xref: /linux/include/trace/events/mmflags.h (revision d25711a9f32ac99d5c04a48d00d802596a8a1814)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 #include <linux/node.h>
3 #include <linux/mmzone.h>
4 #include <linux/compaction.h>
5 /*
6  * The order of these masks is important. Matching masks will be seen
7  * first and the left over flags will end up showing by themselves.
8  *
9  * For example, if we have GFP_KERNEL before GFP_USER we wil get:
10  *
11  *  GFP_KERNEL|GFP_HARDWALL
12  *
13  * Thus most bits set go first.
14  */
15 
16 /* These define the values that are enums (the bits) */
17 #define TRACE_GFP_FLAGS_GENERAL			\
18 	TRACE_GFP_EM(DMA)			\
19 	TRACE_GFP_EM(HIGHMEM)			\
20 	TRACE_GFP_EM(DMA32)			\
21 	TRACE_GFP_EM(MOVABLE)			\
22 	TRACE_GFP_EM(RECLAIMABLE)		\
23 	TRACE_GFP_EM(HIGH)			\
24 	TRACE_GFP_EM(IO)			\
25 	TRACE_GFP_EM(FS)			\
26 	TRACE_GFP_EM(ZERO)			\
27 	TRACE_GFP_EM(DIRECT_RECLAIM)		\
28 	TRACE_GFP_EM(KSWAPD_RECLAIM)		\
29 	TRACE_GFP_EM(WRITE)			\
30 	TRACE_GFP_EM(NOWARN)			\
31 	TRACE_GFP_EM(RETRY_MAYFAIL)		\
32 	TRACE_GFP_EM(NOFAIL)			\
33 	TRACE_GFP_EM(NORETRY)			\
34 	TRACE_GFP_EM(MEMALLOC)			\
35 	TRACE_GFP_EM(COMP)			\
36 	TRACE_GFP_EM(NOMEMALLOC)		\
37 	TRACE_GFP_EM(HARDWALL)			\
38 	TRACE_GFP_EM(THISNODE)			\
39 	TRACE_GFP_EM(ACCOUNT)			\
40 	TRACE_GFP_EM(ZEROTAGS)
41 
42 #ifdef CONFIG_KASAN_HW_TAGS
43 # define TRACE_GFP_FLAGS_KASAN			\
44 	TRACE_GFP_EM(SKIP_ZERO)			\
45 	TRACE_GFP_EM(SKIP_KASAN)
46 #else
47 # define TRACE_GFP_FLAGS_KASAN
48 #endif
49 
50 #ifdef CONFIG_LOCKDEP
51 # define TRACE_GFP_FLAGS_LOCKDEP		\
52 	TRACE_GFP_EM(NOLOCKDEP)
53 #else
54 # define TRACE_GFP_FLAGS_LOCKDEP
55 #endif
56 
57 #define TRACE_GFP_FLAGS				\
58 	TRACE_GFP_FLAGS_GENERAL			\
59 	TRACE_GFP_FLAGS_KASAN			\
60 	TRACE_GFP_FLAGS_LOCKDEP
61 
62 #undef TRACE_GFP_EM
63 #define TRACE_GFP_EM(a) TRACE_DEFINE_ENUM(___GFP_##a##_BIT);
64 
65 TRACE_GFP_FLAGS
66 
67 /* Just in case these are ever used */
68 TRACE_DEFINE_ENUM(___GFP_UNUSED_BIT);
69 TRACE_DEFINE_ENUM(___GFP_LAST_BIT);
70 
71 #define gfpflag_string(flag) {(__force unsigned long)flag, #flag}
72 
73 /*
74  * For the values that match the bits, use the TRACE_GFP_FLAGS
75  * which will allow any updates to be included automatically.
76  */
77 #undef TRACE_GFP_EM
78 #define TRACE_GFP_EM(a) gfpflag_string(__GFP_##a),
79 
80 #define __def_gfpflag_names			\
81 	gfpflag_string(GFP_TRANSHUGE),		\
82 	gfpflag_string(GFP_TRANSHUGE_LIGHT),	\
83 	gfpflag_string(GFP_HIGHUSER_MOVABLE),	\
84 	gfpflag_string(GFP_HIGHUSER),		\
85 	gfpflag_string(GFP_USER),		\
86 	gfpflag_string(GFP_KERNEL_ACCOUNT),	\
87 	gfpflag_string(GFP_KERNEL),		\
88 	gfpflag_string(GFP_NOFS),		\
89 	gfpflag_string(GFP_ATOMIC),		\
90 	gfpflag_string(GFP_NOIO),		\
91 	gfpflag_string(GFP_NOWAIT),		\
92 	gfpflag_string(GFP_DMA),		\
93 	gfpflag_string(GFP_DMA32),		\
94 	gfpflag_string(__GFP_RECLAIM),		\
95 	TRACE_GFP_FLAGS				\
96 	{ 0, NULL }
97 
98 #define show_gfp_flags(flags)						\
99 	(flags) ? __print_flags(flags, "|", __def_gfpflag_names		\
100 	) : "none"
101 
102 #ifdef CONFIG_MMU
103 #define IF_HAVE_PG_MLOCK(_name) ,{1UL << PG_##_name, __stringify(_name)}
104 #else
105 #define IF_HAVE_PG_MLOCK(_name)
106 #endif
107 
108 #ifdef CONFIG_MEMORY_FAILURE
109 #define IF_HAVE_PG_HWPOISON(_name) ,{1UL << PG_##_name, __stringify(_name)}
110 #else
111 #define IF_HAVE_PG_HWPOISON(_name)
112 #endif
113 
114 #if defined(CONFIG_PAGE_IDLE_FLAG) && defined(CONFIG_64BIT)
115 #define IF_HAVE_PG_IDLE(_name) ,{1UL << PG_##_name, __stringify(_name)}
116 #else
117 #define IF_HAVE_PG_IDLE(_name)
118 #endif
119 
120 #ifdef CONFIG_ARCH_USES_PG_ARCH_2
121 #define IF_HAVE_PG_ARCH_2(_name) ,{1UL << PG_##_name, __stringify(_name)}
122 #else
123 #define IF_HAVE_PG_ARCH_2(_name)
124 #endif
125 
126 #ifdef CONFIG_ARCH_USES_PG_ARCH_3
127 #define IF_HAVE_PG_ARCH_3(_name) ,{1UL << PG_##_name, __stringify(_name)}
128 #else
129 #define IF_HAVE_PG_ARCH_3(_name)
130 #endif
131 
132 #define DEF_PAGEFLAG_NAME(_name) { 1UL <<  PG_##_name, __stringify(_name) }
133 
134 #define __def_pageflag_names						\
135 	DEF_PAGEFLAG_NAME(locked),					\
136 	DEF_PAGEFLAG_NAME(waiters),					\
137 	DEF_PAGEFLAG_NAME(referenced),					\
138 	DEF_PAGEFLAG_NAME(uptodate),					\
139 	DEF_PAGEFLAG_NAME(dirty),					\
140 	DEF_PAGEFLAG_NAME(lru),						\
141 	DEF_PAGEFLAG_NAME(active),					\
142 	DEF_PAGEFLAG_NAME(workingset),					\
143 	DEF_PAGEFLAG_NAME(owner_priv_1),				\
144 	DEF_PAGEFLAG_NAME(owner_2),					\
145 	DEF_PAGEFLAG_NAME(arch_1),					\
146 	DEF_PAGEFLAG_NAME(reserved),					\
147 	DEF_PAGEFLAG_NAME(private),					\
148 	DEF_PAGEFLAG_NAME(private_2),					\
149 	DEF_PAGEFLAG_NAME(writeback),					\
150 	DEF_PAGEFLAG_NAME(head),					\
151 	DEF_PAGEFLAG_NAME(reclaim),					\
152 	DEF_PAGEFLAG_NAME(swapbacked),					\
153 	DEF_PAGEFLAG_NAME(unevictable),					\
154 	DEF_PAGEFLAG_NAME(dropbehind)					\
155 IF_HAVE_PG_MLOCK(mlocked)						\
156 IF_HAVE_PG_HWPOISON(hwpoison)						\
157 IF_HAVE_PG_IDLE(idle)							\
158 IF_HAVE_PG_IDLE(young)							\
159 IF_HAVE_PG_ARCH_2(arch_2)						\
160 IF_HAVE_PG_ARCH_3(arch_3)
161 
162 #define show_page_flags(flags)						\
163 	(flags) ? __print_flags(flags, "|",				\
164 	__def_pageflag_names						\
165 	) : "none"
166 
167 #if defined(CONFIG_PPC64)
168 #define __VM_ARCH_SPECIFIC_1 {VM_SAO,     "sao"           }
169 #elif defined(CONFIG_PARISC)
170 #define __VM_ARCH_SPECIFIC_1 {VM_GROWSUP,	"growsup"	}
171 #elif !defined(CONFIG_MMU)
172 #define __VM_ARCH_SPECIFIC_1 {VM_MAPPED_COPY,"mappedcopy"	}
173 #else
174 #define __VM_ARCH_SPECIFIC_1 {VM_ARCH_1,	"arch_1"	}
175 #endif
176 
177 #ifdef CONFIG_MEM_SOFT_DIRTY
178 #define IF_HAVE_VM_SOFTDIRTY(flag,name) {flag, name },
179 #else
180 #define IF_HAVE_VM_SOFTDIRTY(flag,name)
181 #endif
182 
183 #ifdef CONFIG_HAVE_ARCH_USERFAULTFD_MINOR
184 # define IF_HAVE_UFFD_MINOR(flag, name) {flag, name},
185 #else
186 # define IF_HAVE_UFFD_MINOR(flag, name)
187 #endif
188 
189 #if defined(CONFIG_64BIT) || defined(CONFIG_PPC32)
190 # define IF_HAVE_VM_DROPPABLE(flag, name) {flag, name},
191 #else
192 # define IF_HAVE_VM_DROPPABLE(flag, name)
193 #endif
194 
195 #define __def_vmaflag_names						\
196 	{VM_READ,			"read"		},		\
197 	{VM_WRITE,			"write"		},		\
198 	{VM_EXEC,			"exec"		},		\
199 	{VM_SHARED,			"shared"	},		\
200 	{VM_MAYREAD,			"mayread"	},		\
201 	{VM_MAYWRITE,			"maywrite"	},		\
202 	{VM_MAYEXEC,			"mayexec"	},		\
203 	{VM_MAYSHARE,			"mayshare"	},		\
204 	{VM_GROWSDOWN,			"growsdown"	},		\
205 	{VM_UFFD_MISSING,		"uffd_missing"	},		\
206 IF_HAVE_UFFD_MINOR(VM_UFFD_MINOR,	"uffd_minor"	)		\
207 	{VM_PFNMAP,			"pfnmap"	},		\
208 	{VM_MAYBE_GUARD,		"maybe_guard"	},		\
209 	{VM_UFFD_WP,			"uffd_wp"	},		\
210 	{VM_LOCKED,			"locked"	},		\
211 	{VM_IO,				"io"		},		\
212 	{VM_SEQ_READ,			"seqread"	},		\
213 	{VM_RAND_READ,			"randread"	},		\
214 	{VM_DONTCOPY,			"dontcopy"	},		\
215 	{VM_DONTEXPAND,			"dontexpand"	},		\
216 	{VM_LOCKONFAULT,		"lockonfault"	},		\
217 	{VM_ACCOUNT,			"account"	},		\
218 	{VM_NORESERVE,			"noreserve"	},		\
219 	{VM_HUGETLB,			"hugetlb"	},		\
220 	{VM_SYNC,			"sync"		},		\
221 	__VM_ARCH_SPECIFIC_1				,		\
222 	{VM_WIPEONFORK,			"wipeonfork"	},		\
223 	{VM_DONTDUMP,			"dontdump"	},		\
224 IF_HAVE_VM_SOFTDIRTY(VM_SOFTDIRTY,	"softdirty"	)		\
225 	{VM_MIXEDMAP,			"mixedmap"	},		\
226 	{VM_HUGEPAGE,			"hugepage"	},		\
227 	{VM_NOHUGEPAGE,			"nohugepage"	},		\
228 IF_HAVE_VM_DROPPABLE(VM_DROPPABLE,	"droppable"	)		\
229 	{VM_MERGEABLE,			"mergeable"	}		\
230 
231 #define show_vma_flags(flags)						\
232 	(flags) ? __print_flags(flags, "|",				\
233 	__def_vmaflag_names						\
234 	) : "none"
235 
236 #ifdef CONFIG_COMPACTION
237 #define COMPACTION_STATUS					\
238 	EM( COMPACT_SKIPPED,		"skipped")		\
239 	EM( COMPACT_DEFERRED,		"deferred")		\
240 	EM( COMPACT_CONTINUE,		"continue")		\
241 	EM( COMPACT_SUCCESS,		"success")		\
242 	EM( COMPACT_PARTIAL_SKIPPED,	"partial_skipped")	\
243 	EM( COMPACT_COMPLETE,		"complete")		\
244 	EM( COMPACT_NO_SUITABLE_PAGE,	"no_suitable_page")	\
245 	EM( COMPACT_NOT_SUITABLE_ZONE,	"not_suitable_zone")	\
246 	EMe(COMPACT_CONTENDED,		"contended")
247 
248 /* High-level compaction status feedback */
249 #define COMPACTION_FAILED	1
250 #define COMPACTION_WITHDRAWN	2
251 #define COMPACTION_PROGRESS	3
252 
253 #define compact_result_to_feedback(result)	\
254 ({						\
255 	enum compact_result __result = result;	\
256 	(__result == COMPACT_COMPLETE) ? COMPACTION_FAILED : \
257 		(__result == COMPACT_SUCCESS) ? COMPACTION_PROGRESS : COMPACTION_WITHDRAWN; \
258 })
259 
260 #define COMPACTION_FEEDBACK		\
261 	EM(COMPACTION_FAILED,		"failed")	\
262 	EM(COMPACTION_WITHDRAWN,	"withdrawn")	\
263 	EMe(COMPACTION_PROGRESS,	"progress")
264 
265 #define COMPACTION_PRIORITY						\
266 	EM(COMPACT_PRIO_SYNC_FULL,	"COMPACT_PRIO_SYNC_FULL")	\
267 	EM(COMPACT_PRIO_SYNC_LIGHT,	"COMPACT_PRIO_SYNC_LIGHT")	\
268 	EMe(COMPACT_PRIO_ASYNC,		"COMPACT_PRIO_ASYNC")
269 #else
270 #define COMPACTION_STATUS
271 #define COMPACTION_PRIORITY
272 #define COMPACTION_FEEDBACK
273 #endif
274 
275 #ifdef CONFIG_ZONE_DMA
276 #define IFDEF_ZONE_DMA(X) X
277 #else
278 #define IFDEF_ZONE_DMA(X)
279 #endif
280 
281 #ifdef CONFIG_ZONE_DMA32
282 #define IFDEF_ZONE_DMA32(X) X
283 #else
284 #define IFDEF_ZONE_DMA32(X)
285 #endif
286 
287 #ifdef CONFIG_HIGHMEM
288 #define IFDEF_ZONE_HIGHMEM(X) X
289 #else
290 #define IFDEF_ZONE_HIGHMEM(X)
291 #endif
292 
293 #define ZONE_TYPE						\
294 	IFDEF_ZONE_DMA(		EM (ZONE_DMA,	 "DMA"))	\
295 	IFDEF_ZONE_DMA32(	EM (ZONE_DMA32,	 "DMA32"))	\
296 				EM (ZONE_NORMAL, "Normal")	\
297 	IFDEF_ZONE_HIGHMEM(	EM (ZONE_HIGHMEM,"HighMem"))	\
298 				EMe(ZONE_MOVABLE,"Movable")
299 
300 #define LRU_NAMES		\
301 		EM (LRU_INACTIVE_ANON, "inactive_anon") \
302 		EM (LRU_ACTIVE_ANON, "active_anon") \
303 		EM (LRU_INACTIVE_FILE, "inactive_file") \
304 		EM (LRU_ACTIVE_FILE, "active_file") \
305 		EMe(LRU_UNEVICTABLE, "unevictable")
306 
307 /*
308  * First define the enums in the above macros to be exported to userspace
309  * via TRACE_DEFINE_ENUM().
310  */
311 #undef EM
312 #undef EMe
313 #define EM(a, b)	TRACE_DEFINE_ENUM(a);
314 #define EMe(a, b)	TRACE_DEFINE_ENUM(a);
315 
316 COMPACTION_STATUS
317 COMPACTION_PRIORITY
318 /* COMPACTION_FEEDBACK are defines not enums. Not needed here. */
319 ZONE_TYPE
320 LRU_NAMES
321 
322 /*
323  * Now redefine the EM() and EMe() macros to map the enums to the strings
324  * that will be printed in the output.
325  */
326 #undef EM
327 #undef EMe
328 #define EM(a, b)	{a, b},
329 #define EMe(a, b)	{a, b}
330