arm-jtag-ew: Emit a warning if interface firmware version != 1.6
[fw/openocd] / src / jtag / drivers / arm-jtag-ew.c
1 /***************************************************************************
2  *   Copyright (C) 2009 by Dimitar Dimitrov <dinuxbg@gmail.com>            *
3  *   based on Dominic Rath's and Benedikt Sauter's usbprog.c               *
4  *                                                                         *
5  *   This program is free software; you can redistribute it and/or modify  *
6  *   it under the terms of the GNU General Public License as published by  *
7  *   the Free Software Foundation; either version 2 of the License, or     *
8  *   (at your option) any later version.                                   *
9  *                                                                         *
10  *   This program is distributed in the hope that it will be useful,       *
11  *   but WITHOUT ANY WARRANTY; without even the implied warranty of        *
12  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the         *
13  *   GNU General Public License for more details.                          *
14  *                                                                         *
15  *   You should have received a copy of the GNU General Public License     *
16  *   along with this program; if not, write to the                         *
17  *   Free Software Foundation, Inc.,                                       *
18  *   59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.             *
19  ***************************************************************************/
20
21 #ifdef HAVE_CONFIG_H
22 #include "config.h"
23 #endif
24
25 #include <jtag/interface.h>
26 #include <jtag/commands.h>
27 #include <usb.h>
28 #include "usb_common.h"
29
30
31 #define USB_VID                                         0x15ba
32 #define USB_PID                                         0x001e
33
34 #define ARMJTAGEW_EPT_BULK_OUT          0x01u
35 #define ARMJTAGEW_EPT_BULK_IN           0x82u
36
37 #define ARMJTAGEW_USB_TIMEOUT           2000
38
39 #define ARMJTAGEW_IN_BUFFER_SIZE        (4*1024)
40 #define ARMJTAGEW_OUT_BUFFER_SIZE       (4*1024)
41
42
43 /* USB command request codes. */
44 #define CMD_GET_VERSION                         0x00
45 #define CMD_SELECT_DPIMPL                       0x10
46 #define CMD_SET_TCK_FREQUENCY           0x11
47 #define CMD_GET_TCK_FREQUENCY           0x12
48 #define CMD_MEASURE_MAX_TCK_FREQ        0x15
49 #define CMD_MEASURE_RTCK_RESPONSE       0x16
50 #define CMD_TAP_SHIFT                           0x17
51 #define CMD_SET_TAPHW_STATE                     0x20
52 #define CMD_GET_TAPHW_STATE                     0x21
53 #define CMD_TGPWR_SETUP                         0x22
54
55 /* Global USB buffers */
56 static uint8_t usb_in_buffer[ARMJTAGEW_IN_BUFFER_SIZE];
57 static uint8_t usb_out_buffer[ARMJTAGEW_OUT_BUFFER_SIZE];
58
59 /* Queue command functions */
60 static void armjtagew_end_state(tap_state_t state);
61 static void armjtagew_state_move(void);
62 static void armjtagew_path_move(int num_states, tap_state_t *path);
63 static void armjtagew_runtest(int num_cycles);
64 static void armjtagew_scan(bool ir_scan, enum scan_type type, uint8_t *buffer, int scan_size, struct scan_command *command);
65 static void armjtagew_reset(int trst, int srst);
66 //static void armjtagew_simple_command(uint8_t command);
67 static int armjtagew_get_status(void);
68
69 /* tap buffer functions */
70 static void armjtagew_tap_init(void);
71 static int armjtagew_tap_execute(void);
72 static void armjtagew_tap_ensure_space(int scans, int bits);
73 static void armjtagew_tap_append_step(int tms, int tdi);
74 static void armjtagew_tap_append_scan(int length, uint8_t *buffer, struct scan_command *command);
75
76 /* ARM-JTAG-EW lowlevel functions */
77 struct armjtagew {
78         struct usb_dev_handle* usb_handle;
79 };
80
81 static struct armjtagew *armjtagew_usb_open(void);
82 static void armjtagew_usb_close(struct armjtagew *armjtagew);
83 static int armjtagew_usb_message(struct armjtagew *armjtagew, int out_length, int in_length);
84 static int armjtagew_usb_write(struct armjtagew *armjtagew, int out_length);
85 static int armjtagew_usb_read(struct armjtagew *armjtagew, int exp_in_length);
86
87 /* helper functions */
88 static int armjtagew_get_version_info(void);
89
90 #ifdef _DEBUG_USB_COMMS_
91 static void armjtagew_debug_buffer(uint8_t *buffer, int length);
92 #endif
93
94 static struct armjtagew* armjtagew_handle;
95
96
97
98 /***************************************************************************/
99 /* External interface implementation */
100
101 static int armjtagew_execute_queue(void)
102 {
103         struct jtag_command *cmd = jtag_command_queue;
104         int scan_size;
105         enum scan_type type;
106         uint8_t *buffer;
107
108         while (cmd != NULL)
109         {
110                 switch (cmd->type)
111                 {
112                         case JTAG_RUNTEST:
113                                 DEBUG_JTAG_IO("runtest %i cycles, end in %i", cmd->cmd.runtest->num_cycles, \
114                                         cmd->cmd.runtest->end_state);
115
116                                 armjtagew_end_state(cmd->cmd.runtest->end_state);
117                                 armjtagew_runtest(cmd->cmd.runtest->num_cycles);
118                                 break;
119
120                         case JTAG_TLR_RESET:
121                                 DEBUG_JTAG_IO("statemove end in %i", cmd->cmd.statemove->end_state);
122
123                                 armjtagew_end_state(cmd->cmd.statemove->end_state);
124                                 armjtagew_state_move();
125                                 break;
126
127                         case JTAG_PATHMOVE:
128                                 DEBUG_JTAG_IO("pathmove: %i states, end in %i", \
129                                         cmd->cmd.pathmove->num_states, \
130                                         cmd->cmd.pathmove->path[cmd->cmd.pathmove->num_states - 1]);
131
132                                 armjtagew_path_move(cmd->cmd.pathmove->num_states, cmd->cmd.pathmove->path);
133                                 break;
134
135                         case JTAG_SCAN:
136                                 DEBUG_JTAG_IO("scan end in %i", cmd->cmd.scan->end_state);
137
138                                 armjtagew_end_state(cmd->cmd.scan->end_state);
139
140                                 scan_size = jtag_build_buffer(cmd->cmd.scan, &buffer);
141                                 DEBUG_JTAG_IO("scan input, length = %d", scan_size);
142
143 #ifdef _DEBUG_USB_COMMS_
144                                 armjtagew_debug_buffer(buffer, (scan_size + 7) / 8);
145 #endif
146                                 type = jtag_scan_type(cmd->cmd.scan);
147                                 armjtagew_scan(cmd->cmd.scan->ir_scan, type, buffer, scan_size, cmd->cmd.scan);
148                                 break;
149
150                         case JTAG_RESET:
151                                 DEBUG_JTAG_IO("reset trst: %i srst %i", cmd->cmd.reset->trst, cmd->cmd.reset->srst);
152
153                                 armjtagew_tap_execute();
154
155                                 if (cmd->cmd.reset->trst == 1)
156                                 {
157                                         tap_set_state(TAP_RESET);
158                                 }
159                                 armjtagew_reset(cmd->cmd.reset->trst, cmd->cmd.reset->srst);
160                                 break;
161
162                         case JTAG_SLEEP:
163                                 DEBUG_JTAG_IO("sleep %i", cmd->cmd.sleep->us);
164                                 armjtagew_tap_execute();
165                                 jtag_sleep(cmd->cmd.sleep->us);
166                                 break;
167
168                         default:
169                                 LOG_ERROR("BUG: unknown JTAG command type encountered");
170                                 exit(-1);
171                 }
172                 cmd = cmd->next;
173         }
174
175         return armjtagew_tap_execute();
176 }
177
178
179 /* Sets speed in kHz. */
180 static int armjtagew_speed(int speed)
181 {
182     int result;
183     int speed_real;
184
185
186     usb_out_buffer[0] = CMD_SET_TCK_FREQUENCY;
187         buf_set_u32(usb_out_buffer + 1, 0, 32, speed*1000);
188
189     result = armjtagew_usb_message(armjtagew_handle, 5, 4);
190
191     if (result < 0)
192     {
193         LOG_ERROR("ARM-JTAG-EW setting speed failed (%d)", result);
194         return ERROR_JTAG_DEVICE_ERROR;
195     }
196
197         usb_out_buffer[0] = CMD_GET_TCK_FREQUENCY;
198     result = armjtagew_usb_message(armjtagew_handle, 1, 4);
199         speed_real = (int)buf_get_u32(usb_in_buffer,0,32) / 1000;
200         if (result < 0)
201         {
202         LOG_ERROR("ARM-JTAG-EW getting speed failed (%d)", result);
203         return ERROR_JTAG_DEVICE_ERROR;
204         }
205         else
206         {
207         LOG_INFO("Requested speed %dkHz, emulator reported %dkHz.", speed, speed_real);
208         }
209
210     return ERROR_OK;
211 }
212
213
214 static int armjtagew_khz(int khz, int *jtag_speed)
215 {
216         *jtag_speed = khz;
217
218         return ERROR_OK;
219 }
220
221 static int armjtagew_speed_div(int speed, int* khz)
222 {
223         *khz = speed;
224
225         return ERROR_OK;
226 }
227
228
229 static int armjtagew_init(void)
230 {
231         int check_cnt;
232
233         armjtagew_handle = armjtagew_usb_open();
234
235         if (armjtagew_handle == 0)
236         {
237                 LOG_ERROR("Cannot find ARM-JTAG-EW Interface! Please check connection and permissions.");
238                 return ERROR_JTAG_INIT_FAILED;
239         }
240
241         check_cnt = 0;
242         while (check_cnt < 3)
243         {
244                 if (armjtagew_get_version_info() == ERROR_OK)
245                 {
246                         /* attempt to get status */
247                         armjtagew_get_status();
248                         break;
249                 }
250
251                 check_cnt++;
252         }
253
254         if (check_cnt == 3)
255         {
256                 LOG_INFO("ARM-JTAG-EW initial read failed, don't worry");
257         }
258
259         LOG_INFO("ARM-JTAG-EW JTAG Interface ready");
260
261         armjtagew_reset(0, 0);
262         armjtagew_tap_init();
263
264         return ERROR_OK;
265 }
266
267 static int armjtagew_quit(void)
268 {
269         armjtagew_usb_close(armjtagew_handle);
270         return ERROR_OK;
271 }
272
273 /***************************************************************************/
274 /* Queue command implementations */
275
276 static void armjtagew_end_state(tap_state_t state)
277 {
278         if (tap_is_state_stable(state))
279         {
280                 tap_set_end_state(state);
281         }
282         else
283         {
284                 LOG_ERROR("BUG: %i is not a valid end state", state);
285                 exit(-1);
286         }
287 }
288
289 /* Goes to the end state. */
290 static void armjtagew_state_move(void)
291 {
292         int i;
293         int tms = 0;
294         uint8_t tms_scan = tap_get_tms_path(tap_get_state(), tap_get_end_state());
295         int tms_count = tap_get_tms_path_len(tap_get_state(), tap_get_end_state());
296
297         for (i = 0; i < tms_count; i++)
298         {
299                 tms = (tms_scan >> i) & 1;
300                 armjtagew_tap_append_step(tms, 0);
301         }
302
303         tap_set_state(tap_get_end_state());
304 }
305
306 static void armjtagew_path_move(int num_states, tap_state_t *path)
307 {
308         int i;
309
310         for (i = 0; i < num_states; i++)
311         {
312                 /*
313                  * TODO: The ARM-JTAG-EW hardware delays TDI with 3 TCK cycles when in RTCK mode.
314                  * Either handle that here, or update the documentation with examples
315                  * how to fix that in the configuration files.
316                  */
317                 if (path[i] == tap_state_transition(tap_get_state(), false))
318                 {
319                         armjtagew_tap_append_step(0, 0);
320                 }
321                 else if (path[i] == tap_state_transition(tap_get_state(), true))
322                 {
323                         armjtagew_tap_append_step(1, 0);
324                 }
325                 else
326                 {
327                         LOG_ERROR("BUG: %s -> %s isn't a valid TAP transition", tap_state_name(tap_get_state()), tap_state_name(path[i]));
328                         exit(-1);
329                 }
330
331                 tap_set_state(path[i]);
332         }
333
334         tap_set_end_state(tap_get_state());
335 }
336
337 static void armjtagew_runtest(int num_cycles)
338 {
339         int i;
340
341         tap_state_t saved_end_state = tap_get_end_state();
342
343         /* only do a state_move when we're not already in IDLE */
344         if (tap_get_state() != TAP_IDLE)
345         {
346                 armjtagew_end_state(TAP_IDLE);
347                 armjtagew_state_move();
348         }
349
350         /* execute num_cycles */
351         for (i = 0; i < num_cycles; i++)
352         {
353                 armjtagew_tap_append_step(0, 0);
354         }
355
356         /* finish in end_state */
357         armjtagew_end_state(saved_end_state);
358         if (tap_get_state() != tap_get_end_state())
359         {
360                 armjtagew_state_move();
361         }
362 }
363
364 static void armjtagew_scan(bool ir_scan, enum scan_type type, uint8_t *buffer, int scan_size, struct scan_command *command)
365 {
366         tap_state_t saved_end_state;
367
368         armjtagew_tap_ensure_space(1, scan_size + 8);
369
370         saved_end_state = tap_get_end_state();
371
372         /* Move to appropriate scan state */
373         armjtagew_end_state(ir_scan ? TAP_IRSHIFT : TAP_DRSHIFT);
374
375         armjtagew_state_move();
376         armjtagew_end_state(saved_end_state);
377
378         /* Scan */
379         armjtagew_tap_append_scan(scan_size, buffer, command);
380
381         /* We are in Exit1, go to Pause */
382         armjtagew_tap_append_step(0, 0);
383
384         tap_set_state(ir_scan ? TAP_IRPAUSE : TAP_DRPAUSE);
385
386         if (tap_get_state() != tap_get_end_state())
387         {
388                 armjtagew_state_move();
389         }
390 }
391
392 static void armjtagew_reset(int trst, int srst)
393 {
394         const uint8_t trst_mask = (1u << 5);
395         const uint8_t srst_mask = (1u << 6);
396         uint8_t val = 0;
397         uint8_t outp_en = 0;
398         uint8_t change_mask = 0;
399         int result;
400
401         LOG_DEBUG("trst: %i, srst: %i", trst, srst);
402
403         if (srst == 0)
404         {
405                 val |= srst_mask;
406                 outp_en &= ~srst_mask;          /* tristate */
407                 change_mask |= srst_mask;
408         }
409         else if (srst == 1)
410         {
411                 val &= ~srst_mask;
412                 outp_en |= srst_mask;
413                 change_mask |= srst_mask;
414         }
415
416         if (trst == 0)
417         {
418                 val |= trst_mask;
419                 outp_en &= ~trst_mask;          /* tristate */
420                 change_mask |= trst_mask;
421         }
422         else if (trst == 1)
423         {
424                 val &= ~trst_mask;
425                 outp_en |= trst_mask;
426                 change_mask |= trst_mask;
427         }
428
429         usb_out_buffer[0] = CMD_SET_TAPHW_STATE;
430         usb_out_buffer[1] = val;
431         usb_out_buffer[2] = outp_en;
432         usb_out_buffer[3] = change_mask;
433         result = armjtagew_usb_write(armjtagew_handle, 4);
434         if (result != 4)
435         {
436                 LOG_ERROR("ARM-JTAG-EW TRST/SRST pin set failed failed (%d)", result);
437         }
438 }
439
440
441 static int armjtagew_get_status(void)
442 {
443         int result;
444
445         usb_out_buffer[0] = CMD_GET_TAPHW_STATE;
446         result = armjtagew_usb_message(armjtagew_handle, 1, 12);
447
448         if (result == 0)
449         {
450                 unsigned int u_tg = buf_get_u32(usb_in_buffer, 0, 16);
451                 LOG_INFO("U_tg = %d mV, U_aux = %d mV, U_tgpwr = %d mV, I_tgpwr = %d mA, D1 = %d, Target power %s %s",
452                          (int)(buf_get_u32(usb_in_buffer + 0, 0, 16)),
453                          (int)(buf_get_u32(usb_in_buffer + 2, 0, 16)),
454                          (int)(buf_get_u32(usb_in_buffer + 4, 0, 16)),
455                          (int)(buf_get_u32(usb_in_buffer + 6, 0, 16)),
456                          usb_in_buffer[9],
457                          usb_in_buffer[11] ? "OVERCURRENT" : "OK",
458                          usb_in_buffer[10] ? "enabled" : "disabled");
459
460                 if (u_tg < 1500)
461                 {
462                         LOG_ERROR("Vref too low. Check Target Power");
463                 }
464         }
465         else
466         {
467                 LOG_ERROR("ARM-JTAG-EW command CMD_GET_TAPHW_STATE failed (%d)", result);
468         }
469
470         return ERROR_OK;
471 }
472
473 static int armjtagew_get_version_info(void)
474 {
475         int result;
476         char sn[16];
477         char auxinfo[257];
478
479         /* query hardware version */
480         usb_out_buffer[0] = CMD_GET_VERSION;
481         result = armjtagew_usb_message(armjtagew_handle, 1, 4 + 15 + 256);
482
483         if (result != 0)
484         {
485                 LOG_ERROR("ARM-JTAG-EW command CMD_GET_VERSION failed (%d)", result);
486                 return ERROR_JTAG_DEVICE_ERROR;
487         }
488
489
490         memcpy(sn, usb_in_buffer + 4, 15);
491         sn[15] = '\0';
492         memcpy(auxinfo, usb_in_buffer + 4+15, 256);
493         auxinfo[256] = '\0';
494
495         LOG_INFO("ARM-JTAG-EW firmware version %d.%d, hardware revision %c, SN=%s, Additional info: %s", \
496                         usb_in_buffer[1], usb_in_buffer[0], \
497                         isgraph(usb_in_buffer[2]) ? usb_in_buffer[2] : 'X', \
498                         sn, auxinfo);
499
500         if (1 != usb_in_buffer[1] || 6 != usb_in_buffer[0])
501         {
502                 LOG_WARNING("ARM-JTAG-EW firmware version %d.%d is untested with this version of OpenOCD. You might experience unexpected behavior.", usb_in_buffer[1], usb_in_buffer[0]);
503         }
504         return ERROR_OK;
505 }
506
507 COMMAND_HANDLER(armjtagew_handle_armjtagew_info_command)
508 {
509         if (armjtagew_get_version_info() == ERROR_OK)
510         {
511                 /* attempt to get status */
512                 armjtagew_get_status();
513         }
514
515         return ERROR_OK;
516 }
517
518 static const struct command_registration armjtagew_command_handlers[] = {
519         {
520                 .name = "armjtagew_info",
521                 .handler = &armjtagew_handle_armjtagew_info_command,
522                 .mode = COMMAND_EXEC,
523                 .help = "query armjtagew info",
524         },
525         COMMAND_REGISTRATION_DONE
526 };
527
528 struct jtag_interface armjtagew_interface = {
529         .name = "arm-jtag-ew",
530         .commands = armjtagew_command_handlers,
531         .transports = jtag_only,
532
533         .execute_queue = armjtagew_execute_queue,
534         .speed = armjtagew_speed,
535         .speed_div = armjtagew_speed_div,
536         .khz = armjtagew_khz,
537         .init = armjtagew_init,
538         .quit = armjtagew_quit,
539 };
540
541 /***************************************************************************/
542 /* ARM-JTAG-EW tap functions */
543
544 /* 2048 is the max value we can use here */
545 #define ARMJTAGEW_TAP_BUFFER_SIZE 2048
546
547 static int tap_length;
548 static uint8_t tms_buffer[ARMJTAGEW_TAP_BUFFER_SIZE];
549 static uint8_t tdi_buffer[ARMJTAGEW_TAP_BUFFER_SIZE];
550 static uint8_t tdo_buffer[ARMJTAGEW_TAP_BUFFER_SIZE];
551
552 struct pending_scan_result {
553         int first;      /* First bit position in tdo_buffer to read */
554         int length; /* Number of bits to read */
555         struct scan_command *command; /* Corresponding scan command */
556         uint8_t *buffer;
557 };
558
559 #define MAX_PENDING_SCAN_RESULTS 256
560
561 static int pending_scan_results_length;
562 static struct pending_scan_result pending_scan_results_buffer[MAX_PENDING_SCAN_RESULTS];
563
564 static int last_tms;
565
566 static void armjtagew_tap_init(void)
567 {
568         tap_length = 0;
569         pending_scan_results_length = 0;
570 }
571
572 static void armjtagew_tap_ensure_space(int scans, int bits)
573 {
574         int available_scans = MAX_PENDING_SCAN_RESULTS - pending_scan_results_length;
575         int available_bits = ARMJTAGEW_TAP_BUFFER_SIZE * 8 - tap_length;
576
577         if (scans > available_scans || bits > available_bits)
578         {
579                 armjtagew_tap_execute();
580         }
581 }
582
583 static void armjtagew_tap_append_step(int tms, int tdi)
584 {
585         last_tms = tms;
586         int index_local = tap_length / 8;
587
588         if (index_local < ARMJTAGEW_TAP_BUFFER_SIZE)
589         {
590                 int bit_index = tap_length % 8;
591                 uint8_t bit = 1 << bit_index;
592
593                 if (tms)
594                 {
595                         tms_buffer[index_local] |= bit;
596                 }
597                 else
598                 {
599                         tms_buffer[index_local] &= ~bit;
600                 }
601
602                 if (tdi)
603                 {
604                         tdi_buffer[index_local] |= bit;
605                 }
606                 else
607                 {
608                         tdi_buffer[index_local] &= ~bit;
609                 }
610
611                 tap_length++;
612         }
613         else
614         {
615                 LOG_ERROR("armjtagew_tap_append_step, overflow");
616         }
617 }
618
619 void armjtagew_tap_append_scan(int length, uint8_t *buffer, struct scan_command *command)
620 {
621         struct pending_scan_result *pending_scan_result = &pending_scan_results_buffer[pending_scan_results_length];
622         int i;
623
624         pending_scan_result->first = tap_length;
625         pending_scan_result->length = length;
626         pending_scan_result->command = command;
627         pending_scan_result->buffer = buffer;
628
629         for (i = 0; i < length; i++)
630         {
631                 armjtagew_tap_append_step((i < length-1 ? 0 : 1), (buffer[i/8] >> (i%8)) & 1);
632         }
633         pending_scan_results_length++;
634 }
635
636 /* Pad and send a tap sequence to the device, and receive the answer.
637  * For the purpose of padding we assume that we are in idle or pause state. */
638 static int armjtagew_tap_execute(void)
639 {
640         int byte_length;
641         int tms_offset;
642         int tdi_offset;
643         int i;
644         int result;
645
646         if (tap_length > 0)
647         {
648                 /* Pad last byte so that tap_length is divisible by 8 */
649                 while (tap_length % 8 != 0)
650                 {
651                         /* More of the last TMS value keeps us in the same state,
652                          * analogous to free-running JTAG interfaces. */
653                         armjtagew_tap_append_step(last_tms, 0);
654                 }
655
656                 byte_length = tap_length / 8;
657
658                 usb_out_buffer[0] = CMD_TAP_SHIFT;
659                 buf_set_u32(usb_out_buffer + 1, 0, 16, byte_length);
660
661                 tms_offset = 3;
662                 for (i = 0; i < byte_length; i++)
663                 {
664                         usb_out_buffer[tms_offset + i] = flip_u32(tms_buffer[i],8);
665                 }
666
667                 tdi_offset = tms_offset + byte_length;
668                 for (i = 0; i < byte_length; i++)
669                 {
670                         usb_out_buffer[tdi_offset + i] = flip_u32(tdi_buffer[i],8);
671                 }
672
673                 result = armjtagew_usb_message(armjtagew_handle, 3 + 2 * byte_length, byte_length + 4);
674
675                 if (result == 0)
676                 {
677                         int stat_local;
678
679                         stat_local = (int)buf_get_u32(usb_in_buffer + byte_length, 0, 32);
680                         if (stat_local) {
681                                 LOG_ERROR("armjtagew_tap_execute, emulator returned error code %d for a CMD_TAP_SHIFT command", stat_local);
682                                 return ERROR_JTAG_QUEUE_FAILED;
683                         }
684
685                         for (i = 0; i < byte_length; i++)
686                         {
687                                 tdo_buffer[i] = flip_u32(usb_in_buffer[i],8);
688                         }
689
690                         for (i = 0; i < pending_scan_results_length; i++)
691                         {
692                                 struct pending_scan_result *pending_scan_result = &pending_scan_results_buffer[i];
693                                 uint8_t *buffer = pending_scan_result->buffer;
694                                 int length = pending_scan_result->length;
695                                 int first = pending_scan_result->first;
696                                 struct scan_command *command = pending_scan_result->command;
697
698                                 /* Copy to buffer */
699                                 buf_set_buf(tdo_buffer, first, buffer, 0, length);
700
701                                 DEBUG_JTAG_IO("pending scan result, length = %d", length);
702
703 #ifdef _DEBUG_USB_COMMS_
704                                 armjtagew_debug_buffer(buffer, byte_length);
705 #endif
706
707                                 if (jtag_read_buffer(buffer, command) != ERROR_OK)
708                                 {
709                                         armjtagew_tap_init();
710                                         return ERROR_JTAG_QUEUE_FAILED;
711                                 }
712
713                                 if (pending_scan_result->buffer != NULL)
714                                 {
715                                         free(pending_scan_result->buffer);
716                                 }
717                         }
718                 }
719                 else
720                 {
721                         LOG_ERROR("armjtagew_tap_execute, wrong result %d, expected %d", result, byte_length);
722                         return ERROR_JTAG_QUEUE_FAILED;
723                 }
724
725                 armjtagew_tap_init();
726         }
727
728         return ERROR_OK;
729 }
730
731 /*****************************************************************************/
732 /* JLink USB low-level functions */
733
734 static struct armjtagew* armjtagew_usb_open()
735 {
736         usb_init();
737
738         const uint16_t vids[] = { USB_VID, 0 };
739         const uint16_t pids[] = { USB_PID, 0 };
740         struct usb_dev_handle *dev;
741         if (jtag_usb_open(vids, pids, &dev) != ERROR_OK)
742                 return NULL;
743
744         struct armjtagew *result = malloc(sizeof(struct armjtagew));
745         result->usb_handle = dev;
746
747 #if 0
748         /* usb_set_configuration required under win32 */
749         usb_set_configuration(dev, dev->config[0].bConfigurationValue);
750 #endif
751         usb_claim_interface(dev, 0);
752 #if 0
753         /*
754          * This makes problems under Mac OS X. And is not needed
755          * under Windows. Hopefully this will not break a linux build
756          */
757         usb_set_altinterface(dev, 0);
758 #endif
759         return result;
760 }
761
762 static void armjtagew_usb_close(struct armjtagew *armjtagew)
763 {
764         usb_close(armjtagew->usb_handle);
765         free(armjtagew);
766 }
767
768 /* Send a message and receive the reply. */
769 static int armjtagew_usb_message(struct armjtagew *armjtagew, int out_length, int in_length)
770 {
771         int result;
772
773         result = armjtagew_usb_write(armjtagew, out_length);
774         if (result == out_length)
775         {
776                 result = armjtagew_usb_read(armjtagew, in_length);
777                 if (result != in_length)
778                 {
779                         LOG_ERROR("usb_bulk_read failed (requested=%d, result=%d)", in_length, result);
780                         return -1;
781                 }
782         }
783         else
784         {
785                 LOG_ERROR("usb_bulk_write failed (requested=%d, result=%d)", out_length, result);
786                 return -1;
787         }
788         return 0;
789 }
790
791 /* Write data from out_buffer to USB. */
792 static int armjtagew_usb_write(struct armjtagew *armjtagew, int out_length)
793 {
794         int result;
795
796         if (out_length > ARMJTAGEW_OUT_BUFFER_SIZE)
797         {
798                 LOG_ERROR("armjtagew_write illegal out_length=%d (max=%d)", out_length, ARMJTAGEW_OUT_BUFFER_SIZE);
799                 return -1;
800         }
801
802         result = usb_bulk_write(armjtagew->usb_handle, ARMJTAGEW_EPT_BULK_OUT, \
803                 (char*)usb_out_buffer, out_length, ARMJTAGEW_USB_TIMEOUT);
804
805         DEBUG_JTAG_IO("armjtagew_usb_write, out_length = %d, result = %d", out_length, result);
806
807 #ifdef _DEBUG_USB_COMMS_
808         armjtagew_debug_buffer(usb_out_buffer, out_length);
809 #endif
810         return result;
811 }
812
813 /* Read data from USB into in_buffer. */
814 static int armjtagew_usb_read(struct armjtagew *armjtagew, int exp_in_length)
815 {
816         int result = usb_bulk_read(armjtagew->usb_handle, ARMJTAGEW_EPT_BULK_IN, \
817                 (char*)usb_in_buffer, exp_in_length, ARMJTAGEW_USB_TIMEOUT);
818
819         DEBUG_JTAG_IO("armjtagew_usb_read, result = %d", result);
820
821 #ifdef _DEBUG_USB_COMMS_
822         armjtagew_debug_buffer(usb_in_buffer, result);
823 #endif
824         return result;
825 }
826
827
828 #ifdef _DEBUG_USB_COMMS_
829 #define BYTES_PER_LINE  16
830
831 static void armjtagew_debug_buffer(uint8_t *buffer, int length)
832 {
833         char line[81];
834         char s[4];
835         int i;
836         int j;
837
838         for (i = 0; i < length; i += BYTES_PER_LINE)
839         {
840                 snprintf(line, 5, "%04x", i);
841                 for (j = i; j < i + BYTES_PER_LINE && j < length; j++)
842                 {
843                         snprintf(s, 4, " %02x", buffer[j]);
844                         strcat(line, s);
845                 }
846                 LOG_DEBUG("%s", line);
847         }
848 }
849 #endif
850