mirror of
https://github.com/opentofu/opentofu.git
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0681935df5
We want the forthcoming v0.12.0 release to be the last significant breaking change to our main configuration constructs for a long time, but not everything could be implemented in that release. As a compromise then, we reserve various names we have some intent of using in a future release so that such future uses will not be a further breaking change later. Some of these names are associated with specific short-term plans, while others are reserved conservatively for possible later work and may be "un-reserved" in a later release if we don't end up using them. The ones that we expect to use in the near future were already being handled, so we'll continue to decode them at the config layer but also produce an error so that we don't get weird behavior downstream where the corresponding features don't work yet.
487 lines
14 KiB
Go
487 lines
14 KiB
Go
package configs
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import (
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"fmt"
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"github.com/hashicorp/hcl2/gohcl"
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"github.com/hashicorp/hcl2/hcl"
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"github.com/hashicorp/hcl2/hcl/hclsyntax"
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"github.com/hashicorp/terraform/addrs"
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)
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// Resource represents a "resource" or "data" block in a module or file.
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type Resource struct {
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Mode addrs.ResourceMode
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Name string
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Type string
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Config hcl.Body
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Count hcl.Expression
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ForEach hcl.Expression
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ProviderConfigRef *ProviderConfigRef
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DependsOn []hcl.Traversal
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// Managed is populated only for Mode = addrs.ManagedResourceMode,
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// containing the additional fields that apply to managed resources.
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// For all other resource modes, this field is nil.
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Managed *ManagedResource
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DeclRange hcl.Range
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TypeRange hcl.Range
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}
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// ManagedResource represents a "resource" block in a module or file.
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type ManagedResource struct {
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Connection *Connection
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Provisioners []*Provisioner
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CreateBeforeDestroy bool
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PreventDestroy bool
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IgnoreChanges []hcl.Traversal
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IgnoreAllChanges bool
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CreateBeforeDestroySet bool
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PreventDestroySet bool
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}
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func (r *Resource) moduleUniqueKey() string {
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return r.Addr().String()
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}
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// Addr returns a resource address for the receiver that is relative to the
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// resource's containing module.
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func (r *Resource) Addr() addrs.Resource {
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return addrs.Resource{
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Mode: r.Mode,
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Type: r.Type,
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Name: r.Name,
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}
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}
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// ProviderConfigAddr returns the address for the provider configuration
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// that should be used for this resource. This function implements the
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// default behavior of extracting the type from the resource type name if
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// an explicit "provider" argument was not provided.
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func (r *Resource) ProviderConfigAddr() addrs.ProviderConfig {
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if r.ProviderConfigRef == nil {
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return r.Addr().DefaultProviderConfig()
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}
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return addrs.ProviderConfig{
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Type: r.ProviderConfigRef.Name,
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Alias: r.ProviderConfigRef.Alias,
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}
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}
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func decodeResourceBlock(block *hcl.Block) (*Resource, hcl.Diagnostics) {
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r := &Resource{
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Mode: addrs.ManagedResourceMode,
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Type: block.Labels[0],
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Name: block.Labels[1],
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DeclRange: block.DefRange,
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TypeRange: block.LabelRanges[0],
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Managed: &ManagedResource{},
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}
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content, remain, diags := block.Body.PartialContent(resourceBlockSchema)
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r.Config = remain
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if !hclsyntax.ValidIdentifier(r.Type) {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid resource type name",
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Detail: badIdentifierDetail,
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Subject: &block.LabelRanges[0],
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})
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}
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if !hclsyntax.ValidIdentifier(r.Name) {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid resource name",
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Detail: badIdentifierDetail,
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Subject: &block.LabelRanges[1],
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})
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}
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if attr, exists := content.Attributes["count"]; exists {
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r.Count = attr.Expr
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}
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if attr, exists := content.Attributes["for_each"]; exists {
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r.ForEach = attr.Expr
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// We currently parse this, but don't yet do anything with it.
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Reserved argument name in resource block",
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Detail: fmt.Sprintf("The name %q is reserved for use in a future version of Terraform.", attr.Name),
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Subject: &attr.NameRange,
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})
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}
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if attr, exists := content.Attributes["provider"]; exists {
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var providerDiags hcl.Diagnostics
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r.ProviderConfigRef, providerDiags = decodeProviderConfigRef(attr.Expr, "provider")
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diags = append(diags, providerDiags...)
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}
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if attr, exists := content.Attributes["depends_on"]; exists {
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deps, depsDiags := decodeDependsOn(attr)
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diags = append(diags, depsDiags...)
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r.DependsOn = append(r.DependsOn, deps...)
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}
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var seenLifecycle *hcl.Block
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var seenConnection *hcl.Block
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for _, block := range content.Blocks {
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switch block.Type {
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case "lifecycle":
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if seenLifecycle != nil {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Duplicate lifecycle block",
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Detail: fmt.Sprintf("This resource already has a lifecycle block at %s.", seenLifecycle.DefRange),
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Subject: &block.DefRange,
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})
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continue
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}
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seenLifecycle = block
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lcContent, lcDiags := block.Body.Content(resourceLifecycleBlockSchema)
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diags = append(diags, lcDiags...)
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if attr, exists := lcContent.Attributes["create_before_destroy"]; exists {
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valDiags := gohcl.DecodeExpression(attr.Expr, nil, &r.Managed.CreateBeforeDestroy)
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diags = append(diags, valDiags...)
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r.Managed.CreateBeforeDestroySet = true
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}
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if attr, exists := lcContent.Attributes["prevent_destroy"]; exists {
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valDiags := gohcl.DecodeExpression(attr.Expr, nil, &r.Managed.PreventDestroy)
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diags = append(diags, valDiags...)
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r.Managed.PreventDestroySet = true
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}
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if attr, exists := lcContent.Attributes["ignore_changes"]; exists {
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// ignore_changes can either be a list of relative traversals
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// or it can be just the keyword "all" to ignore changes to this
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// resource entirely.
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// ignore_changes = [ami, instance_type]
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// ignore_changes = all
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// We also allow two legacy forms for compatibility with earlier
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// versions:
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// ignore_changes = ["ami", "instance_type"]
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// ignore_changes = ["*"]
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kw := hcl.ExprAsKeyword(attr.Expr)
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switch {
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case kw == "all":
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r.Managed.IgnoreAllChanges = true
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default:
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exprs, listDiags := hcl.ExprList(attr.Expr)
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diags = append(diags, listDiags...)
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var ignoreAllRange hcl.Range
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for _, expr := range exprs {
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// our expr might be the literal string "*", which
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// we accept as a deprecated way of saying "all".
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if shimIsIgnoreChangesStar(expr) {
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r.Managed.IgnoreAllChanges = true
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ignoreAllRange = expr.Range()
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagWarning,
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Summary: "Deprecated ignore_changes wildcard",
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Detail: "The [\"*\"] form of ignore_changes wildcard is deprecated. Use \"ignore_changes = all\" to ignore changes to all attributes.",
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Subject: attr.Expr.Range().Ptr(),
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})
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continue
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}
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expr, shimDiags := shimTraversalInString(expr, false)
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diags = append(diags, shimDiags...)
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traversal, travDiags := hcl.RelTraversalForExpr(expr)
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diags = append(diags, travDiags...)
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if len(traversal) != 0 {
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r.Managed.IgnoreChanges = append(r.Managed.IgnoreChanges, traversal)
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}
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}
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if r.Managed.IgnoreAllChanges && len(r.Managed.IgnoreChanges) != 0 {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid ignore_changes ruleset",
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Detail: "Cannot mix wildcard string \"*\" with non-wildcard references.",
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Subject: &ignoreAllRange,
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Context: attr.Expr.Range().Ptr(),
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})
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}
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}
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}
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case "connection":
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if seenConnection != nil {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Duplicate connection block",
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Detail: fmt.Sprintf("This resource already has a connection block at %s.", seenConnection.DefRange),
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Subject: &block.DefRange,
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})
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continue
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}
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seenConnection = block
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r.Managed.Connection = &Connection{
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Config: block.Body,
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DeclRange: block.DefRange,
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}
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case "provisioner":
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pv, pvDiags := decodeProvisionerBlock(block)
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diags = append(diags, pvDiags...)
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if pv != nil {
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r.Managed.Provisioners = append(r.Managed.Provisioners, pv)
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}
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default:
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// Any other block types are ones we've reserved for future use,
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// so they get a generic message.
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Reserved block type name in resource block",
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Detail: fmt.Sprintf("The block type name %q is reserved for use by Terraform in a future version.", block.Type),
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Subject: &block.TypeRange,
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})
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}
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}
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return r, diags
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}
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func decodeDataBlock(block *hcl.Block) (*Resource, hcl.Diagnostics) {
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r := &Resource{
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Mode: addrs.DataResourceMode,
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Type: block.Labels[0],
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Name: block.Labels[1],
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DeclRange: block.DefRange,
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TypeRange: block.LabelRanges[0],
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}
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content, remain, diags := block.Body.PartialContent(dataBlockSchema)
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r.Config = remain
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if !hclsyntax.ValidIdentifier(r.Type) {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid data source name",
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Detail: badIdentifierDetail,
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Subject: &block.LabelRanges[0],
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})
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}
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if !hclsyntax.ValidIdentifier(r.Name) {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid data resource name",
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Detail: badIdentifierDetail,
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Subject: &block.LabelRanges[1],
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})
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}
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if attr, exists := content.Attributes["count"]; exists {
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r.Count = attr.Expr
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}
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if attr, exists := content.Attributes["for_each"]; exists {
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r.ForEach = attr.Expr
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// We currently parse this, but don't yet do anything with it.
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Reserved argument name in module block",
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Detail: fmt.Sprintf("The name %q is reserved for use in a future version of Terraform.", attr.Name),
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Subject: &attr.NameRange,
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})
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}
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if attr, exists := content.Attributes["provider"]; exists {
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var providerDiags hcl.Diagnostics
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r.ProviderConfigRef, providerDiags = decodeProviderConfigRef(attr.Expr, "provider")
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diags = append(diags, providerDiags...)
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}
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if attr, exists := content.Attributes["depends_on"]; exists {
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deps, depsDiags := decodeDependsOn(attr)
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diags = append(diags, depsDiags...)
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r.DependsOn = append(r.DependsOn, deps...)
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}
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for _, block := range content.Blocks {
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// All of the block types we accept are just reserved for future use, but some get a specialized error message.
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switch block.Type {
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case "lifecycle":
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Unsupported lifecycle block",
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Detail: "Data resources do not have lifecycle settings, so a lifecycle block is not allowed.",
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Subject: &block.DefRange,
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})
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default:
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Reserved block type name in data block",
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Detail: fmt.Sprintf("The block type name %q is reserved for use by Terraform in a future version.", block.Type),
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Subject: &block.TypeRange,
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})
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}
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}
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return r, diags
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}
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type ProviderConfigRef struct {
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Name string
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NameRange hcl.Range
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Alias string
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AliasRange *hcl.Range // nil if alias not set
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}
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func decodeProviderConfigRef(expr hcl.Expression, argName string) (*ProviderConfigRef, hcl.Diagnostics) {
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var diags hcl.Diagnostics
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var shimDiags hcl.Diagnostics
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expr, shimDiags = shimTraversalInString(expr, false)
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diags = append(diags, shimDiags...)
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traversal, travDiags := hcl.AbsTraversalForExpr(expr)
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// AbsTraversalForExpr produces only generic errors, so we'll discard
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// the errors given and produce our own with extra context. If we didn't
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// get any errors then we might still have warnings, though.
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if !travDiags.HasErrors() {
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diags = append(diags, travDiags...)
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}
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if len(traversal) < 1 || len(traversal) > 2 {
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// A provider reference was given as a string literal in the legacy
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// configuration language and there are lots of examples out there
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// showing that usage, so we'll sniff for that situation here and
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// produce a specialized error message for it to help users find
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// the new correct form.
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if exprIsNativeQuotedString(expr) {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid provider configuration reference",
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Detail: "A provider configuration reference must not be given in quotes.",
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Subject: expr.Range().Ptr(),
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})
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return nil, diags
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}
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid provider configuration reference",
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Detail: fmt.Sprintf("The %s argument requires a provider type name, optionally followed by a period and then a configuration alias.", argName),
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Subject: expr.Range().Ptr(),
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})
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return nil, diags
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}
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ret := &ProviderConfigRef{
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Name: traversal.RootName(),
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NameRange: traversal[0].SourceRange(),
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}
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if len(traversal) > 1 {
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aliasStep, ok := traversal[1].(hcl.TraverseAttr)
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if !ok {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Invalid provider configuration reference",
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Detail: "Provider name must either stand alone or be followed by a period and then a configuration alias.",
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Subject: traversal[1].SourceRange().Ptr(),
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})
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return ret, diags
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}
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ret.Alias = aliasStep.Name
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ret.AliasRange = aliasStep.SourceRange().Ptr()
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}
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return ret, diags
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}
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// Addr returns the provider config address corresponding to the receiving
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// config reference.
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//
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// This is a trivial conversion, essentially just discarding the source
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// location information and keeping just the addressing information.
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func (r *ProviderConfigRef) Addr() addrs.ProviderConfig {
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return addrs.ProviderConfig{
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Type: r.Name,
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Alias: r.Alias,
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}
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}
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func (r *ProviderConfigRef) String() string {
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if r == nil {
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return "<nil>"
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}
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if r.Alias != "" {
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return fmt.Sprintf("%s.%s", r.Name, r.Alias)
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}
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return r.Name
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}
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var commonResourceAttributes = []hcl.AttributeSchema{
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{
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Name: "count",
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},
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{
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Name: "for_each",
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},
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{
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Name: "provider",
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},
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{
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Name: "depends_on",
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},
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}
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var resourceBlockSchema = &hcl.BodySchema{
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Attributes: commonResourceAttributes,
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "locals"}, // reserved for future use
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{Type: "lifecycle"},
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{Type: "connection"},
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{Type: "provisioner", LabelNames: []string{"type"}},
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},
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}
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var dataBlockSchema = &hcl.BodySchema{
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Attributes: commonResourceAttributes,
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Blocks: []hcl.BlockHeaderSchema{
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{Type: "lifecycle"}, // reserved for future use
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{Type: "locals"}, // reserved for future use
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},
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}
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var resourceLifecycleBlockSchema = &hcl.BodySchema{
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Attributes: []hcl.AttributeSchema{
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{
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Name: "create_before_destroy",
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},
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{
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Name: "prevent_destroy",
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},
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{
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Name: "ignore_changes",
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},
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},
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}
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