1 /* 2 * V8 DTrace ustack helper for annotating native stack traces with JavaScript 3 * function names. We start with a frame pointer (arg1) and emit a string 4 * describing the current function. We do this by chasing pointers to extract 5 * the function's name (if any) and the filename and line number where the 6 * function is defined. 7 * 8 * To use the helper, run node, then use the jstack() DTrace action to capture 9 * a JavaScript stacktrace. You may need to tune the dtrace_helper_actions_max 10 * kernel variable to 128. 11 */ 12 13 #include <v8constants.h> 14 #include <v8abbr.h> 15 16 /* 17 * V8 represents small integers (SMI) using the upper 31 bits of a 32/64-bit 18 * value. To extract the actual integer value, we must shift it over. 19 */ 20 #define IS_SMI(value) \ 21 ((value & V8_SmiTagMask) == V8_SmiTag) 22 #define SMI_VALUE(value) \ 23 ((uint32_t) ((value) >> V8_SmiValueShift)) 24 #define NO_SHARED_FUNCTION_NAME_SENTINEL NULL 25 26 /* 27 * Heap objects usually start off with a Map pointer, itself another heap 28 * object. However, during garbage collection, the low order bits of the 29 * pointer (which are normally 01) are used to record GC state. Of course, we 30 * have no idea if we're in GC or not, so we must always normalize the pointer. 31 */ 32 #define V8_MAP_PTR(ptr) \ 33 ((ptr & ~V8_HeapObjectTagMask) | V8_HeapObjectTag) 34 35 #define V8_TYPE_SCRIPT(type) \ 36 ((type) == V8_IT_SCRIPT) 37 38 /* 39 * Determine the encoding and representation of a V8 string. 40 */ 41 #define V8_TYPE_STRING(type) \ 42 (((type) & V8_IsNotStringMask) == V8_StringTag) 43 44 #define V8_STRENC_ASCII(type) \ 45 (((type) & V8_StringEncodingMask) == V8_AsciiStringTag) 46 47 #define V8_STRREP_SEQ(type) \ 48 (((type) & V8_StringRepresentationMask) == V8_SeqStringTag) 49 #define V8_STRREP_CONS(type) \ 50 (((type) & V8_StringRepresentationMask) == V8_ConsStringTag) 51 #define V8_STRREP_EXT(type) \ 52 (((type) & V8_StringRepresentationMask) == V8_ExternalStringTag) 53 54 /* 55 * String type predicates 56 */ 57 #define ASCII_SEQSTR(value) \ 58 (V8_TYPE_STRING(value) && V8_STRENC_ASCII(value) && V8_STRREP_SEQ(value)) 59 60 #define TWOBYTE_SEQSTR(value) \ 61 (V8_TYPE_STRING(value) && !V8_STRENC_ASCII(value) && V8_STRREP_SEQ(value)) 62 63 #define IS_CONSSTR(value) \ 64 (V8_TYPE_STRING(value) && V8_STRREP_CONS(value)) 65 66 #define ASCII_EXTSTR(value) \ 67 (V8_TYPE_STRING(value) && V8_STRENC_ASCII(value) && V8_STRREP_EXT(value)) 68 69 /* 70 * General helper macros 71 */ 72 #define COPYIN_UINT8(addr) (*(uint8_t*) copyin((addr), sizeof(uint8_t))) 73 #define COPYIN_UINT32(addr) (*(uint32_t*) copyin((addr), sizeof(uint32_t))) 74 #define COPYIN_UINT64(addr) (*(uint64_t*) copyin((addr), sizeof(uint64_t))) 75 76 #if defined(__i386) 77 # define COPYIN_PTR(addr) COPYIN_UINT32(addr) 78 # define off_t uint32_t 79 # define APPEND_PTR(p) APPEND_PTR_32(p) 80 #else 81 # define COPYIN_PTR(addr) COPYIN_UINT64(addr) 82 # define off_t uint64_t 83 # define APPEND_PTR(p) APPEND_PTR_64(p) 84 #endif 85 86 #define APPEND_CHR(c) (this->buf[this->off++] = (c)) 87 #define APPEND_CHR4(s0, s1, s2, s3) \ 88 APPEND_CHR(s0); \ 89 APPEND_CHR(s1); \ 90 APPEND_CHR(s2); \ 91 APPEND_CHR(s3); 92 #define APPEND_CHR8(s0, s1, s2, s3, s4, s5, s6, s7) \ 93 APPEND_CHR4(s0, s1, s2, s3) \ 94 APPEND_CHR4(s4, s5, s6, s7) 95 96 #define APPEND_DGT(i, d) \ 97 (((i) / (d)) ? APPEND_CHR('0' + ((i)/(d) % 10)) : 0) 98 99 #define APPEND_NUM(i) \ 100 APPEND_DGT((i), 100000); \ 101 APPEND_DGT((i), 10000); \ 102 APPEND_DGT((i), 1000); \ 103 APPEND_DGT((i), 100); \ 104 APPEND_DGT((i), 10); \ 105 APPEND_DGT((i), 1); 106 107 #define APPEND_HEX(d) \ 108 APPEND_CHR((d) < 10 ? '0' + (d) : 'a' - 10 + (d)) 109 110 #define APPEND_PTR_32(p) \ 111 APPEND_HEX((p >> 28) & 0xf); \ 112 APPEND_HEX((p >> 24) & 0xf); \ 113 APPEND_HEX((p >> 20) & 0xf); \ 114 APPEND_HEX((p >> 16) & 0xf); \ 115 APPEND_HEX((p >> 12) & 0xf); \ 116 APPEND_HEX((p >> 8) & 0xf); \ 117 APPEND_HEX((p >> 4) & 0xf); \ 118 APPEND_HEX((p) & 0xf); 119 120 #define APPEND_PTR_64(p) \ 121 APPEND_PTR_32(p >> 32) \ 122 APPEND_PTR_32(p) 123 124 /* 125 * The following macros are used to output ASCII SeqStrings, ConsStrings, and 126 * Node.js ExternalStrings. To represent each string, we use three fields: 127 * 128 * "str": a pointer to the string itself 129 * 130 * "len": the string length 131 * 132 * "attrs": the type identifier for the string, which indicates the 133 * encoding and representation. We're only interested in strings 134 * whose representation is one of: 135 * 136 * SeqOneByteString stored directly as a char array inside the object 137 * 138 * SeqTwoByteString stored as a UTF-16 char array inside the object 139 * 140 * ConsString pointer to two strings that should be concatenated 141 * 142 * ExternalString pointer to a char* outside the V8 heap 143 */ 144 145 /* 146 * Load "len" and "attrs" for the given "str". 147 */ 148 #define LOAD_STRFIELDS(str, len, attrs) \ 149 len = SMI_VALUE(COPYIN_PTR(str + V8_OFF_STR_LENGTH)); \ 150 this->map = V8_MAP_PTR(COPYIN_PTR(str + V8_OFF_HEAPOBJ_MAP)); \ 151 attrs = COPYIN_UINT8(this->map + V8_OFF_MAP_ATTRS); 152 153 #define APPEND_SEQSTR(str, len, attrs) \ 154 APPEND_SEQONEBYTESTR(str, len, attrs) \ 155 APPEND_SEQTWOBYTESTR(str, len, attrs) 156 157 /* 158 * Print out the given SeqOneByteString, or do nothing if the string is not an ASCII 159 * SeqOneByteString. 160 */ 161 #define APPEND_SEQONEBYTESTR(str, len, attrs) \ 162 dtrace:helper:ustack: \ 163 /!this->done && len > 0 && ASCII_SEQSTR(attrs)/ \ 164 { \ 165 copyinto(str + V8_OFF_STR_CHARS, len, this->buf + this->off); \ 166 this->off += len; \ 167 } 168 169 /* 170 * LOOP_ITER: macro to paste "block" while "ivar" is less than "dynmax" and 171 * "statmax". The subsequent LOOP_{4,8} macros facilitate pasting the same 172 * thing 4 and 8 times, respectively. Like much of the rest of the code in this 173 * file, this is regrettably necessary given the constraints under which we're 174 * expected to run. 175 */ 176 #define LOOP_ITER(ivar, dynmax, statmax, block) \ 177 ((ivar) < (dynmax)) && ((ivar) < (statmax)) && (block); (ivar)++; 178 179 #define LOOP_4(block) \ 180 block \ 181 block \ 182 block \ 183 block \ 184 185 #define LOOP_8(block) \ 186 LOOP_4(block) \ 187 LOOP_4(block) 188 189 /* 190 * Print out the given SeqTwoByteString, or do nothing if the string is not an ASCII 191 * SeqTwoByteString. NOTE: if you bump MAX_TWOBYTESTR_CHARS, you'll also need 192 * to modify the LOOP_* macro calls below to match. 193 */ 194 #define MAX_TWOBYTESTR_CHARS 128 195 #define MAX_TWOBYTESTR_BYTES (2 * MAX_TWOBYTESTR_CHARS) 196 #define TO_ASCII(c) ((c) < 128 ? (c) : '?') 197 198 #define APPEND_SEQTWOBYTESTR(str, len, attrs) \ 199 dtrace:helper:ustack: \ 200 /!this->done && len > 0 && TWOBYTE_SEQSTR(attrs)/ \ 201 { \ 202 this->i = 0; \ 203 this->stbuf = (uint16_t *)alloca(MAX_TWOBYTESTR_BYTES + 2); \ 204 copyinto(str + V8_OFF_TWOBYTESTR_CHARS, \ 205 MAX_TWOBYTESTR_BYTES, this->stbuf); \ 206 this->stbuf[MAX_TWOBYTESTR_BYTES - 1] = '\0'; \ 207 this->stbuf[MAX_TWOBYTESTR_BYTES] = '\0'; \ 208 \ 209 LOOP_8(LOOP_8(LOOP_4(LOOP_ITER(this->i, len, \ 210 MAX_TWOBYTESTR_CHARS, \ 211 APPEND_CHR(TO_ASCII(this->stbuf[this->i])))))) \ 212 \ 213 this->i = 0; \ 214 this->stbuf = 0; \ 215 } 216 217 /* 218 * Print out the given Node.js ExternalString, or do nothing if the string is 219 * not an ASCII ExternalString. 220 */ 221 #define APPEND_NODESTR(str, len, attrs) \ 222 dtrace:helper:ustack: \ 223 /!this->done && len > 0 && ASCII_EXTSTR(attrs)/ \ 224 { \ 225 this->resource = COPYIN_PTR(str + V8_OFF_EXTSTR_RSRC); \ 226 this->dataptr = COPYIN_PTR(this->resource + NODE_OFF_EXTSTR_DATA); \ 227 copyinto(this->dataptr, len, this->buf + this->off); \ 228 this->off += len; \ 229 } 230 231 /* 232 * Recall that each ConsString points to two other strings which are 233 * semantically concatenated. Of course, these strings may themselves by 234 * ConsStrings, but in D we can only expand this recursion to a finite level. 235 * Thankfully, function and script names are generally not more than a few 236 * levels deep, so we unroll the expansion up to three levels. Even this is 237 * pretty hairy: we use strings "s0", ..., "s13", (each with "str", "len", and 238 * "attr" fields -- see above) to store the expanded strings. We expand the 239 * original string into s0 and s7, then s0 into s1 and s4, etc: 240 * 241 * 242 * +---- str ----+ 243 * / \ <-- 1st expansion 244 * / \ 245 * s0 s7 246 * / \ / \ 247 * / \ / \ <-- 2nd expansion 248 * / \ / \ 249 * s1 s4 s8 s11 250 * / \ / \ / \ / \ <-- 3rd expansion 251 * s2 s3 s5 s6 s9 s10 s12 s13 252 * 253 * Of course, for a given string, any of these expansions may not be needed. 254 * For example, we may expand str and find that s0 is already a SeqString, 255 * while s7 requires further expansion. So when we expand a ConsString, we 256 * zero the length of the string itself, and then at the end we print out 257 * all non-zero-length strings in order (including both internal nodes and 258 * leafs in the tree above) to get the final output. 259 */ 260 #define EXPAND_START() \ 261 dtrace:helper:ustack: \ 262 /!this->done/ \ 263 { \ 264 this->s0str = this->s1str = this->s2str = (off_t) 0; \ 265 this->s3str = this->s4str = this->s5str = (off_t) 0; \ 266 this->s6str = this->s7str = this->s8str = (off_t) 0; \ 267 this->s9str = this->s10str = this->s11str = (off_t) 0; \ 268 this->s12str = this->s13str = (off_t) 0; \ 269 \ 270 this->s0len = this->s1len = this->s2len = (off_t) 0; \ 271 this->s3len = this->s4len = this->s5len = (off_t) 0; \ 272 this->s6len = this->s7len = this->s8len = (off_t) 0; \ 273 this->s9len = this->s10len = this->s11len = (off_t) 0; \ 274 this->s12len = this->s13len = (off_t) 0; \ 275 \ 276 this->s0attrs = this->s1attrs = this->s2attrs = 0; \ 277 this->s3attrs = this->s4attrs = this->s5attrs = 0; \ 278 this->s6attrs = this->s7attrs = this->s8attrs = 0; \ 279 this->s9attrs = this->s10attrs = this->s11attrs = 0; \ 280 this->s12attrs = this->s13attrs = 0; \ 281 } 282 283 /* 284 * Expand the ConsString "str" (represented by "str", "len", and "attrs") into 285 * strings "s1" (represented by "s1s", "s1l", and "s1a") and "s2" (represented 286 * by "s2s", "s2l", "s2a"). If "str" is not a ConsString, do nothing. 287 */ 288 #define EXPAND_STR(str, len, attrs, s1s, s1l, s1a, s2s, s2l, s2a) \ 289 dtrace:helper:ustack: \ 290 /!this->done && len > 0 && IS_CONSSTR(attrs)/ \ 291 { \ 292 len = 0; \ 293 \ 294 s1s = COPYIN_PTR(str + V8_OFF_CONSSTR_CAR); \ 295 LOAD_STRFIELDS(s1s, s1l, s1a) \ 296 \ 297 s2s = COPYIN_PTR(str + V8_OFF_CONSSTR_CDR); \ 298 LOAD_STRFIELDS(s2s, s2l, s2a) \ 299 } 300 301 /* 302 * Print out a ConsString by expanding it up to three levels and printing out 303 * the resulting SeqStrings. 304 */ 305 #define APPEND_CONSSTR(str, len, attrs) \ 306 EXPAND_START() \ 307 EXPAND_STR(str, len, attrs, \ 308 this->s0str, this->s0len, this->s0attrs, \ 309 this->s7str, this->s7len, this->s7attrs) \ 310 EXPAND_STR(this->s0str, this->s0len, this->s0attrs, \ 311 this->s1str, this->s1len, this->s1attrs, \ 312 this->s4str, this->s4len, this->s4attrs) \ 313 EXPAND_STR(this->s1str, this->s1len, this->s1attrs, \ 314 this->s2str, this->s2len, this->s2attrs, \ 315 this->s3str, this->s3len, this->s3attrs) \ 316 EXPAND_STR(this->s4str, this->s4len, this->s4attrs, \ 317 this->s5str, this->s5len, this->s5attrs, \ 318 this->s6str, this->s6len, this->s6attrs) \ 319 EXPAND_STR(this->s7str, this->s7len, this->s7attrs, \ 320 this->s8str, this->s8len, this->s8attrs, \ 321 this->s11str, this->s11len, this->s11attrs) \ 322 EXPAND_STR(this->s8str, this->s8len, this->s8attrs, \ 323 this->s9str, this->s9len, this->s9attrs, \ 324 this->s10str, this->s10len, this->s10attrs) \ 325 EXPAND_STR(this->s11str, this->s11len, this->s11attrs, \ 326 this->s12str, this->s12len, this->s12attrs, \ 327 this->s13str, this->s13len, this->s13attrs) \ 328 \ 329 APPEND_SEQSTR(str, len, attrs) \ 330 APPEND_SEQSTR(this->s0str, this->s0len, this->s0attrs) \ 331 APPEND_SEQSTR(this->s1str, this->s1len, this->s1attrs) \ 332 APPEND_SEQSTR(this->s2str, this->s2len, this->s2attrs) \ 333 APPEND_SEQSTR(this->s3str, this->s3len, this->s3attrs) \ 334 APPEND_SEQSTR(this->s4str, this->s4len, this->s4attrs) \ 335 APPEND_SEQSTR(this->s5str, this->s5len, this->s5attrs) \ 336 APPEND_SEQSTR(this->s6str, this->s6len, this->s6attrs) \ 337 APPEND_SEQSTR(this->s7str, this->s7len, this->s7attrs) \ 338 APPEND_SEQSTR(this->s8str, this->s8len, this->s8attrs) \ 339 APPEND_SEQSTR(this->s9str, this->s9len, this->s9attrs) \ 340 APPEND_SEQSTR(this->s10str, this->s10len, this->s10attrs) \ 341 APPEND_SEQSTR(this->s11str, this->s11len, this->s11attrs) \ 342 APPEND_SEQSTR(this->s12str, this->s12len, this->s12attrs) \ 343 APPEND_SEQSTR(this->s13str, this->s13len, this->s13attrs) \ 344 345 346 /* 347 * Print out the given SeqString, ConsString, or ExternalString. 348 * APPEND_CONSSTR implicitly handles SeqStrings as the degenerate case of an 349 * expanded ConsString. 350 */ 351 #define APPEND_V8STR(str, len, attrs) \ 352 APPEND_CONSSTR(str, len, attrs) \ 353 APPEND_NODESTR(str, len, attrs) 354 355 /* 356 * In this first clause we initialize all variables. We must explicitly clear 357 * them because they may contain values left over from previous iterations. 358 */ 359 dtrace:helper:ustack: 360 { 361 /* input */ 362 this->fp = arg1; 363 364 /* output/flow control */ 365 this->buf = (char*) alloca(128); 366 this->off = 0; 367 this->done = 0; 368 369 /* program state */ 370 this->ctx = (off_t) 0; 371 this->marker = (off_t) 0; 372 this->func = (off_t) 0; 373 this->shared = (off_t) 0; 374 this->map = (off_t) 0; 375 this->attrs = 0; 376 this->funcrawnamestr = (off_t) 0; 377 this->hassharedname = 0; 378 this->funcnamelen = 0; 379 this->funcnameattrs = 0; 380 this->script = (off_t) 0; 381 this->scriptattrs = 0; 382 this->scriptnamestr = (off_t) 0; 383 this->scriptnamelen = 0; 384 this->scriptnameattrs = 0; 385 this->position = 0; 386 this->line_ends = (off_t) 0; 387 this->le_attrs = 0; 388 389 /* binary search fields */ 390 this->bsearch_min = 0; 391 this->bsearch_max = 0; 392 this->ii = 0; 393 } 394 395 /* 396 * Check for other common frame types for which we also have nothing to add. 397 */ 398 dtrace:helper:ustack: 399 /!this->done/ 400 { 401 this->marker = COPYIN_PTR(this->fp + V8_OFF_FP_CONTEXT); 402 } 403 404 dtrace:helper:ustack: 405 /!this->done && IS_SMI(this->marker) && 406 SMI_VALUE(this->marker) == V8_FT_ENTRY/ 407 { 408 this->done = 1; 409 APPEND_CHR8('<','<',' ','e','n','t','r','y'); 410 APPEND_CHR4(' ','>','>','\0'); 411 stringof(this->buf); 412 } 413 414 dtrace:helper:ustack: 415 /!this->done && IS_SMI(this->marker) && 416 SMI_VALUE(this->marker) == V8_FT_ENTRYCONSTRUCT/ 417 { 418 this->done = 1; 419 APPEND_CHR8('<','<',' ','e','n','t','r','y'); 420 APPEND_CHR8('_','c','o','n','s','t','r','u'); 421 APPEND_CHR4('t',' ','>','>'); 422 APPEND_CHR('\0'); 423 stringof(this->buf); 424 } 425 426 dtrace:helper:ustack: 427 /!this->done && IS_SMI(this->marker) && 428 SMI_VALUE(this->marker) == V8_FT_EXIT/ 429 { 430 this->done = 1; 431 APPEND_CHR8('<','<',' ','e','x','i','t',' '); 432 APPEND_CHR4('>','>','\0','\0'); 433 stringof(this->buf); 434 } 435 436 dtrace:helper:ustack: 437 /!this->done && IS_SMI(this->marker) && 438 SMI_VALUE(this->marker) == V8_FT_INTERNAL/ 439 { 440 this->done = 1; 441 APPEND_CHR8('<','<',' ','i','n','t','e','r'); 442 APPEND_CHR8('n','a','l',' ','>','>','\0','\0'); 443 stringof(this->buf); 444 } 445 446 dtrace:helper:ustack: 447 /!this->done && IS_SMI(this->marker) && 448 SMI_VALUE(this->marker) == V8_FT_CONSTRUCT/ 449 { 450 this->done = 1; 451 APPEND_CHR8('<','<',' ','c','o','n','s','t'); 452 APPEND_CHR8('r','u','c','t','o','r',' ','>'); 453 APPEND_CHR4('>','\0','\0','\0'); 454 stringof(this->buf); 455 } 456 457 dtrace:helper:ustack: 458 /!this->done && IS_SMI(this->marker) && 459 SMI_VALUE(this->marker) == V8_FT_STUB/ 460 { 461 this->done = 1; 462 APPEND_CHR8('<','<',' ','s','t','u','b',' '); 463 APPEND_CHR4('>','>','\0','\0'); 464 stringof(this->buf); 465 } 466 467 /* 468 * Now check for internal frames that we can only identify by seeing that 469 * there's a Code object where there would be a JSFunction object for a 470 * JavaScriptFrame. 471 */ 472 dtrace:helper:ustack: 473 /!this->done/ 474 { 475 this->func = COPYIN_PTR(this->fp + V8_OFF_FP_FUNC); 476 this->map = V8_MAP_PTR(COPYIN_PTR(this->func + V8_OFF_HEAPOBJ_MAP)); 477 this->attrs = COPYIN_UINT8(this->map + V8_OFF_MAP_ATTRS); 478 } 479 480 dtrace:helper:ustack: 481 /!this->done && this->attrs == V8_IT_CODE/ 482 { 483 this->done = 1; 484 APPEND_CHR8('<','<',' ','i','n','t','e','r'); 485 APPEND_CHR8('n','a','l',' ','c','o','d','e'); 486 APPEND_CHR4(' ','>','>','\0'); 487 stringof(this->buf); 488 } 489 490 /* 491 * At this point, we're either looking at a JavaScriptFrame or an 492 * OptimizedFrame. For now, we assume JavaScript and start by grabbing the 493 * function name. 494 */ 495 dtrace:helper:ustack: 496 /!this->done/ 497 { 498 this->map = 0; 499 this->attrs = 0; 500 501 this->shared = COPYIN_PTR(this->func + V8_OFF_FUNC_SHARED); 502 this->funcrawnamestr = COPYIN_PTR(this->shared + V8_OFF_RAW_NAME); 503 this->hassharedname = this->funcrawnamestr != 504 NO_SHARED_FUNCTION_NAME_SENTINEL; 505 } 506 507 dtrace:helper:ustack: 508 /!this->done && this->hassharedname/ 509 { 510 LOAD_STRFIELDS(this->funcrawnamestr, this->funcnamelen, 511 this->funcnameattrs); 512 } 513 514 dtrace:helper:ustack: 515 /!this->done && this->funcnamelen == 0/ 516 { 517 /* 518 * This is an anonymous function, but if it was invoked as a method of 519 * some object then V8 will have computed an inferred name that we can 520 * include in the stack trace. 521 */ 522 APPEND_CHR8('(','a','n','o','n',')',' ','a'); 523 APPEND_CHR('s'); 524 APPEND_CHR(' '); 525 526 this->funcrawnamestr = COPYIN_PTR(this->shared + V8_OFF_SHARED_IDENT); 527 LOAD_STRFIELDS(this->funcrawnamestr, this->funcnamelen, 528 this->funcnameattrs); 529 } 530 531 dtrace:helper:ustack: 532 /!this->done && this->funcnamelen == 0/ 533 { 534 APPEND_CHR('('); 535 APPEND_CHR4('a','n','o','n'); 536 APPEND_CHR(')'); 537 } 538 539 APPEND_V8STR(this->funcrawnamestr, this->funcnamelen, this->funcnameattrs) 540 541 /* 542 * Now look for the name of the script where the function was defined. The 543 * "script" itself may be undefined for special functions like "RegExp". 544 */ 545 dtrace:helper:ustack: 546 /!this->done/ 547 { 548 this->script = COPYIN_PTR(this->shared + V8_OFF_SHARED_SCRIPT); 549 this->map = V8_MAP_PTR(COPYIN_PTR(this->script + V8_OFF_HEAPOBJ_MAP)); 550 this->scriptattrs = COPYIN_UINT8(this->map + V8_OFF_MAP_ATTRS); 551 } 552 553 dtrace:helper:ustack: 554 /!this->done && !V8_TYPE_SCRIPT(this->scriptattrs)/ 555 { 556 APPEND_CHR('\0'); 557 this->done = 1; 558 stringof(this->buf); 559 } 560 561 562 dtrace:helper:ustack: 563 /!this->done/ 564 { 565 this->scriptnamestr = COPYIN_PTR(this->script + V8_OFF_SCRIPT_NAME); 566 LOAD_STRFIELDS(this->scriptnamestr, this->scriptnamelen, 567 this->scriptnameattrs); 568 } 569 570 dtrace:helper:ustack: 571 /!this->done && this->scriptnamelen != 0/ 572 { 573 APPEND_CHR4(' ','a','t',' '); 574 } 575 576 APPEND_V8STR(this->scriptnamestr, this->scriptnamelen, this->scriptnameattrs) 577 578 /* 579 * Now look for file position and line number information. 580 */ 581 dtrace:helper:ustack: 582 /!this->done/ 583 { 584 this->position = COPYIN_UINT32(this->shared + V8_OFF_SHARED_FUNIDENT); 585 this->line_ends = COPYIN_PTR(this->script + V8_OFF_SCRIPT_LENDS); 586 this->map = V8_MAP_PTR(COPYIN_PTR(this->line_ends + V8_OFF_HEAPOBJ_MAP)); 587 this->le_attrs = COPYIN_UINT8(this->map + V8_OFF_MAP_ATTRS); 588 } 589 590 dtrace:helper:ustack: 591 /!this->done && this->le_attrs != V8_IT_FIXEDARRAY && this->position == 0/ 592 { 593 APPEND_CHR('\0'); 594 this->done = 1; 595 stringof(this->buf); 596 } 597 598 dtrace:helper:ustack: 599 /!this->done && this->le_attrs != V8_IT_FIXEDARRAY/ 600 { 601 /* 602 * If the line number array was not a valid FixedArray, it's probably 603 * undefined because V8 has not had to compute it yet. In this case we 604 * just show the raw position and call it a day. 605 */ 606 APPEND_CHR4(' ','p','o','s'); 607 APPEND_CHR(' '); 608 APPEND_NUM(SMI_VALUE(this->position)); 609 APPEND_CHR('\0'); 610 this->done = 1; 611 stringof(this->buf); 612 } 613 614 /* 615 * At this point, we've got both a position in the script and an array 616 * describing where each line of the file ends. We can use this to compute the 617 * line number by binary searching the array. (This is also what V8 does when 618 * computing stack traces.) 619 */ 620 dtrace:helper:ustack: 621 /!this->done/ 622 { 623 /* initialize binary search */ 624 this->bsearch_line = this->position < 625 SMI_VALUE(COPYIN_PTR(this->line_ends + V8_OFF_FA_DATA)) ? 1 : 0; 626 this->bsearch_min = 0; 627 this->bsearch_max = this->bsearch_line != 0 ? 0 : 628 SMI_VALUE(COPYIN_PTR(this->line_ends + V8_OFF_FA_SIZE)) - 1; 629 } 630 631 /* 632 * Of course, we can't iterate the binary search indefinitely, so we hardcode 15 633 * iterations. That's enough to precisely identify the line number in files up 634 * to 32768 lines of code. 635 */ 636 #define BSEARCH_LOOP \ 637 dtrace:helper:ustack: \ 638 /!this->done && this->bsearch_max >= 1/ \ 639 { \ 640 this->ii = (this->bsearch_min + this->bsearch_max) >> 1; \ 641 } \ 642 \ 643 dtrace:helper:ustack: \ 644 /!this->done && this->bsearch_max >= 1 && \ 645 this->position > SMI_VALUE( \ 646 COPYIN_PTR(this->line_ends + V8_OFF_FA_DATA + \ 647 this->ii * sizeof (uint32_t)))/ \ 648 { \ 649 this->bsearch_min = this->ii + 1; \ 650 } \ 651 \ 652 dtrace:helper:ustack: \ 653 /!this->done && this->bsearch_max >= 1 && \ 654 this->position <= SMI_VALUE( \ 655 COPYIN_PTR(this->line_ends + V8_OFF_FA_DATA + \ 656 (this->ii - 1) * sizeof (uint32_t)))/ \ 657 { \ 658 this->bsearch_max = this->ii - 1; \ 659 } 660 661 BSEARCH_LOOP 662 BSEARCH_LOOP 663 BSEARCH_LOOP 664 BSEARCH_LOOP 665 BSEARCH_LOOP 666 BSEARCH_LOOP 667 BSEARCH_LOOP 668 BSEARCH_LOOP 669 BSEARCH_LOOP 670 BSEARCH_LOOP 671 BSEARCH_LOOP 672 BSEARCH_LOOP 673 BSEARCH_LOOP 674 BSEARCH_LOOP 675 BSEARCH_LOOP 676 677 dtrace:helper:ustack: 678 /!this->done && !this->bsearch_line/ 679 { 680 this->bsearch_line = this->ii + 1; 681 } 682 683 dtrace:helper:ustack: 684 /!this->done/ 685 { 686 APPEND_CHR(' '); 687 APPEND_CHR4('l','i','n','e'); 688 APPEND_CHR(' '); 689 APPEND_NUM(this->bsearch_line); 690 APPEND_CHR('\0'); 691 this->done = 1; 692 stringof(this->buf); 693 } 694 695 /* vim: set tabstop=8 softtabstop=8 shiftwidth=8 noexpandtab: */ 696