kexec: move locking into do_kexec_load
[linux-2.6-block.git] / kernel / kexec.c
CommitLineData
40b0b3f8 1// SPDX-License-Identifier: GPL-2.0-only
dc009d92 2/*
2965faa5 3 * kexec.c - kexec_load system call
dc009d92 4 * Copyright (C) 2002-2004 Eric Biederman <ebiederm@xmission.com>
dc009d92
EB
5 */
6
de90a6bc
MH
7#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
8
c59ede7b 9#include <linux/capability.h>
dc009d92
EB
10#include <linux/mm.h>
11#include <linux/file.h>
a210fd32 12#include <linux/security.h>
dc009d92 13#include <linux/kexec.h>
8c5a1cf0 14#include <linux/mutex.h>
dc009d92 15#include <linux/list.h>
dc009d92 16#include <linux/syscalls.h>
a43cac0d 17#include <linux/vmalloc.h>
2965faa5 18#include <linux/slab.h>
dc009d92 19
a43cac0d
DY
20#include "kexec_internal.h"
21
dabe7862
VG
22static int copy_user_segment_list(struct kimage *image,
23 unsigned long nr_segments,
24 struct kexec_segment __user *segments)
dc009d92 25{
dabe7862 26 int ret;
dc009d92 27 size_t segment_bytes;
dc009d92
EB
28
29 /* Read in the segments */
30 image->nr_segments = nr_segments;
31 segment_bytes = nr_segments * sizeof(*segments);
dabe7862
VG
32 ret = copy_from_user(image->segment, segments, segment_bytes);
33 if (ret)
34 ret = -EFAULT;
35
36 return ret;
37}
38
255aedd9
VG
39static int kimage_alloc_init(struct kimage **rimage, unsigned long entry,
40 unsigned long nr_segments,
41 struct kexec_segment __user *segments,
42 unsigned long flags)
dc009d92 43{
255aedd9 44 int ret;
dc009d92 45 struct kimage *image;
255aedd9
VG
46 bool kexec_on_panic = flags & KEXEC_ON_CRASH;
47
48 if (kexec_on_panic) {
49 /* Verify we have a valid entry point */
43546d86
RK
50 if ((entry < phys_to_boot_phys(crashk_res.start)) ||
51 (entry > phys_to_boot_phys(crashk_res.end)))
255aedd9
VG
52 return -EADDRNOTAVAIL;
53 }
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EB
54
55 /* Allocate and initialize a controlling structure */
dabe7862
VG
56 image = do_kimage_alloc_init();
57 if (!image)
58 return -ENOMEM;
59
60 image->start = entry;
61
255aedd9
VG
62 ret = copy_user_segment_list(image, nr_segments, segments);
63 if (ret)
dabe7862
VG
64 goto out_free_image;
65
255aedd9 66 if (kexec_on_panic) {
cdf4b3fa 67 /* Enable special crash kernel control page alloc policy. */
255aedd9
VG
68 image->control_page = crashk_res.start;
69 image->type = KEXEC_TYPE_CRASH;
70 }
71
cdf4b3fa
XP
72 ret = sanity_check_segment_list(image);
73 if (ret)
74 goto out_free_image;
75
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76 /*
77 * Find a location for the control code buffer, and add it
78 * the vector of segments so that it's pages will also be
79 * counted as destination pages.
80 */
255aedd9 81 ret = -ENOMEM;
dc009d92 82 image->control_code_page = kimage_alloc_control_pages(image,
163f6876 83 get_order(KEXEC_CONTROL_PAGE_SIZE));
dc009d92 84 if (!image->control_code_page) {
e1bebcf4 85 pr_err("Could not allocate control_code_buffer\n");
dabe7862 86 goto out_free_image;
dc009d92
EB
87 }
88
255aedd9
VG
89 if (!kexec_on_panic) {
90 image->swap_page = kimage_alloc_control_pages(image, 0);
91 if (!image->swap_page) {
92 pr_err("Could not allocate swap buffer\n");
93 goto out_free_control_pages;
94 }
3ab83521
HY
95 }
96
b92e7e0d
ZY
97 *rimage = image;
98 return 0;
dabe7862 99out_free_control_pages:
b92e7e0d 100 kimage_free_page_list(&image->control_pages);
dabe7862 101out_free_image:
b92e7e0d 102 kfree(image);
255aedd9 103 return ret;
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EB
104}
105
0eea0867
MH
106static int do_kexec_load(unsigned long entry, unsigned long nr_segments,
107 struct kexec_segment __user *segments, unsigned long flags)
108{
109 struct kimage **dest_image, *image;
110 unsigned long i;
111 int ret;
112
4b692e86
AB
113 /*
114 * Because we write directly to the reserved memory region when loading
115 * crash kernels we need a mutex here to prevent multiple crash kernels
116 * from attempting to load simultaneously, and to prevent a crash kernel
117 * from loading over the top of a in use crash kernel.
118 *
119 * KISS: always take the mutex.
120 */
121 if (!mutex_trylock(&kexec_mutex))
122 return -EBUSY;
123
0eea0867
MH
124 if (flags & KEXEC_ON_CRASH) {
125 dest_image = &kexec_crash_image;
126 if (kexec_crash_image)
127 arch_kexec_unprotect_crashkres();
128 } else {
129 dest_image = &kexec_image;
130 }
131
132 if (nr_segments == 0) {
133 /* Uninstall image */
134 kimage_free(xchg(dest_image, NULL));
4b692e86
AB
135 ret = 0;
136 goto out_unlock;
0eea0867
MH
137 }
138 if (flags & KEXEC_ON_CRASH) {
139 /*
140 * Loading another kernel to switch to if this one
141 * crashes. Free any current crash dump kernel before
142 * we corrupt it.
143 */
144 kimage_free(xchg(&kexec_crash_image, NULL));
145 }
146
147 ret = kimage_alloc_init(&image, entry, nr_segments, segments, flags);
148 if (ret)
4b692e86 149 goto out_unlock;
0eea0867 150
0eea0867
MH
151 if (flags & KEXEC_PRESERVE_CONTEXT)
152 image->preserve_context = 1;
153
154 ret = machine_kexec_prepare(image);
155 if (ret)
156 goto out;
157
1229384f
XP
158 /*
159 * Some architecture(like S390) may touch the crash memory before
160 * machine_kexec_prepare(), we must copy vmcoreinfo data after it.
161 */
162 ret = kimage_crash_copy_vmcoreinfo(image);
163 if (ret)
164 goto out;
165
0eea0867
MH
166 for (i = 0; i < nr_segments; i++) {
167 ret = kimage_load_segment(image, &image->segment[i]);
168 if (ret)
169 goto out;
170 }
171
172 kimage_terminate(image);
173
de68e4da
PT
174 ret = machine_kexec_post_load(image);
175 if (ret)
176 goto out;
177
0eea0867
MH
178 /* Install the new kernel and uninstall the old */
179 image = xchg(dest_image, image);
180
181out:
182 if ((flags & KEXEC_ON_CRASH) && kexec_crash_image)
183 arch_kexec_protect_crashkres();
184
0eea0867 185 kimage_free(image);
4b692e86
AB
186out_unlock:
187 mutex_unlock(&kexec_mutex);
0eea0867
MH
188 return ret;
189}
190
dc009d92
EB
191/*
192 * Exec Kernel system call: for obvious reasons only root may call it.
193 *
194 * This call breaks up into three pieces.
195 * - A generic part which loads the new kernel from the current
196 * address space, and very carefully places the data in the
197 * allocated pages.
198 *
199 * - A generic part that interacts with the kernel and tells all of
200 * the devices to shut down. Preventing on-going dmas, and placing
201 * the devices in a consistent state so a later kernel can
202 * reinitialize them.
203 *
204 * - A machine specific part that includes the syscall number
002ace78 205 * and then copies the image to it's final destination. And
dc009d92
EB
206 * jumps into the image at entry.
207 *
208 * kexec does not sync, or unmount filesystems so if you need
209 * that to happen you need to do that yourself.
210 */
8c5a1cf0 211
6b27aef0
DB
212static inline int kexec_load_check(unsigned long nr_segments,
213 unsigned long flags)
dc009d92 214{
a210fd32
MZ
215 int result;
216
dc009d92 217 /* We only trust the superuser with rebooting the system. */
7984754b 218 if (!capable(CAP_SYS_BOOT) || kexec_load_disabled)
dc009d92
EB
219 return -EPERM;
220
a210fd32 221 /* Permit LSMs and IMA to fail the kexec */
b64fcae7 222 result = security_kernel_load_data(LOADING_KEXEC_IMAGE, false);
a210fd32
MZ
223 if (result < 0)
224 return result;
225
7d31f460
MG
226 /*
227 * kexec can be used to circumvent module loading restrictions, so
228 * prevent loading in that case
229 */
230 result = security_locked_down(LOCKDOWN_KEXEC);
231 if (result)
232 return result;
233
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EB
234 /*
235 * Verify we have a legal set of flags
236 * This leaves us room for future extensions.
237 */
238 if ((flags & KEXEC_FLAGS) != (flags & ~KEXEC_ARCH_MASK))
239 return -EINVAL;
240
dc009d92
EB
241 /* Put an artificial cap on the number
242 * of segments passed to kexec_load.
243 */
244 if (nr_segments > KEXEC_SEGMENT_MAX)
245 return -EINVAL;
246
6b27aef0
DB
247 return 0;
248}
249
250SYSCALL_DEFINE4(kexec_load, unsigned long, entry, unsigned long, nr_segments,
251 struct kexec_segment __user *, segments, unsigned long, flags)
252{
253 int result;
254
255 result = kexec_load_check(nr_segments, flags);
256 if (result)
257 return result;
258
259 /* Verify we are on the appropriate architecture */
260 if (((flags & KEXEC_ARCH_MASK) != KEXEC_ARCH) &&
261 ((flags & KEXEC_ARCH_MASK) != KEXEC_ARCH_DEFAULT))
262 return -EINVAL;
263
0eea0867 264 result = do_kexec_load(entry, nr_segments, segments, flags);
dc009d92 265
dc009d92
EB
266 return result;
267}
268
269#ifdef CONFIG_COMPAT
ca2c405a
HC
270COMPAT_SYSCALL_DEFINE4(kexec_load, compat_ulong_t, entry,
271 compat_ulong_t, nr_segments,
272 struct compat_kexec_segment __user *, segments,
273 compat_ulong_t, flags)
dc009d92
EB
274{
275 struct compat_kexec_segment in;
276 struct kexec_segment out, __user *ksegments;
277 unsigned long i, result;
278
6b27aef0
DB
279 result = kexec_load_check(nr_segments, flags);
280 if (result)
281 return result;
282
dc009d92
EB
283 /* Don't allow clients that don't understand the native
284 * architecture to do anything.
285 */
72414d3f 286 if ((flags & KEXEC_ARCH_MASK) == KEXEC_ARCH_DEFAULT)
dc009d92 287 return -EINVAL;
dc009d92 288
dc009d92 289 ksegments = compat_alloc_user_space(nr_segments * sizeof(out));
e1bebcf4 290 for (i = 0; i < nr_segments; i++) {
dc009d92 291 result = copy_from_user(&in, &segments[i], sizeof(in));
72414d3f 292 if (result)
dc009d92 293 return -EFAULT;
dc009d92
EB
294
295 out.buf = compat_ptr(in.buf);
296 out.bufsz = in.bufsz;
297 out.mem = in.mem;
298 out.memsz = in.memsz;
299
300 result = copy_to_user(&ksegments[i], &out, sizeof(out));
72414d3f 301 if (result)
dc009d92 302 return -EFAULT;
dc009d92
EB
303 }
304
6b27aef0
DB
305 result = do_kexec_load(entry, nr_segments, ksegments, flags);
306
6b27aef0 307 return result;
dc009d92
EB
308}
309#endif