binutils-gdb/gdb/ada-valprint.c

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/* Support for printing Ada values for GDB, the GNU debugger.
2007-01-10 01:59:20 +08:00
Copyright (C) 1986, 1988, 1989, 1991, 1992, 1993, 1994, 1997, 2001, 2002,
2003, 2004, 2005, 2006, 2007, 2008 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
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This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
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#include <ctype.h>
#include "defs.h"
#include "gdb_string.h"
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#include "symtab.h"
#include "gdbtypes.h"
#include "expression.h"
#include "value.h"
#include "demangle.h"
#include "valprint.h"
#include "language.h"
#include "annotate.h"
#include "ada-lang.h"
#include "c-lang.h"
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#include "infcall.h"
#include "exceptions.h"
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/* Encapsulates arguments to ada_val_print. */
struct ada_val_print_args
{
struct type *type;
const gdb_byte *valaddr0;
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int embedded_offset;
CORE_ADDR address;
struct ui_file *stream;
int format;
int deref_ref;
int recurse;
enum val_prettyprint pretty;
};
static void print_record (struct type *, const gdb_byte *, struct ui_file *,
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int, int, enum val_prettyprint);
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static int print_field_values (struct type *, const gdb_byte *,
struct ui_file *, int, int,
enum val_prettyprint, int, struct type *,
const gdb_byte *);
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static void adjust_type_signedness (struct type *);
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static int ada_val_print_stub (void *args0);
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static int ada_val_print_1 (struct type *, const gdb_byte *, int, CORE_ADDR,
struct ui_file *, int, int, int,
enum val_prettyprint);
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/* Make TYPE unsigned if its range of values includes no negatives. */
static void
adjust_type_signedness (struct type *type)
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{
if (type != NULL && TYPE_CODE (type) == TYPE_CODE_RANGE
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&& TYPE_LOW_BOUND (type) >= 0)
gdb: * xml-tdesc.c (tdesc_end_union): Update. * stabsread.c (define_symbol): Update. (read_type): Update. (read_struct_type): Update. (read_enum_type): Update. * spu-tdep.c (spu_builtin_type_vec128): Update. * sh-tdep.c (sh_push_dummy_call_fpu): Update. (sh_push_dummy_call_nofpu): Update. * mdebugread.c (parse_symbol): Update. (parse_symbol): Update. (parse_symbol): Update. (upgrade_type): Update. * jv-lang.c (java_lookup_class): Update. * iq2000-tdep.c (iq2000_pointer_to_address): Update. * i386-tdep.c (i386_mmx_type): Update. (i386_sse_type): Update. * gdbtypes.h (enum type_flag_value): New enum. (enum type_instance_flag_value): New enum. (TYPE_FLAG_UNSIGNED, TYPE_FLAG_NOSIGN, TYPE_FLAG_STUB, TYPE_FLAG_TARGET_STUB, TYPE_FLAG_STATIC, TYPE_FLAG_PROTOTYPED, TYPE_FLAG_INCOMPLETE, TYPE_FLAG_VARARGS, TYPE_FLAG_VECTOR, TYPE_FLAG_FIXED_INSTANCE, TYPE_FLAG_STUB_SUPPORTED, TYPE_FLAG_NOTTEXT): Now enum constants. (TYPE_FLAG_CONST, TYPE_FLAG_VOLATILE, TYPE_FLAG_CODE_SPACE, TYPE_FLAG_DATA_SPACE, TYPE_FLAG_ADDRESS_CLASS_1, TYPE_FLAG_ADDRESS_CLASS_2): Remove. (TYPE_INSTANCE_FLAG_CONST, TYPE_INSTANCE_FLAG_VOLATILE, TYPE_INSTANCE_FLAG_CODE_SPACE, TYPE_INSTANCE_FLAG_DATA_SPACE, TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1, TYPE_INSTANCE_FLAG_ADDRESS_CLASS_2): New constants. (TYPE_UNSIGNED, TYPE_NOSIGN, TYPE_STUB, TYPE_TARGET_STUB, TYPE_STATIC, TYPE_PROTOTYPED, TYPE_INCOMPLETE, TYPE_VARARGS, TYPE_VECTOR, TYPE_FIXED_INSTANCE, TYPE_STUB_SUPPORTED, TYPE_NOTTEXT): Update. (TYPE_FLAG_ADDRESS_CLASS_ALL): Remove. (TYPE_INSTANCE_FLAG_ADDRESS_CLASS_ALL): New define. (TYPE_VOLATILE, TYPE_CODE_SPACE, TYPE_DATA_SPACE, TYPE_ADDRESS_CLASS_1, TYPE_ADDRESS_CLASS_2, TYPE_ADDRESS_CLASS_ALL): Update. (struct main_type) <flags>: Remove. <flag_unsigned, flag_nosign, flag_stub, flag_target_stub, flag_static, flag_prototyped, flag_incomplete, flag_varargs, flag_vector, flag_stub_supported, flag_nottext, flag_fixed_instance>: New fields. <nfields, vptr_fieldno>: Move earlier. (TYPE_FLAGS): Remove. * gdbtypes.c (make_pointer_type): Update. (address_space_name_to_int): Update. (address_space_int_to_name): Update. (make_type_with_address_space): Update. (make_cv_type): Update. (create_range_type): Update. (get_discrete_bounds): Update. (create_set_type): Update. (make_vector_type): Update. (smash_to_method_type): Update. (check_typedef): Update. (check_stub_method): Update. (init_type): Individually assign flag fields. (recursive_dump_type): Don't print entire TYPE_FLAGS field. Do print TYPE_FIXED_INSTANCE, TYPE_STUB_SUPPORTED, and TYPE_NOTTEXT. (copy_type_recursive): Copy the entire main type. Don't use TYPE_FLAGS. * features/rs6000/powerpc-altivec64l.c (initialize_tdesc_powerpc_altivec64l): Update. * features/rs6000/powerpc-altivec64.c (initialize_tdesc_powerpc_altivec64): Update. * features/rs6000/powerpc-altivec32l.c (initialize_tdesc_powerpc_altivec32l): Update. * features/rs6000/powerpc-altivec32.c (initialize_tdesc_powerpc_altivec32): Update. * features/rs6000/powerpc-7400.c (initialize_tdesc_powerpc_7400): Update. * features/arm-with-iwmmxt.c (initialize_tdesc_arm_with_iwmmxt): Update. * dwarf2read.c (read_structure_type): Update. (read_enumeration_type): Likewise. (process_enumeration_scope): Likewise. (read_tag_pointer_type): Likewise. (read_subroutine_type): Likewise. (read_subroutine_type): Likewise. (read_base_type): Likewise. * coffread.c (coff_read_enum_type): Update. * ada-valprint.c (adjust_type_signedness): Update. * ada-typeprint.c (print_record_field_types): Update. * ada-lang.c (packed_array_type): Update. (empty_record): Don't reset TYPE_FLAGS. (ada_template_to_fixed_record_type_1): Update. (ada_template_to_fixed_record_type_1): Likewise. (template_to_static_fixed_type): Likewise. (to_record_with_fixed_variant_part): Likewise. (to_fixed_record_type): Likewise. (to_fixed_array_type): Likewise. (to_static_fixed_type): Likewise. gdb/testsuite: * gdb.base/maint.exp: Update "maint print type".
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TYPE_UNSIGNED (type) = 1;
}
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/* Assuming TYPE is a simple array type, prints its lower bound on STREAM,
if non-standard (i.e., other than 1 for numbers, other than lower bound
of index type for enumerated type). Returns 1 if something printed,
otherwise 0. */
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static int
print_optional_low_bound (struct ui_file *stream, struct type *type)
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{
struct type *index_type;
long low_bound;
long high_bound;
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2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
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if (print_array_indexes_p ())
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return 0;
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
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if (!get_array_bounds (type, &low_bound, &high_bound))
return 0;
/* If this is an empty array, then don't print the lower bound.
That would be confusing, because we would print the lower bound,
followed by... nothing! */
if (low_bound > high_bound)
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return 0;
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
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index_type = TYPE_INDEX_TYPE (type);
if (TYPE_CODE (index_type) == TYPE_CODE_RANGE)
{
/* We need to know what the base type is, in order to do the
appropriate check below. Otherwise, if this is a subrange
of an enumerated type, where the underlying value of the
first element is typically 0, we might test the low bound
against the wrong value. */
index_type = TYPE_TARGET_TYPE (index_type);
}
switch (TYPE_CODE (index_type))
{
case TYPE_CODE_BOOL:
if (low_bound == 0)
return 0;
break;
case TYPE_CODE_ENUM:
if (low_bound == TYPE_FIELD_BITPOS (index_type, 0))
return 0;
break;
case TYPE_CODE_UNDEF:
index_type = builtin_type_long;
/* FALL THROUGH */
default:
if (low_bound == 1)
return 0;
break;
}
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ada_print_scalar (index_type, (LONGEST) low_bound, stream);
fprintf_filtered (stream, " => ");
return 1;
}
/* Version of val_print_array_elements for GNAT-style packed arrays.
Prints elements of packed array of type TYPE at bit offset
BITOFFSET from VALADDR on STREAM. Formats according to FORMAT and
separates with commas. RECURSE is the recursion (nesting) level.
If PRETTY, uses "prettier" format. TYPE must have been decoded (as
by ada_coerce_to_simple_array). */
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static void
val_print_packed_array_elements (struct type *type, const gdb_byte *valaddr,
int bitoffset, struct ui_file *stream,
int format, int recurse,
enum val_prettyprint pretty)
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{
unsigned int i;
unsigned int things_printed = 0;
unsigned len;
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
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struct type *elttype, *index_type;
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unsigned eltlen;
unsigned long bitsize = TYPE_FIELD_BITSIZE (type, 0);
struct value *mark = value_mark ();
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
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LONGEST low = 0;
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elttype = TYPE_TARGET_TYPE (type);
eltlen = TYPE_LENGTH (check_typedef (elttype));
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
2005-10-04 05:21:20 +08:00
index_type = TYPE_INDEX_TYPE (type);
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{
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
2005-10-04 05:21:20 +08:00
LONGEST high;
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if (get_discrete_bounds (TYPE_FIELD_TYPE (type, 0), &low, &high) < 0)
len = 1;
else
len = high - low + 1;
}
i = 0;
annotate_array_section_begin (i, elttype);
while (i < len && things_printed < print_max)
{
struct value *v0, *v1;
int i0;
if (i != 0)
{
if (prettyprint_arrays)
{
fprintf_filtered (stream, ",\n");
print_spaces_filtered (2 + 2 * recurse, stream);
}
else
{
fprintf_filtered (stream, ", ");
}
}
wrap_here (n_spaces (2 + 2 * recurse));
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
2005-10-04 05:21:20 +08:00
maybe_print_array_index (index_type, i + low, stream, format, pretty);
2002-06-04 23:28:49 +08:00
i0 = i;
v0 = ada_value_primitive_packed_val (NULL, valaddr,
2002-06-04 23:28:49 +08:00
(i0 * bitsize) / HOST_CHAR_BIT,
(i0 * bitsize) % HOST_CHAR_BIT,
bitsize, elttype);
while (1)
{
i += 1;
if (i >= len)
break;
v1 = ada_value_primitive_packed_val (NULL, valaddr,
2002-06-04 23:28:49 +08:00
(i * bitsize) / HOST_CHAR_BIT,
(i * bitsize) % HOST_CHAR_BIT,
bitsize, elttype);
if (memcmp (value_contents (v0), value_contents (v1), eltlen) != 0)
2002-06-04 23:28:49 +08:00
break;
}
if (i - i0 > repeat_count_threshold)
{
val_print (elttype, value_contents (v0), 0, 0, stream, format,
0, recurse + 1, pretty, current_language);
2002-06-04 23:28:49 +08:00
annotate_elt_rep (i - i0);
fprintf_filtered (stream, _(" <repeats %u times>"), i - i0);
2002-06-04 23:28:49 +08:00
annotate_elt_rep_end ();
}
else
{
int j;
for (j = i0; j < i; j += 1)
{
if (j > i0)
2002-06-04 23:28:49 +08:00
{
if (prettyprint_arrays)
{
fprintf_filtered (stream, ",\n");
print_spaces_filtered (2 + 2 * recurse, stream);
}
else
{
fprintf_filtered (stream, ", ");
}
wrap_here (n_spaces (2 + 2 * recurse));
2005-10-03 Joel Brobecker <brobecker@adacore.com> * language.h (language_defn): New field la_print_array_index. (LA_PRINT_ARRAY_INDEX): New macro. (default_print_array_index): Add declaration. * language.c (default_print_array_index): new function. (unknown_language): Add value for new field. (auto_language): Likewise. (local_language): Likewise. * ada-lang.c (ada_print_array_index): New function. (ada_language_defn): Add value for new field. * c-lang.c (c_language_defn): Likewise. (cpluc_language_defn): Likewise. (asm_language_defn): Likewise. (minimal_language_defn): Likewise. * f-lang.c (f_language_defn): Likewise. * jv-lang.c (java_language_defn): Likewise. * m2-lang.c (m2_language_defn): Likewise. * objc-lang.c (objc_language_defn): Likewise. * p-lang.c (pascal_language_defn): Likewise. * scm-lang.c (scm_language_defn): Likewise. * valprint.h (print_array_indexes_p): Add declaration. (get_array_low_bound): Add declaration. (maybe_print_array_index): Add declaration. * valprint.c (print_array_indexes): New static variable. (show_print_array_indexes): New function. (print_array_indexes_p): New function. (get_array_low_bound): New function. (maybe_print_array_index): New function. (val_print_array_elements): Print the index of each element if requested by the user. (_initialize_valprint): Add new array-indexes "set/show print" command. * ada-valprint.c (print_optional_low_bound): Replace extracted code by call to ada_get_array_low_bound_and_type(). Stop printing the low bound if indexes will be printed for all elements of the array. (val_print_packed_array_elements): Print the index of each element of the array if necessary.
2005-10-04 05:21:20 +08:00
maybe_print_array_index (index_type, j + low,
stream, format, pretty);
2002-06-04 23:28:49 +08:00
}
val_print (elttype, value_contents (v0), 0, 0, stream, format,
0, recurse + 1, pretty, current_language);
2002-06-04 23:28:49 +08:00
annotate_elt ();
}
}
things_printed += i - i0;
}
annotate_array_section_end ();
if (i < len)
{
fprintf_filtered (stream, "...");
}
value_free_to_mark (mark);
}
static struct type *
printable_val_type (struct type *type, const gdb_byte *valaddr)
2002-06-04 23:28:49 +08:00
{
return ada_to_fixed_type (ada_aligned_type (type), valaddr, 0, NULL, 1);
2002-06-04 23:28:49 +08:00
}
/* Print the character C on STREAM as part of the contents of a literal
string whose delimiter is QUOTER. TYPE_LEN is the length in bytes
(1 or 2) of the character. */
2002-06-04 23:28:49 +08:00
void
ada_emit_char (int c, struct ui_file *stream, int quoter, int type_len)
2002-06-04 23:28:49 +08:00
{
if (type_len != 2)
type_len = 1;
c &= (1 << (type_len * TARGET_CHAR_BIT)) - 1;
if (isascii (c) && isprint (c))
{
if (c == quoter && c == '"')
* ada-lang.c (process_raise_exception_name): Remove extraneous definition from unsubmitted code. (is_lower_alphanum): New function. (ada_decode): Add support for decoding protected object subprograms and entries, and of entities declared inside protected object subprograms. Also add missing handling for__{DIGITS}+ suffixes. Allow '$<digits>' as valid overloading suffix. (is_name_suffix): Add handling for protected type entriy suffixes. Also add support for protected type subprogram suffixes, but keep it commented out for now, as there is an ambiguity between these entities and other internally generated entities. Allow '$<digits>' as valid overloading suffix. (is_valid_name_for_wild_match): New function. (wild_match): Add an exra level of verification of the entity name before declaring it a match for the given pattern. (ada_type_of_array, ada_evaluate_subexp): Use more proper longest_to_int rather than cast. (ada_evaluate_subexp): Use "invalid" rather than "illegal" in comment. (ada_coerce_to_simple_array): Call check_size to make sure that the object size is reasonable. (ada_value_primitive_packed_val): Use correct location in target buffer for extracting packed record fields that are themselves records. (add_defn_to_vec): Do not try to replace a stub type by its full type. Avoids a potential infinite loop. (ada_lookup_symbol): Move return incorrectly placed return statement, causing a loop that should be scanning all object files to only scan the first one. (ada_tag_name_2): New function. (ada_tag_name_1): If no 'tsd' field found in the dispatching table, use alternative representation. (ada_find_renaming_symbol): Strip the function name suffix when computing the XR type name. (ada_to_fixed_type): Try determining the tag only if we have the object's address. (to_fixed_array_type): Add comments. (ada_check_typedef): Replace expression checking whether the given type is a stub or not by a "call" to TYPE_STUB. Clearer and more consistent. * ada-lang.h (ADA_KNOWN_AUXILIARY_FUNCTION_NAME_PATTERNS): Allow '$' in addition to '.' for runtime auxiliary function name suffixes. See changes to ada_decode above. (struct task_control_block): Add field called_task. (This change is to keep synchronized with our local sources; it does not affect the public version yet.) * ada-typeprint.c (ada_print_type): Use int_string for printing modulus of modular type. (print_range): Trivial editorial comment fix. * ada-valprint.c (ada_emit_char): Use normal Ada syntax for double quote in string.
2006-01-02 17:39:21 +08:00
fprintf_filtered (stream, "\"\"");
2002-06-04 23:28:49 +08:00
else
fprintf_filtered (stream, "%c", c);
}
else
fprintf_filtered (stream, "[\"%0*x\"]", type_len * 2, c);
2002-06-04 23:28:49 +08:00
}
/* Character #I of STRING, given that TYPE_LEN is the size in bytes (1
or 2) of a character. */
2002-06-04 23:28:49 +08:00
static int
char_at (const gdb_byte *string, int i, int type_len)
2002-06-04 23:28:49 +08:00
{
if (type_len == 1)
return string[i];
else
return (int) extract_unsigned_integer (string + 2 * i, 2);
2002-06-04 23:28:49 +08:00
}
/* Wrapper around memcpy to make it legal argument to ui_file_put */
static void
ui_memcpy (void *dest, const char *buffer, long len)
{
memcpy (dest, buffer, (size_t) len);
((char *) dest)[len] = '\0';
}
/* Print a floating-point value of type TYPE, pointed to in GDB by
VALADDR, on STREAM. Use Ada formatting conventions: there must be
a decimal point, and at least one digit before and after the
point. We use GNAT format for NaNs and infinities. */
static void
ada_print_floating (const gdb_byte *valaddr, struct type *type,
2005-01-29 09:59:31 +08:00
struct ui_file *stream)
{
char buffer[64];
char *s, *result;
int len;
struct ui_file *tmp_stream = mem_fileopen ();
struct cleanup *cleanups = make_cleanup_ui_file_delete (tmp_stream);
print_floating (valaddr, type, tmp_stream);
ui_file_put (tmp_stream, ui_memcpy, buffer);
do_cleanups (cleanups);
result = buffer;
len = strlen (result);
/* Modify for Ada rules. */
s = strstr (result, "inf");
if (s == NULL)
s = strstr (result, "Inf");
if (s == NULL)
s = strstr (result, "INF");
if (s != NULL)
strcpy (s, "Inf");
if (s == NULL)
{
s = strstr (result, "nan");
if (s == NULL)
s = strstr (result, "NaN");
if (s == NULL)
s = strstr (result, "Nan");
if (s != NULL)
{
s[0] = s[2] = 'N';
if (result[0] == '-')
result += 1;
}
}
if (s == NULL && strchr (result, '.') == NULL)
{
s = strchr (result, 'e');
if (s == NULL)
fprintf_filtered (stream, "%s.0", result);
else
fprintf_filtered (stream, "%.*s.0%s", (int) (s-result), result, s);
return;
}
fprintf_filtered (stream, "%s", result);
}
2002-06-04 23:28:49 +08:00
void
ada_printchar (int c, struct ui_file *stream)
2002-06-04 23:28:49 +08:00
{
fputs_filtered ("'", stream);
ada_emit_char (c, stream, '\'', 1);
fputs_filtered ("'", stream);
}
/* [From print_type_scalar in typeprint.c]. Print VAL on STREAM in a
form appropriate for TYPE. */
2002-06-04 23:28:49 +08:00
void
ada_print_scalar (struct type *type, LONGEST val, struct ui_file *stream)
2002-06-04 23:28:49 +08:00
{
unsigned int i;
unsigned len;
type = ada_check_typedef (type);
2002-06-04 23:28:49 +08:00
switch (TYPE_CODE (type))
{
case TYPE_CODE_ENUM:
len = TYPE_NFIELDS (type);
for (i = 0; i < len; i++)
{
if (TYPE_FIELD_BITPOS (type, i) == val)
{
break;
}
}
if (i < len)
{
fputs_filtered (ada_enum_name (TYPE_FIELD_NAME (type, i)), stream);
}
else
{
print_longest (stream, 'd', 0, val);
}
break;
case TYPE_CODE_INT:
print_longest (stream, TYPE_UNSIGNED (type) ? 'u' : 'd', 0, val);
break;
case TYPE_CODE_CHAR:
LA_PRINT_CHAR ((unsigned char) val, stream);
break;
case TYPE_CODE_BOOL:
fprintf_filtered (stream, val ? "true" : "false");
break;
case TYPE_CODE_RANGE:
ada_print_scalar (TYPE_TARGET_TYPE (type), val, stream);
return;
case TYPE_CODE_UNDEF:
case TYPE_CODE_PTR:
case TYPE_CODE_ARRAY:
case TYPE_CODE_STRUCT:
case TYPE_CODE_UNION:
case TYPE_CODE_FUNC:
case TYPE_CODE_FLT:
case TYPE_CODE_VOID:
case TYPE_CODE_SET:
case TYPE_CODE_STRING:
case TYPE_CODE_ERROR:
* NEWS: Mention pointer to member improvements. * Makefile.in (gnu-v3-abi.o): Delete special rule. (eval.o, gnu-v3-abi.o, ia64-tdep.o): Update. * ada-valprint.c (ada_print_scalar): Update for new type codes. * c-typeprint.c (c_print_type): Update for new type codes. (c_type_print_varspec_prefix, c_type_print_varspec_suffix) (c_type_print_base): Likewise. (c_type_print_args): Rewrite. * c-valprint.c (c_val_print): Update for new type codes. Remove support for references to members. Treat methods like functions. * cp-abi.c (cplus_print_method_ptr, cplus_method_ptr_size) (cplus_make_method_ptr, cplus_method_ptr_to_value): New. * cp-abi.h (cplus_print_method_ptr, cplus_method_ptr_size) (cplus_make_method_ptr, cplus_method_ptr_to_value): New prototypes. (struct cp_abi_ops): Add corresponding members. * cp-valprint.c (cp_print_class_method): Delete. (cp_find_class_member): New function. (cp_print_class_member): Use it. Simplify support for bogus member pointers. * dwarf2read.c (quirk_gcc_member_function_pointer): Use lookup_methodptr_type. (read_tag_ptr_to_member_type): Likewise, and lookup_memberptr_type. * eval.c (evaluate_subexp_standard): Implement EVAL_SKIP for OP_SCOPE. Update call to value_aggregate_elt. Rewrite member pointer support. (evaluate_subexp_for_address): Handle OP_SCOPE explicitly. Handle references returned by user defined operators. * f-typeprint.c (f_print_type, f_type_print_varspec_prefix) (f_type_print_varspec_suffix): Remove support for member pointers. * gdbtypes.c (lookup_memberptr_type): Renamed from lookup_member_type and adjusted. (smash_to_memberptr_type): Likewise, from smash_to_member_type. (lookup_methodptr_type): New. (rank_one_type): Adjust for TYPE_CODE_MEMBERPTR. (recursive_dump_type): Update for new types. * gdbtypes.h (enum type_code): Replace TYPE_CODE_MEMBER with TYPE_CODE_MEMBERPTR and TYPE_CODE_METHODPTR. (lookup_memberptr_type, lookup_methodptr_type) (smash_to_memberptr_type): New prototypes. (smash_to_method_type): Formatting fix. (lookup_member_type, smash_to_member_type): Delete prototypes. * gnu-v3-abi.c (gnuv3_get_vtable, gnuv3_get_virtual_fn): New. Do not rely on debug information for the vptr or the method's enclosing type. Handle function descriptors for IA64. (gnuv3_virtual_fn_field): Rewrite using the new functions. (gnuv3_find_method_in, gnuv3_print_method_ptr) (gnuv3_method_ptr_size, gnuv3_make_method_ptr) (gnuv3_method_ptr_to_value): New. (init_gnuv3_ops): Set new members of gnu_v3_abi_ops. * hpread.c (hpread_type_lookup): Update for new types. * infcall.c (value_arg_coerce): Likewise. * m2-typeprint.c (m2_print_type): Remove explicit support for member pointers. * m2-valprint.c (m2_val_print): Likewise. * p-typeprint.c (pascal_type_print_varspec_prefix) (pascal_type_print_varspec_suffix, pascal_type_print_base): Likewise. * p-valprint.c (pascal_val_print): Likewise. (pascal_object_print_class_method, pascal_object_print_class_member): Delete. * p-lang.h (pascal_object_print_class_method) (pascal_object_print_class_member): Delete prototypes. * stabsread.c (read_type): Update for new types. * typeprint.c (print_type_scalar): Likewise. * valops.c (value_struct_elt_for_reference, value_namespace_elt) (value_maybe_namespace_elt, value_aggregate_elt): Add want_address argument. Construct a pointer to member if the address of a function or data member is requested. (value_cast_pointers): Don't modify the input value. (value_cast): Adjust pointer to member handling for new types. Allow null pointer to member constants. Don't modify the input value. (value_ind): Remove pointer to member check. Handle function descriptors for function pointers. (value_struct_elt, value_find_oload_method_list, check_field): Remove pointer to member checks. * value.c (unpack_long): Allow pointers to data members. (value_from_longest): Allow member pointers. * value.h (value_aggregate_elt): Add want_address. * varobj.c (c_variable_editable): Remove check for members. * gdbarch.sh: Add vtable_function_descriptors and vbit_in_delta. * ia64-tdep.c (ia64_convert_from_func_ptr_addr): Handle descriptors in virtual tables. (ia64_gdbarch_init): Call set_gdbarch_vtable_function_descriptors. * c-lang.h (cp_print_class_method): Delete prototype. * arm-tdep.c (arm_gdbarch_init): Call set_gdbarch_vbit_in_delta. * mips-tdep.c (mips_gdbarch_init): Likewise. * gdbarch.c, gdbarch.h: Regenerated. * gdb.cp/classes.exp (test_pointers_to_class_members): Update expected output. Test the types of members and member pointers. * gdb.cp/inherit.exp (test_print_mi_member_types): Remove KFAILs for gdb/2092. * gdb.cp/member-ptr.exp: Search for a comment instead of a statement. Enable for GCC. Update expected output for some tests and add new tests. Remove obsolete GCC KFAILs. Allow GCC's class layout. * gdb.cp/member-ptr.cc (Padding, Padding::vspacer, Base, Base::get_x) (Base::vget_base, Left, Left::vget, Right, Right::vget, Diamond) (Diamond::vget_base): New. (main): Add new tests. * gdb.cp/printmethod.exp: Update expected output for member functions. * gdb.cp/virtfunc.exp (test_virtual_calls): Add a KFAIL for print pEe->D::vg().
2007-01-04 02:05:45 +08:00
case TYPE_CODE_MEMBERPTR:
case TYPE_CODE_METHODPTR:
2002-06-04 23:28:49 +08:00
case TYPE_CODE_METHOD:
case TYPE_CODE_REF:
warning (_("internal error: unhandled type in ada_print_scalar"));
2002-06-04 23:28:49 +08:00
break;
default:
error (_("Invalid type code in symbol table."));
2002-06-04 23:28:49 +08:00
}
gdb_flush (stream);
}
/* Print the character string STRING, printing at most LENGTH characters.
Printing stops early if the number hits print_max; repeat counts
are printed as appropriate. Print ellipses at the end if we
had to stop before printing LENGTH characters, or if
FORCE_ELLIPSES. TYPE_LEN is the length (1 or 2) of the character type.
*/
static void
printstr (struct ui_file *stream, const gdb_byte *string,
unsigned int length, int force_ellipses, int type_len)
2002-06-04 23:28:49 +08:00
{
unsigned int i;
unsigned int things_printed = 0;
int in_quotes = 0;
int need_comma = 0;
if (length == 0)
{
fputs_filtered ("\"\"", stream);
return;
}
for (i = 0; i < length && things_printed < print_max; i += 1)
{
/* Position of the character we are examining
to see whether it is repeated. */
2002-06-04 23:28:49 +08:00
unsigned int rep1;
/* Number of repetitions we have detected so far. */
unsigned int reps;
QUIT;
if (need_comma)
{
fputs_filtered (", ", stream);
need_comma = 0;
}
rep1 = i + 1;
reps = 1;
while (rep1 < length
&& char_at (string, rep1, type_len) == char_at (string, i,
type_len))
2002-06-04 23:28:49 +08:00
{
rep1 += 1;
reps += 1;
}
if (reps > repeat_count_threshold)
{
if (in_quotes)
{
if (inspect_it)
fputs_filtered ("\\\", ", stream);
else
fputs_filtered ("\", ", stream);
in_quotes = 0;
}
fputs_filtered ("'", stream);
ada_emit_char (char_at (string, i, type_len), stream, '\'',
type_len);
2002-06-04 23:28:49 +08:00
fputs_filtered ("'", stream);
fprintf_filtered (stream, _(" <repeats %u times>"), reps);
2002-06-04 23:28:49 +08:00
i = rep1 - 1;
things_printed += repeat_count_threshold;
need_comma = 1;
}
else
{
if (!in_quotes)
{
if (inspect_it)
fputs_filtered ("\\\"", stream);
else
fputs_filtered ("\"", stream);
in_quotes = 1;
}
ada_emit_char (char_at (string, i, type_len), stream, '"',
type_len);
things_printed += 1;
}
}
/* Terminate the quotes if necessary. */
if (in_quotes)
{
if (inspect_it)
fputs_filtered ("\\\"", stream);
else
fputs_filtered ("\"", stream);
}
if (force_ellipses || i < length)
fputs_filtered ("...", stream);
}
void
ada_printstr (struct ui_file *stream, const gdb_byte *string,
unsigned int length, int width, int force_ellipses)
2002-06-04 23:28:49 +08:00
{
printstr (stream, string, length, force_ellipses, width);
}
/* Print data of type TYPE located at VALADDR (within GDB), which came from
the inferior at address ADDRESS, onto stdio stream STREAM according to
FORMAT (a letter as for the printf % codes or 0 for natural format).
2002-06-04 23:28:49 +08:00
The data at VALADDR is in target byte order.
If the data is printed as a string, returns the number of string characters
printed.
If DEREF_REF is nonzero, then dereference references, otherwise just print
them like pointers.
RECURSE indicates the amount of indentation to supply before
continuation lines; this amount is roughly twice the value of RECURSE.
When PRETTY is non-zero, prints record fields on separate lines.
(For some reason, the current version of gdb instead uses a global
variable---prettyprint_arrays--- to causes a similar effect on
arrays.) */
int
ada_val_print (struct type *type, const gdb_byte *valaddr0,
2005-01-29 09:59:31 +08:00
int embedded_offset, CORE_ADDR address,
struct ui_file *stream, int format, int deref_ref,
int recurse, enum val_prettyprint pretty)
2002-06-04 23:28:49 +08:00
{
struct ada_val_print_args args;
args.type = type;
args.valaddr0 = valaddr0;
2002-06-04 23:28:49 +08:00
args.embedded_offset = embedded_offset;
args.address = address;
args.stream = stream;
args.format = format;
args.deref_ref = deref_ref;
args.recurse = recurse;
args.pretty = pretty;
return catch_errors (ada_val_print_stub, &args, NULL, RETURN_MASK_ALL);
}
/* Helper for ada_val_print; used as argument to catch_errors to
unmarshal the arguments to ada_val_print_1, which does the work. */
2002-06-04 23:28:49 +08:00
static int
ada_val_print_stub (void *args0)
2002-06-04 23:28:49 +08:00
{
struct ada_val_print_args *argsp = (struct ada_val_print_args *) args0;
return ada_val_print_1 (argsp->type, argsp->valaddr0,
argsp->embedded_offset, argsp->address,
argsp->stream, argsp->format, argsp->deref_ref,
argsp->recurse, argsp->pretty);
2002-06-04 23:28:49 +08:00
}
/* Assuming TYPE is a simple array, print the value of this array located
at VALADDR. See ada_val_print for a description of the various
parameters of this function; they are identical. The semantics
of the return value is also identical to ada_val_print. */
static int
ada_val_print_array (struct type *type, const gdb_byte *valaddr,
CORE_ADDR address, struct ui_file *stream, int format,
int deref_ref, int recurse, enum val_prettyprint pretty)
{
struct type *elttype = TYPE_TARGET_TYPE (type);
unsigned int eltlen;
unsigned int len;
int result = 0;
if (elttype == NULL)
eltlen = 0;
else
eltlen = TYPE_LENGTH (elttype);
if (eltlen == 0)
len = 0;
else
len = TYPE_LENGTH (type) / eltlen;
/* For an array of chars, print with string syntax. */
if (ada_is_string_type (type) && (format == 0 || format == 's'))
{
if (prettyprint_arrays)
print_spaces_filtered (2 + 2 * recurse, stream);
/* If requested, look for the first null char and only print
elements up to it. */
if (stop_print_at_null)
{
int temp_len;
/* Look for a NULL char. */
for (temp_len = 0;
(temp_len < len
&& temp_len < print_max
&& char_at (valaddr, temp_len, eltlen) != 0);
temp_len += 1);
len = temp_len;
}
printstr (stream, valaddr, len, 0, eltlen);
result = len;
}
else
{
fprintf_filtered (stream, "(");
print_optional_low_bound (stream, type);
if (TYPE_FIELD_BITSIZE (type, 0) > 0)
val_print_packed_array_elements (type, valaddr, 0, stream,
format, recurse, pretty);
else
val_print_array_elements (type, valaddr, address, stream,
format, deref_ref, recurse,
pretty, 0);
fprintf_filtered (stream, ")");
}
return result;
}
2002-06-04 23:28:49 +08:00
/* See the comment on ada_val_print. This function differs in that it
does not catch evaluation errors (leaving that to ada_val_print). */
2002-06-04 23:28:49 +08:00
static int
ada_val_print_1 (struct type *type, const gdb_byte *valaddr0,
2005-01-29 09:59:31 +08:00
int embedded_offset, CORE_ADDR address,
struct ui_file *stream, int format,
int deref_ref, int recurse, enum val_prettyprint pretty)
2002-06-04 23:28:49 +08:00
{
unsigned int len;
int i;
struct type *elttype;
unsigned int eltlen;
LONGEST val;
const gdb_byte *valaddr = valaddr0 + embedded_offset;
2002-06-04 23:28:49 +08:00
type = ada_check_typedef (type);
2002-06-04 23:28:49 +08:00
if (ada_is_array_descriptor_type (type) || ada_is_packed_array_type (type))
2002-06-04 23:28:49 +08:00
{
int retn;
struct value *mark = value_mark ();
struct value *val;
2002-06-04 23:28:49 +08:00
val = value_from_contents_and_address (type, valaddr, address);
val = ada_coerce_to_simple_array_ptr (val);
if (val == NULL)
{
fprintf_filtered (stream, "(null)");
retn = 0;
}
else
retn = ada_val_print_1 (value_type (val), value_contents (val), 0,
VALUE_ADDRESS (val), stream, format,
2002-06-04 23:28:49 +08:00
deref_ref, recurse, pretty);
value_free_to_mark (mark);
return retn;
}
valaddr = ada_aligned_value_addr (type, valaddr);
embedded_offset -= valaddr - valaddr0 - embedded_offset;
type = printable_val_type (type, valaddr);
switch (TYPE_CODE (type))
{
default:
return c_val_print (type, valaddr0, embedded_offset, address, stream,
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format, deref_ref, recurse, pretty);
case TYPE_CODE_PTR:
{
int ret = c_val_print (type, valaddr0, embedded_offset, address,
stream, format, deref_ref, recurse, pretty);
if (ada_is_tag_type (type))
{
struct value *val =
value_from_contents_and_address (type, valaddr, address);
const char *name = ada_tag_name (val);
if (name != NULL)
fprintf_filtered (stream, " (%s)", name);
return 0;
}
return ret;
}
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case TYPE_CODE_INT:
case TYPE_CODE_RANGE:
if (ada_is_fixed_point_type (type))
{
LONGEST v = unpack_long (type, valaddr);
int len = TYPE_LENGTH (type);
fprintf_filtered (stream, len < 4 ? "%.11g" : "%.17g",
(double) ada_fixed_to_float (type, v));
return 0;
}
else if (ada_is_vax_floating_type (type))
{
struct value *val =
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value_from_contents_and_address (type, valaddr, address);
struct value *func = ada_vax_float_print_function (type);
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if (func != 0)
{
static struct type *parray_of_char = NULL;
struct value *printable_val;
if (parray_of_char == NULL)
parray_of_char =
make_pointer_type
(create_array_type
(NULL, builtin_type_char,
create_range_type (NULL, builtin_type_int, 0, 32)), NULL);
printable_val =
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value_ind (value_cast (parray_of_char,
call_function_by_hand (func, 1,
&val)));
fprintf_filtered (stream, "%s", value_contents (printable_val));
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return 0;
}
/* No special printing function. Do as best we can. */
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}
else if (TYPE_CODE (type) == TYPE_CODE_RANGE)
{
struct type *target_type = TYPE_TARGET_TYPE (type);
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if (TYPE_LENGTH (type) != TYPE_LENGTH (target_type))
{
/* Obscure case of range type that has different length from
its base type. Perform a conversion, or we will get a
nonsense value. Actually, we could use the same
code regardless of lengths; I'm just avoiding a cast. */
struct value *v = value_cast (target_type,
value_from_contents_and_address
(type, valaddr, 0));
return ada_val_print_1 (target_type, value_contents (v), 0, 0,
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stream, format, 0, recurse + 1, pretty);
}
else
return ada_val_print_1 (TYPE_TARGET_TYPE (type),
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valaddr0, embedded_offset,
address, stream, format, deref_ref,
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recurse, pretty);
}
else
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{
format = format ? format : output_format;
if (format)
{
print_scalar_formatted (valaddr, type, format, 0, stream);
}
else if (ada_is_system_address_type (type))
{
/* FIXME: We want to print System.Address variables using
the same format as for any access type. But for some
reason GNAT encodes the System.Address type as an int,
so we have to work-around this deficiency by handling
System.Address values as a special case. */
fprintf_filtered (stream, "(");
type_print (type, "", stream, -1);
fprintf_filtered (stream, ") ");
fputs_filtered (paddress (extract_typed_address
(valaddr, builtin_type_void_data_ptr)),
stream);
}
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else
{
val_print_type_code_int (type, valaddr, stream);
if (ada_is_character_type (type))
{
fputs_filtered (" ", stream);
ada_printchar ((unsigned char) unpack_long (type, valaddr),
stream);
}
}
return 0;
}
case TYPE_CODE_ENUM:
if (format)
{
print_scalar_formatted (valaddr, type, format, 0, stream);
break;
}
len = TYPE_NFIELDS (type);
val = unpack_long (type, valaddr);
for (i = 0; i < len; i++)
{
QUIT;
if (val == TYPE_FIELD_BITPOS (type, i))
{
break;
}
}
if (i < len)
{
const char *name = ada_enum_name (TYPE_FIELD_NAME (type, i));
if (name[0] == '\'')
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fprintf_filtered (stream, "%ld %s", (long) val, name);
else
fputs_filtered (name, stream);
}
else
{
print_longest (stream, 'd', 0, val);
}
break;
case TYPE_CODE_FLAGS:
if (format)
print_scalar_formatted (valaddr, type, format, 0, stream);
else
val_print_type_code_flags (type, valaddr, stream);
break;
case TYPE_CODE_FLT:
if (format)
return c_val_print (type, valaddr0, embedded_offset, address, stream,
format, deref_ref, recurse, pretty);
else
ada_print_floating (valaddr0 + embedded_offset, type, stream);
break;
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case TYPE_CODE_UNION:
case TYPE_CODE_STRUCT:
if (ada_is_bogus_array_descriptor (type))
{
fprintf_filtered (stream, "(...?)");
return 0;
}
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else
{
print_record (type, valaddr, stream, format, recurse, pretty);
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return 0;
}
case TYPE_CODE_ARRAY:
return ada_val_print_array (type, valaddr, address, stream, format,
deref_ref, recurse, pretty);
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case TYPE_CODE_REF:
/* For references, the debugger is expected to print the value as
an address if DEREF_REF is null. But printing an address in place
of the object value would be confusing to an Ada programmer.
So, for Ada values, we print the actual dereferenced value
regardless. */
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elttype = check_typedef (TYPE_TARGET_TYPE (type));
if (TYPE_CODE (elttype) != TYPE_CODE_UNDEF)
{
LONGEST deref_val_int = (LONGEST) unpack_pointer (type, valaddr);
if (deref_val_int != 0)
{
struct value *deref_val =
ada_value_ind (value_from_longest
(lookup_pointer_type (elttype),
deref_val_int));
val_print (value_type (deref_val),
value_contents (deref_val), 0,
VALUE_ADDRESS (deref_val), stream, format,
deref_ref, recurse + 1, pretty, current_language);
}
else
fputs_filtered ("(null)", stream);
}
else
fputs_filtered ("???", stream);
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break;
}
gdb_flush (stream);
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return 0;
}
static int
print_variant_part (struct type *type, int field_num, const gdb_byte *valaddr,
struct ui_file *stream, int format, int recurse,
enum val_prettyprint pretty, int comma_needed,
struct type *outer_type, const gdb_byte *outer_valaddr)
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{
struct type *var_type = TYPE_FIELD_TYPE (type, field_num);
int which = ada_which_variant_applies (var_type, outer_type, outer_valaddr);
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if (which < 0)
return 0;
else
return print_field_values
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(TYPE_FIELD_TYPE (var_type, which),
valaddr + TYPE_FIELD_BITPOS (type, field_num) / HOST_CHAR_BIT
+ TYPE_FIELD_BITPOS (var_type, which) / HOST_CHAR_BIT,
stream, format, recurse, pretty,
comma_needed, outer_type, outer_valaddr);
}
int
ada_value_print (struct value *val0, struct ui_file *stream, int format,
enum val_prettyprint pretty)
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{
const gdb_byte *valaddr = value_contents (val0);
CORE_ADDR address = VALUE_ADDRESS (val0) + value_offset (val0);
struct type *type =
ada_to_fixed_type (value_type (val0), valaddr, address, NULL, 1);
struct value *val =
value_from_contents_and_address (type, valaddr, address);
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/* If it is a pointer, indicate what it points to. */
if (TYPE_CODE (type) == TYPE_CODE_PTR)
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{
/* Hack: don't print (char *) for char strings. Their
type is indicated by the quoted string anyway. */
if (TYPE_LENGTH (TYPE_TARGET_TYPE (type)) != sizeof (char)
|| TYPE_CODE (TYPE_TARGET_TYPE (type)) != TYPE_CODE_INT
|| TYPE_UNSIGNED (TYPE_TARGET_TYPE (type)))
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{
fprintf_filtered (stream, "(");
type_print (type, "", stream, -1);
fprintf_filtered (stream, ") ");
}
}
else if (ada_is_array_descriptor_type (type))
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{
fprintf_filtered (stream, "(");
type_print (type, "", stream, -1);
fprintf_filtered (stream, ") ");
}
else if (ada_is_bogus_array_descriptor (type))
{
fprintf_filtered (stream, "(");
type_print (type, "", stream, -1);
fprintf_filtered (stream, ") (...?)");
return 0;
}
return (val_print (type, value_contents (val), 0, address,
stream, format, 1, 0, pretty, current_language));
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}
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static void
print_record (struct type *type, const gdb_byte *valaddr,
2005-01-29 09:59:31 +08:00
struct ui_file *stream, int format, int recurse,
enum val_prettyprint pretty)
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{
type = ada_check_typedef (type);
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fprintf_filtered (stream, "(");
if (print_field_values (type, valaddr, stream, format, recurse, pretty,
0, type, valaddr) != 0 && pretty)
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{
fprintf_filtered (stream, "\n");
print_spaces_filtered (2 * recurse, stream);
}
fprintf_filtered (stream, ")");
}
/* Print out fields of value at VALADDR having structure type TYPE.
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TYPE, VALADDR, STREAM, FORMAT, RECURSE, and PRETTY have the
same meanings as in ada_print_value and ada_val_print.
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OUTER_TYPE and OUTER_VALADDR give type and address of enclosing record
(used to get discriminant values when printing variant parts).
COMMA_NEEDED is 1 if fields have been printed at the current recursion
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level, so that a comma is needed before any field printed by this
call.
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Returns 1 if COMMA_NEEDED or any fields were printed. */
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static int
print_field_values (struct type *type, const gdb_byte *valaddr,
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struct ui_file *stream, int format, int recurse,
enum val_prettyprint pretty, int comma_needed,
struct type *outer_type, const gdb_byte *outer_valaddr)
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{
int i, len;
len = TYPE_NFIELDS (type);
for (i = 0; i < len; i += 1)
{
if (ada_is_ignored_field (type, i))
continue;
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if (ada_is_wrapper_field (type, i))
{
comma_needed =
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print_field_values (TYPE_FIELD_TYPE (type, i),
valaddr
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+ TYPE_FIELD_BITPOS (type, i) / HOST_CHAR_BIT,
stream, format, recurse, pretty,
comma_needed, type, valaddr);
continue;
}
else if (ada_is_variant_part (type, i))
{
comma_needed =
print_variant_part (type, i, valaddr,
stream, format, recurse, pretty, comma_needed,
outer_type, outer_valaddr);
continue;
}
if (comma_needed)
fprintf_filtered (stream, ", ");
comma_needed = 1;
if (pretty)
{
fprintf_filtered (stream, "\n");
print_spaces_filtered (2 + 2 * recurse, stream);
}
else
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{
wrap_here (n_spaces (2 + 2 * recurse));
}
if (inspect_it)
{
if (TYPE_CODE (TYPE_FIELD_TYPE (type, i)) == TYPE_CODE_PTR)
fputs_filtered ("\"( ptr \"", stream);
else
fputs_filtered ("\"( nodef \"", stream);
fprintf_symbol_filtered (stream, TYPE_FIELD_NAME (type, i),
language_cplus, DMGL_NO_OPTS);
fputs_filtered ("\" \"", stream);
fprintf_symbol_filtered (stream, TYPE_FIELD_NAME (type, i),
language_cplus, DMGL_NO_OPTS);
fputs_filtered ("\") \"", stream);
}
else
{
annotate_field_begin (TYPE_FIELD_TYPE (type, i));
fprintf_filtered (stream, "%.*s",
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ada_name_prefix_len (TYPE_FIELD_NAME (type, i)),
TYPE_FIELD_NAME (type, i));
annotate_field_name_end ();
fputs_filtered (" => ", stream);
annotate_field_value ();
}
if (TYPE_FIELD_PACKED (type, i))
{
struct value *v;
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/* Bitfields require special handling, especially due to byte
order problems. */
if (TYPE_CPLUS_SPECIFIC (type) != NULL
&& TYPE_FIELD_IGNORE (type, i))
{
fputs_filtered (_("<optimized out or zero length>"), stream);
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}
else
{
int bit_pos = TYPE_FIELD_BITPOS (type, i);
int bit_size = TYPE_FIELD_BITSIZE (type, i);
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adjust_type_signedness (TYPE_FIELD_TYPE (type, i));
v = ada_value_primitive_packed_val (NULL, valaddr,
bit_pos / HOST_CHAR_BIT,
bit_pos % HOST_CHAR_BIT,
bit_size,
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TYPE_FIELD_TYPE (type, i));
val_print (TYPE_FIELD_TYPE (type, i), value_contents (v), 0, 0,
stream, format, 0, recurse + 1, pretty,
current_language);
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}
}
else
ada_val_print (TYPE_FIELD_TYPE (type, i),
valaddr + TYPE_FIELD_BITPOS (type, i) / HOST_CHAR_BIT,
0, 0, stream, format, 0, recurse + 1, pretty);
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annotate_field_end ();
}
return comma_needed;
}