6c4344623b
The main HCL package is more visible this way, and so it's easier than having to pick it out from dozens of other package directories.
173 lines
3.9 KiB
Go
173 lines
3.9 KiB
Go
package hclwrite
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import (
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"bytes"
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"testing"
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"github.com/sergi/go-diff/diffmatchpatch"
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"github.com/zclconf/go-cty/cty"
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"github.com/zclconf/go-cty/cty/function"
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"github.com/zclconf/go-cty/cty/function/stdlib"
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"github.com/hashicorp/hcl/v2"
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"github.com/hashicorp/hcl/v2/hclsyntax"
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)
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func TestRoundTripVerbatim(t *testing.T) {
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tests := []string{
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``,
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`foo = 1
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`,
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`
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foobar = 1
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baz = 1
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`,
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`
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# this file is awesome
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# tossed salads and scrambled eggs
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foobar = 1
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baz = 1
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block {
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a = "a"
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b = "b"
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c = "c"
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d = "d"
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subblock {
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}
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subblock {
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e = "e"
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}
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}
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# and they all lived happily ever after
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`,
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}
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for _, test := range tests {
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t.Run(test, func(t *testing.T) {
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src := []byte(test)
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file, diags := parse(src, "", hcl.Pos{Line: 1, Column: 1})
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if len(diags) != 0 {
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for _, diag := range diags {
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t.Logf(" - %s", diag.Error())
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}
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t.Fatalf("unexpected diagnostics")
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}
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wr := &bytes.Buffer{}
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n, err := file.WriteTo(wr)
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if n != int64(len(test)) {
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t.Errorf("wrong number of bytes %d; want %d", n, len(test))
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}
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if err != nil {
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t.Fatalf("error from WriteTo")
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}
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result := wr.Bytes()
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if !bytes.Equal(result, src) {
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dmp := diffmatchpatch.New()
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diffs := dmp.DiffMain(string(src), string(result), false)
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//t.Errorf("wrong result\nresult:\n%s\ninput:\n%s", result, src)
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t.Errorf("wrong result\ndiff: (red indicates missing lines, and green indicates unexpected lines)\n%s", dmp.DiffPrettyText(diffs))
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}
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})
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}
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}
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func TestRoundTripFormat(t *testing.T) {
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// The goal of this test is to verify that the formatter doesn't change
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// the semantics of any expressions when it adds and removes whitespace.
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// String templates are the primary area of concern here, but we also
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// test some other things for completeness sake.
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//
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// The tests here must define zero or more attributes, which will be
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// extract with JustAttributes and evaluated both before and after
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// formatting.
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tests := []string{
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"",
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"\n\n\n",
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"a=1\n",
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"a=\"hello\"\n",
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"a=\"${hello} world\"\n",
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"a=upper(\"hello\")\n",
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"a=upper(hello)\n",
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"a=[1,2,3,4,five]\n",
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"a={greeting=hello}\n",
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"a={\ngreeting=hello\n}\n",
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"a={\ngreeting=hello}\n",
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"a={greeting=hello\n}\n",
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"a={greeting=hello,number=five,sarcastic=\"${upper(hello)}\"\n}\n",
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"a={\ngreeting=hello\nnumber=five\nsarcastic=\"${upper(hello)}\"\n}\n",
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"a=<<EOT\nhello\nEOT\n\n",
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"a=[<<EOT\nhello\nEOT\n]\n",
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"a=[\n<<EOT\nhello\nEOT\n]\n",
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"a=[\n]\n",
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"a=1\nb=2\nc=3\n",
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"a=\"${\n5\n}\"\n",
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}
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ctx := &hcl.EvalContext{
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Variables: map[string]cty.Value{
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"hello": cty.StringVal("hello"),
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"five": cty.NumberIntVal(5),
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},
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Functions: map[string]function.Function{
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"upper": stdlib.UpperFunc,
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},
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}
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for _, test := range tests {
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t.Run(test, func(t *testing.T) {
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attrsAsObj := func(src []byte, phase string) cty.Value {
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t.Logf("source %s:\n%s", phase, src)
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f, diags := hclsyntax.ParseConfig(src, "", hcl.Pos{Line: 1, Column: 1})
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if len(diags) != 0 {
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for _, diag := range diags {
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t.Logf(" - %s", diag.Error())
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}
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t.Fatalf("unexpected diagnostics in parse %s", phase)
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}
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attrs, diags := f.Body.JustAttributes()
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if len(diags) != 0 {
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for _, diag := range diags {
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t.Logf(" - %s", diag.Error())
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}
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t.Fatalf("unexpected diagnostics in JustAttributes %s", phase)
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}
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vals := map[string]cty.Value{}
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for k, attr := range attrs {
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val, diags := attr.Expr.Value(ctx)
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if len(diags) != 0 {
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for _, diag := range diags {
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t.Logf(" - %s", diag.Error())
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}
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t.Fatalf("unexpected diagnostics evaluating %s", phase)
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}
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vals[k] = val
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}
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return cty.ObjectVal(vals)
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}
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src := []byte(test)
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before := attrsAsObj(src, "before")
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formatted := Format(src)
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after := attrsAsObj(formatted, "after")
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if !after.RawEquals(before) {
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t.Errorf("mismatching after format\nbefore: %#v\nafter: %#v", before, after)
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}
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})
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}
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}
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