Chained subtraction and exponentiation fold left instead of abandoning the rest of the line -- `1 - 2 - 3` gave -1 and dropped the `- 3`. A unary leaf's operand moves to .left, so a negative literal is one argument again and a second argument no longer overwrites it. An operator in a line's final column survives. Hex literals reach the parser whole. A leading zero is padding, not a radix. Item 16 stays pinned: the fix works and costs an upstream golden case, which is a decision rather than a defect. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
106 lines
3.5 KiB
C
106 lines
3.5 KiB
C
/**
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* @file parser_expressions.c
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* @brief Tests the expression grammar via the leaf renderer.
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*/
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#include "harness.h"
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/* Parse a line and assert the shape of the tree it produced. */
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static void expect_tree(const char *line, const char *want)
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{
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akbasic_ASTLeaf *leaf = NULL;
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char rendered[AKBASIC_MAX_STRING_LENGTH];
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akerr_ErrorContext *e = NULL;
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e = harness_parse(line, &leaf);
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if ( e != NULL ) {
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fprintf(stderr, "FAIL: \"%s\" did not parse: %s\n", line, e->message);
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akbasic_test_failures += 1;
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test_discard_error(e);
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return;
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}
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e = akbasic_leaf_to_string(leaf, rendered, sizeof(rendered));
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if ( e != NULL ) {
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test_discard_error(e);
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akbasic_test_failures += 1;
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return;
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}
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TEST_REQUIRE(strcmp(rendered, want) == 0,
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"\"%s\": expected %s, got %s", line, want, rendered);
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}
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static void expect_parse_error(const char *line)
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{
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akbasic_ASTLeaf *leaf = NULL;
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akerr_ErrorContext *e = NULL;
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e = harness_parse(line, &leaf);
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TEST_REQUIRE(e != NULL, "\"%s\" should not have parsed", line);
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if ( e != NULL ) {
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test_discard_error(e);
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}
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}
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int main(void)
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{
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akbasic_ASTLeaf *leaf = NULL;
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TEST_REQUIRE_OK(harness_start(NULL));
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/*
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* An assignment renders with an empty operator: the reference's
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* operatorToStr() has a case for EQUAL but none for ASSIGNMENT, so it prints
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* "( A# ...)". Reproduced, so these expectations look odd on purpose.
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*/
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/* Multiplication binds tighter than addition. */
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expect_tree("PRINT 1 + 2 * 3", "(PRINT)");
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expect_tree("A# = 1 + 2 * 3", "( A# (+ 1 (* 2 3)))");
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expect_tree("A# = 1 * 2 + 3", "( A# (+ (* 1 2) 3))");
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expect_tree("A# = 8 / 2 / 2", "( A# (/ (/ 8 2) 2))");
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/* Grouping overrides precedence. */
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expect_tree("A# = (1 + 2) * 3", "( A# (* (group (+ 1 2)) 3))");
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/* Unary minus and NOT. */
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expect_tree("A# = -5", "( A# (- 5))");
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expect_tree("A# = NOT 1", "( A# (NOT 1))");
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/* Comparisons sit below the arithmetic. */
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expect_tree("A# = 1 + 1 == 2", "( A# (= (+ 1 1) 2))");
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expect_tree("A# = 1 <> 2", "( A# (<> 1 2))");
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/* AND and OR sit below comparison. */
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expect_tree("A# = 1 == 1 AND 2 == 2", "( A# (AND (= 1 1) (= 2 2)))");
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/*
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* Every same-precedence run folds left, which is what a C128 does and what
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* TODO.md section 6 item 12 was about: the reference returns after one
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* operator in subtraction() and exponent(), so `1 - 2 - 3` computed `1 - 2`
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* and left `- 3` in the token stream for the statement loop to evaluate and
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* discard. A wrong answer, silently. These four are the regression test.
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*/
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expect_tree("A# = 1 + 2 + 3", "( A# (+ (+ 1 2) 3))");
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expect_tree("A# = 1 - 2 - 3", "( A# (- (- 1 2) 3))");
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expect_tree("A# = 10 - 1 - 2 - 3", "( A# (- (- (- 10 1) 2) 3))");
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expect_tree("A# = 2 ^ 3", "( A# (^ 2 3))");
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expect_tree("A# = 2 ^ 3 ^ 2", "( A# (^ (^ 2 3) 2))");
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/* An array reference parses as an identifier carrying a subscript list. */
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TEST_REQUIRE_OK(harness_parse("A#(2) = 1", &leaf));
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TEST_REQUIRE(leaf != NULL && leaf->left != NULL, "assignment must have an lvalue");
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if ( leaf != NULL && leaf->left != NULL ) {
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TEST_REQUIRE_INT(leaf->left->leaftype, AKBASIC_LEAF_IDENTIFIER_INT);
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TEST_REQUIRE(akbasic_leaf_first_subscript(leaf->left) != NULL,
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"A#(2) must carry an array subscript");
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}
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/* Failure paths. */
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expect_parse_error("A# = ");
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expect_parse_error("A# = (1 + 2");
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expect_parse_error("A# = *");
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harness_stop();
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return akbasic_test_failures;
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}
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