cmSystemTools.cxx 87 KB

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  1. /* Distributed under the OSI-approved BSD 3-Clause License. See accompanying
  2. file Copyright.txt or https://cmake.org/licensing for details. */
  3. #include "cmSystemTools.h"
  4. #include "cmAlgorithms.h"
  5. #include "cmDuration.h"
  6. #include "cmProcessOutput.h"
  7. #include "cmRange.h"
  8. #include "cm_uv.h"
  9. #if defined(CMAKE_BUILD_WITH_CMAKE)
  10. # include "cmArchiveWrite.h"
  11. # include "cmLocale.h"
  12. # include "cm_libarchive.h"
  13. # ifndef __LA_INT64_T
  14. # define __LA_INT64_T la_int64_t
  15. # endif
  16. # ifndef __LA_SSIZE_T
  17. # define __LA_SSIZE_T la_ssize_t
  18. # endif
  19. #endif
  20. #if defined(CMAKE_BUILD_WITH_CMAKE)
  21. # include "cmCryptoHash.h"
  22. #endif
  23. #if defined(CMAKE_USE_ELF_PARSER)
  24. # include "cmELF.h"
  25. #endif
  26. #if defined(CMAKE_USE_MACH_PARSER)
  27. # include "cmMachO.h"
  28. #endif
  29. #include "cmsys/Directory.hxx"
  30. #include "cmsys/Encoding.hxx"
  31. #include "cmsys/FStream.hxx"
  32. #include "cmsys/RegularExpression.hxx"
  33. #include "cmsys/System.h"
  34. #include "cmsys/Terminal.h"
  35. #include <algorithm>
  36. #include <assert.h>
  37. #include <ctype.h>
  38. #include <errno.h>
  39. #include <fcntl.h>
  40. #include <iostream>
  41. #include <sstream>
  42. #include <stdio.h>
  43. #include <stdlib.h>
  44. #include <string.h>
  45. #include <time.h>
  46. #include <utility>
  47. #include <vector>
  48. #if defined(_WIN32)
  49. # include <windows.h>
  50. // include wincrypt.h after windows.h
  51. # include <wincrypt.h>
  52. #else
  53. # include <sys/time.h>
  54. # include <unistd.h>
  55. #endif
  56. #if defined(_WIN32) && \
  57. (defined(_MSC_VER) || defined(__WATCOMC__) || defined(__MINGW32__))
  58. # include <io.h>
  59. #endif
  60. #if defined(__APPLE__)
  61. # include <mach-o/dyld.h>
  62. #endif
  63. #ifdef __QNX__
  64. # include <malloc.h> /* for malloc/free on QNX */
  65. #endif
  66. namespace {
  67. cmSystemTools::InterruptCallback s_InterruptCallback;
  68. cmSystemTools::MessageCallback s_MessageCallback;
  69. cmSystemTools::OutputCallback s_StderrCallback;
  70. cmSystemTools::OutputCallback s_StdoutCallback;
  71. } // namespace
  72. static bool cm_isspace(char c)
  73. {
  74. return ((c & 0x80) == 0) && isspace(c);
  75. }
  76. #if !defined(HAVE_ENVIRON_NOT_REQUIRE_PROTOTYPE)
  77. // For GetEnvironmentVariables
  78. # if defined(_WIN32)
  79. extern __declspec(dllimport) char** environ;
  80. # else
  81. extern char** environ;
  82. # endif
  83. #endif
  84. #if defined(CMAKE_BUILD_WITH_CMAKE)
  85. static std::string cm_archive_entry_pathname(struct archive_entry* entry)
  86. {
  87. # if cmsys_STL_HAS_WSTRING
  88. return cmsys::Encoding::ToNarrow(archive_entry_pathname_w(entry));
  89. # else
  90. return archive_entry_pathname(entry);
  91. # endif
  92. }
  93. static int cm_archive_read_open_file(struct archive* a, const char* file,
  94. int block_size)
  95. {
  96. # if cmsys_STL_HAS_WSTRING
  97. std::wstring wfile = cmsys::Encoding::ToWide(file);
  98. return archive_read_open_filename_w(a, wfile.c_str(), block_size);
  99. # else
  100. return archive_read_open_filename(a, file, block_size);
  101. # endif
  102. }
  103. #endif
  104. #ifdef _WIN32
  105. #elif defined(__APPLE__)
  106. # include <crt_externs.h>
  107. # define environ (*_NSGetEnviron())
  108. #endif
  109. bool cmSystemTools::s_RunCommandHideConsole = false;
  110. bool cmSystemTools::s_DisableRunCommandOutput = false;
  111. bool cmSystemTools::s_ErrorOccured = false;
  112. bool cmSystemTools::s_FatalErrorOccured = false;
  113. bool cmSystemTools::s_ForceUnixPaths = false;
  114. // replace replace with with as many times as it shows up in source.
  115. // write the result into source.
  116. #if defined(_WIN32) && !defined(__CYGWIN__)
  117. void cmSystemTools::ExpandRegistryValues(std::string& source, KeyWOW64 view)
  118. {
  119. // Regular expression to match anything inside [...] that begins in HKEY.
  120. // Note that there is a special rule for regular expressions to match a
  121. // close square-bracket inside a list delimited by square brackets.
  122. // The "[^]]" part of this expression will match any character except
  123. // a close square-bracket. The ']' character must be the first in the
  124. // list of characters inside the [^...] block of the expression.
  125. cmsys::RegularExpression regEntry("\\[(HKEY[^]]*)\\]");
  126. // check for black line or comment
  127. while (regEntry.find(source)) {
  128. // the arguments are the second match
  129. std::string key = regEntry.match(1);
  130. std::string val;
  131. if (ReadRegistryValue(key.c_str(), val, view)) {
  132. std::string reg = "[";
  133. reg += key + "]";
  134. cmSystemTools::ReplaceString(source, reg.c_str(), val.c_str());
  135. } else {
  136. std::string reg = "[";
  137. reg += key + "]";
  138. cmSystemTools::ReplaceString(source, reg.c_str(), "/registry");
  139. }
  140. }
  141. }
  142. #else
  143. void cmSystemTools::ExpandRegistryValues(std::string& source,
  144. KeyWOW64 /*unused*/)
  145. {
  146. cmsys::RegularExpression regEntry("\\[(HKEY[^]]*)\\]");
  147. while (regEntry.find(source)) {
  148. // the arguments are the second match
  149. std::string key = regEntry.match(1);
  150. std::string reg = "[";
  151. reg += key + "]";
  152. cmSystemTools::ReplaceString(source, reg.c_str(), "/registry");
  153. }
  154. }
  155. #endif
  156. std::string cmSystemTools::EscapeQuotes(const std::string& str)
  157. {
  158. std::string result;
  159. result.reserve(str.size());
  160. for (const char* ch = str.c_str(); *ch != '\0'; ++ch) {
  161. if (*ch == '"') {
  162. result += '\\';
  163. }
  164. result += *ch;
  165. }
  166. return result;
  167. }
  168. std::string cmSystemTools::HelpFileName(std::string name)
  169. {
  170. cmSystemTools::ReplaceString(name, "<", "");
  171. cmSystemTools::ReplaceString(name, ">", "");
  172. return name;
  173. }
  174. std::string cmSystemTools::TrimWhitespace(const std::string& s)
  175. {
  176. std::string::const_iterator start = s.begin();
  177. while (start != s.end() && cm_isspace(*start)) {
  178. ++start;
  179. }
  180. if (start == s.end()) {
  181. return "";
  182. }
  183. std::string::const_iterator stop = s.end() - 1;
  184. while (cm_isspace(*stop)) {
  185. --stop;
  186. }
  187. return std::string(start, stop + 1);
  188. }
  189. void cmSystemTools::Error(const std::string& m)
  190. {
  191. std::string message = "CMake Error: " + m;
  192. cmSystemTools::s_ErrorOccured = true;
  193. cmSystemTools::Message(message, "Error");
  194. }
  195. void cmSystemTools::SetInterruptCallback(InterruptCallback f)
  196. {
  197. s_InterruptCallback = std::move(f);
  198. }
  199. bool cmSystemTools::GetInterruptFlag()
  200. {
  201. if (s_InterruptCallback) {
  202. return s_InterruptCallback();
  203. }
  204. return false;
  205. }
  206. void cmSystemTools::SetMessageCallback(MessageCallback f)
  207. {
  208. s_MessageCallback = std::move(f);
  209. }
  210. void cmSystemTools::SetStdoutCallback(OutputCallback f)
  211. {
  212. s_StdoutCallback = std::move(f);
  213. }
  214. void cmSystemTools::SetStderrCallback(OutputCallback f)
  215. {
  216. s_StderrCallback = std::move(f);
  217. }
  218. void cmSystemTools::Stderr(const std::string& s)
  219. {
  220. if (s_StderrCallback) {
  221. s_StderrCallback(s);
  222. } else {
  223. std::cerr << s << std::flush;
  224. }
  225. }
  226. void cmSystemTools::Stdout(const std::string& s)
  227. {
  228. if (s_StdoutCallback) {
  229. s_StdoutCallback(s);
  230. } else {
  231. std::cout << s << std::flush;
  232. }
  233. }
  234. void cmSystemTools::Message(const std::string& m, const char* title)
  235. {
  236. if (s_MessageCallback) {
  237. s_MessageCallback(m, title);
  238. } else {
  239. std::cerr << m << std::endl;
  240. }
  241. }
  242. void cmSystemTools::ReportLastSystemError(const char* msg)
  243. {
  244. std::string m = msg;
  245. m += ": System Error: ";
  246. m += Superclass::GetLastSystemError();
  247. cmSystemTools::Error(m);
  248. }
  249. bool cmSystemTools::IsInternallyOn(const char* val)
  250. {
  251. if (!val) {
  252. return false;
  253. }
  254. std::string v = val;
  255. if (v.size() > 4) {
  256. return false;
  257. }
  258. for (char& c : v) {
  259. c = static_cast<char>(toupper(c));
  260. }
  261. return v == "I_ON";
  262. }
  263. bool cmSystemTools::IsOn(const char* val)
  264. {
  265. if (!val) {
  266. return false;
  267. }
  268. /* clang-format off */
  269. // "1"
  270. if (val[0] == '1' && val[1] == '\0') {
  271. return true;
  272. }
  273. // "ON"
  274. if ((val[0] == 'O' || val[0] == 'o') &&
  275. (val[1] == 'N' || val[1] == 'n') && val[2] == '\0') {
  276. return true;
  277. }
  278. // "Y", "YES"
  279. if ((val[0] == 'Y' || val[0] == 'y') && (val[1] == '\0' || (
  280. (val[1] == 'E' || val[1] == 'e') &&
  281. (val[2] == 'S' || val[2] == 's') && val[3] == '\0'))) {
  282. return true;
  283. }
  284. // "TRUE"
  285. if ((val[0] == 'T' || val[0] == 't') &&
  286. (val[1] == 'R' || val[1] == 'r') &&
  287. (val[2] == 'U' || val[2] == 'u') &&
  288. (val[3] == 'E' || val[3] == 'e') && val[4] == '\0') {
  289. return true;
  290. }
  291. /* clang-format on */
  292. return false;
  293. }
  294. bool cmSystemTools::IsOn(const std::string& val)
  295. {
  296. return cmSystemTools::IsOn(val.c_str());
  297. }
  298. bool cmSystemTools::IsNOTFOUND(const char* val)
  299. {
  300. if (strcmp(val, "NOTFOUND") == 0) {
  301. return true;
  302. }
  303. return cmHasLiteralSuffix(val, "-NOTFOUND");
  304. }
  305. bool cmSystemTools::IsOff(const char* val)
  306. {
  307. // ""
  308. if (!val || val[0] == '\0') {
  309. return true;
  310. }
  311. /* clang-format off */
  312. // "0"
  313. if (val[0] == '0' && val[1] == '\0') {
  314. return true;
  315. }
  316. // "OFF"
  317. if ((val[0] == 'O' || val[0] == 'o') &&
  318. (val[1] == 'F' || val[1] == 'f') &&
  319. (val[2] == 'F' || val[2] == 'f') && val[3] == '\0') {
  320. return true;
  321. }
  322. // "N", "NO"
  323. if ((val[0] == 'N' || val[0] == 'n') && (val[1] == '\0' || (
  324. (val[1] == 'O' || val[1] == 'o') && val[2] == '\0'))) {
  325. return true;
  326. }
  327. // "FALSE"
  328. if ((val[0] == 'F' || val[0] == 'f') &&
  329. (val[1] == 'A' || val[1] == 'a') &&
  330. (val[2] == 'L' || val[2] == 'l') &&
  331. (val[3] == 'S' || val[3] == 's') &&
  332. (val[4] == 'E' || val[4] == 'e') && val[5] == '\0') {
  333. return true;
  334. }
  335. // "IGNORE"
  336. if ((val[0] == 'I' || val[0] == 'i') &&
  337. (val[1] == 'G' || val[1] == 'g') &&
  338. (val[2] == 'N' || val[2] == 'n') &&
  339. (val[3] == 'O' || val[3] == 'o') &&
  340. (val[4] == 'R' || val[4] == 'r') &&
  341. (val[5] == 'E' || val[5] == 'e') && val[6] == '\0') {
  342. return true;
  343. }
  344. /* clang-format on */
  345. return cmSystemTools::IsNOTFOUND(val);
  346. }
  347. bool cmSystemTools::IsOff(const std::string& val)
  348. {
  349. return cmSystemTools::IsOff(val.c_str());
  350. }
  351. void cmSystemTools::ParseWindowsCommandLine(const char* command,
  352. std::vector<std::string>& args)
  353. {
  354. // See the MSDN document "Parsing C Command-Line Arguments" at
  355. // http://msdn2.microsoft.com/en-us/library/a1y7w461.aspx for rules
  356. // of parsing the windows command line.
  357. bool in_argument = false;
  358. bool in_quotes = false;
  359. int backslashes = 0;
  360. std::string arg;
  361. for (const char* c = command; *c; ++c) {
  362. if (*c == '\\') {
  363. ++backslashes;
  364. in_argument = true;
  365. } else if (*c == '"') {
  366. int backslash_pairs = backslashes >> 1;
  367. int backslash_escaped = backslashes & 1;
  368. arg.append(backslash_pairs, '\\');
  369. backslashes = 0;
  370. if (backslash_escaped) {
  371. /* An odd number of backslashes precede this quote.
  372. It is escaped. */
  373. arg.append(1, '"');
  374. } else {
  375. /* An even number of backslashes precede this quote.
  376. It is not escaped. */
  377. in_quotes = !in_quotes;
  378. }
  379. in_argument = true;
  380. } else {
  381. arg.append(backslashes, '\\');
  382. backslashes = 0;
  383. if (cm_isspace(*c)) {
  384. if (in_quotes) {
  385. arg.append(1, *c);
  386. } else if (in_argument) {
  387. args.push_back(arg);
  388. arg.clear();
  389. in_argument = false;
  390. }
  391. } else {
  392. in_argument = true;
  393. arg.append(1, *c);
  394. }
  395. }
  396. }
  397. arg.append(backslashes, '\\');
  398. if (in_argument) {
  399. args.push_back(arg);
  400. }
  401. }
  402. class cmSystemToolsArgV
  403. {
  404. char** ArgV;
  405. public:
  406. cmSystemToolsArgV(char** argv)
  407. : ArgV(argv)
  408. {
  409. }
  410. ~cmSystemToolsArgV()
  411. {
  412. for (char** arg = this->ArgV; arg && *arg; ++arg) {
  413. free(*arg);
  414. }
  415. free(this->ArgV);
  416. }
  417. cmSystemToolsArgV(const cmSystemToolsArgV&) = delete;
  418. cmSystemToolsArgV& operator=(const cmSystemToolsArgV&) = delete;
  419. void Store(std::vector<std::string>& args) const
  420. {
  421. for (char** arg = this->ArgV; arg && *arg; ++arg) {
  422. args.emplace_back(*arg);
  423. }
  424. }
  425. };
  426. void cmSystemTools::ParseUnixCommandLine(const char* command,
  427. std::vector<std::string>& args)
  428. {
  429. // Invoke the underlying parser.
  430. cmSystemToolsArgV argv(cmsysSystem_Parse_CommandForUnix(command, 0));
  431. argv.Store(args);
  432. }
  433. std::vector<std::string> cmSystemTools::HandleResponseFile(
  434. std::vector<std::string>::const_iterator argBeg,
  435. std::vector<std::string>::const_iterator argEnd)
  436. {
  437. std::vector<std::string> arg_full;
  438. for (std::string const& arg : cmMakeRange(argBeg, argEnd)) {
  439. if (cmHasLiteralPrefix(arg, "@")) {
  440. cmsys::ifstream responseFile(arg.substr(1).c_str(), std::ios::in);
  441. if (!responseFile) {
  442. std::string error = "failed to open for reading (";
  443. error += cmSystemTools::GetLastSystemError();
  444. error += "):\n ";
  445. error += arg.substr(1);
  446. cmSystemTools::Error(error);
  447. } else {
  448. std::string line;
  449. cmSystemTools::GetLineFromStream(responseFile, line);
  450. std::vector<std::string> args2;
  451. #ifdef _WIN32
  452. cmSystemTools::ParseWindowsCommandLine(line.c_str(), args2);
  453. #else
  454. cmSystemTools::ParseUnixCommandLine(line.c_str(), args2);
  455. #endif
  456. cmAppend(arg_full, args2);
  457. }
  458. } else {
  459. arg_full.push_back(arg);
  460. }
  461. }
  462. return arg_full;
  463. }
  464. std::vector<std::string> cmSystemTools::ParseArguments(const std::string& cmd)
  465. {
  466. std::vector<std::string> args;
  467. std::string arg;
  468. bool win_path = false;
  469. const char* command = cmd.c_str();
  470. if (command[0] && command[1] &&
  471. ((command[0] != '/' && command[1] == ':' && command[2] == '\\') ||
  472. (command[0] == '\"' && command[1] != '/' && command[2] == ':' &&
  473. command[3] == '\\') ||
  474. (command[0] == '\'' && command[1] != '/' && command[2] == ':' &&
  475. command[3] == '\\') ||
  476. (command[0] == '\\' && command[1] == '\\'))) {
  477. win_path = true;
  478. }
  479. // Split the command into an argv array.
  480. for (const char* c = command; *c;) {
  481. // Skip over whitespace.
  482. while (*c == ' ' || *c == '\t') {
  483. ++c;
  484. }
  485. arg.clear();
  486. if (*c == '"') {
  487. // Parse a quoted argument.
  488. ++c;
  489. while (*c && *c != '"') {
  490. arg.append(1, *c);
  491. ++c;
  492. }
  493. if (*c) {
  494. ++c;
  495. }
  496. args.push_back(arg);
  497. } else if (*c == '\'') {
  498. // Parse a quoted argument.
  499. ++c;
  500. while (*c && *c != '\'') {
  501. arg.append(1, *c);
  502. ++c;
  503. }
  504. if (*c) {
  505. ++c;
  506. }
  507. args.push_back(arg);
  508. } else if (*c) {
  509. // Parse an unquoted argument.
  510. while (*c && *c != ' ' && *c != '\t') {
  511. if (*c == '\\' && !win_path) {
  512. ++c;
  513. if (*c) {
  514. arg.append(1, *c);
  515. ++c;
  516. }
  517. } else {
  518. arg.append(1, *c);
  519. ++c;
  520. }
  521. }
  522. args.push_back(arg);
  523. }
  524. }
  525. return args;
  526. }
  527. bool cmSystemTools::SplitProgramFromArgs(std::string const& command,
  528. std::string& program,
  529. std::string& args)
  530. {
  531. const char* c = command.c_str();
  532. // Skip leading whitespace.
  533. while (isspace(static_cast<unsigned char>(*c))) {
  534. ++c;
  535. }
  536. // Parse one command-line element up to an unquoted space.
  537. bool in_escape = false;
  538. bool in_double = false;
  539. bool in_single = false;
  540. for (; *c; ++c) {
  541. if (in_single) {
  542. if (*c == '\'') {
  543. in_single = false;
  544. } else {
  545. program += *c;
  546. }
  547. } else if (in_escape) {
  548. in_escape = false;
  549. program += *c;
  550. } else if (*c == '\\') {
  551. in_escape = true;
  552. } else if (in_double) {
  553. if (*c == '"') {
  554. in_double = false;
  555. } else {
  556. program += *c;
  557. }
  558. } else if (*c == '"') {
  559. in_double = true;
  560. } else if (*c == '\'') {
  561. in_single = true;
  562. } else if (isspace(static_cast<unsigned char>(*c))) {
  563. break;
  564. } else {
  565. program += *c;
  566. }
  567. }
  568. // The remainder of the command line holds unparsed arguments.
  569. args = c;
  570. return !in_single && !in_escape && !in_double;
  571. }
  572. size_t cmSystemTools::CalculateCommandLineLengthLimit()
  573. {
  574. size_t sz =
  575. #ifdef _WIN32
  576. // There's a maximum of 65536 bytes and thus 32768 WCHARs on Windows
  577. // However, cmd.exe itself can only handle 8191 WCHARs and Ninja for
  578. // example uses it to spawn processes.
  579. size_t(8191);
  580. #elif defined(__linux)
  581. // MAX_ARG_STRLEN is the maximum length of a string permissible for
  582. // the execve() syscall on Linux. It's defined as (PAGE_SIZE * 32)
  583. // in Linux's binfmts.h
  584. static_cast<size_t>(sysconf(_SC_PAGESIZE) * 32);
  585. #else
  586. size_t(0);
  587. #endif
  588. #if defined(_SC_ARG_MAX)
  589. // ARG_MAX is the maximum size of the command and environment
  590. // that can be passed to the exec functions on UNIX.
  591. // The value in limits.h does not need to be present and may
  592. // depend upon runtime memory constraints, hence sysconf()
  593. // should be used to query it.
  594. long szArgMax = sysconf(_SC_ARG_MAX);
  595. // A return value of -1 signifies an undetermined limit, but
  596. // it does not imply an infinite limit, and thus is ignored.
  597. if (szArgMax != -1) {
  598. // We estimate the size of the environment block to be 1000.
  599. // This isn't accurate at all, but leaves some headroom.
  600. szArgMax = szArgMax < 1000 ? 0 : szArgMax - 1000;
  601. # if defined(_WIN32) || defined(__linux)
  602. sz = std::min(sz, static_cast<size_t>(szArgMax));
  603. # else
  604. sz = static_cast<size_t>(szArgMax);
  605. # endif
  606. }
  607. #endif
  608. return sz;
  609. }
  610. bool cmSystemTools::RunSingleCommand(std::vector<std::string> const& command,
  611. std::string* captureStdOut,
  612. std::string* captureStdErr, int* retVal,
  613. const char* dir, OutputOption outputflag,
  614. cmDuration timeout, Encoding encoding)
  615. {
  616. std::vector<const char*> argv;
  617. argv.reserve(command.size() + 1);
  618. for (std::string const& cmd : command) {
  619. argv.push_back(cmd.c_str());
  620. }
  621. argv.push_back(nullptr);
  622. cmsysProcess* cp = cmsysProcess_New();
  623. cmsysProcess_SetCommand(cp, argv.data());
  624. cmsysProcess_SetWorkingDirectory(cp, dir);
  625. if (cmSystemTools::GetRunCommandHideConsole()) {
  626. cmsysProcess_SetOption(cp, cmsysProcess_Option_HideWindow, 1);
  627. }
  628. if (outputflag == OUTPUT_PASSTHROUGH) {
  629. cmsysProcess_SetPipeShared(cp, cmsysProcess_Pipe_STDOUT, 1);
  630. cmsysProcess_SetPipeShared(cp, cmsysProcess_Pipe_STDERR, 1);
  631. captureStdOut = nullptr;
  632. captureStdErr = nullptr;
  633. } else if (outputflag == OUTPUT_MERGE ||
  634. (captureStdErr && captureStdErr == captureStdOut)) {
  635. cmsysProcess_SetOption(cp, cmsysProcess_Option_MergeOutput, 1);
  636. captureStdErr = nullptr;
  637. }
  638. assert(!captureStdErr || captureStdErr != captureStdOut);
  639. cmsysProcess_SetTimeout(cp, timeout.count());
  640. cmsysProcess_Execute(cp);
  641. std::vector<char> tempStdOut;
  642. std::vector<char> tempStdErr;
  643. char* data;
  644. int length;
  645. int pipe;
  646. cmProcessOutput processOutput(encoding);
  647. std::string strdata;
  648. if (outputflag != OUTPUT_PASSTHROUGH &&
  649. (captureStdOut || captureStdErr || outputflag != OUTPUT_NONE)) {
  650. while ((pipe = cmsysProcess_WaitForData(cp, &data, &length, nullptr)) >
  651. 0) {
  652. // Translate NULL characters in the output into valid text.
  653. for (int i = 0; i < length; ++i) {
  654. if (data[i] == '\0') {
  655. data[i] = ' ';
  656. }
  657. }
  658. if (pipe == cmsysProcess_Pipe_STDOUT) {
  659. if (outputflag != OUTPUT_NONE) {
  660. processOutput.DecodeText(data, length, strdata, 1);
  661. cmSystemTools::Stdout(strdata);
  662. }
  663. if (captureStdOut) {
  664. cmAppend(tempStdOut, data, data + length);
  665. }
  666. } else if (pipe == cmsysProcess_Pipe_STDERR) {
  667. if (outputflag != OUTPUT_NONE) {
  668. processOutput.DecodeText(data, length, strdata, 2);
  669. cmSystemTools::Stderr(strdata);
  670. }
  671. if (captureStdErr) {
  672. cmAppend(tempStdErr, data, data + length);
  673. }
  674. }
  675. }
  676. if (outputflag != OUTPUT_NONE) {
  677. processOutput.DecodeText(std::string(), strdata, 1);
  678. if (!strdata.empty()) {
  679. cmSystemTools::Stdout(strdata);
  680. }
  681. processOutput.DecodeText(std::string(), strdata, 2);
  682. if (!strdata.empty()) {
  683. cmSystemTools::Stderr(strdata);
  684. }
  685. }
  686. }
  687. cmsysProcess_WaitForExit(cp, nullptr);
  688. if (captureStdOut) {
  689. captureStdOut->assign(tempStdOut.begin(), tempStdOut.end());
  690. processOutput.DecodeText(*captureStdOut, *captureStdOut);
  691. }
  692. if (captureStdErr) {
  693. captureStdErr->assign(tempStdErr.begin(), tempStdErr.end());
  694. processOutput.DecodeText(*captureStdErr, *captureStdErr);
  695. }
  696. bool result = true;
  697. if (cmsysProcess_GetState(cp) == cmsysProcess_State_Exited) {
  698. if (retVal) {
  699. *retVal = cmsysProcess_GetExitValue(cp);
  700. } else {
  701. if (cmsysProcess_GetExitValue(cp) != 0) {
  702. result = false;
  703. }
  704. }
  705. } else if (cmsysProcess_GetState(cp) == cmsysProcess_State_Exception) {
  706. const char* exception_str = cmsysProcess_GetExceptionString(cp);
  707. if (outputflag != OUTPUT_NONE) {
  708. std::cerr << exception_str << std::endl;
  709. }
  710. if (captureStdErr) {
  711. captureStdErr->append(exception_str, strlen(exception_str));
  712. } else if (captureStdOut) {
  713. captureStdOut->append(exception_str, strlen(exception_str));
  714. }
  715. result = false;
  716. } else if (cmsysProcess_GetState(cp) == cmsysProcess_State_Error) {
  717. const char* error_str = cmsysProcess_GetErrorString(cp);
  718. if (outputflag != OUTPUT_NONE) {
  719. std::cerr << error_str << std::endl;
  720. }
  721. if (captureStdErr) {
  722. captureStdErr->append(error_str, strlen(error_str));
  723. } else if (captureStdOut) {
  724. captureStdOut->append(error_str, strlen(error_str));
  725. }
  726. result = false;
  727. } else if (cmsysProcess_GetState(cp) == cmsysProcess_State_Expired) {
  728. const char* error_str = "Process terminated due to timeout\n";
  729. if (outputflag != OUTPUT_NONE) {
  730. std::cerr << error_str << std::endl;
  731. }
  732. if (captureStdErr) {
  733. captureStdErr->append(error_str, strlen(error_str));
  734. }
  735. result = false;
  736. }
  737. cmsysProcess_Delete(cp);
  738. return result;
  739. }
  740. bool cmSystemTools::RunSingleCommand(const std::string& command,
  741. std::string* captureStdOut,
  742. std::string* captureStdErr, int* retVal,
  743. const char* dir, OutputOption outputflag,
  744. cmDuration timeout)
  745. {
  746. if (s_DisableRunCommandOutput) {
  747. outputflag = OUTPUT_NONE;
  748. }
  749. std::vector<std::string> args = cmSystemTools::ParseArguments(command);
  750. if (args.empty()) {
  751. return false;
  752. }
  753. return cmSystemTools::RunSingleCommand(args, captureStdOut, captureStdErr,
  754. retVal, dir, outputflag, timeout);
  755. }
  756. std::string cmSystemTools::PrintSingleCommand(
  757. std::vector<std::string> const& command)
  758. {
  759. if (command.empty()) {
  760. return std::string();
  761. }
  762. return cmWrap('"', command, '"', " ");
  763. }
  764. bool cmSystemTools::DoesFileExistWithExtensions(
  765. const std::string& name, const std::vector<std::string>& headerExts)
  766. {
  767. std::string hname;
  768. for (std::string const& headerExt : headerExts) {
  769. hname = name;
  770. hname += ".";
  771. hname += headerExt;
  772. if (cmSystemTools::FileExists(hname)) {
  773. return true;
  774. }
  775. }
  776. return false;
  777. }
  778. std::string cmSystemTools::FileExistsInParentDirectories(
  779. const std::string& fname, const std::string& directory,
  780. const std::string& toplevel)
  781. {
  782. std::string file = fname;
  783. cmSystemTools::ConvertToUnixSlashes(file);
  784. std::string dir = directory;
  785. cmSystemTools::ConvertToUnixSlashes(dir);
  786. std::string prevDir;
  787. while (dir != prevDir) {
  788. std::string path = dir + "/" + file;
  789. if (cmSystemTools::FileExists(path)) {
  790. return path;
  791. }
  792. if (dir.size() < toplevel.size()) {
  793. break;
  794. }
  795. prevDir = dir;
  796. dir = cmSystemTools::GetParentDirectory(dir);
  797. }
  798. return "";
  799. }
  800. #ifdef _WIN32
  801. cmSystemTools::WindowsFileRetry cmSystemTools::GetWindowsFileRetry()
  802. {
  803. static WindowsFileRetry retry = { 0, 0 };
  804. if (!retry.Count) {
  805. unsigned int data[2] = { 0, 0 };
  806. HKEY const keys[2] = { HKEY_CURRENT_USER, HKEY_LOCAL_MACHINE };
  807. wchar_t const* const values[2] = { L"FilesystemRetryCount",
  808. L"FilesystemRetryDelay" };
  809. for (int k = 0; k < 2; ++k) {
  810. HKEY hKey;
  811. if (RegOpenKeyExW(keys[k], L"Software\\Kitware\\CMake\\Config", 0,
  812. KEY_QUERY_VALUE, &hKey) == ERROR_SUCCESS) {
  813. for (int v = 0; v < 2; ++v) {
  814. DWORD dwData, dwType, dwSize = 4;
  815. if (!data[v] &&
  816. RegQueryValueExW(hKey, values[v], 0, &dwType, (BYTE*)&dwData,
  817. &dwSize) == ERROR_SUCCESS &&
  818. dwType == REG_DWORD && dwSize == 4) {
  819. data[v] = static_cast<unsigned int>(dwData);
  820. }
  821. }
  822. RegCloseKey(hKey);
  823. }
  824. }
  825. retry.Count = data[0] ? data[0] : 5;
  826. retry.Delay = data[1] ? data[1] : 500;
  827. }
  828. return retry;
  829. }
  830. #endif
  831. std::string cmSystemTools::GetRealPathResolvingWindowsSubst(
  832. const std::string& path, std::string* errorMessage)
  833. {
  834. #ifdef _WIN32
  835. // uv_fs_realpath uses Windows Vista API so fallback to kwsys if not found
  836. std::string resolved_path;
  837. uv_fs_t req;
  838. int err = uv_fs_realpath(NULL, &req, path.c_str(), NULL);
  839. if (!err) {
  840. resolved_path = std::string((char*)req.ptr);
  841. cmSystemTools::ConvertToUnixSlashes(resolved_path);
  842. // Normalize to upper-case drive letter as GetActualCaseForPath does.
  843. if (resolved_path.size() > 1 && resolved_path[1] == ':') {
  844. resolved_path[0] = toupper(resolved_path[0]);
  845. }
  846. } else if (err == UV_ENOSYS) {
  847. resolved_path = cmsys::SystemTools::GetRealPath(path, errorMessage);
  848. } else if (errorMessage) {
  849. LPSTR message = NULL;
  850. DWORD size = FormatMessageA(
  851. FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
  852. FORMAT_MESSAGE_IGNORE_INSERTS,
  853. NULL, err, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), (LPSTR)&message, 0,
  854. NULL);
  855. *errorMessage = std::string(message, size);
  856. LocalFree(message);
  857. resolved_path = "";
  858. } else {
  859. resolved_path = path;
  860. }
  861. return resolved_path;
  862. #else
  863. return cmsys::SystemTools::GetRealPath(path, errorMessage);
  864. #endif
  865. }
  866. void cmSystemTools::InitializeLibUV()
  867. {
  868. #if defined(_WIN32)
  869. // Perform libuv one-time initialization now, and then un-do its
  870. // global _fmode setting so that using libuv does not change the
  871. // default file text/binary mode. See libuv issue 840.
  872. uv_loop_close(uv_default_loop());
  873. # ifdef _MSC_VER
  874. _set_fmode(_O_TEXT);
  875. # else
  876. _fmode = _O_TEXT;
  877. # endif
  878. #endif
  879. }
  880. bool cmSystemTools::RenameFile(const std::string& oldname,
  881. const std::string& newname)
  882. {
  883. #ifdef _WIN32
  884. # ifndef INVALID_FILE_ATTRIBUTES
  885. # define INVALID_FILE_ATTRIBUTES ((DWORD)-1)
  886. # endif
  887. /* Windows MoveFileEx may not replace read-only or in-use files. If it
  888. fails then remove the read-only attribute from any existing destination.
  889. Try multiple times since we may be racing against another process
  890. creating/opening the destination file just before our MoveFileEx. */
  891. WindowsFileRetry retry = cmSystemTools::GetWindowsFileRetry();
  892. while (
  893. !MoveFileExW(SystemTools::ConvertToWindowsExtendedPath(oldname).c_str(),
  894. SystemTools::ConvertToWindowsExtendedPath(newname).c_str(),
  895. MOVEFILE_REPLACE_EXISTING) &&
  896. --retry.Count) {
  897. DWORD last_error = GetLastError();
  898. // Try again only if failure was due to access/sharing permissions.
  899. if (last_error != ERROR_ACCESS_DENIED &&
  900. last_error != ERROR_SHARING_VIOLATION) {
  901. return false;
  902. }
  903. DWORD attrs = GetFileAttributesW(
  904. SystemTools::ConvertToWindowsExtendedPath(newname).c_str());
  905. if ((attrs != INVALID_FILE_ATTRIBUTES) &&
  906. (attrs & FILE_ATTRIBUTE_READONLY)) {
  907. // Remove the read-only attribute from the destination file.
  908. SetFileAttributesW(
  909. SystemTools::ConvertToWindowsExtendedPath(newname).c_str(),
  910. attrs & ~FILE_ATTRIBUTE_READONLY);
  911. } else {
  912. // The file may be temporarily in use so wait a bit.
  913. cmSystemTools::Delay(retry.Delay);
  914. }
  915. }
  916. return retry.Count > 0;
  917. #else
  918. /* On UNIX we have an OS-provided call to do this atomically. */
  919. return rename(oldname.c_str(), newname.c_str()) == 0;
  920. #endif
  921. }
  922. std::string cmSystemTools::ComputeFileHash(const std::string& source,
  923. cmCryptoHash::Algo algo)
  924. {
  925. #if defined(CMAKE_BUILD_WITH_CMAKE)
  926. cmCryptoHash hash(algo);
  927. return hash.HashFile(source);
  928. #else
  929. (void)source;
  930. cmSystemTools::Message("hashsum not supported in bootstrapping mode",
  931. "Error");
  932. return std::string();
  933. #endif
  934. }
  935. std::string cmSystemTools::ComputeStringMD5(const std::string& input)
  936. {
  937. #if defined(CMAKE_BUILD_WITH_CMAKE)
  938. cmCryptoHash md5(cmCryptoHash::AlgoMD5);
  939. return md5.HashString(input);
  940. #else
  941. (void)input;
  942. cmSystemTools::Message("md5sum not supported in bootstrapping mode",
  943. "Error");
  944. return "";
  945. #endif
  946. }
  947. std::string cmSystemTools::ComputeCertificateThumbprint(
  948. const std::string& source)
  949. {
  950. std::string thumbprint;
  951. #if defined(CMAKE_BUILD_WITH_CMAKE) && defined(_WIN32)
  952. BYTE* certData = NULL;
  953. CRYPT_INTEGER_BLOB cryptBlob;
  954. HCERTSTORE certStore = NULL;
  955. PCCERT_CONTEXT certContext = NULL;
  956. HANDLE certFile = CreateFileW(
  957. cmsys::Encoding::ToWide(source.c_str()).c_str(), GENERIC_READ,
  958. FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
  959. if (certFile != INVALID_HANDLE_VALUE && certFile != NULL) {
  960. DWORD fileSize = GetFileSize(certFile, NULL);
  961. if (fileSize != INVALID_FILE_SIZE) {
  962. certData = new BYTE[fileSize];
  963. if (certData != NULL) {
  964. DWORD dwRead = 0;
  965. if (ReadFile(certFile, certData, fileSize, &dwRead, NULL)) {
  966. cryptBlob.cbData = fileSize;
  967. cryptBlob.pbData = certData;
  968. // Verify that this is a valid cert
  969. if (PFXIsPFXBlob(&cryptBlob)) {
  970. // Open the certificate as a store
  971. certStore = PFXImportCertStore(&cryptBlob, NULL, CRYPT_EXPORTABLE);
  972. if (certStore != NULL) {
  973. // There should only be 1 cert.
  974. certContext =
  975. CertEnumCertificatesInStore(certStore, certContext);
  976. if (certContext != NULL) {
  977. // The hash is 20 bytes
  978. BYTE hashData[20];
  979. DWORD hashLength = 20;
  980. // Buffer to print the hash. Each byte takes 2 chars +
  981. // terminating character
  982. char hashPrint[41];
  983. char* pHashPrint = hashPrint;
  984. // Get the hash property from the certificate
  985. if (CertGetCertificateContextProperty(
  986. certContext, CERT_HASH_PROP_ID, hashData, &hashLength)) {
  987. for (DWORD i = 0; i < hashLength; i++) {
  988. // Convert each byte to hexadecimal
  989. sprintf(pHashPrint, "%02X", hashData[i]);
  990. pHashPrint += 2;
  991. }
  992. *pHashPrint = '\0';
  993. thumbprint = hashPrint;
  994. }
  995. CertFreeCertificateContext(certContext);
  996. }
  997. CertCloseStore(certStore, 0);
  998. }
  999. }
  1000. }
  1001. delete[] certData;
  1002. }
  1003. }
  1004. CloseHandle(certFile);
  1005. }
  1006. #else
  1007. (void)source;
  1008. cmSystemTools::Message("ComputeCertificateThumbprint is not implemented",
  1009. "Error");
  1010. #endif
  1011. return thumbprint;
  1012. }
  1013. void cmSystemTools::Glob(const std::string& directory,
  1014. const std::string& regexp,
  1015. std::vector<std::string>& files)
  1016. {
  1017. cmsys::Directory d;
  1018. cmsys::RegularExpression reg(regexp.c_str());
  1019. if (d.Load(directory)) {
  1020. size_t numf;
  1021. unsigned int i;
  1022. numf = d.GetNumberOfFiles();
  1023. for (i = 0; i < numf; i++) {
  1024. std::string fname = d.GetFile(i);
  1025. if (reg.find(fname)) {
  1026. files.push_back(std::move(fname));
  1027. }
  1028. }
  1029. }
  1030. }
  1031. void cmSystemTools::GlobDirs(const std::string& path,
  1032. std::vector<std::string>& files)
  1033. {
  1034. std::string::size_type pos = path.find("/*");
  1035. if (pos == std::string::npos) {
  1036. files.push_back(path);
  1037. return;
  1038. }
  1039. std::string startPath = path.substr(0, pos);
  1040. std::string finishPath = path.substr(pos + 2);
  1041. cmsys::Directory d;
  1042. if (d.Load(startPath)) {
  1043. for (unsigned int i = 0; i < d.GetNumberOfFiles(); ++i) {
  1044. if ((std::string(d.GetFile(i)) != ".") &&
  1045. (std::string(d.GetFile(i)) != "..")) {
  1046. std::string fname = startPath;
  1047. fname += "/";
  1048. fname += d.GetFile(i);
  1049. if (cmSystemTools::FileIsDirectory(fname)) {
  1050. fname += finishPath;
  1051. cmSystemTools::GlobDirs(fname, files);
  1052. }
  1053. }
  1054. }
  1055. }
  1056. }
  1057. void cmSystemTools::ExpandListArgument(const std::string& arg,
  1058. std::vector<std::string>& argsOut,
  1059. bool emptyArgs)
  1060. {
  1061. // If argument is empty, it is an empty list.
  1062. if (!emptyArgs && arg.empty()) {
  1063. return;
  1064. }
  1065. // if there are no ; in the name then just copy the current string
  1066. if (arg.find(';') == std::string::npos) {
  1067. argsOut.push_back(arg);
  1068. return;
  1069. }
  1070. std::string newArg;
  1071. const char* last = arg.c_str();
  1072. // Break the string at non-escaped semicolons not nested in [].
  1073. int squareNesting = 0;
  1074. for (const char* c = last; *c; ++c) {
  1075. switch (*c) {
  1076. case '\\': {
  1077. // We only want to allow escaping of semicolons. Other
  1078. // escapes should not be processed here.
  1079. const char* next = c + 1;
  1080. if (*next == ';') {
  1081. newArg.append(last, c - last);
  1082. // Skip over the escape character
  1083. last = c = next;
  1084. }
  1085. } break;
  1086. case '[': {
  1087. ++squareNesting;
  1088. } break;
  1089. case ']': {
  1090. --squareNesting;
  1091. } break;
  1092. case ';': {
  1093. // Break the string here if we are not nested inside square
  1094. // brackets.
  1095. if (squareNesting == 0) {
  1096. newArg.append(last, c - last);
  1097. // Skip over the semicolon
  1098. last = c + 1;
  1099. if (!newArg.empty() || emptyArgs) {
  1100. // Add the last argument if the string is not empty.
  1101. argsOut.push_back(newArg);
  1102. newArg.clear();
  1103. }
  1104. }
  1105. } break;
  1106. default: {
  1107. // Just append this character.
  1108. } break;
  1109. }
  1110. }
  1111. newArg.append(last);
  1112. if (!newArg.empty() || emptyArgs) {
  1113. // Add the last argument if the string is not empty.
  1114. argsOut.push_back(newArg);
  1115. }
  1116. }
  1117. std::vector<std::string> cmSystemTools::ExpandedListArgument(
  1118. const std::string& arg, bool emptyArgs)
  1119. {
  1120. std::vector<std::string> argsOut;
  1121. ExpandListArgument(arg, argsOut, emptyArgs);
  1122. return argsOut;
  1123. }
  1124. bool cmSystemTools::SimpleGlob(const std::string& glob,
  1125. std::vector<std::string>& files,
  1126. int type /* = 0 */)
  1127. {
  1128. files.clear();
  1129. if (glob.back() != '*') {
  1130. return false;
  1131. }
  1132. std::string path = cmSystemTools::GetFilenamePath(glob);
  1133. std::string ppath = cmSystemTools::GetFilenameName(glob);
  1134. ppath = ppath.substr(0, ppath.size() - 1);
  1135. if (path.empty()) {
  1136. path = "/";
  1137. }
  1138. bool res = false;
  1139. cmsys::Directory d;
  1140. if (d.Load(path)) {
  1141. for (unsigned int i = 0; i < d.GetNumberOfFiles(); ++i) {
  1142. if ((std::string(d.GetFile(i)) != ".") &&
  1143. (std::string(d.GetFile(i)) != "..")) {
  1144. std::string fname = path;
  1145. if (path.back() != '/') {
  1146. fname += "/";
  1147. }
  1148. fname += d.GetFile(i);
  1149. std::string sfname = d.GetFile(i);
  1150. if (type > 0 && cmSystemTools::FileIsDirectory(fname)) {
  1151. continue;
  1152. }
  1153. if (type < 0 && !cmSystemTools::FileIsDirectory(fname)) {
  1154. continue;
  1155. }
  1156. if (sfname.size() >= ppath.size() &&
  1157. sfname.substr(0, ppath.size()) == ppath) {
  1158. files.push_back(fname);
  1159. res = true;
  1160. }
  1161. }
  1162. }
  1163. }
  1164. return res;
  1165. }
  1166. std::string cmSystemTools::ConvertToOutputPath(std::string const& path)
  1167. {
  1168. #if defined(_WIN32) && !defined(__CYGWIN__)
  1169. if (s_ForceUnixPaths) {
  1170. return cmSystemTools::ConvertToUnixOutputPath(path);
  1171. }
  1172. return cmSystemTools::ConvertToWindowsOutputPath(path);
  1173. #else
  1174. return cmSystemTools::ConvertToUnixOutputPath(path);
  1175. #endif
  1176. }
  1177. void cmSystemTools::ConvertToOutputSlashes(std::string& path)
  1178. {
  1179. #if defined(_WIN32) && !defined(__CYGWIN__)
  1180. if (!s_ForceUnixPaths) {
  1181. // Convert to windows slashes.
  1182. std::string::size_type pos = 0;
  1183. while ((pos = path.find('/', pos)) != std::string::npos) {
  1184. path[pos++] = '\\';
  1185. }
  1186. }
  1187. #else
  1188. static_cast<void>(path);
  1189. #endif
  1190. }
  1191. std::string cmSystemTools::ConvertToRunCommandPath(const std::string& path)
  1192. {
  1193. #if defined(_WIN32) && !defined(__CYGWIN__)
  1194. return cmSystemTools::ConvertToWindowsOutputPath(path);
  1195. #else
  1196. return cmSystemTools::ConvertToUnixOutputPath(path);
  1197. #endif
  1198. }
  1199. // compute the relative path from here to there
  1200. std::string cmSystemTools::RelativePath(std::string const& local,
  1201. std::string const& remote)
  1202. {
  1203. if (!cmSystemTools::FileIsFullPath(local)) {
  1204. cmSystemTools::Error("RelativePath must be passed a full path to local: " +
  1205. local);
  1206. }
  1207. if (!cmSystemTools::FileIsFullPath(remote)) {
  1208. cmSystemTools::Error(
  1209. "RelativePath must be passed a full path to remote: " + remote);
  1210. }
  1211. return cmsys::SystemTools::RelativePath(local, remote);
  1212. }
  1213. std::string cmSystemTools::ForceToRelativePath(std::string const& local_path,
  1214. std::string const& remote_path)
  1215. {
  1216. // The paths should never be quoted.
  1217. assert(local_path.front() != '\"');
  1218. assert(remote_path.front() != '\"');
  1219. // The local path should never have a trailing slash.
  1220. assert(local_path.empty() || local_path.back() != '/');
  1221. // If the path is already relative then just return the path.
  1222. if (!cmSystemTools::FileIsFullPath(remote_path)) {
  1223. return remote_path;
  1224. }
  1225. // Identify the longest shared path component between the remote
  1226. // path and the local path.
  1227. std::vector<std::string> local;
  1228. cmSystemTools::SplitPath(local_path, local);
  1229. std::vector<std::string> remote;
  1230. cmSystemTools::SplitPath(remote_path, remote);
  1231. unsigned int common = 0;
  1232. while (common < remote.size() && common < local.size() &&
  1233. cmSystemTools::ComparePath(remote[common], local[common])) {
  1234. ++common;
  1235. }
  1236. // If no part of the path is in common then return the full path.
  1237. if (common == 0) {
  1238. return remote_path;
  1239. }
  1240. // If the entire path is in common then just return a ".".
  1241. if (common == remote.size() && common == local.size()) {
  1242. return ".";
  1243. }
  1244. // If the entire path is in common except for a trailing slash then
  1245. // just return a "./".
  1246. if (common + 1 == remote.size() && remote[common].empty() &&
  1247. common == local.size()) {
  1248. return "./";
  1249. }
  1250. // Construct the relative path.
  1251. std::string relative;
  1252. // First add enough ../ to get up to the level of the shared portion
  1253. // of the path. Leave off the trailing slash. Note that the last
  1254. // component of local will never be empty because local should never
  1255. // have a trailing slash.
  1256. for (unsigned int i = common; i < local.size(); ++i) {
  1257. relative += "..";
  1258. if (i < local.size() - 1) {
  1259. relative += "/";
  1260. }
  1261. }
  1262. // Now add the portion of the destination path that is not included
  1263. // in the shared portion of the path. Add a slash the first time
  1264. // only if there was already something in the path. If there was a
  1265. // trailing slash in the input then the last iteration of the loop
  1266. // will add a slash followed by an empty string which will preserve
  1267. // the trailing slash in the output.
  1268. if (!relative.empty() && !remote.empty()) {
  1269. relative += "/";
  1270. }
  1271. relative += cmJoin(cmMakeRange(remote).advance(common), "/");
  1272. // Finally return the path.
  1273. return relative;
  1274. }
  1275. #ifdef CMAKE_BUILD_WITH_CMAKE
  1276. bool cmSystemTools::UnsetEnv(const char* value)
  1277. {
  1278. # if !defined(HAVE_UNSETENV)
  1279. std::string var = value;
  1280. var += "=";
  1281. return cmSystemTools::PutEnv(var.c_str());
  1282. # else
  1283. unsetenv(value);
  1284. return true;
  1285. # endif
  1286. }
  1287. std::vector<std::string> cmSystemTools::GetEnvironmentVariables()
  1288. {
  1289. std::vector<std::string> env;
  1290. int cc;
  1291. for (cc = 0; environ[cc]; ++cc) {
  1292. env.emplace_back(environ[cc]);
  1293. }
  1294. return env;
  1295. }
  1296. void cmSystemTools::AppendEnv(std::vector<std::string> const& env)
  1297. {
  1298. for (std::string const& eit : env) {
  1299. cmSystemTools::PutEnv(eit);
  1300. }
  1301. }
  1302. cmSystemTools::SaveRestoreEnvironment::SaveRestoreEnvironment()
  1303. {
  1304. this->Env = cmSystemTools::GetEnvironmentVariables();
  1305. }
  1306. cmSystemTools::SaveRestoreEnvironment::~SaveRestoreEnvironment()
  1307. {
  1308. // First clear everything in the current environment:
  1309. std::vector<std::string> currentEnv = GetEnvironmentVariables();
  1310. for (std::string var : currentEnv) {
  1311. std::string::size_type pos = var.find('=');
  1312. if (pos != std::string::npos) {
  1313. var = var.substr(0, pos);
  1314. }
  1315. cmSystemTools::UnsetEnv(var.c_str());
  1316. }
  1317. // Then put back each entry from the original environment:
  1318. cmSystemTools::AppendEnv(this->Env);
  1319. }
  1320. #endif
  1321. void cmSystemTools::EnableVSConsoleOutput()
  1322. {
  1323. #ifdef _WIN32
  1324. // Visual Studio tools like devenv may not
  1325. // display output to the console unless this environment variable is
  1326. // set. We need it to capture the output of these build tools.
  1327. // Note for future work that one could pass "/out \\.\pipe\NAME" to
  1328. // either of these executables where NAME is created with
  1329. // CreateNamedPipe. This would bypass the internal buffering of the
  1330. // output and allow it to be captured on the fly.
  1331. cmSystemTools::PutEnv("vsconsoleoutput=1");
  1332. # ifdef CMAKE_BUILD_WITH_CMAKE
  1333. // VS sets an environment variable to tell MS tools like "cl" to report
  1334. // output through a backdoor pipe instead of stdout/stderr. Unset the
  1335. // environment variable to close this backdoor for any path of process
  1336. // invocations that passes through CMake so we can capture the output.
  1337. cmSystemTools::UnsetEnv("VS_UNICODE_OUTPUT");
  1338. # endif
  1339. #endif
  1340. }
  1341. bool cmSystemTools::IsPathToFramework(const std::string& path)
  1342. {
  1343. return (cmSystemTools::FileIsFullPath(path) &&
  1344. cmHasLiteralSuffix(path, ".framework"));
  1345. }
  1346. bool cmSystemTools::CreateTar(const std::string& outFileName,
  1347. const std::vector<std::string>& files,
  1348. cmTarCompression compressType, bool verbose,
  1349. std::string const& mtime,
  1350. std::string const& format)
  1351. {
  1352. #if defined(CMAKE_BUILD_WITH_CMAKE)
  1353. std::string cwd = cmSystemTools::GetCurrentWorkingDirectory();
  1354. cmsys::ofstream fout(outFileName.c_str(), std::ios::out | std::ios::binary);
  1355. if (!fout) {
  1356. std::string e = "Cannot open output file \"";
  1357. e += outFileName;
  1358. e += "\": ";
  1359. e += cmSystemTools::GetLastSystemError();
  1360. cmSystemTools::Error(e);
  1361. return false;
  1362. }
  1363. cmArchiveWrite::Compress compress = cmArchiveWrite::CompressNone;
  1364. switch (compressType) {
  1365. case TarCompressGZip:
  1366. compress = cmArchiveWrite::CompressGZip;
  1367. break;
  1368. case TarCompressBZip2:
  1369. compress = cmArchiveWrite::CompressBZip2;
  1370. break;
  1371. case TarCompressXZ:
  1372. compress = cmArchiveWrite::CompressXZ;
  1373. break;
  1374. case TarCompressZstd:
  1375. compress = cmArchiveWrite::CompressZstd;
  1376. break;
  1377. case TarCompressNone:
  1378. compress = cmArchiveWrite::CompressNone;
  1379. break;
  1380. }
  1381. cmArchiveWrite a(fout, compress, format.empty() ? "paxr" : format);
  1382. a.SetMTime(mtime);
  1383. a.SetVerbose(verbose);
  1384. bool tarCreatedSuccessfully = true;
  1385. for (auto path : files) {
  1386. if (cmSystemTools::FileIsFullPath(path)) {
  1387. // Get the relative path to the file.
  1388. path = cmSystemTools::RelativePath(cwd, path);
  1389. }
  1390. if (!a.Add(path)) {
  1391. cmSystemTools::Error(a.GetError());
  1392. tarCreatedSuccessfully = false;
  1393. }
  1394. }
  1395. return tarCreatedSuccessfully;
  1396. #else
  1397. (void)outFileName;
  1398. (void)files;
  1399. (void)verbose;
  1400. return false;
  1401. #endif
  1402. }
  1403. #if defined(CMAKE_BUILD_WITH_CMAKE)
  1404. namespace {
  1405. # define BSDTAR_FILESIZE_PRINTF "%lu"
  1406. # define BSDTAR_FILESIZE_TYPE unsigned long
  1407. void list_item_verbose(FILE* out, struct archive_entry* entry)
  1408. {
  1409. char tmp[100];
  1410. size_t w;
  1411. const char* p;
  1412. const char* fmt;
  1413. time_t tim;
  1414. static time_t now;
  1415. size_t u_width = 6;
  1416. size_t gs_width = 13;
  1417. /*
  1418. * We avoid collecting the entire list in memory at once by
  1419. * listing things as we see them. However, that also means we can't
  1420. * just pre-compute the field widths. Instead, we start with guesses
  1421. * and just widen them as necessary. These numbers are completely
  1422. * arbitrary.
  1423. */
  1424. if (!now) {
  1425. time(&now);
  1426. }
  1427. fprintf(out, "%s %d ", archive_entry_strmode(entry),
  1428. archive_entry_nlink(entry));
  1429. /* Use uname if it's present, else uid. */
  1430. p = archive_entry_uname(entry);
  1431. if ((p == nullptr) || (*p == '\0')) {
  1432. sprintf(tmp, "%lu ", static_cast<unsigned long>(archive_entry_uid(entry)));
  1433. p = tmp;
  1434. }
  1435. w = strlen(p);
  1436. if (w > u_width) {
  1437. u_width = w;
  1438. }
  1439. fprintf(out, "%-*s ", static_cast<int>(u_width), p);
  1440. /* Use gname if it's present, else gid. */
  1441. p = archive_entry_gname(entry);
  1442. if (p != nullptr && p[0] != '\0') {
  1443. fprintf(out, "%s", p);
  1444. w = strlen(p);
  1445. } else {
  1446. sprintf(tmp, "%lu", static_cast<unsigned long>(archive_entry_gid(entry)));
  1447. w = strlen(tmp);
  1448. fprintf(out, "%s", tmp);
  1449. }
  1450. /*
  1451. * Print device number or file size, right-aligned so as to make
  1452. * total width of group and devnum/filesize fields be gs_width.
  1453. * If gs_width is too small, grow it.
  1454. */
  1455. if (archive_entry_filetype(entry) == AE_IFCHR ||
  1456. archive_entry_filetype(entry) == AE_IFBLK) {
  1457. unsigned long rdevmajor = archive_entry_rdevmajor(entry);
  1458. unsigned long rdevminor = archive_entry_rdevminor(entry);
  1459. sprintf(tmp, "%lu,%lu", rdevmajor, rdevminor);
  1460. } else {
  1461. /*
  1462. * Note the use of platform-dependent macros to format
  1463. * the filesize here. We need the format string and the
  1464. * corresponding type for the cast.
  1465. */
  1466. sprintf(tmp, BSDTAR_FILESIZE_PRINTF,
  1467. static_cast<BSDTAR_FILESIZE_TYPE>(archive_entry_size(entry)));
  1468. }
  1469. if (w + strlen(tmp) >= gs_width) {
  1470. gs_width = w + strlen(tmp) + 1;
  1471. }
  1472. fprintf(out, "%*s", static_cast<int>(gs_width - w), tmp);
  1473. /* Format the time using 'ls -l' conventions. */
  1474. tim = archive_entry_mtime(entry);
  1475. # define HALF_YEAR ((time_t)365 * 86400 / 2)
  1476. # if defined(_WIN32) && !defined(__CYGWIN__)
  1477. /* Windows' strftime function does not support %e format. */
  1478. # define DAY_FMT "%d"
  1479. # else
  1480. # define DAY_FMT "%e" /* Day number without leading zeros */
  1481. # endif
  1482. if (tim < now - HALF_YEAR || tim > now + HALF_YEAR) {
  1483. fmt = DAY_FMT " %b %Y";
  1484. } else {
  1485. fmt = DAY_FMT " %b %H:%M";
  1486. }
  1487. strftime(tmp, sizeof(tmp), fmt, localtime(&tim));
  1488. fprintf(out, " %s ", tmp);
  1489. fprintf(out, "%s", cm_archive_entry_pathname(entry).c_str());
  1490. /* Extra information for links. */
  1491. if (archive_entry_hardlink(entry)) /* Hard link */
  1492. {
  1493. fprintf(out, " link to %s", archive_entry_hardlink(entry));
  1494. } else if (archive_entry_symlink(entry)) /* Symbolic link */
  1495. {
  1496. fprintf(out, " -> %s", archive_entry_symlink(entry));
  1497. }
  1498. fflush(out);
  1499. }
  1500. void ArchiveError(const char* m1, struct archive* a)
  1501. {
  1502. std::string message(m1);
  1503. const char* m2 = archive_error_string(a);
  1504. if (m2) {
  1505. message += m2;
  1506. }
  1507. cmSystemTools::Error(message);
  1508. }
  1509. bool la_diagnostic(struct archive* ar, __LA_SSIZE_T r)
  1510. {
  1511. // See archive.h definition of ARCHIVE_OK for return values.
  1512. if (r >= ARCHIVE_OK) {
  1513. return true;
  1514. }
  1515. if (r >= ARCHIVE_WARN) {
  1516. const char* warn = archive_error_string(ar);
  1517. if (!warn) {
  1518. warn = "unknown warning";
  1519. }
  1520. std::cerr << "cmake -E tar: warning: " << warn << '\n';
  1521. return true;
  1522. }
  1523. // Error.
  1524. const char* err = archive_error_string(ar);
  1525. if (!err) {
  1526. err = "unknown error";
  1527. }
  1528. std::cerr << "cmake -E tar: error: " << err << '\n';
  1529. return false;
  1530. }
  1531. // Return 'true' on success
  1532. bool copy_data(struct archive* ar, struct archive* aw)
  1533. {
  1534. long r;
  1535. const void* buff;
  1536. size_t size;
  1537. # if defined(ARCHIVE_VERSION_NUMBER) && ARCHIVE_VERSION_NUMBER >= 3000000
  1538. __LA_INT64_T offset;
  1539. # else
  1540. off_t offset;
  1541. # endif
  1542. for (;;) {
  1543. // See archive.h definition of ARCHIVE_OK for return values.
  1544. r = archive_read_data_block(ar, &buff, &size, &offset);
  1545. if (r == ARCHIVE_EOF) {
  1546. return true;
  1547. }
  1548. if (!la_diagnostic(ar, r)) {
  1549. return false;
  1550. }
  1551. // See archive.h definition of ARCHIVE_OK for return values.
  1552. __LA_SSIZE_T const w = archive_write_data_block(aw, buff, size, offset);
  1553. if (!la_diagnostic(ar, w)) {
  1554. return false;
  1555. }
  1556. }
  1557. # if !defined(__clang__) && !defined(__HP_aCC)
  1558. return false; /* this should not happen but it quiets some compilers */
  1559. # endif
  1560. }
  1561. bool extract_tar(const std::string& outFileName,
  1562. const std::vector<std::string>& files, bool verbose,
  1563. bool extract)
  1564. {
  1565. cmLocaleRAII localeRAII;
  1566. static_cast<void>(localeRAII);
  1567. struct archive* a = archive_read_new();
  1568. struct archive* ext = archive_write_disk_new();
  1569. archive_read_support_filter_all(a);
  1570. archive_read_support_format_all(a);
  1571. struct archive_entry* entry;
  1572. struct archive* matching = archive_match_new();
  1573. if (matching == nullptr) {
  1574. cmSystemTools::Error("Out of memory");
  1575. return false;
  1576. }
  1577. for (const auto& filename : files) {
  1578. if (archive_match_include_pattern(matching, filename.c_str()) !=
  1579. ARCHIVE_OK) {
  1580. cmSystemTools::Error("Failed to add to inclusion list: " + filename);
  1581. return false;
  1582. }
  1583. }
  1584. int r = cm_archive_read_open_file(a, outFileName.c_str(), 10240);
  1585. if (r) {
  1586. ArchiveError("Problem with archive_read_open_file(): ", a);
  1587. archive_write_free(ext);
  1588. archive_read_close(a);
  1589. return false;
  1590. }
  1591. for (;;) {
  1592. r = archive_read_next_header(a, &entry);
  1593. if (r == ARCHIVE_EOF) {
  1594. break;
  1595. }
  1596. if (r != ARCHIVE_OK) {
  1597. ArchiveError("Problem with archive_read_next_header(): ", a);
  1598. break;
  1599. }
  1600. if (archive_match_excluded(matching, entry)) {
  1601. continue;
  1602. }
  1603. if (verbose) {
  1604. if (extract) {
  1605. cmSystemTools::Stdout("x ");
  1606. cmSystemTools::Stdout(cm_archive_entry_pathname(entry));
  1607. } else {
  1608. list_item_verbose(stdout, entry);
  1609. }
  1610. cmSystemTools::Stdout("\n");
  1611. } else if (!extract) {
  1612. cmSystemTools::Stdout(cm_archive_entry_pathname(entry));
  1613. cmSystemTools::Stdout("\n");
  1614. }
  1615. if (extract) {
  1616. r = archive_write_disk_set_options(ext, ARCHIVE_EXTRACT_TIME);
  1617. if (r != ARCHIVE_OK) {
  1618. ArchiveError("Problem with archive_write_disk_set_options(): ", ext);
  1619. break;
  1620. }
  1621. r = archive_write_header(ext, entry);
  1622. if (r == ARCHIVE_OK) {
  1623. if (!copy_data(a, ext)) {
  1624. break;
  1625. }
  1626. r = archive_write_finish_entry(ext);
  1627. if (r != ARCHIVE_OK) {
  1628. ArchiveError("Problem with archive_write_finish_entry(): ", ext);
  1629. break;
  1630. }
  1631. }
  1632. # ifdef _WIN32
  1633. else if (const char* linktext = archive_entry_symlink(entry)) {
  1634. std::cerr << "cmake -E tar: warning: skipping symbolic link \""
  1635. << cm_archive_entry_pathname(entry) << "\" -> \"" << linktext
  1636. << "\"." << std::endl;
  1637. }
  1638. # endif
  1639. else {
  1640. ArchiveError("Problem with archive_write_header(): ", ext);
  1641. cmSystemTools::Error("Current file: " +
  1642. cm_archive_entry_pathname(entry));
  1643. break;
  1644. }
  1645. }
  1646. }
  1647. bool error_occured = false;
  1648. if (matching != nullptr) {
  1649. const char* p;
  1650. int ar;
  1651. while ((ar = archive_match_path_unmatched_inclusions_next(matching, &p)) ==
  1652. ARCHIVE_OK) {
  1653. cmSystemTools::Error("tar: " + std::string(p) +
  1654. ": Not found in archive");
  1655. error_occured = true;
  1656. }
  1657. if (error_occured) {
  1658. return false;
  1659. }
  1660. if (ar == ARCHIVE_FATAL) {
  1661. cmSystemTools::Error("tar: Out of memory");
  1662. return false;
  1663. }
  1664. }
  1665. archive_match_free(matching);
  1666. archive_write_free(ext);
  1667. archive_read_close(a);
  1668. archive_read_free(a);
  1669. return r == ARCHIVE_EOF || r == ARCHIVE_OK;
  1670. }
  1671. }
  1672. #endif
  1673. bool cmSystemTools::ExtractTar(const std::string& outFileName,
  1674. const std::vector<std::string>& files,
  1675. bool verbose)
  1676. {
  1677. #if defined(CMAKE_BUILD_WITH_CMAKE)
  1678. return extract_tar(outFileName, files, verbose, true);
  1679. #else
  1680. (void)outFileName;
  1681. (void)files;
  1682. (void)verbose;
  1683. return false;
  1684. #endif
  1685. }
  1686. bool cmSystemTools::ListTar(const std::string& outFileName,
  1687. const std::vector<std::string>& files,
  1688. bool verbose)
  1689. {
  1690. #if defined(CMAKE_BUILD_WITH_CMAKE)
  1691. return extract_tar(outFileName, files, verbose, false);
  1692. #else
  1693. (void)outFileName;
  1694. (void)files;
  1695. (void)verbose;
  1696. return false;
  1697. #endif
  1698. }
  1699. int cmSystemTools::WaitForLine(cmsysProcess* process, std::string& line,
  1700. cmDuration timeout, std::vector<char>& out,
  1701. std::vector<char>& err)
  1702. {
  1703. line.clear();
  1704. std::vector<char>::iterator outiter = out.begin();
  1705. std::vector<char>::iterator erriter = err.begin();
  1706. cmProcessOutput processOutput;
  1707. std::string strdata;
  1708. while (true) {
  1709. // Check for a newline in stdout.
  1710. for (; outiter != out.end(); ++outiter) {
  1711. if ((*outiter == '\r') && ((outiter + 1) == out.end())) {
  1712. break;
  1713. }
  1714. if (*outiter == '\n' || *outiter == '\0') {
  1715. std::vector<char>::size_type length = outiter - out.begin();
  1716. if (length > 1 && *(outiter - 1) == '\r') {
  1717. --length;
  1718. }
  1719. if (length > 0) {
  1720. line.append(&out[0], length);
  1721. }
  1722. out.erase(out.begin(), outiter + 1);
  1723. return cmsysProcess_Pipe_STDOUT;
  1724. }
  1725. }
  1726. // Check for a newline in stderr.
  1727. for (; erriter != err.end(); ++erriter) {
  1728. if ((*erriter == '\r') && ((erriter + 1) == err.end())) {
  1729. break;
  1730. }
  1731. if (*erriter == '\n' || *erriter == '\0') {
  1732. std::vector<char>::size_type length = erriter - err.begin();
  1733. if (length > 1 && *(erriter - 1) == '\r') {
  1734. --length;
  1735. }
  1736. if (length > 0) {
  1737. line.append(&err[0], length);
  1738. }
  1739. err.erase(err.begin(), erriter + 1);
  1740. return cmsysProcess_Pipe_STDERR;
  1741. }
  1742. }
  1743. // No newlines found. Wait for more data from the process.
  1744. int length;
  1745. char* data;
  1746. double timeoutAsDbl = timeout.count();
  1747. int pipe =
  1748. cmsysProcess_WaitForData(process, &data, &length, &timeoutAsDbl);
  1749. if (pipe == cmsysProcess_Pipe_Timeout) {
  1750. // Timeout has been exceeded.
  1751. return pipe;
  1752. }
  1753. if (pipe == cmsysProcess_Pipe_STDOUT) {
  1754. processOutput.DecodeText(data, length, strdata, 1);
  1755. // Append to the stdout buffer.
  1756. std::vector<char>::size_type size = out.size();
  1757. cmAppend(out, strdata);
  1758. outiter = out.begin() + size;
  1759. } else if (pipe == cmsysProcess_Pipe_STDERR) {
  1760. processOutput.DecodeText(data, length, strdata, 2);
  1761. // Append to the stderr buffer.
  1762. std::vector<char>::size_type size = err.size();
  1763. cmAppend(err, strdata);
  1764. erriter = err.begin() + size;
  1765. } else if (pipe == cmsysProcess_Pipe_None) {
  1766. // Both stdout and stderr pipes have broken. Return leftover data.
  1767. processOutput.DecodeText(std::string(), strdata, 1);
  1768. if (!strdata.empty()) {
  1769. std::vector<char>::size_type size = out.size();
  1770. cmAppend(out, strdata);
  1771. outiter = out.begin() + size;
  1772. }
  1773. processOutput.DecodeText(std::string(), strdata, 2);
  1774. if (!strdata.empty()) {
  1775. std::vector<char>::size_type size = err.size();
  1776. cmAppend(err, strdata);
  1777. erriter = err.begin() + size;
  1778. }
  1779. if (!out.empty()) {
  1780. line.append(&out[0], outiter - out.begin());
  1781. out.erase(out.begin(), out.end());
  1782. return cmsysProcess_Pipe_STDOUT;
  1783. }
  1784. if (!err.empty()) {
  1785. line.append(&err[0], erriter - err.begin());
  1786. err.erase(err.begin(), err.end());
  1787. return cmsysProcess_Pipe_STDERR;
  1788. }
  1789. return cmsysProcess_Pipe_None;
  1790. }
  1791. }
  1792. }
  1793. #ifdef _WIN32
  1794. static void EnsureStdPipe(DWORD fd)
  1795. {
  1796. if (GetStdHandle(fd) != INVALID_HANDLE_VALUE) {
  1797. return;
  1798. }
  1799. SECURITY_ATTRIBUTES sa;
  1800. sa.nLength = sizeof(sa);
  1801. sa.lpSecurityDescriptor = NULL;
  1802. sa.bInheritHandle = TRUE;
  1803. HANDLE h = CreateFileW(
  1804. L"NUL",
  1805. fd == STD_INPUT_HANDLE ? FILE_GENERIC_READ
  1806. : FILE_GENERIC_WRITE | FILE_READ_ATTRIBUTES,
  1807. FILE_SHARE_READ | FILE_SHARE_WRITE, &sa, OPEN_EXISTING, 0, NULL);
  1808. if (h == INVALID_HANDLE_VALUE) {
  1809. LPSTR message = NULL;
  1810. DWORD size = FormatMessageA(
  1811. FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM |
  1812. FORMAT_MESSAGE_IGNORE_INSERTS,
  1813. NULL, GetLastError(), MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
  1814. (LPSTR)&message, 0, NULL);
  1815. std::string msg = std::string(message, size);
  1816. LocalFree(message);
  1817. std::cerr << "failed to open NUL for missing stdio pipe: " << msg;
  1818. abort();
  1819. }
  1820. SetStdHandle(fd, h);
  1821. }
  1822. void cmSystemTools::EnsureStdPipes()
  1823. {
  1824. EnsureStdPipe(STD_INPUT_HANDLE);
  1825. EnsureStdPipe(STD_OUTPUT_HANDLE);
  1826. EnsureStdPipe(STD_ERROR_HANDLE);
  1827. }
  1828. #else
  1829. static void EnsureStdPipe(int fd)
  1830. {
  1831. if (fcntl(fd, F_GETFD) != -1 || errno != EBADF) {
  1832. return;
  1833. }
  1834. int f = open("/dev/null", fd == STDIN_FILENO ? O_RDONLY : O_WRONLY);
  1835. if (f == -1) {
  1836. perror("failed to open /dev/null for missing stdio pipe");
  1837. abort();
  1838. }
  1839. if (f != fd) {
  1840. dup2(f, fd);
  1841. close(f);
  1842. }
  1843. }
  1844. void cmSystemTools::EnsureStdPipes()
  1845. {
  1846. EnsureStdPipe(STDIN_FILENO);
  1847. EnsureStdPipe(STDOUT_FILENO);
  1848. EnsureStdPipe(STDERR_FILENO);
  1849. }
  1850. #endif
  1851. void cmSystemTools::DoNotInheritStdPipes()
  1852. {
  1853. #ifdef _WIN32
  1854. // Check to see if we are attached to a console
  1855. // if so, then do not stop the inherited pipes
  1856. // or stdout and stderr will not show up in dos
  1857. // shell windows
  1858. CONSOLE_SCREEN_BUFFER_INFO hOutInfo;
  1859. HANDLE hOut = GetStdHandle(STD_OUTPUT_HANDLE);
  1860. if (GetConsoleScreenBufferInfo(hOut, &hOutInfo)) {
  1861. return;
  1862. }
  1863. {
  1864. HANDLE out = GetStdHandle(STD_OUTPUT_HANDLE);
  1865. DuplicateHandle(GetCurrentProcess(), out, GetCurrentProcess(), &out, 0,
  1866. FALSE, DUPLICATE_SAME_ACCESS | DUPLICATE_CLOSE_SOURCE);
  1867. SetStdHandle(STD_OUTPUT_HANDLE, out);
  1868. }
  1869. {
  1870. HANDLE out = GetStdHandle(STD_ERROR_HANDLE);
  1871. DuplicateHandle(GetCurrentProcess(), out, GetCurrentProcess(), &out, 0,
  1872. FALSE, DUPLICATE_SAME_ACCESS | DUPLICATE_CLOSE_SOURCE);
  1873. SetStdHandle(STD_ERROR_HANDLE, out);
  1874. }
  1875. #endif
  1876. }
  1877. #ifdef _WIN32
  1878. # ifndef CRYPT_SILENT
  1879. # define CRYPT_SILENT 0x40 /* Not defined by VS 6 version of header. */
  1880. # endif
  1881. static int WinCryptRandom(void* data, size_t size)
  1882. {
  1883. int result = 0;
  1884. HCRYPTPROV hProvider = 0;
  1885. if (CryptAcquireContextW(&hProvider, 0, 0, PROV_RSA_FULL,
  1886. CRYPT_VERIFYCONTEXT | CRYPT_SILENT)) {
  1887. result = CryptGenRandom(hProvider, (DWORD)size, (BYTE*)data) ? 1 : 0;
  1888. CryptReleaseContext(hProvider, 0);
  1889. }
  1890. return result;
  1891. }
  1892. #endif
  1893. unsigned int cmSystemTools::RandomSeed()
  1894. {
  1895. #if defined(_WIN32) && !defined(__CYGWIN__)
  1896. unsigned int seed = 0;
  1897. // Try using a real random source.
  1898. if (WinCryptRandom(&seed, sizeof(seed))) {
  1899. return seed;
  1900. }
  1901. // Fall back to the time and pid.
  1902. FILETIME ft;
  1903. GetSystemTimeAsFileTime(&ft);
  1904. unsigned int t1 = static_cast<unsigned int>(ft.dwHighDateTime);
  1905. unsigned int t2 = static_cast<unsigned int>(ft.dwLowDateTime);
  1906. unsigned int pid = static_cast<unsigned int>(GetCurrentProcessId());
  1907. return t1 ^ t2 ^ pid;
  1908. #else
  1909. union
  1910. {
  1911. unsigned int integer;
  1912. char bytes[sizeof(unsigned int)];
  1913. } seed;
  1914. // Try using a real random source.
  1915. cmsys::ifstream fin;
  1916. fin.rdbuf()->pubsetbuf(nullptr, 0); // Unbuffered read.
  1917. fin.open("/dev/urandom");
  1918. if (fin.good() && fin.read(seed.bytes, sizeof(seed)) &&
  1919. fin.gcount() == sizeof(seed)) {
  1920. return seed.integer;
  1921. }
  1922. // Fall back to the time and pid.
  1923. struct timeval t;
  1924. gettimeofday(&t, nullptr);
  1925. unsigned int pid = static_cast<unsigned int>(getpid());
  1926. unsigned int tv_sec = static_cast<unsigned int>(t.tv_sec);
  1927. unsigned int tv_usec = static_cast<unsigned int>(t.tv_usec);
  1928. // Since tv_usec never fills more than 11 bits we shift it to fill
  1929. // in the slow-changing high-order bits of tv_sec.
  1930. return tv_sec ^ (tv_usec << 21) ^ pid;
  1931. #endif
  1932. }
  1933. static std::string cmSystemToolsCMakeCommand;
  1934. static std::string cmSystemToolsCTestCommand;
  1935. static std::string cmSystemToolsCPackCommand;
  1936. static std::string cmSystemToolsCMakeCursesCommand;
  1937. static std::string cmSystemToolsCMakeGUICommand;
  1938. static std::string cmSystemToolsCMClDepsCommand;
  1939. static std::string cmSystemToolsCMakeRoot;
  1940. void cmSystemTools::FindCMakeResources(const char* argv0)
  1941. {
  1942. std::string exe_dir;
  1943. #if defined(_WIN32) && !defined(__CYGWIN__)
  1944. (void)argv0; // ignore this on windows
  1945. wchar_t modulepath[_MAX_PATH];
  1946. ::GetModuleFileNameW(NULL, modulepath, sizeof(modulepath));
  1947. std::string path = cmsys::Encoding::ToNarrow(modulepath);
  1948. std::string realPath =
  1949. cmSystemTools::GetRealPathResolvingWindowsSubst(path, NULL);
  1950. if (realPath.empty()) {
  1951. realPath = path;
  1952. }
  1953. exe_dir = cmSystemTools::GetFilenamePath(realPath);
  1954. #elif defined(__APPLE__)
  1955. (void)argv0; // ignore this on OS X
  1956. # define CM_EXE_PATH_LOCAL_SIZE 16384
  1957. char exe_path_local[CM_EXE_PATH_LOCAL_SIZE];
  1958. # if defined(MAC_OS_X_VERSION_10_3) && !defined(MAC_OS_X_VERSION_10_4)
  1959. unsigned long exe_path_size = CM_EXE_PATH_LOCAL_SIZE;
  1960. # else
  1961. uint32_t exe_path_size = CM_EXE_PATH_LOCAL_SIZE;
  1962. # endif
  1963. # undef CM_EXE_PATH_LOCAL_SIZE
  1964. char* exe_path = exe_path_local;
  1965. if (_NSGetExecutablePath(exe_path, &exe_path_size) < 0) {
  1966. exe_path = static_cast<char*>(malloc(exe_path_size));
  1967. _NSGetExecutablePath(exe_path, &exe_path_size);
  1968. }
  1969. exe_dir =
  1970. cmSystemTools::GetFilenamePath(cmSystemTools::GetRealPath(exe_path));
  1971. if (exe_path != exe_path_local) {
  1972. free(exe_path);
  1973. }
  1974. if (cmSystemTools::GetFilenameName(exe_dir) == "MacOS") {
  1975. // The executable is inside an application bundle.
  1976. // Look for ..<CMAKE_BIN_DIR> (install tree) and then fall back to
  1977. // ../../../bin (build tree).
  1978. exe_dir = cmSystemTools::GetFilenamePath(exe_dir);
  1979. if (cmSystemTools::FileExists(exe_dir + CMAKE_BIN_DIR "/cmake")) {
  1980. exe_dir += CMAKE_BIN_DIR;
  1981. } else {
  1982. exe_dir = cmSystemTools::GetFilenamePath(exe_dir);
  1983. exe_dir = cmSystemTools::GetFilenamePath(exe_dir);
  1984. }
  1985. }
  1986. #else
  1987. std::string errorMsg;
  1988. std::string exe;
  1989. if (cmSystemTools::FindProgramPath(argv0, exe, errorMsg)) {
  1990. // remove symlinks
  1991. exe = cmSystemTools::GetRealPath(exe);
  1992. exe_dir = cmSystemTools::GetFilenamePath(exe);
  1993. } else {
  1994. // ???
  1995. }
  1996. #endif
  1997. exe_dir = cmSystemTools::GetActualCaseForPath(exe_dir);
  1998. cmSystemToolsCMakeCommand = exe_dir;
  1999. cmSystemToolsCMakeCommand += "/cmake";
  2000. cmSystemToolsCMakeCommand += cmSystemTools::GetExecutableExtension();
  2001. #ifndef CMAKE_BUILD_WITH_CMAKE
  2002. // The bootstrap cmake does not provide the other tools,
  2003. // so use the directory where they are about to be built.
  2004. exe_dir = CMAKE_BOOTSTRAP_BINARY_DIR "/bin";
  2005. #endif
  2006. cmSystemToolsCTestCommand = exe_dir;
  2007. cmSystemToolsCTestCommand += "/ctest";
  2008. cmSystemToolsCTestCommand += cmSystemTools::GetExecutableExtension();
  2009. cmSystemToolsCPackCommand = exe_dir;
  2010. cmSystemToolsCPackCommand += "/cpack";
  2011. cmSystemToolsCPackCommand += cmSystemTools::GetExecutableExtension();
  2012. cmSystemToolsCMakeGUICommand = exe_dir;
  2013. cmSystemToolsCMakeGUICommand += "/cmake-gui";
  2014. cmSystemToolsCMakeGUICommand += cmSystemTools::GetExecutableExtension();
  2015. if (!cmSystemTools::FileExists(cmSystemToolsCMakeGUICommand)) {
  2016. cmSystemToolsCMakeGUICommand.clear();
  2017. }
  2018. cmSystemToolsCMakeCursesCommand = exe_dir;
  2019. cmSystemToolsCMakeCursesCommand += "/ccmake";
  2020. cmSystemToolsCMakeCursesCommand += cmSystemTools::GetExecutableExtension();
  2021. if (!cmSystemTools::FileExists(cmSystemToolsCMakeCursesCommand)) {
  2022. cmSystemToolsCMakeCursesCommand.clear();
  2023. }
  2024. cmSystemToolsCMClDepsCommand = exe_dir;
  2025. cmSystemToolsCMClDepsCommand += "/cmcldeps";
  2026. cmSystemToolsCMClDepsCommand += cmSystemTools::GetExecutableExtension();
  2027. if (!cmSystemTools::FileExists(cmSystemToolsCMClDepsCommand)) {
  2028. cmSystemToolsCMClDepsCommand.clear();
  2029. }
  2030. #ifdef CMAKE_BUILD_WITH_CMAKE
  2031. // Install tree has
  2032. // - "<prefix><CMAKE_BIN_DIR>/cmake"
  2033. // - "<prefix><CMAKE_DATA_DIR>"
  2034. if (cmHasSuffix(exe_dir, CMAKE_BIN_DIR)) {
  2035. std::string const prefix =
  2036. exe_dir.substr(0, exe_dir.size() - strlen(CMAKE_BIN_DIR));
  2037. cmSystemToolsCMakeRoot = prefix + CMAKE_DATA_DIR;
  2038. }
  2039. if (cmSystemToolsCMakeRoot.empty() ||
  2040. !cmSystemTools::FileExists(
  2041. (cmSystemToolsCMakeRoot + "/Modules/CMake.cmake"))) {
  2042. // Build tree has "<build>/bin[/<config>]/cmake" and
  2043. // "<build>/CMakeFiles/CMakeSourceDir.txt".
  2044. std::string dir = cmSystemTools::GetFilenamePath(exe_dir);
  2045. std::string src_dir_txt = dir + "/CMakeFiles/CMakeSourceDir.txt";
  2046. cmsys::ifstream fin(src_dir_txt.c_str());
  2047. std::string src_dir;
  2048. if (fin && cmSystemTools::GetLineFromStream(fin, src_dir) &&
  2049. cmSystemTools::FileIsDirectory(src_dir)) {
  2050. cmSystemToolsCMakeRoot = src_dir;
  2051. } else {
  2052. dir = cmSystemTools::GetFilenamePath(dir);
  2053. src_dir_txt = dir + "/CMakeFiles/CMakeSourceDir.txt";
  2054. cmsys::ifstream fin2(src_dir_txt.c_str());
  2055. if (fin2 && cmSystemTools::GetLineFromStream(fin2, src_dir) &&
  2056. cmSystemTools::FileIsDirectory(src_dir)) {
  2057. cmSystemToolsCMakeRoot = src_dir;
  2058. }
  2059. }
  2060. }
  2061. #else
  2062. // Bootstrap build knows its source.
  2063. cmSystemToolsCMakeRoot = CMAKE_BOOTSTRAP_SOURCE_DIR;
  2064. #endif
  2065. }
  2066. std::string const& cmSystemTools::GetCMakeCommand()
  2067. {
  2068. return cmSystemToolsCMakeCommand;
  2069. }
  2070. std::string const& cmSystemTools::GetCTestCommand()
  2071. {
  2072. return cmSystemToolsCTestCommand;
  2073. }
  2074. std::string const& cmSystemTools::GetCPackCommand()
  2075. {
  2076. return cmSystemToolsCPackCommand;
  2077. }
  2078. std::string const& cmSystemTools::GetCMakeCursesCommand()
  2079. {
  2080. return cmSystemToolsCMakeCursesCommand;
  2081. }
  2082. std::string const& cmSystemTools::GetCMakeGUICommand()
  2083. {
  2084. return cmSystemToolsCMakeGUICommand;
  2085. }
  2086. std::string const& cmSystemTools::GetCMClDepsCommand()
  2087. {
  2088. return cmSystemToolsCMClDepsCommand;
  2089. }
  2090. std::string const& cmSystemTools::GetCMakeRoot()
  2091. {
  2092. return cmSystemToolsCMakeRoot;
  2093. }
  2094. void cmSystemTools::MakefileColorEcho(int color, const char* message,
  2095. bool newline, bool enabled)
  2096. {
  2097. // On some platforms (an MSYS prompt) cmsysTerminal may not be able
  2098. // to determine whether the stream is displayed on a tty. In this
  2099. // case it assumes no unless we tell it otherwise. Since we want
  2100. // color messages to be displayed for users we will assume yes.
  2101. // However, we can test for some situations when the answer is most
  2102. // likely no.
  2103. int assumeTTY = cmsysTerminal_Color_AssumeTTY;
  2104. if (cmSystemTools::HasEnv("DART_TEST_FROM_DART") ||
  2105. cmSystemTools::HasEnv("DASHBOARD_TEST_FROM_CTEST") ||
  2106. cmSystemTools::HasEnv("CTEST_INTERACTIVE_DEBUG_MODE")) {
  2107. // Avoid printing color escapes during dashboard builds.
  2108. assumeTTY = 0;
  2109. }
  2110. if (enabled && color != cmsysTerminal_Color_Normal) {
  2111. // Print with color. Delay the newline until later so that
  2112. // all color restore sequences appear before it.
  2113. cmsysTerminal_cfprintf(color | assumeTTY, stdout, "%s", message);
  2114. } else {
  2115. // Color is disabled. Print without color.
  2116. fprintf(stdout, "%s", message);
  2117. }
  2118. if (newline) {
  2119. fprintf(stdout, "\n");
  2120. }
  2121. }
  2122. bool cmSystemTools::GuessLibrarySOName(std::string const& fullPath,
  2123. std::string& soname)
  2124. {
  2125. // For ELF shared libraries use a real parser to get the correct
  2126. // soname.
  2127. #if defined(CMAKE_USE_ELF_PARSER)
  2128. cmELF elf(fullPath.c_str());
  2129. if (elf) {
  2130. return elf.GetSOName(soname);
  2131. }
  2132. #endif
  2133. // If the file is not a symlink we have no guess for its soname.
  2134. if (!cmSystemTools::FileIsSymlink(fullPath)) {
  2135. return false;
  2136. }
  2137. if (!cmSystemTools::ReadSymlink(fullPath, soname)) {
  2138. return false;
  2139. }
  2140. // If the symlink has a path component we have no guess for the soname.
  2141. if (!cmSystemTools::GetFilenamePath(soname).empty()) {
  2142. return false;
  2143. }
  2144. // If the symlink points at an extended version of the same name
  2145. // assume it is the soname.
  2146. std::string name = cmSystemTools::GetFilenameName(fullPath);
  2147. return soname.length() > name.length() &&
  2148. soname.compare(0, name.length(), name) == 0;
  2149. }
  2150. bool cmSystemTools::GuessLibraryInstallName(std::string const& fullPath,
  2151. std::string& soname)
  2152. {
  2153. #if defined(CMAKE_USE_MACH_PARSER)
  2154. cmMachO macho(fullPath.c_str());
  2155. if (macho) {
  2156. return macho.GetInstallName(soname);
  2157. }
  2158. #else
  2159. (void)fullPath;
  2160. (void)soname;
  2161. #endif
  2162. return false;
  2163. }
  2164. #if defined(CMAKE_USE_ELF_PARSER)
  2165. std::string::size_type cmSystemToolsFindRPath(std::string const& have,
  2166. std::string const& want)
  2167. {
  2168. std::string::size_type pos = 0;
  2169. while (pos < have.size()) {
  2170. // Look for an occurrence of the string.
  2171. std::string::size_type const beg = have.find(want, pos);
  2172. if (beg == std::string::npos) {
  2173. return std::string::npos;
  2174. }
  2175. // Make sure it is separated from preceding entries.
  2176. if (beg > 0 && have[beg - 1] != ':') {
  2177. pos = beg + 1;
  2178. continue;
  2179. }
  2180. // Make sure it is separated from following entries.
  2181. std::string::size_type const end = beg + want.size();
  2182. if (end < have.size() && have[end] != ':') {
  2183. pos = beg + 1;
  2184. continue;
  2185. }
  2186. // Return the position of the path portion.
  2187. return beg;
  2188. }
  2189. // The desired rpath was not found.
  2190. return std::string::npos;
  2191. }
  2192. #endif
  2193. #if defined(CMAKE_USE_ELF_PARSER)
  2194. struct cmSystemToolsRPathInfo
  2195. {
  2196. unsigned long Position;
  2197. unsigned long Size;
  2198. std::string Name;
  2199. std::string Value;
  2200. };
  2201. #endif
  2202. #if defined(CMAKE_USE_ELF_PARSER)
  2203. bool cmSystemTools::ChangeRPath(std::string const& file,
  2204. std::string const& oldRPath,
  2205. std::string const& newRPath,
  2206. bool removeEnvironmentRPath, std::string* emsg,
  2207. bool* changed)
  2208. {
  2209. if (changed) {
  2210. *changed = false;
  2211. }
  2212. int rp_count = 0;
  2213. bool remove_rpath = true;
  2214. cmSystemToolsRPathInfo rp[2];
  2215. {
  2216. // Parse the ELF binary.
  2217. cmELF elf(file.c_str());
  2218. // Get the RPATH and RUNPATH entries from it.
  2219. int se_count = 0;
  2220. cmELF::StringEntry const* se[2] = { nullptr, nullptr };
  2221. const char* se_name[2] = { nullptr, nullptr };
  2222. if (cmELF::StringEntry const* se_rpath = elf.GetRPath()) {
  2223. se[se_count] = se_rpath;
  2224. se_name[se_count] = "RPATH";
  2225. ++se_count;
  2226. }
  2227. if (cmELF::StringEntry const* se_runpath = elf.GetRunPath()) {
  2228. se[se_count] = se_runpath;
  2229. se_name[se_count] = "RUNPATH";
  2230. ++se_count;
  2231. }
  2232. if (se_count == 0) {
  2233. if (newRPath.empty()) {
  2234. // The new rpath is empty and there is no rpath anyway so it is
  2235. // okay.
  2236. return true;
  2237. }
  2238. if (emsg) {
  2239. *emsg = "No valid ELF RPATH or RUNPATH entry exists in the file; ";
  2240. *emsg += elf.GetErrorMessage();
  2241. }
  2242. return false;
  2243. }
  2244. for (int i = 0; i < se_count; ++i) {
  2245. // If both RPATH and RUNPATH refer to the same string literal it
  2246. // needs to be changed only once.
  2247. if (rp_count && rp[0].Position == se[i]->Position) {
  2248. continue;
  2249. }
  2250. // Make sure the current rpath contains the old rpath.
  2251. std::string::size_type pos =
  2252. cmSystemToolsFindRPath(se[i]->Value, oldRPath);
  2253. if (pos == std::string::npos) {
  2254. // If it contains the new rpath instead then it is okay.
  2255. if (cmSystemToolsFindRPath(se[i]->Value, newRPath) !=
  2256. std::string::npos) {
  2257. remove_rpath = false;
  2258. continue;
  2259. }
  2260. if (emsg) {
  2261. std::ostringstream e;
  2262. /* clang-format off */
  2263. e << "The current " << se_name[i] << " is:\n"
  2264. << " " << se[i]->Value << "\n"
  2265. << "which does not contain:\n"
  2266. << " " << oldRPath << "\n"
  2267. << "as was expected.";
  2268. /* clang-format on */
  2269. *emsg = e.str();
  2270. }
  2271. return false;
  2272. }
  2273. // Store information about the entry in the file.
  2274. rp[rp_count].Position = se[i]->Position;
  2275. rp[rp_count].Size = se[i]->Size;
  2276. rp[rp_count].Name = se_name[i];
  2277. std::string::size_type prefix_len = pos;
  2278. // If oldRPath was at the end of the file's RPath, and newRPath is empty,
  2279. // we should remove the unnecessary ':' at the end.
  2280. if (newRPath.empty() && pos > 0 && se[i]->Value[pos - 1] == ':' &&
  2281. pos + oldRPath.length() == se[i]->Value.length()) {
  2282. prefix_len--;
  2283. }
  2284. // Construct the new value which preserves the part of the path
  2285. // not being changed.
  2286. if (!removeEnvironmentRPath) {
  2287. rp[rp_count].Value = se[i]->Value.substr(0, prefix_len);
  2288. }
  2289. rp[rp_count].Value += newRPath;
  2290. rp[rp_count].Value += se[i]->Value.substr(pos + oldRPath.length());
  2291. if (!rp[rp_count].Value.empty()) {
  2292. remove_rpath = false;
  2293. }
  2294. // Make sure there is enough room to store the new rpath and at
  2295. // least one null terminator.
  2296. if (rp[rp_count].Size < rp[rp_count].Value.length() + 1) {
  2297. if (emsg) {
  2298. *emsg = "The replacement path is too long for the ";
  2299. *emsg += se_name[i];
  2300. *emsg += " entry.";
  2301. }
  2302. return false;
  2303. }
  2304. // This entry is ready for update.
  2305. ++rp_count;
  2306. }
  2307. }
  2308. // If no runtime path needs to be changed, we are done.
  2309. if (rp_count == 0) {
  2310. return true;
  2311. }
  2312. // If the resulting rpath is empty, just remove the entire entry instead.
  2313. if (remove_rpath) {
  2314. return cmSystemTools::RemoveRPath(file, emsg, changed);
  2315. }
  2316. {
  2317. // Open the file for update.
  2318. cmsys::ofstream f(file.c_str(),
  2319. std::ios::in | std::ios::out | std::ios::binary);
  2320. if (!f) {
  2321. if (emsg) {
  2322. *emsg = "Error opening file for update.";
  2323. }
  2324. return false;
  2325. }
  2326. // Store the new RPATH and RUNPATH strings.
  2327. for (int i = 0; i < rp_count; ++i) {
  2328. // Seek to the RPATH position.
  2329. if (!f.seekp(rp[i].Position)) {
  2330. if (emsg) {
  2331. *emsg = "Error seeking to ";
  2332. *emsg += rp[i].Name;
  2333. *emsg += " position.";
  2334. }
  2335. return false;
  2336. }
  2337. // Write the new rpath. Follow it with enough null terminators to
  2338. // fill the string table entry.
  2339. f << rp[i].Value;
  2340. for (unsigned long j = rp[i].Value.length(); j < rp[i].Size; ++j) {
  2341. f << '\0';
  2342. }
  2343. // Make sure it wrote correctly.
  2344. if (!f) {
  2345. if (emsg) {
  2346. *emsg = "Error writing the new ";
  2347. *emsg += rp[i].Name;
  2348. *emsg += " string to the file.";
  2349. }
  2350. return false;
  2351. }
  2352. }
  2353. }
  2354. // Everything was updated successfully.
  2355. if (changed) {
  2356. *changed = true;
  2357. }
  2358. return true;
  2359. }
  2360. #else
  2361. bool cmSystemTools::ChangeRPath(std::string const& /*file*/,
  2362. std::string const& /*oldRPath*/,
  2363. std::string const& /*newRPath*/,
  2364. bool /*removeEnvironmentRPath*/,
  2365. std::string* /*emsg*/, bool* /*changed*/)
  2366. {
  2367. return false;
  2368. }
  2369. #endif
  2370. bool cmSystemTools::VersionCompare(cmSystemTools::CompareOp op,
  2371. const char* lhss, const char* rhss)
  2372. {
  2373. const char* endl = lhss;
  2374. const char* endr = rhss;
  2375. unsigned long lhs, rhs;
  2376. while (((*endl >= '0') && (*endl <= '9')) ||
  2377. ((*endr >= '0') && (*endr <= '9'))) {
  2378. // Do component-wise comparison.
  2379. lhs = strtoul(endl, const_cast<char**>(&endl), 10);
  2380. rhs = strtoul(endr, const_cast<char**>(&endr), 10);
  2381. if (lhs < rhs) {
  2382. // lhs < rhs, so true if operation is LESS
  2383. return (op & cmSystemTools::OP_LESS) != 0;
  2384. }
  2385. if (lhs > rhs) {
  2386. // lhs > rhs, so true if operation is GREATER
  2387. return (op & cmSystemTools::OP_GREATER) != 0;
  2388. }
  2389. if (*endr == '.') {
  2390. endr++;
  2391. }
  2392. if (*endl == '.') {
  2393. endl++;
  2394. }
  2395. }
  2396. // lhs == rhs, so true if operation is EQUAL
  2397. return (op & cmSystemTools::OP_EQUAL) != 0;
  2398. }
  2399. bool cmSystemTools::VersionCompareEqual(std::string const& lhs,
  2400. std::string const& rhs)
  2401. {
  2402. return cmSystemTools::VersionCompare(cmSystemTools::OP_EQUAL, lhs.c_str(),
  2403. rhs.c_str());
  2404. }
  2405. bool cmSystemTools::VersionCompareGreater(std::string const& lhs,
  2406. std::string const& rhs)
  2407. {
  2408. return cmSystemTools::VersionCompare(cmSystemTools::OP_GREATER, lhs.c_str(),
  2409. rhs.c_str());
  2410. }
  2411. bool cmSystemTools::VersionCompareGreaterEq(std::string const& lhs,
  2412. std::string const& rhs)
  2413. {
  2414. return cmSystemTools::VersionCompare(cmSystemTools::OP_GREATER_EQUAL,
  2415. lhs.c_str(), rhs.c_str());
  2416. }
  2417. static size_t cm_strverscmp_find_first_difference_or_end(const char* lhs,
  2418. const char* rhs)
  2419. {
  2420. size_t i = 0;
  2421. /* Step forward until we find a difference or both strings end together.
  2422. The difference may lie on the null-terminator of one string. */
  2423. while (lhs[i] == rhs[i] && lhs[i] != 0) {
  2424. ++i;
  2425. }
  2426. return i;
  2427. }
  2428. static size_t cm_strverscmp_find_digits_begin(const char* s, size_t i)
  2429. {
  2430. /* Step back until we are not preceded by a digit. */
  2431. while (i > 0 && isdigit(s[i - 1])) {
  2432. --i;
  2433. }
  2434. return i;
  2435. }
  2436. static size_t cm_strverscmp_find_digits_end(const char* s, size_t i)
  2437. {
  2438. /* Step forward over digits. */
  2439. while (isdigit(s[i])) {
  2440. ++i;
  2441. }
  2442. return i;
  2443. }
  2444. static size_t cm_strverscmp_count_leading_zeros(const char* s, size_t b)
  2445. {
  2446. size_t i = b;
  2447. /* Step forward over zeros that are followed by another digit. */
  2448. while (s[i] == '0' && isdigit(s[i + 1])) {
  2449. ++i;
  2450. }
  2451. return i - b;
  2452. }
  2453. static int cm_strverscmp(const char* lhs, const char* rhs)
  2454. {
  2455. size_t const i = cm_strverscmp_find_first_difference_or_end(lhs, rhs);
  2456. if (lhs[i] != rhs[i]) {
  2457. /* The strings differ starting at 'i'. Check for a digit sequence. */
  2458. size_t const b = cm_strverscmp_find_digits_begin(lhs, i);
  2459. if (b != i || (isdigit(lhs[i]) && isdigit(rhs[i]))) {
  2460. /* A digit sequence starts at 'b', preceding or at 'i'. */
  2461. /* Look for leading zeros, implying a leading decimal point. */
  2462. size_t const lhs_zeros = cm_strverscmp_count_leading_zeros(lhs, b);
  2463. size_t const rhs_zeros = cm_strverscmp_count_leading_zeros(rhs, b);
  2464. if (lhs_zeros != rhs_zeros) {
  2465. /* The side with more leading zeros orders first. */
  2466. return rhs_zeros > lhs_zeros ? 1 : -1;
  2467. }
  2468. if (lhs_zeros == 0) {
  2469. /* No leading zeros; compare digit sequence lengths. */
  2470. size_t const lhs_end = cm_strverscmp_find_digits_end(lhs, i);
  2471. size_t const rhs_end = cm_strverscmp_find_digits_end(rhs, i);
  2472. if (lhs_end != rhs_end) {
  2473. /* The side with fewer digits orders first. */
  2474. return lhs_end > rhs_end ? 1 : -1;
  2475. }
  2476. }
  2477. }
  2478. }
  2479. /* Ordering was not decided by digit sequence lengths; compare bytes. */
  2480. return lhs[i] - rhs[i];
  2481. }
  2482. int cmSystemTools::strverscmp(std::string const& lhs, std::string const& rhs)
  2483. {
  2484. return cm_strverscmp(lhs.c_str(), rhs.c_str());
  2485. }
  2486. #if defined(CMAKE_USE_ELF_PARSER)
  2487. bool cmSystemTools::RemoveRPath(std::string const& file, std::string* emsg,
  2488. bool* removed)
  2489. {
  2490. if (removed) {
  2491. *removed = false;
  2492. }
  2493. int zeroCount = 0;
  2494. unsigned long zeroPosition[2] = { 0, 0 };
  2495. unsigned long zeroSize[2] = { 0, 0 };
  2496. unsigned long bytesBegin = 0;
  2497. std::vector<char> bytes;
  2498. {
  2499. // Parse the ELF binary.
  2500. cmELF elf(file.c_str());
  2501. // Get the RPATH and RUNPATH entries from it and sort them by index
  2502. // in the dynamic section header.
  2503. int se_count = 0;
  2504. cmELF::StringEntry const* se[2] = { nullptr, nullptr };
  2505. if (cmELF::StringEntry const* se_rpath = elf.GetRPath()) {
  2506. se[se_count++] = se_rpath;
  2507. }
  2508. if (cmELF::StringEntry const* se_runpath = elf.GetRunPath()) {
  2509. se[se_count++] = se_runpath;
  2510. }
  2511. if (se_count == 0) {
  2512. // There is no RPATH or RUNPATH anyway.
  2513. return true;
  2514. }
  2515. if (se_count == 2 && se[1]->IndexInSection < se[0]->IndexInSection) {
  2516. std::swap(se[0], se[1]);
  2517. }
  2518. // Obtain a copy of the dynamic entries
  2519. cmELF::DynamicEntryList dentries = elf.GetDynamicEntries();
  2520. if (dentries.empty()) {
  2521. // This should happen only for invalid ELF files where a DT_NULL
  2522. // appears before the end of the table.
  2523. if (emsg) {
  2524. *emsg = "DYNAMIC section contains a DT_NULL before the end.";
  2525. }
  2526. return false;
  2527. }
  2528. // Save information about the string entries to be zeroed.
  2529. zeroCount = se_count;
  2530. for (int i = 0; i < se_count; ++i) {
  2531. zeroPosition[i] = se[i]->Position;
  2532. zeroSize[i] = se[i]->Size;
  2533. }
  2534. // Get size of one DYNAMIC entry
  2535. unsigned long const sizeof_dentry =
  2536. elf.GetDynamicEntryPosition(1) - elf.GetDynamicEntryPosition(0);
  2537. // Adjust the entry list as necessary to remove the run path
  2538. unsigned long entriesErased = 0;
  2539. for (cmELF::DynamicEntryList::iterator it = dentries.begin();
  2540. it != dentries.end();) {
  2541. if (it->first == cmELF::TagRPath || it->first == cmELF::TagRunPath) {
  2542. it = dentries.erase(it);
  2543. entriesErased++;
  2544. continue;
  2545. }
  2546. if (cmELF::TagMipsRldMapRel != 0 &&
  2547. it->first == cmELF::TagMipsRldMapRel) {
  2548. // Background: debuggers need to know the "linker map" which contains
  2549. // the addresses each dynamic object is loaded at. Most arches use
  2550. // the DT_DEBUG tag which the dynamic linker writes to (directly) and
  2551. // contain the location of the linker map, however on MIPS the
  2552. // .dynamic section is always read-only so this is not possible. MIPS
  2553. // objects instead contain a DT_MIPS_RLD_MAP tag which contains the
  2554. // address where the dynamic linker will write to (an indirect
  2555. // version of DT_DEBUG). Since this doesn't work when using PIE, a
  2556. // relative equivalent was created - DT_MIPS_RLD_MAP_REL. Since this
  2557. // version contains a relative offset, moving it changes the
  2558. // calculated address. This may cause the dynamic linker to write
  2559. // into memory it should not be changing.
  2560. //
  2561. // To fix this, we adjust the value of DT_MIPS_RLD_MAP_REL here. If
  2562. // we move it up by n bytes, we add n bytes to the value of this tag.
  2563. it->second += entriesErased * sizeof_dentry;
  2564. }
  2565. it++;
  2566. }
  2567. // Encode new entries list
  2568. bytes = elf.EncodeDynamicEntries(dentries);
  2569. bytesBegin = elf.GetDynamicEntryPosition(0);
  2570. }
  2571. // Open the file for update.
  2572. cmsys::ofstream f(file.c_str(),
  2573. std::ios::in | std::ios::out | std::ios::binary);
  2574. if (!f) {
  2575. if (emsg) {
  2576. *emsg = "Error opening file for update.";
  2577. }
  2578. return false;
  2579. }
  2580. // Write the new DYNAMIC table header.
  2581. if (!f.seekp(bytesBegin)) {
  2582. if (emsg) {
  2583. *emsg = "Error seeking to DYNAMIC table header for RPATH.";
  2584. }
  2585. return false;
  2586. }
  2587. if (!f.write(&bytes[0], bytes.size())) {
  2588. if (emsg) {
  2589. *emsg = "Error replacing DYNAMIC table header.";
  2590. }
  2591. return false;
  2592. }
  2593. // Fill the RPATH and RUNPATH strings with zero bytes.
  2594. for (int i = 0; i < zeroCount; ++i) {
  2595. if (!f.seekp(zeroPosition[i])) {
  2596. if (emsg) {
  2597. *emsg = "Error seeking to RPATH position.";
  2598. }
  2599. return false;
  2600. }
  2601. for (unsigned long j = 0; j < zeroSize[i]; ++j) {
  2602. f << '\0';
  2603. }
  2604. if (!f) {
  2605. if (emsg) {
  2606. *emsg = "Error writing the empty rpath string to the file.";
  2607. }
  2608. return false;
  2609. }
  2610. }
  2611. // Everything was updated successfully.
  2612. if (removed) {
  2613. *removed = true;
  2614. }
  2615. return true;
  2616. }
  2617. #else
  2618. bool cmSystemTools::RemoveRPath(std::string const& /*file*/,
  2619. std::string* /*emsg*/, bool* /*removed*/)
  2620. {
  2621. return false;
  2622. }
  2623. #endif
  2624. bool cmSystemTools::CheckRPath(std::string const& file,
  2625. std::string const& newRPath)
  2626. {
  2627. #if defined(CMAKE_USE_ELF_PARSER)
  2628. // Parse the ELF binary.
  2629. cmELF elf(file.c_str());
  2630. // Get the RPATH or RUNPATH entry from it.
  2631. cmELF::StringEntry const* se = elf.GetRPath();
  2632. if (!se) {
  2633. se = elf.GetRunPath();
  2634. }
  2635. // Make sure the current rpath contains the new rpath.
  2636. if (newRPath.empty()) {
  2637. if (!se) {
  2638. return true;
  2639. }
  2640. } else {
  2641. if (se &&
  2642. cmSystemToolsFindRPath(se->Value, newRPath) != std::string::npos) {
  2643. return true;
  2644. }
  2645. }
  2646. return false;
  2647. #else
  2648. (void)file;
  2649. (void)newRPath;
  2650. return false;
  2651. #endif
  2652. }
  2653. bool cmSystemTools::RepeatedRemoveDirectory(const std::string& dir)
  2654. {
  2655. // Windows sometimes locks files temporarily so try a few times.
  2656. for (int i = 0; i < 10; ++i) {
  2657. if (cmSystemTools::RemoveADirectory(dir)) {
  2658. return true;
  2659. }
  2660. cmSystemTools::Delay(100);
  2661. }
  2662. return false;
  2663. }
  2664. std::vector<std::string> cmSystemTools::tokenize(const std::string& str,
  2665. const std::string& sep)
  2666. {
  2667. std::vector<std::string> tokens;
  2668. std::string::size_type tokend = 0;
  2669. do {
  2670. std::string::size_type tokstart = str.find_first_not_of(sep, tokend);
  2671. if (tokstart == std::string::npos) {
  2672. break; // no more tokens
  2673. }
  2674. tokend = str.find_first_of(sep, tokstart);
  2675. if (tokend == std::string::npos) {
  2676. tokens.push_back(str.substr(tokstart));
  2677. } else {
  2678. tokens.push_back(str.substr(tokstart, tokend - tokstart));
  2679. }
  2680. } while (tokend != std::string::npos);
  2681. if (tokens.empty()) {
  2682. tokens.emplace_back();
  2683. }
  2684. return tokens;
  2685. }
  2686. bool cmSystemTools::StringToLong(const char* str, long* value)
  2687. {
  2688. errno = 0;
  2689. char* endp;
  2690. *value = strtol(str, &endp, 10);
  2691. return (*endp == '\0') && (endp != str) && (errno == 0);
  2692. }
  2693. bool cmSystemTools::StringToULong(const char* str, unsigned long* value)
  2694. {
  2695. errno = 0;
  2696. char* endp;
  2697. while (isspace(*str)) {
  2698. ++str;
  2699. }
  2700. if (*str == '-') {
  2701. return false;
  2702. }
  2703. *value = strtoul(str, &endp, 10);
  2704. return (*endp == '\0') && (endp != str) && (errno == 0);
  2705. }
  2706. std::string cmSystemTools::EncodeURL(std::string const& in, bool escapeSlashes)
  2707. {
  2708. std::string out;
  2709. for (char c : in) {
  2710. char hexCh[4] = { 0, 0, 0, 0 };
  2711. hexCh[0] = c;
  2712. switch (c) {
  2713. case '+':
  2714. case '?':
  2715. case '\\':
  2716. case '&':
  2717. case ' ':
  2718. case '=':
  2719. case '%':
  2720. sprintf(hexCh, "%%%02X", static_cast<int>(c));
  2721. break;
  2722. case '/':
  2723. if (escapeSlashes) {
  2724. strcpy(hexCh, "%2F");
  2725. }
  2726. break;
  2727. default:
  2728. break;
  2729. }
  2730. out.append(hexCh);
  2731. }
  2732. return out;
  2733. }
  2734. bool cmSystemTools::CreateSymlink(const std::string& origName,
  2735. const std::string& newName,
  2736. std::string* errorMessage)
  2737. {
  2738. uv_fs_t req;
  2739. int flags = 0;
  2740. #if defined(_WIN32)
  2741. if (cmsys::SystemTools::FileIsDirectory(origName)) {
  2742. flags |= UV_FS_SYMLINK_DIR;
  2743. }
  2744. #endif
  2745. int err = uv_fs_symlink(nullptr, &req, origName.c_str(), newName.c_str(),
  2746. flags, nullptr);
  2747. if (err) {
  2748. std::string e =
  2749. "failed to create symbolic link '" + newName + "': " + uv_strerror(err);
  2750. if (errorMessage) {
  2751. *errorMessage = std::move(e);
  2752. } else {
  2753. cmSystemTools::Error(e);
  2754. }
  2755. return false;
  2756. }
  2757. return true;
  2758. }
  2759. bool cmSystemTools::CreateLink(const std::string& origName,
  2760. const std::string& newName,
  2761. std::string* errorMessage)
  2762. {
  2763. uv_fs_t req;
  2764. int err =
  2765. uv_fs_link(nullptr, &req, origName.c_str(), newName.c_str(), nullptr);
  2766. if (err) {
  2767. std::string e =
  2768. "failed to create link '" + newName + "': " + uv_strerror(err);
  2769. if (errorMessage) {
  2770. *errorMessage = std::move(e);
  2771. } else {
  2772. cmSystemTools::Error(e);
  2773. }
  2774. return false;
  2775. }
  2776. return true;
  2777. }