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Datasources use their attribute's expressions to determine whether or not they depend on another datasource, in order to get the list of dependencies and execute them before executing a datasource. This code may be useful later on for figuring out the dependencies for any block, so we move this code to the utils.go file, and use this for datasources.
209 lines
4.9 KiB
Go
209 lines
4.9 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: BUSL-1.1
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package hcl2template
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import (
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"fmt"
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"os"
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"path/filepath"
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"strings"
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"github.com/gobwas/glob"
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"github.com/hashicorp/hcl/v2"
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"github.com/hashicorp/packer/hcl2template/repl"
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hcl2shim "github.com/hashicorp/packer/hcl2template/shim"
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"github.com/zclconf/go-cty/cty"
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)
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func warningErrorsToDiags(block *hcl.Block, warnings []string, err error) hcl.Diagnostics {
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var diags hcl.Diagnostics
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for _, warning := range warnings {
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diags = append(diags, &hcl.Diagnostic{
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Summary: warning,
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Subject: &block.DefRange,
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Severity: hcl.DiagWarning,
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})
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}
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if err != nil {
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diags = append(diags, &hcl.Diagnostic{
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Summary: err.Error(),
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Subject: &block.DefRange,
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Severity: hcl.DiagError,
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})
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}
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return diags
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}
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func isDir(name string) (bool, error) {
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s, err := os.Stat(name)
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if err != nil {
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return false, err
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}
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return s.IsDir(), nil
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}
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// GetHCL2Files returns two slices of json formatted and hcl formatted files,
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// hclSuffix and jsonSuffix tell which file is what. Filename can be a folder
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// or a file.
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//
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// When filename is a folder all files of folder matching the suffixes will be
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// returned. Otherwise if filename references a file and filename matches one
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// of the suffixes it is returned in the according slice.
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func GetHCL2Files(filename, hclSuffix, jsonSuffix string) (hclFiles, jsonFiles []string, diags hcl.Diagnostics) {
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if filename == "" {
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return
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}
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isDir, err := isDir(filename)
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if err != nil {
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diags = append(diags, &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Detail: err.Error(),
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})
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return nil, nil, diags
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}
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if !isDir {
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if strings.HasSuffix(filename, jsonSuffix) {
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return nil, []string{filename}, diags
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}
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if strings.HasSuffix(filename, hclSuffix) {
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return []string{filename}, nil, diags
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}
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return nil, nil, diags
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}
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fileInfos, err := os.ReadDir(filename)
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if err != nil {
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diag := &hcl.Diagnostic{
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Severity: hcl.DiagError,
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Summary: "Cannot read hcl directory",
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Detail: err.Error(),
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}
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diags = append(diags, diag)
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return nil, nil, diags
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}
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for _, fileInfo := range fileInfos {
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if fileInfo.IsDir() {
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continue
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}
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filename := filepath.Join(filename, fileInfo.Name())
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if strings.HasSuffix(filename, hclSuffix) {
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hclFiles = append(hclFiles, filename)
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} else if strings.HasSuffix(filename, jsonSuffix) {
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jsonFiles = append(jsonFiles, filename)
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}
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}
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return hclFiles, jsonFiles, diags
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}
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// Convert -only and -except globs to glob.Glob instances.
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func convertFilterOption(patterns []string, optionName string) ([]glob.Glob, hcl.Diagnostics) {
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var globs []glob.Glob
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var diags hcl.Diagnostics
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for _, pattern := range patterns {
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g, err := glob.Compile(pattern)
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if err != nil {
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diags = append(diags, &hcl.Diagnostic{
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Summary: fmt.Sprintf("Invalid -%s pattern %s: %s", optionName, pattern, err),
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Severity: hcl.DiagError,
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})
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}
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globs = append(globs, g)
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}
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return globs, diags
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}
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func PrintableCtyValue(v cty.Value) string {
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if !v.IsWhollyKnown() {
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return "<unknown>"
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}
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gval := hcl2shim.ConfigValueFromHCL2(v)
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str := repl.FormatResult(gval)
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return str
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}
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func ConvertPluginConfigValueToHCLValue(v interface{}) (cty.Value, error) {
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var buildValue cty.Value
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switch v := v.(type) {
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case bool:
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buildValue = cty.BoolVal(v)
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case string:
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buildValue = cty.StringVal(v)
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case uint8:
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buildValue = cty.NumberUIntVal(uint64(v))
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case float64:
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buildValue = cty.NumberFloatVal(v)
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case int64:
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buildValue = cty.NumberIntVal(v)
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case uint64:
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buildValue = cty.NumberUIntVal(v)
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case []string:
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vals := make([]cty.Value, len(v))
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for i, ev := range v {
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vals[i] = cty.StringVal(ev)
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}
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if len(vals) == 0 {
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buildValue = cty.ListValEmpty(cty.String)
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} else {
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buildValue = cty.ListVal(vals)
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}
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case []uint8:
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vals := make([]cty.Value, len(v))
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for i, ev := range v {
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vals[i] = cty.NumberUIntVal(uint64(ev))
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}
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if len(vals) == 0 {
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buildValue = cty.ListValEmpty(cty.Number)
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} else {
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buildValue = cty.ListVal(vals)
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}
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case []int64:
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vals := make([]cty.Value, len(v))
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for i, ev := range v {
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vals[i] = cty.NumberIntVal(ev)
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}
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if len(vals) == 0 {
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buildValue = cty.ListValEmpty(cty.Number)
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} else {
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buildValue = cty.ListVal(vals)
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}
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case []uint64:
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vals := make([]cty.Value, len(v))
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for i, ev := range v {
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vals[i] = cty.NumberUIntVal(ev)
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}
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if len(vals) == 0 {
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buildValue = cty.ListValEmpty(cty.Number)
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} else {
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buildValue = cty.ListVal(vals)
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}
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default:
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return cty.Value{}, fmt.Errorf("unhandled buildvar type: %T", v)
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}
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return buildValue, nil
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}
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func GetVarsByType(block *hcl.Block, topLevelLabels ...string) []hcl.Traversal {
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attributes, _ := block.Body.JustAttributes()
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var vars []hcl.Traversal
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for _, attr := range attributes {
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for _, variable := range attr.Expr.Variables() {
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rootLabel := variable.RootName()
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for _, label := range topLevelLabels {
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if label == rootLabel {
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vars = append(vars, variable)
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break
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}
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}
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}
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}
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return vars
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}
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