Files
act_runner/act/runner/command.go
bircni b70ff6893a feat: gate set-env/add-path and render annotation locations (#1109)
`::set-env::` and `::add-path::` let a step rewrite the environment of every later step from its own output, which the runner honoured silently. They are now refused, as GitHub has done since 2020, and `ACTIONS_ALLOW_UNSECURE_COMMANDS` opts back in per step or job. Support for that variable is new here too, and is the only opt-in, matching GitHub rather than adding a runner config key on top.

Annotations keep their source location: Gitea has no annotation store and its web UI strips command properties, so `::error file=main.go,line=12::msg` is rendered as `::error::main.go:12: msg`.

`DEVELOPMENT.md` writes down the log line encoding rules this relies on.

---------

Co-authored-by: silverwind <me@silverwind.io>
Reviewed-on: https://gitea.com/gitea/runner/pulls/1109
Reviewed-by: silverwind <2021+silverwind@noreply.gitea.com>
Co-authored-by: bircni <bircni@icloud.com>
2026-08-05 16:43:17 +00:00

246 lines
7.7 KiB
Go

// Copyright 2022 The Gitea Authors. All rights reserved.
// Copyright 2020 The nektos/act Authors. All rights reserved.
// SPDX-License-Identifier: MIT
package runner
import (
"context"
"fmt"
"regexp"
"strings"
"gitea.com/gitea/runner/act/common"
)
var commandPatternGA *regexp.Regexp
var commandPatternADO *regexp.Regexp
func init() {
commandPatternGA = regexp.MustCompile("^::([^ ]+)( (.+))?::([^\r\n]*)[\r\n]+$")
commandPatternADO = regexp.MustCompile("^##\\[([^ ]+)( (.+))?]([^\r\n]*)[\r\n]+$")
}
func tryParseRawActionCommand(line string) (command string, kvPairs map[string]string, arg string, ok bool) {
if m := commandPatternGA.FindStringSubmatch(line); m != nil {
command = m[1]
kvPairs = parseKeyValuePairs(m[3], ",")
arg = m[4]
ok = true
} else if m := commandPatternADO.FindStringSubmatch(line); m != nil {
command = m[1]
kvPairs = parseKeyValuePairs(m[3], ";")
arg = m[4]
ok = true
}
return command, kvPairs, arg, ok
}
func (rc *RunContext) commandHandler(ctx context.Context) common.LineHandler {
logger := common.Logger(ctx)
resumeCommand := ""
return func(line string) bool {
command, kvPairs, arg, ok := tryParseRawActionCommand(line)
if !ok {
return true
}
if resumeCommand != "" {
// There should not be any emojis in the log output for Gitea.
// Return true (not false) so the line still reaches the raw_output
// log handler; otherwise everything between ::stop-commands:: and
// its end token is silently dropped from the step log.
logger.Infof("%s", line)
// Resumed here rather than from the switch, because the end token is arbitrary
// and a token naming a real command would otherwise never resume.
if command == resumeCommand {
resumeCommand = ""
}
return true
}
arg = UnescapeCommandData(arg)
kvPairs = unescapeKvPairs(kvPairs)
if (command == "set-env" || command == "add-path") && rc.refuseUnsecureCommand(ctx, command) {
return true
}
switch command {
case "set-env":
rc.setEnv(ctx, kvPairs, arg)
case "set-output":
rc.setOutput(ctx, kvPairs, arg)
case "add-path":
rc.addPath(ctx, arg)
case "add-mask":
rc.AddMask(arg)
logger.Infof("%s", "***")
// The raw line is still forwarded, carrying the secret: that is how the reporter
// learns the mask, and it drops the row rather than writing it out.
case "stop-commands":
resumeCommand = arg
logger.Infof("%s", line)
case "save-state":
logger.Infof("%s", line)
rc.saveState(ctx, kvPairs, arg)
default:
// ::debug::, ::error::, ::warning::, ::add-matcher:: and anything unrecognised are
// passed through for the reporter and Gitea's web UI to render.
logger.Infof("%s", line)
}
// return true to let gitea's logger handle these special outputs also
return true
}
}
const allowUnsecureCommandsVar = "ACTIONS_ALLOW_UNSECURE_COMMANDS"
// refuseUnsecureCommand reports whether a deprecated ::set-env:: or ::add-path:: command must
// not run, recording the error that fails the step. GitHub disabled both because a step that
// echoes untrusted content can use them to set NODE_OPTIONS or PATH for every later step.
func (rc *RunContext) refuseUnsecureCommand(ctx context.Context, command string) bool {
if rc.allowUnsecureCommandsOptIn() {
return false
}
// The step executor logs the failure itself, so keep this line's wording distinct.
common.Logger(ctx).WithField(rawOutputField, true).Errorf("##[error]%s", EscapeCommandData(fmt.Sprintf(
"The `%s` command is disabled: it can set the environment of every later step from untrusted output. "+
"Write to $GITHUB_ENV or $GITHUB_PATH instead, or set ACTIONS_ALLOW_UNSECURE_COMMANDS to allow it",
command)))
rc.unsecureCommandMu.Lock()
defer rc.unsecureCommandMu.Unlock()
if rc.unsecureCommandErr == nil {
rc.unsecureCommandErr = fmt.Errorf("the `%s` workflow command is disabled", command)
}
return true
}
// allowUnsecureCommandsOptIn reports whether the workflow itself asked for the deprecated
// commands, from any env scope, as it can on GitHub.
func (rc *RunContext) allowUnsecureCommandsOptIn() bool {
return isTruthyEnv(rc.currentStepEnv()[allowUnsecureCommandsVar]) ||
isTruthyEnv(rc.Env[allowUnsecureCommandsVar]) ||
isTruthyEnv(rc.GlobalEnv[allowUnsecureCommandsVar])
}
// isTruthyEnv mirrors GitHub's bool.TryParse: only "true", in any casing.
func isTruthyEnv(v string) bool {
return strings.EqualFold(strings.TrimSpace(v), "true")
}
// takeUnsecureCommandError returns and clears the error left by a refused command.
func (rc *RunContext) takeUnsecureCommandError() error {
rc.unsecureCommandMu.Lock()
defer rc.unsecureCommandMu.Unlock()
err := rc.unsecureCommandErr
rc.unsecureCommandErr = nil
return err
}
func (rc *RunContext) setEnv(ctx context.Context, kvPairs map[string]string, arg string) {
name := kvPairs["name"]
common.Logger(ctx).Infof("::set-env:: %s=%s", name, arg)
if rc.Env == nil {
rc.Env = make(map[string]string)
}
if rc.GlobalEnv == nil {
rc.GlobalEnv = map[string]string{}
}
newenv := map[string]string{
name: arg,
}
mergeIntoMap := mergeIntoMapCaseSensitive
if rc.JobContainer != nil && rc.JobContainer.IsEnvironmentCaseInsensitive() {
mergeIntoMap = mergeIntoMapCaseInsensitive
}
mergeIntoMap(rc.Env, newenv)
mergeIntoMap(rc.GlobalEnv, newenv)
}
func (rc *RunContext) setOutput(ctx context.Context, kvPairs map[string]string, arg string) {
logger := common.Logger(ctx)
stepID := rc.CurrentStep
outputName := kvPairs["name"]
if outputMapping, ok := rc.OutputMappings[MappableOutput{StepID: stepID, OutputName: outputName}]; ok {
stepID = outputMapping.StepID
outputName = outputMapping.OutputName
}
result, ok := rc.StepResults[stepID]
if !ok {
logger.Infof("No outputs registered for step '%s'", stepID)
return
}
logger.Infof("::set-output:: %s=%s", outputName, arg)
result.Outputs[outputName] = arg
}
func (rc *RunContext) addPath(ctx context.Context, arg string) {
common.Logger(ctx).Infof("::add-path:: %s", arg)
extraPath := []string{arg}
for _, v := range rc.ExtraPath {
if v != arg {
extraPath = append(extraPath, v)
}
}
rc.ExtraPath = extraPath
}
func parseKeyValuePairs(kvPairs, separator string) map[string]string {
rtn := make(map[string]string)
kvPairList := strings.SplitSeq(kvPairs, separator)
for kvPair := range kvPairList {
kv := strings.Split(kvPair, "=")
if len(kv) == 2 {
rtn[kv[0]] = kv[1]
}
}
return rtn
}
// A Replacer never rescans what it wrote, so "%250A" stays a literal "%0A".
var (
commandDataEscaper = strings.NewReplacer("%", "%25", "\r", "%0D", "\n", "%0A")
commandDataUnescaper = strings.NewReplacer("%25", "%", "%0D", "\r", "%0A", "\n")
commandPropertyUnescaper = strings.NewReplacer("%25", "%", "%0D", "\r", "%0A", "\n", "%3A", ":", "%2C", ",")
)
// EscapeCommandData encodes the data part of a "::cmd::" or "##[cmd]" line the runner writes itself,
// so the log renderer decodes it back. Lines forwarded from step output are already escaped.
func EscapeCommandData(arg string) string {
return commandDataEscaper.Replace(arg)
}
func UnescapeCommandData(arg string) string {
return commandDataUnescaper.Replace(arg)
}
func unescapeCommandProperty(arg string) string {
return commandPropertyUnescaper.Replace(arg)
}
func unescapeKvPairs(kvPairs map[string]string) map[string]string {
for k, v := range kvPairs {
kvPairs[k] = unescapeCommandProperty(v)
}
return kvPairs
}
func (rc *RunContext) saveState(_ context.Context, kvPairs map[string]string, arg string) {
stepID := rc.CurrentStep
if stepID != "" {
if rc.IntraActionState == nil {
rc.IntraActionState = map[string]map[string]string{}
}
state, ok := rc.IntraActionState[stepID]
if !ok {
state = map[string]string{}
rc.IntraActionState[stepID] = state
}
state[kvPairs["name"]] = arg
}
}