blob: ed7e681efcf00ed123592ed2043233d169c87837 [file] [log] [blame]
Marek Szyprowski3f0c8202014-02-28 14:42:48 +01001/*
2 * Device tree based initialization code for reserved memory.
3 *
Mitchel Humpherysae1add22015-09-15 18:30:36 -07004 * Copyright (c) 2013, 2015 The Linux Foundation. All Rights Reserved.
Marek Szyprowski3f0c8202014-02-28 14:42:48 +01005 * Copyright (c) 2013,2014 Samsung Electronics Co., Ltd.
6 * http://www.samsung.com
7 * Author: Marek Szyprowski <m.szyprowski@samsung.com>
8 * Author: Josh Cartwright <joshc@codeaurora.org>
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License as
12 * published by the Free Software Foundation; either version 2 of the
13 * License or (at your optional) any later version of the license.
14 */
15
16#include <linux/err.h>
17#include <linux/of.h>
18#include <linux/of_fdt.h>
19#include <linux/of_platform.h>
20#include <linux/mm.h>
21#include <linux/sizes.h>
22#include <linux/of_reserved_mem.h>
Mitchel Humpherysae1add22015-09-15 18:30:36 -070023#include <linux/sort.h>
Marek Szyprowski3f0c8202014-02-28 14:42:48 +010024
25#define MAX_RESERVED_REGIONS 16
26static struct reserved_mem reserved_mem[MAX_RESERVED_REGIONS];
27static int reserved_mem_count;
28
29#if defined(CONFIG_HAVE_MEMBLOCK)
30#include <linux/memblock.h>
31int __init __weak early_init_dt_alloc_reserved_memory_arch(phys_addr_t size,
32 phys_addr_t align, phys_addr_t start, phys_addr_t end, bool nomap,
33 phys_addr_t *res_base)
34{
Vinayak Menone53b50c2016-02-22 19:15:44 +053035 phys_addr_t base;
Marek Szyprowski3f0c8202014-02-28 14:42:48 +010036 /*
37 * We use __memblock_alloc_base() because memblock_alloc_base()
38 * panic()s on allocation failure.
39 */
Vinayak Menone53b50c2016-02-22 19:15:44 +053040 end = !end ? MEMBLOCK_ALLOC_ANYWHERE : end;
41 base = __memblock_alloc_base(size, align, end);
Marek Szyprowski3f0c8202014-02-28 14:42:48 +010042 if (!base)
43 return -ENOMEM;
44
45 /*
46 * Check if the allocated region fits in to start..end window
47 */
48 if (base < start) {
49 memblock_free(base, size);
50 return -ENOMEM;
51 }
52
53 *res_base = base;
54 if (nomap)
55 return memblock_remove(base, size);
56 return 0;
57}
58#else
59int __init __weak early_init_dt_alloc_reserved_memory_arch(phys_addr_t size,
60 phys_addr_t align, phys_addr_t start, phys_addr_t end, bool nomap,
61 phys_addr_t *res_base)
62{
63 pr_err("Reserved memory not supported, ignoring region 0x%llx%s\n",
64 size, nomap ? " (nomap)" : "");
65 return -ENOSYS;
66}
67#endif
68
69/**
70 * res_mem_save_node() - save fdt node for second pass initialization
71 */
72void __init fdt_reserved_mem_save_node(unsigned long node, const char *uname,
73 phys_addr_t base, phys_addr_t size)
74{
75 struct reserved_mem *rmem = &reserved_mem[reserved_mem_count];
76
77 if (reserved_mem_count == ARRAY_SIZE(reserved_mem)) {
78 pr_err("Reserved memory: not enough space all defined regions.\n");
79 return;
80 }
81
82 rmem->fdt_node = node;
83 rmem->name = uname;
84 rmem->base = base;
85 rmem->size = size;
86
87 reserved_mem_count++;
88 return;
89}
90
91/**
92 * res_mem_alloc_size() - allocate reserved memory described by 'size', 'align'
93 * and 'alloc-ranges' properties
94 */
95static int __init __reserved_mem_alloc_size(unsigned long node,
96 const char *uname, phys_addr_t *res_base, phys_addr_t *res_size)
97{
98 int t_len = (dt_root_addr_cells + dt_root_size_cells) * sizeof(__be32);
99 phys_addr_t start = 0, end = 0;
100 phys_addr_t base = 0, align = 0, size;
Rob Herring9d0c4df2014-04-01 23:49:03 -0500101 int len;
102 const __be32 *prop;
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100103 int nomap;
104 int ret;
105
106 prop = of_get_flat_dt_prop(node, "size", &len);
107 if (!prop)
108 return -EINVAL;
109
110 if (len != dt_root_size_cells * sizeof(__be32)) {
111 pr_err("Reserved memory: invalid size property in '%s' node.\n",
112 uname);
113 return -EINVAL;
114 }
115 size = dt_mem_next_cell(dt_root_size_cells, &prop);
116
117 nomap = of_get_flat_dt_prop(node, "no-map", NULL) != NULL;
118
119 prop = of_get_flat_dt_prop(node, "alignment", &len);
120 if (prop) {
121 if (len != dt_root_addr_cells * sizeof(__be32)) {
122 pr_err("Reserved memory: invalid alignment property in '%s' node.\n",
123 uname);
124 return -EINVAL;
125 }
126 align = dt_mem_next_cell(dt_root_addr_cells, &prop);
127 }
128
Jason Liu1cc8e342015-11-10 20:30:26 +0800129 /* Need adjust the alignment to satisfy the CMA requirement */
Jaewon7d482812016-05-25 13:29:50 +0900130 if (IS_ENABLED(CONFIG_CMA)
131 && of_flat_dt_is_compatible(node, "shared-dma-pool")
132 && of_get_flat_dt_prop(node, "reusable", NULL)
133 && !of_get_flat_dt_prop(node, "no-map", NULL))
Jason Liu1cc8e342015-11-10 20:30:26 +0800134 align = max(align, (phys_addr_t)PAGE_SIZE << max(MAX_ORDER - 1, pageblock_order));
135
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100136 prop = of_get_flat_dt_prop(node, "alloc-ranges", &len);
137 if (prop) {
138
139 if (len % t_len != 0) {
140 pr_err("Reserved memory: invalid alloc-ranges property in '%s', skipping node.\n",
141 uname);
142 return -EINVAL;
143 }
144
145 base = 0;
146
147 while (len > 0) {
148 start = dt_mem_next_cell(dt_root_addr_cells, &prop);
149 end = start + dt_mem_next_cell(dt_root_size_cells,
150 &prop);
151
152 ret = early_init_dt_alloc_reserved_memory_arch(size,
153 align, start, end, nomap, &base);
154 if (ret == 0) {
155 pr_debug("Reserved memory: allocated memory for '%s' node: base %pa, size %ld MiB\n",
156 uname, &base,
157 (unsigned long)size / SZ_1M);
158 break;
159 }
160 len -= t_len;
161 }
162
163 } else {
164 ret = early_init_dt_alloc_reserved_memory_arch(size, align,
165 0, 0, nomap, &base);
166 if (ret == 0)
167 pr_debug("Reserved memory: allocated memory for '%s' node: base %pa, size %ld MiB\n",
168 uname, &base, (unsigned long)size / SZ_1M);
169 }
170
171 if (base == 0) {
172 pr_info("Reserved memory: failed to allocate memory for node '%s'\n",
173 uname);
174 return -ENOMEM;
175 }
176
177 *res_base = base;
178 *res_size = size;
179
180 return 0;
181}
182
Marek Szyprowskif618c472014-02-28 14:42:49 +0100183static const struct of_device_id __rmem_of_table_sentinel
184 __used __section(__reservedmem_of_table_end);
185
186/**
187 * res_mem_init_node() - call region specific reserved memory init code
188 */
189static int __init __reserved_mem_init_node(struct reserved_mem *rmem)
190{
191 extern const struct of_device_id __reservedmem_of_table[];
192 const struct of_device_id *i;
193
194 for (i = __reservedmem_of_table; i < &__rmem_of_table_sentinel; i++) {
195 reservedmem_of_init_fn initfn = i->data;
196 const char *compat = i->compatible;
197
198 if (!of_flat_dt_is_compatible(rmem->fdt_node, compat))
199 continue;
200
Rob Herring9dd31072014-05-08 16:06:17 -0500201 if (initfn(rmem) == 0) {
Marek Szyprowskif618c472014-02-28 14:42:49 +0100202 pr_info("Reserved memory: initialized node %s, compatible id %s\n",
203 rmem->name, compat);
204 return 0;
205 }
206 }
207 return -ENOENT;
208}
209
Mitchel Humpherysae1add22015-09-15 18:30:36 -0700210static int __init __rmem_cmp(const void *a, const void *b)
211{
212 const struct reserved_mem *ra = a, *rb = b;
213
Michael Ellerman9eb8cd22015-11-18 21:46:38 +1100214 if (ra->base < rb->base)
215 return -1;
216
217 if (ra->base > rb->base)
218 return 1;
219
220 return 0;
Mitchel Humpherysae1add22015-09-15 18:30:36 -0700221}
222
223static void __init __rmem_check_for_overlap(void)
224{
225 int i;
226
227 if (reserved_mem_count < 2)
228 return;
229
230 sort(reserved_mem, reserved_mem_count, sizeof(reserved_mem[0]),
231 __rmem_cmp, NULL);
232 for (i = 0; i < reserved_mem_count - 1; i++) {
233 struct reserved_mem *this, *next;
234
235 this = &reserved_mem[i];
236 next = &reserved_mem[i + 1];
237 if (!(this->base && next->base))
238 continue;
239 if (this->base + this->size > next->base) {
240 phys_addr_t this_end, next_end;
241
242 this_end = this->base + this->size;
243 next_end = next->base + next->size;
Michael Ellerman85a1c772015-11-10 16:08:33 +1100244 pr_err("Reserved memory: OVERLAP DETECTED!\n%s (%pa--%pa) overlaps with %s (%pa--%pa)\n",
245 this->name, &this->base, &this_end,
246 next->name, &next->base, &next_end);
Mitchel Humpherysae1add22015-09-15 18:30:36 -0700247 }
248 }
249}
250
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100251/**
252 * fdt_init_reserved_mem - allocate and init all saved reserved memory regions
253 */
254void __init fdt_init_reserved_mem(void)
255{
256 int i;
Mitchel Humpherysae1add22015-09-15 18:30:36 -0700257
258 /* check for overlapping reserved regions */
259 __rmem_check_for_overlap();
260
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100261 for (i = 0; i < reserved_mem_count; i++) {
262 struct reserved_mem *rmem = &reserved_mem[i];
263 unsigned long node = rmem->fdt_node;
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200264 int len;
265 const __be32 *prop;
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100266 int err = 0;
267
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200268 prop = of_get_flat_dt_prop(node, "phandle", &len);
269 if (!prop)
270 prop = of_get_flat_dt_prop(node, "linux,phandle", &len);
271 if (prop)
272 rmem->phandle = of_read_number(prop, len/4);
273
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100274 if (rmem->size == 0)
275 err = __reserved_mem_alloc_size(node, rmem->name,
276 &rmem->base, &rmem->size);
Marek Szyprowskif618c472014-02-28 14:42:49 +0100277 if (err == 0)
278 __reserved_mem_init_node(rmem);
Marek Szyprowski3f0c8202014-02-28 14:42:48 +0100279 }
280}
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200281
282static inline struct reserved_mem *__find_rmem(struct device_node *node)
283{
284 unsigned int i;
285
286 if (!node->phandle)
287 return NULL;
288
289 for (i = 0; i < reserved_mem_count; i++)
290 if (reserved_mem[i].phandle == node->phandle)
291 return &reserved_mem[i];
292 return NULL;
293}
294
295/**
296 * of_reserved_mem_device_init() - assign reserved memory region to given device
297 *
298 * This function assign memory region pointed by "memory-region" device tree
299 * property to the given device.
300 */
Marek Szyprowski47f29df2014-10-29 14:50:29 -0700301int of_reserved_mem_device_init(struct device *dev)
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200302{
303 struct reserved_mem *rmem;
304 struct device_node *np;
Marek Szyprowski47f29df2014-10-29 14:50:29 -0700305 int ret;
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200306
307 np = of_parse_phandle(dev->of_node, "memory-region", 0);
308 if (!np)
Marek Szyprowski47f29df2014-10-29 14:50:29 -0700309 return -ENODEV;
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200310
311 rmem = __find_rmem(np);
312 of_node_put(np);
313
314 if (!rmem || !rmem->ops || !rmem->ops->device_init)
Marek Szyprowski47f29df2014-10-29 14:50:29 -0700315 return -EINVAL;
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200316
Marek Szyprowski47f29df2014-10-29 14:50:29 -0700317 ret = rmem->ops->device_init(rmem, dev);
318 if (ret == 0)
319 dev_info(dev, "assigned reserved memory node %s\n", rmem->name);
320
321 return ret;
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200322}
George G. Davis615fde72015-01-09 09:29:05 -0500323EXPORT_SYMBOL_GPL(of_reserved_mem_device_init);
Marek Szyprowski9dcfee02014-07-14 10:28:04 +0200324
325/**
326 * of_reserved_mem_device_release() - release reserved memory device structures
327 *
328 * This function releases structures allocated for memory region handling for
329 * the given device.
330 */
331void of_reserved_mem_device_release(struct device *dev)
332{
333 struct reserved_mem *rmem;
334 struct device_node *np;
335
336 np = of_parse_phandle(dev->of_node, "memory-region", 0);
337 if (!np)
338 return;
339
340 rmem = __find_rmem(np);
341 of_node_put(np);
342
343 if (!rmem || !rmem->ops || !rmem->ops->device_release)
344 return;
345
346 rmem->ops->device_release(rmem, dev);
347}
George G. Davis615fde72015-01-09 09:29:05 -0500348EXPORT_SYMBOL_GPL(of_reserved_mem_device_release);