Sixth R7b port — the T1½ batch finale. Checklist-first recipe
(docs/design/kotlin-kernel-port-checklist.md, 1,121 lines, dist-extractor
ground truth); parity passed FIRST RUN on all three repos.
THE NOVEL MECHANISM — vendored-grammar-C (the §4 tracker's prescription,
first use): the crates.io tree-sitter-kotlin 0.3.8 pins `tree-sitter >= 0.21,
< 0.23` (the kernel links 0.25) and tree-sitter-kotlin-ng is a DIFFERENT
grammar (8 fields vs 0, renamed kinds — extractor-breaking), so no crate dep
is possible. The fwcd 0.3.8 tag's sha-matched parser.c + scanner.c are
vendored into codegraph-kernel/grammars/kotlin and compiled by build.rs (cc),
exposed via tree-sitter-language::LanguageFn. The wasm re-vendor is
behavior-NEUTRAL (0 CST/error disagreements across 1,984 gate-repo files;
old-vs-new full-init dumps byte-identical ×3) — a reproducibility re-vendor,
ABI stays 14.
Walker firsts: extension-function receivers (getReceiverType →
`WidgetK::extend` QN OVERRIDE with no package prefix, the qualified-receiver
`com::qext` first-segment bug, and the owner-contains fallback that excludes
`interface` kinds and is source-order dependent) and extractModifiers
(expect/actual platform modifiers → the node DECORATORS wire field on every
created node — the KMP synthesizer's feed, incl. `actual typealias`).
Preserved bug-for-bug: the FIELD_COUNT-0 dead cluster (no signatures, ZERO
type-annotation refs), hook-consumed property initializers emitting nothing
(incl. `by lazy {}`), the bodiless-vs-bodied class header asymmetry, enum-
entry bodies being invisible, KDoc never a docstring AND chain-breaking,
comment-gluing into import/package extents, `@Anno(args)` emitting nothing
while `@Marker` decorates, zero instantiates refs, the paren-then-lambda
`trailing()` garbage callee, text-includes visibility/suspend false
positives, and the packaged-file value-ref target drop. The fun-interface
misparse-recovery hook is DEFER-SHIELDED (every such file has_error) and
deliberately not ported. The swift-sweep lesson pre-applied: the shared
`assignment` shadow-prune case is implemented alongside the
property_declaration case.
Gates: sweeps 0-diff okio 299/322, okhttp 531/580, kotlinx.coroutines
1031/1082 (deferrals exactly the predicted 23/49/51 — both-arm grammar
reality incl. PHANTOM hasError files with complete CSTs; the kernel trusts
the flag); full-init dumps byte-identical ×3 (46.5k/108.9k/92.3k lines); KMP
expect/actual synthesis IDENTICAL across arms (412 edges on
kotlinx.coroutines — the tracker's KMP validation); kernel-kotlin-parity
suite (torture reflowed off the phantom shapes + .kts script + CRLF variants
+ fun-interface and phantom defer pins) + kotlin grammar-parity row (the
C-build ↔ wasm table identity proof); full suite 2,633 green ×2 under
CODEGRAPH_KERNEL_EXPECT=1. DEFAULT_ROUTED += kotlin (15 langs).
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
531 lines
14 KiB
C
531 lines
14 KiB
C
#include "tree_sitter/array.h"
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#include "tree_sitter/parser.h"
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#include <string.h>
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#include <wctype.h>
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// Mostly a copy paste of tree-sitter-javascript/src/scanner.c
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enum TokenType {
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AUTOMATIC_SEMICOLON,
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IMPORT_LIST_DELIMITER,
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SAFE_NAV,
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MULTILINE_COMMENT,
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STRING_START,
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STRING_END,
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STRING_CONTENT,
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};
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/* Pretty much all of this code is taken from the Julia tree-sitter
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parser.
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Julia has similar problems with multiline comments that can be nested,
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line comments, as well as line and multiline strings.
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The most heavily edited section is `scan_string_content`,
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particularly with respect to interpolation.
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*/
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// Block comments are easy to parse, but strings require extra-attention.
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// The main problems that arise when parsing strings are:
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// 1. Triple quoted strings allow single quotes inside. e.g. """ "foo" """.
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// 2. Non-standard string literals don't allow interpolations or escape
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// sequences, but you can always write \" and \`.
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// To efficiently store a delimiter, we take advantage of the fact that:
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// (int)'"' == 34 && (34 & 1) == 0
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// i.e. " has an even numeric representation, so we can store a triple
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// quoted delimiter as (delimiter + 1).
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#define DELIMITER_LENGTH 3
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typedef char Delimiter;
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// We use a stack to keep track of the string delimiters.
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typedef Array(Delimiter) Stack;
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static inline void stack_push(Stack *stack, char chr, bool triple) {
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if (stack->size >= TREE_SITTER_SERIALIZATION_BUFFER_SIZE) abort();
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array_push(stack, (Delimiter)(triple ? (chr + 1) : chr));
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}
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static inline Delimiter stack_pop(Stack *stack) {
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if (stack->size == 0) abort();
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return array_pop(stack);
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}
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static inline void skip(TSLexer *lexer) { lexer->advance(lexer, true); }
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static inline void advance(TSLexer *lexer) { lexer->advance(lexer, false); }
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// Scanner functions
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static bool scan_string_start(TSLexer *lexer, Stack *stack) {
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if (lexer->lookahead != '"') return false;
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advance(lexer);
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lexer->mark_end(lexer);
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for (unsigned count = 1; count < DELIMITER_LENGTH; ++count) {
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if (lexer->lookahead != '"') {
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// It's not a triple quoted delimiter.
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stack_push(stack, '"', false);
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return true;
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}
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advance(lexer);
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}
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lexer->mark_end(lexer);
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stack_push(stack, '"', true);
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return true;
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}
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static bool scan_string_content(TSLexer *lexer, Stack *stack) {
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if (stack->size == 0) return false; // Stack is empty. We're not in a string.
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Delimiter end_char = stack->contents[stack->size - 1]; // peek
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bool is_triple = false;
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bool has_content = false;
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if (end_char & 1) {
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is_triple = true;
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end_char -= 1;
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}
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while (lexer->lookahead) {
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if (lexer->lookahead == '$') {
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// if we did not just start reading stuff, then we should stop
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// lexing right here, so we can offer the opportunity to lex a
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// interpolated identifier
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if (has_content) {
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lexer->result_symbol = STRING_CONTENT;
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return has_content;
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}
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// otherwise, if this is the start, determine if it is an
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// interpolated identifier.
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// otherwise, it's just string content, so continue
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advance(lexer);
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if (iswalpha(lexer->lookahead) || lexer->lookahead == '{') {
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// this must be a string interpolation, let's
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// fail so we parse it as such
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return false;
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}
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lexer->result_symbol = STRING_CONTENT;
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lexer->mark_end(lexer);
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return true;
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}
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if (lexer->lookahead == '\\') {
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// if we see a \, then this might possibly escape a dollar sign
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// in which case, we should not defer to the interpolation
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advance(lexer);
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// this dollar sign is escaped, so it must be content.
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// we consume it here so we don't enter the dollar sign case above,
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// which leaves the possibility that it is an interpolation
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if (lexer->lookahead == '$') {
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advance(lexer);
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// however this leaves an edgecase where an escaped dollar sign could
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// appear at the end of a string (e.g "aa\$") which isn't handled
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// correctly; if we were at the end of the string, terminate properly
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if (lexer->lookahead == end_char) {
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stack_pop(stack);
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advance(lexer);
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lexer->mark_end(lexer);
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lexer->result_symbol = STRING_END;
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return true;
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}
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}
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} else if (lexer->lookahead == end_char) {
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if (is_triple) {
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lexer->mark_end(lexer);
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for (unsigned count = 1; count < DELIMITER_LENGTH; ++count) {
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advance(lexer);
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if (lexer->lookahead != end_char) {
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lexer->mark_end(lexer);
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lexer->result_symbol = STRING_CONTENT;
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return true;
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}
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}
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/* This is so if we lex something like
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"""foo"""
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^
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where we are at the `f`, we should quit after
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reading `foo`, and ascribe it to STRING_CONTENT.
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Then, we restart and try to read the end.
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This is to prevent `foo` from being absorbed into
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the STRING_END token.
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*/
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if (has_content && lexer->lookahead == end_char) {
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lexer->result_symbol = STRING_CONTENT;
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return true;
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}
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/* Since the string internals are all hidden in the syntax
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tree anyways, there's no point in going to the effort of
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specifically separating the string end from string contents.
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If we see a bunch of quotes in a row, then we just go until
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they stop appearing, then stop lexing and call it the
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string's end.
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*/
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lexer->result_symbol = STRING_END;
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lexer->mark_end(lexer);
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while (lexer->lookahead == end_char) {
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advance(lexer);
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lexer->mark_end(lexer);
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}
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stack_pop(stack);
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return true;
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}
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if (has_content) {
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lexer->mark_end(lexer);
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lexer->result_symbol = STRING_CONTENT;
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return true;
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}
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stack_pop(stack);
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advance(lexer);
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lexer->mark_end(lexer);
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lexer->result_symbol = STRING_END;
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return true;
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}
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advance(lexer);
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has_content = true;
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}
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return false;
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}
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static bool scan_multiline_comment(TSLexer *lexer) {
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if (lexer->lookahead != '/') return false;
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advance(lexer);
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if (lexer->lookahead != '*') return false;
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advance(lexer);
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bool after_star = false;
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unsigned nesting_depth = 1;
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for (;;) {
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switch (lexer->lookahead) {
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case '*':
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advance(lexer);
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after_star = true;
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break;
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case '/':
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advance(lexer);
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if (after_star) {
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after_star = false;
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nesting_depth -= 1;
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if (nesting_depth == 0) {
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lexer->result_symbol = MULTILINE_COMMENT;
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lexer->mark_end(lexer);
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return true;
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}
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} else {
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after_star = false;
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if (lexer->lookahead == '*') {
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nesting_depth += 1;
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advance(lexer);
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}
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}
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break;
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case '\0':
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return false;
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default:
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advance(lexer);
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after_star = false;
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break;
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}
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}
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}
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static bool scan_whitespace_and_comments(TSLexer *lexer) {
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while (iswspace(lexer->lookahead)) skip(lexer);
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return lexer->lookahead != '/';
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}
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static bool scan_for_word(TSLexer *lexer, const char* word, unsigned len) {
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skip(lexer);
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for (unsigned i = 0; i < len; ++i) {
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if (lexer->lookahead != word[i]) return false;
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skip(lexer);
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}
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return true;
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}
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static bool scan_automatic_semicolon(TSLexer *lexer) {
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lexer->result_symbol = AUTOMATIC_SEMICOLON;
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lexer->mark_end(lexer);
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bool sameline = true;
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for (;;) {
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if (lexer->eof(lexer)) return true;
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if (lexer->lookahead == ';') {
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advance(lexer);
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lexer->mark_end(lexer);
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return true;
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}
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if (!iswspace(lexer->lookahead)) break;
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if (lexer->lookahead == '\n') {
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skip(lexer);
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sameline = false;
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break;
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}
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if (lexer->lookahead == '\r') {
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skip(lexer);
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if (lexer->lookahead == '\n') skip(lexer);
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sameline = false;
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break;
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}
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skip(lexer);
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}
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// Skip whitespace and comments
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if (!scan_whitespace_and_comments(lexer))
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return false;
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if (sameline) {
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switch (lexer->lookahead) {
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// Don't insert a semicolon before an else
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case 'e':
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return !scan_for_word(lexer, "lse", 3);
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case 'i':
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return scan_for_word(lexer, "mport", 5);
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case ';':
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advance(lexer);
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lexer->mark_end(lexer);
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return true;
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default:
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return false;
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}
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}
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switch (lexer->lookahead) {
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case ',':
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case '.':
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case ':':
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case '*':
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case '%':
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case '>':
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case '<':
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case '=':
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case '{':
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case '[':
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case '(':
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case '?':
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case '|':
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case '&':
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case '/':
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return false;
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// Insert a semicolon before `--` and `++`, but not before binary `+` or `-`.
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// Insert before +/-Float
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case '+':
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skip(lexer);
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if (lexer->lookahead == '+') return true;
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return iswdigit(lexer->lookahead);
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case '-':
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skip(lexer);
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if (lexer->lookahead == '-') return true;
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return iswdigit(lexer->lookahead);
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// Don't insert a semicolon before `!=`, but do insert one before a unary `!`.
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case '!':
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skip(lexer);
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return lexer->lookahead != '=';
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// Don't insert a semicolon before an else
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case 'e':
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return !scan_for_word(lexer, "lse", 3);
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// Don't insert a semicolon before `in` or `instanceof`, but do insert one
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// before an identifier or an import.
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case 'i':
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skip(lexer);
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if (lexer->lookahead != 'n') return true;
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skip(lexer);
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if (!iswalpha(lexer->lookahead)) return false;
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return !scan_for_word(lexer, "stanceof", 8);
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case ';':
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advance(lexer);
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lexer->mark_end(lexer);
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return true;
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default:
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return true;
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}
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}
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static bool scan_safe_nav(TSLexer *lexer) {
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lexer->result_symbol = SAFE_NAV;
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lexer->mark_end(lexer);
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// skip white space
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if (!scan_whitespace_and_comments(lexer))
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return false;
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if (lexer->lookahead != '?')
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return false;
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advance(lexer);
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if (!scan_whitespace_and_comments(lexer))
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return false;
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if (lexer->lookahead != '.')
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return false;
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advance(lexer);
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lexer->mark_end(lexer);
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return true;
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}
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static bool scan_line_sep(TSLexer *lexer) {
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// Line Seps: [ CR, LF, CRLF ]
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int state = 0;
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while (true) {
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switch(lexer->lookahead) {
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case ' ':
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case '\t':
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case '\v':
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// Skip whitespace
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advance(lexer);
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break;
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case '\n':
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advance(lexer);
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return true;
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case '\r':
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if (state == 1)
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return true;
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state = 1;
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advance(lexer);
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break;
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default:
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// We read a CR
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if (state == 1)
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return true;
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return false;
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}
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}
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}
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static bool scan_import_list_delimiter(TSLexer *lexer) {
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// Import lists are terminated either by an empty line or a non import statement
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lexer->result_symbol = IMPORT_LIST_DELIMITER;
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lexer->mark_end(lexer);
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// if eof; return true
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if (lexer->eof(lexer))
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return true;
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// Scan for the first line seperator
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if (!scan_line_sep(lexer))
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return false;
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// if line.sep line.sep; return true
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if (scan_line_sep(lexer)) {
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lexer->mark_end(lexer);
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return true;
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}
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// if line.sep [^import]; return true
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while (true) {
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switch (lexer->lookahead) {
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case ' ':
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case '\t':
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case '\v':
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// Skip whitespace
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advance(lexer);
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break;
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case 'i':
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return !scan_for_word(lexer, "mport", 5);
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default:
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return true;
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}
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return false;
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}
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}
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bool tree_sitter_kotlin_external_scanner_scan(void *payload, TSLexer *lexer, const bool *valid_symbols) {
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if (valid_symbols[AUTOMATIC_SEMICOLON]) {
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bool ret = scan_automatic_semicolon(lexer);
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if (!ret && valid_symbols[SAFE_NAV] && lexer->lookahead == '?') {
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return scan_safe_nav(lexer);
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}
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// if we fail to find an automatic semicolon, it's still possible that we may
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// want to lex a string or comment later
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if (ret) return ret;
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}
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if (valid_symbols[IMPORT_LIST_DELIMITER]) {
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return scan_import_list_delimiter(lexer);
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}
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// content or end
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if (valid_symbols[STRING_CONTENT] && scan_string_content(lexer, payload)) {
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return true;
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}
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// a string might follow after some whitespace, so we can't lookahead
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// until we get rid of it
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while (iswspace(lexer->lookahead)) skip(lexer);
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if (valid_symbols[STRING_START] && scan_string_start(lexer, payload)) {
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lexer->result_symbol = STRING_START;
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return true;
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}
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if (valid_symbols[MULTILINE_COMMENT] && scan_multiline_comment(lexer)) {
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return true;
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}
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if (valid_symbols[SAFE_NAV]) {
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return scan_safe_nav(lexer);
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}
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return false;
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}
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void *tree_sitter_kotlin_external_scanner_create() {
|
|
Stack *stack = ts_calloc(1, sizeof(Stack));
|
|
if (stack == NULL) abort();
|
|
array_init(stack);
|
|
return stack;
|
|
}
|
|
|
|
void tree_sitter_kotlin_external_scanner_destroy(void *payload) {
|
|
Stack *stack = (Stack *)payload;
|
|
array_delete(stack);
|
|
ts_free(stack);
|
|
}
|
|
|
|
unsigned tree_sitter_kotlin_external_scanner_serialize(void *payload, char *buffer) {
|
|
Stack *stack = (Stack *)payload;
|
|
memcpy(buffer, stack->contents, stack->size);
|
|
return stack->size;
|
|
}
|
|
|
|
void tree_sitter_kotlin_external_scanner_deserialize(void *payload, const char *buffer, unsigned length) {
|
|
Stack *stack = (Stack *)payload;
|
|
if (length > 0) {
|
|
array_reserve(stack, length);
|
|
memcpy(stack->contents, buffer, length);
|
|
stack->size = length;
|
|
} else {
|
|
array_clear(stack);
|
|
}
|
|
}
|