The old IPC Task system passed `any` through TaskHandler and
PerformAsync. Now that named Actions exist with typed signatures
(ActionHandler func(context.Context, Options) Result), the untyped
layer is dead weight.
Changes:
- type Task any removed (was in contract.go)
- type Task struct is now the composed sequence (action.go)
- PerformAsync takes (action string, opts Options) not (t Task)
- TaskHandler type removed — use c.Action("name", handler)
- RegisterTask removed — use c.Action("name", handler)
- PERFORM sugar removed — use c.Action("name").Run()
- ActionTaskStarted/Progress/Completed carry typed fields
(Action string, Options, Result) not any
ActionDef → Action rename also in this commit (same principle:
DTOs don't have Run() methods).
Co-Authored-By: Virgil <virgil@lethean.io>
246 lines
6.9 KiB
Go
246 lines
6.9 KiB
Go
package core_test
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import (
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"context"
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"testing"
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. "dappco.re/go/core"
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"github.com/stretchr/testify/assert"
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)
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// --- NamedAction Register ---
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func TestAction_NamedAction_Good_Register(t *testing.T) {
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c := New()
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def := c.Action("process.run", func(_ context.Context, opts Options) Result {
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return Result{Value: "output", OK: true}
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})
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assert.NotNil(t, def)
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assert.Equal(t, "process.run", def.Name)
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assert.True(t, def.Exists())
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}
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func TestAction_NamedAction_Good_Invoke(t *testing.T) {
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c := New()
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c.Action("git.log", func(_ context.Context, opts Options) Result {
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dir := opts.String("dir")
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return Result{Value: "log from " + dir, OK: true}
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})
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r := c.Action("git.log").Run(context.Background(), NewOptions(
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Option{Key: "dir", Value: "/repo"},
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))
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assert.True(t, r.OK)
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assert.Equal(t, "log from /repo", r.Value)
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}
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func TestAction_NamedAction_Bad_NotRegistered(t *testing.T) {
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c := New()
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r := c.Action("missing.action").Run(context.Background(), NewOptions())
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assert.False(t, r.OK, "invoking unregistered action must fail")
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}
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func TestAction_NamedAction_Good_Exists(t *testing.T) {
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c := New()
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c.Action("brain.recall", func(_ context.Context, _ Options) Result {
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return Result{OK: true}
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})
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assert.True(t, c.Action("brain.recall").Exists())
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assert.False(t, c.Action("brain.forget").Exists())
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}
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func TestAction_NamedAction_Ugly_PanicRecovery(t *testing.T) {
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c := New()
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c.Action("explode", func(_ context.Context, _ Options) Result {
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panic("boom")
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})
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r := c.Action("explode").Run(context.Background(), NewOptions())
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assert.False(t, r.OK, "panicking action must return !OK, not crash")
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err, ok := r.Value.(error)
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assert.True(t, ok)
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assert.Contains(t, err.Error(), "panic")
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}
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func TestAction_NamedAction_Ugly_NilAction(t *testing.T) {
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var def *Action
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r := def.Run(context.Background(), NewOptions())
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assert.False(t, r.OK)
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assert.False(t, def.Exists())
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}
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// --- Actions listing ---
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func TestAction_Actions_Good(t *testing.T) {
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c := New()
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c.Action("process.run", func(_ context.Context, _ Options) Result { return Result{OK: true} })
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c.Action("process.kill", func(_ context.Context, _ Options) Result { return Result{OK: true} })
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c.Action("agentic.dispatch", func(_ context.Context, _ Options) Result { return Result{OK: true} })
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names := c.Actions()
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assert.Len(t, names, 3)
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assert.Equal(t, []string{"process.run", "process.kill", "agentic.dispatch"}, names)
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}
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func TestAction_Actions_Bad_Empty(t *testing.T) {
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c := New()
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assert.Empty(t, c.Actions())
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}
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// --- Action fields ---
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func TestAction_NamedAction_Good_DescriptionAndSchema(t *testing.T) {
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c := New()
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def := c.Action("process.run", func(_ context.Context, _ Options) Result { return Result{OK: true} })
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def.Description = "Execute a command synchronously"
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def.Schema = NewOptions(
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Option{Key: "command", Value: "string"},
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Option{Key: "args", Value: "[]string"},
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)
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retrieved := c.Action("process.run")
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assert.Equal(t, "Execute a command synchronously", retrieved.Description)
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assert.True(t, retrieved.Schema.Has("command"))
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}
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// --- Permission by registration ---
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func TestAction_NamedAction_Good_PermissionModel(t *testing.T) {
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// Full Core — process registered
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full := New()
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full.Action("process.run", func(_ context.Context, _ Options) Result {
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return Result{Value: "executed", OK: true}
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})
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// Sandboxed Core — no process
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sandboxed := New()
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// Full can execute
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r := full.Action("process.run").Run(context.Background(), NewOptions())
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assert.True(t, r.OK)
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// Sandboxed returns not-registered
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r = sandboxed.Action("process.run").Run(context.Background(), NewOptions())
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assert.False(t, r.OK, "sandboxed Core must not have process capability")
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}
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// --- Action overwrite ---
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func TestAction_NamedAction_Good_Overwrite(t *testing.T) {
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c := New()
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c.Action("hot.reload", func(_ context.Context, _ Options) Result {
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return Result{Value: "v1", OK: true}
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})
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c.Action("hot.reload", func(_ context.Context, _ Options) Result {
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return Result{Value: "v2", OK: true}
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})
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r := c.Action("hot.reload").Run(context.Background(), NewOptions())
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assert.True(t, r.OK)
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assert.Equal(t, "v2", r.Value, "latest handler wins")
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}
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// --- Task Composition ---
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func TestAction_Task_Good_Sequential(t *testing.T) {
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c := New()
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var order []string
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c.Action("step.a", func(_ context.Context, _ Options) Result {
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order = append(order, "a")
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return Result{Value: "output-a", OK: true}
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})
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c.Action("step.b", func(_ context.Context, _ Options) Result {
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order = append(order, "b")
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return Result{Value: "output-b", OK: true}
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})
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c.Task("pipeline", Task{
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Steps: []Step{
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{Action: "step.a"},
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{Action: "step.b"},
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},
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})
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r := c.Task("pipeline").Run(context.Background(), c, NewOptions())
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assert.True(t, r.OK)
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assert.Equal(t, []string{"a", "b"}, order, "steps must run in order")
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assert.Equal(t, "output-b", r.Value, "last step's result is returned")
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}
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func TestAction_Task_Bad_StepFails(t *testing.T) {
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c := New()
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var order []string
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c.Action("step.ok", func(_ context.Context, _ Options) Result {
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order = append(order, "ok")
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return Result{OK: true}
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})
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c.Action("step.fail", func(_ context.Context, _ Options) Result {
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order = append(order, "fail")
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return Result{Value: NewError("broke"), OK: false}
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})
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c.Action("step.never", func(_ context.Context, _ Options) Result {
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order = append(order, "never")
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return Result{OK: true}
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})
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c.Task("broken", Task{
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Steps: []Step{
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{Action: "step.ok"},
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{Action: "step.fail"},
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{Action: "step.never"},
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},
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})
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r := c.Task("broken").Run(context.Background(), c, NewOptions())
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assert.False(t, r.OK)
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assert.Equal(t, []string{"ok", "fail"}, order, "chain stops on failure, step.never skipped")
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}
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func TestAction_Task_Bad_MissingAction(t *testing.T) {
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c := New()
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c.Task("missing", Task{
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Steps: []Step{
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{Action: "nonexistent"},
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},
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})
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r := c.Task("missing").Run(context.Background(), c, NewOptions())
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assert.False(t, r.OK)
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}
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func TestAction_Task_Good_PreviousInput(t *testing.T) {
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c := New()
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c.Action("produce", func(_ context.Context, _ Options) Result {
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return Result{Value: "data-from-step-1", OK: true}
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})
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c.Action("consume", func(_ context.Context, opts Options) Result {
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input := opts.Get("_input")
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if !input.OK {
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return Result{Value: "no input", OK: true}
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}
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return Result{Value: "got: " + input.Value.(string), OK: true}
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})
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c.Task("pipe", Task{
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Steps: []Step{
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{Action: "produce"},
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{Action: "consume", Input: "previous"},
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},
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})
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r := c.Task("pipe").Run(context.Background(), c, NewOptions())
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assert.True(t, r.OK)
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assert.Equal(t, "got: data-from-step-1", r.Value)
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}
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func TestAction_Task_Ugly_EmptySteps(t *testing.T) {
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c := New()
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c.Task("empty", Task{})
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r := c.Task("empty").Run(context.Background(), c, NewOptions())
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assert.False(t, r.OK)
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}
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func TestAction_Tasks_Good(t *testing.T) {
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c := New()
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c.Task("deploy", Task{Steps: []Step{{Action: "x"}}})
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c.Task("review", Task{Steps: []Step{{Action: "y"}}})
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assert.Equal(t, []string{"deploy", "review"}, c.Tasks())
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}
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