JTAG/drivers: cleanup jtag_interface structs
[openocd.git] / src / jtag / drivers / jlink.c
1 /***************************************************************************
2 * Copyright (C) 2007 by Juergen Stuber <juergen@jstuber.net> *
3 * based on Dominic Rath's and Benedikt Sauter's usbprog.c *
4 * *
5 * Copyright (C) 2008 by Spencer Oliver *
6 * spen@spen-soft.co.uk *
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 2 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, write to the *
20 * Free Software Foundation, Inc., *
21 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
22 ***************************************************************************/
23
24 #ifdef HAVE_CONFIG_H
25 #include "config.h"
26 #endif
27
28 #include <jtag/interface.h>
29 #include <jtag/commands.h>
30 #include "usb_common.h"
31
32
33 #define VID 0x1366
34 #define PID 0x0101
35
36 #define JLINK_WRITE_ENDPOINT 0x02
37 #define JLINK_READ_ENDPOINT 0x81
38
39 static unsigned int jlink_write_ep = JLINK_WRITE_ENDPOINT;
40 static unsigned int jlink_read_ep = JLINK_READ_ENDPOINT;
41 static unsigned int jlink_hw_jtag_version = 2;
42
43 #define JLINK_USB_TIMEOUT 1000
44
45 // See Section 1.3.2 of the Segger JLink USB protocol manual
46 /* 2048 is the max value we can use here */
47 //#define JLINK_TAP_BUFFER_SIZE 2048
48 #define JLINK_TAP_BUFFER_SIZE 256
49 //#define JLINK_TAP_BUFFER_SIZE 384
50
51 #define JLINK_IN_BUFFER_SIZE 2048
52 #define JLINK_OUT_BUFFER_SIZE 2*2048 + 4
53 #define JLINK_EMU_RESULT_BUFFER_SIZE 64
54
55 /* Global USB buffers */
56 static uint8_t usb_in_buffer[JLINK_IN_BUFFER_SIZE];
57 static uint8_t usb_out_buffer[JLINK_OUT_BUFFER_SIZE];
58 static uint8_t usb_emu_result_buffer[JLINK_EMU_RESULT_BUFFER_SIZE];
59
60 /* Constants for JLink command */
61 #define EMU_CMD_VERSION 0x01
62 #define EMU_CMD_SET_SPEED 0x05
63 #define EMU_CMD_GET_STATE 0x07
64 #define EMU_CMD_HW_CLOCK 0xc8
65 #define EMU_CMD_HW_TMS0 0xc9
66 #define EMU_CMD_HW_TMS1 0xca
67 #define EMU_CMD_HW_JTAG2 0xce
68 #define EMU_CMD_HW_JTAG3 0xcf
69 #define EMU_CMD_GET_MAX_MEM_BLOCK 0xd4
70 #define EMU_CMD_HW_RESET0 0xdc
71 #define EMU_CMD_HW_RESET1 0xdd
72 #define EMU_CMD_HW_TRST0 0xde
73 #define EMU_CMD_HW_TRST1 0xdf
74 #define EMU_CMD_GET_CAPS 0xe8
75 #define EMU_CMD_GET_HW_VERSION 0xf0
76
77 /* bits return from EMU_CMD_GET_CAPS */
78 #define EMU_CAP_GET_HW_VERSION 1
79 #define EMU_CAP_GET_MAX_BLOCK_SIZE 11
80
81 /* max speed 12MHz v5.0 jlink */
82 #define JLINK_MAX_SPEED 12000
83
84 /* Queue command functions */
85 static void jlink_end_state(tap_state_t state);
86 static void jlink_state_move(void);
87 static void jlink_path_move(int num_states, tap_state_t *path);
88 static void jlink_runtest(int num_cycles);
89 static void jlink_scan(bool ir_scan, enum scan_type type, uint8_t *buffer, int scan_size, struct scan_command *command);
90 static void jlink_reset(int trst, int srst);
91 static void jlink_simple_command(uint8_t command);
92 static int jlink_get_status(void);
93
94 /* J-Link tap buffer functions */
95 static void jlink_tap_init(void);
96 static int jlink_tap_execute(void);
97 static void jlink_tap_ensure_space(int scans, int bits);
98 static void jlink_tap_append_step(int tms, int tdi);
99 static void jlink_tap_append_scan(int length, uint8_t *buffer, struct scan_command *command);
100
101 /* Jlink lowlevel functions */
102 struct jlink {
103 struct usb_dev_handle* usb_handle;
104 };
105
106 static struct jlink *jlink_usb_open(void);
107 static void jlink_usb_close(struct jlink *jlink);
108 static int jlink_usb_message(struct jlink *jlink, int out_length, int in_length);
109 static int jlink_usb_write(struct jlink *jlink, int out_length);
110 static int jlink_usb_read(struct jlink *jlink, int expected_size);
111 static int jlink_usb_read_emu_result(struct jlink *jlink);
112
113 /* helper functions */
114 static int jlink_get_version_info(void);
115
116 #ifdef _DEBUG_USB_COMMS_
117 static void jlink_debug_buffer(uint8_t *buffer, int length);
118 #endif
119
120 static enum tap_state jlink_last_state = TAP_RESET;
121
122 static struct jlink* jlink_handle;
123
124 /***************************************************************************/
125 /* External interface implementation */
126
127 static void jlink_execute_runtest(struct jtag_command *cmd)
128 {
129 DEBUG_JTAG_IO("runtest %i cycles, end in %i",
130 cmd->cmd.runtest->num_cycles,
131 cmd->cmd.runtest->end_state);
132
133 jlink_end_state(cmd->cmd.runtest->end_state);
134
135 jlink_runtest(cmd->cmd.runtest->num_cycles);
136 }
137
138 static void jlink_execute_statemove(struct jtag_command *cmd)
139 {
140 DEBUG_JTAG_IO("statemove end in %i", cmd->cmd.statemove->end_state);
141
142 jlink_end_state(cmd->cmd.statemove->end_state);
143 jlink_state_move();
144 }
145
146 static void jlink_execute_pathmove(struct jtag_command *cmd)
147 {
148 DEBUG_JTAG_IO("pathmove: %i states, end in %i",
149 cmd->cmd.pathmove->num_states,
150 cmd->cmd.pathmove->path[cmd->cmd.pathmove->num_states - 1]);
151
152 jlink_path_move(cmd->cmd.pathmove->num_states,
153 cmd->cmd.pathmove->path);
154 }
155
156 static void jlink_execute_scan(struct jtag_command *cmd)
157 {
158 int scan_size;
159 enum scan_type type;
160 uint8_t *buffer;
161
162 DEBUG_JTAG_IO("scan end in %s", tap_state_name(cmd->cmd.scan->end_state));
163
164 jlink_end_state(cmd->cmd.scan->end_state);
165
166 scan_size = jtag_build_buffer(cmd->cmd.scan, &buffer);
167 DEBUG_JTAG_IO("scan input, length = %d", scan_size);
168
169 #ifdef _DEBUG_USB_COMMS_
170 jlink_debug_buffer(buffer, (scan_size + 7) / 8);
171 #endif
172 type = jtag_scan_type(cmd->cmd.scan);
173 jlink_scan(cmd->cmd.scan->ir_scan,
174 type, buffer, scan_size, cmd->cmd.scan);
175 }
176
177 static void jlink_execute_reset(struct jtag_command *cmd)
178 {
179 DEBUG_JTAG_IO("reset trst: %i srst %i",
180 cmd->cmd.reset->trst, cmd->cmd.reset->srst);
181
182 jlink_tap_execute();
183 jlink_reset(cmd->cmd.reset->trst, cmd->cmd.reset->srst);
184 jlink_tap_execute();
185 }
186
187 static void jlink_execute_sleep(struct jtag_command *cmd)
188 {
189 DEBUG_JTAG_IO("sleep %" PRIi32 "", cmd->cmd.sleep->us);
190 jlink_tap_execute();
191 jtag_sleep(cmd->cmd.sleep->us);
192 }
193
194 static void jlink_execute_command(struct jtag_command *cmd)
195 {
196 switch (cmd->type)
197 {
198 case JTAG_RUNTEST: jlink_execute_runtest(cmd); break;
199 case JTAG_STATEMOVE: jlink_execute_statemove(cmd); break;
200 case JTAG_PATHMOVE: jlink_execute_pathmove(cmd); break;
201 case JTAG_SCAN: jlink_execute_scan(cmd); break;
202 case JTAG_RESET: jlink_execute_reset(cmd); break;
203 case JTAG_SLEEP: jlink_execute_sleep(cmd); break;
204 default:
205 LOG_ERROR("BUG: unknown JTAG command type encountered");
206 exit(-1);
207 }
208 }
209
210 static int jlink_execute_queue(void)
211 {
212 struct jtag_command *cmd = jtag_command_queue;
213
214 while (cmd != NULL)
215 {
216 jlink_execute_command(cmd);
217 cmd = cmd->next;
218 }
219
220 return jlink_tap_execute();
221 }
222
223 /* Sets speed in kHz. */
224 static int jlink_speed(int speed)
225 {
226 int result;
227
228 if (speed > JLINK_MAX_SPEED)
229 {
230 LOG_INFO("Ignoring speed request: %dkHz exceeds %dkHz maximum",
231 speed, JLINK_MAX_SPEED);
232 return ERROR_OK;
233 }
234
235 /* check for RTCK setting */
236 if (speed == 0)
237 speed = -1;
238
239 usb_out_buffer[0] = EMU_CMD_SET_SPEED;
240 usb_out_buffer[1] = (speed >> 0) & 0xff;
241 usb_out_buffer[2] = (speed >> 8) & 0xff;
242
243 result = jlink_usb_write(jlink_handle, 3);
244 if (result != 3)
245 {
246 LOG_ERROR("J-Link setting speed failed (%d)", result);
247 return ERROR_JTAG_DEVICE_ERROR;
248 }
249
250 return ERROR_OK;
251 }
252
253 static int jlink_speed_div(int speed, int* khz)
254 {
255 *khz = speed;
256
257 return ERROR_OK;
258 }
259
260 static int jlink_khz(int khz, int *jtag_speed)
261 {
262 *jtag_speed = khz;
263
264 return ERROR_OK;
265 }
266
267 static int jlink_init(void)
268 {
269 int i;
270
271 jlink_handle = jlink_usb_open();
272
273 if (jlink_handle == 0)
274 {
275 LOG_ERROR("Cannot find jlink Interface! Please check connection and permissions.");
276 return ERROR_JTAG_INIT_FAILED;
277 }
278
279 /*
280 * The next three instructions were added after discovering a problem while using an oscilloscope. For the V8
281 * SAM-ICE dongle (and likely other j-link device variants), the reset line to the target microprocessor was found to
282 * cycle only intermittently during emulator startup (even after encountering the downstream reset instruction later
283 * in the code). This was found to create two issues: 1) In general it is a bad practice to not reset a CPU to a known
284 * state when starting an emulator and 2) something critical happens inside the dongle when it does the first read
285 * following a new USB session. Keeping the processor in reset during the first read collecting version information
286 * seems to prevent errant "J-Link command EMU_CMD_VERSION failed" issues.
287 */
288
289 LOG_INFO("J-Link initialization started / target CPU reset initiated");
290 jlink_simple_command(EMU_CMD_HW_TRST0);
291 jlink_simple_command(EMU_CMD_HW_RESET0);
292 usleep(1000);
293
294 jlink_hw_jtag_version = 2;
295
296 if (jlink_get_version_info() == ERROR_OK)
297 {
298 /* attempt to get status */
299 jlink_get_status();
300 }
301
302 LOG_INFO("J-Link JTAG Interface ready");
303
304 jlink_reset(0, 0);
305 jtag_sleep(3000);
306 jlink_tap_init();
307 jlink_speed(jtag_get_speed());
308
309 /* v5/6 jlink seems to have an issue if the first tap move
310 * is not divisible by 8, so we send a TLR on first power up */
311 for (i = 0; i < 8; i++) {
312 jlink_tap_append_step(1, 0);
313 }
314 jlink_tap_execute();
315
316 return ERROR_OK;
317 }
318
319 static int jlink_quit(void)
320 {
321 jlink_usb_close(jlink_handle);
322 return ERROR_OK;
323 }
324
325 /***************************************************************************/
326 /* Queue command implementations */
327
328 static void jlink_end_state(tap_state_t state)
329 {
330 if (tap_is_state_stable(state))
331 {
332 tap_set_end_state(state);
333 }
334 else
335 {
336 LOG_ERROR("BUG: %i is not a valid end state", state);
337 exit(-1);
338 }
339 }
340
341 /* Goes to the end state. */
342 static void jlink_state_move(void)
343 {
344 int i;
345 int tms = 0;
346 uint8_t tms_scan = tap_get_tms_path(tap_get_state(), tap_get_end_state());
347 uint8_t tms_scan_bits = tap_get_tms_path_len(tap_get_state(), tap_get_end_state());
348
349 for (i = 0; i < tms_scan_bits; i++)
350 {
351 tms = (tms_scan >> i) & 1;
352 jlink_tap_append_step(tms, 0);
353 }
354
355 tap_set_state(tap_get_end_state());
356 }
357
358 static void jlink_path_move(int num_states, tap_state_t *path)
359 {
360 int i;
361
362 for (i = 0; i < num_states; i++)
363 {
364 if (path[i] == tap_state_transition(tap_get_state(), false))
365 {
366 jlink_tap_append_step(0, 0);
367 }
368 else if (path[i] == tap_state_transition(tap_get_state(), true))
369 {
370 jlink_tap_append_step(1, 0);
371 }
372 else
373 {
374 LOG_ERROR("BUG: %s -> %s isn't a valid TAP transition", tap_state_name(tap_get_state()), tap_state_name(path[i]));
375 exit(-1);
376 }
377
378 tap_set_state(path[i]);
379 }
380
381 tap_set_end_state(tap_get_state());
382 }
383
384 static void jlink_runtest(int num_cycles)
385 {
386 int i;
387
388 tap_state_t saved_end_state = tap_get_end_state();
389
390 jlink_tap_ensure_space(1,num_cycles + 16);
391
392 /* only do a state_move when we're not already in IDLE */
393 if (tap_get_state() != TAP_IDLE)
394 {
395 jlink_end_state(TAP_IDLE);
396 jlink_state_move();
397 // num_cycles--;
398 }
399
400 /* execute num_cycles */
401 for (i = 0; i < num_cycles; i++)
402 {
403 jlink_tap_append_step(0, 0);
404 }
405
406 /* finish in end_state */
407 jlink_end_state(saved_end_state);
408 if (tap_get_state() != tap_get_end_state())
409 {
410 jlink_state_move();
411 }
412 }
413
414 static void jlink_scan(bool ir_scan, enum scan_type type, uint8_t *buffer, int scan_size, struct scan_command *command)
415 {
416 tap_state_t saved_end_state;
417
418 jlink_tap_ensure_space(1, scan_size + 16);
419
420 saved_end_state = tap_get_end_state();
421
422 /* Move to appropriate scan state */
423 jlink_end_state(ir_scan ? TAP_IRSHIFT : TAP_DRSHIFT);
424
425 /* Only move if we're not already there */
426 if (tap_get_state() != tap_get_end_state())
427 jlink_state_move();
428
429 jlink_end_state(saved_end_state);
430
431 /* Scan */
432 jlink_tap_append_scan(scan_size, buffer, command);
433
434 /* We are in Exit1, go to Pause */
435 jlink_tap_append_step(0, 0);
436
437 tap_set_state(ir_scan ? TAP_IRPAUSE : TAP_DRPAUSE);
438
439 if (tap_get_state() != tap_get_end_state())
440 {
441 jlink_state_move();
442 }
443 }
444
445 static void jlink_reset(int trst, int srst)
446 {
447 LOG_DEBUG("trst: %i, srst: %i", trst, srst);
448
449 /* Signals are active low */
450 if (srst == 0)
451 {
452 jlink_simple_command(EMU_CMD_HW_RESET1);
453 }
454 if (srst == 1)
455 {
456 jlink_simple_command(EMU_CMD_HW_RESET0);
457 }
458
459 if (trst == 1)
460 {
461 jlink_simple_command(EMU_CMD_HW_TRST0);
462 }
463
464 if (trst == 0)
465 {
466 jlink_simple_command(EMU_CMD_HW_TRST1);
467 }
468 }
469
470 static void jlink_simple_command(uint8_t command)
471 {
472 int result;
473
474 DEBUG_JTAG_IO("0x%02x", command);
475
476 usb_out_buffer[0] = command;
477 result = jlink_usb_write(jlink_handle, 1);
478
479 if (result != 1)
480 {
481 LOG_ERROR("J-Link command 0x%02x failed (%d)", command, result);
482 }
483 }
484
485 static int jlink_get_status(void)
486 {
487 int result;
488
489 jlink_simple_command(EMU_CMD_GET_STATE);
490
491 result = jlink_usb_read(jlink_handle, 8);
492 if (result != 8)
493 {
494 LOG_ERROR("J-Link command EMU_CMD_GET_STATE failed (%d)\n", result);
495 return ERROR_JTAG_DEVICE_ERROR;
496 }
497
498 int vref = usb_in_buffer[0] + (usb_in_buffer[1] << 8);
499 LOG_INFO("Vref = %d.%d TCK = %d TDI = %d TDO = %d TMS = %d SRST = %d TRST = %d\n", \
500 vref / 1000, vref % 1000, \
501 usb_in_buffer[2], usb_in_buffer[3], usb_in_buffer[4], \
502 usb_in_buffer[5], usb_in_buffer[6], usb_in_buffer[7]);
503
504 if (vref < 1500)
505 LOG_ERROR("Vref too low. Check Target Power\n");
506
507 return ERROR_OK;
508 }
509
510 static int jlink_get_version_info(void)
511 {
512 int result;
513 int len;
514 uint32_t jlink_caps, jlink_max_size;
515
516 /* query hardware version */
517 jlink_simple_command(EMU_CMD_VERSION);
518
519 result = jlink_usb_read(jlink_handle, 2);
520 if (2 != result)
521 {
522 LOG_ERROR("J-Link command EMU_CMD_VERSION failed (%d)\n", result);
523 return ERROR_JTAG_DEVICE_ERROR;
524 }
525
526 len = buf_get_u32(usb_in_buffer, 0, 16);
527 if (len > JLINK_IN_BUFFER_SIZE)
528 {
529 LOG_ERROR("J-Link command EMU_CMD_VERSION impossible return length 0x%0x", len);
530 len = JLINK_IN_BUFFER_SIZE;
531 }
532
533 result = jlink_usb_read(jlink_handle, len);
534 if (result != len)
535 {
536 LOG_ERROR("J-Link command EMU_CMD_VERSION failed (%d)\n", result);
537 return ERROR_JTAG_DEVICE_ERROR;
538 }
539
540 usb_in_buffer[result] = 0;
541 LOG_INFO("%s", (char *)usb_in_buffer);
542
543 /* query hardware capabilities */
544 jlink_simple_command(EMU_CMD_GET_CAPS);
545
546 result = jlink_usb_read(jlink_handle, 4);
547 if (4 != result)
548 {
549 LOG_ERROR("J-Link command EMU_CMD_GET_CAPS failed (%d)\n", result);
550 return ERROR_JTAG_DEVICE_ERROR;
551 }
552
553 jlink_caps = buf_get_u32(usb_in_buffer, 0, 32);
554 LOG_INFO("JLink caps 0x%x", (unsigned)jlink_caps);
555
556 if (jlink_caps & (1 << EMU_CAP_GET_HW_VERSION))
557 {
558 /* query hardware version */
559 jlink_simple_command(EMU_CMD_GET_HW_VERSION);
560
561 result = jlink_usb_read(jlink_handle, 4);
562 if (4 != result)
563 {
564 LOG_ERROR("J-Link command EMU_CMD_GET_HW_VERSION failed (%d)\n", result);
565 return ERROR_JTAG_DEVICE_ERROR;
566 }
567
568 uint32_t jlink_hw_version = buf_get_u32(usb_in_buffer, 0, 32);
569 uint32_t major_revision = (jlink_hw_version / 10000) % 100;
570 if (major_revision >= 5)
571 jlink_hw_jtag_version = 3;
572
573 LOG_INFO("JLink hw version %i", (int)jlink_hw_version);
574 }
575
576 if (jlink_caps & (1 << EMU_CAP_GET_MAX_BLOCK_SIZE))
577 {
578 /* query hardware maximum memory block */
579 jlink_simple_command(EMU_CMD_GET_MAX_MEM_BLOCK);
580
581 result = jlink_usb_read(jlink_handle, 4);
582 if (4 != result)
583 {
584 LOG_ERROR("J-Link command EMU_CMD_GET_MAX_MEM_BLOCK failed (%d)\n", result);
585 return ERROR_JTAG_DEVICE_ERROR;
586 }
587
588 jlink_max_size = buf_get_u32(usb_in_buffer, 0, 32);
589 LOG_INFO("JLink max mem block %i", (int)jlink_max_size);
590 }
591
592 return ERROR_OK;
593 }
594
595 COMMAND_HANDLER(jlink_handle_jlink_info_command)
596 {
597 if (jlink_get_version_info() == ERROR_OK)
598 {
599 /* attempt to get status */
600 jlink_get_status();
601 }
602
603 return ERROR_OK;
604 }
605
606 COMMAND_HANDLER(jlink_handle_jlink_hw_jtag_command)
607 {
608 switch (CMD_ARGC) {
609 case 0:
610 command_print(CMD_CTX, "jlink hw jtag %i", jlink_hw_jtag_version);
611 break;
612 case 1: {
613 int request_version = atoi(CMD_ARGV[0]);
614 switch (request_version) {
615 case 2: case 3:
616 jlink_hw_jtag_version = request_version;
617 break;
618 default:
619 return ERROR_COMMAND_SYNTAX_ERROR;
620 }
621 break;
622 }
623 default:
624 return ERROR_COMMAND_SYNTAX_ERROR;
625 }
626
627 return ERROR_OK;
628 }
629
630 static const struct command_registration jlink_command_handlers[] = {
631 {
632 .name = "jlink_info",
633 .handler = &jlink_handle_jlink_info_command,
634 .mode = COMMAND_EXEC,
635 .help = "show jlink info",
636 },
637 {
638 .name = "jlink_hw_jtag",
639 .handler = &jlink_handle_jlink_hw_jtag_command,
640 .mode = COMMAND_EXEC,
641 .help = "access J-Link HW JTAG command version",
642 .usage = "[2|3]",
643 },
644 COMMAND_REGISTRATION_DONE
645 };
646
647 struct jtag_interface jlink_interface = {
648 .name = "jlink",
649 .commands = jlink_command_handlers,
650
651 .execute_queue = jlink_execute_queue,
652 .speed = jlink_speed,
653 .speed_div = jlink_speed_div,
654 .khz = jlink_khz,
655 .init = jlink_init,
656 .quit = jlink_quit,
657 };
658
659 /***************************************************************************/
660 /* J-Link tap functions */
661
662
663 static unsigned tap_length = 0;
664 static uint8_t tms_buffer[JLINK_TAP_BUFFER_SIZE];
665 static uint8_t tdi_buffer[JLINK_TAP_BUFFER_SIZE];
666 static uint8_t tdo_buffer[JLINK_TAP_BUFFER_SIZE];
667
668 struct pending_scan_result {
669 int first; /* First bit position in tdo_buffer to read */
670 int length; /* Number of bits to read */
671 struct scan_command *command; /* Corresponding scan command */
672 uint8_t *buffer;
673 };
674
675 #define MAX_PENDING_SCAN_RESULTS 256
676
677 static int pending_scan_results_length;
678 static struct pending_scan_result pending_scan_results_buffer[MAX_PENDING_SCAN_RESULTS];
679
680 static void jlink_tap_init(void)
681 {
682 tap_length = 0;
683 pending_scan_results_length = 0;
684 }
685
686 static void jlink_tap_ensure_space(int scans, int bits)
687 {
688 int available_scans = MAX_PENDING_SCAN_RESULTS - pending_scan_results_length;
689 int available_bits = JLINK_TAP_BUFFER_SIZE * 8 - tap_length - 32;
690
691 if (scans > available_scans || bits > available_bits)
692 {
693 jlink_tap_execute();
694 }
695 }
696
697 static void jlink_tap_append_step(int tms, int tdi)
698 {
699 int index = tap_length / 8;
700
701 if (index >= JLINK_TAP_BUFFER_SIZE)
702 {
703 LOG_ERROR("jlink_tap_append_step: overflow");
704 *(uint32_t *)0xFFFFFFFF = 0;
705 exit(-1);
706 }
707
708 int bit_index = tap_length % 8;
709 uint8_t bit = 1 << bit_index;
710
711 // we do not pad TMS, so be sure to initialize all bits
712 if (0 == bit_index)
713 {
714 tms_buffer[index] = tdi_buffer[index] = 0;
715 }
716
717 if (tms)
718 tms_buffer[index] |= bit;
719 else
720 tms_buffer[index] &= ~bit;
721
722 if (tdi)
723 tdi_buffer[index] |= bit;
724 else
725 tdi_buffer[index] &= ~bit;
726
727 tap_length++;
728 }
729
730 static void jlink_tap_append_scan(int length, uint8_t *buffer, struct scan_command *command)
731 {
732 struct pending_scan_result *pending_scan_result =
733 &pending_scan_results_buffer[pending_scan_results_length];
734 int i;
735
736 pending_scan_result->first = tap_length;
737 pending_scan_result->length = length;
738 pending_scan_result->command = command;
739 pending_scan_result->buffer = buffer;
740
741 for (i = 0; i < length; i++)
742 {
743 int tms = (i < (length - 1)) ? 0 : 1;
744 int tdi = (buffer[i / 8] & (1 << (i % 8))) != 0;
745 jlink_tap_append_step(tms, tdi);
746 }
747 pending_scan_results_length++;
748 }
749
750 /* Pad and send a tap sequence to the device, and receive the answer.
751 * For the purpose of padding we assume that we are in idle or pause state. */
752 static int jlink_tap_execute(void)
753 {
754 int byte_length;
755 int i;
756 int result;
757
758 if (!tap_length)
759 return ERROR_OK;
760
761 /* JLink returns an extra NULL in packet when size of incoming
762 * message is a multiple of 64, creates problems with USB comms.
763 * WARNING: This will interfere with tap state counting. */
764 while ((DIV_ROUND_UP(tap_length, 8) % 64) == 0)
765 {
766 jlink_tap_append_step((tap_get_state() == TAP_RESET)?1:0, 0);
767 }
768
769 // number of full bytes (plus one if some would be left over)
770 byte_length = DIV_ROUND_UP(tap_length, 8);
771
772 bool use_jtag3 = jlink_hw_jtag_version >= 3;
773 usb_out_buffer[0] = use_jtag3 ? EMU_CMD_HW_JTAG3 : EMU_CMD_HW_JTAG2;
774 usb_out_buffer[1] = 0;
775 usb_out_buffer[2] = (tap_length >> 0) & 0xff;
776 usb_out_buffer[3] = (tap_length >> 8) & 0xff;
777 memcpy(usb_out_buffer + 4, tms_buffer, byte_length);
778 memcpy(usb_out_buffer + 4 + byte_length, tdi_buffer, byte_length);
779
780 jlink_last_state = jtag_debug_state_machine(tms_buffer, tdi_buffer,
781 tap_length, jlink_last_state);
782
783 result = jlink_usb_message(jlink_handle, 4 + 2 * byte_length, byte_length);
784 if (result != byte_length)
785 {
786 LOG_ERROR("jlink_tap_execute, wrong result %d (expected %d)", result, byte_length);
787 jlink_tap_init();
788 return ERROR_JTAG_QUEUE_FAILED;
789 }
790
791 memcpy(tdo_buffer, usb_in_buffer, byte_length);
792
793 for (i = 0; i < pending_scan_results_length; i++)
794 {
795 struct pending_scan_result *pending_scan_result = &pending_scan_results_buffer[i];
796 uint8_t *buffer = pending_scan_result->buffer;
797 int length = pending_scan_result->length;
798 int first = pending_scan_result->first;
799 struct scan_command *command = pending_scan_result->command;
800
801 /* Copy to buffer */
802 buf_set_buf(tdo_buffer, first, buffer, 0, length);
803
804 DEBUG_JTAG_IO("pending scan result, length = %d", length);
805
806 #ifdef _DEBUG_USB_COMMS_
807 jlink_debug_buffer(buffer, DIV_ROUND_UP(length, 8));
808 #endif
809
810 if (jtag_read_buffer(buffer, command) != ERROR_OK)
811 {
812 jlink_tap_init();
813 return ERROR_JTAG_QUEUE_FAILED;
814 }
815
816 if (pending_scan_result->buffer != NULL)
817 {
818 free(pending_scan_result->buffer);
819 }
820 }
821
822 jlink_tap_init();
823 return ERROR_OK;
824 }
825
826 /*****************************************************************************/
827 /* JLink USB low-level functions */
828
829 static struct jlink* jlink_usb_open()
830 {
831 usb_init();
832
833 const uint16_t vids[] = { VID, 0 };
834 const uint16_t pids[] = { PID, 0 };
835 struct usb_dev_handle *dev;
836 if (jtag_usb_open(vids, pids, &dev) != ERROR_OK)
837 return NULL;
838
839 /* BE ***VERY CAREFUL*** ABOUT MAKING CHANGES IN THIS
840 * AREA!!!!!!!!!!! The behavior of libusb is not completely
841 * consistent across Windows, Linux, and Mac OS X platforms.
842 * The actions taken in the following compiler conditionals may
843 * not agree with published documentation for libusb, but were
844 * found to be necessary through trials and tribulations. Even
845 * little tweaks can break one or more platforms, so if you do
846 * make changes test them carefully on all platforms before
847 * committing them!
848 */
849
850 #if IS_WIN32 == 0
851
852 usb_reset(dev);
853
854 #if IS_DARWIN == 0
855
856 int timeout = 5;
857 /* reopen jlink after usb_reset
858 * on win32 this may take a second or two to re-enumerate */
859 int retval;
860 while ((retval = jtag_usb_open(vids, pids, &dev)) != ERROR_OK)
861 {
862 usleep(1000);
863 timeout--;
864 if (!timeout) {
865 break;
866 }
867 }
868 if (ERROR_OK != retval)
869 return NULL;
870 #endif
871
872 #endif
873
874 /* usb_set_configuration required under win32 */
875 struct usb_device *udev = usb_device(dev);
876 usb_set_configuration(dev, udev->config[0].bConfigurationValue);
877 usb_claim_interface(dev, 0);
878
879 #if 0
880 /*
881 * This makes problems under Mac OS X. And is not needed
882 * under Windows. Hopefully this will not break a linux build
883 */
884 usb_set_altinterface(result->usb_handle, 0);
885 #endif
886 struct usb_interface *iface = udev->config->interface;
887 struct usb_interface_descriptor *desc = iface->altsetting;
888 for (int i = 0; i < desc->bNumEndpoints; i++)
889 {
890 uint8_t epnum = desc->endpoint[i].bEndpointAddress;
891 bool is_input = epnum & 0x80;
892 LOG_DEBUG("usb ep %s %02x", is_input ? "in" : "out", epnum);
893 if (is_input)
894 jlink_read_ep = epnum;
895 else
896 jlink_write_ep = epnum;
897 }
898
899 struct jlink *result = malloc(sizeof(struct jlink));
900 result->usb_handle = dev;
901 return result;
902 }
903
904 static void jlink_usb_close(struct jlink *jlink)
905 {
906 usb_close(jlink->usb_handle);
907 free(jlink);
908 }
909
910 /* Send a message and receive the reply. */
911 static int jlink_usb_message(struct jlink *jlink, int out_length, int in_length)
912 {
913 int result;
914
915 result = jlink_usb_write(jlink, out_length);
916 if (result != out_length)
917 {
918 LOG_ERROR("usb_bulk_write failed (requested=%d, result=%d)",
919 out_length, result);
920 return ERROR_JTAG_DEVICE_ERROR;
921 }
922
923 result = jlink_usb_read(jlink, in_length);
924 if ((result != in_length) && (result != (in_length + 1)))
925 {
926 LOG_ERROR("usb_bulk_read failed (requested=%d, result=%d)",
927 in_length, result);
928 return ERROR_JTAG_DEVICE_ERROR;
929 }
930
931 if (jlink_hw_jtag_version < 3)
932 return result;
933
934 int result2 = ERROR_OK;
935 if (result == in_length)
936 {
937 /* Must read the result from the EMU too */
938 result2 = jlink_usb_read_emu_result(jlink);
939 if (1 != result2)
940 {
941 LOG_ERROR("jlink_usb_read_emu_result retried requested = 1, result=%d, in_length=%i", result2,in_length);
942 /* Try again once, should only happen if (in_length%64 == 0) */
943 result2 = jlink_usb_read_emu_result(jlink);
944 if (1 != result2)
945 {
946 LOG_ERROR("jlink_usb_read_emu_result failed "
947 "(requested = 1, result=%d)", result2);
948 return ERROR_JTAG_DEVICE_ERROR;
949 }
950 }
951
952 /* Check the result itself */
953 result2 = usb_emu_result_buffer[0];
954 }
955 else
956 {
957 /* Save the result, then remove it from return value */
958 result2 = usb_in_buffer[result--];
959 }
960
961 if (result2)
962 {
963 LOG_ERROR("jlink_usb_message failed with result=%d)", result2);
964 return ERROR_JTAG_DEVICE_ERROR;
965 }
966
967 return result;
968 }
969
970 /* calls the given usb_bulk_* function, allowing for the data to trickle in with some timeouts */
971 static int usb_bulk_with_retries(
972 int (*f)(usb_dev_handle *, int, char *, int, int),
973 usb_dev_handle *dev, int ep,
974 char *bytes, int size, int timeout)
975 {
976 int tries = 3, count = 0;
977
978 while (tries && (count < size))
979 {
980 int result = f(dev, ep, bytes + count, size - count, timeout);
981 if (result > 0)
982 count += result;
983 else if ((-ETIMEDOUT != result) || !--tries)
984 return result;
985 }
986 return count;
987 }
988
989 static int wrap_usb_bulk_write(usb_dev_handle *dev, int ep,
990 char *buff, int size, int timeout)
991 {
992 /* usb_bulk_write() takes const char *buff */
993 return usb_bulk_write(dev, ep, buff, size, timeout);
994 }
995
996 static inline int usb_bulk_write_ex(usb_dev_handle *dev, int ep,
997 char *bytes, int size, int timeout)
998 {
999 return usb_bulk_with_retries(&wrap_usb_bulk_write,
1000 dev, ep, bytes, size, timeout);
1001 }
1002
1003 static inline int usb_bulk_read_ex(usb_dev_handle *dev, int ep,
1004 char *bytes, int size, int timeout)
1005 {
1006 return usb_bulk_with_retries(&usb_bulk_read,
1007 dev, ep, bytes, size, timeout);
1008 }
1009
1010 /* Write data from out_buffer to USB. */
1011 static int jlink_usb_write(struct jlink *jlink, int out_length)
1012 {
1013 int result;
1014
1015 if (out_length > JLINK_OUT_BUFFER_SIZE)
1016 {
1017 LOG_ERROR("jlink_write illegal out_length=%d (max=%d)", out_length, JLINK_OUT_BUFFER_SIZE);
1018 return -1;
1019 }
1020
1021 result = usb_bulk_write_ex(jlink->usb_handle, jlink_write_ep,
1022 (char *)usb_out_buffer, out_length, JLINK_USB_TIMEOUT);
1023
1024 DEBUG_JTAG_IO("jlink_usb_write, out_length = %d, result = %d", out_length, result);
1025
1026 #ifdef _DEBUG_USB_COMMS_
1027 jlink_debug_buffer(usb_out_buffer, out_length);
1028 #endif
1029 return result;
1030 }
1031
1032 /* Read data from USB into in_buffer. */
1033 static int jlink_usb_read(struct jlink *jlink, int expected_size)
1034 {
1035 int result = usb_bulk_read_ex(jlink->usb_handle, jlink_read_ep,
1036 (char *)usb_in_buffer, expected_size, JLINK_USB_TIMEOUT);
1037
1038 DEBUG_JTAG_IO("jlink_usb_read, result = %d", result);
1039
1040 #ifdef _DEBUG_USB_COMMS_
1041 jlink_debug_buffer(usb_in_buffer, result);
1042 #endif
1043 return result;
1044 }
1045
1046 /* Read the result from the previous EMU cmd into result_buffer. */
1047 static int jlink_usb_read_emu_result(struct jlink *jlink)
1048 {
1049 int result = usb_bulk_read_ex(jlink->usb_handle, jlink_read_ep,
1050 (char *)usb_emu_result_buffer, 1 /* JLINK_EMU_RESULT_BUFFER_SIZE */,
1051 JLINK_USB_TIMEOUT);
1052
1053 DEBUG_JTAG_IO("jlink_usb_read_result, result = %d", result);
1054
1055 #ifdef _DEBUG_USB_COMMS_
1056 jlink_debug_buffer(usb_emu_result_buffer, result);
1057 #endif
1058 return result;
1059 }
1060
1061 #ifdef _DEBUG_USB_COMMS_
1062 #define BYTES_PER_LINE 16
1063
1064 static void jlink_debug_buffer(uint8_t *buffer, int length)
1065 {
1066 char line[81];
1067 char s[4];
1068 int i;
1069 int j;
1070
1071 for (i = 0; i < length; i += BYTES_PER_LINE)
1072 {
1073 snprintf(line, 5, "%04x", i);
1074 for (j = i; j < i + BYTES_PER_LINE && j < length; j++)
1075 {
1076 snprintf(s, 4, " %02x", buffer[j]);
1077 strcat(line, s);
1078 }
1079 LOG_DEBUG("%s", line);
1080 }
1081 }
1082 #endif
1083

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