11802d0beSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2400e64dfSOhad Ben-Cohen /*
3400e64dfSOhad Ben-Cohen  * Remote Processor Framework
4400e64dfSOhad Ben-Cohen  *
5400e64dfSOhad Ben-Cohen  * Copyright (C) 2011 Texas Instruments, Inc.
6400e64dfSOhad Ben-Cohen  * Copyright (C) 2011 Google, Inc.
7400e64dfSOhad Ben-Cohen  *
8400e64dfSOhad Ben-Cohen  * Ohad Ben-Cohen <ohad@wizery.com>
9400e64dfSOhad Ben-Cohen  * Brian Swetland <swetland@google.com>
10400e64dfSOhad Ben-Cohen  * Mark Grosen <mgrosen@ti.com>
11400e64dfSOhad Ben-Cohen  * Fernando Guzman Lugo <fernando.lugo@ti.com>
12400e64dfSOhad Ben-Cohen  * Suman Anna <s-anna@ti.com>
13400e64dfSOhad Ben-Cohen  * Robert Tivy <rtivy@ti.com>
14400e64dfSOhad Ben-Cohen  * Armando Uribe De Leon <x0095078@ti.com>
15400e64dfSOhad Ben-Cohen  */
16400e64dfSOhad Ben-Cohen 
17400e64dfSOhad Ben-Cohen #define pr_fmt(fmt)    "%s: " fmt, __func__
18400e64dfSOhad Ben-Cohen 
19dc5192c4SBjorn Andersson #include <linux/delay.h>
20400e64dfSOhad Ben-Cohen #include <linux/kernel.h>
21400e64dfSOhad Ben-Cohen #include <linux/module.h>
22400e64dfSOhad Ben-Cohen #include <linux/device.h>
23f39650deSAndy Shevchenko #include <linux/panic_notifier.h>
24400e64dfSOhad Ben-Cohen #include <linux/slab.h>
25400e64dfSOhad Ben-Cohen #include <linux/mutex.h>
260a0f0d8bSChristoph Hellwig #include <linux/dma-map-ops.h>
27400e64dfSOhad Ben-Cohen #include <linux/dma-mapping.h>
28e0d07278SJim Quinlan #include <linux/dma-direct.h> /* XXX: pokes into bus_dma_range */
29400e64dfSOhad Ben-Cohen #include <linux/firmware.h>
30400e64dfSOhad Ben-Cohen #include <linux/string.h>
31400e64dfSOhad Ben-Cohen #include <linux/debugfs.h>
32c0abe2caSBjorn Andersson #include <linux/rculist.h>
33400e64dfSOhad Ben-Cohen #include <linux/remoteproc.h>
34400e64dfSOhad Ben-Cohen #include <linux/iommu.h>
35b5ab5e24SOhad Ben-Cohen #include <linux/idr.h>
36400e64dfSOhad Ben-Cohen #include <linux/elf.h>
37a2b950acSOhad Ben-Cohen #include <linux/crc32.h>
38086d0872SLoic Pallardy #include <linux/of_reserved_mem.h>
39400e64dfSOhad Ben-Cohen #include <linux/virtio_ids.h>
40400e64dfSOhad Ben-Cohen #include <linux/virtio_ring.h>
41cf59d3e9SOhad Ben-Cohen #include <asm/byteorder.h>
42086d0872SLoic Pallardy #include <linux/platform_device.h>
43400e64dfSOhad Ben-Cohen 
44400e64dfSOhad Ben-Cohen #include "remoteproc_internal.h"
45400e64dfSOhad Ben-Cohen 
46b36de8cfSLoic Pallardy #define HIGH_BITS_MASK 0xFFFFFFFF00000000ULL
47b36de8cfSLoic Pallardy 
48fec47d86SDave Gerlach static DEFINE_MUTEX(rproc_list_mutex);
49fec47d86SDave Gerlach static LIST_HEAD(rproc_list);
50dc5192c4SBjorn Andersson static struct notifier_block rproc_panic_nb;
51fec47d86SDave Gerlach 
52a2b950acSOhad Ben-Cohen typedef int (*rproc_handle_resource_t)(struct rproc *rproc,
53a2b950acSOhad Ben-Cohen 				 void *, int offset, int avail);
54400e64dfSOhad Ben-Cohen 
55c6aed238SLoic Pallardy static int rproc_alloc_carveout(struct rproc *rproc,
56c6aed238SLoic Pallardy 				struct rproc_mem_entry *mem);
57c6aed238SLoic Pallardy static int rproc_release_carveout(struct rproc *rproc,
58c6aed238SLoic Pallardy 				  struct rproc_mem_entry *mem);
59c6aed238SLoic Pallardy 
60b5ab5e24SOhad Ben-Cohen /* Unique indices for remoteproc devices */
61b5ab5e24SOhad Ben-Cohen static DEFINE_IDA(rproc_dev_index);
62b5ab5e24SOhad Ben-Cohen 
638afd519cSFernando Guzman Lugo static const char * const rproc_crash_names[] = {
648afd519cSFernando Guzman Lugo 	[RPROC_MMUFAULT]	= "mmufault",
65b3d39032SBjorn Andersson 	[RPROC_WATCHDOG]	= "watchdog",
66b3d39032SBjorn Andersson 	[RPROC_FATAL_ERROR]	= "fatal error",
678afd519cSFernando Guzman Lugo };
688afd519cSFernando Guzman Lugo 
698afd519cSFernando Guzman Lugo /* translate rproc_crash_type to string */
708afd519cSFernando Guzman Lugo static const char *rproc_crash_to_string(enum rproc_crash_type type)
718afd519cSFernando Guzman Lugo {
728afd519cSFernando Guzman Lugo 	if (type < ARRAY_SIZE(rproc_crash_names))
738afd519cSFernando Guzman Lugo 		return rproc_crash_names[type];
74b23f7a09SMasanari Iida 	return "unknown";
758afd519cSFernando Guzman Lugo }
768afd519cSFernando Guzman Lugo 
77400e64dfSOhad Ben-Cohen /*
78400e64dfSOhad Ben-Cohen  * This is the IOMMU fault handler we register with the IOMMU API
79400e64dfSOhad Ben-Cohen  * (when relevant; not all remote processors access memory through
80400e64dfSOhad Ben-Cohen  * an IOMMU).
81400e64dfSOhad Ben-Cohen  *
82400e64dfSOhad Ben-Cohen  * IOMMU core will invoke this handler whenever the remote processor
83400e64dfSOhad Ben-Cohen  * will try to access an unmapped device address.
84400e64dfSOhad Ben-Cohen  */
85400e64dfSOhad Ben-Cohen static int rproc_iommu_fault(struct iommu_domain *domain, struct device *dev,
8677ca2332SOhad Ben-Cohen 			     unsigned long iova, int flags, void *token)
87400e64dfSOhad Ben-Cohen {
888afd519cSFernando Guzman Lugo 	struct rproc *rproc = token;
898afd519cSFernando Guzman Lugo 
90400e64dfSOhad Ben-Cohen 	dev_err(dev, "iommu fault: da 0x%lx flags 0x%x\n", iova, flags);
91400e64dfSOhad Ben-Cohen 
928afd519cSFernando Guzman Lugo 	rproc_report_crash(rproc, RPROC_MMUFAULT);
938afd519cSFernando Guzman Lugo 
94400e64dfSOhad Ben-Cohen 	/*
95400e64dfSOhad Ben-Cohen 	 * Let the iommu core know we're not really handling this fault;
968afd519cSFernando Guzman Lugo 	 * we just used it as a recovery trigger.
97400e64dfSOhad Ben-Cohen 	 */
98400e64dfSOhad Ben-Cohen 	return -ENOSYS;
99400e64dfSOhad Ben-Cohen }
100400e64dfSOhad Ben-Cohen 
101400e64dfSOhad Ben-Cohen static int rproc_enable_iommu(struct rproc *rproc)
102400e64dfSOhad Ben-Cohen {
103400e64dfSOhad Ben-Cohen 	struct iommu_domain *domain;
104b5ab5e24SOhad Ben-Cohen 	struct device *dev = rproc->dev.parent;
105400e64dfSOhad Ben-Cohen 	int ret;
106400e64dfSOhad Ben-Cohen 
107315491e5SSuman Anna 	if (!rproc->has_iommu) {
108315491e5SSuman Anna 		dev_dbg(dev, "iommu not present\n");
1090798e1daSMark Grosen 		return 0;
110400e64dfSOhad Ben-Cohen 	}
111400e64dfSOhad Ben-Cohen 
112400e64dfSOhad Ben-Cohen 	domain = iommu_domain_alloc(dev->bus);
113400e64dfSOhad Ben-Cohen 	if (!domain) {
114400e64dfSOhad Ben-Cohen 		dev_err(dev, "can't alloc iommu domain\n");
115400e64dfSOhad Ben-Cohen 		return -ENOMEM;
116400e64dfSOhad Ben-Cohen 	}
117400e64dfSOhad Ben-Cohen 
11877ca2332SOhad Ben-Cohen 	iommu_set_fault_handler(domain, rproc_iommu_fault, rproc);
119400e64dfSOhad Ben-Cohen 
120400e64dfSOhad Ben-Cohen 	ret = iommu_attach_device(domain, dev);
121400e64dfSOhad Ben-Cohen 	if (ret) {
122400e64dfSOhad Ben-Cohen 		dev_err(dev, "can't attach iommu device: %d\n", ret);
123400e64dfSOhad Ben-Cohen 		goto free_domain;
124400e64dfSOhad Ben-Cohen 	}
125400e64dfSOhad Ben-Cohen 
126400e64dfSOhad Ben-Cohen 	rproc->domain = domain;
127400e64dfSOhad Ben-Cohen 
128400e64dfSOhad Ben-Cohen 	return 0;
129400e64dfSOhad Ben-Cohen 
130400e64dfSOhad Ben-Cohen free_domain:
131400e64dfSOhad Ben-Cohen 	iommu_domain_free(domain);
132400e64dfSOhad Ben-Cohen 	return ret;
133400e64dfSOhad Ben-Cohen }
134400e64dfSOhad Ben-Cohen 
135400e64dfSOhad Ben-Cohen static void rproc_disable_iommu(struct rproc *rproc)
136400e64dfSOhad Ben-Cohen {
137400e64dfSOhad Ben-Cohen 	struct iommu_domain *domain = rproc->domain;
138b5ab5e24SOhad Ben-Cohen 	struct device *dev = rproc->dev.parent;
139400e64dfSOhad Ben-Cohen 
140400e64dfSOhad Ben-Cohen 	if (!domain)
141400e64dfSOhad Ben-Cohen 		return;
142400e64dfSOhad Ben-Cohen 
143400e64dfSOhad Ben-Cohen 	iommu_detach_device(domain, dev);
144400e64dfSOhad Ben-Cohen 	iommu_domain_free(domain);
145400e64dfSOhad Ben-Cohen }
146400e64dfSOhad Ben-Cohen 
147086d0872SLoic Pallardy phys_addr_t rproc_va_to_pa(void *cpu_addr)
148eb30596eSLoic Pallardy {
149eb30596eSLoic Pallardy 	/*
150eb30596eSLoic Pallardy 	 * Return physical address according to virtual address location
151eb30596eSLoic Pallardy 	 * - in vmalloc: if region ioremapped or defined as dma_alloc_coherent
152eb30596eSLoic Pallardy 	 * - in kernel: if region allocated in generic dma memory pool
153eb30596eSLoic Pallardy 	 */
154eb30596eSLoic Pallardy 	if (is_vmalloc_addr(cpu_addr)) {
155eb30596eSLoic Pallardy 		return page_to_phys(vmalloc_to_page(cpu_addr)) +
156eb30596eSLoic Pallardy 				    offset_in_page(cpu_addr);
157eb30596eSLoic Pallardy 	}
158eb30596eSLoic Pallardy 
159eb30596eSLoic Pallardy 	WARN_ON(!virt_addr_valid(cpu_addr));
160eb30596eSLoic Pallardy 	return virt_to_phys(cpu_addr);
161eb30596eSLoic Pallardy }
162086d0872SLoic Pallardy EXPORT_SYMBOL(rproc_va_to_pa);
163eb30596eSLoic Pallardy 
164a01f7cd6SSuman Anna /**
165a01f7cd6SSuman Anna  * rproc_da_to_va() - lookup the kernel virtual address for a remoteproc address
166a01f7cd6SSuman Anna  * @rproc: handle of a remote processor
167a01f7cd6SSuman Anna  * @da: remoteproc device address to translate
168a01f7cd6SSuman Anna  * @len: length of the memory region @da is pointing to
16995347e73SSuman Anna  * @is_iomem: optional pointer filled in to indicate if @da is iomapped memory
170a01f7cd6SSuman Anna  *
171400e64dfSOhad Ben-Cohen  * Some remote processors will ask us to allocate them physically contiguous
172400e64dfSOhad Ben-Cohen  * memory regions (which we call "carveouts"), and map them to specific
173a01f7cd6SSuman Anna  * device addresses (which are hardcoded in the firmware). They may also have
174a01f7cd6SSuman Anna  * dedicated memory regions internal to the processors, and use them either
175a01f7cd6SSuman Anna  * exclusively or alongside carveouts.
176400e64dfSOhad Ben-Cohen  *
177400e64dfSOhad Ben-Cohen  * They may then ask us to copy objects into specific device addresses (e.g.
178400e64dfSOhad Ben-Cohen  * code/data sections) or expose us certain symbols in other device address
179400e64dfSOhad Ben-Cohen  * (e.g. their trace buffer).
180400e64dfSOhad Ben-Cohen  *
181a01f7cd6SSuman Anna  * This function is a helper function with which we can go over the allocated
182a01f7cd6SSuman Anna  * carveouts and translate specific device addresses to kernel virtual addresses
183a01f7cd6SSuman Anna  * so we can access the referenced memory. This function also allows to perform
184a01f7cd6SSuman Anna  * translations on the internal remoteproc memory regions through a platform
185a01f7cd6SSuman Anna  * implementation specific da_to_va ops, if present.
186a01f7cd6SSuman Anna  *
187400e64dfSOhad Ben-Cohen  * Note: phys_to_virt(iommu_iova_to_phys(rproc->domain, da)) will work too,
188400e64dfSOhad Ben-Cohen  * but only on kernel direct mapped RAM memory. Instead, we're just using
189a01f7cd6SSuman Anna  * here the output of the DMA API for the carveouts, which should be more
190a01f7cd6SSuman Anna  * correct.
191f2867434SSuman Anna  *
192f2867434SSuman Anna  * Return: a valid kernel address on success or NULL on failure
193400e64dfSOhad Ben-Cohen  */
19440df0a91SPeng Fan void *rproc_da_to_va(struct rproc *rproc, u64 da, size_t len, bool *is_iomem)
195400e64dfSOhad Ben-Cohen {
196400e64dfSOhad Ben-Cohen 	struct rproc_mem_entry *carveout;
197400e64dfSOhad Ben-Cohen 	void *ptr = NULL;
198400e64dfSOhad Ben-Cohen 
199a01f7cd6SSuman Anna 	if (rproc->ops->da_to_va) {
20040df0a91SPeng Fan 		ptr = rproc->ops->da_to_va(rproc, da, len, is_iomem);
201a01f7cd6SSuman Anna 		if (ptr)
202a01f7cd6SSuman Anna 			goto out;
203a01f7cd6SSuman Anna 	}
204a01f7cd6SSuman Anna 
205400e64dfSOhad Ben-Cohen 	list_for_each_entry(carveout, &rproc->carveouts, node) {
206400e64dfSOhad Ben-Cohen 		int offset = da - carveout->da;
207400e64dfSOhad Ben-Cohen 
20874457c40SLoic Pallardy 		/*  Verify that carveout is allocated */
20974457c40SLoic Pallardy 		if (!carveout->va)
21074457c40SLoic Pallardy 			continue;
21174457c40SLoic Pallardy 
212400e64dfSOhad Ben-Cohen 		/* try next carveout if da is too small */
213400e64dfSOhad Ben-Cohen 		if (offset < 0)
214400e64dfSOhad Ben-Cohen 			continue;
215400e64dfSOhad Ben-Cohen 
216400e64dfSOhad Ben-Cohen 		/* try next carveout if da is too large */
217400e64dfSOhad Ben-Cohen 		if (offset + len > carveout->len)
218400e64dfSOhad Ben-Cohen 			continue;
219400e64dfSOhad Ben-Cohen 
220400e64dfSOhad Ben-Cohen 		ptr = carveout->va + offset;
221400e64dfSOhad Ben-Cohen 
22240df0a91SPeng Fan 		if (is_iomem)
22340df0a91SPeng Fan 			*is_iomem = carveout->is_iomem;
22440df0a91SPeng Fan 
225400e64dfSOhad Ben-Cohen 		break;
226400e64dfSOhad Ben-Cohen 	}
227400e64dfSOhad Ben-Cohen 
228a01f7cd6SSuman Anna out:
229400e64dfSOhad Ben-Cohen 	return ptr;
230400e64dfSOhad Ben-Cohen }
2314afc89d6SSjur Brændeland EXPORT_SYMBOL(rproc_da_to_va);
232400e64dfSOhad Ben-Cohen 
233b0019ccdSLoic Pallardy /**
234b0019ccdSLoic Pallardy  * rproc_find_carveout_by_name() - lookup the carveout region by a name
235b0019ccdSLoic Pallardy  * @rproc: handle of a remote processor
2362e7d4c2cSArnaud Pouliquen  * @name: carveout name to find (format string)
2372e7d4c2cSArnaud Pouliquen  * @...: optional parameters matching @name string
238b0019ccdSLoic Pallardy  *
239b0019ccdSLoic Pallardy  * Platform driver has the capability to register some pre-allacoted carveout
240b0019ccdSLoic Pallardy  * (physically contiguous memory regions) before rproc firmware loading and
241b0019ccdSLoic Pallardy  * associated resource table analysis. These regions may be dedicated memory
242b0019ccdSLoic Pallardy  * regions internal to the coprocessor or specified DDR region with specific
243b0019ccdSLoic Pallardy  * attributes
244b0019ccdSLoic Pallardy  *
245b0019ccdSLoic Pallardy  * This function is a helper function with which we can go over the
246b0019ccdSLoic Pallardy  * allocated carveouts and return associated region characteristics like
247b0019ccdSLoic Pallardy  * coprocessor address, length or processor virtual address.
248b0019ccdSLoic Pallardy  *
249b0019ccdSLoic Pallardy  * Return: a valid pointer on carveout entry on success or NULL on failure.
250b0019ccdSLoic Pallardy  */
2517e05c8deSLee Jones __printf(2, 3)
252b0019ccdSLoic Pallardy struct rproc_mem_entry *
253b0019ccdSLoic Pallardy rproc_find_carveout_by_name(struct rproc *rproc, const char *name, ...)
254b0019ccdSLoic Pallardy {
255b0019ccdSLoic Pallardy 	va_list args;
256b0019ccdSLoic Pallardy 	char _name[32];
257b0019ccdSLoic Pallardy 	struct rproc_mem_entry *carveout, *mem = NULL;
258b0019ccdSLoic Pallardy 
259b0019ccdSLoic Pallardy 	if (!name)
260b0019ccdSLoic Pallardy 		return NULL;
261b0019ccdSLoic Pallardy 
262b0019ccdSLoic Pallardy 	va_start(args, name);
263b0019ccdSLoic Pallardy 	vsnprintf(_name, sizeof(_name), name, args);
264b0019ccdSLoic Pallardy 	va_end(args);
265b0019ccdSLoic Pallardy 
266b0019ccdSLoic Pallardy 	list_for_each_entry(carveout, &rproc->carveouts, node) {
267b0019ccdSLoic Pallardy 		/* Compare carveout and requested names */
268b0019ccdSLoic Pallardy 		if (!strcmp(carveout->name, _name)) {
269b0019ccdSLoic Pallardy 			mem = carveout;
270b0019ccdSLoic Pallardy 			break;
271b0019ccdSLoic Pallardy 		}
272b0019ccdSLoic Pallardy 	}
273b0019ccdSLoic Pallardy 
274b0019ccdSLoic Pallardy 	return mem;
275b0019ccdSLoic Pallardy }
276b0019ccdSLoic Pallardy 
277c874bf59SLoic Pallardy /**
278c874bf59SLoic Pallardy  * rproc_check_carveout_da() - Check specified carveout da configuration
279c874bf59SLoic Pallardy  * @rproc: handle of a remote processor
280c874bf59SLoic Pallardy  * @mem: pointer on carveout to check
281c874bf59SLoic Pallardy  * @da: area device address
282c874bf59SLoic Pallardy  * @len: associated area size
283c874bf59SLoic Pallardy  *
284c874bf59SLoic Pallardy  * This function is a helper function to verify requested device area (couple
28528d7d5c6SLoic Pallardy  * da, len) is part of specified carveout.
28628d7d5c6SLoic Pallardy  * If da is not set (defined as FW_RSC_ADDR_ANY), only requested length is
28728d7d5c6SLoic Pallardy  * checked.
288c874bf59SLoic Pallardy  *
28928d7d5c6SLoic Pallardy  * Return: 0 if carveout matches request else error
290c874bf59SLoic Pallardy  */
29128d7d5c6SLoic Pallardy static int rproc_check_carveout_da(struct rproc *rproc,
29228d7d5c6SLoic Pallardy 				   struct rproc_mem_entry *mem, u32 da, u32 len)
293c874bf59SLoic Pallardy {
294c874bf59SLoic Pallardy 	struct device *dev = &rproc->dev;
29528d7d5c6SLoic Pallardy 	int delta;
296c874bf59SLoic Pallardy 
297c874bf59SLoic Pallardy 	/* Check requested resource length */
298c874bf59SLoic Pallardy 	if (len > mem->len) {
299c874bf59SLoic Pallardy 		dev_err(dev, "Registered carveout doesn't fit len request\n");
30028d7d5c6SLoic Pallardy 		return -EINVAL;
301c874bf59SLoic Pallardy 	}
302c874bf59SLoic Pallardy 
303c874bf59SLoic Pallardy 	if (da != FW_RSC_ADDR_ANY && mem->da == FW_RSC_ADDR_ANY) {
30428d7d5c6SLoic Pallardy 		/* Address doesn't match registered carveout configuration */
30528d7d5c6SLoic Pallardy 		return -EINVAL;
306c874bf59SLoic Pallardy 	} else if (da != FW_RSC_ADDR_ANY && mem->da != FW_RSC_ADDR_ANY) {
307c874bf59SLoic Pallardy 		delta = da - mem->da;
308c874bf59SLoic Pallardy 
309c874bf59SLoic Pallardy 		/* Check requested resource belongs to registered carveout */
310c874bf59SLoic Pallardy 		if (delta < 0) {
311c874bf59SLoic Pallardy 			dev_err(dev,
312c874bf59SLoic Pallardy 				"Registered carveout doesn't fit da request\n");
31328d7d5c6SLoic Pallardy 			return -EINVAL;
314c874bf59SLoic Pallardy 		}
315c874bf59SLoic Pallardy 
316c874bf59SLoic Pallardy 		if (delta + len > mem->len) {
317c874bf59SLoic Pallardy 			dev_err(dev,
318c874bf59SLoic Pallardy 				"Registered carveout doesn't fit len request\n");
31928d7d5c6SLoic Pallardy 			return -EINVAL;
320c874bf59SLoic Pallardy 		}
321c874bf59SLoic Pallardy 	}
322c874bf59SLoic Pallardy 
323c874bf59SLoic Pallardy 	return 0;
324c874bf59SLoic Pallardy }
325c874bf59SLoic Pallardy 
3266db20ea8SOhad Ben-Cohen int rproc_alloc_vring(struct rproc_vdev *rvdev, int i)
327400e64dfSOhad Ben-Cohen {
3287a186941SOhad Ben-Cohen 	struct rproc *rproc = rvdev->rproc;
329b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
3306db20ea8SOhad Ben-Cohen 	struct rproc_vring *rvring = &rvdev->vring[i];
331c0d63157SSjur Brændeland 	struct fw_rsc_vdev *rsc;
332096ee786SClement Leger 	int ret, notifyid;
333c6aed238SLoic Pallardy 	struct rproc_mem_entry *mem;
334096ee786SClement Leger 	size_t size;
335400e64dfSOhad Ben-Cohen 
3366db20ea8SOhad Ben-Cohen 	/* actual size of vring (in bytes) */
3376db20ea8SOhad Ben-Cohen 	size = PAGE_ALIGN(vring_size(rvring->len, rvring->align));
3386db20ea8SOhad Ben-Cohen 
339c6aed238SLoic Pallardy 	rsc = (void *)rproc->table_ptr + rvdev->rsc_offset;
340c6aed238SLoic Pallardy 
341c6aed238SLoic Pallardy 	/* Search for pre-registered carveout */
342c6aed238SLoic Pallardy 	mem = rproc_find_carveout_by_name(rproc, "vdev%dvring%d", rvdev->index,
343c6aed238SLoic Pallardy 					  i);
344c6aed238SLoic Pallardy 	if (mem) {
345c6aed238SLoic Pallardy 		if (rproc_check_carveout_da(rproc, mem, rsc->vring[i].da, size))
346c6aed238SLoic Pallardy 			return -ENOMEM;
347c6aed238SLoic Pallardy 	} else {
348c6aed238SLoic Pallardy 		/* Register carveout in in list */
34999cf0361SBen Dooks (Codethink) 		mem = rproc_mem_entry_init(dev, NULL, 0,
35099cf0361SBen Dooks (Codethink) 					   size, rsc->vring[i].da,
351c6aed238SLoic Pallardy 					   rproc_alloc_carveout,
352c6aed238SLoic Pallardy 					   rproc_release_carveout,
353c6aed238SLoic Pallardy 					   "vdev%dvring%d",
354c6aed238SLoic Pallardy 					   rvdev->index, i);
355c6aed238SLoic Pallardy 		if (!mem) {
356c6aed238SLoic Pallardy 			dev_err(dev, "Can't allocate memory entry structure\n");
357c6aed238SLoic Pallardy 			return -ENOMEM;
358c6aed238SLoic Pallardy 		}
359c6aed238SLoic Pallardy 
360c6aed238SLoic Pallardy 		rproc_add_carveout(rproc, mem);
3616db20ea8SOhad Ben-Cohen 	}
3626db20ea8SOhad Ben-Cohen 
3636db20ea8SOhad Ben-Cohen 	/*
3646db20ea8SOhad Ben-Cohen 	 * Assign an rproc-wide unique index for this vring
3656db20ea8SOhad Ben-Cohen 	 * TODO: assign a notifyid for rvdev updates as well
3666db20ea8SOhad Ben-Cohen 	 * TODO: support predefined notifyids (via resource table)
3676db20ea8SOhad Ben-Cohen 	 */
36815fc6110STejun Heo 	ret = idr_alloc(&rproc->notifyids, rvring, 0, 0, GFP_KERNEL);
369b39599b7SSuman Anna 	if (ret < 0) {
37015fc6110STejun Heo 		dev_err(dev, "idr_alloc failed: %d\n", ret);
3716db20ea8SOhad Ben-Cohen 		return ret;
3726db20ea8SOhad Ben-Cohen 	}
37315fc6110STejun Heo 	notifyid = ret;
3746db20ea8SOhad Ben-Cohen 
37548f18f89SBjorn Andersson 	/* Potentially bump max_notifyid */
37648f18f89SBjorn Andersson 	if (notifyid > rproc->max_notifyid)
37748f18f89SBjorn Andersson 		rproc->max_notifyid = notifyid;
37848f18f89SBjorn Andersson 
3796db20ea8SOhad Ben-Cohen 	rvring->notifyid = notifyid;
3806db20ea8SOhad Ben-Cohen 
381c6aed238SLoic Pallardy 	/* Let the rproc know the notifyid of this vring.*/
382c0d63157SSjur Brændeland 	rsc->vring[i].notifyid = notifyid;
3836db20ea8SOhad Ben-Cohen 	return 0;
3846db20ea8SOhad Ben-Cohen }
3856db20ea8SOhad Ben-Cohen 
386400e64dfSOhad Ben-Cohen static int
3876db20ea8SOhad Ben-Cohen rproc_parse_vring(struct rproc_vdev *rvdev, struct fw_rsc_vdev *rsc, int i)
388400e64dfSOhad Ben-Cohen {
389400e64dfSOhad Ben-Cohen 	struct rproc *rproc = rvdev->rproc;
390b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
391400e64dfSOhad Ben-Cohen 	struct fw_rsc_vdev_vring *vring = &rsc->vring[i];
3926db20ea8SOhad Ben-Cohen 	struct rproc_vring *rvring = &rvdev->vring[i];
393400e64dfSOhad Ben-Cohen 
3949d7814a9SAnna, Suman 	dev_dbg(dev, "vdev rsc: vring%d: da 0x%x, qsz %d, align %d\n",
3957a186941SOhad Ben-Cohen 		i, vring->da, vring->num, vring->align);
3967a186941SOhad Ben-Cohen 
39763140e0eSOhad Ben-Cohen 	/* verify queue size and vring alignment are sane */
39863140e0eSOhad Ben-Cohen 	if (!vring->num || !vring->align) {
39963140e0eSOhad Ben-Cohen 		dev_err(dev, "invalid qsz (%d) or alignment (%d)\n",
40063140e0eSOhad Ben-Cohen 			vring->num, vring->align);
401400e64dfSOhad Ben-Cohen 		return -EINVAL;
402400e64dfSOhad Ben-Cohen 	}
403400e64dfSOhad Ben-Cohen 
4046db20ea8SOhad Ben-Cohen 	rvring->len = vring->num;
4056db20ea8SOhad Ben-Cohen 	rvring->align = vring->align;
4066db20ea8SOhad Ben-Cohen 	rvring->rvdev = rvdev;
407400e64dfSOhad Ben-Cohen 
408400e64dfSOhad Ben-Cohen 	return 0;
409400e64dfSOhad Ben-Cohen }
410400e64dfSOhad Ben-Cohen 
4116db20ea8SOhad Ben-Cohen void rproc_free_vring(struct rproc_vring *rvring)
4127a186941SOhad Ben-Cohen {
4136db20ea8SOhad Ben-Cohen 	struct rproc *rproc = rvring->rvdev->rproc;
41400a0eec5SClement Leger 	int idx = rvring - rvring->rvdev->vring;
415c0d63157SSjur Brændeland 	struct fw_rsc_vdev *rsc;
4167a186941SOhad Ben-Cohen 
4177a186941SOhad Ben-Cohen 	idr_remove(&rproc->notifyids, rvring->notifyid);
418099a3f33SSjur Brændeland 
4194d3ebb3bSMathieu Poirier 	/*
4204d3ebb3bSMathieu Poirier 	 * At this point rproc_stop() has been called and the installed resource
4214d3ebb3bSMathieu Poirier 	 * table in the remote processor memory may no longer be accessible. As
4224d3ebb3bSMathieu Poirier 	 * such and as per rproc_stop(), rproc->table_ptr points to the cached
4234d3ebb3bSMathieu Poirier 	 * resource table (rproc->cached_table).  The cached resource table is
4244d3ebb3bSMathieu Poirier 	 * only available when a remote processor has been booted by the
4254d3ebb3bSMathieu Poirier 	 * remoteproc core, otherwise it is NULL.
4264d3ebb3bSMathieu Poirier 	 *
4274d3ebb3bSMathieu Poirier 	 * Based on the above, reset the virtio device section in the cached
4284d3ebb3bSMathieu Poirier 	 * resource table only if there is one to work with.
4294d3ebb3bSMathieu Poirier 	 */
4304d3ebb3bSMathieu Poirier 	if (rproc->table_ptr) {
431c0d63157SSjur Brændeland 		rsc = (void *)rproc->table_ptr + rvring->rvdev->rsc_offset;
432c0d63157SSjur Brændeland 		rsc->vring[idx].da = 0;
433c0d63157SSjur Brændeland 		rsc->vring[idx].notifyid = -1;
4347a186941SOhad Ben-Cohen 	}
4354d3ebb3bSMathieu Poirier }
4367a186941SOhad Ben-Cohen 
4376f8b0373SAlex Elder static int rproc_vdev_do_start(struct rproc_subdev *subdev)
438f5bcb353SBjorn Andersson {
439f5bcb353SBjorn Andersson 	struct rproc_vdev *rvdev = container_of(subdev, struct rproc_vdev, subdev);
440f5bcb353SBjorn Andersson 
441f5bcb353SBjorn Andersson 	return rproc_add_virtio_dev(rvdev, rvdev->id);
442f5bcb353SBjorn Andersson }
443f5bcb353SBjorn Andersson 
4446f8b0373SAlex Elder static void rproc_vdev_do_stop(struct rproc_subdev *subdev, bool crashed)
445f5bcb353SBjorn Andersson {
446f5bcb353SBjorn Andersson 	struct rproc_vdev *rvdev = container_of(subdev, struct rproc_vdev, subdev);
447d4c036feSLoic Pallardy 	int ret;
448f5bcb353SBjorn Andersson 
449d4c036feSLoic Pallardy 	ret = device_for_each_child(&rvdev->dev, NULL, rproc_remove_virtio_dev);
450d4c036feSLoic Pallardy 	if (ret)
451d4c036feSLoic Pallardy 		dev_warn(&rvdev->dev, "can't remove vdev child device: %d\n", ret);
452f5bcb353SBjorn Andersson }
453f5bcb353SBjorn Andersson 
454400e64dfSOhad Ben-Cohen /**
455086d0872SLoic Pallardy  * rproc_rvdev_release() - release the existence of a rvdev
456086d0872SLoic Pallardy  *
457086d0872SLoic Pallardy  * @dev: the subdevice's dev
458086d0872SLoic Pallardy  */
459086d0872SLoic Pallardy static void rproc_rvdev_release(struct device *dev)
460086d0872SLoic Pallardy {
461086d0872SLoic Pallardy 	struct rproc_vdev *rvdev = container_of(dev, struct rproc_vdev, dev);
462086d0872SLoic Pallardy 
463086d0872SLoic Pallardy 	of_reserved_mem_device_release(dev);
464086d0872SLoic Pallardy 
465086d0872SLoic Pallardy 	kfree(rvdev);
466086d0872SLoic Pallardy }
467086d0872SLoic Pallardy 
468e0d07278SJim Quinlan static int copy_dma_range_map(struct device *to, struct device *from)
469e0d07278SJim Quinlan {
470e0d07278SJim Quinlan 	const struct bus_dma_region *map = from->dma_range_map, *new_map, *r;
471e0d07278SJim Quinlan 	int num_ranges = 0;
472e0d07278SJim Quinlan 
473e0d07278SJim Quinlan 	if (!map)
474e0d07278SJim Quinlan 		return 0;
475e0d07278SJim Quinlan 
476e0d07278SJim Quinlan 	for (r = map; r->size; r++)
477e0d07278SJim Quinlan 		num_ranges++;
478e0d07278SJim Quinlan 
479e0d07278SJim Quinlan 	new_map = kmemdup(map, array_size(num_ranges + 1, sizeof(*map)),
480e0d07278SJim Quinlan 			  GFP_KERNEL);
481e0d07278SJim Quinlan 	if (!new_map)
482e0d07278SJim Quinlan 		return -ENOMEM;
483e0d07278SJim Quinlan 	to->dma_range_map = new_map;
484e0d07278SJim Quinlan 	return 0;
485e0d07278SJim Quinlan }
486e0d07278SJim Quinlan 
487086d0872SLoic Pallardy /**
488fd2c15ecSOhad Ben-Cohen  * rproc_handle_vdev() - handle a vdev fw resource
489400e64dfSOhad Ben-Cohen  * @rproc: the remote processor
4902bf23461SJindong Yue  * @ptr: the vring resource descriptor
4912e7d4c2cSArnaud Pouliquen  * @offset: offset of the resource entry
492fd2c15ecSOhad Ben-Cohen  * @avail: size of available data (for sanity checking the image)
493400e64dfSOhad Ben-Cohen  *
4947a186941SOhad Ben-Cohen  * This resource entry requests the host to statically register a virtio
4957a186941SOhad Ben-Cohen  * device (vdev), and setup everything needed to support it. It contains
4967a186941SOhad Ben-Cohen  * everything needed to make it possible: the virtio device id, virtio
4977a186941SOhad Ben-Cohen  * device features, vrings information, virtio config space, etc...
498400e64dfSOhad Ben-Cohen  *
4997a186941SOhad Ben-Cohen  * Before registering the vdev, the vrings are allocated from non-cacheable
5007a186941SOhad Ben-Cohen  * physically contiguous memory. Currently we only support two vrings per
5017a186941SOhad Ben-Cohen  * remote processor (temporary limitation). We might also want to consider
5027a186941SOhad Ben-Cohen  * doing the vring allocation only later when ->find_vqs() is invoked, and
5037a186941SOhad Ben-Cohen  * then release them upon ->del_vqs().
504400e64dfSOhad Ben-Cohen  *
5057a186941SOhad Ben-Cohen  * Note: @da is currently not really handled correctly: we dynamically
5067a186941SOhad Ben-Cohen  * allocate it using the DMA API, ignoring requested hard coded addresses,
5077a186941SOhad Ben-Cohen  * and we don't take care of any required IOMMU programming. This is all
5087a186941SOhad Ben-Cohen  * going to be taken care of when the generic iommu-based DMA API will be
5097a186941SOhad Ben-Cohen  * merged. Meanwhile, statically-addressed iommu-based firmware images should
5107a186941SOhad Ben-Cohen  * use RSC_DEVMEM resource entries to map their required @da to the physical
5117a186941SOhad Ben-Cohen  * address of their base CMA region (ouch, hacky!).
512400e64dfSOhad Ben-Cohen  *
513f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
514400e64dfSOhad Ben-Cohen  */
5152bf23461SJindong Yue static int rproc_handle_vdev(struct rproc *rproc, void *ptr,
516a2b950acSOhad Ben-Cohen 			     int offset, int avail)
517400e64dfSOhad Ben-Cohen {
5182bf23461SJindong Yue 	struct fw_rsc_vdev *rsc = ptr;
519b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
5207a186941SOhad Ben-Cohen 	struct rproc_vdev *rvdev;
5217a186941SOhad Ben-Cohen 	int i, ret;
522086d0872SLoic Pallardy 	char name[16];
523fd2c15ecSOhad Ben-Cohen 
524fd2c15ecSOhad Ben-Cohen 	/* make sure resource isn't truncated */
525c8784657SGustavo A. R. Silva 	if (struct_size(rsc, vring, rsc->num_of_vrings) + rsc->config_len >
526c8784657SGustavo A. R. Silva 			avail) {
527b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "vdev rsc is truncated\n");
528fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
529fd2c15ecSOhad Ben-Cohen 	}
530fd2c15ecSOhad Ben-Cohen 
531fd2c15ecSOhad Ben-Cohen 	/* make sure reserved bytes are zeroes */
532fd2c15ecSOhad Ben-Cohen 	if (rsc->reserved[0] || rsc->reserved[1]) {
533fd2c15ecSOhad Ben-Cohen 		dev_err(dev, "vdev rsc has non zero reserved bytes\n");
534fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
535fd2c15ecSOhad Ben-Cohen 	}
536fd2c15ecSOhad Ben-Cohen 
5379d7814a9SAnna, Suman 	dev_dbg(dev, "vdev rsc: id %d, dfeatures 0x%x, cfg len %d, %d vrings\n",
538fd2c15ecSOhad Ben-Cohen 		rsc->id, rsc->dfeatures, rsc->config_len, rsc->num_of_vrings);
539400e64dfSOhad Ben-Cohen 
5407a186941SOhad Ben-Cohen 	/* we currently support only two vrings per rvdev */
5417a186941SOhad Ben-Cohen 	if (rsc->num_of_vrings > ARRAY_SIZE(rvdev->vring)) {
542fd2c15ecSOhad Ben-Cohen 		dev_err(dev, "too many vrings: %d\n", rsc->num_of_vrings);
543400e64dfSOhad Ben-Cohen 		return -EINVAL;
544400e64dfSOhad Ben-Cohen 	}
545400e64dfSOhad Ben-Cohen 
546899585adSAnna, Suman 	rvdev = kzalloc(sizeof(*rvdev), GFP_KERNEL);
5477a186941SOhad Ben-Cohen 	if (!rvdev)
5487a186941SOhad Ben-Cohen 		return -ENOMEM;
5497a186941SOhad Ben-Cohen 
550aab8d802SBjorn Andersson 	kref_init(&rvdev->refcount);
551aab8d802SBjorn Andersson 
552f5bcb353SBjorn Andersson 	rvdev->id = rsc->id;
5537a186941SOhad Ben-Cohen 	rvdev->rproc = rproc;
554c6aed238SLoic Pallardy 	rvdev->index = rproc->nb_vdev++;
5557a186941SOhad Ben-Cohen 
556086d0872SLoic Pallardy 	/* Initialise vdev subdevice */
557086d0872SLoic Pallardy 	snprintf(name, sizeof(name), "vdev%dbuffer", rvdev->index);
558c774ad01SSuman Anna 	rvdev->dev.parent = &rproc->dev;
559086d0872SLoic Pallardy 	rvdev->dev.release = rproc_rvdev_release;
560086d0872SLoic Pallardy 	dev_set_name(&rvdev->dev, "%s#%s", dev_name(rvdev->dev.parent), name);
561086d0872SLoic Pallardy 	dev_set_drvdata(&rvdev->dev, rvdev);
562086d0872SLoic Pallardy 
563086d0872SLoic Pallardy 	ret = device_register(&rvdev->dev);
564086d0872SLoic Pallardy 	if (ret) {
565086d0872SLoic Pallardy 		put_device(&rvdev->dev);
566086d0872SLoic Pallardy 		return ret;
567086d0872SLoic Pallardy 	}
5680374a4eaSChristophe JAILLET 
5690374a4eaSChristophe JAILLET 	ret = copy_dma_range_map(&rvdev->dev, rproc->dev.parent);
5700374a4eaSChristophe JAILLET 	if (ret)
5710374a4eaSChristophe JAILLET 		goto free_rvdev;
5720374a4eaSChristophe JAILLET 
573086d0872SLoic Pallardy 	/* Make device dma capable by inheriting from parent's capabilities */
574086d0872SLoic Pallardy 	set_dma_ops(&rvdev->dev, get_dma_ops(rproc->dev.parent));
575086d0872SLoic Pallardy 
576086d0872SLoic Pallardy 	ret = dma_coerce_mask_and_coherent(&rvdev->dev,
577086d0872SLoic Pallardy 					   dma_get_mask(rproc->dev.parent));
578086d0872SLoic Pallardy 	if (ret) {
579086d0872SLoic Pallardy 		dev_warn(dev,
5807efb1425SMark-PK Tsai 			 "Failed to set DMA mask %llx. Trying to continue... (%pe)\n",
5817efb1425SMark-PK Tsai 			 dma_get_mask(rproc->dev.parent), ERR_PTR(ret));
582086d0872SLoic Pallardy 	}
583086d0872SLoic Pallardy 
5846db20ea8SOhad Ben-Cohen 	/* parse the vrings */
585fd2c15ecSOhad Ben-Cohen 	for (i = 0; i < rsc->num_of_vrings; i++) {
5866db20ea8SOhad Ben-Cohen 		ret = rproc_parse_vring(rvdev, rsc, i);
5877a186941SOhad Ben-Cohen 		if (ret)
5886db20ea8SOhad Ben-Cohen 			goto free_rvdev;
589fd2c15ecSOhad Ben-Cohen 	}
590fd2c15ecSOhad Ben-Cohen 
591a2b950acSOhad Ben-Cohen 	/* remember the resource offset*/
592a2b950acSOhad Ben-Cohen 	rvdev->rsc_offset = offset;
593400e64dfSOhad Ben-Cohen 
594a863af5dSBjorn Andersson 	/* allocate the vring resources */
595a863af5dSBjorn Andersson 	for (i = 0; i < rsc->num_of_vrings; i++) {
596a863af5dSBjorn Andersson 		ret = rproc_alloc_vring(rvdev, i);
597a863af5dSBjorn Andersson 		if (ret)
598a863af5dSBjorn Andersson 			goto unwind_vring_allocations;
599a863af5dSBjorn Andersson 	}
600a863af5dSBjorn Andersson 
6017a186941SOhad Ben-Cohen 	list_add_tail(&rvdev->node, &rproc->rvdevs);
602400e64dfSOhad Ben-Cohen 
6036f8b0373SAlex Elder 	rvdev->subdev.start = rproc_vdev_do_start;
6046f8b0373SAlex Elder 	rvdev->subdev.stop = rproc_vdev_do_stop;
6054902676fSBjorn Andersson 
6064902676fSBjorn Andersson 	rproc_add_subdev(rproc, &rvdev->subdev);
607400e64dfSOhad Ben-Cohen 
608400e64dfSOhad Ben-Cohen 	return 0;
6097a186941SOhad Ben-Cohen 
610a863af5dSBjorn Andersson unwind_vring_allocations:
611a863af5dSBjorn Andersson 	for (i--; i >= 0; i--)
612a863af5dSBjorn Andersson 		rproc_free_vring(&rvdev->vring[i]);
6136db20ea8SOhad Ben-Cohen free_rvdev:
614086d0872SLoic Pallardy 	device_unregister(&rvdev->dev);
6157a186941SOhad Ben-Cohen 	return ret;
616400e64dfSOhad Ben-Cohen }
617400e64dfSOhad Ben-Cohen 
618aab8d802SBjorn Andersson void rproc_vdev_release(struct kref *ref)
619aab8d802SBjorn Andersson {
620aab8d802SBjorn Andersson 	struct rproc_vdev *rvdev = container_of(ref, struct rproc_vdev, refcount);
621a863af5dSBjorn Andersson 	struct rproc_vring *rvring;
622f5bcb353SBjorn Andersson 	struct rproc *rproc = rvdev->rproc;
623a863af5dSBjorn Andersson 	int id;
624a863af5dSBjorn Andersson 
625a863af5dSBjorn Andersson 	for (id = 0; id < ARRAY_SIZE(rvdev->vring); id++) {
626a863af5dSBjorn Andersson 		rvring = &rvdev->vring[id];
627a863af5dSBjorn Andersson 		rproc_free_vring(rvring);
628a863af5dSBjorn Andersson 	}
629aab8d802SBjorn Andersson 
630f5bcb353SBjorn Andersson 	rproc_remove_subdev(rproc, &rvdev->subdev);
631aab8d802SBjorn Andersson 	list_del(&rvdev->node);
632086d0872SLoic Pallardy 	device_unregister(&rvdev->dev);
633aab8d802SBjorn Andersson }
634aab8d802SBjorn Andersson 
635400e64dfSOhad Ben-Cohen /**
636400e64dfSOhad Ben-Cohen  * rproc_handle_trace() - handle a shared trace buffer resource
637400e64dfSOhad Ben-Cohen  * @rproc: the remote processor
6382bf23461SJindong Yue  * @ptr: the trace resource descriptor
6392e7d4c2cSArnaud Pouliquen  * @offset: offset of the resource entry
640fd2c15ecSOhad Ben-Cohen  * @avail: size of available data (for sanity checking the image)
641400e64dfSOhad Ben-Cohen  *
642400e64dfSOhad Ben-Cohen  * In case the remote processor dumps trace logs into memory,
643400e64dfSOhad Ben-Cohen  * export it via debugfs.
644400e64dfSOhad Ben-Cohen  *
645400e64dfSOhad Ben-Cohen  * Currently, the 'da' member of @rsc should contain the device address
646400e64dfSOhad Ben-Cohen  * where the remote processor is dumping the traces. Later we could also
647400e64dfSOhad Ben-Cohen  * support dynamically allocating this address using the generic
648400e64dfSOhad Ben-Cohen  * DMA API (but currently there isn't a use case for that).
649400e64dfSOhad Ben-Cohen  *
650f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
651400e64dfSOhad Ben-Cohen  */
6522bf23461SJindong Yue static int rproc_handle_trace(struct rproc *rproc, void *ptr,
653a2b950acSOhad Ben-Cohen 			      int offset, int avail)
654400e64dfSOhad Ben-Cohen {
6552bf23461SJindong Yue 	struct fw_rsc_trace *rsc = ptr;
656a987e6b9SLoic Pallardy 	struct rproc_debug_trace *trace;
657b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
658400e64dfSOhad Ben-Cohen 	char name[15];
659400e64dfSOhad Ben-Cohen 
660fd2c15ecSOhad Ben-Cohen 	if (sizeof(*rsc) > avail) {
661b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "trace rsc is truncated\n");
662fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
663fd2c15ecSOhad Ben-Cohen 	}
664fd2c15ecSOhad Ben-Cohen 
665fd2c15ecSOhad Ben-Cohen 	/* make sure reserved bytes are zeroes */
666fd2c15ecSOhad Ben-Cohen 	if (rsc->reserved) {
667fd2c15ecSOhad Ben-Cohen 		dev_err(dev, "trace rsc has non zero reserved bytes\n");
668fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
669fd2c15ecSOhad Ben-Cohen 	}
670fd2c15ecSOhad Ben-Cohen 
671400e64dfSOhad Ben-Cohen 	trace = kzalloc(sizeof(*trace), GFP_KERNEL);
672172e6ab1SSuman Anna 	if (!trace)
673400e64dfSOhad Ben-Cohen 		return -ENOMEM;
674400e64dfSOhad Ben-Cohen 
675400e64dfSOhad Ben-Cohen 	/* set the trace buffer dma properties */
676a987e6b9SLoic Pallardy 	trace->trace_mem.len = rsc->len;
677a987e6b9SLoic Pallardy 	trace->trace_mem.da = rsc->da;
678a987e6b9SLoic Pallardy 
679a987e6b9SLoic Pallardy 	/* set pointer on rproc device */
680a987e6b9SLoic Pallardy 	trace->rproc = rproc;
681400e64dfSOhad Ben-Cohen 
682400e64dfSOhad Ben-Cohen 	/* make sure snprintf always null terminates, even if truncating */
683400e64dfSOhad Ben-Cohen 	snprintf(name, sizeof(name), "trace%d", rproc->num_traces);
684400e64dfSOhad Ben-Cohen 
685400e64dfSOhad Ben-Cohen 	/* create the debugfs entry */
686a987e6b9SLoic Pallardy 	trace->tfile = rproc_create_trace_file(name, rproc, trace);
687400e64dfSOhad Ben-Cohen 
688400e64dfSOhad Ben-Cohen 	list_add_tail(&trace->node, &rproc->traces);
689400e64dfSOhad Ben-Cohen 
690400e64dfSOhad Ben-Cohen 	rproc->num_traces++;
691400e64dfSOhad Ben-Cohen 
692a987e6b9SLoic Pallardy 	dev_dbg(dev, "%s added: da 0x%x, len 0x%x\n",
693a987e6b9SLoic Pallardy 		name, rsc->da, rsc->len);
694400e64dfSOhad Ben-Cohen 
695400e64dfSOhad Ben-Cohen 	return 0;
696400e64dfSOhad Ben-Cohen }
697400e64dfSOhad Ben-Cohen 
698400e64dfSOhad Ben-Cohen /**
699400e64dfSOhad Ben-Cohen  * rproc_handle_devmem() - handle devmem resource entry
700400e64dfSOhad Ben-Cohen  * @rproc: remote processor handle
7012bf23461SJindong Yue  * @ptr: the devmem resource entry
7022e7d4c2cSArnaud Pouliquen  * @offset: offset of the resource entry
703fd2c15ecSOhad Ben-Cohen  * @avail: size of available data (for sanity checking the image)
704400e64dfSOhad Ben-Cohen  *
705400e64dfSOhad Ben-Cohen  * Remote processors commonly need to access certain on-chip peripherals.
706400e64dfSOhad Ben-Cohen  *
707400e64dfSOhad Ben-Cohen  * Some of these remote processors access memory via an iommu device,
708400e64dfSOhad Ben-Cohen  * and might require us to configure their iommu before they can access
709400e64dfSOhad Ben-Cohen  * the on-chip peripherals they need.
710400e64dfSOhad Ben-Cohen  *
711400e64dfSOhad Ben-Cohen  * This resource entry is a request to map such a peripheral device.
712400e64dfSOhad Ben-Cohen  *
713400e64dfSOhad Ben-Cohen  * These devmem entries will contain the physical address of the device in
714400e64dfSOhad Ben-Cohen  * the 'pa' member. If a specific device address is expected, then 'da' will
715400e64dfSOhad Ben-Cohen  * contain it (currently this is the only use case supported). 'len' will
716400e64dfSOhad Ben-Cohen  * contain the size of the physical region we need to map.
717400e64dfSOhad Ben-Cohen  *
718400e64dfSOhad Ben-Cohen  * Currently we just "trust" those devmem entries to contain valid physical
719400e64dfSOhad Ben-Cohen  * addresses, but this is going to change: we want the implementations to
720400e64dfSOhad Ben-Cohen  * tell us ranges of physical addresses the firmware is allowed to request,
721400e64dfSOhad Ben-Cohen  * and not allow firmwares to request access to physical addresses that
722400e64dfSOhad Ben-Cohen  * are outside those ranges.
723f2867434SSuman Anna  *
724f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
725400e64dfSOhad Ben-Cohen  */
7262bf23461SJindong Yue static int rproc_handle_devmem(struct rproc *rproc, void *ptr,
727a2b950acSOhad Ben-Cohen 			       int offset, int avail)
728400e64dfSOhad Ben-Cohen {
7292bf23461SJindong Yue 	struct fw_rsc_devmem *rsc = ptr;
730400e64dfSOhad Ben-Cohen 	struct rproc_mem_entry *mapping;
731b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
732400e64dfSOhad Ben-Cohen 	int ret;
733400e64dfSOhad Ben-Cohen 
734400e64dfSOhad Ben-Cohen 	/* no point in handling this resource without a valid iommu domain */
735400e64dfSOhad Ben-Cohen 	if (!rproc->domain)
736400e64dfSOhad Ben-Cohen 		return -EINVAL;
737400e64dfSOhad Ben-Cohen 
738fd2c15ecSOhad Ben-Cohen 	if (sizeof(*rsc) > avail) {
739b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "devmem rsc is truncated\n");
740fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
741fd2c15ecSOhad Ben-Cohen 	}
742fd2c15ecSOhad Ben-Cohen 
743fd2c15ecSOhad Ben-Cohen 	/* make sure reserved bytes are zeroes */
744fd2c15ecSOhad Ben-Cohen 	if (rsc->reserved) {
745b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "devmem rsc has non zero reserved bytes\n");
746fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
747fd2c15ecSOhad Ben-Cohen 	}
748fd2c15ecSOhad Ben-Cohen 
749400e64dfSOhad Ben-Cohen 	mapping = kzalloc(sizeof(*mapping), GFP_KERNEL);
750172e6ab1SSuman Anna 	if (!mapping)
751400e64dfSOhad Ben-Cohen 		return -ENOMEM;
752400e64dfSOhad Ben-Cohen 
753400e64dfSOhad Ben-Cohen 	ret = iommu_map(rproc->domain, rsc->da, rsc->pa, rsc->len, rsc->flags);
754400e64dfSOhad Ben-Cohen 	if (ret) {
755b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "failed to map devmem: %d\n", ret);
756400e64dfSOhad Ben-Cohen 		goto out;
757400e64dfSOhad Ben-Cohen 	}
758400e64dfSOhad Ben-Cohen 
759400e64dfSOhad Ben-Cohen 	/*
760400e64dfSOhad Ben-Cohen 	 * We'll need this info later when we'll want to unmap everything
761400e64dfSOhad Ben-Cohen 	 * (e.g. on shutdown).
762400e64dfSOhad Ben-Cohen 	 *
763400e64dfSOhad Ben-Cohen 	 * We can't trust the remote processor not to change the resource
764400e64dfSOhad Ben-Cohen 	 * table, so we must maintain this info independently.
765400e64dfSOhad Ben-Cohen 	 */
766400e64dfSOhad Ben-Cohen 	mapping->da = rsc->da;
767400e64dfSOhad Ben-Cohen 	mapping->len = rsc->len;
768400e64dfSOhad Ben-Cohen 	list_add_tail(&mapping->node, &rproc->mappings);
769400e64dfSOhad Ben-Cohen 
770b5ab5e24SOhad Ben-Cohen 	dev_dbg(dev, "mapped devmem pa 0x%x, da 0x%x, len 0x%x\n",
771400e64dfSOhad Ben-Cohen 		rsc->pa, rsc->da, rsc->len);
772400e64dfSOhad Ben-Cohen 
773400e64dfSOhad Ben-Cohen 	return 0;
774400e64dfSOhad Ben-Cohen 
775400e64dfSOhad Ben-Cohen out:
776400e64dfSOhad Ben-Cohen 	kfree(mapping);
777400e64dfSOhad Ben-Cohen 	return ret;
778400e64dfSOhad Ben-Cohen }
779400e64dfSOhad Ben-Cohen 
780400e64dfSOhad Ben-Cohen /**
781d7c51706SLoic Pallardy  * rproc_alloc_carveout() - allocated specified carveout
782d7c51706SLoic Pallardy  * @rproc: rproc handle
783d7c51706SLoic Pallardy  * @mem: the memory entry to allocate
784d7c51706SLoic Pallardy  *
785d7c51706SLoic Pallardy  * This function allocate specified memory entry @mem using
786d7c51706SLoic Pallardy  * dma_alloc_coherent() as default allocator
787f2867434SSuman Anna  *
788f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
789d7c51706SLoic Pallardy  */
790d7c51706SLoic Pallardy static int rproc_alloc_carveout(struct rproc *rproc,
791d7c51706SLoic Pallardy 				struct rproc_mem_entry *mem)
792d7c51706SLoic Pallardy {
793d7c51706SLoic Pallardy 	struct rproc_mem_entry *mapping = NULL;
794d7c51706SLoic Pallardy 	struct device *dev = &rproc->dev;
795d7c51706SLoic Pallardy 	dma_addr_t dma;
796d7c51706SLoic Pallardy 	void *va;
797d7c51706SLoic Pallardy 	int ret;
798d7c51706SLoic Pallardy 
799d7c51706SLoic Pallardy 	va = dma_alloc_coherent(dev->parent, mem->len, &dma, GFP_KERNEL);
800d7c51706SLoic Pallardy 	if (!va) {
801d7c51706SLoic Pallardy 		dev_err(dev->parent,
802096ee786SClement Leger 			"failed to allocate dma memory: len 0x%zx\n",
803096ee786SClement Leger 			mem->len);
804d7c51706SLoic Pallardy 		return -ENOMEM;
805d7c51706SLoic Pallardy 	}
806d7c51706SLoic Pallardy 
807096ee786SClement Leger 	dev_dbg(dev, "carveout va %pK, dma %pad, len 0x%zx\n",
808d7c51706SLoic Pallardy 		va, &dma, mem->len);
809d7c51706SLoic Pallardy 
81060f849a5SLoic Pallardy 	if (mem->da != FW_RSC_ADDR_ANY && !rproc->domain) {
81160f849a5SLoic Pallardy 		/*
81260f849a5SLoic Pallardy 		 * Check requested da is equal to dma address
81360f849a5SLoic Pallardy 		 * and print a warn message in case of missalignment.
81460f849a5SLoic Pallardy 		 * Don't stop rproc_start sequence as coprocessor may
81560f849a5SLoic Pallardy 		 * build pa to da translation on its side.
81660f849a5SLoic Pallardy 		 */
81760f849a5SLoic Pallardy 		if (mem->da != (u32)dma)
81860f849a5SLoic Pallardy 			dev_warn(dev->parent,
81960f849a5SLoic Pallardy 				 "Allocated carveout doesn't fit device address request\n");
82060f849a5SLoic Pallardy 	}
82160f849a5SLoic Pallardy 
822d7c51706SLoic Pallardy 	/*
823d7c51706SLoic Pallardy 	 * Ok, this is non-standard.
824d7c51706SLoic Pallardy 	 *
825d7c51706SLoic Pallardy 	 * Sometimes we can't rely on the generic iommu-based DMA API
826d7c51706SLoic Pallardy 	 * to dynamically allocate the device address and then set the IOMMU
827d7c51706SLoic Pallardy 	 * tables accordingly, because some remote processors might
828d7c51706SLoic Pallardy 	 * _require_ us to use hard coded device addresses that their
829d7c51706SLoic Pallardy 	 * firmware was compiled with.
830d7c51706SLoic Pallardy 	 *
831d7c51706SLoic Pallardy 	 * In this case, we must use the IOMMU API directly and map
832d7c51706SLoic Pallardy 	 * the memory to the device address as expected by the remote
833d7c51706SLoic Pallardy 	 * processor.
834d7c51706SLoic Pallardy 	 *
835d7c51706SLoic Pallardy 	 * Obviously such remote processor devices should not be configured
836d7c51706SLoic Pallardy 	 * to use the iommu-based DMA API: we expect 'dma' to contain the
837d7c51706SLoic Pallardy 	 * physical address in this case.
838d7c51706SLoic Pallardy 	 */
83960f849a5SLoic Pallardy 	if (mem->da != FW_RSC_ADDR_ANY && rproc->domain) {
840d7c51706SLoic Pallardy 		mapping = kzalloc(sizeof(*mapping), GFP_KERNEL);
841d7c51706SLoic Pallardy 		if (!mapping) {
842d7c51706SLoic Pallardy 			ret = -ENOMEM;
843d7c51706SLoic Pallardy 			goto dma_free;
844d7c51706SLoic Pallardy 		}
845d7c51706SLoic Pallardy 
846d7c51706SLoic Pallardy 		ret = iommu_map(rproc->domain, mem->da, dma, mem->len,
847d7c51706SLoic Pallardy 				mem->flags);
848d7c51706SLoic Pallardy 		if (ret) {
849d7c51706SLoic Pallardy 			dev_err(dev, "iommu_map failed: %d\n", ret);
850d7c51706SLoic Pallardy 			goto free_mapping;
851d7c51706SLoic Pallardy 		}
852d7c51706SLoic Pallardy 
853d7c51706SLoic Pallardy 		/*
854d7c51706SLoic Pallardy 		 * We'll need this info later when we'll want to unmap
855d7c51706SLoic Pallardy 		 * everything (e.g. on shutdown).
856d7c51706SLoic Pallardy 		 *
857d7c51706SLoic Pallardy 		 * We can't trust the remote processor not to change the
858d7c51706SLoic Pallardy 		 * resource table, so we must maintain this info independently.
859d7c51706SLoic Pallardy 		 */
860d7c51706SLoic Pallardy 		mapping->da = mem->da;
861d7c51706SLoic Pallardy 		mapping->len = mem->len;
862d7c51706SLoic Pallardy 		list_add_tail(&mapping->node, &rproc->mappings);
863d7c51706SLoic Pallardy 
864d7c51706SLoic Pallardy 		dev_dbg(dev, "carveout mapped 0x%x to %pad\n",
865d7c51706SLoic Pallardy 			mem->da, &dma);
86660f849a5SLoic Pallardy 	}
86760f849a5SLoic Pallardy 
86860f849a5SLoic Pallardy 	if (mem->da == FW_RSC_ADDR_ANY) {
869b36de8cfSLoic Pallardy 		/* Update device address as undefined by requester */
870b36de8cfSLoic Pallardy 		if ((u64)dma & HIGH_BITS_MASK)
871b36de8cfSLoic Pallardy 			dev_warn(dev, "DMA address cast in 32bit to fit resource table format\n");
872b36de8cfSLoic Pallardy 
873d7c51706SLoic Pallardy 		mem->da = (u32)dma;
874d7c51706SLoic Pallardy 	}
875d7c51706SLoic Pallardy 
87680137b40SLoic Pallardy 	mem->dma = dma;
877d7c51706SLoic Pallardy 	mem->va = va;
878d7c51706SLoic Pallardy 
879d7c51706SLoic Pallardy 	return 0;
880d7c51706SLoic Pallardy 
881d7c51706SLoic Pallardy free_mapping:
882d7c51706SLoic Pallardy 	kfree(mapping);
883d7c51706SLoic Pallardy dma_free:
884d7c51706SLoic Pallardy 	dma_free_coherent(dev->parent, mem->len, va, dma);
885d7c51706SLoic Pallardy 	return ret;
886d7c51706SLoic Pallardy }
887d7c51706SLoic Pallardy 
888d7c51706SLoic Pallardy /**
889f2e74abfSLoic Pallardy  * rproc_release_carveout() - release acquired carveout
890f2e74abfSLoic Pallardy  * @rproc: rproc handle
891f2e74abfSLoic Pallardy  * @mem: the memory entry to release
892f2e74abfSLoic Pallardy  *
893f2e74abfSLoic Pallardy  * This function releases specified memory entry @mem allocated via
894d7c51706SLoic Pallardy  * rproc_alloc_carveout() function by @rproc.
895f2867434SSuman Anna  *
896f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
897f2e74abfSLoic Pallardy  */
898f2e74abfSLoic Pallardy static int rproc_release_carveout(struct rproc *rproc,
899f2e74abfSLoic Pallardy 				  struct rproc_mem_entry *mem)
900f2e74abfSLoic Pallardy {
901f2e74abfSLoic Pallardy 	struct device *dev = &rproc->dev;
902f2e74abfSLoic Pallardy 
903f2e74abfSLoic Pallardy 	/* clean up carveout allocations */
904f2e74abfSLoic Pallardy 	dma_free_coherent(dev->parent, mem->len, mem->va, mem->dma);
905f2e74abfSLoic Pallardy 	return 0;
906f2e74abfSLoic Pallardy }
907f2e74abfSLoic Pallardy 
908f2e74abfSLoic Pallardy /**
909400e64dfSOhad Ben-Cohen  * rproc_handle_carveout() - handle phys contig memory allocation requests
910400e64dfSOhad Ben-Cohen  * @rproc: rproc handle
9112bf23461SJindong Yue  * @ptr: the resource entry
9122e7d4c2cSArnaud Pouliquen  * @offset: offset of the resource entry
913fd2c15ecSOhad Ben-Cohen  * @avail: size of available data (for image validation)
914400e64dfSOhad Ben-Cohen  *
915400e64dfSOhad Ben-Cohen  * This function will handle firmware requests for allocation of physically
916400e64dfSOhad Ben-Cohen  * contiguous memory regions.
917400e64dfSOhad Ben-Cohen  *
918400e64dfSOhad Ben-Cohen  * These request entries should come first in the firmware's resource table,
919400e64dfSOhad Ben-Cohen  * as other firmware entries might request placing other data objects inside
920400e64dfSOhad Ben-Cohen  * these memory regions (e.g. data/code segments, trace resource entries, ...).
921400e64dfSOhad Ben-Cohen  *
922400e64dfSOhad Ben-Cohen  * Allocating memory this way helps utilizing the reserved physical memory
923400e64dfSOhad Ben-Cohen  * (e.g. CMA) more efficiently, and also minimizes the number of TLB entries
924400e64dfSOhad Ben-Cohen  * needed to map it (in case @rproc is using an IOMMU). Reducing the TLB
925400e64dfSOhad Ben-Cohen  * pressure is important; it may have a substantial impact on performance.
926f2867434SSuman Anna  *
927f2867434SSuman Anna  * Return: 0 on success, or an appropriate error code otherwise
928400e64dfSOhad Ben-Cohen  */
929fd2c15ecSOhad Ben-Cohen static int rproc_handle_carveout(struct rproc *rproc,
9302bf23461SJindong Yue 				 void *ptr, int offset, int avail)
931400e64dfSOhad Ben-Cohen {
9322bf23461SJindong Yue 	struct fw_rsc_carveout *rsc = ptr;
933d7c51706SLoic Pallardy 	struct rproc_mem_entry *carveout;
934b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
935400e64dfSOhad Ben-Cohen 
936fd2c15ecSOhad Ben-Cohen 	if (sizeof(*rsc) > avail) {
937b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "carveout rsc is truncated\n");
938fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
939fd2c15ecSOhad Ben-Cohen 	}
940fd2c15ecSOhad Ben-Cohen 
941fd2c15ecSOhad Ben-Cohen 	/* make sure reserved bytes are zeroes */
942fd2c15ecSOhad Ben-Cohen 	if (rsc->reserved) {
943fd2c15ecSOhad Ben-Cohen 		dev_err(dev, "carveout rsc has non zero reserved bytes\n");
944fd2c15ecSOhad Ben-Cohen 		return -EINVAL;
945fd2c15ecSOhad Ben-Cohen 	}
946fd2c15ecSOhad Ben-Cohen 
9479d7814a9SAnna, Suman 	dev_dbg(dev, "carveout rsc: name: %s, da 0x%x, pa 0x%x, len 0x%x, flags 0x%x\n",
94835386166SLee Jones 		rsc->name, rsc->da, rsc->pa, rsc->len, rsc->flags);
949fd2c15ecSOhad Ben-Cohen 
950ffa5f9c8SLoic Pallardy 	/*
951ffa5f9c8SLoic Pallardy 	 * Check carveout rsc already part of a registered carveout,
952ffa5f9c8SLoic Pallardy 	 * Search by name, then check the da and length
953ffa5f9c8SLoic Pallardy 	 */
954ffa5f9c8SLoic Pallardy 	carveout = rproc_find_carveout_by_name(rproc, rsc->name);
955ffa5f9c8SLoic Pallardy 
956ffa5f9c8SLoic Pallardy 	if (carveout) {
957ffa5f9c8SLoic Pallardy 		if (carveout->rsc_offset != FW_RSC_ADDR_ANY) {
958ffa5f9c8SLoic Pallardy 			dev_err(dev,
959ffa5f9c8SLoic Pallardy 				"Carveout already associated to resource table\n");
960ffa5f9c8SLoic Pallardy 			return -ENOMEM;
961ffa5f9c8SLoic Pallardy 		}
962ffa5f9c8SLoic Pallardy 
963ffa5f9c8SLoic Pallardy 		if (rproc_check_carveout_da(rproc, carveout, rsc->da, rsc->len))
964ffa5f9c8SLoic Pallardy 			return -ENOMEM;
965ffa5f9c8SLoic Pallardy 
966ffa5f9c8SLoic Pallardy 		/* Update memory carveout with resource table info */
967ffa5f9c8SLoic Pallardy 		carveout->rsc_offset = offset;
968ffa5f9c8SLoic Pallardy 		carveout->flags = rsc->flags;
969ffa5f9c8SLoic Pallardy 
970ffa5f9c8SLoic Pallardy 		return 0;
971ffa5f9c8SLoic Pallardy 	}
972ffa5f9c8SLoic Pallardy 
973d7c51706SLoic Pallardy 	/* Register carveout in in list */
97499cf0361SBen Dooks (Codethink) 	carveout = rproc_mem_entry_init(dev, NULL, 0, rsc->len, rsc->da,
975d7c51706SLoic Pallardy 					rproc_alloc_carveout,
976d7c51706SLoic Pallardy 					rproc_release_carveout, rsc->name);
977d7c51706SLoic Pallardy 	if (!carveout) {
978d7c51706SLoic Pallardy 		dev_err(dev, "Can't allocate memory entry structure\n");
97972029c90SLoic Pallardy 		return -ENOMEM;
980400e64dfSOhad Ben-Cohen 	}
981400e64dfSOhad Ben-Cohen 
982d7c51706SLoic Pallardy 	carveout->flags = rsc->flags;
983d7c51706SLoic Pallardy 	carveout->rsc_offset = offset;
98415c0b025SLoic Pallardy 	rproc_add_carveout(rproc, carveout);
985400e64dfSOhad Ben-Cohen 
986400e64dfSOhad Ben-Cohen 	return 0;
987400e64dfSOhad Ben-Cohen }
988400e64dfSOhad Ben-Cohen 
98972029c90SLoic Pallardy /**
99015c0b025SLoic Pallardy  * rproc_add_carveout() - register an allocated carveout region
99115c0b025SLoic Pallardy  * @rproc: rproc handle
99215c0b025SLoic Pallardy  * @mem: memory entry to register
99315c0b025SLoic Pallardy  *
99415c0b025SLoic Pallardy  * This function registers specified memory entry in @rproc carveouts list.
99515c0b025SLoic Pallardy  * Specified carveout should have been allocated before registering.
99615c0b025SLoic Pallardy  */
99715c0b025SLoic Pallardy void rproc_add_carveout(struct rproc *rproc, struct rproc_mem_entry *mem)
99815c0b025SLoic Pallardy {
99915c0b025SLoic Pallardy 	list_add_tail(&mem->node, &rproc->carveouts);
100015c0b025SLoic Pallardy }
100115c0b025SLoic Pallardy EXPORT_SYMBOL(rproc_add_carveout);
100215c0b025SLoic Pallardy 
100315c0b025SLoic Pallardy /**
100472029c90SLoic Pallardy  * rproc_mem_entry_init() - allocate and initialize rproc_mem_entry struct
100572029c90SLoic Pallardy  * @dev: pointer on device struct
100672029c90SLoic Pallardy  * @va: virtual address
100772029c90SLoic Pallardy  * @dma: dma address
100872029c90SLoic Pallardy  * @len: memory carveout length
100972029c90SLoic Pallardy  * @da: device address
1010a9f6fe0dSLoic Pallardy  * @alloc: memory carveout allocation function
1011a9f6fe0dSLoic Pallardy  * @release: memory carveout release function
101272029c90SLoic Pallardy  * @name: carveout name
101372029c90SLoic Pallardy  *
101472029c90SLoic Pallardy  * This function allocates a rproc_mem_entry struct and fill it with parameters
101572029c90SLoic Pallardy  * provided by client.
1016f2867434SSuman Anna  *
1017f2867434SSuman Anna  * Return: a valid pointer on success, or NULL on failure
101872029c90SLoic Pallardy  */
10197e05c8deSLee Jones __printf(8, 9)
102072029c90SLoic Pallardy struct rproc_mem_entry *
102172029c90SLoic Pallardy rproc_mem_entry_init(struct device *dev,
1022096ee786SClement Leger 		     void *va, dma_addr_t dma, size_t len, u32 da,
1023d7c51706SLoic Pallardy 		     int (*alloc)(struct rproc *, struct rproc_mem_entry *),
102472029c90SLoic Pallardy 		     int (*release)(struct rproc *, struct rproc_mem_entry *),
102572029c90SLoic Pallardy 		     const char *name, ...)
102672029c90SLoic Pallardy {
102772029c90SLoic Pallardy 	struct rproc_mem_entry *mem;
102872029c90SLoic Pallardy 	va_list args;
102972029c90SLoic Pallardy 
103072029c90SLoic Pallardy 	mem = kzalloc(sizeof(*mem), GFP_KERNEL);
103172029c90SLoic Pallardy 	if (!mem)
103272029c90SLoic Pallardy 		return mem;
103372029c90SLoic Pallardy 
103472029c90SLoic Pallardy 	mem->va = va;
103572029c90SLoic Pallardy 	mem->dma = dma;
103672029c90SLoic Pallardy 	mem->da = da;
103772029c90SLoic Pallardy 	mem->len = len;
1038d7c51706SLoic Pallardy 	mem->alloc = alloc;
103972029c90SLoic Pallardy 	mem->release = release;
1040d7c51706SLoic Pallardy 	mem->rsc_offset = FW_RSC_ADDR_ANY;
10411429cca1SLoic Pallardy 	mem->of_resm_idx = -1;
104272029c90SLoic Pallardy 
104372029c90SLoic Pallardy 	va_start(args, name);
104472029c90SLoic Pallardy 	vsnprintf(mem->name, sizeof(mem->name), name, args);
104572029c90SLoic Pallardy 	va_end(args);
104672029c90SLoic Pallardy 
104772029c90SLoic Pallardy 	return mem;
104872029c90SLoic Pallardy }
104972029c90SLoic Pallardy EXPORT_SYMBOL(rproc_mem_entry_init);
105072029c90SLoic Pallardy 
105172029c90SLoic Pallardy /**
10521429cca1SLoic Pallardy  * rproc_of_resm_mem_entry_init() - allocate and initialize rproc_mem_entry struct
10531429cca1SLoic Pallardy  * from a reserved memory phandle
10541429cca1SLoic Pallardy  * @dev: pointer on device struct
10551429cca1SLoic Pallardy  * @of_resm_idx: reserved memory phandle index in "memory-region"
10561429cca1SLoic Pallardy  * @len: memory carveout length
10571429cca1SLoic Pallardy  * @da: device address
10581429cca1SLoic Pallardy  * @name: carveout name
10591429cca1SLoic Pallardy  *
10601429cca1SLoic Pallardy  * This function allocates a rproc_mem_entry struct and fill it with parameters
10611429cca1SLoic Pallardy  * provided by client.
1062f2867434SSuman Anna  *
1063f2867434SSuman Anna  * Return: a valid pointer on success, or NULL on failure
10641429cca1SLoic Pallardy  */
10657e05c8deSLee Jones __printf(5, 6)
10661429cca1SLoic Pallardy struct rproc_mem_entry *
1067096ee786SClement Leger rproc_of_resm_mem_entry_init(struct device *dev, u32 of_resm_idx, size_t len,
10681429cca1SLoic Pallardy 			     u32 da, const char *name, ...)
10691429cca1SLoic Pallardy {
10701429cca1SLoic Pallardy 	struct rproc_mem_entry *mem;
10711429cca1SLoic Pallardy 	va_list args;
10721429cca1SLoic Pallardy 
10731429cca1SLoic Pallardy 	mem = kzalloc(sizeof(*mem), GFP_KERNEL);
10741429cca1SLoic Pallardy 	if (!mem)
10751429cca1SLoic Pallardy 		return mem;
10761429cca1SLoic Pallardy 
10771429cca1SLoic Pallardy 	mem->da = da;
10781429cca1SLoic Pallardy 	mem->len = len;
10791429cca1SLoic Pallardy 	mem->rsc_offset = FW_RSC_ADDR_ANY;
10801429cca1SLoic Pallardy 	mem->of_resm_idx = of_resm_idx;
10811429cca1SLoic Pallardy 
10821429cca1SLoic Pallardy 	va_start(args, name);
10831429cca1SLoic Pallardy 	vsnprintf(mem->name, sizeof(mem->name), name, args);
10841429cca1SLoic Pallardy 	va_end(args);
10851429cca1SLoic Pallardy 
10861429cca1SLoic Pallardy 	return mem;
10871429cca1SLoic Pallardy }
10881429cca1SLoic Pallardy EXPORT_SYMBOL(rproc_of_resm_mem_entry_init);
10891429cca1SLoic Pallardy 
1090a8aa5ee1SSuman Anna /**
1091a8aa5ee1SSuman Anna  * rproc_of_parse_firmware() - parse and return the firmware-name
1092a8aa5ee1SSuman Anna  * @dev: pointer on device struct representing a rproc
1093a8aa5ee1SSuman Anna  * @index: index to use for the firmware-name retrieval
1094a8aa5ee1SSuman Anna  * @fw_name: pointer to a character string, in which the firmware
1095a8aa5ee1SSuman Anna  *           name is returned on success and unmodified otherwise.
1096a8aa5ee1SSuman Anna  *
1097a8aa5ee1SSuman Anna  * This is an OF helper function that parses a device's DT node for
1098a8aa5ee1SSuman Anna  * the "firmware-name" property and returns the firmware name pointer
1099a8aa5ee1SSuman Anna  * in @fw_name on success.
1100a8aa5ee1SSuman Anna  *
1101a8aa5ee1SSuman Anna  * Return: 0 on success, or an appropriate failure.
1102a8aa5ee1SSuman Anna  */
1103a8aa5ee1SSuman Anna int rproc_of_parse_firmware(struct device *dev, int index, const char **fw_name)
1104a8aa5ee1SSuman Anna {
1105a8aa5ee1SSuman Anna 	int ret;
1106a8aa5ee1SSuman Anna 
1107a8aa5ee1SSuman Anna 	ret = of_property_read_string_index(dev->of_node, "firmware-name",
1108a8aa5ee1SSuman Anna 					    index, fw_name);
1109a8aa5ee1SSuman Anna 	return ret ? ret : 0;
1110a8aa5ee1SSuman Anna }
1111a8aa5ee1SSuman Anna EXPORT_SYMBOL(rproc_of_parse_firmware);
1112a8aa5ee1SSuman Anna 
11132e7d4c2cSArnaud Pouliquen /*
1114e12bc14bSOhad Ben-Cohen  * A lookup table for resource handlers. The indices are defined in
1115e12bc14bSOhad Ben-Cohen  * enum fw_resource_type.
1116e12bc14bSOhad Ben-Cohen  */
1117232fcdbbSSjur Brændeland static rproc_handle_resource_t rproc_loading_handlers[RSC_LAST] = {
11182bf23461SJindong Yue 	[RSC_CARVEOUT] = rproc_handle_carveout,
11192bf23461SJindong Yue 	[RSC_DEVMEM] = rproc_handle_devmem,
11202bf23461SJindong Yue 	[RSC_TRACE] = rproc_handle_trace,
11212bf23461SJindong Yue 	[RSC_VDEV] = rproc_handle_vdev,
1122232fcdbbSSjur Brændeland };
1123232fcdbbSSjur Brændeland 
1124400e64dfSOhad Ben-Cohen /* handle firmware resource entries before booting the remote processor */
1125a4b24c75SBjorn Andersson static int rproc_handle_resources(struct rproc *rproc,
1126232fcdbbSSjur Brændeland 				  rproc_handle_resource_t handlers[RSC_LAST])
1127400e64dfSOhad Ben-Cohen {
1128b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
1129e12bc14bSOhad Ben-Cohen 	rproc_handle_resource_t handler;
1130fd2c15ecSOhad Ben-Cohen 	int ret = 0, i;
1131400e64dfSOhad Ben-Cohen 
1132d4bb86f2SBjorn Andersson 	if (!rproc->table_ptr)
1133d4bb86f2SBjorn Andersson 		return 0;
1134d4bb86f2SBjorn Andersson 
1135a2b950acSOhad Ben-Cohen 	for (i = 0; i < rproc->table_ptr->num; i++) {
1136a2b950acSOhad Ben-Cohen 		int offset = rproc->table_ptr->offset[i];
1137a2b950acSOhad Ben-Cohen 		struct fw_rsc_hdr *hdr = (void *)rproc->table_ptr + offset;
1138a4b24c75SBjorn Andersson 		int avail = rproc->table_sz - offset - sizeof(*hdr);
1139fd2c15ecSOhad Ben-Cohen 		void *rsc = (void *)hdr + sizeof(*hdr);
1140400e64dfSOhad Ben-Cohen 
1141fd2c15ecSOhad Ben-Cohen 		/* make sure table isn't truncated */
1142fd2c15ecSOhad Ben-Cohen 		if (avail < 0) {
1143fd2c15ecSOhad Ben-Cohen 			dev_err(dev, "rsc table is truncated\n");
1144fd2c15ecSOhad Ben-Cohen 			return -EINVAL;
1145fd2c15ecSOhad Ben-Cohen 		}
1146fd2c15ecSOhad Ben-Cohen 
1147fd2c15ecSOhad Ben-Cohen 		dev_dbg(dev, "rsc: type %d\n", hdr->type);
1148fd2c15ecSOhad Ben-Cohen 
1149b1a17513SClement Leger 		if (hdr->type >= RSC_VENDOR_START &&
1150b1a17513SClement Leger 		    hdr->type <= RSC_VENDOR_END) {
1151b1a17513SClement Leger 			ret = rproc_handle_rsc(rproc, hdr->type, rsc,
1152b1a17513SClement Leger 					       offset + sizeof(*hdr), avail);
1153b1a17513SClement Leger 			if (ret == RSC_HANDLED)
1154b1a17513SClement Leger 				continue;
1155b1a17513SClement Leger 			else if (ret < 0)
1156b1a17513SClement Leger 				break;
1157b1a17513SClement Leger 
1158b1a17513SClement Leger 			dev_warn(dev, "unsupported vendor resource %d\n",
1159b1a17513SClement Leger 				 hdr->type);
1160b1a17513SClement Leger 			continue;
1161b1a17513SClement Leger 		}
1162b1a17513SClement Leger 
1163fd2c15ecSOhad Ben-Cohen 		if (hdr->type >= RSC_LAST) {
1164fd2c15ecSOhad Ben-Cohen 			dev_warn(dev, "unsupported resource %d\n", hdr->type);
1165e12bc14bSOhad Ben-Cohen 			continue;
1166400e64dfSOhad Ben-Cohen 		}
1167400e64dfSOhad Ben-Cohen 
1168232fcdbbSSjur Brændeland 		handler = handlers[hdr->type];
1169e12bc14bSOhad Ben-Cohen 		if (!handler)
1170e12bc14bSOhad Ben-Cohen 			continue;
1171e12bc14bSOhad Ben-Cohen 
1172a2b950acSOhad Ben-Cohen 		ret = handler(rproc, rsc, offset + sizeof(*hdr), avail);
11737a186941SOhad Ben-Cohen 		if (ret)
1174400e64dfSOhad Ben-Cohen 			break;
1175400e64dfSOhad Ben-Cohen 	}
1176400e64dfSOhad Ben-Cohen 
1177400e64dfSOhad Ben-Cohen 	return ret;
1178400e64dfSOhad Ben-Cohen }
1179400e64dfSOhad Ben-Cohen 
1180c455daa4SBjorn Andersson static int rproc_prepare_subdevices(struct rproc *rproc)
1181c455daa4SBjorn Andersson {
1182c455daa4SBjorn Andersson 	struct rproc_subdev *subdev;
1183c455daa4SBjorn Andersson 	int ret;
1184c455daa4SBjorn Andersson 
1185c455daa4SBjorn Andersson 	list_for_each_entry(subdev, &rproc->subdevs, node) {
1186c455daa4SBjorn Andersson 		if (subdev->prepare) {
1187c455daa4SBjorn Andersson 			ret = subdev->prepare(subdev);
1188c455daa4SBjorn Andersson 			if (ret)
1189c455daa4SBjorn Andersson 				goto unroll_preparation;
1190c455daa4SBjorn Andersson 		}
1191c455daa4SBjorn Andersson 	}
1192c455daa4SBjorn Andersson 
1193c455daa4SBjorn Andersson 	return 0;
1194c455daa4SBjorn Andersson 
1195c455daa4SBjorn Andersson unroll_preparation:
1196c455daa4SBjorn Andersson 	list_for_each_entry_continue_reverse(subdev, &rproc->subdevs, node) {
1197c455daa4SBjorn Andersson 		if (subdev->unprepare)
1198c455daa4SBjorn Andersson 			subdev->unprepare(subdev);
1199c455daa4SBjorn Andersson 	}
1200c455daa4SBjorn Andersson 
1201c455daa4SBjorn Andersson 	return ret;
1202c455daa4SBjorn Andersson }
1203c455daa4SBjorn Andersson 
1204618fcff3SBjorn Andersson static int rproc_start_subdevices(struct rproc *rproc)
12057bdc9650SBjorn Andersson {
12067bdc9650SBjorn Andersson 	struct rproc_subdev *subdev;
12077bdc9650SBjorn Andersson 	int ret;
12087bdc9650SBjorn Andersson 
12097bdc9650SBjorn Andersson 	list_for_each_entry(subdev, &rproc->subdevs, node) {
1210be37b1e0SBjorn Andersson 		if (subdev->start) {
1211618fcff3SBjorn Andersson 			ret = subdev->start(subdev);
12127bdc9650SBjorn Andersson 			if (ret)
12137bdc9650SBjorn Andersson 				goto unroll_registration;
12147bdc9650SBjorn Andersson 		}
1215be37b1e0SBjorn Andersson 	}
12167bdc9650SBjorn Andersson 
12177bdc9650SBjorn Andersson 	return 0;
12187bdc9650SBjorn Andersson 
12197bdc9650SBjorn Andersson unroll_registration:
1220be37b1e0SBjorn Andersson 	list_for_each_entry_continue_reverse(subdev, &rproc->subdevs, node) {
1221be37b1e0SBjorn Andersson 		if (subdev->stop)
1222618fcff3SBjorn Andersson 			subdev->stop(subdev, true);
1223be37b1e0SBjorn Andersson 	}
12247bdc9650SBjorn Andersson 
12257bdc9650SBjorn Andersson 	return ret;
12267bdc9650SBjorn Andersson }
12277bdc9650SBjorn Andersson 
1228618fcff3SBjorn Andersson static void rproc_stop_subdevices(struct rproc *rproc, bool crashed)
12297bdc9650SBjorn Andersson {
12307bdc9650SBjorn Andersson 	struct rproc_subdev *subdev;
12317bdc9650SBjorn Andersson 
1232be37b1e0SBjorn Andersson 	list_for_each_entry_reverse(subdev, &rproc->subdevs, node) {
1233be37b1e0SBjorn Andersson 		if (subdev->stop)
1234618fcff3SBjorn Andersson 			subdev->stop(subdev, crashed);
12357bdc9650SBjorn Andersson 	}
1236be37b1e0SBjorn Andersson }
12377bdc9650SBjorn Andersson 
1238c455daa4SBjorn Andersson static void rproc_unprepare_subdevices(struct rproc *rproc)
1239c455daa4SBjorn Andersson {
1240c455daa4SBjorn Andersson 	struct rproc_subdev *subdev;
1241c455daa4SBjorn Andersson 
1242c455daa4SBjorn Andersson 	list_for_each_entry_reverse(subdev, &rproc->subdevs, node) {
1243c455daa4SBjorn Andersson 		if (subdev->unprepare)
1244c455daa4SBjorn Andersson 			subdev->unprepare(subdev);
1245c455daa4SBjorn Andersson 	}
1246c455daa4SBjorn Andersson }
1247c455daa4SBjorn Andersson 
1248400e64dfSOhad Ben-Cohen /**
1249d7c51706SLoic Pallardy  * rproc_alloc_registered_carveouts() - allocate all carveouts registered
1250d7c51706SLoic Pallardy  * in the list
1251d7c51706SLoic Pallardy  * @rproc: the remote processor handle
1252d7c51706SLoic Pallardy  *
1253d7c51706SLoic Pallardy  * This function parses registered carveout list, performs allocation
1254d7c51706SLoic Pallardy  * if alloc() ops registered and updates resource table information
1255d7c51706SLoic Pallardy  * if rsc_offset set.
1256d7c51706SLoic Pallardy  *
1257d7c51706SLoic Pallardy  * Return: 0 on success
1258d7c51706SLoic Pallardy  */
1259d7c51706SLoic Pallardy static int rproc_alloc_registered_carveouts(struct rproc *rproc)
1260d7c51706SLoic Pallardy {
1261d7c51706SLoic Pallardy 	struct rproc_mem_entry *entry, *tmp;
1262d7c51706SLoic Pallardy 	struct fw_rsc_carveout *rsc;
1263d7c51706SLoic Pallardy 	struct device *dev = &rproc->dev;
1264b36de8cfSLoic Pallardy 	u64 pa;
1265d7c51706SLoic Pallardy 	int ret;
1266d7c51706SLoic Pallardy 
1267d7c51706SLoic Pallardy 	list_for_each_entry_safe(entry, tmp, &rproc->carveouts, node) {
1268d7c51706SLoic Pallardy 		if (entry->alloc) {
1269d7c51706SLoic Pallardy 			ret = entry->alloc(rproc, entry);
1270d7c51706SLoic Pallardy 			if (ret) {
1271d7c51706SLoic Pallardy 				dev_err(dev, "Unable to allocate carveout %s: %d\n",
1272d7c51706SLoic Pallardy 					entry->name, ret);
1273d7c51706SLoic Pallardy 				return -ENOMEM;
1274d7c51706SLoic Pallardy 			}
1275d7c51706SLoic Pallardy 		}
1276d7c51706SLoic Pallardy 
1277d7c51706SLoic Pallardy 		if (entry->rsc_offset != FW_RSC_ADDR_ANY) {
1278d7c51706SLoic Pallardy 			/* update resource table */
1279d7c51706SLoic Pallardy 			rsc = (void *)rproc->table_ptr + entry->rsc_offset;
1280d7c51706SLoic Pallardy 
1281d7c51706SLoic Pallardy 			/*
1282d7c51706SLoic Pallardy 			 * Some remote processors might need to know the pa
1283d7c51706SLoic Pallardy 			 * even though they are behind an IOMMU. E.g., OMAP4's
1284d7c51706SLoic Pallardy 			 * remote M3 processor needs this so it can control
1285d7c51706SLoic Pallardy 			 * on-chip hardware accelerators that are not behind
1286d7c51706SLoic Pallardy 			 * the IOMMU, and therefor must know the pa.
1287d7c51706SLoic Pallardy 			 *
1288d7c51706SLoic Pallardy 			 * Generally we don't want to expose physical addresses
1289d7c51706SLoic Pallardy 			 * if we don't have to (remote processors are generally
1290d7c51706SLoic Pallardy 			 * _not_ trusted), so we might want to do this only for
1291d7c51706SLoic Pallardy 			 * remote processor that _must_ have this (e.g. OMAP4's
1292d7c51706SLoic Pallardy 			 * dual M3 subsystem).
1293d7c51706SLoic Pallardy 			 *
1294d7c51706SLoic Pallardy 			 * Non-IOMMU processors might also want to have this info.
1295d7c51706SLoic Pallardy 			 * In this case, the device address and the physical address
1296d7c51706SLoic Pallardy 			 * are the same.
1297d7c51706SLoic Pallardy 			 */
1298ffa5f9c8SLoic Pallardy 
1299ffa5f9c8SLoic Pallardy 			/* Use va if defined else dma to generate pa */
1300d7c51706SLoic Pallardy 			if (entry->va)
1301b36de8cfSLoic Pallardy 				pa = (u64)rproc_va_to_pa(entry->va);
1302ffa5f9c8SLoic Pallardy 			else
1303b36de8cfSLoic Pallardy 				pa = (u64)entry->dma;
1304ffa5f9c8SLoic Pallardy 
1305b36de8cfSLoic Pallardy 			if (((u64)pa) & HIGH_BITS_MASK)
1306b36de8cfSLoic Pallardy 				dev_warn(dev,
1307b36de8cfSLoic Pallardy 					 "Physical address cast in 32bit to fit resource table format\n");
1308b36de8cfSLoic Pallardy 
1309b36de8cfSLoic Pallardy 			rsc->pa = (u32)pa;
1310ffa5f9c8SLoic Pallardy 			rsc->da = entry->da;
1311ffa5f9c8SLoic Pallardy 			rsc->len = entry->len;
1312d7c51706SLoic Pallardy 		}
1313d7c51706SLoic Pallardy 	}
1314d7c51706SLoic Pallardy 
1315d7c51706SLoic Pallardy 	return 0;
1316d7c51706SLoic Pallardy }
1317d7c51706SLoic Pallardy 
13182666ca91SSarangdhar Joshi 
13192666ca91SSarangdhar Joshi /**
1320400e64dfSOhad Ben-Cohen  * rproc_resource_cleanup() - clean up and free all acquired resources
1321400e64dfSOhad Ben-Cohen  * @rproc: rproc handle
1322400e64dfSOhad Ben-Cohen  *
1323400e64dfSOhad Ben-Cohen  * This function will free all resources acquired for @rproc, and it
13247a186941SOhad Ben-Cohen  * is called whenever @rproc either shuts down or fails to boot.
1325400e64dfSOhad Ben-Cohen  */
1326d9473cbfSMathieu Poirier void rproc_resource_cleanup(struct rproc *rproc)
1327400e64dfSOhad Ben-Cohen {
1328400e64dfSOhad Ben-Cohen 	struct rproc_mem_entry *entry, *tmp;
1329a987e6b9SLoic Pallardy 	struct rproc_debug_trace *trace, *ttmp;
1330d81fb32fSBjorn Andersson 	struct rproc_vdev *rvdev, *rvtmp;
1331b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
1332400e64dfSOhad Ben-Cohen 
1333400e64dfSOhad Ben-Cohen 	/* clean up debugfs trace entries */
1334a987e6b9SLoic Pallardy 	list_for_each_entry_safe(trace, ttmp, &rproc->traces, node) {
1335a987e6b9SLoic Pallardy 		rproc_remove_trace_file(trace->tfile);
1336400e64dfSOhad Ben-Cohen 		rproc->num_traces--;
1337a987e6b9SLoic Pallardy 		list_del(&trace->node);
1338a987e6b9SLoic Pallardy 		kfree(trace);
1339400e64dfSOhad Ben-Cohen 	}
1340400e64dfSOhad Ben-Cohen 
1341400e64dfSOhad Ben-Cohen 	/* clean up iommu mapping entries */
1342400e64dfSOhad Ben-Cohen 	list_for_each_entry_safe(entry, tmp, &rproc->mappings, node) {
1343400e64dfSOhad Ben-Cohen 		size_t unmapped;
1344400e64dfSOhad Ben-Cohen 
1345400e64dfSOhad Ben-Cohen 		unmapped = iommu_unmap(rproc->domain, entry->da, entry->len);
1346400e64dfSOhad Ben-Cohen 		if (unmapped != entry->len) {
1347400e64dfSOhad Ben-Cohen 			/* nothing much to do besides complaining */
1348096ee786SClement Leger 			dev_err(dev, "failed to unmap %zx/%zu\n", entry->len,
1349400e64dfSOhad Ben-Cohen 				unmapped);
1350400e64dfSOhad Ben-Cohen 		}
1351400e64dfSOhad Ben-Cohen 
1352400e64dfSOhad Ben-Cohen 		list_del(&entry->node);
1353400e64dfSOhad Ben-Cohen 		kfree(entry);
1354400e64dfSOhad Ben-Cohen 	}
1355b6356a01SSuman Anna 
1356b6356a01SSuman Anna 	/* clean up carveout allocations */
1357b6356a01SSuman Anna 	list_for_each_entry_safe(entry, tmp, &rproc->carveouts, node) {
1358f2e74abfSLoic Pallardy 		if (entry->release)
1359f2e74abfSLoic Pallardy 			entry->release(rproc, entry);
1360b6356a01SSuman Anna 		list_del(&entry->node);
1361b6356a01SSuman Anna 		kfree(entry);
1362b6356a01SSuman Anna 	}
1363d81fb32fSBjorn Andersson 
1364d81fb32fSBjorn Andersson 	/* clean up remote vdev entries */
1365f5bcb353SBjorn Andersson 	list_for_each_entry_safe(rvdev, rvtmp, &rproc->rvdevs, node)
13662b45cef5SBjorn Andersson 		kref_put(&rvdev->refcount, rproc_vdev_release);
13672666ca91SSarangdhar Joshi 
13682666ca91SSarangdhar Joshi 	rproc_coredump_cleanup(rproc);
13692b45cef5SBjorn Andersson }
1370d9473cbfSMathieu Poirier EXPORT_SYMBOL(rproc_resource_cleanup);
1371400e64dfSOhad Ben-Cohen 
13721efa30d0SSarangdhar Joshi static int rproc_start(struct rproc *rproc, const struct firmware *fw)
13731efa30d0SSarangdhar Joshi {
1374a4b24c75SBjorn Andersson 	struct resource_table *loaded_table;
13751efa30d0SSarangdhar Joshi 	struct device *dev = &rproc->dev;
1376a4b24c75SBjorn Andersson 	int ret;
13771efa30d0SSarangdhar Joshi 
13781efa30d0SSarangdhar Joshi 	/* load the ELF segments to memory */
13791efa30d0SSarangdhar Joshi 	ret = rproc_load_segments(rproc, fw);
13801efa30d0SSarangdhar Joshi 	if (ret) {
13811efa30d0SSarangdhar Joshi 		dev_err(dev, "Failed to load program segments: %d\n", ret);
13821efa30d0SSarangdhar Joshi 		return ret;
13831efa30d0SSarangdhar Joshi 	}
13841efa30d0SSarangdhar Joshi 
13851efa30d0SSarangdhar Joshi 	/*
13861efa30d0SSarangdhar Joshi 	 * The starting device has been given the rproc->cached_table as the
13871efa30d0SSarangdhar Joshi 	 * resource table. The address of the vring along with the other
13881efa30d0SSarangdhar Joshi 	 * allocated resources (carveouts etc) is stored in cached_table.
13891efa30d0SSarangdhar Joshi 	 * In order to pass this information to the remote device we must copy
13901efa30d0SSarangdhar Joshi 	 * this information to device memory. We also update the table_ptr so
13911efa30d0SSarangdhar Joshi 	 * that any subsequent changes will be applied to the loaded version.
13921efa30d0SSarangdhar Joshi 	 */
13931efa30d0SSarangdhar Joshi 	loaded_table = rproc_find_loaded_rsc_table(rproc, fw);
13941efa30d0SSarangdhar Joshi 	if (loaded_table) {
1395a4b24c75SBjorn Andersson 		memcpy(loaded_table, rproc->cached_table, rproc->table_sz);
13961efa30d0SSarangdhar Joshi 		rproc->table_ptr = loaded_table;
13971efa30d0SSarangdhar Joshi 	}
13981efa30d0SSarangdhar Joshi 
1399c455daa4SBjorn Andersson 	ret = rproc_prepare_subdevices(rproc);
1400c455daa4SBjorn Andersson 	if (ret) {
1401c455daa4SBjorn Andersson 		dev_err(dev, "failed to prepare subdevices for %s: %d\n",
1402c455daa4SBjorn Andersson 			rproc->name, ret);
1403f68d51bdSSuman Anna 		goto reset_table_ptr;
1404c455daa4SBjorn Andersson 	}
1405c455daa4SBjorn Andersson 
14061efa30d0SSarangdhar Joshi 	/* power up the remote processor */
14071efa30d0SSarangdhar Joshi 	ret = rproc->ops->start(rproc);
14081efa30d0SSarangdhar Joshi 	if (ret) {
14091efa30d0SSarangdhar Joshi 		dev_err(dev, "can't start rproc %s: %d\n", rproc->name, ret);
1410c455daa4SBjorn Andersson 		goto unprepare_subdevices;
14111efa30d0SSarangdhar Joshi 	}
14121efa30d0SSarangdhar Joshi 
1413618fcff3SBjorn Andersson 	/* Start any subdevices for the remote processor */
1414618fcff3SBjorn Andersson 	ret = rproc_start_subdevices(rproc);
14151efa30d0SSarangdhar Joshi 	if (ret) {
14161efa30d0SSarangdhar Joshi 		dev_err(dev, "failed to probe subdevices for %s: %d\n",
14171efa30d0SSarangdhar Joshi 			rproc->name, ret);
1418c455daa4SBjorn Andersson 		goto stop_rproc;
14191efa30d0SSarangdhar Joshi 	}
14201efa30d0SSarangdhar Joshi 
14211efa30d0SSarangdhar Joshi 	rproc->state = RPROC_RUNNING;
14221efa30d0SSarangdhar Joshi 
14231efa30d0SSarangdhar Joshi 	dev_info(dev, "remote processor %s is now up\n", rproc->name);
14241efa30d0SSarangdhar Joshi 
14251efa30d0SSarangdhar Joshi 	return 0;
1426c455daa4SBjorn Andersson 
1427c455daa4SBjorn Andersson stop_rproc:
1428c455daa4SBjorn Andersson 	rproc->ops->stop(rproc);
1429c455daa4SBjorn Andersson unprepare_subdevices:
1430c455daa4SBjorn Andersson 	rproc_unprepare_subdevices(rproc);
1431f68d51bdSSuman Anna reset_table_ptr:
1432f68d51bdSSuman Anna 	rproc->table_ptr = rproc->cached_table;
1433c455daa4SBjorn Andersson 
1434c455daa4SBjorn Andersson 	return ret;
14351efa30d0SSarangdhar Joshi }
14361efa30d0SSarangdhar Joshi 
14376a6c4dc0SMathieu Poirier static int __rproc_attach(struct rproc *rproc)
1438d848a481SMathieu Poirier {
1439d848a481SMathieu Poirier 	struct device *dev = &rproc->dev;
1440d848a481SMathieu Poirier 	int ret;
1441d848a481SMathieu Poirier 
1442d848a481SMathieu Poirier 	ret = rproc_prepare_subdevices(rproc);
1443d848a481SMathieu Poirier 	if (ret) {
1444d848a481SMathieu Poirier 		dev_err(dev, "failed to prepare subdevices for %s: %d\n",
1445d848a481SMathieu Poirier 			rproc->name, ret);
1446d848a481SMathieu Poirier 		goto out;
1447d848a481SMathieu Poirier 	}
1448d848a481SMathieu Poirier 
1449d848a481SMathieu Poirier 	/* Attach to the remote processor */
1450d848a481SMathieu Poirier 	ret = rproc_attach_device(rproc);
1451d848a481SMathieu Poirier 	if (ret) {
1452d848a481SMathieu Poirier 		dev_err(dev, "can't attach to rproc %s: %d\n",
1453d848a481SMathieu Poirier 			rproc->name, ret);
1454d848a481SMathieu Poirier 		goto unprepare_subdevices;
1455d848a481SMathieu Poirier 	}
1456d848a481SMathieu Poirier 
1457d848a481SMathieu Poirier 	/* Start any subdevices for the remote processor */
1458d848a481SMathieu Poirier 	ret = rproc_start_subdevices(rproc);
1459d848a481SMathieu Poirier 	if (ret) {
1460d848a481SMathieu Poirier 		dev_err(dev, "failed to probe subdevices for %s: %d\n",
1461d848a481SMathieu Poirier 			rproc->name, ret);
1462d848a481SMathieu Poirier 		goto stop_rproc;
1463d848a481SMathieu Poirier 	}
1464d848a481SMathieu Poirier 
146576f4c875SMathieu Poirier 	rproc->state = RPROC_ATTACHED;
1466d848a481SMathieu Poirier 
1467d848a481SMathieu Poirier 	dev_info(dev, "remote processor %s is now attached\n", rproc->name);
1468d848a481SMathieu Poirier 
1469d848a481SMathieu Poirier 	return 0;
1470d848a481SMathieu Poirier 
1471d848a481SMathieu Poirier stop_rproc:
1472d848a481SMathieu Poirier 	rproc->ops->stop(rproc);
1473d848a481SMathieu Poirier unprepare_subdevices:
1474d848a481SMathieu Poirier 	rproc_unprepare_subdevices(rproc);
1475d848a481SMathieu Poirier out:
1476d848a481SMathieu Poirier 	return ret;
1477d848a481SMathieu Poirier }
1478d848a481SMathieu Poirier 
1479400e64dfSOhad Ben-Cohen /*
1480400e64dfSOhad Ben-Cohen  * take a firmware and boot a remote processor with it.
1481400e64dfSOhad Ben-Cohen  */
1482400e64dfSOhad Ben-Cohen static int rproc_fw_boot(struct rproc *rproc, const struct firmware *fw)
1483400e64dfSOhad Ben-Cohen {
1484b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
1485400e64dfSOhad Ben-Cohen 	const char *name = rproc->firmware;
148658b64090SBjorn Andersson 	int ret;
1487400e64dfSOhad Ben-Cohen 
1488400e64dfSOhad Ben-Cohen 	ret = rproc_fw_sanity_check(rproc, fw);
1489400e64dfSOhad Ben-Cohen 	if (ret)
1490400e64dfSOhad Ben-Cohen 		return ret;
1491400e64dfSOhad Ben-Cohen 
1492e981f6d4SSjur Brændeland 	dev_info(dev, "Booting fw image %s, size %zd\n", name, fw->size);
1493400e64dfSOhad Ben-Cohen 
1494400e64dfSOhad Ben-Cohen 	/*
1495400e64dfSOhad Ben-Cohen 	 * if enabling an IOMMU isn't relevant for this rproc, this is
1496400e64dfSOhad Ben-Cohen 	 * just a nop
1497400e64dfSOhad Ben-Cohen 	 */
1498400e64dfSOhad Ben-Cohen 	ret = rproc_enable_iommu(rproc);
1499400e64dfSOhad Ben-Cohen 	if (ret) {
1500400e64dfSOhad Ben-Cohen 		dev_err(dev, "can't enable iommu: %d\n", ret);
150149cff125SMathieu Poirier 		return ret;
1502400e64dfSOhad Ben-Cohen 	}
1503400e64dfSOhad Ben-Cohen 
150433467ac3SLoic Pallardy 	/* Prepare rproc for firmware loading if needed */
150533467ac3SLoic Pallardy 	ret = rproc_prepare_device(rproc);
150633467ac3SLoic Pallardy 	if (ret) {
150733467ac3SLoic Pallardy 		dev_err(dev, "can't prepare rproc %s: %d\n", rproc->name, ret);
150833467ac3SLoic Pallardy 		goto disable_iommu;
150933467ac3SLoic Pallardy 	}
151033467ac3SLoic Pallardy 
15113e5f9eb5SSjur Brændeland 	rproc->bootaddr = rproc_get_boot_addr(rproc, fw);
1512400e64dfSOhad Ben-Cohen 
1513c1d35c1aSBjorn Andersson 	/* Load resource table, core dump segment list etc from the firmware */
1514c1d35c1aSBjorn Andersson 	ret = rproc_parse_fw(rproc, fw);
151558b64090SBjorn Andersson 	if (ret)
151633467ac3SLoic Pallardy 		goto unprepare_rproc;
1517a0c10687SBjorn Andersson 
1518b35d7afcSBjorn Andersson 	/* reset max_notifyid */
1519b35d7afcSBjorn Andersson 	rproc->max_notifyid = -1;
1520b35d7afcSBjorn Andersson 
1521c6aed238SLoic Pallardy 	/* reset handled vdev */
1522c6aed238SLoic Pallardy 	rproc->nb_vdev = 0;
1523c6aed238SLoic Pallardy 
1524400e64dfSOhad Ben-Cohen 	/* handle fw resources which are required to boot rproc */
1525a4b24c75SBjorn Andersson 	ret = rproc_handle_resources(rproc, rproc_loading_handlers);
1526400e64dfSOhad Ben-Cohen 	if (ret) {
1527400e64dfSOhad Ben-Cohen 		dev_err(dev, "Failed to process resources: %d\n", ret);
1528229b85a6SBjorn Andersson 		goto clean_up_resources;
1529400e64dfSOhad Ben-Cohen 	}
1530400e64dfSOhad Ben-Cohen 
1531d7c51706SLoic Pallardy 	/* Allocate carveout resources associated to rproc */
1532d7c51706SLoic Pallardy 	ret = rproc_alloc_registered_carveouts(rproc);
1533d7c51706SLoic Pallardy 	if (ret) {
1534d7c51706SLoic Pallardy 		dev_err(dev, "Failed to allocate associated carveouts: %d\n",
1535d7c51706SLoic Pallardy 			ret);
1536d7c51706SLoic Pallardy 		goto clean_up_resources;
1537d7c51706SLoic Pallardy 	}
1538d7c51706SLoic Pallardy 
15391efa30d0SSarangdhar Joshi 	ret = rproc_start(rproc, fw);
15401efa30d0SSarangdhar Joshi 	if (ret)
1541229b85a6SBjorn Andersson 		goto clean_up_resources;
1542400e64dfSOhad Ben-Cohen 
1543400e64dfSOhad Ben-Cohen 	return 0;
1544400e64dfSOhad Ben-Cohen 
1545229b85a6SBjorn Andersson clean_up_resources:
1546229b85a6SBjorn Andersson 	rproc_resource_cleanup(rproc);
1547a0c10687SBjorn Andersson 	kfree(rproc->cached_table);
1548a0c10687SBjorn Andersson 	rproc->cached_table = NULL;
1549988d204cSBjorn Andersson 	rproc->table_ptr = NULL;
155033467ac3SLoic Pallardy unprepare_rproc:
155133467ac3SLoic Pallardy 	/* release HW resources if needed */
155233467ac3SLoic Pallardy 	rproc_unprepare_device(rproc);
155358b64090SBjorn Andersson disable_iommu:
1554400e64dfSOhad Ben-Cohen 	rproc_disable_iommu(rproc);
1555400e64dfSOhad Ben-Cohen 	return ret;
1556400e64dfSOhad Ben-Cohen }
1557400e64dfSOhad Ben-Cohen 
15581a631382SMathieu Poirier static int rproc_set_rsc_table(struct rproc *rproc)
15591a631382SMathieu Poirier {
15601a631382SMathieu Poirier 	struct resource_table *table_ptr;
15611a631382SMathieu Poirier 	struct device *dev = &rproc->dev;
15621a631382SMathieu Poirier 	size_t table_sz;
15631a631382SMathieu Poirier 	int ret;
15641a631382SMathieu Poirier 
15651a631382SMathieu Poirier 	table_ptr = rproc_get_loaded_rsc_table(rproc, &table_sz);
15661a631382SMathieu Poirier 	if (!table_ptr) {
15671a631382SMathieu Poirier 		/* Not having a resource table is acceptable */
15681a631382SMathieu Poirier 		return 0;
15691a631382SMathieu Poirier 	}
15701a631382SMathieu Poirier 
15711a631382SMathieu Poirier 	if (IS_ERR(table_ptr)) {
15721a631382SMathieu Poirier 		ret = PTR_ERR(table_ptr);
15731a631382SMathieu Poirier 		dev_err(dev, "can't load resource table: %d\n", ret);
15741a631382SMathieu Poirier 		return ret;
15751a631382SMathieu Poirier 	}
15761a631382SMathieu Poirier 
15779dc9507fSMathieu Poirier 	/*
15789dc9507fSMathieu Poirier 	 * If it is possible to detach the remote processor, keep an untouched
15799dc9507fSMathieu Poirier 	 * copy of the resource table.  That way we can start fresh again when
15809dc9507fSMathieu Poirier 	 * the remote processor is re-attached, that is:
15819dc9507fSMathieu Poirier 	 *
15829dc9507fSMathieu Poirier 	 *      DETACHED -> ATTACHED -> DETACHED -> ATTACHED
15839dc9507fSMathieu Poirier 	 *
15849dc9507fSMathieu Poirier 	 * Free'd in rproc_reset_rsc_table_on_detach() and
15859dc9507fSMathieu Poirier 	 * rproc_reset_rsc_table_on_stop().
15869dc9507fSMathieu Poirier 	 */
15879dc9507fSMathieu Poirier 	if (rproc->ops->detach) {
15889dc9507fSMathieu Poirier 		rproc->clean_table = kmemdup(table_ptr, table_sz, GFP_KERNEL);
15899dc9507fSMathieu Poirier 		if (!rproc->clean_table)
15909dc9507fSMathieu Poirier 			return -ENOMEM;
15919dc9507fSMathieu Poirier 	} else {
15929dc9507fSMathieu Poirier 		rproc->clean_table = NULL;
15939dc9507fSMathieu Poirier 	}
15949dc9507fSMathieu Poirier 
15951a631382SMathieu Poirier 	rproc->cached_table = NULL;
15961a631382SMathieu Poirier 	rproc->table_ptr = table_ptr;
15971a631382SMathieu Poirier 	rproc->table_sz = table_sz;
15981a631382SMathieu Poirier 
15991a631382SMathieu Poirier 	return 0;
16001a631382SMathieu Poirier }
16011a631382SMathieu Poirier 
16029dc9507fSMathieu Poirier static int rproc_reset_rsc_table_on_detach(struct rproc *rproc)
16039dc9507fSMathieu Poirier {
16049dc9507fSMathieu Poirier 	struct resource_table *table_ptr;
16059dc9507fSMathieu Poirier 
16069dc9507fSMathieu Poirier 	/* A resource table was never retrieved, nothing to do here */
16079dc9507fSMathieu Poirier 	if (!rproc->table_ptr)
16089dc9507fSMathieu Poirier 		return 0;
16099dc9507fSMathieu Poirier 
16109dc9507fSMathieu Poirier 	/*
16119dc9507fSMathieu Poirier 	 * If we made it to this point a clean_table _must_ have been
16129dc9507fSMathieu Poirier 	 * allocated in rproc_set_rsc_table().  If one isn't present
16139dc9507fSMathieu Poirier 	 * something went really wrong and we must complain.
16149dc9507fSMathieu Poirier 	 */
16159dc9507fSMathieu Poirier 	if (WARN_ON(!rproc->clean_table))
16169dc9507fSMathieu Poirier 		return -EINVAL;
16179dc9507fSMathieu Poirier 
16189dc9507fSMathieu Poirier 	/* Remember where the external entity installed the resource table */
16199dc9507fSMathieu Poirier 	table_ptr = rproc->table_ptr;
16209dc9507fSMathieu Poirier 
16219dc9507fSMathieu Poirier 	/*
16229dc9507fSMathieu Poirier 	 * If we made it here the remote processor was started by another
16239dc9507fSMathieu Poirier 	 * entity and a cache table doesn't exist.  As such make a copy of
16249dc9507fSMathieu Poirier 	 * the resource table currently used by the remote processor and
16259dc9507fSMathieu Poirier 	 * use that for the rest of the shutdown process.  The memory
16269dc9507fSMathieu Poirier 	 * allocated here is free'd in rproc_detach().
16279dc9507fSMathieu Poirier 	 */
16289dc9507fSMathieu Poirier 	rproc->cached_table = kmemdup(rproc->table_ptr,
16299dc9507fSMathieu Poirier 				      rproc->table_sz, GFP_KERNEL);
16309dc9507fSMathieu Poirier 	if (!rproc->cached_table)
16319dc9507fSMathieu Poirier 		return -ENOMEM;
16329dc9507fSMathieu Poirier 
16339dc9507fSMathieu Poirier 	/*
16349dc9507fSMathieu Poirier 	 * Use a copy of the resource table for the remainder of the
16359dc9507fSMathieu Poirier 	 * shutdown process.
16369dc9507fSMathieu Poirier 	 */
16379dc9507fSMathieu Poirier 	rproc->table_ptr = rproc->cached_table;
16389dc9507fSMathieu Poirier 
16399dc9507fSMathieu Poirier 	/*
16409dc9507fSMathieu Poirier 	 * Reset the memory area where the firmware loaded the resource table
16419dc9507fSMathieu Poirier 	 * to its original value.  That way when we re-attach the remote
16429dc9507fSMathieu Poirier 	 * processor the resource table is clean and ready to be used again.
16439dc9507fSMathieu Poirier 	 */
16449dc9507fSMathieu Poirier 	memcpy(table_ptr, rproc->clean_table, rproc->table_sz);
16459dc9507fSMathieu Poirier 
16469dc9507fSMathieu Poirier 	/*
16479dc9507fSMathieu Poirier 	 * The clean resource table is no longer needed.  Allocated in
16489dc9507fSMathieu Poirier 	 * rproc_set_rsc_table().
16499dc9507fSMathieu Poirier 	 */
16509dc9507fSMathieu Poirier 	kfree(rproc->clean_table);
16519dc9507fSMathieu Poirier 
16529dc9507fSMathieu Poirier 	return 0;
16539dc9507fSMathieu Poirier }
16549dc9507fSMathieu Poirier 
16558088dd4dSMathieu Poirier static int rproc_reset_rsc_table_on_stop(struct rproc *rproc)
16568088dd4dSMathieu Poirier {
16578088dd4dSMathieu Poirier 	/* A resource table was never retrieved, nothing to do here */
16588088dd4dSMathieu Poirier 	if (!rproc->table_ptr)
16598088dd4dSMathieu Poirier 		return 0;
16608088dd4dSMathieu Poirier 
16618088dd4dSMathieu Poirier 	/*
16628088dd4dSMathieu Poirier 	 * If a cache table exists the remote processor was started by
16638088dd4dSMathieu Poirier 	 * the remoteproc core.  That cache table should be used for
16648088dd4dSMathieu Poirier 	 * the rest of the shutdown process.
16658088dd4dSMathieu Poirier 	 */
16668088dd4dSMathieu Poirier 	if (rproc->cached_table)
16678088dd4dSMathieu Poirier 		goto out;
16688088dd4dSMathieu Poirier 
16698088dd4dSMathieu Poirier 	/*
16708088dd4dSMathieu Poirier 	 * If we made it here the remote processor was started by another
16718088dd4dSMathieu Poirier 	 * entity and a cache table doesn't exist.  As such make a copy of
16728088dd4dSMathieu Poirier 	 * the resource table currently used by the remote processor and
16738088dd4dSMathieu Poirier 	 * use that for the rest of the shutdown process.  The memory
16748088dd4dSMathieu Poirier 	 * allocated here is free'd in rproc_shutdown().
16758088dd4dSMathieu Poirier 	 */
16768088dd4dSMathieu Poirier 	rproc->cached_table = kmemdup(rproc->table_ptr,
16778088dd4dSMathieu Poirier 				      rproc->table_sz, GFP_KERNEL);
16788088dd4dSMathieu Poirier 	if (!rproc->cached_table)
16798088dd4dSMathieu Poirier 		return -ENOMEM;
16808088dd4dSMathieu Poirier 
16818088dd4dSMathieu Poirier 	/*
16828088dd4dSMathieu Poirier 	 * Since the remote processor is being switched off the clean table
16838088dd4dSMathieu Poirier 	 * won't be needed.  Allocated in rproc_set_rsc_table().
16848088dd4dSMathieu Poirier 	 */
16858088dd4dSMathieu Poirier 	kfree(rproc->clean_table);
16868088dd4dSMathieu Poirier 
16878088dd4dSMathieu Poirier out:
16888088dd4dSMathieu Poirier 	/*
16898088dd4dSMathieu Poirier 	 * Use a copy of the resource table for the remainder of the
16908088dd4dSMathieu Poirier 	 * shutdown process.
16918088dd4dSMathieu Poirier 	 */
16928088dd4dSMathieu Poirier 	rproc->table_ptr = rproc->cached_table;
16938088dd4dSMathieu Poirier 	return 0;
16948088dd4dSMathieu Poirier }
16958088dd4dSMathieu Poirier 
1696400e64dfSOhad Ben-Cohen /*
1697fdf0e00eSMathieu Poirier  * Attach to remote processor - similar to rproc_fw_boot() but without
1698fdf0e00eSMathieu Poirier  * the steps that deal with the firmware image.
1699fdf0e00eSMathieu Poirier  */
17006a6c4dc0SMathieu Poirier static int rproc_attach(struct rproc *rproc)
1701fdf0e00eSMathieu Poirier {
1702fdf0e00eSMathieu Poirier 	struct device *dev = &rproc->dev;
1703fdf0e00eSMathieu Poirier 	int ret;
1704fdf0e00eSMathieu Poirier 
1705fdf0e00eSMathieu Poirier 	/*
1706fdf0e00eSMathieu Poirier 	 * if enabling an IOMMU isn't relevant for this rproc, this is
1707fdf0e00eSMathieu Poirier 	 * just a nop
1708fdf0e00eSMathieu Poirier 	 */
1709fdf0e00eSMathieu Poirier 	ret = rproc_enable_iommu(rproc);
1710fdf0e00eSMathieu Poirier 	if (ret) {
1711fdf0e00eSMathieu Poirier 		dev_err(dev, "can't enable iommu: %d\n", ret);
1712fdf0e00eSMathieu Poirier 		return ret;
1713fdf0e00eSMathieu Poirier 	}
1714fdf0e00eSMathieu Poirier 
17156e20a051SArnaud POULIQUEN 	/* Do anything that is needed to boot the remote processor */
17166e20a051SArnaud POULIQUEN 	ret = rproc_prepare_device(rproc);
17176e20a051SArnaud POULIQUEN 	if (ret) {
17186e20a051SArnaud POULIQUEN 		dev_err(dev, "can't prepare rproc %s: %d\n", rproc->name, ret);
17196e20a051SArnaud POULIQUEN 		goto disable_iommu;
17206e20a051SArnaud POULIQUEN 	}
17216e20a051SArnaud POULIQUEN 
17221a631382SMathieu Poirier 	ret = rproc_set_rsc_table(rproc);
17231a631382SMathieu Poirier 	if (ret) {
17241a631382SMathieu Poirier 		dev_err(dev, "can't load resource table: %d\n", ret);
17256e20a051SArnaud POULIQUEN 		goto unprepare_device;
17261a631382SMathieu Poirier 	}
17271a631382SMathieu Poirier 
1728fdf0e00eSMathieu Poirier 	/* reset max_notifyid */
1729fdf0e00eSMathieu Poirier 	rproc->max_notifyid = -1;
1730fdf0e00eSMathieu Poirier 
1731fdf0e00eSMathieu Poirier 	/* reset handled vdev */
1732fdf0e00eSMathieu Poirier 	rproc->nb_vdev = 0;
1733fdf0e00eSMathieu Poirier 
1734fdf0e00eSMathieu Poirier 	/*
1735fdf0e00eSMathieu Poirier 	 * Handle firmware resources required to attach to a remote processor.
1736fdf0e00eSMathieu Poirier 	 * Because we are attaching rather than booting the remote processor,
1737fdf0e00eSMathieu Poirier 	 * we expect the platform driver to properly set rproc->table_ptr.
1738fdf0e00eSMathieu Poirier 	 */
1739fdf0e00eSMathieu Poirier 	ret = rproc_handle_resources(rproc, rproc_loading_handlers);
1740fdf0e00eSMathieu Poirier 	if (ret) {
1741fdf0e00eSMathieu Poirier 		dev_err(dev, "Failed to process resources: %d\n", ret);
17426e20a051SArnaud POULIQUEN 		goto unprepare_device;
1743fdf0e00eSMathieu Poirier 	}
1744fdf0e00eSMathieu Poirier 
1745fdf0e00eSMathieu Poirier 	/* Allocate carveout resources associated to rproc */
1746fdf0e00eSMathieu Poirier 	ret = rproc_alloc_registered_carveouts(rproc);
1747fdf0e00eSMathieu Poirier 	if (ret) {
1748fdf0e00eSMathieu Poirier 		dev_err(dev, "Failed to allocate associated carveouts: %d\n",
1749fdf0e00eSMathieu Poirier 			ret);
1750fdf0e00eSMathieu Poirier 		goto clean_up_resources;
1751fdf0e00eSMathieu Poirier 	}
1752fdf0e00eSMathieu Poirier 
17536a6c4dc0SMathieu Poirier 	ret = __rproc_attach(rproc);
1754fdf0e00eSMathieu Poirier 	if (ret)
1755fdf0e00eSMathieu Poirier 		goto clean_up_resources;
1756fdf0e00eSMathieu Poirier 
1757fdf0e00eSMathieu Poirier 	return 0;
1758fdf0e00eSMathieu Poirier 
1759fdf0e00eSMathieu Poirier clean_up_resources:
1760fdf0e00eSMathieu Poirier 	rproc_resource_cleanup(rproc);
17616e20a051SArnaud POULIQUEN unprepare_device:
17626e20a051SArnaud POULIQUEN 	/* release HW resources if needed */
17636e20a051SArnaud POULIQUEN 	rproc_unprepare_device(rproc);
1764fdf0e00eSMathieu Poirier disable_iommu:
1765fdf0e00eSMathieu Poirier 	rproc_disable_iommu(rproc);
1766fdf0e00eSMathieu Poirier 	return ret;
1767fdf0e00eSMathieu Poirier }
1768fdf0e00eSMathieu Poirier 
1769fdf0e00eSMathieu Poirier /*
17705e6533f7SSarangdhar Joshi  * take a firmware and boot it up.
1771400e64dfSOhad Ben-Cohen  *
1772400e64dfSOhad Ben-Cohen  * Note: this function is called asynchronously upon registration of the
1773400e64dfSOhad Ben-Cohen  * remote processor (so we must wait until it completes before we try
1774400e64dfSOhad Ben-Cohen  * to unregister the device. one other option is just to use kref here,
1775400e64dfSOhad Ben-Cohen  * that might be cleaner).
1776400e64dfSOhad Ben-Cohen  */
17775e6533f7SSarangdhar Joshi static void rproc_auto_boot_callback(const struct firmware *fw, void *context)
1778400e64dfSOhad Ben-Cohen {
1779400e64dfSOhad Ben-Cohen 	struct rproc *rproc = context;
1780a2b950acSOhad Ben-Cohen 
17812bfc311aSBjorn Andersson 	rproc_boot(rproc);
1782ddf71187SBjorn Andersson 
1783400e64dfSOhad Ben-Cohen 	release_firmware(fw);
1784400e64dfSOhad Ben-Cohen }
1785400e64dfSOhad Ben-Cohen 
17865e6533f7SSarangdhar Joshi static int rproc_trigger_auto_boot(struct rproc *rproc)
178770b85ef8SFernando Guzman Lugo {
178870b85ef8SFernando Guzman Lugo 	int ret;
178970b85ef8SFernando Guzman Lugo 
179070b85ef8SFernando Guzman Lugo 	/*
1791e3d21939SMathieu Poirier 	 * Since the remote processor is in a detached state, it has already
1792e3d21939SMathieu Poirier 	 * been booted by another entity.  As such there is no point in waiting
1793e3d21939SMathieu Poirier 	 * for a firmware image to be loaded, we can simply initiate the process
1794e3d21939SMathieu Poirier 	 * of attaching to it immediately.
1795e3d21939SMathieu Poirier 	 */
1796e3d21939SMathieu Poirier 	if (rproc->state == RPROC_DETACHED)
1797e3d21939SMathieu Poirier 		return rproc_boot(rproc);
1798e3d21939SMathieu Poirier 
1799e3d21939SMathieu Poirier 	/*
180070b85ef8SFernando Guzman Lugo 	 * We're initiating an asynchronous firmware loading, so we can
180170b85ef8SFernando Guzman Lugo 	 * be built-in kernel code, without hanging the boot process.
180270b85ef8SFernando Guzman Lugo 	 */
18030733d839SShawn Guo 	ret = request_firmware_nowait(THIS_MODULE, FW_ACTION_UEVENT,
180470b85ef8SFernando Guzman Lugo 				      rproc->firmware, &rproc->dev, GFP_KERNEL,
18055e6533f7SSarangdhar Joshi 				      rproc, rproc_auto_boot_callback);
18062099c77dSSarangdhar Joshi 	if (ret < 0)
180770b85ef8SFernando Guzman Lugo 		dev_err(&rproc->dev, "request_firmware_nowait err: %d\n", ret);
180870b85ef8SFernando Guzman Lugo 
180970b85ef8SFernando Guzman Lugo 	return ret;
181070b85ef8SFernando Guzman Lugo }
181170b85ef8SFernando Guzman Lugo 
1812880f5b38SBjorn Andersson static int rproc_stop(struct rproc *rproc, bool crashed)
18131efa30d0SSarangdhar Joshi {
18141efa30d0SSarangdhar Joshi 	struct device *dev = &rproc->dev;
18151efa30d0SSarangdhar Joshi 	int ret;
18161efa30d0SSarangdhar Joshi 
1817d2008a96SMathieu Poirier 	/* No need to continue if a stop() operation has not been provided */
1818d2008a96SMathieu Poirier 	if (!rproc->ops->stop)
1819d2008a96SMathieu Poirier 		return -EINVAL;
1820d2008a96SMathieu Poirier 
1821618fcff3SBjorn Andersson 	/* Stop any subdevices for the remote processor */
1822618fcff3SBjorn Andersson 	rproc_stop_subdevices(rproc, crashed);
18231efa30d0SSarangdhar Joshi 
18240a8b81cbSBjorn Andersson 	/* the installed resource table is no longer accessible */
18258088dd4dSMathieu Poirier 	ret = rproc_reset_rsc_table_on_stop(rproc);
18268088dd4dSMathieu Poirier 	if (ret) {
18278088dd4dSMathieu Poirier 		dev_err(dev, "can't reset resource table: %d\n", ret);
18288088dd4dSMathieu Poirier 		return ret;
18298088dd4dSMathieu Poirier 	}
18308088dd4dSMathieu Poirier 
18310a8b81cbSBjorn Andersson 
18321efa30d0SSarangdhar Joshi 	/* power off the remote processor */
18331efa30d0SSarangdhar Joshi 	ret = rproc->ops->stop(rproc);
18341efa30d0SSarangdhar Joshi 	if (ret) {
18351efa30d0SSarangdhar Joshi 		dev_err(dev, "can't stop rproc: %d\n", ret);
18361efa30d0SSarangdhar Joshi 		return ret;
18371efa30d0SSarangdhar Joshi 	}
18381efa30d0SSarangdhar Joshi 
1839c455daa4SBjorn Andersson 	rproc_unprepare_subdevices(rproc);
1840c455daa4SBjorn Andersson 
18411efa30d0SSarangdhar Joshi 	rproc->state = RPROC_OFFLINE;
18421efa30d0SSarangdhar Joshi 
18431efa30d0SSarangdhar Joshi 	dev_info(dev, "stopped remote processor %s\n", rproc->name);
18441efa30d0SSarangdhar Joshi 
18451efa30d0SSarangdhar Joshi 	return 0;
18461efa30d0SSarangdhar Joshi }
18471efa30d0SSarangdhar Joshi 
18486070203fSMathieu Poirier /*
18496070203fSMathieu Poirier  * __rproc_detach(): Does the opposite of __rproc_attach()
18506070203fSMathieu Poirier  */
1851d3962a39SMathieu Poirier static int __rproc_detach(struct rproc *rproc)
18526070203fSMathieu Poirier {
18536070203fSMathieu Poirier 	struct device *dev = &rproc->dev;
18546070203fSMathieu Poirier 	int ret;
18556070203fSMathieu Poirier 
18566070203fSMathieu Poirier 	/* No need to continue if a detach() operation has not been provided */
18576070203fSMathieu Poirier 	if (!rproc->ops->detach)
18586070203fSMathieu Poirier 		return -EINVAL;
18596070203fSMathieu Poirier 
18606070203fSMathieu Poirier 	/* Stop any subdevices for the remote processor */
18616070203fSMathieu Poirier 	rproc_stop_subdevices(rproc, false);
18626070203fSMathieu Poirier 
18639dc9507fSMathieu Poirier 	/* the installed resource table is no longer accessible */
18649dc9507fSMathieu Poirier 	ret = rproc_reset_rsc_table_on_detach(rproc);
18659dc9507fSMathieu Poirier 	if (ret) {
18669dc9507fSMathieu Poirier 		dev_err(dev, "can't reset resource table: %d\n", ret);
18679dc9507fSMathieu Poirier 		return ret;
18689dc9507fSMathieu Poirier 	}
18699dc9507fSMathieu Poirier 
18706070203fSMathieu Poirier 	/* Tell the remote processor the core isn't available anymore */
18716070203fSMathieu Poirier 	ret = rproc->ops->detach(rproc);
18726070203fSMathieu Poirier 	if (ret) {
18736070203fSMathieu Poirier 		dev_err(dev, "can't detach from rproc: %d\n", ret);
18746070203fSMathieu Poirier 		return ret;
18756070203fSMathieu Poirier 	}
18766070203fSMathieu Poirier 
18776070203fSMathieu Poirier 	rproc_unprepare_subdevices(rproc);
18786070203fSMathieu Poirier 
18796070203fSMathieu Poirier 	rproc->state = RPROC_DETACHED;
18806070203fSMathieu Poirier 
18816070203fSMathieu Poirier 	dev_info(dev, "detached remote processor %s\n", rproc->name);
18826070203fSMathieu Poirier 
18836070203fSMathieu Poirier 	return 0;
18846070203fSMathieu Poirier }
18852666ca91SSarangdhar Joshi 
18862666ca91SSarangdhar Joshi /**
188770b85ef8SFernando Guzman Lugo  * rproc_trigger_recovery() - recover a remoteproc
188870b85ef8SFernando Guzman Lugo  * @rproc: the remote processor
188970b85ef8SFernando Guzman Lugo  *
189056324d7aSAnna, Suman  * The recovery is done by resetting all the virtio devices, that way all the
189170b85ef8SFernando Guzman Lugo  * rpmsg drivers will be reseted along with the remote processor making the
189270b85ef8SFernando Guzman Lugo  * remoteproc functional again.
189370b85ef8SFernando Guzman Lugo  *
189470b85ef8SFernando Guzman Lugo  * This function can sleep, so it cannot be called from atomic context.
1895f2867434SSuman Anna  *
1896f2867434SSuman Anna  * Return: 0 on success or a negative value upon failure
189770b85ef8SFernando Guzman Lugo  */
189870b85ef8SFernando Guzman Lugo int rproc_trigger_recovery(struct rproc *rproc)
189970b85ef8SFernando Guzman Lugo {
19007e83cab8SSarangdhar Joshi 	const struct firmware *firmware_p;
19017e83cab8SSarangdhar Joshi 	struct device *dev = &rproc->dev;
19027e83cab8SSarangdhar Joshi 	int ret;
19037e83cab8SSarangdhar Joshi 
19047e83cab8SSarangdhar Joshi 	ret = mutex_lock_interruptible(&rproc->lock);
19057e83cab8SSarangdhar Joshi 	if (ret)
19067e83cab8SSarangdhar Joshi 		return ret;
19077e83cab8SSarangdhar Joshi 
19080b145574SAlex Elder 	/* State could have changed before we got the mutex */
19090b145574SAlex Elder 	if (rproc->state != RPROC_CRASHED)
19100b145574SAlex Elder 		goto unlock_mutex;
19110b145574SAlex Elder 
19120b145574SAlex Elder 	dev_err(dev, "recovering %s\n", rproc->name);
19130b145574SAlex Elder 
1914fcd58037SArnaud Pouliquen 	ret = rproc_stop(rproc, true);
19157e83cab8SSarangdhar Joshi 	if (ret)
19167e83cab8SSarangdhar Joshi 		goto unlock_mutex;
1917ddf71187SBjorn Andersson 
19182666ca91SSarangdhar Joshi 	/* generate coredump */
1919adf60a87SSiddharth Gupta 	rproc->ops->coredump(rproc);
19202666ca91SSarangdhar Joshi 
19217e83cab8SSarangdhar Joshi 	/* load firmware */
19227e83cab8SSarangdhar Joshi 	ret = request_firmware(&firmware_p, rproc->firmware, dev);
19237e83cab8SSarangdhar Joshi 	if (ret < 0) {
19247e83cab8SSarangdhar Joshi 		dev_err(dev, "request_firmware failed: %d\n", ret);
19257e83cab8SSarangdhar Joshi 		goto unlock_mutex;
19267e83cab8SSarangdhar Joshi 	}
1927ddf71187SBjorn Andersson 
19287e83cab8SSarangdhar Joshi 	/* boot the remote processor up again */
19297e83cab8SSarangdhar Joshi 	ret = rproc_start(rproc, firmware_p);
19307e83cab8SSarangdhar Joshi 
19317e83cab8SSarangdhar Joshi 	release_firmware(firmware_p);
19327e83cab8SSarangdhar Joshi 
19337e83cab8SSarangdhar Joshi unlock_mutex:
19347e83cab8SSarangdhar Joshi 	mutex_unlock(&rproc->lock);
19357e83cab8SSarangdhar Joshi 	return ret;
193670b85ef8SFernando Guzman Lugo }
193770b85ef8SFernando Guzman Lugo 
1938400e64dfSOhad Ben-Cohen /**
19398afd519cSFernando Guzman Lugo  * rproc_crash_handler_work() - handle a crash
19402e7d4c2cSArnaud Pouliquen  * @work: work treating the crash
19418afd519cSFernando Guzman Lugo  *
19428afd519cSFernando Guzman Lugo  * This function needs to handle everything related to a crash, like cpu
19438afd519cSFernando Guzman Lugo  * registers and stack dump, information to help to debug the fatal error, etc.
19448afd519cSFernando Guzman Lugo  */
19458afd519cSFernando Guzman Lugo static void rproc_crash_handler_work(struct work_struct *work)
19468afd519cSFernando Guzman Lugo {
19478afd519cSFernando Guzman Lugo 	struct rproc *rproc = container_of(work, struct rproc, crash_handler);
19488afd519cSFernando Guzman Lugo 	struct device *dev = &rproc->dev;
19498afd519cSFernando Guzman Lugo 
19508afd519cSFernando Guzman Lugo 	dev_dbg(dev, "enter %s\n", __func__);
19518afd519cSFernando Guzman Lugo 
19528afd519cSFernando Guzman Lugo 	mutex_lock(&rproc->lock);
19538afd519cSFernando Guzman Lugo 
19548afd519cSFernando Guzman Lugo 	if (rproc->state == RPROC_CRASHED || rproc->state == RPROC_OFFLINE) {
19558afd519cSFernando Guzman Lugo 		/* handle only the first crash detected */
19568afd519cSFernando Guzman Lugo 		mutex_unlock(&rproc->lock);
19578afd519cSFernando Guzman Lugo 		return;
19588afd519cSFernando Guzman Lugo 	}
19598afd519cSFernando Guzman Lugo 
19608afd519cSFernando Guzman Lugo 	rproc->state = RPROC_CRASHED;
19618afd519cSFernando Guzman Lugo 	dev_err(dev, "handling crash #%u in %s\n", ++rproc->crash_cnt,
19628afd519cSFernando Guzman Lugo 		rproc->name);
19638afd519cSFernando Guzman Lugo 
19648afd519cSFernando Guzman Lugo 	mutex_unlock(&rproc->lock);
19658afd519cSFernando Guzman Lugo 
19662e37abb8SFernando Guzman Lugo 	if (!rproc->recovery_disabled)
196770b85ef8SFernando Guzman Lugo 		rproc_trigger_recovery(rproc);
1968a781e5aaSRishabh Bhatnagar 
1969a781e5aaSRishabh Bhatnagar 	pm_relax(rproc->dev.parent);
19708afd519cSFernando Guzman Lugo }
19718afd519cSFernando Guzman Lugo 
19728afd519cSFernando Guzman Lugo /**
19731b0ef906SSuman Anna  * rproc_boot() - boot a remote processor
1974400e64dfSOhad Ben-Cohen  * @rproc: handle of a remote processor
1975400e64dfSOhad Ben-Cohen  *
1976400e64dfSOhad Ben-Cohen  * Boot a remote processor (i.e. load its firmware, power it on, ...).
1977400e64dfSOhad Ben-Cohen  *
1978400e64dfSOhad Ben-Cohen  * If the remote processor is already powered on, this function immediately
1979400e64dfSOhad Ben-Cohen  * returns (successfully).
1980400e64dfSOhad Ben-Cohen  *
1981f2867434SSuman Anna  * Return: 0 on success, and an appropriate error value otherwise
1982400e64dfSOhad Ben-Cohen  */
19831b0ef906SSuman Anna int rproc_boot(struct rproc *rproc)
1984400e64dfSOhad Ben-Cohen {
1985400e64dfSOhad Ben-Cohen 	const struct firmware *firmware_p;
1986400e64dfSOhad Ben-Cohen 	struct device *dev;
1987400e64dfSOhad Ben-Cohen 	int ret;
1988400e64dfSOhad Ben-Cohen 
1989400e64dfSOhad Ben-Cohen 	if (!rproc) {
1990400e64dfSOhad Ben-Cohen 		pr_err("invalid rproc handle\n");
1991400e64dfSOhad Ben-Cohen 		return -EINVAL;
1992400e64dfSOhad Ben-Cohen 	}
1993400e64dfSOhad Ben-Cohen 
1994b5ab5e24SOhad Ben-Cohen 	dev = &rproc->dev;
1995400e64dfSOhad Ben-Cohen 
1996400e64dfSOhad Ben-Cohen 	ret = mutex_lock_interruptible(&rproc->lock);
1997400e64dfSOhad Ben-Cohen 	if (ret) {
1998400e64dfSOhad Ben-Cohen 		dev_err(dev, "can't lock rproc %s: %d\n", rproc->name, ret);
1999400e64dfSOhad Ben-Cohen 		return ret;
2000400e64dfSOhad Ben-Cohen 	}
2001400e64dfSOhad Ben-Cohen 
20022099c77dSSarangdhar Joshi 	if (rproc->state == RPROC_DELETED) {
20032099c77dSSarangdhar Joshi 		ret = -ENODEV;
20042099c77dSSarangdhar Joshi 		dev_err(dev, "can't boot deleted rproc %s\n", rproc->name);
20052099c77dSSarangdhar Joshi 		goto unlock_mutex;
20062099c77dSSarangdhar Joshi 	}
20072099c77dSSarangdhar Joshi 
20080f9dc562SMathieu Poirier 	/* skip the boot or attach process if rproc is already powered up */
2009400e64dfSOhad Ben-Cohen 	if (atomic_inc_return(&rproc->power) > 1) {
2010400e64dfSOhad Ben-Cohen 		ret = 0;
2011400e64dfSOhad Ben-Cohen 		goto unlock_mutex;
2012400e64dfSOhad Ben-Cohen 	}
2013400e64dfSOhad Ben-Cohen 
20140f9dc562SMathieu Poirier 	if (rproc->state == RPROC_DETACHED) {
20150f9dc562SMathieu Poirier 		dev_info(dev, "attaching to %s\n", rproc->name);
20160f9dc562SMathieu Poirier 
20176a6c4dc0SMathieu Poirier 		ret = rproc_attach(rproc);
20180f9dc562SMathieu Poirier 	} else {
2019400e64dfSOhad Ben-Cohen 		dev_info(dev, "powering up %s\n", rproc->name);
2020400e64dfSOhad Ben-Cohen 
2021400e64dfSOhad Ben-Cohen 		/* load firmware */
2022400e64dfSOhad Ben-Cohen 		ret = request_firmware(&firmware_p, rproc->firmware, dev);
2023400e64dfSOhad Ben-Cohen 		if (ret < 0) {
2024400e64dfSOhad Ben-Cohen 			dev_err(dev, "request_firmware failed: %d\n", ret);
2025400e64dfSOhad Ben-Cohen 			goto downref_rproc;
2026400e64dfSOhad Ben-Cohen 		}
2027400e64dfSOhad Ben-Cohen 
2028400e64dfSOhad Ben-Cohen 		ret = rproc_fw_boot(rproc, firmware_p);
2029400e64dfSOhad Ben-Cohen 
2030400e64dfSOhad Ben-Cohen 		release_firmware(firmware_p);
20310f9dc562SMathieu Poirier 	}
2032400e64dfSOhad Ben-Cohen 
2033400e64dfSOhad Ben-Cohen downref_rproc:
2034fbb6aacbSBjorn Andersson 	if (ret)
2035400e64dfSOhad Ben-Cohen 		atomic_dec(&rproc->power);
2036400e64dfSOhad Ben-Cohen unlock_mutex:
2037400e64dfSOhad Ben-Cohen 	mutex_unlock(&rproc->lock);
2038400e64dfSOhad Ben-Cohen 	return ret;
2039400e64dfSOhad Ben-Cohen }
2040400e64dfSOhad Ben-Cohen EXPORT_SYMBOL(rproc_boot);
2041400e64dfSOhad Ben-Cohen 
2042400e64dfSOhad Ben-Cohen /**
2043400e64dfSOhad Ben-Cohen  * rproc_shutdown() - power off the remote processor
2044400e64dfSOhad Ben-Cohen  * @rproc: the remote processor
2045400e64dfSOhad Ben-Cohen  *
2046400e64dfSOhad Ben-Cohen  * Power off a remote processor (previously booted with rproc_boot()).
2047400e64dfSOhad Ben-Cohen  *
2048400e64dfSOhad Ben-Cohen  * In case @rproc is still being used by an additional user(s), then
2049400e64dfSOhad Ben-Cohen  * this function will just decrement the power refcount and exit,
2050400e64dfSOhad Ben-Cohen  * without really powering off the device.
2051400e64dfSOhad Ben-Cohen  *
2052400e64dfSOhad Ben-Cohen  * Every call to rproc_boot() must (eventually) be accompanied by a call
2053400e64dfSOhad Ben-Cohen  * to rproc_shutdown(). Calling rproc_shutdown() redundantly is a bug.
2054400e64dfSOhad Ben-Cohen  *
2055400e64dfSOhad Ben-Cohen  * Notes:
2056400e64dfSOhad Ben-Cohen  * - we're not decrementing the rproc's refcount, only the power refcount.
2057400e64dfSOhad Ben-Cohen  *   which means that the @rproc handle stays valid even after rproc_shutdown()
2058400e64dfSOhad Ben-Cohen  *   returns, and users can still use it with a subsequent rproc_boot(), if
2059400e64dfSOhad Ben-Cohen  *   needed.
2060c13b780cSSuman Anna  *
2061c13b780cSSuman Anna  * Return: 0 on success, and an appropriate error value otherwise
2062400e64dfSOhad Ben-Cohen  */
2063c13b780cSSuman Anna int rproc_shutdown(struct rproc *rproc)
2064400e64dfSOhad Ben-Cohen {
2065b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
2066c13b780cSSuman Anna 	int ret = 0;
2067400e64dfSOhad Ben-Cohen 
2068400e64dfSOhad Ben-Cohen 	ret = mutex_lock_interruptible(&rproc->lock);
2069400e64dfSOhad Ben-Cohen 	if (ret) {
2070400e64dfSOhad Ben-Cohen 		dev_err(dev, "can't lock rproc %s: %d\n", rproc->name, ret);
2071c13b780cSSuman Anna 		return ret;
2072400e64dfSOhad Ben-Cohen 	}
2073400e64dfSOhad Ben-Cohen 
2074*5e6a0e05SShengjiu Wang 	if (rproc->state != RPROC_RUNNING &&
2075*5e6a0e05SShengjiu Wang 	    rproc->state != RPROC_ATTACHED) {
2076*5e6a0e05SShengjiu Wang 		ret = -EINVAL;
2077*5e6a0e05SShengjiu Wang 		goto out;
2078*5e6a0e05SShengjiu Wang 	}
2079*5e6a0e05SShengjiu Wang 
2080400e64dfSOhad Ben-Cohen 	/* if the remote proc is still needed, bail out */
2081400e64dfSOhad Ben-Cohen 	if (!atomic_dec_and_test(&rproc->power))
2082400e64dfSOhad Ben-Cohen 		goto out;
2083400e64dfSOhad Ben-Cohen 
2084fcd58037SArnaud Pouliquen 	ret = rproc_stop(rproc, false);
2085400e64dfSOhad Ben-Cohen 	if (ret) {
2086400e64dfSOhad Ben-Cohen 		atomic_inc(&rproc->power);
2087400e64dfSOhad Ben-Cohen 		goto out;
2088400e64dfSOhad Ben-Cohen 	}
2089400e64dfSOhad Ben-Cohen 
2090400e64dfSOhad Ben-Cohen 	/* clean up all acquired resources */
2091400e64dfSOhad Ben-Cohen 	rproc_resource_cleanup(rproc);
2092400e64dfSOhad Ben-Cohen 
209333467ac3SLoic Pallardy 	/* release HW resources if needed */
209433467ac3SLoic Pallardy 	rproc_unprepare_device(rproc);
209533467ac3SLoic Pallardy 
2096400e64dfSOhad Ben-Cohen 	rproc_disable_iommu(rproc);
2097400e64dfSOhad Ben-Cohen 
2098988d204cSBjorn Andersson 	/* Free the copy of the resource table */
2099a0c10687SBjorn Andersson 	kfree(rproc->cached_table);
2100a0c10687SBjorn Andersson 	rproc->cached_table = NULL;
2101988d204cSBjorn Andersson 	rproc->table_ptr = NULL;
2102400e64dfSOhad Ben-Cohen out:
2103400e64dfSOhad Ben-Cohen 	mutex_unlock(&rproc->lock);
2104c13b780cSSuman Anna 	return ret;
2105400e64dfSOhad Ben-Cohen }
2106400e64dfSOhad Ben-Cohen EXPORT_SYMBOL(rproc_shutdown);
2107400e64dfSOhad Ben-Cohen 
2108400e64dfSOhad Ben-Cohen /**
2109d3962a39SMathieu Poirier  * rproc_detach() - Detach the remote processor from the
2110d3962a39SMathieu Poirier  * remoteproc core
2111d3962a39SMathieu Poirier  *
2112d3962a39SMathieu Poirier  * @rproc: the remote processor
2113d3962a39SMathieu Poirier  *
2114d3962a39SMathieu Poirier  * Detach a remote processor (previously attached to with rproc_attach()).
2115d3962a39SMathieu Poirier  *
2116d3962a39SMathieu Poirier  * In case @rproc is still being used by an additional user(s), then
2117d3962a39SMathieu Poirier  * this function will just decrement the power refcount and exit,
2118d3962a39SMathieu Poirier  * without disconnecting the device.
2119d3962a39SMathieu Poirier  *
2120d3962a39SMathieu Poirier  * Function rproc_detach() calls __rproc_detach() in order to let a remote
2121d3962a39SMathieu Poirier  * processor know that services provided by the application processor are
2122d3962a39SMathieu Poirier  * no longer available.  From there it should be possible to remove the
2123d3962a39SMathieu Poirier  * platform driver and even power cycle the application processor (if the HW
2124d3962a39SMathieu Poirier  * supports it) without needing to switch off the remote processor.
2125f2867434SSuman Anna  *
2126f2867434SSuman Anna  * Return: 0 on success, and an appropriate error value otherwise
2127d3962a39SMathieu Poirier  */
2128d3962a39SMathieu Poirier int rproc_detach(struct rproc *rproc)
2129d3962a39SMathieu Poirier {
2130d3962a39SMathieu Poirier 	struct device *dev = &rproc->dev;
2131d3962a39SMathieu Poirier 	int ret;
2132d3962a39SMathieu Poirier 
2133d3962a39SMathieu Poirier 	ret = mutex_lock_interruptible(&rproc->lock);
2134d3962a39SMathieu Poirier 	if (ret) {
2135d3962a39SMathieu Poirier 		dev_err(dev, "can't lock rproc %s: %d\n", rproc->name, ret);
2136d3962a39SMathieu Poirier 		return ret;
2137d3962a39SMathieu Poirier 	}
2138d3962a39SMathieu Poirier 
2139*5e6a0e05SShengjiu Wang 	if (rproc->state != RPROC_ATTACHED) {
2140*5e6a0e05SShengjiu Wang 		ret = -EINVAL;
2141*5e6a0e05SShengjiu Wang 		goto out;
2142*5e6a0e05SShengjiu Wang 	}
2143*5e6a0e05SShengjiu Wang 
2144d3962a39SMathieu Poirier 	/* if the remote proc is still needed, bail out */
2145d3962a39SMathieu Poirier 	if (!atomic_dec_and_test(&rproc->power)) {
2146d3962a39SMathieu Poirier 		ret = 0;
2147d3962a39SMathieu Poirier 		goto out;
2148d3962a39SMathieu Poirier 	}
2149d3962a39SMathieu Poirier 
2150d3962a39SMathieu Poirier 	ret = __rproc_detach(rproc);
2151d3962a39SMathieu Poirier 	if (ret) {
2152d3962a39SMathieu Poirier 		atomic_inc(&rproc->power);
2153d3962a39SMathieu Poirier 		goto out;
2154d3962a39SMathieu Poirier 	}
2155d3962a39SMathieu Poirier 
2156d3962a39SMathieu Poirier 	/* clean up all acquired resources */
2157d3962a39SMathieu Poirier 	rproc_resource_cleanup(rproc);
2158d3962a39SMathieu Poirier 
2159d3962a39SMathieu Poirier 	/* release HW resources if needed */
2160d3962a39SMathieu Poirier 	rproc_unprepare_device(rproc);
2161d3962a39SMathieu Poirier 
2162d3962a39SMathieu Poirier 	rproc_disable_iommu(rproc);
2163d3962a39SMathieu Poirier 
21649dc9507fSMathieu Poirier 	/* Free the copy of the resource table */
21659dc9507fSMathieu Poirier 	kfree(rproc->cached_table);
21669dc9507fSMathieu Poirier 	rproc->cached_table = NULL;
2167d3962a39SMathieu Poirier 	rproc->table_ptr = NULL;
2168d3962a39SMathieu Poirier out:
2169d3962a39SMathieu Poirier 	mutex_unlock(&rproc->lock);
2170d3962a39SMathieu Poirier 	return ret;
2171d3962a39SMathieu Poirier }
2172d3962a39SMathieu Poirier EXPORT_SYMBOL(rproc_detach);
2173d3962a39SMathieu Poirier 
2174d3962a39SMathieu Poirier /**
2175fec47d86SDave Gerlach  * rproc_get_by_phandle() - find a remote processor by phandle
2176fec47d86SDave Gerlach  * @phandle: phandle to the rproc
2177fec47d86SDave Gerlach  *
2178fec47d86SDave Gerlach  * Finds an rproc handle using the remote processor's phandle, and then
2179fec47d86SDave Gerlach  * return a handle to the rproc.
2180fec47d86SDave Gerlach  *
2181fec47d86SDave Gerlach  * This function increments the remote processor's refcount, so always
2182fec47d86SDave Gerlach  * use rproc_put() to decrement it back once rproc isn't needed anymore.
2183fec47d86SDave Gerlach  *
2184f2867434SSuman Anna  * Return: rproc handle on success, and NULL on failure
2185fec47d86SDave Gerlach  */
21868de3dbd0SOhad Ben-Cohen #ifdef CONFIG_OF
2187fec47d86SDave Gerlach struct rproc *rproc_get_by_phandle(phandle phandle)
2188fec47d86SDave Gerlach {
2189fec47d86SDave Gerlach 	struct rproc *rproc = NULL, *r;
2190fec47d86SDave Gerlach 	struct device_node *np;
2191fec47d86SDave Gerlach 
2192fec47d86SDave Gerlach 	np = of_find_node_by_phandle(phandle);
2193fec47d86SDave Gerlach 	if (!np)
2194fec47d86SDave Gerlach 		return NULL;
2195fec47d86SDave Gerlach 
2196c0abe2caSBjorn Andersson 	rcu_read_lock();
2197c0abe2caSBjorn Andersson 	list_for_each_entry_rcu(r, &rproc_list, node) {
2198fec47d86SDave Gerlach 		if (r->dev.parent && r->dev.parent->of_node == np) {
2199fbb6aacbSBjorn Andersson 			/* prevent underlying implementation from being removed */
2200fbb6aacbSBjorn Andersson 			if (!try_module_get(r->dev.parent->driver->owner)) {
2201fbb6aacbSBjorn Andersson 				dev_err(&r->dev, "can't get owner\n");
2202fbb6aacbSBjorn Andersson 				break;
2203fbb6aacbSBjorn Andersson 			}
2204fbb6aacbSBjorn Andersson 
2205fec47d86SDave Gerlach 			rproc = r;
2206fec47d86SDave Gerlach 			get_device(&rproc->dev);
2207fec47d86SDave Gerlach 			break;
2208fec47d86SDave Gerlach 		}
2209fec47d86SDave Gerlach 	}
2210c0abe2caSBjorn Andersson 	rcu_read_unlock();
2211fec47d86SDave Gerlach 
2212fec47d86SDave Gerlach 	of_node_put(np);
2213fec47d86SDave Gerlach 
2214fec47d86SDave Gerlach 	return rproc;
2215fec47d86SDave Gerlach }
22168de3dbd0SOhad Ben-Cohen #else
22178de3dbd0SOhad Ben-Cohen struct rproc *rproc_get_by_phandle(phandle phandle)
22188de3dbd0SOhad Ben-Cohen {
22198de3dbd0SOhad Ben-Cohen 	return NULL;
22208de3dbd0SOhad Ben-Cohen }
22218de3dbd0SOhad Ben-Cohen #endif
2222fec47d86SDave Gerlach EXPORT_SYMBOL(rproc_get_by_phandle);
2223fec47d86SDave Gerlach 
22244c1ad562SSuman Anna /**
22254c1ad562SSuman Anna  * rproc_set_firmware() - assign a new firmware
22264c1ad562SSuman Anna  * @rproc: rproc handle to which the new firmware is being assigned
22274c1ad562SSuman Anna  * @fw_name: new firmware name to be assigned
22284c1ad562SSuman Anna  *
22294c1ad562SSuman Anna  * This function allows remoteproc drivers or clients to configure a custom
22304c1ad562SSuman Anna  * firmware name that is different from the default name used during remoteproc
22314c1ad562SSuman Anna  * registration. The function does not trigger a remote processor boot,
22324c1ad562SSuman Anna  * only sets the firmware name used for a subsequent boot. This function
22334c1ad562SSuman Anna  * should also be called only when the remote processor is offline.
22344c1ad562SSuman Anna  *
22354c1ad562SSuman Anna  * This allows either the userspace to configure a different name through
22364c1ad562SSuman Anna  * sysfs or a kernel-level remoteproc or a remoteproc client driver to set
22374c1ad562SSuman Anna  * a specific firmware when it is controlling the boot and shutdown of the
22384c1ad562SSuman Anna  * remote processor.
22394c1ad562SSuman Anna  *
22404c1ad562SSuman Anna  * Return: 0 on success or a negative value upon failure
22414c1ad562SSuman Anna  */
22424c1ad562SSuman Anna int rproc_set_firmware(struct rproc *rproc, const char *fw_name)
22434c1ad562SSuman Anna {
22444c1ad562SSuman Anna 	struct device *dev;
22454c1ad562SSuman Anna 	int ret, len;
22464c1ad562SSuman Anna 	char *p;
22474c1ad562SSuman Anna 
22484c1ad562SSuman Anna 	if (!rproc || !fw_name)
22494c1ad562SSuman Anna 		return -EINVAL;
22504c1ad562SSuman Anna 
22514c1ad562SSuman Anna 	dev = rproc->dev.parent;
22524c1ad562SSuman Anna 
22534c1ad562SSuman Anna 	ret = mutex_lock_interruptible(&rproc->lock);
22544c1ad562SSuman Anna 	if (ret) {
22554c1ad562SSuman Anna 		dev_err(dev, "can't lock rproc %s: %d\n", rproc->name, ret);
22564c1ad562SSuman Anna 		return -EINVAL;
22574c1ad562SSuman Anna 	}
22584c1ad562SSuman Anna 
22594c1ad562SSuman Anna 	if (rproc->state != RPROC_OFFLINE) {
22604c1ad562SSuman Anna 		dev_err(dev, "can't change firmware while running\n");
22614c1ad562SSuman Anna 		ret = -EBUSY;
22624c1ad562SSuman Anna 		goto out;
22634c1ad562SSuman Anna 	}
22644c1ad562SSuman Anna 
22654c1ad562SSuman Anna 	len = strcspn(fw_name, "\n");
22664c1ad562SSuman Anna 	if (!len) {
22674c1ad562SSuman Anna 		dev_err(dev, "can't provide empty string for firmware name\n");
22684c1ad562SSuman Anna 		ret = -EINVAL;
22694c1ad562SSuman Anna 		goto out;
22704c1ad562SSuman Anna 	}
22714c1ad562SSuman Anna 
22724c1ad562SSuman Anna 	p = kstrndup(fw_name, len, GFP_KERNEL);
22734c1ad562SSuman Anna 	if (!p) {
22744c1ad562SSuman Anna 		ret = -ENOMEM;
22754c1ad562SSuman Anna 		goto out;
22764c1ad562SSuman Anna 	}
22774c1ad562SSuman Anna 
227843d3f2c7SDaniele Alessandrelli 	kfree_const(rproc->firmware);
22794c1ad562SSuman Anna 	rproc->firmware = p;
22804c1ad562SSuman Anna 
22814c1ad562SSuman Anna out:
22824c1ad562SSuman Anna 	mutex_unlock(&rproc->lock);
22834c1ad562SSuman Anna 	return ret;
22844c1ad562SSuman Anna }
22854c1ad562SSuman Anna EXPORT_SYMBOL(rproc_set_firmware);
22864c1ad562SSuman Anna 
228788d3a136SMathieu Poirier static int rproc_validate(struct rproc *rproc)
228888d3a136SMathieu Poirier {
228988d3a136SMathieu Poirier 	switch (rproc->state) {
229088d3a136SMathieu Poirier 	case RPROC_OFFLINE:
229188d3a136SMathieu Poirier 		/*
229288d3a136SMathieu Poirier 		 * An offline processor without a start()
229388d3a136SMathieu Poirier 		 * function makes no sense.
229488d3a136SMathieu Poirier 		 */
229588d3a136SMathieu Poirier 		if (!rproc->ops->start)
229688d3a136SMathieu Poirier 			return -EINVAL;
229788d3a136SMathieu Poirier 		break;
229888d3a136SMathieu Poirier 	case RPROC_DETACHED:
229988d3a136SMathieu Poirier 		/*
230088d3a136SMathieu Poirier 		 * A remote processor in a detached state without an
230188d3a136SMathieu Poirier 		 * attach() function makes not sense.
230288d3a136SMathieu Poirier 		 */
230388d3a136SMathieu Poirier 		if (!rproc->ops->attach)
230488d3a136SMathieu Poirier 			return -EINVAL;
230588d3a136SMathieu Poirier 		/*
230688d3a136SMathieu Poirier 		 * When attaching to a remote processor the device memory
230788d3a136SMathieu Poirier 		 * is already available and as such there is no need to have a
230888d3a136SMathieu Poirier 		 * cached table.
230988d3a136SMathieu Poirier 		 */
231088d3a136SMathieu Poirier 		if (rproc->cached_table)
231188d3a136SMathieu Poirier 			return -EINVAL;
231288d3a136SMathieu Poirier 		break;
231388d3a136SMathieu Poirier 	default:
231488d3a136SMathieu Poirier 		/*
231588d3a136SMathieu Poirier 		 * When adding a remote processor, the state of the device
231688d3a136SMathieu Poirier 		 * can be offline or detached, nothing else.
231788d3a136SMathieu Poirier 		 */
231888d3a136SMathieu Poirier 		return -EINVAL;
231988d3a136SMathieu Poirier 	}
232088d3a136SMathieu Poirier 
232188d3a136SMathieu Poirier 	return 0;
232288d3a136SMathieu Poirier }
232388d3a136SMathieu Poirier 
2324fec47d86SDave Gerlach /**
2325160e7c84SOhad Ben-Cohen  * rproc_add() - register a remote processor
2326400e64dfSOhad Ben-Cohen  * @rproc: the remote processor handle to register
2327400e64dfSOhad Ben-Cohen  *
2328400e64dfSOhad Ben-Cohen  * Registers @rproc with the remoteproc framework, after it has been
2329400e64dfSOhad Ben-Cohen  * allocated with rproc_alloc().
2330400e64dfSOhad Ben-Cohen  *
2331400e64dfSOhad Ben-Cohen  * This is called by the platform-specific rproc implementation, whenever
2332400e64dfSOhad Ben-Cohen  * a new remote processor device is probed.
2333400e64dfSOhad Ben-Cohen  *
2334400e64dfSOhad Ben-Cohen  * Note: this function initiates an asynchronous firmware loading
2335400e64dfSOhad Ben-Cohen  * context, which will look for virtio devices supported by the rproc's
2336400e64dfSOhad Ben-Cohen  * firmware.
2337400e64dfSOhad Ben-Cohen  *
2338400e64dfSOhad Ben-Cohen  * If found, those virtio devices will be created and added, so as a result
23397a186941SOhad Ben-Cohen  * of registering this remote processor, additional virtio drivers might be
2340400e64dfSOhad Ben-Cohen  * probed.
2341f2867434SSuman Anna  *
2342f2867434SSuman Anna  * Return: 0 on success and an appropriate error code otherwise
2343400e64dfSOhad Ben-Cohen  */
2344160e7c84SOhad Ben-Cohen int rproc_add(struct rproc *rproc)
2345400e64dfSOhad Ben-Cohen {
2346b5ab5e24SOhad Ben-Cohen 	struct device *dev = &rproc->dev;
234770b85ef8SFernando Guzman Lugo 	int ret;
2348400e64dfSOhad Ben-Cohen 
234988d3a136SMathieu Poirier 	ret = rproc_validate(rproc);
235088d3a136SMathieu Poirier 	if (ret < 0)
235188d3a136SMathieu Poirier 		return ret;
235288d3a136SMathieu Poirier 
235362b8f9e9SSiddharth Gupta 	/* add char device for this remoteproc */
235462b8f9e9SSiddharth Gupta 	ret = rproc_char_device_add(rproc);
235562b8f9e9SSiddharth Gupta 	if (ret < 0)
235662b8f9e9SSiddharth Gupta 		return ret;
235762b8f9e9SSiddharth Gupta 
2358305ac5a7SPaul Cercueil 	ret = device_add(dev);
23597dbdb8bdSSiddharth Gupta 	if (ret < 0) {
23607dbdb8bdSSiddharth Gupta 		put_device(dev);
23617dbdb8bdSSiddharth Gupta 		goto rproc_remove_cdev;
23627dbdb8bdSSiddharth Gupta 	}
2363305ac5a7SPaul Cercueil 
2364305ac5a7SPaul Cercueil 	dev_info(dev, "%s is available\n", rproc->name);
2365305ac5a7SPaul Cercueil 
2366305ac5a7SPaul Cercueil 	/* create debugfs entries */
2367305ac5a7SPaul Cercueil 	rproc_create_debug_dir(rproc);
2368305ac5a7SPaul Cercueil 
23697a20c64dSSarangdhar Joshi 	/* if rproc is marked always-on, request it to boot */
23707a20c64dSSarangdhar Joshi 	if (rproc->auto_boot) {
23715e6533f7SSarangdhar Joshi 		ret = rproc_trigger_auto_boot(rproc);
2372d2e12e66SDave Gerlach 		if (ret < 0)
23737dbdb8bdSSiddharth Gupta 			goto rproc_remove_dev;
23747a20c64dSSarangdhar Joshi 	}
2375400e64dfSOhad Ben-Cohen 
2376d2e12e66SDave Gerlach 	/* expose to rproc_get_by_phandle users */
2377d2e12e66SDave Gerlach 	mutex_lock(&rproc_list_mutex);
2378c0abe2caSBjorn Andersson 	list_add_rcu(&rproc->node, &rproc_list);
2379d2e12e66SDave Gerlach 	mutex_unlock(&rproc_list_mutex);
2380d2e12e66SDave Gerlach 
2381d2e12e66SDave Gerlach 	return 0;
23827dbdb8bdSSiddharth Gupta 
23837dbdb8bdSSiddharth Gupta rproc_remove_dev:
23847dbdb8bdSSiddharth Gupta 	rproc_delete_debug_dir(rproc);
23857dbdb8bdSSiddharth Gupta 	device_del(dev);
23867dbdb8bdSSiddharth Gupta rproc_remove_cdev:
23877dbdb8bdSSiddharth Gupta 	rproc_char_device_remove(rproc);
23887dbdb8bdSSiddharth Gupta 	return ret;
2389400e64dfSOhad Ben-Cohen }
2390160e7c84SOhad Ben-Cohen EXPORT_SYMBOL(rproc_add);
2391400e64dfSOhad Ben-Cohen 
2392305ac5a7SPaul Cercueil static void devm_rproc_remove(void *rproc)
2393305ac5a7SPaul Cercueil {
2394305ac5a7SPaul Cercueil 	rproc_del(rproc);
2395305ac5a7SPaul Cercueil }
2396305ac5a7SPaul Cercueil 
2397305ac5a7SPaul Cercueil /**
2398305ac5a7SPaul Cercueil  * devm_rproc_add() - resource managed rproc_add()
2399305ac5a7SPaul Cercueil  * @dev: the underlying device
2400305ac5a7SPaul Cercueil  * @rproc: the remote processor handle to register
2401305ac5a7SPaul Cercueil  *
2402305ac5a7SPaul Cercueil  * This function performs like rproc_add() but the registered rproc device will
2403305ac5a7SPaul Cercueil  * automatically be removed on driver detach.
2404305ac5a7SPaul Cercueil  *
2405f2867434SSuman Anna  * Return: 0 on success, negative errno on failure
2406305ac5a7SPaul Cercueil  */
2407305ac5a7SPaul Cercueil int devm_rproc_add(struct device *dev, struct rproc *rproc)
2408305ac5a7SPaul Cercueil {
2409305ac5a7SPaul Cercueil 	int err;
2410305ac5a7SPaul Cercueil 
2411305ac5a7SPaul Cercueil 	err = rproc_add(rproc);
2412305ac5a7SPaul Cercueil 	if (err)
2413305ac5a7SPaul Cercueil 		return err;
2414305ac5a7SPaul Cercueil 
2415305ac5a7SPaul Cercueil 	return devm_add_action_or_reset(dev, devm_rproc_remove, rproc);
2416305ac5a7SPaul Cercueil }
2417305ac5a7SPaul Cercueil EXPORT_SYMBOL(devm_rproc_add);
2418305ac5a7SPaul Cercueil 
2419400e64dfSOhad Ben-Cohen /**
2420b5ab5e24SOhad Ben-Cohen  * rproc_type_release() - release a remote processor instance
2421b5ab5e24SOhad Ben-Cohen  * @dev: the rproc's device
2422b5ab5e24SOhad Ben-Cohen  *
2423b5ab5e24SOhad Ben-Cohen  * This function should _never_ be called directly.
2424b5ab5e24SOhad Ben-Cohen  *
2425b5ab5e24SOhad Ben-Cohen  * It will be called by the driver core when no one holds a valid pointer
2426b5ab5e24SOhad Ben-Cohen  * to @dev anymore.
2427b5ab5e24SOhad Ben-Cohen  */
2428b5ab5e24SOhad Ben-Cohen static void rproc_type_release(struct device *dev)
2429b5ab5e24SOhad Ben-Cohen {
2430b5ab5e24SOhad Ben-Cohen 	struct rproc *rproc = container_of(dev, struct rproc, dev);
2431b5ab5e24SOhad Ben-Cohen 
24327183a2a7SOhad Ben-Cohen 	dev_info(&rproc->dev, "releasing %s\n", rproc->name);
24337183a2a7SOhad Ben-Cohen 
2434b5ab5e24SOhad Ben-Cohen 	idr_destroy(&rproc->notifyids);
2435b5ab5e24SOhad Ben-Cohen 
2436b5ab5e24SOhad Ben-Cohen 	if (rproc->index >= 0)
2437b5ab5e24SOhad Ben-Cohen 		ida_simple_remove(&rproc_dev_index, rproc->index);
2438b5ab5e24SOhad Ben-Cohen 
24391487dedaSMathieu Poirier 	kfree_const(rproc->firmware);
2440db655278SSuman Anna 	kfree_const(rproc->name);
2441fb98e2bdSBjorn Andersson 	kfree(rproc->ops);
2442b5ab5e24SOhad Ben-Cohen 	kfree(rproc);
2443b5ab5e24SOhad Ben-Cohen }
2444b5ab5e24SOhad Ben-Cohen 
2445c42ca04dSBhumika Goyal static const struct device_type rproc_type = {
2446b5ab5e24SOhad Ben-Cohen 	.name		= "remoteproc",
2447b5ab5e24SOhad Ben-Cohen 	.release	= rproc_type_release,
2448b5ab5e24SOhad Ben-Cohen };
2449400e64dfSOhad Ben-Cohen 
24500c2ae2b1SMathieu Poirier static int rproc_alloc_firmware(struct rproc *rproc,
24510c2ae2b1SMathieu Poirier 				const char *name, const char *firmware)
24520c2ae2b1SMathieu Poirier {
24531487dedaSMathieu Poirier 	const char *p;
24540c2ae2b1SMathieu Poirier 
24550c2ae2b1SMathieu Poirier 	/*
24569d5f82c8SMathieu Poirier 	 * Allocate a firmware name if the caller gave us one to work
24579d5f82c8SMathieu Poirier 	 * with.  Otherwise construct a new one using a default pattern.
24580c2ae2b1SMathieu Poirier 	 */
24599d5f82c8SMathieu Poirier 	if (firmware)
24601487dedaSMathieu Poirier 		p = kstrdup_const(firmware, GFP_KERNEL);
24619d5f82c8SMathieu Poirier 	else
24629d5f82c8SMathieu Poirier 		p = kasprintf(GFP_KERNEL, "rproc-%s-fw", name);
24634df4f8beSMathieu Poirier 
24640c2ae2b1SMathieu Poirier 	if (!p)
24650c2ae2b1SMathieu Poirier 		return -ENOMEM;
24660c2ae2b1SMathieu Poirier 
24670c2ae2b1SMathieu Poirier 	rproc->firmware = p;
24680c2ae2b1SMathieu Poirier 
24690c2ae2b1SMathieu Poirier 	return 0;
24700c2ae2b1SMathieu Poirier }
24710c2ae2b1SMathieu Poirier 
2472bf860aa1SMathieu Poirier static int rproc_alloc_ops(struct rproc *rproc, const struct rproc_ops *ops)
2473bf860aa1SMathieu Poirier {
2474bf860aa1SMathieu Poirier 	rproc->ops = kmemdup(ops, sizeof(*ops), GFP_KERNEL);
2475bf860aa1SMathieu Poirier 	if (!rproc->ops)
2476bf860aa1SMathieu Poirier 		return -ENOMEM;
2477bf860aa1SMathieu Poirier 
2478adf60a87SSiddharth Gupta 	/* Default to rproc_coredump if no coredump function is specified */
2479adf60a87SSiddharth Gupta 	if (!rproc->ops->coredump)
2480adf60a87SSiddharth Gupta 		rproc->ops->coredump = rproc_coredump;
2481adf60a87SSiddharth Gupta 
2482bf860aa1SMathieu Poirier 	if (rproc->ops->load)
2483bf860aa1SMathieu Poirier 		return 0;
2484bf860aa1SMathieu Poirier 
2485bf860aa1SMathieu Poirier 	/* Default to ELF loader if no load function is specified */
2486bf860aa1SMathieu Poirier 	rproc->ops->load = rproc_elf_load_segments;
2487bf860aa1SMathieu Poirier 	rproc->ops->parse_fw = rproc_elf_load_rsc_table;
2488bf860aa1SMathieu Poirier 	rproc->ops->find_loaded_rsc_table = rproc_elf_find_loaded_rsc_table;
2489e29ff72bSClement Leger 	rproc->ops->sanity_check = rproc_elf_sanity_check;
2490bf860aa1SMathieu Poirier 	rproc->ops->get_boot_addr = rproc_elf_get_boot_addr;
2491bf860aa1SMathieu Poirier 
2492bf860aa1SMathieu Poirier 	return 0;
2493bf860aa1SMathieu Poirier }
2494bf860aa1SMathieu Poirier 
2495400e64dfSOhad Ben-Cohen /**
2496400e64dfSOhad Ben-Cohen  * rproc_alloc() - allocate a remote processor handle
2497400e64dfSOhad Ben-Cohen  * @dev: the underlying device
2498400e64dfSOhad Ben-Cohen  * @name: name of this remote processor
2499400e64dfSOhad Ben-Cohen  * @ops: platform-specific handlers (mainly start/stop)
25008b4aec9aSRobert Tivy  * @firmware: name of firmware file to load, can be NULL
2501400e64dfSOhad Ben-Cohen  * @len: length of private data needed by the rproc driver (in bytes)
2502400e64dfSOhad Ben-Cohen  *
2503400e64dfSOhad Ben-Cohen  * Allocates a new remote processor handle, but does not register
25048b4aec9aSRobert Tivy  * it yet. if @firmware is NULL, a default name is used.
2505400e64dfSOhad Ben-Cohen  *
2506400e64dfSOhad Ben-Cohen  * This function should be used by rproc implementations during initialization
2507400e64dfSOhad Ben-Cohen  * of the remote processor.
2508400e64dfSOhad Ben-Cohen  *
2509400e64dfSOhad Ben-Cohen  * After creating an rproc handle using this function, and when ready,
2510160e7c84SOhad Ben-Cohen  * implementations should then call rproc_add() to complete
2511400e64dfSOhad Ben-Cohen  * the registration of the remote processor.
2512400e64dfSOhad Ben-Cohen  *
2513400e64dfSOhad Ben-Cohen  * Note: _never_ directly deallocate @rproc, even if it was not registered
2514433c0e04SBjorn Andersson  * yet. Instead, when you need to unroll rproc_alloc(), use rproc_free().
2515f2867434SSuman Anna  *
2516f2867434SSuman Anna  * Return: new rproc pointer on success, and NULL on failure
2517400e64dfSOhad Ben-Cohen  */
2518400e64dfSOhad Ben-Cohen struct rproc *rproc_alloc(struct device *dev, const char *name,
2519400e64dfSOhad Ben-Cohen 			  const struct rproc_ops *ops,
2520400e64dfSOhad Ben-Cohen 			  const char *firmware, int len)
2521400e64dfSOhad Ben-Cohen {
2522400e64dfSOhad Ben-Cohen 	struct rproc *rproc;
2523400e64dfSOhad Ben-Cohen 
2524400e64dfSOhad Ben-Cohen 	if (!dev || !name || !ops)
2525400e64dfSOhad Ben-Cohen 		return NULL;
2526400e64dfSOhad Ben-Cohen 
25270f57dc6aSMatt Redfearn 	rproc = kzalloc(sizeof(struct rproc) + len, GFP_KERNEL);
25280c2ae2b1SMathieu Poirier 	if (!rproc)
25290f57dc6aSMatt Redfearn 		return NULL;
25300c2ae2b1SMathieu Poirier 
2531400e64dfSOhad Ben-Cohen 	rproc->priv = &rproc[1];
2532ddf71187SBjorn Andersson 	rproc->auto_boot = true;
2533418fd787SClement Leger 	rproc->elf_class = ELFCLASSNONE;
2534418fd787SClement Leger 	rproc->elf_machine = EM_NONE;
2535400e64dfSOhad Ben-Cohen 
2536b5ab5e24SOhad Ben-Cohen 	device_initialize(&rproc->dev);
2537b5ab5e24SOhad Ben-Cohen 	rproc->dev.parent = dev;
2538b5ab5e24SOhad Ben-Cohen 	rproc->dev.type = &rproc_type;
25392aefbef0SMatt Redfearn 	rproc->dev.class = &rproc_class;
25407c89717fSBjorn Andersson 	rproc->dev.driver_data = rproc;
25416442df49SAlex Elder 	idr_init(&rproc->notifyids);
2542b5ab5e24SOhad Ben-Cohen 
2543db655278SSuman Anna 	rproc->name = kstrdup_const(name, GFP_KERNEL);
2544db655278SSuman Anna 	if (!rproc->name)
2545db655278SSuman Anna 		goto put_device;
2546db655278SSuman Anna 
2547226f5db4SMathieu Poirier 	if (rproc_alloc_firmware(rproc, name, firmware))
2548226f5db4SMathieu Poirier 		goto put_device;
2549226f5db4SMathieu Poirier 
2550226f5db4SMathieu Poirier 	if (rproc_alloc_ops(rproc, ops))
2551226f5db4SMathieu Poirier 		goto put_device;
2552226f5db4SMathieu Poirier 
2553b5ab5e24SOhad Ben-Cohen 	/* Assign a unique device index and name */
2554b5ab5e24SOhad Ben-Cohen 	rproc->index = ida_simple_get(&rproc_dev_index, 0, 0, GFP_KERNEL);
2555b5ab5e24SOhad Ben-Cohen 	if (rproc->index < 0) {
2556b5ab5e24SOhad Ben-Cohen 		dev_err(dev, "ida_simple_get failed: %d\n", rproc->index);
2557226f5db4SMathieu Poirier 		goto put_device;
2558b5ab5e24SOhad Ben-Cohen 	}
2559b5ab5e24SOhad Ben-Cohen 
2560b5ab5e24SOhad Ben-Cohen 	dev_set_name(&rproc->dev, "remoteproc%d", rproc->index);
2561b5ab5e24SOhad Ben-Cohen 
2562400e64dfSOhad Ben-Cohen 	atomic_set(&rproc->power, 0);
2563400e64dfSOhad Ben-Cohen 
2564400e64dfSOhad Ben-Cohen 	mutex_init(&rproc->lock);
2565400e64dfSOhad Ben-Cohen 
2566400e64dfSOhad Ben-Cohen 	INIT_LIST_HEAD(&rproc->carveouts);
2567400e64dfSOhad Ben-Cohen 	INIT_LIST_HEAD(&rproc->mappings);
2568400e64dfSOhad Ben-Cohen 	INIT_LIST_HEAD(&rproc->traces);
25697a186941SOhad Ben-Cohen 	INIT_LIST_HEAD(&rproc->rvdevs);
25707bdc9650SBjorn Andersson 	INIT_LIST_HEAD(&rproc->subdevs);
25712666ca91SSarangdhar Joshi 	INIT_LIST_HEAD(&rproc->dump_segments);
2572400e64dfSOhad Ben-Cohen 
25738afd519cSFernando Guzman Lugo 	INIT_WORK(&rproc->crash_handler, rproc_crash_handler_work);
25748afd519cSFernando Guzman Lugo 
2575400e64dfSOhad Ben-Cohen 	rproc->state = RPROC_OFFLINE;
2576400e64dfSOhad Ben-Cohen 
2577400e64dfSOhad Ben-Cohen 	return rproc;
25780c2ae2b1SMathieu Poirier 
2579226f5db4SMathieu Poirier put_device:
2580226f5db4SMathieu Poirier 	put_device(&rproc->dev);
25810c2ae2b1SMathieu Poirier 	return NULL;
2582400e64dfSOhad Ben-Cohen }
2583400e64dfSOhad Ben-Cohen EXPORT_SYMBOL(rproc_alloc);
2584400e64dfSOhad Ben-Cohen 
2585400e64dfSOhad Ben-Cohen /**
2586433c0e04SBjorn Andersson  * rproc_free() - unroll rproc_alloc()
2587433c0e04SBjorn Andersson  * @rproc: the remote processor handle
2588433c0e04SBjorn Andersson  *
2589433c0e04SBjorn Andersson  * This function decrements the rproc dev refcount.
2590433c0e04SBjorn Andersson  *
2591433c0e04SBjorn Andersson  * If no one holds any reference to rproc anymore, then its refcount would
2592433c0e04SBjorn Andersson  * now drop to zero, and it would be freed.
2593433c0e04SBjorn Andersson  */
2594433c0e04SBjorn Andersson void rproc_free(struct rproc *rproc)
2595433c0e04SBjorn Andersson {
2596433c0e04SBjorn Andersson 	put_device(&rproc->dev);
2597433c0e04SBjorn Andersson }
2598433c0e04SBjorn Andersson EXPORT_SYMBOL(rproc_free);
2599433c0e04SBjorn Andersson 
2600433c0e04SBjorn Andersson /**
2601433c0e04SBjorn Andersson  * rproc_put() - release rproc reference
2602400e64dfSOhad Ben-Cohen  * @rproc: the remote processor handle
2603400e64dfSOhad Ben-Cohen  *
2604c6b5a276SOhad Ben-Cohen  * This function decrements the rproc dev refcount.
2605400e64dfSOhad Ben-Cohen  *
2606c6b5a276SOhad Ben-Cohen  * If no one holds any reference to rproc anymore, then its refcount would
2607c6b5a276SOhad Ben-Cohen  * now drop to zero, and it would be freed.
2608400e64dfSOhad Ben-Cohen  */
2609160e7c84SOhad Ben-Cohen void rproc_put(struct rproc *rproc)
2610400e64dfSOhad Ben-Cohen {
2611fbb6aacbSBjorn Andersson 	module_put(rproc->dev.parent->driver->owner);
2612b5ab5e24SOhad Ben-Cohen 	put_device(&rproc->dev);
2613400e64dfSOhad Ben-Cohen }
2614160e7c84SOhad Ben-Cohen EXPORT_SYMBOL(rproc_put);
2615400e64dfSOhad Ben-Cohen 
2616400e64dfSOhad Ben-Cohen /**
2617160e7c84SOhad Ben-Cohen  * rproc_del() - unregister a remote processor
2618400e64dfSOhad Ben-Cohen  * @rproc: rproc handle to unregister
2619400e64dfSOhad Ben-Cohen  *
2620400e64dfSOhad Ben-Cohen  * This function should be called when the platform specific rproc
2621400e64dfSOhad Ben-Cohen  * implementation decides to remove the rproc device. it should
2622160e7c84SOhad Ben-Cohen  * _only_ be called if a previous invocation of rproc_add()
2623400e64dfSOhad Ben-Cohen  * has completed successfully.
2624400e64dfSOhad Ben-Cohen  *
2625160e7c84SOhad Ben-Cohen  * After rproc_del() returns, @rproc isn't freed yet, because
2626c6b5a276SOhad Ben-Cohen  * of the outstanding reference created by rproc_alloc. To decrement that
2627433c0e04SBjorn Andersson  * one last refcount, one still needs to call rproc_free().
2628400e64dfSOhad Ben-Cohen  *
2629f2867434SSuman Anna  * Return: 0 on success and -EINVAL if @rproc isn't valid
2630400e64dfSOhad Ben-Cohen  */
2631160e7c84SOhad Ben-Cohen int rproc_del(struct rproc *rproc)
2632400e64dfSOhad Ben-Cohen {
2633400e64dfSOhad Ben-Cohen 	if (!rproc)
2634400e64dfSOhad Ben-Cohen 		return -EINVAL;
2635400e64dfSOhad Ben-Cohen 
2636ddf71187SBjorn Andersson 	/* TODO: make sure this works with rproc->power > 1 */
2637ddf71187SBjorn Andersson 	rproc_shutdown(rproc);
2638ddf71187SBjorn Andersson 
26392099c77dSSarangdhar Joshi 	mutex_lock(&rproc->lock);
26402099c77dSSarangdhar Joshi 	rproc->state = RPROC_DELETED;
26412099c77dSSarangdhar Joshi 	mutex_unlock(&rproc->lock);
26422099c77dSSarangdhar Joshi 
2643b003d45bSSarangdhar Joshi 	rproc_delete_debug_dir(rproc);
2644b003d45bSSarangdhar Joshi 
2645fec47d86SDave Gerlach 	/* the rproc is downref'ed as soon as it's removed from the klist */
2646fec47d86SDave Gerlach 	mutex_lock(&rproc_list_mutex);
2647c0abe2caSBjorn Andersson 	list_del_rcu(&rproc->node);
2648fec47d86SDave Gerlach 	mutex_unlock(&rproc_list_mutex);
2649fec47d86SDave Gerlach 
2650c0abe2caSBjorn Andersson 	/* Ensure that no readers of rproc_list are still active */
2651c0abe2caSBjorn Andersson 	synchronize_rcu();
2652c0abe2caSBjorn Andersson 
2653b5ab5e24SOhad Ben-Cohen 	device_del(&rproc->dev);
2654930eec0bSSiddharth Gupta 	rproc_char_device_remove(rproc);
2655400e64dfSOhad Ben-Cohen 
2656400e64dfSOhad Ben-Cohen 	return 0;
2657400e64dfSOhad Ben-Cohen }
2658160e7c84SOhad Ben-Cohen EXPORT_SYMBOL(rproc_del);
2659400e64dfSOhad Ben-Cohen 
2660305ac5a7SPaul Cercueil static void devm_rproc_free(struct device *dev, void *res)
2661305ac5a7SPaul Cercueil {
2662305ac5a7SPaul Cercueil 	rproc_free(*(struct rproc **)res);
2663305ac5a7SPaul Cercueil }
2664305ac5a7SPaul Cercueil 
2665305ac5a7SPaul Cercueil /**
2666305ac5a7SPaul Cercueil  * devm_rproc_alloc() - resource managed rproc_alloc()
2667305ac5a7SPaul Cercueil  * @dev: the underlying device
2668305ac5a7SPaul Cercueil  * @name: name of this remote processor
2669305ac5a7SPaul Cercueil  * @ops: platform-specific handlers (mainly start/stop)
2670305ac5a7SPaul Cercueil  * @firmware: name of firmware file to load, can be NULL
2671305ac5a7SPaul Cercueil  * @len: length of private data needed by the rproc driver (in bytes)
2672305ac5a7SPaul Cercueil  *
2673305ac5a7SPaul Cercueil  * This function performs like rproc_alloc() but the acquired rproc device will
2674305ac5a7SPaul Cercueil  * automatically be released on driver detach.
2675305ac5a7SPaul Cercueil  *
2676f2867434SSuman Anna  * Return: new rproc instance, or NULL on failure
2677305ac5a7SPaul Cercueil  */
2678305ac5a7SPaul Cercueil struct rproc *devm_rproc_alloc(struct device *dev, const char *name,
2679305ac5a7SPaul Cercueil 			       const struct rproc_ops *ops,
2680305ac5a7SPaul Cercueil 			       const char *firmware, int len)
2681305ac5a7SPaul Cercueil {
2682305ac5a7SPaul Cercueil 	struct rproc **ptr, *rproc;
2683305ac5a7SPaul Cercueil 
2684305ac5a7SPaul Cercueil 	ptr = devres_alloc(devm_rproc_free, sizeof(*ptr), GFP_KERNEL);
2685305ac5a7SPaul Cercueil 	if (!ptr)
26867dcef398SDan Carpenter 		return NULL;
2687305ac5a7SPaul Cercueil 
2688305ac5a7SPaul Cercueil 	rproc = rproc_alloc(dev, name, ops, firmware, len);
2689305ac5a7SPaul Cercueil 	if (rproc) {
2690305ac5a7SPaul Cercueil 		*ptr = rproc;
2691305ac5a7SPaul Cercueil 		devres_add(dev, ptr);
2692305ac5a7SPaul Cercueil 	} else {
2693305ac5a7SPaul Cercueil 		devres_free(ptr);
2694305ac5a7SPaul Cercueil 	}
2695305ac5a7SPaul Cercueil 
2696305ac5a7SPaul Cercueil 	return rproc;
2697305ac5a7SPaul Cercueil }
2698305ac5a7SPaul Cercueil EXPORT_SYMBOL(devm_rproc_alloc);
2699305ac5a7SPaul Cercueil 
27008afd519cSFernando Guzman Lugo /**
27017bdc9650SBjorn Andersson  * rproc_add_subdev() - add a subdevice to a remoteproc
27027bdc9650SBjorn Andersson  * @rproc: rproc handle to add the subdevice to
27037bdc9650SBjorn Andersson  * @subdev: subdev handle to register
27044902676fSBjorn Andersson  *
27054902676fSBjorn Andersson  * Caller is responsible for populating optional subdevice function pointers.
27067bdc9650SBjorn Andersson  */
27074902676fSBjorn Andersson void rproc_add_subdev(struct rproc *rproc, struct rproc_subdev *subdev)
27087bdc9650SBjorn Andersson {
27097bdc9650SBjorn Andersson 	list_add_tail(&subdev->node, &rproc->subdevs);
27107bdc9650SBjorn Andersson }
27117bdc9650SBjorn Andersson EXPORT_SYMBOL(rproc_add_subdev);
27127bdc9650SBjorn Andersson 
27137bdc9650SBjorn Andersson /**
27147bdc9650SBjorn Andersson  * rproc_remove_subdev() - remove a subdevice from a remoteproc
27157bdc9650SBjorn Andersson  * @rproc: rproc handle to remove the subdevice from
27167bdc9650SBjorn Andersson  * @subdev: subdev handle, previously registered with rproc_add_subdev()
27177bdc9650SBjorn Andersson  */
27187bdc9650SBjorn Andersson void rproc_remove_subdev(struct rproc *rproc, struct rproc_subdev *subdev)
27197bdc9650SBjorn Andersson {
27207bdc9650SBjorn Andersson 	list_del(&subdev->node);
27217bdc9650SBjorn Andersson }
27227bdc9650SBjorn Andersson EXPORT_SYMBOL(rproc_remove_subdev);
27237bdc9650SBjorn Andersson 
27247bdc9650SBjorn Andersson /**
27257c89717fSBjorn Andersson  * rproc_get_by_child() - acquire rproc handle of @dev's ancestor
27267c89717fSBjorn Andersson  * @dev:	child device to find ancestor of
27277c89717fSBjorn Andersson  *
2728f2867434SSuman Anna  * Return: the ancestor rproc instance, or NULL if not found
27297c89717fSBjorn Andersson  */
27307c89717fSBjorn Andersson struct rproc *rproc_get_by_child(struct device *dev)
27317c89717fSBjorn Andersson {
27327c89717fSBjorn Andersson 	for (dev = dev->parent; dev; dev = dev->parent) {
27337c89717fSBjorn Andersson 		if (dev->type == &rproc_type)
27347c89717fSBjorn Andersson 			return dev->driver_data;
27357c89717fSBjorn Andersson 	}
27367c89717fSBjorn Andersson 
27377c89717fSBjorn Andersson 	return NULL;
27387c89717fSBjorn Andersson }
27397c89717fSBjorn Andersson EXPORT_SYMBOL(rproc_get_by_child);
27407c89717fSBjorn Andersson 
27417c89717fSBjorn Andersson /**
27428afd519cSFernando Guzman Lugo  * rproc_report_crash() - rproc crash reporter function
27438afd519cSFernando Guzman Lugo  * @rproc: remote processor
27448afd519cSFernando Guzman Lugo  * @type: crash type
27458afd519cSFernando Guzman Lugo  *
27468afd519cSFernando Guzman Lugo  * This function must be called every time a crash is detected by the low-level
27478afd519cSFernando Guzman Lugo  * drivers implementing a specific remoteproc. This should not be called from a
27488afd519cSFernando Guzman Lugo  * non-remoteproc driver.
27498afd519cSFernando Guzman Lugo  *
27508afd519cSFernando Guzman Lugo  * This function can be called from atomic/interrupt context.
27518afd519cSFernando Guzman Lugo  */
27528afd519cSFernando Guzman Lugo void rproc_report_crash(struct rproc *rproc, enum rproc_crash_type type)
27538afd519cSFernando Guzman Lugo {
27548afd519cSFernando Guzman Lugo 	if (!rproc) {
27558afd519cSFernando Guzman Lugo 		pr_err("NULL rproc pointer\n");
27568afd519cSFernando Guzman Lugo 		return;
27578afd519cSFernando Guzman Lugo 	}
27588afd519cSFernando Guzman Lugo 
2759a781e5aaSRishabh Bhatnagar 	/* Prevent suspend while the remoteproc is being recovered */
2760a781e5aaSRishabh Bhatnagar 	pm_stay_awake(rproc->dev.parent);
2761a781e5aaSRishabh Bhatnagar 
27628afd519cSFernando Guzman Lugo 	dev_err(&rproc->dev, "crash detected in %s: type %s\n",
27638afd519cSFernando Guzman Lugo 		rproc->name, rproc_crash_to_string(type));
27648afd519cSFernando Guzman Lugo 
27653ad51c17SAlex Elder 	/* Have a worker handle the error; ensure system is not suspended */
27663ad51c17SAlex Elder 	queue_work(system_freezable_wq, &rproc->crash_handler);
27678afd519cSFernando Guzman Lugo }
27688afd519cSFernando Guzman Lugo EXPORT_SYMBOL(rproc_report_crash);
27698afd519cSFernando Guzman Lugo 
2770dc5192c4SBjorn Andersson static int rproc_panic_handler(struct notifier_block *nb, unsigned long event,
2771dc5192c4SBjorn Andersson 			       void *ptr)
2772dc5192c4SBjorn Andersson {
2773dc5192c4SBjorn Andersson 	unsigned int longest = 0;
2774dc5192c4SBjorn Andersson 	struct rproc *rproc;
2775dc5192c4SBjorn Andersson 	unsigned int d;
2776dc5192c4SBjorn Andersson 
2777dc5192c4SBjorn Andersson 	rcu_read_lock();
2778dc5192c4SBjorn Andersson 	list_for_each_entry_rcu(rproc, &rproc_list, node) {
2779800dad00SMathieu Poirier 		if (!rproc->ops->panic)
2780800dad00SMathieu Poirier 			continue;
2781800dad00SMathieu Poirier 
2782800dad00SMathieu Poirier 		if (rproc->state != RPROC_RUNNING &&
2783800dad00SMathieu Poirier 		    rproc->state != RPROC_ATTACHED)
2784dc5192c4SBjorn Andersson 			continue;
2785dc5192c4SBjorn Andersson 
2786dc5192c4SBjorn Andersson 		d = rproc->ops->panic(rproc);
2787dc5192c4SBjorn Andersson 		longest = max(longest, d);
2788dc5192c4SBjorn Andersson 	}
2789dc5192c4SBjorn Andersson 	rcu_read_unlock();
2790dc5192c4SBjorn Andersson 
2791dc5192c4SBjorn Andersson 	/*
2792dc5192c4SBjorn Andersson 	 * Delay for the longest requested duration before returning. This can
2793dc5192c4SBjorn Andersson 	 * be used by the remoteproc drivers to give the remote processor time
2794dc5192c4SBjorn Andersson 	 * to perform any requested operations (such as flush caches), when
2795dc5192c4SBjorn Andersson 	 * it's not possible to signal the Linux side due to the panic.
2796dc5192c4SBjorn Andersson 	 */
2797dc5192c4SBjorn Andersson 	mdelay(longest);
2798dc5192c4SBjorn Andersson 
2799dc5192c4SBjorn Andersson 	return NOTIFY_DONE;
2800dc5192c4SBjorn Andersson }
2801dc5192c4SBjorn Andersson 
2802dc5192c4SBjorn Andersson static void __init rproc_init_panic(void)
2803dc5192c4SBjorn Andersson {
2804dc5192c4SBjorn Andersson 	rproc_panic_nb.notifier_call = rproc_panic_handler;
2805dc5192c4SBjorn Andersson 	atomic_notifier_chain_register(&panic_notifier_list, &rproc_panic_nb);
2806dc5192c4SBjorn Andersson }
2807dc5192c4SBjorn Andersson 
2808dc5192c4SBjorn Andersson static void __exit rproc_exit_panic(void)
2809dc5192c4SBjorn Andersson {
2810dc5192c4SBjorn Andersson 	atomic_notifier_chain_unregister(&panic_notifier_list, &rproc_panic_nb);
2811dc5192c4SBjorn Andersson }
2812dc5192c4SBjorn Andersson 
2813400e64dfSOhad Ben-Cohen static int __init remoteproc_init(void)
2814400e64dfSOhad Ben-Cohen {
28152aefbef0SMatt Redfearn 	rproc_init_sysfs();
2816400e64dfSOhad Ben-Cohen 	rproc_init_debugfs();
281762b8f9e9SSiddharth Gupta 	rproc_init_cdev();
2818dc5192c4SBjorn Andersson 	rproc_init_panic();
2819b5ab5e24SOhad Ben-Cohen 
2820400e64dfSOhad Ben-Cohen 	return 0;
2821400e64dfSOhad Ben-Cohen }
2822a8f40111SBrandon Maier subsys_initcall(remoteproc_init);
2823400e64dfSOhad Ben-Cohen 
2824400e64dfSOhad Ben-Cohen static void __exit remoteproc_exit(void)
2825400e64dfSOhad Ben-Cohen {
2826f42f79afSSuman Anna 	ida_destroy(&rproc_dev_index);
2827f42f79afSSuman Anna 
2828dc5192c4SBjorn Andersson 	rproc_exit_panic();
2829400e64dfSOhad Ben-Cohen 	rproc_exit_debugfs();
28302aefbef0SMatt Redfearn 	rproc_exit_sysfs();
2831400e64dfSOhad Ben-Cohen }
2832400e64dfSOhad Ben-Cohen module_exit(remoteproc_exit);
2833400e64dfSOhad Ben-Cohen 
2834400e64dfSOhad Ben-Cohen MODULE_LICENSE("GPL v2");
2835400e64dfSOhad Ben-Cohen MODULE_DESCRIPTION("Generic Remote Processor Framework");
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