Add casts to memory allocation related calls
[deliverable/binutils-gdb.git] / gdb / guile / scm-ports.c
1 /* Support for connecting Guile's stdio to GDB's.
2 as well as r/w memory via ports.
3
4 Copyright (C) 2014-2015 Free Software Foundation, Inc.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
20
21 /* See README file in this directory for implementation notes, coding
22 conventions, et.al. */
23
24 #include "defs.h"
25 #include "gdb_select.h"
26 #include "interps.h"
27 #include "target.h"
28 #include "guile-internal.h"
29
30 #ifdef HAVE_POLL
31 #if defined (HAVE_POLL_H)
32 #include <poll.h>
33 #elif defined (HAVE_SYS_POLL_H)
34 #include <sys/poll.h>
35 #endif
36 #endif
37
38 /* A ui-file for sending output to Guile. */
39
40 typedef struct
41 {
42 int *magic;
43 SCM port;
44 } ioscm_file_port;
45
46 /* Data for a memory port. */
47
48 typedef struct
49 {
50 /* Bounds of memory range this port is allowed to access: [start, end).
51 This means that 0xff..ff is not accessible. I can live with that. */
52 CORE_ADDR start, end;
53
54 /* (end - start), recorded for convenience. */
55 ULONGEST size;
56
57 /* Think of this as the lseek value maintained by the kernel.
58 This value is always in the range [0, size]. */
59 ULONGEST current;
60
61 /* The size of the internal r/w buffers.
62 Scheme ports aren't a straightforward mapping to memory r/w.
63 Generally the user specifies how much to r/w and all access is
64 unbuffered. We don't try to provide equivalent access, but we allow
65 the user to specify these values to help get something similar. */
66 unsigned read_buf_size, write_buf_size;
67 } ioscm_memory_port;
68
69 /* Copies of the original system input/output/error ports.
70 These are recorded for debugging purposes. */
71 static SCM orig_input_port_scm;
72 static SCM orig_output_port_scm;
73 static SCM orig_error_port_scm;
74
75 /* This is the stdio port descriptor, scm_ptob_descriptor. */
76 static scm_t_bits stdio_port_desc;
77
78 /* Note: scm_make_port_type takes a char * instead of a const char *. */
79 static /*const*/ char stdio_port_desc_name[] = "gdb:stdio-port";
80
81 /* Names of each gdb port. */
82 static const char input_port_name[] = "gdb:stdin";
83 static const char output_port_name[] = "gdb:stdout";
84 static const char error_port_name[] = "gdb:stderr";
85
86 /* This is the actual port used from Guile.
87 We don't expose these to the user though, to ensure they're not
88 overwritten. */
89 static SCM input_port_scm;
90 static SCM output_port_scm;
91 static SCM error_port_scm;
92
93 /* Magic number to identify port ui-files.
94 Actually, the address of this variable is the magic number. */
95 static int file_port_magic;
96
97 /* Internal enum for specifying output port. */
98 enum oport { GDB_STDOUT, GDB_STDERR };
99
100 /* This is the memory port descriptor, scm_ptob_descriptor. */
101 static scm_t_bits memory_port_desc;
102
103 /* Note: scm_make_port_type takes a char * instead of a const char *. */
104 static /*const*/ char memory_port_desc_name[] = "gdb:memory-port";
105
106 /* The default amount of memory to fetch for each read/write request.
107 Scheme ports don't provide a way to specify the size of a read,
108 which is important to us to minimize the number of inferior interactions,
109 which over a remote link can be important. To compensate we augment the
110 port API with a new function that let's the user specify how much the next
111 read request should fetch. This is the initial value for each new port. */
112 static const unsigned default_read_buf_size = 16;
113 static const unsigned default_write_buf_size = 16;
114
115 /* Arbitrarily limit memory port buffers to 1 byte to 4K. */
116 static const unsigned min_memory_port_buf_size = 1;
117 static const unsigned max_memory_port_buf_size = 4096;
118
119 /* "out of range" error message for buf sizes. */
120 static char *out_of_range_buf_size;
121
122 /* Keywords used by open-memory. */
123 static SCM mode_keyword;
124 static SCM start_keyword;
125 static SCM size_keyword;
126 \f
127 /* Helper to do the low level work of opening a port.
128 Newer versions of Guile (2.1.x) have scm_c_make_port. */
129
130 static SCM
131 ioscm_open_port (scm_t_bits port_type, long mode_bits)
132 {
133 SCM port;
134
135 #if 0 /* TODO: Guile doesn't export this. What to do? */
136 scm_i_scm_pthread_mutex_lock (&scm_i_port_table_mutex);
137 #endif
138
139 port = scm_new_port_table_entry (port_type);
140
141 SCM_SET_CELL_TYPE (port, port_type | mode_bits);
142
143 #if 0 /* TODO: Guile doesn't export this. What to do? */
144 scm_i_pthread_mutex_unlock (&scm_i_port_table_mutex);
145 #endif
146
147 return port;
148 }
149 \f
150 /* Support for connecting Guile's stdio ports to GDB's stdio ports. */
151
152 /* The scm_t_ptob_descriptor.input_waiting "method".
153 Return a lower bound on the number of bytes available for input. */
154
155 static int
156 ioscm_input_waiting (SCM port)
157 {
158 int fdes = 0;
159
160 if (! scm_is_eq (port, input_port_scm))
161 return 0;
162
163 #ifdef HAVE_POLL
164 {
165 /* This is copied from libguile/fports.c. */
166 struct pollfd pollfd = { fdes, POLLIN, 0 };
167 static int use_poll = -1;
168
169 if (use_poll < 0)
170 {
171 /* This is copied from event-loop.c: poll cannot be used for stdin on
172 m68k-motorola-sysv. */
173 struct pollfd test_pollfd = { fdes, POLLIN, 0 };
174
175 if (poll (&test_pollfd, 1, 0) == 1 && (test_pollfd.revents & POLLNVAL))
176 use_poll = 0;
177 else
178 use_poll = 1;
179 }
180
181 if (use_poll)
182 {
183 /* Guile doesn't export SIGINT hooks like Python does.
184 For now pass EINTR to scm_syserror, that's what fports.c does. */
185 if (poll (&pollfd, 1, 0) < 0)
186 scm_syserror (FUNC_NAME);
187
188 return pollfd.revents & POLLIN ? 1 : 0;
189 }
190 }
191 /* Fall through. */
192 #endif
193
194 {
195 struct timeval timeout;
196 fd_set input_fds;
197 int num_fds = fdes + 1;
198 int num_found;
199
200 memset (&timeout, 0, sizeof (timeout));
201 FD_ZERO (&input_fds);
202 FD_SET (fdes, &input_fds);
203
204 num_found = gdb_select (num_fds, &input_fds, NULL, NULL, &timeout);
205 if (num_found < 0)
206 {
207 /* Guile doesn't export SIGINT hooks like Python does.
208 For now pass EINTR to scm_syserror, that's what fports.c does. */
209 scm_syserror (FUNC_NAME);
210 }
211 return num_found > 0 && FD_ISSET (fdes, &input_fds);
212 }
213 }
214
215 /* The scm_t_ptob_descriptor.fill_input "method". */
216
217 static int
218 ioscm_fill_input (SCM port)
219 {
220 /* Borrowed from libguile/fports.c. */
221 long count;
222 scm_t_port *pt = SCM_PTAB_ENTRY (port);
223
224 /* If we're called on stdout,stderr, punt. */
225 if (! scm_is_eq (port, input_port_scm))
226 return (scm_t_wchar) EOF; /* Set errno and return -1? */
227
228 gdb_flush (gdb_stdout);
229 gdb_flush (gdb_stderr);
230
231 count = ui_file_read (gdb_stdin, (char *) pt->read_buf, pt->read_buf_size);
232 if (count == -1)
233 scm_syserror (FUNC_NAME);
234 if (count == 0)
235 return (scm_t_wchar) EOF;
236
237 pt->read_pos = pt->read_buf;
238 pt->read_end = pt->read_buf + count;
239 return *pt->read_buf;
240 }
241
242 /* Like fputstrn_filtered, but don't escape characters, except nul.
243 Also like fputs_filtered, but a length is specified. */
244
245 static void
246 fputsn_filtered (const char *s, size_t size, struct ui_file *stream)
247 {
248 size_t i;
249
250 for (i = 0; i < size; ++i)
251 {
252 if (s[i] == '\0')
253 fputs_filtered ("\\000", stream);
254 else
255 fputc_filtered (s[i], stream);
256 }
257 }
258
259 /* Write to gdb's stdout or stderr. */
260
261 static void
262 ioscm_write (SCM port, const void *data, size_t size)
263 {
264
265 /* If we're called on stdin, punt. */
266 if (scm_is_eq (port, input_port_scm))
267 return;
268
269 TRY
270 {
271 if (scm_is_eq (port, error_port_scm))
272 fputsn_filtered (data, size, gdb_stderr);
273 else
274 fputsn_filtered (data, size, gdb_stdout);
275 }
276 CATCH (except, RETURN_MASK_ALL)
277 {
278 GDBSCM_HANDLE_GDB_EXCEPTION (except);
279 }
280 END_CATCH
281 }
282
283 /* Flush gdb's stdout or stderr. */
284
285 static void
286 ioscm_flush (SCM port)
287 {
288 /* If we're called on stdin, punt. */
289 if (scm_is_eq (port, input_port_scm))
290 return;
291
292 if (scm_is_eq (port, error_port_scm))
293 gdb_flush (gdb_stderr);
294 else
295 gdb_flush (gdb_stdout);
296 }
297
298 /* Initialize the gdb stdio port type.
299
300 N.B. isatty? will fail on these ports, it is only supported for file
301 ports. IWBN if we could "subclass" file ports. */
302
303 static void
304 ioscm_init_gdb_stdio_port (void)
305 {
306 stdio_port_desc = scm_make_port_type (stdio_port_desc_name,
307 ioscm_fill_input, ioscm_write);
308
309 scm_set_port_input_waiting (stdio_port_desc, ioscm_input_waiting);
310 scm_set_port_flush (stdio_port_desc, ioscm_flush);
311 }
312
313 /* Subroutine of ioscm_make_gdb_stdio_port to simplify it.
314 Set up the buffers of port PORT.
315 MODE_BITS are the mode bits of PORT. */
316
317 static void
318 ioscm_init_stdio_buffers (SCM port, long mode_bits)
319 {
320 scm_t_port *pt = SCM_PTAB_ENTRY (port);
321 #define GDB_STDIO_BUFFER_DEFAULT_SIZE 1024
322 int size = mode_bits & SCM_BUF0 ? 0 : GDB_STDIO_BUFFER_DEFAULT_SIZE;
323 int writing = (mode_bits & SCM_WRTNG) != 0;
324
325 /* This is heavily copied from scm_fport_buffer_add. */
326
327 if (!writing && size > 0)
328 {
329 pt->read_buf
330 = (unsigned char *) scm_gc_malloc_pointerless (size, "port buffer");
331 pt->read_pos = pt->read_end = pt->read_buf;
332 pt->read_buf_size = size;
333 }
334 else
335 {
336 pt->read_pos = pt->read_buf = pt->read_end = &pt->shortbuf;
337 pt->read_buf_size = 1;
338 }
339
340 if (writing && size > 0)
341 {
342 pt->write_buf
343 = (unsigned char *) scm_gc_malloc_pointerless (size, "port buffer");
344 pt->write_pos = pt->write_buf;
345 pt->write_buf_size = size;
346 }
347 else
348 {
349 pt->write_buf = pt->write_pos = &pt->shortbuf;
350 pt->write_buf_size = 1;
351 }
352 pt->write_end = pt->write_buf + pt->write_buf_size;
353 }
354
355 /* Create a gdb stdio port. */
356
357 static SCM
358 ioscm_make_gdb_stdio_port (int fd)
359 {
360 int is_a_tty = isatty (fd);
361 const char *name;
362 long mode_bits;
363 SCM port;
364
365 switch (fd)
366 {
367 case 0:
368 name = input_port_name;
369 mode_bits = scm_mode_bits (is_a_tty ? "r0" : "r");
370 break;
371 case 1:
372 name = output_port_name;
373 mode_bits = scm_mode_bits (is_a_tty ? "w0" : "w");
374 break;
375 case 2:
376 name = error_port_name;
377 mode_bits = scm_mode_bits (is_a_tty ? "w0" : "w");
378 break;
379 default:
380 gdb_assert_not_reached ("bad stdio file descriptor");
381 }
382
383 port = ioscm_open_port (stdio_port_desc, mode_bits);
384
385 scm_set_port_filename_x (port, gdbscm_scm_from_c_string (name));
386
387 ioscm_init_stdio_buffers (port, mode_bits);
388
389 return port;
390 }
391
392 /* (stdio-port? object) -> boolean */
393
394 static SCM
395 gdbscm_stdio_port_p (SCM scm)
396 {
397 /* This is copied from SCM_FPORTP. */
398 return scm_from_bool (!SCM_IMP (scm)
399 && (SCM_TYP16 (scm) == stdio_port_desc));
400 }
401 \f
402 /* GDB's ports are accessed via functions to keep them read-only. */
403
404 /* (input-port) -> port */
405
406 static SCM
407 gdbscm_input_port (void)
408 {
409 return input_port_scm;
410 }
411
412 /* (output-port) -> port */
413
414 static SCM
415 gdbscm_output_port (void)
416 {
417 return output_port_scm;
418 }
419
420 /* (error-port) -> port */
421
422 static SCM
423 gdbscm_error_port (void)
424 {
425 return error_port_scm;
426 }
427 \f
428 /* Support for sending GDB I/O to Guile ports. */
429
430 static void
431 ioscm_file_port_delete (struct ui_file *file)
432 {
433 ioscm_file_port *stream = ui_file_data (file);
434
435 if (stream->magic != &file_port_magic)
436 internal_error (__FILE__, __LINE__,
437 _("ioscm_file_port_delete: bad magic number"));
438 xfree (stream);
439 }
440
441 static void
442 ioscm_file_port_rewind (struct ui_file *file)
443 {
444 ioscm_file_port *stream = ui_file_data (file);
445
446 if (stream->magic != &file_port_magic)
447 internal_error (__FILE__, __LINE__,
448 _("ioscm_file_port_rewind: bad magic number"));
449
450 scm_truncate_file (stream->port, 0);
451 }
452
453 static void
454 ioscm_file_port_put (struct ui_file *file,
455 ui_file_put_method_ftype *write,
456 void *dest)
457 {
458 ioscm_file_port *stream = ui_file_data (file);
459
460 if (stream->magic != &file_port_magic)
461 internal_error (__FILE__, __LINE__,
462 _("ioscm_file_port_put: bad magic number"));
463
464 /* This function doesn't meld with ports very well. */
465 }
466
467 static void
468 ioscm_file_port_write (struct ui_file *file,
469 const char *buffer,
470 long length_buffer)
471 {
472 ioscm_file_port *stream = ui_file_data (file);
473
474 if (stream->magic != &file_port_magic)
475 internal_error (__FILE__, __LINE__,
476 _("ioscm_pot_file_write: bad magic number"));
477
478 scm_c_write (stream->port, buffer, length_buffer);
479 }
480
481 /* Return a ui_file that writes to PORT. */
482
483 static struct ui_file *
484 ioscm_file_port_new (SCM port)
485 {
486 ioscm_file_port *stream = XCNEW (ioscm_file_port);
487 struct ui_file *file = ui_file_new ();
488
489 set_ui_file_data (file, stream, ioscm_file_port_delete);
490 set_ui_file_rewind (file, ioscm_file_port_rewind);
491 set_ui_file_put (file, ioscm_file_port_put);
492 set_ui_file_write (file, ioscm_file_port_write);
493 stream->magic = &file_port_magic;
494 stream->port = port;
495
496 return file;
497 }
498 \f
499 /* Helper routine for with-{output,error}-to-port. */
500
501 static SCM
502 ioscm_with_output_to_port_worker (SCM port, SCM thunk, enum oport oport,
503 const char *func_name)
504 {
505 struct ui_file *port_file;
506 struct cleanup *cleanups;
507 SCM result;
508
509 SCM_ASSERT_TYPE (gdbscm_is_true (scm_output_port_p (port)), port,
510 SCM_ARG1, func_name, _("output port"));
511 SCM_ASSERT_TYPE (gdbscm_is_true (scm_thunk_p (thunk)), thunk,
512 SCM_ARG2, func_name, _("thunk"));
513
514 cleanups = set_batch_flag_and_make_cleanup_restore_page_info ();
515
516 make_cleanup_restore_integer (&interpreter_async);
517 interpreter_async = 0;
518
519 port_file = ioscm_file_port_new (port);
520
521 make_cleanup_ui_file_delete (port_file);
522
523 if (oport == GDB_STDERR)
524 {
525 make_cleanup_restore_ui_file (&gdb_stderr);
526 gdb_stderr = port_file;
527 }
528 else
529 {
530 make_cleanup_restore_ui_file (&gdb_stdout);
531
532 if (ui_out_redirect (current_uiout, port_file) < 0)
533 warning (_("Current output protocol does not support redirection"));
534 else
535 make_cleanup_ui_out_redirect_pop (current_uiout);
536
537 gdb_stdout = port_file;
538 }
539
540 result = gdbscm_safe_call_0 (thunk, NULL);
541
542 do_cleanups (cleanups);
543
544 if (gdbscm_is_exception (result))
545 gdbscm_throw (result);
546
547 return result;
548 }
549
550 /* (%with-gdb-output-to-port port thunk) -> object
551 This function is experimental.
552 IWBN to not include "gdb" in the name, but it would collide with a standard
553 procedure, and it's common to import the gdb module without a prefix.
554 There are ways around this, but they're more cumbersome.
555
556 This has % in the name because it's experimental, and we want the
557 user-visible version to come from module (gdb experimental). */
558
559 static SCM
560 gdbscm_percent_with_gdb_output_to_port (SCM port, SCM thunk)
561 {
562 return ioscm_with_output_to_port_worker (port, thunk, GDB_STDOUT, FUNC_NAME);
563 }
564
565 /* (%with-gdb-error-to-port port thunk) -> object
566 This function is experimental.
567 IWBN to not include "gdb" in the name, but it would collide with a standard
568 procedure, and it's common to import the gdb module without a prefix.
569 There are ways around this, but they're more cumbersome.
570
571 This has % in the name because it's experimental, and we want the
572 user-visible version to come from module (gdb experimental). */
573
574 static SCM
575 gdbscm_percent_with_gdb_error_to_port (SCM port, SCM thunk)
576 {
577 return ioscm_with_output_to_port_worker (port, thunk, GDB_STDERR, FUNC_NAME);
578 }
579 \f
580 /* Support for r/w memory via ports. */
581
582 /* Perform an "lseek" to OFFSET,WHENCE on memory port IOMEM.
583 OFFSET must be in the range [0,size].
584 The result is non-zero for success, zero for failure. */
585
586 static int
587 ioscm_lseek_address (ioscm_memory_port *iomem, LONGEST offset, int whence)
588 {
589 CORE_ADDR new_current;
590
591 gdb_assert (iomem->current <= iomem->size);
592
593 switch (whence)
594 {
595 case SEEK_CUR:
596 /* Catch over/underflow. */
597 if ((offset < 0 && iomem->current + offset > iomem->current)
598 || (offset > 0 && iomem->current + offset < iomem->current))
599 return 0;
600 new_current = iomem->current + offset;
601 break;
602 case SEEK_SET:
603 new_current = offset;
604 break;
605 case SEEK_END:
606 if (offset == 0)
607 {
608 new_current = iomem->size;
609 break;
610 }
611 /* TODO: Not supported yet. */
612 return 0;
613 default:
614 return 0;
615 }
616
617 if (new_current > iomem->size)
618 return 0;
619 iomem->current = new_current;
620 return 1;
621 }
622
623 /* "fill_input" method for memory ports. */
624
625 static int
626 gdbscm_memory_port_fill_input (SCM port)
627 {
628 scm_t_port *pt = SCM_PTAB_ENTRY (port);
629 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
630 size_t to_read;
631
632 /* "current" is the offset of the first byte we want to read. */
633 gdb_assert (iomem->current <= iomem->size);
634 if (iomem->current == iomem->size)
635 return EOF;
636
637 /* Don't read outside the allowed memory range. */
638 to_read = pt->read_buf_size;
639 if (to_read > iomem->size - iomem->current)
640 to_read = iomem->size - iomem->current;
641
642 if (target_read_memory (iomem->start + iomem->current, pt->read_buf,
643 to_read) != 0)
644 gdbscm_memory_error (FUNC_NAME, _("error reading memory"), SCM_EOL);
645
646 iomem->current += to_read;
647 pt->read_pos = pt->read_buf;
648 pt->read_end = pt->read_buf + to_read;
649 return *pt->read_buf;
650 }
651
652 /* "end_input" method for memory ports.
653 Clear the read buffer and adjust the file position for unread bytes. */
654
655 static void
656 gdbscm_memory_port_end_input (SCM port, int offset)
657 {
658 scm_t_port *pt = SCM_PTAB_ENTRY (port);
659 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
660 size_t remaining = pt->read_end - pt->read_pos;
661
662 /* Note: Use of "int offset" is specified by Guile ports API. */
663 if ((offset < 0 && remaining + offset > remaining)
664 || (offset > 0 && remaining + offset < remaining))
665 {
666 gdbscm_out_of_range_error (FUNC_NAME, 0, scm_from_int (offset),
667 _("overflow in offset calculation"));
668 }
669 offset += remaining;
670
671 if (offset > 0)
672 {
673 pt->read_pos = pt->read_end;
674 /* Throw error if unread-char used at beginning of file
675 then attempting to write. Seems correct. */
676 if (!ioscm_lseek_address (iomem, -offset, SEEK_CUR))
677 {
678 gdbscm_out_of_range_error (FUNC_NAME, 0, scm_from_int (offset),
679 _("bad offset"));
680 }
681 }
682
683 pt->rw_active = SCM_PORT_NEITHER;
684 }
685
686 /* "flush" method for memory ports. */
687
688 static void
689 gdbscm_memory_port_flush (SCM port)
690 {
691 scm_t_port *pt = SCM_PTAB_ENTRY (port);
692 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
693 size_t to_write = pt->write_pos - pt->write_buf;
694
695 if (to_write == 0)
696 return;
697
698 /* There's no way to indicate a short write, so if the request goes past
699 the end of the port's memory range, flag an error. */
700 if (to_write > iomem->size - iomem->current)
701 {
702 gdbscm_out_of_range_error (FUNC_NAME, 0,
703 gdbscm_scm_from_ulongest (to_write),
704 _("writing beyond end of memory range"));
705 }
706
707 if (target_write_memory (iomem->start + iomem->current, pt->write_buf,
708 to_write) != 0)
709 gdbscm_memory_error (FUNC_NAME, _("error writing memory"), SCM_EOL);
710
711 iomem->current += to_write;
712 pt->write_pos = pt->write_buf;
713 pt->rw_active = SCM_PORT_NEITHER;
714 }
715
716 /* "write" method for memory ports. */
717
718 static void
719 gdbscm_memory_port_write (SCM port, const void *data, size_t size)
720 {
721 scm_t_port *pt = SCM_PTAB_ENTRY (port);
722 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
723
724 /* There's no way to indicate a short write, so if the request goes past
725 the end of the port's memory range, flag an error. */
726 if (size > iomem->size - iomem->current)
727 {
728 gdbscm_out_of_range_error (FUNC_NAME, 0, gdbscm_scm_from_ulongest (size),
729 _("writing beyond end of memory range"));
730 }
731
732 if (pt->write_buf == &pt->shortbuf)
733 {
734 /* Unbuffered port. */
735 if (target_write_memory (iomem->start + iomem->current, data, size) != 0)
736 gdbscm_memory_error (FUNC_NAME, _("error writing memory"), SCM_EOL);
737 iomem->current += size;
738 return;
739 }
740
741 /* Note: The edge case of what to do when the buffer exactly fills is
742 debatable. Guile flushes when the buffer exactly fills up, so we
743 do too. It's counter-intuitive to my mind, but in case there's a
744 subtlety somewhere that depends on this, we do the same. */
745
746 {
747 size_t space = pt->write_end - pt->write_pos;
748
749 if (size < space)
750 {
751 /* Data fits in buffer, and does not fill it. */
752 memcpy (pt->write_pos, data, size);
753 pt->write_pos += size;
754 }
755 else
756 {
757 memcpy (pt->write_pos, data, space);
758 pt->write_pos = pt->write_end;
759 gdbscm_memory_port_flush (port);
760 {
761 const void *ptr = ((const char *) data) + space;
762 size_t remaining = size - space;
763
764 if (remaining >= pt->write_buf_size)
765 {
766 if (target_write_memory (iomem->start + iomem->current, ptr,
767 remaining) != 0)
768 gdbscm_memory_error (FUNC_NAME, _("error writing memory"),
769 SCM_EOL);
770 iomem->current += remaining;
771 }
772 else
773 {
774 memcpy (pt->write_pos, ptr, remaining);
775 pt->write_pos += remaining;
776 }
777 }
778 }
779 }
780 }
781
782 /* "seek" method for memory ports. */
783
784 static scm_t_off
785 gdbscm_memory_port_seek (SCM port, scm_t_off offset, int whence)
786 {
787 scm_t_port *pt = SCM_PTAB_ENTRY (port);
788 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
789 CORE_ADDR result;
790 int rc;
791
792 if (pt->rw_active == SCM_PORT_WRITE)
793 {
794 if (offset != 0 || whence != SEEK_CUR)
795 {
796 gdbscm_memory_port_flush (port);
797 rc = ioscm_lseek_address (iomem, offset, whence);
798 result = iomem->current;
799 }
800 else
801 {
802 /* Read current position without disturbing the buffer,
803 but flag an error if what's in the buffer goes outside the
804 allowed range. */
805 CORE_ADDR current = iomem->current;
806 size_t delta = pt->write_pos - pt->write_buf;
807
808 if (current + delta < current
809 || current + delta > iomem->size)
810 rc = 0;
811 else
812 {
813 result = current + delta;
814 rc = 1;
815 }
816 }
817 }
818 else if (pt->rw_active == SCM_PORT_READ)
819 {
820 if (offset != 0 || whence != SEEK_CUR)
821 {
822 scm_end_input (port);
823 rc = ioscm_lseek_address (iomem, offset, whence);
824 result = iomem->current;
825 }
826 else
827 {
828 /* Read current position without disturbing the buffer
829 (particularly the unread-char buffer). */
830 CORE_ADDR current = iomem->current;
831 size_t remaining = pt->read_end - pt->read_pos;
832
833 if (current - remaining > current
834 || current - remaining < iomem->start)
835 rc = 0;
836 else
837 {
838 result = current - remaining;
839 rc = 1;
840 }
841
842 if (rc != 0 && pt->read_buf == pt->putback_buf)
843 {
844 size_t saved_remaining = pt->saved_read_end - pt->saved_read_pos;
845
846 if (result - saved_remaining > result
847 || result - saved_remaining < iomem->start)
848 rc = 0;
849 else
850 result -= saved_remaining;
851 }
852 }
853 }
854 else /* SCM_PORT_NEITHER */
855 {
856 rc = ioscm_lseek_address (iomem, offset, whence);
857 result = iomem->current;
858 }
859
860 if (rc == 0)
861 {
862 gdbscm_out_of_range_error (FUNC_NAME, 0,
863 gdbscm_scm_from_longest (offset),
864 _("bad seek"));
865 }
866
867 /* TODO: The Guile API doesn't support 32x64. We can't fix that here,
868 and there's no need to throw an error if the new address can't be
869 represented in a scm_t_off. But we could return something less
870 clumsy. */
871 return result;
872 }
873
874 /* "close" method for memory ports. */
875
876 static int
877 gdbscm_memory_port_close (SCM port)
878 {
879 scm_t_port *pt = SCM_PTAB_ENTRY (port);
880 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
881
882 gdbscm_memory_port_flush (port);
883
884 if (pt->read_buf == pt->putback_buf)
885 pt->read_buf = pt->saved_read_buf;
886 if (pt->read_buf != &pt->shortbuf)
887 xfree (pt->read_buf);
888 if (pt->write_buf != &pt->shortbuf)
889 xfree (pt->write_buf);
890 scm_gc_free (iomem, sizeof (*iomem), "memory port");
891
892 return 0;
893 }
894
895 /* "free" method for memory ports. */
896
897 static size_t
898 gdbscm_memory_port_free (SCM port)
899 {
900 gdbscm_memory_port_close (port);
901
902 return 0;
903 }
904
905 /* "print" method for memory ports. */
906
907 static int
908 gdbscm_memory_port_print (SCM exp, SCM port, scm_print_state *pstate)
909 {
910 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (exp);
911 char *type = SCM_PTOBNAME (SCM_PTOBNUM (exp));
912
913 scm_puts ("#<", port);
914 scm_print_port_mode (exp, port);
915 /* scm_print_port_mode includes a trailing space. */
916 gdbscm_printf (port, "%s %s-%s", type,
917 hex_string (iomem->start), hex_string (iomem->end));
918 scm_putc ('>', port);
919 return 1;
920 }
921
922 /* Create the port type used for memory. */
923
924 static void
925 ioscm_init_memory_port_type (void)
926 {
927 memory_port_desc = scm_make_port_type (memory_port_desc_name,
928 gdbscm_memory_port_fill_input,
929 gdbscm_memory_port_write);
930
931 scm_set_port_end_input (memory_port_desc, gdbscm_memory_port_end_input);
932 scm_set_port_flush (memory_port_desc, gdbscm_memory_port_flush);
933 scm_set_port_seek (memory_port_desc, gdbscm_memory_port_seek);
934 scm_set_port_close (memory_port_desc, gdbscm_memory_port_close);
935 scm_set_port_free (memory_port_desc, gdbscm_memory_port_free);
936 scm_set_port_print (memory_port_desc, gdbscm_memory_port_print);
937 }
938
939 /* Helper for gdbscm_open_memory to parse the mode bits.
940 An exception is thrown if MODE is invalid. */
941
942 static long
943 ioscm_parse_mode_bits (const char *func_name, const char *mode)
944 {
945 const char *p;
946 long mode_bits;
947
948 if (*mode != 'r' && *mode != 'w')
949 {
950 gdbscm_out_of_range_error (func_name, 0,
951 gdbscm_scm_from_c_string (mode),
952 _("bad mode string"));
953 }
954 for (p = mode + 1; *p != '\0'; ++p)
955 {
956 switch (*p)
957 {
958 case '0':
959 case 'b':
960 case '+':
961 break;
962 default:
963 gdbscm_out_of_range_error (func_name, 0,
964 gdbscm_scm_from_c_string (mode),
965 _("bad mode string"));
966 }
967 }
968
969 /* Kinda awkward to convert the mode from SCM -> string only to have Guile
970 convert it back to SCM, but that's the API we have to work with. */
971 mode_bits = scm_mode_bits ((char *) mode);
972
973 return mode_bits;
974 }
975
976 /* Helper for gdbscm_open_memory to finish initializing the port.
977 The port has address range [start,end).
978 This means that address of 0xff..ff is not accessible.
979 I can live with that. */
980
981 static void
982 ioscm_init_memory_port (SCM port, CORE_ADDR start, CORE_ADDR end)
983 {
984 scm_t_port *pt;
985 ioscm_memory_port *iomem;
986 int buffered = (SCM_CELL_WORD_0 (port) & SCM_BUF0) == 0;
987
988 gdb_assert (start <= end);
989
990 iomem = (ioscm_memory_port *) scm_gc_malloc_pointerless (sizeof (*iomem),
991 "memory port");
992
993 iomem->start = start;
994 iomem->end = end;
995 iomem->size = end - start;
996 iomem->current = 0;
997 if (buffered)
998 {
999 iomem->read_buf_size = default_read_buf_size;
1000 iomem->write_buf_size = default_write_buf_size;
1001 }
1002 else
1003 {
1004 iomem->read_buf_size = 1;
1005 iomem->write_buf_size = 1;
1006 }
1007
1008 pt = SCM_PTAB_ENTRY (port);
1009 /* Match the expectation of `binary-port?'. */
1010 pt->encoding = NULL;
1011 pt->rw_random = 1;
1012 pt->read_buf_size = iomem->read_buf_size;
1013 pt->write_buf_size = iomem->write_buf_size;
1014 if (buffered)
1015 {
1016 pt->read_buf = (unsigned char *) xmalloc (pt->read_buf_size);
1017 pt->write_buf = (unsigned char *) xmalloc (pt->write_buf_size);
1018 }
1019 else
1020 {
1021 pt->read_buf = &pt->shortbuf;
1022 pt->write_buf = &pt->shortbuf;
1023 }
1024 pt->read_pos = pt->read_end = pt->read_buf;
1025 pt->write_pos = pt->write_buf;
1026 pt->write_end = pt->write_buf + pt->write_buf_size;
1027
1028 SCM_SETSTREAM (port, iomem);
1029 }
1030
1031 /* Re-initialize a memory port, updating its read/write buffer sizes.
1032 An exception is thrown if the port is unbuffered.
1033 TODO: Allow switching buffered/unbuffered.
1034 An exception is also thrown if data is still buffered, except in the case
1035 where the buffer size isn't changing (since that's just a nop). */
1036
1037 static void
1038 ioscm_reinit_memory_port (SCM port, size_t read_buf_size,
1039 size_t write_buf_size, const char *func_name)
1040 {
1041 scm_t_port *pt = SCM_PTAB_ENTRY (port);
1042 ioscm_memory_port *iomem = (ioscm_memory_port *) SCM_STREAM (port);
1043
1044 gdb_assert (read_buf_size >= min_memory_port_buf_size
1045 && read_buf_size <= max_memory_port_buf_size);
1046 gdb_assert (write_buf_size >= min_memory_port_buf_size
1047 && write_buf_size <= max_memory_port_buf_size);
1048
1049 /* First check if the port is unbuffered. */
1050
1051 if (pt->read_buf == &pt->shortbuf)
1052 {
1053 gdb_assert (pt->write_buf == &pt->shortbuf);
1054 scm_misc_error (func_name, _("port is unbuffered: ~a"),
1055 scm_list_1 (port));
1056 }
1057
1058 /* Next check if anything is buffered. */
1059
1060 if (read_buf_size != pt->read_buf_size
1061 && pt->read_end != pt->read_buf)
1062 {
1063 scm_misc_error (func_name, _("read buffer not empty: ~a"),
1064 scm_list_1 (port));
1065 }
1066
1067 if (write_buf_size != pt->write_buf_size
1068 && pt->write_pos != pt->write_buf)
1069 {
1070 scm_misc_error (func_name, _("write buffer not empty: ~a"),
1071 scm_list_1 (port));
1072 }
1073
1074 /* Now we can update the buffer sizes, but only if the size has changed. */
1075
1076 if (read_buf_size != pt->read_buf_size)
1077 {
1078 iomem->read_buf_size = read_buf_size;
1079 pt->read_buf_size = read_buf_size;
1080 xfree (pt->read_buf);
1081 pt->read_buf = (unsigned char *) xmalloc (pt->read_buf_size);
1082 pt->read_pos = pt->read_end = pt->read_buf;
1083 }
1084
1085 if (write_buf_size != pt->write_buf_size)
1086 {
1087 iomem->write_buf_size = write_buf_size;
1088 pt->write_buf_size = write_buf_size;
1089 xfree (pt->write_buf);
1090 pt->write_buf = (unsigned char *) xmalloc (pt->write_buf_size);
1091 pt->write_pos = pt->write_buf;
1092 pt->write_end = pt->write_buf + pt->write_buf_size;
1093 }
1094 }
1095
1096 /* (open-memory [#:mode string] [#:start address] [#:size integer]) -> port
1097 Return a port that can be used for reading and writing memory.
1098 MODE is a string, and must be one of "r", "w", or "r+".
1099 "0" may be appended to MODE to mark the port as unbuffered.
1100 For compatibility "b" (binary) may also be appended, but we ignore it:
1101 memory ports are binary only.
1102
1103 The chunk of memory that can be accessed can be bounded.
1104 If both START,SIZE are unspecified, all of memory can be accessed
1105 (except 0xff..ff). If only START is specified, all of memory from that
1106 point on can be accessed (except 0xff..ff). If only SIZE if specified,
1107 all memory in [0,SIZE) can be accessed. If both are specified, all memory
1108 in [START,START+SIZE) can be accessed.
1109
1110 Note: If it becomes useful enough we can later add #:end as an alternative
1111 to #:size. For now it is left out.
1112
1113 The result is a Scheme port, and its semantics are a bit odd for accessing
1114 memory (e.g., unget), but we don't try to hide this. It's a port.
1115
1116 N.B. Seeks on the port must be in the range [0,size].
1117 This is for similarity with bytevector ports, and so that one can seek
1118 to the first byte. */
1119
1120 static SCM
1121 gdbscm_open_memory (SCM rest)
1122 {
1123 const SCM keywords[] = {
1124 mode_keyword, start_keyword, size_keyword, SCM_BOOL_F
1125 };
1126 char *mode = NULL;
1127 CORE_ADDR start = 0;
1128 CORE_ADDR end;
1129 int mode_arg_pos = -1, start_arg_pos = -1, size_arg_pos = -1;
1130 ULONGEST size;
1131 SCM port;
1132 long mode_bits;
1133
1134 gdbscm_parse_function_args (FUNC_NAME, SCM_ARG1, keywords, "#sUU", rest,
1135 &mode_arg_pos, &mode,
1136 &start_arg_pos, &start,
1137 &size_arg_pos, &size);
1138
1139 scm_dynwind_begin (0);
1140
1141 if (mode == NULL)
1142 mode = xstrdup ("r");
1143 scm_dynwind_free (mode);
1144
1145 if (size_arg_pos > 0)
1146 {
1147 /* For now be strict about start+size overflowing. If it becomes
1148 a nuisance we can relax things later. */
1149 if (start + size < start)
1150 {
1151 gdbscm_out_of_range_error (FUNC_NAME, 0,
1152 scm_list_2 (gdbscm_scm_from_ulongest (start),
1153 gdbscm_scm_from_ulongest (size)),
1154 _("start+size overflows"));
1155 }
1156 end = start + size;
1157 }
1158 else
1159 end = ~(CORE_ADDR) 0;
1160
1161 mode_bits = ioscm_parse_mode_bits (FUNC_NAME, mode);
1162
1163 port = ioscm_open_port (memory_port_desc, mode_bits);
1164
1165 ioscm_init_memory_port (port, start, end);
1166
1167 scm_dynwind_end ();
1168
1169 /* TODO: Set the file name as "memory-start-end"? */
1170 return port;
1171 }
1172
1173 /* Return non-zero if OBJ is a memory port. */
1174
1175 static int
1176 gdbscm_is_memory_port (SCM obj)
1177 {
1178 return !SCM_IMP (obj) && (SCM_TYP16 (obj) == memory_port_desc);
1179 }
1180
1181 /* (memory-port? obj) -> boolean */
1182
1183 static SCM
1184 gdbscm_memory_port_p (SCM obj)
1185 {
1186 return scm_from_bool (gdbscm_is_memory_port (obj));
1187 }
1188
1189 /* (memory-port-range port) -> (start end) */
1190
1191 static SCM
1192 gdbscm_memory_port_range (SCM port)
1193 {
1194 ioscm_memory_port *iomem;
1195
1196 SCM_ASSERT_TYPE (gdbscm_is_memory_port (port), port, SCM_ARG1, FUNC_NAME,
1197 memory_port_desc_name);
1198
1199 iomem = (ioscm_memory_port *) SCM_STREAM (port);
1200 return scm_list_2 (gdbscm_scm_from_ulongest (iomem->start),
1201 gdbscm_scm_from_ulongest (iomem->end));
1202 }
1203
1204 /* (memory-port-read-buffer-size port) -> integer */
1205
1206 static SCM
1207 gdbscm_memory_port_read_buffer_size (SCM port)
1208 {
1209 ioscm_memory_port *iomem;
1210
1211 SCM_ASSERT_TYPE (gdbscm_is_memory_port (port), port, SCM_ARG1, FUNC_NAME,
1212 memory_port_desc_name);
1213
1214 iomem = (ioscm_memory_port *) SCM_STREAM (port);
1215 return scm_from_uint (iomem->read_buf_size);
1216 }
1217
1218 /* (set-memory-port-read-buffer-size! port size) -> unspecified
1219 An exception is thrown if read data is still buffered or if the port
1220 is unbuffered. */
1221
1222 static SCM
1223 gdbscm_set_memory_port_read_buffer_size_x (SCM port, SCM size)
1224 {
1225 ioscm_memory_port *iomem;
1226
1227 SCM_ASSERT_TYPE (gdbscm_is_memory_port (port), port, SCM_ARG1, FUNC_NAME,
1228 memory_port_desc_name);
1229 SCM_ASSERT_TYPE (scm_is_integer (size), size, SCM_ARG2, FUNC_NAME,
1230 _("integer"));
1231
1232 if (!scm_is_unsigned_integer (size, min_memory_port_buf_size,
1233 max_memory_port_buf_size))
1234 {
1235 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG2, size,
1236 out_of_range_buf_size);
1237 }
1238
1239 iomem = (ioscm_memory_port *) SCM_STREAM (port);
1240 ioscm_reinit_memory_port (port, scm_to_uint (size), iomem->write_buf_size,
1241 FUNC_NAME);
1242
1243 return SCM_UNSPECIFIED;
1244 }
1245
1246 /* (memory-port-write-buffer-size port) -> integer */
1247
1248 static SCM
1249 gdbscm_memory_port_write_buffer_size (SCM port)
1250 {
1251 ioscm_memory_port *iomem;
1252
1253 SCM_ASSERT_TYPE (gdbscm_is_memory_port (port), port, SCM_ARG1, FUNC_NAME,
1254 memory_port_desc_name);
1255
1256 iomem = (ioscm_memory_port *) SCM_STREAM (port);
1257 return scm_from_uint (iomem->write_buf_size);
1258 }
1259
1260 /* (set-memory-port-write-buffer-size! port size) -> unspecified
1261 An exception is thrown if write data is still buffered or if the port
1262 is unbuffered. */
1263
1264 static SCM
1265 gdbscm_set_memory_port_write_buffer_size_x (SCM port, SCM size)
1266 {
1267 ioscm_memory_port *iomem;
1268
1269 SCM_ASSERT_TYPE (gdbscm_is_memory_port (port), port, SCM_ARG1, FUNC_NAME,
1270 memory_port_desc_name);
1271 SCM_ASSERT_TYPE (scm_is_integer (size), size, SCM_ARG2, FUNC_NAME,
1272 _("integer"));
1273
1274 if (!scm_is_unsigned_integer (size, min_memory_port_buf_size,
1275 max_memory_port_buf_size))
1276 {
1277 gdbscm_out_of_range_error (FUNC_NAME, SCM_ARG2, size,
1278 out_of_range_buf_size);
1279 }
1280
1281 iomem = (ioscm_memory_port *) SCM_STREAM (port);
1282 ioscm_reinit_memory_port (port, iomem->read_buf_size, scm_to_uint (size),
1283 FUNC_NAME);
1284
1285 return SCM_UNSPECIFIED;
1286 }
1287 \f
1288 /* Initialize gdb ports. */
1289
1290 static const scheme_function port_functions[] =
1291 {
1292 { "input-port", 0, 0, 0, as_a_scm_t_subr (gdbscm_input_port),
1293 "\
1294 Return gdb's input port." },
1295
1296 { "output-port", 0, 0, 0, as_a_scm_t_subr (gdbscm_output_port),
1297 "\
1298 Return gdb's output port." },
1299
1300 { "error-port", 0, 0, 0, as_a_scm_t_subr (gdbscm_error_port),
1301 "\
1302 Return gdb's error port." },
1303
1304 { "stdio-port?", 1, 0, 0, as_a_scm_t_subr (gdbscm_stdio_port_p),
1305 "\
1306 Return #t if the object is a gdb:stdio-port." },
1307
1308 { "open-memory", 0, 0, 1, as_a_scm_t_subr (gdbscm_open_memory),
1309 "\
1310 Return a port that can be used for reading/writing inferior memory.\n\
1311 \n\
1312 Arguments: [#:mode string] [#:start address] [#:size integer]\n\
1313 Returns: A port object." },
1314
1315 { "memory-port?", 1, 0, 0, as_a_scm_t_subr (gdbscm_memory_port_p),
1316 "\
1317 Return #t if the object is a memory port." },
1318
1319 { "memory-port-range", 1, 0, 0, as_a_scm_t_subr (gdbscm_memory_port_range),
1320 "\
1321 Return the memory range of the port as (start end)." },
1322
1323 { "memory-port-read-buffer-size", 1, 0, 0,
1324 as_a_scm_t_subr (gdbscm_memory_port_read_buffer_size),
1325 "\
1326 Return the size of the read buffer for the memory port." },
1327
1328 { "set-memory-port-read-buffer-size!", 2, 0, 0,
1329 as_a_scm_t_subr (gdbscm_set_memory_port_read_buffer_size_x),
1330 "\
1331 Set the size of the read buffer for the memory port.\n\
1332 \n\
1333 Arguments: port integer\n\
1334 Returns: unspecified." },
1335
1336 { "memory-port-write-buffer-size", 1, 0, 0,
1337 as_a_scm_t_subr (gdbscm_memory_port_write_buffer_size),
1338 "\
1339 Return the size of the write buffer for the memory port." },
1340
1341 { "set-memory-port-write-buffer-size!", 2, 0, 0,
1342 as_a_scm_t_subr (gdbscm_set_memory_port_write_buffer_size_x),
1343 "\
1344 Set the size of the write buffer for the memory port.\n\
1345 \n\
1346 Arguments: port integer\n\
1347 Returns: unspecified." },
1348
1349 END_FUNCTIONS
1350 };
1351
1352 static const scheme_function private_port_functions[] =
1353 {
1354 #if 0 /* TODO */
1355 { "%with-gdb-input-from-port", 2, 0, 0,
1356 as_a_scm_t_subr (gdbscm_percent_with_gdb_input_from_port),
1357 "\
1358 Temporarily set GDB's input port to PORT and then invoke THUNK.\n\
1359 \n\
1360 Arguments: port thunk\n\
1361 Returns: The result of calling THUNK.\n\
1362 \n\
1363 This procedure is experimental." },
1364 #endif
1365
1366 { "%with-gdb-output-to-port", 2, 0, 0,
1367 as_a_scm_t_subr (gdbscm_percent_with_gdb_output_to_port),
1368 "\
1369 Temporarily set GDB's output port to PORT and then invoke THUNK.\n\
1370 \n\
1371 Arguments: port thunk\n\
1372 Returns: The result of calling THUNK.\n\
1373 \n\
1374 This procedure is experimental." },
1375
1376 { "%with-gdb-error-to-port", 2, 0, 0,
1377 as_a_scm_t_subr (gdbscm_percent_with_gdb_error_to_port),
1378 "\
1379 Temporarily set GDB's error port to PORT and then invoke THUNK.\n\
1380 \n\
1381 Arguments: port thunk\n\
1382 Returns: The result of calling THUNK.\n\
1383 \n\
1384 This procedure is experimental." },
1385
1386 END_FUNCTIONS
1387 };
1388
1389 void
1390 gdbscm_initialize_ports (void)
1391 {
1392 /* Save the original stdio ports for debugging purposes. */
1393
1394 orig_input_port_scm = scm_current_input_port ();
1395 orig_output_port_scm = scm_current_output_port ();
1396 orig_error_port_scm = scm_current_error_port ();
1397
1398 /* Set up the stdio ports. */
1399
1400 ioscm_init_gdb_stdio_port ();
1401 input_port_scm = ioscm_make_gdb_stdio_port (0);
1402 output_port_scm = ioscm_make_gdb_stdio_port (1);
1403 error_port_scm = ioscm_make_gdb_stdio_port (2);
1404
1405 /* Set up memory ports. */
1406
1407 ioscm_init_memory_port_type ();
1408
1409 /* Install the accessor functions. */
1410
1411 gdbscm_define_functions (port_functions, 1);
1412 gdbscm_define_functions (private_port_functions, 0);
1413
1414 /* Keyword args for open-memory. */
1415
1416 mode_keyword = scm_from_latin1_keyword ("mode");
1417 start_keyword = scm_from_latin1_keyword ("start");
1418 size_keyword = scm_from_latin1_keyword ("size");
1419
1420 /* Error message text for "out of range" memory port buffer sizes. */
1421
1422 out_of_range_buf_size = xstrprintf ("size not between %u - %u",
1423 min_memory_port_buf_size,
1424 max_memory_port_buf_size);
1425 }
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