Port the BASIC interpreter from Go to C
Reproduces deps/basicinterpret in C, in the idiom of the ak* libraries. All 41
.bas files in the reference's corpus produce byte-identical stdout, including
the trailing double newline on an error line -- that comes from basicError
building a string ending in \n and handing it to Println, and
array_outofbounds.txt encodes it.
The corpus is driven in place from the submodule as 41 individual CTest cases
rather than copied, so it cannot drift from upstream. Eighteen unit tests cover
what the corpus cannot reach.
Three structural changes carry most of the work. Go's three reflection lookups
(Command*, Function*, ParseCommand*) become one sorted dispatch table in
src/verbs.c searched with bsearch; adding a verb is a row and two functions. The
five Go maps become one fixed open-addressed table over aksl_strhash_djb2. And
run(), which owned the process until MODE_QUIT, splits into step() plus a
bounded run() -- goal 3 requires a host game to be able to bound execution, and
nothing in the library now terminates the process or touches SDL.
Output goes through an akbasic_TextSink vtable. src/sink_stdio.c is what makes
the corpus runnable with no SDL present; the akgl-backed sink is still to come
and is blocked on libakgl having no text-measurement call.
src/convert.c exists because libakstdlib's aksl_ato* family cannot report a
conversion failure (its TODO.md 2.1.5). The reference checks strconv's error at
four sites and turns it into a BASIC error; routing those through aksl_atoi
would have turned four diagnosable errors into wrong answers, with VAL("garbage")
quietly returning 0. TODO.md 1.9 records which libakstdlib calls are cleared for
use here and which are not.
Reference defects are reproduced, not fixed: the golden files encode the observed
behaviour and a silent correction is a behaviour change. TODO.md section 6 lists
sixteen, and tests/known_reference_defects.c asserts the *correct* contract for
six of them under AKBASIC_KNOWN_FAILING_TESTS, so a fix shows up as
"unexpectedly passed". Five of the sixteen were found by this port and are new:
subtraction stops after one operator so 1-2-3 computes 1-2 and abandons the rest
of the line (a wrong answer, not a refused one); a unary-minus argument inflates
a function's arity so ABS(-9) is rejected; a comparison operator in a line's
final column is dropped; hex literals never survive the scanner; and the
"Reserved word in variable name" check is dead code.
Where the reference reaches undefined behaviour by a route that is defined in Go
-- an out-of-range shift, a negative string multiplier, integer division by zero
-- this raises instead of inheriting the UB. No golden case exercises any of
them.
The top-level CMakeLists shadows add_test, set_tests_properties and
add_custom_target around all three add_subdirectory calls. Without it libakerror's
tests land in our suite as Not Run, and its un-namespaced `coverage` target stops
a coverage build from configuring at all. Test targets are akbasic_test_<name>:
bare test_<name> collides with libakstdlib's, which is what broke libakgl's
configure in c2b16d3.
ctest 59/59; ASan+UBSan 59/59; 92.3% line and 96.9% function coverage; no
warnings under -Wall -Wextra. Branch coverage is not a target, for the reason
libakstdlib and libakgl both record: the akerror macros expand into large branch
trees at every call site.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
This commit is contained in:
617
src/parser.c
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617
src/parser.c
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@@ -0,0 +1,617 @@
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/**
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* @file parser.c
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* @brief Implements the recursive-descent parser.
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*
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* A faithful port of basicparser.go, with two changes. The reflection lookup for
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* a verb's special parse path becomes a table lookup, and the debug.PrintStack()
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* the reference calls on a parse failure is gone: an interpreter library does not
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* dump the host's stack to stderr, and the akerr stack trace already carries what
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* that call was for.
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*/
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#include <inttypes.h>
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#include <string.h>
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#include <akerror.h>
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#include <akbasic/error.h>
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#include <akbasic/parser.h>
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#include <akbasic/verbs.h>
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akerr_ErrorContext *akbasic_parser_init(akbasic_Parser *obj, akbasic_Runtime *runtime)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (obj != NULL), AKERR_NULLPOINTER, "NULL parser in init");
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FAIL_ZERO_RETURN(errctx, (runtime != NULL), AKERR_NULLPOINTER, "nil runtime argument");
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obj->runtime = runtime;
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_zero(akbasic_Parser *obj)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (obj != NULL), AKERR_NULLPOINTER, "nil self reference!");
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PASS(errctx, akbasic_environment_zero_parser(obj->runtime->environment));
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_new_leaf(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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PASS(errctx, akbasic_environment_new_leaf(obj->runtime->environment, dest));
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SUCCEED_RETURN(errctx);
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}
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bool akbasic_parser_is_at_end(akbasic_Parser *obj)
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{
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akbasic_Environment *env = NULL;
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if ( obj == NULL || obj->runtime == NULL || obj->runtime->environment == NULL ) {
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return true;
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}
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env = obj->runtime->environment;
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return (env->curtoken >= (AKBASIC_MAX_TOKENS - 1) || env->curtoken >= env->nexttoken);
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}
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akbasic_Token *akbasic_parser_peek(akbasic_Parser *obj)
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{
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if ( akbasic_parser_is_at_end(obj) ) {
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return NULL;
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}
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return &obj->runtime->environment->tokens[obj->runtime->environment->curtoken];
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}
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akerr_ErrorContext *akbasic_parser_previous(akbasic_Parser *obj, akbasic_Token **dest)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (obj != NULL && dest != NULL), AKERR_NULLPOINTER,
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"NULL argument in previous");
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FAIL_ZERO_RETURN(errctx, (obj->runtime->environment->curtoken != 0), AKBASIC_ERR_SYNTAX,
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"Current token is index 0, no previous token");
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*dest = &obj->runtime->environment->tokens[obj->runtime->environment->curtoken - 1];
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SUCCEED_RETURN(errctx);
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}
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static bool check(akbasic_Parser *obj, akbasic_TokenType tokentype)
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{
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akbasic_Token *next = NULL;
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if ( akbasic_parser_is_at_end(obj) ) {
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return false;
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}
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next = akbasic_parser_peek(obj);
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return (next != NULL && next->tokentype == tokentype);
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}
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static void advance(akbasic_Parser *obj)
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{
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if ( !akbasic_parser_is_at_end(obj) ) {
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obj->runtime->environment->curtoken += 1;
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}
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}
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bool akbasic_parser_match(akbasic_Parser *obj, const akbasic_TokenType *types, int count)
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{
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int i = 0;
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for ( i = 0; i < count; i++ ) {
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if ( check(obj, types[i]) ) {
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advance(obj);
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return true;
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}
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}
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return false;
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}
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bool akbasic_parser_match1(akbasic_Parser *obj, akbasic_TokenType type)
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{
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return akbasic_parser_match(obj, &type, 1);
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}
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akerr_ErrorContext *akbasic_parser_error(akbasic_Parser *obj, const char *message)
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{
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PREPARE_ERROR(errctx);
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akbasic_Token *token = NULL;
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token = akbasic_parser_peek(obj);
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obj->runtime->environment->errorToken = token;
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FAIL_ZERO_RETURN(errctx, (token != NULL), AKBASIC_ERR_SYNTAX, "peek() returned nil token!");
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if ( token->tokentype == AKBASIC_TOK_EOF ) {
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FAIL_RETURN(errctx, AKBASIC_ERR_SYNTAX, "%" PRId64 " at end %s", token->lineno, message);
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}
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FAIL_RETURN(errctx, AKBASIC_ERR_SYNTAX, "%" PRId64 " at '%s', %s",
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token->lineno, token->lexeme, message);
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}
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static akerr_ErrorContext *consume(akbasic_Parser *obj, akbasic_TokenType tokentype, const char *message)
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{
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PREPARE_ERROR(errctx);
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if ( check(obj, tokentype) ) {
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advance(obj);
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SUCCEED_RETURN(errctx);
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}
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PASS(errctx, akbasic_parser_error(obj, message));
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SUCCEED_RETURN(errctx);
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}
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/* Forward declarations for the grammar chain. */
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static akerr_ErrorContext *logicalandor(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *logicalnot(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *subtraction(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *addition(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *multiplication(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *division(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *unary(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *exponent(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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static akerr_ErrorContext *function_call(akbasic_Parser *obj, akbasic_ASTLeaf **dest);
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akerr_ErrorContext *akbasic_parser_parse(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (obj != NULL && dest != NULL), AKERR_NULLPOINTER,
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"NULL argument in parse");
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PASS(errctx, akbasic_parser_command(obj, dest));
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_command(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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static const akbasic_TokenType COMMANDS[] = {
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AKBASIC_TOK_COMMAND, AKBASIC_TOK_COMMAND_IMMEDIATE
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};
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akbasic_ASTLeaf *expr = NULL;
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akbasic_ASTLeaf *right = NULL;
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akbasic_Token *operator_ = NULL;
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akbasic_Token *righttoken = NULL;
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const akbasic_Verb *verb = NULL;
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akbasic_TokenType optype = AKBASIC_TOK_UNDEFINED;
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char opname[AKBASIC_MAX_LINE_LENGTH];
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if ( !akbasic_parser_match(obj, COMMANDS, 2) ) {
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PASS(errctx, akbasic_parser_assignment(obj, dest));
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SUCCEED_RETURN(errctx);
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}
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PASS(errctx, akbasic_parser_previous(obj, &operator_));
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optype = operator_->tokentype;
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strncpy(opname, operator_->lexeme, sizeof(opname) - 1);
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opname[sizeof(opname) - 1] = '\0';
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/* Does this verb need its own parse path? */
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PASS(errctx, akbasic_verb_lookup(opname, &verb));
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if ( verb != NULL && verb->parse != NULL ) {
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PASS(errctx, verb->parse(obj, dest));
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SUCCEED_RETURN(errctx);
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}
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/*
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* Some verbs take no rval. Do not fail when there is not one -- but do fail
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* when there is one and it will not parse.
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*/
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righttoken = akbasic_parser_peek(obj);
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if ( righttoken != NULL && righttoken->tokentype != AKBASIC_TOK_UNDEFINED ) {
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PASS(errctx, akbasic_parser_expression(obj, &right));
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}
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PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
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if ( optype == AKBASIC_TOK_COMMAND_IMMEDIATE ) {
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PASS(errctx, akbasic_leaf_new_immediate_command(expr, opname, right));
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} else {
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PASS(errctx, akbasic_leaf_new_command(expr, opname, right));
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}
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*dest = expr;
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_assignment(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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akbasic_ASTLeaf *identifier = NULL;
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akbasic_ASTLeaf *expr = NULL;
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akbasic_ASTLeaf *right = NULL;
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PASS(errctx, akbasic_parser_expression(obj, &identifier));
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if ( identifier == NULL ||
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(identifier->leaftype != AKBASIC_LEAF_IDENTIFIER_INT &&
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identifier->leaftype != AKBASIC_LEAF_IDENTIFIER_FLOAT &&
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identifier->leaftype != AKBASIC_LEAF_IDENTIFIER_STRING) ) {
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*dest = identifier;
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SUCCEED_RETURN(errctx);
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}
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if ( akbasic_parser_match1(obj, AKBASIC_TOK_ASSIGNMENT) ) {
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PASS(errctx, akbasic_parser_expression(obj, &right));
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PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
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PASS(errctx, akbasic_leaf_new_binary(expr, identifier, AKBASIC_TOK_ASSIGNMENT, right));
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*dest = expr;
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SUCCEED_RETURN(errctx);
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}
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*dest = identifier;
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SUCCEED_RETURN(errctx);
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}
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/*
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* An argument list is just .right-joined expressions continuing ad infinitum.
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* When requireparens is false and there is no opening paren, this still builds a
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* list -- that is how DATA and READ take a bare comma-separated series.
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*/
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akerr_ErrorContext *akbasic_parser_argument_list(akbasic_Parser *obj, akbasic_TokenType arglisttype, bool requireparens, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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akbasic_ASTLeaf *arglist = NULL;
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akbasic_ASTLeaf *expr = NULL;
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*dest = NULL;
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if ( !akbasic_parser_match1(obj, AKBASIC_TOK_LEFT_PAREN) && requireparens ) {
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SUCCEED_RETURN(errctx);
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}
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FAIL_ZERO_RETURN(errctx,
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(arglisttype == AKBASIC_TOK_ARRAY_SUBSCRIPT ||
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arglisttype == AKBASIC_TOK_FUNCTION_ARGUMENT),
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AKBASIC_ERR_SYNTAX,
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"argumentList expects argListType [ARRAY_SUBSCRIPT || FUNCTION_ARGUMENT]");
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PASS(errctx, akbasic_parser_new_leaf(obj, &arglist));
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arglist->leaftype = AKBASIC_LEAF_ARGUMENTLIST;
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arglist->operator_ = arglisttype;
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PASS(errctx, akbasic_parser_expression(obj, &arglist->right));
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expr = arglist->right;
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while ( expr != NULL && akbasic_parser_match1(obj, AKBASIC_TOK_COMMA) ) {
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PASS(errctx, akbasic_parser_expression(obj, &expr->right));
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expr = expr->right;
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}
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if ( !akbasic_parser_match1(obj, AKBASIC_TOK_RIGHT_PAREN) && requireparens ) {
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FAIL_RETURN(errctx, AKBASIC_ERR_SYNTAX, "Unbalanced parenthesis");
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}
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*dest = arglist;
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_expression(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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PASS(errctx, logicalandor(obj, dest));
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *logicalandor(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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static const akbasic_TokenType OPS[] = { AKBASIC_TOK_AND, AKBASIC_TOK_OR };
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akbasic_ASTLeaf *left = NULL;
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akbasic_ASTLeaf *right = NULL;
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akbasic_ASTLeaf *expr = NULL;
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akbasic_Token *operator_ = NULL;
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PASS(errctx, logicalnot(obj, &left));
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if ( akbasic_parser_match(obj, OPS, 2) ) {
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PASS(errctx, akbasic_parser_previous(obj, &operator_));
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PASS(errctx, logicalnot(obj, &right));
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PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
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PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
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*dest = expr;
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SUCCEED_RETURN(errctx);
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}
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*dest = left;
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *logicalnot(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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akbasic_ASTLeaf *right = NULL;
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akbasic_ASTLeaf *expr = NULL;
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akbasic_Token *operator_ = NULL;
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if ( akbasic_parser_match1(obj, AKBASIC_TOK_NOT) ) {
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PASS(errctx, akbasic_parser_previous(obj, &operator_));
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PASS(errctx, akbasic_parser_relation(obj, &right));
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PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
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PASS(errctx, akbasic_leaf_new_unary(expr, operator_->tokentype, right));
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*dest = expr;
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SUCCEED_RETURN(errctx);
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}
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PASS(errctx, akbasic_parser_relation(obj, dest));
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SUCCEED_RETURN(errctx);
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}
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akerr_ErrorContext *akbasic_parser_relation(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
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{
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PREPARE_ERROR(errctx);
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static const akbasic_TokenType OPS[] = {
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AKBASIC_TOK_LESS_THAN, AKBASIC_TOK_LESS_THAN_EQUAL, AKBASIC_TOK_EQUAL,
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AKBASIC_TOK_NOT_EQUAL, AKBASIC_TOK_GREATER_THAN, AKBASIC_TOK_GREATER_THAN_EQUAL
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};
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akbasic_ASTLeaf *left = NULL;
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akbasic_ASTLeaf *right = NULL;
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akbasic_ASTLeaf *expr = NULL;
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akbasic_Token *operator_ = NULL;
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PASS(errctx, subtraction(obj, &left));
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if ( akbasic_parser_match(obj, OPS, 6) ) {
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PASS(errctx, akbasic_parser_previous(obj, &operator_));
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PASS(errctx, subtraction(obj, &right));
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PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
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PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
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*dest = expr;
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SUCCEED_RETURN(errctx);
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||||
}
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*dest = left;
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||||
SUCCEED_RETURN(errctx);
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||||
}
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||||
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||||
/*
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||||
* subtraction and exponent return after one operator where addition,
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||||
* multiplication and division loop. That asymmetry is the reference's, not a
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||||
* transcription slip: `1 - 2 - 3` parses as `1 - (2 - 3)` there. Reproduced,
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||||
* because the golden corpus encodes the observed associativity.
|
||||
*/
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||||
static akerr_ErrorContext *subtraction(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
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||||
akbasic_ASTLeaf *left = NULL;
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
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||||
|
||||
PASS(errctx, addition(obj, &left));
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||||
if ( akbasic_parser_match1(obj, AKBASIC_TOK_MINUS) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
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||||
PASS(errctx, addition(obj, &right));
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||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
|
||||
*dest = expr;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
*dest = left;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
static akerr_ErrorContext *addition(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *left = NULL;
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
|
||||
PASS(errctx, multiplication(obj, &left));
|
||||
while ( akbasic_parser_match1(obj, AKBASIC_TOK_PLUS) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
PASS(errctx, multiplication(obj, &right));
|
||||
if ( expr != NULL ) {
|
||||
left = expr;
|
||||
}
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
|
||||
}
|
||||
*dest = (expr != NULL ? expr : left);
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
static akerr_ErrorContext *multiplication(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *left = NULL;
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
|
||||
PASS(errctx, division(obj, &left));
|
||||
while ( akbasic_parser_match1(obj, AKBASIC_TOK_STAR) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
PASS(errctx, division(obj, &right));
|
||||
if ( expr != NULL ) {
|
||||
left = expr;
|
||||
}
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
|
||||
}
|
||||
*dest = (expr != NULL ? expr : left);
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
static akerr_ErrorContext *division(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *left = NULL;
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
|
||||
PASS(errctx, unary(obj, &left));
|
||||
while ( akbasic_parser_match1(obj, AKBASIC_TOK_LEFT_SLASH) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
PASS(errctx, unary(obj, &right));
|
||||
if ( expr != NULL ) {
|
||||
left = expr;
|
||||
}
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
|
||||
}
|
||||
*dest = (expr != NULL ? expr : left);
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
static akerr_ErrorContext *unary(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
|
||||
if ( akbasic_parser_match1(obj, AKBASIC_TOK_MINUS) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
PASS(errctx, akbasic_parser_primary(obj, &right));
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_unary(expr, operator_->tokentype, right));
|
||||
*dest = expr;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
PASS(errctx, exponent(obj, dest));
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
static akerr_ErrorContext *exponent(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *left = NULL;
|
||||
akbasic_ASTLeaf *right = NULL;
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
|
||||
PASS(errctx, function_call(obj, &left));
|
||||
if ( akbasic_parser_match1(obj, AKBASIC_TOK_CARAT) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
PASS(errctx, function_call(obj, &right));
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_binary(expr, left, operator_->tokentype, right));
|
||||
*dest = expr;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
*dest = left;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
/* Count the .right-joined chain hanging off an argument list. */
|
||||
static int arglist_length(akbasic_ASTLeaf *arglist)
|
||||
{
|
||||
akbasic_ASTLeaf *leaf = NULL;
|
||||
int count = 0;
|
||||
|
||||
if ( arglist == NULL ) {
|
||||
return 0;
|
||||
}
|
||||
for ( leaf = arglist->right; leaf != NULL; leaf = leaf->right ) {
|
||||
count += 1;
|
||||
}
|
||||
return count;
|
||||
}
|
||||
|
||||
/*
|
||||
* Called for function *calls* only, never for a DEF. A FUNCTION token is either
|
||||
* a table builtin or a user DEF; both check their argument count here, so a
|
||||
* wrong-arity call is a parse error rather than a runtime surprise.
|
||||
*/
|
||||
static akerr_ErrorContext *function_call(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
akbasic_ASTLeaf *arglist = NULL;
|
||||
akbasic_ASTLeaf *leaf = NULL;
|
||||
akbasic_Token *operator_ = NULL;
|
||||
const akbasic_Verb *verb = NULL;
|
||||
akbasic_FunctionDef *fndef = NULL;
|
||||
void *fnptr = NULL;
|
||||
char fname[AKBASIC_MAX_LINE_LENGTH];
|
||||
int wanted = 0;
|
||||
int given = 0;
|
||||
bool found = false;
|
||||
|
||||
if ( !akbasic_parser_match1(obj, AKBASIC_TOK_FUNCTION) ) {
|
||||
PASS(errctx, akbasic_parser_primary(obj, dest));
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
PASS(errctx, akbasic_parser_previous(obj, &operator_));
|
||||
strncpy(fname, operator_->lexeme, sizeof(fname) - 1);
|
||||
fname[sizeof(fname) - 1] = '\0';
|
||||
|
||||
PASS(errctx, akbasic_verb_lookup(fname, &verb));
|
||||
if ( verb != NULL && verb->tokentype == AKBASIC_TOK_FUNCTION ) {
|
||||
wanted = verb->arity;
|
||||
found = true;
|
||||
} else {
|
||||
ATTEMPT {
|
||||
CATCH(errctx, akbasic_environment_get_function(obj->runtime->environment, fname, &fnptr));
|
||||
found = true;
|
||||
} CLEANUP {
|
||||
} PROCESS(errctx) {
|
||||
} HANDLE(errctx, AKERR_KEY) {
|
||||
found = false;
|
||||
} FINISH(errctx, true);
|
||||
if ( found ) {
|
||||
fndef = (akbasic_FunctionDef *)fnptr;
|
||||
wanted = arglist_length(fndef->arglist);
|
||||
}
|
||||
}
|
||||
FAIL_ZERO_RETURN(errctx, found, AKBASIC_ERR_UNDEFINED, "No such function %s", fname);
|
||||
|
||||
PASS(errctx, akbasic_parser_argument_list(obj, AKBASIC_TOK_FUNCTION_ARGUMENT, true, &arglist));
|
||||
given = arglist_length(arglist);
|
||||
FAIL_ZERO_RETURN(errctx, (given == wanted), AKBASIC_ERR_SYNTAX,
|
||||
"function %s takes %d arguments, received %d", fname, wanted, given);
|
||||
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &leaf));
|
||||
PASS(errctx, akbasic_leaf_new_function(leaf, fname, arglist));
|
||||
*dest = leaf;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
akerr_ErrorContext *akbasic_parser_primary(akbasic_Parser *obj, akbasic_ASTLeaf **dest)
|
||||
{
|
||||
PREPARE_ERROR(errctx);
|
||||
static const akbasic_TokenType PRIMARIES[] = {
|
||||
AKBASIC_TOK_LITERAL_INT, AKBASIC_TOK_LITERAL_FLOAT, AKBASIC_TOK_LITERAL_STRING,
|
||||
AKBASIC_TOK_IDENTIFIER, AKBASIC_TOK_IDENTIFIER_STRING, AKBASIC_TOK_IDENTIFIER_FLOAT,
|
||||
AKBASIC_TOK_IDENTIFIER_INT, AKBASIC_TOK_FUNCTION
|
||||
};
|
||||
akbasic_ASTLeaf *expr = NULL;
|
||||
akbasic_ASTLeaf *groupexpr = NULL;
|
||||
akbasic_Token *previous = NULL;
|
||||
|
||||
if ( akbasic_parser_match(obj, PRIMARIES, 8) ) {
|
||||
PASS(errctx, akbasic_parser_previous(obj, &previous));
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
switch ( previous->tokentype ) {
|
||||
case AKBASIC_TOK_LITERAL_INT:
|
||||
PASS(errctx, akbasic_leaf_new_literal_int(expr, previous->lexeme));
|
||||
break;
|
||||
case AKBASIC_TOK_LITERAL_FLOAT:
|
||||
PASS(errctx, akbasic_leaf_new_literal_float(expr, previous->lexeme));
|
||||
break;
|
||||
case AKBASIC_TOK_LITERAL_STRING:
|
||||
PASS(errctx, akbasic_leaf_new_literal_string(expr, previous->lexeme));
|
||||
break;
|
||||
case AKBASIC_TOK_IDENTIFIER_INT:
|
||||
PASS(errctx, akbasic_leaf_new_identifier(expr, AKBASIC_LEAF_IDENTIFIER_INT, previous->lexeme));
|
||||
PASS(errctx, akbasic_parser_argument_list(obj, AKBASIC_TOK_ARRAY_SUBSCRIPT, true, &expr->right));
|
||||
break;
|
||||
case AKBASIC_TOK_IDENTIFIER_FLOAT:
|
||||
PASS(errctx, akbasic_leaf_new_identifier(expr, AKBASIC_LEAF_IDENTIFIER_FLOAT, previous->lexeme));
|
||||
PASS(errctx, akbasic_parser_argument_list(obj, AKBASIC_TOK_ARRAY_SUBSCRIPT, true, &expr->right));
|
||||
break;
|
||||
case AKBASIC_TOK_IDENTIFIER_STRING:
|
||||
PASS(errctx, akbasic_leaf_new_identifier(expr, AKBASIC_LEAF_IDENTIFIER_STRING, previous->lexeme));
|
||||
PASS(errctx, akbasic_parser_argument_list(obj, AKBASIC_TOK_ARRAY_SUBSCRIPT, true, &expr->right));
|
||||
break;
|
||||
case AKBASIC_TOK_FUNCTION:
|
||||
case AKBASIC_TOK_IDENTIFIER:
|
||||
PASS(errctx, akbasic_leaf_new_identifier(expr, AKBASIC_LEAF_IDENTIFIER, previous->lexeme));
|
||||
break;
|
||||
default:
|
||||
FAIL_RETURN(errctx, AKBASIC_ERR_SYNTAX, "Invalid literal type, command or function name");
|
||||
}
|
||||
*dest = expr;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
if ( akbasic_parser_match1(obj, AKBASIC_TOK_LEFT_PAREN) ) {
|
||||
PASS(errctx, akbasic_parser_expression(obj, &groupexpr));
|
||||
PASS(errctx, consume(obj, AKBASIC_TOK_RIGHT_PAREN, "Missing ) after expression"));
|
||||
PASS(errctx, akbasic_parser_new_leaf(obj, &expr));
|
||||
PASS(errctx, akbasic_leaf_new_grouping(expr, groupexpr));
|
||||
*dest = expr;
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
|
||||
PASS(errctx, akbasic_parser_error(obj, "Expected expression or literal"));
|
||||
SUCCEED_RETURN(errctx);
|
||||
}
|
||||
Reference in New Issue
Block a user