103b1e6658e6fa61b57c4d6776392c45619fbd7f
[deliverable/binutils-gdb.git] / gdb / tui / tui-winsource.c
1 /* TUI display source/assembly window.
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 <ctype.h>
24 #include "symtab.h"
25 #include "frame.h"
26 #include "breakpoint.h"
27 #include "value.h"
28 #include "source.h"
29 #include "objfiles.h"
30 #include "filenames.h"
31
32 #include "tui/tui.h"
33 #include "tui/tui-data.h"
34 #include "tui/tui-stack.h"
35 #include "tui/tui-win.h"
36 #include "tui/tui-wingeneral.h"
37 #include "tui/tui-winsource.h"
38 #include "tui/tui-source.h"
39 #include "tui/tui-disasm.h"
40 #include "gdb_curses.h"
41
42 /* Function to display the "main" routine. */
43 void
44 tui_display_main (void)
45 {
46 if ((tui_source_windows ())->count > 0)
47 {
48 struct gdbarch *gdbarch;
49 CORE_ADDR addr;
50
51 tui_get_begin_asm_address (&gdbarch, &addr);
52 if (addr != (CORE_ADDR) 0)
53 {
54 struct symtab *s;
55
56 tui_update_source_windows_with_addr (gdbarch, addr);
57 s = find_pc_line_symtab (addr);
58 if (s != NULL)
59 tui_update_locator_fullname (symtab_to_fullname (s));
60 else
61 tui_update_locator_fullname ("??");
62 }
63 }
64 }
65
66
67
68 /* Function to display source in the source window. This function
69 initializes the horizontal scroll to 0. */
70 void
71 tui_update_source_window (struct tui_win_info *win_info,
72 struct gdbarch *gdbarch,
73 struct symtab *s,
74 struct tui_line_or_address line_or_addr,
75 int noerror)
76 {
77 win_info->detail.source_info.horizontal_offset = 0;
78 tui_update_source_window_as_is (win_info, gdbarch, s, line_or_addr, noerror);
79
80 return;
81 }
82
83
84 /* Function to display source in the source/asm window. This function
85 shows the source as specified by the horizontal offset. */
86 void
87 tui_update_source_window_as_is (struct tui_win_info *win_info,
88 struct gdbarch *gdbarch,
89 struct symtab *s,
90 struct tui_line_or_address line_or_addr,
91 int noerror)
92 {
93 enum tui_status ret;
94
95 if (win_info->generic.type == SRC_WIN)
96 ret = tui_set_source_content (s, line_or_addr.u.line_no, noerror);
97 else
98 ret = tui_set_disassem_content (gdbarch, line_or_addr.u.addr);
99
100 if (ret == TUI_FAILURE)
101 {
102 tui_clear_source_content (win_info, EMPTY_SOURCE_PROMPT);
103 tui_clear_exec_info_content (win_info);
104 }
105 else
106 {
107 tui_update_breakpoint_info (win_info, 0);
108 tui_show_source_content (win_info);
109 tui_update_exec_info (win_info);
110 if (win_info->generic.type == SRC_WIN)
111 {
112 symtab_and_line sal;
113
114 sal.line = line_or_addr.u.line_no +
115 (win_info->generic.content_size - 2);
116 sal.symtab = s;
117 sal.pspace = SYMTAB_PSPACE (s);
118 set_current_source_symtab_and_line (sal);
119 /* If the focus was in the asm win, put it in the src win if
120 we don't have a split layout. */
121 if (tui_win_with_focus () == TUI_DISASM_WIN
122 && tui_current_layout () != SRC_DISASSEM_COMMAND)
123 tui_set_win_focus_to (TUI_SRC_WIN);
124 }
125 }
126
127
128 return;
129 }
130
131
132 /* Function to ensure that the source and/or disassemly windows
133 reflect the input address. */
134 void
135 tui_update_source_windows_with_addr (struct gdbarch *gdbarch, CORE_ADDR addr)
136 {
137 if (addr != 0)
138 {
139 struct symtab_and_line sal;
140 struct tui_line_or_address l;
141
142 switch (tui_current_layout ())
143 {
144 case DISASSEM_COMMAND:
145 case DISASSEM_DATA_COMMAND:
146 tui_show_disassem (gdbarch, addr);
147 break;
148 case SRC_DISASSEM_COMMAND:
149 tui_show_disassem_and_update_source (gdbarch, addr);
150 break;
151 default:
152 sal = find_pc_line (addr, 0);
153 l.loa = LOA_LINE;
154 l.u.line_no = sal.line;
155 tui_show_symtab_source (gdbarch, sal.symtab, l, FALSE);
156 break;
157 }
158 }
159 else
160 {
161 int i;
162
163 for (i = 0; i < (tui_source_windows ())->count; i++)
164 {
165 struct tui_win_info *win_info = (tui_source_windows ())->list[i];
166
167 tui_clear_source_content (win_info, EMPTY_SOURCE_PROMPT);
168 tui_clear_exec_info_content (win_info);
169 }
170 }
171 }
172
173 /* Function to ensure that the source and/or disassemly windows
174 reflect the input address. */
175 void
176 tui_update_source_windows_with_line (struct symtab *s, int line)
177 {
178 struct gdbarch *gdbarch;
179 CORE_ADDR pc;
180 struct tui_line_or_address l;
181
182 if (!s)
183 return;
184
185 gdbarch = get_objfile_arch (SYMTAB_OBJFILE (s));
186
187 switch (tui_current_layout ())
188 {
189 case DISASSEM_COMMAND:
190 case DISASSEM_DATA_COMMAND:
191 find_line_pc (s, line, &pc);
192 tui_update_source_windows_with_addr (gdbarch, pc);
193 break;
194 default:
195 l.loa = LOA_LINE;
196 l.u.line_no = line;
197 tui_show_symtab_source (gdbarch, s, l, FALSE);
198 if (tui_current_layout () == SRC_DISASSEM_COMMAND)
199 {
200 find_line_pc (s, line, &pc);
201 tui_show_disassem (gdbarch, pc);
202 }
203 break;
204 }
205
206 return;
207 }
208
209 void
210 tui_clear_source_content (struct tui_win_info *win_info,
211 int display_prompt)
212 {
213 if (win_info != NULL)
214 {
215 int i;
216
217 win_info->generic.content_in_use = FALSE;
218 tui_erase_source_content (win_info, display_prompt);
219 for (i = 0; i < win_info->generic.content_size; i++)
220 {
221 struct tui_win_element *element = win_info->generic.content[i];
222
223 element->which_element.source.has_break = FALSE;
224 element->which_element.source.is_exec_point = FALSE;
225 }
226 }
227 }
228
229
230 void
231 tui_erase_source_content (struct tui_win_info *win_info,
232 int display_prompt)
233 {
234 int x_pos;
235 int half_width = (win_info->generic.width - 2) / 2;
236
237 if (win_info->generic.handle != (WINDOW *) NULL)
238 {
239 werase (win_info->generic.handle);
240 tui_check_and_display_highlight_if_needed (win_info);
241 if (display_prompt == EMPTY_SOURCE_PROMPT)
242 {
243 const char *no_src_str;
244
245 if (win_info->generic.type == SRC_WIN)
246 no_src_str = NO_SRC_STRING;
247 else
248 no_src_str = NO_DISASSEM_STRING;
249 if (strlen (no_src_str) >= half_width)
250 x_pos = 1;
251 else
252 x_pos = half_width - strlen (no_src_str);
253 mvwaddstr (win_info->generic.handle,
254 (win_info->generic.height / 2),
255 x_pos,
256 (char *) no_src_str);
257
258 /* elz: Added this function call to set the real contents of
259 the window to what is on the screen, so that later calls
260 to refresh, do display the correct stuff, and not the old
261 image. */
262
263 tui_set_source_content_nil (win_info, no_src_str);
264 }
265 tui_refresh_win (&win_info->generic);
266 }
267 }
268
269
270 /* Redraw the complete line of a source or disassembly window. */
271 static void
272 tui_show_source_line (struct tui_win_info *win_info, int lineno)
273 {
274 struct tui_win_element *line;
275 int x;
276
277 line = win_info->generic.content[lineno - 1];
278 if (line->which_element.source.is_exec_point)
279 wattron (win_info->generic.handle, A_STANDOUT);
280
281 mvwaddstr (win_info->generic.handle, lineno, 1,
282 (char *) line->which_element.source.line);
283 if (line->which_element.source.is_exec_point)
284 wattroff (win_info->generic.handle, A_STANDOUT);
285
286 /* Clear to end of line but stop before the border. */
287 x = getcurx (win_info->generic.handle);
288 while (x + 1 < win_info->generic.width)
289 {
290 waddch (win_info->generic.handle, ' ');
291 x = getcurx (win_info->generic.handle);
292 }
293 }
294
295 void
296 tui_show_source_content (struct tui_win_info *win_info)
297 {
298 if (win_info->generic.content_size > 0)
299 {
300 int lineno;
301
302 for (lineno = 1; lineno <= win_info->generic.content_size; lineno++)
303 tui_show_source_line (win_info, lineno);
304 }
305 else
306 tui_erase_source_content (win_info, TRUE);
307
308 tui_check_and_display_highlight_if_needed (win_info);
309 tui_refresh_win (&win_info->generic);
310 win_info->generic.content_in_use = TRUE;
311 }
312
313
314 /* Scroll the source forward or backward horizontally. */
315 void
316 tui_horizontal_source_scroll (struct tui_win_info *win_info,
317 enum tui_scroll_direction direction,
318 int num_to_scroll)
319 {
320 if (win_info->generic.content != NULL)
321 {
322 struct gdbarch *gdbarch = win_info->detail.source_info.gdbarch;
323 int offset;
324 struct symtab *s = NULL;
325
326 if (win_info->generic.type == SRC_WIN)
327 {
328 struct symtab_and_line cursal
329 = get_current_source_symtab_and_line ();
330
331 if (cursal.symtab == NULL)
332 s = find_pc_line_symtab (get_frame_pc (get_selected_frame (NULL)));
333 else
334 s = cursal.symtab;
335 }
336
337 if (direction == LEFT_SCROLL)
338 offset = win_info->detail.source_info.horizontal_offset
339 + num_to_scroll;
340 else
341 {
342 offset = win_info->detail.source_info.horizontal_offset
343 - num_to_scroll;
344 if (offset < 0)
345 offset = 0;
346 }
347 win_info->detail.source_info.horizontal_offset = offset;
348 tui_update_source_window_as_is (win_info, gdbarch, s,
349 win_info->generic.content[0]
350 ->which_element.source.line_or_addr,
351 FALSE);
352 }
353
354 return;
355 }
356
357
358 /* Set or clear the has_break flag in the line whose line is
359 line_no. */
360
361 void
362 tui_set_is_exec_point_at (struct tui_line_or_address l,
363 struct tui_win_info *win_info)
364 {
365 int changed = 0;
366 int i;
367 tui_win_content content = (tui_win_content) win_info->generic.content;
368
369 i = 0;
370 while (i < win_info->generic.content_size)
371 {
372 int new_state;
373 struct tui_line_or_address content_loa =
374 content[i]->which_element.source.line_or_addr;
375
376 gdb_assert (l.loa == LOA_ADDRESS || l.loa == LOA_LINE);
377 gdb_assert (content_loa.loa == LOA_LINE
378 || content_loa.loa == LOA_ADDRESS);
379 if (content_loa.loa == l.loa
380 && ((l.loa == LOA_LINE && content_loa.u.line_no == l.u.line_no)
381 || (content_loa.u.addr == l.u.addr)))
382 new_state = TRUE;
383 else
384 new_state = FALSE;
385 if (new_state != content[i]->which_element.source.is_exec_point)
386 {
387 changed++;
388 content[i]->which_element.source.is_exec_point = new_state;
389 tui_show_source_line (win_info, i + 1);
390 }
391 i++;
392 }
393 if (changed)
394 tui_refresh_win (&win_info->generic);
395 }
396
397 /* Update the execution windows to show the active breakpoints.
398 This is called whenever a breakpoint is inserted, removed or
399 has its state changed. */
400 void
401 tui_update_all_breakpoint_info (void)
402 {
403 struct tui_list *list = tui_source_windows ();
404 int i;
405
406 for (i = 0; i < list->count; i++)
407 {
408 struct tui_win_info *win = list->list[i];
409
410 if (tui_update_breakpoint_info (win, FALSE))
411 {
412 tui_update_exec_info (win);
413 }
414 }
415 }
416
417
418 /* Scan the source window and the breakpoints to update the has_break
419 information for each line.
420
421 Returns 1 if something changed and the execution window must be
422 refreshed. */
423
424 int
425 tui_update_breakpoint_info (struct tui_win_info *win,
426 int current_only)
427 {
428 int i;
429 int need_refresh = 0;
430 struct tui_source_info *src = &win->detail.source_info;
431
432 for (i = 0; i < win->generic.content_size; i++)
433 {
434 struct breakpoint *bp;
435 extern struct breakpoint *breakpoint_chain;
436 int mode;
437 struct tui_source_element *line;
438
439 line = &win->generic.content[i]->which_element.source;
440 if (current_only && !line->is_exec_point)
441 continue;
442
443 /* Scan each breakpoint to see if the current line has something to
444 do with it. Identify enable/disabled breakpoints as well as
445 those that we already hit. */
446 mode = 0;
447 for (bp = breakpoint_chain;
448 bp != (struct breakpoint *) NULL;
449 bp = bp->next)
450 {
451 struct bp_location *loc;
452
453 gdb_assert (line->line_or_addr.loa == LOA_LINE
454 || line->line_or_addr.loa == LOA_ADDRESS);
455
456 for (loc = bp->loc; loc != NULL; loc = loc->next)
457 {
458 if ((win == TUI_SRC_WIN
459 && loc->symtab != NULL
460 && filename_cmp (src->fullname,
461 symtab_to_fullname (loc->symtab)) == 0
462 && line->line_or_addr.loa == LOA_LINE
463 && loc->line_number == line->line_or_addr.u.line_no)
464 || (win == TUI_DISASM_WIN
465 && line->line_or_addr.loa == LOA_ADDRESS
466 && loc->address == line->line_or_addr.u.addr))
467 {
468 if (bp->enable_state == bp_disabled)
469 mode |= TUI_BP_DISABLED;
470 else
471 mode |= TUI_BP_ENABLED;
472 if (bp->hit_count)
473 mode |= TUI_BP_HIT;
474 if (bp->loc->cond)
475 mode |= TUI_BP_CONDITIONAL;
476 if (bp->type == bp_hardware_breakpoint)
477 mode |= TUI_BP_HARDWARE;
478 }
479 }
480 }
481 if (line->has_break != mode)
482 {
483 line->has_break = mode;
484 need_refresh = 1;
485 }
486 }
487 return need_refresh;
488 }
489
490
491 /* Function to initialize the content of the execution info window,
492 based upon the input window which is either the source or
493 disassembly window. */
494 enum tui_status
495 tui_set_exec_info_content (struct tui_win_info *win_info)
496 {
497 enum tui_status ret = TUI_SUCCESS;
498
499 if (win_info->detail.source_info.execution_info
500 != (struct tui_gen_win_info *) NULL)
501 {
502 struct tui_gen_win_info *exec_info_ptr
503 = win_info->detail.source_info.execution_info;
504
505 if (exec_info_ptr->content == NULL)
506 exec_info_ptr->content =
507 tui_alloc_content (win_info->generic.height, exec_info_ptr->type);
508 if (exec_info_ptr->content != NULL)
509 {
510 int i;
511
512 tui_update_breakpoint_info (win_info, 1);
513 for (i = 0; i < win_info->generic.content_size; i++)
514 {
515 struct tui_win_element *element;
516 struct tui_win_element *src_element;
517 int mode;
518
519 element = exec_info_ptr->content[i];
520 src_element = win_info->generic.content[i];
521
522 memset(element->which_element.simple_string, ' ',
523 sizeof(element->which_element.simple_string));
524 element->which_element.simple_string[TUI_EXECINFO_SIZE - 1] = 0;
525
526 /* Now update the exec info content based upon the state
527 of each line as indicated by the source content. */
528 mode = src_element->which_element.source.has_break;
529 if (mode & TUI_BP_HIT)
530 element->which_element.simple_string[TUI_BP_HIT_POS] =
531 (mode & TUI_BP_HARDWARE) ? 'H' : 'B';
532 else if (mode & (TUI_BP_ENABLED | TUI_BP_DISABLED))
533 element->which_element.simple_string[TUI_BP_HIT_POS] =
534 (mode & TUI_BP_HARDWARE) ? 'h' : 'b';
535
536 if (mode & TUI_BP_ENABLED)
537 element->which_element.simple_string[TUI_BP_BREAK_POS] = '+';
538 else if (mode & TUI_BP_DISABLED)
539 element->which_element.simple_string[TUI_BP_BREAK_POS] = '-';
540
541 if (src_element->which_element.source.is_exec_point)
542 element->which_element.simple_string[TUI_EXEC_POS] = '>';
543 }
544 exec_info_ptr->content_size = win_info->generic.content_size;
545 }
546 else
547 ret = TUI_FAILURE;
548 }
549
550 return ret;
551 }
552
553
554 void
555 tui_show_exec_info_content (struct tui_win_info *win_info)
556 {
557 struct tui_gen_win_info *exec_info
558 = win_info->detail.source_info.execution_info;
559 int cur_line;
560
561 werase (exec_info->handle);
562 tui_refresh_win (exec_info);
563 for (cur_line = 1; (cur_line <= exec_info->content_size); cur_line++)
564 mvwaddstr (exec_info->handle,
565 cur_line,
566 0,
567 (char *) exec_info->content[cur_line - 1]
568 ->which_element.simple_string);
569 tui_refresh_win (exec_info);
570 exec_info->content_in_use = TRUE;
571 }
572
573
574 void
575 tui_erase_exec_info_content (struct tui_win_info *win_info)
576 {
577 struct tui_gen_win_info *exec_info
578 = win_info->detail.source_info.execution_info;
579
580 werase (exec_info->handle);
581 tui_refresh_win (exec_info);
582 }
583
584 void
585 tui_clear_exec_info_content (struct tui_win_info *win_info)
586 {
587 win_info->detail.source_info.execution_info->content_in_use = FALSE;
588 tui_erase_exec_info_content (win_info);
589
590 return;
591 }
592
593 /* Function to update the execution info window. */
594 void
595 tui_update_exec_info (struct tui_win_info *win_info)
596 {
597 tui_set_exec_info_content (win_info);
598 tui_show_exec_info_content (win_info);
599 }
600
601 enum tui_status
602 tui_alloc_source_buffer (struct tui_win_info *win_info)
603 {
604 char *src_line_buf;
605 int i, line_width, max_lines;
606
607 /* The window width/height includes the highlight box. Determine actual
608 content dimensions, including string null-terminators. */
609 max_lines = win_info->generic.height - 2;
610 line_width = win_info->generic.width - 2 + 1;
611
612 /*
613 * Allocate the buffer for the source lines. Do this only once
614 * since they will be re-used for all source displays. The only
615 * other time this will be done is when a window's size changes.
616 */
617 if (win_info->generic.content == NULL)
618 {
619 src_line_buf = (char *)
620 xmalloc ((max_lines * line_width) * sizeof (char));
621 /* Allocate the content list. */
622 win_info->generic.content = tui_alloc_content (max_lines, SRC_WIN);
623 for (i = 0; i < max_lines; i++)
624 win_info->generic.content[i]->which_element.source.line
625 = src_line_buf + (line_width * i);
626 }
627
628 return TUI_SUCCESS;
629 }
630
631
632 /* Answer whether a particular line number or address is displayed
633 in the current source window. */
634 int
635 tui_line_is_displayed (int line,
636 struct tui_win_info *win_info,
637 int check_threshold)
638 {
639 int is_displayed = FALSE;
640 int i, threshold;
641
642 if (check_threshold)
643 threshold = SCROLL_THRESHOLD;
644 else
645 threshold = 0;
646 i = 0;
647 while (i < win_info->generic.content_size - threshold
648 && !is_displayed)
649 {
650 is_displayed
651 = win_info->generic.content[i]
652 ->which_element.source.line_or_addr.loa == LOA_LINE
653 && win_info->generic.content[i]
654 ->which_element.source.line_or_addr.u.line_no == (int) line;
655 i++;
656 }
657
658 return is_displayed;
659 }
660
661
662 /* Answer whether a particular line number or address is displayed
663 in the current source window. */
664 int
665 tui_addr_is_displayed (CORE_ADDR addr,
666 struct tui_win_info *win_info,
667 int check_threshold)
668 {
669 int is_displayed = FALSE;
670 int i, threshold;
671
672 if (check_threshold)
673 threshold = SCROLL_THRESHOLD;
674 else
675 threshold = 0;
676 i = 0;
677 while (i < win_info->generic.content_size - threshold
678 && !is_displayed)
679 {
680 is_displayed
681 = win_info->generic.content[i]
682 ->which_element.source.line_or_addr.loa == LOA_ADDRESS
683 && win_info->generic.content[i]
684 ->which_element.source.line_or_addr.u.addr == addr;
685 i++;
686 }
687
688 return is_displayed;
689 }
690
691
692 /*****************************************
693 ** STATIC LOCAL FUNCTIONS **
694 ******************************************/
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