xref: /openbmc/linux/kernel/scs.c (revision f6e39794f4b6da7ca9b77f2f9ad11fd6f0ac83e5)
1d08b9f0cSSami Tolvanen // SPDX-License-Identifier: GPL-2.0
2d08b9f0cSSami Tolvanen /*
3d08b9f0cSSami Tolvanen  * Shadow Call Stack support.
4d08b9f0cSSami Tolvanen  *
5d08b9f0cSSami Tolvanen  * Copyright (C) 2019 Google LLC
6d08b9f0cSSami Tolvanen  */
7d08b9f0cSSami Tolvanen 
8a2abe7cbSSami Tolvanen #include <linux/cpuhotplug.h>
9d08b9f0cSSami Tolvanen #include <linux/kasan.h>
10628d06a4SSami Tolvanen #include <linux/mm.h>
11d08b9f0cSSami Tolvanen #include <linux/scs.h>
12a2abe7cbSSami Tolvanen #include <linux/vmalloc.h>
13628d06a4SSami Tolvanen #include <linux/vmstat.h>
14d08b9f0cSSami Tolvanen 
15bee348faSWill Deacon static void __scs_account(void *s, int account)
16bee348faSWill Deacon {
17a2abe7cbSSami Tolvanen 	struct page *scs_page = vmalloc_to_page(s);
18bee348faSWill Deacon 
19991e7673SShakeel Butt 	mod_node_page_state(page_pgdat(scs_page), NR_KERNEL_SCS_KB,
20bee348faSWill Deacon 			    account * (SCS_SIZE / SZ_1K));
21bee348faSWill Deacon }
22bee348faSWill Deacon 
23a2abe7cbSSami Tolvanen /* Matches NR_CACHED_STACKS for VMAP_STACK */
24a2abe7cbSSami Tolvanen #define NR_CACHED_SCS 2
25a2abe7cbSSami Tolvanen static DEFINE_PER_CPU(void *, scs_cache[NR_CACHED_SCS]);
26d08b9f0cSSami Tolvanen 
27a2abe7cbSSami Tolvanen static void *__scs_alloc(int node)
28a2abe7cbSSami Tolvanen {
29a2abe7cbSSami Tolvanen 	int i;
30a2abe7cbSSami Tolvanen 	void *s;
31a2abe7cbSSami Tolvanen 
32a2abe7cbSSami Tolvanen 	for (i = 0; i < NR_CACHED_SCS; i++) {
33a2abe7cbSSami Tolvanen 		s = this_cpu_xchg(scs_cache[i], NULL);
34a2abe7cbSSami Tolvanen 		if (s) {
35*f6e39794SAndrey Konovalov 			s = kasan_unpoison_vmalloc(s, SCS_SIZE,
36*f6e39794SAndrey Konovalov 						   KASAN_VMALLOC_PROT_NORMAL);
37a2abe7cbSSami Tolvanen 			memset(s, 0, SCS_SIZE);
38*f6e39794SAndrey Konovalov 			goto out;
39a2abe7cbSSami Tolvanen 		}
40a2abe7cbSSami Tolvanen 	}
41a2abe7cbSSami Tolvanen 
42*f6e39794SAndrey Konovalov 	s = __vmalloc_node_range(SCS_SIZE, 1, VMALLOC_START, VMALLOC_END,
43a2abe7cbSSami Tolvanen 				    GFP_SCS, PAGE_KERNEL, 0, node,
44a2abe7cbSSami Tolvanen 				    __builtin_return_address(0));
45*f6e39794SAndrey Konovalov 
46*f6e39794SAndrey Konovalov out:
47*f6e39794SAndrey Konovalov 	return kasan_reset_tag(s);
48a2abe7cbSSami Tolvanen }
49a2abe7cbSSami Tolvanen 
50a2abe7cbSSami Tolvanen void *scs_alloc(int node)
51a2abe7cbSSami Tolvanen {
52a2abe7cbSSami Tolvanen 	void *s;
53a2abe7cbSSami Tolvanen 
54a2abe7cbSSami Tolvanen 	s = __scs_alloc(node);
55bee348faSWill Deacon 	if (!s)
56bee348faSWill Deacon 		return NULL;
57bee348faSWill Deacon 
58d08b9f0cSSami Tolvanen 	*__scs_magic(s) = SCS_END_MAGIC;
59bee348faSWill Deacon 
60d08b9f0cSSami Tolvanen 	/*
61d08b9f0cSSami Tolvanen 	 * Poison the allocation to catch unintentional accesses to
62d08b9f0cSSami Tolvanen 	 * the shadow stack when KASAN is enabled.
63d08b9f0cSSami Tolvanen 	 */
64a2abe7cbSSami Tolvanen 	kasan_poison_vmalloc(s, SCS_SIZE);
65bee348faSWill Deacon 	__scs_account(s, 1);
66d08b9f0cSSami Tolvanen 	return s;
67d08b9f0cSSami Tolvanen }
68d08b9f0cSSami Tolvanen 
69a2abe7cbSSami Tolvanen void scs_free(void *s)
70d08b9f0cSSami Tolvanen {
71a2abe7cbSSami Tolvanen 	int i;
72a2abe7cbSSami Tolvanen 
73bee348faSWill Deacon 	__scs_account(s, -1);
74a2abe7cbSSami Tolvanen 
75a2abe7cbSSami Tolvanen 	/*
76a2abe7cbSSami Tolvanen 	 * We cannot sleep as this can be called in interrupt context,
77a2abe7cbSSami Tolvanen 	 * so use this_cpu_cmpxchg to update the cache, and vfree_atomic
78a2abe7cbSSami Tolvanen 	 * to free the stack.
79a2abe7cbSSami Tolvanen 	 */
80a2abe7cbSSami Tolvanen 
81a2abe7cbSSami Tolvanen 	for (i = 0; i < NR_CACHED_SCS; i++)
82a2abe7cbSSami Tolvanen 		if (this_cpu_cmpxchg(scs_cache[i], 0, s) == NULL)
83a2abe7cbSSami Tolvanen 			return;
84a2abe7cbSSami Tolvanen 
85*f6e39794SAndrey Konovalov 	kasan_unpoison_vmalloc(s, SCS_SIZE, KASAN_VMALLOC_PROT_NORMAL);
86a2abe7cbSSami Tolvanen 	vfree_atomic(s);
87a2abe7cbSSami Tolvanen }
88a2abe7cbSSami Tolvanen 
89a2abe7cbSSami Tolvanen static int scs_cleanup(unsigned int cpu)
90a2abe7cbSSami Tolvanen {
91a2abe7cbSSami Tolvanen 	int i;
92a2abe7cbSSami Tolvanen 	void **cache = per_cpu_ptr(scs_cache, cpu);
93a2abe7cbSSami Tolvanen 
94a2abe7cbSSami Tolvanen 	for (i = 0; i < NR_CACHED_SCS; i++) {
95a2abe7cbSSami Tolvanen 		vfree(cache[i]);
96a2abe7cbSSami Tolvanen 		cache[i] = NULL;
97a2abe7cbSSami Tolvanen 	}
98a2abe7cbSSami Tolvanen 
99a2abe7cbSSami Tolvanen 	return 0;
100d08b9f0cSSami Tolvanen }
101d08b9f0cSSami Tolvanen 
102d08b9f0cSSami Tolvanen void __init scs_init(void)
103d08b9f0cSSami Tolvanen {
104a2abe7cbSSami Tolvanen 	cpuhp_setup_state(CPUHP_BP_PREPARE_DYN, "scs:scs_cache", NULL,
105a2abe7cbSSami Tolvanen 			  scs_cleanup);
106d08b9f0cSSami Tolvanen }
107d08b9f0cSSami Tolvanen 
108d08b9f0cSSami Tolvanen int scs_prepare(struct task_struct *tsk, int node)
109d08b9f0cSSami Tolvanen {
110d08b9f0cSSami Tolvanen 	void *s = scs_alloc(node);
111d08b9f0cSSami Tolvanen 
112d08b9f0cSSami Tolvanen 	if (!s)
113d08b9f0cSSami Tolvanen 		return -ENOMEM;
114d08b9f0cSSami Tolvanen 
11551189c7aSWill Deacon 	task_scs(tsk) = task_scs_sp(tsk) = s;
116d08b9f0cSSami Tolvanen 	return 0;
117d08b9f0cSSami Tolvanen }
118d08b9f0cSSami Tolvanen 
1195bbaf9d1SSami Tolvanen static void scs_check_usage(struct task_struct *tsk)
1205bbaf9d1SSami Tolvanen {
1215bbaf9d1SSami Tolvanen 	static unsigned long highest;
1225bbaf9d1SSami Tolvanen 
1235bbaf9d1SSami Tolvanen 	unsigned long *p, prev, curr = highest, used = 0;
1245bbaf9d1SSami Tolvanen 
1255bbaf9d1SSami Tolvanen 	if (!IS_ENABLED(CONFIG_DEBUG_STACK_USAGE))
1265bbaf9d1SSami Tolvanen 		return;
1275bbaf9d1SSami Tolvanen 
1285bbaf9d1SSami Tolvanen 	for (p = task_scs(tsk); p < __scs_magic(tsk); ++p) {
1295bbaf9d1SSami Tolvanen 		if (!READ_ONCE_NOCHECK(*p))
1305bbaf9d1SSami Tolvanen 			break;
131333ed746SWill Deacon 		used += sizeof(*p);
1325bbaf9d1SSami Tolvanen 	}
1335bbaf9d1SSami Tolvanen 
1345bbaf9d1SSami Tolvanen 	while (used > curr) {
1355bbaf9d1SSami Tolvanen 		prev = cmpxchg_relaxed(&highest, curr, used);
1365bbaf9d1SSami Tolvanen 
1375bbaf9d1SSami Tolvanen 		if (prev == curr) {
1385bbaf9d1SSami Tolvanen 			pr_info("%s (%d): highest shadow stack usage: %lu bytes\n",
1395bbaf9d1SSami Tolvanen 				tsk->comm, task_pid_nr(tsk), used);
1405bbaf9d1SSami Tolvanen 			break;
1415bbaf9d1SSami Tolvanen 		}
1425bbaf9d1SSami Tolvanen 
1435bbaf9d1SSami Tolvanen 		curr = prev;
1445bbaf9d1SSami Tolvanen 	}
1455bbaf9d1SSami Tolvanen }
1465bbaf9d1SSami Tolvanen 
147d08b9f0cSSami Tolvanen void scs_release(struct task_struct *tsk)
148d08b9f0cSSami Tolvanen {
149d08b9f0cSSami Tolvanen 	void *s = task_scs(tsk);
150d08b9f0cSSami Tolvanen 
151d08b9f0cSSami Tolvanen 	if (!s)
152d08b9f0cSSami Tolvanen 		return;
153d08b9f0cSSami Tolvanen 
15488485be5SWill Deacon 	WARN(task_scs_end_corrupted(tsk),
15588485be5SWill Deacon 	     "corrupted shadow stack detected when freeing task\n");
1565bbaf9d1SSami Tolvanen 	scs_check_usage(tsk);
157d08b9f0cSSami Tolvanen 	scs_free(s);
158d08b9f0cSSami Tolvanen }
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