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configs/configupgrade: Normalize and upgrade reference expressions
The reference syntax is not significantly changed, but there are some minor additional restrictions on identifiers in HCL2 and as a special case we need to rewrite references to data.terraform_remote_state . Along with those mandatory upgrades, we will also switch references to using normal index syntax where it's safe to do so, as part of de-emphasizing the old strange integer attribute syntax (like foo.0.bar).
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@ -0,0 +1,23 @@
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locals {
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simple = "${test_instance.foo.bar}"
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splat = "${test_instance.foo.*.bar}"
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index = "${test_instance.foo.1.bar}"
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after_simple = "${test_instance.foo.bar.0.baz}"
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after_splat = "${test_instance.foo.*.bar.0.baz}"
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after_index = "${test_instance.foo.1.bar.2.baz}"
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non_ident_attr = "${test_instance.foo.bar.1baz}"
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remote_state_output = "${data.terraform_remote_state.foo.bar}"
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remote_state_attr = "${data.terraform_remote_state.foo.backend}"
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remote_state_idx_output = "${data.terraform_remote_state.foo.1.bar}"
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remote_state_idx_attr = "${data.terraform_remote_state.foo.1.backend}"
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remote_state_splat_output = "${data.terraform_remote_state.foo.*.bar}"
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remote_state_splat_attr = "${data.terraform_remote_state.foo.*.backend}"
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}
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data "terraform_remote_state" "foo" {
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# This is just here to make sure the schema for this gets loaded to
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# support the remote_state_* checks above.
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}
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@ -0,0 +1,23 @@
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locals {
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simple = test_instance.foo.bar
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splat = test_instance.foo.*.bar
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index = test_instance.foo[1].bar
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after_simple = test_instance.foo.bar[0].baz
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after_splat = test_instance.foo.*.bar.0.baz
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after_index = test_instance.foo[1].bar[2].baz
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non_ident_attr = test_instance.foo.bar["1baz"]
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remote_state_output = data.terraform_remote_state.foo.outputs.bar
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remote_state_attr = data.terraform_remote_state.foo.backend
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remote_state_idx_output = data.terraform_remote_state.foo[1].outputs.bar
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remote_state_idx_attr = data.terraform_remote_state.foo[1].backend
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remote_state_splat_output = data.terraform_remote_state.foo.*.outputs.bar
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remote_state_splat_attr = data.terraform_remote_state.foo.*.backend
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}
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data "terraform_remote_state" "foo" {
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# This is just here to make sure the schema for this gets loaded to
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# support the remote_state_* checks above.
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}
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@ -0,0 +1,3 @@
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terraform {
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required_version = ">= 0.12"
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}
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@ -5,8 +5,10 @@ import (
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"fmt"
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"log"
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"strconv"
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"strings"
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hcl2 "github.com/hashicorp/hcl2/hcl"
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hcl2syntax "github.com/hashicorp/hcl2/hcl/hclsyntax"
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hcl1ast "github.com/hashicorp/hcl/hcl/ast"
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hcl1printer "github.com/hashicorp/hcl/hcl/printer"
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@ -15,6 +17,8 @@ import (
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"github.com/hashicorp/hil"
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hilast "github.com/hashicorp/hil/ast"
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"github.com/hashicorp/terraform/addrs"
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"github.com/hashicorp/terraform/configs/configschema"
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"github.com/hashicorp/terraform/tfdiags"
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)
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@ -142,7 +146,50 @@ Value:
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}
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case *hilast.VariableAccess:
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buf.WriteString(tv.Name)
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// In HIL a variable access is just a single string which might contain
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// a mixture of identifiers, dots, integer indices, and splat expressions.
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// All of these concepts were formerly interpreted by Terraform itself,
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// rather than by HIL. We're going to process this one chunk at a time
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// here so we can normalize and introduce some newer syntax where it's
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// safe to do so.
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parts := strings.Split(tv.Name, ".")
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parts = upgradeTraversalParts(parts, an) // might add/remove/change parts
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first, remain := parts[0], parts[1:]
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buf.WriteString(first)
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seenSplat := false
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for _, part := range remain {
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if part == "*" {
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seenSplat = true
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buf.WriteString(".*")
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continue
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}
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// Other special cases apply only if we've not previously
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// seen a splat expression marker, since attribute vs. index
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// syntax have different interpretations after a simple splat.
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if !seenSplat {
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if v, err := strconv.Atoi(part); err == nil {
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// Looks like it's old-style index traversal syntax foo.0.bar
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// so we'll replace with canonical index syntax foo[0].bar.
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fmt.Fprintf(&buf, "[%d]", v)
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continue
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}
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if !hcl2syntax.ValidIdentifier(part) {
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// This should be rare since HIL's identifier syntax is _close_
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// to HCL2's, but we'll get here if one of the intervening
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// parts is not a valid identifier in isolation, since HIL
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// did not consider these to be separate identifiers.
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// e.g. foo.1bar would be invalid in HCL2; must instead be foo["1bar"].
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buf.WriteByte('[')
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printQuotedString(&buf, part)
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buf.WriteByte(']')
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continue
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}
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}
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buf.WriteByte('.')
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buf.WriteString(part)
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}
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case *hilast.Arithmetic:
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op, exists := hilArithmeticOpSyms[tv.Op]
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@ -362,3 +409,60 @@ var hilArithmeticOpSyms = map[hilast.ArithmeticOp]string{
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hilast.ArithmeticOpGreaterThan: " > ",
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hilast.ArithmeticOpGreaterThanOrEqual: " >= ",
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}
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// upgradeTraversalParts might alter the given split parts from a HIL-style
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// variable access to account for renamings made in Terraform v0.12.
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func upgradeTraversalParts(parts []string, an *analysis) []string {
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// For now this just deals with data.terraform_remote_state
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return upgradeTerraformRemoteStateTraversalParts(parts, an)
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}
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func upgradeTerraformRemoteStateTraversalParts(parts []string, an *analysis) []string {
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// data.terraform_remote_state.x.foo needs to become
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// data.terraform_remote_state.x.outputs.foo unless "foo" is a real
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// attribute in the object type implied by the remote state schema.
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if len(parts) < 4 {
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return parts
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}
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if parts[0] != "data" || parts[1] != "terraform_remote_state" {
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return parts
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}
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attrIdx := 3
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if parts[attrIdx] == "*" {
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attrIdx = 4 // data.terraform_remote_state.x.*.foo
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} else if _, err := strconv.Atoi(parts[attrIdx]); err == nil {
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attrIdx = 4 // data.terraform_remote_state.x.1.foo
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}
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if attrIdx >= len(parts) {
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return parts
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}
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attrName := parts[attrIdx]
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// Now we'll use the schema of data.terraform_remote_state to decide if
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// the user intended this to be an output, or whether it's one of the real
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// attributes of this data source.
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var schema *configschema.Block
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if providerSchema := an.ProviderSchemas["terraform"]; providerSchema != nil {
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schema, _ = providerSchema.SchemaForResourceType(addrs.DataResourceMode, "terraform_remote_state")
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}
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// Schema should be available in all reasonable cases, but might be nil
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// if input configuration contains a reference to a remote state data resource
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// without actually defining that data resource. In that weird edge case,
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// we'll just assume all attributes are outputs.
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if schema != nil && schema.ImpliedType().HasAttribute(attrName) {
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// User is accessing one of the real attributes, then, and we have
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// no need to rewrite it.
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return parts
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}
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// If we get down here then our task is to produce a new parts slice
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// that has the fixed additional attribute name "outputs" inserted at
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// attrIdx, retaining all other parts.
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newParts := make([]string, len(parts)+1)
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copy(newParts, parts[:attrIdx])
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newParts[attrIdx] = "outputs"
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copy(newParts[attrIdx+1:], parts[attrIdx:])
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return newParts
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}
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@ -230,6 +230,22 @@ var testProviders = map[string]providers.Factory{
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}
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return p, nil
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}),
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"terraform": providers.Factory(func() (providers.Interface, error) {
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p := &terraform.MockProvider{}
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p.GetSchemaReturn = &terraform.ProviderSchema{
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DataSources: map[string]*configschema.Block{
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"terraform_remote_state": {
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// This is just enough an approximation of the remote state
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// schema to check out reference upgrade logic. It is
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// intentionally not fully-comprehensive.
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Attributes: map[string]*configschema.Attribute{
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"backend": {Type: cty.String, Optional: true},
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},
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},
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},
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}
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return p, nil
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}),
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}
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func init() {
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