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efi_loader: Setup logical_partition media information
[u-boot] / lib / efi_loader / efi_disk.c
1 /*
2  *  EFI application disk support
3  *
4  *  Copyright (c) 2016 Alexander Graf
5  *
6  *  SPDX-License-Identifier:     GPL-2.0+
7  */
8
9 #include <common.h>
10 #include <blk.h>
11 #include <dm.h>
12 #include <efi_loader.h>
13 #include <inttypes.h>
14 #include <part.h>
15 #include <malloc.h>
16
17 static const efi_guid_t efi_block_io_guid = BLOCK_IO_GUID;
18
19 struct efi_disk_obj {
20         /* Generic EFI object parent class data */
21         struct efi_object parent;
22         /* EFI Interface callback struct for block I/O */
23         struct efi_block_io ops;
24         /* U-Boot ifname for block device */
25         const char *ifname;
26         /* U-Boot dev_index for block device */
27         int dev_index;
28         /* EFI Interface Media descriptor struct, referenced by ops */
29         struct efi_block_io_media media;
30         /* EFI device path to this block device */
31         struct efi_device_path *dp;
32         /* partition # */
33         unsigned int part;
34         /* handle to filesys proto (for partition objects) */
35         struct efi_simple_file_system_protocol *volume;
36         /* Offset into disk for simple partitions */
37         lbaint_t offset;
38         /* Internal block device */
39         struct blk_desc *desc;
40 };
41
42 static efi_status_t EFIAPI efi_disk_reset(struct efi_block_io *this,
43                         char extended_verification)
44 {
45         EFI_ENTRY("%p, %x", this, extended_verification);
46         return EFI_EXIT(EFI_DEVICE_ERROR);
47 }
48
49 enum efi_disk_direction {
50         EFI_DISK_READ,
51         EFI_DISK_WRITE,
52 };
53
54 static efi_status_t efi_disk_rw_blocks(struct efi_block_io *this,
55                         u32 media_id, u64 lba, unsigned long buffer_size,
56                         void *buffer, enum efi_disk_direction direction)
57 {
58         struct efi_disk_obj *diskobj;
59         struct blk_desc *desc;
60         int blksz;
61         int blocks;
62         unsigned long n;
63
64         diskobj = container_of(this, struct efi_disk_obj, ops);
65         desc = (struct blk_desc *) diskobj->desc;
66         blksz = desc->blksz;
67         blocks = buffer_size / blksz;
68         lba += diskobj->offset;
69
70         debug("EFI: %s:%d blocks=%x lba=%"PRIx64" blksz=%x dir=%d\n", __func__,
71               __LINE__, blocks, lba, blksz, direction);
72
73         /* We only support full block access */
74         if (buffer_size & (blksz - 1))
75                 return EFI_DEVICE_ERROR;
76
77         if (direction == EFI_DISK_READ)
78                 n = blk_dread(desc, lba, blocks, buffer);
79         else
80                 n = blk_dwrite(desc, lba, blocks, buffer);
81
82         /* We don't do interrupts, so check for timers cooperatively */
83         efi_timer_check();
84
85         debug("EFI: %s:%d n=%lx blocks=%x\n", __func__, __LINE__, n, blocks);
86
87         if (n != blocks)
88                 return EFI_DEVICE_ERROR;
89
90         return EFI_SUCCESS;
91 }
92
93 static efi_status_t EFIAPI efi_disk_read_blocks(struct efi_block_io *this,
94                         u32 media_id, u64 lba, unsigned long buffer_size,
95                         void *buffer)
96 {
97         void *real_buffer = buffer;
98         efi_status_t r;
99
100 #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
101         if (buffer_size > EFI_LOADER_BOUNCE_BUFFER_SIZE) {
102                 r = efi_disk_read_blocks(this, media_id, lba,
103                         EFI_LOADER_BOUNCE_BUFFER_SIZE, buffer);
104                 if (r != EFI_SUCCESS)
105                         return r;
106                 return efi_disk_read_blocks(this, media_id, lba +
107                         EFI_LOADER_BOUNCE_BUFFER_SIZE / this->media->block_size,
108                         buffer_size - EFI_LOADER_BOUNCE_BUFFER_SIZE,
109                         buffer + EFI_LOADER_BOUNCE_BUFFER_SIZE);
110         }
111
112         real_buffer = efi_bounce_buffer;
113 #endif
114
115         EFI_ENTRY("%p, %x, %"PRIx64", %lx, %p", this, media_id, lba,
116                   buffer_size, buffer);
117
118         r = efi_disk_rw_blocks(this, media_id, lba, buffer_size, real_buffer,
119                                EFI_DISK_READ);
120
121         /* Copy from bounce buffer to real buffer if necessary */
122         if ((r == EFI_SUCCESS) && (real_buffer != buffer))
123                 memcpy(buffer, real_buffer, buffer_size);
124
125         return EFI_EXIT(r);
126 }
127
128 static efi_status_t EFIAPI efi_disk_write_blocks(struct efi_block_io *this,
129                         u32 media_id, u64 lba, unsigned long buffer_size,
130                         void *buffer)
131 {
132         void *real_buffer = buffer;
133         efi_status_t r;
134
135 #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
136         if (buffer_size > EFI_LOADER_BOUNCE_BUFFER_SIZE) {
137                 r = efi_disk_write_blocks(this, media_id, lba,
138                         EFI_LOADER_BOUNCE_BUFFER_SIZE, buffer);
139                 if (r != EFI_SUCCESS)
140                         return r;
141                 return efi_disk_write_blocks(this, media_id, lba +
142                         EFI_LOADER_BOUNCE_BUFFER_SIZE / this->media->block_size,
143                         buffer_size - EFI_LOADER_BOUNCE_BUFFER_SIZE,
144                         buffer + EFI_LOADER_BOUNCE_BUFFER_SIZE);
145         }
146
147         real_buffer = efi_bounce_buffer;
148 #endif
149
150         EFI_ENTRY("%p, %x, %"PRIx64", %lx, %p", this, media_id, lba,
151                   buffer_size, buffer);
152
153         /* Populate bounce buffer if necessary */
154         if (real_buffer != buffer)
155                 memcpy(real_buffer, buffer, buffer_size);
156
157         r = efi_disk_rw_blocks(this, media_id, lba, buffer_size, real_buffer,
158                                EFI_DISK_WRITE);
159
160         return EFI_EXIT(r);
161 }
162
163 static efi_status_t EFIAPI efi_disk_flush_blocks(struct efi_block_io *this)
164 {
165         /* We always write synchronously */
166         EFI_ENTRY("%p", this);
167         return EFI_EXIT(EFI_SUCCESS);
168 }
169
170 static const struct efi_block_io block_io_disk_template = {
171         .reset = &efi_disk_reset,
172         .read_blocks = &efi_disk_read_blocks,
173         .write_blocks = &efi_disk_write_blocks,
174         .flush_blocks = &efi_disk_flush_blocks,
175 };
176
177 /*
178  * Find filesystem from a device-path.  The passed in path 'p' probably
179  * contains one or more /File(name) nodes, so the comparison stops at
180  * the first /File() node, and returns the pointer to that via 'rp'.
181  * This is mostly intended to be a helper to map a device-path to an
182  * efi_file_handle object.
183  */
184 struct efi_simple_file_system_protocol *
185 efi_fs_from_path(struct efi_device_path *fp)
186 {
187         struct efi_object *efiobj;
188         struct efi_disk_obj *diskobj;
189
190         efiobj = efi_dp_find_obj(fp, NULL);
191         if (!efiobj)
192                 return NULL;
193
194         diskobj = container_of(efiobj, struct efi_disk_obj, parent);
195
196         return diskobj->volume;
197 }
198
199 /*
200  * Create a device for a disk
201  *
202  * @name        not used
203  * @if_typename interface name for block device
204  * @desc        internal block device
205  * @dev_index   device index for block device
206  * @offset      offset into disk for simple partitions
207  */
208 static void efi_disk_add_dev(const char *name,
209                              const char *if_typename,
210                              struct blk_desc *desc,
211                              int dev_index,
212                              lbaint_t offset,
213                              unsigned int part)
214 {
215         struct efi_disk_obj *diskobj;
216         efi_status_t ret;
217
218         /* Don't add empty devices */
219         if (!desc->lba)
220                 return;
221
222         diskobj = calloc(1, sizeof(*diskobj));
223         if (!diskobj)
224                 goto out_of_memory;
225
226         /* Hook up to the device list */
227         efi_add_handle(&diskobj->parent);
228
229         /* Fill in object data */
230         diskobj->dp = efi_dp_from_part(desc, part);
231         diskobj->part = part;
232         ret = efi_add_protocol(diskobj->parent.handle, &efi_block_io_guid,
233                                &diskobj->ops);
234         if (ret != EFI_SUCCESS)
235                 goto out_of_memory;
236         ret = efi_add_protocol(diskobj->parent.handle, &efi_guid_device_path,
237                                diskobj->dp);
238         if (ret != EFI_SUCCESS)
239                 goto out_of_memory;
240         if (part >= 1) {
241                 diskobj->volume = efi_simple_file_system(desc, part,
242                                                          diskobj->dp);
243                 ret = efi_add_protocol(diskobj->parent.handle,
244                                        &efi_simple_file_system_protocol_guid,
245                                        &diskobj->volume);
246                 if (ret != EFI_SUCCESS)
247                         goto out_of_memory;
248         }
249         diskobj->ops = block_io_disk_template;
250         diskobj->ifname = if_typename;
251         diskobj->dev_index = dev_index;
252         diskobj->offset = offset;
253         diskobj->desc = desc;
254
255         /* Fill in EFI IO Media info (for read/write callbacks) */
256         diskobj->media.removable_media = desc->removable;
257         diskobj->media.media_present = 1;
258         diskobj->media.block_size = desc->blksz;
259         diskobj->media.io_align = desc->blksz;
260         diskobj->media.last_block = desc->lba - offset;
261         if (part != 0)
262                 diskobj->media.logical_partition = 1;
263         diskobj->ops.media = &diskobj->media;
264         return;
265 out_of_memory:
266         printf("ERROR: Out of memory\n");
267 }
268
269 static int efi_disk_create_partitions(struct blk_desc *desc,
270                                       const char *if_typename,
271                                       int diskid,
272                                       const char *pdevname)
273 {
274         int disks = 0;
275         char devname[32] = { 0 }; /* dp->str is u16[32] long */
276         disk_partition_t info;
277         int part;
278
279         /* Add devices for each partition */
280         for (part = 1; part <= MAX_SEARCH_PARTITIONS; part++) {
281                 if (part_get_info(desc, part, &info))
282                         continue;
283                 snprintf(devname, sizeof(devname), "%s:%d", pdevname,
284                          part);
285                 efi_disk_add_dev(devname, if_typename, desc, diskid,
286                                  info.start, part);
287                 disks++;
288         }
289
290         return disks;
291 }
292
293 /*
294  * U-Boot doesn't have a list of all online disk devices. So when running our
295  * EFI payload, we scan through all of the potentially available ones and
296  * store them in our object pool.
297  *
298  * TODO(sjg@chromium.org): Actually with CONFIG_BLK, U-Boot does have this.
299  * Consider converting the code to look up devices as needed. The EFI device
300  * could be a child of the UCLASS_BLK block device, perhaps.
301  *
302  * This gets called from do_bootefi_exec().
303  */
304 int efi_disk_register(void)
305 {
306         int disks = 0;
307 #ifdef CONFIG_BLK
308         struct udevice *dev;
309
310         for (uclass_first_device_check(UCLASS_BLK, &dev);
311              dev;
312              uclass_next_device_check(&dev)) {
313                 struct blk_desc *desc = dev_get_uclass_platdata(dev);
314                 const char *if_typename = dev->driver->name;
315
316                 printf("Scanning disk %s...\n", dev->name);
317
318                 /* Add block device for the full device */
319                 efi_disk_add_dev(dev->name, if_typename, desc,
320                                  desc->devnum, 0, 0);
321
322                 disks++;
323
324                 /* Partitions show up as block devices in EFI */
325                 disks += efi_disk_create_partitions(desc, if_typename,
326                                                     desc->devnum, dev->name);
327         }
328 #else
329         int i, if_type;
330
331         /* Search for all available disk devices */
332         for (if_type = 0; if_type < IF_TYPE_COUNT; if_type++) {
333                 const struct blk_driver *cur_drvr;
334                 const char *if_typename;
335
336                 cur_drvr = blk_driver_lookup_type(if_type);
337                 if (!cur_drvr)
338                         continue;
339
340                 if_typename = cur_drvr->if_typename;
341                 printf("Scanning disks on %s...\n", if_typename);
342                 for (i = 0; i < 4; i++) {
343                         struct blk_desc *desc;
344                         char devname[32] = { 0 }; /* dp->str is u16[32] long */
345
346                         desc = blk_get_devnum_by_type(if_type, i);
347                         if (!desc)
348                                 continue;
349                         if (desc->type == DEV_TYPE_UNKNOWN)
350                                 continue;
351
352                         snprintf(devname, sizeof(devname), "%s%d",
353                                  if_typename, i);
354
355                         /* Add block device for the full device */
356                         efi_disk_add_dev(devname, if_typename, desc, i, 0, 0);
357                         disks++;
358
359                         /* Partitions show up as block devices in EFI */
360                         disks += efi_disk_create_partitions(desc, if_typename,
361                                                             i, devname);
362                 }
363         }
364 #endif
365         printf("Found %d disks\n", disks);
366
367         return 0;
368 }