2021-02-05 21:40:58 +01:00
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package convert
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import (
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2021-05-17 19:11:06 +02:00
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"github.com/hashicorp/terraform/internal/tfdiags"
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2021-02-05 21:40:58 +01:00
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proto "github.com/hashicorp/terraform/internal/tfplugin6"
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"github.com/zclconf/go-cty/cty"
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)
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// WarnsAndErrorsToProto converts the warnings and errors return by the legacy
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// provider to protobuf diagnostics.
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func WarnsAndErrsToProto(warns []string, errs []error) (diags []*proto.Diagnostic) {
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for _, w := range warns {
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diags = AppendProtoDiag(diags, w)
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}
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for _, e := range errs {
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diags = AppendProtoDiag(diags, e)
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}
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return diags
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}
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// AppendProtoDiag appends a new diagnostic from a warning string or an error.
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// This panics if d is not a string or error.
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func AppendProtoDiag(diags []*proto.Diagnostic, d interface{}) []*proto.Diagnostic {
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switch d := d.(type) {
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case cty.PathError:
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ap := PathToAttributePath(d.Path)
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diags = append(diags, &proto.Diagnostic{
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Severity: proto.Diagnostic_ERROR,
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Summary: d.Error(),
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Attribute: ap,
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})
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case error:
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diags = append(diags, &proto.Diagnostic{
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Severity: proto.Diagnostic_ERROR,
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Summary: d.Error(),
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})
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case string:
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diags = append(diags, &proto.Diagnostic{
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Severity: proto.Diagnostic_WARNING,
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Summary: d,
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})
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case *proto.Diagnostic:
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diags = append(diags, d)
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case []*proto.Diagnostic:
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diags = append(diags, d...)
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}
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return diags
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}
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// ProtoToDiagnostics converts a list of proto.Diagnostics to a tf.Diagnostics.
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func ProtoToDiagnostics(ds []*proto.Diagnostic) tfdiags.Diagnostics {
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var diags tfdiags.Diagnostics
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for _, d := range ds {
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var severity tfdiags.Severity
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switch d.Severity {
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case proto.Diagnostic_ERROR:
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severity = tfdiags.Error
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case proto.Diagnostic_WARNING:
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severity = tfdiags.Warning
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}
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var newDiag tfdiags.Diagnostic
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// if there's an attribute path, we need to create a AttributeValue diagnostic
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if d.Attribute != nil {
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path := AttributePathToPath(d.Attribute)
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newDiag = tfdiags.AttributeValue(severity, d.Summary, d.Detail, path)
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} else {
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newDiag = tfdiags.WholeContainingBody(severity, d.Summary, d.Detail)
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}
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diags = diags.Append(newDiag)
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}
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return diags
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}
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// AttributePathToPath takes the proto encoded path and converts it to a cty.Path
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func AttributePathToPath(ap *proto.AttributePath) cty.Path {
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var p cty.Path
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for _, step := range ap.Steps {
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switch selector := step.Selector.(type) {
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case *proto.AttributePath_Step_AttributeName:
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p = p.GetAttr(selector.AttributeName)
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case *proto.AttributePath_Step_ElementKeyString:
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p = p.Index(cty.StringVal(selector.ElementKeyString))
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case *proto.AttributePath_Step_ElementKeyInt:
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p = p.Index(cty.NumberIntVal(selector.ElementKeyInt))
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}
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}
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return p
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}
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// AttributePathToPath takes a cty.Path and converts it to a proto-encoded path.
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func PathToAttributePath(p cty.Path) *proto.AttributePath {
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ap := &proto.AttributePath{}
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for _, step := range p {
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switch selector := step.(type) {
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case cty.GetAttrStep:
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ap.Steps = append(ap.Steps, &proto.AttributePath_Step{
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Selector: &proto.AttributePath_Step_AttributeName{
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AttributeName: selector.Name,
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},
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})
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case cty.IndexStep:
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key := selector.Key
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switch key.Type() {
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case cty.String:
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ap.Steps = append(ap.Steps, &proto.AttributePath_Step{
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Selector: &proto.AttributePath_Step_ElementKeyString{
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ElementKeyString: key.AsString(),
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},
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})
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case cty.Number:
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v, _ := key.AsBigFloat().Int64()
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ap.Steps = append(ap.Steps, &proto.AttributePath_Step{
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Selector: &proto.AttributePath_Step_ElementKeyInt{
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ElementKeyInt: v,
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},
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})
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default:
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// We'll bail early if we encounter anything else, and just
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// return the valid prefix.
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return ap
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}
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}
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}
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return ap
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}
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