blob: 9d22925d481b6b158f2d16c20f528d60ac9f263c [file] [log] [blame]
Kyle Yan88156d12017-01-05 15:12:45 -08001/* Copyright (c) 2010-2017, The Linux Foundation. All rights reserved.
Kyle Yane45fa022016-08-29 11:40:26 -07002 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 */
12
13#include <linux/module.h>
14#include <linux/string.h>
15#include <linux/firmware.h>
16#include <linux/io.h>
17#include <linux/elf.h>
18#include <linux/mutex.h>
19#include <linux/memblock.h>
20#include <linux/slab.h>
21#include <linux/suspend.h>
22#include <linux/rwsem.h>
23#include <linux/sysfs.h>
24#include <linux/workqueue.h>
25#include <linux/jiffies.h>
26#include <linux/err.h>
27#include <linux/list.h>
28#include <linux/list_sort.h>
29#include <linux/idr.h>
30#include <linux/interrupt.h>
31#include <linux/of_gpio.h>
32#include <linux/of_address.h>
33#include <linux/io.h>
34#include <linux/dma-mapping.h>
35#include <soc/qcom/ramdump.h>
36#include <soc/qcom/subsystem_restart.h>
37#include <soc/qcom/secure_buffer.h>
38
39#include <linux/uaccess.h>
40#include <asm/setup.h>
Gaurav Kohli2da45012017-05-08 15:21:43 +053041#define CREATE_TRACE_POINTS
42#include <trace/events/trace_msm_pil_event.h>
Kyle Yane45fa022016-08-29 11:40:26 -070043
44#include "peripheral-loader.h"
45
46#define pil_err(desc, fmt, ...) \
47 dev_err(desc->dev, "%s: " fmt, desc->name, ##__VA_ARGS__)
48#define pil_info(desc, fmt, ...) \
49 dev_info(desc->dev, "%s: " fmt, desc->name, ##__VA_ARGS__)
50
51#if defined(CONFIG_ARM)
52#define pil_memset_io(d, c, count) memset(d, c, count)
53#else
54#define pil_memset_io(d, c, count) memset_io(d, c, count)
55#endif
56
57#define PIL_NUM_DESC 10
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +053058#define NUM_OF_ENCRYPTED_KEY 3
Kyle Yan0ceeb642017-09-13 11:21:35 -070059#define MAX_LEN 96
Kyle Yane45fa022016-08-29 11:40:26 -070060static void __iomem *pil_info_base;
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +053061static void __iomem *pil_minidump_base;
Kyle Yane45fa022016-08-29 11:40:26 -070062
63/**
64 * proxy_timeout - Override for proxy vote timeouts
65 * -1: Use driver-specified timeout
66 * 0: Hold proxy votes until shutdown
67 * >0: Specify a custom timeout in ms
68 */
69static int proxy_timeout_ms = -1;
70module_param(proxy_timeout_ms, int, 0644);
71
72static bool disable_timeouts;
73/**
74 * struct pil_mdt - Representation of <name>.mdt file in memory
75 * @hdr: ELF32 header
76 * @phdr: ELF32 program headers
77 */
78struct pil_mdt {
79 struct elf32_hdr hdr;
80 struct elf32_phdr phdr[];
81};
82
83/**
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +053084 * struct boot_minidump_smem_region - Representation of SMEM TOC
85 * @region_name: Name of modem segment to be dumped
86 * @region_base_address: Where segment start from
87 * @region_size: Size of segment to be dumped
88 */
89struct boot_minidump_smem_region {
90 char region_name[16];
91 u64 region_base_address;
92 u64 region_size;
93};
94
95/**
Kyle Yane45fa022016-08-29 11:40:26 -070096 * struct pil_seg - memory map representing one segment
97 * @next: points to next seg mentor NULL if last segment
98 * @paddr: physical start address of segment
99 * @sz: size of segment
100 * @filesz: size of segment on disk
101 * @num: segment number
102 * @relocated: true if segment is relocated, false otherwise
103 *
104 * Loosely based on an elf program header. Contains all necessary information
105 * to load and initialize a segment of the image in memory.
106 */
107struct pil_seg {
108 phys_addr_t paddr;
109 unsigned long sz;
110 unsigned long filesz;
111 int num;
112 struct list_head list;
113 bool relocated;
114};
115
116/**
117 * struct pil_priv - Private state for a pil_desc
118 * @proxy: work item used to run the proxy unvoting routine
119 * @ws: wakeup source to prevent suspend during pil_boot
120 * @wname: name of @ws
121 * @desc: pointer to pil_desc this is private data for
122 * @seg: list of segments sorted by physical address
123 * @entry_addr: physical address where processor starts booting at
124 * @base_addr: smallest start address among all segments that are relocatable
125 * @region_start: address where relocatable region starts or lowest address
126 * for non-relocatable images
127 * @region_end: address where relocatable region ends or highest address for
128 * non-relocatable images
129 * @region: region allocated for relocatable images
130 * @unvoted_flag: flag to keep track if we have unvoted or not.
131 *
132 * This struct contains data for a pil_desc that should not be exposed outside
133 * of this file. This structure points to the descriptor and the descriptor
134 * points to this structure so that PIL drivers can't access the private
135 * data of a descriptor but this file can access both.
136 */
137struct pil_priv {
138 struct delayed_work proxy;
139 struct wakeup_source ws;
140 char wname[32];
141 struct pil_desc *desc;
142 struct list_head segs;
143 phys_addr_t entry_addr;
144 phys_addr_t base_addr;
145 phys_addr_t region_start;
146 phys_addr_t region_end;
147 void *region;
148 struct pil_image_info __iomem *info;
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +0530149 struct md_ssr_ss_info __iomem *minidump;
150 int minidump_id;
Kyle Yane45fa022016-08-29 11:40:26 -0700151 int id;
152 int unvoted_flag;
153 size_t region_size;
154};
155
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +0530156static int pil_do_minidump(struct pil_desc *desc, void *ramdump_dev)
157{
158 struct boot_minidump_smem_region __iomem *region_info;
159 struct ramdump_segment *ramdump_segs, *s;
160 struct pil_priv *priv = desc->priv;
161 void __iomem *subsys_smem_base;
162 void __iomem *offset;
163 int ss_mdump_seg_cnt;
164 int ret, i;
165
166 memcpy(&offset, &priv->minidump, sizeof(priv->minidump));
167 offset = offset + sizeof(priv->minidump->md_ss_smem_regions_baseptr);
168 /* There are 3 encryption keys which also need to be dumped */
169 ss_mdump_seg_cnt = readb_relaxed(offset) +
170 NUM_OF_ENCRYPTED_KEY;
171
172 subsys_smem_base = ioremap(__raw_readl(priv->minidump),
173 ss_mdump_seg_cnt * sizeof(*region_info));
174 region_info =
175 (struct boot_minidump_smem_region __iomem *)subsys_smem_base;
176 ramdump_segs = kcalloc(ss_mdump_seg_cnt,
177 sizeof(*ramdump_segs), GFP_KERNEL);
178 if (!ramdump_segs)
179 return -ENOMEM;
180
181 if (desc->subsys_vmid > 0)
182 ret = pil_assign_mem_to_linux(desc, priv->region_start,
183 (priv->region_end - priv->region_start));
184
185 s = ramdump_segs;
186 for (i = 0; i < ss_mdump_seg_cnt; i++) {
187 memcpy(&offset, &region_info, sizeof(region_info));
188 memcpy(&s->name, &region_info, sizeof(region_info));
189 offset = offset + sizeof(region_info->region_name);
190 s->address = __raw_readl(offset);
191 offset = offset + sizeof(region_info->region_base_address);
192 s->size = __raw_readl(offset);
193 s++;
194 region_info++;
195 }
196 ret = do_minidump(ramdump_dev, ramdump_segs, ss_mdump_seg_cnt);
197 kfree(ramdump_segs);
198 if (ret)
199 pil_err(desc, "%s: Ramdump collection failed for subsys %s rc:%d\n",
200 __func__, desc->name, ret);
201 writel_relaxed(0, &priv->minidump->md_ss_smem_regions_baseptr);
202 writeb_relaxed(1, &priv->minidump->md_ss_ssr_cause);
203
204 if (desc->subsys_vmid > 0)
205 ret = pil_assign_mem_to_subsys(desc, priv->region_start,
206 (priv->region_end - priv->region_start));
207 return ret;
208}
209
Kyle Yane45fa022016-08-29 11:40:26 -0700210/**
211 * pil_do_ramdump() - Ramdump an image
212 * @desc: descriptor from pil_desc_init()
213 * @ramdump_dev: ramdump device returned from create_ramdump_device()
214 *
215 * Calls the ramdump API with a list of segments generated from the addresses
216 * that the descriptor corresponds to.
217 */
218int pil_do_ramdump(struct pil_desc *desc, void *ramdump_dev)
219{
220 struct pil_priv *priv = desc->priv;
221 struct pil_seg *seg;
222 int count = 0, ret;
223 struct ramdump_segment *ramdump_segs, *s;
224
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +0530225 if (priv->minidump && (__raw_readl(priv->minidump) > 0))
226 return pil_do_minidump(desc, ramdump_dev);
227
Kyle Yane45fa022016-08-29 11:40:26 -0700228 list_for_each_entry(seg, &priv->segs, list)
229 count++;
230
231 ramdump_segs = kcalloc(count, sizeof(*ramdump_segs), GFP_KERNEL);
232 if (!ramdump_segs)
233 return -ENOMEM;
234
235 if (desc->subsys_vmid > 0)
236 ret = pil_assign_mem_to_linux(desc, priv->region_start,
237 (priv->region_end - priv->region_start));
238
239 s = ramdump_segs;
240 list_for_each_entry(seg, &priv->segs, list) {
241 s->address = seg->paddr;
242 s->size = seg->sz;
243 s++;
244 }
245
246 ret = do_elf_ramdump(ramdump_dev, ramdump_segs, count);
247 kfree(ramdump_segs);
248
Puja Gupta41ff9242017-02-02 13:41:04 -0800249 if (ret)
250 pil_err(desc, "%s: Ramdump collection failed for subsys %s rc:%d\n",
251 __func__, desc->name, ret);
252
253 if (desc->subsys_vmid > 0)
Kyle Yane45fa022016-08-29 11:40:26 -0700254 ret = pil_assign_mem_to_subsys(desc, priv->region_start,
255 (priv->region_end - priv->region_start));
256
257 return ret;
258}
259EXPORT_SYMBOL(pil_do_ramdump);
260
261int pil_assign_mem_to_subsys(struct pil_desc *desc, phys_addr_t addr,
262 size_t size)
263{
264 int ret;
265 int srcVM[1] = {VMID_HLOS};
266 int destVM[1] = {desc->subsys_vmid};
267 int destVMperm[1] = {PERM_READ | PERM_WRITE};
268
269 ret = hyp_assign_phys(addr, size, srcVM, 1, destVM, destVMperm, 1);
270 if (ret)
271 pil_err(desc, "%s: failed for %pa address of size %zx - subsys VMid %d rc:%d\n",
272 __func__, &addr, size, desc->subsys_vmid, ret);
273 return ret;
274}
275EXPORT_SYMBOL(pil_assign_mem_to_subsys);
276
277int pil_assign_mem_to_linux(struct pil_desc *desc, phys_addr_t addr,
278 size_t size)
279{
280 int ret;
281 int srcVM[1] = {desc->subsys_vmid};
282 int destVM[1] = {VMID_HLOS};
283 int destVMperm[1] = {PERM_READ | PERM_WRITE | PERM_EXEC};
284
285 ret = hyp_assign_phys(addr, size, srcVM, 1, destVM, destVMperm, 1);
286 if (ret)
287 panic("%s: failed for %pa address of size %zx - subsys VMid %d rc:%d\n",
288 __func__, &addr, size, desc->subsys_vmid, ret);
289
290 return ret;
291}
292EXPORT_SYMBOL(pil_assign_mem_to_linux);
293
294int pil_assign_mem_to_subsys_and_linux(struct pil_desc *desc,
295 phys_addr_t addr, size_t size)
296{
297 int ret;
298 int srcVM[1] = {VMID_HLOS};
299 int destVM[2] = {VMID_HLOS, desc->subsys_vmid};
300 int destVMperm[2] = {PERM_READ | PERM_WRITE, PERM_READ | PERM_WRITE};
301
302 ret = hyp_assign_phys(addr, size, srcVM, 1, destVM, destVMperm, 2);
303 if (ret)
304 pil_err(desc, "%s: failed for %pa address of size %zx - subsys VMid %d rc:%d\n",
305 __func__, &addr, size, desc->subsys_vmid, ret);
306
307 return ret;
308}
309EXPORT_SYMBOL(pil_assign_mem_to_subsys_and_linux);
310
311int pil_reclaim_mem(struct pil_desc *desc, phys_addr_t addr, size_t size,
312 int VMid)
313{
314 int ret;
315 int srcVM[2] = {VMID_HLOS, desc->subsys_vmid};
316 int destVM[1] = {VMid};
317 int destVMperm[1] = {PERM_READ | PERM_WRITE};
318
319 if (VMid == VMID_HLOS)
320 destVMperm[0] = PERM_READ | PERM_WRITE | PERM_EXEC;
321
322 ret = hyp_assign_phys(addr, size, srcVM, 2, destVM, destVMperm, 1);
323 if (ret)
324 panic("%s: failed for %pa address of size %zx - subsys VMid %d. Fatal error.\n",
325 __func__, &addr, size, desc->subsys_vmid);
326
327 return ret;
328}
329EXPORT_SYMBOL(pil_reclaim_mem);
330
331/**
332 * pil_get_entry_addr() - Retrieve the entry address of a peripheral image
333 * @desc: descriptor from pil_desc_init()
334 *
335 * Returns the physical address where the image boots at or 0 if unknown.
336 */
337phys_addr_t pil_get_entry_addr(struct pil_desc *desc)
338{
339 return desc->priv ? desc->priv->entry_addr : 0;
340}
341EXPORT_SYMBOL(pil_get_entry_addr);
342
343static void __pil_proxy_unvote(struct pil_priv *priv)
344{
345 struct pil_desc *desc = priv->desc;
346
347 desc->ops->proxy_unvote(desc);
348 notify_proxy_unvote(desc->dev);
349 __pm_relax(&priv->ws);
350 module_put(desc->owner);
351
352}
353
354static void pil_proxy_unvote_work(struct work_struct *work)
355{
356 struct delayed_work *delayed = to_delayed_work(work);
357 struct pil_priv *priv = container_of(delayed, struct pil_priv, proxy);
358
359 __pil_proxy_unvote(priv);
360}
361
362static int pil_proxy_vote(struct pil_desc *desc)
363{
364 int ret = 0;
365 struct pil_priv *priv = desc->priv;
366
367 if (desc->ops->proxy_vote) {
368 __pm_stay_awake(&priv->ws);
369 ret = desc->ops->proxy_vote(desc);
370 if (ret)
371 __pm_relax(&priv->ws);
372 }
373
374 if (desc->proxy_unvote_irq)
375 enable_irq(desc->proxy_unvote_irq);
376 notify_proxy_vote(desc->dev);
377
378 return ret;
379}
380
381static void pil_proxy_unvote(struct pil_desc *desc, int immediate)
382{
383 struct pil_priv *priv = desc->priv;
384 unsigned long timeout;
385
386 if (proxy_timeout_ms == 0 && !immediate)
387 return;
388 else if (proxy_timeout_ms > 0)
389 timeout = proxy_timeout_ms;
390 else
391 timeout = desc->proxy_timeout;
392
393 if (desc->ops->proxy_unvote) {
394 if (WARN_ON(!try_module_get(desc->owner)))
395 return;
396
397 if (immediate)
398 timeout = 0;
399
400 if (!desc->proxy_unvote_irq || immediate)
401 schedule_delayed_work(&priv->proxy,
402 msecs_to_jiffies(timeout));
403 }
404}
405
406static irqreturn_t proxy_unvote_intr_handler(int irq, void *dev_id)
407{
408 struct pil_desc *desc = dev_id;
409 struct pil_priv *priv = desc->priv;
410
411 pil_info(desc, "Power/Clock ready interrupt received\n");
412 if (!desc->priv->unvoted_flag) {
413 desc->priv->unvoted_flag = 1;
414 __pil_proxy_unvote(priv);
415 }
416
417 return IRQ_HANDLED;
418}
419
420static bool segment_is_relocatable(const struct elf32_phdr *p)
421{
422 return !!(p->p_flags & BIT(27));
423}
424
425static phys_addr_t pil_reloc(const struct pil_priv *priv, phys_addr_t addr)
426{
427 return addr - priv->base_addr + priv->region_start;
428}
429
430static struct pil_seg *pil_init_seg(const struct pil_desc *desc,
431 const struct elf32_phdr *phdr, int num)
432{
433 bool reloc = segment_is_relocatable(phdr);
434 const struct pil_priv *priv = desc->priv;
435 struct pil_seg *seg;
436
437 if (!reloc && memblock_overlaps_memory(phdr->p_paddr, phdr->p_memsz)) {
438 pil_err(desc, "Segment not relocatable,kernel memory would be overwritten[%#08lx, %#08lx)\n",
439 (unsigned long)phdr->p_paddr,
440 (unsigned long)(phdr->p_paddr + phdr->p_memsz));
441 return ERR_PTR(-EPERM);
442 }
443
444 if (phdr->p_filesz > phdr->p_memsz) {
445 pil_err(desc, "Segment %d: file size (%u) is greater than mem size (%u).\n",
446 num, phdr->p_filesz, phdr->p_memsz);
447 return ERR_PTR(-EINVAL);
448 }
449
450 seg = kmalloc(sizeof(*seg), GFP_KERNEL);
451 if (!seg)
452 return ERR_PTR(-ENOMEM);
453 seg->num = num;
454 seg->paddr = reloc ? pil_reloc(priv, phdr->p_paddr) : phdr->p_paddr;
455 seg->filesz = phdr->p_filesz;
456 seg->sz = phdr->p_memsz;
457 seg->relocated = reloc;
458 INIT_LIST_HEAD(&seg->list);
459
460 return seg;
461}
462
463#define segment_is_hash(flag) (((flag) & (0x7 << 24)) == (0x2 << 24))
464
465static int segment_is_loadable(const struct elf32_phdr *p)
466{
467 return (p->p_type == PT_LOAD) && !segment_is_hash(p->p_flags) &&
468 p->p_memsz;
469}
470
471static void pil_dump_segs(const struct pil_priv *priv)
472{
473 struct pil_seg *seg;
474 phys_addr_t seg_h_paddr;
475
476 list_for_each_entry(seg, &priv->segs, list) {
477 seg_h_paddr = seg->paddr + seg->sz;
478 pil_info(priv->desc, "%d: %pa %pa\n", seg->num,
479 &seg->paddr, &seg_h_paddr);
480 }
481}
482
483/*
484 * Ensure the entry address lies within the image limits and if the image is
485 * relocatable ensure it lies within a relocatable segment.
486 */
487static int pil_init_entry_addr(struct pil_priv *priv, const struct pil_mdt *mdt)
488{
489 struct pil_seg *seg;
490 phys_addr_t entry = mdt->hdr.e_entry;
491 bool image_relocated = priv->region;
492
493 if (image_relocated)
494 entry = pil_reloc(priv, entry);
495 priv->entry_addr = entry;
496
497 if (priv->desc->flags & PIL_SKIP_ENTRY_CHECK)
498 return 0;
499
500 list_for_each_entry(seg, &priv->segs, list) {
501 if (entry >= seg->paddr && entry < seg->paddr + seg->sz) {
502 if (!image_relocated)
503 return 0;
504 else if (seg->relocated)
505 return 0;
506 }
507 }
508 pil_err(priv->desc, "entry address %pa not within range\n", &entry);
509 pil_dump_segs(priv);
510 return -EADDRNOTAVAIL;
511}
512
513static int pil_alloc_region(struct pil_priv *priv, phys_addr_t min_addr,
514 phys_addr_t max_addr, size_t align)
515{
516 void *region;
517 size_t size = max_addr - min_addr;
518 size_t aligned_size;
519
520 /* Don't reallocate due to fragmentation concerns, just sanity check */
521 if (priv->region) {
522 if (WARN(priv->region_end - priv->region_start < size,
523 "Can't reuse PIL memory, too small\n"))
524 return -ENOMEM;
525 return 0;
526 }
527
528 if (align > SZ_4M)
529 aligned_size = ALIGN(size, SZ_4M);
530 else
531 aligned_size = ALIGN(size, SZ_1M);
532
533 priv->desc->attrs = 0;
534 priv->desc->attrs |= DMA_ATTR_SKIP_ZEROING | DMA_ATTR_NO_KERNEL_MAPPING;
535
536 region = dma_alloc_attrs(priv->desc->dev, aligned_size,
537 &priv->region_start, GFP_KERNEL,
538 priv->desc->attrs);
539
540 if (region == NULL) {
541 pil_err(priv->desc, "Failed to allocate relocatable region of size %zx\n",
542 size);
Gaurav Kohli38b9bad2017-03-25 17:36:30 +0530543 priv->region_start = 0;
544 priv->region_end = 0;
Kyle Yane45fa022016-08-29 11:40:26 -0700545 return -ENOMEM;
546 }
547
548 priv->region = region;
549 priv->region_end = priv->region_start + size;
550 priv->base_addr = min_addr;
551 priv->region_size = aligned_size;
552
553 return 0;
554}
555
556static int pil_setup_region(struct pil_priv *priv, const struct pil_mdt *mdt)
557{
558 const struct elf32_phdr *phdr;
559 phys_addr_t min_addr_r, min_addr_n, max_addr_r, max_addr_n, start, end;
560 size_t align = 0;
561 int i, ret = 0;
562 bool relocatable = false;
563
564 min_addr_n = min_addr_r = (phys_addr_t)ULLONG_MAX;
565 max_addr_n = max_addr_r = 0;
566
567 /* Find the image limits */
568 for (i = 0; i < mdt->hdr.e_phnum; i++) {
569 phdr = &mdt->phdr[i];
570 if (!segment_is_loadable(phdr))
571 continue;
572
573 start = phdr->p_paddr;
574 end = start + phdr->p_memsz;
575
576 if (segment_is_relocatable(phdr)) {
577 min_addr_r = min(min_addr_r, start);
578 max_addr_r = max(max_addr_r, end);
579 /*
580 * Lowest relocatable segment dictates alignment of
581 * relocatable region
582 */
583 if (min_addr_r == start)
584 align = phdr->p_align;
585 relocatable = true;
586 } else {
587 min_addr_n = min(min_addr_n, start);
588 max_addr_n = max(max_addr_n, end);
589 }
590
591 }
592
593 /*
594 * Align the max address to the next 4K boundary to satisfy iommus and
595 * XPUs that operate on 4K chunks.
596 */
597 max_addr_n = ALIGN(max_addr_n, SZ_4K);
598 max_addr_r = ALIGN(max_addr_r, SZ_4K);
599
600 if (relocatable) {
601 ret = pil_alloc_region(priv, min_addr_r, max_addr_r, align);
602 } else {
603 priv->region_start = min_addr_n;
604 priv->region_end = max_addr_n;
605 priv->base_addr = min_addr_n;
606 }
607
608 if (priv->info) {
609 __iowrite32_copy(&priv->info->start, &priv->region_start,
610 sizeof(priv->region_start) / 4);
611 writel_relaxed(priv->region_end - priv->region_start,
612 &priv->info->size);
613 }
614
615 return ret;
616}
617
618static int pil_cmp_seg(void *priv, struct list_head *a, struct list_head *b)
619{
620 int ret = 0;
621 struct pil_seg *seg_a = list_entry(a, struct pil_seg, list);
622 struct pil_seg *seg_b = list_entry(b, struct pil_seg, list);
623
624 if (seg_a->paddr < seg_b->paddr)
625 ret = -1;
626 else if (seg_a->paddr > seg_b->paddr)
627 ret = 1;
628
629 return ret;
630}
631
632static int pil_init_mmap(struct pil_desc *desc, const struct pil_mdt *mdt)
633{
634 struct pil_priv *priv = desc->priv;
635 const struct elf32_phdr *phdr;
636 struct pil_seg *seg;
637 int i, ret;
638
639 ret = pil_setup_region(priv, mdt);
640 if (ret)
641 return ret;
642
643
644 pil_info(desc, "loading from %pa to %pa\n", &priv->region_start,
645 &priv->region_end);
646
647 for (i = 0; i < mdt->hdr.e_phnum; i++) {
648 phdr = &mdt->phdr[i];
649 if (!segment_is_loadable(phdr))
650 continue;
651
652 seg = pil_init_seg(desc, phdr, i);
653 if (IS_ERR(seg))
654 return PTR_ERR(seg);
655
656 list_add_tail(&seg->list, &priv->segs);
657 }
658 list_sort(NULL, &priv->segs, pil_cmp_seg);
659
660 return pil_init_entry_addr(priv, mdt);
661}
662
Puja Gupta7c187e82017-02-06 14:33:19 -0800663struct pil_map_fw_info {
664 void *region;
665 unsigned long attrs;
666 phys_addr_t base_addr;
667 struct device *dev;
668};
669
Kyle Yane45fa022016-08-29 11:40:26 -0700670static void pil_release_mmap(struct pil_desc *desc)
671{
672 struct pil_priv *priv = desc->priv;
673 struct pil_seg *p, *tmp;
674 u64 zero = 0ULL;
Gaurav Kohliebb42832017-02-21 12:08:50 +0530675
676 if (priv->info) {
677 __iowrite32_copy(&priv->info->start, &zero,
678 sizeof(zero) / 4);
679 writel_relaxed(0, &priv->info->size);
680 }
681
682 list_for_each_entry_safe(p, tmp, &priv->segs, list) {
683 list_del(&p->list);
684 kfree(p);
685 }
686}
687
688static void pil_clear_segment(struct pil_desc *desc)
689{
690 struct pil_priv *priv = desc->priv;
Puja Gupta7c187e82017-02-06 14:33:19 -0800691 u8 __iomem *buf;
692
693 struct pil_map_fw_info map_fw_info = {
694 .attrs = desc->attrs,
695 .region = priv->region,
696 .base_addr = priv->region_start,
697 .dev = desc->dev,
698 };
699
700 void *map_data = desc->map_data ? desc->map_data : &map_fw_info;
701
702 /* Clear memory so that unauthorized ELF code is not left behind */
703 buf = desc->map_fw_mem(priv->region_start, (priv->region_end -
704 priv->region_start), map_data);
705 pil_memset_io(buf, 0, (priv->region_end - priv->region_start));
706 desc->unmap_fw_mem(buf, (priv->region_end - priv->region_start),
707 map_data);
Kyle Yane45fa022016-08-29 11:40:26 -0700708
Kyle Yane45fa022016-08-29 11:40:26 -0700709}
710
711#define IOMAP_SIZE SZ_1M
712
Kyle Yane45fa022016-08-29 11:40:26 -0700713static void *map_fw_mem(phys_addr_t paddr, size_t size, void *data)
714{
715 struct pil_map_fw_info *info = data;
716
717 return dma_remap(info->dev, info->region, paddr, size,
718 info->attrs);
719}
720
721static void unmap_fw_mem(void *vaddr, size_t size, void *data)
722{
723 struct pil_map_fw_info *info = data;
724
725 dma_unremap(info->dev, vaddr, size);
726}
727
728static int pil_load_seg(struct pil_desc *desc, struct pil_seg *seg)
729{
730 int ret = 0, count;
731 phys_addr_t paddr;
732 char fw_name[30];
733 int num = seg->num;
734 const struct firmware *fw = NULL;
Kyle Yan88156d12017-01-05 15:12:45 -0800735 void __iomem *firmware_buf;
Kyle Yane45fa022016-08-29 11:40:26 -0700736 struct pil_map_fw_info map_fw_info = {
737 .attrs = desc->attrs,
738 .region = desc->priv->region,
739 .base_addr = desc->priv->region_start,
740 .dev = desc->dev,
741 };
742 void *map_data = desc->map_data ? desc->map_data : &map_fw_info;
743
744 if (seg->filesz) {
745 snprintf(fw_name, ARRAY_SIZE(fw_name), "%s.b%02d",
746 desc->fw_name, num);
Kyle Yan88156d12017-01-05 15:12:45 -0800747 firmware_buf = desc->map_fw_mem(seg->paddr, seg->filesz,
748 map_data);
749 if (!firmware_buf) {
750 pil_err(desc, "Failed to map memory for firmware buffer\n");
751 return -ENOMEM;
752 }
753
Kyle Yane45fa022016-08-29 11:40:26 -0700754 ret = request_firmware_into_buf(&fw, fw_name, desc->dev,
Kyle Yan88156d12017-01-05 15:12:45 -0800755 firmware_buf, seg->filesz);
756 desc->unmap_fw_mem(firmware_buf, seg->filesz, map_data);
757
758 if (ret) {
Kyle Yane45fa022016-08-29 11:40:26 -0700759 pil_err(desc, "Failed to locate blob %s or blob is too big(rc:%d)\n",
760 fw_name, ret);
761 return ret;
762 }
763
Kyle Yan88156d12017-01-05 15:12:45 -0800764 if (fw->size != seg->filesz) {
Kyle Yane45fa022016-08-29 11:40:26 -0700765 pil_err(desc, "Blob size %u doesn't match %lu\n",
766 ret, seg->filesz);
767 return -EPERM;
768 }
Kyle Yane45fa022016-08-29 11:40:26 -0700769 }
770
771 /* Zero out trailing memory */
772 paddr = seg->paddr + seg->filesz;
773 count = seg->sz - seg->filesz;
774 while (count > 0) {
775 int size;
776 u8 __iomem *buf;
777
778 size = min_t(size_t, IOMAP_SIZE, count);
779 buf = desc->map_fw_mem(paddr, size, map_data);
780 if (!buf) {
781 pil_err(desc, "Failed to map memory\n");
782 return -ENOMEM;
783 }
784 pil_memset_io(buf, 0, size);
785
786 desc->unmap_fw_mem(buf, size, map_data);
787
788 count -= size;
789 paddr += size;
790 }
791
792 if (desc->ops->verify_blob) {
793 ret = desc->ops->verify_blob(desc, seg->paddr, seg->sz);
794 if (ret)
795 pil_err(desc, "Blob%u failed verification(rc:%d)\n",
796 num, ret);
797 }
798
799 return ret;
800}
801
802static int pil_parse_devicetree(struct pil_desc *desc)
803{
804 struct device_node *ofnode = desc->dev->of_node;
805 int clk_ready = 0;
806
807 if (!ofnode)
808 return -EINVAL;
809
810 if (of_property_read_u32(ofnode, "qcom,mem-protect-id",
811 &desc->subsys_vmid))
812 pr_debug("Unable to read the addr-protect-id for %s\n",
813 desc->name);
814
815 if (desc->ops->proxy_unvote && of_find_property(ofnode,
816 "qcom,gpio-proxy-unvote",
817 NULL)) {
818 clk_ready = of_get_named_gpio(ofnode,
819 "qcom,gpio-proxy-unvote", 0);
820
821 if (clk_ready < 0) {
822 dev_dbg(desc->dev,
823 "[%s]: Error getting proxy unvoting gpio\n",
824 desc->name);
825 return clk_ready;
826 }
827
828 clk_ready = gpio_to_irq(clk_ready);
829 if (clk_ready < 0) {
830 dev_err(desc->dev,
831 "[%s]: Error getting proxy unvote IRQ\n",
832 desc->name);
833 return clk_ready;
834 }
835 }
836 desc->proxy_unvote_irq = clk_ready;
837 return 0;
838}
839
Kyle Yan0ceeb642017-09-13 11:21:35 -0700840static int pil_notify_aop(struct pil_desc *desc, char *status)
841{
842 struct qmp_pkt pkt;
843 char mbox_msg[MAX_LEN];
844
845 if (!desc->signal_aop)
846 return 0;
847
848 snprintf(mbox_msg, MAX_LEN,
849 "{class: image, res: load_state, name: %s, val: %s}",
850 desc->name, status);
851 pkt.size = MAX_LEN;
852 pkt.data = mbox_msg;
853
854 return mbox_send_message(desc->mbox, &pkt);
855}
856
Kyle Yane45fa022016-08-29 11:40:26 -0700857/* Synchronize request_firmware() with suspend */
858static DECLARE_RWSEM(pil_pm_rwsem);
859
860/**
861 * pil_boot() - Load a peripheral image into memory and boot it
862 * @desc: descriptor from pil_desc_init()
863 *
864 * Returns 0 on success or -ERROR on failure.
865 */
866int pil_boot(struct pil_desc *desc)
867{
868 int ret;
869 char fw_name[30];
870 const struct pil_mdt *mdt;
871 const struct elf32_hdr *ehdr;
872 struct pil_seg *seg;
873 const struct firmware *fw;
874 struct pil_priv *priv = desc->priv;
875 bool mem_protect = false;
876 bool hyp_assign = false;
877
Kyle Yan0ceeb642017-09-13 11:21:35 -0700878 ret = pil_notify_aop(desc, "on");
879 if (ret < 0) {
880 pil_err(desc, "Failed to send ON message to AOP rc:%d\n", ret);
881 return ret;
882 }
883
Kyle Yane45fa022016-08-29 11:40:26 -0700884 if (desc->shutdown_fail)
885 pil_err(desc, "Subsystem shutdown failed previously!\n");
886
887 /* Reinitialize for new image */
888 pil_release_mmap(desc);
889
890 down_read(&pil_pm_rwsem);
891 snprintf(fw_name, sizeof(fw_name), "%s.mdt", desc->fw_name);
892 ret = request_firmware(&fw, fw_name, desc->dev);
893 if (ret) {
894 pil_err(desc, "Failed to locate %s(rc:%d)\n", fw_name, ret);
895 goto out;
896 }
897
898 if (fw->size < sizeof(*ehdr)) {
899 pil_err(desc, "Not big enough to be an elf header\n");
900 ret = -EIO;
901 goto release_fw;
902 }
903
904 mdt = (const struct pil_mdt *)fw->data;
905 ehdr = &mdt->hdr;
906
907 if (memcmp(ehdr->e_ident, ELFMAG, SELFMAG)) {
908 pil_err(desc, "Not an elf header\n");
909 ret = -EIO;
910 goto release_fw;
911 }
912
913 if (ehdr->e_phnum == 0) {
914 pil_err(desc, "No loadable segments\n");
915 ret = -EIO;
916 goto release_fw;
917 }
918 if (sizeof(struct elf32_phdr) * ehdr->e_phnum +
919 sizeof(struct elf32_hdr) > fw->size) {
920 pil_err(desc, "Program headers not within mdt\n");
921 ret = -EIO;
922 goto release_fw;
923 }
924
925 ret = pil_init_mmap(desc, mdt);
926 if (ret)
927 goto release_fw;
928
929 desc->priv->unvoted_flag = 0;
930 ret = pil_proxy_vote(desc);
931 if (ret) {
932 pil_err(desc, "Failed to proxy vote(rc:%d)\n", ret);
933 goto release_fw;
934 }
935
Gaurav Kohli2da45012017-05-08 15:21:43 +0530936 trace_pil_event("before_init_image", desc);
Kyle Yane45fa022016-08-29 11:40:26 -0700937 if (desc->ops->init_image)
938 ret = desc->ops->init_image(desc, fw->data, fw->size);
939 if (ret) {
940 pil_err(desc, "Initializing image failed(rc:%d)\n", ret);
941 goto err_boot;
942 }
943
Gaurav Kohli2da45012017-05-08 15:21:43 +0530944 trace_pil_event("before_mem_setup", desc);
Kyle Yane45fa022016-08-29 11:40:26 -0700945 if (desc->ops->mem_setup)
946 ret = desc->ops->mem_setup(desc, priv->region_start,
947 priv->region_end - priv->region_start);
948 if (ret) {
949 pil_err(desc, "Memory setup error(rc:%d)\n", ret);
950 goto err_deinit_image;
951 }
952
953 if (desc->subsys_vmid > 0) {
954 /**
955 * In case of modem ssr, we need to assign memory back to linux.
956 * This is not true after cold boot since linux already owns it.
957 * Also for secure boot devices, modem memory has to be released
958 * after MBA is booted
959 */
Gaurav Kohli2da45012017-05-08 15:21:43 +0530960 trace_pil_event("before_assign_mem", desc);
Kyle Yane45fa022016-08-29 11:40:26 -0700961 if (desc->modem_ssr) {
962 ret = pil_assign_mem_to_linux(desc, priv->region_start,
963 (priv->region_end - priv->region_start));
964 if (ret)
965 pil_err(desc, "Failed to assign to linux, ret- %d\n",
966 ret);
967 }
968 ret = pil_assign_mem_to_subsys_and_linux(desc,
969 priv->region_start,
970 (priv->region_end - priv->region_start));
971 if (ret) {
972 pil_err(desc, "Failed to assign memory, ret - %d\n",
973 ret);
974 goto err_deinit_image;
975 }
976 hyp_assign = true;
977 }
978
Gaurav Kohli2da45012017-05-08 15:21:43 +0530979 trace_pil_event("before_load_seg", desc);
Kyle Yane45fa022016-08-29 11:40:26 -0700980 list_for_each_entry(seg, &desc->priv->segs, list) {
981 ret = pil_load_seg(desc, seg);
982 if (ret)
983 goto err_deinit_image;
984 }
985
986 if (desc->subsys_vmid > 0) {
Gaurav Kohli2da45012017-05-08 15:21:43 +0530987 trace_pil_event("before_reclaim_mem", desc);
Kyle Yane45fa022016-08-29 11:40:26 -0700988 ret = pil_reclaim_mem(desc, priv->region_start,
989 (priv->region_end - priv->region_start),
990 desc->subsys_vmid);
991 if (ret) {
992 pil_err(desc, "Failed to assign %s memory, ret - %d\n",
993 desc->name, ret);
994 goto err_deinit_image;
995 }
996 hyp_assign = false;
997 }
998
Gaurav Kohli2da45012017-05-08 15:21:43 +0530999 trace_pil_event("before_auth_reset", desc);
Kyle Yane45fa022016-08-29 11:40:26 -07001000 ret = desc->ops->auth_and_reset(desc);
1001 if (ret) {
1002 pil_err(desc, "Failed to bring out of reset(rc:%d)\n", ret);
1003 goto err_auth_and_reset;
1004 }
Gaurav Kohli2da45012017-05-08 15:21:43 +05301005 trace_pil_event("reset_done", desc);
Kyle Yane45fa022016-08-29 11:40:26 -07001006 pil_info(desc, "Brought out of reset\n");
1007 desc->modem_ssr = false;
1008err_auth_and_reset:
1009 if (ret && desc->subsys_vmid > 0) {
1010 pil_assign_mem_to_linux(desc, priv->region_start,
1011 (priv->region_end - priv->region_start));
1012 mem_protect = true;
1013 }
1014err_deinit_image:
1015 if (ret && desc->ops->deinit_image)
1016 desc->ops->deinit_image(desc);
1017err_boot:
1018 if (ret && desc->proxy_unvote_irq)
1019 disable_irq(desc->proxy_unvote_irq);
1020 pil_proxy_unvote(desc, ret);
1021release_fw:
1022 release_firmware(fw);
1023out:
1024 up_read(&pil_pm_rwsem);
1025 if (ret) {
1026 if (priv->region) {
1027 if (desc->subsys_vmid > 0 && !mem_protect &&
1028 hyp_assign) {
1029 pil_reclaim_mem(desc, priv->region_start,
1030 (priv->region_end -
1031 priv->region_start),
1032 VMID_HLOS);
1033 }
Avaneesh Kumar Dwivedib2c72692017-04-24 21:51:42 +05301034 if (desc->clear_fw_region && priv->region_start)
1035 pil_clear_segment(desc);
Kyle Yane45fa022016-08-29 11:40:26 -07001036 dma_free_attrs(desc->dev, priv->region_size,
1037 priv->region, priv->region_start,
1038 desc->attrs);
1039 priv->region = NULL;
1040 }
Kyle Yane45fa022016-08-29 11:40:26 -07001041 pil_release_mmap(desc);
Kyle Yan0ceeb642017-09-13 11:21:35 -07001042 pil_notify_aop(desc, "off");
Kyle Yane45fa022016-08-29 11:40:26 -07001043 }
1044 return ret;
1045}
1046EXPORT_SYMBOL(pil_boot);
1047
1048/**
1049 * pil_shutdown() - Shutdown a peripheral
1050 * @desc: descriptor from pil_desc_init()
1051 */
1052void pil_shutdown(struct pil_desc *desc)
1053{
Kyle Yan0ceeb642017-09-13 11:21:35 -07001054 int ret;
Kyle Yane45fa022016-08-29 11:40:26 -07001055 struct pil_priv *priv = desc->priv;
1056
1057 if (desc->ops->shutdown) {
1058 if (desc->ops->shutdown(desc))
1059 desc->shutdown_fail = true;
1060 else
1061 desc->shutdown_fail = false;
1062 }
1063
1064 if (desc->proxy_unvote_irq) {
1065 disable_irq(desc->proxy_unvote_irq);
1066 if (!desc->priv->unvoted_flag)
1067 pil_proxy_unvote(desc, 1);
1068 } else if (!proxy_timeout_ms)
1069 pil_proxy_unvote(desc, 1);
1070 else
1071 flush_delayed_work(&priv->proxy);
Kyle Yan0ceeb642017-09-13 11:21:35 -07001072 ret = pil_notify_aop(desc, "off");
1073 if (ret < 0)
1074 pr_warn("pil: failed to send OFF message to AOP rc:%d\n", ret);
Kyle Yane45fa022016-08-29 11:40:26 -07001075 desc->modem_ssr = true;
1076}
1077EXPORT_SYMBOL(pil_shutdown);
1078
1079/**
1080 * pil_free_memory() - Free memory resources associated with a peripheral
1081 * @desc: descriptor from pil_desc_init()
1082 */
1083void pil_free_memory(struct pil_desc *desc)
1084{
1085 struct pil_priv *priv = desc->priv;
1086
1087 if (priv->region) {
1088 if (desc->subsys_vmid > 0)
1089 pil_assign_mem_to_linux(desc, priv->region_start,
1090 (priv->region_end - priv->region_start));
1091 dma_free_attrs(desc->dev, priv->region_size,
1092 priv->region, priv->region_start, desc->attrs);
1093 priv->region = NULL;
1094 }
1095}
1096EXPORT_SYMBOL(pil_free_memory);
1097
1098static DEFINE_IDA(pil_ida);
1099
1100bool is_timeout_disabled(void)
1101{
1102 return disable_timeouts;
1103}
1104/**
1105 * pil_desc_init() - Initialize a pil descriptor
1106 * @desc: descriptor to initialize
1107 *
1108 * Initialize a pil descriptor for use by other pil functions. This function
1109 * must be called before calling pil_boot() or pil_shutdown().
1110 *
1111 * Returns 0 for success and -ERROR on failure.
1112 */
1113int pil_desc_init(struct pil_desc *desc)
1114{
1115 struct pil_priv *priv;
Kyle Yane45fa022016-08-29 11:40:26 -07001116 void __iomem *addr;
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +05301117 int ret, ss_imem_offset_mdump;
Kyle Yane45fa022016-08-29 11:40:26 -07001118 char buf[sizeof(priv->info->name)];
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +05301119 struct device_node *ofnode = desc->dev->of_node;
Kyle Yane45fa022016-08-29 11:40:26 -07001120
1121 if (WARN(desc->ops->proxy_unvote && !desc->ops->proxy_vote,
1122 "Invalid proxy voting. Ignoring\n"))
1123 ((struct pil_reset_ops *)desc->ops)->proxy_unvote = NULL;
1124
1125 priv = kzalloc(sizeof(*priv), GFP_KERNEL);
1126 if (!priv)
1127 return -ENOMEM;
1128 desc->priv = priv;
1129 priv->desc = desc;
1130
1131 priv->id = ret = ida_simple_get(&pil_ida, 0, PIL_NUM_DESC, GFP_KERNEL);
1132 if (priv->id < 0)
1133 goto err;
1134
1135 if (pil_info_base) {
1136 addr = pil_info_base + sizeof(struct pil_image_info) * priv->id;
1137 priv->info = (struct pil_image_info __iomem *)addr;
1138
1139 strlcpy(buf, desc->name, sizeof(buf));
1140 __iowrite32_copy(priv->info->name, buf, sizeof(buf) / 4);
1141 }
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +05301142 if (of_property_read_u32(ofnode, "qcom,minidump-id",
1143 &priv->minidump_id))
1144 pr_debug("minidump-id not found for %s\n", desc->name);
1145 else {
1146 ss_imem_offset_mdump =
1147 sizeof(struct md_ssr_ss_info) * priv->minidump_id;
1148 if (pil_minidump_base) {
1149 /* Add 0x4 to get start of struct md_ssr_ss_info base
1150 * from struct md_ssr_toc for any subsystem,
1151 * struct md_ssr_ss_info is actually the pointer
1152 * of ToC in smem for any subsystem.
1153 */
1154 addr = pil_minidump_base + ss_imem_offset_mdump + 0x4;
1155 priv->minidump = (struct md_ssr_ss_info __iomem *)addr;
1156 }
1157 }
Kyle Yane45fa022016-08-29 11:40:26 -07001158
1159 ret = pil_parse_devicetree(desc);
1160 if (ret)
1161 goto err_parse_dt;
1162
1163 /* Ignore users who don't make any sense */
1164 WARN(desc->ops->proxy_unvote && desc->proxy_unvote_irq == 0
1165 && !desc->proxy_timeout,
1166 "Invalid proxy unvote callback or a proxy timeout of 0 was specified or no proxy unvote IRQ was specified.\n");
1167
1168 if (desc->proxy_unvote_irq) {
1169 ret = request_threaded_irq(desc->proxy_unvote_irq,
1170 NULL,
1171 proxy_unvote_intr_handler,
1172 IRQF_ONESHOT | IRQF_TRIGGER_RISING,
1173 desc->name, desc);
1174 if (ret < 0) {
1175 dev_err(desc->dev,
1176 "Unable to request proxy unvote IRQ: %d\n",
1177 ret);
1178 goto err;
1179 }
1180 disable_irq(desc->proxy_unvote_irq);
1181 }
1182
1183 snprintf(priv->wname, sizeof(priv->wname), "pil-%s", desc->name);
1184 wakeup_source_init(&priv->ws, priv->wname);
1185 INIT_DELAYED_WORK(&priv->proxy, pil_proxy_unvote_work);
1186 INIT_LIST_HEAD(&priv->segs);
1187
1188 /* Make sure mapping functions are set. */
1189 if (!desc->map_fw_mem)
1190 desc->map_fw_mem = map_fw_mem;
1191
1192 if (!desc->unmap_fw_mem)
1193 desc->unmap_fw_mem = unmap_fw_mem;
1194
1195 return 0;
1196err_parse_dt:
1197 ida_simple_remove(&pil_ida, priv->id);
1198err:
1199 kfree(priv);
1200 return ret;
1201}
1202EXPORT_SYMBOL(pil_desc_init);
1203
1204/**
1205 * pil_desc_release() - Release a pil descriptor
1206 * @desc: descriptor to free
1207 */
1208void pil_desc_release(struct pil_desc *desc)
1209{
1210 struct pil_priv *priv = desc->priv;
1211
1212 if (priv) {
1213 ida_simple_remove(&pil_ida, priv->id);
1214 flush_delayed_work(&priv->proxy);
1215 wakeup_source_trash(&priv->ws);
1216 }
1217 desc->priv = NULL;
1218 kfree(priv);
1219}
1220EXPORT_SYMBOL(pil_desc_release);
1221
1222static int pil_pm_notify(struct notifier_block *b, unsigned long event, void *p)
1223{
1224 switch (event) {
1225 case PM_SUSPEND_PREPARE:
1226 down_write(&pil_pm_rwsem);
1227 break;
1228 case PM_POST_SUSPEND:
1229 up_write(&pil_pm_rwsem);
1230 break;
1231 }
1232 return NOTIFY_DONE;
1233}
1234
1235static struct notifier_block pil_pm_notifier = {
1236 .notifier_call = pil_pm_notify,
1237};
1238
1239static int __init msm_pil_init(void)
1240{
1241 struct device_node *np;
1242 struct resource res;
1243 int i;
1244
1245 np = of_find_compatible_node(NULL, NULL, "qcom,msm-imem-pil");
1246 if (!np) {
1247 pr_warn("pil: failed to find qcom,msm-imem-pil node\n");
1248 goto out;
1249 }
1250 if (of_address_to_resource(np, 0, &res)) {
1251 pr_warn("pil: address to resource on imem region failed\n");
1252 goto out;
1253 }
1254 pil_info_base = ioremap(res.start, resource_size(&res));
1255 if (!pil_info_base) {
1256 pr_warn("pil: could not map imem region\n");
1257 goto out;
1258 }
1259 if (__raw_readl(pil_info_base) == 0x53444247) {
1260 pr_info("pil: pil-imem set to disable pil timeouts\n");
1261 disable_timeouts = true;
1262 }
1263 for (i = 0; i < resource_size(&res)/sizeof(u32); i++)
1264 writel_relaxed(0, pil_info_base + (i * sizeof(u32)));
1265
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +05301266 np = of_find_compatible_node(NULL, NULL, "qcom,msm-imem-minidump");
1267 if (!np) {
1268 pr_warn("pil: failed to find qcom,msm-imem-minidump node\n");
1269 goto out;
1270 } else {
1271 pil_minidump_base = of_iomap(np, 0);
1272 if (!pil_minidump_base) {
1273 pr_err("unable to map pil minidump imem offset\n");
1274 goto out;
1275 }
1276 }
1277 for (i = 0; i < sizeof(struct md_ssr_toc)/sizeof(u32); i++)
1278 writel_relaxed(0, pil_minidump_base + (i * sizeof(u32)));
1279 writel_relaxed(1, pil_minidump_base);
Kyle Yane45fa022016-08-29 11:40:26 -07001280out:
1281 return register_pm_notifier(&pil_pm_notifier);
1282}
1283device_initcall(msm_pil_init);
1284
1285static void __exit msm_pil_exit(void)
1286{
1287 unregister_pm_notifier(&pil_pm_notifier);
1288 if (pil_info_base)
1289 iounmap(pil_info_base);
Avaneesh Kumar Dwivediec6d1392017-07-06 21:18:03 +05301290 if (pil_minidump_base)
1291 iounmap(pil_minidump_base);
Kyle Yane45fa022016-08-29 11:40:26 -07001292}
1293module_exit(msm_pil_exit);
1294
1295MODULE_LICENSE("GPL v2");
1296MODULE_DESCRIPTION("Load peripheral images and bring peripherals out of reset");