mirror of
https://github.com/caddyserver/caddy.git
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3860b235d0
We can't use a positional index on an original string that we got from its lower-cased equivalent. Implement our own IndexFold() function b/c the std lib does not have one.
322 lines
9.3 KiB
Go
322 lines
9.3 KiB
Go
// Copyright 2015 Matthew Holt and The Caddy Authors
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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 fileserver
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import (
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"fmt"
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"net/http"
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"os"
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"path"
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"strings"
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"time"
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"github.com/caddyserver/caddy/v2"
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"github.com/caddyserver/caddy/v2/caddyconfig/caddyfile"
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"github.com/caddyserver/caddy/v2/modules/caddyhttp"
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)
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func init() {
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caddy.RegisterModule(MatchFile{})
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}
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// MatchFile is an HTTP request matcher that can match
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// requests based upon file existence.
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//
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// Upon matching, two new placeholders will be made
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// available:
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//
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// - `{http.matchers.file.relative}` The root-relative
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// path of the file. This is often useful when rewriting
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// requests.
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// - `{http.matchers.file.absolute}` The absolute path
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// of the matched file.
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type MatchFile struct {
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// The root directory, used for creating absolute
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// file paths, and required when working with
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// relative paths; if not specified, `{http.vars.root}`
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// will be used, if set; otherwise, the current
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// directory is assumed. Accepts placeholders.
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Root string `json:"root,omitempty"`
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// The list of files to try. Each path here is
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// considered related to Root. If nil, the request
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// URL's path will be assumed. Files and
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// directories are treated distinctly, so to match
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// a directory, the filepath MUST end in a forward
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// slash `/`. To match a regular file, there must
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// be no trailing slash. Accepts placeholders.
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TryFiles []string `json:"try_files,omitempty"`
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// How to choose a file in TryFiles. Can be:
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//
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// - first_exist
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// - smallest_size
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// - largest_size
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// - most_recently_modified
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//
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// Default is first_exist.
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TryPolicy string `json:"try_policy,omitempty"`
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// A list of delimiters to use to split the path in two
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// when trying files. If empty, no splitting will
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// occur, and the path will be tried as-is. For each
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// split value, the left-hand side of the split,
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// including the split value, will be the path tried.
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// For example, the path `/remote.php/dav/` using the
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// split value `.php` would try the file `/remote.php`.
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// Each delimiter must appear at the end of a URI path
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// component in order to be used as a split delimiter.
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SplitPath []string `json:"split_path,omitempty"`
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}
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// CaddyModule returns the Caddy module information.
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func (MatchFile) CaddyModule() caddy.ModuleInfo {
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return caddy.ModuleInfo{
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ID: "http.matchers.file",
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New: func() caddy.Module { return new(MatchFile) },
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}
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}
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// UnmarshalCaddyfile sets up the matcher from Caddyfile tokens. Syntax:
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//
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// file <files...> {
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// root <path>
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// try_files <files...>
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// try_policy first_exist|smallest_size|largest_size|most_recently_modified
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// }
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//
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func (m *MatchFile) UnmarshalCaddyfile(d *caddyfile.Dispenser) error {
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for d.Next() {
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m.TryFiles = append(m.TryFiles, d.RemainingArgs()...)
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for d.NextBlock(0) {
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switch d.Val() {
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case "root":
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if !d.NextArg() {
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return d.ArgErr()
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}
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m.Root = d.Val()
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case "try_files":
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m.TryFiles = append(m.TryFiles, d.RemainingArgs()...)
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if len(m.TryFiles) == 0 {
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return d.ArgErr()
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}
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case "try_policy":
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if !d.NextArg() {
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return d.ArgErr()
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}
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m.TryPolicy = d.Val()
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case "split_path":
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m.SplitPath = d.RemainingArgs()
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if len(m.SplitPath) == 0 {
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return d.ArgErr()
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}
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default:
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return d.Errf("unrecognized subdirective: %s", d.Val())
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}
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}
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}
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return nil
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}
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// Provision sets up m's defaults.
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func (m *MatchFile) Provision(_ caddy.Context) error {
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if m.Root == "" {
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m.Root = "{http.vars.root}"
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}
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return nil
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}
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// Validate ensures m has a valid configuration.
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func (m MatchFile) Validate() error {
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switch m.TryPolicy {
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case "",
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tryPolicyFirstExist,
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tryPolicyLargestSize,
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tryPolicySmallestSize,
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tryPolicyMostRecentlyMod:
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default:
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return fmt.Errorf("unknown try policy %s", m.TryPolicy)
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}
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return nil
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}
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// Match returns true if r matches m. Returns true
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// if a file was matched. If so, two placeholders
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// will be available:
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// - http.matchers.file.relative
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// - http.matchers.file.absolute
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func (m MatchFile) Match(r *http.Request) bool {
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repl := r.Context().Value(caddy.ReplacerCtxKey).(*caddy.Replacer)
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rel, abs, matched := m.selectFile(r)
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if matched {
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repl.Set("http.matchers.file.relative", rel)
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repl.Set("http.matchers.file.absolute", abs)
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}
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return matched
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}
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// selectFile chooses a file according to m.TryPolicy by appending
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// the paths in m.TryFiles to m.Root, with placeholder replacements.
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// It returns the root-relative path to the matched file, the full
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// or absolute path, and whether a match was made.
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func (m MatchFile) selectFile(r *http.Request) (rel, abs string, matched bool) {
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repl := r.Context().Value(caddy.ReplacerCtxKey).(*caddy.Replacer)
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root := repl.ReplaceAll(m.Root, ".")
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// if list of files to try was omitted entirely,
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// assume URL path
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if m.TryFiles == nil {
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// m is not a pointer, so this is safe
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m.TryFiles = []string{r.URL.Path}
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}
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switch m.TryPolicy {
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case "", tryPolicyFirstExist:
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for _, f := range m.TryFiles {
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suffix := m.firstSplit(path.Clean(repl.ReplaceAll(f, "")))
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fullpath := sanitizedPathJoin(root, suffix)
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if strictFileExists(fullpath) {
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return suffix, fullpath, true
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}
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}
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case tryPolicyLargestSize:
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var largestSize int64
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var largestFilename string
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var largestSuffix string
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for _, f := range m.TryFiles {
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suffix := m.firstSplit(path.Clean(repl.ReplaceAll(f, "")))
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fullpath := sanitizedPathJoin(root, suffix)
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info, err := os.Stat(fullpath)
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if err == nil && info.Size() > largestSize {
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largestSize = info.Size()
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largestFilename = fullpath
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largestSuffix = suffix
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}
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}
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return largestSuffix, largestFilename, true
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case tryPolicySmallestSize:
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var smallestSize int64
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var smallestFilename string
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var smallestSuffix string
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for _, f := range m.TryFiles {
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suffix := m.firstSplit(path.Clean(repl.ReplaceAll(f, "")))
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fullpath := sanitizedPathJoin(root, suffix)
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info, err := os.Stat(fullpath)
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if err == nil && (smallestSize == 0 || info.Size() < smallestSize) {
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smallestSize = info.Size()
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smallestFilename = fullpath
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smallestSuffix = suffix
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}
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}
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return smallestSuffix, smallestFilename, true
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case tryPolicyMostRecentlyMod:
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var recentDate time.Time
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var recentFilename string
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var recentSuffix string
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for _, f := range m.TryFiles {
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suffix := m.firstSplit(path.Clean(repl.ReplaceAll(f, "")))
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fullpath := sanitizedPathJoin(root, suffix)
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info, err := os.Stat(fullpath)
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if err == nil &&
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(recentDate.IsZero() || info.ModTime().After(recentDate)) {
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recentDate = info.ModTime()
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recentFilename = fullpath
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recentSuffix = suffix
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}
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}
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return recentSuffix, recentFilename, true
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}
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return
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}
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// strictFileExists returns true if file exists
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// and matches the convention of the given file
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// path. If the path ends in a forward slash,
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// the file must also be a directory; if it does
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// NOT end in a forward slash, the file must NOT
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// be a directory.
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func strictFileExists(file string) bool {
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stat, err := os.Stat(file)
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if err != nil {
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// in reality, this can be any error
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// such as permission or even obscure
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// ones like "is not a directory" (when
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// trying to stat a file within a file);
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// in those cases we can't be sure if
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// the file exists, so we just treat any
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// error as if it does not exist; see
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// https://stackoverflow.com/a/12518877/1048862
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return false
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}
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if strings.HasSuffix(file, "/") {
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// by convention, file paths ending
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// in a slash must be a directory
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return stat.IsDir()
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}
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// by convention, file paths NOT ending
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// in a slash must NOT be a directory
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return !stat.IsDir()
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}
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// firstSplit returns the first result where the path
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// can be split in two by a value in m.SplitPath. The
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// result is the first piece of the path that ends with
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// in the split value. Returns the path as-is if the
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// path cannot be split.
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func (m MatchFile) firstSplit(path string) string {
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for _, split := range m.SplitPath {
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if idx := indexFold(path, split); idx > -1 {
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pos := idx + len(split)
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// skip the split if it's not the final part of the filename
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if pos != len(path) && !strings.HasPrefix(path[pos:], "/") {
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continue
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}
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return path[:pos]
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}
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}
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return path
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}
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// There is no strings.IndexFold() function like there is strings.EqualFold(),
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// but we can use strings.EqualFold() to build our own case-insensitive
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// substring search (as of Go 1.14).
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func indexFold(haystack, needle string) int {
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nlen := len(needle)
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for i := 0; i+nlen < len(haystack); i++ {
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if strings.EqualFold(haystack[i:i+nlen], needle) {
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return i
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}
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}
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return -1
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}
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const (
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tryPolicyFirstExist = "first_exist"
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tryPolicyLargestSize = "largest_size"
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tryPolicySmallestSize = "smallest_size"
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tryPolicyMostRecentlyMod = "most_recently_modified"
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)
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// Interface guards
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var (
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_ caddy.Validator = (*MatchFile)(nil)
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_ caddyhttp.RequestMatcher = (*MatchFile)(nil)
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)
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