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Comparing IO-AIO/AIO.xs (file contents):
Revision 1.263 by root, Sun Aug 12 06:03:20 2018 UTC vs.
Revision 1.287 by root, Tue Dec 29 15:28:02 2020 UTC

3#include <errno.h> 3#include <errno.h>
4 4
5#include "EXTERN.h" 5#include "EXTERN.h"
6#include "perl.h" 6#include "perl.h"
7#include "XSUB.h" 7#include "XSUB.h"
8#include "perliol.h"
8 9
9#if !defined mg_findext 10#if !defined mg_findext
10# define mg_findext(sv,type,vtbl) mg_find (sv, type) 11# define mg_findext(sv,type,vtbl) mg_find (sv, type)
11#endif 12#endif
12 13
17#include <sys/socket.h> 18#include <sys/socket.h>
18#include <sys/stat.h> 19#include <sys/stat.h>
19#include <limits.h> 20#include <limits.h>
20#include <fcntl.h> 21#include <fcntl.h>
21#include <sched.h> 22#include <sched.h>
22
23#if _POSIX_MEMLOCK || _POSIX_MEMLOCK_RANGE || _POSIX_MAPPED_FILES
24# include <sys/mman.h>
25#endif
26 23
27/* the incompetent fool that created musl keeps __linux__, refuses 24/* the incompetent fool that created musl keeps __linux__, refuses
28 * to implement any linux standard apis, and also has no way to test 25 * to implement any linux standard apis, and also has no way to test
29 * for his broken iplementation. don't complain to me if this fails 26 * for his broken iplementation. don't complain to me if this fails
30 * for you. 27 * for you.
78 #undef fchmod 75 #undef fchmod
79 #undef dup 76 #undef dup
80 #undef dup2 77 #undef dup2
81 #undef abort 78 #undef abort
82 #undef pipe 79 #undef pipe
80 #undef utime
83 81
84 #define EIO_STRUCT_STAT struct _stati64 82 #define EIO_STRUCT_STAT struct _stati64
85 #define EIO_STRUCT_STATI64 83 #define EIO_STRUCT_STATI64
86 84
87#else 85#else
88 86
89 #include <sys/time.h> 87 #include <sys/time.h>
90 #include <sys/select.h> 88 #include <sys/select.h>
89 #include <sys/wait.h>
91 #include <unistd.h> 90 #include <unistd.h>
92 #include <utime.h> 91 #include <utime.h>
93 #include <signal.h> 92 #include <signal.h>
94 93
95 #define EIO_STRUCT_STAT Stat_t 94 #define EIO_STRUCT_STAT Stat_t
108#define expect_true(expr) expect ((expr) != 0, 1) 107#define expect_true(expr) expect ((expr) != 0, 1)
109 108
110/*****************************************************************************/ 109/*****************************************************************************/
111 110
112#include "config.h" 111#include "config.h"
112
113#if HAVE_SYS_MKDEV_H
114# include <sys/mkdev.h>
115#elif HAVE_SYS_SYSMACROS_H
116# include <sys/sysmacros.h>
117#endif
118
119#if _POSIX_MEMLOCK || _POSIX_MEMLOCK_RANGE || _POSIX_MAPPED_FILES
120# include <sys/mman.h>
121#endif
122
123#if HAVE_SYS_UIO_H
124# include <sys/uio.h>
125#endif
113 126
114#if HAVE_ST_XTIMENSEC 127#if HAVE_ST_XTIMENSEC
115# define ATIMENSEC PL_statcache.st_atimensec 128# define ATIMENSEC PL_statcache.st_atimensec
116# define MTIMENSEC PL_statcache.st_mtimensec 129# define MTIMENSEC PL_statcache.st_mtimensec
117# define CTIMENSEC PL_statcache.st_ctimensec 130# define CTIMENSEC PL_statcache.st_ctimensec
123# define ATIMENSEC 0 136# define ATIMENSEC 0
124# define MTIMENSEC 0 137# define MTIMENSEC 0
125# define CTIMENSEC 0 138# define CTIMENSEC 0
126#endif 139#endif
127 140
141#if HAVE_ST_BIRTHTIMENSEC
142# define BTIMESEC PL_statcache.st_birthtime
143# define BTIMENSEC PL_statcache.st_birthtimensec
144#elif HAVE_ST_BIRTHTIMESPEC
145# define BTIMESEC PL_statcache.st_birthtim.tv_sec
146# define BTIMENSEC PL_statcache.st_birthtim.tv_nsec
147#else
148# define BTIMESEC 0
149# define BTIMENSEC 0
150#endif
151
152#if HAVE_ST_GEN
153# define ST_GEN PL_statcache.st_gen
154#else
155# define ST_GEN 0
156#endif
157
128#include "schmorp.h" 158#include "schmorp.h"
129 159
130#if HAVE_EVENTFD 160#if HAVE_EVENTFD
131# include <sys/eventfd.h> 161# include <sys/eventfd.h>
132#endif 162#endif
188#endif 218#endif
189#ifndef minor 219#ifndef minor
190# define minor(dev) ((dev) & 0xff) 220# define minor(dev) ((dev) & 0xff)
191#endif 221#endif
192 222
223/* solaris has a non-posix/unix compliant PAGESIZE that breaks compilation */
224#ifdef __sun
225# undef PAGESIZE
226#endif
227
193#if PAGESIZE <= 0 228#if PAGESIZE <= 0
194# define PAGESIZE sysconf (_SC_PAGESIZE) 229# define PAGESIZE sysconf (_SC_PAGESIZE)
230#endif
231
232#if HAVE_SYSCALL
233#include <sys/syscall.h>
234#else
235# define syscall(nr,...) (errno = ENOSYS, -1)
195#endif 236#endif
196 237
197/*****************************************************************************/ 238/*****************************************************************************/
198 239
199#if !_POSIX_MAPPED_FILES 240#if !_POSIX_MAPPED_FILES
259}; 300};
260 301
261/*****************************************************************************/ 302/*****************************************************************************/
262 303
263/* helper: set scalar to foreign ptr with custom free */ 304/* helper: set scalar to foreign ptr with custom free */
305ecb_noinline
264static void 306static void
265sv_set_foreign (SV *sv, const MGVTBL *const vtbl, void *addr, IV length) 307sv_set_foreign (SV *sv, const MGVTBL *const vtbl, void *addr, IV length)
266{ 308{
267 sv_force_normal (sv); 309 sv_force_normal (sv);
268 310
309 int count = req->int3; 351 int count = req->int3;
310 352
311 req->flags |= EIO_FLAG_PTR1_FREE; 353 req->flags |= EIO_FLAG_PTR1_FREE;
312 354
313 /* heuristic: start with 512 bytes (8 extents), and if that isn't enough, */ 355 /* heuristic: start with 512 bytes (8 extents), and if that isn't enough, */
314 /* increase in 3.5kb steps */ 356 /* increase in fixed steps */
315 if (count < 0) 357 if (count < 0)
316 count = 8; 358 count = 8;
317 359
318 fiemap = malloc (sizeof (*fiemap) + sizeof (struct fiemap_extent) * count); 360 fiemap = malloc (sizeof (*fiemap) + sizeof (struct fiemap_extent) * count);
319 errno = ENOMEM; 361 errno = ENOMEM;
372 414
373 for (count = 0; count < incmap->fm_mapped_extents; ++count) 415 for (count = 0; count < incmap->fm_mapped_extents; ++count)
374 { 416 {
375 struct fiemap_extent *e = incmap->fm_extents + count; 417 struct fiemap_extent *e = incmap->fm_extents + count;
376 418
419 fiemap->fm_extents [fiemap->fm_mapped_extents++] = *e;
420
377 if (e->fe_logical + e->fe_length >= end_offset) 421 if (e->fe_logical >= end_offset)
378 goto done; 422 goto done;
379
380 fiemap->fm_extents [fiemap->fm_mapped_extents++] = *e;
381 423
382 if (e->fe_flags & FIEMAP_EXTENT_LAST) 424 if (e->fe_flags & FIEMAP_EXTENT_LAST)
383 goto done; 425 goto done;
384 426
385 } 427 }
392 errno = ENOSYS; 434 errno = ENOSYS;
393#endif 435#endif
394} 436}
395 437
396/*****************************************************************************/ 438/*****************************************************************************/
439
440static int close_fd; /* dummy fd to close fds via dup2 */
441
442#if HAVE_STATX
443static struct statx stx;
444#define statx_offsetof(member) offsetof (struct statx, member)
445#define eio__statx statx
446#else
447#define statx_offsetof(member) 0
448#define eio__statx(dir,path,flags,mask,stx) EIO_ENOSYS()
449#endif
397 450
398enum { 451enum {
399 FLAG_SV2_RO_OFF = 0x40, /* data was set readonly */ 452 FLAG_SV2_RO_OFF = 0x40, /* data was set readonly */
400}; 453};
401 454
425 /* read any signals sent by the worker threads */ 478 /* read any signals sent by the worker threads */
426 s_epipe_drain (&respipe); 479 s_epipe_drain (&respipe);
427} 480}
428 481
429/* must be called at most once */ 482/* must be called at most once */
483ecb_noinline
430static SV * 484static SV *
431req_sv (aio_req req, HV *stash) 485req_sv (aio_req req, HV *stash)
432{ 486{
433 if (!req->self) 487 if (!req->self)
434 { 488 {
443newSVaio_wd (aio_wd wd) 497newSVaio_wd (aio_wd wd)
444{ 498{
445 return sv_bless (newRV_noinc (newSViv ((intptr_t)wd)), aio_wd_stash); 499 return sv_bless (newRV_noinc (newSViv ((intptr_t)wd)), aio_wd_stash);
446} 500}
447 501
502ecb_noinline
448static aio_req 503static aio_req
449SvAIO_REQ (SV *sv) 504SvAIO_REQ (SV *sv)
450{ 505{
451 MAGIC *mg; 506 MAGIC *mg;
452 507
515 FREETMPS; 570 FREETMPS;
516 LEAVE; 571 LEAVE;
517 } 572 }
518} 573}
519 574
575ecb_noinline
520static void 576static void
521req_submit (eio_req *req) 577req_submit (eio_req *req)
522{ 578{
523 eio_submit (req); 579 eio_submit (req);
524 580
785 } 841 }
786 else 842 else
787 PUSHs (sv_result); 843 PUSHs (sv_result);
788 break; 844 break;
789 845
846#if 0
847 case EIO_CLOSE:
848 PerlIOUnix_refcnt_dec (req->int1);
849 break;
850#endif
851
790 case EIO_DUP2: /* EIO_DUP2 actually means aio_close(), so fudge result value */ 852 case EIO_DUP2: /* EIO_DUP2 actually means aio_close(), so fudge result value */
791 if (req->result > 0) 853 if (req->result > 0)
792 SvIV_set (sv_result, 0); 854 SvIV_set (sv_result, 0);
793 /* FALLTHROUGH */ 855 /* FALLTHROUGH */
794 856
845 grp->sv2 = 0; 907 grp->sv2 = 0;
846 908
847 eio_grp_cancel (grp); 909 eio_grp_cancel (grp);
848} 910}
849 911
850static void ecb_cold 912ecb_cold
913static void
851create_respipe (void) 914create_respipe (void)
852{ 915{
853 if (s_epipe_renew (&respipe)) 916 if (s_epipe_renew (&respipe))
854 croak ("IO::AIO: unable to initialize result pipe"); 917 croak ("IO::AIO: unable to initialize result pipe");
855} 918}
889 952
890 poll_wait (); 953 poll_wait ();
891 } 954 }
892} 955}
893 956
894static void ecb_cold 957ecb_cold
958static void
895reinit (void) 959reinit (void)
896{ 960{
897 create_respipe (); 961 create_respipe ();
898 962
899 if (eio_init (want_poll, done_poll) < 0) 963 if (eio_init (want_poll, done_poll) < 0)
907{ 971{
908 SvGETMAGIC (cb_sv); 972 SvGETMAGIC (cb_sv);
909 return SvOK (cb_sv) ? s_get_cv_croak (cb_sv) : 0; 973 return SvOK (cb_sv) ? s_get_cv_croak (cb_sv) : 0;
910} 974}
911 975
976ecb_noinline
912static aio_req ecb_noinline 977static aio_req ecb_noinline
913dreq (SV *callback) 978dreq (SV *callback)
914{ 979{
915 SV *cb_cv; 980 SV *cb_cv;
916 aio_req req; 981 aio_req req;
938 SPAGAIN; \ 1003 SPAGAIN; \
939 \ 1004 \
940 if (GIMME_V != G_VOID) \ 1005 if (GIMME_V != G_VOID) \
941 XPUSHs (req_sv (req, aio_req_stash)); 1006 XPUSHs (req_sv (req, aio_req_stash));
942 1007
1008/* *wdsv, *pathsv, *wd and *ptr must be 0-initialized */
943ecb_inline void 1009ecb_inline
1010void
944req_set_path (aio_req req, SV *path, SV **wdsv, SV **pathsv, eio_wd *wd, void **ptr) 1011req_set_path (SV *path, SV **wdsv, SV **pathsv, eio_wd *wd, void **ptr)
945{ 1012{
946 if (expect_false (SvROK (path))) 1013 if (expect_false (SvROK (path)))
947 { 1014 {
948 SV *rv = SvRV (path); 1015 SV *rv = SvRV (path);
949 SV *wdob; 1016 SV *wdob;
974 1041
975 *pathsv = newSVsv (path); 1042 *pathsv = newSVsv (path);
976 *ptr = SvPVbyte_nolen (*pathsv); 1043 *ptr = SvPVbyte_nolen (*pathsv);
977} 1044}
978 1045
979static void ecb_noinline 1046ecb_noinline
1047static void
980req_set_path1 (aio_req req, SV *path) 1048req_set_path1 (aio_req req, SV *path)
981{ 1049{
982 req_set_path (req, path, &req->sv1, &req->sv3, &req->wd, &req->ptr1); 1050 req_set_path (path, &req->sv1, &req->sv3, &req->wd, &req->ptr1);
983} 1051}
984 1052
985static void ecb_noinline 1053ecb_noinline
1054static void
986req_set_fh_or_path (aio_req req, int type_path, int type_fh, SV *fh_or_path) 1055req_set_fh_or_path (aio_req req, int type_path, int type_fh, SV *fh_or_path)
987{ 1056{
988 SV *rv = SvROK (fh_or_path) ? SvRV (fh_or_path) : fh_or_path; 1057 SV *rv = SvROK (fh_or_path) ? SvRV (fh_or_path) : fh_or_path;
989 1058
990 switch (SvTYPE (rv)) 1059 switch (SvTYPE (rv))
1133 const_iv (MAP_STACK) 1202 const_iv (MAP_STACK)
1134 1203
1135 const_iv (MREMAP_MAYMOVE) 1204 const_iv (MREMAP_MAYMOVE)
1136 const_iv (MREMAP_FIXED) 1205 const_iv (MREMAP_FIXED)
1137 1206
1138 const_iv (F_DUPFD_CLOEXEC)
1139
1140 const_iv (MSG_CMSG_CLOEXEC) 1207 const_iv (MSG_CMSG_CLOEXEC)
1141 const_iv (SOCK_CLOEXEC) 1208 const_iv (SOCK_CLOEXEC)
1209
1210 const_iv (F_DUPFD_CLOEXEC)
1211
1212 const_iv (F_ADD_SEALS)
1213 const_iv (F_GET_SEALS)
1214 const_iv (F_SEAL_SEAL)
1215 const_iv (F_SEAL_SHRINK)
1216 const_iv (F_SEAL_GROW)
1217 const_iv (F_SEAL_WRITE)
1142 1218
1143 const_iv (F_OFD_GETLK) 1219 const_iv (F_OFD_GETLK)
1144 const_iv (F_OFD_SETLK) 1220 const_iv (F_OFD_SETLK)
1145 const_iv (F_OFD_GETLKW) 1221 const_iv (F_OFD_GETLKW)
1146 1222
1223 1299
1224 const_iv (EFD_CLOEXEC) 1300 const_iv (EFD_CLOEXEC)
1225 const_iv (EFD_NONBLOCK) 1301 const_iv (EFD_NONBLOCK)
1226 const_iv (EFD_SEMAPHORE) 1302 const_iv (EFD_SEMAPHORE)
1227 1303
1304 const_iv (MFD_CLOEXEC)
1305 const_iv (MFD_ALLOW_SEALING)
1306 const_iv (MFD_HUGETLB)
1307
1228 const_iv (CLOCK_REALTIME) 1308 const_iv (CLOCK_REALTIME)
1229 const_iv (CLOCK_MONOTONIC) 1309 const_iv (CLOCK_MONOTONIC)
1230 const_iv (CLOCK_BOOTTIME) 1310 const_iv (CLOCK_BOOTTIME)
1231 const_iv (CLOCK_REALTIME_ALARM) 1311 const_iv (CLOCK_REALTIME_ALARM)
1232 const_iv (CLOCK_BOOTTIME_ALARM) 1312 const_iv (CLOCK_BOOTTIME_ALARM)
1235 const_iv (TFD_CLOEXEC) 1315 const_iv (TFD_CLOEXEC)
1236 1316
1237 const_iv (TFD_TIMER_ABSTIME) 1317 const_iv (TFD_TIMER_ABSTIME)
1238 const_iv (TFD_TIMER_CANCEL_ON_SET) 1318 const_iv (TFD_TIMER_CANCEL_ON_SET)
1239 1319
1320 const_iv (STATX_TYPE)
1321 const_iv (STATX_MODE)
1322 const_iv (STATX_NLINK)
1323 const_iv (STATX_UID)
1324 const_iv (STATX_GID)
1325 const_iv (STATX_ATIME)
1326 const_iv (STATX_MTIME)
1327 const_iv (STATX_CTIME)
1328 const_iv (STATX_INO)
1329 const_iv (STATX_SIZE)
1330 const_iv (STATX_BLOCKS)
1331 const_iv (STATX_BASIC_STATS)
1332 const_iv (STATX_ALL)
1333 const_iv (STATX_BTIME)
1334 const_iv (STATX_ATTR_COMPRESSED)
1335 const_iv (STATX_ATTR_IMMUTABLE)
1336 const_iv (STATX_ATTR_APPEND)
1337 const_iv (STATX_ATTR_NODUMP)
1338 const_iv (STATX_ATTR_ENCRYPTED)
1339 const_iv (STATX_ATTR_AUTOMOUNT)
1340
1341 const_iv (AT_FDCWD)
1342 const_iv (AT_SYMLINK_NOFOLLOW)
1343 const_iv (AT_EACCESS)
1344 const_iv (AT_REMOVEDIR)
1345 const_iv (AT_SYMLINK_FOLLOW)
1346 const_iv (AT_NO_AUTOMOUNT)
1347 const_iv (AT_EMPTY_PATH)
1348 const_iv (AT_STATX_SYNC_TYPE)
1349 const_iv (AT_STATX_AS_STAT)
1350 const_iv (AT_STATX_FORCE_SYNC)
1351 const_iv (AT_STATX_DONT_SYNC)
1352 const_iv (AT_RECURSIVE)
1353
1354 const_iv (OPEN_TREE_CLONE)
1355
1356 const_iv (FSOPEN_CLOEXEC)
1357
1358 const_iv (FSPICK_CLOEXEC)
1359 const_iv (FSPICK_SYMLINK_NOFOLLOW)
1360 const_iv (FSPICK_NO_AUTOMOUNT)
1361 const_iv (FSPICK_EMPTY_PATH)
1362
1363 const_iv (MOVE_MOUNT_F_SYMLINKS)
1364 const_iv (MOVE_MOUNT_F_AUTOMOUNTS)
1365 const_iv (MOVE_MOUNT_F_EMPTY_PATH)
1366 const_iv (MOVE_MOUNT_T_SYMLINKS)
1367 const_iv (MOVE_MOUNT_T_AUTOMOUNTS)
1368 const_iv (MOVE_MOUNT_T_EMPTY_PATH)
1369
1370 /* waitid */
1371 const_iv (P_PID)
1372 const_iv (P_PIDFD)
1373 const_iv (P_PGID)
1374 const_iv (P_ALL)
1375
1240 /* these are libeio constants, and are independent of gendef0 */ 1376 /* these are libeio constants, and are independent of gendef0 */
1241 const_eio (SEEK_SET) 1377 const_eio (SEEK_SET)
1242 const_eio (SEEK_CUR) 1378 const_eio (SEEK_CUR)
1243 const_eio (SEEK_END) 1379 const_eio (SEEK_END)
1244 1380
1245 const_eio (MCL_FUTURE) 1381 const_eio (MCL_FUTURE)
1246 const_eio (MCL_CURRENT) 1382 const_eio (MCL_CURRENT)
1383 const_eio (MCL_ONFAULT)
1247 1384
1248 const_eio (MS_ASYNC) 1385 const_eio (MS_ASYNC)
1249 const_eio (MS_INVALIDATE) 1386 const_eio (MS_INVALIDATE)
1250 const_eio (MS_SYNC) 1387 const_eio (MS_SYNC)
1251 1388
1290 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--) 1427 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--)
1291 newCONSTSUB (aio_stash, (char *)civ[-1].name, newSViv (civ[-1].iv)); 1428 newCONSTSUB (aio_stash, (char *)civ[-1].name, newSViv (civ[-1].iv));
1292 1429
1293 newCONSTSUB (aio_stash, "PAGESIZE", newSViv (PAGESIZE)); 1430 newCONSTSUB (aio_stash, "PAGESIZE", newSViv (PAGESIZE));
1294 1431
1432 /* allocate dummy pipe fd for aio_close */
1433 {
1434 int pipefd [2];
1435
1436 if (
1437#ifdef _WIN32
1438 _pipe (pipefd, 1, _O_BINARY) < 0
1439#else
1440 pipe (pipefd) < 0
1441 || fcntl (pipefd [0], F_SETFD, FD_CLOEXEC) < 0
1442#endif
1443 || close (pipefd [1]) < 0
1444 )
1445 croak ("IO::AIO: unable to create dummy pipe for aio_close");
1446
1447 close_fd = pipefd [0];
1448 }
1449
1295 reinit (); 1450 reinit ();
1296} 1451}
1297 1452
1298void 1453void
1299reinit () 1454reinit ()
1421 1576
1422void 1577void
1423aio_close (SV *fh, SV *callback = &PL_sv_undef) 1578aio_close (SV *fh, SV *callback = &PL_sv_undef)
1424 PPCODE: 1579 PPCODE:
1425{ 1580{
1426 static int close_fd = -1; /* dummy fd to close fds via dup2 */
1427 int fd = s_fileno_croak (fh, 0); 1581 int fd = s_fileno_croak (fh, 0);
1428 dREQ; 1582 dREQ;
1583#if 0
1584 /* partially duplicate logic in s_fileno */
1585 SvGETMAGIC (fh);
1429 1586
1430 if (expect_false (close_fd < 0)) 1587 if (SvROK (fh))
1588 {
1589 fh = SvRV (fh);
1590 SvGETMAGIC (fh);
1591 }
1592
1593 if (SvTYPE (fh) == SVt_PVGV)
1431 { 1594 {
1432 int pipefd [2]; 1595 /* perl filehandle */
1596 PerlIOUnix_refcnt_inc (fd);
1597 do_close ((GV *)fh, 1);
1433 1598
1434 if ( 1599 req->type = EIO_CLOSE;
1435#ifdef _WIN32 1600 req->int1 = fd;
1436 _pipe (pipefd, 1, _O_BINARY) < 0 1601 /*req->sv2 = newSVsv (fh);*/ /* since we stole the fd, no need to keep the fh */
1437#else
1438 pipe (pipefd) < 0
1439 || fcntl (pipefd [0], F_SETFD, FD_CLOEXEC) < 0
1440#endif
1441 || close (pipefd [1]) < 0
1442 )
1443 abort (); /*D*/
1444
1445 close_fd = pipefd [0];
1446 } 1602 }
1447 1603 else
1604#endif
1605 {
1606 /* fd number */
1448 req->type = EIO_DUP2; 1607 req->type = EIO_DUP2;
1449 req->int1 = close_fd; 1608 req->int1 = close_fd;
1450 req->sv2 = newSVsv (fh); 1609 req->sv2 = newSVsv (fh);
1451 req->int2 = fd; 1610 req->int2 = fd;
1611 }
1452 1612
1453 REQ_SEND; 1613 REQ_SEND;
1454} 1614}
1455 1615
1456void 1616void
1630} 1790}
1631 1791
1632void 1792void
1633st_xtime () 1793st_xtime ()
1634 ALIAS: 1794 ALIAS:
1635 st_atime = 1 1795 st_atime = 0x01
1636 st_mtime = 2 1796 st_mtime = 0x02
1637 st_ctime = 4 1797 st_ctime = 0x04
1798 st_btime = 0x08
1638 st_xtime = 7 1799 st_xtime = 0x0f
1639 PPCODE: 1800 PPCODE:
1640 EXTEND (SP, 3); 1801 EXTEND (SP, 4);
1641 if (ix & 1) PUSHs (newSVnv (PL_statcache.st_atime + 1e-9 * ATIMENSEC)); 1802 if (ix & 0x01) PUSHs (newSVnv (PL_statcache.st_atime + 1e-9 * ATIMENSEC));
1642 if (ix & 2) PUSHs (newSVnv (PL_statcache.st_mtime + 1e-9 * MTIMENSEC)); 1803 if (ix & 0x02) PUSHs (newSVnv (PL_statcache.st_mtime + 1e-9 * MTIMENSEC));
1643 if (ix & 4) PUSHs (newSVnv (PL_statcache.st_ctime + 1e-9 * CTIMENSEC)); 1804 if (ix & 0x04) PUSHs (newSVnv (PL_statcache.st_ctime + 1e-9 * CTIMENSEC));
1805 if (ix & 0x08) PUSHs (newSVnv (BTIMESEC + 1e-9 * BTIMENSEC));
1644 1806
1645void 1807void
1646st_xtimensec () 1808st_xtimensec ()
1647 ALIAS: 1809 ALIAS:
1648 st_atimensec = 1 1810 st_atimensec = 0x01
1649 st_mtimensec = 2 1811 st_mtimensec = 0x02
1650 st_ctimensec = 4 1812 st_ctimensec = 0x04
1813 st_btimensec = 0x08
1651 st_xtimensec = 7 1814 st_xtimensec = 0x0f
1815 st_btimesec = 0x10
1816 st_gen = 0x20
1652 PPCODE: 1817 PPCODE:
1653 EXTEND (SP, 3); 1818 EXTEND (SP, 4);
1654 if (ix & 1) PUSHs (newSViv (ATIMENSEC)); 1819 if (ix & 0x01) PUSHs (newSViv (ATIMENSEC));
1655 if (ix & 2) PUSHs (newSViv (MTIMENSEC)); 1820 if (ix & 0x02) PUSHs (newSViv (MTIMENSEC));
1656 if (ix & 4) PUSHs (newSViv (CTIMENSEC)); 1821 if (ix & 0x04) PUSHs (newSViv (CTIMENSEC));
1822 if (ix & 0x08) PUSHs (newSViv (BTIMENSEC));
1823 if (ix & 0x10) PUSHs (newSVuv (BTIMESEC));
1824 if (ix & 0x20) PUSHs (newSVuv (ST_GEN));
1657 1825
1658UV 1826UV
1659major (UV dev) 1827major (UV dev)
1660 ALIAS: 1828 ALIAS:
1661 minor = 1 1829 minor = 1
1778 eio_wd wd2 = 0; 1946 eio_wd wd2 = 0;
1779 dREQ; 1947 dREQ;
1780 1948
1781 req->type = ix; 1949 req->type = ix;
1782 req_set_path1 (req, oldpath); 1950 req_set_path1 (req, oldpath);
1783 req_set_path (req, newpath, &req->sv2, &req->sv4, &wd2, &req->ptr2); 1951 req_set_path (newpath, &req->sv2, &req->sv4, &wd2, &req->ptr2);
1784 req->int3 = (long)wd2; 1952 req->int3 = (long)wd2;
1785 1953
1786 REQ_SEND; 1954 REQ_SEND;
1787} 1955}
1788 1956
1793 eio_wd wd2 = 0; 1961 eio_wd wd2 = 0;
1794 dREQ; 1962 dREQ;
1795 1963
1796 req->type = EIO_RENAME; 1964 req->type = EIO_RENAME;
1797 req_set_path1 (req, oldpath); 1965 req_set_path1 (req, oldpath);
1798 req_set_path (req, newpath, &req->sv2, &req->sv4, &wd2, &req->ptr2); 1966 req_set_path (newpath, &req->sv2, &req->sv4, &wd2, &req->ptr2);
1799 req->int2 = flags; 1967 req->int2 = flags;
1800 req->int3 = (long)wd2; 1968 req->int3 = (long)wd2;
1801 1969
1802 REQ_SEND; 1970 REQ_SEND;
1803} 1971}
2147} 2315}
2148 OUTPUT: 2316 OUTPUT:
2149 RETVAL 2317 RETVAL
2150 2318
2151int 2319int
2152madvise (SV *scalar, STRLEN offset = 0, SV *length = &PL_sv_undef, IV advice_or_prot) 2320madvise (SV *scalar, IV offset = 0, SV *length = &PL_sv_undef, IV advice_or_prot)
2153 ALIAS: 2321 ALIAS:
2154 mprotect = 1 2322 mprotect = 1
2155 CODE: 2323 CODE:
2156{ 2324{
2157 STRLEN svlen; 2325 STRLEN svlen;
2178} 2346}
2179 OUTPUT: 2347 OUTPUT:
2180 RETVAL 2348 RETVAL
2181 2349
2182int 2350int
2183munlock (SV *scalar, STRLEN offset = 0, SV *length = &PL_sv_undef) 2351munlock (SV *scalar, IV offset = 0, SV *length = &PL_sv_undef)
2184 CODE: 2352 CODE:
2185{ 2353{
2186 STRLEN svlen; 2354 STRLEN svlen;
2187 void *addr = SvPVbyte (scalar, svlen); 2355 void *addr = SvPVbyte (scalar, svlen);
2188 size_t len = SvUV (length); 2356 size_t len = SvUV (length);
2203#else 2371#else
2204 RETVAL = EIO_ENOSYS (); 2372 RETVAL = EIO_ENOSYS ();
2205#endif 2373#endif
2206} 2374}
2207 OUTPUT: 2375 OUTPUT:
2376 RETVAL
2377
2378int
2379mlockall (int flags)
2380 PROTOTYPE: $;
2381 CODE:
2382 RETVAL = eio_mlockall_sync (flags);
2383 OUTPUT:
2208 RETVAL 2384 RETVAL
2209 2385
2210int 2386int
2211munlockall () 2387munlockall ()
2212 CODE: 2388 CODE:
2217#endif 2393#endif
2218 OUTPUT: 2394 OUTPUT:
2219 RETVAL 2395 RETVAL
2220 2396
2221int 2397int
2398statx (SV8 *pathname, int flags, UV mask)
2399 CODE:
2400{
2401 /* undocumented, and might go away, and anyway, should use eio_statx */
2402 SV *wdsv = 0;
2403 SV *pathsv = 0;
2404 eio_wd wd = EIO_CWD;
2405 void *ptr;
2406 int res;
2407
2408 req_set_path (pathname, &wdsv, &pathsv, &wd, &ptr);
2409 RETVAL = eio__statx (!wd || wd->fd == EIO_CWD ? AT_FDCWD : wd->fd, ptr, flags, mask & STATX_ALL, &stx);
2410
2411 SvREFCNT_dec (pathsv);
2412 SvREFCNT_dec (wdsv);
2413}
2414 OUTPUT:
2415 RETVAL
2416
2417U32
2418stx_mode ()
2419 PROTOTYPE:
2420 CODE:
2421#if HAVE_STATX
2422 RETVAL = stx.stx_mode;
2423#else
2424 XSRETURN_UNDEF;
2425#endif
2426 OUTPUT:
2427 RETVAL
2428
2429#define STATX_OFFSET_mask statx_offsetof (stx_mask)
2430#define STATX_OFFSET_blksize statx_offsetof (stx_blksize)
2431#define STATX_OFFSET_nlink statx_offsetof (stx_nlink)
2432#define STATX_OFFSET_uid statx_offsetof (stx_uid)
2433#define STATX_OFFSET_gid statx_offsetof (stx_gid)
2434#define STATX_OFFSET_rdev_major statx_offsetof (stx_rdev_major)
2435#define STATX_OFFSET_rdev_minor statx_offsetof (stx_rdev_minor)
2436#define STATX_OFFSET_dev_major statx_offsetof (stx_dev_major)
2437#define STATX_OFFSET_dev_minor statx_offsetof (stx_dev_minor)
2438#define STATX_OFFSET_attributes statx_offsetof (stx_attributes)
2439#define STATX_OFFSET_ino statx_offsetof (stx_ino)
2440#define STATX_OFFSET_size statx_offsetof (stx_size)
2441#define STATX_OFFSET_blocks statx_offsetof (stx_blocks)
2442#define STATX_OFFSET_attributes_mask statx_offsetof (stx_attributes_mask)
2443#define STATX_OFFSET_atime statx_offsetof (stx_atime)
2444#define STATX_OFFSET_btime statx_offsetof (stx_btime)
2445#define STATX_OFFSET_ctime statx_offsetof (stx_ctime)
2446#define STATX_OFFSET_mtime statx_offsetof (stx_mtime)
2447
2448U32
2449stx_mask ()
2450 PROTOTYPE:
2451 ALIAS:
2452 stx_mask = STATX_OFFSET_mask
2453 stx_blksize = STATX_OFFSET_blksize
2454 stx_nlink = STATX_OFFSET_nlink
2455 stx_uid = STATX_OFFSET_uid
2456 stx_gid = STATX_OFFSET_gid
2457 stx_rdev_major = STATX_OFFSET_rdev_major
2458 stx_rdev_minor = STATX_OFFSET_rdev_minor
2459 stx_dev_major = STATX_OFFSET_dev_major
2460 stx_dev_minor = STATX_OFFSET_dev_minor
2461 CODE:
2462#if HAVE_STATX
2463 RETVAL = *(__u32 *)((char *)&stx + ix);
2464#else
2465 XSRETURN_UNDEF;
2466#endif
2467 OUTPUT:
2468 RETVAL
2469
2470VAL64
2471stx_attributes ()
2472 PROTOTYPE:
2473 ALIAS:
2474 stx_attributes = STATX_OFFSET_attributes
2475 stx_ino = STATX_OFFSET_ino
2476 stx_size = STATX_OFFSET_size
2477 stx_blocks = STATX_OFFSET_blocks
2478 stx_attributes_mask = STATX_OFFSET_attributes_mask
2479 CODE:
2480#if HAVE_STATX
2481 RETVAL = *(__u64 *)((char *)&stx + ix);
2482#else
2483 XSRETURN_UNDEF;
2484#endif
2485 OUTPUT:
2486 RETVAL
2487
2488NV
2489stx_atime ()
2490 PROTOTYPE:
2491 ALIAS:
2492 stx_atime = STATX_OFFSET_atime
2493 stx_btime = STATX_OFFSET_btime
2494 stx_ctime = STATX_OFFSET_ctime
2495 stx_mtime = STATX_OFFSET_mtime
2496 CODE:
2497#if HAVE_STATX
2498 struct statx_timestamp *ts = (struct statx_timestamp *)((char *)&stx + ix);
2499 RETVAL = ts->tv_sec + ts->tv_nsec * 1e-9;
2500#else
2501 XSRETURN_UNDEF;
2502#endif
2503 OUTPUT:
2504 RETVAL
2505
2506VAL64
2507stx_atimesec ()
2508 PROTOTYPE:
2509 ALIAS:
2510 stx_atimesec = STATX_OFFSET_atime
2511 stx_btimesec = STATX_OFFSET_btime
2512 stx_ctimesec = STATX_OFFSET_ctime
2513 stx_mtimesec = STATX_OFFSET_mtime
2514 CODE:
2515#if HAVE_STATX
2516 struct statx_timestamp *ts = (struct statx_timestamp *)((char *)&stx + ix);
2517 RETVAL = ts->tv_sec;
2518#else
2519 XSRETURN_UNDEF;
2520#endif
2521 OUTPUT:
2522 RETVAL
2523
2524U32
2525stx_atimensec ()
2526 PROTOTYPE:
2527 ALIAS:
2528 stx_atimensec = STATX_OFFSET_atime
2529 stx_btimensec = STATX_OFFSET_btime
2530 stx_ctimensec = STATX_OFFSET_ctime
2531 stx_mtimensec = STATX_OFFSET_mtime
2532 CODE:
2533#if HAVE_STATX
2534 struct statx_timestamp *ts = (struct statx_timestamp *)((char *)&stx + ix);
2535 RETVAL = ts->tv_nsec;
2536#else
2537 RETVAL = 0;
2538#endif
2539 OUTPUT:
2540 RETVAL
2541
2542void
2543accept4 (aio_rfd rfh, SV *sockaddr, int salen, int flags)
2544 PPCODE:
2545{
2546 SV *retval;
2547#if HAVE_ACCEPT4
2548 socklen_t salen_ = salen ? salen + 1 : 0;
2549
2550 if (salen)
2551 {
2552 sv_upgrade (sockaddr, SVt_PV);
2553 sv_grow (sockaddr, salen_);
2554 }
2555
2556 int res = accept4 (rfh, salen ? (struct sockaddr *)SvPVX (sockaddr) : 0, salen ? &salen_ : 0, flags);
2557
2558 retval = newmortalFH (res, O_RDWR);
2559
2560 if (res >= 0 && salen > 0)
2561 {
2562 if (salen_ > salen + 1)
2563 salen_ = salen + 1;
2564
2565 SvPOK_only (sockaddr);
2566 SvCUR_set (sockaddr, salen_);
2567 }
2568#else
2569 errno = ENOSYS;
2570 retval = &PL_sv_undef;
2571#endif
2572 XPUSHs (retval);
2573}
2574
2575ssize_t
2222splice (aio_rfd rfh, SV *off_in, aio_wfd wfh, SV *off_out, size_t length, unsigned int flags) 2576splice (aio_rfd rfh, SV *off_in, aio_wfd wfh, SV *off_out, size_t length, unsigned int flags)
2223 CODE: 2577 CODE:
2224{ 2578{
2225#if HAVE_LINUX_SPLICE 2579#if HAVE_LINUX_SPLICE
2226 loff_t off_in_, off_out_; 2580 loff_t off_in_, off_out_;
2234#endif 2588#endif
2235} 2589}
2236 OUTPUT: 2590 OUTPUT:
2237 RETVAL 2591 RETVAL
2238 2592
2239int 2593ssize_t
2240tee (aio_rfd rfh, aio_wfd wfh, size_t length, unsigned int flags) 2594tee (aio_rfd rfh, aio_wfd wfh, size_t length, unsigned int flags)
2241 CODE: 2595 CODE:
2242#if HAVE_LINUX_SPLICE 2596#if HAVE_LINUX_SPLICE
2243 RETVAL = tee (rfh, wfh, length, flags); 2597 RETVAL = tee (rfh, wfh, length, flags);
2244#else 2598#else
2287 PUSHs (newmortalFH (fd[1], O_WRONLY)); 2641 PUSHs (newmortalFH (fd[1], O_WRONLY));
2288 } 2642 }
2289} 2643}
2290 2644
2291void 2645void
2646pidfd_open (int pid, unsigned int flags = 0)
2647 PPCODE:
2648{
2649 /*GENDEF0_SYSCALL(pidfd_open,434)*/
2650 int fd = syscall (SYS_pidfd_open, pid, flags);
2651 XPUSHs (newmortalFH (fd, O_RDWR));
2652}
2653
2654int
2655pidfd_send_signal (SV *pidfh, int sig, SV *siginfo = &PL_sv_undef, unsigned int flags = 0)
2656 PPCODE:
2657{
2658 int res;
2659 siginfo_t si = { 0 };
2660
2661 if (SvOK (siginfo))
2662 {
2663 HV *hv;
2664 SV **svp;
2665
2666 if (!SvROK (siginfo) || SvTYPE (SvRV (siginfo)) != SVt_PVHV)
2667 croak ("siginfo argument must be a hashref code, pid, uid and value_int or value_ptr members, caught");
2668
2669 hv = (HV *)SvRV (siginfo);
2670
2671 if ((svp = hv_fetchs (hv, "code" , 0))) si.si_code = SvIV (*svp);
2672 if ((svp = hv_fetchs (hv, "pid" , 0))) si.si_pid = SvIV (*svp);
2673 if ((svp = hv_fetchs (hv, "uid" , 0))) si.si_uid = SvIV (*svp);
2674 if ((svp = hv_fetchs (hv, "value_int", 0))) si.si_value.sival_int = SvIV (*svp);
2675 if ((svp = hv_fetchs (hv, "value_ptr", 0))) si.si_value.sival_ptr = (void *)SvIV (*svp);
2676 }
2677
2678 /*GENDEF0_SYSCALL(pidfd_send_signal,424)*/
2679 res = syscall (SYS_pidfd_send_signal, s_fileno_croak (pidfh, 0), sig, SvOK (siginfo) ? &si : 0, flags);
2680
2681 XPUSHs (sv_2mortal (newSViv (res)));
2682}
2683
2684void
2685pidfd_getfd (SV *pidfh, int targetfd, unsigned int flags = 0)
2686 PPCODE:
2687{
2688 /*GENDEF0_SYSCALL(pidfd_getfd,438)*/
2689 int fd = syscall (SYS_pidfd_getfd, s_fileno_croak (pidfh, 0), targetfd, flags);
2690 XPUSHs (newmortalFH (fd, O_RDWR));
2691}
2692
2693void
2292eventfd (unsigned int initval = 0, int flags = 0) 2694eventfd (unsigned int initval = 0, int flags = 0)
2293 PPCODE: 2695 PPCODE:
2294{ 2696{
2295 int fd; 2697 int fd;
2296#if HAVE_EVENTFD 2698#if HAVE_EVENTFD
2359#else 2761#else
2360 errno = ENOSYS; 2762 errno = ENOSYS;
2361#endif 2763#endif
2362} 2764}
2363 2765
2766void
2767memfd_create (SV8 *pathname, int flags = 0)
2768 PPCODE:
2769{
2770 int fd;
2771#if HAVE_MEMFD_CREATE
2772 fd = memfd_create (SvPVbyte_nolen (pathname), flags);
2773#else
2774 fd = (errno = ENOSYS, -1);
2775#endif
2776
2777 XPUSHs (newmortalFH (fd, O_RDWR));
2778}
2779
2364UV 2780UV
2365get_fdlimit () 2781get_fdlimit ()
2366 CODE: 2782 CODE:
2367#if HAVE_RLIMITS 2783#if HAVE_RLIMITS
2368 struct rlimit rl; 2784 struct rlimit rl;
2401 if (0 == setrlimit (RLIMIT_NOFILE, &rl)) 2817 if (0 == setrlimit (RLIMIT_NOFILE, &rl))
2402 XSRETURN_YES; 2818 XSRETURN_YES;
2403 2819
2404 if (errno == EPERM) 2820 if (errno == EPERM)
2405 { 2821 {
2406 /* setlimit failed with EPERM - maybe we can't raise the hardlimit, or maybe */ 2822 /* setrlimit failed with EPERM - maybe we can't raise the hardlimit, or maybe */
2407 /* our limit overflows a system-wide limit */ 2823 /* our limit overflows a system-wide limit */
2408 /* try an adaptive algorithm, but do not lower the hardlimit */ 2824 /* try an adaptive algorithm, but do not lower the hardlimit */
2409 rl.rlim_max = 0; 2825 rl.rlim_max = 0;
2410 for (bit = 0x40000000U; bit; bit >>= 1) 2826 for (bit = 0x40000000U; bit; bit >>= 1)
2411 { 2827 {
2412 rl.rlim_max |= bit; 2828 rl.rlim_max |= bit;
2413 rl.rlim_cur = rl.rlim_max; 2829 rl.rlim_cur = rl.rlim_max;
2414 2830
2415 /* nevr decrease the hard limit */ 2831 /* never decrease the hard limit */
2416 if (rl.rlim_max < orig_rlim_max) 2832 if (rl.rlim_max < orig_rlim_max)
2417 break; 2833 break;
2418 2834
2419 if (0 != setrlimit (RLIMIT_NOFILE, &rl)) 2835 if (0 != setrlimit (RLIMIT_NOFILE, &rl))
2420 rl.rlim_max &= ~bit; /* too high, remove bit again */ 2836 rl.rlim_max &= ~bit; /* too high, remove bit again */

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