old-cross-binutils/gdb/disasm.c
Ulrich Weigand 5af949e350 * defs.h (strlen_paddr, paddr, paddr_nz): Remove.
(paddress): Add GDBARCH parameter.
	* utils.c (strlen_paddr, paddr, paddr_nz): Remove.
	(paddress): Add GDBARCH parameter, use it instead of current_gdbarch.
	* ui-out.h (ui_out_field_core_addr): Add GDBARCH parameter.
	* ui-out.c (ui_out_field_core_addr): Add GDBARCH parameter,
	use it instead of current_gdbarch.

	Update calls to ui_out_field_core_addr to pass architecture:
	* ada-lang.c (print_one_exception): Update.
	* breakpoint.c (print_one_breakpoint_location,
	print_one_exception_catchpoint): Update.
	* disasm.c (dump_insns): Update.
	* darwin-nat-info.c (darwin_debug_regions_recurse): Update.
	* mi/mi-main.c (mi_cmd_data_read_memory): Update.
	* mi/mi-symbol-cmds.c: Include "objfiles.h".
	(mi_cmd_symbol_list_lines): Update.
	* stack.c (print_frame_info, print_frame): Update.

	Update callers of paddress to pass architecture:
	* ada-tasks.c (info_task): Update.
	* ada-valprint.c (ada_val_print_1): Update.
	* annotate.c (annotate_source, annotate_frame_begin): Update.
	* breakpoint.c (insert_bp_location, describe_other_breakpoints,
	mention): Update.
	* cli/cli-cmds.c (edit_command, list_command, print_disassembly):
	Update.
	* corefile.c (memory_error): Update.
	* c-valprint.c (print_function_pointer_address, c_val_print): Update.
	* disasm.c (dis_asm_print_address): Update.
	* exec.c (print_section_info): Update.
	* f-valprint.c (f_val_print): Update.
	* infcmd.c: Include "arch-utils.h".
	(jump_command, program_info): Update.
	* linux-fork.c: Include "arch-utils.h".
	(info_forks_command): Update.
	* m2-valprint.c (print_function_pointer_address,
	print_unpacked_pointer, print_variable_at_address,
	m2_val_print): Update.
	* m32r-rom.c (m32r_load_section, m32r_load, m32r_upload_command):
	Update.
	* printcmd.c (print_address, print_address_demangle, address_info):
	Update.
	* p-valprint.c (pascal_val_print): Update.
	* source.c: Include "arch-utils.h".
	(line_info): Update.
	* stack.c (frame_info, print_block_frame_labels): Update.
	* symfile.c (add_symbol_file_command, list_overlays_command): Update.
	* symmisc.c (dump_msymbols, dump_psymtab, dump_symtab_1,
	print_symbol, print_partial_symbols, maintenance_info_psymtabs,
	maintenance_check_symtabs): Update.
	* symtab.c (find_pc_sect_symtab): Update.
	* target.c (deprecated_debug_xfer_memory): Update.
	* tracepoint.c (scope_info): Update.
	* tui/tui-stack.c (tui_make_status_line): Update.
	* valprint.c (val_print_string): Update.

	Update callers of paddr_nz to use paddress instead (keeping
	user-visible output identical):
	* alpha-tdep.c (alpha_heuristic_proc_start): Update.
	* amd64-tdep.c (fixup_riprel, amd64_displaced_step_copy_insn,
	amd64_displaced_step_fixup): Update.
	* arch-utils.c (simple_displaced_step_copy_insn): Update.
	* auxv.c (fprint_target_auxv): Update.
	* breakpoint.c (insert_single_step_breakpoint): Update.
	* buildsym.c (finish_block): Update.
	* cli/cli-dump.c (restore_section_callback): Update.
	* fbsd-nat.c (fbsd_find_memory_regions): Update.
	* frame.c (frame_unwind_register_value): Update.
	* gcore.c (gcore_create_callback): Update.
	* hppa-tdep.c (hppa_frame_cache, hppa_skip_trampoline_code): Update.
	* i386-tdep.c (i386_displaced_step_fixup, i386_record_modrm,
	i386_record_lea_modrm_addr, i386_record_lea_modrm,
	i386_process_record): Update.
	* ia64-tdep.c (ia64_frame_this_id, ia64_sigtramp_frame_this_id,
	ia64_libunwind_frame_this_id, ia64_libunwind_sigtramp_frame_this_id,
	ia64_dummy_id, ia64_access_reg, ia64_access_rse_reg): Update.
	* infrun.c (displaced_step_prepare, displaced_step_fixup,
	handle_inferior_event, insert_step_resume_breakpoint_at_sal,
	insert_longjmp_resume_breakpoint): Update.
	* linux-nat.c (linux_nat_find_memory_regions): Update.
	* linux-record.c (record_linux_system_call): Update.
	* mips-tdep.c (heuristic_proc_start, mips_eabi_push_dummy_call,
	mips_n32n64_push_dummy_call, mips_o32_push_dummy_call,
	mips_o64_push_dummy_call): Update.
	* monitor.c (monitor_error, monitor_remove_breakpoint): Update.
	* record.c (record_arch_list_add_mem, record_wait,
	record_xfer_partial): Update.
	* remote-mips.c (mips_fetch_word, mips_check_lsi_error,
	mips_common_breakpoint): Update.
	* remote-sim.c (gdbsim_xfer_inferior_memory): Update.
	* rs6000-tdep.c (ppc_displaced_step_fixup): Update.
	* solib-som.c (som_current_sos): Update.
	* symfile.c (load_progress, generic_load): Update.
	* symfile-mem.c (add_vsyscall_page): Update.
	* valops.c (value_fetch_lazy): Update.
	* windows-tdep.c (windows_xfer_shared_library): Update.

	Update callers of paddr_nz to use paddress instead (changing
	user-visible output to make it more correct):
	* dwarf2loc.c (locexpr_describe_location): Update.
	* ia64-tdep.c (ia64_memory_insert_breakpoint,
	ia64_memory_remove_breakpoint): Update.
	* jv-valprint.c (java_value_print): Update.
	* m32c-tdep.c (m32c_m16c_address_to_pointer): Update.
	* monitor.c (monitor_read_memory): Update.

	Update callers of paddr to use paddress instead (changing
	user-visible output to make it more correct):
	* arm-tdep.c (arm_push_dummy_call): Update.
	* breakpoint.c (insert_bp_location, create_thread_event_breakpoint,
	create_breakpoint): Update.
	* darwin-nat-info.c (darwin_debug_regions): Update.
	* dcache.c (dcache_info): Update.
	* dsrec.c (load_srec, make_srec): Update.
	* dwarf2-frame.c (dwarf2_restore_rule, execute_cfa_program,
	dwarf2_frame_cache): Update.
	* gcore.c (gcore_copy_callback): Update.
	* gnu-nat.c (gnu_xfer_memory): Update.
	* mips-linux-nat.c (mips_show_dr): Update.
	* monitor.c (monitor_write_memory, monitor_insert_breakpoint,
	monitor_remove_breakpoint): Update.
	* remote.c (compare_sections_command): Update.
	* remote-m32r-sdi.c (m32r_xfer_memory, m32r_insert_breakpoint,
	m32r_remove_breakpoint, m32r_insert_watchpoint,
	m32r_remove_watchpoint): Update.
	* sol-thread.c (info_cb): Update.
	* symfile.c (load_progress): Update.

	Update callers of paddress or paddr_nz to use hex_string instead
	(changes output of internal/error/debug messages only):
	* dwarf2read.c (dump_die_shallow): Update.
	* frame.c (fprint_field, fprint_frame, frame_pc_unwind,
	get_frame_func, create_new_frame): Update.
	* hppa-tdep.c (find_unwind_entry, unwind_command): Update.
	* ia64-tdep.c (get_kernel_table, ia64_find_proc_info_x,
	ia64_get_dyn_info_list): Update.
	* maint.c (maintenance_translate_address): Update.
	* mi/mi-cmd-var.c (mi_cmd_var_create): Update.
	* target.c (target_flash_erase): Update.

	Update callers of paddr/paddr_nz to use phex/phex_nz instead,
	using an appropriate address size.  Remove use of strlen_paddr.
	* exec.c (exec_files_info): Update.
	* i386-nat.c (i386_show_dr): Update.
	* remote.c (remote_flash_erase): Update.
	* m32r-rom.c (m32r_load_section): Update.
	* monitor.c (monitor_vsprintf, monitor_store_register): Update.
	* remote.c (remote_check_symbols, remote_search_memory): Update.
	* remote-mips.c (mips_request, mips_common_breakpoint): Update.
	* scm-valprint.c (scm_ipruk, scm_scmval_print): Update.
	* sh64-tdep.c (sh64_show_media_regs, sh64_show_compact_regs): Update.
	* sh-tdep.c (sh_generic_show_regs, sh3_show_regs, sh2e_show_regs,
	sh2a_show_regs, sh2a_nofpu_show_regs, sh3e_show_regs,
	sh3_dsp_show_regs, sh4_show_regs, sh4_nofpu_show_regs,
	sh_dsp_show_regs): Update.
	* xcoffsolib.c (sharedlibrary_command): Update.


	* maint.c (maint_print_section_info): Add ADDR_SIZE parameter.
	Use hex_string_custom instead of paddr.
	(print_bfd_section_info): Pass address size.
	(print_objfile_section_info): Likewise.

	* annotate.h (annotate_source): Add GDBARCH parameter.
	(annotate_frame_begin): Likewise.
	* annotate.c (annotate_source): Add GDBARCH parameter.
	(annotate_frame_begin): Likewise.
	* source.c (identify_source_line): Update call to annotate_source.
	* stack.c (print_frame_info, print_frame): Update call to
	annotate_frame_begin.

	* breakpoint.c (describe_other_breakpoints): Add GDBARCH parameter.
	(create_breakpoint, create_ada_exception_breakpoint): Update call.

	* stack.c (print_block_frame_labels): Add GDBARCH parameter.
	(print_frame_label_vars): Update call.

	* symmisc.c (print_partial_symbols): Add GDBARCH parameter.
	(dump_psymtab): Update call to print_partial_symbols.
	(struct print_symbol_args): Add GDBARCH member.
	(dump_symtab_1): Set print_symbol_args architecture member.
	(print_symbol): Use it.

	* windows-tdep.h (windows_xfer_shared_library): Add GDBARCH
	parameter.
	* windows-tdep.c (windows_xfer_shared_library): Likewise.
	* i386-cygwin-tdep.c (struct cpms_data): Add GDBARCH member.
	(core_process_module_section): Pass architecture from cpms_data to
	windows_xfer_shared_library.
	(windows_core_xfer_shared_libraries): Initialize cmps_data
	architecture member.
	* windows-nat.c (windows_xfer_shared_libraries): Pass architecture
	to windows_xfer_shared_library.

	* defs.h (print_address): Add GDBARCH parameter.
	* printcmd.c (print_address): Add GDBARCH parameter.
	(print_scalar_formatted, do_examine): Update call.
	* findcmd.c (find_command): Update call.
	* tracepoint.c: Include "arch-utils.h".
	(trace_find_line_command): Update call.
	* tui/tui-disasm.c (tui_disassemble): Update call.

	* value.h (print_address_demangle): Add GDBARCH parameter.
	* printcmd.c (print_address_demangle): Add GDBARCH parameter.
	* c-valprint.c (print_function_pointer_address, c_val_print):
	Update call.
	* f-valprint.c (f_val_print): Update call.
	* gnu-v3-abi.c (gnuv3_print_method_ptr): Update call.
	* jv-valprint.c (java_val_print): Update call.
	* m2-valprint.c (print_function_pointer_address, m2_val_print):
	Update call.
	* p-valprint.c (pascal_val_print): Update call.

	* disasm.c (gdb_disassemble_info): Install architecture into
	di.application_data field.

testsuite/ChangeLog:

	* gdb.threads/tls-shared.exp: Update to locexpr_describe_location
	change to prefix TLS offset in hex with 0x.

doc/ChangeLog:

	* gdbint.texinfo (Item Output Functions): Update signature
	for ui_out_field_core_addr.
2009-07-02 17:21:10 +00:00

413 lines
12 KiB
C

/* Disassemble support for GDB.
Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2007, 2008, 2009
Free Software Foundation, Inc.
This file is part of GDB.
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.
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.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
#include "defs.h"
#include "target.h"
#include "value.h"
#include "ui-out.h"
#include "gdb_string.h"
#include "disasm.h"
#include "gdbcore.h"
#include "dis-asm.h"
/* Disassemble functions.
FIXME: We should get rid of all the duplicate code in gdb that does
the same thing: disassemble_command() and the gdbtk variation. */
/* This Structure is used to store line number information.
We need a different sort of line table from the normal one cuz we can't
depend upon implicit line-end pc's for lines to do the
reordering in this function. */
struct dis_line_entry
{
int line;
CORE_ADDR start_pc;
CORE_ADDR end_pc;
};
/* Like target_read_memory, but slightly different parameters. */
static int
dis_asm_read_memory (bfd_vma memaddr, gdb_byte *myaddr, unsigned int len,
struct disassemble_info *info)
{
return target_read_memory (memaddr, myaddr, len);
}
/* Like memory_error with slightly different parameters. */
static void
dis_asm_memory_error (int status, bfd_vma memaddr,
struct disassemble_info *info)
{
memory_error (status, memaddr);
}
/* Like print_address with slightly different parameters. */
static void
dis_asm_print_address (bfd_vma addr, struct disassemble_info *info)
{
struct gdbarch *gdbarch = info->application_data;
print_address (gdbarch, addr, info->stream);
}
static int
compare_lines (const void *mle1p, const void *mle2p)
{
struct dis_line_entry *mle1, *mle2;
int val;
mle1 = (struct dis_line_entry *) mle1p;
mle2 = (struct dis_line_entry *) mle2p;
val = mle1->line - mle2->line;
if (val != 0)
return val;
return mle1->start_pc - mle2->start_pc;
}
static int
dump_insns (struct gdbarch *gdbarch, struct ui_out *uiout,
struct disassemble_info * di,
CORE_ADDR low, CORE_ADDR high,
int how_many, struct ui_stream *stb)
{
int num_displayed = 0;
CORE_ADDR pc;
/* parts of the symbolic representation of the address */
int unmapped;
int offset;
int line;
struct cleanup *ui_out_chain;
for (pc = low; pc < high;)
{
char *filename = NULL;
char *name = NULL;
QUIT;
if (how_many >= 0)
{
if (num_displayed >= how_many)
break;
else
num_displayed++;
}
ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
ui_out_field_core_addr (uiout, "address", gdbarch, pc);
if (!build_address_symbolic (pc, 0, &name, &offset, &filename,
&line, &unmapped))
{
/* We don't care now about line, filename and
unmapped. But we might in the future. */
ui_out_text (uiout, " <");
ui_out_field_string (uiout, "func-name", name);
ui_out_text (uiout, "+");
ui_out_field_int (uiout, "offset", offset);
ui_out_text (uiout, ">:\t");
}
else
ui_out_text (uiout, ":\t");
if (filename != NULL)
xfree (filename);
if (name != NULL)
xfree (name);
ui_file_rewind (stb->stream);
pc += gdbarch_print_insn (gdbarch, pc, di);
ui_out_field_stream (uiout, "inst", stb);
ui_file_rewind (stb->stream);
do_cleanups (ui_out_chain);
ui_out_text (uiout, "\n");
}
return num_displayed;
}
/* The idea here is to present a source-O-centric view of a
function to the user. This means that things are presented
in source order, with (possibly) out of order assembly
immediately following. */
static void
do_mixed_source_and_assembly (struct gdbarch *gdbarch, struct ui_out *uiout,
struct disassemble_info *di, int nlines,
struct linetable_entry *le,
CORE_ADDR low, CORE_ADDR high,
struct symtab *symtab,
int how_many, struct ui_stream *stb)
{
int newlines = 0;
struct dis_line_entry *mle;
struct symtab_and_line sal;
int i;
int out_of_order = 0;
int next_line = 0;
CORE_ADDR pc;
int num_displayed = 0;
struct cleanup *ui_out_chain;
struct cleanup *ui_out_tuple_chain = make_cleanup (null_cleanup, 0);
struct cleanup *ui_out_list_chain = make_cleanup (null_cleanup, 0);
mle = (struct dis_line_entry *) alloca (nlines
* sizeof (struct dis_line_entry));
/* Copy linetable entries for this function into our data
structure, creating end_pc's and setting out_of_order as
appropriate. */
/* First, skip all the preceding functions. */
for (i = 0; i < nlines - 1 && le[i].pc < low; i++);
/* Now, copy all entries before the end of this function. */
for (; i < nlines - 1 && le[i].pc < high; i++)
{
if (le[i].line == le[i + 1].line && le[i].pc == le[i + 1].pc)
continue; /* Ignore duplicates */
/* Skip any end-of-function markers. */
if (le[i].line == 0)
continue;
mle[newlines].line = le[i].line;
if (le[i].line > le[i + 1].line)
out_of_order = 1;
mle[newlines].start_pc = le[i].pc;
mle[newlines].end_pc = le[i + 1].pc;
newlines++;
}
/* If we're on the last line, and it's part of the function,
then we need to get the end pc in a special way. */
if (i == nlines - 1 && le[i].pc < high)
{
mle[newlines].line = le[i].line;
mle[newlines].start_pc = le[i].pc;
sal = find_pc_line (le[i].pc, 0);
mle[newlines].end_pc = sal.end;
newlines++;
}
/* Now, sort mle by line #s (and, then by addresses within
lines). */
if (out_of_order)
qsort (mle, newlines, sizeof (struct dis_line_entry), compare_lines);
/* Now, for each line entry, emit the specified lines (unless
they have been emitted before), followed by the assembly code
for that line. */
ui_out_chain = make_cleanup_ui_out_list_begin_end (uiout, "asm_insns");
for (i = 0; i < newlines; i++)
{
/* Print out everything from next_line to the current line. */
if (mle[i].line >= next_line)
{
if (next_line != 0)
{
/* Just one line to print. */
if (next_line == mle[i].line)
{
ui_out_tuple_chain
= make_cleanup_ui_out_tuple_begin_end (uiout,
"src_and_asm_line");
print_source_lines (symtab, next_line, mle[i].line + 1, 0);
}
else
{
/* Several source lines w/o asm instructions associated. */
for (; next_line < mle[i].line; next_line++)
{
struct cleanup *ui_out_list_chain_line;
struct cleanup *ui_out_tuple_chain_line;
ui_out_tuple_chain_line
= make_cleanup_ui_out_tuple_begin_end (uiout,
"src_and_asm_line");
print_source_lines (symtab, next_line, next_line + 1,
0);
ui_out_list_chain_line
= make_cleanup_ui_out_list_begin_end (uiout,
"line_asm_insn");
do_cleanups (ui_out_list_chain_line);
do_cleanups (ui_out_tuple_chain_line);
}
/* Print the last line and leave list open for
asm instructions to be added. */
ui_out_tuple_chain
= make_cleanup_ui_out_tuple_begin_end (uiout,
"src_and_asm_line");
print_source_lines (symtab, next_line, mle[i].line + 1, 0);
}
}
else
{
ui_out_tuple_chain
= make_cleanup_ui_out_tuple_begin_end (uiout, "src_and_asm_line");
print_source_lines (symtab, mle[i].line, mle[i].line + 1, 0);
}
next_line = mle[i].line + 1;
ui_out_list_chain
= make_cleanup_ui_out_list_begin_end (uiout, "line_asm_insn");
}
num_displayed += dump_insns (gdbarch, uiout, di,
mle[i].start_pc, mle[i].end_pc,
how_many, stb);
/* When we've reached the end of the mle array, or we've seen the last
assembly range for this source line, close out the list/tuple. */
if (i == (newlines - 1) || mle[i + 1].line > mle[i].line)
{
do_cleanups (ui_out_list_chain);
do_cleanups (ui_out_tuple_chain);
ui_out_tuple_chain = make_cleanup (null_cleanup, 0);
ui_out_list_chain = make_cleanup (null_cleanup, 0);
ui_out_text (uiout, "\n");
}
if (how_many >= 0 && num_displayed >= how_many)
break;
}
do_cleanups (ui_out_chain);
}
static void
do_assembly_only (struct gdbarch *gdbarch, struct ui_out *uiout,
struct disassemble_info * di,
CORE_ADDR low, CORE_ADDR high,
int how_many, struct ui_stream *stb)
{
int num_displayed = 0;
struct cleanup *ui_out_chain;
ui_out_chain = make_cleanup_ui_out_list_begin_end (uiout, "asm_insns");
num_displayed = dump_insns (gdbarch, uiout, di, low, high, how_many, stb);
do_cleanups (ui_out_chain);
}
/* Initialize the disassemble info struct ready for the specified
stream. */
static int ATTR_FORMAT (printf, 2, 3)
fprintf_disasm (void *stream, const char *format, ...)
{
va_list args;
va_start (args, format);
vfprintf_filtered (stream, format, args);
va_end (args);
/* Something non -ve. */
return 0;
}
static struct disassemble_info
gdb_disassemble_info (struct gdbarch *gdbarch, struct ui_file *file)
{
struct disassemble_info di;
init_disassemble_info (&di, file, fprintf_disasm);
di.flavour = bfd_target_unknown_flavour;
di.memory_error_func = dis_asm_memory_error;
di.print_address_func = dis_asm_print_address;
/* NOTE: cagney/2003-04-28: The original code, from the old Insight
disassembler had a local optomization here. By default it would
access the executable file, instead of the target memory (there
was a growing list of exceptions though). Unfortunately, the
heuristic was flawed. Commands like "disassemble &variable"
didn't work as they relied on the access going to the target.
Further, it has been supperseeded by trust-read-only-sections
(although that should be superseeded by target_trust..._p()). */
di.read_memory_func = dis_asm_read_memory;
di.arch = gdbarch_bfd_arch_info (gdbarch)->arch;
di.mach = gdbarch_bfd_arch_info (gdbarch)->mach;
di.endian = gdbarch_byte_order (gdbarch);
di.endian_code = gdbarch_byte_order_for_code (gdbarch);
di.application_data = gdbarch;
disassemble_init_for_target (&di);
return di;
}
void
gdb_disassembly (struct gdbarch *gdbarch, struct ui_out *uiout,
char *file_string,
int mixed_source_and_assembly,
int how_many, CORE_ADDR low, CORE_ADDR high)
{
struct ui_stream *stb = ui_out_stream_new (uiout);
struct cleanup *cleanups = make_cleanup_ui_out_stream_delete (stb);
struct disassemble_info di = gdb_disassemble_info (gdbarch, stb->stream);
/* To collect the instruction outputted from opcodes. */
struct symtab *symtab = NULL;
struct linetable_entry *le = NULL;
int nlines = -1;
/* Assume symtab is valid for whole PC range */
symtab = find_pc_symtab (low);
if (symtab != NULL && symtab->linetable != NULL)
{
/* Convert the linetable to a bunch of my_line_entry's. */
le = symtab->linetable->item;
nlines = symtab->linetable->nitems;
}
if (!mixed_source_and_assembly || nlines <= 0
|| symtab == NULL || symtab->linetable == NULL)
do_assembly_only (gdbarch, uiout, &di, low, high, how_many, stb);
else if (mixed_source_and_assembly)
do_mixed_source_and_assembly (gdbarch, uiout, &di, nlines, le, low,
high, symtab, how_many, stb);
do_cleanups (cleanups);
gdb_flush (gdb_stdout);
}
/* Print the instruction at address MEMADDR in debugged memory,
on STREAM. Returns the length of the instruction, in bytes,
and, if requested, the number of branch delay slot instructions. */
int
gdb_print_insn (struct gdbarch *gdbarch, CORE_ADDR memaddr,
struct ui_file *stream, int *branch_delay_insns)
{
struct disassemble_info di;
int length;
di = gdb_disassemble_info (gdbarch, stream);
length = gdbarch_print_insn (gdbarch, memaddr, &di);
if (branch_delay_insns)
{
if (di.insn_info_valid)
*branch_delay_insns = di.branch_delay_insns;
else
*branch_delay_insns = 0;
}
return length;
}