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			273 lines
		
	
	
		
			7.8 KiB
		
	
	
	
		
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			273 lines
		
	
	
		
			7.8 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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	"io/fs"
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	"path/filepath"
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	"strings"
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	"github.com/caddyserver/caddy/v2"
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	"github.com/caddyserver/caddy/v2/caddyconfig"
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	"github.com/caddyserver/caddy/v2/caddyconfig/caddyfile"
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	"github.com/caddyserver/caddy/v2/caddyconfig/httpcaddyfile"
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	"github.com/caddyserver/caddy/v2/modules/caddyhttp"
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	"github.com/caddyserver/caddy/v2/modules/caddyhttp/encode"
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	"github.com/caddyserver/caddy/v2/modules/caddyhttp/rewrite"
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)
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func init() {
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	httpcaddyfile.RegisterHandlerDirective("file_server", parseCaddyfile)
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	httpcaddyfile.RegisterDirective("try_files", parseTryFiles)
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}
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// parseCaddyfile parses the file_server directive. It enables the static file
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// server and configures it with this syntax:
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//
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//	file_server [<matcher>] [browse] {
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//	    fs            <backend...>
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//	    root          <path>
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//	    hide          <files...>
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//	    index         <files...>
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//	    browse        [<template_file>]
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//	    precompressed <formats...>
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//	    status        <status>
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//	    disable_canonical_uris
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//	}
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func parseCaddyfile(h httpcaddyfile.Helper) (caddyhttp.MiddlewareHandler, error) {
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	var fsrv FileServer
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	for h.Next() {
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		args := h.RemainingArgs()
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		switch len(args) {
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		case 0:
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		case 1:
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			if args[0] != "browse" {
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				return nil, h.ArgErr()
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			}
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			fsrv.Browse = new(Browse)
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		default:
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			return nil, h.ArgErr()
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		}
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		for h.NextBlock(0) {
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			switch h.Val() {
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			case "fs":
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				if !h.NextArg() {
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					return nil, h.ArgErr()
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				}
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				if fsrv.FileSystemRaw != nil {
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					return nil, h.Err("file system module already specified")
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				}
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				name := h.Val()
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				modID := "caddy.fs." + name
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				unm, err := caddyfile.UnmarshalModule(h.Dispenser, modID)
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				if err != nil {
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					return nil, err
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				}
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				fsys, ok := unm.(fs.FS)
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				if !ok {
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					return nil, h.Errf("module %s (%T) is not a supported file system implementation (requires fs.FS)", modID, unm)
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				}
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				fsrv.FileSystemRaw = caddyconfig.JSONModuleObject(fsys, "backend", name, nil)
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			case "hide":
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				fsrv.Hide = h.RemainingArgs()
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				if len(fsrv.Hide) == 0 {
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					return nil, h.ArgErr()
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				}
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			case "index":
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				fsrv.IndexNames = h.RemainingArgs()
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				if len(fsrv.IndexNames) == 0 {
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					return nil, h.ArgErr()
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				}
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			case "root":
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				if !h.Args(&fsrv.Root) {
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					return nil, h.ArgErr()
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				}
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			case "browse":
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				if fsrv.Browse != nil {
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					return nil, h.Err("browsing is already configured")
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				}
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				fsrv.Browse = new(Browse)
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				h.Args(&fsrv.Browse.TemplateFile)
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			case "precompressed":
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				var order []string
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				for h.NextArg() {
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					modID := "http.precompressed." + h.Val()
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					mod, err := caddy.GetModule(modID)
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					if err != nil {
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						return nil, h.Errf("getting module named '%s': %v", modID, err)
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					}
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					inst := mod.New()
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					precompress, ok := inst.(encode.Precompressed)
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					if !ok {
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						return nil, h.Errf("module %s is not a precompressor; is %T", modID, inst)
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					}
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					if fsrv.PrecompressedRaw == nil {
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						fsrv.PrecompressedRaw = make(caddy.ModuleMap)
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					}
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					fsrv.PrecompressedRaw[h.Val()] = caddyconfig.JSON(precompress, nil)
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					order = append(order, h.Val())
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				}
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				fsrv.PrecompressedOrder = order
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			case "status":
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				if !h.NextArg() {
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					return nil, h.ArgErr()
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				}
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				fsrv.StatusCode = caddyhttp.WeakString(h.Val())
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			case "disable_canonical_uris":
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				if h.NextArg() {
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					return nil, h.ArgErr()
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				}
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				falseBool := false
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				fsrv.CanonicalURIs = &falseBool
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			case "pass_thru":
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				if h.NextArg() {
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					return nil, h.ArgErr()
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				}
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				fsrv.PassThru = true
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			default:
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				return nil, h.Errf("unknown subdirective '%s'", h.Val())
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			}
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		}
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	}
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	// hide the Caddyfile (and any imported Caddyfiles)
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	if configFiles := h.Caddyfiles(); len(configFiles) > 0 {
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		for _, file := range configFiles {
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			file = filepath.Clean(file)
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			if !fileHidden(file, fsrv.Hide) {
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				// if there's no path separator, the file server module will hide all
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				// files by that name, rather than a specific one; but we want to hide
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				// only this specific file, so ensure there's always a path separator
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				if !strings.Contains(file, separator) {
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					file = "." + separator + file
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				}
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				fsrv.Hide = append(fsrv.Hide, file)
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			}
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		}
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	}
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	return &fsrv, nil
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}
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// parseTryFiles parses the try_files directive. It combines a file matcher
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// with a rewrite directive, so this is not a standard handler directive.
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// A try_files directive has this syntax (notice no matcher tokens accepted):
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//
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//	try_files <files...> {
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//		policy first_exist|smallest_size|largest_size|most_recently_modified
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//	}
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//
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// and is basically shorthand for:
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//
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//	@try_files file {
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//		try_files <files...>
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//		policy first_exist|smallest_size|largest_size|most_recently_modified
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//	}
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//	rewrite @try_files {http.matchers.file.relative}
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//
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// This directive rewrites request paths only, preserving any other part
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// of the URI, unless the part is explicitly given in the file list. For
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// example, if any of the files in the list have a query string:
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//
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//	try_files {path} index.php?{query}&p={path}
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//
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// then the query string will not be treated as part of the file name; and
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// if that file matches, the given query string will replace any query string
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// that already exists on the request URI.
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func parseTryFiles(h httpcaddyfile.Helper) ([]httpcaddyfile.ConfigValue, error) {
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	if !h.Next() {
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		return nil, h.ArgErr()
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	}
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	tryFiles := h.RemainingArgs()
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	if len(tryFiles) == 0 {
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		return nil, h.ArgErr()
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	}
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	// parse out the optional try policy
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	var tryPolicy string
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	for nesting := h.Nesting(); h.NextBlock(nesting); {
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		switch h.Val() {
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		case "policy":
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			if tryPolicy != "" {
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				return nil, h.Err("try policy already configured")
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			}
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			if !h.NextArg() {
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				return nil, h.ArgErr()
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			}
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			tryPolicy = h.Val()
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			switch tryPolicy {
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			case tryPolicyFirstExist, tryPolicyLargestSize, tryPolicySmallestSize, tryPolicyMostRecentlyMod:
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			default:
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				return nil, h.Errf("unrecognized try policy: %s", tryPolicy)
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			}
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		}
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	}
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	// makeRoute returns a route that tries the files listed in try
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	// and then rewrites to the matched file; userQueryString is
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	// appended to the rewrite rule.
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	makeRoute := func(try []string, userQueryString string) []httpcaddyfile.ConfigValue {
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		handler := rewrite.Rewrite{
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			URI: "{http.matchers.file.relative}" + userQueryString,
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		}
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		matcherSet := caddy.ModuleMap{
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			"file": h.JSON(MatchFile{TryFiles: try, TryPolicy: tryPolicy}),
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		}
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		return h.NewRoute(matcherSet, handler)
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	}
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	var result []httpcaddyfile.ConfigValue
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	// if there are query strings in the list, we have to split into
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	// a separate route for each item with a query string, because
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	// the rewrite is different for that item
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	try := make([]string, 0, len(tryFiles))
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	for _, item := range tryFiles {
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		if idx := strings.Index(item, "?"); idx >= 0 {
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			if len(try) > 0 {
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				result = append(result, makeRoute(try, "")...)
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				try = []string{}
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			}
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			result = append(result, makeRoute([]string{item[:idx]}, item[idx:])...)
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			continue
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		}
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		// accumulate consecutive non-query-string parameters
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		try = append(try, item)
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	}
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	if len(try) > 0 {
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		result = append(result, makeRoute(try, "")...)
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	}
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	// ensure that multiple routes (possible if rewrite targets
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	// have query strings, for example) are grouped together
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	// so only the first matching rewrite is performed (#2891)
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	h.GroupRoutes(result)
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	return result, nil
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}
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