reduce arm11 output noise
[openocd.git] / src / jtag / core.c
1 /***************************************************************************
2 * Copyright (C) 2005 by Dominic Rath *
3 * Dominic.Rath@gmx.de *
4 * *
5 * Copyright (C) 2007,2008 Øyvind Harboe *
6 * oyvind.harboe@zylin.com *
7 * *
8 * Copyright (C) 2009 SoftPLC Corporation *
9 * http://softplc.com *
10 * dick@softplc.com *
11 * *
12 * Copyright (C) 2009 Zachary T Welch *
13 * zw@superlucidity.net *
14 * *
15 * This program is free software; you can redistribute it and/or modify *
16 * it under the terms of the GNU General Public License as published by *
17 * the Free Software Foundation; either version 2 of the License, or *
18 * (at your option) any later version. *
19 * *
20 * This program is distributed in the hope that it will be useful, *
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
23 * GNU General Public License for more details. *
24 * *
25 * You should have received a copy of the GNU General Public License *
26 * along with this program; if not, write to the *
27 * Free Software Foundation, Inc., *
28 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
29 ***************************************************************************/
30 #ifdef HAVE_CONFIG_H
31 #include "config.h"
32 #endif
33
34 #include "jtag.h"
35 #include "minidriver.h"
36 #include "interface.h"
37
38 #ifdef HAVE_STRINGS_H
39 #include <strings.h>
40 #endif
41
42
43 /// The number of JTAG queue flushes (for profiling and debugging purposes).
44 static int jtag_flush_queue_count;
45
46 static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const scan_field_t *in_fields, tap_state_t state),
47 int in_num_fields, scan_field_t *in_fields, tap_state_t state);
48
49 /**
50 * The jtag_error variable is set when an error occurs while executing
51 * the queue. Application code may set this using jtag_set_error(),
52 * when an error occurs during processing that should be reported during
53 * jtag_execute_queue().
54 *
55 * Tts value may be checked with jtag_get_error() and cleared with
56 * jtag_error_clear(). This value is returned (and cleared) by
57 * jtag_execute_queue().
58 */
59 static int jtag_error = ERROR_OK;
60
61 static const char *jtag_event_strings[] =
62 {
63 [JTAG_TRST_ASSERTED] = "JTAG controller reset (TLR or TRST)",
64 [JTAG_TAP_EVENT_ENABLE] = "TAP enabled",
65 [JTAG_TAP_EVENT_DISABLE] = "TAP disabled",
66 };
67
68 /*
69 * JTAG adapters must initialize with TRST and SRST de-asserted
70 * (they're negative logic, so that means *high*)
71 */
72 static int jtag_trst = 0;
73 static int jtag_srst = 0;
74
75 /**
76 * List all TAPs that have been created.
77 */
78 static jtag_tap_t *__jtag_all_taps = NULL;
79 /**
80 * The number of TAPs in the __jtag_all_taps list, used to track the
81 * assigned chain position to new TAPs
82 */
83 static unsigned jtag_num_taps = 0;
84
85 static enum reset_types jtag_reset_config = RESET_NONE;
86 static tap_state_t cmd_queue_end_state = TAP_RESET;
87 tap_state_t cmd_queue_cur_state = TAP_RESET;
88
89 static bool jtag_verify_capture_ir = true;
90 static int jtag_verify = 1;
91
92 /* how long the OpenOCD should wait before attempting JTAG communication after reset lines deasserted (in ms) */
93 static int jtag_nsrst_delay = 0; /* default to no nSRST delay */
94 static int jtag_ntrst_delay = 0; /* default to no nTRST delay */
95
96 typedef struct jtag_event_callback_s
97 {
98 jtag_event_handler_t callback;
99 void* priv;
100 struct jtag_event_callback_s* next;
101 } jtag_event_callback_t;
102
103 /* callbacks to inform high-level handlers about JTAG state changes */
104 static jtag_event_callback_t *jtag_event_callbacks;
105
106 /* speed in kHz*/
107 static int speed_khz = 0;
108 /* speed to fallback to when RCLK is requested but not supported */
109 static int rclk_fallback_speed_khz = 0;
110 static enum {CLOCK_MODE_SPEED, CLOCK_MODE_KHZ, CLOCK_MODE_RCLK} clock_mode;
111 static int jtag_speed = 0;
112
113 static struct jtag_interface_s *jtag = NULL;
114
115 /* configuration */
116 jtag_interface_t *jtag_interface = NULL;
117
118 void jtag_set_error(int error)
119 {
120 if ((error == ERROR_OK) || (jtag_error != ERROR_OK))
121 return;
122 jtag_error = error;
123 }
124 int jtag_get_error(void)
125 {
126 return jtag_error;
127 }
128 int jtag_error_clear(void)
129 {
130 int temp = jtag_error;
131 jtag_error = ERROR_OK;
132 return temp;
133 }
134
135
136 jtag_tap_t *jtag_all_taps(void)
137 {
138 return __jtag_all_taps;
139 };
140
141 unsigned jtag_tap_count(void)
142 {
143 return jtag_num_taps;
144 }
145
146 unsigned jtag_tap_count_enabled(void)
147 {
148 jtag_tap_t *t = jtag_all_taps();
149 unsigned n = 0;
150 while (t)
151 {
152 if (t->enabled)
153 n++;
154 t = t->next_tap;
155 }
156 return n;
157 }
158
159 /// Append a new TAP to the chain of all taps.
160 void jtag_tap_add(struct jtag_tap_s *t)
161 {
162 t->abs_chain_position = jtag_num_taps++;
163
164 jtag_tap_t **tap = &__jtag_all_taps;
165 while (*tap != NULL)
166 tap = &(*tap)->next_tap;
167 *tap = t;
168 }
169
170 /* returns a pointer to the n-th device in the scan chain */
171 static inline jtag_tap_t *jtag_tap_by_position(unsigned n)
172 {
173 jtag_tap_t *t = jtag_all_taps();
174
175 while (t && n-- > 0)
176 t = t->next_tap;
177
178 return t;
179 }
180
181 jtag_tap_t *jtag_tap_by_string(const char *s)
182 {
183 /* try by name first */
184 jtag_tap_t *t = jtag_all_taps();
185
186 while (t)
187 {
188 if (0 == strcmp(t->dotted_name, s))
189 return t;
190 t = t->next_tap;
191 }
192
193 /* no tap found by name, so try to parse the name as a number */
194 unsigned n;
195 if (parse_uint(s, &n) != ERROR_OK)
196 return NULL;
197
198 /* FIXME remove this numeric fallback code late June 2010, along
199 * with all info in the User's Guide that TAPs have numeric IDs.
200 * Also update "scan_chain" output to not display the numbers.
201 */
202 t = jtag_tap_by_position(n);
203 if (t)
204 LOG_WARNING("Specify TAP '%s' by name, not number %u",
205 t->dotted_name, n);
206
207 return t;
208 }
209
210 jtag_tap_t *jtag_tap_by_jim_obj(Jim_Interp *interp, Jim_Obj *o)
211 {
212 const char *cp = Jim_GetString(o, NULL);
213 jtag_tap_t *t = cp ? jtag_tap_by_string(cp) : NULL;
214 if (NULL == cp)
215 cp = "(unknown)";
216 if (NULL == t)
217 Jim_SetResult_sprintf(interp, "Tap '%s' could not be found", cp);
218 return t;
219 }
220
221 jtag_tap_t* jtag_tap_next_enabled(jtag_tap_t* p)
222 {
223 p = p ? p->next_tap : jtag_all_taps();
224 while (p)
225 {
226 if (p->enabled)
227 return p;
228 p = p->next_tap;
229 }
230 return NULL;
231 }
232
233 const char *jtag_tap_name(const jtag_tap_t *tap)
234 {
235 return (tap == NULL) ? "(unknown)" : tap->dotted_name;
236 }
237
238
239 int jtag_register_event_callback(jtag_event_handler_t callback, void *priv)
240 {
241 jtag_event_callback_t **callbacks_p = &jtag_event_callbacks;
242
243 if (callback == NULL)
244 {
245 return ERROR_INVALID_ARGUMENTS;
246 }
247
248 if (*callbacks_p)
249 {
250 while ((*callbacks_p)->next)
251 callbacks_p = &((*callbacks_p)->next);
252 callbacks_p = &((*callbacks_p)->next);
253 }
254
255 (*callbacks_p) = malloc(sizeof(jtag_event_callback_t));
256 (*callbacks_p)->callback = callback;
257 (*callbacks_p)->priv = priv;
258 (*callbacks_p)->next = NULL;
259
260 return ERROR_OK;
261 }
262
263 int jtag_unregister_event_callback(jtag_event_handler_t callback, void *priv)
264 {
265 jtag_event_callback_t **callbacks_p;
266 jtag_event_callback_t **next;
267
268 if (callback == NULL)
269 {
270 return ERROR_INVALID_ARGUMENTS;
271 }
272
273 for (callbacks_p = &jtag_event_callbacks;
274 *callbacks_p != NULL;
275 callbacks_p = next)
276 {
277 next = &((*callbacks_p)->next);
278
279 if ((*callbacks_p)->priv != priv)
280 continue;
281
282 if ((*callbacks_p)->callback == callback)
283 {
284 free(*callbacks_p);
285 *callbacks_p = *next;
286 }
287 }
288
289 return ERROR_OK;
290 }
291
292 int jtag_call_event_callbacks(enum jtag_event event)
293 {
294 jtag_event_callback_t *callback = jtag_event_callbacks;
295
296 LOG_DEBUG("jtag event: %s", jtag_event_strings[event]);
297
298 while (callback)
299 {
300 jtag_event_callback_t *next;
301
302 /* callback may remove itself */
303 next = callback->next;
304 callback->callback(event, callback->priv);
305 callback = next;
306 }
307
308 return ERROR_OK;
309 }
310
311 static void jtag_checks(void)
312 {
313 assert(jtag_trst == 0);
314 }
315
316 static void jtag_prelude(tap_state_t state)
317 {
318 jtag_checks();
319
320 assert(state != TAP_INVALID);
321
322 cmd_queue_cur_state = state;
323 }
324
325 void jtag_alloc_in_value32(scan_field_t *field)
326 {
327 interface_jtag_alloc_in_value32(field);
328 }
329
330 void jtag_add_ir_scan_noverify(int in_count, const scan_field_t *in_fields,
331 tap_state_t state)
332 {
333 jtag_prelude(state);
334
335 int retval = interface_jtag_add_ir_scan(in_count, in_fields, state);
336 jtag_set_error(retval);
337 }
338
339
340 void jtag_add_ir_scan(int in_num_fields, scan_field_t *in_fields, tap_state_t state)
341 {
342 if (jtag_verify && jtag_verify_capture_ir)
343 {
344 /* 8 x 32 bit id's is enough for all invocations */
345
346 for (int j = 0; j < in_num_fields; j++)
347 {
348 /* if we are to run a verification of the ir scan, we need to get the input back.
349 * We may have to allocate space if the caller didn't ask for the input back.
350 */
351 in_fields[j].check_value = in_fields[j].tap->expected;
352 in_fields[j].check_mask = in_fields[j].tap->expected_mask;
353 }
354 jtag_add_scan_check(jtag_add_ir_scan_noverify, in_num_fields, in_fields, state);
355 } else
356 {
357 jtag_add_ir_scan_noverify(in_num_fields, in_fields, state);
358 }
359 }
360
361 void jtag_add_plain_ir_scan(int in_num_fields, const scan_field_t *in_fields,
362 tap_state_t state)
363 {
364 jtag_prelude(state);
365
366 int retval = interface_jtag_add_plain_ir_scan(
367 in_num_fields, in_fields, state);
368 jtag_set_error(retval);
369 }
370
371 void jtag_add_callback(jtag_callback1_t f, jtag_callback_data_t data0)
372 {
373 interface_jtag_add_callback(f, data0);
374 }
375
376 void jtag_add_callback4(jtag_callback_t f, jtag_callback_data_t data0,
377 jtag_callback_data_t data1, jtag_callback_data_t data2,
378 jtag_callback_data_t data3)
379 {
380 interface_jtag_add_callback4(f, data0, data1, data2, data3);
381 }
382
383 int jtag_check_value_inner(uint8_t *captured, uint8_t *in_check_value, uint8_t *in_check_mask, int num_bits);
384
385 static int jtag_check_value_mask_callback(jtag_callback_data_t data0, jtag_callback_data_t data1, jtag_callback_data_t data2, jtag_callback_data_t data3)
386 {
387 return jtag_check_value_inner((uint8_t *)data0, (uint8_t *)data1, (uint8_t *)data2, (int)data3);
388 }
389
390 static void jtag_add_scan_check(void (*jtag_add_scan)(int in_num_fields, const scan_field_t *in_fields, tap_state_t state),
391 int in_num_fields, scan_field_t *in_fields, tap_state_t state)
392 {
393 for (int i = 0; i < in_num_fields; i++)
394 {
395 struct scan_field_s *field = &in_fields[i];
396 field->allocated = 0;
397 field->modified = 0;
398 if (field->check_value || field->in_value)
399 continue;
400 interface_jtag_add_scan_check_alloc(field);
401 field->modified = 1;
402 }
403
404 jtag_add_scan(in_num_fields, in_fields, state);
405
406 for (int i = 0; i < in_num_fields; i++)
407 {
408 if ((in_fields[i].check_value != NULL) && (in_fields[i].in_value != NULL))
409 {
410 /* this is synchronous for a minidriver */
411 jtag_add_callback4(jtag_check_value_mask_callback, (jtag_callback_data_t)in_fields[i].in_value,
412 (jtag_callback_data_t)in_fields[i].check_value,
413 (jtag_callback_data_t)in_fields[i].check_mask,
414 (jtag_callback_data_t)in_fields[i].num_bits);
415 }
416 if (in_fields[i].allocated)
417 {
418 free(in_fields[i].in_value);
419 }
420 if (in_fields[i].modified)
421 {
422 in_fields[i].in_value = NULL;
423 }
424 }
425 }
426
427 void jtag_add_dr_scan_check(int in_num_fields, scan_field_t *in_fields, tap_state_t state)
428 {
429 if (jtag_verify)
430 {
431 jtag_add_scan_check(jtag_add_dr_scan, in_num_fields, in_fields, state);
432 } else
433 {
434 jtag_add_dr_scan(in_num_fields, in_fields, state);
435 }
436 }
437
438
439 void jtag_add_dr_scan(int in_num_fields, const scan_field_t *in_fields,
440 tap_state_t state)
441 {
442 jtag_prelude(state);
443
444 int retval;
445 retval = interface_jtag_add_dr_scan(in_num_fields, in_fields, state);
446 jtag_set_error(retval);
447 }
448
449 void jtag_add_plain_dr_scan(int in_num_fields, const scan_field_t *in_fields,
450 tap_state_t state)
451 {
452 jtag_prelude(state);
453
454 int retval;
455 retval = interface_jtag_add_plain_dr_scan(in_num_fields, in_fields, state);
456 jtag_set_error(retval);
457 }
458
459 void jtag_add_dr_out(jtag_tap_t* tap,
460 int num_fields, const int* num_bits, const uint32_t* value,
461 tap_state_t end_state)
462 {
463 assert(end_state != TAP_INVALID);
464
465 cmd_queue_cur_state = end_state;
466
467 interface_jtag_add_dr_out(tap,
468 num_fields, num_bits, value,
469 end_state);
470 }
471
472 void jtag_add_tlr(void)
473 {
474 jtag_prelude(TAP_RESET);
475 jtag_set_error(interface_jtag_add_tlr());
476 jtag_call_event_callbacks(JTAG_TRST_ASSERTED);
477 }
478
479 void jtag_add_pathmove(int num_states, const tap_state_t *path)
480 {
481 tap_state_t cur_state = cmd_queue_cur_state;
482
483 /* the last state has to be a stable state */
484 if (!tap_is_state_stable(path[num_states - 1]))
485 {
486 LOG_ERROR("BUG: TAP path doesn't finish in a stable state");
487 jtag_set_error(ERROR_JTAG_NOT_STABLE_STATE);
488 return;
489 }
490
491 for (int i = 0; i < num_states; i++)
492 {
493 if (path[i] == TAP_RESET)
494 {
495 LOG_ERROR("BUG: TAP_RESET is not a valid state for pathmove sequences");
496 jtag_set_error(ERROR_JTAG_STATE_INVALID);
497 return;
498 }
499
500 if (tap_state_transition(cur_state, true) != path[i]
501 && tap_state_transition(cur_state, false) != path[i])
502 {
503 LOG_ERROR("BUG: %s -> %s isn't a valid TAP transition",
504 tap_state_name(cur_state), tap_state_name(path[i]));
505 jtag_set_error(ERROR_JTAG_TRANSITION_INVALID);
506 return;
507 }
508 cur_state = path[i];
509 }
510
511 jtag_checks();
512
513 jtag_set_error(interface_jtag_add_pathmove(num_states, path));
514 cmd_queue_cur_state = path[num_states - 1];
515 }
516
517 int jtag_add_statemove(tap_state_t goal_state)
518 {
519 tap_state_t cur_state = cmd_queue_cur_state;
520
521 LOG_DEBUG("cur_state=%s goal_state=%s",
522 tap_state_name(cur_state),
523 tap_state_name(goal_state));
524
525
526 if (goal_state == cur_state)
527 ; /* nothing to do */
528 else if (goal_state == TAP_RESET)
529 {
530 jtag_add_tlr();
531 }
532 else if (tap_is_state_stable(cur_state) && tap_is_state_stable(goal_state))
533 {
534 unsigned tms_bits = tap_get_tms_path(cur_state, goal_state);
535 unsigned tms_count = tap_get_tms_path_len(cur_state, goal_state);
536 tap_state_t moves[8];
537 assert(tms_count < DIM(moves));
538
539 for (unsigned i = 0; i < tms_count; i++, tms_bits >>= 1)
540 {
541 bool bit = tms_bits & 1;
542
543 cur_state = tap_state_transition(cur_state, bit);
544 moves[i] = cur_state;
545 }
546
547 jtag_add_pathmove(tms_count, moves);
548 }
549 else if (tap_state_transition(cur_state, true) == goal_state
550 || tap_state_transition(cur_state, false) == goal_state)
551 {
552 jtag_add_pathmove(1, &goal_state);
553 }
554
555 else
556 return ERROR_FAIL;
557
558 return ERROR_OK;
559 }
560
561 void jtag_add_runtest(int num_cycles, tap_state_t state)
562 {
563 jtag_prelude(state);
564 jtag_set_error(interface_jtag_add_runtest(num_cycles, state));
565 }
566
567
568 void jtag_add_clocks(int num_cycles)
569 {
570 if (!tap_is_state_stable(cmd_queue_cur_state))
571 {
572 LOG_ERROR("jtag_add_clocks() called with TAP in unstable state \"%s\"",
573 tap_state_name(cmd_queue_cur_state));
574 jtag_set_error(ERROR_JTAG_NOT_STABLE_STATE);
575 return;
576 }
577
578 if (num_cycles > 0)
579 {
580 jtag_checks();
581 jtag_set_error(interface_jtag_add_clocks(num_cycles));
582 }
583 }
584
585 void jtag_add_reset(int req_tlr_or_trst, int req_srst)
586 {
587 int trst_with_tlr = 0;
588 int new_srst = 0;
589 int new_trst = 0;
590
591 /* Without SRST, we must use target-specific JTAG operations
592 * on each target; callers should not be requesting SRST when
593 * that signal doesn't exist.
594 *
595 * RESET_SRST_PULLS_TRST is a board or chip level quirk, which
596 * can kick in even if the JTAG adapter can't drive TRST.
597 */
598 if (req_srst) {
599 if (!(jtag_reset_config & RESET_HAS_SRST)) {
600 LOG_ERROR("BUG: can't assert SRST");
601 jtag_set_error(ERROR_FAIL);
602 return;
603 }
604 if ((jtag_reset_config & RESET_SRST_PULLS_TRST) != 0
605 && !req_tlr_or_trst) {
606 LOG_ERROR("BUG: can't assert only SRST");
607 jtag_set_error(ERROR_FAIL);
608 return;
609 }
610 new_srst = 1;
611 }
612
613 /* JTAG reset (entry to TAP_RESET state) can always be achieved
614 * using TCK and TMS; that may go through a TAP_{IR,DR}UPDATE
615 * state first. TRST accelerates it, and bypasses those states.
616 *
617 * RESET_TRST_PULLS_SRST is a board or chip level quirk, which
618 * can kick in even if the JTAG adapter can't drive SRST.
619 */
620 if (req_tlr_or_trst) {
621 if (!(jtag_reset_config & RESET_HAS_TRST))
622 trst_with_tlr = 1;
623 else if ((jtag_reset_config & RESET_TRST_PULLS_SRST) != 0
624 && !req_srst)
625 trst_with_tlr = 1;
626 else
627 new_trst = 1;
628 }
629
630 /* Maybe change TRST and/or SRST signal state */
631 if (jtag_srst != new_srst || jtag_trst != new_trst) {
632 int retval;
633
634 retval = interface_jtag_add_reset(new_trst, new_srst);
635 if (retval != ERROR_OK)
636 jtag_set_error(retval);
637 else
638 retval = jtag_execute_queue();
639
640 if (retval != ERROR_OK) {
641 LOG_ERROR("TRST/SRST error %d", retval);
642 return;
643 }
644 }
645
646 /* SRST resets everything hooked up to that signal */
647 if (jtag_srst != new_srst) {
648 jtag_srst = new_srst;
649 if (jtag_srst)
650 LOG_DEBUG("SRST line asserted");
651 else {
652 LOG_DEBUG("SRST line released");
653 if (jtag_nsrst_delay)
654 jtag_add_sleep(jtag_nsrst_delay * 1000);
655 }
656 }
657
658 /* Maybe enter the JTAG TAP_RESET state ...
659 * - using only TMS, TCK, and the JTAG state machine
660 * - or else more directly, using TRST
661 *
662 * TAP_RESET should be invisible to non-debug parts of the system.
663 */
664 if (trst_with_tlr) {
665 LOG_DEBUG("JTAG reset with TLR instead of TRST");
666 jtag_set_end_state(TAP_RESET);
667 jtag_add_tlr();
668
669 } else if (jtag_trst != new_trst) {
670 jtag_trst = new_trst;
671 if (jtag_trst) {
672 /* we just asserted nTRST, so we're now in TAP_RESET;
673 * inform possible listeners about this
674 *
675 * REVISIT asserting TRST is less significant than
676 * being in TAP_RESET ... both entries (TRST, TLR)
677 * should trigger a callback.
678 */
679 LOG_DEBUG("TRST line asserted");
680 tap_set_state(TAP_RESET);
681 jtag_call_event_callbacks(JTAG_TRST_ASSERTED);
682 } else {
683 LOG_DEBUG("TRST line released");
684 if (jtag_ntrst_delay)
685 jtag_add_sleep(jtag_ntrst_delay * 1000);
686 }
687 }
688 }
689
690 tap_state_t jtag_set_end_state(tap_state_t state)
691 {
692 if ((state == TAP_DRSHIFT)||(state == TAP_IRSHIFT))
693 {
694 LOG_ERROR("BUG: TAP_DRSHIFT/IRSHIFT can't be end state. Calling code should use a larger scan field");
695 }
696
697 if (state != TAP_INVALID)
698 cmd_queue_end_state = state;
699 return cmd_queue_end_state;
700 }
701
702 tap_state_t jtag_get_end_state(void)
703 {
704 return cmd_queue_end_state;
705 }
706
707 void jtag_add_sleep(uint32_t us)
708 {
709 /// @todo Here, keep_alive() appears to be a layering violation!!!
710 keep_alive();
711 jtag_set_error(interface_jtag_add_sleep(us));
712 }
713
714 int jtag_check_value_inner(uint8_t *captured, uint8_t *in_check_value, uint8_t *in_check_mask, int num_bits)
715 {
716 int retval = ERROR_OK;
717
718 int compare_failed = 0;
719
720 if (in_check_mask)
721 compare_failed = buf_cmp_mask(captured, in_check_value, in_check_mask, num_bits);
722 else
723 compare_failed = buf_cmp(captured, in_check_value, num_bits);
724
725 if (compare_failed) {
726 /* An error handler could have caught the failing check
727 * only report a problem when there wasn't a handler, or if the handler
728 * acknowledged the error
729 */
730 /*
731 LOG_WARNING("TAP %s:",
732 jtag_tap_name(field->tap));
733 */
734 if (compare_failed)
735 {
736 char *captured_char = buf_to_str(captured, (num_bits > DEBUG_JTAG_IOZ) ? DEBUG_JTAG_IOZ : num_bits, 16);
737 char *in_check_value_char = buf_to_str(in_check_value, (num_bits > DEBUG_JTAG_IOZ) ? DEBUG_JTAG_IOZ : num_bits, 16);
738
739 if (in_check_mask)
740 {
741 char *in_check_mask_char;
742 in_check_mask_char = buf_to_str(in_check_mask, (num_bits > DEBUG_JTAG_IOZ) ? DEBUG_JTAG_IOZ : num_bits, 16);
743 LOG_WARNING("value captured during scan didn't pass the requested check:");
744 LOG_WARNING("captured: 0x%s check_value: 0x%s check_mask: 0x%s",
745 captured_char, in_check_value_char, in_check_mask_char);
746 free(in_check_mask_char);
747 }
748 else
749 {
750 LOG_WARNING("value captured during scan didn't pass the requested check: captured: 0x%s check_value: 0x%s", captured_char, in_check_value_char);
751 }
752
753 free(captured_char);
754 free(in_check_value_char);
755
756 retval = ERROR_JTAG_QUEUE_FAILED;
757 }
758
759 }
760 return retval;
761 }
762
763 void jtag_check_value_mask(scan_field_t *field, uint8_t *value, uint8_t *mask)
764 {
765 assert(field->in_value != NULL);
766
767 if (value == NULL)
768 {
769 /* no checking to do */
770 return;
771 }
772
773 jtag_execute_queue_noclear();
774
775 int retval = jtag_check_value_inner(field->in_value, value, mask, field->num_bits);
776 jtag_set_error(retval);
777 }
778
779
780
781 int default_interface_jtag_execute_queue(void)
782 {
783 if (NULL == jtag)
784 {
785 LOG_ERROR("No JTAG interface configured yet. "
786 "Issue 'init' command in startup scripts "
787 "before communicating with targets.");
788 return ERROR_FAIL;
789 }
790
791 return jtag->execute_queue();
792 }
793
794 void jtag_execute_queue_noclear(void)
795 {
796 jtag_flush_queue_count++;
797 jtag_set_error(interface_jtag_execute_queue());
798 }
799
800 int jtag_get_flush_queue_count(void)
801 {
802 return jtag_flush_queue_count;
803 }
804
805 int jtag_execute_queue(void)
806 {
807 jtag_execute_queue_noclear();
808 return jtag_error_clear();
809 }
810
811 static int jtag_reset_callback(enum jtag_event event, void *priv)
812 {
813 jtag_tap_t *tap = priv;
814
815 LOG_DEBUG("-");
816
817 if (event == JTAG_TRST_ASSERTED)
818 {
819 tap->enabled = !tap->disabled_after_reset;
820
821 /* current instruction is either BYPASS or IDCODE */
822 buf_set_ones(tap->cur_instr, tap->ir_length);
823 tap->bypass = 1;
824 }
825
826 return ERROR_OK;
827 }
828
829 void jtag_sleep(uint32_t us)
830 {
831 alive_sleep(us/1000);
832 }
833
834 /// maximum number of JTAG devices expected in the chain
835 #define JTAG_MAX_CHAIN_SIZE 20
836
837 #define EXTRACT_MFG(X) (((X) & 0xffe) >> 1)
838 #define EXTRACT_PART(X) (((X) & 0xffff000) >> 12)
839 #define EXTRACT_VER(X) (((X) & 0xf0000000) >> 28)
840
841 static int jtag_examine_chain_execute(uint8_t *idcode_buffer, unsigned num_idcode)
842 {
843 scan_field_t field = {
844 .tap = NULL,
845 .num_bits = num_idcode * 32,
846 .out_value = idcode_buffer,
847 .in_value = idcode_buffer,
848 };
849
850 // initialize to the end of chain ID value
851 for (unsigned i = 0; i < JTAG_MAX_CHAIN_SIZE; i++)
852 buf_set_u32(idcode_buffer, i * 32, 32, 0x000000FF);
853
854 jtag_add_plain_dr_scan(1, &field, TAP_RESET);
855 return jtag_execute_queue();
856 }
857
858 static bool jtag_examine_chain_check(uint8_t *idcodes, unsigned count)
859 {
860 uint8_t zero_check = 0x0;
861 uint8_t one_check = 0xff;
862
863 for (unsigned i = 0; i < count * 4; i++)
864 {
865 zero_check |= idcodes[i];
866 one_check &= idcodes[i];
867 }
868
869 /* if there wasn't a single non-zero bit or if all bits were one,
870 * the scan is not valid */
871 if (zero_check == 0x00 || one_check == 0xff)
872 {
873 LOG_ERROR("JTAG communication failure: check connection, "
874 "JTAG interface, target power etc.");
875 return false;
876 }
877 return true;
878 }
879
880 static void jtag_examine_chain_display(enum log_levels level, const char *msg,
881 const char *name, uint32_t idcode)
882 {
883 log_printf_lf(level, __FILE__, __LINE__, __FUNCTION__,
884 "JTAG tap: %s %16.16s: 0x%08x "
885 "(mfg: 0x%3.3x, part: 0x%4.4x, ver: 0x%1.1x)",
886 name, msg,
887 (unsigned int)idcode,
888 (unsigned int)EXTRACT_MFG(idcode),
889 (unsigned int)EXTRACT_PART(idcode),
890 (unsigned int)EXTRACT_VER(idcode));
891 }
892
893 static bool jtag_idcode_is_final(uint32_t idcode)
894 {
895 return idcode == 0x000000FF || idcode == 0xFFFFFFFF;
896 }
897
898 /**
899 * This helper checks that remaining bits in the examined chain data are
900 * all as expected, but a single JTAG device requires only 64 bits to be
901 * read back correctly. This can help identify and diagnose problems
902 * with the JTAG chain earlier, gives more helpful/explicit error messages.
903 */
904 static void jtag_examine_chain_end(uint8_t *idcodes, unsigned count, unsigned max)
905 {
906 bool triggered = false;
907 for (; count < max - 31; count += 32)
908 {
909 uint32_t idcode = buf_get_u32(idcodes, count, 32);
910 // do not trigger the warning if the data looks good
911 if (!triggered && jtag_idcode_is_final(idcode))
912 continue;
913 LOG_WARNING("Unexpected idcode after end of chain: %d 0x%08x",
914 count, (unsigned int)idcode);
915 triggered = true;
916 }
917 }
918
919 static bool jtag_examine_chain_match_tap(const struct jtag_tap_s *tap)
920 {
921 if (0 == tap->expected_ids_cnt)
922 {
923 /// @todo Enable LOG_INFO to ask for reports about unknown TAP IDs.
924 #if 0
925 LOG_INFO("Uknown JTAG TAP ID: 0x%08x", tap->idcode)
926 LOG_INFO("Please report the chip name and reported ID code to the openocd project");
927 #endif
928 return true;
929 }
930
931 /* Loop over the expected identification codes and test for a match */
932 uint8_t ii;
933 for (ii = 0; ii < tap->expected_ids_cnt; ii++)
934 {
935 if (tap->idcode == tap->expected_ids[ii])
936 break;
937 }
938
939 /* If none of the expected ids matched, log an error */
940 if (ii != tap->expected_ids_cnt)
941 {
942 LOG_DEBUG("JTAG Tap/device matched");
943 return true;
944 }
945 jtag_examine_chain_display(LOG_LVL_ERROR, "got",
946 tap->dotted_name, tap->idcode);
947 for (ii = 0; ii < tap->expected_ids_cnt; ii++)
948 {
949 char msg[32];
950 snprintf(msg, sizeof(msg), "expected %hhu of %hhu",
951 ii + 1, tap->expected_ids_cnt);
952 jtag_examine_chain_display(LOG_LVL_ERROR, msg,
953 tap->dotted_name, tap->expected_ids[ii]);
954 }
955 return false;
956 }
957
958 /* Try to examine chain layout according to IEEE 1149.1 §12
959 */
960 int jtag_examine_chain(void)
961 {
962 uint8_t idcode_buffer[JTAG_MAX_CHAIN_SIZE * 4];
963 unsigned device_count = 0;
964
965 jtag_examine_chain_execute(idcode_buffer, JTAG_MAX_CHAIN_SIZE);
966
967 if (!jtag_examine_chain_check(idcode_buffer, JTAG_MAX_CHAIN_SIZE))
968 return ERROR_JTAG_INIT_FAILED;
969
970 /* point at the 1st tap */
971 jtag_tap_t *tap = jtag_tap_next_enabled(NULL);
972 if (tap == NULL)
973 {
974 LOG_ERROR("JTAG: No taps enabled?");
975 return ERROR_JTAG_INIT_FAILED;
976 }
977
978 for (unsigned bit_count = 0; bit_count < (JTAG_MAX_CHAIN_SIZE * 32) - 31;)
979 {
980 uint32_t idcode = buf_get_u32(idcode_buffer, bit_count, 32);
981 tap->hasidcode = true;
982 if ((idcode & 1) == 0)
983 {
984 /* LSB must not be 0, this indicates a device in bypass */
985 LOG_WARNING("Tap/Device does not have IDCODE");
986 idcode = 0;
987 tap->hasidcode = false;
988
989 bit_count += 1;
990 }
991 else
992 {
993 /*
994 * End of chain (invalid manufacturer ID) some devices, such
995 * as AVR will output all 1's instead of TDI input value at
996 * end of chain.
997 */
998 if (jtag_idcode_is_final(idcode))
999 {
1000 jtag_examine_chain_end(idcode_buffer,
1001 bit_count + 32, JTAG_MAX_CHAIN_SIZE * 32);
1002 break;
1003 }
1004
1005 jtag_examine_chain_display(LOG_LVL_INFO, "tap/device found",
1006 tap ? tap->dotted_name : "(not-named)",
1007 idcode);
1008
1009 bit_count += 32;
1010 }
1011 device_count++;
1012 if (!tap)
1013 continue;
1014
1015 tap->idcode = idcode;
1016
1017 // ensure the TAP ID does matches what was expected
1018 if (!jtag_examine_chain_match_tap(tap))
1019 return ERROR_JTAG_INIT_FAILED;
1020
1021 tap = jtag_tap_next_enabled(tap);
1022 }
1023
1024 /* see if number of discovered devices matches configuration */
1025 if (device_count != jtag_tap_count_enabled())
1026 {
1027 LOG_ERROR("number of discovered devices in JTAG chain (%i) "
1028 "does not match (enabled) configuration (%i), total taps: %d",
1029 device_count, jtag_tap_count_enabled(), jtag_tap_count());
1030 LOG_ERROR("check the config file and ensure proper JTAG communication"
1031 " (connections, speed, ...)");
1032 return ERROR_JTAG_INIT_FAILED;
1033 }
1034
1035 return ERROR_OK;
1036 }
1037
1038 int jtag_validate_chain(void)
1039 {
1040 jtag_tap_t *tap;
1041 int total_ir_length = 0;
1042 uint8_t *ir_test = NULL;
1043 scan_field_t field;
1044 int chain_pos = 0;
1045
1046 tap = NULL;
1047 total_ir_length = 0;
1048 for (;;) {
1049 tap = jtag_tap_next_enabled(tap);
1050 if (tap == NULL) {
1051 break;
1052 }
1053 total_ir_length += tap->ir_length;
1054 }
1055
1056 total_ir_length += 2;
1057 ir_test = malloc(CEIL(total_ir_length, 8));
1058 buf_set_ones(ir_test, total_ir_length);
1059
1060 field.tap = NULL;
1061 field.num_bits = total_ir_length;
1062 field.out_value = ir_test;
1063 field.in_value = ir_test;
1064
1065
1066 jtag_add_plain_ir_scan(1, &field, TAP_RESET);
1067 jtag_execute_queue();
1068
1069 tap = NULL;
1070 chain_pos = 0;
1071 int val;
1072 for (;;) {
1073 tap = jtag_tap_next_enabled(tap);
1074 if (tap == NULL) {
1075 break;
1076 }
1077
1078 val = buf_get_u32(ir_test, chain_pos, 2);
1079 /* Only fail this check if we have IDCODE for this device */
1080 if ((val != 0x1)&&(tap->hasidcode))
1081 {
1082 char *cbuf = buf_to_str(ir_test, total_ir_length, 16);
1083 LOG_ERROR("Could not validate JTAG scan chain, IR mismatch, scan returned 0x%s. tap=%s pos=%d expected 0x1 got %0x", cbuf, jtag_tap_name(tap), chain_pos, val);
1084 free(cbuf);
1085 free(ir_test);
1086 return ERROR_JTAG_INIT_FAILED;
1087 }
1088 chain_pos += tap->ir_length;
1089 }
1090
1091 val = buf_get_u32(ir_test, chain_pos, 2);
1092 if (val != 0x3)
1093 {
1094 char *cbuf = buf_to_str(ir_test, total_ir_length, 16);
1095 LOG_ERROR("Could not validate end of JTAG scan chain, IR mismatch, scan returned 0x%s. pos=%d expected 0x3 got %0x", cbuf, chain_pos, val);
1096 free(cbuf);
1097 free(ir_test);
1098 return ERROR_JTAG_INIT_FAILED;
1099 }
1100
1101 free(ir_test);
1102
1103 return ERROR_OK;
1104 }
1105
1106
1107 void jtag_tap_init(jtag_tap_t *tap)
1108 {
1109 assert(0 != tap->ir_length);
1110
1111 tap->expected = malloc(tap->ir_length);
1112 tap->expected_mask = malloc(tap->ir_length);
1113 tap->cur_instr = malloc(tap->ir_length);
1114
1115 /// @todo cope sanely with ir_length bigger than 32 bits
1116 buf_set_u32(tap->expected, 0, tap->ir_length, tap->ir_capture_value);
1117 buf_set_u32(tap->expected_mask, 0, tap->ir_length, tap->ir_capture_mask);
1118 buf_set_ones(tap->cur_instr, tap->ir_length);
1119
1120 // place TAP in bypass mode
1121 tap->bypass = 1;
1122 // register the reset callback for the TAP
1123 jtag_register_event_callback(&jtag_reset_callback, tap);
1124
1125 LOG_DEBUG("Created Tap: %s @ abs position %d, "
1126 "irlen %d, capture: 0x%x mask: 0x%x", tap->dotted_name,
1127 tap->abs_chain_position, tap->ir_length,
1128 (unsigned int)(tap->ir_capture_value), (unsigned int)(tap->ir_capture_mask));
1129 jtag_tap_add(tap);
1130 }
1131
1132 void jtag_tap_free(jtag_tap_t *tap)
1133 {
1134 jtag_unregister_event_callback(&jtag_reset_callback, tap);
1135
1136 /// @todo is anything missing? no memory leaks please
1137 free((void *)tap->expected_ids);
1138 free((void *)tap->chip);
1139 free((void *)tap->tapname);
1140 free((void *)tap->dotted_name);
1141 free(tap);
1142 }
1143
1144 int jtag_interface_init(struct command_context_s *cmd_ctx)
1145 {
1146 if (jtag)
1147 return ERROR_OK;
1148
1149 if (!jtag_interface)
1150 {
1151 /* nothing was previously specified by "interface" command */
1152 LOG_ERROR("JTAG interface has to be specified, see \"interface\" command");
1153 return ERROR_JTAG_INVALID_INTERFACE;
1154 }
1155
1156 jtag = jtag_interface;
1157 if (jtag_interface->init() != ERROR_OK)
1158 {
1159 jtag = NULL;
1160 return ERROR_JTAG_INIT_FAILED;
1161 }
1162
1163 int requested_khz = jtag_get_speed_khz();
1164 int actual_khz = requested_khz;
1165 int retval = jtag_get_speed_readable(&actual_khz);
1166 if (ERROR_OK != retval)
1167 LOG_INFO("interface specific clock speed value %d", jtag_get_speed());
1168 else if (actual_khz)
1169 {
1170 if ((CLOCK_MODE_RCLK == clock_mode)
1171 || ((CLOCK_MODE_KHZ == clock_mode) && !requested_khz))
1172 {
1173 LOG_INFO("RCLK (adaptive clock speed) not supported - fallback to %d kHz"
1174 , actual_khz);
1175 }
1176 else
1177 LOG_INFO("clock speed %d kHz", actual_khz);
1178 }
1179 else
1180 LOG_INFO("RCLK (adaptive clock speed)");
1181
1182 return ERROR_OK;
1183 }
1184
1185 static int jtag_init_inner(struct command_context_s *cmd_ctx)
1186 {
1187 jtag_tap_t *tap;
1188 int retval;
1189
1190 LOG_DEBUG("Init JTAG chain");
1191
1192 tap = jtag_tap_next_enabled(NULL);
1193 if (tap == NULL) {
1194 LOG_ERROR("There are no enabled taps?");
1195 return ERROR_JTAG_INIT_FAILED;
1196 }
1197
1198 jtag_add_tlr();
1199 if ((retval = jtag_execute_queue()) != ERROR_OK)
1200 return retval;
1201
1202 /* examine chain first, as this could discover the real chain layout */
1203 if (jtag_examine_chain() != ERROR_OK)
1204 {
1205 LOG_ERROR("trying to validate configured JTAG chain anyway...");
1206 }
1207
1208 if (jtag_validate_chain() != ERROR_OK)
1209 {
1210 LOG_WARNING("Could not validate JTAG chain, continuing anyway...");
1211 }
1212
1213 return ERROR_OK;
1214 }
1215
1216 int jtag_interface_quit(void)
1217 {
1218 if (!jtag || !jtag->quit)
1219 return ERROR_OK;
1220
1221 // close the JTAG interface
1222 int result = jtag->quit();
1223 if (ERROR_OK != result)
1224 LOG_ERROR("failed: %d", result);
1225
1226 return ERROR_OK;
1227 }
1228
1229
1230 int jtag_init_reset(struct command_context_s *cmd_ctx)
1231 {
1232 int retval;
1233
1234 if ((retval = jtag_interface_init(cmd_ctx)) != ERROR_OK)
1235 return retval;
1236
1237 LOG_DEBUG("Trying to bring the JTAG controller to life by asserting TRST / TLR");
1238
1239 /* Reset can happen after a power cycle.
1240 *
1241 * Ideally we would only assert TRST or run TLR before the target reset.
1242 *
1243 * However w/srst_pulls_trst, trst is asserted together with the target
1244 * reset whether we want it or not.
1245 *
1246 * NB! Some targets have JTAG circuitry disabled until a
1247 * trst & srst has been asserted.
1248 *
1249 * NB! here we assume nsrst/ntrst delay are sufficient!
1250 *
1251 * NB! order matters!!!! srst *can* disconnect JTAG circuitry
1252 *
1253 */
1254 jtag_add_reset(1, 0); /* TAP_RESET, using TMS+TCK or TRST */
1255 if (jtag_reset_config & RESET_HAS_SRST)
1256 {
1257 jtag_add_reset(1, 1);
1258 if ((jtag_reset_config & RESET_SRST_PULLS_TRST) == 0)
1259 jtag_add_reset(0, 1);
1260 }
1261 jtag_add_reset(0, 0);
1262 if ((retval = jtag_execute_queue()) != ERROR_OK)
1263 return retval;
1264
1265 /* Check that we can communication on the JTAG chain + eventually we want to
1266 * be able to perform enumeration only after OpenOCD has started
1267 * telnet and GDB server
1268 *
1269 * That would allow users to more easily perform any magic they need to before
1270 * reset happens.
1271 */
1272 return jtag_init_inner(cmd_ctx);
1273 }
1274
1275 int jtag_init(struct command_context_s *cmd_ctx)
1276 {
1277 int retval;
1278 if ((retval = jtag_interface_init(cmd_ctx)) != ERROR_OK)
1279 return retval;
1280 if (jtag_init_inner(cmd_ctx) == ERROR_OK)
1281 {
1282 return ERROR_OK;
1283 }
1284 return jtag_init_reset(cmd_ctx);
1285 }
1286
1287 unsigned jtag_get_speed_khz(void)
1288 {
1289 return speed_khz;
1290 }
1291
1292 static int jtag_khz_to_speed(unsigned khz, int* speed)
1293 {
1294 LOG_DEBUG("convert khz to interface specific speed value");
1295 speed_khz = khz;
1296 if (jtag != NULL)
1297 {
1298 LOG_DEBUG("have interface set up");
1299 int speed_div1;
1300 int retval = jtag->khz(jtag_get_speed_khz(), &speed_div1);
1301 if (ERROR_OK != retval)
1302 {
1303 return retval;
1304 }
1305 *speed = speed_div1;
1306 }
1307 return ERROR_OK;
1308 }
1309
1310 static int jtag_rclk_to_speed(unsigned fallback_speed_khz, int* speed)
1311 {
1312 int retval = jtag_khz_to_speed(0, speed);
1313 if ((ERROR_OK != retval) && fallback_speed_khz)
1314 {
1315 LOG_DEBUG("trying fallback speed...");
1316 retval = jtag_khz_to_speed(fallback_speed_khz, speed);
1317 }
1318 return retval;
1319 }
1320
1321 static int jtag_set_speed(int speed)
1322 {
1323 jtag_speed = speed;
1324 /* this command can be called during CONFIG,
1325 * in which case jtag isn't initialized */
1326 return jtag ? jtag->speed(speed) : ERROR_OK;
1327 }
1328
1329 int jtag_config_speed(int speed)
1330 {
1331 LOG_DEBUG("handle jtag speed");
1332 clock_mode = CLOCK_MODE_SPEED;
1333 return jtag_set_speed(speed);
1334 }
1335
1336 int jtag_config_khz(unsigned khz)
1337 {
1338 LOG_DEBUG("handle jtag khz");
1339 clock_mode = CLOCK_MODE_KHZ;
1340 int speed = 0;
1341 int retval = jtag_khz_to_speed(khz, &speed);
1342 return (ERROR_OK != retval) ? retval : jtag_set_speed(speed);
1343 }
1344
1345 int jtag_config_rclk(unsigned fallback_speed_khz)
1346 {
1347 LOG_DEBUG("handle jtag rclk");
1348 clock_mode = CLOCK_MODE_RCLK;
1349 rclk_fallback_speed_khz = fallback_speed_khz;
1350 int speed = 0;
1351 int retval = jtag_rclk_to_speed(fallback_speed_khz, &speed);
1352 return (ERROR_OK != retval) ? retval : jtag_set_speed(speed);
1353 }
1354
1355 int jtag_get_speed(void)
1356 {
1357 int speed;
1358 switch(clock_mode)
1359 {
1360 case CLOCK_MODE_SPEED:
1361 speed = jtag_speed;
1362 break;
1363 case CLOCK_MODE_KHZ:
1364 jtag_khz_to_speed(jtag_get_speed_khz(), &speed);
1365 break;
1366 case CLOCK_MODE_RCLK:
1367 jtag_rclk_to_speed(rclk_fallback_speed_khz, &speed);
1368 break;
1369 default:
1370 LOG_ERROR("BUG: unknown jtag clock mode");
1371 speed = 0;
1372 break;
1373 }
1374 return speed;
1375 }
1376
1377 int jtag_get_speed_readable(int *khz)
1378 {
1379 return jtag ? jtag->speed_div(jtag_get_speed(), khz) : ERROR_OK;
1380 }
1381
1382 void jtag_set_verify(bool enable)
1383 {
1384 jtag_verify = enable;
1385 }
1386
1387 bool jtag_will_verify()
1388 {
1389 return jtag_verify;
1390 }
1391
1392 void jtag_set_verify_capture_ir(bool enable)
1393 {
1394 jtag_verify_capture_ir = enable;
1395 }
1396
1397 bool jtag_will_verify_capture_ir()
1398 {
1399 return jtag_verify_capture_ir;
1400 }
1401
1402 int jtag_power_dropout(int *dropout)
1403 {
1404 return jtag->power_dropout(dropout);
1405 }
1406
1407 int jtag_srst_asserted(int *srst_asserted)
1408 {
1409 return jtag->srst_asserted(srst_asserted);
1410 }
1411
1412 enum reset_types jtag_get_reset_config(void)
1413 {
1414 return jtag_reset_config;
1415 }
1416 void jtag_set_reset_config(enum reset_types type)
1417 {
1418 jtag_reset_config = type;
1419 }
1420
1421 int jtag_get_trst(void)
1422 {
1423 return jtag_trst;
1424 }
1425 int jtag_get_srst(void)
1426 {
1427 return jtag_srst;
1428 }
1429
1430 void jtag_set_nsrst_delay(unsigned delay)
1431 {
1432 jtag_nsrst_delay = delay;
1433 }
1434 unsigned jtag_get_nsrst_delay(void)
1435 {
1436 return jtag_nsrst_delay;
1437 }
1438 void jtag_set_ntrst_delay(unsigned delay)
1439 {
1440 jtag_ntrst_delay = delay;
1441 }
1442 unsigned jtag_get_ntrst_delay(void)
1443 {
1444 return jtag_ntrst_delay;
1445 }

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