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interpres/docwrite.go
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// Copyright (c) 2026 Petr Balvín <opensource@petrbalvin.org> (https://petrbalvin.org)
// SPDX-License-Identifier: MIT
package interpres
import (
"fmt"
)
// UnmarshalDocument decodes a parsed Document into v without parsing again,
// the shape an edit pipeline wants: read the document, change the values it
// holds, decode the result into a typed destination. The key order and the
// comments the document carries are untouched; the decode reads the value
// tree the document shares with its nodes.
//
// UnmarshalDocument accepts the same destinations Unmarshal does.
func UnmarshalDocument(doc *Document, v any) error {
if doc == nil {
return fmt.Errorf("interpres: cannot decode a nil Document")
}
dec := newDecoder()
dec.nodes = indexNodes(doc.Root())
return dec.decode(doc.Map(), v)
}
// writeDocument renders a Document back to TOML: the keys in written order,
// the comments above the lines and headers they belonged to, tables that
// were written inline written inline again, and an array of tables in its
// header form. It is the write side of the edit pipeline: read with Parse,
// change with the Table and Document mutators, write with Marshal.
func (e *encoder) writeDocument(doc *Document) error {
if err := e.checkCtx(); err != nil {
return err
}
if doc == nil || doc.root == nil {
return fmt.Errorf("interpres: cannot marshal a nil Document")
}
if err := e.writeTableEntries(doc.root, nil); err != nil {
return err
}
e.writeDocumentFooter(doc.footer)
return nil
}
// writeDocumentFooter writes the comment lines that follow the last
// statement, each separated from it by a blank line, the shape the parser
// reads them back from.
func (e *encoder) writeDocumentFooter(footer []string) {
for _, line := range footer {
e.buf.WriteString("# ")
e.buf.WriteString(line)
e.buf.WriteByte('\n')
}
}
// writeTableEntries writes one table's entries in written order at the given
// header path, nil for the document root, whose keys need no header.
func (e *encoder) writeTableEntries(t *Table, path []string) error {
if t == nil {
return nil
}
if path != nil {
e.writeBlankLine()
e.writeComments(t.Comments())
e.buf.WriteString("[")
if err := e.writeKeyPath(path); err != nil {
return err
}
e.buf.WriteString("]\n")
if tr := t.Trailing(); tr != "" {
e.buf.WriteString(" # ")
e.buf.WriteString(tr)
e.buf.WriteByte('\n')
}
}
for _, entry := range t.Entries() {
if err := e.checkCtx(); err != nil {
return err
}
if _, isTables := entry.Value().([]map[string]any); isTables && len(entry.Elements()) > 0 {
for i, el := range entry.Elements() {
elemPath := append(append([]string{}, path...), entry.Key())
e.writeBlankLine()
if i == 0 {
e.writeComments(entry.Comments())
}
e.buf.WriteString("[[")
if err := e.writeKeyPath(elemPath); err != nil {
return err
}
e.buf.WriteString("]]\n")
if err := e.writeTableEntries(el, elemPath); err != nil {
return err
}
}
continue
}
if child := entry.Table(); child != nil && !entry.Inline() {
headerPath := append(append([]string{}, path...), entry.Key())
if err := e.writeTableEntries(child, headerPath); err != nil {
return err
}
continue
}
if err := e.writeDocumentEntry(entry, path); err != nil {
return err
}
}
return nil
}
// writeDocumentEntry writes one "key = value" line of a document, with the
// comments the key carried. A value that is itself an inline table renders
// inline from its node, in the written order.
func (e *encoder) writeDocumentEntry(entry *Entry, path []string) error {
e.writeComments(entry.Comments())
if err := e.writeKey(entry.Key()); err != nil {
return err
}
e.buf.WriteString(" = ")
if child := entry.Table(); child != nil {
if err := e.writeInlineTableNode(child); err != nil {
return err
}
if tr := entry.Trailing(); tr != "" {
e.buf.WriteString(" # ")
e.buf.WriteString(tr)
}
e.buf.WriteByte('\n')
return nil
}
if err := e.writeValue(entry.Value()); err != nil {
return err
}
if tr := entry.Trailing(); tr != "" {
e.buf.WriteString(" # ")
e.buf.WriteString(tr)
}
e.buf.WriteByte('\n')
return nil
}
// writeInlineTableNode renders a table node as an inline table, its keys in
// written order, values that are tables inline in turn.
func (e *encoder) writeInlineTableNode(t *Table) error {
e.buf.WriteByte('{')
for i, key := range t.Keys() {
if i > 0 {
e.buf.WriteString(", ")
}
if err := e.writeKey(key); err != nil {
return err
}
e.buf.WriteString(" = ")
entry, _ := t.Get(key)
if child := entry.Table(); child != nil {
if err := e.writeInlineTableNode(child); err != nil {
return err
}
continue
}
if err := e.writeValue(t.Values()[key]); err != nil {
return err
}
}
e.buf.WriteByte('}')
return nil
}