4 * Copyright (C) 2003 Transmeta Corp.
5 * 2003-2004 Linus Torvalds
7 * Licensed under the Open Software License version 1.1
9 * Print out results of parsing for debugging and testing.
25 #include "expression.h"
28 static int show_symbol_expr(struct symbol
*sym
);
29 static int show_string_expr(struct expression
*expr
);
31 static void do_debug_symbol(struct symbol
*sym
, int indent
)
33 static const char indent_string
[] = " ";
34 static const char *typestr
[] = {
35 [SYM_UNINITIALIZED
] = "none",
36 [SYM_PREPROCESSOR
] = "cpp.",
37 [SYM_BASETYPE
] = "base",
42 [SYM_STRUCT
] = "strt",
45 [SYM_TYPEDEF
] = "tdef",
46 [SYM_TYPEOF
] = "tpof",
47 [SYM_MEMBER
] = "memb",
48 [SYM_BITFIELD
] = "bitf",
50 [SYM_RESTRICT
] = "rstr",
51 [SYM_FOULED
] = "foul",
54 struct context
*context
;
59 fprintf(stderr
, "%.*s%s%3d:%lu %s %s (as: %d) %p (%s:%d:%d) %s\n",
60 indent
, indent_string
, typestr
[sym
->type
],
61 sym
->bit_size
, sym
->ctype
.alignment
,
62 modifier_string(sym
->ctype
.modifiers
), show_ident(sym
->ident
), sym
->ctype
.as
,
63 sym
, stream_name(sym
->pos
.stream
), sym
->pos
.line
, sym
->pos
.pos
,
64 builtin_typename(sym
) ?: "");
66 FOR_EACH_PTR(sym
->ctype
.contexts
, context
) {
67 /* FIXME: should print context expression */
68 fprintf(stderr
, "< context%d: in=%d, out=%d\n",
69 i
, context
->in
, context
->out
);
70 fprintf(stderr
, " end context%d >\n", i
);
72 } END_FOR_EACH_PTR(context
);
73 if (sym
->type
== SYM_FN
) {
76 FOR_EACH_PTR(sym
->arguments
, arg
) {
77 fprintf(stderr
, "< arg%d:\n", i
);
78 do_debug_symbol(arg
, 0);
79 fprintf(stderr
, " end arg%d >\n", i
);
81 } END_FOR_EACH_PTR(arg
);
83 do_debug_symbol(sym
->ctype
.base_type
, indent
+2);
86 void debug_symbol(struct symbol
*sym
)
88 do_debug_symbol(sym
, 0);
92 * Symbol type printout. The type system is by far the most
93 * complicated part of C - everything else is trivial.
95 const char *modifier_string(unsigned long mod
)
97 static char buffer
[100];
99 const char *res
,**ptr
, *names
[] = {
100 "auto", "register", "static", "extern",
101 "const", "volatile", "[signed]", "[unsigned]",
102 "[char]", "[short]", "[long]", "[long long]",
103 "[typdef]", "[structof]", "[unionof]", "[enum]",
104 "[typeof]", "[attribute]", "inline", "[addressable]",
105 "[nocast]", "[noderef]", "[accessed]", "[toplevel]",
106 "[label]", "[assigned]", "[type]", "[safe]",
107 "[usertype]", "[force]", "[explicitly-signed]",
111 while ((res
= *ptr
++) != NULL
) {
114 while ((c
= *res
++) != '\0')
124 static void show_struct_member(struct symbol
*sym
)
126 printf("\t%s:%d:%ld at offset %ld.%d", show_ident(sym
->ident
), sym
->bit_size
, sym
->ctype
.alignment
, sym
->offset
, sym
->bit_offset
);
130 void show_symbol_list(struct symbol_list
*list
, const char *sep
)
133 const char *prepend
= "";
135 FOR_EACH_PTR(list
, sym
) {
139 } END_FOR_EACH_PTR(sym
);
147 static void FORMAT_ATTR(2) prepend(struct type_name
*name
, const char *fmt
, ...)
149 static char buffer
[512];
154 n
= vsprintf(buffer
, fmt
, args
);
158 memcpy(name
->start
, buffer
, n
);
161 static void FORMAT_ATTR(2) append(struct type_name
*name
, const char *fmt
, ...)
163 static char buffer
[512];
168 n
= vsprintf(buffer
, fmt
, args
);
171 memcpy(name
->end
, buffer
, n
);
175 static struct ctype_name
{
179 { & char_ctype
, "char" },
180 { &schar_ctype
, "signed char" },
181 { &uchar_ctype
, "unsigned char" },
182 { & short_ctype
, "short" },
183 { &sshort_ctype
, "signed short" },
184 { &ushort_ctype
, "unsigned short" },
185 { & int_ctype
, "int" },
186 { &sint_ctype
, "signed int" },
187 { &uint_ctype
, "unsigned int" },
188 { &slong_ctype
, "signed long" },
189 { & long_ctype
, "long" },
190 { &ulong_ctype
, "unsigned long" },
191 { & llong_ctype
, "long long" },
192 { &sllong_ctype
, "signed long long" },
193 { &ullong_ctype
, "unsigned long long" },
194 { & lllong_ctype
, "long long long" },
195 { &slllong_ctype
, "signed long long long" },
196 { &ulllong_ctype
, "unsigned long long long" },
198 { &void_ctype
, "void" },
199 { &bool_ctype
, "bool" },
200 { &string_ctype
, "string" },
202 { &float_ctype
, "float" },
203 { &double_ctype
, "double" },
204 { &ldouble_ctype
,"long double" },
205 { &incomplete_ctype
, "incomplete type" },
206 { &int_type
, "abstract int" },
207 { &fp_type
, "abstract fp" },
208 { &label_ctype
, "label type" },
209 { &bad_ctype
, "bad type" },
212 const char *builtin_typename(struct symbol
*sym
)
216 for (i
= 0; i
< sizeof(typenames
)/sizeof(typenames
[0]); i
++)
217 if (typenames
[i
].sym
== sym
)
218 return typenames
[i
].name
;
222 const char *builtin_ctypename(struct ctype
*ctype
)
226 for (i
= 0; i
< sizeof(typenames
)/sizeof(typenames
[0]); i
++)
227 if (&typenames
[i
].sym
->ctype
== ctype
)
228 return typenames
[i
].name
;
232 static void do_show_type(struct symbol
*sym
, struct type_name
*name
)
234 const char *typename
;
235 unsigned long mod
= 0;
242 if (!sym
|| (sym
->type
!= SYM_NODE
&& sym
->type
!= SYM_ARRAY
&&
243 sym
->type
!= SYM_BITFIELD
)) {
248 prepend(name
, "<asn:%d>", as
);
250 s
= modifier_string(mod
);
253 memcpy(name
->start
, s
, len
);
261 if ((typename
= builtin_typename(sym
))) {
262 int len
= strlen(typename
);
263 if (name
->start
!= name
->end
)
264 *--name
->start
= ' ';
266 memcpy(name
->start
, typename
, len
);
274 mod
= sym
->ctype
.modifiers
;
285 append(name
, "( ... )");
289 if (name
->start
!= name
->end
)
290 *--name
->start
= ' ';
291 prepend(name
, "struct %s", show_ident(sym
->ident
));
295 if (name
->start
!= name
->end
)
296 *--name
->start
= ' ';
297 prepend(name
, "union %s", show_ident(sym
->ident
));
301 prepend(name
, "enum %s ", show_ident(sym
->ident
));
305 append(name
, "%s", show_ident(sym
->ident
));
306 mod
|= sym
->ctype
.modifiers
;
311 mod
|= sym
->ctype
.modifiers
;
313 append(name
, ":%d", sym
->bit_size
);
317 append(name
, "label(%s:%p)", show_ident(sym
->ident
), sym
);
321 mod
|= sym
->ctype
.modifiers
;
328 append(name
, "[%lld]", get_expression_value(sym
->array_size
));
336 if (name
->start
!= name
->end
)
337 *--name
->start
= ' ';
338 prepend(name
, "restricted %s", show_ident(sym
->ident
));
346 if (name
->start
!= name
->end
)
347 *--name
->start
= ' ';
348 prepend(name
, "unknown type %d", sym
->type
);
352 sym
= sym
->ctype
.base_type
;
357 prepend(name
, "restricted ");
359 prepend(name
, "fouled ");
362 void show_type(struct symbol
*sym
)
365 struct type_name name
;
367 name
.start
= name
.end
= array
+100;
368 do_show_type(sym
, &name
);
370 printf("%s", name
.start
);
373 const char *show_typename(struct symbol
*sym
)
375 static char array
[200];
376 struct type_name name
;
378 name
.start
= name
.end
= array
+100;
379 do_show_type(sym
, &name
);
384 void show_symbol(struct symbol
*sym
)
391 if (sym
->ctype
.alignment
)
392 printf(".align %ld\n", sym
->ctype
.alignment
);
395 type
= sym
->ctype
.base_type
;
402 * Show actual implementation information
404 switch (type
->type
) {
405 struct symbol
*member
;
410 FOR_EACH_PTR(type
->symbol_list
, member
) {
411 show_struct_member(member
);
412 } END_FOR_EACH_PTR(member
);
417 struct statement
*stmt
= type
->stmt
;
421 val
= show_statement(stmt
);
423 printf("\tmov.%d\t\tretval,%d\n", stmt
->ret
->bit_size
, val
);
434 if (sym
->initializer
) {
436 show_expression(sym
->initializer
);
440 static int show_symbol_init(struct symbol
*sym
);
442 static int new_pseudo(void)
448 static int new_label(void)
450 static int label
= 0;
454 static void show_switch_statement(struct statement
*stmt
)
456 int val
= show_expression(stmt
->switch_expression
);
458 printf("\tswitch v%d\n", val
);
461 * Debugging only: Check that the case list is correct
462 * by printing it out.
464 * This is where a _real_ back-end would go through the
465 * cases to decide whether to use a lookup table or a
466 * series of comparisons etc
468 printf("# case table:\n");
469 FOR_EACH_PTR(stmt
->switch_case
->symbol_list
, sym
) {
470 struct statement
*case_stmt
= sym
->stmt
;
471 struct expression
*expr
= case_stmt
->case_expression
;
472 struct expression
*to
= case_stmt
->case_to
;
477 if (expr
->type
== EXPR_VALUE
) {
478 printf(" case %lld", expr
->value
);
480 if (to
->type
== EXPR_VALUE
) {
481 printf(" .. %lld", to
->value
);
489 printf(": .L%p\n", sym
->bb_target
);
490 } END_FOR_EACH_PTR(sym
);
491 printf("# end case table\n");
493 show_statement(stmt
->switch_statement
);
495 if (stmt
->switch_break
->used
)
496 printf(".L%p:\n", stmt
->switch_break
->bb_target
);
499 static void show_symbol_decl(struct symbol_list
*syms
)
502 FOR_EACH_PTR(syms
, sym
) {
503 show_symbol_init(sym
);
504 } END_FOR_EACH_PTR(sym
);
507 static int show_return_stmt(struct statement
*stmt
);
510 * Print out a statement
512 int show_statement(struct statement
*stmt
)
516 switch (stmt
->type
) {
517 case STMT_DECLARATION
:
518 show_symbol_decl(stmt
->declaration
);
521 return show_return_stmt(stmt
);
522 case STMT_COMPOUND
: {
526 if (stmt
->inline_fn
) {
527 show_statement(stmt
->args
);
528 printf("\tbegin_inline \t%s\n", show_ident(stmt
->inline_fn
->ident
));
530 FOR_EACH_PTR(stmt
->stmts
, s
) {
531 last
= show_statement(s
);
532 } END_FOR_EACH_PTR(s
);
535 printf(".L%p:\n", stmt
->ret
);
536 addr
= show_symbol_expr(stmt
->ret
);
537 bits
= stmt
->ret
->bit_size
;
539 printf("\tld.%d\t\tv%d,[v%d]\n", bits
, last
, addr
);
542 printf("\tend_inlined\t%s\n", show_ident(stmt
->inline_fn
->ident
));
546 case STMT_EXPRESSION
:
547 return show_expression(stmt
->expression
);
550 struct expression
*cond
= stmt
->if_conditional
;
552 /* This is only valid if nobody can jump into the "dead" statement */
554 if (cond
->type
== EXPR_VALUE
) {
555 struct statement
*s
= stmt
->if_true
;
562 val
= show_expression(cond
);
563 target
= new_label();
564 printf("\tje\t\tv%d,.L%d\n", val
, target
);
565 show_statement(stmt
->if_true
);
566 if (stmt
->if_false
) {
567 int last
= new_label();
568 printf("\tjmp\t\t.L%d\n", last
);
569 printf(".L%d:\n", target
);
571 show_statement(stmt
->if_false
);
573 printf(".L%d:\n", target
);
577 show_switch_statement(stmt
);
581 printf(".L%p:\n", stmt
->case_label
);
582 show_statement(stmt
->case_statement
);
585 case STMT_ITERATOR
: {
586 struct statement
*pre_statement
= stmt
->iterator_pre_statement
;
587 struct expression
*pre_condition
= stmt
->iterator_pre_condition
;
588 struct statement
*statement
= stmt
->iterator_statement
;
589 struct statement
*post_statement
= stmt
->iterator_post_statement
;
590 struct expression
*post_condition
= stmt
->iterator_post_condition
;
591 int val
, loop_top
= 0, loop_bottom
= 0;
593 show_symbol_decl(stmt
->iterator_syms
);
594 show_statement(pre_statement
);
596 if (pre_condition
->type
== EXPR_VALUE
) {
597 if (!pre_condition
->value
) {
598 loop_bottom
= new_label();
599 printf("\tjmp\t\t.L%d\n", loop_bottom
);
602 loop_bottom
= new_label();
603 val
= show_expression(pre_condition
);
604 printf("\tje\t\tv%d, .L%d\n", val
, loop_bottom
);
607 if (!post_condition
|| post_condition
->type
!= EXPR_VALUE
|| post_condition
->value
) {
608 loop_top
= new_label();
609 printf(".L%d:\n", loop_top
);
611 show_statement(statement
);
612 if (stmt
->iterator_continue
->used
)
613 printf(".L%p:\n", stmt
->iterator_continue
);
614 show_statement(post_statement
);
615 if (!post_condition
) {
616 printf("\tjmp\t\t.L%d\n", loop_top
);
617 } else if (post_condition
->type
== EXPR_VALUE
) {
618 if (post_condition
->value
)
619 printf("\tjmp\t\t.L%d\n", loop_top
);
621 val
= show_expression(post_condition
);
622 printf("\tjne\t\tv%d, .L%d\n", val
, loop_top
);
624 if (stmt
->iterator_break
->used
)
625 printf(".L%p:\n", stmt
->iterator_break
);
627 printf(".L%d:\n", loop_bottom
);
634 printf(".L%p:\n", stmt
->label_identifier
);
635 show_statement(stmt
->label_statement
);
639 if (stmt
->goto_expression
) {
640 int val
= show_expression(stmt
->goto_expression
);
641 printf("\tgoto\t\t*v%d\n", val
);
643 printf("\tgoto\t\t.L%p\n", stmt
->goto_label
->bb_target
);
647 printf("\tasm( .... )\n");
650 int val
= show_expression(stmt
->expression
);
651 printf("\tcontext( %d )\n", val
);
655 int val
= show_expression(stmt
->range_expression
);
656 int low
= show_expression(stmt
->range_low
);
657 int high
= show_expression(stmt
->range_high
);
658 printf("\trange( %d %d-%d)\n", val
, low
, high
);
665 static int show_call_expression(struct expression
*expr
)
667 struct symbol
*direct
;
668 struct expression
*arg
, *fn
;
673 warning(expr
->pos
, "\tcall with no type!");
678 FOR_EACH_PTR_REVERSE(expr
->args
, arg
) {
679 int new = show_expression(arg
);
680 int size
= arg
->ctype
->bit_size
;
681 printf("\tpush.%d\t\tv%d\n", size
, new);
682 framesize
+= bits_to_bytes(size
);
683 } END_FOR_EACH_PTR_REVERSE(arg
);
687 /* Remove dereference, if any */
689 if (fn
->type
== EXPR_PREOP
) {
690 if (fn
->unop
->type
== EXPR_SYMBOL
) {
691 struct symbol
*sym
= fn
->unop
->symbol
;
692 if (sym
->ctype
.base_type
->type
== SYM_FN
)
697 printf("\tcall\t\t%s\n", show_ident(direct
->ident
));
699 fncall
= show_expression(fn
);
700 printf("\tcall\t\t*v%d\n", fncall
);
703 printf("\tadd.%d\t\tvSP,vSP,$%d\n", bits_in_pointer
, framesize
);
705 retval
= new_pseudo();
706 printf("\tmov.%d\t\tv%d,retval\n", expr
->ctype
->bit_size
, retval
);
710 static int show_comma(struct expression
*expr
)
712 show_expression(expr
->left
);
713 return show_expression(expr
->right
);
716 static int show_binop(struct expression
*expr
)
718 int left
= show_expression(expr
->left
);
719 int right
= show_expression(expr
->right
);
720 int new = new_pseudo();
722 static const char *name
[] = {
723 ['+'] = "add", ['-'] = "sub",
724 ['*'] = "mul", ['/'] = "div",
725 ['%'] = "mod", ['&'] = "and",
726 ['|'] = "lor", ['^'] = "xor"
728 unsigned int op
= expr
->op
;
730 opname
= show_special(op
);
731 if (op
< sizeof(name
)/sizeof(*name
))
733 printf("\t%s.%d\t\tv%d,v%d,v%d\n", opname
,
734 expr
->ctype
->bit_size
,
739 static int show_slice(struct expression
*expr
)
741 int target
= show_expression(expr
->base
);
742 int new = new_pseudo();
743 printf("\tslice.%d\t\tv%d,v%d,%d\n", expr
->r_nrbits
, target
, new, expr
->r_bitpos
);
747 static int show_regular_preop(struct expression
*expr
)
749 int target
= show_expression(expr
->unop
);
750 int new = new_pseudo();
751 static const char *name
[] = {
752 ['!'] = "nonzero", ['-'] = "neg",
755 unsigned int op
= expr
->op
;
758 opname
= show_special(op
);
759 if (op
< sizeof(name
)/sizeof(*name
))
761 printf("\t%s.%d\t\tv%d,v%d\n", opname
, expr
->ctype
->bit_size
, new, target
);
766 * FIXME! Not all accesses are memory loads. We should
767 * check what kind of symbol is behind the dereference.
769 static int show_address_gen(struct expression
*expr
)
771 return show_expression(expr
->unop
);
774 static int show_load_gen(int bits
, struct expression
*expr
, int addr
)
776 int new = new_pseudo();
778 printf("\tld.%d\t\tv%d,[v%d]\n", bits
, new, addr
);
782 static void show_store_gen(int bits
, int value
, struct expression
*expr
, int addr
)
784 /* FIXME!!! Bitfield store! */
785 printf("\tst.%d\t\tv%d,[v%d]\n", bits
, value
, addr
);
788 static int show_assignment(struct expression
*expr
)
790 struct expression
*target
= expr
->left
;
796 bits
= expr
->ctype
->bit_size
;
797 val
= show_expression(expr
->right
);
798 addr
= show_address_gen(target
);
799 show_store_gen(bits
, val
, target
, addr
);
803 static int show_return_stmt(struct statement
*stmt
)
805 struct expression
*expr
= stmt
->ret_value
;
806 struct symbol
*target
= stmt
->ret_target
;
808 if (expr
&& expr
->ctype
) {
809 int val
= show_expression(expr
);
810 int bits
= expr
->ctype
->bit_size
;
811 int addr
= show_symbol_expr(target
);
812 show_store_gen(bits
, val
, NULL
, addr
);
814 printf("\tret\t\t(%p)\n", target
);
818 static int show_initialization(struct symbol
*sym
, struct expression
*expr
)
825 bits
= expr
->ctype
->bit_size
;
826 val
= show_expression(expr
);
827 addr
= show_symbol_expr(sym
);
828 // FIXME! The "target" expression is for bitfield store information.
829 // Leave it NULL, which works fine.
830 show_store_gen(bits
, val
, NULL
, addr
);
834 static int show_access(struct expression
*expr
)
836 int addr
= show_address_gen(expr
);
837 return show_load_gen(expr
->ctype
->bit_size
, expr
, addr
);
840 static int show_inc_dec(struct expression
*expr
, int postop
)
842 int addr
= show_address_gen(expr
->unop
);
844 const char *opname
= expr
->op
== SPECIAL_INCREMENT
? "add" : "sub";
845 int bits
= expr
->ctype
->bit_size
;
847 retval
= show_load_gen(bits
, expr
->unop
, addr
);
851 printf("\t%s.%d\t\tv%d,v%d,$1\n", opname
, bits
, new, retval
);
852 show_store_gen(bits
, new, expr
->unop
, addr
);
856 static int show_preop(struct expression
*expr
)
859 * '*' is an lvalue access, and is fundamentally different
860 * from an arithmetic operation. Maybe it should have an
861 * expression type of its own..
864 return show_access(expr
);
865 if (expr
->op
== SPECIAL_INCREMENT
|| expr
->op
== SPECIAL_DECREMENT
)
866 return show_inc_dec(expr
, 0);
867 return show_regular_preop(expr
);
870 static int show_postop(struct expression
*expr
)
872 return show_inc_dec(expr
, 1);
875 static int show_symbol_expr(struct symbol
*sym
)
877 int new = new_pseudo();
879 if (sym
->initializer
&& sym
->initializer
->type
== EXPR_STRING
)
880 return show_string_expr(sym
->initializer
);
882 if (sym
->ctype
.modifiers
& (MOD_TOPLEVEL
| MOD_EXTERN
| MOD_STATIC
)) {
883 printf("\tmovi.%d\t\tv%d,$%s\n", bits_in_pointer
, new, show_ident(sym
->ident
));
886 if (sym
->ctype
.modifiers
& MOD_ADDRESSABLE
) {
887 printf("\taddi.%d\t\tv%d,vFP,$%lld\n", bits_in_pointer
, new, sym
->value
);
890 printf("\taddi.%d\t\tv%d,vFP,$offsetof(%s:%p)\n", bits_in_pointer
, new, show_ident(sym
->ident
), sym
);
894 static int show_symbol_init(struct symbol
*sym
)
896 struct expression
*expr
= sym
->initializer
;
901 bits
= expr
->ctype
->bit_size
;
902 val
= show_expression(expr
);
903 addr
= show_symbol_expr(sym
);
904 show_store_gen(bits
, val
, NULL
, addr
);
909 static int type_is_signed(struct symbol
*sym
)
911 if (sym
->type
== SYM_NODE
)
912 sym
= sym
->ctype
.base_type
;
913 if (sym
->type
== SYM_PTR
)
915 return !(sym
->ctype
.modifiers
& MOD_UNSIGNED
);
918 static int show_cast_expr(struct expression
*expr
)
920 struct symbol
*old_type
, *new_type
;
921 int op
= show_expression(expr
->cast_expression
);
922 int oldbits
, newbits
;
925 old_type
= expr
->cast_expression
->ctype
;
926 new_type
= expr
->cast_type
;
928 oldbits
= old_type
->bit_size
;
929 newbits
= new_type
->bit_size
;
930 if (oldbits
>= newbits
)
933 is_signed
= type_is_signed(old_type
);
935 printf("\tsext%d.%d\tv%d,v%d\n", oldbits
, newbits
, new, op
);
937 printf("\tandl.%d\t\tv%d,v%d,$%lu\n", newbits
, new, op
, (1UL << oldbits
)-1);
942 static int show_value(struct expression
*expr
)
944 int new = new_pseudo();
945 unsigned long long value
= expr
->value
;
947 printf("\tmovi.%d\t\tv%d,$%llu\n", expr
->ctype
->bit_size
, new, value
);
951 static int show_fvalue(struct expression
*expr
)
953 int new = new_pseudo();
954 long double value
= expr
->fvalue
;
956 printf("\tmovf.%d\t\tv%d,$%Lf\n", expr
->ctype
->bit_size
, new, value
);
960 static int show_string_expr(struct expression
*expr
)
962 int new = new_pseudo();
964 printf("\tmovi.%d\t\tv%d,&%s\n", bits_in_pointer
, new, show_string(expr
->string
));
968 static int show_label_expr(struct expression
*expr
)
970 int new = new_pseudo();
971 printf("\tmovi.%d\t\tv%d,.L%p\n",bits_in_pointer
, new, expr
->label_symbol
);
975 static int show_conditional_expr(struct expression
*expr
)
977 int cond
= show_expression(expr
->conditional
);
978 int true = show_expression(expr
->cond_true
);
979 int false = show_expression(expr
->cond_false
);
980 int new = new_pseudo();
982 printf("[v%d]\tcmov.%d\t\tv%d,v%d,v%d\n", cond
, expr
->ctype
->bit_size
, new, true, false);
986 static int show_statement_expr(struct expression
*expr
)
988 return show_statement(expr
->statement
);
991 static int show_position_expr(struct expression
*expr
, struct symbol
*base
)
993 int new = show_expression(expr
->init_expr
);
994 struct symbol
*ctype
= expr
->init_expr
->ctype
;
997 bit_offset
= ctype
? ctype
->bit_offset
: -1;
999 printf("\tinsert v%d at [%d:%d] of %s\n", new,
1000 expr
->init_offset
, bit_offset
,
1001 show_ident(base
->ident
));
1005 static int show_initializer_expr(struct expression
*expr
, struct symbol
*ctype
)
1007 struct expression
*entry
;
1009 FOR_EACH_PTR(expr
->expr_list
, entry
) {
1012 // Nested initializers have their positions already
1013 // recursively calculated - just output them too
1014 if (entry
->type
== EXPR_INITIALIZER
) {
1015 show_initializer_expr(entry
, ctype
);
1019 // Initializer indexes and identifiers should
1020 // have been evaluated to EXPR_POS
1021 if (entry
->type
== EXPR_IDENTIFIER
) {
1022 printf(" AT '%s':\n", show_ident(entry
->expr_ident
));
1023 entry
= entry
->ident_expression
;
1027 if (entry
->type
== EXPR_INDEX
) {
1028 printf(" AT '%d..%d:\n", entry
->idx_from
, entry
->idx_to
);
1029 entry
= entry
->idx_expression
;
1032 if (entry
->type
== EXPR_POS
) {
1033 show_position_expr(entry
, ctype
);
1036 show_initialization(ctype
, entry
);
1037 } END_FOR_EACH_PTR(entry
);
1041 int show_symbol_expr_init(struct symbol
*sym
)
1043 struct expression
*expr
= sym
->initializer
;
1046 show_expression(expr
);
1047 return show_symbol_expr(sym
);
1051 * Print out an expression. Return the pseudo that contains the
1054 int show_expression(struct expression
*expr
)
1060 struct position
*pos
= &expr
->pos
;
1061 printf("\tno type at %s:%d:%d\n",
1062 stream_name(pos
->stream
),
1063 pos
->line
, pos
->pos
);
1067 switch (expr
->type
) {
1069 return show_call_expression(expr
);
1071 case EXPR_ASSIGNMENT
:
1072 return show_assignment(expr
);
1075 return show_comma(expr
);
1079 return show_binop(expr
);
1081 return show_preop(expr
);
1083 return show_postop(expr
);
1085 return show_symbol_expr(expr
->symbol
);
1088 case EXPR_PTRSIZEOF
:
1091 warning(expr
->pos
, "invalid expression after evaluation");
1094 case EXPR_FORCE_CAST
:
1095 case EXPR_IMPLIED_CAST
:
1096 return show_cast_expr(expr
);
1098 return show_value(expr
);
1100 return show_fvalue(expr
);
1102 return show_string_expr(expr
);
1103 case EXPR_INITIALIZER
:
1104 return show_initializer_expr(expr
, expr
->ctype
);
1106 case EXPR_CONDITIONAL
:
1107 return show_conditional_expr(expr
);
1108 case EXPR_STATEMENT
:
1109 return show_statement_expr(expr
);
1111 return show_label_expr(expr
);
1113 return show_slice(expr
);
1115 // None of these should exist as direct expressions: they are only
1116 // valid as sub-expressions of initializers.
1118 warning(expr
->pos
, "unable to show plain initializer position expression");
1120 case EXPR_IDENTIFIER
:
1121 warning(expr
->pos
, "unable to show identifier expression");
1124 warning(expr
->pos
, "unable to show index expression");
1127 warning(expr
->pos
, "unable to show type expression");