Adrien Delorme 0fa60c68fb
Drop the iso_checksum_type & iso_checksum_url fields (#8437)
* Drop the iso_checksum_type & iso_checksum_url fields

In favor of simply using iso_checksum that will know what to do.

* fix after master merge

* Update builder_test.go

* Update builder_test.go

* Update builder_test.go

* Update builder_test.go

* Update builder_test.go

* remove checksum lowercasing tests

* Update builder_test.go

* Update builder_test.go

* better docs

* Update builder_test.go

* even better docs

* Update config.go

* Update builder_test.go

* Update step_create_vmx_test.go

* make generate

* better docs

* fix imports

* up tests

* Update _ISOConfig-required.html.md

* Update builder_test.go

* don't use sha1.Sum("none") as a caching path

* Update builder_test.go

* better docs

* Update iso_config_test.go

remove ISOChecksumType/ISOChecksumURL references

* Update step_download_test.go

* add iso_checksum_url and iso_checksum_type fixers + tests

* add concrete examples of checksum values

* add examples of checksumming from local file

* update go-getter dep

* up deps

* use new go-getter version

* up ESX5Driver.VerifyChecksum: use go-getter's checksumming

* ISOConfig.Prepare: get checksum there in case we need it as a string in ESX5Driver.VerifyChecksum

* Update iso_config.go

* get go-getter from v2 branch

* Update driver_esx5.go

add more comments

* Update driver_esx5.go

* show better error message when the checksum is invalid

* Update builder_test.go

put in a valid checksum to fix tests, checksum is md5("packer")

* Update builder_test.go

test invalid and valid checksum

* more test updating

* fix default md5 string to be a valid md5

* TestChecksumFileNameMixedCaseBug: use 'file:' prefix for file checksumming

* Update iso_config_test.go

* Update iso_config_test.go

* Update builder_test.go

* Update builder_test.go

* Update builder_test.go

* Update CHANGELOG.md

* Update CHANGELOG.md

* Update go.mod

* Update go.mod

* Update CHANGELOG.md
2020-05-28 11:02:09 +02:00

121 lines
3.0 KiB
Go

// Copyright 2013 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
// Package singleflight provides a duplicate function call suppression
// mechanism.
package singleflight
import "sync"
// call is an in-flight or completed singleflight.Do call
type call struct {
wg sync.WaitGroup
// These fields are written once before the WaitGroup is done
// and are only read after the WaitGroup is done.
val interface{}
err error
// forgotten indicates whether Forget was called with this call's key
// while the call was still in flight.
forgotten bool
// These fields are read and written with the singleflight
// mutex held before the WaitGroup is done, and are read but
// not written after the WaitGroup is done.
dups int
chans []chan<- Result
}
// Group represents a class of work and forms a namespace in
// which units of work can be executed with duplicate suppression.
type Group struct {
mu sync.Mutex // protects m
m map[string]*call // lazily initialized
}
// Result holds the results of Do, so they can be passed
// on a channel.
type Result struct {
Val interface{}
Err error
Shared bool
}
// Do executes and returns the results of the given function, making
// sure that only one execution is in-flight for a given key at a
// time. If a duplicate comes in, the duplicate caller waits for the
// original to complete and receives the same results.
// The return value shared indicates whether v was given to multiple callers.
func (g *Group) Do(key string, fn func() (interface{}, error)) (v interface{}, err error, shared bool) {
g.mu.Lock()
if g.m == nil {
g.m = make(map[string]*call)
}
if c, ok := g.m[key]; ok {
c.dups++
g.mu.Unlock()
c.wg.Wait()
return c.val, c.err, true
}
c := new(call)
c.wg.Add(1)
g.m[key] = c
g.mu.Unlock()
g.doCall(c, key, fn)
return c.val, c.err, c.dups > 0
}
// DoChan is like Do but returns a channel that will receive the
// results when they are ready.
func (g *Group) DoChan(key string, fn func() (interface{}, error)) <-chan Result {
ch := make(chan Result, 1)
g.mu.Lock()
if g.m == nil {
g.m = make(map[string]*call)
}
if c, ok := g.m[key]; ok {
c.dups++
c.chans = append(c.chans, ch)
g.mu.Unlock()
return ch
}
c := &call{chans: []chan<- Result{ch}}
c.wg.Add(1)
g.m[key] = c
g.mu.Unlock()
go g.doCall(c, key, fn)
return ch
}
// doCall handles the single call for a key.
func (g *Group) doCall(c *call, key string, fn func() (interface{}, error)) {
c.val, c.err = fn()
c.wg.Done()
g.mu.Lock()
if !c.forgotten {
delete(g.m, key)
}
for _, ch := range c.chans {
ch <- Result{c.val, c.err, c.dups > 0}
}
g.mu.Unlock()
}
// Forget tells the singleflight to forget about a key. Future calls
// to Do for this key will call the function rather than waiting for
// an earlier call to complete.
func (g *Group) Forget(key string) {
g.mu.Lock()
if c, ok := g.m[key]; ok {
c.forgotten = true
}
delete(g.m, key)
g.mu.Unlock()
}