Kill init_sal
[deliverable/binutils-gdb.git] / gdb / tui / tui-disasm.c
1 /* Disassembly display.
2
3 Copyright (C) 1998-2017 Free Software Foundation, Inc.
4
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
11 the Free Software Foundation; either version 3 of the License, or
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
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
21
22 #include "defs.h"
23 #include "arch-utils.h"
24 #include "symtab.h"
25 #include "breakpoint.h"
26 #include "frame.h"
27 #include "value.h"
28 #include "source.h"
29 #include "disasm.h"
30 #include "tui/tui.h"
31 #include "tui/tui-data.h"
32 #include "tui/tui-win.h"
33 #include "tui/tui-layout.h"
34 #include "tui/tui-winsource.h"
35 #include "tui/tui-stack.h"
36 #include "tui/tui-file.h"
37 #include "tui/tui-disasm.h"
38 #include "progspace.h"
39 #include "objfiles.h"
40
41 #include "gdb_curses.h"
42
43 struct tui_asm_line
44 {
45 CORE_ADDR addr;
46 char *addr_string;
47 char *insn;
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. */
53 static CORE_ADDR
54 tui_disassemble (struct gdbarch *gdbarch, struct tui_asm_line *asm_lines,
55 CORE_ADDR pc, int count)
56 {
57 string_file gdb_dis_out;
58
59 /* Now construct each line. */
60 for (; count > 0; count--, asm_lines++)
61 {
62 if (asm_lines->addr_string)
63 xfree (asm_lines->addr_string);
64 if (asm_lines->insn)
65 xfree (asm_lines->insn);
66
67 print_address (gdbarch, pc, &gdb_dis_out);
68 asm_lines->addr = pc;
69 asm_lines->addr_string = xstrdup (gdb_dis_out.c_str ());
70
71 gdb_dis_out.clear ();
72
73 pc = pc + gdb_print_insn (gdbarch, pc, &gdb_dis_out, NULL);
74
75 asm_lines->insn = xstrdup (gdb_dis_out.c_str ());
76
77 /* Reset the buffer to empty. */
78 gdb_dis_out.clear ();
79 }
80 return pc;
81 }
82
83 /* Find the disassembly address that corresponds to FROM lines above
84 or below the PC. Variable sized instructions are taken into
85 account by the algorithm. */
86 static CORE_ADDR
87 tui_find_disassembly_address (struct gdbarch *gdbarch, CORE_ADDR pc, int from)
88 {
89 CORE_ADDR new_low;
90 int max_lines;
91 int i;
92 struct tui_asm_line *asm_lines;
93
94 max_lines = (from > 0) ? from : - from;
95 if (max_lines <= 1)
96 return pc;
97
98 asm_lines = XALLOCAVEC (struct tui_asm_line, max_lines);
99 memset (asm_lines, 0, sizeof (struct tui_asm_line) * max_lines);
100
101 new_low = pc;
102 if (from > 0)
103 {
104 tui_disassemble (gdbarch, asm_lines, pc, max_lines);
105 new_low = asm_lines[max_lines - 1].addr;
106 }
107 else
108 {
109 CORE_ADDR last_addr;
110 int pos;
111 struct bound_minimal_symbol msymbol;
112
113 /* Find backward an address which is a symbol and for which
114 disassembling from that address will fill completely the
115 window. */
116 pos = max_lines - 1;
117 do {
118 new_low -= 1 * max_lines;
119 msymbol = lookup_minimal_symbol_by_pc_section (new_low, 0);
120
121 if (msymbol.minsym)
122 new_low = BMSYMBOL_VALUE_ADDRESS (msymbol);
123 else
124 new_low += 1 * max_lines;
125
126 tui_disassemble (gdbarch, asm_lines, new_low, max_lines);
127 last_addr = asm_lines[pos].addr;
128 } while (last_addr > pc && msymbol.minsym);
129
130 /* Scan forward disassembling one instruction at a time until
131 the last visible instruction of the window matches the pc.
132 We keep the disassembled instructions in the 'lines' window
133 and shift it downward (increasing its addresses). */
134 if (last_addr < pc)
135 do
136 {
137 CORE_ADDR next_addr;
138
139 pos++;
140 if (pos >= max_lines)
141 pos = 0;
142
143 next_addr = tui_disassemble (gdbarch, &asm_lines[pos],
144 last_addr, 1);
145
146 /* If there are some problems while disassembling exit. */
147 if (next_addr <= last_addr)
148 break;
149 last_addr = next_addr;
150 } while (last_addr <= pc);
151 pos++;
152 if (pos >= max_lines)
153 pos = 0;
154 new_low = asm_lines[pos].addr;
155 }
156 for (i = 0; i < max_lines; i++)
157 {
158 xfree (asm_lines[i].addr_string);
159 xfree (asm_lines[i].insn);
160 }
161 return new_low;
162 }
163
164 /* Function to set the disassembly window's content. */
165 enum tui_status
166 tui_set_disassem_content (struct gdbarch *gdbarch, CORE_ADDR pc)
167 {
168 enum tui_status ret = TUI_FAILURE;
169 int i;
170 int offset = TUI_DISASM_WIN->detail.source_info.horizontal_offset;
171 int max_lines, line_width;
172 CORE_ADDR cur_pc;
173 struct tui_gen_win_info *locator = tui_locator_win_info_ptr ();
174 int tab_len = tui_default_tab_len ();
175 struct tui_asm_line *asm_lines;
176 int insn_pos;
177 int addr_size, insn_size;
178 char *line;
179
180 if (pc == 0)
181 return TUI_FAILURE;
182
183 ret = tui_alloc_source_buffer (TUI_DISASM_WIN);
184 if (ret != TUI_SUCCESS)
185 return ret;
186
187 TUI_DISASM_WIN->detail.source_info.gdbarch = gdbarch;
188 TUI_DISASM_WIN->detail.source_info.start_line_or_addr.loa = LOA_ADDRESS;
189 TUI_DISASM_WIN->detail.source_info.start_line_or_addr.u.addr = pc;
190 cur_pc = locator->content[0]->which_element.locator.addr;
191
192 /* Window size, excluding highlight box. */
193 max_lines = TUI_DISASM_WIN->generic.height - 2;
194 line_width = TUI_DISASM_WIN->generic.width - 2;
195
196 /* Get temporary table that will hold all strings (addr & insn). */
197 asm_lines = XALLOCAVEC (struct tui_asm_line, max_lines);
198 memset (asm_lines, 0, sizeof (struct tui_asm_line) * max_lines);
199
200 tui_disassemble (gdbarch, asm_lines, pc, max_lines);
201
202 /* Determine maximum address- and instruction lengths. */
203 addr_size = 0;
204 insn_size = 0;
205 for (i = 0; i < max_lines; i++)
206 {
207 size_t len = strlen (asm_lines[i].addr_string);
208
209 if (len > addr_size)
210 addr_size = len;
211
212 len = strlen (asm_lines[i].insn);
213 if (len > insn_size)
214 insn_size = len;
215 }
216
217 /* Align instructions to the same column. */
218 insn_pos = (1 + (addr_size / tab_len)) * tab_len;
219
220 /* Allocate memory to create each line. */
221 line = (char*) alloca (insn_pos + insn_size + 1);
222
223 /* Now construct each line. */
224 for (i = 0; i < max_lines; i++)
225 {
226 struct tui_win_element *element;
227 struct tui_source_element *src;
228 int cur_len;
229
230 element = TUI_DISASM_WIN->generic.content[i];
231 src = &element->which_element.source;
232 strcpy (line, asm_lines[i].addr_string);
233 cur_len = strlen (line);
234 memset (line + cur_len, ' ', insn_pos - cur_len);
235 strcpy (line + insn_pos, asm_lines[i].insn);
236
237 /* Now copy the line taking the offset into account. */
238 if (strlen (line) > offset)
239 {
240 strncpy (src->line, &line[offset], line_width);
241 src->line[line_width] = '\0';
242 }
243 else
244 src->line[0] = '\0';
245
246 src->line_or_addr.loa = LOA_ADDRESS;
247 src->line_or_addr.u.addr = asm_lines[i].addr;
248 src->is_exec_point = asm_lines[i].addr == cur_pc;
249
250 /* See whether there is a breakpoint installed. */
251 src->has_break = (!src->is_exec_point
252 && breakpoint_here_p (current_program_space->aspace,
253 pc)
254 != no_breakpoint_here);
255
256 xfree (asm_lines[i].addr_string);
257 xfree (asm_lines[i].insn);
258 }
259 TUI_DISASM_WIN->generic.content_size = i;
260 return TUI_SUCCESS;
261 }
262
263
264 /* Function to display the disassembly window with disassembled code. */
265 void
266 tui_show_disassem (struct gdbarch *gdbarch, CORE_ADDR start_addr)
267 {
268 struct symtab *s = find_pc_line_symtab (start_addr);
269 struct tui_win_info *win_with_focus = tui_win_with_focus ();
270 struct tui_line_or_address val;
271
272 val.loa = LOA_ADDRESS;
273 val.u.addr = start_addr;
274 tui_add_win_to_layout (DISASSEM_WIN);
275 tui_update_source_window (TUI_DISASM_WIN, gdbarch, s, val, FALSE);
276
277 /* If the focus was in the src win, put it in the asm win, if the
278 source view isn't split. */
279 if (tui_current_layout () != SRC_DISASSEM_COMMAND
280 && win_with_focus == TUI_SRC_WIN)
281 tui_set_win_focus_to (TUI_DISASM_WIN);
282
283 return;
284 }
285
286
287 /* Function to display the disassembly window. */
288 void
289 tui_show_disassem_and_update_source (struct gdbarch *gdbarch,
290 CORE_ADDR start_addr)
291 {
292 struct symtab_and_line sal;
293
294 tui_show_disassem (gdbarch, start_addr);
295 if (tui_current_layout () == SRC_DISASSEM_COMMAND)
296 {
297 struct tui_line_or_address val;
298
299 /* Update what is in the source window if it is displayed too,
300 note that it follows what is in the disassembly window and
301 visa-versa. */
302 sal = find_pc_line (start_addr, 0);
303 val.loa = LOA_LINE;
304 val.u.line_no = sal.line;
305 tui_update_source_window (TUI_SRC_WIN, gdbarch, sal.symtab, val, TRUE);
306 if (sal.symtab)
307 {
308 set_current_source_symtab_and_line (sal);
309 tui_update_locator_fullname (symtab_to_fullname (sal.symtab));
310 }
311 else
312 tui_update_locator_fullname ("?");
313 }
314
315 return;
316 }
317
318 void
319 tui_get_begin_asm_address (struct gdbarch **gdbarch_p, CORE_ADDR *addr_p)
320 {
321 struct tui_gen_win_info *locator;
322 struct tui_locator_element *element;
323 struct gdbarch *gdbarch = get_current_arch ();
324 CORE_ADDR addr;
325
326 locator = tui_locator_win_info_ptr ();
327 element = &locator->content[0]->which_element.locator;
328
329 if (element->addr == 0)
330 {
331 struct bound_minimal_symbol main_symbol;
332
333 /* Find address of the start of program.
334 Note: this should be language specific. */
335 main_symbol = lookup_minimal_symbol ("main", NULL, NULL);
336 if (main_symbol.minsym == 0)
337 main_symbol = lookup_minimal_symbol ("MAIN", NULL, NULL);
338 if (main_symbol.minsym == 0)
339 main_symbol = lookup_minimal_symbol ("_start", NULL, NULL);
340 if (main_symbol.minsym)
341 addr = BMSYMBOL_VALUE_ADDRESS (main_symbol);
342 else
343 addr = 0;
344 }
345 else /* The target is executing. */
346 {
347 gdbarch = element->gdbarch;
348 addr = element->addr;
349 }
350
351 *gdbarch_p = gdbarch;
352 *addr_p = addr;
353 }
354
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 low
357 address input. */
358 CORE_ADDR
359 tui_get_low_disassembly_address (struct gdbarch *gdbarch,
360 CORE_ADDR low, CORE_ADDR pc)
361 {
362 int pos;
363
364 /* Determine where to start the disassembly so that the pc is about
365 in the middle of the viewport. */
366 pos = tui_default_win_viewport_height (DISASSEM_WIN, DISASSEM_COMMAND) / 2;
367 pc = tui_find_disassembly_address (gdbarch, pc, -pos);
368
369 if (pc < low)
370 pc = low;
371 return pc;
372 }
373
374 /* Scroll the disassembly forward or backward vertically. */
375 void
376 tui_vertical_disassem_scroll (enum tui_scroll_direction scroll_direction,
377 int num_to_scroll)
378 {
379 if (TUI_DISASM_WIN->generic.content != NULL)
380 {
381 struct gdbarch *gdbarch = TUI_DISASM_WIN->detail.source_info.gdbarch;
382 CORE_ADDR pc;
383 tui_win_content content;
384 struct tui_line_or_address val;
385 int dir;
386
387 content = (tui_win_content) TUI_DISASM_WIN->generic.content;
388
389 pc = content[0]->which_element.source.line_or_addr.u.addr;
390 num_to_scroll++;
391 dir = (scroll_direction == FORWARD_SCROLL)
392 ? num_to_scroll : -num_to_scroll;
393
394 val.loa = LOA_ADDRESS;
395 val.u.addr = tui_find_disassembly_address (gdbarch, pc, dir);
396 tui_update_source_window_as_is (TUI_DISASM_WIN, gdbarch,
397 NULL, val, FALSE);
398 }
399 }
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