2 * Copyright (C) 2012, 2013
6 * Permission is hereby granted, free of charge, to any person obtaining a copy of
7 * this software and associated documentation files (the "Software"), to deal in
8 * the Software without restriction, including without limitation the rights to
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17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
32 /* beginning of locals */
33 #define PARSER_HT_LOCALS 2
35 #define PARSER_HT_SIZE 128
36 #define TYPEDEF_HT_SIZE 16
38 typedef struct parser_s {
42 ast_expression **globals;
43 ast_expression **fields;
44 ast_function **functions;
45 ast_value **imm_float;
46 ast_value **imm_string;
47 ast_value **imm_vector;
52 /* must be deleted first, they reference immediates and values */
53 ast_value **accessors;
55 ast_value *imm_float_zero;
56 ast_value *imm_float_one;
57 ast_value *imm_float_neg_one;
59 ast_value *imm_vector_zero;
62 ast_value *reserved_version;
67 ast_function *function;
70 /* All the labels the function defined...
71 * Should they be in ast_function instead?
76 const char **continues;
78 /* A list of hashtables for each scope */
84 /* same as above but for the spelling corrector */
85 correct_trie_t **correct_variables;
86 size_t ***correct_variables_score; /* vector of vector of size_t* */
88 /* not to be used directly, we use the hash table */
89 ast_expression **_locals;
91 ast_value **_typedefs;
92 size_t *_blocktypedefs;
95 /* we store the '=' operator info */
96 const oper_info *assign_op;
99 ast_value *const_vec[3];
104 /* collected information */
105 size_t max_param_count;
108 static ast_expression * const intrinsic_debug_typestring = (ast_expression*)0x1;
110 static void parser_enterblock(parser_t *parser);
111 static bool parser_leaveblock(parser_t *parser);
112 static void parser_addlocal(parser_t *parser, const char *name, ast_expression *e);
113 static void parser_addglobal(parser_t *parser, const char *name, ast_expression *e);
114 static bool parse_typedef(parser_t *parser);
115 static bool parse_variable(parser_t *parser, ast_block *localblock, bool nofields, int qualifier, ast_value *cached_typedef, bool noref, bool is_static, uint32_t qflags, char *vstring);
116 static ast_block* parse_block(parser_t *parser);
117 static bool parse_block_into(parser_t *parser, ast_block *block);
118 static bool parse_statement_or_block(parser_t *parser, ast_expression **out);
119 static bool parse_statement(parser_t *parser, ast_block *block, ast_expression **out, bool allow_cases);
120 static ast_expression* parse_expression_leave(parser_t *parser, bool stopatcomma, bool truthvalue, bool with_labels);
121 static ast_expression* parse_expression(parser_t *parser, bool stopatcomma, bool with_labels);
122 static ast_value* parser_create_array_setter_proto(parser_t *parser, ast_value *array, const char *funcname);
123 static ast_value* parser_create_array_getter_proto(parser_t *parser, ast_value *array, const ast_expression *elemtype, const char *funcname);
124 static ast_value *parse_typename(parser_t *parser, ast_value **storebase, ast_value *cached_typedef);
126 static void parseerror(parser_t *parser, const char *fmt, ...)
130 vcompile_error(parser->lex->tok.ctx, fmt, ap);
134 /* returns true if it counts as an error */
135 static bool GMQCC_WARN parsewarning(parser_t *parser, int warntype, const char *fmt, ...)
140 r = vcompile_warning(parser->lex->tok.ctx, warntype, fmt, ap);
145 /**********************************************************************
146 * some maths used for constant folding
149 vector vec3_add(vector a, vector b)
158 vector vec3_sub(vector a, vector b)
167 qcfloat vec3_mulvv(vector a, vector b)
169 return (a.x * b.x + a.y * b.y + a.z * b.z);
172 vector vec3_mulvf(vector a, float b)
181 /**********************************************************************
185 bool parser_next(parser_t *parser)
187 /* lex_do kills the previous token */
188 parser->tok = lex_do(parser->lex);
189 if (parser->tok == TOKEN_EOF)
191 if (parser->tok >= TOKEN_ERROR) {
192 parseerror(parser, "lex error");
198 #define parser_tokval(p) ((p)->lex->tok.value)
199 #define parser_token(p) (&((p)->lex->tok))
200 #define parser_ctx(p) ((p)->lex->tok.ctx)
202 static ast_value* parser_const_float(parser_t *parser, double d)
207 for (i = 0; i < vec_size(parser->imm_float); ++i) {
208 const double compare = parser->imm_float[i]->constval.vfloat;
209 if (memcmp((const void*)&compare, (const void *)&d, sizeof(double)) == 0)
210 return parser->imm_float[i];
213 ctx = parser_ctx(parser);
215 memset(&ctx, 0, sizeof(ctx));
217 out = ast_value_new(ctx, "#IMMEDIATE", TYPE_FLOAT);
219 out->hasvalue = true;
220 out->constval.vfloat = d;
221 vec_push(parser->imm_float, out);
225 static ast_value* parser_const_float_0(parser_t *parser)
227 if (!parser->imm_float_zero)
228 parser->imm_float_zero = parser_const_float(parser, 0);
229 return parser->imm_float_zero;
232 static ast_value* parser_const_float_neg1(parser_t *parser) {
233 if (!parser->imm_float_neg_one)
234 parser->imm_float_neg_one = parser_const_float(parser, -1);
235 return parser->imm_float_neg_one;
238 static ast_value* parser_const_float_1(parser_t *parser)
240 if (!parser->imm_float_one)
241 parser->imm_float_one = parser_const_float(parser, 1);
242 return parser->imm_float_one;
245 static char *parser_strdup(const char *str)
248 /* actually dup empty strings */
249 char *out = (char*)mem_a(1);
253 return util_strdup(str);
256 static ast_value* parser_const_string(parser_t *parser, const char *str, bool dotranslate)
258 size_t hash = util_hthash(parser->ht_imm_string, str);
260 if ( (out = util_htgeth(parser->ht_imm_string, str, hash)) ) {
261 if (dotranslate && out->name[0] == '#') {
263 snprintf(name, sizeof(name), "dotranslate_%lu", (unsigned long)(parser->translated++));
264 ast_value_set_name(out, name);
269 for (i = 0; i < vec_size(parser->imm_string); ++i) {
270 if (!strcmp(parser->imm_string[i]->constval.vstring, str))
271 return parser->imm_string[i];
276 snprintf(name, sizeof(name), "dotranslate_%lu", (unsigned long)(parser->translated++));
277 out = ast_value_new(parser_ctx(parser), name, TYPE_STRING);
279 out = ast_value_new(parser_ctx(parser), "#IMMEDIATE", TYPE_STRING);
281 out->hasvalue = true;
282 out->constval.vstring = parser_strdup(str);
283 vec_push(parser->imm_string, out);
284 util_htseth(parser->ht_imm_string, str, hash, out);
288 static ast_value* parser_const_vector(parser_t *parser, vector v)
292 for (i = 0; i < vec_size(parser->imm_vector); ++i) {
293 if (!memcmp(&parser->imm_vector[i]->constval.vvec, &v, sizeof(v)))
294 return parser->imm_vector[i];
296 out = ast_value_new(parser_ctx(parser), "#IMMEDIATE", TYPE_VECTOR);
298 out->hasvalue = true;
299 out->constval.vvec = v;
300 vec_push(parser->imm_vector, out);
304 static ast_value* parser_const_vector_f(parser_t *parser, float x, float y, float z)
310 return parser_const_vector(parser, v);
313 static ast_value* parser_const_vector_0(parser_t *parser)
315 if (!parser->imm_vector_zero)
316 parser->imm_vector_zero = parser_const_vector_f(parser, 0, 0, 0);
317 return parser->imm_vector_zero;
320 static ast_expression* parser_find_field(parser_t *parser, const char *name)
322 return ( ast_expression*)util_htget(parser->htfields, name);
325 static ast_expression* parser_find_label(parser_t *parser, const char *name)
328 for(i = 0; i < vec_size(parser->labels); i++)
329 if (!strcmp(parser->labels[i]->name, name))
330 return (ast_expression*)parser->labels[i];
334 static ast_expression* parser_find_global(parser_t *parser, const char *name)
336 ast_expression *var = (ast_expression*)util_htget(parser->aliases, parser_tokval(parser));
339 return (ast_expression*)util_htget(parser->htglobals, name);
342 static ast_expression* parser_find_param(parser_t *parser, const char *name)
346 if (!parser->function)
348 fun = parser->function->vtype;
349 for (i = 0; i < vec_size(fun->expression.params); ++i) {
350 if (!strcmp(fun->expression.params[i]->name, name))
351 return (ast_expression*)(fun->expression.params[i]);
356 static ast_expression* parser_find_local(parser_t *parser, const char *name, size_t upto, bool *isparam)
361 hash = util_hthash(parser->htglobals, name);
364 for (i = vec_size(parser->variables); i > upto;) {
366 if ( (e = (ast_expression*)util_htgeth(parser->variables[i], name, hash)) )
370 return parser_find_param(parser, name);
373 static ast_expression* parser_find_var(parser_t *parser, const char *name)
377 v = parser_find_local(parser, name, 0, &dummy);
378 if (!v) v = parser_find_global(parser, name);
382 static ast_value* parser_find_typedef(parser_t *parser, const char *name, size_t upto)
386 hash = util_hthash(parser->typedefs[0], name);
388 for (i = vec_size(parser->typedefs); i > upto;) {
390 if ( (e = (ast_value*)util_htgeth(parser->typedefs[i], name, hash)) )
396 /* include intrinsics */
401 size_t etype; /* 0 = expression, others are operators */
405 ast_block *block; /* for commas and function calls */
424 static sy_elem syexp(lex_ctx ctx, ast_expression *v) {
435 static sy_elem syblock(lex_ctx ctx, ast_block *v) {
439 e.out = (ast_expression*)v;
446 static sy_elem syop(lex_ctx ctx, const oper_info *op) {
448 e.etype = 1 + (op - operators);
457 static sy_elem syparen(lex_ctx ctx, size_t off) {
468 /* With regular precedence rules, ent.foo[n] is the same as (ent.foo)[n],
469 * so we need to rotate it to become ent.(foo[n]).
471 static bool rotate_entfield_array_index_nodes(ast_expression **out)
473 ast_array_index *index, *oldindex;
474 ast_entfield *entfield;
478 ast_expression *entity;
480 lex_ctx ctx = ast_ctx(*out);
482 if (!ast_istype(*out, ast_array_index))
484 index = (ast_array_index*)*out;
486 if (!ast_istype(index->array, ast_entfield))
488 entfield = (ast_entfield*)index->array;
490 if (!ast_istype(entfield->field, ast_value))
492 field = (ast_value*)entfield->field;
495 entity = entfield->entity;
499 index = ast_array_index_new(ctx, (ast_expression*)field, sub);
500 entfield = ast_entfield_new(ctx, entity, (ast_expression*)index);
501 *out = (ast_expression*)entfield;
503 oldindex->array = NULL;
504 oldindex->index = NULL;
505 ast_delete(oldindex);
510 static bool immediate_is_true(lex_ctx ctx, ast_value *v)
512 switch (v->expression.vtype) {
514 return !!v->constval.vfloat;
516 return !!v->constval.vint;
518 if (OPTS_FLAG(CORRECT_LOGIC))
519 return v->constval.vvec.x &&
520 v->constval.vvec.y &&
523 return !!(v->constval.vvec.x);
525 if (!v->constval.vstring)
527 if (v->constval.vstring && OPTS_FLAG(TRUE_EMPTY_STRINGS))
529 return !!v->constval.vstring[0];
531 compile_error(ctx, "internal error: immediate_is_true on invalid type");
532 return !!v->constval.vfunc;
536 static bool parser_sy_apply_operator(parser_t *parser, shunt *sy)
540 ast_expression *out = NULL;
541 ast_expression *exprs[3];
542 ast_block *blocks[3];
543 ast_value *asvalue[3];
544 ast_binstore *asbinstore;
545 size_t i, assignop, addop, subop;
546 qcint generated_op = 0;
551 if (!vec_size(sy->ops)) {
552 parseerror(parser, "internal error: missing operator");
556 if (vec_last(sy->ops).isparen) {
557 parseerror(parser, "unmatched parenthesis");
561 op = &operators[vec_last(sy->ops).etype - 1];
562 ctx = vec_last(sy->ops).ctx;
564 if (vec_size(sy->out) < op->operands) {
565 compile_error(ctx, "internal error: not enough operands: %i (operator %s (%i))", vec_size(sy->out),
566 op->op, (int)op->id);
570 vec_shrinkby(sy->ops, 1);
572 /* op(:?) has no input and no output */
576 vec_shrinkby(sy->out, op->operands);
577 for (i = 0; i < op->operands; ++i) {
578 exprs[i] = sy->out[vec_size(sy->out)+i].out;
579 blocks[i] = sy->out[vec_size(sy->out)+i].block;
580 asvalue[i] = (ast_value*)exprs[i];
582 if (exprs[i]->expression.vtype == TYPE_NOEXPR &&
583 !(i != 0 && op->id == opid2('?',':')) &&
584 !(i == 1 && op->id == opid1('.')))
586 if (ast_istype(exprs[i], ast_label))
587 compile_error(ast_ctx(exprs[i]), "expected expression, got an unknown identifier");
589 compile_error(ast_ctx(exprs[i]), "not an expression");
590 (void)!compile_warning(ast_ctx(exprs[i]), WARN_DEBUG, "expression %u\n", (unsigned int)i);
594 if (blocks[0] && !vec_size(blocks[0]->exprs) && op->id != opid1(',')) {
595 compile_error(ctx, "internal error: operator cannot be applied on empty blocks");
599 #define NotSameType(T) \
600 (exprs[0]->expression.vtype != exprs[1]->expression.vtype || \
601 exprs[0]->expression.vtype != T)
602 #define CanConstFold1(A) \
603 (ast_istype((A), ast_value) && ((ast_value*)(A))->hasvalue && (((ast_value*)(A))->cvq == CV_CONST) &&\
604 (A)->expression.vtype != TYPE_FUNCTION)
605 #define CanConstFold(A, B) \
606 (CanConstFold1(A) && CanConstFold1(B))
607 #define ConstV(i) (asvalue[(i)]->constval.vvec)
608 #define ConstF(i) (asvalue[(i)]->constval.vfloat)
609 #define ConstS(i) (asvalue[(i)]->constval.vstring)
613 compile_error(ctx, "internal error: unhandled operator: %s (%i)", op->op, (int)op->id);
617 if (exprs[0]->expression.vtype == TYPE_VECTOR &&
618 exprs[1]->expression.vtype == TYPE_NOEXPR)
620 if (exprs[1] == (ast_expression*)parser->const_vec[0])
621 out = (ast_expression*)ast_member_new(ctx, exprs[0], 0, NULL);
622 else if (exprs[1] == (ast_expression*)parser->const_vec[1])
623 out = (ast_expression*)ast_member_new(ctx, exprs[0], 1, NULL);
624 else if (exprs[1] == (ast_expression*)parser->const_vec[2])
625 out = (ast_expression*)ast_member_new(ctx, exprs[0], 2, NULL);
627 compile_error(ctx, "access to invalid vector component");
631 else if (exprs[0]->expression.vtype == TYPE_ENTITY) {
632 if (exprs[1]->expression.vtype != TYPE_FIELD) {
633 compile_error(ast_ctx(exprs[1]), "type error: right hand of member-operand should be an entity-field");
636 out = (ast_expression*)ast_entfield_new(ctx, exprs[0], exprs[1]);
638 else if (exprs[0]->expression.vtype == TYPE_VECTOR) {
639 compile_error(ast_ctx(exprs[1]), "vectors cannot be accessed this way");
643 compile_error(ast_ctx(exprs[1]), "type error: member-of operator on something that is not an entity or vector");
649 if (exprs[0]->expression.vtype != TYPE_ARRAY &&
650 !(exprs[0]->expression.vtype == TYPE_FIELD &&
651 exprs[0]->expression.next->expression.vtype == TYPE_ARRAY))
653 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
654 compile_error(ast_ctx(exprs[0]), "cannot index value of type %s", ty1);
657 if (exprs[1]->expression.vtype != TYPE_FLOAT) {
658 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
659 compile_error(ast_ctx(exprs[1]), "index must be of type float, not %s", ty1);
662 out = (ast_expression*)ast_array_index_new(ctx, exprs[0], exprs[1]);
663 if (rotate_entfield_array_index_nodes(&out))
666 /* This is not broken in fteqcc anymore */
667 if (OPTS_OPTION_U32(OPTION_STANDARD) != COMPILER_GMQCC) {
668 /* this error doesn't need to make us bail out */
669 (void)!parsewarning(parser, WARN_EXTENSIONS,
670 "accessing array-field members of an entity without parenthesis\n"
671 " -> this is an extension from -std=gmqcc");
678 if (vec_size(sy->paren) && vec_last(sy->paren) == PAREN_FUNC) {
679 vec_push(sy->out, syexp(ctx, exprs[0]));
680 vec_push(sy->out, syexp(ctx, exprs[1]));
681 vec_last(sy->argc)++;
685 if (!ast_block_add_expr(blocks[0], exprs[1]))
688 blocks[0] = ast_block_new(ctx);
689 if (!ast_block_add_expr(blocks[0], exprs[0]) ||
690 !ast_block_add_expr(blocks[0], exprs[1]))
695 ast_block_set_type(blocks[0], exprs[1]);
697 vec_push(sy->out, syblock(ctx, blocks[0]));
704 switch (exprs[0]->expression.vtype) {
706 if (CanConstFold1(exprs[0]))
707 out = (ast_expression*)parser_const_float(parser, -ConstF(0));
709 out = (ast_expression*)ast_binary_new(ctx, INSTR_SUB_F,
710 (ast_expression*)parser_const_float_0(parser),
714 if (CanConstFold1(exprs[0]))
715 out = (ast_expression*)parser_const_vector_f(parser,
716 -ConstV(0).x, -ConstV(0).y, -ConstV(0).z);
718 out = (ast_expression*)ast_binary_new(ctx, INSTR_SUB_V,
719 (ast_expression*)parser_const_vector_0(parser),
723 compile_error(ctx, "invalid types used in expression: cannot negate type %s",
724 type_name[exprs[0]->expression.vtype]);
730 switch (exprs[0]->expression.vtype) {
732 if (CanConstFold1(exprs[0]))
733 out = (ast_expression*)parser_const_float(parser, !ConstF(0));
735 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_F, exprs[0]);
738 if (CanConstFold1(exprs[0]))
739 out = (ast_expression*)parser_const_float(parser,
740 (!ConstV(0).x && !ConstV(0).y && !ConstV(0).z));
742 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_V, exprs[0]);
745 if (CanConstFold1(exprs[0])) {
746 if (OPTS_FLAG(TRUE_EMPTY_STRINGS))
747 out = (ast_expression*)parser_const_float(parser, !ConstS(0));
749 out = (ast_expression*)parser_const_float(parser, !ConstS(0) || !*ConstS(0));
751 if (OPTS_FLAG(TRUE_EMPTY_STRINGS))
752 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_F, exprs[0]);
754 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_S, exprs[0]);
757 /* we don't constant-fold NOT for these types */
759 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_ENT, exprs[0]);
762 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_FNC, exprs[0]);
765 compile_error(ctx, "invalid types used in expression: cannot logically negate type %s",
766 type_name[exprs[0]->expression.vtype]);
772 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype ||
773 (exprs[0]->expression.vtype != TYPE_VECTOR && exprs[0]->expression.vtype != TYPE_FLOAT) )
775 compile_error(ctx, "invalid types used in expression: cannot add type %s and %s",
776 type_name[exprs[0]->expression.vtype],
777 type_name[exprs[1]->expression.vtype]);
780 switch (exprs[0]->expression.vtype) {
782 if (CanConstFold(exprs[0], exprs[1]))
784 out = (ast_expression*)parser_const_float(parser, ConstF(0) + ConstF(1));
787 out = (ast_expression*)ast_binary_new(ctx, INSTR_ADD_F, exprs[0], exprs[1]);
790 if (CanConstFold(exprs[0], exprs[1]))
791 out = (ast_expression*)parser_const_vector(parser, vec3_add(ConstV(0), ConstV(1)));
793 out = (ast_expression*)ast_binary_new(ctx, INSTR_ADD_V, exprs[0], exprs[1]);
796 compile_error(ctx, "invalid types used in expression: cannot add type %s and %s",
797 type_name[exprs[0]->expression.vtype],
798 type_name[exprs[1]->expression.vtype]);
803 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype ||
804 (exprs[0]->expression.vtype != TYPE_VECTOR && exprs[0]->expression.vtype != TYPE_FLOAT) )
806 compile_error(ctx, "invalid types used in expression: cannot subtract type %s from %s",
807 type_name[exprs[1]->expression.vtype],
808 type_name[exprs[0]->expression.vtype]);
811 switch (exprs[0]->expression.vtype) {
813 if (CanConstFold(exprs[0], exprs[1]))
814 out = (ast_expression*)parser_const_float(parser, ConstF(0) - ConstF(1));
816 out = (ast_expression*)ast_binary_new(ctx, INSTR_SUB_F, exprs[0], exprs[1]);
819 if (CanConstFold(exprs[0], exprs[1]))
820 out = (ast_expression*)parser_const_vector(parser, vec3_sub(ConstV(0), ConstV(1)));
822 out = (ast_expression*)ast_binary_new(ctx, INSTR_SUB_V, exprs[0], exprs[1]);
825 compile_error(ctx, "invalid types used in expression: cannot subtract type %s from %s",
826 type_name[exprs[1]->expression.vtype],
827 type_name[exprs[0]->expression.vtype]);
832 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype &&
833 !(exprs[0]->expression.vtype == TYPE_VECTOR &&
834 exprs[1]->expression.vtype == TYPE_FLOAT) &&
835 !(exprs[1]->expression.vtype == TYPE_VECTOR &&
836 exprs[0]->expression.vtype == TYPE_FLOAT)
839 compile_error(ctx, "invalid types used in expression: cannot multiply types %s and %s",
840 type_name[exprs[1]->expression.vtype],
841 type_name[exprs[0]->expression.vtype]);
844 switch (exprs[0]->expression.vtype) {
846 if (exprs[1]->expression.vtype == TYPE_VECTOR)
848 if (CanConstFold(exprs[0], exprs[1]))
849 out = (ast_expression*)parser_const_vector(parser, vec3_mulvf(ConstV(1), ConstF(0)));
851 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_FV, exprs[0], exprs[1]);
855 if (CanConstFold(exprs[0], exprs[1]))
856 out = (ast_expression*)parser_const_float(parser, ConstF(0) * ConstF(1));
858 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, exprs[0], exprs[1]);
862 if (exprs[1]->expression.vtype == TYPE_FLOAT)
864 if (CanConstFold(exprs[0], exprs[1]))
865 out = (ast_expression*)parser_const_vector(parser, vec3_mulvf(ConstV(0), ConstF(1)));
867 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_VF, exprs[0], exprs[1]);
871 if (CanConstFold(exprs[0], exprs[1]))
872 out = (ast_expression*)parser_const_float(parser, vec3_mulvv(ConstV(0), ConstV(1)));
873 else if (OPTS_OPTIMIZATION(OPTIM_VECTOR_COMPONENTS) && CanConstFold1(exprs[0])) {
874 vector vec = ConstV(0);
875 if (!vec.y && !vec.z) { /* 'n 0 0' * v */
876 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
877 out = (ast_expression*)ast_member_new(ctx, exprs[1], 0, NULL);
878 out->expression.node.keep = false;
879 ((ast_member*)out)->rvalue = true;
881 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, (ast_expression*)parser_const_float(parser, vec.x), out);
883 else if (!vec.x && !vec.z) { /* '0 n 0' * v */
884 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
885 out = (ast_expression*)ast_member_new(ctx, exprs[1], 1, NULL);
886 out->expression.node.keep = false;
887 ((ast_member*)out)->rvalue = true;
889 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, (ast_expression*)parser_const_float(parser, vec.y), out);
891 else if (!vec.x && !vec.y) { /* '0 n 0' * v */
892 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
893 out = (ast_expression*)ast_member_new(ctx, exprs[1], 2, NULL);
894 out->expression.node.keep = false;
895 ((ast_member*)out)->rvalue = true;
897 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, (ast_expression*)parser_const_float(parser, vec.z), out);
900 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_V, exprs[0], exprs[1]);
902 else if (OPTS_OPTIMIZATION(OPTIM_VECTOR_COMPONENTS) && CanConstFold1(exprs[1])) {
903 vector vec = ConstV(1);
904 if (!vec.y && !vec.z) { /* v * 'n 0 0' */
905 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
906 out = (ast_expression*)ast_member_new(ctx, exprs[0], 0, NULL);
907 out->expression.node.keep = false;
908 ((ast_member*)out)->rvalue = true;
910 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, out, (ast_expression*)parser_const_float(parser, vec.x));
912 else if (!vec.x && !vec.z) { /* v * '0 n 0' */
913 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
914 out = (ast_expression*)ast_member_new(ctx, exprs[0], 1, NULL);
915 out->expression.node.keep = false;
916 ((ast_member*)out)->rvalue = true;
918 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, out, (ast_expression*)parser_const_float(parser, vec.y));
920 else if (!vec.x && !vec.y) { /* v * '0 n 0' */
921 ++opts_optimizationcount[OPTIM_VECTOR_COMPONENTS];
922 out = (ast_expression*)ast_member_new(ctx, exprs[0], 2, NULL);
923 out->expression.node.keep = false;
924 ((ast_member*)out)->rvalue = true;
926 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_F, out, (ast_expression*)parser_const_float(parser, vec.z));
929 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_V, exprs[0], exprs[1]);
932 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_V, exprs[0], exprs[1]);
936 compile_error(ctx, "invalid types used in expression: cannot multiply types %s and %s",
937 type_name[exprs[1]->expression.vtype],
938 type_name[exprs[0]->expression.vtype]);
943 if (exprs[1]->expression.vtype != TYPE_FLOAT) {
944 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
945 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
946 compile_error(ctx, "invalid types used in expression: cannot divide tyeps %s and %s", ty1, ty2);
949 if (exprs[0]->expression.vtype == TYPE_FLOAT) {
950 if (CanConstFold(exprs[0], exprs[1]))
951 out = (ast_expression*)parser_const_float(parser, ConstF(0) / ConstF(1));
953 out = (ast_expression*)ast_binary_new(ctx, INSTR_DIV_F, exprs[0], exprs[1]);
955 else if (exprs[0]->expression.vtype == TYPE_VECTOR) {
956 if (CanConstFold(exprs[0], exprs[1]))
957 out = (ast_expression*)parser_const_vector(parser, vec3_mulvf(ConstV(0), 1.0/ConstF(1)));
959 if (CanConstFold1(exprs[1])) {
960 out = (ast_expression*)parser_const_float(parser, 1.0 / ConstF(1));
962 out = (ast_expression*)ast_binary_new(ctx, INSTR_DIV_F,
963 (ast_expression*)parser_const_float_1(parser),
967 compile_error(ctx, "internal error: failed to generate division");
970 out = (ast_expression*)ast_binary_new(ctx, INSTR_MUL_VF, exprs[0], out);
975 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
976 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
977 compile_error(ctx, "invalid types used in expression: cannot divide tyeps %s and %s", ty1, ty2);
983 if (NotSameType(TYPE_FLOAT)) {
984 compile_error(ctx, "invalid types used in expression: cannot perform modulo operation between types %s and %s",
985 type_name[exprs[0]->expression.vtype],
986 type_name[exprs[1]->expression.vtype]);
989 if (CanConstFold(exprs[0], exprs[1])) {
990 out = (ast_expression*)parser_const_float(parser,
991 (float)(((qcint)ConstF(0)) % ((qcint)ConstF(1))));
993 /* generate a call to __builtin_mod */
994 ast_expression *mod = intrin_func(parser, "mod");
995 ast_call *call = NULL;
996 if (!mod) return false; /* can return null for missing floor */
998 call = ast_call_new(parser_ctx(parser), mod);
999 vec_push(call->params, exprs[0]);
1000 vec_push(call->params, exprs[1]);
1002 out = (ast_expression*)call;
1006 case opid2('%','='):
1007 compile_error(ctx, "%= is unimplemented");
1012 if (NotSameType(TYPE_FLOAT)) {
1013 compile_error(ctx, "invalid types used in expression: cannot perform bit operations between types %s and %s",
1014 type_name[exprs[0]->expression.vtype],
1015 type_name[exprs[1]->expression.vtype]);
1018 if (CanConstFold(exprs[0], exprs[1]))
1019 out = (ast_expression*)parser_const_float(parser,
1020 (op->id == opid1('|') ? (float)( ((qcint)ConstF(0)) | ((qcint)ConstF(1)) ) :
1021 (float)( ((qcint)ConstF(0)) & ((qcint)ConstF(1)) ) ));
1023 out = (ast_expression*)ast_binary_new(ctx,
1024 (op->id == opid1('|') ? INSTR_BITOR : INSTR_BITAND),
1025 exprs[0], exprs[1]);
1028 compile_error(ast_ctx(exprs[0]), "Not Yet Implemented: bit-xor via ^");
1031 case opid2('<','<'):
1032 case opid2('>','>'):
1033 if (CanConstFold(exprs[0], exprs[1]) && ! NotSameType(TYPE_FLOAT)) {
1034 if (op->id == opid2('<','<'))
1035 out = (ast_expression*)parser_const_float(parser, (double)((int)(ConstF(0)) << (int)(ConstF(1))));
1037 out = (ast_expression*)parser_const_float(parser, (double)((int)(ConstF(0)) >> (int)(ConstF(1))));
1040 case opid3('<','<','='):
1041 case opid3('>','>','='):
1042 compile_error(ast_ctx(exprs[0]), "Not Yet Implemented: bit-shifts");
1045 case opid2('|','|'):
1046 generated_op += 1; /* INSTR_OR */
1047 case opid2('&','&'):
1048 generated_op += INSTR_AND;
1049 if (CanConstFold(exprs[0], exprs[1]))
1051 if (OPTS_FLAG(PERL_LOGIC)) {
1052 if (immediate_is_true(ctx, asvalue[0]))
1056 out = (ast_expression*)parser_const_float(parser,
1057 ( (generated_op == INSTR_OR)
1058 ? (immediate_is_true(ctx, asvalue[0]) || immediate_is_true(ctx, asvalue[1]))
1059 : (immediate_is_true(ctx, asvalue[0]) && immediate_is_true(ctx, asvalue[1])) )
1064 if (OPTS_FLAG(PERL_LOGIC) && !ast_compare_type(exprs[0], exprs[1])) {
1065 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1066 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1067 compile_error(ctx, "invalid types for logical operation with -fperl-logic: %s and %s", ty1, ty2);
1070 for (i = 0; i < 2; ++i) {
1071 if (OPTS_FLAG(CORRECT_LOGIC) && exprs[i]->expression.vtype == TYPE_VECTOR) {
1072 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_V, exprs[i]);
1074 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_F, out);
1076 exprs[i] = out; out = NULL;
1077 if (OPTS_FLAG(PERL_LOGIC)) {
1078 /* here we want to keep the right expressions' type */
1082 else if (OPTS_FLAG(FALSE_EMPTY_STRINGS) && exprs[i]->expression.vtype == TYPE_STRING) {
1083 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_S, exprs[i]);
1085 out = (ast_expression*)ast_unary_new(ctx, INSTR_NOT_F, out);
1087 exprs[i] = out; out = NULL;
1088 if (OPTS_FLAG(PERL_LOGIC)) {
1089 /* here we want to keep the right expressions' type */
1094 out = (ast_expression*)ast_binary_new(ctx, generated_op, exprs[0], exprs[1]);
1098 case opid2('?',':'):
1099 if (vec_last(sy->paren) != PAREN_TERNARY2) {
1100 compile_error(ctx, "mismatched parenthesis/ternary");
1104 if (!ast_compare_type(exprs[1], exprs[2])) {
1105 ast_type_to_string(exprs[1], ty1, sizeof(ty1));
1106 ast_type_to_string(exprs[2], ty2, sizeof(ty2));
1107 compile_error(ctx, "operands of ternary expression must have the same type, got %s and %s", ty1, ty2);
1110 if (CanConstFold1(exprs[0]))
1111 out = (immediate_is_true(ctx, asvalue[0]) ? exprs[1] : exprs[2]);
1113 out = (ast_expression*)ast_ternary_new(ctx, exprs[0], exprs[1], exprs[2]);
1116 case opid2('*', '*'):
1117 if (NotSameType(TYPE_FLOAT)) {
1118 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1119 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1120 compile_error(ctx, "invalid types used in exponentiation: %s and %s",
1126 if (CanConstFold(exprs[0], exprs[1])) {
1127 out = (ast_expression*)parser_const_float(parser, powf(ConstF(0), ConstF(1)));
1129 ast_call *gencall = ast_call_new(parser_ctx(parser), intrin_func(parser, "pow"));
1130 vec_push(gencall->params, exprs[0]);
1131 vec_push(gencall->params, exprs[1]);
1132 out = (ast_expression*)gencall;
1136 case opid3('<','=','>'): /* -1, 0, or 1 */
1137 if (NotSameType(TYPE_FLOAT)) {
1138 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1139 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1140 compile_error(ctx, "invalid types used in comparision: %s and %s",
1146 if (CanConstFold(exprs[0], exprs[1])) {
1147 if (ConstF(0) < ConstF(1))
1148 out = (ast_expression*)parser_const_float_neg1(parser);
1149 else if (ConstF(0) == ConstF(1))
1150 out = (ast_expression*)parser_const_float_0(parser);
1151 else if (ConstF(0) > ConstF(1))
1152 out = (ast_expression*)parser_const_float_1(parser);
1154 ast_binary *eq = ast_binary_new(ctx, INSTR_EQ_F, exprs[0], exprs[1]);
1156 eq->refs = (ast_binary_ref)false; /* references nothing */
1159 out = (ast_expression*)ast_ternary_new(ctx,
1160 (ast_expression*)ast_binary_new(ctx, INSTR_LT, exprs[0], exprs[1]),
1162 (ast_expression*)parser_const_float_neg1(parser),
1165 (ast_expression*)ast_ternary_new(ctx, (ast_expression*)eq,
1167 (ast_expression*)parser_const_float_0(parser),
1170 (ast_expression*)parser_const_float_1(parser)
1180 generated_op += 1; /* INSTR_GT */
1182 generated_op += 1; /* INSTR_LT */
1183 case opid2('>', '='):
1184 generated_op += 1; /* INSTR_GE */
1185 case opid2('<', '='):
1186 generated_op += INSTR_LE;
1187 if (NotSameType(TYPE_FLOAT)) {
1188 compile_error(ctx, "invalid types used in expression: cannot perform comparison between types %s and %s",
1189 type_name[exprs[0]->expression.vtype],
1190 type_name[exprs[1]->expression.vtype]);
1193 out = (ast_expression*)ast_binary_new(ctx, generated_op, exprs[0], exprs[1]);
1195 case opid2('!', '='):
1196 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype) {
1197 compile_error(ctx, "invalid types used in expression: cannot perform comparison between types %s and %s",
1198 type_name[exprs[0]->expression.vtype],
1199 type_name[exprs[1]->expression.vtype]);
1202 out = (ast_expression*)ast_binary_new(ctx, type_ne_instr[exprs[0]->expression.vtype], exprs[0], exprs[1]);
1204 case opid2('=', '='):
1205 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype) {
1206 compile_error(ctx, "invalid types used in expression: cannot perform comparison between types %s and %s",
1207 type_name[exprs[0]->expression.vtype],
1208 type_name[exprs[1]->expression.vtype]);
1211 out = (ast_expression*)ast_binary_new(ctx, type_eq_instr[exprs[0]->expression.vtype], exprs[0], exprs[1]);
1215 if (ast_istype(exprs[0], ast_entfield)) {
1216 ast_expression *field = ((ast_entfield*)exprs[0])->field;
1217 if (OPTS_FLAG(ADJUST_VECTOR_FIELDS) &&
1218 exprs[0]->expression.vtype == TYPE_FIELD &&
1219 exprs[0]->expression.next->expression.vtype == TYPE_VECTOR)
1221 assignop = type_storep_instr[TYPE_VECTOR];
1224 assignop = type_storep_instr[exprs[0]->expression.vtype];
1225 if (assignop == VINSTR_END || !ast_compare_type(field->expression.next, exprs[1]))
1227 ast_type_to_string(field->expression.next, ty1, sizeof(ty1));
1228 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1229 if (OPTS_FLAG(ASSIGN_FUNCTION_TYPES) &&
1230 field->expression.next->expression.vtype == TYPE_FUNCTION &&
1231 exprs[1]->expression.vtype == TYPE_FUNCTION)
1233 (void)!compile_warning(ctx, WARN_ASSIGN_FUNCTION_TYPES,
1234 "invalid types in assignment: cannot assign %s to %s", ty2, ty1);
1237 compile_error(ctx, "invalid types in assignment: cannot assign %s to %s", ty2, ty1);
1242 if (OPTS_FLAG(ADJUST_VECTOR_FIELDS) &&
1243 exprs[0]->expression.vtype == TYPE_FIELD &&
1244 exprs[0]->expression.next->expression.vtype == TYPE_VECTOR)
1246 assignop = type_store_instr[TYPE_VECTOR];
1249 assignop = type_store_instr[exprs[0]->expression.vtype];
1252 if (assignop == VINSTR_END) {
1253 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1254 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1255 compile_error(ctx, "invalid types in assignment: cannot assign %s to %s", ty2, ty1);
1257 else if (!ast_compare_type(exprs[0], exprs[1]))
1259 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1260 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1261 if (OPTS_FLAG(ASSIGN_FUNCTION_TYPES) &&
1262 exprs[0]->expression.vtype == TYPE_FUNCTION &&
1263 exprs[1]->expression.vtype == TYPE_FUNCTION)
1265 (void)!compile_warning(ctx, WARN_ASSIGN_FUNCTION_TYPES,
1266 "invalid types in assignment: cannot assign %s to %s", ty2, ty1);
1269 compile_error(ctx, "invalid types in assignment: cannot assign %s to %s", ty2, ty1);
1272 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1273 compile_error(ctx, "assignment to constant `%s`", asvalue[0]->name);
1275 out = (ast_expression*)ast_store_new(ctx, assignop, exprs[0], exprs[1]);
1277 case opid3('+','+','P'):
1278 case opid3('-','-','P'):
1280 if (exprs[0]->expression.vtype != TYPE_FLOAT) {
1281 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1282 compile_error(ast_ctx(exprs[0]), "invalid type for prefix increment: %s", ty1);
1285 if (op->id == opid3('+','+','P'))
1286 addop = INSTR_ADD_F;
1288 addop = INSTR_SUB_F;
1289 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1290 compile_error(ast_ctx(exprs[0]), "assignment to constant `%s`", asvalue[0]->name);
1292 if (ast_istype(exprs[0], ast_entfield)) {
1293 out = (ast_expression*)ast_binstore_new(ctx, INSTR_STOREP_F, addop,
1295 (ast_expression*)parser_const_float_1(parser));
1297 out = (ast_expression*)ast_binstore_new(ctx, INSTR_STORE_F, addop,
1299 (ast_expression*)parser_const_float_1(parser));
1302 case opid3('S','+','+'):
1303 case opid3('S','-','-'):
1305 if (exprs[0]->expression.vtype != TYPE_FLOAT) {
1306 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1307 compile_error(ast_ctx(exprs[0]), "invalid type for suffix increment: %s", ty1);
1310 if (op->id == opid3('S','+','+')) {
1311 addop = INSTR_ADD_F;
1312 subop = INSTR_SUB_F;
1314 addop = INSTR_SUB_F;
1315 subop = INSTR_ADD_F;
1317 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1318 compile_error(ast_ctx(exprs[0]), "assignment to constant `%s`", asvalue[0]->name);
1320 if (ast_istype(exprs[0], ast_entfield)) {
1321 out = (ast_expression*)ast_binstore_new(ctx, INSTR_STOREP_F, addop,
1323 (ast_expression*)parser_const_float_1(parser));
1325 out = (ast_expression*)ast_binstore_new(ctx, INSTR_STORE_F, addop,
1327 (ast_expression*)parser_const_float_1(parser));
1331 out = (ast_expression*)ast_binary_new(ctx, subop,
1333 (ast_expression*)parser_const_float_1(parser));
1335 case opid2('+','='):
1336 case opid2('-','='):
1337 if (exprs[0]->expression.vtype != exprs[1]->expression.vtype ||
1338 (exprs[0]->expression.vtype != TYPE_VECTOR && exprs[0]->expression.vtype != TYPE_FLOAT) )
1340 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1341 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1342 compile_error(ctx, "invalid types used in expression: cannot add or subtract type %s and %s",
1346 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1347 compile_error(ctx, "assignment to constant `%s`", asvalue[0]->name);
1349 if (ast_istype(exprs[0], ast_entfield))
1350 assignop = type_storep_instr[exprs[0]->expression.vtype];
1352 assignop = type_store_instr[exprs[0]->expression.vtype];
1353 switch (exprs[0]->expression.vtype) {
1355 out = (ast_expression*)ast_binstore_new(ctx, assignop,
1356 (op->id == opid2('+','=') ? INSTR_ADD_F : INSTR_SUB_F),
1357 exprs[0], exprs[1]);
1360 out = (ast_expression*)ast_binstore_new(ctx, assignop,
1361 (op->id == opid2('+','=') ? INSTR_ADD_V : INSTR_SUB_V),
1362 exprs[0], exprs[1]);
1365 compile_error(ctx, "invalid types used in expression: cannot add or subtract type %s and %s",
1366 type_name[exprs[0]->expression.vtype],
1367 type_name[exprs[1]->expression.vtype]);
1371 case opid2('*','='):
1372 case opid2('/','='):
1373 if (exprs[1]->expression.vtype != TYPE_FLOAT ||
1374 !(exprs[0]->expression.vtype == TYPE_FLOAT ||
1375 exprs[0]->expression.vtype == TYPE_VECTOR))
1377 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1378 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1379 compile_error(ctx, "invalid types used in expression: %s and %s",
1383 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1384 compile_error(ctx, "assignment to constant `%s`", asvalue[0]->name);
1386 if (ast_istype(exprs[0], ast_entfield))
1387 assignop = type_storep_instr[exprs[0]->expression.vtype];
1389 assignop = type_store_instr[exprs[0]->expression.vtype];
1390 switch (exprs[0]->expression.vtype) {
1392 out = (ast_expression*)ast_binstore_new(ctx, assignop,
1393 (op->id == opid2('*','=') ? INSTR_MUL_F : INSTR_DIV_F),
1394 exprs[0], exprs[1]);
1397 if (op->id == opid2('*','=')) {
1398 out = (ast_expression*)ast_binstore_new(ctx, assignop, INSTR_MUL_VF,
1399 exprs[0], exprs[1]);
1401 /* there's no DIV_VF */
1402 if (CanConstFold1(exprs[1])) {
1403 out = (ast_expression*)parser_const_float(parser, 1.0 / ConstF(1));
1405 out = (ast_expression*)ast_binary_new(ctx, INSTR_DIV_F,
1406 (ast_expression*)parser_const_float_1(parser),
1410 compile_error(ctx, "internal error: failed to generate division");
1413 out = (ast_expression*)ast_binstore_new(ctx, assignop, INSTR_MUL_VF,
1418 compile_error(ctx, "invalid types used in expression: cannot add or subtract type %s and %s",
1419 type_name[exprs[0]->expression.vtype],
1420 type_name[exprs[1]->expression.vtype]);
1424 case opid2('&','='):
1425 case opid2('|','='):
1426 if (NotSameType(TYPE_FLOAT)) {
1427 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1428 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1429 compile_error(ctx, "invalid types used in expression: %s and %s",
1433 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1434 compile_error(ctx, "assignment to constant `%s`", asvalue[0]->name);
1436 if (ast_istype(exprs[0], ast_entfield))
1437 assignop = type_storep_instr[exprs[0]->expression.vtype];
1439 assignop = type_store_instr[exprs[0]->expression.vtype];
1440 out = (ast_expression*)ast_binstore_new(ctx, assignop,
1441 (op->id == opid2('&','=') ? INSTR_BITAND : INSTR_BITOR),
1442 exprs[0], exprs[1]);
1444 case opid3('&','~','='):
1445 /* This is like: a &= ~(b);
1446 * But QC has no bitwise-not, so we implement it as
1449 if (NotSameType(TYPE_FLOAT)) {
1450 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1451 ast_type_to_string(exprs[1], ty2, sizeof(ty2));
1452 compile_error(ctx, "invalid types used in expression: %s and %s",
1456 if (ast_istype(exprs[0], ast_entfield))
1457 assignop = type_storep_instr[exprs[0]->expression.vtype];
1459 assignop = type_store_instr[exprs[0]->expression.vtype];
1460 out = (ast_expression*)ast_binary_new(ctx, INSTR_BITAND, exprs[0], exprs[1]);
1463 if (ast_istype(exprs[0], ast_value) && asvalue[0]->cvq == CV_CONST) {
1464 compile_error(ctx, "assignment to constant `%s`", asvalue[0]->name);
1466 asbinstore = ast_binstore_new(ctx, assignop, INSTR_SUB_F, exprs[0], out);
1467 asbinstore->keep_dest = true;
1468 out = (ast_expression*)asbinstore;
1471 case opid2('~', 'P'):
1472 if (exprs[0]->expression.vtype != TYPE_FLOAT) {
1473 ast_type_to_string(exprs[0], ty1, sizeof(ty1));
1474 compile_error(ast_ctx(exprs[0]), "invalid type for bit not: %s", ty1);
1478 if(CanConstFold1(exprs[0]))
1479 out = (ast_expression*)parser_const_float(parser, ~(qcint)ConstF(0));
1481 out = (ast_expression*)
1482 ast_binary_new(ctx, INSTR_SUB_F, (ast_expression*)parser_const_float_neg1(parser), exprs[0]);
1488 compile_error(ctx, "failed to apply operator %s", op->op);
1492 vec_push(sy->out, syexp(ctx, out));
1496 static bool parser_close_call(parser_t *parser, shunt *sy)
1498 /* was a function call */
1499 ast_expression *fun;
1500 ast_value *funval = NULL;
1504 size_t paramcount, i;
1506 fid = vec_last(sy->ops).off;
1507 vec_shrinkby(sy->ops, 1);
1509 /* out[fid] is the function
1510 * everything above is parameters...
1512 if (!vec_size(sy->argc)) {
1513 parseerror(parser, "internal error: no argument counter available");
1517 paramcount = vec_last(sy->argc);
1520 if (vec_size(sy->out) < fid) {
1521 parseerror(parser, "internal error: broken function call%lu < %lu+%lu\n",
1522 (unsigned long)vec_size(sy->out),
1524 (unsigned long)paramcount);
1528 fun = sy->out[fid].out;
1530 if (fun == intrinsic_debug_typestring) {
1532 if (fid+2 != vec_size(sy->out) ||
1533 vec_last(sy->out).block)
1535 parseerror(parser, "intrinsic __builtin_debug_typestring requires exactly 1 parameter");
1538 ast_type_to_string(vec_last(sy->out).out, ty, sizeof(ty));
1539 ast_unref(vec_last(sy->out).out);
1540 sy->out[fid] = syexp(ast_ctx(vec_last(sy->out).out),
1541 (ast_expression*)parser_const_string(parser, ty, false));
1542 vec_shrinkby(sy->out, 1);
1546 call = ast_call_new(sy->ops[vec_size(sy->ops)].ctx, fun);
1550 if (fid+1 < vec_size(sy->out))
1553 if (fid+1 + paramcount != vec_size(sy->out)) {
1554 parseerror(parser, "internal error: parameter count mismatch: (%lu+1+%lu), %lu",
1555 (unsigned long)fid, (unsigned long)paramcount, (unsigned long)vec_size(sy->out));
1559 for (i = 0; i < paramcount; ++i)
1560 vec_push(call->params, sy->out[fid+1 + i].out);
1561 vec_shrinkby(sy->out, paramcount);
1562 (void)!ast_call_check_types(call);
1563 if (parser->max_param_count < paramcount)
1564 parser->max_param_count = paramcount;
1566 if (ast_istype(fun, ast_value)) {
1567 funval = (ast_value*)fun;
1568 if ((fun->expression.flags & AST_FLAG_VARIADIC) &&
1569 !(/*funval->cvq == CV_CONST && */ funval->hasvalue && funval->constval.vfunc->builtin))
1571 call->va_count = (ast_expression*)parser_const_float(parser, (double)paramcount);
1575 /* overwrite fid, the function, with a call */
1576 sy->out[fid] = syexp(call->expression.node.context, (ast_expression*)call);
1578 if (fun->expression.vtype != TYPE_FUNCTION) {
1579 parseerror(parser, "not a function (%s)", type_name[fun->expression.vtype]);
1583 if (!fun->expression.next) {
1584 parseerror(parser, "could not determine function return type");
1587 ast_value *fval = (ast_istype(fun, ast_value) ? ((ast_value*)fun) : NULL);
1589 if (fun->expression.flags & AST_FLAG_DEPRECATED) {
1591 return !parsewarning(parser, WARN_DEPRECATED,
1592 "call to function (which is marked deprecated)\n",
1593 "-> it has been declared here: %s:%i",
1594 ast_ctx(fun).file, ast_ctx(fun).line);
1597 return !parsewarning(parser, WARN_DEPRECATED,
1598 "call to `%s` (which is marked deprecated)\n"
1599 "-> `%s` declared here: %s:%i",
1600 fval->name, fval->name, ast_ctx(fun).file, ast_ctx(fun).line);
1602 return !parsewarning(parser, WARN_DEPRECATED,
1603 "call to `%s` (deprecated: %s)\n"
1604 "-> `%s` declared here: %s:%i",
1605 fval->name, fval->desc, fval->name, ast_ctx(fun).file,
1609 if (vec_size(fun->expression.params) != paramcount &&
1610 !((fun->expression.flags & AST_FLAG_VARIADIC) &&
1611 vec_size(fun->expression.params) < paramcount))
1613 const char *fewmany = (vec_size(fun->expression.params) > paramcount) ? "few" : "many";
1615 return !parsewarning(parser, WARN_INVALID_PARAMETER_COUNT,
1616 "too %s parameters for call to %s: expected %i, got %i\n"
1617 " -> `%s` has been declared here: %s:%i",
1618 fewmany, fval->name, (int)vec_size(fun->expression.params), (int)paramcount,
1619 fval->name, ast_ctx(fun).file, (int)ast_ctx(fun).line);
1621 return !parsewarning(parser, WARN_INVALID_PARAMETER_COUNT,
1622 "too %s parameters for function call: expected %i, got %i\n"
1623 " -> it has been declared here: %s:%i",
1624 fewmany, (int)vec_size(fun->expression.params), (int)paramcount,
1625 ast_ctx(fun).file, (int)ast_ctx(fun).line);
1632 static bool parser_close_paren(parser_t *parser, shunt *sy)
1634 if (!vec_size(sy->ops)) {
1635 parseerror(parser, "unmatched closing paren");
1639 while (vec_size(sy->ops)) {
1640 if (vec_last(sy->ops).isparen) {
1641 if (vec_last(sy->paren) == PAREN_FUNC) {
1643 if (!parser_close_call(parser, sy))
1647 if (vec_last(sy->paren) == PAREN_EXPR) {
1649 if (!vec_size(sy->out)) {
1650 compile_error(vec_last(sy->ops).ctx, "empty paren expression");
1651 vec_shrinkby(sy->ops, 1);
1654 vec_shrinkby(sy->ops, 1);
1657 if (vec_last(sy->paren) == PAREN_INDEX) {
1659 /* pop off the parenthesis */
1660 vec_shrinkby(sy->ops, 1);
1661 /* then apply the index operator */
1662 if (!parser_sy_apply_operator(parser, sy))
1666 if (vec_last(sy->paren) == PAREN_TERNARY1) {
1667 vec_last(sy->paren) = PAREN_TERNARY2;
1668 /* pop off the parenthesis */
1669 vec_shrinkby(sy->ops, 1);
1672 compile_error(vec_last(sy->ops).ctx, "invalid parenthesis");
1675 if (!parser_sy_apply_operator(parser, sy))
1681 static void parser_reclassify_token(parser_t *parser)
1684 for (i = 0; i < operator_count; ++i) {
1685 if (!strcmp(parser_tokval(parser), operators[i].op)) {
1686 parser->tok = TOKEN_OPERATOR;
1692 static ast_expression* parse_vararg_do(parser_t *parser)
1694 ast_expression *idx, *out;
1696 ast_value *funtype = parser->function->vtype;
1698 lex_ctx ctx = parser_ctx(parser);
1700 if (!parser_next(parser) || parser->tok != '(') {
1701 parseerror(parser, "expected parameter index and type in parenthesis");
1704 if (!parser_next(parser)) {
1705 parseerror(parser, "error parsing parameter index");
1709 idx = parse_expression_leave(parser, true, false, false);
1713 if (parser->tok != ',') {
1715 parseerror(parser, "expected comma after parameter index");
1719 if (!parser_next(parser) || (parser->tok != TOKEN_IDENT && parser->tok != TOKEN_TYPENAME)) {
1721 parseerror(parser, "expected typename for vararg");
1725 typevar = parse_typename(parser, NULL, NULL);
1731 if (parser->tok != ')') {
1733 ast_delete(typevar);
1734 parseerror(parser, "expected closing paren");
1739 if (!parser_next(parser)) {
1741 ast_delete(typevar);
1742 parseerror(parser, "parse error after vararg");
1747 if (!parser->function->varargs) {
1749 ast_delete(typevar);
1750 parseerror(parser, "function has no variable argument list");
1754 if (funtype->expression.varparam &&
1755 !ast_compare_type((ast_expression*)typevar, (ast_expression*)funtype->expression.varparam))
1759 ast_type_to_string((ast_expression*)typevar, ty1, sizeof(ty1));
1760 ast_type_to_string((ast_expression*)funtype->expression.varparam, ty2, sizeof(ty2));
1761 compile_error(ast_ctx(typevar),
1762 "function was declared to take varargs of type `%s`, requested type is: %s",
1766 out = (ast_expression*)ast_array_index_new(ctx, (ast_expression*)(parser->function->varargs), idx);
1767 ast_type_adopt(out, typevar);
1768 ast_delete(typevar);
1772 static ast_expression* parse_vararg(parser_t *parser)
1774 bool old_noops = parser->lex->flags.noops;
1776 ast_expression *out;
1778 parser->lex->flags.noops = true;
1779 out = parse_vararg_do(parser);
1781 parser->lex->flags.noops = old_noops;
1785 static bool parse_sya_operand(parser_t *parser, shunt *sy, bool with_labels)
1787 if (OPTS_FLAG(TRANSLATABLE_STRINGS) &&
1788 parser->tok == TOKEN_IDENT &&
1789 !strcmp(parser_tokval(parser), "_"))
1791 /* a translatable string */
1794 parser->lex->flags.noops = true;
1795 if (!parser_next(parser) || parser->tok != '(') {
1796 parseerror(parser, "use _(\"string\") to create a translatable string constant");
1799 parser->lex->flags.noops = false;
1800 if (!parser_next(parser) || parser->tok != TOKEN_STRINGCONST) {
1801 parseerror(parser, "expected a constant string in translatable-string extension");
1804 val = parser_const_string(parser, parser_tokval(parser), true);
1807 vec_push(sy->out, syexp(parser_ctx(parser), (ast_expression*)val));
1809 if (!parser_next(parser) || parser->tok != ')') {
1810 parseerror(parser, "expected closing paren after translatable string");
1815 else if (parser->tok == TOKEN_DOTS)
1818 if (!OPTS_FLAG(VARIADIC_ARGS)) {
1819 parseerror(parser, "cannot access varargs (try -fvariadic-args)");
1822 va = parse_vararg(parser);
1825 vec_push(sy->out, syexp(parser_ctx(parser), va));
1828 else if (parser->tok == TOKEN_FLOATCONST) {
1830 val = parser_const_float(parser, (parser_token(parser)->constval.f));
1833 vec_push(sy->out, syexp(parser_ctx(parser), (ast_expression*)val));
1836 else if (parser->tok == TOKEN_INTCONST || parser->tok == TOKEN_CHARCONST) {
1838 val = parser_const_float(parser, (double)(parser_token(parser)->constval.i));
1841 vec_push(sy->out, syexp(parser_ctx(parser), (ast_expression*)val));
1844 else if (parser->tok == TOKEN_STRINGCONST) {
1846 val = parser_const_string(parser, parser_tokval(parser), false);
1849 vec_push(sy->out, syexp(parser_ctx(parser), (ast_expression*)val));
1852 else if (parser->tok == TOKEN_VECTORCONST) {
1854 val = parser_const_vector(parser, parser_token(parser)->constval.v);
1857 vec_push(sy->out, syexp(parser_ctx(parser), (ast_expression*)val));
1860 else if (parser->tok == TOKEN_IDENT)
1862 const char *ctoken = parser_tokval(parser);
1863 ast_expression *prev = vec_size(sy->out) ? vec_last(sy->out).out : NULL;
1864 ast_expression *var;
1865 /* a_vector.{x,y,z} */
1866 if (!vec_size(sy->ops) ||
1867 !vec_last(sy->ops).etype ||
1868 operators[vec_last(sy->ops).etype-1].id != opid1('.') ||
1869 (prev >= intrinsic_debug_typestring &&
1870 prev <= intrinsic_debug_typestring))
1872 /* When adding more intrinsics, fix the above condition */
1875 if (prev && prev->expression.vtype == TYPE_VECTOR && ctoken[0] >= 'x' && ctoken[0] <= 'z' && !ctoken[1])
1877 var = (ast_expression*)parser->const_vec[ctoken[0]-'x'];
1879 var = parser_find_var(parser, parser_tokval(parser));
1881 var = parser_find_field(parser, parser_tokval(parser));
1883 if (!var && with_labels) {
1884 var = (ast_expression*)parser_find_label(parser, parser_tokval(parser));
1886 ast_label *lbl = ast_label_new(parser_ctx(parser), parser_tokval(parser), true);
1887 var = (ast_expression*)lbl;
1888 vec_push(parser->labels, lbl);
1893 if (!strcmp(parser_tokval(parser), "__builtin_debug_typestring")) {
1894 var = (ast_expression*)intrinsic_debug_typestring;
1896 /* now we try for the real intrinsic hashtable. If the string
1897 * begins with __builtin, we simply skip past it, otherwise we
1898 * use the identifier as is.
1900 else if (!strncmp(parser_tokval(parser), "__builtin_", 10)) {
1901 var = intrin_func(parser, parser_tokval(parser) + 10 /* skip __builtin */);
1903 var = intrin_func(parser, parser_tokval(parser));
1907 char *correct = NULL;
1911 * sometimes people use preprocessing predefs without enabling them
1912 * i've done this thousands of times already myself. Lets check for
1913 * it in the predef table. And diagnose it better :)
1915 if (!OPTS_FLAG(FTEPP_PREDEFS)) {
1916 for (i = 0; i < sizeof(ftepp_predefs)/sizeof(*ftepp_predefs); i++) {
1917 if (!strcmp(ftepp_predefs[i].name, parser_tokval(parser))) {
1918 parseerror(parser, "unexpected ident: %s (use -fftepp-predef to enable pre-defined macros)", parser_tokval(parser));
1925 * TODO: determine the best score for the identifier: be it
1926 * a variable, a field.
1928 * We should also consider adding correction tables for
1929 * other things as well.
1931 if (OPTS_OPTION_BOOL(OPTION_CORRECTION)) {
1933 correct_init(&corr);
1935 for (i = 0; i < vec_size(parser->correct_variables); i++) {
1936 correct = correct_str(&corr, parser->correct_variables[i], parser_tokval(parser));
1937 if (strcmp(correct, parser_tokval(parser))) {
1939 } else if (correct) {
1944 correct_free(&corr);
1947 parseerror(parser, "unexpected ident: %s (did you mean %s?)", parser_tokval(parser), correct);
1952 parseerror(parser, "unexpected ident: %s", parser_tokval(parser));
1958 if (ast_istype(var, ast_value)) {
1959 ((ast_value*)var)->uses++;
1961 else if (ast_istype(var, ast_member)) {
1962 ast_member *mem = (ast_member*)var;
1963 if (ast_istype(mem->owner, ast_value))
1964 ((ast_value*)(mem->owner))->uses++;
1967 vec_push(sy->out, syexp(parser_ctx(parser), var));
1970 parseerror(parser, "unexpected token `%s`", parser_tokval(parser));
1974 static ast_expression* parse_expression_leave(parser_t *parser, bool stopatcomma, bool truthvalue, bool with_labels)
1976 ast_expression *expr = NULL;
1979 bool wantop = false;
1980 /* only warn once about an assignment in a truth value because the current code
1981 * would trigger twice on: if(a = b && ...), once for the if-truth-value, once for the && part
1983 bool warn_truthvalue = true;
1985 /* count the parens because an if starts with one, so the
1986 * end of a condition is an unmatched closing paren
1990 memset(&sy, 0, sizeof(sy));
1992 parser->lex->flags.noops = false;
1994 parser_reclassify_token(parser);
1998 if (parser->tok == TOKEN_TYPENAME) {
1999 parseerror(parser, "unexpected typename");
2003 if (parser->tok == TOKEN_OPERATOR)
2005 /* classify the operator */
2006 const oper_info *op;
2007 const oper_info *olast = NULL;
2009 for (o = 0; o < operator_count; ++o) {
2010 if (((!(operators[o].flags & OP_PREFIX) == !!wantop)) &&
2011 /* !(operators[o].flags & OP_SUFFIX) && / * remove this */
2012 !strcmp(parser_tokval(parser), operators[o].op))
2017 if (o == operator_count) {
2018 compile_error(parser_ctx(parser), "unknown operator: %s", parser_tokval(parser));
2021 /* found an operator */
2024 /* when declaring variables, a comma starts a new variable */
2025 if (op->id == opid1(',') && !vec_size(sy.paren) && stopatcomma) {
2026 /* fixup the token */
2031 /* a colon without a pervious question mark cannot be a ternary */
2032 if (!ternaries && op->id == opid2(':','?')) {
2037 if (op->id == opid1(',')) {
2038 if (vec_size(sy.paren) && vec_last(sy.paren) == PAREN_TERNARY2) {
2039 (void)!parsewarning(parser, WARN_TERNARY_PRECEDENCE, "suggesting parenthesis around ternary expression");
2043 if (vec_size(sy.ops) && !vec_last(sy.ops).isparen)
2044 olast = &operators[vec_last(sy.ops).etype-1];
2046 #define IsAssignOp(x) (\
2047 (x) == opid1('=') || \
2048 (x) == opid2('+','=') || \
2049 (x) == opid2('-','=') || \
2050 (x) == opid2('*','=') || \
2051 (x) == opid2('/','=') || \
2052 (x) == opid2('%','=') || \
2053 (x) == opid2('&','=') || \
2054 (x) == opid2('|','=') || \
2055 (x) == opid3('&','~','=') \
2057 if (warn_truthvalue) {
2058 if ( (olast && IsAssignOp(olast->id) && (op->id == opid2('&','&') || op->id == opid2('|','|'))) ||
2059 (olast && IsAssignOp(op->id) && (olast->id == opid2('&','&') || olast->id == opid2('|','|'))) ||
2060 (truthvalue && !vec_size(sy.paren) && IsAssignOp(op->id))
2063 (void)!parsewarning(parser, WARN_PARENTHESIS, "suggesting parenthesis around assignment used as truth value");
2064 warn_truthvalue = false;
2069 (op->prec < olast->prec) ||
2070 (op->assoc == ASSOC_LEFT && op->prec <= olast->prec) ) )
2072 if (!parser_sy_apply_operator(parser, &sy))
2074 if (vec_size(sy.ops) && !vec_last(sy.ops).isparen)
2075 olast = &operators[vec_last(sy.ops).etype-1];
2080 if (op->id == opid1('(')) {
2082 size_t sycount = vec_size(sy.out);
2083 /* we expected an operator, this is the function-call operator */
2084 vec_push(sy.paren, PAREN_FUNC);
2085 vec_push(sy.ops, syparen(parser_ctx(parser), sycount-1));
2086 vec_push(sy.argc, 0);
2088 vec_push(sy.paren, PAREN_EXPR);
2089 vec_push(sy.ops, syparen(parser_ctx(parser), 0));
2092 } else if (op->id == opid1('[')) {
2094 parseerror(parser, "unexpected array subscript");
2097 vec_push(sy.paren, PAREN_INDEX);
2098 /* push both the operator and the paren, this makes life easier */
2099 vec_push(sy.ops, syop(parser_ctx(parser), op));
2100 vec_push(sy.ops, syparen(parser_ctx(parser), 0));
2102 } else if (op->id == opid2('?',':')) {
2103 vec_push(sy.ops, syop(parser_ctx(parser), op));
2104 vec_push(sy.ops, syparen(parser_ctx(parser), 0));
2107 vec_push(sy.paren, PAREN_TERNARY1);
2108 } else if (op->id == opid2(':','?')) {
2109 if (!vec_size(sy.paren)) {
2110 parseerror(parser, "unexpected colon outside ternary expression (missing parenthesis?)");
2113 if (vec_last(sy.paren) != PAREN_TERNARY1) {
2114 parseerror(parser, "unexpected colon outside ternary expression (missing parenthesis?)");
2117 if (!parser_close_paren(parser, &sy))
2119 vec_push(sy.ops, syop(parser_ctx(parser), op));
2123 vec_push(sy.ops, syop(parser_ctx(parser), op));
2124 wantop = !!(op->flags & OP_SUFFIX);
2127 else if (parser->tok == ')') {
2128 while (vec_size(sy.paren) && vec_last(sy.paren) == PAREN_TERNARY2) {
2129 if (!parser_sy_apply_operator(parser, &sy))
2132 if (!vec_size(sy.paren))
2135 if (vec_last(sy.paren) == PAREN_TERNARY1) {
2136 parseerror(parser, "mismatched parentheses (closing paren in ternary expression?)");
2139 if (!parser_close_paren(parser, &sy))
2142 /* must be a function call without parameters */
2143 if (vec_last(sy.paren) != PAREN_FUNC) {
2144 parseerror(parser, "closing paren in invalid position");
2147 if (!parser_close_paren(parser, &sy))
2152 else if (parser->tok == '(') {
2153 parseerror(parser, "internal error: '(' should be classified as operator");
2156 else if (parser->tok == '[') {
2157 parseerror(parser, "internal error: '[' should be classified as operator");
2160 else if (parser->tok == ']') {
2161 while (vec_size(sy.paren) && vec_last(sy.paren) == PAREN_TERNARY2) {
2162 if (!parser_sy_apply_operator(parser, &sy))
2165 if (!vec_size(sy.paren))
2167 if (vec_last(sy.paren) != PAREN_INDEX) {
2168 parseerror(parser, "mismatched parentheses, unexpected ']'");
2171 if (!parser_close_paren(parser, &sy))
2176 if (!parse_sya_operand(parser, &sy, with_labels))
2179 if (vec_size(sy.paren) && vec_last(sy.ops).isparen && vec_last(sy.paren) == PAREN_FUNC)
2180 vec_last(sy.argc)++;
2185 parseerror(parser, "expected operator or end of statement");
2189 if (!parser_next(parser)) {
2192 if (parser->tok == ';' ||
2193 ((!vec_size(sy.paren) || (vec_size(sy.paren) == 1 && vec_last(sy.paren) == PAREN_TERNARY2)) &&
2194 (parser->tok == ']' || parser->tok == ')' || parser->tok == '}')))
2200 while (vec_size(sy.ops)) {
2201 if (!parser_sy_apply_operator(parser, &sy))
2205 parser->lex->flags.noops = true;
2206 if (!vec_size(sy.out)) {
2207 parseerror(parser, "empty expression");
2210 expr = sy.out[0].out;
2213 if (vec_size(sy.paren)) {
2214 parseerror(parser, "internal error: vec_size(sy.paren) = %lu", (unsigned long)vec_size(sy.paren));
2222 parser->lex->flags.noops = true;
2223 for (i = 0; i < vec_size(sy.out); ++i) {
2225 ast_unref(sy.out[i].out);
2234 static ast_expression* parse_expression(parser_t *parser, bool stopatcomma, bool with_labels)
2236 ast_expression *e = parse_expression_leave(parser, stopatcomma, false, with_labels);
2239 if (parser->tok != ';') {
2240 parseerror(parser, "semicolon expected after expression");
2244 if (!parser_next(parser)) {
2251 static void parser_enterblock(parser_t *parser)
2253 vec_push(parser->variables, util_htnew(PARSER_HT_SIZE));
2254 vec_push(parser->_blocklocals, vec_size(parser->_locals));
2255 vec_push(parser->typedefs, util_htnew(TYPEDEF_HT_SIZE));
2256 vec_push(parser->_blocktypedefs, vec_size(parser->_typedefs));
2257 vec_push(parser->_block_ctx, parser_ctx(parser));
2260 vec_push(parser->correct_variables, correct_trie_new());
2261 vec_push(parser->correct_variables_score, NULL);
2264 static bool parser_leaveblock(parser_t *parser)
2267 size_t locals, typedefs;
2269 if (vec_size(parser->variables) <= PARSER_HT_LOCALS) {
2270 parseerror(parser, "internal error: parser_leaveblock with no block");
2274 util_htdel(vec_last(parser->variables));
2275 correct_del(vec_last(parser->correct_variables), vec_last(parser->correct_variables_score));
2277 vec_pop(parser->variables);
2278 vec_pop(parser->correct_variables);
2279 vec_pop(parser->correct_variables_score);
2280 if (!vec_size(parser->_blocklocals)) {
2281 parseerror(parser, "internal error: parser_leaveblock with no block (2)");
2285 locals = vec_last(parser->_blocklocals);
2286 vec_pop(parser->_blocklocals);
2287 while (vec_size(parser->_locals) != locals) {
2288 ast_expression *e = vec_last(parser->_locals);
2289 ast_value *v = (ast_value*)e;
2290 vec_pop(parser->_locals);
2291 if (ast_istype(e, ast_value) && !v->uses) {
2292 if (compile_warning(ast_ctx(v), WARN_UNUSED_VARIABLE, "unused variable: `%s`", v->name))
2297 typedefs = vec_last(parser->_blocktypedefs);
2298 while (vec_size(parser->_typedefs) != typedefs) {
2299 ast_delete(vec_last(parser->_typedefs));
2300 vec_pop(parser->_typedefs);
2302 util_htdel(vec_last(parser->typedefs));
2303 vec_pop(parser->typedefs);
2305 vec_pop(parser->_block_ctx);
2310 static void parser_addlocal(parser_t *parser, const char *name, ast_expression *e)
2312 vec_push(parser->_locals, e);
2313 util_htset(vec_last(parser->variables), name, (void*)e);
2317 vec_last(parser->correct_variables),
2318 &vec_last(parser->correct_variables_score),
2323 static void parser_addglobal(parser_t *parser, const char *name, ast_expression *e)
2325 vec_push(parser->globals, e);
2326 util_htset(parser->htglobals, name, e);
2330 parser->correct_variables[0],
2331 &parser->correct_variables_score[0],
2336 static ast_expression* process_condition(parser_t *parser, ast_expression *cond, bool *_ifnot)
2340 ast_expression *prev;
2342 if (cond->expression.vtype == TYPE_VOID || cond->expression.vtype >= TYPE_VARIANT) {
2344 ast_type_to_string(cond, ty, sizeof(ty));
2345 compile_error(ast_ctx(cond), "invalid type for if() condition: %s", ty);
2348 if (OPTS_FLAG(FALSE_EMPTY_STRINGS) && cond->expression.vtype == TYPE_STRING)
2351 cond = (ast_expression*)ast_unary_new(ast_ctx(cond), INSTR_NOT_S, cond);
2354 parseerror(parser, "internal error: failed to process condition");
2359 else if (OPTS_FLAG(CORRECT_LOGIC) && cond->expression.vtype == TYPE_VECTOR)
2361 /* vector types need to be cast to true booleans */
2362 ast_binary *bin = (ast_binary*)cond;
2363 if (!OPTS_FLAG(PERL_LOGIC) || !ast_istype(cond, ast_binary) || !(bin->op == INSTR_AND || bin->op == INSTR_OR))
2365 /* in perl-logic, AND and OR take care of the -fcorrect-logic */
2367 cond = (ast_expression*)ast_unary_new(ast_ctx(cond), INSTR_NOT_V, cond);
2370 parseerror(parser, "internal error: failed to process condition");
2377 unary = (ast_unary*)cond;
2378 while (ast_istype(cond, ast_unary) && unary->op == INSTR_NOT_F)
2380 cond = unary->operand;
2381 unary->operand = NULL;
2384 unary = (ast_unary*)cond;
2388 parseerror(parser, "internal error: failed to process condition");
2390 if (ifnot) *_ifnot = !*_ifnot;
2394 static bool parse_if(parser_t *parser, ast_block *block, ast_expression **out)
2397 ast_expression *cond, *ontrue = NULL, *onfalse = NULL;
2400 lex_ctx ctx = parser_ctx(parser);
2402 (void)block; /* not touching */
2404 /* skip the 'if', parse an optional 'not' and check for an opening paren */
2405 if (!parser_next(parser)) {
2406 parseerror(parser, "expected condition or 'not'");
2409 if (parser->tok == TOKEN_IDENT && !strcmp(parser_tokval(parser), "not")) {
2411 if (!parser_next(parser)) {
2412 parseerror(parser, "expected condition in parenthesis");
2416 if (parser->tok != '(') {
2417 parseerror(parser, "expected 'if' condition in parenthesis");
2420 /* parse into the expression */
2421 if (!parser_next(parser)) {
2422 parseerror(parser, "expected 'if' condition after opening paren");
2425 /* parse the condition */
2426 cond = parse_expression_leave(parser, false, true, false);
2430 if (parser->tok != ')') {
2431 parseerror(parser, "expected closing paren after 'if' condition");
2435 /* parse into the 'then' branch */
2436 if (!parser_next(parser)) {
2437 parseerror(parser, "expected statement for on-true branch of 'if'");
2441 if (!parse_statement_or_block(parser, &ontrue)) {
2446 ontrue = (ast_expression*)ast_block_new(parser_ctx(parser));
2447 /* check for an else */
2448 if (!strcmp(parser_tokval(parser), "else")) {
2449 /* parse into the 'else' branch */
2450 if (!parser_next(parser)) {
2451 parseerror(parser, "expected on-false branch after 'else'");
2456 if (!parse_statement_or_block(parser, &onfalse)) {
2463 cond = process_condition(parser, cond, &ifnot);
2465 if (ontrue) ast_delete(ontrue);
2466 if (onfalse) ast_delete(onfalse);
2471 ifthen = ast_ifthen_new(ctx, cond, onfalse, ontrue);
2473 ifthen = ast_ifthen_new(ctx, cond, ontrue, onfalse);
2474 *out = (ast_expression*)ifthen;
2478 static bool parse_while_go(parser_t *parser, ast_block *block, ast_expression **out);
2479 static bool parse_while(parser_t *parser, ast_block *block, ast_expression **out)
2484 /* skip the 'while' and get the body */
2485 if (!parser_next(parser)) {
2486 if (OPTS_FLAG(LOOP_LABELS))
2487 parseerror(parser, "expected loop label or 'while' condition in parenthesis");
2489 parseerror(parser, "expected 'while' condition in parenthesis");
2493 if (parser->tok == ':') {
2494 if (!OPTS_FLAG(LOOP_LABELS))
2495 parseerror(parser, "labeled loops not activated, try using -floop-labels");
2496 if (!parser_next(parser) || parser->tok != TOKEN_IDENT) {
2497 parseerror(parser, "expected loop label");
2500 label = util_strdup(parser_tokval(parser));
2501 if (!parser_next(parser)) {
2503 parseerror(parser, "expected 'while' condition in parenthesis");
2508 if (parser->tok != '(') {
2509 parseerror(parser, "expected 'while' condition in parenthesis");
2513 vec_push(parser->breaks, label);
2514 vec_push(parser->continues, label);
2516 rv = parse_while_go(parser, block, out);
2519 if (vec_last(parser->breaks) != label || vec_last(parser->continues) != label) {
2520 parseerror(parser, "internal error: label stack corrupted");
2526 vec_pop(parser->breaks);
2527 vec_pop(parser->continues);
2532 static bool parse_while_go(parser_t *parser, ast_block *block, ast_expression **out)
2535 ast_expression *cond, *ontrue;
2539 lex_ctx ctx = parser_ctx(parser);
2541 (void)block; /* not touching */
2543 /* parse into the expression */
2544 if (!parser_next(parser)) {
2545 parseerror(parser, "expected 'while' condition after opening paren");
2548 /* parse the condition */
2549 cond = parse_expression_leave(parser, false, true, false);
2553 if (parser->tok != ')') {
2554 parseerror(parser, "expected closing paren after 'while' condition");
2558 /* parse into the 'then' branch */
2559 if (!parser_next(parser)) {
2560 parseerror(parser, "expected while-loop body");
2564 if (!parse_statement_or_block(parser, &ontrue)) {
2569 cond = process_condition(parser, cond, &ifnot);
2574 aloop = ast_loop_new(ctx, NULL, cond, ifnot, NULL, false, NULL, ontrue);
2575 *out = (ast_expression*)aloop;
2579 static bool parse_dowhile_go(parser_t *parser, ast_block *block, ast_expression **out);
2580 static bool parse_dowhile(parser_t *parser, ast_block *block, ast_expression **out)
2585 /* skip the 'do' and get the body */
2586 if (!parser_next(parser)) {
2587 if (OPTS_FLAG(LOOP_LABELS))
2588 parseerror(parser, "expected loop label or body");
2590 parseerror(parser, "expected loop body");
2594 if (parser->tok == ':') {
2595 if (!OPTS_FLAG(LOOP_LABELS))
2596 parseerror(parser, "labeled loops not activated, try using -floop-labels");
2597 if (!parser_next(parser) || parser->tok != TOKEN_IDENT) {
2598 parseerror(parser, "expected loop label");
2601 label = util_strdup(parser_tokval(parser));
2602 if (!parser_next(parser)) {
2604 parseerror(parser, "expected loop body");
2609 vec_push(parser->breaks, label);
2610 vec_push(parser->continues, label);
2612 rv = parse_dowhile_go(parser, block, out);
2615 if (vec_last(parser->breaks) != label || vec_last(parser->continues) != label) {
2616 parseerror(parser, "internal error: label stack corrupted");
2622 vec_pop(parser->breaks);
2623 vec_pop(parser->continues);
2628 static bool parse_dowhile_go(parser_t *parser, ast_block *block, ast_expression **out)
2631 ast_expression *cond, *ontrue;
2635 lex_ctx ctx = parser_ctx(parser);
2637 (void)block; /* not touching */
2639 if (!parse_statement_or_block(parser, &ontrue))
2642 /* expect the "while" */
2643 if (parser->tok != TOKEN_KEYWORD ||
2644 strcmp(parser_tokval(parser), "while"))
2646 parseerror(parser, "expected 'while' and condition");
2651 /* skip the 'while' and check for opening paren */
2652 if (!parser_next(parser) || parser->tok != '(') {
2653 parseerror(parser, "expected 'while' condition in parenthesis");
2657 /* parse into the expression */
2658 if (!parser_next(parser)) {
2659 parseerror(parser, "expected 'while' condition after opening paren");
2663 /* parse the condition */
2664 cond = parse_expression_leave(parser, false, true, false);
2668 if (parser->tok != ')') {
2669 parseerror(parser, "expected closing paren after 'while' condition");
2675 if (!parser_next(parser) || parser->tok != ';') {
2676 parseerror(parser, "expected semicolon after condition");
2682 if (!parser_next(parser)) {
2683 parseerror(parser, "parse error");
2689 cond = process_condition(parser, cond, &ifnot);
2694 aloop = ast_loop_new(ctx, NULL, NULL, false, cond, ifnot, NULL, ontrue);
2695 *out = (ast_expression*)aloop;
2699 static bool parse_for_go(parser_t *parser, ast_block *block, ast_expression **out);
2700 static bool parse_for(parser_t *parser, ast_block *block, ast_expression **out)
2705 /* skip the 'for' and check for opening paren */
2706 if (!parser_next(parser)) {
2707 if (OPTS_FLAG(LOOP_LABELS))
2708 parseerror(parser, "expected loop label or 'for' expressions in parenthesis");
2710 parseerror(parser, "expected 'for' expressions in parenthesis");
2714 if (parser->tok == ':') {
2715 if (!OPTS_FLAG(LOOP_LABELS))
2716 parseerror(parser, "labeled loops not activated, try using -floop-labels");
2717 if (!parser_next(parser) || parser->tok != TOKEN_IDENT) {
2718 parseerror(parser, "expected loop label");
2721 label = util_strdup(parser_tokval(parser));
2722 if (!parser_next(parser)) {
2724 parseerror(parser, "expected 'for' expressions in parenthesis");
2729 if (parser->tok != '(') {
2730 parseerror(parser, "expected 'for' expressions in parenthesis");
2734 vec_push(parser->breaks, label);
2735 vec_push(parser->continues, label);
2737 rv = parse_for_go(parser, block, out);
2740 if (vec_last(parser->breaks) != label || vec_last(parser->continues) != label) {
2741 parseerror(parser, "internal error: label stack corrupted");
2747 vec_pop(parser->breaks);
2748 vec_pop(parser->continues);
2752 static bool parse_for_go(parser_t *parser, ast_block *block, ast_expression **out)
2755 ast_expression *initexpr, *cond, *increment, *ontrue;
2761 lex_ctx ctx = parser_ctx(parser);
2763 parser_enterblock(parser);
2770 /* parse into the expression */
2771 if (!parser_next(parser)) {
2772 parseerror(parser, "expected 'for' initializer after opening paren");
2777 if (parser->tok == TOKEN_IDENT)
2778 typevar = parser_find_typedef(parser, parser_tokval(parser), 0);
2780 if (typevar || parser->tok == TOKEN_TYPENAME) {
2782 if (OPTS_OPTION_U32(OPTION_STANDARD) != COMPILER_GMQCC) {
2783 if (parsewarning(parser, WARN_EXTENSIONS,
2784 "current standard does not allow variable declarations in for-loop initializers"))
2788 if (!parse_variable(parser, block, true, CV_VAR, typevar, false, false, 0, NULL))
2791 else if (parser->tok != ';')
2793 initexpr = parse_expression_leave(parser, false, false, false);
2798 /* move on to condition */
2799 if (parser->tok != ';') {
2800 parseerror(parser, "expected semicolon after for-loop initializer");
2803 if (!parser_next(parser)) {
2804 parseerror(parser, "expected for-loop condition");
2808 /* parse the condition */
2809 if (parser->tok != ';') {
2810 cond = parse_expression_leave(parser, false, true, false);
2815 /* move on to incrementor */
2816 if (parser->tok != ';') {
2817 parseerror(parser, "expected semicolon after for-loop initializer");
2820 if (!parser_next(parser)) {
2821 parseerror(parser, "expected for-loop condition");
2825 /* parse the incrementor */
2826 if (parser->tok != ')') {
2827 lex_ctx condctx = parser_ctx(parser);
2828 increment = parse_expression_leave(parser, false, false, false);
2831 if (!ast_side_effects(increment)) {
2832 if (compile_warning(condctx, WARN_EFFECTLESS_STATEMENT, "statement has no effect"))
2838 if (parser->tok != ')') {
2839 parseerror(parser, "expected closing paren after 'for-loop' incrementor");
2842 /* parse into the 'then' branch */
2843 if (!parser_next(parser)) {
2844 parseerror(parser, "expected for-loop body");
2847 if (!parse_statement_or_block(parser, &ontrue))
2851 cond = process_condition(parser, cond, &ifnot);
2855 aloop = ast_loop_new(ctx, initexpr, cond, ifnot, NULL, false, increment, ontrue);
2856 *out = (ast_expression*)aloop;
2858 if (!parser_leaveblock(parser))
2862 if (initexpr) ast_delete(initexpr);
2863 if (cond) ast_delete(cond);
2864 if (increment) ast_delete(increment);
2865 (void)!parser_leaveblock(parser);
2869 static bool parse_return(parser_t *parser, ast_block *block, ast_expression **out)
2871 ast_expression *exp = NULL;
2872 ast_return *ret = NULL;
2873 ast_value *expected = parser->function->vtype;
2875 lex_ctx ctx = parser_ctx(parser);
2877 (void)block; /* not touching */
2879 if (!parser_next(parser)) {
2880 parseerror(parser, "expected return expression");
2884 if (parser->tok != ';') {
2885 exp = parse_expression(parser, false, false);
2889 if (exp->expression.vtype != TYPE_NIL &&
2890 exp->expression.vtype != expected->expression.next->expression.vtype)
2892 parseerror(parser, "return with invalid expression");
2895 ret = ast_return_new(ctx, exp);
2901 if (!parser_next(parser))
2902 parseerror(parser, "parse error");
2903 if (expected->expression.next->expression.vtype != TYPE_VOID) {
2904 (void)!parsewarning(parser, WARN_MISSING_RETURN_VALUES, "return without value");
2906 ret = ast_return_new(ctx, NULL);
2908 *out = (ast_expression*)ret;
2912 static bool parse_break_continue(parser_t *parser, ast_block *block, ast_expression **out, bool is_continue)
2915 unsigned int levels = 0;
2916 lex_ctx ctx = parser_ctx(parser);
2917 const char **loops = (is_continue ? parser->continues : parser->breaks);
2919 (void)block; /* not touching */
2920 if (!parser_next(parser)) {
2921 parseerror(parser, "expected semicolon or loop label");
2925 if (!vec_size(loops)) {
2927 parseerror(parser, "`continue` can only be used inside loops");
2929 parseerror(parser, "`break` can only be used inside loops or switches");
2932 if (parser->tok == TOKEN_IDENT) {
2933 if (!OPTS_FLAG(LOOP_LABELS))
2934 parseerror(parser, "labeled loops not activated, try using -floop-labels");
2935 i = vec_size(loops);
2937 if (loops[i] && !strcmp(loops[i], parser_tokval(parser)))
2940 parseerror(parser, "no such loop to %s: `%s`",
2941 (is_continue ? "continue" : "break out of"),
2942 parser_tokval(parser));
2947 if (!parser_next(parser)) {
2948 parseerror(parser, "expected semicolon");
2953 if (parser->tok != ';') {
2954 parseerror(parser, "expected semicolon");
2958 if (!parser_next(parser))
2959 parseerror(parser, "parse error");
2961 *out = (ast_expression*)ast_breakcont_new(ctx, is_continue, levels);
2965 /* returns true when it was a variable qualifier, false otherwise!
2966 * on error, cvq is set to CV_WRONG
2968 static bool parse_qualifiers(parser_t *parser, bool with_local, int *cvq, bool *noref, bool *is_static, uint32_t *_flags, char **message)
2970 bool had_const = false;
2971 bool had_var = false;
2972 bool had_noref = false;
2973 bool had_attrib = false;
2974 bool had_static = false;
2979 if (parser->tok == TOKEN_ATTRIBUTE_OPEN) {
2981 /* parse an attribute */
2982 if (!parser_next(parser)) {
2983 parseerror(parser, "expected attribute after `[[`");
2987 if (!strcmp(parser_tokval(parser), "noreturn")) {
2988 flags |= AST_FLAG_NORETURN;
2989 if (!parser_next(parser) || parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
2990 parseerror(parser, "`noreturn` attribute has no parameters, expected `]]`");
2995 else if (!strcmp(parser_tokval(parser), "noref")) {
2997 if (!parser_next(parser) || parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
2998 parseerror(parser, "`noref` attribute has no parameters, expected `]]`");
3003 else if (!strcmp(parser_tokval(parser), "inline")) {
3004 flags |= AST_FLAG_INLINE;
3005 if (!parser_next(parser) || parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
3006 parseerror(parser, "`noref` attribute has no parameters, expected `]]`");
3011 else if (!strcmp(parser_tokval(parser), "alias") && !(flags & AST_FLAG_ALIAS)) {
3012 flags |= AST_FLAG_ALIAS;
3015 if (!parser_next(parser)) {
3016 parseerror(parser, "parse error in attribute");
3020 if (parser->tok == '(') {
3021 if (!parser_next(parser) || parser->tok != TOKEN_STRINGCONST) {
3022 parseerror(parser, "`alias` attribute missing parameter");
3026 *message = util_strdup(parser_tokval(parser));
3028 if (!parser_next(parser)) {
3029 parseerror(parser, "parse error in attribute");
3033 if (parser->tok != ')') {
3034 parseerror(parser, "`alias` attribute expected `)` after parameter");
3038 if (!parser_next(parser)) {
3039 parseerror(parser, "parse error in attribute");
3044 if (parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
3045 parseerror(parser, "`alias` attribute expected `]]`");
3049 else if (!strcmp(parser_tokval(parser), "deprecated") && !(flags & AST_FLAG_DEPRECATED)) {
3050 flags |= AST_FLAG_DEPRECATED;
3053 if (!parser_next(parser)) {
3054 parseerror(parser, "parse error in attribute");
3058 if (parser->tok == '(') {
3059 if (!parser_next(parser) || parser->tok != TOKEN_STRINGCONST) {
3060 parseerror(parser, "`deprecated` attribute missing parameter");
3064 *message = util_strdup(parser_tokval(parser));
3066 if (!parser_next(parser)) {
3067 parseerror(parser, "parse error in attribute");
3071 if(parser->tok != ')') {
3072 parseerror(parser, "`deprecated` attribute expected `)` after parameter");
3076 if (!parser_next(parser)) {
3077 parseerror(parser, "parse error in attribute");
3082 if (parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
3083 parseerror(parser, "`deprecated` attribute expected `]]`");
3086 if (*message) mem_d(*message);
3094 /* Skip tokens until we hit a ]] */
3095 (void)!parsewarning(parser, WARN_UNKNOWN_ATTRIBUTE, "unknown attribute starting with `%s`", parser_tokval(parser));
3096 while (parser->tok != TOKEN_ATTRIBUTE_CLOSE) {
3097 if (!parser_next(parser)) {
3098 parseerror(parser, "error inside attribute");
3105 else if (with_local && !strcmp(parser_tokval(parser), "static"))
3107 else if (!strcmp(parser_tokval(parser), "const"))
3109 else if (!strcmp(parser_tokval(parser), "var"))
3111 else if (with_local && !strcmp(parser_tokval(parser), "local"))
3113 else if (!strcmp(parser_tokval(parser), "noref"))
3115 else if (!had_const && !had_var && !had_noref && !had_attrib && !had_static && !flags) {
3120 if (!parser_next(parser))
3130 *is_static = had_static;
3134 parseerror(parser, "parse error after variable qualifier");
3139 static bool parse_switch_go(parser_t *parser, ast_block *block, ast_expression **out);
3140 static bool parse_switch(parser_t *parser, ast_block *block, ast_expression **out)
3145 /* skip the 'while' and get the body */
3146 if (!parser_next(parser)) {
3147 if (OPTS_FLAG(LOOP_LABELS))
3148 parseerror(parser, "expected loop label or 'switch' operand in parenthesis");
3150 parseerror(parser, "expected 'switch' operand in parenthesis");
3154 if (parser->tok == ':') {
3155 if (!OPTS_FLAG(LOOP_LABELS))
3156 parseerror(parser, "labeled loops not activated, try using -floop-labels");
3157 if (!parser_next(parser) || parser->tok != TOKEN_IDENT) {
3158 parseerror(parser, "expected loop label");
3161 label = util_strdup(parser_tokval(parser));
3162 if (!parser_next(parser)) {
3164 parseerror(parser, "expected 'switch' operand in parenthesis");
3169 if (parser->tok != '(') {
3170 parseerror(parser, "expected 'switch' operand in parenthesis");
3174 vec_push(parser->breaks, label);
3176 rv = parse_switch_go(parser, block, out);
3179 if (vec_last(parser->breaks) != label) {
3180 parseerror(parser, "internal error: label stack corrupted");
3186 vec_pop(parser->breaks);
3191 static bool parse_switch_go(parser_t *parser, ast_block *block, ast_expression **out)
3193 ast_expression *operand;
3196 ast_switch *switchnode;
3197 ast_switch_case swcase;
3200 bool noref, is_static;
3201 uint32_t qflags = 0;
3203 lex_ctx ctx = parser_ctx(parser);
3205 (void)block; /* not touching */
3208 /* parse into the expression */
3209 if (!parser_next(parser)) {
3210 parseerror(parser, "expected switch operand");
3213 /* parse the operand */
3214 operand = parse_expression_leave(parser, false, false, false);
3218 switchnode = ast_switch_new(ctx, operand);
3221 if (parser->tok != ')') {
3222 ast_delete(switchnode);
3223 parseerror(parser, "expected closing paren after 'switch' operand");
3227 /* parse over the opening paren */
3228 if (!parser_next(parser) || parser->tok != '{') {
3229 ast_delete(switchnode);
3230 parseerror(parser, "expected list of cases");
3234 if (!parser_next(parser)) {
3235 ast_delete(switchnode);
3236 parseerror(parser, "expected 'case' or 'default'");
3240 /* new block; allow some variables to be declared here */
3241 parser_enterblock(parser);
3244 if (parser->tok == TOKEN_IDENT)
3245 typevar = parser_find_typedef(parser, parser_tokval(parser), 0);
3246 if (typevar || parser->tok == TOKEN_TYPENAME) {
3247 if (!parse_variable(parser, block, false, CV_NONE, typevar, false, false, 0, NULL)) {
3248 ast_delete(switchnode);
3253 if (parse_qualifiers(parser, true, &cvq, &noref, &is_static, &qflags, NULL))
3255 if (cvq == CV_WRONG) {
3256 ast_delete(switchnode);
3259 if (!parse_variable(parser, block, false, cvq, NULL, noref, is_static, qflags, NULL)) {
3260 ast_delete(switchnode);
3269 while (parser->tok != '}') {
3270 ast_block *caseblock;
3272 if (!strcmp(parser_tokval(parser), "case")) {
3273 if (!parser_next(parser)) {
3274 ast_delete(switchnode);
3275 parseerror(parser, "expected expression for case");
3278 swcase.value = parse_expression_leave(parser, false, false, false);
3279 if (!swcase.value) {
3280 ast_delete(switchnode);
3281 parseerror(parser, "expected expression for case");
3284 if (!OPTS_FLAG(RELAXED_SWITCH)) {
3285 if (!ast_istype(swcase.value, ast_value)) { /* || ((ast_value*)swcase.value)->cvq != CV_CONST) { */
3286 parseerror(parser, "case on non-constant values need to be explicitly enabled via -frelaxed-switch");
3292 else if (!strcmp(parser_tokval(parser), "default")) {
3293 swcase.value = NULL;
3294 if (!parser_next(parser)) {
3295 ast_delete(switchnode);
3296 parseerror(parser, "expected colon");
3301 ast_delete(switchnode);
3302 parseerror(parser, "expected 'case' or 'default'");
3306 /* Now the colon and body */
3307 if (parser->tok != ':') {
3308 if (swcase.value) ast_unref(swcase.value);
3309 ast_delete(switchnode);
3310 parseerror(parser, "expected colon");
3314 if (!parser_next(parser)) {
3315 if (swcase.value) ast_unref(swcase.value);
3316 ast_delete(switchnode);
3317 parseerror(parser, "expected statements or case");
3320 caseblock = ast_block_new(parser_ctx(parser));
3322 if (swcase.value) ast_unref(swcase.value);
3323 ast_delete(switchnode);
3326 swcase.code = (ast_expression*)caseblock;
3327 vec_push(switchnode->cases, swcase);
3329 ast_expression *expr;
3330 if (parser->tok == '}')
3332 if (parser->tok == TOKEN_KEYWORD) {
3333 if (!strcmp(parser_tokval(parser), "case") ||
3334 !strcmp(parser_tokval(parser), "default"))
3339 if (!parse_statement(parser, caseblock, &expr, true)) {
3340 ast_delete(switchnode);
3345 if (!ast_block_add_expr(caseblock, expr)) {
3346 ast_delete(switchnode);
3352 parser_leaveblock(parser);
3355 if (parser->tok != '}') {
3356 ast_delete(switchnode);
3357 parseerror(parser, "expected closing paren of case list");
3360 if (!parser_next(parser)) {
3361 ast_delete(switchnode);
3362 parseerror(parser, "parse error after switch");
3365 *out = (ast_expression*)switchnode;
3369 /* parse computed goto sides */
3370 static ast_expression *parse_goto_computed(parser_t *parser, ast_expression **side) {
3371 ast_expression *on_true;
3372 ast_expression *on_false;
3373 ast_expression *cond;
3378 if (ast_istype(*side, ast_ternary)) {
3379 ast_ternary *tern = (ast_ternary*)*side;
3380 on_true = parse_goto_computed(parser, &tern->on_true);
3381 on_false = parse_goto_computed(parser, &tern->on_false);
3383 if (!on_true || !on_false) {
3384 parseerror(parser, "expected label or expression in ternary");
3385 if (on_true) ast_unref(on_true);
3386 if (on_false) ast_unref(on_false);
3394 return (ast_expression*)ast_ifthen_new(parser_ctx(parser), cond, on_true, on_false);
3395 } else if (ast_istype(*side, ast_label)) {
3396 ast_goto *gt = ast_goto_new(parser_ctx(parser), ((ast_label*)*side)->name);
3397 ast_goto_set_label(gt, ((ast_label*)*side));
3399 return (ast_expression*)gt;
3404 static bool parse_goto(parser_t *parser, ast_expression **out)
3406 ast_goto *gt = NULL;
3407 ast_expression *lbl;
3409 if (!parser_next(parser))
3412 if (parser->tok != TOKEN_IDENT) {
3413 ast_expression *expression;
3415 /* could be an expression i.e computed goto :-) */
3416 if (parser->tok != '(') {
3417 parseerror(parser, "expected label name after `goto`");
3421 /* failed to parse expression for goto */
3422 if (!(expression = parse_expression(parser, false, true)) ||
3423 !(*out = parse_goto_computed(parser, &expression))) {
3424 parseerror(parser, "invalid goto expression");
3425 ast_unref(expression);
3432 /* not computed goto */
3433 gt = ast_goto_new(parser_ctx(parser), parser_tokval(parser));
3434 lbl = parser_find_label(parser, gt->name);
3436 if (!ast_istype(lbl, ast_label)) {
3437 parseerror(parser, "internal error: label is not an ast_label");
3441 ast_goto_set_label(gt, (ast_label*)lbl);
3444 vec_push(parser->gotos, gt);
3446 if (!parser_next(parser) || parser->tok != ';') {
3447 parseerror(parser, "semicolon expected after goto label");
3450 if (!parser_next(parser)) {
3451 parseerror(parser, "parse error after goto");
3455 *out = (ast_expression*)gt;
3459 static bool parse_skipwhite(parser_t *parser)
3462 if (!parser_next(parser))
3464 } while (parser->tok == TOKEN_WHITE && parser->tok < TOKEN_ERROR);
3465 return parser->tok < TOKEN_ERROR;
3468 static bool parse_eol(parser_t *parser)
3470 if (!parse_skipwhite(parser))
3472 return parser->tok == TOKEN_EOL;
3475 static bool parse_pragma_do(parser_t *parser)