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If projects are configured using an atlantis.yaml with a specific project name, include that in the output for comments. This is useful because often the project names are better identifiers than the directory and workspace names and also because some projects use the same dir and workspace so the only way to differentiate them is via their names. Fixes #353
282 lines
9.5 KiB
Go
282 lines
9.5 KiB
Go
// Copyright 2017 HootSuite Media Inc.
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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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// 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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// Modified hereafter by contributors to runatlantis/atlantis.
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package events
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import (
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"fmt"
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"os"
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"path/filepath"
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"strings"
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"github.com/pkg/errors"
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"github.com/runatlantis/atlantis/server/events/models"
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"github.com/runatlantis/atlantis/server/events/runtime"
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"github.com/runatlantis/atlantis/server/events/webhooks"
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"github.com/runatlantis/atlantis/server/events/yaml/raw"
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"github.com/runatlantis/atlantis/server/events/yaml/valid"
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"github.com/runatlantis/atlantis/server/logging"
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)
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//go:generate pegomock generate -m --use-experimental-model-gen --package mocks -o mocks/mock_lock_url_generator.go LockURLGenerator
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// LockURLGenerator generates urls to locks.
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type LockURLGenerator interface {
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// GenerateLockURL returns the full URL to the lock at lockID.
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GenerateLockURL(lockID string) string
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}
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//go:generate pegomock generate -m --use-experimental-model-gen --package mocks -o mocks/mock_step_runner.go StepRunner
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// StepRunner runs steps. Steps are individual pieces of execution like
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// `terraform plan`.
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type StepRunner interface {
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// Run runs the step.
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Run(ctx models.ProjectCommandContext, extraArgs []string, path string) (string, error)
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}
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//go:generate pegomock generate -m --use-experimental-model-gen --package mocks -o mocks/mock_webhooks_sender.go WebhooksSender
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// WebhooksSender sends webhook.
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type WebhooksSender interface {
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// Send sends the webhook.
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Send(log *logging.SimpleLogger, res webhooks.ApplyResult) error
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}
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// PlanSuccess is the result of a successful plan.
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type PlanSuccess struct {
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// TerraformOutput is the output from Terraform of running plan.
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TerraformOutput string
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// LockURL is the full URL to the lock held by this plan.
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LockURL string
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// RePlanCmd is the command that users should run to re-plan this project.
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RePlanCmd string
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// ApplyCmd is the command that users should run to apply this plan.
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ApplyCmd string
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}
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//go:generate pegomock generate -m --use-experimental-model-gen --package mocks -o mocks/mock_project_command_runner.go ProjectCommandRunner
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// ProjectCommandRunner runs project commands. A project command is a command
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// for a specific TF project.
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type ProjectCommandRunner interface {
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// Plan runs terraform plan for the project described by ctx.
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Plan(ctx models.ProjectCommandContext) ProjectResult
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// Apply runs terraform apply for the project described by ctx.
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Apply(ctx models.ProjectCommandContext) ProjectResult
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}
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// DefaultProjectCommandRunner implements ProjectCommandRunner.
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type DefaultProjectCommandRunner struct {
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Locker ProjectLocker
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LockURLGenerator LockURLGenerator
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InitStepRunner StepRunner
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PlanStepRunner StepRunner
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ApplyStepRunner StepRunner
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RunStepRunner StepRunner
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PullApprovedChecker runtime.PullApprovedChecker
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WorkingDir WorkingDir
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Webhooks WebhooksSender
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WorkingDirLocker WorkingDirLocker
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RequireApprovalOverride bool
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}
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// Plan runs terraform plan for the project described by ctx.
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func (p *DefaultProjectCommandRunner) Plan(ctx models.ProjectCommandContext) ProjectResult {
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planSuccess, failure, err := p.doPlan(ctx)
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return ProjectResult{
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PlanSuccess: planSuccess,
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Error: err,
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Failure: failure,
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RepoRelDir: ctx.RepoRelDir,
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Workspace: ctx.Workspace,
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ProjectName: ctx.GetProjectName(),
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}
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}
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// Apply runs terraform apply for the project described by ctx.
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func (p *DefaultProjectCommandRunner) Apply(ctx models.ProjectCommandContext) ProjectResult {
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applyOut, failure, err := p.doApply(ctx)
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return ProjectResult{
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Failure: failure,
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Error: err,
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ApplySuccess: applyOut,
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RepoRelDir: ctx.RepoRelDir,
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Workspace: ctx.Workspace,
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ProjectName: ctx.GetProjectName(),
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}
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}
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func (p *DefaultProjectCommandRunner) doPlan(ctx models.ProjectCommandContext) (*PlanSuccess, string, error) {
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// Acquire Atlantis lock for this repo/dir/workspace.
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lockAttempt, err := p.Locker.TryLock(ctx.Log, ctx.Pull, ctx.User, ctx.Workspace, models.NewProject(ctx.BaseRepo.FullName, ctx.RepoRelDir))
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if err != nil {
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return nil, "", errors.Wrap(err, "acquiring lock")
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}
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if !lockAttempt.LockAcquired {
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return nil, lockAttempt.LockFailureReason, nil
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}
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ctx.Log.Debug("acquired lock for project")
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// Acquire internal lock for the directory we're going to operate in.
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unlockFn, err := p.WorkingDirLocker.TryLock(ctx.BaseRepo.FullName, ctx.Pull.Num, ctx.Workspace)
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if err != nil {
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return nil, "", err
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}
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defer unlockFn()
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// Clone is idempotent so okay to run even if the repo was already cloned.
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repoDir, cloneErr := p.WorkingDir.Clone(ctx.Log, ctx.BaseRepo, ctx.HeadRepo, ctx.Pull, ctx.Workspace)
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if cloneErr != nil {
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if unlockErr := lockAttempt.UnlockFn(); unlockErr != nil {
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ctx.Log.Err("error unlocking state after plan error: %v", unlockErr)
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}
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return nil, "", cloneErr
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}
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projAbsPath := filepath.Join(repoDir, ctx.RepoRelDir)
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// Use default stage unless another workflow is defined in config
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stage := p.defaultPlanStage()
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if ctx.ProjectConfig != nil && ctx.ProjectConfig.Workflow != nil {
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ctx.Log.Debug("project configured to use workflow %q", *ctx.ProjectConfig.Workflow)
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configuredStage := ctx.GlobalConfig.GetPlanStage(*ctx.ProjectConfig.Workflow)
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if configuredStage != nil {
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ctx.Log.Debug("project will use the configured stage for that workflow")
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stage = *configuredStage
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}
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}
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outputs, err := p.runSteps(stage.Steps, ctx, projAbsPath)
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if err != nil {
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if unlockErr := lockAttempt.UnlockFn(); unlockErr != nil {
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ctx.Log.Err("error unlocking state after plan error: %v", unlockErr)
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}
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return nil, "", fmt.Errorf("%s\n%s", err, strings.Join(outputs, "\n"))
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}
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return &PlanSuccess{
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LockURL: p.LockURLGenerator.GenerateLockURL(lockAttempt.LockKey),
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TerraformOutput: strings.Join(outputs, "\n"),
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RePlanCmd: ctx.RePlanCmd,
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ApplyCmd: ctx.ApplyCmd,
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}, "", nil
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}
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func (p *DefaultProjectCommandRunner) runSteps(steps []valid.Step, ctx models.ProjectCommandContext, absPath string) ([]string, error) {
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var outputs []string
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for _, step := range steps {
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var out string
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var err error
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switch step.StepName {
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case "init":
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out, err = p.InitStepRunner.Run(ctx, step.ExtraArgs, absPath)
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case "plan":
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out, err = p.PlanStepRunner.Run(ctx, step.ExtraArgs, absPath)
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case "apply":
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out, err = p.ApplyStepRunner.Run(ctx, step.ExtraArgs, absPath)
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case "run":
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out, err = p.RunStepRunner.Run(ctx, step.RunCommand, absPath)
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}
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if out != "" {
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outputs = append(outputs, out)
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}
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if err != nil {
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return outputs, err
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}
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}
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return outputs, nil
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}
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func (p *DefaultProjectCommandRunner) doApply(ctx models.ProjectCommandContext) (applyOut string, failure string, err error) {
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repoDir, err := p.WorkingDir.GetWorkingDir(ctx.BaseRepo, ctx.Pull, ctx.Workspace)
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if err != nil {
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if os.IsNotExist(err) {
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return "", "", errors.New("project has not been cloned–did you run plan?")
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}
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return "", "", err
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}
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absPath := filepath.Join(repoDir, ctx.RepoRelDir)
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var applyRequirements []string
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if ctx.ProjectConfig != nil {
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applyRequirements = ctx.ProjectConfig.ApplyRequirements
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}
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// todo: this class shouldn't know about the server-side approval requirement.
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// Instead the project_command_builder should figure this out and store this information in the ctx. # refactor
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if p.RequireApprovalOverride {
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applyRequirements = []string{raw.ApprovedApplyRequirement}
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}
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for _, req := range applyRequirements {
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switch req {
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case raw.ApprovedApplyRequirement:
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approved, err := p.PullApprovedChecker.PullIsApproved(ctx.BaseRepo, ctx.Pull) // nolint: vetshadow
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if err != nil {
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return "", "", errors.Wrap(err, "checking if pull request was approved")
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}
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if !approved {
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return "", "Pull request must be approved before running apply.", nil
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}
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}
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}
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// Acquire internal lock for the directory we're going to operate in.
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unlockFn, err := p.WorkingDirLocker.TryLock(ctx.BaseRepo.FullName, ctx.Pull.Num, ctx.Workspace)
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if err != nil {
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return "", "", err
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}
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defer unlockFn()
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// Use default stage unless another workflow is defined in config
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stage := p.defaultApplyStage()
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if ctx.ProjectConfig != nil && ctx.ProjectConfig.Workflow != nil {
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configuredStage := ctx.GlobalConfig.GetApplyStage(*ctx.ProjectConfig.Workflow)
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if configuredStage != nil {
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stage = *configuredStage
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}
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}
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outputs, err := p.runSteps(stage.Steps, ctx, absPath)
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p.Webhooks.Send(ctx.Log, webhooks.ApplyResult{ // nolint: errcheck
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Workspace: ctx.Workspace,
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User: ctx.User,
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Repo: ctx.BaseRepo,
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Pull: ctx.Pull,
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Success: err == nil,
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})
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if err != nil {
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return "", "", fmt.Errorf("%s\n%s", err, strings.Join(outputs, "\n"))
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}
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return strings.Join(outputs, "\n"), "", nil
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}
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func (p DefaultProjectCommandRunner) defaultPlanStage() valid.Stage {
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return valid.Stage{
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Steps: []valid.Step{
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{
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StepName: "init",
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},
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{
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StepName: "plan",
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},
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},
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}
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}
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func (p DefaultProjectCommandRunner) defaultApplyStage() valid.Stage {
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return valid.Stage{
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Steps: []valid.Step{
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{
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StepName: "apply",
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},
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},
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}
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}
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