mirror of
https://github.com/TECHNOFAB11/zfs-localpv.git
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refact(deps): bump k8s and client-go deps to version v0.20.2 (#294)
Signed-off-by: prateekpandey14 <prateek.pandey@mayadata.io>
This commit is contained in:
parent
533e17a9aa
commit
b1aa6ab51a
2196 changed files with 306727 additions and 251810 deletions
210
vendor/golang.org/x/tools/internal/gocommand/invoke.go
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210
vendor/golang.org/x/tools/internal/gocommand/invoke.go
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@ -0,0 +1,210 @@
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// Copyright 2020 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 gocommand is a helper for calling the go command.
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package gocommand
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import (
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"bytes"
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"context"
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"fmt"
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"io"
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"os"
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"os/exec"
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"regexp"
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"strings"
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"sync"
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"time"
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"golang.org/x/tools/internal/event"
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)
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// An Runner will run go command invocations and serialize
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// them if it sees a concurrency error.
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type Runner struct {
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// LoadMu guards packages.Load calls and associated state.
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loadMu sync.Mutex
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// locked is true when we hold the mutex and have incremented.
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locked bool
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serializeLoads int
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}
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// 1.13: go: updates to go.mod needed, but contents have changed
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// 1.14: go: updating go.mod: existing contents have changed since last read
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var modConcurrencyError = regexp.MustCompile(`go:.*go.mod.*contents have changed`)
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// Run is a convenience wrapper around RunRaw.
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// It returns only stdout and a "friendly" error.
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func (runner *Runner) Run(ctx context.Context, inv Invocation) (*bytes.Buffer, error) {
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stdout, _, friendly, _ := runner.runRaw(ctx, inv)
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return stdout, friendly
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}
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// RunPiped runs the invocation serially, always waiting for any concurrent
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// invocations to complete first.
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func (runner *Runner) RunPiped(ctx context.Context, inv Invocation, stdout, stderr io.Writer) error {
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_, err := runner.runPiped(ctx, inv, stdout, stderr)
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return err
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}
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// RunRaw runs the invocation, serializing requests only if they fight over
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// go.mod changes.
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func (runner *Runner) RunRaw(ctx context.Context, inv Invocation) (*bytes.Buffer, *bytes.Buffer, error, error) {
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return runner.runRaw(ctx, inv)
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}
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func (runner *Runner) runPiped(ctx context.Context, inv Invocation, stdout, stderr io.Writer) (error, error) {
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runner.loadMu.Lock()
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runner.serializeLoads++
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runner.locked = true
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defer func() {
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runner.locked = false
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runner.serializeLoads--
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runner.loadMu.Unlock()
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}()
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return inv.runWithFriendlyError(ctx, stdout, stderr)
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}
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func (runner *Runner) runRaw(ctx context.Context, inv Invocation) (*bytes.Buffer, *bytes.Buffer, error, error) {
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// We want to run invocations concurrently as much as possible. However,
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// if go.mod updates are needed, only one can make them and the others will
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// fail. We need to retry in those cases, but we don't want to thrash so
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// badly we never recover. To avoid that, once we've seen one concurrency
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// error, start serializing everything until the backlog has cleared out.
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runner.loadMu.Lock()
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if runner.serializeLoads == 0 {
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runner.loadMu.Unlock()
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} else {
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runner.locked = true
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runner.serializeLoads++
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}
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defer func() {
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if runner.locked {
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runner.locked = false
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runner.serializeLoads--
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runner.loadMu.Unlock()
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}
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}()
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for {
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stdout, stderr := &bytes.Buffer{}, &bytes.Buffer{}
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friendlyErr, err := inv.runWithFriendlyError(ctx, stdout, stderr)
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if friendlyErr == nil || !modConcurrencyError.MatchString(friendlyErr.Error()) {
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return stdout, stderr, friendlyErr, err
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}
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event.Error(ctx, "Load concurrency error, will retry serially", err)
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if !runner.locked {
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runner.loadMu.Lock()
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runner.serializeLoads++
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runner.locked = true
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}
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}
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}
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// An Invocation represents a call to the go command.
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type Invocation struct {
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Verb string
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Args []string
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BuildFlags []string
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Env []string
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WorkingDir string
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Logf func(format string, args ...interface{})
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}
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func (i *Invocation) runWithFriendlyError(ctx context.Context, stdout, stderr io.Writer) (friendlyError error, rawError error) {
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rawError = i.run(ctx, stdout, stderr)
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if rawError != nil {
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friendlyError = rawError
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// Check for 'go' executable not being found.
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if ee, ok := rawError.(*exec.Error); ok && ee.Err == exec.ErrNotFound {
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friendlyError = fmt.Errorf("go command required, not found: %v", ee)
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}
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if ctx.Err() != nil {
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friendlyError = ctx.Err()
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}
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friendlyError = fmt.Errorf("err: %v: stderr: %s", friendlyError, stderr)
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}
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return
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}
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func (i *Invocation) run(ctx context.Context, stdout, stderr io.Writer) error {
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log := i.Logf
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if log == nil {
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log = func(string, ...interface{}) {}
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}
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goArgs := []string{i.Verb}
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switch i.Verb {
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case "mod":
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// mod needs the sub-verb before build flags.
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goArgs = append(goArgs, i.Args[0])
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goArgs = append(goArgs, i.BuildFlags...)
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goArgs = append(goArgs, i.Args[1:]...)
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case "env":
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// env doesn't take build flags.
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goArgs = append(goArgs, i.Args...)
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default:
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goArgs = append(goArgs, i.BuildFlags...)
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goArgs = append(goArgs, i.Args...)
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}
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cmd := exec.Command("go", goArgs...)
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cmd.Stdout = stdout
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cmd.Stderr = stderr
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// On darwin the cwd gets resolved to the real path, which breaks anything that
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// expects the working directory to keep the original path, including the
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// go command when dealing with modules.
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// The Go stdlib has a special feature where if the cwd and the PWD are the
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// same node then it trusts the PWD, so by setting it in the env for the child
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// process we fix up all the paths returned by the go command.
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cmd.Env = append(os.Environ(), i.Env...)
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if i.WorkingDir != "" {
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cmd.Env = append(cmd.Env, "PWD="+i.WorkingDir)
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cmd.Dir = i.WorkingDir
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}
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defer func(start time.Time) { log("%s for %v", time.Since(start), cmdDebugStr(cmd)) }(time.Now())
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return runCmdContext(ctx, cmd)
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}
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// runCmdContext is like exec.CommandContext except it sends os.Interrupt
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// before os.Kill.
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func runCmdContext(ctx context.Context, cmd *exec.Cmd) error {
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if err := cmd.Start(); err != nil {
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return err
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}
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resChan := make(chan error, 1)
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go func() {
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resChan <- cmd.Wait()
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}()
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select {
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case err := <-resChan:
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return err
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case <-ctx.Done():
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}
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// Cancelled. Interrupt and see if it ends voluntarily.
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cmd.Process.Signal(os.Interrupt)
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select {
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case err := <-resChan:
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return err
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case <-time.After(time.Second):
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}
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// Didn't shut down in response to interrupt. Kill it hard.
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cmd.Process.Kill()
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return <-resChan
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}
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func cmdDebugStr(cmd *exec.Cmd) string {
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env := make(map[string]string)
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for _, kv := range cmd.Env {
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split := strings.Split(kv, "=")
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k, v := split[0], split[1]
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env[k] = v
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}
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return fmt.Sprintf("GOROOT=%v GOPATH=%v GO111MODULE=%v GOPROXY=%v PWD=%v go %v", env["GOROOT"], env["GOPATH"], env["GO111MODULE"], env["GOPROXY"], env["PWD"], cmd.Args)
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}
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102
vendor/golang.org/x/tools/internal/gocommand/vendor.go
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102
vendor/golang.org/x/tools/internal/gocommand/vendor.go
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@ -0,0 +1,102 @@
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// Copyright 2020 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 gocommand
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import (
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"bytes"
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"context"
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"fmt"
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"os"
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"path/filepath"
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"regexp"
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"strings"
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"golang.org/x/mod/semver"
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)
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// ModuleJSON holds information about a module.
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type ModuleJSON struct {
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Path string // module path
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Replace *ModuleJSON // replaced by this module
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Main bool // is this the main module?
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Indirect bool // is this module only an indirect dependency of main module?
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Dir string // directory holding files for this module, if any
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GoMod string // path to go.mod file for this module, if any
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GoVersion string // go version used in module
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}
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var modFlagRegexp = regexp.MustCompile(`-mod[ =](\w+)`)
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// VendorEnabled reports whether vendoring is enabled. It takes a *Runner to execute Go commands
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// with the supplied context.Context and Invocation. The Invocation can contain pre-defined fields,
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// of which only Verb and Args are modified to run the appropriate Go command.
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// Inspired by setDefaultBuildMod in modload/init.go
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func VendorEnabled(ctx context.Context, inv Invocation, r *Runner) (*ModuleJSON, bool, error) {
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mainMod, go114, err := getMainModuleAnd114(ctx, inv, r)
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if err != nil {
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return nil, false, err
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}
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// We check the GOFLAGS to see if there is anything overridden or not.
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inv.Verb = "env"
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inv.Args = []string{"GOFLAGS"}
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stdout, err := r.Run(ctx, inv)
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if err != nil {
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return nil, false, err
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}
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goflags := string(bytes.TrimSpace(stdout.Bytes()))
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matches := modFlagRegexp.FindStringSubmatch(goflags)
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var modFlag string
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if len(matches) != 0 {
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modFlag = matches[1]
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}
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if modFlag != "" {
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// Don't override an explicit '-mod=' argument.
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return mainMod, modFlag == "vendor", nil
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}
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if mainMod == nil || !go114 {
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return mainMod, false, nil
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}
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// Check 1.14's automatic vendor mode.
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if fi, err := os.Stat(filepath.Join(mainMod.Dir, "vendor")); err == nil && fi.IsDir() {
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if mainMod.GoVersion != "" && semver.Compare("v"+mainMod.GoVersion, "v1.14") >= 0 {
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// The Go version is at least 1.14, and a vendor directory exists.
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// Set -mod=vendor by default.
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return mainMod, true, nil
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}
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}
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return mainMod, false, nil
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}
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// getMainModuleAnd114 gets the main module's information and whether the
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// go command in use is 1.14+. This is the information needed to figure out
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// if vendoring should be enabled.
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func getMainModuleAnd114(ctx context.Context, inv Invocation, r *Runner) (*ModuleJSON, bool, error) {
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const format = `{{.Path}}
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{{.Dir}}
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{{.GoMod}}
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{{.GoVersion}}
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{{range context.ReleaseTags}}{{if eq . "go1.14"}}{{.}}{{end}}{{end}}
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`
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inv.Verb = "list"
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inv.Args = []string{"-m", "-f", format}
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stdout, err := r.Run(ctx, inv)
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if err != nil {
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return nil, false, err
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}
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lines := strings.Split(stdout.String(), "\n")
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if len(lines) < 5 {
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return nil, false, fmt.Errorf("unexpected stdout: %q", stdout.String())
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}
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mod := &ModuleJSON{
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Path: lines[0],
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Dir: lines[1],
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GoMod: lines[2],
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GoVersion: lines[3],
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Main: true,
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}
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return mod, lines[4] == "go1.14", nil
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}
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