mirror of
https://github.com/gohugoio/hugo.git
synced 2024-11-21 20:46:30 -05:00
f7aeaa6129
This commits reworks how file caching is performed in Hugo. Now there is only one way, and it can be configured.
This is the default configuration:
```toml
[caches]
[caches.getjson]
dir = ":cacheDir"
maxAge = -1
[caches.getcsv]
dir = ":cacheDir"
maxAge = -1
[caches.images]
dir = ":resourceDir/_gen"
maxAge = -1
[caches.assets]
dir = ":resourceDir/_gen"
maxAge = -1
```
You can override any of these cache setting in your own `config.toml`.
The placeholders explained:
`:cacheDir`: This is the value of the `cacheDir` config option if set (can also be set via OS env variable `HUGO_CACHEDIR`). It will fall back to `/opt/build/cache/hugo_cache/` on Netlify, or a `hugo_cache` directory below the OS temp dir for the others.
`:resourceDir`: This is the value of the `resourceDir` config option.
`maxAge` is the time in seconds before a cache entry will be evicted, -1 means forever and 0 effectively turns that particular cache off.
This means that if you run your builds on Netlify, all caches configured with `:cacheDir` will be saved and restored on the next build. For other CI vendors, please read their documentation. For an CircleCI example, see 6c3960a8f4/.circleci/config.yml
Fixes #5404
500 lines
13 KiB
Go
500 lines
13 KiB
Go
// Copyright 2018 The Hugo Authors. All rights reserved.
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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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// 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 resource
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import (
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"bytes"
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"path"
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"strconv"
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"strings"
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"github.com/gohugoio/hugo/common/collections"
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"github.com/gohugoio/hugo/common/herrors"
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"github.com/gohugoio/hugo/common/hugio"
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"github.com/gohugoio/hugo/helpers"
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"github.com/mitchellh/hashstructure"
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"fmt"
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"io"
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"sync"
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"github.com/gohugoio/hugo/media"
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bp "github.com/gohugoio/hugo/bufferpool"
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)
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var (
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_ ContentResource = (*transformedResource)(nil)
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_ ReadSeekCloserResource = (*transformedResource)(nil)
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_ collections.Slicer = (*transformedResource)(nil)
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)
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func (s *Spec) Transform(r Resource, t ResourceTransformation) (Resource, error) {
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return &transformedResource{
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Resource: r,
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transformation: t,
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transformedResourceMetadata: transformedResourceMetadata{MetaData: make(map[string]interface{})},
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cache: s.ResourceCache}, nil
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}
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type ResourceTransformationCtx struct {
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// The content to transform.
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From io.Reader
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// The target of content transformation.
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// The current implementation requires that r is written to w
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// even if no transformation is performed.
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To io.Writer
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// This is the relative path to the original source. Unix styled slashes.
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SourcePath string
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// This is the relative target path to the resource. Unix styled slashes.
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InPath string
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// The relative target path to the transformed resource. Unix styled slashes.
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OutPath string
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// The input media type
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InMediaType media.Type
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// The media type of the transformed resource.
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OutMediaType media.Type
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// Data data can be set on the transformed Resource. Not that this need
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// to be simple types, as it needs to be serialized to JSON and back.
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Data map[string]interface{}
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// This is used to publis additional artifacts, e.g. source maps.
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// We may improve this.
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OpenResourcePublisher func(relTargetPath string) (io.WriteCloser, error)
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}
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// AddOutPathIdentifier transforming InPath to OutPath adding an identifier,
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// eg '.min' before any extension.
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func (ctx *ResourceTransformationCtx) AddOutPathIdentifier(identifier string) {
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ctx.OutPath = ctx.addPathIdentifier(ctx.InPath, identifier)
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}
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func (ctx *ResourceTransformationCtx) addPathIdentifier(inPath, identifier string) string {
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dir, file := path.Split(inPath)
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base, ext := helpers.PathAndExt(file)
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return path.Join(dir, (base + identifier + ext))
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}
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// ReplaceOutPathExtension transforming InPath to OutPath replacing the file
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// extension, e.g. ".scss"
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func (ctx *ResourceTransformationCtx) ReplaceOutPathExtension(newExt string) {
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dir, file := path.Split(ctx.InPath)
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base, _ := helpers.PathAndExt(file)
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ctx.OutPath = path.Join(dir, (base + newExt))
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}
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// PublishSourceMap writes the content to the target folder of the main resource
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// with the ".map" extension added.
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func (ctx *ResourceTransformationCtx) PublishSourceMap(content string) error {
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target := ctx.OutPath + ".map"
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f, err := ctx.OpenResourcePublisher(target)
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if err != nil {
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return err
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}
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defer f.Close()
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_, err = f.Write([]byte(content))
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return err
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}
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// ResourceTransformationKey are provided by the different transformation implementations.
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// It identifies the transformation (name) and its configuration (elements).
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// We combine this in a chain with the rest of the transformations
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// with the target filename and a content hash of the origin to use as cache key.
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type ResourceTransformationKey struct {
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name string
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elements []interface{}
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}
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// NewResourceTransformationKey creates a new ResourceTransformationKey from the transformation
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// name and elements. We will create a 64 bit FNV hash from the elements, which when combined
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// with the other key elements should be unique for all practical applications.
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func NewResourceTransformationKey(name string, elements ...interface{}) ResourceTransformationKey {
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return ResourceTransformationKey{name: name, elements: elements}
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}
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// Do not change this without good reasons.
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func (k ResourceTransformationKey) key() string {
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if len(k.elements) == 0 {
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return k.name
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}
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sb := bp.GetBuffer()
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defer bp.PutBuffer(sb)
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sb.WriteString(k.name)
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for _, element := range k.elements {
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hash, err := hashstructure.Hash(element, nil)
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if err != nil {
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panic(err)
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}
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sb.WriteString("_")
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sb.WriteString(strconv.FormatUint(hash, 10))
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}
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return sb.String()
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}
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// ResourceTransformation is the interface that a resource transformation step
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// needs to implement.
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type ResourceTransformation interface {
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Key() ResourceTransformationKey
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Transform(ctx *ResourceTransformationCtx) error
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}
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// We will persist this information to disk.
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type transformedResourceMetadata struct {
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Target string `json:"Target"`
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MediaTypeV string `json:"MediaType"`
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MetaData map[string]interface{} `json:"Data"`
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}
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type transformedResource struct {
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commonResource
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cache *ResourceCache
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// This is the filename inside resources/_gen/assets
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sourceFilename string
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linker permalinker
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// The transformation to apply.
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transformation ResourceTransformation
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// We apply the tranformations lazily.
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transformInit sync.Once
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transformErr error
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// The transformed values
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content string
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contentInit sync.Once
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transformedResourceMetadata
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// The source
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Resource
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}
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func (r *transformedResource) ReadSeekCloser() (hugio.ReadSeekCloser, error) {
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if err := r.initContent(); err != nil {
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return nil, err
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}
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return hugio.NewReadSeekerNoOpCloserFromString(r.content), nil
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}
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func (r *transformedResource) transferTransformedValues(another *transformedResource) {
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if another.content != "" {
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r.contentInit.Do(func() {
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r.content = another.content
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})
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}
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r.transformedResourceMetadata = another.transformedResourceMetadata
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}
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func (r *transformedResource) tryTransformedFileCache(key string) io.ReadCloser {
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fi, f, meta, found := r.cache.getFromFile(key)
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if !found {
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return nil
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}
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r.transformedResourceMetadata = meta
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r.sourceFilename = fi.Name
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return f
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}
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func (r *transformedResource) Content() (interface{}, error) {
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if err := r.initTransform(true); err != nil {
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return nil, err
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}
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if err := r.initContent(); err != nil {
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return "", err
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}
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return r.content, nil
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}
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func (r *transformedResource) Data() interface{} {
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if err := r.initTransform(false); err != nil {
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return noData
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}
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return r.MetaData
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}
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func (r *transformedResource) MediaType() media.Type {
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if err := r.initTransform(false); err != nil {
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return media.Type{}
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}
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m, _ := r.cache.rs.MediaTypes.GetByType(r.MediaTypeV)
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return m
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}
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func (r *transformedResource) Permalink() string {
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if err := r.initTransform(false); err != nil {
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return ""
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}
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return r.linker.permalinkFor(r.Target)
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}
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func (r *transformedResource) RelPermalink() string {
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if err := r.initTransform(false); err != nil {
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return ""
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}
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return r.linker.relPermalinkFor(r.Target)
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}
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func (r *transformedResource) initContent() error {
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var err error
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r.contentInit.Do(func() {
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var b []byte
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_, b, err = r.cache.fileCache.GetBytes(r.sourceFilename)
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if err != nil {
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return
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}
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r.content = string(b)
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})
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return err
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}
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func (r *transformedResource) transform(setContent bool) (err error) {
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openPublishFileForWriting := func(relTargetPath string) (io.WriteCloser, error) {
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return helpers.OpenFilesForWriting(r.cache.rs.PublishFs, r.linker.relTargetPathsFor(relTargetPath)...)
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}
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// This can be the last resource in a chain.
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// Rewind and create a processing chain.
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var chain []Resource
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current := r
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for {
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rr := current.Resource
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chain = append(chain[:0], append([]Resource{rr}, chain[0:]...)...)
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if tr, ok := rr.(*transformedResource); ok {
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current = tr
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} else {
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break
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}
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}
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// Append the current transformer at the end
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chain = append(chain, r)
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first := chain[0]
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// Files with a suffix will be stored in cache (both on disk and in memory)
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// partitioned by their suffix. There will be other files below /other.
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// This partition is also how we determine what to delete on server reloads.
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var key, base string
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for _, element := range chain {
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switch v := element.(type) {
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case *transformedResource:
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key = key + "_" + v.transformation.Key().key()
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case permalinker:
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r.linker = v
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p := v.targetPath()
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if p == "" {
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panic("target path needed for key creation")
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}
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partition := ResourceKeyPartition(p)
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base = partition + "/" + p
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default:
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return fmt.Errorf("transformation not supported for type %T", element)
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}
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}
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key = r.cache.cleanKey(base + "_" + helpers.MD5String(key))
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cached, found := r.cache.get(key)
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if found {
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r.transferTransformedValues(cached.(*transformedResource))
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return
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}
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// Acquire a write lock for the named transformation.
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r.cache.nlocker.Lock(key)
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// Check the cache again.
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cached, found = r.cache.get(key)
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if found {
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r.transferTransformedValues(cached.(*transformedResource))
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r.cache.nlocker.Unlock(key)
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return
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}
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defer r.cache.nlocker.Unlock(key)
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defer r.cache.set(key, r)
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b1 := bp.GetBuffer()
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b2 := bp.GetBuffer()
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defer bp.PutBuffer(b1)
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defer bp.PutBuffer(b2)
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tctx := &ResourceTransformationCtx{
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Data: r.transformedResourceMetadata.MetaData,
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OpenResourcePublisher: openPublishFileForWriting,
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}
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tctx.InMediaType = first.MediaType()
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tctx.OutMediaType = first.MediaType()
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contentrc, err := contentReadSeekerCloser(first)
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if err != nil {
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return err
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}
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defer contentrc.Close()
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tctx.From = contentrc
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tctx.To = b1
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if r.linker != nil {
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tctx.InPath = r.linker.targetPath()
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tctx.SourcePath = tctx.InPath
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}
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counter := 0
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var transformedContentr io.Reader
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for _, element := range chain {
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tr, ok := element.(*transformedResource)
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if !ok {
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continue
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}
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counter++
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if counter != 1 {
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tctx.InMediaType = tctx.OutMediaType
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}
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if counter%2 == 0 {
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tctx.From = b1
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b2.Reset()
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tctx.To = b2
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} else {
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if counter != 1 {
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// The first reader is the file.
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tctx.From = b2
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}
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b1.Reset()
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tctx.To = b1
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}
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if err := tr.transformation.Transform(tctx); err != nil {
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if err == herrors.ErrFeatureNotAvailable {
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// This transformation is not available in this
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// Hugo installation (scss not compiled in, PostCSS not available etc.)
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// If a prepared bundle for this transformation chain is available, use that.
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f := r.tryTransformedFileCache(key)
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if f == nil {
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errMsg := err.Error()
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if tr.transformation.Key().name == "postcss" {
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errMsg = "PostCSS not found; install with \"npm install postcss-cli\". See https://gohugo.io/hugo-pipes/postcss/"
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}
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return fmt.Errorf("%s: failed to transform %q (%s): %s", strings.ToUpper(tr.transformation.Key().name), tctx.InPath, tctx.InMediaType.Type(), errMsg)
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}
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transformedContentr = f
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defer f.Close()
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// The reader above is all we need.
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break
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}
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// Abort.
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return err
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}
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if tctx.OutPath != "" {
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tctx.InPath = tctx.OutPath
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tctx.OutPath = ""
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}
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}
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if transformedContentr == nil {
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r.Target = tctx.InPath
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r.MediaTypeV = tctx.OutMediaType.Type()
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}
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publicw, err := openPublishFileForWriting(r.Target)
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if err != nil {
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r.transformErr = err
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return
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}
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defer publicw.Close()
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publishwriters := []io.WriteCloser{publicw}
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if transformedContentr == nil {
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// Also write it to the cache
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fi, metaw, err := r.cache.writeMeta(key, r.transformedResourceMetadata)
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if err != nil {
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return err
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}
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r.sourceFilename = fi.Name
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publishwriters = append(publishwriters, metaw)
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if counter > 0 {
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transformedContentr = tctx.To.(*bytes.Buffer)
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} else {
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transformedContentr = contentrc
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}
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}
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// Also write it to memory
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var contentmemw *bytes.Buffer
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if setContent {
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contentmemw = bp.GetBuffer()
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defer bp.PutBuffer(contentmemw)
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publishwriters = append(publishwriters, hugio.ToWriteCloser(contentmemw))
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}
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publishw := hugio.NewMultiWriteCloser(publishwriters...)
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_, r.transformErr = io.Copy(publishw, transformedContentr)
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publishw.Close()
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if setContent {
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r.contentInit.Do(func() {
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r.content = contentmemw.String()
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})
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}
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return nil
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}
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func (r *transformedResource) initTransform(setContent bool) error {
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r.transformInit.Do(func() {
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if err := r.transform(setContent); err != nil {
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r.transformErr = err
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r.cache.rs.Logger.ERROR.Println("error: failed to transform resource:", err)
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}
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})
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return r.transformErr
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}
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// contentReadSeekerCloser returns a ReadSeekerCloser if possible for a given Resource.
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func contentReadSeekerCloser(r Resource) (hugio.ReadSeekCloser, error) {
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switch rr := r.(type) {
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case ReadSeekCloserResource:
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rc, err := rr.ReadSeekCloser()
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if err != nil {
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return nil, err
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}
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return rc, nil
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default:
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return nil, fmt.Errorf("cannot transform content of Resource of type %T", r)
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}
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}
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