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