1 // SPDX-License-Identifier: GPL-2.0-only << 2 /* 1 /* 3 * recordmcount.c: construct a table of the lo 2 * recordmcount.c: construct a table of the locations of calls to 'mcount' 4 * so that ftrace can find them quickly. 3 * so that ftrace can find them quickly. 5 * Copyright 2009 John F. Reiser <jreiser@BitW 4 * Copyright 2009 John F. Reiser <jreiser@BitWagon.com>. All rights reserved. >> 5 * Licensed under the GNU General Public License, version 2 (GPLv2). 6 * 6 * 7 * Restructured to fit Linux format, as well a 7 * Restructured to fit Linux format, as well as other updates: 8 * Copyright 2010 Steven Rostedt <srostedt@re 8 * Copyright 2010 Steven Rostedt <srostedt@redhat.com>, Red Hat Inc. 9 */ 9 */ 10 10 11 /* 11 /* 12 * Strategy: alter the .o file in-place. 12 * Strategy: alter the .o file in-place. 13 * 13 * 14 * Append a new STRTAB that has the new sectio 14 * Append a new STRTAB that has the new section names, followed by a new array 15 * ElfXX_Shdr[] that has the new section heade 15 * ElfXX_Shdr[] that has the new section headers, followed by the section 16 * contents for __mcount_loc and its relocatio 16 * contents for __mcount_loc and its relocations. The old shstrtab strings, 17 * and the old ElfXX_Shdr[] array, remain as " 17 * and the old ElfXX_Shdr[] array, remain as "garbage" (commonly, a couple 18 * kilobytes.) Subsequent processing by /bin/ 18 * kilobytes.) Subsequent processing by /bin/ld (or the kernel module loader) 19 * will ignore the garbage regions, because th 19 * will ignore the garbage regions, because they are not designated by the 20 * new .e_shoff nor the new ElfXX_Shdr[]. [In 20 * new .e_shoff nor the new ElfXX_Shdr[]. [In order to remove the garbage, 21 * then use "ld -r" to create a new file that 21 * then use "ld -r" to create a new file that omits the garbage.] 22 */ 22 */ 23 23 24 #include <sys/types.h> 24 #include <sys/types.h> 25 #include <sys/mman.h> 25 #include <sys/mman.h> 26 #include <sys/stat.h> 26 #include <sys/stat.h> 27 #include <getopt.h> 27 #include <getopt.h> 28 #include <elf.h> 28 #include <elf.h> 29 #include <fcntl.h> 29 #include <fcntl.h> >> 30 #include <setjmp.h> 30 #include <stdio.h> 31 #include <stdio.h> 31 #include <stdlib.h> 32 #include <stdlib.h> 32 #include <string.h> 33 #include <string.h> 33 #include <unistd.h> 34 #include <unistd.h> 34 35 35 #ifndef EM_AARCH64 36 #ifndef EM_AARCH64 36 #define EM_AARCH64 183 37 #define EM_AARCH64 183 37 #define R_AARCH64_NONE 0 38 #define R_AARCH64_NONE 0 38 #define R_AARCH64_ABS64 257 39 #define R_AARCH64_ABS64 257 39 #endif 40 #endif 40 41 41 #ifndef EM_LOONGARCH << 42 #define EM_LOONGARCH 258 << 43 #define R_LARCH_32 1 << 44 #define R_LARCH_64 2 << 45 #define R_LARCH_MARK_LA 20 << 46 #define R_LARCH_SOP_PUSH_PLT_PCREL 29 << 47 #endif << 48 << 49 #define R_ARM_PC24 1 << 50 #define R_ARM_THM_CALL 10 << 51 #define R_ARM_CALL 28 << 52 << 53 #define R_AARCH64_CALL26 283 << 54 << 55 static int fd_map; /* File descriptor for 42 static int fd_map; /* File descriptor for file being modified. */ 56 static int mmap_failed; /* Boolean flag. */ 43 static int mmap_failed; /* Boolean flag. */ 57 static char gpfx; /* prefix for global s 44 static char gpfx; /* prefix for global symbol name (sometimes '_') */ 58 static struct stat sb; /* Remember .st_size, 45 static struct stat sb; /* Remember .st_size, etc. */ >> 46 static jmp_buf jmpenv; /* setjmp/longjmp per-file error escape */ 59 static const char *altmcount; /* alternate m 47 static const char *altmcount; /* alternate mcount symbol name */ 60 static int warn_on_notrace_sect; /* warn when 48 static int warn_on_notrace_sect; /* warn when section has mcount not being recorded */ 61 static void *file_map; /* pointer of the mapp 49 static void *file_map; /* pointer of the mapped file */ 62 static void *file_end; /* pointer to the end 50 static void *file_end; /* pointer to the end of the mapped file */ 63 static int file_updated; /* flag to state file 51 static int file_updated; /* flag to state file was changed */ 64 static void *file_ptr; /* current file pointe 52 static void *file_ptr; /* current file pointer location */ 65 << 66 static void *file_append; /* added to the end 53 static void *file_append; /* added to the end of the file */ 67 static size_t file_append_size; /* how much is 54 static size_t file_append_size; /* how much is added to end of file */ 68 55 >> 56 /* setjmp() return values */ >> 57 enum { >> 58 SJ_SETJMP = 0, /* hardwired first return */ >> 59 SJ_FAIL, >> 60 SJ_SUCCEED >> 61 }; >> 62 69 /* Per-file resource cleanup when multiple fil 63 /* Per-file resource cleanup when multiple files. */ 70 static void file_append_cleanup(void) !! 64 static void >> 65 cleanup(void) 71 { 66 { >> 67 if (!mmap_failed) >> 68 munmap(file_map, sb.st_size); >> 69 else >> 70 free(file_map); >> 71 file_map = NULL; 72 free(file_append); 72 free(file_append); 73 file_append = NULL; 73 file_append = NULL; 74 file_append_size = 0; 74 file_append_size = 0; 75 file_updated = 0; 75 file_updated = 0; 76 } 76 } 77 77 78 static void mmap_cleanup(void) !! 78 static void __attribute__((noreturn)) >> 79 fail_file(void) 79 { 80 { 80 if (!mmap_failed) !! 81 cleanup(); 81 munmap(file_map, sb.st_size); !! 82 longjmp(jmpenv, SJ_FAIL); 82 else !! 83 } 83 free(file_map); !! 84 84 file_map = NULL; !! 85 static void __attribute__((noreturn)) >> 86 succeed_file(void) >> 87 { >> 88 cleanup(); >> 89 longjmp(jmpenv, SJ_SUCCEED); 85 } 90 } 86 91 87 /* ulseek, uwrite, ...: Check return value fo !! 92 /* ulseek, uread, ...: Check return value for errors. */ 88 93 89 static off_t ulseek(off_t const offset, int co !! 94 static off_t >> 95 ulseek(int const fd, off_t const offset, int const whence) 90 { 96 { 91 switch (whence) { 97 switch (whence) { 92 case SEEK_SET: 98 case SEEK_SET: 93 file_ptr = file_map + offset; 99 file_ptr = file_map + offset; 94 break; 100 break; 95 case SEEK_CUR: 101 case SEEK_CUR: 96 file_ptr += offset; 102 file_ptr += offset; 97 break; 103 break; 98 case SEEK_END: 104 case SEEK_END: 99 file_ptr = file_map + (sb.st_s 105 file_ptr = file_map + (sb.st_size - offset); 100 break; 106 break; 101 } 107 } 102 if (file_ptr < file_map) { 108 if (file_ptr < file_map) { 103 fprintf(stderr, "lseek: seek b 109 fprintf(stderr, "lseek: seek before file\n"); 104 return -1; !! 110 fail_file(); 105 } 111 } 106 return file_ptr - file_map; 112 return file_ptr - file_map; 107 } 113 } 108 114 109 static ssize_t uwrite(void const *const buf, s !! 115 static size_t >> 116 uread(int const fd, void *const buf, size_t const count) >> 117 { >> 118 size_t const n = read(fd, buf, count); >> 119 if (n != count) { >> 120 perror("read"); >> 121 fail_file(); >> 122 } >> 123 return n; >> 124 } >> 125 >> 126 static size_t >> 127 uwrite(int const fd, void const *const buf, size_t const count) 110 { 128 { 111 size_t cnt = count; 129 size_t cnt = count; 112 off_t idx = 0; 130 off_t idx = 0; 113 void *p = NULL; << 114 131 115 file_updated = 1; 132 file_updated = 1; 116 133 117 if (file_ptr + count >= file_end) { 134 if (file_ptr + count >= file_end) { 118 off_t aoffset = (file_ptr + co 135 off_t aoffset = (file_ptr + count) - file_end; 119 136 120 if (aoffset > file_append_size 137 if (aoffset > file_append_size) { 121 p = realloc(file_appen !! 138 file_append = realloc(file_append, aoffset); 122 if (!p) << 123 free(file_appe << 124 file_append = p; << 125 file_append_size = aof 139 file_append_size = aoffset; 126 } 140 } 127 if (!file_append) { 141 if (!file_append) { 128 perror("write"); 142 perror("write"); 129 file_append_cleanup(); !! 143 fail_file(); 130 mmap_cleanup(); << 131 return -1; << 132 } 144 } 133 if (file_ptr < file_end) { 145 if (file_ptr < file_end) { 134 cnt = file_end - file_ 146 cnt = file_end - file_ptr; 135 } else { 147 } else { 136 cnt = 0; 148 cnt = 0; 137 idx = aoffset - count; 149 idx = aoffset - count; 138 } 150 } 139 } 151 } 140 152 141 if (cnt) 153 if (cnt) 142 memcpy(file_ptr, buf, cnt); 154 memcpy(file_ptr, buf, cnt); 143 155 144 if (cnt < count) 156 if (cnt < count) 145 memcpy(file_append + idx, buf 157 memcpy(file_append + idx, buf + cnt, count - cnt); 146 158 147 file_ptr += count; 159 file_ptr += count; 148 return count; 160 return count; 149 } 161 } 150 162 151 static void * umalloc(size_t size) !! 163 static void * >> 164 umalloc(size_t size) 152 { 165 { 153 void *const addr = malloc(size); 166 void *const addr = malloc(size); 154 if (addr == 0) { 167 if (addr == 0) { 155 fprintf(stderr, "malloc failed 168 fprintf(stderr, "malloc failed: %zu bytes\n", size); 156 file_append_cleanup(); !! 169 fail_file(); 157 mmap_cleanup(); << 158 return NULL; << 159 } 170 } 160 return addr; 171 return addr; 161 } 172 } 162 173 163 /* << 164 * Get the whole file as a programming conveni << 165 * malloc+lseek+read+free of many pieces. If << 166 * avoids copying unused pieces; else just rea << 167 * Open for both read and write; new info will << 168 * Use MAP_PRIVATE so that a few changes to th << 169 * do not propagate to the file until an expli << 170 * This preserves most aspects of consistency << 171 * for simultaneous readers of the file while << 172 * However, multiple writers still are bad. W << 173 * locking because it is expensive and the use << 174 * makes multiple writers unlikely. << 175 */ << 176 static void *mmap_file(char const *fname) << 177 { << 178 /* Avoid problems if early cleanup() * << 179 fd_map = -1; << 180 mmap_failed = 1; << 181 file_map = NULL; << 182 file_ptr = NULL; << 183 file_updated = 0; << 184 sb.st_size = 0; << 185 << 186 fd_map = open(fname, O_RDONLY); << 187 if (fd_map < 0) { << 188 perror(fname); << 189 return NULL; << 190 } << 191 if (fstat(fd_map, &sb) < 0) { << 192 perror(fname); << 193 goto out; << 194 } << 195 if (!S_ISREG(sb.st_mode)) { << 196 fprintf(stderr, "not a regular << 197 goto out; << 198 } << 199 file_map = mmap(0, sb.st_size, PROT_RE << 200 fd_map, 0); << 201 if (file_map == MAP_FAILED) { << 202 mmap_failed = 1; << 203 file_map = umalloc(sb.st_size) << 204 if (!file_map) { << 205 perror(fname); << 206 goto out; << 207 } << 208 if (read(fd_map, file_map, sb. << 209 perror(fname); << 210 free(file_map); << 211 file_map = NULL; << 212 goto out; << 213 } << 214 } else << 215 mmap_failed = 0; << 216 out: << 217 close(fd_map); << 218 fd_map = -1; << 219 << 220 file_end = file_map + sb.st_size; << 221 << 222 return file_map; << 223 } << 224 << 225 << 226 static unsigned char ideal_nop5_x86_64[5] = { 174 static unsigned char ideal_nop5_x86_64[5] = { 0x0f, 0x1f, 0x44, 0x00, 0x00 }; 227 static unsigned char ideal_nop5_x86_32[5] = { 175 static unsigned char ideal_nop5_x86_32[5] = { 0x3e, 0x8d, 0x74, 0x26, 0x00 }; 228 static unsigned char *ideal_nop; 176 static unsigned char *ideal_nop; 229 177 230 static char rel_type_nop; 178 static char rel_type_nop; 231 179 232 static int (*make_nop)(void *map, size_t const 180 static int (*make_nop)(void *map, size_t const offset); 233 181 234 static int make_nop_x86(void *map, size_t cons 182 static int make_nop_x86(void *map, size_t const offset) 235 { 183 { 236 uint32_t *ptr; 184 uint32_t *ptr; 237 unsigned char *op; 185 unsigned char *op; 238 186 239 /* Confirm we have 0xe8 0x0 0x0 0x0 0x 187 /* Confirm we have 0xe8 0x0 0x0 0x0 0x0 */ 240 ptr = map + offset; 188 ptr = map + offset; 241 if (*ptr != 0) 189 if (*ptr != 0) 242 return -1; 190 return -1; 243 191 244 op = map + offset - 1; 192 op = map + offset - 1; 245 if (*op != 0xe8) 193 if (*op != 0xe8) 246 return -1; 194 return -1; 247 195 248 /* convert to nop */ 196 /* convert to nop */ 249 if (ulseek(offset - 1, SEEK_SET) < 0) !! 197 ulseek(fd_map, offset - 1, SEEK_SET); 250 return -1; !! 198 uwrite(fd_map, ideal_nop, 5); 251 if (uwrite(ideal_nop, 5) < 0) << 252 return -1; << 253 return 0; 199 return 0; 254 } 200 } 255 201 256 static unsigned char ideal_nop4_arm_le[4] = { 202 static unsigned char ideal_nop4_arm_le[4] = { 0x00, 0x00, 0xa0, 0xe1 }; /* mov r0, r0 */ 257 static unsigned char ideal_nop4_arm_be[4] = { 203 static unsigned char ideal_nop4_arm_be[4] = { 0xe1, 0xa0, 0x00, 0x00 }; /* mov r0, r0 */ 258 static unsigned char *ideal_nop4_arm; 204 static unsigned char *ideal_nop4_arm; 259 205 260 static unsigned char bl_mcount_arm_le[4] = { 0 206 static unsigned char bl_mcount_arm_le[4] = { 0xfe, 0xff, 0xff, 0xeb }; /* bl */ 261 static unsigned char bl_mcount_arm_be[4] = { 0 207 static unsigned char bl_mcount_arm_be[4] = { 0xeb, 0xff, 0xff, 0xfe }; /* bl */ 262 static unsigned char *bl_mcount_arm; 208 static unsigned char *bl_mcount_arm; 263 209 264 static unsigned char push_arm_le[4] = { 0x04, 210 static unsigned char push_arm_le[4] = { 0x04, 0xe0, 0x2d, 0xe5 }; /* push {lr} */ 265 static unsigned char push_arm_be[4] = { 0xe5, 211 static unsigned char push_arm_be[4] = { 0xe5, 0x2d, 0xe0, 0x04 }; /* push {lr} */ 266 static unsigned char *push_arm; 212 static unsigned char *push_arm; 267 213 268 static unsigned char ideal_nop2_thumb_le[2] = 214 static unsigned char ideal_nop2_thumb_le[2] = { 0x00, 0xbf }; /* nop */ 269 static unsigned char ideal_nop2_thumb_be[2] = 215 static unsigned char ideal_nop2_thumb_be[2] = { 0xbf, 0x00 }; /* nop */ 270 static unsigned char *ideal_nop2_thumb; 216 static unsigned char *ideal_nop2_thumb; 271 217 272 static unsigned char push_bl_mcount_thumb_le[6 218 static unsigned char push_bl_mcount_thumb_le[6] = { 0x00, 0xb5, 0xff, 0xf7, 0xfe, 0xff }; /* push {lr}, bl */ 273 static unsigned char push_bl_mcount_thumb_be[6 219 static unsigned char push_bl_mcount_thumb_be[6] = { 0xb5, 0x00, 0xf7, 0xff, 0xff, 0xfe }; /* push {lr}, bl */ 274 static unsigned char *push_bl_mcount_thumb; 220 static unsigned char *push_bl_mcount_thumb; 275 221 276 static int make_nop_arm(void *map, size_t cons 222 static int make_nop_arm(void *map, size_t const offset) 277 { 223 { 278 char *ptr; 224 char *ptr; 279 int cnt = 1; 225 int cnt = 1; 280 int nop_size; 226 int nop_size; 281 size_t off = offset; 227 size_t off = offset; 282 228 283 ptr = map + offset; 229 ptr = map + offset; 284 if (memcmp(ptr, bl_mcount_arm, 4) == 0 230 if (memcmp(ptr, bl_mcount_arm, 4) == 0) { 285 if (memcmp(ptr - 4, push_arm, 231 if (memcmp(ptr - 4, push_arm, 4) == 0) { 286 off -= 4; 232 off -= 4; 287 cnt = 2; 233 cnt = 2; 288 } 234 } 289 ideal_nop = ideal_nop4_arm; 235 ideal_nop = ideal_nop4_arm; 290 nop_size = 4; 236 nop_size = 4; 291 } else if (memcmp(ptr - 2, push_bl_mco 237 } else if (memcmp(ptr - 2, push_bl_mcount_thumb, 6) == 0) { 292 cnt = 3; 238 cnt = 3; 293 nop_size = 2; 239 nop_size = 2; 294 off -= 2; 240 off -= 2; 295 ideal_nop = ideal_nop2_thumb; 241 ideal_nop = ideal_nop2_thumb; 296 } else 242 } else 297 return -1; 243 return -1; 298 244 299 /* Convert to nop */ 245 /* Convert to nop */ 300 if (ulseek(off, SEEK_SET) < 0) !! 246 ulseek(fd_map, off, SEEK_SET); 301 return -1; << 302 247 303 do { 248 do { 304 if (uwrite(ideal_nop, nop_size !! 249 uwrite(fd_map, ideal_nop, nop_size); 305 return -1; << 306 } while (--cnt > 0); 250 } while (--cnt > 0); 307 251 308 return 0; 252 return 0; 309 } 253 } 310 254 311 static unsigned char ideal_nop4_arm64[4] = {0x 255 static unsigned char ideal_nop4_arm64[4] = {0x1f, 0x20, 0x03, 0xd5}; 312 static int make_nop_arm64(void *map, size_t co 256 static int make_nop_arm64(void *map, size_t const offset) 313 { 257 { 314 uint32_t *ptr; 258 uint32_t *ptr; 315 259 316 ptr = map + offset; 260 ptr = map + offset; 317 /* bl <_mcount> is 0x94000000 before r 261 /* bl <_mcount> is 0x94000000 before relocation */ 318 if (*ptr != 0x94000000) 262 if (*ptr != 0x94000000) 319 return -1; 263 return -1; 320 264 321 /* Convert to nop */ 265 /* Convert to nop */ 322 if (ulseek(offset, SEEK_SET) < 0) !! 266 ulseek(fd_map, offset, SEEK_SET); 323 return -1; !! 267 uwrite(fd_map, ideal_nop, 4); 324 if (uwrite(ideal_nop, 4) < 0) << 325 return -1; << 326 return 0; 268 return 0; 327 } 269 } 328 270 329 static int write_file(const char *fname) !! 271 /* >> 272 * Get the whole file as a programming convenience in order to avoid >> 273 * malloc+lseek+read+free of many pieces. If successful, then mmap >> 274 * avoids copying unused pieces; else just read the whole file. >> 275 * Open for both read and write; new info will be appended to the file. >> 276 * Use MAP_PRIVATE so that a few changes to the in-memory ElfXX_Ehdr >> 277 * do not propagate to the file until an explicit overwrite at the last. >> 278 * This preserves most aspects of consistency (all except .st_size) >> 279 * for simultaneous readers of the file while we are appending to it. >> 280 * However, multiple writers still are bad. We choose not to use >> 281 * locking because it is expensive and the use case of kernel build >> 282 * makes multiple writers unlikely. >> 283 */ >> 284 static void *mmap_file(char const *fname) >> 285 { >> 286 fd_map = open(fname, O_RDONLY); >> 287 if (fd_map < 0 || fstat(fd_map, &sb) < 0) { >> 288 perror(fname); >> 289 fail_file(); >> 290 } >> 291 if (!S_ISREG(sb.st_mode)) { >> 292 fprintf(stderr, "not a regular file: %s\n", fname); >> 293 fail_file(); >> 294 } >> 295 file_map = mmap(0, sb.st_size, PROT_READ|PROT_WRITE, MAP_PRIVATE, >> 296 fd_map, 0); >> 297 mmap_failed = 0; >> 298 if (file_map == MAP_FAILED) { >> 299 mmap_failed = 1; >> 300 file_map = umalloc(sb.st_size); >> 301 uread(fd_map, file_map, sb.st_size); >> 302 } >> 303 close(fd_map); >> 304 >> 305 file_end = file_map + sb.st_size; >> 306 >> 307 return file_map; >> 308 } >> 309 >> 310 static void write_file(const char *fname) 330 { 311 { 331 char tmp_file[strlen(fname) + 4]; 312 char tmp_file[strlen(fname) + 4]; 332 size_t n; 313 size_t n; 333 314 334 if (!file_updated) 315 if (!file_updated) 335 return 0; !! 316 return; 336 317 337 sprintf(tmp_file, "%s.rc", fname); 318 sprintf(tmp_file, "%s.rc", fname); 338 319 339 /* 320 /* 340 * After reading the entire file into 321 * After reading the entire file into memory, delete it 341 * and write it back, to prevent weird 322 * and write it back, to prevent weird side effects of modifying 342 * an object file in place. 323 * an object file in place. 343 */ 324 */ 344 fd_map = open(tmp_file, O_WRONLY | O_T 325 fd_map = open(tmp_file, O_WRONLY | O_TRUNC | O_CREAT, sb.st_mode); 345 if (fd_map < 0) { 326 if (fd_map < 0) { 346 perror(fname); 327 perror(fname); 347 return -1; !! 328 fail_file(); 348 } 329 } 349 n = write(fd_map, file_map, sb.st_size 330 n = write(fd_map, file_map, sb.st_size); 350 if (n != sb.st_size) { 331 if (n != sb.st_size) { 351 perror("write"); 332 perror("write"); 352 close(fd_map); !! 333 fail_file(); 353 return -1; << 354 } 334 } 355 if (file_append_size) { 335 if (file_append_size) { 356 n = write(fd_map, file_append, 336 n = write(fd_map, file_append, file_append_size); 357 if (n != file_append_size) { 337 if (n != file_append_size) { 358 perror("write"); 338 perror("write"); 359 close(fd_map); !! 339 fail_file(); 360 return -1; << 361 } 340 } 362 } 341 } 363 close(fd_map); 342 close(fd_map); 364 if (rename(tmp_file, fname) < 0) { 343 if (rename(tmp_file, fname) < 0) { 365 perror(fname); 344 perror(fname); 366 return -1; !! 345 fail_file(); 367 } 346 } 368 return 0; << 369 } 347 } 370 348 371 /* w8rev, w8nat, ...: Handle endianness. */ 349 /* w8rev, w8nat, ...: Handle endianness. */ 372 350 373 static uint64_t w8rev(uint64_t const x) 351 static uint64_t w8rev(uint64_t const x) 374 { 352 { 375 return ((0xff & (x >> (0 * 8))) << ( 353 return ((0xff & (x >> (0 * 8))) << (7 * 8)) 376 | ((0xff & (x >> (1 * 8))) << ( 354 | ((0xff & (x >> (1 * 8))) << (6 * 8)) 377 | ((0xff & (x >> (2 * 8))) << ( 355 | ((0xff & (x >> (2 * 8))) << (5 * 8)) 378 | ((0xff & (x >> (3 * 8))) << ( 356 | ((0xff & (x >> (3 * 8))) << (4 * 8)) 379 | ((0xff & (x >> (4 * 8))) << ( 357 | ((0xff & (x >> (4 * 8))) << (3 * 8)) 380 | ((0xff & (x >> (5 * 8))) << ( 358 | ((0xff & (x >> (5 * 8))) << (2 * 8)) 381 | ((0xff & (x >> (6 * 8))) << ( 359 | ((0xff & (x >> (6 * 8))) << (1 * 8)) 382 | ((0xff & (x >> (7 * 8))) << ( 360 | ((0xff & (x >> (7 * 8))) << (0 * 8)); 383 } 361 } 384 362 385 static uint32_t w4rev(uint32_t const x) 363 static uint32_t w4rev(uint32_t const x) 386 { 364 { 387 return ((0xff & (x >> (0 * 8))) << ( 365 return ((0xff & (x >> (0 * 8))) << (3 * 8)) 388 | ((0xff & (x >> (1 * 8))) << ( 366 | ((0xff & (x >> (1 * 8))) << (2 * 8)) 389 | ((0xff & (x >> (2 * 8))) << ( 367 | ((0xff & (x >> (2 * 8))) << (1 * 8)) 390 | ((0xff & (x >> (3 * 8))) << ( 368 | ((0xff & (x >> (3 * 8))) << (0 * 8)); 391 } 369 } 392 370 393 static uint32_t w2rev(uint16_t const x) 371 static uint32_t w2rev(uint16_t const x) 394 { 372 { 395 return ((0xff & (x >> (0 * 8))) << ( 373 return ((0xff & (x >> (0 * 8))) << (1 * 8)) 396 | ((0xff & (x >> (1 * 8))) << ( 374 | ((0xff & (x >> (1 * 8))) << (0 * 8)); 397 } 375 } 398 376 399 static uint64_t w8nat(uint64_t const x) 377 static uint64_t w8nat(uint64_t const x) 400 { 378 { 401 return x; 379 return x; 402 } 380 } 403 381 404 static uint32_t w4nat(uint32_t const x) 382 static uint32_t w4nat(uint32_t const x) 405 { 383 { 406 return x; 384 return x; 407 } 385 } 408 386 409 static uint32_t w2nat(uint16_t const x) 387 static uint32_t w2nat(uint16_t const x) 410 { 388 { 411 return x; 389 return x; 412 } 390 } 413 391 414 static uint64_t (*w8)(uint64_t); 392 static uint64_t (*w8)(uint64_t); 415 static uint32_t (*w)(uint32_t); 393 static uint32_t (*w)(uint32_t); 416 static uint32_t (*w2)(uint16_t); 394 static uint32_t (*w2)(uint16_t); 417 395 418 /* Names of the sections that could contain ca 396 /* Names of the sections that could contain calls to mcount. */ 419 static int is_mcounted_section_name(char const !! 397 static int >> 398 is_mcounted_section_name(char const *const txtname) 420 { 399 { 421 return strncmp(".text", txtna 400 return strncmp(".text", txtname, 5) == 0 || 422 strcmp(".init.text", txtna 401 strcmp(".init.text", txtname) == 0 || 423 strcmp(".ref.text", txtna 402 strcmp(".ref.text", txtname) == 0 || 424 strcmp(".sched.text", txtna 403 strcmp(".sched.text", txtname) == 0 || 425 strcmp(".spinlock.text", txtna 404 strcmp(".spinlock.text", txtname) == 0 || 426 strcmp(".irqentry.text", txtna 405 strcmp(".irqentry.text", txtname) == 0 || 427 strcmp(".softirqentry.text", t 406 strcmp(".softirqentry.text", txtname) == 0 || 428 strcmp(".kprobes.text", txtnam 407 strcmp(".kprobes.text", txtname) == 0 || 429 strcmp(".cpuidle.text", txtnam !! 408 strcmp(".cpuidle.text", txtname) == 0 || >> 409 strcmp(".text.unlikely", txtname) == 0; 430 } 410 } 431 411 432 static char const *already_has_rel_mcount = "s << 433 << 434 /* 32 bit and 64 bit are very similar */ 412 /* 32 bit and 64 bit are very similar */ 435 #include "recordmcount.h" 413 #include "recordmcount.h" 436 #define RECORD_MCOUNT_64 414 #define RECORD_MCOUNT_64 437 #include "recordmcount.h" 415 #include "recordmcount.h" 438 416 439 static int arm_is_fake_mcount(Elf32_Rel const << 440 { << 441 switch (ELF32_R_TYPE(w(rp->r_info))) { << 442 case R_ARM_THM_CALL: << 443 case R_ARM_CALL: << 444 case R_ARM_PC24: << 445 return 0; << 446 } << 447 << 448 return 1; << 449 } << 450 << 451 static int arm64_is_fake_mcount(Elf64_Rel cons << 452 { << 453 return ELF64_R_TYPE(w8(rp->r_info)) != << 454 } << 455 << 456 static int LARCH32_is_fake_mcount(Elf32_Rel co << 457 { << 458 switch (ELF64_R_TYPE(w(rp->r_info))) { << 459 case R_LARCH_MARK_LA: << 460 case R_LARCH_SOP_PUSH_PLT_PCREL: << 461 return 0; << 462 } << 463 << 464 return 1; << 465 } << 466 << 467 static int LARCH64_is_fake_mcount(Elf64_Rel co << 468 { << 469 switch (ELF64_R_TYPE(w(rp->r_info))) { << 470 case R_LARCH_MARK_LA: << 471 case R_LARCH_SOP_PUSH_PLT_PCREL: << 472 return 0; << 473 } << 474 << 475 return 1; << 476 } << 477 << 478 /* 64-bit EM_MIPS has weird ELF64_Rela.r_info. 417 /* 64-bit EM_MIPS has weird ELF64_Rela.r_info. 479 * http://techpubs.sgi.com/library/manuals/400 418 * http://techpubs.sgi.com/library/manuals/4000/007-4658-001/pdf/007-4658-001.pdf 480 * We interpret Table 29 Relocation Operation 419 * We interpret Table 29 Relocation Operation (Elf64_Rel, Elf64_Rela) [p.40] 481 * to imply the order of the members; the spec 420 * to imply the order of the members; the spec does not say so. 482 * typedef unsigned char Elf64_Byte; 421 * typedef unsigned char Elf64_Byte; 483 * fails on MIPS64 because their <elf.h> alrea 422 * fails on MIPS64 because their <elf.h> already has it! 484 */ 423 */ 485 424 486 typedef uint8_t myElf64_Byte; /* Typ 425 typedef uint8_t myElf64_Byte; /* Type for a 8-bit quantity. */ 487 426 488 union mips_r_info { 427 union mips_r_info { 489 Elf64_Xword r_info; 428 Elf64_Xword r_info; 490 struct { 429 struct { 491 Elf64_Word r_sym; 430 Elf64_Word r_sym; /* Symbol index. */ 492 myElf64_Byte r_ssym; 431 myElf64_Byte r_ssym; /* Special symbol. */ 493 myElf64_Byte r_type3; 432 myElf64_Byte r_type3; /* Third relocation. */ 494 myElf64_Byte r_type2; 433 myElf64_Byte r_type2; /* Second relocation. */ 495 myElf64_Byte r_type; 434 myElf64_Byte r_type; /* First relocation. */ 496 } r_mips; 435 } r_mips; 497 }; 436 }; 498 437 499 static uint64_t MIPS64_r_sym(Elf64_Rel const * 438 static uint64_t MIPS64_r_sym(Elf64_Rel const *rp) 500 { 439 { 501 return w(((union mips_r_info){ .r_info 440 return w(((union mips_r_info){ .r_info = rp->r_info }).r_mips.r_sym); 502 } 441 } 503 442 504 static void MIPS64_r_info(Elf64_Rel *const rp, 443 static void MIPS64_r_info(Elf64_Rel *const rp, unsigned sym, unsigned type) 505 { 444 { 506 rp->r_info = ((union mips_r_info){ 445 rp->r_info = ((union mips_r_info){ 507 .r_mips = { .r_sym = w(sym), . 446 .r_mips = { .r_sym = w(sym), .r_type = type } 508 }).r_info; 447 }).r_info; 509 } 448 } 510 449 511 static int do_file(char const *const fname) !! 450 static void >> 451 do_file(char const *const fname) 512 { 452 { >> 453 Elf32_Ehdr *const ehdr = mmap_file(fname); 513 unsigned int reltype = 0; 454 unsigned int reltype = 0; 514 Elf32_Ehdr *ehdr; << 515 int rc = -1; << 516 << 517 ehdr = mmap_file(fname); << 518 if (!ehdr) << 519 goto out; << 520 455 521 w = w4nat; 456 w = w4nat; 522 w2 = w2nat; 457 w2 = w2nat; 523 w8 = w8nat; 458 w8 = w8nat; 524 switch (ehdr->e_ident[EI_DATA]) { 459 switch (ehdr->e_ident[EI_DATA]) { 525 static unsigned int const endi 460 static unsigned int const endian = 1; 526 default: 461 default: 527 fprintf(stderr, "unrecognized 462 fprintf(stderr, "unrecognized ELF data encoding %d: %s\n", 528 ehdr->e_ident[EI_DATA] 463 ehdr->e_ident[EI_DATA], fname); 529 goto out; !! 464 fail_file(); >> 465 break; 530 case ELFDATA2LSB: 466 case ELFDATA2LSB: 531 if (*(unsigned char const *)&e 467 if (*(unsigned char const *)&endian != 1) { 532 /* main() is big endia 468 /* main() is big endian, file.o is little endian. */ 533 w = w4rev; 469 w = w4rev; 534 w2 = w2rev; 470 w2 = w2rev; 535 w8 = w8rev; 471 w8 = w8rev; 536 } 472 } 537 ideal_nop4_arm = ideal_nop4_ar 473 ideal_nop4_arm = ideal_nop4_arm_le; 538 bl_mcount_arm = bl_mcount_arm_ 474 bl_mcount_arm = bl_mcount_arm_le; 539 push_arm = push_arm_le; 475 push_arm = push_arm_le; 540 ideal_nop2_thumb = ideal_nop2_ 476 ideal_nop2_thumb = ideal_nop2_thumb_le; 541 push_bl_mcount_thumb = push_bl 477 push_bl_mcount_thumb = push_bl_mcount_thumb_le; 542 break; 478 break; 543 case ELFDATA2MSB: 479 case ELFDATA2MSB: 544 if (*(unsigned char const *)&e 480 if (*(unsigned char const *)&endian != 0) { 545 /* main() is little en 481 /* main() is little endian, file.o is big endian. */ 546 w = w4rev; 482 w = w4rev; 547 w2 = w2rev; 483 w2 = w2rev; 548 w8 = w8rev; 484 w8 = w8rev; 549 } 485 } 550 ideal_nop4_arm = ideal_nop4_ar 486 ideal_nop4_arm = ideal_nop4_arm_be; 551 bl_mcount_arm = bl_mcount_arm_ 487 bl_mcount_arm = bl_mcount_arm_be; 552 push_arm = push_arm_be; 488 push_arm = push_arm_be; 553 ideal_nop2_thumb = ideal_nop2_ 489 ideal_nop2_thumb = ideal_nop2_thumb_be; 554 push_bl_mcount_thumb = push_bl 490 push_bl_mcount_thumb = push_bl_mcount_thumb_be; 555 break; 491 break; 556 } /* end switch */ 492 } /* end switch */ 557 if (memcmp(ELFMAG, ehdr->e_ident, SELF !! 493 if (memcmp(ELFMAG, ehdr->e_ident, SELFMAG) != 0 558 w2(ehdr->e_type) != ET_REL || !! 494 || w2(ehdr->e_type) != ET_REL 559 ehdr->e_ident[EI_VERSION] != EV_CU !! 495 || ehdr->e_ident[EI_VERSION] != EV_CURRENT) { 560 fprintf(stderr, "unrecognized 496 fprintf(stderr, "unrecognized ET_REL file %s\n", fname); 561 goto out; !! 497 fail_file(); 562 } 498 } 563 499 564 gpfx = '_'; !! 500 gpfx = 0; 565 switch (w2(ehdr->e_machine)) { 501 switch (w2(ehdr->e_machine)) { 566 default: 502 default: 567 fprintf(stderr, "unrecognized 503 fprintf(stderr, "unrecognized e_machine %u %s\n", 568 w2(ehdr->e_machine), f 504 w2(ehdr->e_machine), fname); 569 goto out; !! 505 fail_file(); >> 506 break; 570 case EM_386: 507 case EM_386: 571 reltype = R_386_32; 508 reltype = R_386_32; 572 rel_type_nop = R_386_NONE; 509 rel_type_nop = R_386_NONE; 573 make_nop = make_nop_x86; 510 make_nop = make_nop_x86; 574 ideal_nop = ideal_nop5_x86_32; 511 ideal_nop = ideal_nop5_x86_32; 575 mcount_adjust_32 = -1; 512 mcount_adjust_32 = -1; 576 gpfx = 0; << 577 break; << 578 case EM_ARM: << 579 reltype = R_ARM_ABS32; << 580 altmcount = "__gnu_mcount_nc"; << 581 make_nop = make_nop_arm; << 582 rel_type_nop = R_ARM_NONE; << 583 is_fake_mcount32 = arm_is_fake << 584 gpfx = 0; << 585 break; 513 break; >> 514 case EM_ARM: reltype = R_ARM_ABS32; >> 515 altmcount = "__gnu_mcount_nc"; >> 516 make_nop = make_nop_arm; >> 517 rel_type_nop = R_ARM_NONE; >> 518 break; 586 case EM_AARCH64: 519 case EM_AARCH64: 587 reltype = R_AARCH64_ABS64; !! 520 reltype = R_AARCH64_ABS64; 588 make_nop = make_nop_arm64; !! 521 make_nop = make_nop_arm64; 589 rel_type_nop = R_AARCH64_NONE; !! 522 rel_type_nop = R_AARCH64_NONE; 590 ideal_nop = ideal_nop4_arm64; !! 523 ideal_nop = ideal_nop4_arm64; 591 is_fake_mcount64 = arm64_is_fa !! 524 gpfx = '_'; 592 break; !! 525 break; 593 case EM_MIPS: /* reltype: e_class !! 526 case EM_IA_64: reltype = R_IA64_IMM64; gpfx = '_'; break; 594 case EM_LOONGARCH: /* reltype: e_ !! 527 case EM_MIPS: /* reltype: e_class */ gpfx = '_'; break; 595 case EM_PPC: reltype = R_PPC_ADDR32 !! 528 case EM_PPC: reltype = R_PPC_ADDR32; gpfx = '_'; break; 596 case EM_PPC64: reltype = R_PPC64_ADDR !! 529 case EM_PPC64: reltype = R_PPC64_ADDR64; gpfx = '_'; break; 597 case EM_S390: /* reltype: e_class !! 530 case EM_S390: /* reltype: e_class */ gpfx = '_'; break; 598 case EM_SH: reltype = R_SH_DIR32; !! 531 case EM_SH: reltype = R_SH_DIR32; break; 599 case EM_SPARCV9: reltype = R_SPARC_64; !! 532 case EM_SPARCV9: reltype = R_SPARC_64; gpfx = '_'; break; 600 case EM_X86_64: 533 case EM_X86_64: 601 make_nop = make_nop_x86; 534 make_nop = make_nop_x86; 602 ideal_nop = ideal_nop5_x86_64; 535 ideal_nop = ideal_nop5_x86_64; 603 reltype = R_X86_64_64; 536 reltype = R_X86_64_64; 604 rel_type_nop = R_X86_64_NONE; 537 rel_type_nop = R_X86_64_NONE; 605 mcount_adjust_64 = -1; 538 mcount_adjust_64 = -1; 606 gpfx = 0; << 607 break; 539 break; 608 } /* end switch */ 540 } /* end switch */ 609 541 610 switch (ehdr->e_ident[EI_CLASS]) { 542 switch (ehdr->e_ident[EI_CLASS]) { 611 default: 543 default: 612 fprintf(stderr, "unrecognized 544 fprintf(stderr, "unrecognized ELF class %d %s\n", 613 ehdr->e_ident[EI_CLASS 545 ehdr->e_ident[EI_CLASS], fname); 614 goto out; !! 546 fail_file(); >> 547 break; 615 case ELFCLASS32: 548 case ELFCLASS32: 616 if (w2(ehdr->e_ehsize) != size 549 if (w2(ehdr->e_ehsize) != sizeof(Elf32_Ehdr) 617 || w2(ehdr->e_shentsize) != s 550 || w2(ehdr->e_shentsize) != sizeof(Elf32_Shdr)) { 618 fprintf(stderr, 551 fprintf(stderr, 619 "unrecognized 552 "unrecognized ET_REL file: %s\n", fname); 620 goto out; !! 553 fail_file(); 621 } 554 } 622 if (w2(ehdr->e_machine) == EM_ 555 if (w2(ehdr->e_machine) == EM_MIPS) { 623 reltype = R_MIPS_32; 556 reltype = R_MIPS_32; 624 is_fake_mcount32 = MIP 557 is_fake_mcount32 = MIPS32_is_fake_mcount; 625 } 558 } 626 if (w2(ehdr->e_machine) == EM_ !! 559 do32(ehdr, fname, reltype); 627 reltype = R_LARCH_32; << 628 is_fake_mcount32 = LAR << 629 } << 630 if (do32(ehdr, fname, reltype) << 631 goto out; << 632 break; 560 break; 633 case ELFCLASS64: { 561 case ELFCLASS64: { 634 Elf64_Ehdr *const ghdr = (Elf6 562 Elf64_Ehdr *const ghdr = (Elf64_Ehdr *)ehdr; 635 if (w2(ghdr->e_ehsize) != size 563 if (w2(ghdr->e_ehsize) != sizeof(Elf64_Ehdr) 636 || w2(ghdr->e_shentsize) != s 564 || w2(ghdr->e_shentsize) != sizeof(Elf64_Shdr)) { 637 fprintf(stderr, 565 fprintf(stderr, 638 "unrecognized 566 "unrecognized ET_REL file: %s\n", fname); 639 goto out; !! 567 fail_file(); 640 } 568 } 641 if (w2(ghdr->e_machine) == EM_ 569 if (w2(ghdr->e_machine) == EM_S390) { 642 reltype = R_390_64; 570 reltype = R_390_64; 643 mcount_adjust_64 = -14 571 mcount_adjust_64 = -14; 644 } 572 } 645 if (w2(ghdr->e_machine) == EM_ 573 if (w2(ghdr->e_machine) == EM_MIPS) { 646 reltype = R_MIPS_64; 574 reltype = R_MIPS_64; 647 Elf64_r_sym = MIPS64_r 575 Elf64_r_sym = MIPS64_r_sym; 648 Elf64_r_info = MIPS64_ 576 Elf64_r_info = MIPS64_r_info; 649 is_fake_mcount64 = MIP 577 is_fake_mcount64 = MIPS64_is_fake_mcount; 650 } 578 } 651 if (w2(ghdr->e_machine) == EM_ !! 579 do64(ghdr, fname, reltype); 652 reltype = R_LARCH_64; << 653 is_fake_mcount64 = LAR << 654 } << 655 if (do64(ghdr, fname, reltype) << 656 goto out; << 657 break; 580 break; 658 } 581 } 659 } /* end switch */ 582 } /* end switch */ 660 583 661 rc = write_file(fname); !! 584 write_file(fname); 662 out: !! 585 cleanup(); 663 file_append_cleanup(); << 664 mmap_cleanup(); << 665 return rc; << 666 } 586 } 667 587 668 int main(int argc, char *argv[]) !! 588 int >> 589 main(int argc, char *argv[]) 669 { 590 { 670 const char ftrace[] = "/ftrace.o"; 591 const char ftrace[] = "/ftrace.o"; 671 int ftrace_size = sizeof(ftrace) - 1; 592 int ftrace_size = sizeof(ftrace) - 1; 672 int n_error = 0; /* gcc-4.3.0 false p 593 int n_error = 0; /* gcc-4.3.0 false positive complaint */ 673 int c; 594 int c; 674 int i; 595 int i; 675 596 676 while ((c = getopt(argc, argv, "w")) > 597 while ((c = getopt(argc, argv, "w")) >= 0) { 677 switch (c) { 598 switch (c) { 678 case 'w': 599 case 'w': 679 warn_on_notrace_sect = 600 warn_on_notrace_sect = 1; 680 break; 601 break; 681 default: 602 default: 682 fprintf(stderr, "usage 603 fprintf(stderr, "usage: recordmcount [-w] file.o...\n"); 683 return 0; 604 return 0; 684 } 605 } 685 } 606 } 686 607 687 if ((argc - optind) < 1) { 608 if ((argc - optind) < 1) { 688 fprintf(stderr, "usage: record 609 fprintf(stderr, "usage: recordmcount [-w] file.o...\n"); 689 return 0; 610 return 0; 690 } 611 } 691 612 692 /* Process each file in turn, allowing 613 /* Process each file in turn, allowing deep failure. */ 693 for (i = optind; i < argc; i++) { 614 for (i = optind; i < argc; i++) { 694 char *file = argv[i]; 615 char *file = argv[i]; >> 616 int const sjval = setjmp(jmpenv); 695 int len; 617 int len; 696 618 697 /* 619 /* 698 * The file kernel/trace/ftrac 620 * The file kernel/trace/ftrace.o references the mcount 699 * function but does not call 621 * function but does not call it. Since ftrace.o should 700 * not be traced anyway, we ju 622 * not be traced anyway, we just skip it. 701 */ 623 */ 702 len = strlen(file); 624 len = strlen(file); 703 if (len >= ftrace_size && 625 if (len >= ftrace_size && 704 strcmp(file + (len - ftrac 626 strcmp(file + (len - ftrace_size), ftrace) == 0) 705 continue; 627 continue; 706 628 707 if (do_file(file)) { !! 629 switch (sjval) { >> 630 default: >> 631 fprintf(stderr, "internal error: %s\n", file); >> 632 exit(1); >> 633 break; >> 634 case SJ_SETJMP: /* normal sequence */ >> 635 /* Avoid problems if early cleanup() */ >> 636 fd_map = -1; >> 637 mmap_failed = 1; >> 638 file_map = NULL; >> 639 file_ptr = NULL; >> 640 file_updated = 0; >> 641 do_file(file); >> 642 break; >> 643 case SJ_FAIL: /* error in do_file or below */ 708 fprintf(stderr, "%s: f 644 fprintf(stderr, "%s: failed\n", file); 709 ++n_error; 645 ++n_error; 710 } !! 646 break; >> 647 case SJ_SUCCEED: /* premature success */ >> 648 /* do nothing */ >> 649 break; >> 650 } /* end switch */ 711 } 651 } 712 return !!n_error; 652 return !!n_error; 713 } 653 } 714 654
Linux® is a registered trademark of Linus Torvalds in the United States and other countries.
TOMOYO® is a registered trademark of NTT DATA CORPORATION.