xref: /linux/tools/testing/selftests/arm64/mte/mte_common_util.h (revision 6fb44438a5e1897a72dd11139274735256be8069)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 /* Copyright (C) 2020 ARM Limited */
3 
4 #ifndef _MTE_COMMON_UTIL_H
5 #define _MTE_COMMON_UTIL_H
6 
7 #include <signal.h>
8 #include <stdbool.h>
9 #include <stdlib.h>
10 #include <sys/auxv.h>
11 #include <sys/mman.h>
12 #include <sys/prctl.h>
13 #include "mte_def.h"
14 #include "kselftest.h"
15 
16 enum mte_mem_type {
17 	USE_MALLOC,
18 	USE_MMAP,
19 	USE_MPROTECT,
20 };
21 
22 enum mte_mode {
23 	MTE_NONE_ERR,
24 	MTE_SYNC_ERR,
25 	MTE_ASYNC_ERR,
26 };
27 
28 struct mte_fault_cxt {
29 	/* Address start which triggers mte tag fault */
30 	unsigned long trig_addr;
31 	/* Address range for mte tag fault and negative value means underflow */
32 	ssize_t trig_range;
33 	/* siginfo si code */
34 	unsigned long trig_si_code;
35 	/* Flag to denote if correct fault caught */
36 	bool fault_valid;
37 };
38 
39 extern struct mte_fault_cxt cur_mte_cxt;
40 extern bool mtefar_support;
41 extern bool mtestonly_support;
42 
43 /* MTE utility functions */
44 void mte_default_handler(int signum, siginfo_t *si, void *uc);
45 void mte_register_signal(int signal, void (*handler)(int, siginfo_t *, void *),
46 			 bool export_tags);
47 void mte_wait_after_trig(void);
48 void *mte_allocate_memory(size_t size, int mem_type, int mapping, bool tags);
49 void *mte_allocate_memory_tag_range(size_t size, int mem_type, int mapping,
50 				    size_t range_before, size_t range_after);
51 void *mte_allocate_file_memory(size_t size, int mem_type, int mapping,
52 			       bool tags, int fd);
53 void *mte_allocate_file_memory_tag_range(size_t size, int mem_type, int mapping,
54 					 size_t range_before, size_t range_after, int fd);
55 void mte_free_memory(void *ptr, size_t size, int mem_type, bool tags);
56 void mte_free_memory_tag_range(void *ptr, size_t size, int mem_type,
57 			       size_t range_before, size_t range_after);
58 void *mte_insert_tags(void *ptr, size_t size);
59 void mte_clear_tags(void *ptr, size_t size);
60 void *mte_insert_atag(void *ptr);
61 void *mte_clear_atag(void *ptr);
62 int mte_default_setup(void);
63 void mte_restore_setup(void);
64 int mte_switch_mode(int mte_option, unsigned long incl_mask, bool stonly);
65 void mte_initialize_current_context(int mode, uintptr_t ptr, ssize_t range);
66 
67 /* Common utility functions */
68 int create_temp_file(void);
69 
70 /* Assembly MTE utility functions */
71 void *mte_insert_random_tag(void *ptr);
72 void *mte_insert_new_tag(void *ptr);
73 void *mte_get_tag_address(void *ptr);
74 void mte_set_tag_address_range(void *ptr, int range);
75 void mte_clear_tag_address_range(void *ptr, int range);
76 void mte_disable_pstate_tco(void);
77 void mte_enable_pstate_tco(void);
78 unsigned int mte_get_pstate_tco(void);
79 
80 /* Test framework static inline functions/macros */
evaluate_test(int err,const char * msg)81 static inline void evaluate_test(int err, const char *msg)
82 {
83 	switch (err) {
84 	case KSFT_PASS:
85 		ksft_test_result_pass("%s", msg);
86 		break;
87 	case KSFT_FAIL:
88 		ksft_test_result_fail("%s", msg);
89 		break;
90 	case KSFT_SKIP:
91 		ksft_test_result_skip("%s", msg);
92 		break;
93 	default:
94 		ksft_test_result_error("Unknown return code %d from %s",
95 				       err, msg);
96 		break;
97 	}
98 }
99 
check_allocated_memory(void * ptr,size_t size,int mem_type,bool tags)100 static inline int check_allocated_memory(void *ptr, size_t size,
101 					 int mem_type, bool tags)
102 {
103 	if (ptr == NULL) {
104 		ksft_print_msg("FAIL: memory allocation\n");
105 		return KSFT_FAIL;
106 	}
107 
108 	if (tags && !MT_FETCH_TAG((uintptr_t)ptr)) {
109 		ksft_print_msg("FAIL: tag not found at addr(%p)\n", ptr);
110 		mte_free_memory((void *)ptr, size, mem_type, false);
111 		return KSFT_FAIL;
112 	}
113 
114 	return KSFT_PASS;
115 }
116 
check_allocated_memory_range(void * ptr,size_t size,int mem_type,size_t range_before,size_t range_after)117 static inline int check_allocated_memory_range(void *ptr, size_t size, int mem_type,
118 					       size_t range_before, size_t range_after)
119 {
120 	if (ptr == NULL) {
121 		ksft_print_msg("FAIL: memory allocation\n");
122 		return KSFT_FAIL;
123 	}
124 
125 	if (!MT_FETCH_TAG((uintptr_t)ptr)) {
126 		ksft_print_msg("FAIL: tag not found at addr(%p)\n", ptr);
127 		mte_free_memory_tag_range((void *)ptr, size, mem_type, range_before,
128 					  range_after);
129 		return KSFT_FAIL;
130 	}
131 	return KSFT_PASS;
132 }
133 
134 #endif /* _MTE_COMMON_UTIL_H */
135