236 lines
9.6 KiB
Go
236 lines
9.6 KiB
Go
package runner
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import (
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"context"
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"encoding/json"
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"fmt"
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"os"
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log "github.com/sirupsen/logrus"
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"github.com/nektos/act/pkg/common"
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"github.com/nektos/act/pkg/container"
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"github.com/nektos/act/pkg/model"
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)
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// Runner provides capabilities to run GitHub actions
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type Runner interface {
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NewPlanExecutor(plan *model.Plan) common.Executor
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}
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// Config contains the config for a new runner
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type Config struct {
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Actor string // the user that triggered the event
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Workdir string // path to working directory
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BindWorkdir bool // bind the workdir to the job container
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EventName string // name of event to run
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EventPath string // path to JSON file to use for event.json in containers
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DefaultBranch string // name of the main branch for this repository
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ReuseContainers bool // reuse containers to maintain state
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ForcePull bool // force pulling of the image, even if already present
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ForceRebuild bool // force rebuilding local docker image action
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LogOutput bool // log the output from docker run
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JSONLogger bool // use json or text logger
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Env map[string]string // env for containers
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Inputs map[string]string // manually passed action inputs
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Secrets map[string]string // list of secrets
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Token string // GitHub token
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InsecureSecrets bool // switch hiding output when printing to terminal
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Platforms map[string]string // list of platforms
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Privileged bool // use privileged mode
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UsernsMode string // user namespace to use
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ContainerArchitecture string // Desired OS/architecture platform for running containers
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ContainerDaemonSocket string // Path to Docker daemon socket
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ContainerOptions string // Options for the job container
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UseGitIgnore bool // controls if paths in .gitignore should not be copied into container, default true
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GitHubInstance string // GitHub instance to use, default "github.com"
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ContainerCapAdd []string // list of kernel capabilities to add to the containers
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ContainerCapDrop []string // list of kernel capabilities to remove from the containers
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AutoRemove bool // controls if the container is automatically removed upon workflow completion
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ArtifactServerPath string // the path where the artifact server stores uploads
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ArtifactServerAddr string // the address the artifact server binds to
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ArtifactServerPort string // the port the artifact server binds to
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NoSkipCheckout bool // do not skip actions/checkout
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RemoteName string // remote name in local git repo config
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ReplaceGheActionWithGithubCom []string // Use actions from GitHub Enterprise instance to GitHub
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ReplaceGheActionTokenWithGithubCom string // Token of private action repo on GitHub.
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Matrix map[string]map[string]bool // Matrix config to run
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PresetGitHubContext *model.GithubContext // the preset github context, overrides some fields like DefaultBranch, Env, Secrets etc.
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EventJSON string // the content of JSON file to use for event.json in containers, overrides EventPath
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ContainerNamePrefix string // the prefix of container name
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ContainerMaxLifetime time.Duration // the max lifetime of job containers
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ContainerNetworkMode string // the network mode of job containers
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DefaultActionInstance string // the default actions web site
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PlatformPicker func(labels []string) string // platform picker, it will take precedence over Platforms if isn't nil
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JobLoggerLevel *log.Level // the level of job logger
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Vars map[string]string // the list of variables set at the repository, environment, or organization levels.
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}
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// GetToken: Adapt to Gitea
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func (c Config) GetToken() string {
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token := c.Secrets["GITHUB_TOKEN"]
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if c.Secrets["GITEA_TOKEN"] != "" {
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token = c.Secrets["GITEA_TOKEN"]
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}
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return token
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}
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type caller struct {
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runContext *RunContext
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}
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type runnerImpl struct {
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config *Config
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eventJSON string
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caller *caller // the job calling this runner (caller of a reusable workflow)
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}
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// New Creates a new Runner
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func New(runnerConfig *Config) (Runner, error) {
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runner := &runnerImpl{
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config: runnerConfig,
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}
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return runner.configure()
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}
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func (runner *runnerImpl) configure() (Runner, error) {
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runner.eventJSON = "{}"
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if runner.config.EventJSON != "" {
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runner.eventJSON = runner.config.EventJSON
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} else if runner.config.EventPath != "" {
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log.Debugf("Reading event.json from %s", runner.config.EventPath)
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eventJSONBytes, err := os.ReadFile(runner.config.EventPath)
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if err != nil {
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return nil, err
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}
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runner.eventJSON = string(eventJSONBytes)
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} else if len(runner.config.Inputs) != 0 {
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eventMap := map[string]map[string]string{
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"inputs": runner.config.Inputs,
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}
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eventJSON, err := json.Marshal(eventMap)
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if err != nil {
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return nil, err
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}
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runner.eventJSON = string(eventJSON)
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}
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return runner, nil
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}
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// NewPlanExecutor ...
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func (runner *runnerImpl) NewPlanExecutor(plan *model.Plan) common.Executor {
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maxJobNameLen := 0
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stagePipeline := make([]common.Executor, 0)
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for i := range plan.Stages {
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stage := plan.Stages[i]
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stagePipeline = append(stagePipeline, func(ctx context.Context) error {
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pipeline := make([]common.Executor, 0)
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for _, run := range stage.Runs {
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stageExecutor := make([]common.Executor, 0)
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job := run.Job()
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if job.Strategy != nil {
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strategyRc := runner.newRunContext(ctx, run, nil)
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if err := strategyRc.NewExpressionEvaluator(ctx).EvaluateYamlNode(ctx, &job.Strategy.RawMatrix); err != nil {
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log.Errorf("Error while evaluating matrix: %v", err)
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}
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}
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var matrixes []map[string]interface{}
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if m, err := job.GetMatrixes(); err != nil {
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log.Errorf("Error while get job's matrix: %v", err)
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} else {
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matrixes = selectMatrixes(m, runner.config.Matrix)
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}
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log.Debugf("Final matrix after applying user inclusions '%v'", matrixes)
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maxParallel := 4
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if job.Strategy != nil {
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maxParallel = job.Strategy.MaxParallel
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}
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if len(matrixes) < maxParallel {
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maxParallel = len(matrixes)
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}
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for i, matrix := range matrixes {
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matrix := matrix
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rc := runner.newRunContext(ctx, run, matrix)
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rc.JobName = rc.Name
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if len(matrixes) > 1 {
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rc.Name = fmt.Sprintf("%s-%d", rc.Name, i+1)
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}
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if len(rc.String()) > maxJobNameLen {
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maxJobNameLen = len(rc.String())
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}
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stageExecutor = append(stageExecutor, func(ctx context.Context) error {
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jobName := fmt.Sprintf("%-*s", maxJobNameLen, rc.String())
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return rc.Executor()(common.WithJobErrorContainer(WithJobLogger(ctx, rc.Run.JobID, jobName, rc.Config, &rc.Masks, matrix)))
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})
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}
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pipeline = append(pipeline, common.NewParallelExecutor(maxParallel, stageExecutor...))
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}
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var ncpu int
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info, err := container.GetHostInfo(ctx)
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if err != nil {
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log.Errorf("failed to obtain container engine info: %s", err)
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ncpu = 1 // sane default?
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} else {
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ncpu = info.NCPU
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}
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return common.NewParallelExecutor(ncpu, pipeline...)(ctx)
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})
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}
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return common.NewPipelineExecutor(stagePipeline...).Then(handleFailure(plan))
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}
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func handleFailure(plan *model.Plan) common.Executor {
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return func(ctx context.Context) error {
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for _, stage := range plan.Stages {
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for _, run := range stage.Runs {
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if run.Job().Result == "failure" {
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return fmt.Errorf("Job '%s' failed", run.String())
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}
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}
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}
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return nil
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}
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}
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func selectMatrixes(originalMatrixes []map[string]interface{}, targetMatrixValues map[string]map[string]bool) []map[string]interface{} {
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matrixes := make([]map[string]interface{}, 0)
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for _, original := range originalMatrixes {
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flag := true
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for key, val := range original {
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if allowedVals, ok := targetMatrixValues[key]; ok {
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valToString := fmt.Sprintf("%v", val)
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if _, ok := allowedVals[valToString]; !ok {
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flag = false
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}
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}
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}
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if flag {
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matrixes = append(matrixes, original)
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}
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}
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return matrixes
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}
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func (runner *runnerImpl) newRunContext(ctx context.Context, run *model.Run, matrix map[string]interface{}) *RunContext {
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rc := &RunContext{
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Config: runner.config,
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Run: run,
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EventJSON: runner.eventJSON,
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StepResults: make(map[string]*model.StepResult),
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Matrix: matrix,
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caller: runner.caller,
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}
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rc.ExprEval = rc.NewExpressionEvaluator(ctx)
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rc.Name = rc.ExprEval.Interpolate(ctx, run.String())
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return rc
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}
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