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1// -*- mode:C++; tab-width:8; c-basic-offset:2; indent-tabs-mode:t -*-
2// vim: ts=8 sw=2 smarttab
3/*
4 * Ceph - scalable distributed file system
5 *
6 * Copyright (C) 2004-2006 Sage Weil <sage@newdream.net>
7 *
8 * This is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License version 2.1, as published by the Free Software
11 * Foundation. See file COPYING.
12 *
13 */
14
15
16#ifndef CEPH_CLIENT_H
17#define CEPH_CLIENT_H
18
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19#include "common/CommandTable.h"
20#include "common/Finisher.h"
11fdf7f2 21#include "common/Timer.h"
9f95a23c 22#include "common/ceph_mutex.h"
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23#include "common/cmdparse.h"
24#include "common/compiler_extensions.h"
9f95a23c 25#include "include/common_fwd.h"
e306af50 26#include "include/cephfs/ceph_ll_client.h"
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27#include "include/filepath.h"
28#include "include/interval_set.h"
29#include "include/lru.h"
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30#include "include/types.h"
31#include "include/unordered_map.h"
32#include "include/unordered_set.h"
f67539c2 33#include "include/cephfs/metrics/Types.h"
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34#include "mds/mdstypes.h"
35#include "msg/Dispatcher.h"
11fdf7f2 36#include "msg/MessageRef.h"
7c673cae 37#include "msg/Messenger.h"
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38#include "osdc/ObjectCacher.h"
39
f67539c2 40#include "RWRef.h"
7c673cae 41#include "InodeRef.h"
11fdf7f2 42#include "MetaSession.h"
7c673cae 43#include "UserPerm.h"
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44
45#include <fstream>
46#include <map>
47#include <memory>
48#include <set>
49#include <string>
f67539c2 50#include <thread>
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51
52using std::set;
53using std::map;
54using std::fstream;
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55
56class FSMap;
57class FSMapUser;
58class MonClient;
59
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60
61struct DirStat;
62struct LeaseStat;
63struct InodeStat;
64
65class Filer;
66class Objecter;
67class WritebackHandler;
68
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69class MDSMap;
70class Message;
f67539c2 71class destructive_lock_ref_t;
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72
73enum {
74 l_c_first = 20000,
75 l_c_reply,
76 l_c_lat,
77 l_c_wrlat,
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78 l_c_read,
79 l_c_fsync,
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80 l_c_last,
81};
82
83
84class MDSCommandOp : public CommandOp
85{
86 public:
87 mds_gid_t mds_gid;
88
11fdf7f2 89 explicit MDSCommandOp(ceph_tid_t t) : CommandOp(t) {}
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90};
91
92/* error code for ceph_fuse */
28e407b8
AA
93#define CEPH_FUSE_NO_MDS_UP -((1<<16)+0) /* no mds up deteced in ceph_fuse */
94#define CEPH_FUSE_LAST -((1<<16)+1) /* (unused) */
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95
96// ============================================
97// types for my local metadata cache
98/* basic structure:
99
100 - Dentries live in an LRU loop. they get expired based on last access.
101 see include/lru.h. items can be bumped to "mid" or "top" of list, etc.
102 - Inode has ref count for each Fh, Dir, or Dentry that points to it.
103 - when Inode ref goes to 0, it's expired.
104 - when Dir is empty, it's removed (and it's Inode ref--)
105
106*/
107
108/* getdir result */
109struct DirEntry {
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110 explicit DirEntry(const std::string &s) : d_name(s), stmask(0) {}
111 DirEntry(const std::string &n, struct stat& s, int stm)
112 : d_name(n), st(s), stmask(stm) {}
11fdf7f2 113
20effc67 114 std::string d_name;
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115 struct stat st;
116 int stmask;
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117};
118
119struct Cap;
120class Dir;
121class Dentry;
122struct SnapRealm;
123struct Fh;
124struct CapSnap;
125
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126struct MetaRequest;
127class ceph_lock_state_t;
128
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129// ========================================================
130// client interface
131
132struct dir_result_t {
133 static const int SHIFT = 28;
134 static const int64_t MASK = (1 << SHIFT) - 1;
135 static const int64_t HASH = 0xFFULL << (SHIFT + 24); // impossible frag bits
136 static const loff_t END = 1ULL << (SHIFT + 32);
137
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138 struct dentry {
139 int64_t offset;
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140 std::string name;
141 std::string alternate_name;
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142 InodeRef inode;
143 explicit dentry(int64_t o) : offset(o) {}
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144 dentry(int64_t o, std::string n, std::string an, InodeRef in) :
145 offset(o), name(std::move(n)), alternate_name(std::move(an)), inode(std::move(in)) {}
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146 };
147 struct dentry_off_lt {
148 bool operator()(const dentry& d, int64_t off) const {
149 return dir_result_t::fpos_cmp(d.offset, off) < 0;
150 }
151 };
152
153
154 explicit dir_result_t(Inode *in, const UserPerm& perms);
155
156
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157 static uint64_t make_fpos(unsigned h, unsigned l, bool hash) {
158 uint64_t v = ((uint64_t)h<< SHIFT) | (uint64_t)l;
159 if (hash)
160 v |= HASH;
161 else
11fdf7f2 162 ceph_assert((v & HASH) != HASH);
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163 return v;
164 }
165 static unsigned fpos_high(uint64_t p) {
166 unsigned v = (p & (END-1)) >> SHIFT;
167 if ((p & HASH) == HASH)
168 return ceph_frag_value(v);
169 return v;
170 }
171 static unsigned fpos_low(uint64_t p) {
172 return p & MASK;
173 }
174 static int fpos_cmp(uint64_t l, uint64_t r) {
175 int c = ceph_frag_compare(fpos_high(l), fpos_high(r));
176 if (c)
177 return c;
178 if (fpos_low(l) == fpos_low(r))
179 return 0;
180 return fpos_low(l) < fpos_low(r) ? -1 : 1;
181 }
182
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183 unsigned offset_high() { return fpos_high(offset); }
184 unsigned offset_low() { return fpos_low(offset); }
185
186 void set_end() { offset |= END; }
187 bool at_end() { return (offset & END); }
188
189 void set_hash_order() { offset |= HASH; }
190 bool hash_order() { return (offset & HASH) == HASH; }
191
192 bool is_cached() {
193 if (buffer.empty())
194 return false;
195 if (hash_order()) {
196 return buffer_frag.contains(offset_high());
197 } else {
198 return buffer_frag == frag_t(offset_high());
199 }
200 }
201
202 void reset() {
203 last_name.clear();
204 next_offset = 2;
205 offset = 0;
206 ordered_count = 0;
207 cache_index = 0;
208 buffer.clear();
209 }
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210
211 InodeRef inode;
212 int64_t offset; // hash order:
213 // (0xff << 52) | ((24 bits hash) << 28) |
214 // (the nth entry has hash collision);
215 // frag+name order;
216 // ((frag value) << 28) | (the nth entry in frag);
217
218 unsigned next_offset; // offset of next chunk (last_name's + 1)
20effc67 219 std::string last_name; // last entry in previous chunk
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220
221 uint64_t release_count;
222 uint64_t ordered_count;
223 unsigned cache_index;
224 int start_shared_gen; // dir shared_gen at start of readdir
225 UserPerm perms;
226
227 frag_t buffer_frag;
228
20effc67 229 std::vector<dentry> buffer;
f91f0fd5 230 struct dirent de;
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231};
232
233class Client : public Dispatcher, public md_config_obs_t {
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234public:
235 friend class C_Block_Sync; // Calls block map and protected helpers
236 friend class C_Client_CacheInvalidate; // calls ino_invalidate_cb
237 friend class C_Client_DentryInvalidate; // calls dentry_invalidate_cb
238 friend class C_Client_FlushComplete; // calls put_inode()
239 friend class C_Client_Remount;
240 friend class C_Client_RequestInterrupt;
241 friend class C_Deleg_Timeout; // Asserts on client_lock, called when a delegation is unreturned
e306af50 242 friend class C_Client_CacheRelease; // Asserts on client_lock
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243 friend class SyntheticClient;
244 friend void intrusive_ptr_release(Inode *in);
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245 template <typename T> friend struct RWRefState;
246 template <typename T> friend class RWRef;
11fdf7f2 247
7c673cae 248 using Dispatcher::cct;
f67539c2 249 using clock = ceph::coarse_mono_clock;
7c673cae 250
11fdf7f2 251 typedef int (*add_dirent_cb_t)(void *p, struct dirent *de, struct ceph_statx *stx, off_t off, Inode *in);
7c673cae 252
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253 struct walk_dentry_result {
254 InodeRef in;
255 std::string alternate_name;
256 };
257
7c673cae 258 class CommandHook : public AdminSocketHook {
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259 public:
260 explicit CommandHook(Client *client);
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261 int call(std::string_view command, const cmdmap_t& cmdmap,
262 Formatter *f,
263 std::ostream& errss,
264 bufferlist& out) override;
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265 private:
266 Client *m_client;
7c673cae 267 };
7c673cae 268
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269 // snapshot info returned via get_snap_info(). nothing to do
270 // with SnapInfo on the MDS.
271 struct SnapInfo {
272 snapid_t id;
273 std::map<std::string, std::string> metadata;
274 };
275
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276 Client(Messenger *m, MonClient *mc, Objecter *objecter_);
277 Client(const Client&) = delete;
278 Client(const Client&&) = delete;
279 virtual ~Client() override;
7c673cae 280
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281 static UserPerm pick_my_perms(CephContext *c) {
282 uid_t uid = c->_conf->client_mount_uid >= 0 ? c->_conf->client_mount_uid : -1;
283 gid_t gid = c->_conf->client_mount_gid >= 0 ? c->_conf->client_mount_gid : -1;
284 return UserPerm(uid, gid);
285 }
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286 UserPerm pick_my_perms() {
287 uid_t uid = user_id >= 0 ? user_id : -1;
288 gid_t gid = group_id >= 0 ? group_id : -1;
289 return UserPerm(uid, gid);
290 }
291
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292 int mount(const std::string &mount_root, const UserPerm& perms,
293 bool require_mds=false, const std::string &fs_name="");
294 void unmount();
f67539c2
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295 bool is_unmounting() const {
296 return mount_state.check_current_state(CLIENT_UNMOUNTING);
297 }
298 bool is_mounted() const {
299 return mount_state.check_current_state(CLIENT_MOUNTED);
300 }
301 bool is_mounting() const {
302 return mount_state.check_current_state(CLIENT_MOUNTING);
303 }
304 bool is_initialized() const {
305 return initialize_state.check_current_state(CLIENT_INITIALIZED);
306 }
11fdf7f2 307 void abort_conn();
7c673cae 308
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309 void set_uuid(const std::string& uuid);
310 void set_session_timeout(unsigned timeout);
311 int start_reclaim(const std::string& uuid, unsigned flags,
312 const std::string& fs_name);
313 void finish_reclaim();
7c673cae 314
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315 fs_cluster_id_t get_fs_cid() {
316 return fscid;
317 }
7c673cae 318
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319 int mds_command(
320 const std::string &mds_spec,
321 const std::vector<std::string>& cmd,
322 const bufferlist& inbl,
323 bufferlist *poutbl, std::string *prs, Context *onfinish);
7c673cae 324
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325 // these should (more or less) mirror the actual system calls.
326 int statfs(const char *path, struct statvfs *stbuf, const UserPerm& perms);
7c673cae 327
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328 // crap
329 int chdir(const char *s, std::string &new_cwd, const UserPerm& perms);
330 void _getcwd(std::string& cwd, const UserPerm& perms);
331 void getcwd(std::string& cwd, const UserPerm& perms);
7c673cae 332
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333 // namespace ops
334 int opendir(const char *name, dir_result_t **dirpp, const UserPerm& perms);
b3b6e05e 335 int fdopendir(int dirfd, dir_result_t **dirpp, const UserPerm& perms);
11fdf7f2 336 int closedir(dir_result_t *dirp);
7c673cae 337
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338 /**
339 * Fill a directory listing from dirp, invoking cb for each entry
340 * with the given pointer, the dirent, the struct stat, the stmask,
341 * and the offset.
342 *
343 * Returns 0 if it reached the end of the directory.
344 * If @a cb returns a negative error code, stop and return that.
345 */
346 int readdir_r_cb(dir_result_t *dirp, add_dirent_cb_t cb, void *p,
347 unsigned want=0, unsigned flags=AT_NO_ATTR_SYNC,
348 bool getref=false);
7c673cae 349
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350 struct dirent * readdir(dir_result_t *d);
351 int readdir_r(dir_result_t *dirp, struct dirent *de);
352 int readdirplus_r(dir_result_t *dirp, struct dirent *de, struct ceph_statx *stx, unsigned want, unsigned flags, Inode **out);
7c673cae 353
20effc67 354 int getdir(const char *relpath, std::list<std::string>& names,
11fdf7f2 355 const UserPerm& perms); // get the whole dir at once.
7c673cae 356
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357 /**
358 * Returns the length of the buffer that got filled in, or -errno.
f67539c2 359 * If it returns -CEPHFS_ERANGE you just need to increase the size of the
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TL
360 * buffer and try again.
361 */
362 int _getdents(dir_result_t *dirp, char *buf, int buflen, bool ful); // get a bunch of dentries at once
363 int getdents(dir_result_t *dirp, char *buf, int buflen) {
364 return _getdents(dirp, buf, buflen, true);
365 }
366 int getdnames(dir_result_t *dirp, char *buf, int buflen) {
367 return _getdents(dirp, buf, buflen, false);
368 }
7c673cae 369
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370 void rewinddir(dir_result_t *dirp);
371 loff_t telldir(dir_result_t *dirp);
372 void seekdir(dir_result_t *dirp, loff_t offset);
7c673cae 373
f67539c2
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374 int may_delete(const char *relpath, const UserPerm& perms);
375 int link(const char *existing, const char *newname, const UserPerm& perm, std::string alternate_name="");
11fdf7f2 376 int unlink(const char *path, const UserPerm& perm);
b3b6e05e 377 int unlinkat(int dirfd, const char *relpath, int flags, const UserPerm& perm);
f67539c2 378 int rename(const char *from, const char *to, const UserPerm& perm, std::string alternate_name="");
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TL
379
380 // dirs
f67539c2 381 int mkdir(const char *path, mode_t mode, const UserPerm& perm, std::string alternate_name="");
b3b6e05e
TL
382 int mkdirat(int dirfd, const char *relpath, mode_t mode, const UserPerm& perm,
383 std::string alternate_name="");
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384 int mkdirs(const char *path, mode_t mode, const UserPerm& perms);
385 int rmdir(const char *path, const UserPerm& perms);
386
387 // symlinks
388 int readlink(const char *path, char *buf, loff_t size, const UserPerm& perms);
b3b6e05e 389 int readlinkat(int dirfd, const char *relpath, char *buf, loff_t size, const UserPerm& perms);
11fdf7f2 390
f67539c2 391 int symlink(const char *existing, const char *newname, const UserPerm& perms, std::string alternate_name="");
b3b6e05e
TL
392 int symlinkat(const char *target, int dirfd, const char *relpath, const UserPerm& perms,
393 std::string alternate_name="");
f67539c2
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394
395 // path traversal for high-level interface
396 int walk(std::string_view path, struct walk_dentry_result* result, const UserPerm& perms, bool followsym=true);
11fdf7f2
TL
397
398 // inode stuff
399 unsigned statx_to_mask(unsigned int flags, unsigned int want);
400 int stat(const char *path, struct stat *stbuf, const UserPerm& perms,
401 frag_info_t *dirstat=0, int mask=CEPH_STAT_CAP_INODE_ALL);
402 int statx(const char *path, struct ceph_statx *stx,
403 const UserPerm& perms,
404 unsigned int want, unsigned int flags);
405 int lstat(const char *path, struct stat *stbuf, const UserPerm& perms,
406 frag_info_t *dirstat=0, int mask=CEPH_STAT_CAP_INODE_ALL);
407
408 int setattr(const char *relpath, struct stat *attr, int mask,
409 const UserPerm& perms);
410 int setattrx(const char *relpath, struct ceph_statx *stx, int mask,
411 const UserPerm& perms, int flags=0);
412 int fsetattr(int fd, struct stat *attr, int mask, const UserPerm& perms);
413 int fsetattrx(int fd, struct ceph_statx *stx, int mask, const UserPerm& perms);
414 int chmod(const char *path, mode_t mode, const UserPerm& perms);
415 int fchmod(int fd, mode_t mode, const UserPerm& perms);
b3b6e05e 416 int chmodat(int dirfd, const char *relpath, mode_t mode, int flags, const UserPerm& perms);
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417 int lchmod(const char *path, mode_t mode, const UserPerm& perms);
418 int chown(const char *path, uid_t new_uid, gid_t new_gid,
419 const UserPerm& perms);
420 int fchown(int fd, uid_t new_uid, gid_t new_gid, const UserPerm& perms);
421 int lchown(const char *path, uid_t new_uid, gid_t new_gid,
422 const UserPerm& perms);
b3b6e05e
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423 int chownat(int dirfd, const char *relpath, uid_t new_uid, gid_t new_gid,
424 int flags, const UserPerm& perms);
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425 int utime(const char *path, struct utimbuf *buf, const UserPerm& perms);
426 int lutime(const char *path, struct utimbuf *buf, const UserPerm& perms);
427 int futime(int fd, struct utimbuf *buf, const UserPerm& perms);
428 int utimes(const char *relpath, struct timeval times[2], const UserPerm& perms);
429 int lutimes(const char *relpath, struct timeval times[2], const UserPerm& perms);
430 int futimes(int fd, struct timeval times[2], const UserPerm& perms);
431 int futimens(int fd, struct timespec times[2], const UserPerm& perms);
b3b6e05e
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432 int utimensat(int dirfd, const char *relpath, struct timespec times[2], int flags,
433 const UserPerm& perms);
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434 int flock(int fd, int operation, uint64_t owner);
435 int truncate(const char *path, loff_t size, const UserPerm& perms);
436
437 // file ops
438 int mknod(const char *path, mode_t mode, const UserPerm& perms, dev_t rdev=0);
b3b6e05e 439
20effc67
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440 int create_and_open(int dirfd, const char *relpath, int flags, const UserPerm& perms,
441 mode_t mode, int stripe_unit, int stripe_count, int object_size,
442 const char *data_pool, std::string alternate_name);
f67539c2
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443 int open(const char *path, int flags, const UserPerm& perms, mode_t mode=0, std::string alternate_name="") {
444 return open(path, flags, perms, mode, 0, 0, 0, NULL, alternate_name);
445 }
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446 int open(const char *path, int flags, const UserPerm& perms,
447 mode_t mode, int stripe_unit, int stripe_count, int object_size,
f67539c2 448 const char *data_pool, std::string alternate_name="");
b3b6e05e
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449 int openat(int dirfd, const char *relpath, int flags, const UserPerm& perms,
450 mode_t mode, int stripe_unit, int stripe_count,
451 int object_size, const char *data_pool, std::string alternate_name);
452 int openat(int dirfd, const char *path, int flags, const UserPerm& perms, mode_t mode=0,
453 std::string alternate_name="") {
454 return openat(dirfd, path, flags, perms, mode, 0, 0, 0, NULL, alternate_name);
455 }
456
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457 int lookup_hash(inodeno_t ino, inodeno_t dirino, const char *name,
458 const UserPerm& perms);
459 int lookup_ino(inodeno_t ino, const UserPerm& perms, Inode **inode=NULL);
11fdf7f2 460 int lookup_name(Inode *in, Inode *parent, const UserPerm& perms);
b3b6e05e 461 int _close(int fd);
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462 int close(int fd);
463 loff_t lseek(int fd, loff_t offset, int whence);
464 int read(int fd, char *buf, loff_t size, loff_t offset=-1);
465 int preadv(int fd, const struct iovec *iov, int iovcnt, loff_t offset=-1);
466 int write(int fd, const char *buf, loff_t size, loff_t offset=-1);
467 int pwritev(int fd, const struct iovec *iov, int iovcnt, loff_t offset=-1);
468 int fake_write_size(int fd, loff_t size);
469 int ftruncate(int fd, loff_t size, const UserPerm& perms);
470 int fsync(int fd, bool syncdataonly);
471 int fstat(int fd, struct stat *stbuf, const UserPerm& perms,
472 int mask=CEPH_STAT_CAP_INODE_ALL);
473 int fstatx(int fd, struct ceph_statx *stx, const UserPerm& perms,
474 unsigned int want, unsigned int flags);
b3b6e05e
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475 int statxat(int dirfd, const char *relpath,
476 struct ceph_statx *stx, const UserPerm& perms,
477 unsigned int want, unsigned int flags);
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478 int fallocate(int fd, int mode, loff_t offset, loff_t length);
479
480 // full path xattr ops
481 int getxattr(const char *path, const char *name, void *value, size_t size,
482 const UserPerm& perms);
483 int lgetxattr(const char *path, const char *name, void *value, size_t size,
484 const UserPerm& perms);
485 int fgetxattr(int fd, const char *name, void *value, size_t size,
486 const UserPerm& perms);
487 int listxattr(const char *path, char *list, size_t size, const UserPerm& perms);
488 int llistxattr(const char *path, char *list, size_t size, const UserPerm& perms);
489 int flistxattr(int fd, char *list, size_t size, const UserPerm& perms);
490 int removexattr(const char *path, const char *name, const UserPerm& perms);
491 int lremovexattr(const char *path, const char *name, const UserPerm& perms);
492 int fremovexattr(int fd, const char *name, const UserPerm& perms);
493 int setxattr(const char *path, const char *name, const void *value,
494 size_t size, int flags, const UserPerm& perms);
495 int lsetxattr(const char *path, const char *name, const void *value,
496 size_t size, int flags, const UserPerm& perms);
497 int fsetxattr(int fd, const char *name, const void *value, size_t size,
498 int flags, const UserPerm& perms);
499
500 int sync_fs();
501 int64_t drop_caches();
502
f67539c2
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503 int get_snap_info(const char *path, const UserPerm &perms, SnapInfo *snap_info);
504
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505 // hpc lazyio
506 int lazyio(int fd, int enable);
92f5a8d4 507 int lazyio_propagate(int fd, loff_t offset, size_t count);
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508 int lazyio_synchronize(int fd, loff_t offset, size_t count);
509
510 // expose file layout
511 int describe_layout(const char *path, file_layout_t* layout,
512 const UserPerm& perms);
513 int fdescribe_layout(int fd, file_layout_t* layout);
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514 int get_file_stripe_address(int fd, loff_t offset, std::vector<entity_addr_t>& address);
515 int get_file_extent_osds(int fd, loff_t off, loff_t *len, std::vector<int>& osds);
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516 int get_osd_addr(int osd, entity_addr_t& addr);
517
518 // expose mdsmap
519 int64_t get_default_pool_id();
520
521 // expose osdmap
522 int get_local_osd();
523 int get_pool_replication(int64_t pool);
524 int64_t get_pool_id(const char *pool_name);
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525 std::string get_pool_name(int64_t pool);
526 int get_osd_crush_location(int id, std::vector<std::pair<std::string, std::string> >& path);
11fdf7f2 527
20effc67 528 int enumerate_layout(int fd, std::vector<ObjectExtent>& result,
11fdf7f2
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529 loff_t length, loff_t offset);
530
f67539c2
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531 int mksnap(const char *path, const char *name, const UserPerm& perm,
532 mode_t mode=0, const std::map<std::string, std::string> &metadata={});
533 int rmsnap(const char *path, const char *name, const UserPerm& perm, bool check_perms=false);
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534
535 // Inode permission checking
536 int inode_permission(Inode *in, const UserPerm& perms, unsigned want);
537
538 // expose caps
539 int get_caps_issued(int fd);
540 int get_caps_issued(const char *path, const UserPerm& perms);
541
542 snapid_t ll_get_snapid(Inode *in);
543 vinodeno_t ll_get_vino(Inode *in) {
544 std::lock_guard lock(client_lock);
545 return _get_vino(in);
546 }
547 // get inode from faked ino
548 Inode *ll_get_inode(ino_t ino);
549 Inode *ll_get_inode(vinodeno_t vino);
550 int ll_lookup(Inode *parent, const char *name, struct stat *attr,
551 Inode **out, const UserPerm& perms);
552 int ll_lookup_inode(struct inodeno_t ino, const UserPerm& perms, Inode **inode);
f67539c2 553 int ll_lookup_vino(vinodeno_t vino, const UserPerm& perms, Inode **inode);
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554 int ll_lookupx(Inode *parent, const char *name, Inode **out,
555 struct ceph_statx *stx, unsigned want, unsigned flags,
556 const UserPerm& perms);
494da23a 557 bool ll_forget(Inode *in, uint64_t count);
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558 bool ll_put(Inode *in);
559 int ll_get_snap_ref(snapid_t snap);
560
561 int ll_getattr(Inode *in, struct stat *st, const UserPerm& perms);
562 int ll_getattrx(Inode *in, struct ceph_statx *stx, unsigned int want,
563 unsigned int flags, const UserPerm& perms);
564 int ll_setattrx(Inode *in, struct ceph_statx *stx, int mask,
565 const UserPerm& perms);
566 int ll_setattr(Inode *in, struct stat *st, int mask,
567 const UserPerm& perms);
568 int ll_getxattr(Inode *in, const char *name, void *value, size_t size,
569 const UserPerm& perms);
570 int ll_setxattr(Inode *in, const char *name, const void *value, size_t size,
571 int flags, const UserPerm& perms);
572 int ll_removexattr(Inode *in, const char *name, const UserPerm& perms);
573 int ll_listxattr(Inode *in, char *list, size_t size, const UserPerm& perms);
574 int ll_opendir(Inode *in, int flags, dir_result_t **dirpp,
575 const UserPerm& perms);
576 int ll_releasedir(dir_result_t* dirp);
577 int ll_fsyncdir(dir_result_t* dirp);
578 int ll_readlink(Inode *in, char *buf, size_t bufsize, const UserPerm& perms);
579 int ll_mknod(Inode *in, const char *name, mode_t mode, dev_t rdev,
580 struct stat *attr, Inode **out, const UserPerm& perms);
581 int ll_mknodx(Inode *parent, const char *name, mode_t mode, dev_t rdev,
582 Inode **out, struct ceph_statx *stx, unsigned want,
583 unsigned flags, const UserPerm& perms);
584 int ll_mkdir(Inode *in, const char *name, mode_t mode, struct stat *attr,
585 Inode **out, const UserPerm& perm);
586 int ll_mkdirx(Inode *parent, const char *name, mode_t mode, Inode **out,
587 struct ceph_statx *stx, unsigned want, unsigned flags,
588 const UserPerm& perms);
589 int ll_symlink(Inode *in, const char *name, const char *value,
590 struct stat *attr, Inode **out, const UserPerm& perms);
591 int ll_symlinkx(Inode *parent, const char *name, const char *value,
592 Inode **out, struct ceph_statx *stx, unsigned want,
593 unsigned flags, const UserPerm& perms);
594 int ll_unlink(Inode *in, const char *name, const UserPerm& perm);
595 int ll_rmdir(Inode *in, const char *name, const UserPerm& perms);
596 int ll_rename(Inode *parent, const char *name, Inode *newparent,
597 const char *newname, const UserPerm& perm);
598 int ll_link(Inode *in, Inode *newparent, const char *newname,
599 const UserPerm& perm);
600 int ll_open(Inode *in, int flags, Fh **fh, const UserPerm& perms);
601 int _ll_create(Inode *parent, const char *name, mode_t mode,
602 int flags, InodeRef *in, int caps, Fh **fhp,
603 const UserPerm& perms);
604 int ll_create(Inode *parent, const char *name, mode_t mode, int flags,
605 struct stat *attr, Inode **out, Fh **fhp,
606 const UserPerm& perms);
607 int ll_createx(Inode *parent, const char *name, mode_t mode,
608 int oflags, Inode **outp, Fh **fhp,
609 struct ceph_statx *stx, unsigned want, unsigned lflags,
610 const UserPerm& perms);
611 int ll_read_block(Inode *in, uint64_t blockid, char *buf, uint64_t offset,
612 uint64_t length, file_layout_t* layout);
613
614 int ll_write_block(Inode *in, uint64_t blockid,
615 char* buf, uint64_t offset,
616 uint64_t length, file_layout_t* layout,
617 uint64_t snapseq, uint32_t sync);
618 int ll_commit_blocks(Inode *in, uint64_t offset, uint64_t length);
619
620 int ll_statfs(Inode *in, struct statvfs *stbuf, const UserPerm& perms);
621 int ll_walk(const char* name, Inode **i, struct ceph_statx *stx,
622 unsigned int want, unsigned int flags, const UserPerm& perms);
623 uint32_t ll_stripe_unit(Inode *in);
624 int ll_file_layout(Inode *in, file_layout_t *layout);
625 uint64_t ll_snap_seq(Inode *in);
626
627 int ll_read(Fh *fh, loff_t off, loff_t len, bufferlist *bl);
628 int ll_write(Fh *fh, loff_t off, loff_t len, const char *data);
629 int64_t ll_readv(struct Fh *fh, const struct iovec *iov, int iovcnt, int64_t off);
630 int64_t ll_writev(struct Fh *fh, const struct iovec *iov, int iovcnt, int64_t off);
631 loff_t ll_lseek(Fh *fh, loff_t offset, int whence);
632 int ll_flush(Fh *fh);
633 int ll_fsync(Fh *fh, bool syncdataonly);
634 int ll_sync_inode(Inode *in, bool syncdataonly);
635 int ll_fallocate(Fh *fh, int mode, int64_t offset, int64_t length);
636 int ll_release(Fh *fh);
637 int ll_getlk(Fh *fh, struct flock *fl, uint64_t owner);
638 int ll_setlk(Fh *fh, struct flock *fl, uint64_t owner, int sleep);
639 int ll_flock(Fh *fh, int cmd, uint64_t owner);
640 int ll_lazyio(Fh *fh, int enable);
641 int ll_file_layout(Fh *fh, file_layout_t *layout);
642 void ll_interrupt(void *d);
643 bool ll_handle_umask() {
644 return acl_type != NO_ACL;
645 }
646
647 int ll_get_stripe_osd(struct Inode *in, uint64_t blockno,
648 file_layout_t* layout);
649 uint64_t ll_get_internal_offset(struct Inode *in, uint64_t blockno);
650
651 int ll_num_osds(void);
652 int ll_osdaddr(int osd, uint32_t *addr);
653 int ll_osdaddr(int osd, char* buf, size_t size);
654
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655 void _ll_register_callbacks(struct ceph_client_callback_args *args);
656 void ll_register_callbacks(struct ceph_client_callback_args *args); // deprecated
657 int ll_register_callbacks2(struct ceph_client_callback_args *args);
1d09f67e 658 std::pair<int, bool> test_dentry_handling(bool can_invalidate);
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659
660 const char** get_tracked_conf_keys() const override;
661 void handle_conf_change(const ConfigProxy& conf,
662 const std::set <std::string> &changed) override;
663 uint32_t get_deleg_timeout() { return deleg_timeout; }
664 int set_deleg_timeout(uint32_t timeout);
665 int ll_delegation(Fh *fh, unsigned cmd, ceph_deleg_cb_t cb, void *priv);
666
667 entity_name_t get_myname() { return messenger->get_myname(); }
9f95a23c
TL
668 void wait_on_list(std::list<ceph::condition_variable*>& ls);
669 void signal_cond_list(std::list<ceph::condition_variable*>& ls);
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TL
670
671 void set_filer_flags(int flags);
672 void clear_filer_flags(int flags);
673
674 void tear_down_cache();
675
676 void update_metadata(std::string const &k, std::string const &v);
677
678 client_t get_nodeid() { return whoami; }
679
680 inodeno_t get_root_ino();
681 Inode *get_root();
682
683 virtual int init();
684 virtual void shutdown();
685
686 // messaging
f67539c2 687 void cancel_commands(const MDSMap& newmap);
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TL
688 void handle_mds_map(const MConstRef<MMDSMap>& m);
689 void handle_fs_map(const MConstRef<MFSMap>& m);
690 void handle_fs_map_user(const MConstRef<MFSMapUser>& m);
691 void handle_osd_map(const MConstRef<MOSDMap>& m);
692
693 void handle_lease(const MConstRef<MClientLease>& m);
694
695 // inline data
696 int uninline_data(Inode *in, Context *onfinish);
697
698 // file caps
699 void check_cap_issue(Inode *in, unsigned issued);
700 void add_update_cap(Inode *in, MetaSession *session, uint64_t cap_id,
701 unsigned issued, unsigned wanted, unsigned seq, unsigned mseq,
702 inodeno_t realm, int flags, const UserPerm& perms);
703 void remove_cap(Cap *cap, bool queue_release);
704 void remove_all_caps(Inode *in);
f6b5b4d7 705 void remove_session_caps(MetaSession *session, int err);
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TL
706 int mark_caps_flushing(Inode *in, ceph_tid_t *ptid);
707 void adjust_session_flushing_caps(Inode *in, MetaSession *old_s, MetaSession *new_s);
708 void flush_caps_sync();
eafe8130 709 void kick_flushing_caps(Inode *in, MetaSession *session);
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710 void kick_flushing_caps(MetaSession *session);
711 void early_kick_flushing_caps(MetaSession *session);
f6b5b4d7 712 int get_caps(Fh *fh, int need, int want, int *have, loff_t endoff);
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713 int get_caps_used(Inode *in);
714
715 void maybe_update_snaprealm(SnapRealm *realm, snapid_t snap_created, snapid_t snap_highwater,
20effc67 716 std::vector<snapid_t>& snaps);
11fdf7f2
TL
717
718 void handle_quota(const MConstRef<MClientQuota>& m);
719 void handle_snap(const MConstRef<MClientSnap>& m);
720 void handle_caps(const MConstRef<MClientCaps>& m);
721 void handle_cap_import(MetaSession *session, Inode *in, const MConstRef<MClientCaps>& m);
722 void handle_cap_export(MetaSession *session, Inode *in, const MConstRef<MClientCaps>& m);
723 void handle_cap_trunc(MetaSession *session, Inode *in, const MConstRef<MClientCaps>& m);
724 void handle_cap_flush_ack(MetaSession *session, Inode *in, Cap *cap, const MConstRef<MClientCaps>& m);
725 void handle_cap_flushsnap_ack(MetaSession *session, Inode *in, const MConstRef<MClientCaps>& m);
726 void handle_cap_grant(MetaSession *session, Inode *in, Cap *cap, const MConstRef<MClientCaps>& m);
727 void cap_delay_requeue(Inode *in);
eafe8130
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728
729 void send_cap(Inode *in, MetaSession *session, Cap *cap, int flags,
11fdf7f2
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730 int used, int want, int retain, int flush,
731 ceph_tid_t flush_tid);
732
eafe8130
TL
733 void send_flush_snap(Inode *in, MetaSession *session, snapid_t follows, CapSnap& capsnap);
734
735 void flush_snaps(Inode *in);
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TL
736 void get_cap_ref(Inode *in, int cap);
737 void put_cap_ref(Inode *in, int cap);
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738 void wait_sync_caps(Inode *in, ceph_tid_t want);
739 void wait_sync_caps(ceph_tid_t want);
740 void queue_cap_snap(Inode *in, SnapContext &old_snapc);
741 void finish_cap_snap(Inode *in, CapSnap &capsnap, int used);
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TL
742
743 void _schedule_invalidate_dentry_callback(Dentry *dn, bool del);
20effc67 744 void _async_dentry_invalidate(vinodeno_t dirino, vinodeno_t ino, std::string& name);
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TL
745 void _try_to_trim_inode(Inode *in, bool sched_inval);
746
747 void _schedule_invalidate_callback(Inode *in, int64_t off, int64_t len);
748 void _invalidate_inode_cache(Inode *in);
749 void _invalidate_inode_cache(Inode *in, int64_t off, int64_t len);
750 void _async_invalidate(vinodeno_t ino, int64_t off, int64_t len);
e306af50
TL
751
752 void _schedule_ino_release_callback(Inode *in);
753 void _async_inode_release(vinodeno_t ino);
754
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TL
755 bool _release(Inode *in);
756
757 /**
758 * Initiate a flush of the data associated with the given inode.
759 * If you specify a Context, you are responsible for holding an inode
760 * reference for the duration of the flush. If not, _flush() will
761 * take the reference for you.
762 * @param in The Inode whose data you wish to flush.
763 * @param c The Context you wish us to complete once the data is
764 * flushed. If already flushed, this will be called in-line.
765 *
766 * @returns true if the data was already flushed, false otherwise.
767 */
768 bool _flush(Inode *in, Context *c);
769 void _flush_range(Inode *in, int64_t off, uint64_t size);
770 void _flushed(Inode *in);
771 void flush_set_callback(ObjectCacher::ObjectSet *oset);
772
773 void close_release(Inode *in);
774 void close_safe(Inode *in);
775
776 void lock_fh_pos(Fh *f);
777 void unlock_fh_pos(Fh *f);
778
779 // metadata cache
522d829b 780 void update_dir_dist(Inode *in, DirStat *st, mds_rank_t from);
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781
782 void clear_dir_complete_and_ordered(Inode *diri, bool complete);
783 void insert_readdir_results(MetaRequest *request, MetaSession *session, Inode *diri);
784 Inode* insert_trace(MetaRequest *request, MetaSession *session);
785 void update_inode_file_size(Inode *in, int issued, uint64_t size,
786 uint64_t truncate_seq, uint64_t truncate_size);
787 void update_inode_file_time(Inode *in, int issued, uint64_t time_warp_seq,
788 utime_t ctime, utime_t mtime, utime_t atime);
789
790 Inode *add_update_inode(InodeStat *st, utime_t ttl, MetaSession *session,
791 const UserPerm& request_perms);
20effc67 792 Dentry *insert_dentry_inode(Dir *dir, const std::string& dname, LeaseStat *dlease,
11fdf7f2
TL
793 Inode *in, utime_t from, MetaSession *session,
794 Dentry *old_dentry = NULL);
795 void update_dentry_lease(Dentry *dn, LeaseStat *dlease, utime_t from, MetaSession *session);
796
797 bool use_faked_inos() { return _use_faked_inos; }
798 vinodeno_t map_faked_ino(ino_t ino);
799
800 //notify the mds to flush the mdlog
522d829b 801 void flush_mdlog_sync(Inode *in);
11fdf7f2
TL
802 void flush_mdlog_sync();
803 void flush_mdlog(MetaSession *session);
804
805 void renew_caps();
806 void renew_caps(MetaSession *session);
807 void flush_cap_releases();
f67539c2 808 void renew_and_flush_cap_releases();
11fdf7f2 809 void tick();
f67539c2
TL
810 void start_tick_thread();
811
a4b75251
TL
812 void update_read_io_size(size_t size) {
813 total_read_ops++;
814 total_read_size += size;
815 }
816
817 void update_write_io_size(size_t size) {
818 total_write_ops++;
819 total_write_size += size;
820 }
821
f67539c2
TL
822 void inc_dentry_nr() {
823 ++dentry_nr;
824 }
825 void dec_dentry_nr() {
826 --dentry_nr;
827 }
828 void dlease_hit() {
829 ++dlease_hits;
830 }
831 void dlease_miss() {
832 ++dlease_misses;
833 }
834 std::tuple<uint64_t, uint64_t, uint64_t> get_dlease_hit_rates() {
835 return std::make_tuple(dlease_hits, dlease_misses, dentry_nr);
836 }
837
838 void cap_hit() {
839 ++cap_hits;
840 }
841 void cap_miss() {
842 ++cap_misses;
843 }
844 std::pair<uint64_t, uint64_t> get_cap_hit_rates() {
845 return std::make_pair(cap_hits, cap_misses);
846 }
847
848 void inc_opened_files() {
849 ++opened_files;
850 }
851 void dec_opened_files() {
852 --opened_files;
853 }
854 std::pair<uint64_t, uint64_t> get_opened_files_rates() {
855 return std::make_pair(opened_files, inode_map.size());
856 }
857
858 void inc_pinned_icaps() {
859 ++pinned_icaps;
860 }
861 void dec_pinned_icaps(uint64_t nr=1) {
862 pinned_icaps -= nr;
863 }
864 std::pair<uint64_t, uint64_t> get_pinned_icaps_rates() {
865 return std::make_pair(pinned_icaps, inode_map.size());
866 }
867
868 void inc_opened_inodes() {
869 ++opened_inodes;
870 }
871 void dec_opened_inodes() {
872 --opened_inodes;
873 }
874 std::pair<uint64_t, uint64_t> get_opened_inodes_rates() {
875 return std::make_pair(opened_inodes, inode_map.size());
876 }
11fdf7f2 877
f67539c2
TL
878 /* timer_lock for 'timer' */
879 ceph::mutex timer_lock = ceph::make_mutex("Client::timer_lock");
11fdf7f2
TL
880 SafeTimer timer;
881
f67539c2
TL
882 /* tick thread */
883 std::thread upkeeper;
884 ceph::condition_variable upkeep_cond;
885 bool tick_thread_stopped = false;
886
11fdf7f2
TL
887 std::unique_ptr<PerfCounters> logger;
888 std::unique_ptr<MDSMap> mdsmap;
889
92f5a8d4 890 bool fuse_default_permissions;
33c7a0ef 891 bool _collect_and_send_global_metrics;
11fdf7f2
TL
892
893protected:
894 /* Flags for check_caps() */
895 static const unsigned CHECK_CAPS_NODELAY = 0x1;
896 static const unsigned CHECK_CAPS_SYNCHRONOUS = 0x2;
897
11fdf7f2
TL
898 void check_caps(Inode *in, unsigned flags);
899
900 void set_cap_epoch_barrier(epoch_t e);
901
902 void handle_command_reply(const MConstRef<MCommandReply>& m);
903 int fetch_fsmap(bool user);
904 int resolve_mds(
905 const std::string &mds_spec,
906 std::vector<mds_gid_t> *targets);
907
908 void get_session_metadata(std::map<std::string, std::string> *meta) const;
909 bool have_open_session(mds_rank_t mds);
910 void got_mds_push(MetaSession *s);
20effc67
TL
911 MetaSessionRef _get_mds_session(mds_rank_t mds, Connection *con); ///< return session for mds *and* con; null otherwise
912 MetaSessionRef _get_or_open_mds_session(mds_rank_t mds);
913 MetaSessionRef _open_mds_session(mds_rank_t mds);
11fdf7f2 914 void _close_mds_session(MetaSession *s);
f6b5b4d7 915 void _closed_mds_session(MetaSession *s, int err=0, bool rejected=false);
11fdf7f2
TL
916 bool _any_stale_sessions() const;
917 void _kick_stale_sessions();
918 void handle_client_session(const MConstRef<MClientSession>& m);
919 void send_reconnect(MetaSession *s);
920 void resend_unsafe_requests(MetaSession *s);
921 void wait_unsafe_requests();
922
11fdf7f2 923 void dump_mds_requests(Formatter *f);
adb31ebb 924 void dump_mds_sessions(Formatter *f, bool cap_dump=false);
11fdf7f2
TL
925
926 int make_request(MetaRequest *req, const UserPerm& perms,
927 InodeRef *ptarget = 0, bool *pcreated = 0,
928 mds_rank_t use_mds=-1, bufferlist *pdirbl=0);
929 void put_request(MetaRequest *request);
930 void unregister_request(MetaRequest *request);
931
9f95a23c
TL
932 int verify_reply_trace(int r, MetaSession *session, MetaRequest *request,
933 const MConstRef<MClientReply>& reply,
11fdf7f2
TL
934 InodeRef *ptarget, bool *pcreated,
935 const UserPerm& perms);
936 void encode_cap_releases(MetaRequest *request, mds_rank_t mds);
937 int encode_inode_release(Inode *in, MetaRequest *req,
7c673cae
FG
938 mds_rank_t mds, int drop,
939 int unless,int force=0);
940 void encode_dentry_release(Dentry *dn, MetaRequest *req,
941 mds_rank_t mds, int drop, int unless);
942 mds_rank_t choose_target_mds(MetaRequest *req, Inode** phash_diri=NULL);
943 void connect_mds_targets(mds_rank_t mds);
944 void send_request(MetaRequest *request, MetaSession *session,
945 bool drop_cap_releases=false);
11fdf7f2 946 MRef<MClientRequest> build_client_request(MetaRequest *request);
7c673cae
FG
947 void kick_requests(MetaSession *session);
948 void kick_requests_closed(MetaSession *session);
11fdf7f2
TL
949 void handle_client_request_forward(const MConstRef<MClientRequestForward>& reply);
950 void handle_client_reply(const MConstRef<MClientReply>& reply);
7c673cae
FG
951 bool is_dir_operation(MetaRequest *request);
952
b3b6e05e
TL
953 int path_walk(const filepath& fp, struct walk_dentry_result* result, const UserPerm& perms, bool followsym=true, int mask=0,
954 InodeRef dirinode=nullptr);
f67539c2 955 int path_walk(const filepath& fp, InodeRef *end, const UserPerm& perms,
b3b6e05e 956 bool followsym=true, int mask=0, InodeRef dirinode=nullptr);
f67539c2 957
7c673cae 958 // fake inode number for 32-bits ino_t
7c673cae 959 void _assign_faked_ino(Inode *in);
11fdf7f2 960 void _assign_faked_root(Inode *in);
7c673cae 961 void _release_faked_ino(Inode *in);
7c673cae
FG
962 void _reset_faked_inos();
963 vinodeno_t _map_faked_ino(ino_t ino);
964
7c673cae 965 // Optional extra metadata about me to send to the MDS
7c673cae
FG
966 void populate_metadata(const std::string &mount_root);
967
7c673cae
FG
968 SnapRealm *get_snap_realm(inodeno_t r);
969 SnapRealm *get_snap_realm_maybe(inodeno_t r);
970 void put_snap_realm(SnapRealm *realm);
971 bool adjust_realm_parent(SnapRealm *realm, inodeno_t parent);
11fdf7f2 972 void update_snap_trace(const bufferlist& bl, SnapRealm **realm_ret, bool must_flush=true);
7c673cae
FG
973 void invalidate_snaprealm_and_children(SnapRealm *realm);
974
975 Inode *open_snapdir(Inode *diri);
976
7c673cae
FG
977 int get_fd() {
978 int fd = free_fd_set.range_start();
979 free_fd_set.erase(fd, 1);
980 return fd;
981 }
982 void put_fd(int fd) {
983 free_fd_set.insert(fd, 1);
984 }
985
986 /*
987 * Resolve file descriptor, or return NULL.
988 */
989 Fh *get_filehandle(int fd) {
f67539c2
TL
990 auto it = fd_map.find(fd);
991 if (it == fd_map.end())
7c673cae 992 return NULL;
f67539c2 993 return it->second;
7c673cae 994 }
b3b6e05e 995 int get_fd_inode(int fd, InodeRef *in);
7c673cae 996
7c673cae 997 // helpers
a8e16298 998 void wake_up_session_caps(MetaSession *s, bool reconnect);
7c673cae 999
20effc67
TL
1000 void wait_on_context_list(std::list<Context*>& ls);
1001 void signal_context_list(std::list<Context*>& ls);
7c673cae
FG
1002
1003 // -- metadata cache stuff
1004
1005 // decrease inode ref. delete if dangling.
f67539c2
TL
1006 void _put_inode(Inode *in, int n);
1007 void delay_put_inodes(bool wakeup=false);
7c673cae
FG
1008 void put_inode(Inode *in, int n=1);
1009 void close_dir(Dir *dir);
1010
11fdf7f2 1011 int subscribe_mdsmap(const std::string &fs_name="");
b32b8144 1012
11fdf7f2
TL
1013 void _abort_mds_sessions(int err);
1014
1015 // same as unmount() but for when the client_lock is already held
1016 void _unmount(bool abort);
7c673cae
FG
1017
1018 //int get_cache_size() { return lru.lru_get_size(); }
7c673cae
FG
1019
1020 /**
1021 * Don't call this with in==NULL, use get_or_create for that
1022 * leave dn set to default NULL unless you're trying to add
1023 * a new inode to a pre-created Dentry
1024 */
20effc67 1025 Dentry* link(Dir *dir, const std::string& name, Inode *in, Dentry *dn);
7c673cae
FG
1026 void unlink(Dentry *dn, bool keepdir, bool keepdentry);
1027
7c673cae
FG
1028 int fill_stat(Inode *in, struct stat *st, frag_info_t *dirstat=0, nest_info_t *rstat=0);
1029 int fill_stat(InodeRef& in, struct stat *st, frag_info_t *dirstat=0, nest_info_t *rstat=0) {
1030 return fill_stat(in.get(), st, dirstat, rstat);
1031 }
1032
1033 void fill_statx(Inode *in, unsigned int mask, struct ceph_statx *stx);
1034 void fill_statx(InodeRef& in, unsigned int mask, struct ceph_statx *stx) {
1035 return fill_statx(in.get(), mask, stx);
1036 }
1037
1038 void touch_dn(Dentry *dn);
1039
1040 // trim cache.
1041 void trim_cache(bool trim_kernel_dcache=false);
1042 void trim_cache_for_reconnect(MetaSession *s);
1043 void trim_dentry(Dentry *dn);
28e407b8 1044 void trim_caps(MetaSession *s, uint64_t max);
7c673cae 1045 void _invalidate_kernel_dcache();
91327a77 1046 void _trim_negative_child_dentries(InodeRef& in);
11fdf7f2 1047
7c673cae
FG
1048 void dump_inode(Formatter *f, Inode *in, set<Inode*>& did, bool disconnected);
1049 void dump_cache(Formatter *f); // debug
1050
1051 // force read-only
1052 void force_session_readonly(MetaSession *s);
1053
1054 void dump_status(Formatter *f); // debug
7c673cae 1055
11fdf7f2 1056 bool ms_dispatch2(const MessageRef& m) override;
7c673cae
FG
1057
1058 void ms_handle_connect(Connection *con) override;
1059 bool ms_handle_reset(Connection *con) override;
1060 void ms_handle_remote_reset(Connection *con) override;
1061 bool ms_handle_refused(Connection *con) override;
7c673cae
FG
1062
1063 int authenticate();
1064
1065 Inode* get_quota_root(Inode *in, const UserPerm& perms);
1066 bool check_quota_condition(Inode *in, const UserPerm& perms,
1067 std::function<bool (const Inode &)> test);
1068 bool is_quota_files_exceeded(Inode *in, const UserPerm& perms);
1069 bool is_quota_bytes_exceeded(Inode *in, int64_t new_bytes,
11fdf7f2
TL
1070 const UserPerm& perms);
1071 bool is_quota_bytes_approaching(Inode *in, const UserPerm& perms);
7c673cae 1072
7c673cae
FG
1073 int check_pool_perm(Inode *in, int need);
1074
11fdf7f2
TL
1075 void handle_client_reclaim_reply(const MConstRef<MClientReclaimReply>& reply);
1076
7c673cae
FG
1077 /**
1078 * Call this when an OSDMap is seen with a full flag (global or per pool)
1079 * set.
1080 *
1081 * @param pool the pool ID affected, or -1 if all.
1082 */
1083 void _handle_full_flag(int64_t pool);
1084
1085 void _close_sessions();
1086
e306af50
TL
1087 void _pre_init();
1088
7c673cae
FG
1089 /**
1090 * The basic housekeeping parts of init (perf counters, admin socket)
1091 * that is independent of how objecters/monclient/messengers are
1092 * being set up.
1093 */
1094 void _finish_init();
1095
11fdf7f2
TL
1096 // global client lock
1097 // - protects Client and buffer cache both!
9f95a23c 1098 ceph::mutex client_lock = ceph::make_mutex("Client::client_lock");
7c673cae 1099
11fdf7f2 1100 std::map<snapid_t, int> ll_snap_ref;
7c673cae 1101
b3b6e05e 1102 InodeRef root = nullptr;
11fdf7f2
TL
1103 map<Inode*, InodeRef> root_parents;
1104 Inode* root_ancestor = nullptr;
1105 LRU lru; // lru list of Dentry's in our local metadata cache.
7c673cae 1106
11fdf7f2 1107 InodeRef cwd;
7c673cae 1108
11fdf7f2
TL
1109 std::unique_ptr<Filer> filer;
1110 std::unique_ptr<ObjectCacher> objectcacher;
1111 std::unique_ptr<WritebackHandler> writeback_handler;
7c673cae 1112
11fdf7f2
TL
1113 Messenger *messenger;
1114 MonClient *monclient;
1115 Objecter *objecter;
7c673cae 1116
11fdf7f2 1117 client_t whoami;
7c673cae 1118
f67539c2
TL
1119 /* The state migration mechanism */
1120 enum _state {
1121 /* For the initialize_state */
1122 CLIENT_NEW, // The initial state for the initialize_state or after Client::shutdown()
1123 CLIENT_INITIALIZING, // At the beginning of the Client::init()
1124 CLIENT_INITIALIZED, // At the end of CLient::init()
1125
1126 /* For the mount_state */
1127 CLIENT_UNMOUNTED, // The initial state for the mount_state or after unmounted
1128 CLIENT_MOUNTING, // At the beginning of Client::mount()
1129 CLIENT_MOUNTED, // At the end of Client::mount()
1130 CLIENT_UNMOUNTING, // At the beginning of the Client::_unmout()
1131 };
1132
1133 typedef enum _state state_t;
1134 using RWRef_t = RWRef<state_t>;
1135
1136 struct mount_state_t : public RWRefState<state_t> {
1137 public:
1138 bool is_valid_state(state_t state) const override {
1139 switch (state) {
1140 case Client::CLIENT_MOUNTING:
1141 case Client::CLIENT_MOUNTED:
1142 case Client::CLIENT_UNMOUNTING:
1143 case Client::CLIENT_UNMOUNTED:
1144 return true;
1145 default:
1146 return false;
1147 }
1148 }
1149
1150 int check_reader_state(state_t require) const override {
1151 if (require == Client::CLIENT_MOUNTING &&
1152 (state == Client::CLIENT_MOUNTING || state == Client::CLIENT_MOUNTED))
1153 return true;
1154 else
1155 return false;
1156 }
1157
1158 /* The state migration check */
1159 int check_writer_state(state_t require) const override {
1160 if (require == Client::CLIENT_MOUNTING &&
1161 state == Client::CLIENT_UNMOUNTED)
1162 return true;
1163 else if (require == Client::CLIENT_MOUNTED &&
1164 state == Client::CLIENT_MOUNTING)
1165 return true;
1166 else if (require == Client::CLIENT_UNMOUNTING &&
1167 state == Client::CLIENT_MOUNTED)
1168 return true;
1169 else if (require == Client::CLIENT_UNMOUNTED &&
1170 state == Client::CLIENT_UNMOUNTING)
1171 return true;
1172 else
1173 return false;
1174 }
1175
1176 mount_state_t(state_t state, const char *lockname, uint64_t reader_cnt=0)
1177 : RWRefState (state, lockname, reader_cnt) {}
1178 ~mount_state_t() {}
1179 };
1180
1181 struct initialize_state_t : public RWRefState<state_t> {
1182 public:
1183 bool is_valid_state(state_t state) const override {
1184 switch (state) {
1185 case Client::CLIENT_NEW:
1186 case Client::CLIENT_INITIALIZING:
1187 case Client::CLIENT_INITIALIZED:
1188 return true;
1189 default:
1190 return false;
1191 }
1192 }
1193
1194 int check_reader_state(state_t require) const override {
1195 if (require == Client::CLIENT_INITIALIZED &&
1196 state >= Client::CLIENT_INITIALIZED)
1197 return true;
1198 else
1199 return false;
1200 }
1201
1202 /* The state migration check */
1203 int check_writer_state(state_t require) const override {
1204 if (require == Client::CLIENT_INITIALIZING &&
1205 (state == Client::CLIENT_NEW))
1206 return true;
1207 else if (require == Client::CLIENT_INITIALIZED &&
1208 (state == Client::CLIENT_INITIALIZING))
1209 return true;
1210 else if (require == Client::CLIENT_NEW &&
1211 (state == Client::CLIENT_INITIALIZED))
1212 return true;
1213 else
1214 return false;
1215 }
1216
1217 initialize_state_t(state_t state, const char *lockname, uint64_t reader_cnt=0)
1218 : RWRefState (state, lockname, reader_cnt) {}
1219 ~initialize_state_t() {}
1220 };
1221
1222 struct mount_state_t mount_state;
1223 struct initialize_state_t initialize_state;
7c673cae 1224
11fdf7f2
TL
1225private:
1226 struct C_Readahead : public Context {
1227 C_Readahead(Client *c, Fh *f);
1228 ~C_Readahead() override;
1229 void finish(int r) override;
7c673cae 1230
11fdf7f2
TL
1231 Client *client;
1232 Fh *f;
1233 };
7c673cae 1234
11fdf7f2
TL
1235 /*
1236 * These define virtual xattrs exposing the recursive directory
1237 * statistics and layout metadata.
1238 */
1239 struct VXattr {
20effc67
TL
1240 const std::string name;
1241 size_t (Client::*getxattr_cb)(Inode *in, char *val, size_t size);
1242 bool readonly;
1243 bool (Client::*exists_cb)(Inode *in);
1244 unsigned int flags;
11fdf7f2 1245 };
7c673cae 1246
11fdf7f2
TL
1247 enum {
1248 NO_ACL = 0,
1249 POSIX_ACL,
1250 };
7c673cae 1251
11fdf7f2
TL
1252 enum {
1253 MAY_EXEC = 1,
1254 MAY_WRITE = 2,
1255 MAY_READ = 4,
1256 };
7c673cae 1257
f67539c2 1258 std::unique_ptr<CephContext, std::function<void(CephContext*)>> cct_deleter;
7c673cae 1259
11fdf7f2
TL
1260 /* Flags for VXattr */
1261 static const unsigned VXATTR_RSTAT = 0x1;
adb31ebb 1262 static const unsigned VXATTR_DIRSTAT = 0x2;
7c673cae 1263
11fdf7f2
TL
1264 static const VXattr _dir_vxattrs[];
1265 static const VXattr _file_vxattrs[];
adb31ebb 1266 static const VXattr _common_vxattrs[];
1adf2230 1267
7c673cae 1268
b3b6e05e 1269 bool is_reserved_vino(vinodeno_t &vino);
7c673cae
FG
1270
1271 void fill_dirent(struct dirent *de, const char *name, int type, uint64_t ino, loff_t next_off);
1272
7c673cae
FG
1273 int _opendir(Inode *in, dir_result_t **dirpp, const UserPerm& perms);
1274 void _readdir_drop_dirp_buffer(dir_result_t *dirp);
1275 bool _readdir_have_frag(dir_result_t *dirp);
1276 void _readdir_next_frag(dir_result_t *dirp);
1277 void _readdir_rechoose_frag(dir_result_t *dirp);
1278 int _readdir_get_frag(dir_result_t *dirp);
1279 int _readdir_cache_cb(dir_result_t *dirp, add_dirent_cb_t cb, void *p, int caps, bool getref);
1280 void _closedir(dir_result_t *dirp);
1281
1282 // other helpers
1283 void _fragmap_remove_non_leaves(Inode *in);
1284 void _fragmap_remove_stopped_mds(Inode *in, mds_rank_t mds);
1285
1286 void _ll_get(Inode *in);
494da23a 1287 int _ll_put(Inode *in, uint64_t num);
7c673cae
FG
1288 void _ll_drop_pins();
1289
1290 Fh *_create_fh(Inode *in, int flags, int cmode, const UserPerm& perms);
1291 int _release_fh(Fh *fh);
1292 void _put_fh(Fh *fh);
1293
1d09f67e 1294 std::pair<int, bool> _do_remount(bool retry_on_error);
7c673cae
FG
1295
1296 int _read_sync(Fh *f, uint64_t off, uint64_t len, bufferlist *bl, bool *checkeof);
1297 int _read_async(Fh *f, uint64_t off, uint64_t len, bufferlist *bl);
1298
f67539c2
TL
1299 bool _dentry_valid(const Dentry *dn);
1300
7c673cae
FG
1301 // internal interface
1302 // call these with client_lock held!
20effc67 1303 int _do_lookup(Inode *dir, const std::string& name, int mask, InodeRef *target,
7c673cae
FG
1304 const UserPerm& perms);
1305
20effc67 1306 int _lookup(Inode *dir, const std::string& dname, int mask, InodeRef *target,
f67539c2 1307 const UserPerm& perm, std::string* alternate_name=nullptr);
7c673cae 1308
f67539c2 1309 int _link(Inode *in, Inode *dir, const char *name, const UserPerm& perm, std::string alternate_name,
7c673cae
FG
1310 InodeRef *inp = 0);
1311 int _unlink(Inode *dir, const char *name, const UserPerm& perm);
f67539c2 1312 int _rename(Inode *olddir, const char *oname, Inode *ndir, const char *nname, const UserPerm& perm, std::string alternate_name);
7c673cae 1313 int _mkdir(Inode *dir, const char *name, mode_t mode, const UserPerm& perm,
f67539c2
TL
1314 InodeRef *inp = 0, const std::map<std::string, std::string> &metadata={},
1315 std::string alternate_name="");
7c673cae
FG
1316 int _rmdir(Inode *dir, const char *name, const UserPerm& perms);
1317 int _symlink(Inode *dir, const char *name, const char *target,
f67539c2 1318 const UserPerm& perms, std::string alternate_name, InodeRef *inp = 0);
7c673cae
FG
1319 int _mknod(Inode *dir, const char *name, mode_t mode, dev_t rdev,
1320 const UserPerm& perms, InodeRef *inp = 0);
1321 int _do_setattr(Inode *in, struct ceph_statx *stx, int mask,
1322 const UserPerm& perms, InodeRef *inp);
1323 void stat_to_statx(struct stat *st, struct ceph_statx *stx);
1324 int __setattrx(Inode *in, struct ceph_statx *stx, int mask,
1325 const UserPerm& perms, InodeRef *inp = 0);
1326 int _setattrx(InodeRef &in, struct ceph_statx *stx, int mask,
1327 const UserPerm& perms);
1328 int _setattr(InodeRef &in, struct stat *attr, int mask,
1329 const UserPerm& perms);
1330 int _ll_setattrx(Inode *in, struct ceph_statx *stx, int mask,
1331 const UserPerm& perms, InodeRef *inp = 0);
1332 int _getattr(Inode *in, int mask, const UserPerm& perms, bool force=false);
1333 int _getattr(InodeRef &in, int mask, const UserPerm& perms, bool force=false) {
1334 return _getattr(in.get(), mask, perms, force);
1335 }
1336 int _readlink(Inode *in, char *buf, size_t size);
1337 int _getxattr(Inode *in, const char *name, void *value, size_t len,
1338 const UserPerm& perms);
1339 int _getxattr(InodeRef &in, const char *name, void *value, size_t len,
1340 const UserPerm& perms);
1d09f67e
TL
1341 int _getvxattr(Inode *in, const UserPerm& perms, const char *attr_name,
1342 ssize_t size, void *value, mds_rank_t rank);
7c673cae
FG
1343 int _listxattr(Inode *in, char *names, size_t len, const UserPerm& perms);
1344 int _do_setxattr(Inode *in, const char *name, const void *value, size_t len,
1345 int flags, const UserPerm& perms);
1346 int _setxattr(Inode *in, const char *name, const void *value, size_t len,
1347 int flags, const UserPerm& perms);
1348 int _setxattr(InodeRef &in, const char *name, const void *value, size_t len,
1349 int flags, const UserPerm& perms);
20effc67 1350 int _setxattr_check_data_pool(std::string& name, std::string& value, const OSDMap *osdmap);
7c673cae
FG
1351 void _setxattr_maybe_wait_for_osdmap(const char *name, const void *value, size_t len);
1352 int _removexattr(Inode *in, const char *nm, const UserPerm& perms);
1353 int _removexattr(InodeRef &in, const char *nm, const UserPerm& perms);
1354 int _open(Inode *in, int flags, mode_t mode, Fh **fhp,
1355 const UserPerm& perms);
1356 int _renew_caps(Inode *in);
1357 int _create(Inode *in, const char *name, int flags, mode_t mode, InodeRef *inp,
1358 Fh **fhp, int stripe_unit, int stripe_count, int object_size,
f67539c2
TL
1359 const char *data_pool, bool *created, const UserPerm &perms,
1360 std::string alternate_name);
7c673cae
FG
1361
1362 loff_t _lseek(Fh *fh, loff_t offset, int whence);
11fdf7f2
TL
1363 int64_t _read(Fh *fh, int64_t offset, uint64_t size, bufferlist *bl);
1364 int64_t _write(Fh *fh, int64_t offset, uint64_t size, const char *buf,
7c673cae 1365 const struct iovec *iov, int iovcnt);
f67539c2
TL
1366 int64_t _preadv_pwritev_locked(Fh *fh, const struct iovec *iov,
1367 unsigned iovcnt, int64_t offset,
20effc67
TL
1368 bool write, bool clamp_to_int);
1369 int _preadv_pwritev(int fd, const struct iovec *iov, unsigned iovcnt,
1370 int64_t offset, bool write);
7c673cae
FG
1371 int _flush(Fh *fh);
1372 int _fsync(Fh *fh, bool syncdataonly);
1373 int _fsync(Inode *in, bool syncdataonly);
1374 int _sync_fs();
1375 int _fallocate(Fh *fh, int mode, int64_t offset, int64_t length);
1376 int _getlk(Fh *fh, struct flock *fl, uint64_t owner);
1377 int _setlk(Fh *fh, struct flock *fl, uint64_t owner, int sleep);
1378 int _flock(Fh *fh, int cmd, uint64_t owner);
11fdf7f2 1379 int _lazyio(Fh *fh, int enable);
7c673cae
FG
1380
1381 int get_or_create(Inode *dir, const char* name,
1382 Dentry **pdn, bool expect_null=false);
1383
7c673cae
FG
1384 int xattr_permission(Inode *in, const char *name, unsigned want,
1385 const UserPerm& perms);
1386 int may_setattr(Inode *in, struct ceph_statx *stx, int mask,
1387 const UserPerm& perms);
1388 int may_open(Inode *in, int flags, const UserPerm& perms);
1389 int may_lookup(Inode *dir, const UserPerm& perms);
1390 int may_create(Inode *dir, const UserPerm& perms);
1391 int may_delete(Inode *dir, const char *name, const UserPerm& perms);
1392 int may_hardlink(Inode *in, const UserPerm& perms);
1393
1394 int _getattr_for_perm(Inode *in, const UserPerm& perms);
7c673cae
FG
1395
1396 vinodeno_t _get_vino(Inode *in);
28e407b8 1397
7c673cae
FG
1398 bool _vxattrcb_quota_exists(Inode *in);
1399 size_t _vxattrcb_quota(Inode *in, char *val, size_t size);
1400 size_t _vxattrcb_quota_max_bytes(Inode *in, char *val, size_t size);
1401 size_t _vxattrcb_quota_max_files(Inode *in, char *val, size_t size);
1402
1403 bool _vxattrcb_layout_exists(Inode *in);
1404 size_t _vxattrcb_layout(Inode *in, char *val, size_t size);
1405 size_t _vxattrcb_layout_stripe_unit(Inode *in, char *val, size_t size);
1406 size_t _vxattrcb_layout_stripe_count(Inode *in, char *val, size_t size);
1407 size_t _vxattrcb_layout_object_size(Inode *in, char *val, size_t size);
1408 size_t _vxattrcb_layout_pool(Inode *in, char *val, size_t size);
1409 size_t _vxattrcb_layout_pool_namespace(Inode *in, char *val, size_t size);
1410 size_t _vxattrcb_dir_entries(Inode *in, char *val, size_t size);
1411 size_t _vxattrcb_dir_files(Inode *in, char *val, size_t size);
1412 size_t _vxattrcb_dir_subdirs(Inode *in, char *val, size_t size);
1413 size_t _vxattrcb_dir_rentries(Inode *in, char *val, size_t size);
1414 size_t _vxattrcb_dir_rfiles(Inode *in, char *val, size_t size);
1415 size_t _vxattrcb_dir_rsubdirs(Inode *in, char *val, size_t size);
f67539c2 1416 size_t _vxattrcb_dir_rsnaps(Inode *in, char *val, size_t size);
7c673cae
FG
1417 size_t _vxattrcb_dir_rbytes(Inode *in, char *val, size_t size);
1418 size_t _vxattrcb_dir_rctime(Inode *in, char *val, size_t size);
7c673cae 1419
11fdf7f2
TL
1420 bool _vxattrcb_dir_pin_exists(Inode *in);
1421 size_t _vxattrcb_dir_pin(Inode *in, char *val, size_t size);
1422
81eedcae
TL
1423 bool _vxattrcb_snap_btime_exists(Inode *in);
1424 size_t _vxattrcb_snap_btime(Inode *in, char *val, size_t size);
7c673cae 1425
20effc67
TL
1426 size_t _vxattrcb_caps(Inode *in, char *val, size_t size);
1427
f67539c2
TL
1428 bool _vxattrcb_mirror_info_exists(Inode *in);
1429 size_t _vxattrcb_mirror_info(Inode *in, char *val, size_t size);
1430
adb31ebb
TL
1431 size_t _vxattrcb_cluster_fsid(Inode *in, char *val, size_t size);
1432 size_t _vxattrcb_client_id(Inode *in, char *val, size_t size);
1433
7c673cae
FG
1434 static const VXattr *_get_vxattrs(Inode *in);
1435 static const VXattr *_match_vxattr(Inode *in, const char *name);
1436
7c673cae
FG
1437 int _do_filelock(Inode *in, Fh *fh, int lock_type, int op, int sleep,
1438 struct flock *fl, uint64_t owner, bool removing=false);
1439 int _interrupt_filelock(MetaRequest *req);
1440 void _encode_filelocks(Inode *in, bufferlist& bl);
1441 void _release_filelocks(Fh *fh);
1442 void _update_lock_state(struct flock *fl, uint64_t owner, ceph_lock_state_t *lock_state);
1443
1444 int _posix_acl_create(Inode *dir, mode_t *mode, bufferlist& xattrs_bl,
1445 const UserPerm& perms);
1446 int _posix_acl_chmod(Inode *in, mode_t mode, const UserPerm& perms);
1447 int _posix_acl_permission(Inode *in, const UserPerm& perms, unsigned want);
1448
1449 mds_rank_t _get_random_up_mds() const;
1450
1451 int _ll_getattr(Inode *in, int caps, const UserPerm& perms);
1adf2230
AA
1452 int _lookup_parent(Inode *in, const UserPerm& perms, Inode **parent=NULL);
1453 int _lookup_name(Inode *in, Inode *parent, const UserPerm& perms);
f67539c2 1454 int _lookup_vino(vinodeno_t ino, const UserPerm& perms, Inode **inode=NULL);
494da23a 1455 bool _ll_forget(Inode *in, uint64_t count);
7c673cae 1456
f67539c2
TL
1457 void collect_and_send_metrics();
1458 void collect_and_send_global_metrics();
7c673cae 1459
11fdf7f2 1460 uint32_t deleg_timeout = 0;
7c673cae 1461
11fdf7f2
TL
1462 client_switch_interrupt_callback_t switch_interrupt_cb = nullptr;
1463 client_remount_callback_t remount_cb = nullptr;
1464 client_ino_callback_t ino_invalidate_cb = nullptr;
1465 client_dentry_callback_t dentry_invalidate_cb = nullptr;
1466 client_umask_callback_t umask_cb = nullptr;
e306af50 1467 client_ino_release_t ino_release_cb = nullptr;
11fdf7f2
TL
1468 void *callback_handle = nullptr;
1469 bool can_invalidate_dentries = false;
7c673cae 1470
11fdf7f2
TL
1471 Finisher async_ino_invalidator;
1472 Finisher async_dentry_invalidator;
1473 Finisher interrupt_finisher;
1474 Finisher remount_finisher;
e306af50 1475 Finisher async_ino_releasor;
11fdf7f2 1476 Finisher objecter_finisher;
7c673cae 1477
11fdf7f2 1478 utime_t last_cap_renew;
7c673cae 1479
11fdf7f2 1480 CommandHook m_command_hook;
7c673cae 1481
11fdf7f2
TL
1482 int user_id, group_id;
1483 int acl_type = NO_ACL;
7c673cae 1484
11fdf7f2 1485 epoch_t cap_epoch_barrier = 0;
7c673cae 1486
11fdf7f2 1487 // mds sessions
20effc67 1488 map<mds_rank_t, MetaSessionRef> mds_sessions; // mds -> push seq
f6b5b4d7 1489 std::set<mds_rank_t> mds_ranks_closing; // mds ranks currently tearing down sessions
9f95a23c 1490 std::list<ceph::condition_variable*> waiting_for_mdsmap;
7c673cae 1491
11fdf7f2 1492 // FSMap, for when using mds_command
9f95a23c 1493 std::list<ceph::condition_variable*> waiting_for_fsmap;
11fdf7f2
TL
1494 std::unique_ptr<FSMap> fsmap;
1495 std::unique_ptr<FSMapUser> fsmap_user;
7c673cae 1496
f67539c2
TL
1497 // This mutex only protects command_table
1498 ceph::mutex command_lock = ceph::make_mutex("Client::command_lock");
11fdf7f2
TL
1499 // MDS command state
1500 CommandTable<MDSCommandOp> command_table;
7c673cae 1501
11fdf7f2 1502 bool _use_faked_inos;
7c673cae 1503
11fdf7f2
TL
1504 // Cluster fsid
1505 fs_cluster_id_t fscid;
7c673cae 1506
11fdf7f2
TL
1507 // file handles, etc.
1508 interval_set<int> free_fd_set; // unused fds
1509 ceph::unordered_map<int, Fh*> fd_map;
1510 set<Fh*> ll_unclosed_fh_set;
1511 ceph::unordered_set<dir_result_t*> opened_dirs;
f6b5b4d7 1512 uint64_t fd_gen = 1;
7c673cae 1513
f67539c2
TL
1514 bool mount_aborted = false;
1515 bool blocklisted = false;
28e407b8 1516
11fdf7f2
TL
1517 ceph::unordered_map<vinodeno_t, Inode*> inode_map;
1518 ceph::unordered_map<ino_t, vinodeno_t> faked_ino_map;
1519 interval_set<ino_t> free_faked_inos;
1520 ino_t last_used_faked_ino;
1521 ino_t last_used_faked_root;
7c673cae 1522
f67539c2 1523 int local_osd = -CEPHFS_ENXIO;
11fdf7f2 1524 epoch_t local_osd_epoch = 0;
7c673cae 1525
11fdf7f2
TL
1526 // mds requests
1527 ceph_tid_t last_tid = 0;
1528 ceph_tid_t oldest_tid = 0; // oldest incomplete mds request, excluding setfilelock requests
1529 map<ceph_tid_t, MetaRequest*> mds_requests;
7c673cae 1530
11fdf7f2
TL
1531 // cap flushing
1532 ceph_tid_t last_flush_tid = 1;
7c673cae 1533
20effc67 1534 xlist<Inode*> delayed_list;
11fdf7f2
TL
1535 int num_flushing_caps = 0;
1536 ceph::unordered_map<inodeno_t,SnapRealm*> snap_realms;
1537 std::map<std::string, std::string> metadata;
7c673cae 1538
f6b5b4d7
TL
1539 utime_t last_auto_reconnect;
1540
11fdf7f2 1541 // trace generation
20effc67 1542 std::ofstream traceout;
7c673cae 1543
9f95a23c 1544 ceph::condition_variable mount_cond, sync_cond;
11fdf7f2
TL
1545
1546 std::map<std::pair<int64_t,std::string>, int> pool_perms;
9f95a23c 1547 std::list<ceph::condition_variable*> waiting_for_pool_perm;
91327a77 1548
91327a77 1549 uint64_t retries_on_invalidate = 0;
11fdf7f2
TL
1550
1551 // state reclaim
9f95a23c 1552 std::list<ceph::condition_variable*> waiting_for_reclaim;
11fdf7f2
TL
1553 int reclaim_errno = 0;
1554 epoch_t reclaim_osd_epoch = 0;
1555 entity_addrvec_t reclaim_target_addrs;
f67539c2
TL
1556
1557 // dentry lease metrics
1558 uint64_t dentry_nr = 0;
1559 uint64_t dlease_hits = 0;
1560 uint64_t dlease_misses = 0;
1561
1562 uint64_t cap_hits = 0;
1563 uint64_t cap_misses = 0;
1564
1565 uint64_t opened_files = 0;
1566 uint64_t pinned_icaps = 0;
1567 uint64_t opened_inodes = 0;
1568
a4b75251
TL
1569 uint64_t total_read_ops = 0;
1570 uint64_t total_read_size = 0;
1571
1572 uint64_t total_write_ops = 0;
1573 uint64_t total_write_size = 0;
1574
f67539c2
TL
1575 ceph::spinlock delay_i_lock;
1576 std::map<Inode*,int> delay_i_release;
7c673cae
FG
1577};
1578
1579/**
1580 * Specialization of Client that manages its own Objecter instance
1581 * and handles init/shutdown of messenger/monclient
1582 */
1583class StandaloneClient : public Client
1584{
11fdf7f2 1585public:
f67539c2 1586 StandaloneClient(Messenger *m, MonClient *mc, boost::asio::io_context& ictx);
7c673cae
FG
1587
1588 ~StandaloneClient() override;
1589
1590 int init() override;
1591 void shutdown() override;
1592};
1593
1594#endif