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MemberAccessExpression.ts
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139 lines (125 loc) · 4.26 KB
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import { NonterminalKind } from '@nomicfoundation/slang/cst';
import { doc } from 'prettier';
import { isLabel } from '../slang-utils/is-label.js';
import { extractVariant } from '../slang-utils/extract-variant.js';
import { isChainableExpression } from '../slang-utils/is-chainable-expression.js';
import { SlangNode } from './SlangNode.js';
import { Expression } from './Expression.js';
import { TerminalNode } from './TerminalNode.js';
import type * as ast from '@nomicfoundation/slang/ast';
import type { AstPath, Doc, ParserOptions } from 'prettier';
import type { CollectedMetadata, PrintFunction } from '../types.d.ts';
import type { AstNode, ChainableExpression } from './types.d.ts';
const { group, indent, label, softline } = doc.builders;
function isEndOfChain(
node: ChainableExpression,
path: AstPath<Expression['variant']>
): boolean {
for (let i = 1, current = node, parent; ; i++, current = parent) {
parent = path.getNode(i)!;
if (!isChainableExpression(parent)) break;
switch (parent.kind) {
case NonterminalKind.MemberAccessExpression:
// If `parent` is a MemberAccessExpression we are not at the end
// of the chain.
return false;
case NonterminalKind.IndexAccessExpression:
// If `parent` is an IndexAccessExpression and `current` is not
// the operand then it must be the start or the end in which case it is
// the end of the chain.
if (current !== parent.operand) return true;
break;
case NonterminalKind.FunctionCallExpression:
// If `parent` is a FunctionCallExpression and `current` is not
// the operand then it must be and argument in which case it is the end
// of the chain.
if (current !== parent.operand) return true;
break;
}
}
return true;
}
/**
* processChain expects the doc[] of the full chain of MemberAccess.
*
* It uses the separator label to split the chain into 2 arrays.
* The first array is the doc[] corresponding to the first element before the
* first separator.
* The second array contains the rest of the chain.
*
* The second array is grouped and indented, while the first element's
* formatting logic remains separated.
*
* That way the first element can safely split into multiple lines and the rest
* of the chain will continue its formatting rules as normal.
*
* i.e.
* ```
* functionCall(arg1, arg2).rest.of.chain
*
* functionCall(arg1, arg2)
* .long
* .rest
* .of
* .chain
*
* functionCall(
* arg1,
* arg2
* ).rest.of.chain
*
* functionCall(
* arg1,
* arg2
* )
* .long
* .rest
* .of
* .chain
* ```
*
* NOTE: As described in the examples above, the rest of the chain will be grouped
* and try to stay in the same line as the end of the first element.
*
* @param {doc[]} chain is the full chain of MemberAccess
* @returns a processed doc[] with the proper grouping and indentation ready to
* be printed.
*/
function processChain(chain: Doc[]): Doc {
const firstSeparatorIndex = chain.findIndex(
(element) => isLabel(element) && element.label === 'separator'
);
// We wrap the expression in a label in case there is an IndexAccess or
// a FunctionCall following this MemberAccess.
return label('MemberAccessChain', [
// The doc[] before the first separator
chain.slice(0, firstSeparatorIndex),
// The doc[] containing the rest of the chain
group(indent(chain.slice(firstSeparatorIndex)))
]);
}
export class MemberAccessExpression extends SlangNode {
readonly kind = NonterminalKind.MemberAccessExpression;
operand: Expression['variant'];
member: TerminalNode;
constructor(
ast: ast.MemberAccessExpression,
collected: CollectedMetadata,
options: ParserOptions<AstNode>
) {
super(ast, collected);
this.operand = extractVariant(
new Expression(ast.operand, collected, options)
);
this.member = new TerminalNode(ast.member, collected);
this.updateMetadata(this.operand);
}
print(path: AstPath<MemberAccessExpression>, print: PrintFunction): Doc {
const document = [
path.call(print, 'operand'),
label('separator', [softline, '.']),
path.call(print, 'member')
].flat();
return isEndOfChain(this, path) ? processChain(document) : document;
}
}