathLength) Len() int { return len(s) }
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func (s byPathLength) Less(i, j int) bool {
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e0, e1 := &s[i], &s[j]
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if len(e0.Path) != len(e1.Path) {
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return len(e0.Path) > len(e1.Path)
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}
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if !e0.Creation.Equal(e1.Creation) {
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return e0.Creation.Before(e1.Creation)
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}
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// The following are not strictly necessary
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// but are useful for providing deterministic
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// behaviour in tests.
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if e0.Name != e1.Name {
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return e0.Name < e1.Name
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}
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return e0.Value < e1.Value
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}
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func (s byPathLength) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
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// Cookies implements the Cookies method of the http.CookieJar interface.
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//
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// It returns an empty slice if the URL's scheme is not HTTP or HTTPS.
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func (j *Jar) Cookies(u *url.URL) (cookies []*http.Cookie) {
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return j.cookies(u, time.Now())
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}
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// cookies is like Cookies but takes the current time as a parameter.
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func (j *Jar) cookies(u *url.URL, now time.Time) (cookies []*http.Cookie) {
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if u.Scheme != "http" && u.Scheme != "https" {
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return cookies
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}
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host, err := canonicalHost(u.Host)
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if err != nil {
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return cookies
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}
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key := jarKey(host, j.psList)
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j.mu.Lock()
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defer j.mu.Unlock()
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submap := j.entries[key]
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if submap == nil {
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return cookies
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}
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https := u.Scheme == "https"
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path := u.Path
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if path == "" {
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path = "/"
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}
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var selected []entry
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for id, e := range submap {
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if !e.Expires.After(now) {
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// Save some space by deleting the value when the cookie
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// expires. We can't delete the cookie itself because then
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// we wouldn't know that the cookie had expired when
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// we merge with another cookie jar.
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if e.Value != "" {
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e.Value = ""
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submap[id] = e
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}
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continue
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}
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if !e.shouldSend(https, host, path) {
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continue
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}
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e.LastAccess = now
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submap[id] = e
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selected = append(selected, e)
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}
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sort.Sort(byPathLength(selected))
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for _, e := range selected {
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cookies = append(cookies, &http.Cookie{Name: e.Name, Value: e.Value})
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}
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return cookies
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}
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// AllCookies returns all cookies in the jar. The returned cookies will
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// have Domain, Expires, HttpOnly, Name, Secure, Path, and Value filled
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// out. Expired cookies will not be returned. This function does not
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// modify the cookie jar.
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func (j *Jar) AllCookies() (cookies []*http.Cookie) {
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return j.allCookies(time.Now())
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}
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// allCookies is like AllCookies but takes the current time as a parameter.
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func (j *Jar) allCookies(now time.Time) []*http.Cookie {
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var selected []entry
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j.mu.Lock()
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defer j.mu.Unlock()
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for _, submap := range j.entries {
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for _, e := range submap {
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if !e.Expires.After(now) {
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// Do not return expired cookies.
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continue
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}
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selected = append(selected, e)
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}
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}
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sort.Sort(byCanonicalHost{byPathLength(selected)})
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cookies := make([]*http.Cookie, len(selected))
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for i, e := range selected {
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// Note: The returned cookies do not contain sufficient
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// information to recreate the database.
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cookies[i] = &http.Cookie{
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Name: e.Name,
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Value: e.Value,
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Path: e.Path,
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Domain: e.Domain,
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Expires: e.Expires,
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Secure: e.Secure,
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HttpOnly: e.HttpOnly,
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}
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}
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return cookies
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}
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// RemoveCookie removes the cookie matching the name, domain and path
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// specified by c.
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func (j *Jar) RemoveCookie(c *http.Cookie) {
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j.mu.Lock()
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defer j.mu.Unlock()
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id := id(c.Domain, c.Path, c.Name)
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key := jarKey(c.Domain, j.psList)
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if e, ok := j.entries[key][id]; ok {
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e.Value = ""
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e.Expires = time.Now().Add(-1 * time.Second)
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j.entries[key][id] = e
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}
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}
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// merge merges all the given entries into j. More recently changed
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// cookies take precedence over older ones.
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func (j *Jar) merge(entries []entry) {
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for _, e := range entries {
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if e.CanonicalHost == "" {
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continue
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}
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key := jarKey(e.CanonicalHost, j.psList)
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id := e.id()
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submap := j.entries[key]
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if submap == nil {
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j.entries[key] = map[string]entry{
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id: e,
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}
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continue
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}
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oldEntry, ok := submap[id]
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if !ok || e.Updated.After(oldEntry.Updated) {
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submap[id] = e
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}
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}
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}
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var expiryRemovalDuration = 24 * time.Hour
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// deleteExpired deletes all entries that have expired for long enough
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// that we can actually expect there to be no external copies of it that
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// might resurrect the dead cookie.
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func (j *Jar) deleteExpired(now time.Time) {
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for tld, submap := range j.entries {
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for id, e := range submap {
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if !e.Expires.After(now) && !e.Updated.Add(expiryRemovalDuration).After(now) {
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delete(submap, id)
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}
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}
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if len(submap) == 0 {
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delete(j.entries, tld)
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}
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}
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}
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// RemoveAllHost removes any cookies from the jar that were set for the given host.
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func (j *Jar) RemoveAllHost(host string) {
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host, err := canonicalHost(host)
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if err != nil {
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return
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}
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key := jarKey(host, j.psList)
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j.mu.Lock()
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defer j.mu.Unlock()
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expired := time.Now().Add(-1 * time.Second)
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submap := j.entries[key]
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for id, e := range submap {
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if e.CanonicalHost == host {
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// Save some space by deleting the value when the cookie
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// expires. We can't delete the cookie itself because then
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// we wouldn't know that the cookie had expired when
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// we merge with another cookie jar.
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e.Value = ""
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e.Expires = expired
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submap[id] = e
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}
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}
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}
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// RemoveAll removes all the cookies from the jar.
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func (j *Jar) RemoveAll() {
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expired := time.Now().Add(-1 * time.Second)
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j.mu.Lock()
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defer j.mu.Unlock()
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for _, submap := range j.entries {
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for id, e := range submap {
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// Save some space by deleting the value when the cookie
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// expires. We can't delete the cookie itself because then
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// we wouldn't know that the cookie had expired when
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// we merge with another cookie jar.
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e.Value = ""
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e.Expires = expired
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submap[id] = e
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}
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}
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}
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// SetCookies implements the SetCookies method of the http.CookieJar interface.
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//
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// It does nothing if the URL's scheme is not HTTP or HTTPS.
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func (j *Jar) SetCookies(u *url.URL, cookies []*http.Cookie) {
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j.setCookies(u, cookies, time.Now())
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}
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// setCookies is like SetCookies but takes the current time as parameter.
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func (j *Jar) setCookies(u *url.URL, cookies []*http.Cookie, now time.Time) {
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if len(cookies) == 0 {
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return
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}
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if u.Scheme != "http" && u.Scheme != "https" {
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// TODO is this really correct? It might be nice to send
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// cookies to websocket connections, for example.
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return
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}
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host, err := canonicalHost(u.Host)
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if err != nil {
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return
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}
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key := jarKey(host, j.psList)
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defPath := defaultPath(u.Path)
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j.mu.Lock()
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defer j.mu.Unlock()
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submap := j.entries[key]
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for _, cookie := range cookies {
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e, err := j.newEntry(cookie, now, defPath, host)
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if err != nil {
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continue
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}
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e.CanonicalHost = host
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id := e.id()
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if submap == nil {
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submap = make(map[string]entry)
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j.entries[key] = submap
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}
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if old, ok := submap[id]; ok {
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e.Creation = old.Creation
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} else {
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e.Creation = now
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}
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e.Updated = now
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e.LastAccess = now
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submap[id] = e
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}
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}
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// canonicalHost strips port from host if present and returns the canonicalized
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// host name.
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func canonicalHost(host string) (string, error) {
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var err error
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host = strings.ToLower(host)
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if hasPort(host) {
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host, _, err = net.SplitHostPort(host)
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if err != nil {
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return "", err
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}
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}
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if strings.HasSuffix(host, ".") {
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// Strip trailing dot from fully qualified domain names.
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host = host[:len(host)-1]
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}
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return toASCII(host)
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}
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// hasPort reports whether host contains a port number. host may be a host
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// name, an IPv4 or an IPv6 address.
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func hasPort(host string) bool {
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colons := strings.Count(host, ":")
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if colons == 0 {
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return false
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}
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if colons == 1 {
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return true
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}
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return host[0] == '[' && strings.Contains(host, "]:")
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}
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// jarKey returns the key to use for a jar.
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func jarKey(host string, psl PublicSuffixList) string {
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if isIP(host) {
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return host
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}
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var i int
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if psl == nil {
|
|
i = strings.LastIndex(host, ".")
|
|
if i == -1 {
|
|
return host
|
|
}
|
|
} else {
|
|
suffix := psl.PublicSuffix(host)
|
|
if suffix == host {
|
|
return host
|
|
}
|
|
i = len(host) - len(suffix)
|
|
if i <= 0 || host[i-1] != '.' {
|
|
// The provided public suffix list psl is broken.
|
|
// Storing cookies under host is a safe stopgap.
|
|
return host
|
|
}
|
|
}
|
|
prevDot := strings.LastIndex(host[:i-1], ".")
|
|
return host[prevDot+1:]
|
|
}
|
|
|
|
// isIP reports whether host is an IP address.
|
|
func isIP(host string) bool {
|
|
return net.ParseIP(host) != nil
|
|
}
|
|
|
|
// defaultPath returns the directory part of an URL's path according to
|
|
// RFC 6265 section 5.1.4.
|
|
func defaultPath(path string) string {
|
|
if len(path) == 0 || path[0] != '/' {
|
|
return "/" // Path is empty or malformed.
|
|
}
|
|
|
|
i := strings.LastIndex(path, "/") // Path starts with "/", so i != -1.
|
|
if i == 0 {
|
|
return "/" // Path has the form "/abc".
|
|
}
|
|
return path[:i] // Path is either of form "/abc/xyz" or "/abc/xyz/".
|
|
}
|
|
|
|
// newEntry creates an entry from a http.Cookie c. now is the current
|
|
// time and is compared to c.Expires to determine deletion of c. defPath
|
|
// and host are the default-path and the canonical host name of the URL
|
|
// c was received from.
|
|
//
|
|
// The returned entry should be removed if its expiry time is in the
|
|
// past. In this case, e may be incomplete, but it will be valid to call
|
|
// e.id (which depends on e's Name, Domain and Path).
|
|
//
|
|
// A malformed c.Domain will result in an error.
|
|
func (j *Jar) newEntry(c *http.Cookie, now time.Time, defPath, host string) (e entry, err error) {
|
|
e.Name = c.Name
|
|
if c.Path == "" || c.Path[0] != '/' {
|
|
e.Path = defPath
|
|
} else {
|
|
e.Path = c.Path
|
|
}
|
|
|
|
e.Domain, e.HostOnly, err = j.domainAndType(host, c.Domain)
|
|
if err != nil {
|
|
return e, err
|
|
}
|
|
// MaxAge takes precedence over Expires.
|
|
if c.MaxAge != 0 {
|
|
e.Persistent = true
|
|
e.Expires = now.Add(time.Duration(c.MaxAge) * time.Second)
|
|
if c.MaxAge < 0 {
|
|
return e, nil
|
|
}
|
|
} else if c.Expires.IsZero() {
|
|
e.Expires = endOfTime
|
|
} else {
|
|
e.Persistent = true
|
|
e.Expires = c.Expires
|
|
if !c.Expires.After(now) {
|
|
return e, nil
|
|
}
|
|
}
|
|
|
|
e.Value = c.Value
|
|
e.Secure = c.Secure
|
|
e.HttpOnly = c.HttpOnly
|
|
|
|
return e, nil
|
|
}
|
|
|
|
var (
|
|
errIllegalDomain = errors.New("cookiejar: illegal cookie domain attribute")
|
|
errMalformedDomain = errors.New("cookiejar: malformed cookie domain attribute")
|
|
errNoHostname = errors.New("cookiejar: no host name available (IP only)")
|
|
)
|
|
|
|
// endOfTime is the time when session (non-persistent) cookies expire.
|
|
// This instant is representable in most date/time formats (not just
|
|
// Go's time.Time) and should be far enough in the future.
|
|
var endOfTime = time.Date(9999, 12, 31, 23, 59, 59, 0, time.UTC)
|
|
|
|
// domainAndType determines the cookie's domain and hostOnly attribute.
|
|
func (j *Jar) domainAndType(host, domain string) (string, bool, error) {
|
|
if domain == "" {
|
|
// No domain attribute in the SetCookie header indicates a
|
|
// host cookie.
|
|
return host, true, nil
|
|
}
|
|
|
|
if isIP(host) {
|
|
// According to RFC 6265 domain-matching includes not being
|
|
// an IP address.
|
|
// TODO: This might be relaxed as in common browsers.
|
|
return "", false, errNoHostname
|
|
}
|
|
|
|
// From here on: If the cookie is valid, it is a domain cookie (with
|
|
// the one exception of a public suffix below).
|
|
// See RFC 6265 section 5.2.3.
|
|
if domain[0] == '.' {
|
|
domain = domain[1:]
|
|
}
|
|
|
|
if len(domain) == 0 || domain[0] == '.' {
|
|
// Received either "Domain=." or "Domain=..some.thing",
|
|
// both are illegal.
|
|
return "", false, errMalformedDomain
|
|
}
|
|
domain = strings.ToLower(domain)
|
|
|
|
if domain[len(domain)-1] == '.' {
|
|
// We received stuff like "Domain=www.example.com.".
|
|
// Browsers do handle such stuff (actually differently) but
|
|
// RFC 6265 seems to be clear here (e.g. section 4.1.2.3) in
|
|
// requiring a reject. 4.1.2.3 is not normative, but
|
|
// "Domain Matching" (5.1.3) and "Canonicalized Host Names"
|
|
// (5.1.2) are.
|
|
return "", false, errMalformedDomain
|
|
}
|
|
|
|
// See RFC 6265 section 5.3 #5.
|
|
if j.psList != nil {
|
|
if ps := j.psList.PublicSuffix(domain); ps != "" && !hasDotSuffix(domain, ps) {
|
|
if host == domain {
|
|
// This is the one exception in which a cookie
|
|
// with a domain attribute is a host cookie.
|
|
return host, true, nil
|
|
}
|
|
return "", false, errIllegalDomain
|
|
}
|
|
}
|
|
|
|
// The domain must domain-match host: www.mycompany.com cannot
|
|
// set cookies for .ourcompetitors.com.
|
|
if host != domain && !hasDotSuffix(host, domain) {
|
|
return "", false, errIllegalDomain
|
|
}
|
|
|
|
return domain, false, nil
|
|
}
|
|
|
|
// DefaultCookieFile returns the default cookie file to use
|
|
// for persisting cookie data.
|
|
// The following names will be used in decending order of preference:
|
|
// - the value of the $GOCOOKIES environment variable.
|
|
// - $HOME/.go-cookies
|
|
func DefaultCookieFile() string {
|
|
if f := os.Getenv("GOCOOKIES"); f != "" {
|
|
return f
|
|
}
|
|
return filepath.Join(homeDir(), ".go-cookies")
|
|
}
|