df60372533112c01bbb72fc2799ac2cf49a08eca
[fw/openocd] / src / target / arm_cti.c
1 /***************************************************************************
2  *   Copyright (C) 2016 by Matthias Welwarsky                              *
3  *                                                                         *
4  *   This program is free software; you can redistribute it and/or modify  *
5  *   it under the terms of the GNU General Public License as published by  *
6  *   the Free Software Foundation; either version 2 of the License, or     *
7  *   (at your option) any later version.                                   *
8  *                                                                         *
9  *   This program is distributed in the hope that it will be useful,       *
10  *   but WITHOUT ANY WARRANTY; without even the implied warranty of        *
11  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the         *
12  *   GNU General Public License for more details.                          *
13  *                                                                         *
14  *   You should have received a copy of the GNU General Public License     *
15  *   along with this program; if not, write to the                         *
16  *   Free Software Foundation, Inc.,                                       *
17  *                                                                         *
18  ***************************************************************************/
19
20 #ifdef HAVE_CONFIG_H
21 #include "config.h"
22 #endif
23
24 #include <stdlib.h>
25 #include <stdint.h>
26 #include "target/arm_adi_v5.h"
27 #include "target/arm_cti.h"
28 #include "target/target.h"
29 #include "helper/time_support.h"
30 #include "helper/list.h"
31 #include "helper/command.h"
32
33 struct arm_cti {
34         target_addr_t base;
35         struct adiv5_ap *ap;
36 };
37
38 struct arm_cti_object {
39         struct list_head lh;
40         struct arm_cti cti;
41         int ap_num;
42         char *name;
43 };
44
45 static LIST_HEAD(all_cti);
46
47 const char *arm_cti_name(struct arm_cti *self)
48 {
49         struct arm_cti_object *obj = container_of(self, struct arm_cti_object, cti);
50         return obj->name;
51 }
52
53 struct arm_cti *cti_instance_by_jim_obj(Jim_Interp *interp, Jim_Obj *o)
54 {
55         struct arm_cti_object *obj = NULL;
56         const char *name;
57         bool found = false;
58
59         name = Jim_GetString(o, NULL);
60
61         list_for_each_entry(obj, &all_cti, lh) {
62                 if (!strcmp(name, obj->name)) {
63                         found = true;
64                         break;
65                 }
66         }
67
68         if (found)
69                 return &obj->cti;
70         return NULL;
71 }
72
73 static int arm_cti_mod_reg_bits(struct arm_cti *self, unsigned int reg, uint32_t mask, uint32_t value)
74 {
75         uint32_t tmp;
76
77         /* Read register */
78         int retval = mem_ap_read_atomic_u32(self->ap, self->base + reg, &tmp);
79         if (ERROR_OK != retval)
80                 return retval;
81
82         /* clear bitfield */
83         tmp &= ~mask;
84         /* put new value */
85         tmp |= value & mask;
86
87         /* write new value */
88         return mem_ap_write_atomic_u32(self->ap, self->base + reg, tmp);
89 }
90
91 int arm_cti_enable(struct arm_cti *self, bool enable)
92 {
93         uint32_t val = enable ? 1 : 0;
94
95         return mem_ap_write_atomic_u32(self->ap, self->base + CTI_CTR, val);
96 }
97
98 int arm_cti_ack_events(struct arm_cti *self, uint32_t event)
99 {
100         int retval;
101         uint32_t tmp;
102
103         retval = mem_ap_write_atomic_u32(self->ap, self->base + CTI_INACK, event);
104         if (retval == ERROR_OK) {
105                 int64_t then = timeval_ms();
106                 for (;;) {
107                         retval = mem_ap_read_atomic_u32(self->ap, self->base + CTI_TROUT_STATUS, &tmp);
108                         if (retval != ERROR_OK)
109                                 break;
110                         if ((tmp & event) == 0)
111                                 break;
112                         if (timeval_ms() > then + 1000) {
113                                 LOG_ERROR("timeout waiting for target");
114                                 retval = ERROR_TARGET_TIMEOUT;
115                                 break;
116                         }
117                 }
118         }
119
120         return retval;
121 }
122
123 int arm_cti_gate_channel(struct arm_cti *self, uint32_t channel)
124 {
125         if (channel > 31)
126                 return ERROR_COMMAND_ARGUMENT_INVALID;
127
128         return arm_cti_mod_reg_bits(self, CTI_GATE, CTI_CHNL(channel), 0);
129 }
130
131 int arm_cti_ungate_channel(struct arm_cti *self, uint32_t channel)
132 {
133         if (channel > 31)
134                 return ERROR_COMMAND_ARGUMENT_INVALID;
135
136         return arm_cti_mod_reg_bits(self, CTI_GATE, CTI_CHNL(channel), 0xFFFFFFFF);
137 }
138
139 int arm_cti_write_reg(struct arm_cti *self, unsigned int reg, uint32_t value)
140 {
141         return mem_ap_write_atomic_u32(self->ap, self->base + reg, value);
142 }
143
144 int arm_cti_read_reg(struct arm_cti *self, unsigned int reg, uint32_t *p_value)
145 {
146         if (p_value == NULL)
147                 return ERROR_COMMAND_ARGUMENT_INVALID;
148
149         return mem_ap_read_atomic_u32(self->ap, self->base + reg, p_value);
150 }
151
152 int arm_cti_pulse_channel(struct arm_cti *self, uint32_t channel)
153 {
154         if (channel > 31)
155                 return ERROR_COMMAND_ARGUMENT_INVALID;
156
157         return arm_cti_write_reg(self, CTI_APPPULSE, CTI_CHNL(channel));
158 }
159
160 int arm_cti_set_channel(struct arm_cti *self, uint32_t channel)
161 {
162         if (channel > 31)
163                 return ERROR_COMMAND_ARGUMENT_INVALID;
164
165         return arm_cti_write_reg(self, CTI_APPSET, CTI_CHNL(channel));
166 }
167
168 int arm_cti_clear_channel(struct arm_cti *self, uint32_t channel)
169 {
170         if (channel > 31)
171                 return ERROR_COMMAND_ARGUMENT_INVALID;
172
173         return arm_cti_write_reg(self, CTI_APPCLEAR, CTI_CHNL(channel));
174 }
175
176 static uint32_t cti_regs[26];
177
178 static const struct {
179         uint32_t offset;
180         const char *label;
181         uint32_t *p_val;
182 } cti_names[] = {
183         { CTI_CTR,              "CTR",          &cti_regs[0] },
184         { CTI_GATE,             "GATE",         &cti_regs[1] },
185         { CTI_INEN0,    "INEN0",        &cti_regs[2] },
186         { CTI_INEN1,    "INEN1",        &cti_regs[3] },
187         { CTI_INEN2,    "INEN2",        &cti_regs[4] },
188         { CTI_INEN3,    "INEN3",        &cti_regs[5] },
189         { CTI_INEN4,    "INEN4",        &cti_regs[6] },
190         { CTI_INEN5,    "INEN5",        &cti_regs[7] },
191         { CTI_INEN6,    "INEN6",        &cti_regs[8] },
192         { CTI_INEN7,    "INEN7",        &cti_regs[9] },
193         { CTI_INEN8,    "INEN8",        &cti_regs[10] },
194         { CTI_OUTEN0,   "OUTEN0",       &cti_regs[11] },
195         { CTI_OUTEN1,   "OUTEN1",       &cti_regs[12] },
196         { CTI_OUTEN2,   "OUTEN2",       &cti_regs[13] },
197         { CTI_OUTEN3,   "OUTEN3",       &cti_regs[14] },
198         { CTI_OUTEN4,   "OUTEN4",       &cti_regs[15] },
199         { CTI_OUTEN5,   "OUTEN5",       &cti_regs[16] },
200         { CTI_OUTEN6,   "OUTEN6",       &cti_regs[17] },
201         { CTI_OUTEN7,   "OUTEN7",       &cti_regs[18] },
202         { CTI_OUTEN8,   "OUTEN8",       &cti_regs[19] },
203         { CTI_TRIN_STATUS,      "TRIN", &cti_regs[20] },
204         { CTI_TROUT_STATUS,     "TROUT", &cti_regs[21] },
205         { CTI_CHIN_STATUS,      "CHIN", &cti_regs[22] },
206         { CTI_CHOU_STATUS,      "CHOUT", &cti_regs[23] },
207         { CTI_APPSET,   "APPSET",       &cti_regs[24] },
208         { CTI_APPCLEAR, "APPCLR",       &cti_regs[25] },
209 };
210
211 static int cti_find_reg_offset(const char *name)
212 {
213         unsigned int i;
214
215         for (i = 0; i < ARRAY_SIZE(cti_names); i++) {
216                 if (!strcmp(name, cti_names[i].label))
217                         return cti_names[i].offset;
218         }
219
220         LOG_ERROR("unknown CTI register %s", name);
221         return -1;
222 }
223
224 int arm_cti_cleanup_all(void)
225 {
226         struct arm_cti_object *obj, *tmp;
227
228         list_for_each_entry_safe(obj, tmp, &all_cti, lh) {
229                 free(obj->name);
230                 free(obj);
231         }
232
233         return ERROR_OK;
234 }
235
236 COMMAND_HANDLER(handle_cti_dump)
237 {
238         struct arm_cti_object *obj = CMD_DATA;
239         struct arm_cti *cti = &obj->cti;
240         int retval = ERROR_OK;
241
242         for (int i = 0; (retval == ERROR_OK) && (i < (int)ARRAY_SIZE(cti_names)); i++)
243                 retval = mem_ap_read_u32(cti->ap,
244                                 cti->base + cti_names[i].offset, cti_names[i].p_val);
245
246         if (retval == ERROR_OK)
247                 retval = dap_run(cti->ap->dap);
248
249         if (retval != ERROR_OK)
250                 return JIM_ERR;
251
252         for (int i = 0; i < (int)ARRAY_SIZE(cti_names); i++)
253                 command_print(CMD_CTX, "%8.8s (0x%04"PRIx32") 0x%08"PRIx32,
254                                 cti_names[i].label, cti_names[i].offset, *cti_names[i].p_val);
255
256         return JIM_OK;
257 }
258
259 COMMAND_HANDLER(handle_cti_enable)
260 {
261         struct arm_cti_object *obj = CMD_DATA;
262         Jim_Interp *interp = CMD_CTX->interp;
263         struct arm_cti *cti = &obj->cti;
264         bool on_off;
265
266         if (CMD_ARGC != 1) {
267                 Jim_SetResultString(interp, "wrong number of args", -1);
268                 return ERROR_FAIL;
269         }
270
271         COMMAND_PARSE_ON_OFF(CMD_ARGV[0], on_off);
272
273         return arm_cti_enable(cti, on_off);
274 }
275
276 COMMAND_HANDLER(handle_cti_testmode)
277 {
278         struct arm_cti_object *obj = CMD_DATA;
279         Jim_Interp *interp = CMD_CTX->interp;
280         struct arm_cti *cti = &obj->cti;
281         bool on_off;
282
283         if (CMD_ARGC != 1) {
284                 Jim_SetResultString(interp, "wrong number of args", -1);
285                 return ERROR_FAIL;
286         }
287
288         COMMAND_PARSE_ON_OFF(CMD_ARGV[0], on_off);
289
290         return arm_cti_write_reg(cti, 0xf00, on_off ? 0x1 : 0x0);
291 }
292
293 COMMAND_HANDLER(handle_cti_write)
294 {
295         struct arm_cti_object *obj = CMD_DATA;
296         Jim_Interp *interp = CMD_CTX->interp;
297         struct arm_cti *cti = &obj->cti;
298         int offset;
299         uint32_t value;
300
301         if (CMD_ARGC != 2) {
302                 Jim_SetResultString(interp, "Wrong number of args", -1);
303                 return ERROR_FAIL;
304         }
305
306         offset = cti_find_reg_offset(CMD_ARGV[0]);
307         if (offset < 0)
308                 return ERROR_FAIL;
309
310         COMMAND_PARSE_NUMBER(u32, CMD_ARGV[1], value);
311
312         return arm_cti_write_reg(cti, offset, value);
313 }
314
315 COMMAND_HANDLER(handle_cti_read)
316 {
317         struct arm_cti_object *obj = CMD_DATA;
318         Jim_Interp *interp = CMD_CTX->interp;
319         struct arm_cti *cti = &obj->cti;
320         int offset;
321         int retval;
322         uint32_t value;
323
324         if (CMD_ARGC != 1) {
325                 Jim_SetResultString(interp, "Wrong number of args", -1);
326                 return ERROR_FAIL;
327         }
328
329         offset = cti_find_reg_offset(CMD_ARGV[0]);
330         if (offset < 0)
331                 return ERROR_FAIL;
332
333         retval = arm_cti_read_reg(cti, offset, &value);
334         if (retval != ERROR_OK)
335                 return retval;
336
337         command_print(CMD_CTX, "0x%08"PRIx32, value);
338
339         return ERROR_OK;
340 }
341
342 static const struct command_registration cti_instance_command_handlers[] = {
343         {
344                 .name  = "dump",
345                 .mode  = COMMAND_EXEC,
346                 .handler = handle_cti_dump,
347                 .help  = "dump CTI registers",
348                 .usage = "",
349         },
350         {
351                 .name = "enable",
352                 .mode = COMMAND_EXEC,
353                 .handler = handle_cti_enable,
354                 .help = "enable or disable the CTI",
355                 .usage = "'on'|'off'",
356         },
357         {
358                 .name = "testmode",
359                 .mode = COMMAND_EXEC,
360                 .handler = handle_cti_testmode,
361                 .help = "enable or disable integration test mode",
362                 .usage = "'on'|'off'",
363         },
364         {
365                 .name = "write",
366                 .mode = COMMAND_EXEC,
367                 .handler = handle_cti_write,
368                 .help = "write to a CTI register",
369                 .usage = "register_name value",
370         },
371         {
372                 .name = "read",
373                 .mode = COMMAND_EXEC,
374                 .handler = handle_cti_read,
375                 .help = "read a CTI register",
376                 .usage = "register_name",
377         },
378         COMMAND_REGISTRATION_DONE
379 };
380
381 enum cti_cfg_param {
382         CFG_DAP,
383         CFG_AP_NUM,
384         CFG_CTIBASE
385 };
386
387 static const Jim_Nvp nvp_config_opts[] = {
388         { .name = "-dap",     .value = CFG_DAP },
389         { .name = "-ctibase", .value = CFG_CTIBASE },
390         { .name = "-ap-num",  .value = CFG_AP_NUM },
391         { .name = NULL, .value = -1 }
392 };
393
394 static int cti_configure(Jim_GetOptInfo *goi, struct arm_cti_object *cti)
395 {
396         struct adiv5_dap *dap = NULL;
397         Jim_Nvp *n;
398         jim_wide w;
399         int e;
400
401         /* parse config or cget options ... */
402         while (goi->argc > 0) {
403                 Jim_SetEmptyResult(goi->interp);
404
405                 e = Jim_GetOpt_Nvp(goi, nvp_config_opts, &n);
406                 if (e != JIM_OK) {
407                         Jim_GetOpt_NvpUnknown(goi, nvp_config_opts, 0);
408                         return e;
409                 }
410                 switch (n->value) {
411                 case CFG_DAP: {
412                         Jim_Obj *o_t;
413                         e = Jim_GetOpt_Obj(goi, &o_t);
414                         if (e != JIM_OK)
415                                 return e;
416                         dap = dap_instance_by_jim_obj(goi->interp, o_t);
417                         if (dap == NULL) {
418                                 Jim_SetResultString(goi->interp, "-dap is invalid", -1);
419                                 return JIM_ERR;
420                         }
421                         /* loop for more */
422                         break;
423                 }
424                 case CFG_CTIBASE:
425                         e = Jim_GetOpt_Wide(goi, &w);
426                         if (e != JIM_OK)
427                                 return e;
428                         cti->cti.base = (uint32_t)w;
429                         /* loop for more */
430                         break;
431
432                 case CFG_AP_NUM:
433                         e = Jim_GetOpt_Wide(goi, &w);
434                         if (e != JIM_OK)
435                                 return e;
436                         if (w < 0 || w > DP_APSEL_MAX) {
437                                 Jim_SetResultString(goi->interp, "-ap-num is invalid", -1);
438                                 return JIM_ERR;
439                         }
440                         cti->ap_num = (uint32_t)w;
441                 }
442         }
443
444         if (dap == NULL) {
445                 Jim_SetResultString(goi->interp, "-dap required when creating CTI", -1);
446                 return JIM_ERR;
447         }
448
449         cti->cti.ap = dap_ap(dap, cti->ap_num);
450
451         return JIM_OK;
452 }
453
454 static int cti_create(Jim_GetOptInfo *goi)
455 {
456         struct command_context *cmd_ctx;
457         static struct arm_cti_object *cti;
458         Jim_Obj *new_cmd;
459         Jim_Cmd *cmd;
460         const char *cp;
461         int e;
462
463         cmd_ctx = current_command_context(goi->interp);
464         assert(cmd_ctx != NULL);
465
466         if (goi->argc < 3) {
467                 Jim_WrongNumArgs(goi->interp, 1, goi->argv, "?name? ..options...");
468                 return JIM_ERR;
469         }
470         /* COMMAND */
471         Jim_GetOpt_Obj(goi, &new_cmd);
472         /* does this command exist? */
473         cmd = Jim_GetCommand(goi->interp, new_cmd, JIM_ERRMSG);
474         if (cmd) {
475                 cp = Jim_GetString(new_cmd, NULL);
476                 Jim_SetResultFormatted(goi->interp, "Command: %s Exists", cp);
477                 return JIM_ERR;
478         }
479
480         /* Create it */
481         cti = calloc(1, sizeof(struct arm_cti_object));
482         if (cti == NULL)
483                 return JIM_ERR;
484
485         e = cti_configure(goi, cti);
486         if (e != JIM_OK) {
487                 free(cti);
488                 return e;
489         }
490
491         cp = Jim_GetString(new_cmd, NULL);
492         cti->name = strdup(cp);
493
494         /* now - create the new cti name command */
495         const struct command_registration cti_subcommands[] = {
496                 {
497                         .chain = cti_instance_command_handlers,
498                 },
499                 COMMAND_REGISTRATION_DONE
500         };
501         const struct command_registration cti_commands[] = {
502                 {
503                         .name = cp,
504                         .mode = COMMAND_ANY,
505                         .help = "cti instance command group",
506                         .usage = "",
507                         .chain = cti_subcommands,
508                 },
509                 COMMAND_REGISTRATION_DONE
510         };
511         e = register_commands(cmd_ctx, NULL, cti_commands);
512         if (ERROR_OK != e)
513                 return JIM_ERR;
514
515         struct command *c = command_find_in_context(cmd_ctx, cp);
516         assert(c);
517         command_set_handler_data(c, cti);
518
519         list_add_tail(&cti->lh, &all_cti);
520
521         return (ERROR_OK == e) ? JIM_OK : JIM_ERR;
522 }
523
524 static int jim_cti_create(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
525 {
526         Jim_GetOptInfo goi;
527         Jim_GetOpt_Setup(&goi, interp, argc - 1, argv + 1);
528         if (goi.argc < 2) {
529                 Jim_WrongNumArgs(goi.interp, goi.argc, goi.argv,
530                         "<name> [<cti_options> ...]");
531                 return JIM_ERR;
532         }
533         return cti_create(&goi);
534 }
535
536 static int jim_cti_names(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
537 {
538         struct arm_cti_object *obj;
539
540         if (argc != 1) {
541                 Jim_WrongNumArgs(interp, 1, argv, "Too many parameters");
542                 return JIM_ERR;
543         }
544         Jim_SetResult(interp, Jim_NewListObj(interp, NULL, 0));
545         list_for_each_entry(obj, &all_cti, lh) {
546                 Jim_ListAppendElement(interp, Jim_GetResult(interp),
547                         Jim_NewStringObj(interp, obj->name, -1));
548         }
549         return JIM_OK;
550 }
551
552
553 static const struct command_registration cti_subcommand_handlers[] = {
554         {
555                 .name = "create",
556                 .mode = COMMAND_ANY,
557                 .jim_handler = jim_cti_create,
558                 .usage = "name '-chain-position' name [options ...]",
559                 .help = "Creates a new CTI object",
560         },
561         {
562                 .name = "names",
563                 .mode = COMMAND_ANY,
564                 .jim_handler = jim_cti_names,
565                 .usage = "",
566                 .help = "Lists all registered CTI objects by name",
567         },
568         COMMAND_REGISTRATION_DONE
569 };
570
571 static const struct command_registration cti_command_handlers[] = {
572         {
573                 .name = "cti",
574                 .mode = COMMAND_CONFIG,
575                 .help = "CTI commands",
576                 .chain = cti_subcommand_handlers,
577         },
578         COMMAND_REGISTRATION_DONE
579 };
580
581 int cti_register_commands(struct command_context *cmd_ctx)
582 {
583         return register_commands(cmd_ctx, NULL, cti_command_handlers);
584 }
585