1 /* Read and write coverage files, and associated functionality.
2 Copyright (C) 1990, 1991, 1992, 1993, 1994, 1996, 1997, 1998, 1999,
3 2000, 2001, 2003, 2004 Free Software Foundation, Inc.
4 Contributed by James E. Wilson, UC Berkeley/Cygnus Support;
5 based on some ideas from Dain Samples of UC Berkeley.
6 Further mangling by Bob Manson, Cygnus Support.
7 Further mangled by Nathan Sidwell, CodeSourcery
9 This file is part of GCC.
11 GCC is free software; you can redistribute it and/or modify it under
12 the terms of the GNU General Public License as published by the Free
13 Software Foundation; either version 2, or (at your option) any later
16 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
17 WARRANTY; without even the implied warranty of MERCHANTABILITY or
18 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
21 You should have received a copy of the GNU General Public License
22 along with GCC; see the file COPYING. If not, write to the Free
23 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
31 #include "coretypes.h"
45 #include "langhooks.h"
52 struct function_list
*next
; /* next function */
53 unsigned ident
; /* function ident */
54 unsigned checksum
; /* function checksum */
55 unsigned n_ctrs
[GCOV_COUNTERS
];/* number of counters. */
58 /* Counts information for a function. */
59 typedef struct counts_entry
68 struct gcov_ctr_summary summary
;
71 struct counts_entry
*chain
;
75 static struct function_list
*functions_head
= 0;
76 static struct function_list
**functions_tail
= &functions_head
;
77 static unsigned no_coverage
= 0;
79 /* Cumulative counter information for whole program. */
80 static unsigned prg_ctr_mask
; /* Mask of counter types generated. */
81 static unsigned prg_n_ctrs
[GCOV_COUNTERS
]; /* Total counters allocated. */
83 /* Counter information for current function. */
84 static unsigned fn_ctr_mask
; /* Mask of counters used. */
85 static unsigned fn_n_ctrs
[GCOV_COUNTERS
]; /* Counters allocated. */
86 static unsigned fn_b_ctrs
[GCOV_COUNTERS
]; /* Allocation base. */
88 /* Name of the output file for coverage output file. */
89 static char *bbg_file_name
;
90 static unsigned bbg_file_opened
;
91 static int bbg_function_announced
;
93 /* Name of the count data file. */
94 static char *da_file_name
;
96 /* Hash table of count data. */
97 static htab_t counts_hash
= NULL
;
99 /* Trees representing the counter table arrays. */
100 static GTY(()) tree tree_ctr_tables
[GCOV_COUNTERS
];
102 /* The names of the counter tables. Not used if we're
103 generating counters at tree level. */
104 static GTY(()) rtx ctr_labels
[GCOV_COUNTERS
];
106 /* The names of merge functions for counters. */
107 static const char *const ctr_merge_functions
[GCOV_COUNTERS
] = GCOV_MERGE_FUNCTIONS
;
108 static const char *const ctr_names
[GCOV_COUNTERS
] = GCOV_COUNTER_NAMES
;
110 /* Forward declarations. */
111 static hashval_t
htab_counts_entry_hash (const void *);
112 static int htab_counts_entry_eq (const void *, const void *);
113 static void htab_counts_entry_del (void *);
114 static void read_counts_file (void);
115 static unsigned compute_checksum (void);
116 static unsigned coverage_checksum_string (unsigned, const char *);
117 static tree
build_fn_info_type (unsigned);
118 static tree
build_fn_info_value (const struct function_list
*, tree
);
119 static tree
build_ctr_info_type (void);
120 static tree
build_ctr_info_value (unsigned, tree
);
121 static tree
build_gcov_info (void);
122 static void create_coverage (void);
126 htab_counts_entry_hash (const void *of
)
128 const counts_entry_t
*entry
= of
;
130 return entry
->ident
* GCOV_COUNTERS
+ entry
->ctr
;
134 htab_counts_entry_eq (const void *of1
, const void *of2
)
136 const counts_entry_t
*entry1
= of1
;
137 const counts_entry_t
*entry2
= of2
;
139 return entry1
->ident
== entry2
->ident
&& entry1
->ctr
== entry2
->ctr
;
143 htab_counts_entry_del (void *of
)
145 counts_entry_t
*entry
= of
;
147 free (entry
->counts
);
151 /* Read in the counts file, if available. */
154 read_counts_file (void)
156 gcov_unsigned_t fn_ident
= 0;
157 gcov_unsigned_t checksum
= -1;
158 counts_entry_t
*summaried
= NULL
;
159 unsigned seen_summary
= 0;
163 if (!gcov_open (da_file_name
, 1))
166 if (!gcov_magic (gcov_read_unsigned (), GCOV_DATA_MAGIC
))
168 warning ("`%s' is not a gcov data file", da_file_name
);
172 else if ((tag
= gcov_read_unsigned ()) != GCOV_VERSION
)
176 GCOV_UNSIGNED2STRING (v
, tag
);
177 GCOV_UNSIGNED2STRING (e
, GCOV_VERSION
);
179 warning ("`%s' is version `%.*s', expected version `%.*s'",
180 da_file_name
, 4, v
, 4, e
);
185 /* Read and discard the stamp. */
186 gcov_read_unsigned ();
188 counts_hash
= htab_create (10,
189 htab_counts_entry_hash
, htab_counts_entry_eq
,
190 htab_counts_entry_del
);
191 while ((tag
= gcov_read_unsigned ()))
193 gcov_unsigned_t length
;
194 gcov_position_t offset
;
196 length
= gcov_read_unsigned ();
197 offset
= gcov_position ();
198 if (tag
== GCOV_TAG_FUNCTION
)
200 fn_ident
= gcov_read_unsigned ();
201 checksum
= gcov_read_unsigned ();
204 /* We have already seen a summary, this means that this
205 new function begins a new set of program runs. We
206 must unlink the summaried chain. */
207 counts_entry_t
*entry
, *chain
;
209 for (entry
= summaried
; entry
; entry
= chain
)
211 chain
= entry
->chain
;
218 else if (tag
== GCOV_TAG_PROGRAM_SUMMARY
)
220 counts_entry_t
*entry
;
221 struct gcov_summary summary
;
223 gcov_read_summary (&summary
);
225 for (entry
= summaried
; entry
; entry
= entry
->chain
)
227 struct gcov_ctr_summary
*csum
= &summary
.ctrs
[entry
->ctr
];
229 entry
->summary
.runs
+= csum
->runs
;
230 entry
->summary
.sum_all
+= csum
->sum_all
;
231 if (entry
->summary
.run_max
< csum
->run_max
)
232 entry
->summary
.run_max
= csum
->run_max
;
233 entry
->summary
.sum_max
+= csum
->sum_max
;
236 else if (GCOV_TAG_IS_COUNTER (tag
) && fn_ident
)
238 counts_entry_t
**slot
, *entry
, elt
;
239 unsigned n_counts
= GCOV_TAG_COUNTER_NUM (length
);
242 elt
.ident
= fn_ident
;
243 elt
.ctr
= GCOV_COUNTER_FOR_TAG (tag
);
245 slot
= (counts_entry_t
**) htab_find_slot
246 (counts_hash
, &elt
, INSERT
);
250 *slot
= entry
= xcalloc (1, sizeof (counts_entry_t
));
251 entry
->ident
= elt
.ident
;
252 entry
->ctr
= elt
.ctr
;
253 entry
->checksum
= checksum
;
254 entry
->summary
.num
= n_counts
;
255 entry
->counts
= xcalloc (n_counts
, sizeof (gcov_type
));
257 else if (entry
->checksum
!= checksum
)
259 error ("coverage mismatch for function %u while reading execution counters.",
261 error ("checksum is %x instead of %x", entry
->checksum
, checksum
);
262 htab_delete (counts_hash
);
265 else if (entry
->summary
.num
!= n_counts
)
267 error ("coverage mismatch for function %u while reading execution counters.",
269 error ("number of counters is %d instead of %d", entry
->summary
.num
, n_counts
);
270 htab_delete (counts_hash
);
273 else if (elt
.ctr
>= GCOV_COUNTERS_SUMMABLE
)
275 error ("cannot merge separate %s counters for function %u",
276 ctr_names
[elt
.ctr
], fn_ident
);
280 if (elt
.ctr
< GCOV_COUNTERS_SUMMABLE
281 /* This should always be true for a just allocated entry,
282 and always false for an existing one. Check this way, in
283 case the gcov file is corrupt. */
284 && (!entry
->chain
|| summaried
!= entry
))
286 entry
->chain
= summaried
;
289 for (ix
= 0; ix
!= n_counts
; ix
++)
290 entry
->counts
[ix
] += gcov_read_counter ();
293 gcov_sync (offset
, length
);
294 if ((is_error
= gcov_is_error ()))
300 error (is_error
< 0 ? "`%s' has overflowed" : "`%s' is corrupted",
302 htab_delete (counts_hash
);
308 /* Returns the counters for a particular tag. */
311 get_coverage_counts (unsigned counter
, unsigned expected
,
312 const struct gcov_ctr_summary
**summary
)
314 counts_entry_t
*entry
, elt
;
315 gcov_unsigned_t checksum
= -1;
317 /* No hash table, no counts. */
320 static int warned
= 0;
323 inform ((flag_guess_branch_prob
324 ? "file %s not found, execution counts estimated"
325 : "file %s not found, execution counts assumed to be zero"),
330 elt
.ident
= current_function_funcdef_no
+ 1;
332 entry
= htab_find (counts_hash
, &elt
);
335 warning ("no coverage for function '%s' found.", IDENTIFIER_POINTER
336 (DECL_ASSEMBLER_NAME (current_function_decl
)));
340 checksum
= compute_checksum ();
341 if (entry
->checksum
!= checksum
)
343 error ("coverage mismatch for function '%s' while reading counter '%s'.",
344 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl
)),
346 error ("checksum is %x instead of %x", entry
->checksum
, checksum
);
349 else if (entry
->summary
.num
!= expected
)
351 error ("coverage mismatch for function '%s' while reading counter '%s'.",
352 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl
)),
354 error ("number of counters is %d instead of %d", entry
->summary
.num
, expected
);
359 *summary
= &entry
->summary
;
361 return entry
->counts
;
364 /* Allocate NUM counters of type COUNTER. Returns nonzero if the
365 allocation succeeded. */
368 coverage_counter_alloc (unsigned counter
, unsigned num
)
376 if (!tree_ctr_tables
[counter
])
378 /* Generate and save a copy of this so it can be shared. */
379 /* We don't know the size yet; make it big enough that nobody
380 will make any clever transformation on it. */
383 = build_index_type (build_int_2 (1000, 0)); /* replaced later */
384 tree gcov_type_array_type
385 = build_array_type (GCOV_TYPE_NODE
, domain_tree
);
386 tree_ctr_tables
[counter
]
387 = build_decl (VAR_DECL
, NULL_TREE
, gcov_type_array_type
);
388 TREE_STATIC (tree_ctr_tables
[counter
]) = 1;
389 ASM_GENERATE_INTERNAL_LABEL (buf
, "LPBX", counter
+ 1);
390 DECL_NAME (tree_ctr_tables
[counter
]) = get_identifier (buf
);
391 DECL_ALIGN (tree_ctr_tables
[counter
]) = TYPE_ALIGN (GCOV_TYPE_NODE
);
393 fn_b_ctrs
[counter
] = fn_n_ctrs
[counter
];
394 fn_n_ctrs
[counter
] += num
;
395 fn_ctr_mask
|= 1 << counter
;
399 /* Generate a MEM rtl to access COUNTER NO. */
402 rtl_coverage_counter_ref (unsigned counter
, unsigned no
)
404 unsigned gcov_size
= tree_low_cst (TYPE_SIZE (GCOV_TYPE_NODE
), 1);
405 enum machine_mode mode
= mode_for_size (gcov_size
, MODE_INT
, 0);
408 if (no
>= fn_n_ctrs
[counter
] - fn_b_ctrs
[counter
])
410 no
+= prg_n_ctrs
[counter
] + fn_b_ctrs
[counter
];
411 if (!ctr_labels
[counter
])
413 ctr_labels
[counter
] = gen_rtx_SYMBOL_REF (Pmode
,
414 ggc_strdup (IDENTIFIER_POINTER (DECL_NAME
415 (tree_ctr_tables
[counter
]))));
416 SYMBOL_REF_FLAGS (ctr_labels
[counter
]) = SYMBOL_FLAG_LOCAL
;
418 ref
= plus_constant (ctr_labels
[counter
], gcov_size
/ BITS_PER_UNIT
* no
);
419 ref
= gen_rtx_MEM (mode
, ref
);
420 set_mem_alias_set (ref
, new_alias_set ());
421 MEM_NOTRAP_P (ref
) = 1;
426 /* Generate a tree to access COUNTER NO. */
429 tree_coverage_counter_ref (unsigned counter
, unsigned no
)
433 if (no
>= fn_n_ctrs
[counter
] - fn_b_ctrs
[counter
])
435 no
+= prg_n_ctrs
[counter
] + fn_b_ctrs
[counter
];
437 /* "no" here is an array index, scaled to bytes later. */
438 t
= build (ARRAY_REF
, GCOV_TYPE_NODE
, tree_ctr_tables
[counter
],
439 build_int_2 (no
, 0));
443 /* Generate a checksum for a string. CHKSUM is the current
447 coverage_checksum_string (unsigned chksum
, const char *string
)
452 /* Look for everything that looks if it were produced by
453 get_file_function_name_long and zero out the second part
454 that may result from flag_random_seed. This is not critical
455 as the checksums are used only for sanity checking. */
456 for (i
= 0; string
[i
]; i
++)
458 if (!strncmp (string
+ i
, "_GLOBAL__", 9))
459 for (i
= i
+ 9; string
[i
]; i
++)
465 for (y
= 1; y
< 9; y
++)
466 if (!(string
[i
+ y
] >= '0' && string
[i
+ y
] <= '9')
467 && !(string
[i
+ y
] >= 'A' && string
[i
+ y
] <= 'F'))
469 if (y
!= 9 || string
[i
+ 9] != '_')
471 for (y
= 10; y
< 18; y
++)
472 if (!(string
[i
+ y
] >= '0' && string
[i
+ y
] <= '9')
473 && !(string
[i
+ y
] >= 'A' && string
[i
+ y
] <= 'F'))
477 if (!sscanf (string
+ i
+ 10, "%X", &seed
))
479 if (seed
!= crc32_string (0, flag_random_seed
))
481 string
= dup
= xstrdup (string
);
482 for (y
= 10; y
< 18; y
++)
489 chksum
= crc32_string (chksum
, string
);
496 /* Compute checksum for the current function. We generate a CRC32. */
499 compute_checksum (void)
501 unsigned chksum
= DECL_SOURCE_LINE (current_function_decl
);
503 chksum
= coverage_checksum_string (chksum
,
504 DECL_SOURCE_FILE (current_function_decl
));
505 chksum
= coverage_checksum_string
506 (chksum
, IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl
)));
511 /* Begin output to the graph file for the current function.
512 Opens the output file, if not already done. Writes the
513 function header, if not already done. Returns nonzero if data
517 coverage_begin_output (void)
522 if (!bbg_function_announced
)
524 const char *file
= DECL_SOURCE_FILE (current_function_decl
);
525 unsigned line
= DECL_SOURCE_LINE (current_function_decl
);
526 unsigned long offset
;
528 if (!bbg_file_opened
)
530 if (!gcov_open (bbg_file_name
, -1))
531 error ("cannot open %s", bbg_file_name
);
534 gcov_write_unsigned (GCOV_NOTE_MAGIC
);
535 gcov_write_unsigned (GCOV_VERSION
);
536 gcov_write_unsigned (local_tick
);
541 /* Announce function */
542 offset
= gcov_write_tag (GCOV_TAG_FUNCTION
);
543 gcov_write_unsigned (current_function_funcdef_no
+ 1);
544 gcov_write_unsigned (compute_checksum ());
545 gcov_write_string (IDENTIFIER_POINTER
546 (DECL_ASSEMBLER_NAME (current_function_decl
)));
547 gcov_write_string (file
);
548 gcov_write_unsigned (line
);
549 gcov_write_length (offset
);
551 bbg_function_announced
= 1;
553 return !gcov_is_error ();
556 /* Finish coverage data for the current function. Verify no output
557 error has occurred. Save function coverage counts. */
560 coverage_end_function (void)
564 if (bbg_file_opened
> 1 && gcov_is_error ())
566 warning ("error writing `%s'", bbg_file_name
);
567 bbg_file_opened
= -1;
572 struct function_list
*item
;
574 item
= xmalloc (sizeof (struct function_list
));
576 *functions_tail
= item
;
577 functions_tail
= &item
->next
;
580 item
->ident
= current_function_funcdef_no
+ 1;
581 item
->checksum
= compute_checksum ();
582 for (i
= 0; i
!= GCOV_COUNTERS
; i
++)
584 item
->n_ctrs
[i
] = fn_n_ctrs
[i
];
585 prg_n_ctrs
[i
] += fn_n_ctrs
[i
];
586 fn_n_ctrs
[i
] = fn_b_ctrs
[i
] = 0;
588 prg_ctr_mask
|= fn_ctr_mask
;
591 bbg_function_announced
= 0;
594 /* Creates the gcov_fn_info RECORD_TYPE. */
597 build_fn_info_type (unsigned int counters
)
599 tree type
= lang_hooks
.types
.make_type (RECORD_TYPE
);
604 fields
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_intSI_type_node
);
607 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_intSI_type_node
);
608 TREE_CHAIN (field
) = fields
;
611 array_type
= build_index_type (build_int_2 (counters
- 1, 0));
612 array_type
= build_array_type (unsigned_type_node
, array_type
);
615 field
= build_decl (FIELD_DECL
, NULL_TREE
, array_type
);
616 TREE_CHAIN (field
) = fields
;
619 finish_builtin_struct (type
, "__gcov_fn_info", fields
, NULL_TREE
);
624 /* Creates a CONSTRUCTOR for a gcov_fn_info. FUNCTION is
625 the function being processed and TYPE is the gcov_fn_info
629 build_fn_info_value (const struct function_list
*function
, tree type
)
631 tree value
= NULL_TREE
;
632 tree fields
= TYPE_FIELDS (type
);
634 tree array_value
= NULL_TREE
;
637 value
= tree_cons (fields
,
638 convert (unsigned_intSI_type_node
,
639 build_int_2 (function
->ident
, 0)),
641 fields
= TREE_CHAIN (fields
);
644 value
= tree_cons (fields
,
645 convert (unsigned_intSI_type_node
,
646 build_int_2 (function
->checksum
, 0)),
648 fields
= TREE_CHAIN (fields
);
651 for (ix
= 0; ix
!= GCOV_COUNTERS
; ix
++)
652 if (prg_ctr_mask
& (1 << ix
))
654 tree counters
= convert (unsigned_type_node
,
655 build_int_2 (function
->n_ctrs
[ix
], 0));
657 array_value
= tree_cons (NULL_TREE
, counters
, array_value
);
660 array_value
= build_constructor (TREE_TYPE (fields
), nreverse (array_value
));
661 value
= tree_cons (fields
, array_value
, value
);
663 value
= build_constructor (type
, nreverse (value
));
668 /* Creates the gcov_ctr_info RECORD_TYPE. */
671 build_ctr_info_type (void)
673 tree type
= lang_hooks
.types
.make_type (RECORD_TYPE
);
674 tree field
, fields
= NULL_TREE
;
675 tree gcov_ptr_type
= build_pointer_type (GCOV_TYPE_NODE
);
676 tree gcov_merge_fn_type
;
679 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_intSI_type_node
);
680 TREE_CHAIN (field
) = fields
;
684 field
= build_decl (FIELD_DECL
, NULL_TREE
, gcov_ptr_type
);
685 TREE_CHAIN (field
) = fields
;
690 build_function_type_list (void_type_node
,
691 gcov_ptr_type
, unsigned_type_node
,
693 field
= build_decl (FIELD_DECL
, NULL_TREE
,
694 build_pointer_type (gcov_merge_fn_type
));
695 TREE_CHAIN (field
) = fields
;
698 finish_builtin_struct (type
, "__gcov_ctr_info", fields
, NULL_TREE
);
703 /* Creates a CONSTRUCTOR for a gcov_ctr_info. COUNTER is
704 the counter being processed and TYPE is the gcov_ctr_info
708 build_ctr_info_value (unsigned int counter
, tree type
)
710 tree value
= NULL_TREE
;
711 tree fields
= TYPE_FIELDS (type
);
715 value
= tree_cons (fields
,
716 convert (unsigned_intSI_type_node
,
717 build_int_2 (prg_n_ctrs
[counter
], 0)),
719 fields
= TREE_CHAIN (fields
);
721 if (prg_n_ctrs
[counter
])
725 array_type
= build_index_type (build_int_2 (prg_n_ctrs
[counter
] - 1, 0));
726 array_type
= build_array_type (TREE_TYPE (TREE_TYPE (fields
)),
729 TREE_TYPE (tree_ctr_tables
[counter
]) = array_type
;
730 DECL_SIZE (tree_ctr_tables
[counter
]) = TYPE_SIZE (array_type
);
731 DECL_SIZE_UNIT (tree_ctr_tables
[counter
]) = TYPE_SIZE_UNIT (array_type
);
732 assemble_variable (tree_ctr_tables
[counter
], 0, 0, 0);
734 value
= tree_cons (fields
,
735 build1 (ADDR_EXPR
, TREE_TYPE (fields
),
736 tree_ctr_tables
[counter
]),
740 value
= tree_cons (fields
, null_pointer_node
, value
);
741 fields
= TREE_CHAIN (fields
);
743 fn
= build_decl (FUNCTION_DECL
,
744 get_identifier (ctr_merge_functions
[counter
]),
745 TREE_TYPE (TREE_TYPE (fields
)));
746 DECL_EXTERNAL (fn
) = 1;
747 TREE_PUBLIC (fn
) = 1;
748 DECL_ARTIFICIAL (fn
) = 1;
749 TREE_NOTHROW (fn
) = 1;
750 value
= tree_cons (fields
,
751 build1 (ADDR_EXPR
, TREE_TYPE (fields
), fn
),
754 value
= build_constructor (type
, nreverse (value
));
759 /* Creates the gcov_info RECORD_TYPE and initializer for it. Returns a
763 build_gcov_info (void)
765 unsigned n_ctr_types
, ix
;
766 tree type
, const_type
;
767 tree fn_info_type
, fn_info_value
= NULL_TREE
;
768 tree fn_info_ptr_type
;
769 tree ctr_info_type
, ctr_info_ary_type
, ctr_info_value
= NULL_TREE
;
770 tree field
, fields
= NULL_TREE
;
771 tree value
= NULL_TREE
;
772 tree filename_string
;
776 const struct function_list
*fn
;
779 /* Count the number of active counters. */
780 for (n_ctr_types
= 0, ix
= 0; ix
!= GCOV_COUNTERS
; ix
++)
781 if (prg_ctr_mask
& (1 << ix
))
784 type
= lang_hooks
.types
.make_type (RECORD_TYPE
);
785 const_type
= build_qualified_type (type
, TYPE_QUAL_CONST
);
788 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_intSI_type_node
);
789 TREE_CHAIN (field
) = fields
;
791 value
= tree_cons (field
, convert (unsigned_intSI_type_node
,
792 build_int_2 (GCOV_VERSION
, 0)),
796 field
= build_decl (FIELD_DECL
, NULL_TREE
, build_pointer_type (const_type
));
797 TREE_CHAIN (field
) = fields
;
799 value
= tree_cons (field
, null_pointer_node
, value
);
802 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_intSI_type_node
);
803 TREE_CHAIN (field
) = fields
;
805 value
= tree_cons (field
, convert (unsigned_intSI_type_node
,
806 build_int_2 (local_tick
, 0)),
810 string_type
= build_pointer_type (build_qualified_type (char_type_node
,
812 field
= build_decl (FIELD_DECL
, NULL_TREE
, string_type
);
813 TREE_CHAIN (field
) = fields
;
815 filename
= getpwd ();
816 filename
= (filename
&& da_file_name
[0] != '/'
817 ? concat (filename
, "/", da_file_name
, NULL
)
819 filename_len
= strlen (filename
);
820 filename_string
= build_string (filename_len
+ 1, filename
);
821 if (filename
!= da_file_name
)
823 TREE_TYPE (filename_string
) =
824 build_array_type (char_type_node
,
825 build_index_type (build_int_2 (filename_len
, 0)));
826 value
= tree_cons (field
, build1 (ADDR_EXPR
, string_type
, filename_string
),
829 /* Build the fn_info type and initializer. */
830 fn_info_type
= build_fn_info_type (n_ctr_types
);
831 fn_info_ptr_type
= build_pointer_type (build_qualified_type
832 (fn_info_type
, TYPE_QUAL_CONST
));
833 for (fn
= functions_head
, n_fns
= 0; fn
; fn
= fn
->next
, n_fns
++)
834 fn_info_value
= tree_cons (NULL_TREE
,
835 build_fn_info_value (fn
, fn_info_type
),
841 array_type
= build_index_type (build_int_2 (n_fns
- 1, 0));
842 array_type
= build_array_type (fn_info_type
, array_type
);
844 fn_info_value
= build_constructor (array_type
, nreverse (fn_info_value
));
845 fn_info_value
= build1 (ADDR_EXPR
, fn_info_ptr_type
, fn_info_value
);
848 fn_info_value
= null_pointer_node
;
850 /* number of functions */
851 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_type_node
);
852 TREE_CHAIN (field
) = fields
;
854 value
= tree_cons (field
,
855 convert (unsigned_type_node
, build_int_2 (n_fns
, 0)),
859 field
= build_decl (FIELD_DECL
, NULL_TREE
, fn_info_ptr_type
);
860 TREE_CHAIN (field
) = fields
;
862 value
= tree_cons (field
, fn_info_value
, value
);
865 field
= build_decl (FIELD_DECL
, NULL_TREE
, unsigned_type_node
);
866 TREE_CHAIN (field
) = fields
;
868 value
= tree_cons (field
,
869 convert (unsigned_type_node
,
870 build_int_2 (prg_ctr_mask
, 0)),
874 ctr_info_type
= build_ctr_info_type ();
875 ctr_info_ary_type
= build_index_type (build_int_2 (n_ctr_types
, 0));
876 ctr_info_ary_type
= build_array_type (ctr_info_type
, ctr_info_ary_type
);
877 for (ix
= 0; ix
!= GCOV_COUNTERS
; ix
++)
878 if (prg_ctr_mask
& (1 << ix
))
879 ctr_info_value
= tree_cons (NULL_TREE
,
880 build_ctr_info_value (ix
, ctr_info_type
),
882 ctr_info_value
= build_constructor (ctr_info_ary_type
,
883 nreverse (ctr_info_value
));
885 field
= build_decl (FIELD_DECL
, NULL_TREE
, ctr_info_ary_type
);
886 TREE_CHAIN (field
) = fields
;
888 value
= tree_cons (field
, ctr_info_value
, value
);
890 finish_builtin_struct (type
, "__gcov_info", fields
, NULL_TREE
);
892 value
= build_constructor (type
, nreverse (value
));
897 /* Write out the structure which libgcov uses to locate all the
898 counters. The structures used here must match those defined in
899 gcov-io.h. Write out the constructor to call __gcov_init. */
902 create_coverage (void)
904 tree gcov_info
, gcov_info_value
;
908 rtx gcov_info_address
;
910 no_coverage
= 1; /* Disable any further coverage. */
915 gcov_info_value
= build_gcov_info ();
917 gcov_info
= build_decl (VAR_DECL
, NULL_TREE
, TREE_TYPE (gcov_info_value
));
918 DECL_INITIAL (gcov_info
) = gcov_info_value
;
920 TREE_STATIC (gcov_info
) = 1;
921 ASM_GENERATE_INTERNAL_LABEL (name
, "LPBX", 0);
922 DECL_NAME (gcov_info
) = get_identifier (name
);
924 /* Build structure. */
925 assemble_variable (gcov_info
, 0, 0, 0);
927 /* Build the constructor function to invoke __gcov_init. */
928 ctor_name
= concat (IDENTIFIER_POINTER (get_file_function_name ('I')),
930 ctor
= build_decl (FUNCTION_DECL
, get_identifier (ctor_name
),
931 build_function_type (void_type_node
, NULL_TREE
));
933 DECL_EXTERNAL (ctor
) = 0;
935 /* It can be a static function as long as collect2 does not have
936 to scan the object file to find its ctor/dtor routine. */
937 TREE_PUBLIC (ctor
) = ! targetm
.have_ctors_dtors
;
938 TREE_USED (ctor
) = 1;
939 DECL_RESULT (ctor
) = build_decl (RESULT_DECL
, NULL_TREE
, void_type_node
);
940 DECL_UNINLINABLE (ctor
) = 1;
942 rest_of_decl_compilation (ctor
, 0, 1, 0);
943 announce_function (ctor
);
944 current_function_decl
= ctor
;
945 make_decl_rtl (ctor
, NULL
);
946 init_function_start (ctor
);
947 expand_function_start (ctor
, 0);
948 /* Actually generate the code to call __gcov_init. */
949 gcov_info_address
= force_reg (Pmode
, XEXP (DECL_RTL (gcov_info
), 0));
950 emit_library_call (gcov_init_libfunc
, LCT_NORMAL
, VOIDmode
, 1,
951 gcov_info_address
, Pmode
);
953 expand_function_end ();
954 /* Create a dummy BLOCK. */
955 DECL_INITIAL (ctor
) = make_node (BLOCK
);
956 TREE_USED (DECL_INITIAL (ctor
)) = 1;
958 rest_of_compilation ();
961 fflush (asm_out_file
);
962 current_function_decl
= NULL_TREE
;
964 if (targetm
.have_ctors_dtors
)
965 targetm
.asm_out
.constructor (XEXP (DECL_RTL (ctor
), 0),
966 DEFAULT_INIT_PRIORITY
);
969 /* Perform file-level initialization. Read in data file, generate name
973 coverage_init (const char *filename
)
975 int len
= strlen (filename
);
977 /* Name of da file. */
978 da_file_name
= xmalloc (len
+ strlen (GCOV_DATA_SUFFIX
) + 1);
979 strcpy (da_file_name
, filename
);
980 strcat (da_file_name
, GCOV_DATA_SUFFIX
);
982 /* Name of bbg file. */
983 bbg_file_name
= xmalloc (len
+ strlen (GCOV_NOTE_SUFFIX
) + 1);
984 strcpy (bbg_file_name
, filename
);
985 strcat (bbg_file_name
, GCOV_NOTE_SUFFIX
);
990 /* Performs file-level cleanup. Close graph file, generate coverage
991 variables and constructor. */
994 coverage_finish (void)
999 int error
= gcov_close ();
1002 unlink (bbg_file_name
);
1004 /* Only remove the da file, if we cannot stamp it. If we can
1005 stamp it, libgcov will DTRT. */
1006 unlink (da_file_name
);
1010 #include "gt-coverage.h"