1 /* $NetBSD: var.c,v 1.1172 2025/09/16 15:15:47 sjg Exp $ */ 2 3 /* 4 * Copyright (c) 1988, 1989, 1990, 1993 5 * The Regents of the University of California. All rights reserved. 6 * 7 * This code is derived from software contributed to Berkeley by 8 * Adam de Boor. 9 * 10 * Redistribution and use in source and binary forms, with or without 11 * modification, are permitted provided that the following conditions 12 * are met: 13 * 1. Redistributions of source code must retain the above copyright 14 * notice, this list of conditions and the following disclaimer. 15 * 2. Redistributions in binary form must reproduce the above copyright 16 * notice, this list of conditions and the following disclaimer in the 17 * documentation and/or other materials provided with the distribution. 18 * 3. Neither the name of the University nor the names of its contributors 19 * may be used to endorse or promote products derived from this software 20 * without specific prior written permission. 21 * 22 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 23 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 24 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 25 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 26 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 27 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 28 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 30 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 31 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 32 * SUCH DAMAGE. 33 */ 34 35 /* 36 * Copyright (c) 1989 by Berkeley Softworks 37 * All rights reserved. 38 * 39 * This code is derived from software contributed to Berkeley by 40 * Adam de Boor. 41 * 42 * Redistribution and use in source and binary forms, with or without 43 * modification, are permitted provided that the following conditions 44 * are met: 45 * 1. Redistributions of source code must retain the above copyright 46 * notice, this list of conditions and the following disclaimer. 47 * 2. Redistributions in binary form must reproduce the above copyright 48 * notice, this list of conditions and the following disclaimer in the 49 * documentation and/or other materials provided with the distribution. 50 * 3. All advertising materials mentioning features or use of this software 51 * must display the following acknowledgement: 52 * This product includes software developed by the University of 53 * California, Berkeley and its contributors. 54 * 4. Neither the name of the University nor the names of its contributors 55 * may be used to endorse or promote products derived from this software 56 * without specific prior written permission. 57 * 58 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 59 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 60 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 61 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 62 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 63 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 64 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 65 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 66 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 67 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 68 * SUCH DAMAGE. 69 */ 70 71 /* 72 * Handling of variables and the expressions formed from them. 73 * 74 * Variables are set using lines of the form VAR=value. Both the variable 75 * name and the value can contain references to other variables, by using 76 * expressions like ${VAR}, ${VAR:Modifiers}, ${${VARNAME}} or ${VAR:${MODS}}. 77 * 78 * Interface: 79 * Var_Set 80 * Var_SetExpand Set the value of the variable, creating it if 81 * necessary. 82 * 83 * Var_Append 84 * Var_AppendExpand 85 * Append more characters to the variable, creating it if 86 * necessary. A space is placed between the old value and 87 * the new one. 88 * 89 * Var_Exists 90 * Var_ExistsExpand 91 * See if a variable exists. 92 * 93 * Var_Value Return the unexpanded value of a variable, or NULL if 94 * the variable is undefined. 95 * 96 * Var_Subst Substitute all expressions in a string. 97 * 98 * Var_Parse Parse an expression such as ${VAR:Mpattern}. 99 * 100 * Var_Delete Delete a variable. 101 * 102 * Var_ReexportVars 103 * Export some or even all variables to the environment 104 * of this process and its child processes. 105 * 106 * Var_Export Export the variable to the environment of this process 107 * and its child processes. 108 * 109 * Var_UnExport Don't export the variable anymore. 110 * 111 * Debugging: 112 * Var_Stats Print out hashing statistics if in -dh mode. 113 * 114 * Var_Dump Print out all variables defined in the given scope. 115 */ 116 117 #include <sys/stat.h> 118 #include <sys/types.h> 119 #include <regex.h> 120 #include <errno.h> 121 #include <inttypes.h> 122 #include <limits.h> 123 #include <time.h> 124 125 #include "make.h" 126 #include "dir.h" 127 #include "job.h" 128 #include "metachar.h" 129 130 /* "@(#)var.c 8.3 (Berkeley) 3/19/94" */ 131 MAKE_RCSID("$NetBSD: var.c,v 1.1172 2025/09/16 15:15:47 sjg Exp $"); 132 133 /* 134 * Variables are defined using one of the VAR=value assignments. Their 135 * value can be queried by expressions such as $V, ${VAR}, or with modifiers 136 * such as ${VAR:S,from,to,g:Q}. 137 * 138 * There are 3 kinds of variables: scope variables, environment variables, 139 * undefined variables. 140 * 141 * Scope variables are stored in GNode.vars. The only way to undefine 142 * a scope variable is using the .undef directive. In particular, it must 143 * not be possible to undefine a variable during the evaluation of an 144 * expression, or Var.name might point nowhere. (There is another, 145 * unintended way to undefine a scope variable, see varmod-loop-delete.mk.) 146 * 147 * Environment variables are short-lived. They are returned by VarFind, and 148 * after using them, they must be freed using VarFreeShortLived. 149 * 150 * Undefined variables occur during evaluation of expressions such 151 * as ${UNDEF:Ufallback} in Var_Parse and ApplyModifiers. 152 */ 153 typedef struct Var { 154 /* 155 * The name of the variable, once set, doesn't change anymore. 156 * For scope variables, it aliases the corresponding HashEntry name. 157 * For environment and undefined variables, it is allocated. 158 */ 159 FStr name; 160 161 /* The unexpanded value of the variable. */ 162 Buffer val; 163 164 /* The variable came from the command line. */ 165 bool fromCmd:1; 166 167 /* 168 * The variable is short-lived. 169 * These variables are not registered in any GNode, therefore they 170 * must be freed after use. 171 */ 172 bool shortLived:1; 173 174 /* 175 * The variable comes from the environment. 176 * Appending to its value depends on the scope, see var-op-append.mk. 177 */ 178 bool fromEnvironment:1; 179 180 /* 181 * The variable value cannot be changed anymore, and the variable 182 * cannot be deleted. Any attempts to do so are silently ignored, 183 * they are logged with -dv though. 184 * Use .[NO]READONLY: to adjust. 185 * 186 * See VAR_SET_READONLY. 187 */ 188 bool readOnly:1; 189 190 /* 191 * The variable is read-only and immune to the .NOREADONLY special 192 * target. Any attempt to modify it results in an error. 193 */ 194 bool readOnlyLoud:1; 195 196 /* 197 * The variable is currently being accessed by Var_Parse or Var_Subst. 198 * This temporary marker is used to avoid endless recursion. 199 */ 200 bool inUse:1; 201 202 /* 203 * The variable is exported to the environment, to be used by child 204 * processes. 205 */ 206 bool exported:1; 207 208 /* 209 * At the point where this variable was exported, it contained an 210 * unresolved reference to another variable. Before any child 211 * process is started, it needs to be actually exported, resolving 212 * the referenced variable just in time. 213 */ 214 bool reexport:1; 215 } Var; 216 217 /* 218 * Exporting variables is expensive and may leak memory, so skip it if we 219 * can. 220 */ 221 typedef enum VarExportedMode { 222 VAR_EXPORTED_NONE, 223 VAR_EXPORTED_SOME, 224 VAR_EXPORTED_ALL 225 } VarExportedMode; 226 227 typedef enum UnexportWhat { 228 /* Unexport the variables given by name. */ 229 UNEXPORT_NAMED, 230 /* 231 * Unexport all globals previously exported, but keep the environment 232 * inherited from the parent. 233 */ 234 UNEXPORT_ALL, 235 /* 236 * Unexport all globals previously exported and clear the environment 237 * inherited from the parent. 238 */ 239 UNEXPORT_ENV 240 } UnexportWhat; 241 242 /* Flags for pattern matching in the :S and :C modifiers */ 243 typedef struct PatternFlags { 244 bool subGlobal:1; /* 'g': replace as often as possible */ 245 bool subOnce:1; /* '1': replace only once */ 246 bool anchorStart:1; /* '^': match only at start of word */ 247 bool anchorEnd:1; /* '$': match only at end of word */ 248 } PatternFlags; 249 250 /* SepBuf builds a string from words interleaved with separators. */ 251 typedef struct SepBuf { 252 Buffer buf; 253 bool needSep; 254 /* Usually ' ', but see the ':ts' modifier. */ 255 char sep; 256 } SepBuf; 257 258 typedef enum { 259 VSK_MAKEFLAGS, 260 VSK_TARGET, 261 VSK_COMMAND, 262 VSK_VARNAME, 263 VSK_INDIRECT_MODIFIERS, 264 VSK_COND, 265 VSK_COND_THEN, 266 VSK_COND_ELSE, 267 VSK_EXPR, 268 VSK_EXPR_PARSE 269 } EvalStackElementKind; 270 271 typedef struct { 272 EvalStackElementKind kind; 273 const char *str; 274 const FStr *value; 275 } EvalStackElement; 276 277 typedef struct { 278 EvalStackElement *elems; 279 size_t len; 280 size_t cap; 281 } EvalStack; 282 283 /* Whether we have replaced the original environ (which we cannot free). */ 284 char **savedEnv = NULL; 285 286 /* 287 * Special return value for Var_Parse, indicating a parse error. It may be 288 * caused by an undefined variable, a syntax error in a modifier or 289 * something entirely different. 290 */ 291 char var_Error[] = ""; 292 293 /* 294 * Special return value for Var_Parse, indicating an undefined variable in 295 * a case where VARE_EVAL_DEFINED is not set. This undefined variable is 296 * typically a dynamic variable such as ${.TARGET}, whose expansion needs to 297 * be deferred until it is defined in an actual target. 298 * 299 * See VARE_EVAL_KEEP_UNDEFINED. 300 */ 301 static char varUndefined[] = ""; 302 303 /* 304 * Traditionally this make consumed $$ during := like any other expansion. 305 * Other make's do not, and this make follows straight since 2016-01-09. 306 * 307 * This knob allows controlling the behavior: 308 * false to consume $$ during := assignment. 309 * true to preserve $$ during := assignment. 310 */ 311 #define MAKE_SAVE_DOLLARS ".MAKE.SAVE_DOLLARS" 312 static bool save_dollars = true; 313 314 /* 315 * A scope collects variable names and their values. 316 * 317 * The main scope is SCOPE_GLOBAL, which contains the variables that are set 318 * in the makefiles. SCOPE_INTERNAL acts as a fallback for SCOPE_GLOBAL and 319 * contains some internal make variables. These internal variables can thus 320 * be overridden, they can also be restored by undefining the overriding 321 * variable. 322 * 323 * SCOPE_CMDLINE contains variables from the command line arguments. These 324 * override variables from SCOPE_GLOBAL. 325 * 326 * There is no scope for environment variables, these are generated on-the-fly 327 * whenever they are referenced. 328 * 329 * Each target has its own scope, containing the 7 target-local variables 330 * .TARGET, .ALLSRC, etc. Variables set on dependency lines also go in 331 * this scope. 332 */ 333 334 GNode *SCOPE_CMDLINE; 335 GNode *SCOPE_GLOBAL; 336 GNode *SCOPE_INTERNAL; 337 338 static VarExportedMode var_exportedVars = VAR_EXPORTED_NONE; 339 340 static const char VarEvalMode_Name[][32] = { 341 "parse", 342 "parse-balanced", 343 "eval", 344 "eval-defined-loud", 345 "eval-defined", 346 "eval-keep-undefined", 347 "eval-keep-dollar-and-undefined", 348 }; 349 350 static EvalStack evalStack; 351 352 353 static void 354 EvalStack_Push(EvalStackElementKind kind, const char *str, const FStr *value) 355 { 356 if (evalStack.len >= evalStack.cap) { 357 evalStack.cap = 16 + 2 * evalStack.cap; 358 evalStack.elems = bmake_realloc(evalStack.elems, 359 evalStack.cap * sizeof(*evalStack.elems)); 360 } 361 evalStack.elems[evalStack.len].kind = kind; 362 evalStack.elems[evalStack.len].str = str; 363 evalStack.elems[evalStack.len].value = value; 364 evalStack.len++; 365 } 366 367 void 368 EvalStack_PushMakeflags(const char *makeflags) 369 { 370 EvalStack_Push(VSK_MAKEFLAGS, makeflags, NULL); 371 } 372 373 void 374 EvalStack_Pop(void) 375 { 376 assert(evalStack.len > 0); 377 evalStack.len--; 378 } 379 380 bool 381 EvalStack_Details(Buffer *buf) 382 { 383 size_t i; 384 385 for (i = evalStack.len; i > 0; i--) { 386 static const char descr[][42] = { 387 "while evaluating MAKEFLAGS", 388 "in target", 389 "in command", 390 "while evaluating variable", 391 "while evaluating indirect modifiers", 392 "while evaluating condition", 393 "while evaluating then-branch of condition", 394 "while evaluating else-branch of condition", 395 "while evaluating", 396 "while parsing", 397 }; 398 EvalStackElement *elem = evalStack.elems + i - 1; 399 EvalStackElementKind kind = elem->kind; 400 const char* value = elem->value != NULL 401 && (kind == VSK_VARNAME || kind == VSK_EXPR) 402 ? elem->value->str : NULL; 403 404 Buf_AddStr(buf, "\t"); 405 Buf_AddStr(buf, descr[kind]); 406 Buf_AddStr(buf, " \""); 407 Buf_AddStr(buf, elem->str); 408 if (value != NULL) { 409 Buf_AddStr(buf, "\" with value \""); 410 Buf_AddStr(buf, value); 411 } 412 Buf_AddStr(buf, "\"\n"); 413 } 414 return evalStack.len > 0; 415 } 416 417 static Var * 418 VarNew(FStr name, const char *value, 419 bool shortLived, bool fromEnvironment, bool readOnly) 420 { 421 size_t value_len = strlen(value); 422 Var *var = bmake_malloc(sizeof *var); 423 var->name = name; 424 Buf_InitSize(&var->val, value_len + 1); 425 Buf_AddBytes(&var->val, value, value_len); 426 var->fromCmd = false; 427 var->shortLived = shortLived; 428 var->fromEnvironment = fromEnvironment; 429 var->readOnly = readOnly; 430 var->readOnlyLoud = false; 431 var->inUse = false; 432 var->exported = false; 433 var->reexport = false; 434 return var; 435 } 436 437 static Substring 438 CanonicalVarname(Substring name) 439 { 440 if (Substring_Equals(name, "^")) 441 return Substring_InitStr(ALLSRC); 442 443 if (!(Substring_Length(name) > 0 && name.start[0] == '.')) 444 return name; 445 446 if (Substring_Equals(name, ".ALLSRC")) 447 return Substring_InitStr(ALLSRC); 448 if (Substring_Equals(name, ".ARCHIVE")) 449 return Substring_InitStr(ARCHIVE); 450 if (Substring_Equals(name, ".IMPSRC")) 451 return Substring_InitStr(IMPSRC); 452 if (Substring_Equals(name, ".MEMBER")) 453 return Substring_InitStr(MEMBER); 454 if (Substring_Equals(name, ".OODATE")) 455 return Substring_InitStr(OODATE); 456 if (Substring_Equals(name, ".PREFIX")) 457 return Substring_InitStr(PREFIX); 458 if (Substring_Equals(name, ".TARGET")) 459 return Substring_InitStr(TARGET); 460 461 if (Substring_Equals(name, ".SHELL") && shellPath == NULL) 462 Shell_Init(); 463 464 return name; 465 } 466 467 static Var * 468 GNode_FindVar(GNode *scope, Substring varname, unsigned hash) 469 { 470 return HashTable_FindValueBySubstringHash(&scope->vars, varname, hash); 471 } 472 473 /* 474 * Find the variable in the scope, and maybe in other scopes as well. 475 * 476 * Input: 477 * name name to find, is not expanded any further 478 * scope scope in which to look first 479 * elsewhere true to look in other scopes as well 480 * 481 * Results: 482 * The found variable, or NULL if the variable does not exist. 483 * If the variable is short-lived (such as environment variables), it 484 * must be freed using VarFreeShortLived after use. 485 */ 486 static Var * 487 VarFindSubstring(Substring name, GNode *scope, bool elsewhere) 488 { 489 Var *var; 490 unsigned nameHash; 491 492 /* Replace '.TARGET' with '@', likewise for other local variables. */ 493 name = CanonicalVarname(name); 494 nameHash = Hash_Substring(name); 495 496 var = GNode_FindVar(scope, name, nameHash); 497 if (!elsewhere) 498 return var; 499 500 if (var == NULL && scope != SCOPE_CMDLINE) 501 var = GNode_FindVar(SCOPE_CMDLINE, name, nameHash); 502 503 if (!opts.checkEnvFirst && var == NULL && scope != SCOPE_GLOBAL) { 504 var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash); 505 if (var == NULL && scope != SCOPE_INTERNAL) { 506 /* SCOPE_INTERNAL is subordinate to SCOPE_GLOBAL */ 507 var = GNode_FindVar(SCOPE_INTERNAL, name, nameHash); 508 } 509 } 510 511 if (var == NULL) { 512 FStr envName = Substring_Str(name); 513 const char *envValue = getenv(envName.str); 514 if (envValue != NULL) 515 return VarNew(envName, envValue, true, true, false); 516 FStr_Done(&envName); 517 518 if (opts.checkEnvFirst && scope != SCOPE_GLOBAL) { 519 var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash); 520 if (var == NULL && scope != SCOPE_INTERNAL) 521 var = GNode_FindVar(SCOPE_INTERNAL, name, 522 nameHash); 523 return var; 524 } 525 526 return NULL; 527 } 528 529 return var; 530 } 531 532 static Var * 533 VarFind(const char *name, GNode *scope, bool elsewhere) 534 { 535 return VarFindSubstring(Substring_InitStr(name), scope, elsewhere); 536 } 537 538 /* If the variable is short-lived, free it, including its value. */ 539 static void 540 VarFreeShortLived(Var *v) 541 { 542 if (!v->shortLived) 543 return; 544 545 FStr_Done(&v->name); 546 Buf_Done(&v->val); 547 free(v); 548 } 549 550 static const char * 551 ValueDescription(const char *value) 552 { 553 if (value[0] == '\0') 554 return "# (empty)"; 555 if (ch_isspace(value[strlen(value) - 1])) 556 return "# (ends with space)"; 557 return ""; 558 } 559 560 /* Add a new variable of the given name and value to the given scope. */ 561 static Var * 562 VarAdd(const char *name, const char *value, GNode *scope, VarSetFlags flags) 563 { 564 HashEntry *he = HashTable_CreateEntry(&scope->vars, name, NULL); 565 Var *v = VarNew(FStr_InitRefer(/* aliased to */ he->key), value, 566 false, false, (flags & VAR_SET_READONLY) != 0); 567 HashEntry_Set(he, v); 568 DEBUG4(VAR, "%s: %s = %s%s\n", 569 scope->name, name, value, ValueDescription(value)); 570 return v; 571 } 572 573 /* 574 * Remove a variable from a scope, freeing all related memory as well. 575 * The variable name is kept as-is, it is not expanded. 576 */ 577 void 578 Var_Delete(GNode *scope, const char *varname) 579 { 580 HashEntry *he = HashTable_FindEntry(&scope->vars, varname); 581 Var *v; 582 583 if (he == NULL) { 584 DEBUG2(VAR, "%s: ignoring delete '%s' as it is not found\n", 585 scope->name, varname); 586 return; 587 } 588 589 v = he->value; 590 if (v->readOnlyLoud) { 591 Parse_Error(PARSE_FATAL, 592 "Cannot delete \"%s\" as it is read-only", 593 v->name.str); 594 return; 595 } 596 if (v->readOnly) { 597 DEBUG2(VAR, "%s: ignoring delete '%s' as it is read-only\n", 598 scope->name, varname); 599 return; 600 } 601 if (v->inUse) { 602 Parse_Error(PARSE_FATAL, 603 "Cannot delete variable \"%s\" while it is used", 604 v->name.str); 605 return; 606 } 607 608 DEBUG2(VAR, "%s: delete %s\n", scope->name, varname); 609 if (v->exported) 610 unsetenv(v->name.str); 611 if (strcmp(v->name.str, ".MAKE.EXPORTED") == 0) 612 var_exportedVars = VAR_EXPORTED_NONE; 613 614 assert(v->name.freeIt == NULL); 615 HashTable_DeleteEntry(&scope->vars, he); 616 Buf_Done(&v->val); 617 free(v); 618 } 619 620 #ifdef CLEANUP 621 void 622 Var_DeleteAll(GNode *scope) 623 { 624 HashIter hi; 625 HashIter_Init(&hi, &scope->vars); 626 while (HashIter_Next(&hi)) { 627 Var *v = hi.entry->value; 628 Buf_Done(&v->val); 629 free(v); 630 } 631 } 632 #endif 633 634 /* 635 * Undefine one or more variables from the global scope. 636 * The argument is expanded exactly once and then split into words. 637 */ 638 void 639 Var_Undef(const char *arg) 640 { 641 char *expanded; 642 Words varnames; 643 size_t i; 644 645 if (arg[0] == '\0') { 646 Parse_Error(PARSE_FATAL, 647 "The .undef directive requires an argument"); 648 return; 649 } 650 651 expanded = Var_Subst(arg, SCOPE_GLOBAL, VARE_EVAL); 652 if (expanded == var_Error) { 653 /* TODO: Make this part of the code reachable. */ 654 Parse_Error(PARSE_FATAL, 655 "Error in variable names to be undefined"); 656 return; 657 } 658 659 varnames = Str_Words(expanded, false); 660 if (varnames.len == 1 && varnames.words[0][0] == '\0') 661 varnames.len = 0; 662 663 for (i = 0; i < varnames.len; i++) { 664 const char *varname = varnames.words[i]; 665 Global_Delete(varname); 666 } 667 668 Words_Free(varnames); 669 free(expanded); 670 } 671 672 static bool 673 MayExport(const char *name) 674 { 675 if (name[0] == '.') 676 return false; /* skip internals */ 677 if (name[0] == '-') 678 return false; /* skip misnamed variables */ 679 if (name[1] == '\0') { 680 /* 681 * A single char. 682 * If it is one of the variables that should only appear in 683 * local scope, skip it, else we can get Var_Subst 684 * into a loop. 685 */ 686 switch (name[0]) { 687 case '@': 688 case '%': 689 case '*': 690 case '!': 691 return false; 692 } 693 } 694 return true; 695 } 696 697 static bool 698 ExportVarEnv(Var *v, GNode *scope) 699 { 700 const char *name = v->name.str; 701 char *val = v->val.data; 702 char *expr; 703 704 if (v->exported && !v->reexport) 705 return false; /* nothing to do */ 706 707 if (strchr(val, '$') == NULL) { 708 if (!v->exported) 709 setenv(name, val, 1); 710 return true; 711 } 712 713 if (v->inUse) 714 return false; /* see EMPTY_SHELL in directive-export.mk */ 715 716 /* XXX: name is injected without escaping it */ 717 expr = str_concat3("${", name, "}"); 718 val = Var_Subst(expr, scope, VARE_EVAL); 719 if (scope != SCOPE_GLOBAL) { 720 /* we will need to re-export the global version */ 721 v = VarFind(name, SCOPE_GLOBAL, false); 722 if (v != NULL) 723 v->exported = false; 724 } 725 /* TODO: handle errors */ 726 setenv(name, val, 1); 727 free(val); 728 free(expr); 729 return true; 730 } 731 732 static bool 733 ExportVarPlain(Var *v) 734 { 735 if (strchr(v->val.data, '$') == NULL) { 736 setenv(v->name.str, v->val.data, 1); 737 v->exported = true; 738 v->reexport = false; 739 return true; 740 } 741 742 /* 743 * Flag the variable as something we need to re-export. 744 * No point actually exporting it now though, 745 * the child process can do it at the last minute. 746 * Avoid calling setenv more often than necessary since it can leak. 747 */ 748 v->exported = true; 749 v->reexport = true; 750 return true; 751 } 752 753 static bool 754 ExportVarLiteral(Var *v) 755 { 756 if (v->exported && !v->reexport) 757 return false; 758 759 if (!v->exported) 760 setenv(v->name.str, v->val.data, 1); 761 762 return true; 763 } 764 765 /* 766 * Mark a single variable to be exported later for subprocesses. 767 * 768 * Internal variables are not exported. 769 */ 770 static bool 771 ExportVar(const char *name, GNode *scope, VarExportMode mode) 772 { 773 Var *v; 774 775 if (!MayExport(name)) 776 return false; 777 778 v = VarFind(name, scope, false); 779 if (v == NULL && scope != SCOPE_GLOBAL) 780 v = VarFind(name, SCOPE_GLOBAL, false); 781 if (v == NULL) 782 return false; 783 784 if (mode == VEM_ENV) 785 return ExportVarEnv(v, scope); 786 else if (mode == VEM_PLAIN) 787 return ExportVarPlain(v); 788 else 789 return ExportVarLiteral(v); 790 } 791 792 /* 793 * Actually export the variables that have been marked as needing to be 794 * re-exported. 795 */ 796 void 797 Var_ReexportVars(GNode *scope) 798 { 799 char *xvarnames; 800 801 /* 802 * Several make implementations support this sort of mechanism for 803 * tracking recursion - but each uses a different name. 804 * We allow the makefiles to update MAKELEVEL and ensure 805 * children see a correctly incremented value. 806 */ 807 char level_buf[21]; 808 snprintf(level_buf, sizeof level_buf, "%d", makelevel + 1); 809 setenv(MAKE_LEVEL_ENV, level_buf, 1); 810 811 if (var_exportedVars == VAR_EXPORTED_NONE) 812 return; 813 814 if (var_exportedVars == VAR_EXPORTED_ALL) { 815 HashIter hi; 816 817 /* Ouch! Exporting all variables at once is crazy. */ 818 HashIter_Init(&hi, &SCOPE_GLOBAL->vars); 819 while (HashIter_Next(&hi)) { 820 Var *var = hi.entry->value; 821 ExportVar(var->name.str, scope, VEM_ENV); 822 } 823 return; 824 } 825 826 xvarnames = Var_Subst("${.MAKE.EXPORTED:O:u}", SCOPE_GLOBAL, 827 VARE_EVAL); 828 /* TODO: handle errors */ 829 if (xvarnames[0] != '\0') { 830 Words varnames = Str_Words(xvarnames, false); 831 size_t i; 832 833 for (i = 0; i < varnames.len; i++) 834 ExportVar(varnames.words[i], scope, VEM_ENV); 835 Words_Free(varnames); 836 } 837 free(xvarnames); 838 } 839 840 static void 841 ExportVars(const char *varnames, bool isExport, VarExportMode mode) 842 /* TODO: try to combine the parameters 'isExport' and 'mode'. */ 843 { 844 Words words = Str_Words(varnames, false); 845 size_t i; 846 847 if (words.len == 1 && words.words[0][0] == '\0') 848 words.len = 0; 849 850 for (i = 0; i < words.len; i++) { 851 const char *varname = words.words[i]; 852 if (!ExportVar(varname, SCOPE_GLOBAL, mode)) 853 continue; 854 855 if (var_exportedVars == VAR_EXPORTED_NONE) 856 var_exportedVars = VAR_EXPORTED_SOME; 857 858 if (isExport && mode == VEM_PLAIN) 859 Global_Append(".MAKE.EXPORTED", varname); 860 } 861 Words_Free(words); 862 } 863 864 static void 865 ExportVarsExpand(const char *uvarnames, bool isExport, VarExportMode mode) 866 { 867 char *xvarnames = Var_Subst(uvarnames, SCOPE_GLOBAL, VARE_EVAL); 868 /* TODO: handle errors */ 869 ExportVars(xvarnames, isExport, mode); 870 free(xvarnames); 871 } 872 873 /* Export the named variables, or all variables. */ 874 void 875 Var_Export(VarExportMode mode, const char *varnames) 876 { 877 if (mode == VEM_ALL) { 878 var_exportedVars = VAR_EXPORTED_ALL; /* use with caution! */ 879 return; 880 } else if (mode == VEM_PLAIN && varnames[0] == '\0') { 881 Parse_Error(PARSE_WARNING, ".export requires an argument."); 882 return; 883 } 884 885 ExportVarsExpand(varnames, true, mode); 886 } 887 888 void 889 Var_ExportVars(const char *varnames) 890 { 891 ExportVarsExpand(varnames, false, VEM_PLAIN); 892 } 893 894 895 static void 896 ClearEnv(void) 897 { 898 const char *level; 899 char **newenv; 900 901 level = getenv(MAKE_LEVEL_ENV); /* we should preserve this */ 902 if (environ == savedEnv) { 903 /* we have been here before! */ 904 newenv = bmake_realloc(environ, 2 * sizeof(char *)); 905 } else { 906 if (savedEnv != NULL) { 907 free(savedEnv); 908 savedEnv = NULL; 909 } 910 newenv = bmake_malloc(2 * sizeof(char *)); 911 } 912 913 /* Note: we cannot safely free() the original environ. */ 914 environ = savedEnv = newenv; 915 newenv[0] = NULL; 916 newenv[1] = NULL; 917 if (level != NULL && *level != '\0') 918 setenv(MAKE_LEVEL_ENV, level, 1); 919 } 920 921 static void 922 GetVarnamesToUnexport(bool isEnv, const char *arg, 923 FStr *out_varnames, UnexportWhat *out_what) 924 { 925 UnexportWhat what; 926 FStr varnames = FStr_InitRefer(""); 927 928 if (isEnv) { 929 if (arg[0] != '\0') { 930 Parse_Error(PARSE_FATAL, 931 "The directive .unexport-env does not take " 932 "arguments"); 933 /* continue anyway */ 934 } 935 what = UNEXPORT_ENV; 936 937 } else { 938 what = arg[0] != '\0' ? UNEXPORT_NAMED : UNEXPORT_ALL; 939 if (what == UNEXPORT_NAMED) 940 varnames = FStr_InitRefer(arg); 941 } 942 943 if (what != UNEXPORT_NAMED) { 944 char *expanded = Var_Subst("${.MAKE.EXPORTED:O:u}", 945 SCOPE_GLOBAL, VARE_EVAL); 946 /* TODO: handle errors */ 947 varnames = FStr_InitOwn(expanded); 948 } 949 950 *out_varnames = varnames; 951 *out_what = what; 952 } 953 954 static void 955 UnexportVar(Substring varname, UnexportWhat what) 956 { 957 Var *v = VarFindSubstring(varname, SCOPE_GLOBAL, false); 958 if (v == NULL) { 959 DEBUG2(VAR, "Not unexporting \"%.*s\" (not found)\n", 960 (int)Substring_Length(varname), varname.start); 961 return; 962 } 963 964 DEBUG2(VAR, "Unexporting \"%.*s\"\n", 965 (int)Substring_Length(varname), varname.start); 966 if (what != UNEXPORT_ENV && v->exported && !v->reexport) 967 unsetenv(v->name.str); 968 v->exported = false; 969 v->reexport = false; 970 971 if (what == UNEXPORT_NAMED) { 972 /* Remove the variable names from .MAKE.EXPORTED. */ 973 /* XXX: v->name is injected without escaping it */ 974 char *expr = str_concat3( 975 "${.MAKE.EXPORTED:N", v->name.str, "}"); 976 char *filtered = Var_Subst(expr, SCOPE_GLOBAL, VARE_EVAL); 977 /* TODO: handle errors */ 978 Global_Set(".MAKE.EXPORTED", filtered); 979 free(filtered); 980 free(expr); 981 } 982 } 983 984 static void 985 UnexportVars(const char *varnames, UnexportWhat what) 986 { 987 size_t i; 988 SubstringWords words; 989 990 if (what == UNEXPORT_ENV) 991 ClearEnv(); 992 993 words = Substring_Words(varnames, false); 994 for (i = 0; i < words.len; i++) 995 UnexportVar(words.words[i], what); 996 SubstringWords_Free(words); 997 998 if (what != UNEXPORT_NAMED) 999 Global_Delete(".MAKE.EXPORTED"); 1000 } 1001 1002 /* Handle the .unexport and .unexport-env directives. */ 1003 void 1004 Var_UnExport(bool isEnv, const char *arg) 1005 { 1006 UnexportWhat what; 1007 FStr varnames; 1008 1009 GetVarnamesToUnexport(isEnv, arg, &varnames, &what); 1010 UnexportVars(varnames.str, what); 1011 FStr_Done(&varnames); 1012 } 1013 1014 /* Set the variable to the value; the name is not expanded. */ 1015 void 1016 Var_SetWithFlags(GNode *scope, const char *name, const char *val, 1017 VarSetFlags flags) 1018 { 1019 Var *v; 1020 1021 assert(val != NULL); 1022 if (name[0] == '\0') { 1023 DEBUG3(VAR, 1024 "%s: ignoring '%s = %s' as the variable name is empty\n", 1025 scope->name, name, val); 1026 return; 1027 } 1028 1029 if (scope == SCOPE_GLOBAL 1030 && VarFind(name, SCOPE_CMDLINE, false) != NULL) { 1031 /* 1032 * The global variable would not be visible anywhere. 1033 * Therefore, there is no point in setting it at all. 1034 */ 1035 DEBUG3(VAR, 1036 "%s: ignoring '%s = %s' " 1037 "due to a command line variable of the same name\n", 1038 scope->name, name, val); 1039 return; 1040 } 1041 1042 /* 1043 * Only look for a variable in the given scope since anything set 1044 * here will override anything in a lower scope, so there's not much 1045 * point in searching them all. 1046 */ 1047 v = VarFind(name, scope, false); 1048 if (v == NULL) { 1049 if (scope == SCOPE_CMDLINE && !(flags & VAR_SET_NO_EXPORT)) { 1050 /* 1051 * This variable would normally prevent the same name 1052 * being added to SCOPE_GLOBAL, so delete it from 1053 * there if needed. Otherwise -V name may show the 1054 * wrong value. 1055 * 1056 * See ExistsInCmdline. 1057 */ 1058 Var *gl = VarFind(name, SCOPE_GLOBAL, false); 1059 if (gl != NULL && strcmp(gl->val.data, val) == 0) { 1060 DEBUG3(VAR, 1061 "%s: ignoring to override the global " 1062 "'%s = %s' from a command line variable " 1063 "as the value wouldn't change\n", 1064 scope->name, name, val); 1065 } else if (gl != NULL && gl->readOnlyLoud) 1066 Parse_Error(PARSE_FATAL, 1067 "Cannot override " 1068 "read-only global variable \"%s\" " 1069 "with a command line variable", name); 1070 else 1071 Var_Delete(SCOPE_GLOBAL, name); 1072 } 1073 if (strcmp(name, ".SUFFIXES") == 0) { 1074 /* special: treat as read-only */ 1075 DEBUG3(VAR, 1076 "%s: ignoring '%s = %s' as it is read-only\n", 1077 scope->name, name, val); 1078 return; 1079 } 1080 v = VarAdd(name, val, scope, flags); 1081 } else { 1082 if (v->readOnlyLoud) { 1083 Parse_Error(PARSE_FATAL, 1084 "Cannot overwrite \"%s\" as it is read-only", 1085 name); 1086 return; 1087 } 1088 if (v->readOnly && !(flags & VAR_SET_READONLY)) { 1089 DEBUG3(VAR, 1090 "%s: ignoring '%s = %s' as it is read-only\n", 1091 scope->name, name, val); 1092 return; 1093 } 1094 Buf_Clear(&v->val); 1095 Buf_AddStr(&v->val, val); 1096 1097 DEBUG4(VAR, "%s: %s = %s%s\n", 1098 scope->name, name, val, ValueDescription(val)); 1099 if (v->exported) 1100 ExportVar(name, scope, VEM_PLAIN); 1101 } 1102 1103 if (scope == SCOPE_CMDLINE) { 1104 v->fromCmd = true; 1105 1106 /* 1107 * Any variables given on the command line are automatically 1108 * exported to the environment (as per POSIX standard), except 1109 * for internals. 1110 */ 1111 if (!(flags & VAR_SET_NO_EXPORT)) { 1112 1113 /* 1114 * If requested, don't export these in the 1115 * environment individually. We still put 1116 * them in .MAKEOVERRIDES so that the 1117 * command-line settings continue to override 1118 * Makefile settings. 1119 */ 1120 if (!opts.varNoExportEnv && name[0] != '.') 1121 setenv(name, val, 1); 1122 1123 if (!(flags & VAR_SET_INTERNAL)) 1124 Global_Append(".MAKEOVERRIDES", name); 1125 } 1126 } 1127 1128 if (name[0] == '.' && strcmp(name, MAKE_SAVE_DOLLARS) == 0) 1129 save_dollars = ParseBoolean(val, save_dollars); 1130 1131 if (v != NULL) 1132 VarFreeShortLived(v); 1133 } 1134 1135 void 1136 Var_Set(GNode *scope, const char *name, const char *val) 1137 { 1138 Var_SetWithFlags(scope, name, val, VAR_SET_NONE); 1139 } 1140 1141 /* 1142 * In the scope, expand the variable name once, then create the variable or 1143 * replace its value. 1144 */ 1145 void 1146 Var_SetExpand(GNode *scope, const char *name, const char *val) 1147 { 1148 FStr varname = FStr_InitRefer(name); 1149 1150 assert(val != NULL); 1151 1152 Var_Expand(&varname, scope, VARE_EVAL); 1153 1154 if (varname.str[0] == '\0') { 1155 DEBUG4(VAR, 1156 "%s: ignoring '%s = %s' " 1157 "as the variable name '%s' expands to empty\n", 1158 scope->name, varname.str, val, name); 1159 } else 1160 Var_SetWithFlags(scope, varname.str, val, VAR_SET_NONE); 1161 1162 FStr_Done(&varname); 1163 } 1164 1165 void 1166 Global_Set(const char *name, const char *value) 1167 { 1168 Var_Set(SCOPE_GLOBAL, name, value); 1169 } 1170 1171 void 1172 Global_Delete(const char *name) 1173 { 1174 Var_Delete(SCOPE_GLOBAL, name); 1175 } 1176 1177 void 1178 Global_Set_ReadOnly(const char *name, const char *value) 1179 { 1180 Var_SetWithFlags(SCOPE_GLOBAL, name, value, VAR_SET_NONE); 1181 VarFind(name, SCOPE_GLOBAL, false)->readOnlyLoud = true; 1182 } 1183 1184 /* 1185 * Append the value to the named variable. 1186 * 1187 * If the variable doesn't exist, it is created. Otherwise a single space 1188 * and the given value are appended. 1189 */ 1190 void 1191 Var_Append(GNode *scope, const char *name, const char *val) 1192 { 1193 Var *v; 1194 1195 v = VarFind(name, scope, scope == SCOPE_GLOBAL); 1196 1197 if (v == NULL) { 1198 Var_SetWithFlags(scope, name, val, VAR_SET_NONE); 1199 } else if (v->readOnlyLoud) { 1200 Parse_Error(PARSE_FATAL, 1201 "Cannot append to \"%s\" as it is read-only", name); 1202 return; 1203 } else if (v->readOnly) { 1204 DEBUG3(VAR, "%s: ignoring '%s += %s' as it is read-only\n", 1205 scope->name, name, val); 1206 } else if (scope == SCOPE_CMDLINE || !v->fromCmd) { 1207 Buf_AddByte(&v->val, ' '); 1208 Buf_AddStr(&v->val, val); 1209 1210 DEBUG3(VAR, "%s: %s = %s\n", scope->name, name, v->val.data); 1211 1212 if (v->fromEnvironment) { 1213 /* See VarAdd. */ 1214 HashEntry *he = 1215 HashTable_CreateEntry(&scope->vars, name, NULL); 1216 HashEntry_Set(he, v); 1217 FStr_Done(&v->name); 1218 v->name = FStr_InitRefer(/* aliased to */ he->key); 1219 v->shortLived = false; 1220 v->fromEnvironment = false; 1221 } 1222 } 1223 } 1224 1225 /* 1226 * In the scope, expand the variable name once. If the variable exists in the 1227 * scope, add a space and the value, otherwise set the variable to the value. 1228 * 1229 * Appending to an environment variable only works in the global scope, that 1230 * is, for variable assignments in makefiles, but not inside conditions or the 1231 * commands of a target. 1232 */ 1233 void 1234 Var_AppendExpand(GNode *scope, const char *name, const char *val) 1235 { 1236 FStr xname = FStr_InitRefer(name); 1237 1238 assert(val != NULL); 1239 1240 Var_Expand(&xname, scope, VARE_EVAL); 1241 if (xname.str != name && xname.str[0] == '\0') 1242 DEBUG4(VAR, 1243 "%s: ignoring '%s += %s' " 1244 "as the variable name '%s' expands to empty\n", 1245 scope->name, xname.str, val, name); 1246 else 1247 Var_Append(scope, xname.str, val); 1248 1249 FStr_Done(&xname); 1250 } 1251 1252 void 1253 Global_Append(const char *name, const char *value) 1254 { 1255 Var_Append(SCOPE_GLOBAL, name, value); 1256 } 1257 1258 bool 1259 Var_Exists(GNode *scope, const char *name) 1260 { 1261 Var *v = VarFind(name, scope, true); 1262 if (v == NULL) 1263 return false; 1264 1265 VarFreeShortLived(v); 1266 return true; 1267 } 1268 1269 /* 1270 * See if the given variable exists, in the given scope or in other 1271 * fallback scopes. 1272 * 1273 * Input: 1274 * scope scope in which to start search 1275 * name name of the variable to find, is expanded once 1276 */ 1277 bool 1278 Var_ExistsExpand(GNode *scope, const char *name) 1279 { 1280 FStr varname = FStr_InitRefer(name); 1281 bool exists; 1282 1283 Var_Expand(&varname, scope, VARE_EVAL); 1284 exists = Var_Exists(scope, varname.str); 1285 FStr_Done(&varname); 1286 return exists; 1287 } 1288 1289 /* 1290 * Return the unexpanded value of the given variable in the given scope, 1291 * falling back to the command, global and environment scopes, in this order, 1292 * but see the -e option. 1293 * 1294 * Input: 1295 * name the name to find, is not expanded any further 1296 * 1297 * Results: 1298 * The value if the variable exists, NULL if it doesn't. 1299 * The value is valid until the next modification to any variable. 1300 */ 1301 FStr 1302 Var_Value(GNode *scope, const char *name) 1303 { 1304 Var *v = VarFind(name, scope, true); 1305 char *value; 1306 1307 if (v == NULL) 1308 return FStr_InitRefer(NULL); 1309 1310 if (!v->shortLived) 1311 return FStr_InitRefer(v->val.data); 1312 1313 value = v->val.data; 1314 v->val.data = NULL; 1315 VarFreeShortLived(v); 1316 1317 return FStr_InitOwn(value); 1318 } 1319 1320 /* Set or clear the read-only attribute of the variable if it exists. */ 1321 void 1322 Var_ReadOnly(const char *name, bool bf) 1323 { 1324 Var *v; 1325 1326 v = VarFind(name, SCOPE_GLOBAL, false); 1327 if (v == NULL) { 1328 DEBUG1(VAR, "Var_ReadOnly: %s not found\n", name); 1329 return; 1330 } 1331 v->readOnly = bf; 1332 DEBUG2(VAR, "Var_ReadOnly: %s %s\n", name, bf ? "true" : "false"); 1333 } 1334 1335 /* 1336 * Return the unexpanded variable value from this node, without trying to look 1337 * up the variable in any other scope. 1338 */ 1339 const char * 1340 GNode_ValueDirect(GNode *gn, const char *name) 1341 { 1342 Var *v = VarFind(name, gn, false); 1343 return v != NULL ? v->val.data : NULL; 1344 } 1345 1346 static VarEvalMode 1347 VarEvalMode_WithoutKeepDollar(VarEvalMode emode) 1348 { 1349 return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED 1350 ? VARE_EVAL_KEEP_UNDEFINED : emode; 1351 } 1352 1353 static bool 1354 VarEvalMode_ShouldEval(VarEvalMode emode) 1355 { 1356 return emode != VARE_PARSE; 1357 } 1358 1359 static bool 1360 VarEvalMode_ShouldKeepUndef(VarEvalMode emode) 1361 { 1362 return emode == VARE_EVAL_KEEP_UNDEFINED || 1363 emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED; 1364 } 1365 1366 static bool 1367 VarEvalMode_ShouldKeepDollar(VarEvalMode emode) 1368 { 1369 return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED; 1370 } 1371 1372 1373 static void 1374 SepBuf_Init(SepBuf *buf, char sep) 1375 { 1376 Buf_InitSize(&buf->buf, 32); 1377 buf->needSep = false; 1378 buf->sep = sep; 1379 } 1380 1381 static void 1382 SepBuf_Sep(SepBuf *buf) 1383 { 1384 buf->needSep = true; 1385 } 1386 1387 static void 1388 SepBuf_AddBytes(SepBuf *buf, const char *mem, size_t mem_size) 1389 { 1390 if (mem_size == 0) 1391 return; 1392 if (buf->needSep && buf->sep != '\0') { 1393 Buf_AddByte(&buf->buf, buf->sep); 1394 buf->needSep = false; 1395 } 1396 Buf_AddBytes(&buf->buf, mem, mem_size); 1397 } 1398 1399 static void 1400 SepBuf_AddRange(SepBuf *buf, const char *start, const char *end) 1401 { 1402 SepBuf_AddBytes(buf, start, (size_t)(end - start)); 1403 } 1404 1405 static void 1406 SepBuf_AddStr(SepBuf *buf, const char *str) 1407 { 1408 SepBuf_AddBytes(buf, str, strlen(str)); 1409 } 1410 1411 static void 1412 SepBuf_AddSubstring(SepBuf *buf, Substring sub) 1413 { 1414 SepBuf_AddRange(buf, sub.start, sub.end); 1415 } 1416 1417 static char * 1418 SepBuf_DoneData(SepBuf *buf) 1419 { 1420 return Buf_DoneData(&buf->buf); 1421 } 1422 1423 1424 /* 1425 * This callback for ModifyWords gets a single word from an expression 1426 * and typically adds a modification of this word to the buffer. It may also 1427 * do nothing or add several words. 1428 * 1429 * For example, when evaluating the modifier ':M*b' in ${:Ua b c:M*b}, the 1430 * callback is called 3 times, once for "a", "b" and "c". 1431 * 1432 * Some ModifyWord functions assume that they are always passed a 1433 * null-terminated substring, which is currently guaranteed but may change in 1434 * the future. 1435 */ 1436 typedef void (*ModifyWordProc)(Substring word, SepBuf *buf, void *data); 1437 1438 1439 static void 1440 ModifyWord_Head(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED) 1441 { 1442 SepBuf_AddSubstring(buf, Substring_Dirname(word)); 1443 } 1444 1445 static void 1446 ModifyWord_Tail(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED) 1447 { 1448 SepBuf_AddSubstring(buf, Substring_Basename(word)); 1449 } 1450 1451 static void 1452 ModifyWord_Suffix(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED) 1453 { 1454 const char *lastDot = Substring_FindLast(word, '.'); 1455 if (lastDot != NULL) 1456 SepBuf_AddRange(buf, lastDot + 1, word.end); 1457 } 1458 1459 static void 1460 ModifyWord_Root(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED) 1461 { 1462 const char *lastDot, *end; 1463 1464 lastDot = Substring_FindLast(word, '.'); 1465 end = lastDot != NULL ? lastDot : word.end; 1466 SepBuf_AddRange(buf, word.start, end); 1467 } 1468 1469 struct ModifyWord_SysVSubstArgs { 1470 GNode *scope; 1471 Substring lhsPrefix; 1472 bool lhsPercent; 1473 Substring lhsSuffix; 1474 const char *rhs; 1475 }; 1476 1477 static void 1478 ModifyWord_SysVSubst(Substring word, SepBuf *buf, void *data) 1479 { 1480 const struct ModifyWord_SysVSubstArgs *args = data; 1481 FStr rhs; 1482 const char *percent; 1483 1484 if (Substring_IsEmpty(word)) 1485 return; 1486 1487 if (!Substring_HasPrefix(word, args->lhsPrefix) || 1488 !Substring_HasSuffix(word, args->lhsSuffix)) { 1489 SepBuf_AddSubstring(buf, word); 1490 return; 1491 } 1492 1493 rhs = FStr_InitRefer(args->rhs); 1494 Var_Expand(&rhs, args->scope, VARE_EVAL); 1495 1496 percent = args->lhsPercent ? strchr(rhs.str, '%') : NULL; 1497 1498 if (percent != NULL) 1499 SepBuf_AddRange(buf, rhs.str, percent); 1500 if (percent != NULL || !args->lhsPercent) 1501 SepBuf_AddRange(buf, 1502 word.start + Substring_Length(args->lhsPrefix), 1503 word.end - Substring_Length(args->lhsSuffix)); 1504 SepBuf_AddStr(buf, percent != NULL ? percent + 1 : rhs.str); 1505 1506 FStr_Done(&rhs); 1507 } 1508 1509 static const char * 1510 Substring_Find(Substring haystack, Substring needle) 1511 { 1512 size_t len, needleLen, i; 1513 1514 len = Substring_Length(haystack); 1515 needleLen = Substring_Length(needle); 1516 for (i = 0; i + needleLen <= len; i++) 1517 if (memcmp(haystack.start + i, needle.start, needleLen) == 0) 1518 return haystack.start + i; 1519 return NULL; 1520 } 1521 1522 struct ModifyWord_SubstArgs { 1523 Substring lhs; 1524 Substring rhs; 1525 PatternFlags pflags; 1526 bool matched; 1527 }; 1528 1529 static void 1530 ModifyWord_Subst(Substring word, SepBuf *buf, void *data) 1531 { 1532 struct ModifyWord_SubstArgs *args = data; 1533 size_t wordLen, lhsLen; 1534 const char *match; 1535 1536 wordLen = Substring_Length(word); 1537 if (args->pflags.subOnce && args->matched) 1538 goto nosub; 1539 1540 lhsLen = Substring_Length(args->lhs); 1541 if (args->pflags.anchorStart) { 1542 if (wordLen < lhsLen || 1543 memcmp(word.start, args->lhs.start, lhsLen) != 0) 1544 goto nosub; 1545 1546 if (args->pflags.anchorEnd && wordLen != lhsLen) 1547 goto nosub; 1548 1549 /* :S,^prefix,replacement, or :S,^whole$,replacement, */ 1550 SepBuf_AddSubstring(buf, args->rhs); 1551 SepBuf_AddRange(buf, word.start + lhsLen, word.end); 1552 args->matched = true; 1553 return; 1554 } 1555 1556 if (args->pflags.anchorEnd) { 1557 if (wordLen < lhsLen) 1558 goto nosub; 1559 if (memcmp(word.end - lhsLen, args->lhs.start, lhsLen) != 0) 1560 goto nosub; 1561 1562 /* :S,suffix$,replacement, */ 1563 SepBuf_AddRange(buf, word.start, word.end - lhsLen); 1564 SepBuf_AddSubstring(buf, args->rhs); 1565 args->matched = true; 1566 return; 1567 } 1568 1569 if (Substring_IsEmpty(args->lhs)) 1570 goto nosub; 1571 1572 /* unanchored case, may match more than once */ 1573 while ((match = Substring_Find(word, args->lhs)) != NULL) { 1574 SepBuf_AddRange(buf, word.start, match); 1575 SepBuf_AddSubstring(buf, args->rhs); 1576 args->matched = true; 1577 word.start = match + lhsLen; 1578 if (Substring_IsEmpty(word) || !args->pflags.subGlobal) 1579 break; 1580 } 1581 nosub: 1582 SepBuf_AddSubstring(buf, word); 1583 } 1584 1585 /* Print the error caused by a regcomp or regexec call. */ 1586 static void 1587 RegexError(int reerr, const regex_t *pat, const char *str) 1588 { 1589 size_t errlen = regerror(reerr, pat, NULL, 0); 1590 char *errbuf = bmake_malloc(errlen); 1591 regerror(reerr, pat, errbuf, errlen); 1592 Parse_Error(PARSE_FATAL, "%s: %s", str, errbuf); 1593 free(errbuf); 1594 } 1595 1596 /* In the modifier ':C', replace a backreference from \0 to \9. */ 1597 static void 1598 RegexReplaceBackref(char ref, SepBuf *buf, const char *wp, 1599 const regmatch_t *m, size_t nsub) 1600 { 1601 unsigned n = (unsigned)ref - '0'; 1602 1603 if (n >= nsub) 1604 Parse_Error(PARSE_FATAL, "No subexpression \\%u", n); 1605 else if (m[n].rm_so == -1) { 1606 if (opts.strict) 1607 Error("No match for subexpression \\%u", n); 1608 } else { 1609 SepBuf_AddRange(buf, 1610 wp + (size_t)m[n].rm_so, 1611 wp + (size_t)m[n].rm_eo); 1612 } 1613 } 1614 1615 /* 1616 * The regular expression matches the word; now add the replacement to the 1617 * buffer, taking back-references from 'wp'. 1618 */ 1619 static void 1620 RegexReplace(Substring replace, SepBuf *buf, const char *wp, 1621 const regmatch_t *m, size_t nsub) 1622 { 1623 const char *rp; 1624 1625 for (rp = replace.start; rp != replace.end; rp++) { 1626 if (*rp == '\\' && rp + 1 != replace.end && 1627 (rp[1] == '&' || rp[1] == '\\')) 1628 SepBuf_AddBytes(buf, ++rp, 1); 1629 else if (*rp == '\\' && rp + 1 != replace.end && 1630 ch_isdigit(rp[1])) 1631 RegexReplaceBackref(*++rp, buf, wp, m, nsub); 1632 else if (*rp == '&') { 1633 SepBuf_AddRange(buf, 1634 wp + (size_t)m[0].rm_so, 1635 wp + (size_t)m[0].rm_eo); 1636 } else 1637 SepBuf_AddBytes(buf, rp, 1); 1638 } 1639 } 1640 1641 struct ModifyWord_SubstRegexArgs { 1642 regex_t re; 1643 size_t nsub; 1644 Substring replace; 1645 PatternFlags pflags; 1646 bool matched; 1647 }; 1648 1649 static void 1650 ModifyWord_SubstRegex(Substring word, SepBuf *buf, void *data) 1651 { 1652 struct ModifyWord_SubstRegexArgs *args = data; 1653 int xrv; 1654 const char *wp; 1655 int flags = 0; 1656 regmatch_t m[10]; 1657 1658 assert(word.end[0] == '\0'); /* assume null-terminated word */ 1659 wp = word.start; 1660 if (args->pflags.subOnce && args->matched) 1661 goto no_match; 1662 1663 again: 1664 xrv = regexec(&args->re, wp, args->nsub, m, flags); 1665 if (xrv == 0) 1666 goto ok; 1667 if (xrv != REG_NOMATCH) 1668 RegexError(xrv, &args->re, "Unexpected regex error"); 1669 no_match: 1670 SepBuf_AddRange(buf, wp, word.end); 1671 return; 1672 1673 ok: 1674 args->matched = true; 1675 SepBuf_AddBytes(buf, wp, (size_t)m[0].rm_so); 1676 1677 RegexReplace(args->replace, buf, wp, m, args->nsub); 1678 1679 wp += (size_t)m[0].rm_eo; 1680 if (args->pflags.subGlobal) { 1681 flags |= REG_NOTBOL; 1682 if (m[0].rm_so == 0 && m[0].rm_eo == 0 && *wp != '\0') { 1683 SepBuf_AddBytes(buf, wp, 1); 1684 wp++; 1685 } 1686 if (*wp != '\0') 1687 goto again; 1688 } 1689 if (*wp != '\0') 1690 SepBuf_AddStr(buf, wp); 1691 } 1692 1693 1694 struct ModifyWord_LoopArgs { 1695 GNode *scope; 1696 const char *var; /* name of the temporary variable */ 1697 const char *body; /* string to expand */ 1698 VarEvalMode emode; 1699 }; 1700 1701 static void 1702 ModifyWord_Loop(Substring word, SepBuf *buf, void *data) 1703 { 1704 const struct ModifyWord_LoopArgs *args; 1705 char *s; 1706 1707 if (Substring_IsEmpty(word)) 1708 return; 1709 1710 args = data; 1711 assert(word.end[0] == '\0'); /* assume null-terminated word */ 1712 Var_SetWithFlags(args->scope, args->var, word.start, 1713 VAR_SET_NO_EXPORT); 1714 s = Var_Subst(args->body, args->scope, args->emode); 1715 /* TODO: handle errors */ 1716 1717 DEBUG2(VAR, "ModifyWord_Loop: expand \"%s\" to \"%s\"\n", 1718 args->body, s); 1719 1720 if (s[0] == '\n' || Buf_EndsWith(&buf->buf, '\n')) 1721 buf->needSep = false; 1722 SepBuf_AddStr(buf, s); 1723 free(s); 1724 } 1725 1726 1727 /* 1728 * The :[first..last] modifier selects words from the expression. 1729 * It can also reverse the words. 1730 */ 1731 static char * 1732 VarSelectWords(const char *str, int first, int last, 1733 char sep, bool oneBigWord) 1734 { 1735 SubstringWords words; 1736 int len, start, end, step; 1737 int i; 1738 1739 SepBuf buf; 1740 SepBuf_Init(&buf, sep); 1741 1742 if (oneBigWord) { 1743 /* fake what Substring_Words() would do */ 1744 words.len = 1; 1745 words.words = bmake_malloc(sizeof(words.words[0])); 1746 words.freeIt = NULL; 1747 words.words[0] = Substring_InitStr(str); /* no need to copy */ 1748 } else { 1749 words = Substring_Words(str, false); 1750 } 1751 1752 /* Convert -1 to len, -2 to (len - 1), etc. */ 1753 len = (int)words.len; 1754 if (first < 0) 1755 first += len + 1; 1756 if (last < 0) 1757 last += len + 1; 1758 1759 if (first > last) { 1760 start = (first > len ? len : first) - 1; 1761 end = last < 1 ? 0 : last - 1; 1762 step = -1; 1763 } else { 1764 start = first < 1 ? 0 : first - 1; 1765 end = last > len ? len : last; 1766 step = 1; 1767 } 1768 1769 for (i = start; (step < 0) == (i >= end); i += step) { 1770 SepBuf_AddSubstring(&buf, words.words[i]); 1771 SepBuf_Sep(&buf); 1772 } 1773 1774 SubstringWords_Free(words); 1775 1776 return SepBuf_DoneData(&buf); 1777 } 1778 1779 1780 static void 1781 ModifyWord_Realpath(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED) 1782 { 1783 struct stat st; 1784 char rbuf[MAXPATHLEN]; 1785 const char *rp; 1786 1787 assert(word.end[0] == '\0'); /* assume null-terminated word */ 1788 rp = cached_realpath(word.start, rbuf); 1789 if (rp != NULL && *rp == '/' && stat(rp, &st) == 0) 1790 SepBuf_AddStr(buf, rp); 1791 else 1792 SepBuf_AddSubstring(buf, word); 1793 } 1794 1795 1796 static char * 1797 SubstringWords_JoinFree(SubstringWords words) 1798 { 1799 Buffer buf; 1800 size_t i; 1801 1802 Buf_Init(&buf); 1803 1804 for (i = 0; i < words.len; i++) { 1805 if (i != 0) { 1806 /* 1807 * XXX: Use ch->sep instead of ' ', for consistency. 1808 */ 1809 Buf_AddByte(&buf, ' '); 1810 } 1811 Buf_AddRange(&buf, words.words[i].start, words.words[i].end); 1812 } 1813 1814 SubstringWords_Free(words); 1815 1816 return Buf_DoneData(&buf); 1817 } 1818 1819 1820 /* 1821 * Quote shell meta-characters and space characters in the string. 1822 * If quoteDollar is set, also quote and double any '$' characters. 1823 */ 1824 static void 1825 QuoteShell(const char *str, bool quoteDollar, LazyBuf *buf) 1826 { 1827 const char *p; 1828 1829 LazyBuf_Init(buf, str); 1830 for (p = str; *p != '\0'; p++) { 1831 if (*p == '\n') { 1832 const char *newline = Shell_GetNewline(); 1833 if (newline == NULL) 1834 newline = "\\\n"; 1835 LazyBuf_AddStr(buf, newline); 1836 continue; 1837 } 1838 if (ch_isspace(*p) || ch_is_shell_meta(*p)) 1839 LazyBuf_Add(buf, '\\'); 1840 LazyBuf_Add(buf, *p); 1841 if (quoteDollar && *p == '$') 1842 LazyBuf_AddStr(buf, "\\$"); 1843 } 1844 } 1845 1846 /* 1847 * Compute the 32-bit hash of the given string, using the MurmurHash3 1848 * algorithm. Output is encoded as 8 hex digits, in Little Endian order. 1849 */ 1850 static char * 1851 Hash(const char *str) 1852 { 1853 static const char hexdigits[] = "0123456789abcdef"; 1854 const unsigned char *ustr = (const unsigned char *)str; 1855 1856 uint32_t h = 0x971e137bU; 1857 uint32_t c1 = 0x95543787U; 1858 uint32_t c2 = 0x2ad7eb25U; 1859 size_t len2 = strlen(str); 1860 1861 char *buf; 1862 size_t i; 1863 1864 size_t len; 1865 for (len = len2; len != 0;) { 1866 uint32_t k = 0; 1867 switch (len) { 1868 default: 1869 k = ((uint32_t)ustr[3] << 24) | 1870 ((uint32_t)ustr[2] << 16) | 1871 ((uint32_t)ustr[1] << 8) | 1872 (uint32_t)ustr[0]; 1873 len -= 4; 1874 ustr += 4; 1875 break; 1876 case 3: 1877 k |= (uint32_t)ustr[2] << 16; 1878 /* FALLTHROUGH */ 1879 case 2: 1880 k |= (uint32_t)ustr[1] << 8; 1881 /* FALLTHROUGH */ 1882 case 1: 1883 k |= (uint32_t)ustr[0]; 1884 len = 0; 1885 } 1886 c1 = c1 * 5 + 0x7b7d159cU; 1887 c2 = c2 * 5 + 0x6bce6396U; 1888 k *= c1; 1889 k = (k << 11) ^ (k >> 21); 1890 k *= c2; 1891 h = (h << 13) ^ (h >> 19); 1892 h = h * 5 + 0x52dce729U; 1893 h ^= k; 1894 } 1895 h ^= (uint32_t)len2; 1896 h *= 0x85ebca6b; 1897 h ^= h >> 13; 1898 h *= 0xc2b2ae35; 1899 h ^= h >> 16; 1900 1901 buf = bmake_malloc(9); 1902 for (i = 0; i < 8; i++) { 1903 buf[i] = hexdigits[h & 0x0f]; 1904 h >>= 4; 1905 } 1906 buf[8] = '\0'; 1907 return buf; 1908 } 1909 1910 static char * 1911 FormatTime(const char *fmt, time_t t, bool gmt) 1912 { 1913 char buf[BUFSIZ]; 1914 1915 if (t == 0) 1916 time(&t); 1917 if (*fmt == '\0') 1918 fmt = "%c"; 1919 if (gmt && strchr(fmt, 's') != NULL) { 1920 /* strftime "%s" only works with localtime, not with gmtime. */ 1921 const char *prev_tz_env = getenv("TZ"); 1922 char *prev_tz = prev_tz_env != NULL 1923 ? bmake_strdup(prev_tz_env) : NULL; 1924 setenv("TZ", "UTC", 1); 1925 strftime(buf, sizeof buf, fmt, localtime(&t)); 1926 if (prev_tz != NULL) { 1927 setenv("TZ", prev_tz, 1); 1928 free(prev_tz); 1929 } else 1930 unsetenv("TZ"); 1931 } else 1932 strftime(buf, sizeof buf, fmt, (gmt ? gmtime : localtime)(&t)); 1933 1934 buf[sizeof buf - 1] = '\0'; 1935 return bmake_strdup(buf); 1936 } 1937 1938 /* 1939 * The ApplyModifier functions take an expression that is being evaluated. 1940 * Their task is to apply a single modifier to the expression. This involves 1941 * parsing the modifier, evaluating it and finally updating the value of the 1942 * expression. 1943 * 1944 * Parsing the modifier 1945 * 1946 * If parsing succeeds, the parsing position *pp is updated to point to the 1947 * first character following the modifier, which typically is either ':' or 1948 * ch->endc. The modifier doesn't have to check for this delimiter character, 1949 * this is done by ApplyModifiers. 1950 * 1951 * XXX: As of 2020-11-15, some modifiers such as :S, :C, :P, :L do not 1952 * need to be followed by a ':' or endc; this was an unintended mistake. 1953 * 1954 * If parsing fails because of a missing delimiter after a modifier part (as 1955 * in the :S, :C or :@ modifiers), return AMR_CLEANUP. 1956 * 1957 * If parsing fails because the modifier is unknown, return AMR_UNKNOWN to 1958 * try the SysV modifier ':from=to' as fallback. This should only be 1959 * done as long as there have been no side effects from evaluating nested 1960 * variables, to avoid evaluating them more than once. In this case, the 1961 * parsing position may or may not be updated. (XXX: Why not? The original 1962 * parsing position is well-known in ApplyModifiers.) 1963 * 1964 * If parsing fails and the SysV modifier ${VAR:from=to} should not be used 1965 * as a fallback, issue an error message using Parse_Error (preferred over 1966 * Error) and then return AMR_CLEANUP, which stops processing the expression. 1967 * (XXX: As of 2020-08-23, evaluation of the string continues nevertheless 1968 * after skipping a few bytes, which results in garbage.) 1969 * 1970 * Evaluating the modifier 1971 * 1972 * After parsing, the modifier is evaluated. The side effects from evaluating 1973 * nested expressions in the modifier text often already happen 1974 * during parsing though. For most modifiers this doesn't matter since their 1975 * only noticeable effect is that they update the value of the expression. 1976 * Some modifiers such as ':sh' or '::=' have noticeable side effects though. 1977 * 1978 * Evaluating the modifier usually takes the current value of the 1979 * expression from ch->expr->value, or the variable name from ch->var->name, 1980 * and stores the result back in ch->expr->value via Expr_SetValueOwn or 1981 * Expr_SetValueRefer. 1982 * 1983 * Some modifiers such as :D and :U turn undefined expressions into defined 1984 * expressions using Expr_Define. 1985 */ 1986 1987 typedef enum ExprDefined { 1988 /* The expression is based on a regular, defined variable. */ 1989 DEF_REGULAR, 1990 /* The expression is based on an undefined variable. */ 1991 DEF_UNDEF, 1992 /* 1993 * The expression started as an undefined expression, but one 1994 * of the modifiers (such as ':D' or ':U') has turned the expression 1995 * from undefined to defined. 1996 */ 1997 DEF_DEFINED 1998 } ExprDefined; 1999 2000 static const char ExprDefined_Name[][10] = { 2001 "regular", 2002 "undefined", 2003 "defined" 2004 }; 2005 2006 #if __STDC_VERSION__ >= 199901L 2007 #define const_member const 2008 #else 2009 #define const_member /* no const possible */ 2010 #endif 2011 2012 /* An expression based on a variable, such as $@ or ${VAR:Mpattern:Q}. */ 2013 typedef struct Expr { 2014 const char *name; 2015 FStr value; 2016 VarEvalMode const_member emode; 2017 GNode *const_member scope; 2018 ExprDefined defined; 2019 } Expr; 2020 2021 /* 2022 * The status of applying a chain of modifiers to an expression. 2023 * 2024 * The modifiers of an expression are broken into chains of modifiers, 2025 * starting a new nested chain whenever an indirect modifier starts. There 2026 * are at most 2 nesting levels: the outer one for the direct modifiers, and 2027 * the inner one for the indirect modifiers. 2028 * 2029 * For example, the expression ${VAR:M*:${IND1}:${IND2}:O:u} has 3 chains of 2030 * modifiers: 2031 * 2032 * Chain 1 starts with the single modifier ':M*'. 2033 * Chain 2 starts with all modifiers from ${IND1}. 2034 * Chain 2 ends at the ':' between ${IND1} and ${IND2}. 2035 * Chain 3 starts with all modifiers from ${IND2}. 2036 * Chain 3 ends at the ':' after ${IND2}. 2037 * Chain 1 continues with the 2 modifiers ':O' and ':u'. 2038 * Chain 1 ends at the final '}' of the expression. 2039 * 2040 * After such a chain ends, its properties no longer have any effect. 2041 * 2042 * See varmod-indirect.mk. 2043 */ 2044 typedef struct ModChain { 2045 Expr *expr; 2046 /* '\0' or '{' or '(' */ 2047 char const_member startc; 2048 /* '\0' or '}' or ')' */ 2049 char const_member endc; 2050 /* Separator when joining words (see the :ts modifier). */ 2051 char sep; 2052 /* 2053 * Whether some modifiers that otherwise split the variable value 2054 * into words, like :S and :C, treat the variable value as a single 2055 * big word, possibly containing spaces. 2056 */ 2057 bool oneBigWord; 2058 } ModChain; 2059 2060 static void 2061 Expr_Define(Expr *expr) 2062 { 2063 if (expr->defined == DEF_UNDEF) 2064 expr->defined = DEF_DEFINED; 2065 } 2066 2067 static const char * 2068 Expr_Str(const Expr *expr) 2069 { 2070 return expr->value.str; 2071 } 2072 2073 static SubstringWords 2074 Expr_Words(const Expr *expr) 2075 { 2076 return Substring_Words(Expr_Str(expr), false); 2077 } 2078 2079 static void 2080 Expr_SetValue(Expr *expr, FStr value) 2081 { 2082 FStr_Done(&expr->value); 2083 expr->value = value; 2084 } 2085 2086 static void 2087 Expr_SetValueOwn(Expr *expr, char *value) 2088 { 2089 Expr_SetValue(expr, FStr_InitOwn(value)); 2090 } 2091 2092 static void 2093 Expr_SetValueRefer(Expr *expr, const char *value) 2094 { 2095 Expr_SetValue(expr, FStr_InitRefer(value)); 2096 } 2097 2098 static bool 2099 Expr_ShouldEval(const Expr *expr) 2100 { 2101 return VarEvalMode_ShouldEval(expr->emode); 2102 } 2103 2104 static bool 2105 ModChain_ShouldEval(const ModChain *ch) 2106 { 2107 return Expr_ShouldEval(ch->expr); 2108 } 2109 2110 2111 typedef enum ApplyModifierResult { 2112 /* Continue parsing */ 2113 AMR_OK, 2114 /* Not a match, try the ':from=to' modifier as well. */ 2115 AMR_UNKNOWN, 2116 /* Error out without further error message. */ 2117 AMR_CLEANUP 2118 } ApplyModifierResult; 2119 2120 /* 2121 * Allow backslashes to escape the delimiters, $, and \, but don't touch other 2122 * backslashes. 2123 */ 2124 static bool 2125 IsEscapedModifierPart(const char *p, char end1, char end2, 2126 struct ModifyWord_SubstArgs *subst) 2127 { 2128 if (p[0] != '\\' || p[1] == '\0') 2129 return false; 2130 if (p[1] == end1 || p[1] == end2 || p[1] == '\\' || p[1] == '$') 2131 return true; 2132 return p[1] == '&' && subst != NULL; 2133 } 2134 2135 /* 2136 * In a part of a modifier, parse a subexpression and evaluate it. 2137 */ 2138 static void 2139 ParseModifierPartExpr(const char **pp, LazyBuf *part, const ModChain *ch, 2140 VarEvalMode emode) 2141 { 2142 const char *p = *pp; 2143 FStr nested_val = Var_Parse(&p, ch->expr->scope, 2144 VarEvalMode_WithoutKeepDollar(emode)); 2145 /* TODO: handle errors */ 2146 if (VarEvalMode_ShouldEval(emode)) 2147 LazyBuf_AddStr(part, nested_val.str); 2148 else 2149 LazyBuf_AddSubstring(part, Substring_Init(*pp, p)); 2150 FStr_Done(&nested_val); 2151 *pp = p; 2152 } 2153 2154 /* 2155 * In a part of a modifier, parse some text that looks like a subexpression. 2156 * If the text starts with '$(', any '(' and ')' must be balanced. 2157 * If the text starts with '${', any '{' and '}' must be balanced. 2158 * If the text starts with '$', that '$' is copied verbatim, it is not parsed 2159 * as a short-name expression. 2160 */ 2161 static void 2162 ParseModifierPartBalanced(const char **pp, LazyBuf *part) 2163 { 2164 const char *p = *pp; 2165 2166 if (p[1] == '(' || p[1] == '{') { 2167 char startc = p[1]; 2168 int endc = startc == '(' ? ')' : '}'; 2169 int depth = 1; 2170 2171 for (p += 2; *p != '\0' && depth > 0; p++) { 2172 if (p[-1] != '\\') { 2173 if (*p == startc) 2174 depth++; 2175 if (*p == endc) 2176 depth--; 2177 } 2178 } 2179 LazyBuf_AddSubstring(part, Substring_Init(*pp, p)); 2180 *pp = p; 2181 } else { 2182 LazyBuf_Add(part, *p); 2183 *pp = p + 1; 2184 } 2185 } 2186 2187 /* 2188 * Parse a part of a modifier such as the "from" and "to" in :S/from/to/ or 2189 * the "var" or "replacement ${var}" in :@var@replacement ${var}@, up to and 2190 * including the next unescaped delimiter. The delimiter, as well as the 2191 * backslash or the dollar, can be escaped with a backslash. 2192 * 2193 * Return true if parsing succeeded, together with the parsed (and possibly 2194 * expanded) part. In that case, pp points right after the delimiter. The 2195 * delimiter is not included in the part though. 2196 */ 2197 static bool 2198 ParseModifierPart( 2199 /* The parsing position, updated upon return */ 2200 const char **pp, 2201 char end1, 2202 char end2, 2203 /* Mode for evaluating nested expressions. */ 2204 VarEvalMode emode, 2205 ModChain *ch, 2206 LazyBuf *part, 2207 /* 2208 * For the first part of the ':S' modifier, set anchorEnd if the last 2209 * character of the pattern is a $. 2210 */ 2211 PatternFlags *out_pflags, 2212 /* 2213 * For the second part of the ':S' modifier, allow ampersands to be 2214 * escaped and replace unescaped ampersands with subst->lhs. 2215 */ 2216 struct ModifyWord_SubstArgs *subst 2217 ) 2218 { 2219 const char *p = *pp; 2220 2221 LazyBuf_Init(part, p); 2222 while (*p != '\0' && *p != end1 && *p != end2) { 2223 if (IsEscapedModifierPart(p, end1, end2, subst)) { 2224 LazyBuf_Add(part, p[1]); 2225 p += 2; 2226 } else if (*p != '$') { /* Unescaped, simple text */ 2227 if (subst != NULL && *p == '&') 2228 LazyBuf_AddSubstring(part, subst->lhs); 2229 else 2230 LazyBuf_Add(part, *p); 2231 p++; 2232 } else if (p[1] == end2) { /* Unescaped '$' at end */ 2233 if (out_pflags != NULL) 2234 out_pflags->anchorEnd = true; 2235 else 2236 LazyBuf_Add(part, *p); 2237 p++; 2238 } else if (emode == VARE_PARSE_BALANCED) 2239 ParseModifierPartBalanced(&p, part); 2240 else 2241 ParseModifierPartExpr(&p, part, ch, emode); 2242 } 2243 2244 if (*p != end1 && *p != end2) { 2245 Parse_Error(PARSE_FATAL, 2246 "Unfinished modifier after \"%.*s\", expecting \"%c\"", 2247 (int)(p - *pp), *pp, end2); 2248 LazyBuf_Done(part); 2249 *pp = p; 2250 return false; 2251 } 2252 *pp = p; 2253 if (end1 == end2) 2254 (*pp)++; 2255 2256 { 2257 Substring sub = LazyBuf_Get(part); 2258 DEBUG2(VAR, "Modifier part: \"%.*s\"\n", 2259 (int)Substring_Length(sub), sub.start); 2260 } 2261 2262 return true; 2263 } 2264 2265 MAKE_INLINE bool 2266 IsDelimiter(char c, const ModChain *ch) 2267 { 2268 return c == ':' || c == ch->endc || c == '\0'; 2269 } 2270 2271 /* Test whether mod starts with modname, followed by a delimiter. */ 2272 MAKE_INLINE bool 2273 ModMatch(const char *mod, const char *modname, const ModChain *ch) 2274 { 2275 size_t n = strlen(modname); 2276 return strncmp(mod, modname, n) == 0 && IsDelimiter(mod[n], ch); 2277 } 2278 2279 /* Test whether mod starts with modname, followed by a delimiter or '='. */ 2280 MAKE_INLINE bool 2281 ModMatchEq(const char *mod, const char *modname, const ModChain *ch) 2282 { 2283 size_t n = strlen(modname); 2284 return strncmp(mod, modname, n) == 0 && 2285 (IsDelimiter(mod[n], ch) || mod[n] == '='); 2286 } 2287 2288 static bool 2289 TryParseIntBase0(const char **pp, int *out_num) 2290 { 2291 char *end; 2292 long n; 2293 2294 errno = 0; 2295 n = strtol(*pp, &end, 0); 2296 2297 if (end == *pp) 2298 return false; 2299 if ((n == LONG_MIN || n == LONG_MAX) && errno == ERANGE) 2300 return false; 2301 if (n < INT_MIN || n > INT_MAX) 2302 return false; 2303 2304 *pp = end; 2305 *out_num = (int)n; 2306 return true; 2307 } 2308 2309 static bool 2310 TryParseSize(const char **pp, size_t *out_num) 2311 { 2312 char *end; 2313 unsigned long n; 2314 2315 if (!ch_isdigit(**pp)) 2316 return false; 2317 2318 errno = 0; 2319 n = strtoul(*pp, &end, 10); 2320 if (n == ULONG_MAX && errno == ERANGE) 2321 return false; 2322 if (n > SIZE_MAX) 2323 return false; 2324 2325 *pp = end; 2326 *out_num = (size_t)n; 2327 return true; 2328 } 2329 2330 static bool 2331 TryParseChar(const char **pp, int base, char *out_ch) 2332 { 2333 char *end; 2334 unsigned long n; 2335 2336 if (!ch_isalnum(**pp)) 2337 return false; 2338 2339 errno = 0; 2340 n = strtoul(*pp, &end, base); 2341 if (n == ULONG_MAX && errno == ERANGE) 2342 return false; 2343 if (n > UCHAR_MAX) 2344 return false; 2345 2346 *pp = end; 2347 *out_ch = (char)n; 2348 return true; 2349 } 2350 2351 /* 2352 * Modify each word of the expression using the given function and place the 2353 * result back in the expression. 2354 */ 2355 static void 2356 ModifyWords(ModChain *ch, 2357 ModifyWordProc modifyWord, void *modifyWord_args, 2358 bool oneBigWord) 2359 { 2360 Expr *expr = ch->expr; 2361 const char *val = Expr_Str(expr); 2362 SepBuf result; 2363 SubstringWords words; 2364 size_t i; 2365 Substring word; 2366 2367 if (!ModChain_ShouldEval(ch)) 2368 return; 2369 2370 if (oneBigWord) { 2371 SepBuf_Init(&result, ch->sep); 2372 /* XXX: performance: Substring_InitStr calls strlen */ 2373 word = Substring_InitStr(val); 2374 modifyWord(word, &result, modifyWord_args); 2375 goto done; 2376 } 2377 2378 words = Substring_Words(val, false); 2379 2380 DEBUG3(VAR, "ModifyWords: split \"%s\" into %u %s\n", 2381 val, (unsigned)words.len, words.len != 1 ? "words" : "word"); 2382 2383 SepBuf_Init(&result, ch->sep); 2384 for (i = 0; i < words.len; i++) { 2385 modifyWord(words.words[i], &result, modifyWord_args); 2386 if (result.buf.len > 0) 2387 SepBuf_Sep(&result); 2388 } 2389 2390 SubstringWords_Free(words); 2391 2392 done: 2393 Expr_SetValueOwn(expr, SepBuf_DoneData(&result)); 2394 } 2395 2396 /* :@var (at) ...${var}...@ */ 2397 static ApplyModifierResult 2398 ApplyModifier_Loop(const char **pp, ModChain *ch) 2399 { 2400 Expr *expr = ch->expr; 2401 struct ModifyWord_LoopArgs args; 2402 char prev_sep; 2403 LazyBuf tvarBuf, strBuf; 2404 FStr tvar, str; 2405 2406 args.scope = expr->scope; 2407 2408 (*pp)++; /* Skip the first '@' */ 2409 if (!ParseModifierPart(pp, '@', '@', VARE_PARSE, 2410 ch, &tvarBuf, NULL, NULL)) 2411 return AMR_CLEANUP; 2412 tvar = LazyBuf_DoneGet(&tvarBuf); 2413 args.var = tvar.str; 2414 if (strchr(args.var, '$') != NULL) { 2415 Parse_Error(PARSE_FATAL, 2416 "In the :@ modifier, the variable name \"%s\" " 2417 "must not contain a dollar", 2418 args.var); 2419 goto cleanup_tvar; 2420 } 2421 2422 if (!ParseModifierPart(pp, '@', '@', VARE_PARSE_BALANCED, 2423 ch, &strBuf, NULL, NULL)) 2424 goto cleanup_tvar; 2425 str = LazyBuf_DoneGet(&strBuf); 2426 args.body = str.str; 2427 2428 if (!Expr_ShouldEval(expr)) 2429 goto done; 2430 2431 args.emode = VarEvalMode_WithoutKeepDollar(expr->emode); 2432 prev_sep = ch->sep; 2433 ch->sep = ' '; /* XXX: should be ch->sep for consistency */ 2434 ModifyWords(ch, ModifyWord_Loop, &args, ch->oneBigWord); 2435 ch->sep = prev_sep; 2436 /* XXX: Consider restoring the previous value instead of deleting. */ 2437 Var_Delete(expr->scope, args.var); 2438 2439 done: 2440 FStr_Done(&tvar); 2441 FStr_Done(&str); 2442 return AMR_OK; 2443 2444 cleanup_tvar: 2445 FStr_Done(&tvar); 2446 return AMR_CLEANUP; 2447 } 2448 2449 static void 2450 ParseModifier_Defined(const char **pp, ModChain *ch, bool shouldEval, 2451 LazyBuf *buf) 2452 { 2453 const char *p; 2454 2455 p = *pp + 1; 2456 LazyBuf_Init(buf, p); 2457 while (!IsDelimiter(*p, ch)) { 2458 2459 /* 2460 * XXX: This code is similar to the one in Var_Parse. See if 2461 * the code can be merged. See also ParseModifier_Match and 2462 * ParseModifierPart. 2463 */ 2464 2465 /* See Buf_AddEscaped in for.c for the counterpart. */ 2466 if (*p == '\\') { 2467 char c = p[1]; 2468 if ((IsDelimiter(c, ch) && c != '\0') || 2469 c == '$' || c == '\\') { 2470 if (shouldEval) 2471 LazyBuf_Add(buf, c); 2472 p += 2; 2473 continue; 2474 } 2475 } 2476 2477 if (*p == '$') { 2478 FStr val = Var_Parse(&p, ch->expr->scope, 2479 shouldEval ? ch->expr->emode : VARE_PARSE); 2480 /* TODO: handle errors */ 2481 if (shouldEval) 2482 LazyBuf_AddStr(buf, val.str); 2483 FStr_Done(&val); 2484 continue; 2485 } 2486 2487 if (shouldEval) 2488 LazyBuf_Add(buf, *p); 2489 p++; 2490 } 2491 *pp = p; 2492 } 2493 2494 /* :Ddefined or :Uundefined */ 2495 static ApplyModifierResult 2496 ApplyModifier_Defined(const char **pp, ModChain *ch) 2497 { 2498 Expr *expr = ch->expr; 2499 LazyBuf buf; 2500 bool shouldEval = 2501 Expr_ShouldEval(expr) && 2502 (**pp == 'D') == (expr->defined == DEF_REGULAR); 2503 2504 ParseModifier_Defined(pp, ch, shouldEval, &buf); 2505 2506 Expr_Define(expr); 2507 if (shouldEval) 2508 Expr_SetValue(expr, Substring_Str(LazyBuf_Get(&buf))); 2509 LazyBuf_Done(&buf); 2510 2511 return AMR_OK; 2512 } 2513 2514 /* :L */ 2515 static ApplyModifierResult 2516 ApplyModifier_Literal(const char **pp, ModChain *ch) 2517 { 2518 Expr *expr = ch->expr; 2519 2520 (*pp)++; 2521 2522 if (Expr_ShouldEval(expr)) { 2523 Expr_Define(expr); 2524 Expr_SetValueOwn(expr, bmake_strdup(expr->name)); 2525 } 2526 2527 return AMR_OK; 2528 } 2529 2530 static bool 2531 TryParseTime(const char **pp, time_t *out_time) 2532 { 2533 char *end; 2534 unsigned long n; 2535 2536 if (!ch_isdigit(**pp)) 2537 return false; 2538 2539 errno = 0; 2540 n = strtoul(*pp, &end, 10); 2541 if (n == ULONG_MAX && errno == ERANGE) 2542 return false; 2543 2544 *pp = end; 2545 *out_time = (time_t)n; /* ignore possible truncation for now */ 2546 return true; 2547 } 2548 2549 /* :gmtime and :localtime */ 2550 static ApplyModifierResult 2551 ApplyModifier_Time(const char **pp, ModChain *ch) 2552 { 2553 Expr *expr; 2554 time_t t; 2555 const char *args; 2556 const char *mod = *pp; 2557 bool gmt = mod[0] == 'g'; 2558 2559 if (!ModMatchEq(mod, gmt ? "gmtime" : "localtime", ch)) 2560 return AMR_UNKNOWN; 2561 args = mod + (gmt ? 6 : 9); 2562 2563 if (args[0] == '=') { 2564 const char *p = args + 1; 2565 LazyBuf buf; 2566 FStr arg; 2567 if (!ParseModifierPart(&p, ':', ch->endc, ch->expr->emode, 2568 ch, &buf, NULL, NULL)) 2569 return AMR_CLEANUP; 2570 arg = LazyBuf_DoneGet(&buf); 2571 if (ModChain_ShouldEval(ch)) { 2572 const char *arg_p = arg.str; 2573 if (!TryParseTime(&arg_p, &t) || *arg_p != '\0') { 2574 Parse_Error(PARSE_FATAL, 2575 "Invalid time value \"%s\"", arg.str); 2576 FStr_Done(&arg); 2577 return AMR_CLEANUP; 2578 } 2579 } else 2580 t = 0; 2581 FStr_Done(&arg); 2582 *pp = p; 2583 } else { 2584 t = 0; 2585 *pp = args; 2586 } 2587 2588 expr = ch->expr; 2589 if (Expr_ShouldEval(expr)) 2590 Expr_SetValueOwn(expr, FormatTime(Expr_Str(expr), t, gmt)); 2591 2592 return AMR_OK; 2593 } 2594 2595 /* :hash */ 2596 static ApplyModifierResult 2597 ApplyModifier_Hash(const char **pp, ModChain *ch) 2598 { 2599 if (!ModMatch(*pp, "hash", ch)) 2600 return AMR_UNKNOWN; 2601 *pp += 4; 2602 2603 if (ModChain_ShouldEval(ch)) 2604 Expr_SetValueOwn(ch->expr, Hash(Expr_Str(ch->expr))); 2605 2606 return AMR_OK; 2607 } 2608 2609 /* :P */ 2610 static ApplyModifierResult 2611 ApplyModifier_Path(const char **pp, ModChain *ch) 2612 { 2613 Expr *expr = ch->expr; 2614 GNode *gn; 2615 char *path; 2616 2617 (*pp)++; 2618 2619 if (!Expr_ShouldEval(expr)) 2620 return AMR_OK; 2621 2622 Expr_Define(expr); 2623 2624 gn = Targ_FindNode(expr->name); 2625 if (gn == NULL || gn->type & OP_NOPATH) 2626 path = NULL; 2627 else if (gn->path != NULL) 2628 path = bmake_strdup(gn->path); 2629 else { 2630 SearchPath *searchPath = Suff_FindPath(gn); 2631 path = Dir_FindFile(expr->name, searchPath); 2632 } 2633 if (path == NULL) 2634 path = bmake_strdup(expr->name); 2635 Expr_SetValueOwn(expr, path); 2636 2637 return AMR_OK; 2638 } 2639 2640 /* :!cmd! */ 2641 static ApplyModifierResult 2642 ApplyModifier_ShellCommand(const char **pp, ModChain *ch) 2643 { 2644 Expr *expr = ch->expr; 2645 LazyBuf cmdBuf; 2646 FStr cmd; 2647 2648 (*pp)++; 2649 if (!ParseModifierPart(pp, '!', '!', expr->emode, 2650 ch, &cmdBuf, NULL, NULL)) 2651 return AMR_CLEANUP; 2652 cmd = LazyBuf_DoneGet(&cmdBuf); 2653 2654 if (Expr_ShouldEval(expr)) { 2655 char *output, *error; 2656 output = Cmd_Exec(cmd.str, &error); 2657 Expr_SetValueOwn(expr, output); 2658 if (error != NULL) { 2659 Parse_Error(PARSE_WARNING, "%s", error); 2660 free(error); 2661 } 2662 } else 2663 Expr_SetValueRefer(expr, ""); 2664 2665 FStr_Done(&cmd); 2666 Expr_Define(expr); 2667 2668 return AMR_OK; 2669 } 2670 2671 /* 2672 * The :range modifier generates an integer sequence as long as the words. 2673 * The :range=7 modifier generates an integer sequence from 1 to 7. 2674 */ 2675 static ApplyModifierResult 2676 ApplyModifier_Range(const char **pp, ModChain *ch) 2677 { 2678 size_t n; 2679 Buffer buf; 2680 size_t i; 2681 2682 const char *mod = *pp; 2683 if (!ModMatchEq(mod, "range", ch)) 2684 return AMR_UNKNOWN; 2685 2686 if (mod[5] == '=') { 2687 const char *p = mod + 6; 2688 if (!TryParseSize(&p, &n)) { 2689 Parse_Error(PARSE_FATAL, 2690 "Invalid number \"%s\" for modifier \":range\"", 2691 mod + 6); 2692 return AMR_CLEANUP; 2693 } 2694 *pp = p; 2695 } else { 2696 n = 0; 2697 *pp = mod + 5; 2698 } 2699 2700 if (!ModChain_ShouldEval(ch)) 2701 return AMR_OK; 2702 2703 if (n == 0) { 2704 SubstringWords words = Expr_Words(ch->expr); 2705 n = words.len; 2706 SubstringWords_Free(words); 2707 } 2708 2709 Buf_Init(&buf); 2710 2711 for (i = 0; i < n; i++) { 2712 if (i != 0) { 2713 /* 2714 * XXX: Use ch->sep instead of ' ', for consistency. 2715 */ 2716 Buf_AddByte(&buf, ' '); 2717 } 2718 Buf_AddInt(&buf, 1 + (int)i); 2719 } 2720 2721 Expr_SetValueOwn(ch->expr, Buf_DoneData(&buf)); 2722 return AMR_OK; 2723 } 2724 2725 /* Parse a ':M' or ':N' modifier. */ 2726 static char * 2727 ParseModifier_Match(const char **pp, const ModChain *ch) 2728 { 2729 const char *mod = *pp; 2730 Expr *expr = ch->expr; 2731 bool copy = false; /* pattern should be, or has been, copied */ 2732 bool needSubst = false; 2733 const char *endpat; 2734 char *pattern; 2735 2736 /* 2737 * In the loop below, ignore ':' unless we are at (or back to) the 2738 * original brace level. 2739 * XXX: This will likely not work right if $() and ${} are intermixed. 2740 */ 2741 /* 2742 * XXX: This code is similar to the one in Var_Parse. 2743 * See if the code can be merged. 2744 * See also ApplyModifier_Defined. 2745 */ 2746 int depth = 0; 2747 const char *p; 2748 for (p = mod + 1; *p != '\0' && !(*p == ':' && depth == 0); p++) { 2749 if (*p == '\\' && p[1] != '\0' && 2750 (IsDelimiter(p[1], ch) || p[1] == ch->startc)) { 2751 if (!needSubst) 2752 copy = true; 2753 p++; 2754 continue; 2755 } 2756 if (*p == '$') 2757 needSubst = true; 2758 if (*p == '(' || *p == '{') 2759 depth++; 2760 if (*p == ')' || *p == '}') { 2761 depth--; 2762 if (depth < 0) 2763 break; 2764 } 2765 } 2766 *pp = p; 2767 endpat = p; 2768 2769 if (copy) { 2770 char *dst; 2771 const char *src; 2772 2773 /* Compress the \:'s out of the pattern. */ 2774 pattern = bmake_malloc((size_t)(endpat - (mod + 1)) + 1); 2775 dst = pattern; 2776 src = mod + 1; 2777 for (; src < endpat; src++, dst++) { 2778 if (src[0] == '\\' && src + 1 < endpat && 2779 /* XXX: ch->startc is missing here; see above */ 2780 IsDelimiter(src[1], ch)) 2781 src++; 2782 *dst = *src; 2783 } 2784 *dst = '\0'; 2785 } else { 2786 pattern = bmake_strsedup(mod + 1, endpat); 2787 } 2788 2789 if (needSubst) { 2790 char *old_pattern = pattern; 2791 /* 2792 * XXX: Contrary to ParseModifierPart, a dollar in a ':M' or 2793 * ':N' modifier must be escaped as '$$', not as '\$'. 2794 */ 2795 pattern = Var_Subst(pattern, expr->scope, expr->emode); 2796 /* TODO: handle errors */ 2797 free(old_pattern); 2798 } 2799 2800 DEBUG2(VAR, "Pattern for ':%c' is \"%s\"\n", mod[0], pattern); 2801 2802 return pattern; 2803 } 2804 2805 struct ModifyWord_MatchArgs { 2806 const char *pattern; 2807 bool neg; 2808 bool error_reported; 2809 }; 2810 2811 static void 2812 ModifyWord_Match(Substring word, SepBuf *buf, void *data) 2813 { 2814 struct ModifyWord_MatchArgs *args = data; 2815 StrMatchResult res; 2816 assert(word.end[0] == '\0'); /* assume null-terminated word */ 2817 res = Str_Match(word.start, args->pattern); 2818 if (res.error != NULL && !args->error_reported) { 2819 args->error_reported = true; 2820 Parse_Error(PARSE_FATAL, 2821 "%s in pattern \"%s\" of modifier \"%s\"", 2822 res.error, args->pattern, args->neg ? ":N" : ":M"); 2823 } 2824 if (res.matched != args->neg) 2825 SepBuf_AddSubstring(buf, word); 2826 } 2827 2828 /* :Mpattern or :Npattern */ 2829 static ApplyModifierResult 2830 ApplyModifier_Match(const char **pp, ModChain *ch) 2831 { 2832 char mod = **pp; 2833 char *pattern; 2834 2835 pattern = ParseModifier_Match(pp, ch); 2836 2837 if (ModChain_ShouldEval(ch)) { 2838 struct ModifyWord_MatchArgs args; 2839 args.pattern = pattern; 2840 args.neg = mod == 'N'; 2841 args.error_reported = false; 2842 ModifyWords(ch, ModifyWord_Match, &args, ch->oneBigWord); 2843 } 2844 2845 free(pattern); 2846 return AMR_OK; 2847 } 2848 2849 struct ModifyWord_MtimeArgs { 2850 bool error; 2851 bool use_fallback; 2852 ApplyModifierResult rc; 2853 time_t fallback; 2854 }; 2855 2856 static void 2857 ModifyWord_Mtime(Substring word, SepBuf *buf, void *data) 2858 { 2859 struct ModifyWord_MtimeArgs *args = data; 2860 struct stat st; 2861 char tbuf[21]; 2862 2863 if (Substring_IsEmpty(word)) 2864 return; 2865 assert(word.end[0] == '\0'); /* assume null-terminated word */ 2866 if (stat(word.start, &st) < 0) { 2867 if (args->error) { 2868 Parse_Error(PARSE_FATAL, 2869 "Cannot determine mtime for \"%s\": %s", 2870 word.start, strerror(errno)); 2871 args->rc = AMR_CLEANUP; 2872 return; 2873 } 2874 if (args->use_fallback) 2875 st.st_mtime = args->fallback; 2876 else 2877 time(&st.st_mtime); 2878 } 2879 snprintf(tbuf, sizeof(tbuf), "%u", (unsigned)st.st_mtime); 2880 SepBuf_AddStr(buf, tbuf); 2881 } 2882 2883 /* :mtime */ 2884 static ApplyModifierResult 2885 ApplyModifier_Mtime(const char **pp, ModChain *ch) 2886 { 2887 const char *p, *mod = *pp; 2888 struct ModifyWord_MtimeArgs args; 2889 2890 if (!ModMatchEq(mod, "mtime", ch)) 2891 return AMR_UNKNOWN; 2892 *pp += 5; 2893 p = *pp; 2894 args.error = false; 2895 args.use_fallback = p[0] == '='; 2896 args.rc = AMR_OK; 2897 if (args.use_fallback) { 2898 p++; 2899 if (TryParseTime(&p, &args.fallback)) { 2900 } else if (strncmp(p, "error", 5) == 0) { 2901 p += 5; 2902 args.error = true; 2903 } else 2904 goto invalid_argument; 2905 if (!IsDelimiter(*p, ch)) 2906 goto invalid_argument; 2907 *pp = p; 2908 } 2909 ModifyWords(ch, ModifyWord_Mtime, &args, ch->oneBigWord); 2910 return args.rc; 2911 2912 invalid_argument: 2913 Parse_Error(PARSE_FATAL, 2914 "Invalid argument \"%.*s\" for modifier \":mtime\"", 2915 (int)strcspn(*pp + 1, ":{}()"), *pp + 1); 2916 return AMR_CLEANUP; 2917 } 2918 2919 static void 2920 ParsePatternFlags(const char **pp, PatternFlags *pflags, bool *oneBigWord) 2921 { 2922 for (;; (*pp)++) { 2923 if (**pp == 'g') 2924 pflags->subGlobal = true; 2925 else if (**pp == '1') 2926 pflags->subOnce = true; 2927 else if (**pp == 'W') 2928 *oneBigWord = true; 2929 else 2930 break; 2931 } 2932 } 2933 2934 MAKE_INLINE PatternFlags 2935 PatternFlags_None(void) 2936 { 2937 PatternFlags pflags = { false, false, false, false }; 2938 return pflags; 2939 } 2940 2941 /* :S,from,to, */ 2942 static ApplyModifierResult 2943 ApplyModifier_Subst(const char **pp, ModChain *ch) 2944 { 2945 struct ModifyWord_SubstArgs args; 2946 bool oneBigWord; 2947 LazyBuf lhsBuf, rhsBuf; 2948 2949 char delim = (*pp)[1]; 2950 if (delim == '\0') { 2951 Parse_Error(PARSE_FATAL, 2952 "Missing delimiter for modifier \":S\""); 2953 (*pp)++; 2954 return AMR_CLEANUP; 2955 } 2956 2957 *pp += 2; 2958 2959 args.pflags = PatternFlags_None(); 2960 args.matched = false; 2961 2962 if (**pp == '^') { 2963 args.pflags.anchorStart = true; 2964 (*pp)++; 2965 } 2966 2967 if (!ParseModifierPart(pp, delim, delim, ch->expr->emode, 2968 ch, &lhsBuf, &args.pflags, NULL)) 2969 return AMR_CLEANUP; 2970 args.lhs = LazyBuf_Get(&lhsBuf); 2971 2972 if (!ParseModifierPart(pp, delim, delim, ch->expr->emode, 2973 ch, &rhsBuf, NULL, &args)) { 2974 LazyBuf_Done(&lhsBuf); 2975 return AMR_CLEANUP; 2976 } 2977 args.rhs = LazyBuf_Get(&rhsBuf); 2978 2979 oneBigWord = ch->oneBigWord; 2980 ParsePatternFlags(pp, &args.pflags, &oneBigWord); 2981 2982 ModifyWords(ch, ModifyWord_Subst, &args, oneBigWord); 2983 2984 LazyBuf_Done(&lhsBuf); 2985 LazyBuf_Done(&rhsBuf); 2986 return AMR_OK; 2987 } 2988 2989 /* :C,from,to, */ 2990 static ApplyModifierResult 2991 ApplyModifier_Regex(const char **pp, ModChain *ch) 2992 { 2993 struct ModifyWord_SubstRegexArgs args; 2994 bool oneBigWord; 2995 int error; 2996 LazyBuf reBuf, replaceBuf; 2997 FStr re; 2998 2999 char delim = (*pp)[1]; 3000 if (delim == '\0') { 3001 Parse_Error(PARSE_FATAL, 3002 "Missing delimiter for modifier \":C\""); 3003 (*pp)++; 3004 return AMR_CLEANUP; 3005 } 3006 3007 *pp += 2; 3008 3009 if (!ParseModifierPart(pp, delim, delim, ch->expr->emode, 3010 ch, &reBuf, NULL, NULL)) 3011 return AMR_CLEANUP; 3012 re = LazyBuf_DoneGet(&reBuf); 3013 3014 if (!ParseModifierPart(pp, delim, delim, ch->expr->emode, 3015 ch, &replaceBuf, NULL, NULL)) { 3016 FStr_Done(&re); 3017 return AMR_CLEANUP; 3018 } 3019 args.replace = LazyBuf_Get(&replaceBuf); 3020 3021 args.pflags = PatternFlags_None(); 3022 args.matched = false; 3023 oneBigWord = ch->oneBigWord; 3024 ParsePatternFlags(pp, &args.pflags, &oneBigWord); 3025 3026 if (!ModChain_ShouldEval(ch)) 3027 goto done; 3028 3029 error = regcomp(&args.re, re.str, REG_EXTENDED); 3030 if (error != 0) { 3031 RegexError(error, &args.re, "Regex compilation error"); 3032 LazyBuf_Done(&replaceBuf); 3033 FStr_Done(&re); 3034 return AMR_CLEANUP; 3035 } 3036 3037 args.nsub = args.re.re_nsub + 1; 3038 if (args.nsub > 10) 3039 args.nsub = 10; 3040 3041 ModifyWords(ch, ModifyWord_SubstRegex, &args, oneBigWord); 3042 3043 regfree(&args.re); 3044 done: 3045 LazyBuf_Done(&replaceBuf); 3046 FStr_Done(&re); 3047 return AMR_OK; 3048 } 3049 3050 /* :Q, :q */ 3051 static ApplyModifierResult 3052 ApplyModifier_Quote(const char **pp, ModChain *ch) 3053 { 3054 LazyBuf buf; 3055 bool quoteDollar; 3056 3057 quoteDollar = **pp == 'q'; 3058 if (!IsDelimiter((*pp)[1], ch)) 3059 return AMR_UNKNOWN; 3060 (*pp)++; 3061 3062 if (!ModChain_ShouldEval(ch)) 3063 return AMR_OK; 3064 3065 QuoteShell(Expr_Str(ch->expr), quoteDollar, &buf); 3066 if (buf.data != NULL) 3067 Expr_SetValue(ch->expr, LazyBuf_DoneGet(&buf)); 3068 else 3069 LazyBuf_Done(&buf); 3070 3071 return AMR_OK; 3072 } 3073 3074 static void 3075 ModifyWord_Copy(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED) 3076 { 3077 SepBuf_AddSubstring(buf, word); 3078 } 3079 3080 /* :ts<separator> */ 3081 static ApplyModifierResult 3082 ApplyModifier_ToSep(const char **pp, ModChain *ch) 3083 { 3084 const char *sep = *pp + 2; 3085 3086 /* 3087 * Even in parse-only mode, apply the side effects, since the side 3088 * effects are neither observable nor is there a performance penalty. 3089 * Checking for VARE_EVAL for every single piece of code in here 3090 * would make the code in this function too hard to read. 3091 */ 3092 3093 /* ":ts<any><endc>" or ":ts<any>:" */ 3094 if (sep[0] != ch->endc && IsDelimiter(sep[1], ch)) { 3095 *pp = sep + 1; 3096 ch->sep = sep[0]; 3097 goto ok; 3098 } 3099 3100 /* ":ts<endc>" or ":ts:" */ 3101 if (IsDelimiter(sep[0], ch)) { 3102 *pp = sep; 3103 ch->sep = '\0'; /* no separator */ 3104 goto ok; 3105 } 3106 3107 if (sep[0] != '\\') 3108 return AMR_UNKNOWN; 3109 3110 /* ":ts\n" */ 3111 if (sep[1] == 'n') { 3112 *pp = sep + 2; 3113 ch->sep = '\n'; 3114 goto ok; 3115 } 3116 3117 /* ":ts\t" */ 3118 if (sep[1] == 't') { 3119 *pp = sep + 2; 3120 ch->sep = '\t'; 3121 goto ok; 3122 } 3123 3124 /* ":ts\x40" or ":ts\100" */ 3125 { 3126 const char *p = sep + 1; 3127 int base = 8; /* assume octal */ 3128 3129 if (sep[1] == 'x') { 3130 base = 16; 3131 p++; 3132 } else if (!ch_isdigit(sep[1])) 3133 return AMR_UNKNOWN; /* ":ts\..." */ 3134 3135 if (!TryParseChar(&p, base, &ch->sep)) { 3136 Parse_Error(PARSE_FATAL, 3137 "Invalid character number at \"%s\"", p); 3138 return AMR_CLEANUP; 3139 } 3140 if (!IsDelimiter(*p, ch)) 3141 return AMR_UNKNOWN; 3142 3143 *pp = p; 3144 } 3145 3146 ok: 3147 ModifyWords(ch, ModifyWord_Copy, NULL, ch->oneBigWord); 3148 return AMR_OK; 3149 } 3150 3151 static char * 3152 str_totitle(const char *str) 3153 { 3154 size_t i, n = strlen(str) + 1; 3155 char *res = bmake_malloc(n); 3156 for (i = 0; i < n; i++) { 3157 if (i == 0 || ch_isspace(res[i - 1])) 3158 res[i] = ch_toupper(str[i]); 3159 else 3160 res[i] = ch_tolower(str[i]); 3161 } 3162 return res; 3163 } 3164 3165 3166 static char * 3167 str_toupper(const char *str) 3168 { 3169 size_t i, n = strlen(str) + 1; 3170 char *res = bmake_malloc(n); 3171 for (i = 0; i < n; i++) 3172 res[i] = ch_toupper(str[i]); 3173 return res; 3174 } 3175 3176 static char * 3177 str_tolower(const char *str) 3178 { 3179 size_t i, n = strlen(str) + 1; 3180 char *res = bmake_malloc(n); 3181 for (i = 0; i < n; i++) 3182 res[i] = ch_tolower(str[i]); 3183 return res; 3184 } 3185 3186 /* :tA, :tu, :tl, :ts<separator>, etc. */ 3187 static ApplyModifierResult 3188 ApplyModifier_To(const char **pp, ModChain *ch) 3189 { 3190 Expr *expr = ch->expr; 3191 const char *mod = *pp; 3192 assert(mod[0] == 't'); 3193 3194 if (IsDelimiter(mod[1], ch)) 3195 return AMR_UNKNOWN; /* ":t<endc>" or ":t:" */ 3196 3197 if (mod[1] == 's') 3198 return ApplyModifier_ToSep(pp, ch); 3199 3200 if (!IsDelimiter(mod[2], ch)) 3201 return AMR_UNKNOWN; 3202 3203 if (mod[1] == 'A') { /* :tA */ 3204 *pp = mod + 2; 3205 ModifyWords(ch, ModifyWord_Realpath, NULL, ch->oneBigWord); 3206 return AMR_OK; 3207 } 3208 3209 if (mod[1] == 't') { /* :tt */ 3210 *pp = mod + 2; 3211 if (Expr_ShouldEval(expr)) 3212 Expr_SetValueOwn(expr, str_totitle(Expr_Str(expr))); 3213 return AMR_OK; 3214 } 3215 3216 if (mod[1] == 'u') { /* :tu */ 3217 *pp = mod + 2; 3218 if (Expr_ShouldEval(expr)) 3219 Expr_SetValueOwn(expr, str_toupper(Expr_Str(expr))); 3220 return AMR_OK; 3221 } 3222 3223 if (mod[1] == 'l') { /* :tl */ 3224 *pp = mod + 2; 3225 if (Expr_ShouldEval(expr)) 3226 Expr_SetValueOwn(expr, str_tolower(Expr_Str(expr))); 3227 return AMR_OK; 3228 } 3229 3230 if (mod[1] == 'W' || mod[1] == 'w') { /* :tW, :tw */ 3231 *pp = mod + 2; 3232 ch->oneBigWord = mod[1] == 'W'; 3233 return AMR_OK; 3234 } 3235 3236 return AMR_UNKNOWN; /* ":t<any>:" or ":t<any><endc>" */ 3237 } 3238 3239 /* :[#], :[1], :[-1..1], etc. */ 3240 static ApplyModifierResult 3241 ApplyModifier_Words(const char **pp, ModChain *ch) 3242 { 3243 Expr *expr = ch->expr; 3244 int first, last; 3245 const char *p; 3246 LazyBuf argBuf; 3247 FStr arg; 3248 3249 (*pp)++; /* skip the '[' */ 3250 if (!ParseModifierPart(pp, ']', ']', expr->emode, 3251 ch, &argBuf, NULL, NULL)) 3252 return AMR_CLEANUP; 3253 arg = LazyBuf_DoneGet(&argBuf); 3254 p = arg.str; 3255 3256 if (!IsDelimiter(**pp, ch)) { 3257 Parse_Error(PARSE_FATAL, 3258 "Extra text after \"[%s]\"", arg.str); 3259 FStr_Done(&arg); 3260 return AMR_CLEANUP; 3261 } 3262 3263 if (!ModChain_ShouldEval(ch)) 3264 goto ok; 3265 3266 if (p[0] == '\0') 3267 goto bad_modifier; /* Found ":[]". */ 3268 3269 if (strcmp(p, "#") == 0) { /* Found ":[#]" */ 3270 if (ch->oneBigWord) 3271 Expr_SetValueRefer(expr, "1"); 3272 else { 3273 Buffer buf; 3274 3275 SubstringWords words = Expr_Words(expr); 3276 size_t ac = words.len; 3277 SubstringWords_Free(words); 3278 3279 Buf_Init(&buf); 3280 Buf_AddInt(&buf, (int)ac); 3281 Expr_SetValueOwn(expr, Buf_DoneData(&buf)); 3282 } 3283 goto ok; 3284 } 3285 3286 if (strcmp(p, "*") == 0) { /* ":[*]" */ 3287 ch->oneBigWord = true; 3288 goto ok; 3289 } 3290 3291 if (strcmp(p, "@") == 0) { /* ":[@]" */ 3292 ch->oneBigWord = false; 3293 goto ok; 3294 } 3295 3296 /* Expect ":[N]" or ":[start..end]" */ 3297 if (!TryParseIntBase0(&p, &first)) 3298 goto bad_modifier; 3299 3300 if (p[0] == '\0') /* ":[N]" */ 3301 last = first; 3302 else if (strncmp(p, "..", 2) == 0) { 3303 p += 2; 3304 if (!TryParseIntBase0(&p, &last) || *p != '\0') 3305 goto bad_modifier; 3306 } else 3307 goto bad_modifier; 3308 3309 if (first == 0 && last == 0) { /* ":[0]" or ":[0..0]" */ 3310 ch->oneBigWord = true; 3311 goto ok; 3312 } 3313 3314 if (first == 0 || last == 0) /* ":[0..N]" or ":[N..0]" */ 3315 goto bad_modifier; 3316 3317 Expr_SetValueOwn(expr, 3318 VarSelectWords(Expr_Str(expr), first, last, 3319 ch->sep, ch->oneBigWord)); 3320 3321 ok: 3322 FStr_Done(&arg); 3323 return AMR_OK; 3324 3325 bad_modifier: 3326 Parse_Error(PARSE_FATAL, "Invalid modifier \":[%s]\"", arg.str); 3327 FStr_Done(&arg); 3328 return AMR_CLEANUP; 3329 } 3330 3331 #if __STDC_VERSION__ >= 199901L 3332 # define NUM_TYPE long long 3333 # define PARSE_NUM_TYPE strtoll 3334 #else 3335 # define NUM_TYPE long 3336 # define PARSE_NUM_TYPE strtol 3337 #endif 3338 3339 static NUM_TYPE 3340 num_val(Substring s) 3341 { 3342 NUM_TYPE val; 3343 char *ep; 3344 3345 val = PARSE_NUM_TYPE(s.start, &ep, 0); 3346 if (ep != s.start) { 3347 switch (*ep) { 3348 case 'K': 3349 case 'k': 3350 val <<= 10; 3351 break; 3352 case 'M': 3353 case 'm': 3354 val <<= 20; 3355 break; 3356 case 'G': 3357 case 'g': 3358 val <<= 30; 3359 break; 3360 } 3361 } 3362 return val; 3363 } 3364 3365 static int 3366 SubNumAsc(const void *sa, const void *sb) 3367 { 3368 NUM_TYPE a, b; 3369 3370 a = num_val(*((const Substring *)sa)); 3371 b = num_val(*((const Substring *)sb)); 3372 return a > b ? 1 : b > a ? -1 : 0; 3373 } 3374 3375 static int 3376 SubNumDesc(const void *sa, const void *sb) 3377 { 3378 return SubNumAsc(sb, sa); 3379 } 3380 3381 static int 3382 Substring_Cmp(Substring a, Substring b) 3383 { 3384 for (; a.start < a.end && b.start < b.end; a.start++, b.start++) 3385 if (a.start[0] != b.start[0]) 3386 return (unsigned char)a.start[0] 3387 - (unsigned char)b.start[0]; 3388 return (int)((a.end - a.start) - (b.end - b.start)); 3389 } 3390 3391 static int 3392 SubStrAsc(const void *sa, const void *sb) 3393 { 3394 return Substring_Cmp(*(const Substring *)sa, *(const Substring *)sb); 3395 } 3396 3397 static int 3398 SubStrDesc(const void *sa, const void *sb) 3399 { 3400 return SubStrAsc(sb, sa); 3401 } 3402 3403 static void 3404 ShuffleSubstrings(Substring *strs, size_t n) 3405 { 3406 size_t i; 3407 3408 for (i = n - 1; i > 0; i--) { 3409 size_t rndidx = (size_t)random() % (i + 1); 3410 Substring t = strs[i]; 3411 strs[i] = strs[rndidx]; 3412 strs[rndidx] = t; 3413 } 3414 } 3415 3416 /* 3417 * :O order ascending 3418 * :Or order descending 3419 * :Ox shuffle 3420 * :On numeric ascending 3421 * :Onr, :Orn numeric descending 3422 */ 3423 static ApplyModifierResult 3424 ApplyModifier_Order(const char **pp, ModChain *ch) 3425 { 3426 const char *mod = *pp; 3427 SubstringWords words; 3428 int (*cmp)(const void *, const void *); 3429 3430 if (IsDelimiter(mod[1], ch)) { 3431 cmp = SubStrAsc; 3432 (*pp)++; 3433 } else if (IsDelimiter(mod[2], ch)) { 3434 if (mod[1] == 'n') 3435 cmp = SubNumAsc; 3436 else if (mod[1] == 'r') 3437 cmp = SubStrDesc; 3438 else if (mod[1] == 'x') 3439 cmp = NULL; 3440 else 3441 return AMR_UNKNOWN; 3442 *pp += 2; 3443 } else if (IsDelimiter(mod[3], ch)) { 3444 if ((mod[1] == 'n' && mod[2] == 'r') || 3445 (mod[1] == 'r' && mod[2] == 'n')) 3446 cmp = SubNumDesc; 3447 else 3448 return AMR_UNKNOWN; 3449 *pp += 3; 3450 } else 3451 return AMR_UNKNOWN; 3452 3453 if (!ModChain_ShouldEval(ch)) 3454 return AMR_OK; 3455 3456 words = Expr_Words(ch->expr); 3457 if (cmp == NULL) 3458 ShuffleSubstrings(words.words, words.len); 3459 else { 3460 assert(words.words[0].end[0] == '\0'); 3461 qsort(words.words, words.len, sizeof(words.words[0]), cmp); 3462 } 3463 Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words)); 3464 3465 return AMR_OK; 3466 } 3467 3468 /* :? then : else */ 3469 static ApplyModifierResult 3470 ApplyModifier_IfElse(const char **pp, ModChain *ch) 3471 { 3472 Expr *expr = ch->expr; 3473 LazyBuf thenBuf; 3474 LazyBuf elseBuf; 3475 3476 VarEvalMode then_emode = VARE_PARSE; 3477 VarEvalMode else_emode = VARE_PARSE; 3478 int parseErrorsBefore = parseErrors; 3479 3480 CondResult cond_rc = CR_TRUE; /* anything other than CR_ERROR */ 3481 if (Expr_ShouldEval(expr)) { 3482 evalStack.elems[evalStack.len - 1].kind = VSK_COND; 3483 cond_rc = Cond_EvalCondition(expr->name); 3484 if (cond_rc == CR_TRUE) 3485 then_emode = expr->emode; 3486 else if (cond_rc == CR_FALSE) 3487 else_emode = expr->emode; 3488 else if (parseErrors == parseErrorsBefore) 3489 Parse_Error(PARSE_FATAL, "Bad condition"); 3490 } 3491 3492 evalStack.elems[evalStack.len - 1].kind = VSK_COND_THEN; 3493 (*pp)++; /* skip past the '?' */ 3494 if (!ParseModifierPart(pp, ':', ':', then_emode, 3495 ch, &thenBuf, NULL, NULL)) 3496 return AMR_CLEANUP; 3497 3498 evalStack.elems[evalStack.len - 1].kind = VSK_COND_ELSE; 3499 if (!ParseModifierPart(pp, ch->endc, ch->endc, else_emode, 3500 ch, &elseBuf, NULL, NULL)) { 3501 LazyBuf_Done(&thenBuf); 3502 return AMR_CLEANUP; 3503 } 3504 3505 (*pp)--; /* Go back to the ch->endc. */ 3506 3507 if (cond_rc == CR_ERROR) { 3508 LazyBuf_Done(&thenBuf); 3509 LazyBuf_Done(&elseBuf); 3510 return AMR_CLEANUP; 3511 } 3512 3513 if (!Expr_ShouldEval(expr)) { 3514 LazyBuf_Done(&thenBuf); 3515 LazyBuf_Done(&elseBuf); 3516 } else if (cond_rc == CR_TRUE) { 3517 Expr_SetValue(expr, LazyBuf_DoneGet(&thenBuf)); 3518 LazyBuf_Done(&elseBuf); 3519 } else { 3520 LazyBuf_Done(&thenBuf); 3521 Expr_SetValue(expr, LazyBuf_DoneGet(&elseBuf)); 3522 } 3523 Expr_Define(expr); 3524 return AMR_OK; 3525 } 3526 3527 /* 3528 * The ::= modifiers are special in that they do not read the variable value 3529 * but instead assign to that variable. They always expand to an empty 3530 * string. 3531 * 3532 * Their main purpose is in supporting .for loops that generate shell commands 3533 * since an ordinary variable assignment at that point would terminate the 3534 * dependency group for these targets. For example: 3535 * 3536 * list-targets: .USE 3537 * .for i in ${.TARGET} ${.TARGET:R}.gz 3538 * @${t::=$i} 3539 * @echo 'The target is ${t:T}.' 3540 * .endfor 3541 * 3542 * ::=<str> Assigns <str> as the new value of variable. 3543 * ::?=<str> Assigns <str> as value of variable if 3544 * it was not already set. 3545 * ::+=<str> Appends <str> to variable. 3546 * ::!=<cmd> Assigns output of <cmd> as the new value of 3547 * variable. 3548 */ 3549 static ApplyModifierResult 3550 ApplyModifier_Assign(const char **pp, ModChain *ch) 3551 { 3552 Expr *expr = ch->expr; 3553 GNode *scope; 3554 FStr val; 3555 LazyBuf buf; 3556 3557 const char *mod = *pp; 3558 const char *op = mod + 1; 3559 3560 if (op[0] == '=') 3561 goto found_op; 3562 if ((op[0] == '+' || op[0] == '?' || op[0] == '!') && op[1] == '=') 3563 goto found_op; 3564 return AMR_UNKNOWN; /* "::<unrecognized>" */ 3565 3566 found_op: 3567 if (expr->name[0] == '\0') { 3568 const char *value = op[0] == '=' ? op + 1 : op + 2; 3569 *pp = mod + 1; 3570 /* Take a guess at where the modifier ends. */ 3571 Parse_Error(PARSE_FATAL, 3572 "Invalid attempt to assign \"%.*s\" to variable \"\" " 3573 "via modifier \":%.*s\"", 3574 (int)strcspn(value, ":)}"), value, 3575 (int)(value - mod), mod); 3576 return AMR_CLEANUP; 3577 } 3578 3579 *pp = mod + (op[0] != '=' ? 3 : 2); 3580 3581 if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode, 3582 ch, &buf, NULL, NULL)) 3583 return AMR_CLEANUP; 3584 val = LazyBuf_DoneGet(&buf); 3585 3586 (*pp)--; /* Go back to the ch->endc. */ 3587 3588 if (!Expr_ShouldEval(expr)) 3589 goto done; 3590 3591 scope = expr->scope; /* scope where v belongs */ 3592 if (expr->defined == DEF_REGULAR && expr->scope != SCOPE_GLOBAL 3593 && VarFind(expr->name, expr->scope, false) == NULL) 3594 scope = SCOPE_GLOBAL; 3595 3596 if (op[0] == '+') 3597 Var_Append(scope, expr->name, val.str); 3598 else if (op[0] == '!') { 3599 char *output, *error; 3600 output = Cmd_Exec(val.str, &error); 3601 if (error != NULL) { 3602 Parse_Error(PARSE_WARNING, "%s", error); 3603 free(error); 3604 } else 3605 Var_Set(scope, expr->name, output); 3606 free(output); 3607 } else if (op[0] == '?' && expr->defined == DEF_REGULAR) { 3608 /* Do nothing. */ 3609 } else 3610 Var_Set(scope, expr->name, val.str); 3611 3612 Expr_SetValueRefer(expr, ""); 3613 3614 done: 3615 FStr_Done(&val); 3616 return AMR_OK; 3617 } 3618 3619 /* 3620 * :_=... 3621 * remember current value 3622 */ 3623 static ApplyModifierResult 3624 ApplyModifier_Remember(const char **pp, ModChain *ch) 3625 { 3626 Expr *expr = ch->expr; 3627 const char *mod = *pp; 3628 FStr name; 3629 3630 if (!ModMatchEq(mod, "_", ch)) 3631 return AMR_UNKNOWN; 3632 3633 name = FStr_InitRefer("_"); 3634 if (mod[1] == '=') { 3635 /* 3636 * XXX: This ad-hoc call to strcspn deviates from the usual 3637 * behavior defined in ParseModifierPart. This creates an 3638 * unnecessary and undocumented inconsistency in make. 3639 */ 3640 const char *arg = mod + 2; 3641 size_t argLen = strcspn(arg, ":)}"); 3642 *pp = arg + argLen; 3643 name = FStr_InitOwn(bmake_strldup(arg, argLen)); 3644 } else 3645 *pp = mod + 1; 3646 3647 if (Expr_ShouldEval(expr)) 3648 Var_Set(SCOPE_GLOBAL, name.str, Expr_Str(expr)); 3649 FStr_Done(&name); 3650 3651 return AMR_OK; 3652 } 3653 3654 /* 3655 * Apply the given function to each word of the variable value, 3656 * for a single-letter modifier such as :H, :T. 3657 */ 3658 static ApplyModifierResult 3659 ApplyModifier_WordFunc(const char **pp, ModChain *ch, 3660 ModifyWordProc modifyWord) 3661 { 3662 if (!IsDelimiter((*pp)[1], ch)) 3663 return AMR_UNKNOWN; 3664 (*pp)++; 3665 3666 ModifyWords(ch, modifyWord, NULL, ch->oneBigWord); 3667 3668 return AMR_OK; 3669 } 3670 3671 /* Remove adjacent duplicate words. */ 3672 static ApplyModifierResult 3673 ApplyModifier_Unique(const char **pp, ModChain *ch) 3674 { 3675 SubstringWords words; 3676 3677 if (!IsDelimiter((*pp)[1], ch)) 3678 return AMR_UNKNOWN; 3679 (*pp)++; 3680 3681 if (!ModChain_ShouldEval(ch)) 3682 return AMR_OK; 3683 3684 words = Expr_Words(ch->expr); 3685 3686 if (words.len > 1) { 3687 size_t di, si; 3688 for (di = 0, si = 1; si < words.len; si++) 3689 if (!Substring_Eq(words.words[di], words.words[si])) 3690 words.words[++di] = words.words[si]; 3691 words.len = di + 1; 3692 } 3693 3694 Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words)); 3695 3696 return AMR_OK; 3697 } 3698 3699 /* Test whether the modifier has the form '<lhs>=<rhs>'. */ 3700 static bool 3701 IsSysVModifier(const char *p, char startc, char endc) 3702 { 3703 bool eqFound = false; 3704 3705 int depth = 1; 3706 while (*p != '\0') { 3707 if (*p == '=') /* XXX: should also test depth == 1 */ 3708 eqFound = true; 3709 else if (*p == endc) { 3710 if (--depth == 0) 3711 break; 3712 } else if (*p == startc) 3713 depth++; 3714 p++; 3715 } 3716 return eqFound; 3717 } 3718 3719 /* :from=to */ 3720 static ApplyModifierResult 3721 ApplyModifier_SysV(const char **pp, ModChain *ch) 3722 { 3723 Expr *expr = ch->expr; 3724 LazyBuf lhsBuf, rhsBuf; 3725 FStr rhs; 3726 struct ModifyWord_SysVSubstArgs args; 3727 Substring lhs; 3728 const char *lhsSuffix; 3729 3730 const char *mod = *pp; 3731 3732 if (!IsSysVModifier(mod, ch->startc, ch->endc)) 3733 return AMR_UNKNOWN; 3734 3735 if (!ParseModifierPart(pp, '=', '=', expr->emode, 3736 ch, &lhsBuf, NULL, NULL)) 3737 return AMR_CLEANUP; 3738 3739 if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode, 3740 ch, &rhsBuf, NULL, NULL)) { 3741 LazyBuf_Done(&lhsBuf); 3742 return AMR_CLEANUP; 3743 } 3744 rhs = LazyBuf_DoneGet(&rhsBuf); 3745 3746 (*pp)--; /* Go back to the ch->endc. */ 3747 3748 /* Do not turn an empty expression into non-empty. */ 3749 if (lhsBuf.len == 0 && Expr_Str(expr)[0] == '\0') 3750 goto done; 3751 3752 lhs = LazyBuf_Get(&lhsBuf); 3753 lhsSuffix = Substring_SkipFirst(lhs, '%'); 3754 3755 args.scope = expr->scope; 3756 args.lhsPrefix = Substring_Init(lhs.start, 3757 lhsSuffix != lhs.start ? lhsSuffix - 1 : lhs.start); 3758 args.lhsPercent = lhsSuffix != lhs.start; 3759 args.lhsSuffix = Substring_Init(lhsSuffix, lhs.end); 3760 args.rhs = rhs.str; 3761 3762 ModifyWords(ch, ModifyWord_SysVSubst, &args, ch->oneBigWord); 3763 3764 done: 3765 LazyBuf_Done(&lhsBuf); 3766 FStr_Done(&rhs); 3767 return AMR_OK; 3768 } 3769 3770 /* :sh */ 3771 static ApplyModifierResult 3772 ApplyModifier_SunShell(const char **pp, ModChain *ch) 3773 { 3774 Expr *expr = ch->expr; 3775 const char *p = *pp; 3776 if (!(p[1] == 'h' && IsDelimiter(p[2], ch))) 3777 return AMR_UNKNOWN; 3778 *pp = p + 2; 3779 3780 if (Expr_ShouldEval(expr)) { 3781 char *output, *error; 3782 output = Cmd_Exec(Expr_Str(expr), &error); 3783 if (error != NULL) { 3784 Parse_Error(PARSE_WARNING, "%s", error); 3785 free(error); 3786 } 3787 Expr_SetValueOwn(expr, output); 3788 } 3789 3790 return AMR_OK; 3791 } 3792 3793 /* 3794 * In cases where the evaluation mode and the definedness are the "standard" 3795 * ones, don't log them, to keep the logs readable. 3796 */ 3797 static bool 3798 ShouldLogInSimpleFormat(const Expr *expr) 3799 { 3800 return (expr->emode == VARE_EVAL 3801 || expr->emode == VARE_EVAL_DEFINED 3802 || expr->emode == VARE_EVAL_DEFINED_LOUD) 3803 && expr->defined == DEF_REGULAR; 3804 } 3805 3806 static void 3807 LogBeforeApply(const ModChain *ch, const char *mod) 3808 { 3809 const Expr *expr = ch->expr; 3810 bool is_single_char = mod[0] != '\0' && IsDelimiter(mod[1], ch); 3811 3812 /* 3813 * At this point, only the first character of the modifier can 3814 * be used since the end of the modifier is not yet known. 3815 */ 3816 3817 if (!Expr_ShouldEval(expr)) { 3818 debug_printf("Parsing modifier ${%s:%c%s}\n", 3819 expr->name, mod[0], is_single_char ? "" : "..."); 3820 return; 3821 } 3822 3823 if (ShouldLogInSimpleFormat(expr)) { 3824 debug_printf( 3825 "Evaluating modifier ${%s:%c%s} on value \"%s\"\n", 3826 expr->name, mod[0], is_single_char ? "" : "...", 3827 Expr_Str(expr)); 3828 return; 3829 } 3830 3831 debug_printf( 3832 "Evaluating modifier ${%s:%c%s} on value \"%s\" (%s, %s)\n", 3833 expr->name, mod[0], is_single_char ? "" : "...", Expr_Str(expr), 3834 VarEvalMode_Name[expr->emode], ExprDefined_Name[expr->defined]); 3835 } 3836 3837 static void 3838 LogAfterApply(const ModChain *ch, const char *p, const char *mod) 3839 { 3840 const Expr *expr = ch->expr; 3841 const char *value = Expr_Str(expr); 3842 3843 if (ShouldLogInSimpleFormat(expr)) { 3844 debug_printf("Result of ${%s:%.*s} is \"%s\"\n", 3845 expr->name, (int)(p - mod), mod, value); 3846 return; 3847 } 3848 3849 debug_printf("Result of ${%s:%.*s} is \"%s\" (%s, %s)\n", 3850 expr->name, (int)(p - mod), mod, value, 3851 VarEvalMode_Name[expr->emode], 3852 ExprDefined_Name[expr->defined]); 3853 } 3854 3855 static ApplyModifierResult 3856 ApplyModifier(const char **pp, ModChain *ch) 3857 { 3858 switch (**pp) { 3859 case '!': 3860 return ApplyModifier_ShellCommand(pp, ch); 3861 case ':': 3862 return ApplyModifier_Assign(pp, ch); 3863 case '?': 3864 return ApplyModifier_IfElse(pp, ch); 3865 case '@': 3866 return ApplyModifier_Loop(pp, ch); 3867 case '[': 3868 return ApplyModifier_Words(pp, ch); 3869 case '_': 3870 return ApplyModifier_Remember(pp, ch); 3871 case 'C': 3872 return ApplyModifier_Regex(pp, ch); 3873 case 'D': 3874 case 'U': 3875 return ApplyModifier_Defined(pp, ch); 3876 case 'E': 3877 return ApplyModifier_WordFunc(pp, ch, ModifyWord_Suffix); 3878 case 'g': 3879 case 'l': 3880 return ApplyModifier_Time(pp, ch); 3881 case 'H': 3882 return ApplyModifier_WordFunc(pp, ch, ModifyWord_Head); 3883 case 'h': 3884 return ApplyModifier_Hash(pp, ch); 3885 case 'L': 3886 return ApplyModifier_Literal(pp, ch); 3887 case 'M': 3888 case 'N': 3889 return ApplyModifier_Match(pp, ch); 3890 case 'm': 3891 return ApplyModifier_Mtime(pp, ch); 3892 case 'O': 3893 return ApplyModifier_Order(pp, ch); 3894 case 'P': 3895 return ApplyModifier_Path(pp, ch); 3896 case 'Q': 3897 case 'q': 3898 return ApplyModifier_Quote(pp, ch); 3899 case 'R': 3900 return ApplyModifier_WordFunc(pp, ch, ModifyWord_Root); 3901 case 'r': 3902 return ApplyModifier_Range(pp, ch); 3903 case 'S': 3904 return ApplyModifier_Subst(pp, ch); 3905 case 's': 3906 return ApplyModifier_SunShell(pp, ch); 3907 case 'T': 3908 return ApplyModifier_WordFunc(pp, ch, ModifyWord_Tail); 3909 case 't': 3910 return ApplyModifier_To(pp, ch); 3911 case 'u': 3912 return ApplyModifier_Unique(pp, ch); 3913 default: 3914 return AMR_UNKNOWN; 3915 } 3916 } 3917 3918 static void ApplyModifiers(Expr *, const char **, char, char); 3919 3920 typedef enum ApplyModifiersIndirectResult { 3921 /* The indirect modifiers have been applied successfully. */ 3922 AMIR_CONTINUE, 3923 /* Fall back to the SysV modifier. */ 3924 AMIR_SYSV, 3925 /* Error out. */ 3926 AMIR_OUT 3927 } ApplyModifiersIndirectResult; 3928 3929 /* 3930 * While expanding an expression, expand and apply indirect modifiers, 3931 * such as in ${VAR:${M_indirect}}. 3932 * 3933 * All indirect modifiers of a group must come from a single 3934 * expression. ${VAR:${M1}} is valid but ${VAR:${M1}${M2}} is not. 3935 * 3936 * Multiple groups of indirect modifiers can be chained by separating them 3937 * with colons. ${VAR:${M1}:${M2}} contains 2 indirect modifiers. 3938 * 3939 * If the expression is not followed by ch->endc or ':', fall 3940 * back to trying the SysV modifier, such as in ${VAR:${FROM}=${TO}}. 3941 */ 3942 static ApplyModifiersIndirectResult 3943 ApplyModifiersIndirect(ModChain *ch, const char **pp) 3944 { 3945 Expr *expr = ch->expr; 3946 const char *p = *pp; 3947 FStr mods = Var_Parse(&p, expr->scope, expr->emode); 3948 /* TODO: handle errors */ 3949 3950 if (mods.str[0] != '\0' && !IsDelimiter(*p, ch)) { 3951 FStr_Done(&mods); 3952 return AMIR_SYSV; 3953 } 3954 3955 DEBUG3(VAR, "Indirect modifier \"%s\" from \"%.*s\"\n", 3956 mods.str, (int)(p - *pp), *pp); 3957 3958 if (ModChain_ShouldEval(ch) && mods.str[0] != '\0') { 3959 const char *modsp = mods.str; 3960 EvalStack_Push(VSK_INDIRECT_MODIFIERS, mods.str, NULL); 3961 ApplyModifiers(expr, &modsp, '\0', '\0'); 3962 EvalStack_Pop(); 3963 if (Expr_Str(expr) == var_Error || *modsp != '\0') { 3964 FStr_Done(&mods); 3965 *pp = p; 3966 return AMIR_OUT; /* error already reported */ 3967 } 3968 } 3969 FStr_Done(&mods); 3970 3971 if (*p == ':') 3972 p++; 3973 else if (*p == '\0' && ch->endc != '\0') { 3974 Parse_Error(PARSE_FATAL, 3975 "Unclosed expression after indirect modifier, " 3976 "expecting \"%c\"", 3977 ch->endc); 3978 *pp = p; 3979 return AMIR_OUT; 3980 } 3981 3982 *pp = p; 3983 return AMIR_CONTINUE; 3984 } 3985 3986 static ApplyModifierResult 3987 ApplySingleModifier(const char **pp, ModChain *ch) 3988 { 3989 ApplyModifierResult res; 3990 const char *mod = *pp; 3991 const char *p = *pp; 3992 3993 if (DEBUG(VAR)) 3994 LogBeforeApply(ch, mod); 3995 3996 if (posix_state == PS_SET) 3997 res = ApplyModifier_SysV(&p, ch); 3998 else 3999 res = AMR_UNKNOWN; 4000 if (res == AMR_UNKNOWN) 4001 res = ApplyModifier(&p, ch); 4002 4003 if (res == AMR_UNKNOWN && posix_state != PS_SET) { 4004 assert(p == mod); 4005 res = ApplyModifier_SysV(&p, ch); 4006 } 4007 4008 if (res == AMR_UNKNOWN) { 4009 /* 4010 * Guess the end of the current modifier. 4011 * XXX: Skipping the rest of the modifier hides 4012 * errors and leads to wrong results. 4013 * Parsing should rather stop here. 4014 */ 4015 for (p++; !IsDelimiter(*p, ch); p++) 4016 continue; 4017 Parse_Error(PARSE_FATAL, "Unknown modifier \":%.*s\"", 4018 (int)(p - mod), mod); 4019 Expr_SetValueRefer(ch->expr, var_Error); 4020 res = AMR_CLEANUP; 4021 } 4022 if (res != AMR_OK) { 4023 *pp = p; 4024 return res; 4025 } 4026 4027 if (DEBUG(VAR)) 4028 LogAfterApply(ch, p, mod); 4029 4030 if (*p == '\0' && ch->endc != '\0') { 4031 Parse_Error(PARSE_FATAL, 4032 "Unclosed expression, expecting \"%c\" for " 4033 "modifier \"%.*s\"", 4034 ch->endc, (int)(p - mod), mod); 4035 } else if (*p == ':') { 4036 p++; 4037 } else if (opts.strict && *p != '\0' && *p != ch->endc) { 4038 Parse_Error(PARSE_FATAL, 4039 "Missing delimiter \":\" after modifier \"%.*s\"", 4040 (int)(p - mod), mod); 4041 /* 4042 * TODO: propagate parse error to the enclosing 4043 * expression 4044 */ 4045 } 4046 *pp = p; 4047 return AMR_OK; 4048 } 4049 4050 #if __STDC_VERSION__ >= 199901L 4051 #define ModChain_Init(expr, startc, endc, sep, oneBigWord) \ 4052 (ModChain) { expr, startc, endc, sep, oneBigWord } 4053 #else 4054 MAKE_INLINE ModChain 4055 ModChain_Init(Expr *expr, char startc, char endc, char sep, bool oneBigWord) 4056 { 4057 ModChain ch; 4058 ch.expr = expr; 4059 ch.startc = startc; 4060 ch.endc = endc; 4061 ch.sep = sep; 4062 ch.oneBigWord = oneBigWord; 4063 return ch; 4064 } 4065 #endif 4066 4067 /* Apply any modifiers (such as :Mpattern or :@var@loop@ or :Q or ::=value). */ 4068 static void 4069 ApplyModifiers( 4070 Expr *expr, 4071 const char **pp, /* the parsing position, updated upon return */ 4072 char startc, /* '(' or '{'; or '\0' for indirect modifiers */ 4073 char endc /* ')' or '}'; or '\0' for indirect modifiers */ 4074 ) 4075 { 4076 ModChain ch = ModChain_Init(expr, startc, endc, ' ', false); 4077 const char *p; 4078 4079 assert(startc == '(' || startc == '{' || startc == '\0'); 4080 assert(endc == ')' || endc == '}' || endc == '\0'); 4081 assert(Expr_Str(expr) != NULL); 4082 4083 p = *pp; 4084 4085 if (*p == '\0' && endc != '\0') { 4086 Parse_Error(PARSE_FATAL, 4087 "Unclosed expression, expecting \"%c\"", ch.endc); 4088 goto cleanup; 4089 } 4090 4091 while (*p != '\0' && *p != endc) { 4092 ApplyModifierResult res; 4093 4094 if (*p == '$') { 4095 /* 4096 * TODO: Only evaluate the expression once, no matter 4097 * whether it's an indirect modifier or the initial 4098 * part of a SysV modifier. 4099 */ 4100 ApplyModifiersIndirectResult amir = 4101 ApplyModifiersIndirect(&ch, &p); 4102 if (amir == AMIR_CONTINUE) 4103 continue; 4104 if (amir == AMIR_OUT) 4105 break; 4106 } 4107 4108 res = ApplySingleModifier(&p, &ch); 4109 if (res == AMR_CLEANUP) 4110 goto cleanup; 4111 } 4112 4113 *pp = p; 4114 assert(Expr_Str(expr) != NULL); /* Use var_Error or varUndefined. */ 4115 return; 4116 4117 cleanup: 4118 /* 4119 * TODO: Use p + strlen(p) instead, to stop parsing immediately. 4120 * 4121 * In the unit tests, this generates a few shell commands with 4122 * unbalanced quotes. Instead of producing these incomplete strings, 4123 * commands with evaluation errors should not be run at all. 4124 * 4125 * To make that happen, Var_Subst must report the actual errors 4126 * instead of returning the resulting string unconditionally. 4127 */ 4128 *pp = p; 4129 Expr_SetValueRefer(expr, var_Error); 4130 } 4131 4132 /* 4133 * Only 4 of the 7 built-in local variables are treated specially as they are 4134 * the only ones that will be set when dynamic sources are expanded. 4135 */ 4136 static bool 4137 VarnameIsDynamic(Substring varname) 4138 { 4139 const char *name; 4140 size_t len; 4141 4142 name = varname.start; 4143 len = Substring_Length(varname); 4144 if (len == 1 || (len == 2 && (name[1] == 'F' || name[1] == 'D'))) { 4145 switch (name[0]) { 4146 case '@': 4147 case '%': 4148 case '*': 4149 case '!': 4150 return true; 4151 } 4152 return false; 4153 } 4154 4155 if ((len == 7 || len == 8) && name[0] == '.' && ch_isupper(name[1])) { 4156 return Substring_Equals(varname, ".TARGET") || 4157 Substring_Equals(varname, ".ARCHIVE") || 4158 Substring_Equals(varname, ".PREFIX") || 4159 Substring_Equals(varname, ".MEMBER"); 4160 } 4161 4162 return false; 4163 } 4164 4165 static const char * 4166 UndefinedShortVarValue(char varname, const GNode *scope) 4167 { 4168 if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL) { 4169 /* 4170 * If substituting a local variable in a non-local scope, 4171 * assume it's for dynamic source stuff. We have to handle 4172 * this specially and return the longhand for the variable 4173 * with the dollar sign escaped so it makes it back to the 4174 * caller. Only four of the local variables are treated 4175 * specially as they are the only four that will be set 4176 * when dynamic sources are expanded. 4177 */ 4178 switch (varname) { 4179 case '@': 4180 return "$(.TARGET)"; 4181 case '%': 4182 return "$(.MEMBER)"; 4183 case '*': 4184 return "$(.PREFIX)"; 4185 case '!': 4186 return "$(.ARCHIVE)"; 4187 } 4188 } 4189 return NULL; 4190 } 4191 4192 /* 4193 * Parse a variable name, until the end character or a colon, whichever 4194 * comes first. 4195 */ 4196 static void 4197 ParseVarname(const char **pp, char startc, char endc, 4198 GNode *scope, VarEvalMode emode, 4199 LazyBuf *buf) 4200 { 4201 const char *p = *pp; 4202 int depth = 0; 4203 4204 LazyBuf_Init(buf, p); 4205 4206 while (*p != '\0') { 4207 if ((*p == endc || *p == ':') && depth == 0) 4208 break; 4209 if (*p == startc) 4210 depth++; 4211 if (*p == endc) 4212 depth--; 4213 4214 if (*p == '$') { 4215 FStr nested_val = Var_Parse(&p, scope, emode); 4216 /* TODO: handle errors */ 4217 LazyBuf_AddStr(buf, nested_val.str); 4218 FStr_Done(&nested_val); 4219 } else { 4220 LazyBuf_Add(buf, *p); 4221 p++; 4222 } 4223 } 4224 *pp = p; 4225 } 4226 4227 static bool 4228 IsShortVarnameValid(char varname, const char *start) 4229 { 4230 if (varname != '$' && varname != ':' && varname != '}' && 4231 varname != ')' && varname != '\0') 4232 return true; 4233 4234 if (!opts.strict) 4235 return false; /* XXX: Missing error message */ 4236 4237 if (varname == '$' && save_dollars) 4238 Parse_Error(PARSE_FATAL, 4239 "To escape a dollar, use \\$, not $$, at \"%s\"", start); 4240 else if (varname == '\0') 4241 Parse_Error(PARSE_FATAL, "Dollar followed by nothing"); 4242 else if (save_dollars) 4243 Parse_Error(PARSE_FATAL, 4244 "Invalid variable name \"%c\", at \"%s\"", varname, start); 4245 4246 return false; 4247 } 4248 4249 /* 4250 * Parse a single-character variable name such as in $V or $@. 4251 * Return whether to continue parsing. 4252 */ 4253 static bool 4254 ParseVarnameShort(char varname, const char **pp, GNode *scope, 4255 VarEvalMode emode, 4256 const char **out_false_val, 4257 Var **out_true_var) 4258 { 4259 char name[2]; 4260 Var *v; 4261 const char *val; 4262 4263 if (!IsShortVarnameValid(varname, *pp)) { 4264 (*pp)++; /* only skip the '$' */ 4265 *out_false_val = var_Error; 4266 return false; 4267 } 4268 4269 name[0] = varname; 4270 name[1] = '\0'; 4271 v = VarFind(name, scope, true); 4272 if (v != NULL) { 4273 /* No need to advance *pp, the calling code handles this. */ 4274 *out_true_var = v; 4275 return true; 4276 } 4277 4278 *pp += 2; 4279 4280 val = UndefinedShortVarValue(varname, scope); 4281 if (val == NULL) 4282 val = emode == VARE_EVAL_DEFINED 4283 || emode == VARE_EVAL_DEFINED_LOUD 4284 ? var_Error : varUndefined; 4285 4286 if ((opts.strict || emode == VARE_EVAL_DEFINED_LOUD) 4287 && val == var_Error) { 4288 Parse_Error(PARSE_FATAL, 4289 "Variable \"%s\" is undefined", name); 4290 } 4291 4292 *out_false_val = val; 4293 return false; 4294 } 4295 4296 /* Find variables like @F or <D. */ 4297 static Var * 4298 FindLocalLegacyVar(Substring varname, GNode *scope, 4299 const char **out_extraModifiers) 4300 { 4301 Var *v; 4302 4303 /* Only resolve these variables if scope is a "real" target. */ 4304 if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL) 4305 return NULL; 4306 4307 if (Substring_Length(varname) != 2) 4308 return NULL; 4309 if (varname.start[1] != 'F' && varname.start[1] != 'D') 4310 return NULL; 4311 if (strchr("@%?*!<>^", varname.start[0]) == NULL) 4312 return NULL; 4313 4314 v = VarFindSubstring(Substring_Init(varname.start, varname.start + 1), 4315 scope, false); 4316 if (v == NULL) 4317 return NULL; 4318 4319 *out_extraModifiers = varname.start[1] == 'D' ? "H:" : "T:"; 4320 return v; 4321 } 4322 4323 static FStr 4324 EvalUndefined(bool dynamic, const char *start, const char *p, 4325 Substring varname, VarEvalMode emode, int parseErrorsBefore) 4326 { 4327 if (dynamic) 4328 return FStr_InitOwn(bmake_strsedup(start, p)); 4329 4330 if (emode == VARE_EVAL_DEFINED_LOUD 4331 || (emode == VARE_EVAL_DEFINED && opts.strict)) { 4332 if (parseErrors == parseErrorsBefore) { 4333 Parse_Error(PARSE_FATAL, 4334 "Variable \"%.*s\" is undefined", 4335 (int) Substring_Length(varname), varname.start); 4336 } 4337 return FStr_InitRefer(var_Error); 4338 } 4339 4340 return FStr_InitRefer( 4341 emode == VARE_EVAL_DEFINED_LOUD || emode == VARE_EVAL_DEFINED 4342 ? var_Error : varUndefined); 4343 } 4344 4345 static void 4346 CheckVarname(Substring name) 4347 { 4348 const char *p; 4349 4350 for (p = name.start; p < name.end; p++) { 4351 if (ch_isspace(*p)) 4352 break; 4353 } 4354 if (p < name.end) { 4355 Parse_Error(PARSE_WARNING, 4356 ch_isprint(*p) 4357 ? "Invalid character \"%c\" in variable name \"%.*s\"" 4358 : "Invalid character \"\\x%02x\" in variable name \"%.*s\"", 4359 (int)(*p), 4360 (int)Substring_Length(name), name.start); 4361 } 4362 } 4363 4364 /* 4365 * Parse a long variable name enclosed in braces or parentheses such as $(VAR) 4366 * or ${VAR}, up to the closing brace or parenthesis, or in the case of 4367 * ${VAR:Modifiers}, up to the ':' that starts the modifiers. 4368 * Return whether to continue parsing. 4369 */ 4370 static bool 4371 ParseVarnameLong( 4372 const char **pp, 4373 char startc, 4374 GNode *scope, 4375 VarEvalMode emode, 4376 VarEvalMode nested_emode, 4377 int parseErrorsBefore, 4378 4379 const char **out_false_pp, 4380 FStr *out_false_val, 4381 4382 char *out_true_endc, 4383 Var **out_true_v, 4384 bool *out_true_haveModifier, 4385 const char **out_true_extraModifiers, 4386 bool *out_true_dynamic, 4387 ExprDefined *out_true_exprDefined 4388 ) 4389 { 4390 LazyBuf varname; 4391 Substring name; 4392 Var *v; 4393 bool haveModifier; 4394 bool dynamic = false; 4395 4396 const char *p = *pp; 4397 const char *start = p; 4398 char endc = startc == '(' ? ')' : '}'; 4399 4400 p += 2; /* skip "${" or "$(" or "y(" */ 4401 ParseVarname(&p, startc, endc, scope, nested_emode, &varname); 4402 name = LazyBuf_Get(&varname); 4403 4404 if (*p == ':') 4405 haveModifier = true; 4406 else if (*p == endc) 4407 haveModifier = false; 4408 else { 4409 Parse_Error(PARSE_FATAL, "Unclosed variable \"%.*s\"", 4410 (int)Substring_Length(name), name.start); 4411 LazyBuf_Done(&varname); 4412 *out_false_pp = p; 4413 *out_false_val = FStr_InitRefer(var_Error); 4414 return false; 4415 } 4416 4417 v = VarFindSubstring(name, scope, true); 4418 4419 /* 4420 * At this point, p points just after the variable name, either at 4421 * ':' or at endc. 4422 */ 4423 4424 if (v == NULL && Substring_Equals(name, ".SUFFIXES")) { 4425 char *suffixes = Suff_NamesStr(); 4426 v = VarNew(FStr_InitRefer(".SUFFIXES"), suffixes, 4427 true, false, true); 4428 free(suffixes); 4429 } else if (v == NULL) 4430 v = FindLocalLegacyVar(name, scope, out_true_extraModifiers); 4431 4432 if (v == NULL) { 4433 /* 4434 * Defer expansion of dynamic variables if they appear in 4435 * non-local scope since they are not defined there. 4436 */ 4437 dynamic = VarnameIsDynamic(name) && 4438 (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL); 4439 4440 if (!haveModifier) { 4441 CheckVarname(name); 4442 p++; /* skip endc */ 4443 *out_false_pp = p; 4444 *out_false_val = EvalUndefined(dynamic, start, p, 4445 name, emode, parseErrorsBefore); 4446 LazyBuf_Done(&varname); 4447 return false; 4448 } 4449 4450 /* 4451 * The expression is based on an undefined variable. 4452 * Nevertheless it needs a Var, for modifiers that access the 4453 * variable name, such as :L or :?. 4454 * 4455 * Most modifiers leave this expression in the "undefined" 4456 * state (DEF_UNDEF), only a few modifiers like :D, :U, :L, 4457 * :P turn this undefined expression into a defined 4458 * expression (DEF_DEFINED). 4459 * 4460 * In the end, after applying all modifiers, if the expression 4461 * is still undefined, Var_Parse will return an empty string 4462 * instead of the actually computed value. 4463 */ 4464 v = VarNew(LazyBuf_DoneGet(&varname), "", 4465 true, false, false); 4466 *out_true_exprDefined = DEF_UNDEF; 4467 } else 4468 LazyBuf_Done(&varname); 4469 4470 *pp = p; 4471 *out_true_endc = endc; 4472 *out_true_v = v; 4473 *out_true_haveModifier = haveModifier; 4474 *out_true_dynamic = dynamic; 4475 return true; 4476 } 4477 4478 #if __STDC_VERSION__ >= 199901L 4479 #define Expr_Init(name, value, emode, scope, defined) \ 4480 (Expr) { name, value, emode, scope, defined } 4481 #else 4482 MAKE_INLINE Expr 4483 Expr_Init(const char *name, FStr value, 4484 VarEvalMode emode, GNode *scope, ExprDefined defined) 4485 { 4486 Expr expr; 4487 4488 expr.name = name; 4489 expr.value = value; 4490 expr.emode = emode; 4491 expr.scope = scope; 4492 expr.defined = defined; 4493 return expr; 4494 } 4495 #endif 4496 4497 /* 4498 * Expressions of the form ${:U...} with a trivial value are often generated 4499 * by .for loops and are boring, so evaluate them without debug logging. 4500 */ 4501 static bool 4502 Var_Parse_U(const char **pp, VarEvalMode emode, FStr *out_value) 4503 { 4504 const char *p; 4505 4506 p = *pp; 4507 if (!(p[0] == '$' && p[1] == '{' && p[2] == ':' && p[3] == 'U')) 4508 return false; 4509 4510 p += 4; 4511 while (*p != '$' && *p != '{' && *p != ':' && *p != '\\' && 4512 *p != '}' && *p != '\0') 4513 p++; 4514 if (*p != '}') 4515 return false; 4516 4517 *out_value = emode == VARE_PARSE 4518 ? FStr_InitRefer("") 4519 : FStr_InitOwn(bmake_strsedup(*pp + 4, p)); 4520 *pp = p + 1; 4521 return true; 4522 } 4523 4524 /* 4525 * Given the start of an expression (such as $v, $(VAR), ${VAR:Mpattern}), 4526 * extract the variable name and the modifiers, if any. While parsing, apply 4527 * the modifiers to the value of the expression. 4528 * 4529 * Input: 4530 * *pp The string to parse. 4531 * When called from CondParser_FuncCallEmpty, it can 4532 * also point to the "y" of "empty(VARNAME:Modifiers)". 4533 * scope The scope for finding variables. 4534 * emode Controls the exact details of parsing and evaluation. 4535 * 4536 * Output: 4537 * *pp The position where to continue parsing. 4538 * TODO: After a parse error, the value of *pp is 4539 * unspecified. It may not have been updated at all, 4540 * point to some random character in the string, to the 4541 * location of the parse error, or at the end of the 4542 * string. 4543 * return The value of the expression, never NULL. 4544 * return var_Error if there was a parse error. 4545 * return var_Error if the base variable of the expression was 4546 * undefined, emode is VARE_EVAL_DEFINED, and none of 4547 * the modifiers turned the undefined expression into a 4548 * defined expression. 4549 * XXX: It is not guaranteed that an error message has 4550 * been printed. 4551 * return varUndefined if the base variable of the expression 4552 * was undefined, emode was not VARE_EVAL_DEFINED, 4553 * and none of the modifiers turned the undefined 4554 * expression into a defined expression. 4555 */ 4556 FStr 4557 Var_Parse(const char **pp, GNode *scope, VarEvalMode emode) 4558 { 4559 const char *start, *p; 4560 bool haveModifier; /* true for ${VAR:...}, false for ${VAR} */ 4561 char startc; /* the actual '{' or '(' or '\0' */ 4562 char endc; /* the expected '}' or ')' or '\0' */ 4563 /* 4564 * true if the expression is based on one of the 7 predefined 4565 * variables that are local to a target, and the expression is 4566 * expanded in a non-local scope. The result is the text of the 4567 * expression, unaltered. This is needed to support dynamic sources. 4568 */ 4569 bool dynamic; 4570 const char *extramodifiers; 4571 Var *v; 4572 Expr expr = Expr_Init(NULL, FStr_InitRefer(NULL), 4573 emode == VARE_EVAL_DEFINED || emode == VARE_EVAL_DEFINED_LOUD 4574 ? VARE_EVAL : emode, 4575 scope, DEF_REGULAR); 4576 FStr val; 4577 int parseErrorsBefore = parseErrors; 4578 4579 if (Var_Parse_U(pp, emode, &val)) 4580 return val; 4581 4582 p = *pp; 4583 start = p; 4584 DEBUG2(VAR, "Var_Parse: %s (%s)\n", start, VarEvalMode_Name[emode]); 4585 4586 val = FStr_InitRefer(NULL); 4587 extramodifiers = NULL; /* extra modifiers to apply first */ 4588 dynamic = false; 4589 4590 endc = '\0'; /* Appease GCC. */ 4591 4592 startc = p[1]; 4593 if (startc != '(' && startc != '{') { 4594 if (!ParseVarnameShort(startc, pp, scope, emode, &val.str, &v)) 4595 return val; 4596 haveModifier = false; 4597 p++; 4598 } else { 4599 if (!ParseVarnameLong(&p, startc, scope, emode, expr.emode, 4600 parseErrorsBefore, 4601 pp, &val, 4602 &endc, &v, &haveModifier, &extramodifiers, 4603 &dynamic, &expr.defined)) 4604 return val; 4605 } 4606 4607 expr.name = v->name.str; 4608 if (v->inUse && VarEvalMode_ShouldEval(emode)) { 4609 Parse_Error(PARSE_FATAL, "Variable %s is recursive.", 4610 v->name.str); 4611 FStr_Done(&val); 4612 if (*p != '\0') 4613 p++; 4614 *pp = p; 4615 return FStr_InitRefer(var_Error); 4616 } 4617 4618 /* 4619 * FIXME: This assignment creates an alias to the current value of the 4620 * variable. This means that as long as the value of the expression 4621 * stays the same, the value of the variable must not change, and the 4622 * variable must not be deleted. Using the ':@' modifier, it is 4623 * possible (since var.c 1.212 from 2017-02-01) to delete the variable 4624 * while its value is still being used: 4625 * 4626 * VAR= value 4627 * _:= ${VAR:${:U:@VAR@@}:S,^,prefix,} 4628 * 4629 * The same effect might be achievable using the '::=' or the ':_' 4630 * modifiers. 4631 * 4632 * At the bottom of this function, the resulting value is compared to 4633 * the then-current value of the variable. This might also invoke 4634 * undefined behavior. 4635 */ 4636 expr.value = FStr_InitRefer(v->val.data); 4637 4638 if (!VarEvalMode_ShouldEval(emode)) 4639 EvalStack_Push(VSK_EXPR_PARSE, start, NULL); 4640 else if (expr.name[0] != '\0') 4641 EvalStack_Push(VSK_VARNAME, expr.name, &expr.value); 4642 else 4643 EvalStack_Push(VSK_EXPR, start, &expr.value); 4644 4645 /* 4646 * Before applying any modifiers, expand any nested expressions from 4647 * the variable value. 4648 */ 4649 if (VarEvalMode_ShouldEval(emode) && 4650 strchr(Expr_Str(&expr), '$') != NULL) { 4651 char *expanded; 4652 v->inUse = true; 4653 expanded = Var_Subst(Expr_Str(&expr), scope, expr.emode); 4654 v->inUse = false; 4655 /* TODO: handle errors */ 4656 Expr_SetValueOwn(&expr, expanded); 4657 } 4658 4659 if (extramodifiers != NULL) { 4660 const char *em = extramodifiers; 4661 ApplyModifiers(&expr, &em, '\0', '\0'); 4662 } 4663 4664 if (haveModifier) { 4665 p++; /* Skip initial colon. */ 4666 ApplyModifiers(&expr, &p, startc, endc); 4667 } 4668 4669 if (*p != '\0') /* Skip past endc if possible. */ 4670 p++; 4671 4672 *pp = p; 4673 4674 if (expr.defined == DEF_UNDEF) { 4675 Substring varname = Substring_InitStr(expr.name); 4676 FStr value = EvalUndefined(dynamic, start, p, varname, emode, 4677 parseErrorsBefore); 4678 Expr_SetValue(&expr, value); 4679 } 4680 4681 EvalStack_Pop(); 4682 4683 if (v->shortLived) { 4684 if (expr.value.str == v->val.data) { 4685 /* move ownership */ 4686 expr.value.freeIt = v->val.data; 4687 v->val.data = NULL; 4688 } 4689 VarFreeShortLived(v); 4690 } 4691 4692 return expr.value; 4693 } 4694 4695 static void 4696 VarSubstDollarDollar(const char **pp, Buffer *res, VarEvalMode emode) 4697 { 4698 /* A dollar sign may be escaped with another dollar sign. */ 4699 if (save_dollars && VarEvalMode_ShouldKeepDollar(emode)) 4700 Buf_AddByte(res, '$'); 4701 Buf_AddByte(res, '$'); 4702 *pp += 2; 4703 } 4704 4705 static void 4706 VarSubstExpr(const char **pp, Buffer *buf, GNode *scope, VarEvalMode emode) 4707 { 4708 const char *p = *pp; 4709 const char *nested_p = p; 4710 FStr val = Var_Parse(&nested_p, scope, emode); 4711 /* TODO: handle errors */ 4712 4713 if (val.str == var_Error || val.str == varUndefined) { 4714 if (!VarEvalMode_ShouldKeepUndef(emode) 4715 || val.str == var_Error) { 4716 p = nested_p; 4717 } else { 4718 /* 4719 * Copy the initial '$' of the undefined expression, 4720 * thereby deferring expansion of the expression, but 4721 * expand nested expressions if already possible. See 4722 * unit-tests/varparse-undef-partial.mk. 4723 */ 4724 Buf_AddByte(buf, *p); 4725 p++; 4726 } 4727 } else { 4728 p = nested_p; 4729 Buf_AddStr(buf, val.str); 4730 } 4731 4732 FStr_Done(&val); 4733 4734 *pp = p; 4735 } 4736 4737 /* 4738 * Skip as many characters as possible -- either to the end of the string, 4739 * or to the next dollar sign, which may start an expression. 4740 */ 4741 static void 4742 VarSubstPlain(const char **pp, Buffer *res) 4743 { 4744 const char *p = *pp; 4745 const char *start = p; 4746 4747 for (p++; *p != '$' && *p != '\0'; p++) 4748 continue; 4749 Buf_AddRange(res, start, p); 4750 *pp = p; 4751 } 4752 4753 /* 4754 * Expand all expressions like $V, ${VAR}, $(VAR:Modifiers) in the 4755 * given string. 4756 * 4757 * Input: 4758 * str The string in which the expressions are expanded. 4759 * scope The scope in which to start searching for variables. 4760 * The other scopes are searched as well. 4761 * emode The mode for parsing or evaluating subexpressions. 4762 */ 4763 char * 4764 Var_Subst(const char *str, GNode *scope, VarEvalMode emode) 4765 { 4766 const char *p = str; 4767 Buffer res; 4768 4769 Buf_Init(&res); 4770 4771 while (*p != '\0') { 4772 if (p[0] == '$' && p[1] == '$') 4773 VarSubstDollarDollar(&p, &res, emode); 4774 else if (p[0] == '$') 4775 VarSubstExpr(&p, &res, scope, emode); 4776 else 4777 VarSubstPlain(&p, &res); 4778 } 4779 4780 return Buf_DoneData(&res); 4781 } 4782 4783 char * 4784 Var_SubstInTarget(const char *str, GNode *scope) 4785 { 4786 char *res; 4787 EvalStack_Push(VSK_TARGET, scope->name, NULL); 4788 EvalStack_Push(VSK_COMMAND, str, NULL); 4789 res = Var_Subst(str, scope, VARE_EVAL); 4790 EvalStack_Pop(); 4791 EvalStack_Pop(); 4792 return res; 4793 } 4794 4795 void 4796 Var_ExportStackTrace(const char *target, const char *cmd) 4797 { 4798 char *stackTrace; 4799 4800 if (GetParentStackTrace() == NULL) 4801 return; 4802 4803 if (target != NULL) 4804 EvalStack_Push(VSK_TARGET, target, NULL); 4805 if (cmd != NULL) 4806 EvalStack_Push(VSK_COMMAND, cmd, NULL); 4807 4808 stackTrace = GetStackTrace(true); 4809 (void)setenv("MAKE_STACK_TRACE", stackTrace, 1); 4810 free(stackTrace); 4811 4812 if (cmd != NULL) 4813 EvalStack_Pop(); 4814 if (target != NULL) 4815 EvalStack_Pop(); 4816 } 4817 4818 void 4819 Var_Expand(FStr *str, GNode *scope, VarEvalMode emode) 4820 { 4821 char *expanded; 4822 4823 if (strchr(str->str, '$') == NULL) 4824 return; 4825 expanded = Var_Subst(str->str, scope, emode); 4826 /* TODO: handle errors */ 4827 FStr_Done(str); 4828 *str = FStr_InitOwn(expanded); 4829 } 4830 4831 void 4832 Var_Stats(void) 4833 { 4834 HashTable_DebugStats(&SCOPE_GLOBAL->vars, "Global variables"); 4835 } 4836 4837 static int 4838 StrAsc(const void *sa, const void *sb) 4839 { 4840 return strcmp( 4841 *((const char *const *)sa), *((const char *const *)sb)); 4842 } 4843 4844 4845 /* Print all variables in a scope, sorted by name. */ 4846 void 4847 Var_Dump(GNode *scope) 4848 { 4849 Vector /* of const char * */ vec; 4850 HashIter hi; 4851 size_t i; 4852 const char **varnames; 4853 4854 Vector_Init(&vec, sizeof(const char *)); 4855 4856 HashIter_Init(&hi, &scope->vars); 4857 while (HashIter_Next(&hi)) 4858 *(const char **)Vector_Push(&vec) = hi.entry->key; 4859 varnames = vec.items; 4860 4861 qsort(varnames, vec.len, sizeof varnames[0], StrAsc); 4862 4863 for (i = 0; i < vec.len; i++) { 4864 const char *varname = varnames[i]; 4865 const Var *var = HashTable_FindValue(&scope->vars, varname); 4866 debug_printf("%-16s = %s%s\n", varname, 4867 var->val.data, ValueDescription(var->val.data)); 4868 } 4869 4870 Vector_Done(&vec); 4871 } 4872