1 /* 2 * Device manager 3 * 4 * Copyright (c) 2013 Google, Inc 5 * 6 * (C) Copyright 2012 7 * Pavel Herrmann <morpheus.ibis@gmail.com> 8 * 9 * SPDX-License-Identifier: GPL-2.0+ 10 */ 11 12 #include <common.h> 13 #include <fdtdec.h> 14 #include <malloc.h> 15 #include <dm/device.h> 16 #include <dm/device-internal.h> 17 #include <dm/lists.h> 18 #include <dm/platdata.h> 19 #include <dm/uclass.h> 20 #include <dm/uclass-internal.h> 21 #include <dm/util.h> 22 #include <linux/err.h> 23 #include <linux/list.h> 24 25 DECLARE_GLOBAL_DATA_PTR; 26 27 int device_bind(struct udevice *parent, const struct driver *drv, 28 const char *name, void *platdata, int of_offset, 29 struct udevice **devp) 30 { 31 struct udevice *dev; 32 struct uclass *uc; 33 int size, ret = 0; 34 35 *devp = NULL; 36 if (!name) 37 return -EINVAL; 38 39 ret = uclass_get(drv->id, &uc); 40 if (ret) 41 return ret; 42 43 dev = calloc(1, sizeof(struct udevice)); 44 if (!dev) 45 return -ENOMEM; 46 47 INIT_LIST_HEAD(&dev->sibling_node); 48 INIT_LIST_HEAD(&dev->child_head); 49 INIT_LIST_HEAD(&dev->uclass_node); 50 dev->platdata = platdata; 51 dev->name = name; 52 dev->of_offset = of_offset; 53 dev->parent = parent; 54 dev->driver = drv; 55 dev->uclass = uc; 56 57 dev->seq = -1; 58 dev->req_seq = -1; 59 #ifdef CONFIG_OF_CONTROL 60 /* 61 * Some devices, such as a SPI bus, I2C bus and serial ports are 62 * numbered using aliases. 63 * 64 * This is just a 'requested' sequence, and will be 65 * resolved (and ->seq updated) when the device is probed. 66 */ 67 if (uc->uc_drv->flags & DM_UC_FLAG_SEQ_ALIAS) { 68 if (uc->uc_drv->name && of_offset != -1) { 69 fdtdec_get_alias_seq(gd->fdt_blob, uc->uc_drv->name, 70 of_offset, &dev->req_seq); 71 } 72 } 73 #endif 74 if (!dev->platdata && drv->platdata_auto_alloc_size) { 75 dev->flags |= DM_FLAG_ALLOC_PDATA; 76 dev->platdata = calloc(1, drv->platdata_auto_alloc_size); 77 if (!dev->platdata) { 78 ret = -ENOMEM; 79 goto fail_alloc1; 80 } 81 } 82 83 size = uc->uc_drv->per_device_platdata_auto_alloc_size; 84 if (size) { 85 dev->flags |= DM_FLAG_ALLOC_UCLASS_PDATA; 86 dev->uclass_platdata = calloc(1, size); 87 if (!dev->uclass_platdata) { 88 ret = -ENOMEM; 89 goto fail_alloc2; 90 } 91 } 92 93 if (parent) { 94 size = parent->driver->per_child_platdata_auto_alloc_size; 95 if (!size) { 96 size = parent->uclass->uc_drv-> 97 per_child_platdata_auto_alloc_size; 98 } 99 if (size) { 100 dev->flags |= DM_FLAG_ALLOC_PARENT_PDATA; 101 dev->parent_platdata = calloc(1, size); 102 if (!dev->parent_platdata) { 103 ret = -ENOMEM; 104 goto fail_alloc3; 105 } 106 } 107 } 108 109 /* put dev into parent's successor list */ 110 if (parent) 111 list_add_tail(&dev->sibling_node, &parent->child_head); 112 113 ret = uclass_bind_device(dev); 114 if (ret) 115 goto fail_uclass_bind; 116 117 /* if we fail to bind we remove device from successors and free it */ 118 if (drv->bind) { 119 ret = drv->bind(dev); 120 if (ret) 121 goto fail_bind; 122 } 123 if (parent && parent->driver->child_post_bind) { 124 ret = parent->driver->child_post_bind(dev); 125 if (ret) 126 goto fail_child_post_bind; 127 } 128 129 if (parent) 130 dm_dbg("Bound device %s to %s\n", dev->name, parent->name); 131 *devp = dev; 132 133 return 0; 134 135 fail_child_post_bind: 136 if (drv->unbind && drv->unbind(dev)) { 137 dm_warn("unbind() method failed on dev '%s' on error path\n", 138 dev->name); 139 } 140 141 fail_bind: 142 if (uclass_unbind_device(dev)) { 143 dm_warn("Failed to unbind dev '%s' on error path\n", 144 dev->name); 145 } 146 fail_uclass_bind: 147 list_del(&dev->sibling_node); 148 if (dev->flags & DM_FLAG_ALLOC_PARENT_PDATA) { 149 free(dev->parent_platdata); 150 dev->parent_platdata = NULL; 151 } 152 fail_alloc3: 153 if (dev->flags & DM_FLAG_ALLOC_UCLASS_PDATA) { 154 free(dev->uclass_platdata); 155 dev->uclass_platdata = NULL; 156 } 157 fail_alloc2: 158 if (dev->flags & DM_FLAG_ALLOC_PDATA) { 159 free(dev->platdata); 160 dev->platdata = NULL; 161 } 162 fail_alloc1: 163 free(dev); 164 165 return ret; 166 } 167 168 int device_bind_by_name(struct udevice *parent, bool pre_reloc_only, 169 const struct driver_info *info, struct udevice **devp) 170 { 171 struct driver *drv; 172 173 drv = lists_driver_lookup_name(info->name); 174 if (!drv) 175 return -ENOENT; 176 if (pre_reloc_only && !(drv->flags & DM_FLAG_PRE_RELOC)) 177 return -EPERM; 178 179 return device_bind(parent, drv, info->name, (void *)info->platdata, 180 -1, devp); 181 } 182 183 static void *alloc_priv(int size, uint flags) 184 { 185 void *priv; 186 187 if (flags & DM_FLAG_ALLOC_PRIV_DMA) { 188 priv = memalign(ARCH_DMA_MINALIGN, size); 189 if (priv) 190 memset(priv, '\0', size); 191 } else { 192 priv = calloc(1, size); 193 } 194 195 return priv; 196 } 197 198 int device_probe_child(struct udevice *dev, void *parent_priv) 199 { 200 const struct driver *drv; 201 int size = 0; 202 int ret; 203 int seq; 204 205 if (!dev) 206 return -EINVAL; 207 208 if (dev->flags & DM_FLAG_ACTIVATED) 209 return 0; 210 211 drv = dev->driver; 212 assert(drv); 213 214 /* Allocate private data if requested */ 215 if (drv->priv_auto_alloc_size) { 216 dev->priv = alloc_priv(drv->priv_auto_alloc_size, drv->flags); 217 if (!dev->priv) { 218 ret = -ENOMEM; 219 goto fail; 220 } 221 } 222 /* Allocate private data if requested */ 223 size = dev->uclass->uc_drv->per_device_auto_alloc_size; 224 if (size) { 225 dev->uclass_priv = calloc(1, size); 226 if (!dev->uclass_priv) { 227 ret = -ENOMEM; 228 goto fail; 229 } 230 } 231 232 /* Ensure all parents are probed */ 233 if (dev->parent) { 234 size = dev->parent->driver->per_child_auto_alloc_size; 235 if (!size) { 236 size = dev->parent->uclass->uc_drv-> 237 per_child_auto_alloc_size; 238 } 239 if (size) { 240 dev->parent_priv = alloc_priv(size, drv->flags); 241 if (!dev->parent_priv) { 242 ret = -ENOMEM; 243 goto fail; 244 } 245 if (parent_priv) 246 memcpy(dev->parent_priv, parent_priv, size); 247 } 248 249 ret = device_probe(dev->parent); 250 if (ret) 251 goto fail; 252 } 253 254 seq = uclass_resolve_seq(dev); 255 if (seq < 0) { 256 ret = seq; 257 goto fail; 258 } 259 dev->seq = seq; 260 261 dev->flags |= DM_FLAG_ACTIVATED; 262 263 ret = uclass_pre_probe_device(dev); 264 if (ret) 265 goto fail; 266 267 if (dev->parent && dev->parent->driver->child_pre_probe) { 268 ret = dev->parent->driver->child_pre_probe(dev); 269 if (ret) 270 goto fail; 271 } 272 273 if (drv->ofdata_to_platdata && dev->of_offset >= 0) { 274 ret = drv->ofdata_to_platdata(dev); 275 if (ret) 276 goto fail; 277 } 278 279 dev->flags |= DM_FLAG_ACTIVATED; 280 if (drv->probe) { 281 ret = drv->probe(dev); 282 if (ret) { 283 dev->flags &= ~DM_FLAG_ACTIVATED; 284 goto fail; 285 } 286 } 287 288 ret = uclass_post_probe_device(dev); 289 if (ret) 290 goto fail_uclass; 291 292 return 0; 293 fail_uclass: 294 if (device_remove(dev)) { 295 dm_warn("%s: Device '%s' failed to remove on error path\n", 296 __func__, dev->name); 297 } 298 fail: 299 dev->flags &= ~DM_FLAG_ACTIVATED; 300 301 dev->seq = -1; 302 device_free(dev); 303 304 return ret; 305 } 306 307 int device_probe(struct udevice *dev) 308 { 309 return device_probe_child(dev, NULL); 310 } 311 312 void *dev_get_platdata(struct udevice *dev) 313 { 314 if (!dev) { 315 dm_warn("%s: null device\n", __func__); 316 return NULL; 317 } 318 319 return dev->platdata; 320 } 321 322 void *dev_get_parent_platdata(struct udevice *dev) 323 { 324 if (!dev) { 325 dm_warn("%s: null device", __func__); 326 return NULL; 327 } 328 329 return dev->parent_platdata; 330 } 331 332 void *dev_get_uclass_platdata(struct udevice *dev) 333 { 334 if (!dev) { 335 dm_warn("%s: null device", __func__); 336 return NULL; 337 } 338 339 return dev->uclass_platdata; 340 } 341 342 void *dev_get_priv(struct udevice *dev) 343 { 344 if (!dev) { 345 dm_warn("%s: null device\n", __func__); 346 return NULL; 347 } 348 349 return dev->priv; 350 } 351 352 void *dev_get_uclass_priv(struct udevice *dev) 353 { 354 if (!dev) { 355 dm_warn("%s: null device\n", __func__); 356 return NULL; 357 } 358 359 return dev->uclass_priv; 360 } 361 362 void *dev_get_parentdata(struct udevice *dev) 363 { 364 if (!dev) { 365 dm_warn("%s: null device\n", __func__); 366 return NULL; 367 } 368 369 return dev->parent_priv; 370 } 371 372 static int device_get_device_tail(struct udevice *dev, int ret, 373 struct udevice **devp) 374 { 375 if (ret) 376 return ret; 377 378 ret = device_probe(dev); 379 if (ret) 380 return ret; 381 382 *devp = dev; 383 384 return 0; 385 } 386 387 int device_get_child(struct udevice *parent, int index, struct udevice **devp) 388 { 389 struct udevice *dev; 390 391 list_for_each_entry(dev, &parent->child_head, sibling_node) { 392 if (!index--) 393 return device_get_device_tail(dev, 0, devp); 394 } 395 396 return -ENODEV; 397 } 398 399 int device_find_child_by_seq(struct udevice *parent, int seq_or_req_seq, 400 bool find_req_seq, struct udevice **devp) 401 { 402 struct udevice *dev; 403 404 *devp = NULL; 405 if (seq_or_req_seq == -1) 406 return -ENODEV; 407 408 list_for_each_entry(dev, &parent->child_head, sibling_node) { 409 if ((find_req_seq ? dev->req_seq : dev->seq) == 410 seq_or_req_seq) { 411 *devp = dev; 412 return 0; 413 } 414 } 415 416 return -ENODEV; 417 } 418 419 int device_get_child_by_seq(struct udevice *parent, int seq, 420 struct udevice **devp) 421 { 422 struct udevice *dev; 423 int ret; 424 425 *devp = NULL; 426 ret = device_find_child_by_seq(parent, seq, false, &dev); 427 if (ret == -ENODEV) { 428 /* 429 * We didn't find it in probed devices. See if there is one 430 * that will request this seq if probed. 431 */ 432 ret = device_find_child_by_seq(parent, seq, true, &dev); 433 } 434 return device_get_device_tail(dev, ret, devp); 435 } 436 437 int device_find_child_by_of_offset(struct udevice *parent, int of_offset, 438 struct udevice **devp) 439 { 440 struct udevice *dev; 441 442 *devp = NULL; 443 444 list_for_each_entry(dev, &parent->child_head, sibling_node) { 445 if (dev->of_offset == of_offset) { 446 *devp = dev; 447 return 0; 448 } 449 } 450 451 return -ENODEV; 452 } 453 454 int device_get_child_by_of_offset(struct udevice *parent, int seq, 455 struct udevice **devp) 456 { 457 struct udevice *dev; 458 int ret; 459 460 *devp = NULL; 461 ret = device_find_child_by_of_offset(parent, seq, &dev); 462 return device_get_device_tail(dev, ret, devp); 463 } 464 465 int device_find_first_child(struct udevice *parent, struct udevice **devp) 466 { 467 if (list_empty(&parent->child_head)) { 468 *devp = NULL; 469 } else { 470 *devp = list_first_entry(&parent->child_head, struct udevice, 471 sibling_node); 472 } 473 474 return 0; 475 } 476 477 int device_find_next_child(struct udevice **devp) 478 { 479 struct udevice *dev = *devp; 480 struct udevice *parent = dev->parent; 481 482 if (list_is_last(&dev->sibling_node, &parent->child_head)) { 483 *devp = NULL; 484 } else { 485 *devp = list_entry(dev->sibling_node.next, struct udevice, 486 sibling_node); 487 } 488 489 return 0; 490 } 491 492 struct udevice *dev_get_parent(struct udevice *child) 493 { 494 return child->parent; 495 } 496 497 ulong dev_get_driver_data(struct udevice *dev) 498 { 499 return dev->driver_data; 500 } 501 502 const void *dev_get_driver_ops(struct udevice *dev) 503 { 504 if (!dev || !dev->driver->ops) 505 return NULL; 506 507 return dev->driver->ops; 508 } 509 510 enum uclass_id device_get_uclass_id(struct udevice *dev) 511 { 512 return dev->uclass->uc_drv->id; 513 } 514 515 const char *dev_get_uclass_name(struct udevice *dev) 516 { 517 if (!dev) 518 return NULL; 519 520 return dev->uclass->uc_drv->name; 521 } 522 523 #ifdef CONFIG_OF_CONTROL 524 fdt_addr_t dev_get_addr(struct udevice *dev) 525 { 526 return fdtdec_get_addr(gd->fdt_blob, dev->of_offset, "reg"); 527 } 528 #else 529 fdt_addr_t dev_get_addr(struct udevice *dev) 530 { 531 return FDT_ADDR_T_NONE; 532 } 533 #endif 534 535 bool device_has_children(struct udevice *dev) 536 { 537 return !list_empty(&dev->child_head); 538 } 539 540 bool device_has_active_children(struct udevice *dev) 541 { 542 struct udevice *child; 543 544 for (device_find_first_child(dev, &child); 545 child; 546 device_find_next_child(&child)) { 547 if (device_active(child)) 548 return true; 549 } 550 551 return false; 552 } 553 554 bool device_is_last_sibling(struct udevice *dev) 555 { 556 struct udevice *parent = dev->parent; 557 558 if (!parent) 559 return false; 560 return list_is_last(&dev->sibling_node, &parent->child_head); 561 } 562