Files
Packer-Cn/hcl2template/utils.go
T
Lucas Bajolet d9259d6d12 hcl2template: extract attr filter code from ds
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.
2023-10-05 10:31:04 -04:00

209 lines
4.9 KiB
Go

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