1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * (C) 2001 Clemson University and The University of Chicago 4 * 5 * See COPYING in top-level directory. 6 */ 7 #include "protocol.h" 8 #include "orangefs-kernel.h" 9 #include "orangefs-bufmap.h" 10 11 struct slot_map { 12 int c; 13 wait_queue_head_t q; 14 int count; 15 unsigned long *map; 16 }; 17 18 static struct slot_map rw_map = { 19 .c = -1, 20 .q = __WAIT_QUEUE_HEAD_INITIALIZER(rw_map.q) 21 }; 22 static struct slot_map readdir_map = { 23 .c = -1, 24 .q = __WAIT_QUEUE_HEAD_INITIALIZER(readdir_map.q) 25 }; 26 27 28 static void install(struct slot_map *m, int count, unsigned long *map) 29 { 30 spin_lock(&m->q.lock); 31 m->c = m->count = count; 32 m->map = map; 33 wake_up_all_locked(&m->q); 34 spin_unlock(&m->q.lock); 35 } 36 37 static void mark_killed(struct slot_map *m) 38 { 39 spin_lock(&m->q.lock); 40 m->c -= m->count + 1; 41 spin_unlock(&m->q.lock); 42 } 43 44 static void run_down(struct slot_map *m) 45 { 46 DEFINE_WAIT(wait); 47 spin_lock(&m->q.lock); 48 if (m->c != -1) { 49 for (;;) { 50 if (likely(list_empty(&wait.entry))) 51 __add_wait_queue_entry_tail(&m->q, &wait); 52 set_current_state(TASK_UNINTERRUPTIBLE); 53 54 if (m->c == -1) 55 break; 56 57 spin_unlock(&m->q.lock); 58 schedule(); 59 spin_lock(&m->q.lock); 60 } 61 __remove_wait_queue(&m->q, &wait); 62 __set_current_state(TASK_RUNNING); 63 } 64 m->map = NULL; 65 spin_unlock(&m->q.lock); 66 } 67 68 static void put(struct slot_map *m, int slot) 69 { 70 int v; 71 spin_lock(&m->q.lock); 72 __clear_bit(slot, m->map); 73 v = ++m->c; 74 if (v > 0) 75 wake_up_locked(&m->q); 76 if (unlikely(v == -1)) /* finished dying */ 77 wake_up_all_locked(&m->q); 78 spin_unlock(&m->q.lock); 79 } 80 81 static int wait_for_free(struct slot_map *m) 82 { 83 long left = slot_timeout_secs * HZ; 84 DEFINE_WAIT(wait); 85 86 do { 87 long n = left, t; 88 if (likely(list_empty(&wait.entry))) 89 __add_wait_queue_entry_tail_exclusive(&m->q, &wait); 90 set_current_state(TASK_INTERRUPTIBLE); 91 92 if (m->c > 0) 93 break; 94 95 if (m->c < 0) { 96 /* we are waiting for map to be installed */ 97 /* it would better be there soon, or we go away */ 98 if (n > ORANGEFS_BUFMAP_WAIT_TIMEOUT_SECS * HZ) 99 n = ORANGEFS_BUFMAP_WAIT_TIMEOUT_SECS * HZ; 100 } 101 spin_unlock(&m->q.lock); 102 t = schedule_timeout(n); 103 spin_lock(&m->q.lock); 104 if (unlikely(!t) && n != left && m->c < 0) 105 left = t; 106 else 107 left = t + (left - n); 108 if (signal_pending(current)) 109 left = -EINTR; 110 } while (left > 0); 111 112 if (!list_empty(&wait.entry)) 113 list_del(&wait.entry); 114 else if (left <= 0 && waitqueue_active(&m->q)) 115 __wake_up_locked_key(&m->q, TASK_INTERRUPTIBLE, NULL); 116 __set_current_state(TASK_RUNNING); 117 118 if (likely(left > 0)) 119 return 0; 120 121 return left < 0 ? -EINTR : -ETIMEDOUT; 122 } 123 124 static int get(struct slot_map *m) 125 { 126 int res = 0; 127 spin_lock(&m->q.lock); 128 if (unlikely(m->c <= 0)) 129 res = wait_for_free(m); 130 if (likely(!res)) { 131 m->c--; 132 res = find_first_zero_bit(m->map, m->count); 133 __set_bit(res, m->map); 134 } 135 spin_unlock(&m->q.lock); 136 return res; 137 } 138 139 /* used to describe mapped buffers */ 140 struct orangefs_bufmap_desc { 141 void __user *uaddr; /* user space address pointer */ 142 struct page **page_array; /* array of mapped pages */ 143 int array_count; /* size of above arrays */ 144 struct list_head list_link; 145 }; 146 147 static struct orangefs_bufmap { 148 int desc_size; 149 int desc_shift; 150 int desc_count; 151 int total_size; 152 int page_count; 153 154 struct page **page_array; 155 struct orangefs_bufmap_desc *desc_array; 156 157 /* array to track usage of buffer descriptors */ 158 unsigned long *buffer_index_array; 159 160 /* array to track usage of buffer descriptors for readdir */ 161 #define N DIV_ROUND_UP(ORANGEFS_READDIR_DEFAULT_DESC_COUNT, BITS_PER_LONG) 162 unsigned long readdir_index_array[N]; 163 #undef N 164 } *__orangefs_bufmap; 165 166 static DEFINE_SPINLOCK(orangefs_bufmap_lock); 167 168 static void 169 orangefs_bufmap_unmap(struct orangefs_bufmap *bufmap) 170 { 171 unpin_user_pages(bufmap->page_array, bufmap->page_count); 172 } 173 174 static void 175 orangefs_bufmap_free(struct orangefs_bufmap *bufmap) 176 { 177 kfree(bufmap->page_array); 178 kfree(bufmap->desc_array); 179 bitmap_free(bufmap->buffer_index_array); 180 kfree(bufmap); 181 } 182 183 /* 184 * XXX: Can the size and shift change while the caller gives up the 185 * XXX: lock between calling this and doing something useful? 186 */ 187 188 int orangefs_bufmap_size_query(void) 189 { 190 struct orangefs_bufmap *bufmap; 191 int size = 0; 192 spin_lock(&orangefs_bufmap_lock); 193 bufmap = __orangefs_bufmap; 194 if (bufmap) 195 size = bufmap->desc_size; 196 spin_unlock(&orangefs_bufmap_lock); 197 return size; 198 } 199 200 static DECLARE_WAIT_QUEUE_HEAD(bufmap_waitq); 201 static DECLARE_WAIT_QUEUE_HEAD(readdir_waitq); 202 203 static struct orangefs_bufmap * 204 orangefs_bufmap_alloc(struct ORANGEFS_dev_map_desc *user_desc) 205 { 206 struct orangefs_bufmap *bufmap; 207 208 bufmap = kzalloc_obj(*bufmap); 209 if (!bufmap) 210 goto out; 211 212 bufmap->total_size = user_desc->total_size; 213 bufmap->desc_count = user_desc->count; 214 bufmap->desc_size = user_desc->size; 215 bufmap->desc_shift = ilog2(bufmap->desc_size); 216 217 bufmap->buffer_index_array = bitmap_zalloc(bufmap->desc_count, GFP_KERNEL); 218 if (!bufmap->buffer_index_array) 219 goto out_free_bufmap; 220 221 bufmap->desc_array = 222 kzalloc_objs(struct orangefs_bufmap_desc, bufmap->desc_count); 223 if (!bufmap->desc_array) 224 goto out_free_index_array; 225 226 bufmap->page_count = bufmap->total_size / PAGE_SIZE; 227 228 /* allocate storage to track our page mappings */ 229 bufmap->page_array = 230 kzalloc_objs(struct page *, bufmap->page_count); 231 if (!bufmap->page_array) 232 goto out_free_desc_array; 233 234 return bufmap; 235 236 out_free_desc_array: 237 kfree(bufmap->desc_array); 238 out_free_index_array: 239 bitmap_free(bufmap->buffer_index_array); 240 out_free_bufmap: 241 kfree(bufmap); 242 out: 243 return NULL; 244 } 245 246 static int 247 orangefs_bufmap_map(struct orangefs_bufmap *bufmap, 248 struct ORANGEFS_dev_map_desc *user_desc) 249 { 250 int pages_per_desc = bufmap->desc_size / PAGE_SIZE; 251 int offset = 0, ret, i; 252 253 /* map the pages */ 254 ret = pin_user_pages_fast((unsigned long)user_desc->ptr, 255 bufmap->page_count, FOLL_WRITE, bufmap->page_array); 256 257 if (ret < 0) 258 return ret; 259 260 if (ret != bufmap->page_count) { 261 gossip_err("orangefs error: asked for %d pages, only got %d.\n", 262 bufmap->page_count, ret); 263 264 for (i = 0; i < ret; i++) 265 unpin_user_page(bufmap->page_array[i]); 266 return -ENOMEM; 267 } 268 269 /* 270 * ideally we want to get kernel space pointers for each page, but 271 * we can't kmap that many pages at once if highmem is being used. 272 * so instead, we just kmap/kunmap the page address each time the 273 * kaddr is needed. 274 */ 275 for (i = 0; i < bufmap->page_count; i++) 276 flush_dcache_page(bufmap->page_array[i]); 277 278 /* build a list of available descriptors */ 279 for (offset = 0, i = 0; i < bufmap->desc_count; i++) { 280 bufmap->desc_array[i].page_array = &bufmap->page_array[offset]; 281 bufmap->desc_array[i].array_count = pages_per_desc; 282 bufmap->desc_array[i].uaddr = 283 (user_desc->ptr + (i * pages_per_desc * PAGE_SIZE)); 284 offset += pages_per_desc; 285 } 286 287 return 0; 288 } 289 290 /* 291 * orangefs_bufmap_initialize() 292 * 293 * initializes the mapped buffer interface 294 * 295 * returns 0 on success, -errno on failure 296 */ 297 int orangefs_bufmap_initialize(struct ORANGEFS_dev_map_desc *user_desc) 298 { 299 struct orangefs_bufmap *bufmap; 300 int ret = -EINVAL; 301 302 gossip_debug(GOSSIP_BUFMAP_DEBUG, 303 "orangefs_bufmap_initialize: called (ptr (" 304 "%p) sz (%d) cnt(%d).\n", 305 user_desc->ptr, 306 user_desc->size, 307 user_desc->count); 308 309 if (user_desc->total_size < 0 || 310 user_desc->size < 0 || 311 user_desc->count < 0) 312 goto out; 313 314 /* 315 * sanity check alignment and size of buffer that caller wants to 316 * work with 317 */ 318 if (PAGE_ALIGN((unsigned long)user_desc->ptr) != 319 (unsigned long)user_desc->ptr) { 320 gossip_err("orangefs error: memory alignment (front). %p\n", 321 user_desc->ptr); 322 goto out; 323 } 324 325 if (PAGE_ALIGN(((unsigned long)user_desc->ptr + user_desc->total_size)) 326 != (unsigned long)(user_desc->ptr + user_desc->total_size)) { 327 gossip_err("orangefs error: memory alignment (back).(%p + %d)\n", 328 user_desc->ptr, 329 user_desc->total_size); 330 goto out; 331 } 332 333 if (user_desc->total_size != (user_desc->size * user_desc->count)) { 334 gossip_err("orangefs error: user provided an oddly sized buffer: (%d, %d, %d)\n", 335 user_desc->total_size, 336 user_desc->size, 337 user_desc->count); 338 goto out; 339 } 340 341 if ((user_desc->size % PAGE_SIZE) != 0) { 342 gossip_err("orangefs error: bufmap size not page size divisible (%d).\n", 343 user_desc->size); 344 goto out; 345 } 346 347 ret = -ENOMEM; 348 bufmap = orangefs_bufmap_alloc(user_desc); 349 if (!bufmap) 350 goto out; 351 352 ret = orangefs_bufmap_map(bufmap, user_desc); 353 if (ret) 354 goto out_free_bufmap; 355 356 357 spin_lock(&orangefs_bufmap_lock); 358 if (__orangefs_bufmap) { 359 spin_unlock(&orangefs_bufmap_lock); 360 gossip_err("orangefs: error: bufmap already initialized.\n"); 361 ret = -EINVAL; 362 goto out_unmap_bufmap; 363 } 364 __orangefs_bufmap = bufmap; 365 install(&rw_map, 366 bufmap->desc_count, 367 bufmap->buffer_index_array); 368 install(&readdir_map, 369 ORANGEFS_READDIR_DEFAULT_DESC_COUNT, 370 bufmap->readdir_index_array); 371 spin_unlock(&orangefs_bufmap_lock); 372 373 gossip_debug(GOSSIP_BUFMAP_DEBUG, 374 "orangefs_bufmap_initialize: exiting normally\n"); 375 return 0; 376 377 out_unmap_bufmap: 378 orangefs_bufmap_unmap(bufmap); 379 out_free_bufmap: 380 orangefs_bufmap_free(bufmap); 381 out: 382 return ret; 383 } 384 385 /* 386 * orangefs_bufmap_finalize() 387 * 388 * shuts down the mapped buffer interface and releases any resources 389 * associated with it 390 * 391 * no return value 392 */ 393 void orangefs_bufmap_finalize(void) 394 { 395 struct orangefs_bufmap *bufmap = __orangefs_bufmap; 396 if (!bufmap) 397 return; 398 gossip_debug(GOSSIP_BUFMAP_DEBUG, "orangefs_bufmap_finalize: called\n"); 399 mark_killed(&rw_map); 400 mark_killed(&readdir_map); 401 gossip_debug(GOSSIP_BUFMAP_DEBUG, 402 "orangefs_bufmap_finalize: exiting normally\n"); 403 } 404 405 void orangefs_bufmap_run_down(void) 406 { 407 struct orangefs_bufmap *bufmap = __orangefs_bufmap; 408 if (!bufmap) 409 return; 410 run_down(&rw_map); 411 run_down(&readdir_map); 412 spin_lock(&orangefs_bufmap_lock); 413 __orangefs_bufmap = NULL; 414 spin_unlock(&orangefs_bufmap_lock); 415 orangefs_bufmap_unmap(bufmap); 416 orangefs_bufmap_free(bufmap); 417 } 418 419 /* 420 * orangefs_bufmap_get() 421 * 422 * gets a free mapped buffer descriptor, will sleep until one becomes 423 * available if necessary 424 * 425 * returns slot on success, -errno on failure 426 */ 427 int orangefs_bufmap_get(void) 428 { 429 return get(&rw_map); 430 } 431 432 /* 433 * orangefs_bufmap_put() 434 * 435 * returns a mapped buffer descriptor to the collection 436 * 437 * no return value 438 */ 439 void orangefs_bufmap_put(int buffer_index) 440 { 441 put(&rw_map, buffer_index); 442 } 443 444 /* 445 * orangefs_readdir_index_get() 446 * 447 * gets a free descriptor, will sleep until one becomes 448 * available if necessary. 449 * Although the readdir buffers are not mapped into kernel space 450 * we could do that at a later point of time. Regardless, these 451 * indices are used by the client-core. 452 * 453 * returns slot on success, -errno on failure 454 */ 455 int orangefs_readdir_index_get(void) 456 { 457 return get(&readdir_map); 458 } 459 460 void orangefs_readdir_index_put(int buffer_index) 461 { 462 put(&readdir_map, buffer_index); 463 } 464 465 /* 466 * we've been handed an iovec, we need to copy it to 467 * the shared memory descriptor at "buffer_index". 468 */ 469 int orangefs_bufmap_copy_from_iovec(struct iov_iter *iter, 470 int buffer_index, 471 size_t size) 472 { 473 struct orangefs_bufmap_desc *to; 474 int i; 475 476 gossip_debug(GOSSIP_BUFMAP_DEBUG, 477 "%s: buffer_index:%d: size:%zu:\n", 478 __func__, buffer_index, size); 479 480 to = &__orangefs_bufmap->desc_array[buffer_index]; 481 for (i = 0; size; i++) { 482 struct page *page = to->page_array[i]; 483 size_t n = size; 484 if (n > PAGE_SIZE) 485 n = PAGE_SIZE; 486 if (copy_page_from_iter(page, 0, n, iter) != n) 487 return -EFAULT; 488 size -= n; 489 } 490 return 0; 491 } 492 493 /* 494 * we've been handed an iovec, we need to fill it from 495 * the shared memory descriptor at "buffer_index". 496 */ 497 int orangefs_bufmap_copy_to_iovec(struct iov_iter *iter, 498 int buffer_index, 499 size_t size) 500 { 501 struct orangefs_bufmap_desc *from; 502 int i; 503 504 from = &__orangefs_bufmap->desc_array[buffer_index]; 505 gossip_debug(GOSSIP_BUFMAP_DEBUG, 506 "%s: buffer_index:%d: size:%zu:\n", 507 __func__, buffer_index, size); 508 509 510 for (i = 0; size; i++) { 511 struct page *page = from->page_array[i]; 512 size_t n = size; 513 if (n > PAGE_SIZE) 514 n = PAGE_SIZE; 515 n = copy_page_to_iter(page, 0, n, iter); 516 if (!n) 517 return -EFAULT; 518 size -= n; 519 } 520 return 0; 521 } 522