309 lines
10 KiB
Go
309 lines
10 KiB
Go
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package configs
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import (
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"testing"
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"github.com/google/go-cmp/cmp"
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"github.com/hashicorp/hcl/v2"
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"github.com/zclconf/go-cty/cty"
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)
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// "Escaping Blocks" are a special mechanism we have inside our block types
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// that accept a mixture of meta-arguments and externally-defined arguments,
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// which allow an author to force particular argument names to be interpreted
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// as externally-defined even if they have the same name as a meta-argument.
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//
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// An escaping block is a block with the special type name "_" (just an
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// underscore), and is allowed at the top-level of any resource, data, or
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// module block. It intentionally has a rather "odd" look so that it stands
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// out as something special and rare.
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//
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// This is not something we expect to see used a lot, but it's an important
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// part of our strategy to evolve the Terraform language in future using
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// editions, so that later editions can define new meta-arguments without
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// blocking access to externally-defined arguments of the same name.
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//
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// We should still define new meta-arguments with care to avoid squatting on
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// commonly-used names, but we can't see all modules and all providers in
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// the world and so this is an escape hatch for edge cases. Module migration
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// tools for future editions that define new meta-arguments should detect
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// collisions and automatically migrate existing arguments into an escaping
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// block.
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func TestEscapingBlockResource(t *testing.T) {
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// (this also tests escaping blocks in provisioner blocks, because
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// they only appear nested inside resource blocks.)
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parser := NewParser(nil)
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mod, diags := parser.LoadConfigDir("testdata/escaping-blocks/resource")
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assertNoDiagnostics(t, diags)
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if mod == nil {
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t.Fatal("got nil root module; want non-nil")
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}
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rc := mod.ManagedResources["foo.bar"]
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if rc == nil {
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t.Fatal("no managed resource named foo.bar")
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}
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t.Run("resource body", func(t *testing.T) {
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if got := rc.Count; got == nil {
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t.Errorf("count not set; want count = 2")
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} else {
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got, diags := got.Value(nil)
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assertNoDiagnostics(t, diags)
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if want := cty.NumberIntVal(2); !want.RawEquals(got) {
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t.Errorf("wrong count\ngot: %#v\nwant: %#v", got, want)
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}
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}
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if got, want := rc.ForEach, hcl.Expression(nil); got != want {
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// Shouldn't have any count because our test fixture only has
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// for_each in the escaping block.
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t.Errorf("wrong for_each\ngot: %#v\nwant: %#v", got, want)
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}
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schema := &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{Name: "normal", Required: true},
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{Name: "count", Required: true},
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{Name: "for_each", Required: true},
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},
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "normal_block"},
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{Type: "lifecycle"},
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{Type: "_"},
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},
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}
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content, diags := rc.Config.Content(schema)
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assertNoDiagnostics(t, diags)
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normalVal, diags := content.Attributes["normal"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := normalVal, cty.StringVal("yes"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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countVal, diags := content.Attributes["count"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := countVal, cty.StringVal("not actually count"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'count'\ngot: %#v\nwant: %#v", got, want)
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}
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var gotBlockTypes []string
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for _, block := range content.Blocks {
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gotBlockTypes = append(gotBlockTypes, block.Type)
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}
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wantBlockTypes := []string{"normal_block", "lifecycle", "_"}
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if diff := cmp.Diff(gotBlockTypes, wantBlockTypes); diff != "" {
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t.Errorf("wrong block types\n%s", diff)
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}
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})
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t.Run("provisioner body", func(t *testing.T) {
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if got, want := len(rc.Managed.Provisioners), 1; got != want {
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t.Fatalf("wrong number of provisioners %d; want %d", got, want)
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}
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pc := rc.Managed.Provisioners[0]
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schema := &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{Name: "when", Required: true},
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{Name: "normal", Required: true},
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},
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "normal_block"},
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{Type: "lifecycle"},
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{Type: "_"},
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},
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}
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content, diags := pc.Config.Content(schema)
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assertNoDiagnostics(t, diags)
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normalVal, diags := content.Attributes["normal"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := normalVal, cty.StringVal("yep"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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whenVal, diags := content.Attributes["when"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := whenVal, cty.StringVal("hell freezes over"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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})
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}
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func TestEscapingBlockData(t *testing.T) {
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parser := NewParser(nil)
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mod, diags := parser.LoadConfigDir("testdata/escaping-blocks/data")
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assertNoDiagnostics(t, diags)
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if mod == nil {
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t.Fatal("got nil root module; want non-nil")
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}
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rc := mod.DataResources["data.foo.bar"]
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if rc == nil {
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t.Fatal("no data resource named data.foo.bar")
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}
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if got := rc.Count; got == nil {
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t.Errorf("count not set; want count = 2")
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} else {
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got, diags := got.Value(nil)
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assertNoDiagnostics(t, diags)
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if want := cty.NumberIntVal(2); !want.RawEquals(got) {
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t.Errorf("wrong count\ngot: %#v\nwant: %#v", got, want)
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}
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}
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if got, want := rc.ForEach, hcl.Expression(nil); got != want {
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// Shouldn't have any count because our test fixture only has
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// for_each in the escaping block.
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t.Errorf("wrong for_each\ngot: %#v\nwant: %#v", got, want)
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}
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schema := &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{Name: "normal", Required: true},
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{Name: "count", Required: true},
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{Name: "for_each", Required: true},
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},
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "normal_block"},
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{Type: "lifecycle"},
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{Type: "_"},
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},
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}
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content, diags := rc.Config.Content(schema)
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assertNoDiagnostics(t, diags)
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normalVal, diags := content.Attributes["normal"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := normalVal, cty.StringVal("yes"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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countVal, diags := content.Attributes["count"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := countVal, cty.StringVal("not actually count"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'count'\ngot: %#v\nwant: %#v", got, want)
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}
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var gotBlockTypes []string
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for _, block := range content.Blocks {
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gotBlockTypes = append(gotBlockTypes, block.Type)
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}
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wantBlockTypes := []string{"normal_block", "lifecycle", "_"}
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if diff := cmp.Diff(gotBlockTypes, wantBlockTypes); diff != "" {
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t.Errorf("wrong block types\n%s", diff)
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}
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}
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func TestEscapingBlockModule(t *testing.T) {
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parser := NewParser(nil)
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mod, diags := parser.LoadConfigDir("testdata/escaping-blocks/module")
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assertNoDiagnostics(t, diags)
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if mod == nil {
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t.Fatal("got nil root module; want non-nil")
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}
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mc := mod.ModuleCalls["foo"]
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if mc == nil {
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t.Fatal("no module call named foo")
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}
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if got := mc.Count; got == nil {
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t.Errorf("count not set; want count = 2")
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} else {
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got, diags := got.Value(nil)
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assertNoDiagnostics(t, diags)
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if want := cty.NumberIntVal(2); !want.RawEquals(got) {
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t.Errorf("wrong count\ngot: %#v\nwant: %#v", got, want)
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}
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}
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if got, want := mc.ForEach, hcl.Expression(nil); got != want {
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// Shouldn't have any count because our test fixture only has
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// for_each in the escaping block.
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t.Errorf("wrong for_each\ngot: %#v\nwant: %#v", got, want)
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}
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schema := &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{Name: "normal", Required: true},
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{Name: "count", Required: true},
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{Name: "for_each", Required: true},
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},
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "normal_block"},
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{Type: "lifecycle"},
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{Type: "_"},
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},
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}
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content, diags := mc.Config.Content(schema)
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assertNoDiagnostics(t, diags)
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normalVal, diags := content.Attributes["normal"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := normalVal, cty.StringVal("yes"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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countVal, diags := content.Attributes["count"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := countVal, cty.StringVal("not actually count"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'count'\ngot: %#v\nwant: %#v", got, want)
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}
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var gotBlockTypes []string
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for _, block := range content.Blocks {
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gotBlockTypes = append(gotBlockTypes, block.Type)
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}
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wantBlockTypes := []string{"normal_block", "lifecycle", "_"}
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if diff := cmp.Diff(gotBlockTypes, wantBlockTypes); diff != "" {
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t.Errorf("wrong block types\n%s", diff)
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}
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}
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func TestEscapingBlockProvider(t *testing.T) {
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parser := NewParser(nil)
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mod, diags := parser.LoadConfigDir("testdata/escaping-blocks/provider")
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assertNoDiagnostics(t, diags)
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if mod == nil {
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t.Fatal("got nil root module; want non-nil")
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}
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pc := mod.ProviderConfigs["foo.bar"]
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if pc == nil {
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t.Fatal("no provider configuration named foo.bar")
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}
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if got, want := pc.Alias, "bar"; got != want {
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t.Errorf("wrong alias\ngot: %#v\nwant: %#v", got, want)
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}
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schema := &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{Name: "normal", Required: true},
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{Name: "alias", Required: true},
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{Name: "version", Required: true},
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},
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}
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content, diags := pc.Config.Content(schema)
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assertNoDiagnostics(t, diags)
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normalVal, diags := content.Attributes["normal"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := normalVal, cty.StringVal("yes"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'normal'\ngot: %#v\nwant: %#v", got, want)
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}
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aliasVal, diags := content.Attributes["alias"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := aliasVal, cty.StringVal("not actually alias"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'alias'\ngot: %#v\nwant: %#v", got, want)
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}
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versionVal, diags := content.Attributes["version"].Expr.Value(nil)
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assertNoDiagnostics(t, diags)
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if got, want := versionVal, cty.StringVal("not actually version"); !want.RawEquals(got) {
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t.Errorf("wrong value for 'version'\ngot: %#v\nwant: %#v", got, want)
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}
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}
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