1 //===-- Args.cpp ------------------------------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "lldb/Utility/Args.h" 10 #include "lldb/Utility/ConstString.h" 11 #include "lldb/Utility/FileSpec.h" 12 #include "lldb/Utility/Stream.h" 13 #include "lldb/Utility/StringList.h" 14 #include "llvm/ADT/StringSwitch.h" 15 16 using namespace lldb; 17 using namespace lldb_private; 18 19 // A helper function for argument parsing. 20 // Parses the initial part of the first argument using normal double quote 21 // rules: backslash escapes the double quote and itself. The parsed string is 22 // appended to the second argument. The function returns the unparsed portion 23 // of the string, starting at the closing quote. 24 static llvm::StringRef ParseDoubleQuotes(llvm::StringRef quoted, 25 std::string &result) { 26 // Inside double quotes, '\' and '"' are special. 27 static const char *k_escapable_characters = "\"\\"; 28 while (true) { 29 // Skip over over regular characters and append them. 30 size_t regular = quoted.find_first_of(k_escapable_characters); 31 result += quoted.substr(0, regular); 32 quoted = quoted.substr(regular); 33 34 // If we have reached the end of string or the closing quote, we're done. 35 if (quoted.empty() || quoted.front() == '"') 36 break; 37 38 // We have found a backslash. 39 quoted = quoted.drop_front(); 40 41 if (quoted.empty()) { 42 // A lone backslash at the end of string, let's just append it. 43 result += '\\'; 44 break; 45 } 46 47 // If the character after the backslash is not a whitelisted escapable 48 // character, we leave the character sequence untouched. 49 if (strchr(k_escapable_characters, quoted.front()) == nullptr) 50 result += '\\'; 51 52 result += quoted.front(); 53 quoted = quoted.drop_front(); 54 } 55 56 return quoted; 57 } 58 59 static size_t ArgvToArgc(const char **argv) { 60 if (!argv) 61 return 0; 62 size_t count = 0; 63 while (*argv++) 64 ++count; 65 return count; 66 } 67 68 // Trims all whitespace that can separate command line arguments from the left 69 // side of the string. 70 static llvm::StringRef ltrimForArgs(llvm::StringRef str) { 71 static const char *k_space_separators = " \t"; 72 return str.ltrim(k_space_separators); 73 } 74 75 // A helper function for SetCommandString. Parses a single argument from the 76 // command string, processing quotes and backslashes in a shell-like manner. 77 // The function returns a tuple consisting of the parsed argument, the quote 78 // char used, and the unparsed portion of the string starting at the first 79 // unqouted, unescaped whitespace character. 80 static std::tuple<std::string, char, llvm::StringRef> 81 ParseSingleArgument(llvm::StringRef command) { 82 // Argument can be split into multiple discontiguous pieces, for example: 83 // "Hello ""World" 84 // this would result in a single argument "Hello World" (without the quotes) 85 // since the quotes would be removed and there is not space between the 86 // strings. 87 std::string arg; 88 89 // Since we can have multiple quotes that form a single command in a command 90 // like: "Hello "world'!' (which will make a single argument "Hello world!") 91 // we remember the first quote character we encounter and use that for the 92 // quote character. 93 char first_quote_char = '\0'; 94 95 bool arg_complete = false; 96 do { 97 // Skip over over regular characters and append them. 98 size_t regular = command.find_first_of(" \t\r\"'`\\"); 99 arg += command.substr(0, regular); 100 command = command.substr(regular); 101 102 if (command.empty()) 103 break; 104 105 char special = command.front(); 106 command = command.drop_front(); 107 switch (special) { 108 case '\\': 109 if (command.empty()) { 110 arg += '\\'; 111 break; 112 } 113 114 // If the character after the backslash is not a whitelisted escapable 115 // character, we leave the character sequence untouched. 116 if (strchr(" \t\\'\"`", command.front()) == nullptr) 117 arg += '\\'; 118 119 arg += command.front(); 120 command = command.drop_front(); 121 122 break; 123 124 case ' ': 125 case '\t': 126 case '\r': 127 // We are not inside any quotes, we just found a space after an argument. 128 // We are done. 129 arg_complete = true; 130 break; 131 132 case '"': 133 case '\'': 134 case '`': 135 // We found the start of a quote scope. 136 if (first_quote_char == '\0') 137 first_quote_char = special; 138 139 if (special == '"') 140 command = ParseDoubleQuotes(command, arg); 141 else { 142 // For single quotes, we simply skip ahead to the matching quote 143 // character (or the end of the string). 144 size_t quoted = command.find(special); 145 arg += command.substr(0, quoted); 146 command = command.substr(quoted); 147 } 148 149 // If we found a closing quote, skip it. 150 if (!command.empty()) 151 command = command.drop_front(); 152 153 break; 154 } 155 } while (!arg_complete); 156 157 return std::make_tuple(arg, first_quote_char, command); 158 } 159 160 Args::ArgEntry::ArgEntry(llvm::StringRef str, char quote) : quote(quote) { 161 size_t size = str.size(); 162 ptr.reset(new char[size + 1]); 163 164 ::memcpy(data(), str.data() ? str.data() : "", size); 165 ptr[size] = 0; 166 ref = llvm::StringRef(c_str(), size); 167 } 168 169 // Args constructor 170 Args::Args(llvm::StringRef command) { SetCommandString(command); } 171 172 Args::Args(const Args &rhs) { *this = rhs; } 173 174 Args::Args(const StringList &list) : Args() { 175 for (size_t i = 0; i < list.GetSize(); ++i) 176 AppendArgument(list[i]); 177 } 178 179 Args &Args::operator=(const Args &rhs) { 180 Clear(); 181 182 m_argv.clear(); 183 m_entries.clear(); 184 for (auto &entry : rhs.m_entries) { 185 m_entries.emplace_back(entry.ref, entry.quote); 186 m_argv.push_back(m_entries.back().data()); 187 } 188 m_argv.push_back(nullptr); 189 return *this; 190 } 191 192 // Destructor 193 Args::~Args() {} 194 195 void Args::Dump(Stream &s, const char *label_name) const { 196 if (!label_name) 197 return; 198 199 int i = 0; 200 for (auto &entry : m_entries) { 201 s.Indent(); 202 s.Format("{0}[{1}]=\"{2}\"\n", label_name, i++, entry.ref); 203 } 204 s.Format("{0}[{1}]=NULL\n", label_name, i); 205 s.EOL(); 206 } 207 208 bool Args::GetCommandString(std::string &command) const { 209 command.clear(); 210 211 for (size_t i = 0; i < m_entries.size(); ++i) { 212 if (i > 0) 213 command += ' '; 214 command += m_entries[i].ref; 215 } 216 217 return !m_entries.empty(); 218 } 219 220 bool Args::GetQuotedCommandString(std::string &command) const { 221 command.clear(); 222 223 for (size_t i = 0; i < m_entries.size(); ++i) { 224 if (i > 0) 225 command += ' '; 226 227 if (m_entries[i].quote) { 228 command += m_entries[i].quote; 229 command += m_entries[i].ref; 230 command += m_entries[i].quote; 231 } else { 232 command += m_entries[i].ref; 233 } 234 } 235 236 return !m_entries.empty(); 237 } 238 239 void Args::SetCommandString(llvm::StringRef command) { 240 Clear(); 241 m_argv.clear(); 242 243 command = ltrimForArgs(command); 244 std::string arg; 245 char quote; 246 while (!command.empty()) { 247 std::tie(arg, quote, command) = ParseSingleArgument(command); 248 m_entries.emplace_back(arg, quote); 249 m_argv.push_back(m_entries.back().data()); 250 command = ltrimForArgs(command); 251 } 252 m_argv.push_back(nullptr); 253 } 254 255 size_t Args::GetArgumentCount() const { return m_entries.size(); } 256 257 const char *Args::GetArgumentAtIndex(size_t idx) const { 258 if (idx < m_argv.size()) 259 return m_argv[idx]; 260 return nullptr; 261 } 262 263 char Args::GetArgumentQuoteCharAtIndex(size_t idx) const { 264 if (idx < m_entries.size()) 265 return m_entries[idx].quote; 266 return '\0'; 267 } 268 269 char **Args::GetArgumentVector() { 270 assert(!m_argv.empty()); 271 // TODO: functions like execve and posix_spawnp exhibit undefined behavior 272 // when argv or envp is null. So the code below is actually wrong. However, 273 // other code in LLDB depends on it being null. The code has been acting 274 // this way for some time, so it makes sense to leave it this way until 275 // someone has the time to come along and fix it. 276 return (m_argv.size() > 1) ? m_argv.data() : nullptr; 277 } 278 279 const char **Args::GetConstArgumentVector() const { 280 assert(!m_argv.empty()); 281 return (m_argv.size() > 1) ? const_cast<const char **>(m_argv.data()) 282 : nullptr; 283 } 284 285 void Args::Shift() { 286 // Don't pop the last NULL terminator from the argv array 287 if (m_entries.empty()) 288 return; 289 m_argv.erase(m_argv.begin()); 290 m_entries.erase(m_entries.begin()); 291 } 292 293 void Args::Unshift(llvm::StringRef arg_str, char quote_char) { 294 InsertArgumentAtIndex(0, arg_str, quote_char); 295 } 296 297 void Args::AppendArguments(const Args &rhs) { 298 assert(m_argv.size() == m_entries.size() + 1); 299 assert(m_argv.back() == nullptr); 300 m_argv.pop_back(); 301 for (auto &entry : rhs.m_entries) { 302 m_entries.emplace_back(entry.ref, entry.quote); 303 m_argv.push_back(m_entries.back().data()); 304 } 305 m_argv.push_back(nullptr); 306 } 307 308 void Args::AppendArguments(const char **argv) { 309 size_t argc = ArgvToArgc(argv); 310 311 assert(m_argv.size() == m_entries.size() + 1); 312 assert(m_argv.back() == nullptr); 313 m_argv.pop_back(); 314 for (auto arg : llvm::makeArrayRef(argv, argc)) { 315 m_entries.emplace_back(arg, '\0'); 316 m_argv.push_back(m_entries.back().data()); 317 } 318 319 m_argv.push_back(nullptr); 320 } 321 322 void Args::AppendArgument(llvm::StringRef arg_str, char quote_char) { 323 InsertArgumentAtIndex(GetArgumentCount(), arg_str, quote_char); 324 } 325 326 void Args::InsertArgumentAtIndex(size_t idx, llvm::StringRef arg_str, 327 char quote_char) { 328 assert(m_argv.size() == m_entries.size() + 1); 329 assert(m_argv.back() == nullptr); 330 331 if (idx > m_entries.size()) 332 return; 333 m_entries.emplace(m_entries.begin() + idx, arg_str, quote_char); 334 m_argv.insert(m_argv.begin() + idx, m_entries[idx].data()); 335 } 336 337 void Args::ReplaceArgumentAtIndex(size_t idx, llvm::StringRef arg_str, 338 char quote_char) { 339 assert(m_argv.size() == m_entries.size() + 1); 340 assert(m_argv.back() == nullptr); 341 342 if (idx >= m_entries.size()) 343 return; 344 345 if (arg_str.size() > m_entries[idx].ref.size()) { 346 m_entries[idx] = ArgEntry(arg_str, quote_char); 347 m_argv[idx] = m_entries[idx].data(); 348 } else { 349 const char *src_data = arg_str.data() ? arg_str.data() : ""; 350 ::memcpy(m_entries[idx].data(), src_data, arg_str.size()); 351 m_entries[idx].ptr[arg_str.size()] = 0; 352 m_entries[idx].ref = m_entries[idx].ref.take_front(arg_str.size()); 353 } 354 } 355 356 void Args::DeleteArgumentAtIndex(size_t idx) { 357 if (idx >= m_entries.size()) 358 return; 359 360 m_argv.erase(m_argv.begin() + idx); 361 m_entries.erase(m_entries.begin() + idx); 362 } 363 364 void Args::SetArguments(size_t argc, const char **argv) { 365 Clear(); 366 367 auto args = llvm::makeArrayRef(argv, argc); 368 m_entries.resize(argc); 369 m_argv.resize(argc + 1); 370 for (size_t i = 0; i < args.size(); ++i) { 371 char quote = 372 ((args[i][0] == '\'') || (args[i][0] == '"') || (args[i][0] == '`')) 373 ? args[i][0] 374 : '\0'; 375 376 m_entries[i] = ArgEntry(args[i], quote); 377 m_argv[i] = m_entries[i].data(); 378 } 379 } 380 381 void Args::SetArguments(const char **argv) { 382 SetArguments(ArgvToArgc(argv), argv); 383 } 384 385 void Args::Clear() { 386 m_entries.clear(); 387 m_argv.clear(); 388 m_argv.push_back(nullptr); 389 } 390 391 const char *Args::StripSpaces(std::string &s, bool leading, bool trailing, 392 bool return_null_if_empty) { 393 static const char *k_white_space = " \t\v"; 394 if (!s.empty()) { 395 if (leading) { 396 size_t pos = s.find_first_not_of(k_white_space); 397 if (pos == std::string::npos) 398 s.clear(); 399 else if (pos > 0) 400 s.erase(0, pos); 401 } 402 403 if (trailing) { 404 size_t rpos = s.find_last_not_of(k_white_space); 405 if (rpos != std::string::npos && rpos + 1 < s.size()) 406 s.erase(rpos + 1); 407 } 408 } 409 if (return_null_if_empty && s.empty()) 410 return nullptr; 411 return s.c_str(); 412 } 413 414 const char *Args::GetShellSafeArgument(const FileSpec &shell, 415 const char *unsafe_arg, 416 std::string &safe_arg) { 417 struct ShellDescriptor { 418 ConstString m_basename; 419 const char *m_escapables; 420 }; 421 422 static ShellDescriptor g_Shells[] = {{ConstString("bash"), " '\"<>()&"}, 423 {ConstString("tcsh"), " '\"<>()&$"}, 424 {ConstString("sh"), " '\"<>()&"}}; 425 426 // safe minimal set 427 const char *escapables = " '\""; 428 429 if (auto basename = shell.GetFilename()) { 430 for (const auto &Shell : g_Shells) { 431 if (Shell.m_basename == basename) { 432 escapables = Shell.m_escapables; 433 break; 434 } 435 } 436 } 437 438 safe_arg.assign(unsafe_arg); 439 size_t prev_pos = 0; 440 while (prev_pos < safe_arg.size()) { 441 // Escape spaces and quotes 442 size_t pos = safe_arg.find_first_of(escapables, prev_pos); 443 if (pos != std::string::npos) { 444 safe_arg.insert(pos, 1, '\\'); 445 prev_pos = pos + 2; 446 } else 447 break; 448 } 449 return safe_arg.c_str(); 450 } 451 452 lldb::Encoding Args::StringToEncoding(llvm::StringRef s, 453 lldb::Encoding fail_value) { 454 return llvm::StringSwitch<lldb::Encoding>(s) 455 .Case("uint", eEncodingUint) 456 .Case("sint", eEncodingSint) 457 .Case("ieee754", eEncodingIEEE754) 458 .Case("vector", eEncodingVector) 459 .Default(fail_value); 460 } 461 462 uint32_t Args::StringToGenericRegister(llvm::StringRef s) { 463 if (s.empty()) 464 return LLDB_INVALID_REGNUM; 465 uint32_t result = llvm::StringSwitch<uint32_t>(s) 466 .Case("pc", LLDB_REGNUM_GENERIC_PC) 467 .Case("sp", LLDB_REGNUM_GENERIC_SP) 468 .Case("fp", LLDB_REGNUM_GENERIC_FP) 469 .Cases("ra", "lr", LLDB_REGNUM_GENERIC_RA) 470 .Case("flags", LLDB_REGNUM_GENERIC_FLAGS) 471 .Case("arg1", LLDB_REGNUM_GENERIC_ARG1) 472 .Case("arg2", LLDB_REGNUM_GENERIC_ARG2) 473 .Case("arg3", LLDB_REGNUM_GENERIC_ARG3) 474 .Case("arg4", LLDB_REGNUM_GENERIC_ARG4) 475 .Case("arg5", LLDB_REGNUM_GENERIC_ARG5) 476 .Case("arg6", LLDB_REGNUM_GENERIC_ARG6) 477 .Case("arg7", LLDB_REGNUM_GENERIC_ARG7) 478 .Case("arg8", LLDB_REGNUM_GENERIC_ARG8) 479 .Default(LLDB_INVALID_REGNUM); 480 return result; 481 } 482 483 void Args::EncodeEscapeSequences(const char *src, std::string &dst) { 484 dst.clear(); 485 if (src) { 486 for (const char *p = src; *p != '\0'; ++p) { 487 size_t non_special_chars = ::strcspn(p, "\\"); 488 if (non_special_chars > 0) { 489 dst.append(p, non_special_chars); 490 p += non_special_chars; 491 if (*p == '\0') 492 break; 493 } 494 495 if (*p == '\\') { 496 ++p; // skip the slash 497 switch (*p) { 498 case 'a': 499 dst.append(1, '\a'); 500 break; 501 case 'b': 502 dst.append(1, '\b'); 503 break; 504 case 'f': 505 dst.append(1, '\f'); 506 break; 507 case 'n': 508 dst.append(1, '\n'); 509 break; 510 case 'r': 511 dst.append(1, '\r'); 512 break; 513 case 't': 514 dst.append(1, '\t'); 515 break; 516 case 'v': 517 dst.append(1, '\v'); 518 break; 519 case '\\': 520 dst.append(1, '\\'); 521 break; 522 case '\'': 523 dst.append(1, '\''); 524 break; 525 case '"': 526 dst.append(1, '"'); 527 break; 528 case '0': 529 // 1 to 3 octal chars 530 { 531 // Make a string that can hold onto the initial zero char, up to 3 532 // octal digits, and a terminating NULL. 533 char oct_str[5] = {'\0', '\0', '\0', '\0', '\0'}; 534 535 int i; 536 for (i = 0; (p[i] >= '0' && p[i] <= '7') && i < 4; ++i) 537 oct_str[i] = p[i]; 538 539 // We don't want to consume the last octal character since the main 540 // for loop will do this for us, so we advance p by one less than i 541 // (even if i is zero) 542 p += i - 1; 543 unsigned long octal_value = ::strtoul(oct_str, nullptr, 8); 544 if (octal_value <= UINT8_MAX) { 545 dst.append(1, static_cast<char>(octal_value)); 546 } 547 } 548 break; 549 550 case 'x': 551 // hex number in the format 552 if (isxdigit(p[1])) { 553 ++p; // Skip the 'x' 554 555 // Make a string that can hold onto two hex chars plus a 556 // NULL terminator 557 char hex_str[3] = {*p, '\0', '\0'}; 558 if (isxdigit(p[1])) { 559 ++p; // Skip the first of the two hex chars 560 hex_str[1] = *p; 561 } 562 563 unsigned long hex_value = strtoul(hex_str, nullptr, 16); 564 if (hex_value <= UINT8_MAX) 565 dst.append(1, static_cast<char>(hex_value)); 566 } else { 567 dst.append(1, 'x'); 568 } 569 break; 570 571 default: 572 // Just desensitize any other character by just printing what came 573 // after the '\' 574 dst.append(1, *p); 575 break; 576 } 577 } 578 } 579 } 580 } 581 582 void Args::ExpandEscapedCharacters(const char *src, std::string &dst) { 583 dst.clear(); 584 if (src) { 585 for (const char *p = src; *p != '\0'; ++p) { 586 if (isprint(*p)) 587 dst.append(1, *p); 588 else { 589 switch (*p) { 590 case '\a': 591 dst.append("\\a"); 592 break; 593 case '\b': 594 dst.append("\\b"); 595 break; 596 case '\f': 597 dst.append("\\f"); 598 break; 599 case '\n': 600 dst.append("\\n"); 601 break; 602 case '\r': 603 dst.append("\\r"); 604 break; 605 case '\t': 606 dst.append("\\t"); 607 break; 608 case '\v': 609 dst.append("\\v"); 610 break; 611 case '\'': 612 dst.append("\\'"); 613 break; 614 case '"': 615 dst.append("\\\""); 616 break; 617 case '\\': 618 dst.append("\\\\"); 619 break; 620 default: { 621 // Just encode as octal 622 dst.append("\\0"); 623 char octal_str[32]; 624 snprintf(octal_str, sizeof(octal_str), "%o", *p); 625 dst.append(octal_str); 626 } break; 627 } 628 } 629 } 630 } 631 } 632 633 std::string Args::EscapeLLDBCommandArgument(const std::string &arg, 634 char quote_char) { 635 const char *chars_to_escape = nullptr; 636 switch (quote_char) { 637 case '\0': 638 chars_to_escape = " \t\\'\"`"; 639 break; 640 case '"': 641 chars_to_escape = "$\"`\\"; 642 break; 643 case '`': 644 case '\'': 645 return arg; 646 default: 647 assert(false && "Unhandled quote character"); 648 return arg; 649 } 650 651 std::string res; 652 res.reserve(arg.size()); 653 for (char c : arg) { 654 if (::strchr(chars_to_escape, c)) 655 res.push_back('\\'); 656 res.push_back(c); 657 } 658 return res; 659 } 660 661 OptionsWithRaw::OptionsWithRaw(llvm::StringRef arg_string) { 662 SetFromString(arg_string); 663 } 664 665 void OptionsWithRaw::SetFromString(llvm::StringRef arg_string) { 666 const llvm::StringRef original_args = arg_string; 667 668 arg_string = ltrimForArgs(arg_string); 669 std::string arg; 670 char quote; 671 672 // If the string doesn't start with a dash, we just have no options and just 673 // a raw part. 674 if (!arg_string.startswith("-")) { 675 m_suffix = original_args; 676 return; 677 } 678 679 bool found_suffix = false; 680 681 while (!arg_string.empty()) { 682 // The length of the prefix before parsing. 683 std::size_t prev_prefix_length = original_args.size() - arg_string.size(); 684 685 // Parse the next argument from the remaining string. 686 std::tie(arg, quote, arg_string) = ParseSingleArgument(arg_string); 687 688 // If we get an unquoted '--' argument, then we reached the suffix part 689 // of the command. 690 Args::ArgEntry entry(arg, quote); 691 if (!entry.IsQuoted() && arg == "--") { 692 // The remaining line is the raw suffix, and the line we parsed so far 693 // needs to be interpreted as arguments. 694 m_has_args = true; 695 m_suffix = arg_string; 696 found_suffix = true; 697 698 // The length of the prefix after parsing. 699 std::size_t prefix_length = original_args.size() - arg_string.size(); 700 701 // Take the string we know contains all the arguments and actually parse 702 // it as proper arguments. 703 llvm::StringRef prefix = original_args.take_front(prev_prefix_length); 704 m_args = Args(prefix); 705 m_arg_string = prefix; 706 707 // We also record the part of the string that contains the arguments plus 708 // the delimiter. 709 m_arg_string_with_delimiter = original_args.take_front(prefix_length); 710 711 // As the rest of the string became the raw suffix, we are done here. 712 break; 713 } 714 715 arg_string = ltrimForArgs(arg_string); 716 } 717 718 // If we didn't find a suffix delimiter, the whole string is the raw suffix. 719 if (!found_suffix) { 720 found_suffix = true; 721 m_suffix = original_args; 722 } 723 } 724