Remove some unnecessary focus switches
[deliverable/binutils-gdb.git] / gdb / tui / tui-disasm.c
CommitLineData
f377b406 1/* Disassembly display.
f33c6cbf 2
42a4f53d 3 Copyright (C) 1998-2019 Free Software Foundation, Inc.
f33c6cbf 4
f377b406
SC
5 Contributed by Hewlett-Packard Company.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
a9762ec7 11 the Free Software Foundation; either version 3 of the License, or
f377b406
SC
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
a9762ec7 20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
21
22#include "defs.h"
957b8b5a 23#include "arch-utils.h"
c906108c
SS
24#include "symtab.h"
25#include "breakpoint.h"
26#include "frame.h"
fd0407d6 27#include "value.h"
52575520 28#include "source.h"
f70a7d61 29#include "disasm.h"
d7b2e967 30#include "tui/tui.h"
6d7fd9aa 31#include "tui/tui-command.h"
d7b2e967
AC
32#include "tui/tui-data.h"
33#include "tui/tui-win.h"
34#include "tui/tui-layout.h"
35#include "tui/tui-winsource.h"
36#include "tui/tui-stack.h"
37#include "tui/tui-file.h"
2c0b251b 38#include "tui/tui-disasm.h"
bfad4537 39#include "tui/tui-source.h"
6c95b8df 40#include "progspace.h"
77e371c0 41#include "objfiles.h"
1df2f9ef 42#include "cli/cli-style.h"
c906108c 43
6a83354a 44#include "gdb_curses.h"
96ec9981 45
aec2f747
SC
46struct tui_asm_line
47{
48 CORE_ADDR addr;
6b915f7d 49 std::string addr_string;
825165c5 50 size_t addr_size;
6b915f7d 51 std::string insn;
aec2f747
SC
52};
53
1df2f9ef
TT
54/* Helper function to find the number of characters in STR, skipping
55 any ANSI escape sequences. */
56static size_t
57len_without_escapes (const std::string &str)
58{
59 size_t len = 0;
60 const char *ptr = str.c_str ();
61 char c;
62
63 while ((c = *ptr++) != '\0')
64 {
65 if (c == '\033')
66 {
67 ui_file_style style;
68 size_t n_read;
69 if (style.parse (ptr, &n_read))
70 ptr += n_read;
71 else
72 {
73 /* Shouldn't happen, but just skip the ESC if it somehow
74 does. */
75 ++ptr;
76 }
77 }
78 else
79 ++len;
80 }
81 return len;
82}
83
aec2f747
SC
84/* Function to set the disassembly window's content.
85 Disassemble count lines starting at pc.
86 Return address of the count'th instruction after pc. */
87static CORE_ADDR
6b915f7d
TT
88tui_disassemble (struct gdbarch *gdbarch,
89 std::vector<tui_asm_line> &asm_lines,
1df2f9ef
TT
90 CORE_ADDR pc, int pos, int count,
91 size_t *addr_size = nullptr)
aec2f747 92{
1df2f9ef
TT
93 bool term_out = source_styling && gdb_stdout->can_emit_style_escape ();
94 string_file gdb_dis_out (term_out);
aec2f747 95
1cc6d956 96 /* Now construct each line. */
6b915f7d 97 for (int i = 0; i < count; ++i)
aec2f747 98 {
d7e74731 99 print_address (gdbarch, pc, &gdb_dis_out);
6b915f7d
TT
100 asm_lines[pos + i].addr = pc;
101 asm_lines[pos + i].addr_string = std::move (gdb_dis_out.string ());
aec2f747 102
d7e74731 103 gdb_dis_out.clear ();
aec2f747 104
1df2f9ef
TT
105 if (addr_size != nullptr)
106 {
107 size_t new_size;
108
109 if (term_out)
110 new_size = len_without_escapes (asm_lines[pos + i].addr_string);
111 else
112 new_size = asm_lines[pos + i].addr_string.size ();
113 *addr_size = std::max (*addr_size, new_size);
825165c5 114 asm_lines[pos + i].addr_size = new_size;
1df2f9ef
TT
115 }
116
d7e74731 117 pc = pc + gdb_print_insn (gdbarch, pc, &gdb_dis_out, NULL);
aec2f747 118
6b915f7d 119 asm_lines[pos + i].insn = std::move (gdb_dis_out.string ());
aec2f747 120
1cc6d956 121 /* Reset the buffer to empty. */
d7e74731 122 gdb_dis_out.clear ();
aec2f747 123 }
aec2f747
SC
124 return pc;
125}
126
1cc6d956
MS
127/* Find the disassembly address that corresponds to FROM lines above
128 or below the PC. Variable sized instructions are taken into
129 account by the algorithm. */
aec2f747 130static CORE_ADDR
13274fc3 131tui_find_disassembly_address (struct gdbarch *gdbarch, CORE_ADDR pc, int from)
aec2f747 132{
d02c80cd 133 CORE_ADDR new_low;
6ba8e26f 134 int max_lines;
aec2f747 135
6ba8e26f
AC
136 max_lines = (from > 0) ? from : - from;
137 if (max_lines <= 1)
6b915f7d 138 return pc;
aec2f747 139
6b915f7d 140 std::vector<tui_asm_line> asm_lines (max_lines);
aec2f747 141
6ba8e26f 142 new_low = pc;
aec2f747
SC
143 if (from > 0)
144 {
6b915f7d 145 tui_disassemble (gdbarch, asm_lines, pc, 0, max_lines);
4cfcaf21 146 new_low = asm_lines[max_lines - 1].addr;
aec2f747
SC
147 }
148 else
149 {
150 CORE_ADDR last_addr;
151 int pos;
77e371c0 152 struct bound_minimal_symbol msymbol;
aec2f747 153
1cc6d956
MS
154 /* Find backward an address which is a symbol and for which
155 disassembling from that address will fill completely the
156 window. */
6ba8e26f 157 pos = max_lines - 1;
aec2f747 158 do {
6ba8e26f 159 new_low -= 1 * max_lines;
77e371c0 160 msymbol = lookup_minimal_symbol_by_pc_section (new_low, 0);
aec2f747 161
77e371c0
TT
162 if (msymbol.minsym)
163 new_low = BMSYMBOL_VALUE_ADDRESS (msymbol);
aec2f747 164 else
6ba8e26f 165 new_low += 1 * max_lines;
aec2f747 166
6b915f7d 167 tui_disassemble (gdbarch, asm_lines, new_low, 0, max_lines);
4cfcaf21 168 last_addr = asm_lines[pos].addr;
77e371c0 169 } while (last_addr > pc && msymbol.minsym);
aec2f747 170
1cc6d956
MS
171 /* Scan forward disassembling one instruction at a time until
172 the last visible instruction of the window matches the pc.
173 We keep the disassembled instructions in the 'lines' window
174 and shift it downward (increasing its addresses). */
aec2f747
SC
175 if (last_addr < pc)
176 do
177 {
178 CORE_ADDR next_addr;
179
180 pos++;
6ba8e26f 181 if (pos >= max_lines)
aec2f747
SC
182 pos = 0;
183
6b915f7d
TT
184 next_addr = tui_disassemble (gdbarch, asm_lines,
185 last_addr, pos, 1);
aec2f747
SC
186
187 /* If there are some problems while disassembling exit. */
188 if (next_addr <= last_addr)
189 break;
190 last_addr = next_addr;
191 } while (last_addr <= pc);
192 pos++;
6ba8e26f 193 if (pos >= max_lines)
aec2f747 194 pos = 0;
4cfcaf21 195 new_low = asm_lines[pos].addr;
aec2f747 196 }
6ba8e26f 197 return new_low;
aec2f747
SC
198}
199
200/* Function to set the disassembly window's content. */
65f05602 201enum tui_status
81c82c4b
TT
202tui_disasm_window::set_contents (struct gdbarch *arch,
203 struct symtab *s,
204 struct tui_line_or_address line_or_addr)
c906108c 205{
d02c80cd 206 int i;
81c82c4b 207 int offset = horizontal_offset;
0bb65f1e 208 int max_lines, line_width;
aec2f747 209 CORE_ADDR cur_pc;
3add462f 210 struct tui_locator_window *locator = tui_locator_win_info_ptr ();
7806cea7 211 int tab_len = tui_tab_width;
aec2f747 212 int insn_pos;
1df2f9ef 213
81c82c4b
TT
214 gdb_assert (line_or_addr.loa == LOA_ADDRESS);
215 CORE_ADDR pc = line_or_addr.u.addr;
aec2f747
SC
216 if (pc == 0)
217 return TUI_FAILURE;
218
81c82c4b
TT
219 gdbarch = arch;
220 start_line_or_addr.loa = LOA_ADDRESS;
221 start_line_or_addr.u.addr = pc;
3add462f 222 cur_pc = locator->addr;
aec2f747 223
0bb65f1e 224 /* Window size, excluding highlight box. */
81c82c4b 225 max_lines = height - 2;
398fdd60 226 line_width = width - TUI_EXECINFO_SIZE - 2;
aec2f747
SC
227
228 /* Get temporary table that will hold all strings (addr & insn). */
6b915f7d 229 std::vector<tui_asm_line> asm_lines (max_lines);
1df2f9ef
TT
230 size_t addr_size = 0;
231 tui_disassemble (gdbarch, asm_lines, pc, 0, max_lines, &addr_size);
aec2f747 232
f5396833 233 /* Align instructions to the same column. */
aec2f747
SC
234 insn_pos = (1 + (addr_size / tab_len)) * tab_len;
235
1cc6d956 236 /* Now construct each line. */
81c82c4b 237 content.resize (max_lines);
6ba8e26f 238 for (i = 0; i < max_lines; i++)
aec2f747 239 {
81c82c4b 240 tui_source_element *src = &content[i];
6b915f7d
TT
241
242 std::string line
243 = (asm_lines[i].addr_string
825165c5 244 + n_spaces (insn_pos - asm_lines[i].addr_size)
6b915f7d 245 + asm_lines[i].insn);
aec2f747 246
1df2f9ef 247 const char *ptr = line.c_str ();
d1da6b01 248 src->line = tui_copy_source_line (&ptr, -1, offset, line_width, 0);
aec2f747 249
362c05fe
AS
250 src->line_or_addr.loa = LOA_ADDRESS;
251 src->line_or_addr.u.addr = asm_lines[i].addr;
4cfcaf21 252 src->is_exec_point = asm_lines[i].addr == cur_pc;
aec2f747 253 }
aec2f747
SC
254 return TUI_SUCCESS;
255}
c906108c
SS
256
257
1cc6d956 258/* Function to display the disassembly window with disassembled code. */
c906108c 259void
13274fc3 260tui_show_disassem (struct gdbarch *gdbarch, CORE_ADDR start_addr)
c906108c 261{
34248c3a 262 struct symtab *s = find_pc_line_symtab (start_addr);
362c05fe 263 struct tui_line_or_address val;
c906108c 264
2d83e710 265 gdb_assert (TUI_DISASM_WIN != nullptr && TUI_DISASM_WIN->is_visible ());
22c3f490 266
362c05fe
AS
267 val.loa = LOA_ADDRESS;
268 val.u.addr = start_addr;
017f9828 269 TUI_DISASM_WIN->update_source_window (gdbarch, s, val);
65f05602 270}
c906108c 271
13274fc3
UW
272void
273tui_get_begin_asm_address (struct gdbarch **gdbarch_p, CORE_ADDR *addr_p)
c906108c 274{
3add462f 275 struct tui_locator_window *locator;
957b8b5a 276 struct gdbarch *gdbarch = get_current_arch ();
c774cec6 277 CORE_ADDR addr;
c906108c 278
dd1abb8c 279 locator = tui_locator_win_info_ptr ();
c906108c 280
3add462f 281 if (locator->addr == 0)
c906108c 282 {
3b7344d5 283 struct bound_minimal_symbol main_symbol;
0510ab86
SC
284
285 /* Find address of the start of program.
286 Note: this should be language specific. */
287 main_symbol = lookup_minimal_symbol ("main", NULL, NULL);
3b7344d5 288 if (main_symbol.minsym == 0)
0510ab86 289 main_symbol = lookup_minimal_symbol ("MAIN", NULL, NULL);
3b7344d5 290 if (main_symbol.minsym == 0)
0510ab86 291 main_symbol = lookup_minimal_symbol ("_start", NULL, NULL);
3b7344d5 292 if (main_symbol.minsym)
77e371c0 293 addr = BMSYMBOL_VALUE_ADDRESS (main_symbol);
0510ab86
SC
294 else
295 addr = 0;
c906108c 296 }
1cc6d956 297 else /* The target is executing. */
13274fc3 298 {
3add462f
TT
299 gdbarch = locator->gdbarch;
300 addr = locator->addr;
13274fc3 301 }
c906108c 302
13274fc3
UW
303 *gdbarch_p = gdbarch;
304 *addr_p = addr;
65f05602 305}
c906108c 306
77cad3ba 307/* Determine what the low address will be to display in the TUI's
1cc6d956
MS
308 disassembly window. This may or may not be the same as the low
309 address input. */
77cad3ba 310CORE_ADDR
13274fc3
UW
311tui_get_low_disassembly_address (struct gdbarch *gdbarch,
312 CORE_ADDR low, CORE_ADDR pc)
77cad3ba
SC
313{
314 int pos;
315
1cc6d956
MS
316 /* Determine where to start the disassembly so that the pc is about
317 in the middle of the viewport. */
6d7fd9aa
TT
318 if (tui_win_list[DISASSEM_WIN] != NULL)
319 pos = tui_win_list[DISASSEM_WIN]->height;
320 else if (TUI_CMD_WIN == NULL)
321 pos = tui_term_height () / 2 - 2;
322 else
323 pos = tui_term_height () - TUI_CMD_WIN->height - 2;
324 pos = (pos - 2) / 2;
325
13274fc3 326 pc = tui_find_disassembly_address (gdbarch, pc, -pos);
77cad3ba
SC
327
328 if (pc < low)
329 pc = low;
330 return pc;
331}
332
65f05602 333/* Scroll the disassembly forward or backward vertically. */
c906108c 334void
c3bd716f 335tui_disasm_window::do_scroll_vertical (int num_to_scroll)
c906108c 336{
53e7cdba 337 if (!content.empty ())
c906108c 338 {
aec2f747 339 CORE_ADDR pc;
362c05fe 340 struct tui_line_or_address val;
c906108c 341
53e7cdba 342 pc = content[0].line_or_addr.u.addr;
c3bd716f
TT
343 if (num_to_scroll >= 0)
344 num_to_scroll++;
345 else
346 --num_to_scroll;
c906108c 347
362c05fe 348 val.loa = LOA_ADDRESS;
c3bd716f 349 val.u.addr = tui_find_disassembly_address (gdbarch, pc, num_to_scroll);
ed8358e9 350 update_source_window_as_is (gdbarch, NULL, val);
aec2f747
SC
351 }
352}
c2cd8994
TT
353
354bool
355tui_disasm_window::location_matches_p (struct bp_location *loc, int line_no)
356{
357 return (content[line_no].line_or_addr.loa == LOA_ADDRESS
358 && content[line_no].line_or_addr.u.addr == loc->address);
359}
a54700c6 360
088f37dd
TT
361bool
362tui_disasm_window::addr_is_displayed (CORE_ADDR addr) const
363{
364 bool is_displayed = false;
365 int threshold = SCROLL_THRESHOLD;
366
367 int i = 0;
368 while (i < content.size () - threshold && !is_displayed)
369 {
370 is_displayed
371 = (content[i].line_or_addr.loa == LOA_ADDRESS
372 && content[i].line_or_addr.u.addr == addr);
373 i++;
374 }
375
376 return is_displayed;
377}
378
a54700c6 379void
1ae58f0c 380tui_disasm_window::maybe_update (struct frame_info *fi, symtab_and_line sal)
a54700c6
TT
381{
382 CORE_ADDR low;
383
1ae58f0c
TT
384 struct gdbarch *frame_arch = get_frame_arch (fi);
385
386 if (find_pc_partial_function (sal.pc, NULL, &low, NULL) == 0)
a54700c6
TT
387 {
388 /* There is no symbol available for current PC. There is no
389 safe way how to "disassemble backwards". */
1ae58f0c 390 low = sal.pc;
a54700c6
TT
391 }
392 else
1ae58f0c 393 low = tui_get_low_disassembly_address (frame_arch, low, sal.pc);
a54700c6
TT
394
395 struct tui_line_or_address a;
396
397 a.loa = LOA_ADDRESS;
398 a.u.addr = low;
1ae58f0c
TT
399 if (!addr_is_displayed (sal.pc))
400 update_source_window (frame_arch, sal.symtab, a);
a54700c6
TT
401 else
402 {
1ae58f0c 403 a.u.addr = sal.pc;
a54700c6
TT
404 set_is_exec_point_at (a);
405 }
406}
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