1f61f5a0bSWarner Losh /*-
2f61f5a0bSWarner Losh * Copyright (c) 2019 Netflix, Inc
3f61f5a0bSWarner Losh *
4f61f5a0bSWarner Losh * Redistribution and use in source and binary forms, with or without
5f61f5a0bSWarner Losh * modification, are permitted provided that the following conditions
6f61f5a0bSWarner Losh * are met:
7f61f5a0bSWarner Losh * 1. Redistributions of source code must retain the above copyright
8f61f5a0bSWarner Losh * notice, this list of conditions and the following disclaimer.
9f61f5a0bSWarner Losh * 2. Redistributions in binary form must reproduce the above copyright
10f61f5a0bSWarner Losh * notice, this list of conditions and the following disclaimer in the
11f61f5a0bSWarner Losh * documentation and/or other materials provided with the distribution.
12f61f5a0bSWarner Losh *
13f61f5a0bSWarner Losh * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
14f61f5a0bSWarner Losh * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
15f61f5a0bSWarner Losh * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
16f61f5a0bSWarner Losh * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
17f61f5a0bSWarner Losh * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
18f61f5a0bSWarner Losh * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
19f61f5a0bSWarner Losh * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
20f61f5a0bSWarner Losh * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
21f61f5a0bSWarner Losh * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
22f61f5a0bSWarner Losh * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
23f61f5a0bSWarner Losh * SUCH DAMAGE.
24f61f5a0bSWarner Losh */
25f61f5a0bSWarner Losh
26f61f5a0bSWarner Losh #include <sys/param.h>
27f61f5a0bSWarner Losh #include <machine/elf.h>
28f61f5a0bSWarner Losh #include <machine/stdarg.h>
29f61f5a0bSWarner Losh #include <stand.h>
30f61f5a0bSWarner Losh
31f61f5a0bSWarner Losh #include <efi.h>
32f61f5a0bSWarner Losh #include <eficonsctl.h>
33f61f5a0bSWarner Losh #include <efichar.h>
34f61f5a0bSWarner Losh
35f61f5a0bSWarner Losh #include "boot_module.h"
36f61f5a0bSWarner Losh #include "paths.h"
37f61f5a0bSWarner Losh #include "proto.h"
38f61f5a0bSWarner Losh
39f61f5a0bSWarner Losh #include "gpt.h"
40f61f5a0bSWarner Losh #include <sys/gpt.h>
41f61f5a0bSWarner Losh static const uuid_t freebsd_ufs_uuid = GPT_ENT_TYPE_FREEBSD_UFS;
42*cadd7992SMitchell Horne static char secbuf[4096] __aligned(4096);
43f61f5a0bSWarner Losh static struct dsk dsk;
44f61f5a0bSWarner Losh static dev_info_t *devices = NULL;
45f61f5a0bSWarner Losh static dev_info_t *raw_device = NULL;
46f61f5a0bSWarner Losh
47f61f5a0bSWarner Losh static EFI_GUID BlockIoProtocolGUID = BLOCK_IO_PROTOCOL;
48f61f5a0bSWarner Losh static EFI_GUID DevicePathGUID = DEVICE_PATH_PROTOCOL;
49f61f5a0bSWarner Losh
50f61f5a0bSWarner Losh /*
51f61f5a0bSWarner Losh * Shim routine for the gpt code to read in the gpt table. The
52f61f5a0bSWarner Losh * devinfo is always going to be for the raw device.
53f61f5a0bSWarner Losh */
54f61f5a0bSWarner Losh int
drvread(struct dsk * dskp,void * buf,daddr_t lba,unsigned nblk)55f61f5a0bSWarner Losh drvread(struct dsk *dskp, void *buf, daddr_t lba, unsigned nblk)
56f61f5a0bSWarner Losh {
57f61f5a0bSWarner Losh int size;
58f61f5a0bSWarner Losh EFI_STATUS status;
59f61f5a0bSWarner Losh dev_info_t *devinfo = (dev_info_t *)dskp->devinfo;
60f61f5a0bSWarner Losh EFI_BLOCK_IO *dev = devinfo->dev;
61f61f5a0bSWarner Losh
62f61f5a0bSWarner Losh lba = lba / (dev->Media->BlockSize / DEV_BSIZE);
63f61f5a0bSWarner Losh size = nblk * DEV_BSIZE;
64f61f5a0bSWarner Losh
65f61f5a0bSWarner Losh status = dev->ReadBlocks(dev, dev->Media->MediaId, lba, size, buf);
66f61f5a0bSWarner Losh if (status != EFI_SUCCESS) {
67f61f5a0bSWarner Losh DPRINTF("dskread: failed dev: %p, id: %u, lba: %ju, size: %d, "
68f61f5a0bSWarner Losh "status: %lu\n", devinfo->dev,
69f61f5a0bSWarner Losh dev->Media->MediaId, (uintmax_t)lba, size,
70f61f5a0bSWarner Losh EFI_ERROR_CODE(status));
71f61f5a0bSWarner Losh return (-1);
72f61f5a0bSWarner Losh }
73f61f5a0bSWarner Losh
74f61f5a0bSWarner Losh return (0);
75f61f5a0bSWarner Losh }
76f61f5a0bSWarner Losh
77f61f5a0bSWarner Losh /*
78f61f5a0bSWarner Losh * Shim routine for the gpt code to write in the gpt table. The
79f61f5a0bSWarner Losh * devinfo is always going to be for the raw device.
80f61f5a0bSWarner Losh */
81f61f5a0bSWarner Losh int
drvwrite(struct dsk * dskp,void * buf,daddr_t lba,unsigned nblk)82f61f5a0bSWarner Losh drvwrite(struct dsk *dskp, void *buf, daddr_t lba, unsigned nblk)
83f61f5a0bSWarner Losh {
84f61f5a0bSWarner Losh int size;
85f61f5a0bSWarner Losh EFI_STATUS status;
86f61f5a0bSWarner Losh dev_info_t *devinfo = (dev_info_t *)dskp->devinfo;
87f61f5a0bSWarner Losh EFI_BLOCK_IO *dev = devinfo->dev;
88f61f5a0bSWarner Losh
89f61f5a0bSWarner Losh if (dev->Media->ReadOnly)
90f61f5a0bSWarner Losh return -1;
91f61f5a0bSWarner Losh
92f61f5a0bSWarner Losh lba = lba / (dev->Media->BlockSize / DEV_BSIZE);
93f61f5a0bSWarner Losh size = nblk * DEV_BSIZE;
94f61f5a0bSWarner Losh
95f61f5a0bSWarner Losh status = dev->WriteBlocks(dev, dev->Media->MediaId, lba, size, buf);
96f61f5a0bSWarner Losh if (status != EFI_SUCCESS) {
97f61f5a0bSWarner Losh DPRINTF("dskread: failed dev: %p, id: %u, lba: %ju, size: %d, "
98f61f5a0bSWarner Losh "status: %lu\n", devinfo->dev,
99f61f5a0bSWarner Losh dev->Media->MediaId, (uintmax_t)lba, size,
100f61f5a0bSWarner Losh EFI_ERROR_CODE(status));
101f61f5a0bSWarner Losh return (-1);
102f61f5a0bSWarner Losh }
103f61f5a0bSWarner Losh
104f61f5a0bSWarner Losh return (0);
105f61f5a0bSWarner Losh }
106f61f5a0bSWarner Losh
107f61f5a0bSWarner Losh /*
108f61f5a0bSWarner Losh * Return the number of LBAs the drive has.
109f61f5a0bSWarner Losh */
110f61f5a0bSWarner Losh uint64_t
drvsize(struct dsk * dskp)111f61f5a0bSWarner Losh drvsize(struct dsk *dskp)
112f61f5a0bSWarner Losh {
113f61f5a0bSWarner Losh dev_info_t *devinfo = (dev_info_t *)dskp->devinfo;
114f61f5a0bSWarner Losh EFI_BLOCK_IO *dev = devinfo->dev;
115f61f5a0bSWarner Losh
116f61f5a0bSWarner Losh return (dev->Media->LastBlock + 1);
117f61f5a0bSWarner Losh }
118f61f5a0bSWarner Losh
119f61f5a0bSWarner Losh static int
partition_number(EFI_DEVICE_PATH * devpath)120f61f5a0bSWarner Losh partition_number(EFI_DEVICE_PATH *devpath)
121f61f5a0bSWarner Losh {
122f61f5a0bSWarner Losh EFI_DEVICE_PATH *md;
123f61f5a0bSWarner Losh HARDDRIVE_DEVICE_PATH *hd;
124f61f5a0bSWarner Losh
125f61f5a0bSWarner Losh md = efi_devpath_last_node(devpath);
126f61f5a0bSWarner Losh if (md == NULL)
127f61f5a0bSWarner Losh return (-1);
128f61f5a0bSWarner Losh if (DevicePathSubType(md) != MEDIA_HARDDRIVE_DP)
129f61f5a0bSWarner Losh return (-1);
130f61f5a0bSWarner Losh hd = (HARDDRIVE_DEVICE_PATH *)md;
131f61f5a0bSWarner Losh return (hd->PartitionNumber);
132f61f5a0bSWarner Losh }
133f61f5a0bSWarner Losh
134f61f5a0bSWarner Losh /*
135f61f5a0bSWarner Losh * Find the raw partition for the imgpath and save it
136f61f5a0bSWarner Losh */
137f61f5a0bSWarner Losh static void
probe_handle(EFI_HANDLE h,EFI_DEVICE_PATH * imgpath)138f61f5a0bSWarner Losh probe_handle(EFI_HANDLE h, EFI_DEVICE_PATH *imgpath)
139f61f5a0bSWarner Losh {
140f61f5a0bSWarner Losh dev_info_t *devinfo;
141f61f5a0bSWarner Losh EFI_BLOCK_IO *blkio;
142f61f5a0bSWarner Losh EFI_DEVICE_PATH *devpath, *trimmed = NULL;
143f61f5a0bSWarner Losh EFI_STATUS status;
144f61f5a0bSWarner Losh
145f61f5a0bSWarner Losh /* Figure out if we're dealing with an actual partition. */
146110d56cbSToomas Soome status = OpenProtocolByHandle(h, &DevicePathGUID, (void **)&devpath);
147f61f5a0bSWarner Losh if (status != EFI_SUCCESS)
148f61f5a0bSWarner Losh return;
149f61f5a0bSWarner Losh #ifdef EFI_DEBUG
150f61f5a0bSWarner Losh {
151f61f5a0bSWarner Losh CHAR16 *text = efi_devpath_name(devpath);
152f61f5a0bSWarner Losh DPRINTF("probing: %S ", text);
153f61f5a0bSWarner Losh efi_free_devpath_name(text);
154f61f5a0bSWarner Losh }
155f61f5a0bSWarner Losh #endif
156f61f5a0bSWarner Losh /*
157f61f5a0bSWarner Losh * The RAW device is the same as the imgpath with the last
158f61f5a0bSWarner Losh * MEDIA_DEVICE bit trimmed off. imgpath will end with the
159f61f5a0bSWarner Losh * MEDIA_DEVICE for the ESP we booted off of.
160f61f5a0bSWarner Losh */
161f61f5a0bSWarner Losh if (!efi_devpath_same_disk(imgpath, devpath)) {
162f61f5a0bSWarner Losh trimmed = efi_devpath_trim(imgpath);
163f61f5a0bSWarner Losh if (!efi_devpath_match(trimmed, devpath)) {
164f61f5a0bSWarner Losh free(trimmed);
165f61f5a0bSWarner Losh DPRINTF("Not the same disk\n");
166f61f5a0bSWarner Losh return;
167f61f5a0bSWarner Losh }
168f61f5a0bSWarner Losh }
169110d56cbSToomas Soome status = OpenProtocolByHandle(h, &BlockIoProtocolGUID, (void **)&blkio);
170f61f5a0bSWarner Losh if (status != EFI_SUCCESS) {
171f61f5a0bSWarner Losh DPRINTF("Can't get the block I/O protocol block\n");
172f61f5a0bSWarner Losh return;
173f61f5a0bSWarner Losh }
174f61f5a0bSWarner Losh devinfo = malloc(sizeof(*devinfo));
175f61f5a0bSWarner Losh if (devinfo == NULL) {
176f61f5a0bSWarner Losh DPRINTF("Failed to allocate devinfo\n");
177f61f5a0bSWarner Losh return;
178f61f5a0bSWarner Losh }
179f61f5a0bSWarner Losh devinfo->dev = blkio;
180f61f5a0bSWarner Losh devinfo->devpath = devpath;
181f61f5a0bSWarner Losh devinfo->devhandle = h;
182f61f5a0bSWarner Losh devinfo->preferred = 1;
183f61f5a0bSWarner Losh devinfo->next = NULL;
184f61f5a0bSWarner Losh devinfo->devdata = NULL;
185f61f5a0bSWarner Losh if (trimmed == NULL) {
186f61f5a0bSWarner Losh DPRINTF("Found partition %d\n", partition_number(devpath));
187f61f5a0bSWarner Losh add_device(&devices, devinfo);
188f61f5a0bSWarner Losh } else {
189f61f5a0bSWarner Losh free(trimmed);
190f61f5a0bSWarner Losh DPRINTF("Found raw device\n");
191f61f5a0bSWarner Losh if (raw_device) {
192f61f5a0bSWarner Losh printf(BOOTPROG": Found two raw devices, inconceivable?\n");
193f61f5a0bSWarner Losh return;
194f61f5a0bSWarner Losh }
195f61f5a0bSWarner Losh raw_device = devinfo;
196f61f5a0bSWarner Losh }
197f61f5a0bSWarner Losh }
198f61f5a0bSWarner Losh
199f61f5a0bSWarner Losh static void
probe_handles(EFI_HANDLE * handles,UINTN nhandles,EFI_DEVICE_PATH * imgpath)200f61f5a0bSWarner Losh probe_handles(EFI_HANDLE *handles, UINTN nhandles, EFI_DEVICE_PATH *imgpath)
201f61f5a0bSWarner Losh {
202f61f5a0bSWarner Losh UINTN i;
203f61f5a0bSWarner Losh
204f61f5a0bSWarner Losh for (i = 0; i < nhandles; i++)
205f61f5a0bSWarner Losh probe_handle(handles[i], imgpath);
206f61f5a0bSWarner Losh }
207f61f5a0bSWarner Losh
208f61f5a0bSWarner Losh static dev_info_t *
find_partition(int part)209f61f5a0bSWarner Losh find_partition(int part)
210f61f5a0bSWarner Losh {
211f61f5a0bSWarner Losh dev_info_t *dev;
212f61f5a0bSWarner Losh
213f61f5a0bSWarner Losh if (part == 0)
214f61f5a0bSWarner Losh return (NULL);
215f61f5a0bSWarner Losh for (dev = devices; dev != NULL; dev = dev->next)
216f61f5a0bSWarner Losh if (partition_number(dev->devpath) == part)
217f61f5a0bSWarner Losh break;
218f61f5a0bSWarner Losh return (dev);
219f61f5a0bSWarner Losh }
220f61f5a0bSWarner Losh
221f61f5a0bSWarner Losh void
choice_protocol(EFI_HANDLE * handles,UINTN nhandles,EFI_DEVICE_PATH * imgpath)222f61f5a0bSWarner Losh choice_protocol(EFI_HANDLE *handles, UINTN nhandles, EFI_DEVICE_PATH *imgpath)
223f61f5a0bSWarner Losh {
224f61f5a0bSWarner Losh const boot_module_t *mod = &ufs_module;
225f61f5a0bSWarner Losh dev_info_t *bootdev;
226f61f5a0bSWarner Losh void *loaderbuf;
227f61f5a0bSWarner Losh size_t loadersize;
228f61f5a0bSWarner Losh int parts;
229f61f5a0bSWarner Losh const char *fn = PATH_LOADER_EFI;
230f61f5a0bSWarner Losh
231f61f5a0bSWarner Losh /*
232f61f5a0bSWarner Losh * Probe the provided handles to find the partitions that
233f61f5a0bSWarner Losh * are on the same drive.
234f61f5a0bSWarner Losh */
235f61f5a0bSWarner Losh probe_handles(handles, nhandles, imgpath);
236f61f5a0bSWarner Losh dsk.devinfo = raw_device;
237f61f5a0bSWarner Losh if (dsk.devinfo == NULL) {
238f61f5a0bSWarner Losh printf(BOOTPROG": unable to find raw disk to read gpt\n");
239f61f5a0bSWarner Losh return;
240f61f5a0bSWarner Losh }
241f61f5a0bSWarner Losh
242f61f5a0bSWarner Losh /*
243f61f5a0bSWarner Losh * Read in the GPT table, and then find the right partition.
244f61f5a0bSWarner Losh * gptread, gptfind and gptfaileboot are shared with the
245f61f5a0bSWarner Losh * BIOS version of the gptboot program.
246f61f5a0bSWarner Losh */
247f61f5a0bSWarner Losh if (gptread(&dsk, secbuf) == -1) {
248f61f5a0bSWarner Losh printf(BOOTPROG ": unable to load GPT\n");
249f61f5a0bSWarner Losh return;
250f61f5a0bSWarner Losh }
251f61f5a0bSWarner Losh // XXX:
252f61f5a0bSWarner Losh // real gptboot can parse a command line before trying this loop.
253f61f5a0bSWarner Losh // But since we don't parse anything at all, hard wire the partition
254f61f5a0bSWarner Losh // to be -1 (meaning look for the next one).
255f61f5a0bSWarner Losh parts = 0;
256f61f5a0bSWarner Losh while (gptfind(&freebsd_ufs_uuid, &dsk, -1) != -1) {
257f61f5a0bSWarner Losh parts++;
258f61f5a0bSWarner Losh bootdev = find_partition(dsk.part);
259f61f5a0bSWarner Losh if (bootdev == NULL) {
260f61f5a0bSWarner Losh printf(BOOTPROG": Can't find partition %d\n",
261f61f5a0bSWarner Losh dsk.part);
262f61f5a0bSWarner Losh goto next;
263f61f5a0bSWarner Losh }
264f61f5a0bSWarner Losh if (mod->load(fn, bootdev, &loaderbuf, &loadersize) !=
265f61f5a0bSWarner Losh EFI_SUCCESS) {
266f61f5a0bSWarner Losh printf(BOOTPROG": Can't load %s from partition %d\n",
267f61f5a0bSWarner Losh fn, dsk.part);
268f61f5a0bSWarner Losh goto next;
269f61f5a0bSWarner Losh }
270f61f5a0bSWarner Losh try_boot(mod, bootdev, loaderbuf, loadersize);
271f61f5a0bSWarner Losh next:
272f61f5a0bSWarner Losh gptbootfailed(&dsk);
273f61f5a0bSWarner Losh }
274f61f5a0bSWarner Losh if (parts == 0)
275f61f5a0bSWarner Losh printf("%s: no UFS partition was found\n", BOOTPROG);
276f61f5a0bSWarner Losh }
277