]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blame - gdb/tui/tui-disasm.c
2007-08-14 Michael Snyder <msnyder@access-company.com>
[thirdparty/binutils-gdb.git] / gdb / tui / tui-disasm.c
CommitLineData
f377b406 1/* Disassembly display.
f33c6cbf 2
6aba47ca
DJ
3 Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2007
4 Free Software Foundation, Inc.
f33c6cbf 5
f377b406
SC
6 Contributed by Hewlett-Packard Company.
7
8 This file is part of GDB.
9
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2 of the License, or
13 (at your option) any later version.
14
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
19
20 You should have received a copy of the GNU General Public License
21 along with this program; if not, write to the Free Software
88d83552
EZ
22 Foundation, Inc., 51 Franklin Street, Fifth Floor,
23 Boston, MA 02110-1301, USA. */
c906108c
SS
24
25#include "defs.h"
26#include "symtab.h"
27#include "breakpoint.h"
28#include "frame.h"
fd0407d6 29#include "value.h"
52575520 30#include "source.h"
f70a7d61 31#include "disasm.h"
6d012f14 32#include "gdb_string.h"
d7b2e967
AC
33#include "tui/tui.h"
34#include "tui/tui-data.h"
35#include "tui/tui-win.h"
36#include "tui/tui-layout.h"
37#include "tui/tui-winsource.h"
38#include "tui/tui-stack.h"
39#include "tui/tui-file.h"
c906108c 40
6a83354a 41#include "gdb_curses.h"
96ec9981 42
aec2f747
SC
43struct tui_asm_line
44{
45 CORE_ADDR addr;
5b6fe301
MS
46 char *addr_string;
47 char *insn;
aec2f747
SC
48};
49
50/* Function to set the disassembly window's content.
51 Disassemble count lines starting at pc.
52 Return address of the count'th instruction after pc. */
53static CORE_ADDR
5b6fe301 54tui_disassemble (struct tui_asm_line *asm_lines, CORE_ADDR pc, int count)
aec2f747
SC
55{
56 struct ui_file *gdb_dis_out;
c906108c 57
aec2f747
SC
58 /* now init the ui_file structure */
59 gdb_dis_out = tui_sfileopen (256);
60
aec2f747 61 /* Now construct each line */
4cfcaf21 62 for (; count > 0; count--, asm_lines++)
aec2f747 63 {
4cfcaf21
JB
64 if (asm_lines->addr_string)
65 xfree (asm_lines->addr_string);
66 if (asm_lines->insn)
67 xfree (asm_lines->insn);
aec2f747
SC
68
69 print_address (pc, gdb_dis_out);
4cfcaf21
JB
70 asm_lines->addr = pc;
71 asm_lines->addr_string = xstrdup (tui_file_get_strbuf (gdb_dis_out));
aec2f747
SC
72
73 ui_file_rewind (gdb_dis_out);
74
a4642986 75 pc = pc + gdb_print_insn (pc, gdb_dis_out, NULL);
aec2f747 76
4cfcaf21 77 asm_lines->insn = xstrdup (tui_file_get_strbuf (gdb_dis_out));
aec2f747
SC
78
79 /* reset the buffer to empty */
80 ui_file_rewind (gdb_dis_out);
81 }
82 ui_file_delete (gdb_dis_out);
83 return pc;
84}
85
86/* Find the disassembly address that corresponds to FROM lines
87 above or below the PC. Variable sized instructions are taken
88 into account by the algorithm. */
89static CORE_ADDR
90tui_find_disassembly_address (CORE_ADDR pc, int from)
91{
d02c80cd 92 CORE_ADDR new_low;
6ba8e26f 93 int max_lines;
aec2f747 94 int i;
5b6fe301 95 struct tui_asm_line *asm_lines;
aec2f747 96
6ba8e26f
AC
97 max_lines = (from > 0) ? from : - from;
98 if (max_lines <= 1)
aec2f747
SC
99 return pc;
100
4cfcaf21 101 asm_lines = (struct tui_asm_line*) alloca (sizeof (struct tui_asm_line)
6ba8e26f 102 * max_lines);
4cfcaf21 103 memset (asm_lines, 0, sizeof (struct tui_asm_line) * max_lines);
aec2f747 104
6ba8e26f 105 new_low = pc;
aec2f747
SC
106 if (from > 0)
107 {
4cfcaf21
JB
108 tui_disassemble (asm_lines, pc, max_lines);
109 new_low = asm_lines[max_lines - 1].addr;
aec2f747
SC
110 }
111 else
112 {
113 CORE_ADDR last_addr;
114 int pos;
5b6fe301 115 struct minimal_symbol *msymbol;
aec2f747
SC
116
117 /* Find backward an address which is a symbol
118 and for which disassembling from that address will fill
119 completely the window. */
6ba8e26f 120 pos = max_lines - 1;
aec2f747 121 do {
6ba8e26f
AC
122 new_low -= 1 * max_lines;
123 msymbol = lookup_minimal_symbol_by_pc_section (new_low, 0);
aec2f747
SC
124
125 if (msymbol)
6ba8e26f 126 new_low = SYMBOL_VALUE_ADDRESS (msymbol);
aec2f747 127 else
6ba8e26f 128 new_low += 1 * max_lines;
aec2f747 129
4cfcaf21
JB
130 tui_disassemble (asm_lines, new_low, max_lines);
131 last_addr = asm_lines[pos].addr;
aec2f747
SC
132 } while (last_addr > pc && msymbol);
133
134 /* Scan forward disassembling one instruction at a time
135 until the last visible instruction of the window
136 matches the pc. We keep the disassembled instructions
137 in the 'lines' window and shift it downward (increasing
138 its addresses). */
139 if (last_addr < pc)
140 do
141 {
142 CORE_ADDR next_addr;
143
144 pos++;
6ba8e26f 145 if (pos >= max_lines)
aec2f747
SC
146 pos = 0;
147
4cfcaf21 148 next_addr = tui_disassemble (&asm_lines[pos], last_addr, 1);
aec2f747
SC
149
150 /* If there are some problems while disassembling exit. */
151 if (next_addr <= last_addr)
152 break;
153 last_addr = next_addr;
154 } while (last_addr <= pc);
155 pos++;
6ba8e26f 156 if (pos >= max_lines)
aec2f747 157 pos = 0;
4cfcaf21 158 new_low = asm_lines[pos].addr;
aec2f747 159 }
6ba8e26f 160 for (i = 0; i < max_lines; i++)
aec2f747 161 {
4cfcaf21
JB
162 xfree (asm_lines[i].addr_string);
163 xfree (asm_lines[i].insn);
aec2f747 164 }
6ba8e26f 165 return new_low;
aec2f747
SC
166}
167
168/* Function to set the disassembly window's content. */
65f05602
AC
169enum tui_status
170tui_set_disassem_content (CORE_ADDR pc)
c906108c 171{
22940a24 172 enum tui_status ret = TUI_FAILURE;
d02c80cd 173 int i;
6d012f14 174 int offset = TUI_DISASM_WIN->detail.source_info.horizontal_offset;
d02c80cd 175 int line_width, max_lines;
aec2f747 176 CORE_ADDR cur_pc;
5b6fe301 177 struct tui_gen_win_info *locator = tui_locator_win_info_ptr ();
dd1abb8c 178 int tab_len = tui_default_tab_len ();
5b6fe301 179 struct tui_asm_line *asm_lines;
aec2f747
SC
180 int insn_pos;
181 int addr_size, max_size;
5b6fe301 182 char *line;
aec2f747
SC
183
184 if (pc == 0)
185 return TUI_FAILURE;
186
6d012f14 187 ret = tui_alloc_source_buffer (TUI_DISASM_WIN);
aec2f747
SC
188 if (ret != TUI_SUCCESS)
189 return ret;
190
362c05fe
AS
191 TUI_DISASM_WIN->detail.source_info.start_line_or_addr.loa = LOA_ADDRESS;
192 TUI_DISASM_WIN->detail.source_info.start_line_or_addr.u.addr = pc;
aec2f747 193 cur_pc = (CORE_ADDR)
6d012f14 194 (((struct tui_win_element *) locator->content[0])->which_element.locator.addr);
aec2f747 195
6ba8e26f 196 max_lines = TUI_DISASM_WIN->generic.height - 2; /* account for hilite */
aec2f747
SC
197
198 /* Get temporary table that will hold all strings (addr & insn). */
4cfcaf21 199 asm_lines = (struct tui_asm_line*) alloca (sizeof (struct tui_asm_line)
6ba8e26f 200 * max_lines);
4cfcaf21 201 memset (asm_lines, 0, sizeof (struct tui_asm_line) * max_lines);
aec2f747 202
6ba8e26f 203 line_width = TUI_DISASM_WIN->generic.width - 1;
aec2f747 204
4cfcaf21 205 tui_disassemble (asm_lines, pc, max_lines);
aec2f747
SC
206
207 /* See what is the maximum length of an address and of a line. */
208 addr_size = 0;
209 max_size = 0;
6ba8e26f 210 for (i = 0; i < max_lines; i++)
c906108c 211 {
4cfcaf21 212 size_t len = strlen (asm_lines[i].addr_string);
aec2f747
SC
213 if (len > addr_size)
214 addr_size = len;
c906108c 215
4cfcaf21 216 len = strlen (asm_lines[i].insn) + tab_len;
aec2f747
SC
217 if (len > max_size)
218 max_size = len;
c906108c 219 }
aec2f747
SC
220 max_size += addr_size + tab_len;
221
222 /* Allocate memory to create each line. */
223 line = (char*) alloca (max_size);
224 insn_pos = (1 + (addr_size / tab_len)) * tab_len;
225
226 /* Now construct each line */
6ba8e26f 227 for (i = 0; i < max_lines; i++)
aec2f747 228 {
5b6fe301
MS
229 struct tui_win_element *element;
230 struct tui_source_element *src;
6ba8e26f 231 int cur_len;
aec2f747 232
6d012f14
AC
233 element = (struct tui_win_element *) TUI_DISASM_WIN->generic.content[i];
234 src = &element->which_element.source;
4cfcaf21 235 strcpy (line, asm_lines[i].addr_string);
6ba8e26f 236 cur_len = strlen (line);
aec2f747
SC
237
238 /* Add spaces to make the instructions start on the same column */
6ba8e26f 239 while (cur_len < insn_pos)
aec2f747
SC
240 {
241 strcat (line, " ");
6ba8e26f 242 cur_len++;
aec2f747
SC
243 }
244
4cfcaf21 245 strcat (line, asm_lines[i].insn);
aec2f747
SC
246
247 /* Now copy the line taking the offset into account */
248 if (strlen (line) > offset)
249 strcpy (src->line, &line[offset]);
250 else
251 src->line[0] = '\0';
252
362c05fe
AS
253 src->line_or_addr.loa = LOA_ADDRESS;
254 src->line_or_addr.u.addr = asm_lines[i].addr;
4cfcaf21 255 src->is_exec_point = asm_lines[i].addr == cur_pc;
aec2f747
SC
256
257 /* See whether there is a breakpoint installed. */
6d012f14 258 src->has_break = (!src->is_exec_point
aec2f747 259 && breakpoint_here_p (pc) != no_breakpoint_here);
c906108c 260
4cfcaf21
JB
261 xfree (asm_lines[i].addr_string);
262 xfree (asm_lines[i].insn);
aec2f747 263 }
6d012f14 264 TUI_DISASM_WIN->generic.content_size = i;
aec2f747
SC
265 return TUI_SUCCESS;
266}
c906108c
SS
267
268
65f05602 269/* Function to display the disassembly window with disassembled code. */
c906108c 270void
6ba8e26f 271tui_show_disassem (CORE_ADDR start_addr)
c906108c 272{
6ba8e26f 273 struct symtab *s = find_pc_symtab (start_addr);
5b6fe301 274 struct tui_win_info *win_with_focus = tui_win_with_focus ();
362c05fe 275 struct tui_line_or_address val;
c906108c 276
362c05fe
AS
277 val.loa = LOA_ADDRESS;
278 val.u.addr = start_addr;
080ce8c0 279 tui_add_win_to_layout (DISASSEM_WIN);
6d012f14 280 tui_update_source_window (TUI_DISASM_WIN, s, val, FALSE);
c906108c 281 /*
c5aa993b
JM
282 ** if the focus was in the src win, put it in the asm win, if the
283 ** source view isn't split
284 */
6ba8e26f 285 if (tui_current_layout () != SRC_DISASSEM_COMMAND && win_with_focus == TUI_SRC_WIN)
6d012f14 286 tui_set_win_focus_to (TUI_DISASM_WIN);
c906108c
SS
287
288 return;
65f05602 289}
c906108c
SS
290
291
65f05602 292/* Function to display the disassembly window. */
c906108c 293void
6ba8e26f 294tui_show_disassem_and_update_source (CORE_ADDR start_addr)
c906108c
SS
295{
296 struct symtab_and_line sal;
297
6ba8e26f 298 tui_show_disassem (start_addr);
dd1abb8c 299 if (tui_current_layout () == SRC_DISASSEM_COMMAND)
c906108c 300 {
362c05fe 301 struct tui_line_or_address val;
aec2f747 302
c906108c 303 /*
c5aa993b
JM
304 ** Update what is in the source window if it is displayed too,
305 ** note that it follows what is in the disassembly window and visa-versa
306 */
6ba8e26f 307 sal = find_pc_line (start_addr, 0);
362c05fe
AS
308 val.loa = LOA_LINE;
309 val.u.line_no = sal.line;
6d012f14 310 tui_update_source_window (TUI_SRC_WIN, sal.symtab, val, TRUE);
3024f13a
SC
311 if (sal.symtab)
312 {
52575520 313 set_current_source_symtab_and_line (&sal);
47d3492a 314 tui_update_locator_filename (sal.symtab->filename);
3024f13a
SC
315 }
316 else
47d3492a 317 tui_update_locator_filename ("?");
c906108c
SS
318 }
319
320 return;
65f05602 321}
c906108c 322
c774cec6 323CORE_ADDR
65f05602 324tui_get_begin_asm_address (void)
c906108c 325{
5b6fe301
MS
326 struct tui_gen_win_info *locator;
327 struct tui_locator_element *element;
c774cec6 328 CORE_ADDR addr;
c906108c 329
dd1abb8c 330 locator = tui_locator_win_info_ptr ();
6d012f14 331 element = &((struct tui_win_element *) locator->content[0])->which_element.locator;
c906108c 332
c774cec6 333 if (element->addr == 0)
c906108c 334 {
0510ab86
SC
335 struct minimal_symbol *main_symbol;
336
337 /* Find address of the start of program.
338 Note: this should be language specific. */
339 main_symbol = lookup_minimal_symbol ("main", NULL, NULL);
340 if (main_symbol == 0)
341 main_symbol = lookup_minimal_symbol ("MAIN", NULL, NULL);
342 if (main_symbol == 0)
343 main_symbol = lookup_minimal_symbol ("_start", NULL, NULL);
344 if (main_symbol)
345 addr = SYMBOL_VALUE_ADDRESS (main_symbol);
346 else
347 addr = 0;
c906108c
SS
348 }
349 else /* the target is executing */
350 addr = element->addr;
351
352 return addr;
65f05602 353}
c906108c 354
77cad3ba
SC
355/* Determine what the low address will be to display in the TUI's
356 disassembly window. This may or may not be the same as the
357 low address input. */
358CORE_ADDR
22940a24 359tui_get_low_disassembly_address (CORE_ADDR low, CORE_ADDR pc)
77cad3ba
SC
360{
361 int pos;
362
363 /* Determine where to start the disassembly so that the pc is about in the
364 middle of the viewport. */
080ce8c0 365 pos = tui_default_win_viewport_height (DISASSEM_WIN, DISASSEM_COMMAND) / 2;
77cad3ba
SC
366 pc = tui_find_disassembly_address (pc, -pos);
367
368 if (pc < low)
369 pc = low;
370 return pc;
371}
372
65f05602 373/* Scroll the disassembly forward or backward vertically. */
c906108c 374void
6ba8e26f
AC
375tui_vertical_disassem_scroll (enum tui_scroll_direction scroll_direction,
376 int num_to_scroll)
c906108c 377{
6d012f14 378 if (TUI_DISASM_WIN->generic.content != NULL)
c906108c 379 {
aec2f747 380 CORE_ADDR pc;
2a8854a7 381 tui_win_content content;
c906108c 382 struct symtab *s;
362c05fe 383 struct tui_line_or_address val;
6ba8e26f 384 int max_lines, dir;
52575520 385 struct symtab_and_line cursal = get_current_source_symtab_and_line ();
c906108c 386
6d012f14 387 content = (tui_win_content) TUI_DISASM_WIN->generic.content;
52575520 388 if (cursal.symtab == (struct symtab *) NULL)
206415a3 389 s = find_pc_symtab (get_frame_pc (get_selected_frame (NULL)));
c906108c 390 else
52575520 391 s = cursal.symtab;
c906108c 392
aec2f747 393 /* account for hilite */
6ba8e26f 394 max_lines = TUI_DISASM_WIN->generic.height - 2;
362c05fe 395 pc = content[0]->which_element.source.line_or_addr.u.addr;
6ba8e26f 396 dir = (scroll_direction == FORWARD_SCROLL) ? max_lines : - max_lines;
c906108c 397
362c05fe
AS
398 val.loa = LOA_ADDRESS;
399 val.u.addr = tui_find_disassembly_address (pc, dir);
6d012f14 400 tui_update_source_window_as_is (TUI_DISASM_WIN, s, val, FALSE);
aec2f747
SC
401 }
402}