os_linux.odin 26 KB

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  1. package os
  2. foreign import dl "system:dl"
  3. foreign import libc "system:c"
  4. import "core:runtime"
  5. import "core:strings"
  6. import "core:c"
  7. import "core:strconv"
  8. import "core:intrinsics"
  9. import "core:sys/unix"
  10. Handle :: distinct i32
  11. Pid :: distinct i32
  12. File_Time :: distinct u64
  13. Errno :: distinct i32
  14. INVALID_HANDLE :: ~Handle(0)
  15. ERROR_NONE: Errno : 0
  16. EPERM: Errno : 1
  17. ENOENT: Errno : 2
  18. ESRCH: Errno : 3
  19. EINTR: Errno : 4
  20. EIO: Errno : 5
  21. ENXIO: Errno : 6
  22. EBADF: Errno : 9
  23. EAGAIN: Errno : 11
  24. ENOMEM: Errno : 12
  25. EACCES: Errno : 13
  26. EFAULT: Errno : 14
  27. EEXIST: Errno : 17
  28. ENODEV: Errno : 19
  29. ENOTDIR: Errno : 20
  30. EISDIR: Errno : 21
  31. EINVAL: Errno : 22
  32. ENFILE: Errno : 23
  33. EMFILE: Errno : 24
  34. ETXTBSY: Errno : 26
  35. EFBIG: Errno : 27
  36. ENOSPC: Errno : 28
  37. ESPIPE: Errno : 29
  38. EROFS: Errno : 30
  39. EPIPE: Errno : 32
  40. ERANGE: Errno : 34 /* Result too large */
  41. EDEADLK: Errno : 35 /* Resource deadlock would occur */
  42. ENAMETOOLONG: Errno : 36 /* File name too long */
  43. ENOLCK: Errno : 37 /* No record locks available */
  44. ENOSYS: Errno : 38 /* Invalid system call number */
  45. ENOTEMPTY: Errno : 39 /* Directory not empty */
  46. ELOOP: Errno : 40 /* Too many symbolic links encountered */
  47. EWOULDBLOCK: Errno : EAGAIN /* Operation would block */
  48. ENOMSG: Errno : 42 /* No message of desired type */
  49. EIDRM: Errno : 43 /* Identifier removed */
  50. ECHRNG: Errno : 44 /* Channel number out of range */
  51. EL2NSYNC: Errno : 45 /* Level 2 not synchronized */
  52. EL3HLT: Errno : 46 /* Level 3 halted */
  53. EL3RST: Errno : 47 /* Level 3 reset */
  54. ELNRNG: Errno : 48 /* Link number out of range */
  55. EUNATCH: Errno : 49 /* Protocol driver not attached */
  56. ENOCSI: Errno : 50 /* No CSI structure available */
  57. EL2HLT: Errno : 51 /* Level 2 halted */
  58. EBADE: Errno : 52 /* Invalid exchange */
  59. EBADR: Errno : 53 /* Invalid request descriptor */
  60. EXFULL: Errno : 54 /* Exchange full */
  61. ENOANO: Errno : 55 /* No anode */
  62. EBADRQC: Errno : 56 /* Invalid request code */
  63. EBADSLT: Errno : 57 /* Invalid slot */
  64. EDEADLOCK: Errno : EDEADLK
  65. EBFONT: Errno : 59 /* Bad font file format */
  66. ENOSTR: Errno : 60 /* Device not a stream */
  67. ENODATA: Errno : 61 /* No data available */
  68. ETIME: Errno : 62 /* Timer expired */
  69. ENOSR: Errno : 63 /* Out of streams resources */
  70. ENONET: Errno : 64 /* Machine is not on the network */
  71. ENOPKG: Errno : 65 /* Package not installed */
  72. EREMOTE: Errno : 66 /* Object is remote */
  73. ENOLINK: Errno : 67 /* Link has been severed */
  74. EADV: Errno : 68 /* Advertise error */
  75. ESRMNT: Errno : 69 /* Srmount error */
  76. ECOMM: Errno : 70 /* Communication error on send */
  77. EPROTO: Errno : 71 /* Protocol error */
  78. EMULTIHOP: Errno : 72 /* Multihop attempted */
  79. EDOTDOT: Errno : 73 /* RFS specific error */
  80. EBADMSG: Errno : 74 /* Not a data message */
  81. EOVERFLOW: Errno : 75 /* Value too large for defined data type */
  82. ENOTUNIQ: Errno : 76 /* Name not unique on network */
  83. EBADFD: Errno : 77 /* File descriptor in bad state */
  84. EREMCHG: Errno : 78 /* Remote address changed */
  85. ELIBACC: Errno : 79 /* Can not access a needed shared library */
  86. ELIBBAD: Errno : 80 /* Accessing a corrupted shared library */
  87. ELIBSCN: Errno : 81 /* .lib section in a.out corrupted */
  88. ELIBMAX: Errno : 82 /* Attempting to link in too many shared libraries */
  89. ELIBEXEC: Errno : 83 /* Cannot exec a shared library directly */
  90. EILSEQ: Errno : 84 /* Illegal byte sequence */
  91. ERESTART: Errno : 85 /* Interrupted system call should be restarted */
  92. ESTRPIPE: Errno : 86 /* Streams pipe error */
  93. EUSERS: Errno : 87 /* Too many users */
  94. ENOTSOCK: Errno : 88 /* Socket operation on non-socket */
  95. EDESTADDRREQ: Errno : 89 /* Destination address required */
  96. EMSGSIZE: Errno : 90 /* Message too long */
  97. EPROTOTYPE: Errno : 91 /* Protocol wrong type for socket */
  98. ENOPROTOOPT: Errno : 92 /* Protocol not available */
  99. EPROTONOSUPPORT:Errno : 93 /* Protocol not supported */
  100. ESOCKTNOSUPPORT:Errno : 94 /* Socket type not supported */
  101. EOPNOTSUPP: Errno : 95 /* Operation not supported on transport endpoint */
  102. EPFNOSUPPORT: Errno : 96 /* Protocol family not supported */
  103. EAFNOSUPPORT: Errno : 97 /* Address family not supported by protocol */
  104. EADDRINUSE: Errno : 98 /* Address already in use */
  105. EADDRNOTAVAIL: Errno : 99 /* Cannot assign requested address */
  106. ENETDOWN: Errno : 100 /* Network is down */
  107. ENETUNREACH: Errno : 101 /* Network is unreachable */
  108. ENETRESET: Errno : 102 /* Network dropped connection because of reset */
  109. ECONNABORTED: Errno : 103 /* Software caused connection abort */
  110. ECONNRESET: Errno : 104 /* Connection reset by peer */
  111. ENOBUFS: Errno : 105 /* No buffer space available */
  112. EISCONN: Errno : 106 /* Transport endpoint is already connected */
  113. ENOTCONN: Errno : 107 /* Transport endpoint is not connected */
  114. ESHUTDOWN: Errno : 108 /* Cannot send after transport endpoint shutdown */
  115. ETOOMANYREFS: Errno : 109 /* Too many references: cannot splice */
  116. ETIMEDOUT: Errno : 110 /* Connection timed out */
  117. ECONNREFUSED: Errno : 111 /* Connection refused */
  118. EHOSTDOWN: Errno : 112 /* Host is down */
  119. EHOSTUNREACH: Errno : 113 /* No route to host */
  120. EALREADY: Errno : 114 /* Operation already in progress */
  121. EINPROGRESS: Errno : 115 /* Operation now in progress */
  122. ESTALE: Errno : 116 /* Stale file handle */
  123. EUCLEAN: Errno : 117 /* Structure needs cleaning */
  124. ENOTNAM: Errno : 118 /* Not a XENIX named type file */
  125. ENAVAIL: Errno : 119 /* No XENIX semaphores available */
  126. EISNAM: Errno : 120 /* Is a named type file */
  127. EREMOTEIO: Errno : 121 /* Remote I/O error */
  128. EDQUOT: Errno : 122 /* Quota exceeded */
  129. ENOMEDIUM: Errno : 123 /* No medium found */
  130. EMEDIUMTYPE: Errno : 124 /* Wrong medium type */
  131. ECANCELED: Errno : 125 /* Operation Canceled */
  132. ENOKEY: Errno : 126 /* Required key not available */
  133. EKEYEXPIRED: Errno : 127 /* Key has expired */
  134. EKEYREVOKED: Errno : 128 /* Key has been revoked */
  135. EKEYREJECTED: Errno : 129 /* Key was rejected by service */
  136. /* for robust mutexes */
  137. EOWNERDEAD: Errno : 130 /* Owner died */
  138. ENOTRECOVERABLE: Errno : 131 /* State not recoverable */
  139. ERFKILL: Errno : 132 /* Operation not possible due to RF-kill */
  140. EHWPOISON: Errno : 133 /* Memory page has hardware error */
  141. ADDR_NO_RANDOMIZE :: 0x40000
  142. O_RDONLY :: 0x00000
  143. O_WRONLY :: 0x00001
  144. O_RDWR :: 0x00002
  145. O_CREATE :: 0x00040
  146. O_EXCL :: 0x00080
  147. O_NOCTTY :: 0x00100
  148. O_TRUNC :: 0x00200
  149. O_NONBLOCK :: 0x00800
  150. O_APPEND :: 0x00400
  151. O_SYNC :: 0x01000
  152. O_ASYNC :: 0x02000
  153. O_CLOEXEC :: 0x80000
  154. SEEK_SET :: 0
  155. SEEK_CUR :: 1
  156. SEEK_END :: 2
  157. SEEK_DATA :: 3
  158. SEEK_HOLE :: 4
  159. SEEK_MAX :: SEEK_HOLE
  160. // NOTE(zangent): These are OS specific!
  161. // Do not mix these up!
  162. RTLD_LAZY :: 0x001
  163. RTLD_NOW :: 0x002
  164. RTLD_BINDING_MASK :: 0x3
  165. RTLD_GLOBAL :: 0x100
  166. // "Argv" arguments converted to Odin strings
  167. args := _alloc_command_line_arguments()
  168. Unix_File_Time :: struct {
  169. seconds: i64,
  170. nanoseconds: i64,
  171. }
  172. OS_Stat :: struct {
  173. device_id: u64, // ID of device containing file
  174. serial: u64, // File serial number
  175. nlink: u64, // Number of hard links
  176. mode: u32, // Mode of the file
  177. uid: u32, // User ID of the file's owner
  178. gid: u32, // Group ID of the file's group
  179. _padding: i32, // 32 bits of padding
  180. rdev: u64, // Device ID, if device
  181. size: i64, // Size of the file, in bytes
  182. block_size: i64, // Optimal bllocksize for I/O
  183. blocks: i64, // Number of 512-byte blocks allocated
  184. last_access: Unix_File_Time, // Time of last access
  185. modified: Unix_File_Time, // Time of last modification
  186. status_change: Unix_File_Time, // Time of last status change
  187. _reserve1,
  188. _reserve2,
  189. _reserve3: i64,
  190. }
  191. // NOTE(laleksic, 2021-01-21): Comment and rename these to match OS_Stat above
  192. Dirent :: struct {
  193. ino: u64,
  194. off: u64,
  195. reclen: u16,
  196. type: u8,
  197. name: [256]byte,
  198. }
  199. Dir :: distinct rawptr // DIR*
  200. // File type
  201. S_IFMT :: 0o170000 // Type of file mask
  202. S_IFIFO :: 0o010000 // Named pipe (fifo)
  203. S_IFCHR :: 0o020000 // Character special
  204. S_IFDIR :: 0o040000 // Directory
  205. S_IFBLK :: 0o060000 // Block special
  206. S_IFREG :: 0o100000 // Regular
  207. S_IFLNK :: 0o120000 // Symbolic link
  208. S_IFSOCK :: 0o140000 // Socket
  209. // File mode
  210. // Read, write, execute/search by owner
  211. S_IRWXU :: 0o0700 // RWX mask for owner
  212. S_IRUSR :: 0o0400 // R for owner
  213. S_IWUSR :: 0o0200 // W for owner
  214. S_IXUSR :: 0o0100 // X for owner
  215. // Read, write, execute/search by group
  216. S_IRWXG :: 0o0070 // RWX mask for group
  217. S_IRGRP :: 0o0040 // R for group
  218. S_IWGRP :: 0o0020 // W for group
  219. S_IXGRP :: 0o0010 // X for group
  220. // Read, write, execute/search by others
  221. S_IRWXO :: 0o0007 // RWX mask for other
  222. S_IROTH :: 0o0004 // R for other
  223. S_IWOTH :: 0o0002 // W for other
  224. S_IXOTH :: 0o0001 // X for other
  225. S_ISUID :: 0o4000 // Set user id on execution
  226. S_ISGID :: 0o2000 // Set group id on execution
  227. S_ISVTX :: 0o1000 // Directory restrcted delete
  228. S_ISLNK :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFLNK }
  229. S_ISREG :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFREG }
  230. S_ISDIR :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFDIR }
  231. S_ISCHR :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFCHR }
  232. S_ISBLK :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFBLK }
  233. S_ISFIFO :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFIFO }
  234. S_ISSOCK :: #force_inline proc(m: u32) -> bool { return (m & S_IFMT) == S_IFSOCK }
  235. F_OK :: 0 // Test for file existance
  236. X_OK :: 1 // Test for execute permission
  237. W_OK :: 2 // Test for write permission
  238. R_OK :: 4 // Test for read permission
  239. AT_FDCWD :: ~uintptr(99) /* -100 */
  240. AT_REMOVEDIR :: uintptr(0x200)
  241. AT_SYMLINK_NOFOLLOW :: uintptr(0x100)
  242. _unix_personality :: proc(persona: u64) -> int {
  243. return int(intrinsics.syscall(unix.SYS_personality, uintptr(persona)))
  244. }
  245. _unix_fork :: proc() -> Pid {
  246. when ODIN_ARCH != .arm64 {
  247. res := int(intrinsics.syscall(unix.SYS_fork))
  248. } else {
  249. res := int(intrinsics.syscall(unix.SYS_clone, unix.SIGCHLD))
  250. }
  251. return -1 if res < 0 else Pid(res)
  252. }
  253. _unix_open :: proc(path: cstring, flags: int, mode: int = 0o000) -> Handle {
  254. when ODIN_ARCH != .arm64 {
  255. res := int(intrinsics.syscall(unix.SYS_open, uintptr(rawptr(path)), uintptr(flags), uintptr(mode)))
  256. } else { // NOTE: arm64 does not have open
  257. res := int(intrinsics.syscall(unix.SYS_openat, AT_FDCWD, uintptr(rawptr(path)), uintptr(flags), uintptr(mode)))
  258. }
  259. return -1 if res < 0 else Handle(res)
  260. }
  261. _unix_close :: proc(fd: Handle) -> int {
  262. return int(intrinsics.syscall(unix.SYS_close, uintptr(fd)))
  263. }
  264. _unix_read :: proc(fd: Handle, buf: rawptr, size: uint) -> int {
  265. return int(intrinsics.syscall(unix.SYS_read, uintptr(fd), uintptr(buf), uintptr(size)))
  266. }
  267. _unix_write :: proc(fd: Handle, buf: rawptr, size: uint) -> int {
  268. return int(intrinsics.syscall(unix.SYS_write, uintptr(fd), uintptr(buf), uintptr(size)))
  269. }
  270. _unix_seek :: proc(fd: Handle, offset: i64, whence: int) -> i64 {
  271. when ODIN_ARCH == .amd64 || ODIN_ARCH == .arm64 {
  272. return i64(intrinsics.syscall(unix.SYS_lseek, uintptr(fd), uintptr(offset), uintptr(whence)))
  273. } else {
  274. low := uintptr(offset & 0xFFFFFFFF)
  275. high := uintptr(offset >> 32)
  276. result: i64
  277. res := i64(intrinsics.syscall(unix.SYS__llseek, uintptr(fd), high, low, &result, uintptr(whence)))
  278. return -1 if res < 0 else result
  279. }
  280. }
  281. _unix_stat :: proc(path: cstring, stat: ^OS_Stat) -> int {
  282. when ODIN_ARCH == .amd64 {
  283. return int(intrinsics.syscall(unix.SYS_stat, uintptr(rawptr(path)), uintptr(stat)))
  284. } else when ODIN_ARCH != .arm64 {
  285. return int(intrinsics.syscall(unix.SYS_stat64, uintptr(rawptr(path)), uintptr(stat)))
  286. } else { // NOTE: arm64 does not have stat
  287. return int(intrinsics.syscall(unix.SYS_fstatat, AT_FDCWD, uintptr(rawptr(path)), uintptr(stat), 0))
  288. }
  289. }
  290. _unix_fstat :: proc(fd: Handle, stat: ^OS_Stat) -> int {
  291. when ODIN_ARCH == .amd64 || ODIN_ARCH == .arm64 {
  292. return int(intrinsics.syscall(unix.SYS_fstat, uintptr(fd), uintptr(stat)))
  293. } else {
  294. return int(intrinsics.syscall(unix.SYS_fstat64, uintptr(fd), uintptr(stat)))
  295. }
  296. }
  297. _unix_lstat :: proc(path: cstring, stat: ^OS_Stat) -> int {
  298. when ODIN_ARCH == .amd64 {
  299. return int(intrinsics.syscall(unix.SYS_lstat, uintptr(rawptr(path)), uintptr(stat)))
  300. } else when ODIN_ARCH != .arm64 {
  301. return int(intrinsics.syscall(unix.SYS_lstat64, uintptr(rawptr(path)), uintptr(stat)))
  302. } else { // NOTE: arm64 does not have any lstat
  303. return int(intrinsics.syscall(unix.SYS_fstatat, AT_FDCWD, uintptr(rawptr(path)), uintptr(stat), AT_SYMLINK_NOFOLLOW))
  304. }
  305. }
  306. _unix_readlink :: proc(path: cstring, buf: rawptr, bufsiz: uint) -> int {
  307. when ODIN_ARCH != .arm64 {
  308. return int(intrinsics.syscall(unix.SYS_readlink, uintptr(rawptr(path)), uintptr(buf), uintptr(bufsiz)))
  309. } else { // NOTE: arm64 does not have readlink
  310. return int(intrinsics.syscall(unix.SYS_readlinkat, AT_FDCWD, uintptr(rawptr(path)), uintptr(buf), uintptr(bufsiz)))
  311. }
  312. }
  313. _unix_access :: proc(path: cstring, mask: int) -> int {
  314. when ODIN_ARCH != .arm64 {
  315. return int(intrinsics.syscall(unix.SYS_access, uintptr(rawptr(path)), uintptr(mask)))
  316. } else { // NOTE: arm64 does not have access
  317. return int(intrinsics.syscall(unix.SYS_faccessat, AT_FDCWD, uintptr(rawptr(path)), uintptr(mask)))
  318. }
  319. }
  320. _unix_getcwd :: proc(buf: rawptr, size: uint) -> int {
  321. return int(intrinsics.syscall(unix.SYS_getcwd, uintptr(buf), uintptr(size)))
  322. }
  323. _unix_chdir :: proc(path: cstring) -> int {
  324. return int(intrinsics.syscall(unix.SYS_chdir, uintptr(rawptr(path))))
  325. }
  326. _unix_rename :: proc(old, new: cstring) -> int {
  327. when ODIN_ARCH != .arm64 {
  328. return int(intrinsics.syscall(unix.SYS_rename, uintptr(rawptr(old)), uintptr(rawptr(new))))
  329. } else { // NOTE: arm64 does not have rename
  330. return int(intrinsics.syscall(unix.SYS_renameat, AT_FDCWD, uintptr(rawptr(old)), uintptr(rawptr(new))))
  331. }
  332. }
  333. _unix_unlink :: proc(path: cstring) -> int {
  334. when ODIN_ARCH != .arm64 {
  335. return int(intrinsics.syscall(unix.SYS_unlink, uintptr(rawptr(path))))
  336. } else { // NOTE: arm64 does not have unlink
  337. return int(intrinsics.syscall(unix.SYS_unlinkat, AT_FDCWD, uintptr(rawptr(path)), 0))
  338. }
  339. }
  340. _unix_rmdir :: proc(path: cstring) -> int {
  341. when ODIN_ARCH != .arm64 {
  342. return int(intrinsics.syscall(unix.SYS_rmdir, uintptr(rawptr(path))))
  343. } else { // NOTE: arm64 does not have rmdir
  344. return int(intrinsics.syscall(unix.SYS_unlinkat, AT_FDCWD, uintptr(rawptr(path)), AT_REMOVEDIR))
  345. }
  346. }
  347. _unix_mkdir :: proc(path: cstring, mode: u32) -> int {
  348. when ODIN_ARCH != .arm64 {
  349. return int(intrinsics.syscall(unix.SYS_mkdir, uintptr(rawptr(path)), uintptr(mode)))
  350. } else { // NOTE: arm64 does not have mkdir
  351. return int(intrinsics.syscall(unix.SYS_mkdirat, AT_FDCWD, uintptr(rawptr(path)), uintptr(mode)))
  352. }
  353. }
  354. foreign libc {
  355. @(link_name="__errno_location") __errno_location :: proc() -> ^int ---
  356. @(link_name="getpagesize") _unix_getpagesize :: proc() -> c.int ---
  357. @(link_name="fdopendir") _unix_fdopendir :: proc(fd: Handle) -> Dir ---
  358. @(link_name="closedir") _unix_closedir :: proc(dirp: Dir) -> c.int ---
  359. @(link_name="rewinddir") _unix_rewinddir :: proc(dirp: Dir) ---
  360. @(link_name="readdir_r") _unix_readdir_r :: proc(dirp: Dir, entry: ^Dirent, result: ^^Dirent) -> c.int ---
  361. @(link_name="malloc") _unix_malloc :: proc(size: c.size_t) -> rawptr ---
  362. @(link_name="calloc") _unix_calloc :: proc(num, size: c.size_t) -> rawptr ---
  363. @(link_name="free") _unix_free :: proc(ptr: rawptr) ---
  364. @(link_name="realloc") _unix_realloc :: proc(ptr: rawptr, size: c.size_t) -> rawptr ---
  365. @(link_name="getenv") _unix_getenv :: proc(cstring) -> cstring ---
  366. @(link_name="realpath") _unix_realpath :: proc(path: cstring, resolved_path: rawptr) -> rawptr ---
  367. @(link_name="exit") _unix_exit :: proc(status: c.int) -> ! ---
  368. }
  369. foreign dl {
  370. @(link_name="dlopen") _unix_dlopen :: proc(filename: cstring, flags: c.int) -> rawptr ---
  371. @(link_name="dlsym") _unix_dlsym :: proc(handle: rawptr, symbol: cstring) -> rawptr ---
  372. @(link_name="dlclose") _unix_dlclose :: proc(handle: rawptr) -> c.int ---
  373. @(link_name="dlerror") _unix_dlerror :: proc() -> cstring ---
  374. }
  375. is_path_separator :: proc(r: rune) -> bool {
  376. return r == '/'
  377. }
  378. // determine errno from syscall return value
  379. @private
  380. _get_errno :: proc(res: int) -> Errno {
  381. if res < 0 && res > -4096 {
  382. return Errno(-res)
  383. }
  384. return 0
  385. }
  386. // get errno from libc
  387. get_last_error :: proc() -> int {
  388. return __errno_location()^
  389. }
  390. personality :: proc(persona: u64) -> (Errno) {
  391. res := _unix_personality(persona)
  392. if res == -1 {
  393. return _get_errno(res)
  394. }
  395. return ERROR_NONE
  396. }
  397. fork :: proc() -> (Pid, Errno) {
  398. pid := _unix_fork()
  399. if pid == -1 {
  400. return -1, _get_errno(int(pid))
  401. }
  402. return pid, ERROR_NONE
  403. }
  404. open :: proc(path: string, flags: int = O_RDONLY, mode: int = 0) -> (Handle, Errno) {
  405. cstr := strings.clone_to_cstring(path, context.temp_allocator)
  406. handle := _unix_open(cstr, flags, mode)
  407. if handle < 0 {
  408. return INVALID_HANDLE, _get_errno(int(handle))
  409. }
  410. return handle, ERROR_NONE
  411. }
  412. close :: proc(fd: Handle) -> Errno {
  413. return _get_errno(_unix_close(fd))
  414. }
  415. read :: proc(fd: Handle, data: []byte) -> (int, Errno) {
  416. bytes_read := _unix_read(fd, &data[0], c.size_t(len(data)))
  417. if bytes_read < 0 {
  418. return -1, _get_errno(bytes_read)
  419. }
  420. return bytes_read, ERROR_NONE
  421. }
  422. write :: proc(fd: Handle, data: []byte) -> (int, Errno) {
  423. if len(data) == 0 {
  424. return 0, ERROR_NONE
  425. }
  426. bytes_written := _unix_write(fd, &data[0], uint(len(data)))
  427. if bytes_written < 0 {
  428. return -1, _get_errno(bytes_written)
  429. }
  430. return int(bytes_written), ERROR_NONE
  431. }
  432. seek :: proc(fd: Handle, offset: i64, whence: int) -> (i64, Errno) {
  433. res := _unix_seek(fd, offset, whence)
  434. if res < 0 {
  435. return -1, _get_errno(int(res))
  436. }
  437. return res, ERROR_NONE
  438. }
  439. file_size :: proc(fd: Handle) -> (i64, Errno) {
  440. // deliberately uninitialized; the syscall fills this buffer for us
  441. s: OS_Stat = ---
  442. result := _unix_fstat(fd, &s)
  443. if result < 0 {
  444. return 0, _get_errno(result)
  445. }
  446. return max(s.size, 0), ERROR_NONE
  447. }
  448. rename :: proc(old_path, new_path: string) -> Errno {
  449. old_path_cstr := strings.clone_to_cstring(old_path, context.temp_allocator)
  450. new_path_cstr := strings.clone_to_cstring(new_path, context.temp_allocator)
  451. return _get_errno(_unix_rename(old_path_cstr, new_path_cstr))
  452. }
  453. remove :: proc(path: string) -> Errno {
  454. path_cstr := strings.clone_to_cstring(path, context.temp_allocator)
  455. return _get_errno(_unix_unlink(path_cstr))
  456. }
  457. make_directory :: proc(path: string, mode: u32 = 0o775) -> Errno {
  458. path_cstr := strings.clone_to_cstring(path, context.temp_allocator)
  459. return _get_errno(_unix_mkdir(path_cstr, mode))
  460. }
  461. remove_directory :: proc(path: string) -> Errno {
  462. path_cstr := strings.clone_to_cstring(path, context.temp_allocator)
  463. return _get_errno(_unix_rmdir(path_cstr))
  464. }
  465. is_file_handle :: proc(fd: Handle) -> bool {
  466. s, err := _fstat(fd)
  467. if err != ERROR_NONE {
  468. return false
  469. }
  470. return S_ISREG(s.mode)
  471. }
  472. is_file_path :: proc(path: string, follow_links: bool = true) -> bool {
  473. s: OS_Stat
  474. err: Errno
  475. if follow_links {
  476. s, err = _stat(path)
  477. } else {
  478. s, err = _lstat(path)
  479. }
  480. if err != ERROR_NONE {
  481. return false
  482. }
  483. return S_ISREG(s.mode)
  484. }
  485. is_dir_handle :: proc(fd: Handle) -> bool {
  486. s, err := _fstat(fd)
  487. if err != ERROR_NONE {
  488. return false
  489. }
  490. return S_ISDIR(s.mode)
  491. }
  492. is_dir_path :: proc(path: string, follow_links: bool = true) -> bool {
  493. s: OS_Stat
  494. err: Errno
  495. if follow_links {
  496. s, err = _stat(path)
  497. } else {
  498. s, err = _lstat(path)
  499. }
  500. if err != ERROR_NONE {
  501. return false
  502. }
  503. return S_ISDIR(s.mode)
  504. }
  505. is_file :: proc {is_file_path, is_file_handle}
  506. is_dir :: proc {is_dir_path, is_dir_handle}
  507. // NOTE(bill): Uses startup to initialize it
  508. stdin: Handle = 0
  509. stdout: Handle = 1
  510. stderr: Handle = 2
  511. /* TODO(zangent): Implement these!
  512. last_write_time :: proc(fd: Handle) -> File_Time {}
  513. last_write_time_by_name :: proc(name: string) -> File_Time {}
  514. */
  515. last_write_time :: proc(fd: Handle) -> (File_Time, Errno) {
  516. s, err := _fstat(fd)
  517. if err != ERROR_NONE {
  518. return 0, err
  519. }
  520. modified := s.modified.seconds * 1_000_000_000 + s.modified.nanoseconds
  521. return File_Time(modified), ERROR_NONE
  522. }
  523. last_write_time_by_name :: proc(name: string) -> (File_Time, Errno) {
  524. s, err := _stat(name)
  525. if err != ERROR_NONE {
  526. return 0, err
  527. }
  528. modified := s.modified.seconds * 1_000_000_000 + s.modified.nanoseconds
  529. return File_Time(modified), ERROR_NONE
  530. }
  531. @private
  532. _stat :: proc(path: string) -> (OS_Stat, Errno) {
  533. cstr := strings.clone_to_cstring(path, context.temp_allocator)
  534. // deliberately uninitialized; the syscall fills this buffer for us
  535. s: OS_Stat = ---
  536. result := _unix_stat(cstr, &s)
  537. if result < 0 {
  538. return s, _get_errno(result)
  539. }
  540. return s, ERROR_NONE
  541. }
  542. @private
  543. _lstat :: proc(path: string) -> (OS_Stat, Errno) {
  544. cstr := strings.clone_to_cstring(path, context.temp_allocator)
  545. // deliberately uninitialized; the syscall fills this buffer for us
  546. s: OS_Stat = ---
  547. result := _unix_lstat(cstr, &s)
  548. if result < 0 {
  549. return s, _get_errno(result)
  550. }
  551. return s, ERROR_NONE
  552. }
  553. @private
  554. _fstat :: proc(fd: Handle) -> (OS_Stat, Errno) {
  555. // deliberately uninitialized; the syscall fills this buffer for us
  556. s: OS_Stat = ---
  557. result := _unix_fstat(fd, &s)
  558. if result < 0 {
  559. return s, _get_errno(result)
  560. }
  561. return s, ERROR_NONE
  562. }
  563. @private
  564. _fdopendir :: proc(fd: Handle) -> (Dir, Errno) {
  565. dirp := _unix_fdopendir(fd)
  566. if dirp == cast(Dir)nil {
  567. return nil, Errno(get_last_error())
  568. }
  569. return dirp, ERROR_NONE
  570. }
  571. @private
  572. _closedir :: proc(dirp: Dir) -> Errno {
  573. rc := _unix_closedir(dirp)
  574. if rc != 0 {
  575. return Errno(get_last_error())
  576. }
  577. return ERROR_NONE
  578. }
  579. @private
  580. _rewinddir :: proc(dirp: Dir) {
  581. _unix_rewinddir(dirp)
  582. }
  583. @private
  584. _readdir :: proc(dirp: Dir) -> (entry: Dirent, err: Errno, end_of_stream: bool) {
  585. result: ^Dirent
  586. rc := _unix_readdir_r(dirp, &entry, &result)
  587. if rc != 0 {
  588. err = Errno(get_last_error())
  589. return
  590. }
  591. err = ERROR_NONE
  592. if result == nil {
  593. end_of_stream = true
  594. return
  595. }
  596. end_of_stream = false
  597. return
  598. }
  599. @private
  600. _readlink :: proc(path: string) -> (string, Errno) {
  601. path_cstr := strings.clone_to_cstring(path, context.temp_allocator)
  602. bufsz : uint = 256
  603. buf := make([]byte, bufsz)
  604. for {
  605. rc := _unix_readlink(path_cstr, &(buf[0]), bufsz)
  606. if rc < 0 {
  607. delete(buf)
  608. return "", _get_errno(rc)
  609. } else if rc == int(bufsz) {
  610. // NOTE(laleksic, 2021-01-21): Any cleaner way to resize the slice?
  611. bufsz *= 2
  612. delete(buf)
  613. buf = make([]byte, bufsz)
  614. } else {
  615. return strings.string_from_ptr(&buf[0], rc), ERROR_NONE
  616. }
  617. }
  618. }
  619. absolute_path_from_handle :: proc(fd: Handle) -> (string, Errno) {
  620. buf : [256]byte
  621. fd_str := strconv.itoa( buf[:], cast(int)fd )
  622. procfs_path := strings.concatenate( []string{ "/proc/self/fd/", fd_str } )
  623. defer delete(procfs_path)
  624. return _readlink(procfs_path)
  625. }
  626. absolute_path_from_relative :: proc(rel: string) -> (path: string, err: Errno) {
  627. rel := rel
  628. if rel == "" {
  629. rel = "."
  630. }
  631. rel_cstr := strings.clone_to_cstring(rel, context.temp_allocator)
  632. path_ptr := _unix_realpath(rel_cstr, nil)
  633. if path_ptr == nil {
  634. return "", Errno(get_last_error())
  635. }
  636. defer _unix_free(path_ptr)
  637. path_cstr := transmute(cstring)path_ptr
  638. path = strings.clone( string(path_cstr) )
  639. return path, ERROR_NONE
  640. }
  641. access :: proc(path: string, mask: int) -> (bool, Errno) {
  642. cstr := strings.clone_to_cstring(path, context.temp_allocator)
  643. result := _unix_access(cstr, mask)
  644. if result < 0 {
  645. return false, _get_errno(result)
  646. }
  647. return true, ERROR_NONE
  648. }
  649. heap_alloc :: proc(size: int) -> rawptr {
  650. assert(size >= 0)
  651. return _unix_calloc(1, c.size_t(size))
  652. }
  653. heap_resize :: proc(ptr: rawptr, new_size: int) -> rawptr {
  654. // NOTE: _unix_realloc doesn't guarantee new memory will be zeroed on
  655. // POSIX platforms. Ensure your caller takes this into account.
  656. return _unix_realloc(ptr, c.size_t(new_size))
  657. }
  658. heap_free :: proc(ptr: rawptr) {
  659. _unix_free(ptr)
  660. }
  661. getenv :: proc(name: string) -> (string, bool) {
  662. path_str := strings.clone_to_cstring(name, context.temp_allocator)
  663. cstr := _unix_getenv(path_str)
  664. if cstr == nil {
  665. return "", false
  666. }
  667. return string(cstr), true
  668. }
  669. get_current_directory :: proc() -> string {
  670. // NOTE(tetra): I would use PATH_MAX here, but I was not able to find
  671. // an authoritative value for it across all systems.
  672. // The largest value I could find was 4096, so might as well use the page size.
  673. page_size := get_page_size()
  674. buf := make([dynamic]u8, page_size)
  675. for {
  676. #no_bounds_check res := _unix_getcwd(&buf[0], uint(len(buf)))
  677. if res >= 0 {
  678. return strings.string_from_nul_terminated_ptr(&buf[0], len(buf))
  679. }
  680. if _get_errno(res) != ERANGE {
  681. return ""
  682. }
  683. resize(&buf, len(buf)+page_size)
  684. }
  685. unreachable()
  686. }
  687. set_current_directory :: proc(path: string) -> (err: Errno) {
  688. cstr := strings.clone_to_cstring(path, context.temp_allocator)
  689. res := _unix_chdir(cstr)
  690. if res < 0 {
  691. return _get_errno(res)
  692. }
  693. return ERROR_NONE
  694. }
  695. exit :: proc "contextless" (code: int) -> ! {
  696. runtime._cleanup_runtime_contextless()
  697. _unix_exit(c.int(code))
  698. }
  699. current_thread_id :: proc "contextless" () -> int {
  700. return unix.sys_gettid()
  701. }
  702. dlopen :: proc(filename: string, flags: int) -> rawptr {
  703. cstr := strings.clone_to_cstring(filename, context.temp_allocator)
  704. handle := _unix_dlopen(cstr, c.int(flags))
  705. return handle
  706. }
  707. dlsym :: proc(handle: rawptr, symbol: string) -> rawptr {
  708. assert(handle != nil)
  709. cstr := strings.clone_to_cstring(symbol, context.temp_allocator)
  710. proc_handle := _unix_dlsym(handle, cstr)
  711. return proc_handle
  712. }
  713. dlclose :: proc(handle: rawptr) -> bool {
  714. assert(handle != nil)
  715. return _unix_dlclose(handle) == 0
  716. }
  717. dlerror :: proc() -> string {
  718. return string(_unix_dlerror())
  719. }
  720. get_page_size :: proc() -> int {
  721. // NOTE(tetra): The page size never changes, so why do anything complicated
  722. // if we don't have to.
  723. @static page_size := -1
  724. if page_size != -1 {
  725. return page_size
  726. }
  727. page_size = int(_unix_getpagesize())
  728. return page_size
  729. }
  730. _alloc_command_line_arguments :: proc() -> []string {
  731. res := make([]string, len(runtime.args__))
  732. for arg, i in runtime.args__ {
  733. res[i] = string(arg)
  734. }
  735. return res
  736. }