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remoteproc: stm32: Properly handle the resource table when attaching
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13140de0
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1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Copyright (C) STMicroelectronics 2018 - All Rights Reserved
4 * Authors: Ludovic Barre <ludovic.barre@st.com> for STMicroelectronics.
5 * Fabien Dessenne <fabien.dessenne@st.com> for STMicroelectronics.
6 */
7
8#include <linux/arm-smccc.h>
9#include <linux/dma-mapping.h>
10#include <linux/interrupt.h>
11#include <linux/io.h>
12#include <linux/mailbox_client.h>
13#include <linux/mfd/syscon.h>
14#include <linux/module.h>
15#include <linux/of_address.h>
16#include <linux/of_device.h>
17#include <linux/of_reserved_mem.h>
410119ee 18#include <linux/pm_wakeirq.h>
13140de0
FD
19#include <linux/regmap.h>
20#include <linux/remoteproc.h>
21#include <linux/reset.h>
bf02bd9a 22#include <linux/slab.h>
714cf5e3 23#include <linux/workqueue.h>
13140de0
FD
24
25#include "remoteproc_internal.h"
26
27#define HOLD_BOOT 0
28#define RELEASE_BOOT 1
29
30#define MBOX_NB_VQ 2
31#define MBOX_NB_MBX 3
32
33#define STM32_SMC_RCC 0x82001000
34#define STM32_SMC_REG_WRITE 0x1
35
36#define STM32_MBX_VQ0 "vq0"
714cf5e3 37#define STM32_MBX_VQ0_ID 0
13140de0 38#define STM32_MBX_VQ1 "vq1"
714cf5e3 39#define STM32_MBX_VQ1_ID 1
13140de0
FD
40#define STM32_MBX_SHUTDOWN "shutdown"
41
11a7aaa7
MP
42#define RSC_TBL_SIZE 1024
43
376ffdc0
MP
44#define M4_STATE_OFF 0
45#define M4_STATE_INI 1
46#define M4_STATE_CRUN 2
47#define M4_STATE_CSTOP 3
48#define M4_STATE_STANDBY 4
49#define M4_STATE_CRASH 5
50
13140de0
FD
51struct stm32_syscon {
52 struct regmap *map;
53 u32 reg;
54 u32 mask;
55};
56
57struct stm32_rproc_mem {
58 char name[20];
59 void __iomem *cpu_addr;
60 phys_addr_t bus_addr;
61 u32 dev_addr;
62 size_t size;
63};
64
65struct stm32_rproc_mem_ranges {
66 u32 dev_addr;
67 u32 bus_addr;
68 u32 size;
69};
70
71struct stm32_mbox {
72 const unsigned char name[10];
73 struct mbox_chan *chan;
74 struct mbox_client client;
714cf5e3 75 struct work_struct vq_work;
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76 int vq_id;
77};
78
79struct stm32_rproc {
80 struct reset_control *rst;
81 struct stm32_syscon hold_boot;
82 struct stm32_syscon pdds;
9276536f
MP
83 struct stm32_syscon m4_state;
84 struct stm32_syscon rsctbl;
410119ee 85 int wdg_irq;
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86 u32 nb_rmems;
87 struct stm32_rproc_mem *rmems;
88 struct stm32_mbox mb[MBOX_NB_MBX];
714cf5e3 89 struct workqueue_struct *workqueue;
13140de0 90 bool secured_soc;
11a7aaa7 91 void __iomem *rsc_va;
13140de0
FD
92};
93
94static int stm32_rproc_pa_to_da(struct rproc *rproc, phys_addr_t pa, u64 *da)
95{
96 unsigned int i;
97 struct stm32_rproc *ddata = rproc->priv;
98 struct stm32_rproc_mem *p_mem;
99
100 for (i = 0; i < ddata->nb_rmems; i++) {
101 p_mem = &ddata->rmems[i];
102
103 if (pa < p_mem->bus_addr ||
104 pa >= p_mem->bus_addr + p_mem->size)
105 continue;
106 *da = pa - p_mem->bus_addr + p_mem->dev_addr;
107 dev_dbg(rproc->dev.parent, "pa %pa to da %llx\n", &pa, *da);
108 return 0;
109 }
110
111 return -EINVAL;
112}
113
114static int stm32_rproc_mem_alloc(struct rproc *rproc,
115 struct rproc_mem_entry *mem)
116{
117 struct device *dev = rproc->dev.parent;
118 void *va;
119
120 dev_dbg(dev, "map memory: %pa+%x\n", &mem->dma, mem->len);
121 va = ioremap_wc(mem->dma, mem->len);
122 if (IS_ERR_OR_NULL(va)) {
123 dev_err(dev, "Unable to map memory region: %pa+%x\n",
124 &mem->dma, mem->len);
125 return -ENOMEM;
126 }
127
128 /* Update memory entry va */
129 mem->va = va;
130
131 return 0;
132}
133
134static int stm32_rproc_mem_release(struct rproc *rproc,
135 struct rproc_mem_entry *mem)
136{
137 dev_dbg(rproc->dev.parent, "unmap memory: %pa\n", &mem->dma);
138 iounmap(mem->va);
139
140 return 0;
141}
142
7b9f18ca
MP
143static int stm32_rproc_of_memory_translations(struct platform_device *pdev,
144 struct stm32_rproc *ddata)
13140de0 145{
7b9f18ca 146 struct device *parent, *dev = &pdev->dev;
13140de0
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147 struct device_node *np;
148 struct stm32_rproc_mem *p_mems;
149 struct stm32_rproc_mem_ranges *mem_range;
150 int cnt, array_size, i, ret = 0;
151
152 parent = dev->parent;
153 np = parent->of_node;
154
155 cnt = of_property_count_elems_of_size(np, "dma-ranges",
156 sizeof(*mem_range));
157 if (cnt <= 0) {
158 dev_err(dev, "%s: dma-ranges property not defined\n", __func__);
159 return -EINVAL;
160 }
161
162 p_mems = devm_kcalloc(dev, cnt, sizeof(*p_mems), GFP_KERNEL);
163 if (!p_mems)
164 return -ENOMEM;
165 mem_range = kcalloc(cnt, sizeof(*mem_range), GFP_KERNEL);
166 if (!mem_range)
167 return -ENOMEM;
168
169 array_size = cnt * sizeof(struct stm32_rproc_mem_ranges) / sizeof(u32);
170
171 ret = of_property_read_u32_array(np, "dma-ranges",
172 (u32 *)mem_range, array_size);
173 if (ret) {
174 dev_err(dev, "error while get dma-ranges property: %x\n", ret);
175 goto free_mem;
176 }
177
178 for (i = 0; i < cnt; i++) {
179 p_mems[i].bus_addr = mem_range[i].bus_addr;
180 p_mems[i].dev_addr = mem_range[i].dev_addr;
181 p_mems[i].size = mem_range[i].size;
182
183 dev_dbg(dev, "memory range[%i]: da %#x, pa %pa, size %#zx:\n",
184 i, p_mems[i].dev_addr, &p_mems[i].bus_addr,
185 p_mems[i].size);
186 }
187
188 ddata->rmems = p_mems;
189 ddata->nb_rmems = cnt;
190
191free_mem:
192 kfree(mem_range);
193 return ret;
194}
195
196static int stm32_rproc_mbox_idx(struct rproc *rproc, const unsigned char *name)
197{
198 struct stm32_rproc *ddata = rproc->priv;
199 int i;
200
201 for (i = 0; i < ARRAY_SIZE(ddata->mb); i++) {
202 if (!strncmp(ddata->mb[i].name, name, strlen(name)))
203 return i;
204 }
205 dev_err(&rproc->dev, "mailbox %s not found\n", name);
206
207 return -EINVAL;
208}
209
210static int stm32_rproc_elf_load_rsc_table(struct rproc *rproc,
211 const struct firmware *fw)
212{
213 if (rproc_elf_load_rsc_table(rproc, fw))
214 dev_warn(&rproc->dev, "no resource table found for this firmware\n");
215
216 return 0;
217}
218
dadbdb9c 219static int stm32_rproc_parse_memory_regions(struct rproc *rproc)
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FD
220{
221 struct device *dev = rproc->dev.parent;
222 struct device_node *np = dev->of_node;
223 struct of_phandle_iterator it;
224 struct rproc_mem_entry *mem;
225 struct reserved_mem *rmem;
226 u64 da;
227 int index = 0;
228
229 /* Register associated reserved memory regions */
230 of_phandle_iterator_init(&it, np, "memory-region", NULL, 0);
231 while (of_phandle_iterator_next(&it) == 0) {
232 rmem = of_reserved_mem_lookup(it.node);
233 if (!rmem) {
234 dev_err(dev, "unable to acquire memory-region\n");
235 return -EINVAL;
236 }
237
238 if (stm32_rproc_pa_to_da(rproc, rmem->base, &da) < 0) {
239 dev_err(dev, "memory region not valid %pa\n",
240 &rmem->base);
241 return -EINVAL;
242 }
243
244 /* No need to map vdev buffer */
245 if (strcmp(it.node->name, "vdev0buffer")) {
246 /* Register memory region */
247 mem = rproc_mem_entry_init(dev, NULL,
248 (dma_addr_t)rmem->base,
249 rmem->size, da,
250 stm32_rproc_mem_alloc,
251 stm32_rproc_mem_release,
252 it.node->name);
253
254 if (mem)
255 rproc_coredump_add_segment(rproc, da,
256 rmem->size);
257 } else {
258 /* Register reserved memory for vdev buffer alloc */
259 mem = rproc_of_resm_mem_entry_init(dev, index,
260 rmem->size,
261 rmem->base,
262 it.node->name);
263 }
264
265 if (!mem)
266 return -ENOMEM;
267
268 rproc_add_carveout(rproc, mem);
269 index++;
270 }
271
dadbdb9c
MP
272 return 0;
273}
274
275static int stm32_rproc_parse_fw(struct rproc *rproc, const struct firmware *fw)
276{
277 int ret = stm32_rproc_parse_memory_regions(rproc);
278
279 if (ret)
280 return ret;
281
13140de0
FD
282 return stm32_rproc_elf_load_rsc_table(rproc, fw);
283}
284
285static irqreturn_t stm32_rproc_wdg(int irq, void *data)
286{
b8631ab1
MP
287 struct platform_device *pdev = data;
288 struct rproc *rproc = platform_get_drvdata(pdev);
13140de0
FD
289
290 rproc_report_crash(rproc, RPROC_WATCHDOG);
291
292 return IRQ_HANDLED;
293}
294
714cf5e3
AP
295static void stm32_rproc_mb_vq_work(struct work_struct *work)
296{
297 struct stm32_mbox *mb = container_of(work, struct stm32_mbox, vq_work);
298 struct rproc *rproc = dev_get_drvdata(mb->client.dev);
299
300 if (rproc_vq_interrupt(rproc, mb->vq_id) == IRQ_NONE)
301 dev_dbg(&rproc->dev, "no message found in vq%d\n", mb->vq_id);
302}
303
13140de0
FD
304static void stm32_rproc_mb_callback(struct mbox_client *cl, void *data)
305{
306 struct rproc *rproc = dev_get_drvdata(cl->dev);
307 struct stm32_mbox *mb = container_of(cl, struct stm32_mbox, client);
714cf5e3 308 struct stm32_rproc *ddata = rproc->priv;
13140de0 309
714cf5e3 310 queue_work(ddata->workqueue, &mb->vq_work);
13140de0
FD
311}
312
313static void stm32_rproc_free_mbox(struct rproc *rproc)
314{
315 struct stm32_rproc *ddata = rproc->priv;
316 unsigned int i;
317
318 for (i = 0; i < ARRAY_SIZE(ddata->mb); i++) {
319 if (ddata->mb[i].chan)
320 mbox_free_channel(ddata->mb[i].chan);
321 ddata->mb[i].chan = NULL;
322 }
323}
324
325static const struct stm32_mbox stm32_rproc_mbox[MBOX_NB_MBX] = {
326 {
327 .name = STM32_MBX_VQ0,
714cf5e3 328 .vq_id = STM32_MBX_VQ0_ID,
13140de0
FD
329 .client = {
330 .rx_callback = stm32_rproc_mb_callback,
331 .tx_block = false,
332 },
333 },
334 {
335 .name = STM32_MBX_VQ1,
714cf5e3 336 .vq_id = STM32_MBX_VQ1_ID,
13140de0
FD
337 .client = {
338 .rx_callback = stm32_rproc_mb_callback,
339 .tx_block = false,
340 },
341 },
342 {
343 .name = STM32_MBX_SHUTDOWN,
344 .vq_id = -1,
345 .client = {
346 .tx_block = true,
347 .tx_done = NULL,
348 .tx_tout = 500, /* 500 ms time out */
349 },
350 }
351};
352
4a56e423 353static int stm32_rproc_request_mbox(struct rproc *rproc)
13140de0
FD
354{
355 struct stm32_rproc *ddata = rproc->priv;
356 struct device *dev = &rproc->dev;
357 unsigned int i;
4a56e423 358 int j;
13140de0
FD
359 const unsigned char *name;
360 struct mbox_client *cl;
361
362 /* Initialise mailbox structure table */
363 memcpy(ddata->mb, stm32_rproc_mbox, sizeof(stm32_rproc_mbox));
364
365 for (i = 0; i < MBOX_NB_MBX; i++) {
366 name = ddata->mb[i].name;
367
368 cl = &ddata->mb[i].client;
369 cl->dev = dev->parent;
370
371 ddata->mb[i].chan = mbox_request_channel_byname(cl, name);
372 if (IS_ERR(ddata->mb[i].chan)) {
4a56e423
FD
373 if (PTR_ERR(ddata->mb[i].chan) == -EPROBE_DEFER)
374 goto err_probe;
13140de0
FD
375 dev_warn(dev, "cannot get %s mbox\n", name);
376 ddata->mb[i].chan = NULL;
377 }
714cf5e3
AP
378 if (ddata->mb[i].vq_id >= 0) {
379 INIT_WORK(&ddata->mb[i].vq_work,
380 stm32_rproc_mb_vq_work);
381 }
13140de0 382 }
4a56e423
FD
383
384 return 0;
385
386err_probe:
387 for (j = i - 1; j >= 0; j--)
388 if (ddata->mb[j].chan)
389 mbox_free_channel(ddata->mb[j].chan);
390 return -EPROBE_DEFER;
13140de0
FD
391}
392
393static int stm32_rproc_set_hold_boot(struct rproc *rproc, bool hold)
394{
395 struct stm32_rproc *ddata = rproc->priv;
396 struct stm32_syscon hold_boot = ddata->hold_boot;
397 struct arm_smccc_res smc_res;
398 int val, err;
399
400 val = hold ? HOLD_BOOT : RELEASE_BOOT;
401
93f1d3e4 402 if (IS_ENABLED(CONFIG_HAVE_ARM_SMCCC) && ddata->secured_soc) {
13140de0
FD
403 arm_smccc_smc(STM32_SMC_RCC, STM32_SMC_REG_WRITE,
404 hold_boot.reg, val, 0, 0, 0, 0, &smc_res);
405 err = smc_res.a0;
406 } else {
407 err = regmap_update_bits(hold_boot.map, hold_boot.reg,
408 hold_boot.mask, val);
409 }
410
411 if (err)
412 dev_err(&rproc->dev, "failed to set hold boot\n");
413
414 return err;
415}
416
417static void stm32_rproc_add_coredump_trace(struct rproc *rproc)
418{
419 struct rproc_debug_trace *trace;
420 struct rproc_dump_segment *segment;
421 bool already_added;
422
423 list_for_each_entry(trace, &rproc->traces, node) {
424 already_added = false;
425
426 list_for_each_entry(segment, &rproc->dump_segments, node) {
427 if (segment->da == trace->trace_mem.da) {
428 already_added = true;
429 break;
430 }
431 }
432
433 if (!already_added)
434 rproc_coredump_add_segment(rproc, trace->trace_mem.da,
435 trace->trace_mem.len);
436 }
437}
438
439static int stm32_rproc_start(struct rproc *rproc)
440{
abbe429d 441 struct stm32_rproc *ddata = rproc->priv;
13140de0
FD
442 int err;
443
444 stm32_rproc_add_coredump_trace(rproc);
445
abbe429d
FD
446 /* clear remote proc Deep Sleep */
447 if (ddata->pdds.map) {
448 err = regmap_update_bits(ddata->pdds.map, ddata->pdds.reg,
449 ddata->pdds.mask, 0);
450 if (err) {
451 dev_err(&rproc->dev, "failed to clear pdds\n");
452 return err;
453 }
454 }
455
13140de0
FD
456 err = stm32_rproc_set_hold_boot(rproc, false);
457 if (err)
458 return err;
459
460 return stm32_rproc_set_hold_boot(rproc, true);
461}
462
463static int stm32_rproc_stop(struct rproc *rproc)
464{
465 struct stm32_rproc *ddata = rproc->priv;
466 int err, dummy_data, idx;
467
468 /* request shutdown of the remote processor */
469 if (rproc->state != RPROC_OFFLINE) {
470 idx = stm32_rproc_mbox_idx(rproc, STM32_MBX_SHUTDOWN);
471 if (idx >= 0 && ddata->mb[idx].chan) {
472 /* a dummy data is sent to allow to block on transmit */
473 err = mbox_send_message(ddata->mb[idx].chan,
474 &dummy_data);
475 if (err < 0)
476 dev_warn(&rproc->dev, "warning: remote FW shutdown without ack\n");
477 }
478 }
479
480 err = stm32_rproc_set_hold_boot(rproc, true);
481 if (err)
482 return err;
483
484 err = reset_control_assert(ddata->rst);
485 if (err) {
486 dev_err(&rproc->dev, "failed to assert the reset\n");
487 return err;
488 }
489
490 /* to allow platform Standby power mode, set remote proc Deep Sleep */
491 if (ddata->pdds.map) {
492 err = regmap_update_bits(ddata->pdds.map, ddata->pdds.reg,
493 ddata->pdds.mask, 1);
494 if (err) {
495 dev_err(&rproc->dev, "failed to set pdds\n");
496 return err;
497 }
498 }
499
500 return 0;
501}
502
503static void stm32_rproc_kick(struct rproc *rproc, int vqid)
504{
505 struct stm32_rproc *ddata = rproc->priv;
506 unsigned int i;
507 int err;
508
509 if (WARN_ON(vqid >= MBOX_NB_VQ))
510 return;
511
512 for (i = 0; i < MBOX_NB_MBX; i++) {
513 if (vqid != ddata->mb[i].vq_id)
514 continue;
515 if (!ddata->mb[i].chan)
516 return;
517 err = mbox_send_message(ddata->mb[i].chan, (void *)(long)vqid);
518 if (err < 0)
519 dev_err(&rproc->dev, "%s: failed (%s, err:%d)\n",
520 __func__, ddata->mb[i].name, err);
521 return;
522 }
523}
524
525static struct rproc_ops st_rproc_ops = {
526 .start = stm32_rproc_start,
527 .stop = stm32_rproc_stop,
528 .kick = stm32_rproc_kick,
529 .load = rproc_elf_load_segments,
530 .parse_fw = stm32_rproc_parse_fw,
531 .find_loaded_rsc_table = rproc_elf_find_loaded_rsc_table,
e29ff72b 532 .sanity_check = rproc_elf_sanity_check,
13140de0
FD
533 .get_boot_addr = rproc_elf_get_boot_addr,
534};
535
536static const struct of_device_id stm32_rproc_match[] = {
537 { .compatible = "st,stm32mp1-m4" },
538 {},
539};
540MODULE_DEVICE_TABLE(of, stm32_rproc_match);
541
542static int stm32_rproc_get_syscon(struct device_node *np, const char *prop,
543 struct stm32_syscon *syscon)
544{
545 int err = 0;
546
547 syscon->map = syscon_regmap_lookup_by_phandle(np, prop);
548 if (IS_ERR(syscon->map)) {
549 err = PTR_ERR(syscon->map);
550 syscon->map = NULL;
551 goto out;
552 }
553
554 err = of_property_read_u32_index(np, prop, 1, &syscon->reg);
555 if (err)
556 goto out;
557
558 err = of_property_read_u32_index(np, prop, 2, &syscon->mask);
559
560out:
561 return err;
562}
563
8210fc87
MP
564static int stm32_rproc_parse_dt(struct platform_device *pdev,
565 struct stm32_rproc *ddata, bool *auto_boot)
13140de0
FD
566{
567 struct device *dev = &pdev->dev;
568 struct device_node *np = dev->of_node;
13140de0
FD
569 struct stm32_syscon tz;
570 unsigned int tzen;
571 int err, irq;
572
573 irq = platform_get_irq(pdev, 0);
d333de37
FD
574 if (irq == -EPROBE_DEFER)
575 return -EPROBE_DEFER;
576
13140de0
FD
577 if (irq > 0) {
578 err = devm_request_irq(dev, irq, stm32_rproc_wdg, 0,
b8631ab1 579 dev_name(dev), pdev);
13140de0
FD
580 if (err) {
581 dev_err(dev, "failed to request wdg irq\n");
582 return err;
583 }
584
410119ee
FD
585 ddata->wdg_irq = irq;
586
587 if (of_property_read_bool(np, "wakeup-source")) {
588 device_init_wakeup(dev, true);
589 dev_pm_set_wake_irq(dev, irq);
590 }
591
13140de0
FD
592 dev_info(dev, "wdg irq registered\n");
593 }
594
595 ddata->rst = devm_reset_control_get_by_index(dev, 0);
596 if (IS_ERR(ddata->rst)) {
597 dev_err(dev, "failed to get mcu reset\n");
598 return PTR_ERR(ddata->rst);
599 }
600
601 /*
602 * if platform is secured the hold boot bit must be written by
603 * smc call and read normally.
604 * if not secure the hold boot bit could be read/write normally
605 */
606 err = stm32_rproc_get_syscon(np, "st,syscfg-tz", &tz);
607 if (err) {
608 dev_err(dev, "failed to get tz syscfg\n");
609 return err;
610 }
611
612 err = regmap_read(tz.map, tz.reg, &tzen);
613 if (err) {
8210fc87 614 dev_err(dev, "failed to read tzen\n");
13140de0
FD
615 return err;
616 }
617 ddata->secured_soc = tzen & tz.mask;
618
619 err = stm32_rproc_get_syscon(np, "st,syscfg-holdboot",
620 &ddata->hold_boot);
621 if (err) {
622 dev_err(dev, "failed to get hold boot\n");
623 return err;
624 }
625
626 err = stm32_rproc_get_syscon(np, "st,syscfg-pdds", &ddata->pdds);
627 if (err)
b1f0fa86 628 dev_info(dev, "failed to get pdds\n");
13140de0 629
8210fc87 630 *auto_boot = of_property_read_bool(np, "st,auto-boot");
13140de0 631
9276536f
MP
632 /*
633 * See if we can check the M4 status, i.e if it was started
634 * from the boot loader or not.
635 */
636 err = stm32_rproc_get_syscon(np, "st,syscfg-m4-state",
637 &ddata->m4_state);
638 if (err) {
639 /* remember this */
640 ddata->m4_state.map = NULL;
641 /* no coprocessor state syscon (optional) */
642 dev_warn(dev, "m4 state not supported\n");
643
644 /* no need to go further */
645 return 0;
646 }
647
648 /* See if we can get the resource table */
649 err = stm32_rproc_get_syscon(np, "st,syscfg-rsc-tbl",
650 &ddata->rsctbl);
651 if (err) {
652 /* no rsc table syscon (optional) */
653 dev_warn(dev, "rsc tbl syscon not supported\n");
654 }
655
95e32f86 656 return 0;
13140de0
FD
657}
658
376ffdc0
MP
659static int stm32_rproc_get_m4_status(struct stm32_rproc *ddata,
660 unsigned int *state)
661{
662 /* See stm32_rproc_parse_dt() */
663 if (!ddata->m4_state.map) {
664 /*
665 * We couldn't get the coprocessor's state, assume
666 * it is not running.
667 */
668 state = M4_STATE_OFF;
669 return 0;
670 }
671
672 return regmap_read(ddata->m4_state.map, ddata->m4_state.reg, state);
673}
674
11a7aaa7
MP
675static int stm32_rproc_da_to_pa(struct platform_device *pdev,
676 struct stm32_rproc *ddata,
677 u64 da, phys_addr_t *pa)
678{
679 struct device *dev = &pdev->dev;
680 struct stm32_rproc_mem *p_mem;
681 unsigned int i;
682
683 for (i = 0; i < ddata->nb_rmems; i++) {
684 p_mem = &ddata->rmems[i];
685
686 if (da < p_mem->dev_addr ||
687 da >= p_mem->dev_addr + p_mem->size)
688 continue;
689
690 *pa = da - p_mem->dev_addr + p_mem->bus_addr;
691 dev_dbg(dev, "da %llx to pa %#x\n", da, *pa);
692
693 return 0;
694 }
695
696 dev_err(dev, "can't translate da %llx\n", da);
697
698 return -EINVAL;
699}
700
701static int stm32_rproc_get_loaded_rsc_table(struct platform_device *pdev,
702 struct rproc *rproc,
703 struct stm32_rproc *ddata)
704{
705 struct device *dev = &pdev->dev;
706 phys_addr_t rsc_pa;
707 u32 rsc_da;
708 int err;
709
710 err = regmap_read(ddata->rsctbl.map, ddata->rsctbl.reg, &rsc_da);
711 if (err) {
712 dev_err(dev, "failed to read rsc tbl addr\n");
713 return err;
714 }
715
716 if (!rsc_da)
717 /* no rsc table */
718 return 0;
719
720 err = stm32_rproc_da_to_pa(pdev, ddata, rsc_da, &rsc_pa);
721 if (err)
722 return err;
723
724 ddata->rsc_va = devm_ioremap_wc(dev, rsc_pa, RSC_TBL_SIZE);
725 if (IS_ERR_OR_NULL(ddata->rsc_va)) {
726 dev_err(dev, "Unable to map memory region: %pa+%zx\n",
727 &rsc_pa, RSC_TBL_SIZE);
728 ddata->rsc_va = NULL;
729 return -ENOMEM;
730 }
731
732 /*
733 * The resource table is already loaded in device memory, no need
734 * to work with a cached table.
735 */
736 rproc->cached_table = NULL;
737 /* Assuming the resource table fits in 1kB is fair */
738 rproc->table_sz = RSC_TBL_SIZE;
739 rproc->table_ptr = (struct resource_table *)ddata->rsc_va;
740
741 return 0;
742}
743
13140de0
FD
744static int stm32_rproc_probe(struct platform_device *pdev)
745{
746 struct device *dev = &pdev->dev;
747 struct stm32_rproc *ddata;
748 struct device_node *np = dev->of_node;
749 struct rproc *rproc;
376ffdc0 750 unsigned int state;
13140de0
FD
751 int ret;
752
753 ret = dma_coerce_mask_and_coherent(dev, DMA_BIT_MASK(32));
754 if (ret)
755 return ret;
756
757 rproc = rproc_alloc(dev, np->name, &st_rproc_ops, NULL, sizeof(*ddata));
758 if (!rproc)
759 return -ENOMEM;
760
8210fc87
MP
761 ddata = rproc->priv;
762
3898fc99 763 rproc_coredump_set_elf_info(rproc, ELFCLASS32, EM_NONE);
8210fc87
MP
764
765 ret = stm32_rproc_parse_dt(pdev, ddata, &rproc->auto_boot);
766 if (ret)
767 goto free_rproc;
768
95e32f86
MP
769 ret = stm32_rproc_of_memory_translations(pdev, ddata);
770 if (ret)
771 goto free_rproc;
772
376ffdc0
MP
773 ret = stm32_rproc_get_m4_status(ddata, &state);
774 if (ret)
775 goto free_rproc;
776
dadbdb9c 777 if (state == M4_STATE_CRUN) {
376ffdc0
MP
778 rproc->state = RPROC_DETACHED;
779
dadbdb9c
MP
780 ret = stm32_rproc_parse_memory_regions(rproc);
781 if (ret)
782 goto free_resources;
11a7aaa7
MP
783
784 ret = stm32_rproc_get_loaded_rsc_table(pdev, rproc, ddata);
785 if (ret)
786 goto free_resources;
dadbdb9c
MP
787 }
788
13140de0 789 rproc->has_iommu = false;
714cf5e3
AP
790 ddata->workqueue = create_workqueue(dev_name(dev));
791 if (!ddata->workqueue) {
792 dev_err(dev, "cannot create workqueue\n");
793 ret = -ENOMEM;
dadbdb9c 794 goto free_resources;
714cf5e3 795 }
13140de0
FD
796
797 platform_set_drvdata(pdev, rproc);
798
4a56e423
FD
799 ret = stm32_rproc_request_mbox(rproc);
800 if (ret)
8210fc87 801 goto free_wkq;
13140de0
FD
802
803 ret = rproc_add(rproc);
804 if (ret)
805 goto free_mb;
806
807 return 0;
808
809free_mb:
810 stm32_rproc_free_mbox(rproc);
714cf5e3
AP
811free_wkq:
812 destroy_workqueue(ddata->workqueue);
dadbdb9c
MP
813free_resources:
814 rproc_resource_cleanup(rproc);
13140de0 815free_rproc:
410119ee
FD
816 if (device_may_wakeup(dev)) {
817 dev_pm_clear_wake_irq(dev);
818 device_init_wakeup(dev, false);
819 }
13140de0
FD
820 rproc_free(rproc);
821 return ret;
822}
823
824static int stm32_rproc_remove(struct platform_device *pdev)
825{
826 struct rproc *rproc = platform_get_drvdata(pdev);
714cf5e3 827 struct stm32_rproc *ddata = rproc->priv;
410119ee 828 struct device *dev = &pdev->dev;
13140de0
FD
829
830 if (atomic_read(&rproc->power) > 0)
831 rproc_shutdown(rproc);
832
833 rproc_del(rproc);
834 stm32_rproc_free_mbox(rproc);
714cf5e3 835 destroy_workqueue(ddata->workqueue);
410119ee
FD
836
837 if (device_may_wakeup(dev)) {
838 dev_pm_clear_wake_irq(dev);
839 device_init_wakeup(dev, false);
840 }
13140de0
FD
841 rproc_free(rproc);
842
843 return 0;
844}
845
410119ee
FD
846static int __maybe_unused stm32_rproc_suspend(struct device *dev)
847{
848 struct rproc *rproc = dev_get_drvdata(dev);
849 struct stm32_rproc *ddata = rproc->priv;
850
851 if (device_may_wakeup(dev))
852 return enable_irq_wake(ddata->wdg_irq);
853
854 return 0;
855}
856
857static int __maybe_unused stm32_rproc_resume(struct device *dev)
858{
859 struct rproc *rproc = dev_get_drvdata(dev);
860 struct stm32_rproc *ddata = rproc->priv;
861
862 if (device_may_wakeup(dev))
863 return disable_irq_wake(ddata->wdg_irq);
864
865 return 0;
866}
867
868static SIMPLE_DEV_PM_OPS(stm32_rproc_pm_ops,
869 stm32_rproc_suspend, stm32_rproc_resume);
870
13140de0
FD
871static struct platform_driver stm32_rproc_driver = {
872 .probe = stm32_rproc_probe,
873 .remove = stm32_rproc_remove,
874 .driver = {
875 .name = "stm32-rproc",
410119ee 876 .pm = &stm32_rproc_pm_ops,
13140de0
FD
877 .of_match_table = of_match_ptr(stm32_rproc_match),
878 },
879};
880module_platform_driver(stm32_rproc_driver);
881
882MODULE_DESCRIPTION("STM32 Remote Processor Control Driver");
883MODULE_AUTHOR("Ludovic Barre <ludovic.barre@st.com>");
884MODULE_AUTHOR("Fabien Dessenne <fabien.dessenne@st.com>");
885MODULE_LICENSE("GPL v2");
886