1*145eba1aSCai Huoqing // SPDX-License-Identifier: GPL-2.0 or BSD-3-Clause
2f48ad614SDennis Dalessandro /*
3f48ad614SDennis Dalessandro * Copyright(c) 2015, 2016 Intel Corporation.
4f48ad614SDennis Dalessandro */
5*145eba1aSCai Huoqing
6f48ad614SDennis Dalessandro #include <linux/delay.h>
7f48ad614SDennis Dalessandro #include "hfi.h"
8f48ad614SDennis Dalessandro #include "common.h"
9f48ad614SDennis Dalessandro #include "eprom.h"
10f48ad614SDennis Dalessandro
11e2113752SDean Luick /*
12e2113752SDean Luick * The EPROM is logically divided into three partitions:
13e2113752SDean Luick * partition 0: the first 128K, visible from PCI ROM BAR
14e2113752SDean Luick * partition 1: 4K config file (sector size)
15e2113752SDean Luick * partition 2: the rest
16e2113752SDean Luick */
17e2113752SDean Luick #define P0_SIZE (128 * 1024)
18e2113752SDean Luick #define P1_SIZE (4 * 1024)
19e2113752SDean Luick #define P1_START P0_SIZE
20e2113752SDean Luick #define P2_START (P0_SIZE + P1_SIZE)
21e2113752SDean Luick
22e2113752SDean Luick /* controller page size, in bytes */
23e2113752SDean Luick #define EP_PAGE_SIZE 256
24e2113752SDean Luick #define EP_PAGE_MASK (EP_PAGE_SIZE - 1)
25e2113752SDean Luick #define EP_PAGE_DWORDS (EP_PAGE_SIZE / sizeof(u32))
26e2113752SDean Luick
27e2113752SDean Luick /* controller commands */
28f48ad614SDennis Dalessandro #define CMD_SHIFT 24
29e2113752SDean Luick #define CMD_NOP (0)
30e2113752SDean Luick #define CMD_READ_DATA(addr) ((0x03 << CMD_SHIFT) | addr)
31f48ad614SDennis Dalessandro #define CMD_RELEASE_POWERDOWN_NOID ((0xab << CMD_SHIFT))
32f48ad614SDennis Dalessandro
33f48ad614SDennis Dalessandro /* controller interface speeds */
34f48ad614SDennis Dalessandro #define EP_SPEED_FULL 0x2 /* full speed */
35f48ad614SDennis Dalessandro
36f48ad614SDennis Dalessandro /*
37f48ad614SDennis Dalessandro * How long to wait for the EPROM to become available, in ms.
38f48ad614SDennis Dalessandro * The spec 32 Mb EPROM takes around 40s to erase then write.
39f48ad614SDennis Dalessandro * Double it for safety.
40f48ad614SDennis Dalessandro */
41f48ad614SDennis Dalessandro #define EPROM_TIMEOUT 80000 /* ms */
42e2113752SDean Luick
43e2113752SDean Luick /*
44e2113752SDean Luick * Read a 256 byte (64 dword) EPROM page.
45e2113752SDean Luick * All callers have verified the offset is at a page boundary.
46e2113752SDean Luick */
read_page(struct hfi1_devdata * dd,u32 offset,u32 * result)47e2113752SDean Luick static void read_page(struct hfi1_devdata *dd, u32 offset, u32 *result)
48e2113752SDean Luick {
49e2113752SDean Luick int i;
50e2113752SDean Luick
51e2113752SDean Luick write_csr(dd, ASIC_EEP_ADDR_CMD, CMD_READ_DATA(offset));
52e2113752SDean Luick for (i = 0; i < EP_PAGE_DWORDS; i++)
53e2113752SDean Luick result[i] = (u32)read_csr(dd, ASIC_EEP_DATA);
54e2113752SDean Luick write_csr(dd, ASIC_EEP_ADDR_CMD, CMD_NOP); /* close open page */
55e2113752SDean Luick }
56e2113752SDean Luick
57e2113752SDean Luick /*
58e2113752SDean Luick * Read length bytes starting at offset from the start of the EPROM.
59e2113752SDean Luick */
read_length(struct hfi1_devdata * dd,u32 start,u32 len,void * dest)60e2113752SDean Luick static int read_length(struct hfi1_devdata *dd, u32 start, u32 len, void *dest)
61e2113752SDean Luick {
62e2113752SDean Luick u32 buffer[EP_PAGE_DWORDS];
63e2113752SDean Luick u32 end;
64e2113752SDean Luick u32 start_offset;
65e2113752SDean Luick u32 read_start;
66e2113752SDean Luick u32 bytes;
67e2113752SDean Luick
68e2113752SDean Luick if (len == 0)
69e2113752SDean Luick return 0;
70e2113752SDean Luick
71e2113752SDean Luick end = start + len;
72e2113752SDean Luick
73e2113752SDean Luick /*
74e2113752SDean Luick * Make sure the read range is not outside of the controller read
75e2113752SDean Luick * command address range. Note that '>' is correct below - the end
76e2113752SDean Luick * of the range is OK if it stops at the limit, but no higher.
77e2113752SDean Luick */
78e2113752SDean Luick if (end > (1 << CMD_SHIFT))
79e2113752SDean Luick return -EINVAL;
80e2113752SDean Luick
81e2113752SDean Luick /* read the first partial page */
82e2113752SDean Luick start_offset = start & EP_PAGE_MASK;
83e2113752SDean Luick if (start_offset) {
84e2113752SDean Luick /* partial starting page */
85e2113752SDean Luick
86e2113752SDean Luick /* align and read the page that contains the start */
87e2113752SDean Luick read_start = start & ~EP_PAGE_MASK;
88e2113752SDean Luick read_page(dd, read_start, buffer);
89e2113752SDean Luick
90e2113752SDean Luick /* the rest of the page is available data */
91e2113752SDean Luick bytes = EP_PAGE_SIZE - start_offset;
92e2113752SDean Luick
93e2113752SDean Luick if (len <= bytes) {
94e2113752SDean Luick /* end is within this page */
95e2113752SDean Luick memcpy(dest, (u8 *)buffer + start_offset, len);
96e2113752SDean Luick return 0;
97e2113752SDean Luick }
98e2113752SDean Luick
99e2113752SDean Luick memcpy(dest, (u8 *)buffer + start_offset, bytes);
100e2113752SDean Luick
101e2113752SDean Luick start += bytes;
102e2113752SDean Luick len -= bytes;
103e2113752SDean Luick dest += bytes;
104e2113752SDean Luick }
105e2113752SDean Luick /* start is now page aligned */
106e2113752SDean Luick
107e2113752SDean Luick /* read whole pages */
108e2113752SDean Luick while (len >= EP_PAGE_SIZE) {
109e2113752SDean Luick read_page(dd, start, buffer);
110e2113752SDean Luick memcpy(dest, buffer, EP_PAGE_SIZE);
111e2113752SDean Luick
112e2113752SDean Luick start += EP_PAGE_SIZE;
113e2113752SDean Luick len -= EP_PAGE_SIZE;
114e2113752SDean Luick dest += EP_PAGE_SIZE;
115e2113752SDean Luick }
116e2113752SDean Luick
117e2113752SDean Luick /* read the last partial page */
118e2113752SDean Luick if (len) {
119e2113752SDean Luick read_page(dd, start, buffer);
120e2113752SDean Luick memcpy(dest, buffer, len);
121e2113752SDean Luick }
122e2113752SDean Luick
123e2113752SDean Luick return 0;
124e2113752SDean Luick }
125e2113752SDean Luick
126f48ad614SDennis Dalessandro /*
127f48ad614SDennis Dalessandro * Initialize the EPROM handler.
128f48ad614SDennis Dalessandro */
eprom_init(struct hfi1_devdata * dd)129f48ad614SDennis Dalessandro int eprom_init(struct hfi1_devdata *dd)
130f48ad614SDennis Dalessandro {
131f48ad614SDennis Dalessandro int ret = 0;
132f48ad614SDennis Dalessandro
133f48ad614SDennis Dalessandro /* only the discrete chip has an EPROM */
134f48ad614SDennis Dalessandro if (dd->pcidev->device != PCI_DEVICE_ID_INTEL0)
135f48ad614SDennis Dalessandro return 0;
136f48ad614SDennis Dalessandro
137f48ad614SDennis Dalessandro /*
138f48ad614SDennis Dalessandro * It is OK if both HFIs reset the EPROM as long as they don't
139f48ad614SDennis Dalessandro * do it at the same time.
140f48ad614SDennis Dalessandro */
141f48ad614SDennis Dalessandro ret = acquire_chip_resource(dd, CR_EPROM, EPROM_TIMEOUT);
142f48ad614SDennis Dalessandro if (ret) {
143f48ad614SDennis Dalessandro dd_dev_err(dd,
144f48ad614SDennis Dalessandro "%s: unable to acquire EPROM resource, no EPROM support\n",
145f48ad614SDennis Dalessandro __func__);
146f48ad614SDennis Dalessandro goto done_asic;
147f48ad614SDennis Dalessandro }
148f48ad614SDennis Dalessandro
149f48ad614SDennis Dalessandro /* reset EPROM to be sure it is in a good state */
150f48ad614SDennis Dalessandro
151f48ad614SDennis Dalessandro /* set reset */
152f48ad614SDennis Dalessandro write_csr(dd, ASIC_EEP_CTL_STAT, ASIC_EEP_CTL_STAT_EP_RESET_SMASK);
153f48ad614SDennis Dalessandro /* clear reset, set speed */
154f48ad614SDennis Dalessandro write_csr(dd, ASIC_EEP_CTL_STAT,
155f48ad614SDennis Dalessandro EP_SPEED_FULL << ASIC_EEP_CTL_STAT_RATE_SPI_SHIFT);
156f48ad614SDennis Dalessandro
157f48ad614SDennis Dalessandro /* wake the device with command "release powerdown NoID" */
158f48ad614SDennis Dalessandro write_csr(dd, ASIC_EEP_ADDR_CMD, CMD_RELEASE_POWERDOWN_NOID);
159f48ad614SDennis Dalessandro
160f48ad614SDennis Dalessandro dd->eprom_available = true;
161f48ad614SDennis Dalessandro release_chip_resource(dd, CR_EPROM);
162f48ad614SDennis Dalessandro done_asic:
163f48ad614SDennis Dalessandro return ret;
164f48ad614SDennis Dalessandro }
165107ffbc5SDean Luick
166753b19afSJan Sokolowski /* magic character sequence that begins an image */
167753b19afSJan Sokolowski #define IMAGE_START_MAGIC "APO="
168753b19afSJan Sokolowski
169753b19afSJan Sokolowski /* magic character sequence that might trail an image */
170107ffbc5SDean Luick #define IMAGE_TRAIL_MAGIC "egamiAPO"
171107ffbc5SDean Luick
17262aeddbfSDean Luick /* EPROM file types */
17362aeddbfSDean Luick #define HFI1_EFT_PLATFORM_CONFIG 2
17462aeddbfSDean Luick
17562aeddbfSDean Luick /* segment size - 128 KiB */
17662aeddbfSDean Luick #define SEG_SIZE (128 * 1024)
17762aeddbfSDean Luick
17862aeddbfSDean Luick struct hfi1_eprom_footer {
17962aeddbfSDean Luick u32 oprom_size; /* size of the oprom, in bytes */
18062aeddbfSDean Luick u16 num_table_entries;
18162aeddbfSDean Luick u16 version; /* version of this footer */
18262aeddbfSDean Luick u32 magic; /* must be last */
18362aeddbfSDean Luick };
18462aeddbfSDean Luick
18562aeddbfSDean Luick struct hfi1_eprom_table_entry {
18662aeddbfSDean Luick u32 type; /* file type */
18762aeddbfSDean Luick u32 offset; /* file offset from start of EPROM */
18862aeddbfSDean Luick u32 size; /* file size, in bytes */
18962aeddbfSDean Luick };
19062aeddbfSDean Luick
19162aeddbfSDean Luick /*
19262aeddbfSDean Luick * Calculate the max number of table entries that will fit within a directory
19362aeddbfSDean Luick * buffer of size 'dir_size'.
19462aeddbfSDean Luick */
19562aeddbfSDean Luick #define MAX_TABLE_ENTRIES(dir_size) \
19662aeddbfSDean Luick (((dir_size) - sizeof(struct hfi1_eprom_footer)) / \
19762aeddbfSDean Luick sizeof(struct hfi1_eprom_table_entry))
19862aeddbfSDean Luick
19962aeddbfSDean Luick #define DIRECTORY_SIZE(n) (sizeof(struct hfi1_eprom_footer) + \
20062aeddbfSDean Luick (sizeof(struct hfi1_eprom_table_entry) * (n)))
20162aeddbfSDean Luick
20262aeddbfSDean Luick #define MAGIC4(a, b, c, d) ((d) << 24 | (c) << 16 | (b) << 8 | (a))
20362aeddbfSDean Luick #define FOOTER_MAGIC MAGIC4('e', 'p', 'r', 'm')
20462aeddbfSDean Luick #define FOOTER_VERSION 1
20562aeddbfSDean Luick
206107ffbc5SDean Luick /*
207107ffbc5SDean Luick * Read all of partition 1. The actual file is at the front. Adjust
208107ffbc5SDean Luick * the returned size if a trailing image magic is found.
209107ffbc5SDean Luick */
read_partition_platform_config(struct hfi1_devdata * dd,void ** data,u32 * size)210107ffbc5SDean Luick static int read_partition_platform_config(struct hfi1_devdata *dd, void **data,
211107ffbc5SDean Luick u32 *size)
212107ffbc5SDean Luick {
213107ffbc5SDean Luick void *buffer;
214107ffbc5SDean Luick void *p;
215753b19afSJan Sokolowski u32 length;
216107ffbc5SDean Luick int ret;
217107ffbc5SDean Luick
218107ffbc5SDean Luick buffer = kmalloc(P1_SIZE, GFP_KERNEL);
219107ffbc5SDean Luick if (!buffer)
220107ffbc5SDean Luick return -ENOMEM;
221107ffbc5SDean Luick
222107ffbc5SDean Luick ret = read_length(dd, P1_START, P1_SIZE, buffer);
223107ffbc5SDean Luick if (ret) {
224107ffbc5SDean Luick kfree(buffer);
225107ffbc5SDean Luick return ret;
226107ffbc5SDean Luick }
227107ffbc5SDean Luick
228753b19afSJan Sokolowski /* config partition is valid only if it starts with IMAGE_START_MAGIC */
229753b19afSJan Sokolowski if (memcmp(buffer, IMAGE_START_MAGIC, strlen(IMAGE_START_MAGIC))) {
230bc5214eeSJan Sokolowski kfree(buffer);
231bc5214eeSJan Sokolowski return -ENOENT;
232bc5214eeSJan Sokolowski }
233107ffbc5SDean Luick
234753b19afSJan Sokolowski /* scan for image magic that may trail the actual data */
235753b19afSJan Sokolowski p = strnstr(buffer, IMAGE_TRAIL_MAGIC, P1_SIZE);
236753b19afSJan Sokolowski if (p)
237753b19afSJan Sokolowski length = p - buffer;
238753b19afSJan Sokolowski else
239753b19afSJan Sokolowski length = P1_SIZE;
240753b19afSJan Sokolowski
241107ffbc5SDean Luick *data = buffer;
242753b19afSJan Sokolowski *size = length;
243107ffbc5SDean Luick return 0;
244107ffbc5SDean Luick }
245107ffbc5SDean Luick
246107ffbc5SDean Luick /*
24762aeddbfSDean Luick * The segment magic has been checked. There is a footer and table of
24862aeddbfSDean Luick * contents present.
24962aeddbfSDean Luick *
25062aeddbfSDean Luick * directory is a u32 aligned buffer of size EP_PAGE_SIZE.
25162aeddbfSDean Luick */
read_segment_platform_config(struct hfi1_devdata * dd,void * directory,void ** data,u32 * size)25262aeddbfSDean Luick static int read_segment_platform_config(struct hfi1_devdata *dd,
25362aeddbfSDean Luick void *directory, void **data, u32 *size)
25462aeddbfSDean Luick {
25562aeddbfSDean Luick struct hfi1_eprom_footer *footer;
25662aeddbfSDean Luick struct hfi1_eprom_table_entry *table;
25762aeddbfSDean Luick struct hfi1_eprom_table_entry *entry;
25862aeddbfSDean Luick void *buffer = NULL;
25962aeddbfSDean Luick void *table_buffer = NULL;
26062aeddbfSDean Luick int ret, i;
26162aeddbfSDean Luick u32 directory_size;
26262aeddbfSDean Luick u32 seg_base, seg_offset;
26362aeddbfSDean Luick u32 bytes_available, ncopied, to_copy;
26462aeddbfSDean Luick
26562aeddbfSDean Luick /* the footer is at the end of the directory */
26662aeddbfSDean Luick footer = (struct hfi1_eprom_footer *)
26762aeddbfSDean Luick (directory + EP_PAGE_SIZE - sizeof(*footer));
26862aeddbfSDean Luick
26962aeddbfSDean Luick /* make sure the structure version is supported */
27062aeddbfSDean Luick if (footer->version != FOOTER_VERSION)
27162aeddbfSDean Luick return -EINVAL;
27262aeddbfSDean Luick
27362aeddbfSDean Luick /* oprom size cannot be larger than a segment */
27462aeddbfSDean Luick if (footer->oprom_size >= SEG_SIZE)
27562aeddbfSDean Luick return -EINVAL;
27662aeddbfSDean Luick
27762aeddbfSDean Luick /* the file table must fit in a segment with the oprom */
27862aeddbfSDean Luick if (footer->num_table_entries >
27962aeddbfSDean Luick MAX_TABLE_ENTRIES(SEG_SIZE - footer->oprom_size))
28062aeddbfSDean Luick return -EINVAL;
28162aeddbfSDean Luick
28262aeddbfSDean Luick /* find the file table start, which precedes the footer */
28362aeddbfSDean Luick directory_size = DIRECTORY_SIZE(footer->num_table_entries);
28462aeddbfSDean Luick if (directory_size <= EP_PAGE_SIZE) {
28562aeddbfSDean Luick /* the file table fits into the directory buffer handed in */
28662aeddbfSDean Luick table = (struct hfi1_eprom_table_entry *)
28762aeddbfSDean Luick (directory + EP_PAGE_SIZE - directory_size);
28862aeddbfSDean Luick } else {
28962aeddbfSDean Luick /* need to allocate and read more */
29062aeddbfSDean Luick table_buffer = kmalloc(directory_size, GFP_KERNEL);
29162aeddbfSDean Luick if (!table_buffer)
29262aeddbfSDean Luick return -ENOMEM;
29362aeddbfSDean Luick ret = read_length(dd, SEG_SIZE - directory_size,
29462aeddbfSDean Luick directory_size, table_buffer);
29562aeddbfSDean Luick if (ret)
29662aeddbfSDean Luick goto done;
29762aeddbfSDean Luick table = table_buffer;
29862aeddbfSDean Luick }
29962aeddbfSDean Luick
30062aeddbfSDean Luick /* look for the platform configuration file in the table */
30162aeddbfSDean Luick for (entry = NULL, i = 0; i < footer->num_table_entries; i++) {
30262aeddbfSDean Luick if (table[i].type == HFI1_EFT_PLATFORM_CONFIG) {
30362aeddbfSDean Luick entry = &table[i];
30462aeddbfSDean Luick break;
30562aeddbfSDean Luick }
30662aeddbfSDean Luick }
30762aeddbfSDean Luick if (!entry) {
30862aeddbfSDean Luick ret = -ENOENT;
30962aeddbfSDean Luick goto done;
31062aeddbfSDean Luick }
31162aeddbfSDean Luick
31262aeddbfSDean Luick /*
31362aeddbfSDean Luick * Sanity check on the configuration file size - it should never
31462aeddbfSDean Luick * be larger than 4 KiB.
31562aeddbfSDean Luick */
31662aeddbfSDean Luick if (entry->size > (4 * 1024)) {
31762aeddbfSDean Luick dd_dev_err(dd, "Bad configuration file size 0x%x\n",
31862aeddbfSDean Luick entry->size);
31962aeddbfSDean Luick ret = -EINVAL;
32062aeddbfSDean Luick goto done;
32162aeddbfSDean Luick }
32262aeddbfSDean Luick
32362aeddbfSDean Luick /* check for bogus offset and size that wrap when added together */
32462aeddbfSDean Luick if (entry->offset + entry->size < entry->offset) {
32562aeddbfSDean Luick dd_dev_err(dd,
32662aeddbfSDean Luick "Bad configuration file start + size 0x%x+0x%x\n",
32762aeddbfSDean Luick entry->offset, entry->size);
32862aeddbfSDean Luick ret = -EINVAL;
32962aeddbfSDean Luick goto done;
33062aeddbfSDean Luick }
33162aeddbfSDean Luick
33262aeddbfSDean Luick /* allocate the buffer to return */
33362aeddbfSDean Luick buffer = kmalloc(entry->size, GFP_KERNEL);
33462aeddbfSDean Luick if (!buffer) {
33562aeddbfSDean Luick ret = -ENOMEM;
33662aeddbfSDean Luick goto done;
33762aeddbfSDean Luick }
33862aeddbfSDean Luick
33962aeddbfSDean Luick /*
34062aeddbfSDean Luick * Extract the file by looping over segments until it is fully read.
34162aeddbfSDean Luick */
34262aeddbfSDean Luick seg_offset = entry->offset % SEG_SIZE;
34362aeddbfSDean Luick seg_base = entry->offset - seg_offset;
34462aeddbfSDean Luick ncopied = 0;
34562aeddbfSDean Luick while (ncopied < entry->size) {
34662aeddbfSDean Luick /* calculate data bytes available in this segment */
34762aeddbfSDean Luick
34862aeddbfSDean Luick /* start with the bytes from the current offset to the end */
34962aeddbfSDean Luick bytes_available = SEG_SIZE - seg_offset;
35062aeddbfSDean Luick /* subtract off footer and table from segment 0 */
35162aeddbfSDean Luick if (seg_base == 0) {
35262aeddbfSDean Luick /*
35362aeddbfSDean Luick * Sanity check: should not have a starting point
35462aeddbfSDean Luick * at or within the directory.
35562aeddbfSDean Luick */
35662aeddbfSDean Luick if (bytes_available <= directory_size) {
35762aeddbfSDean Luick dd_dev_err(dd,
35862aeddbfSDean Luick "Bad configuration file - offset 0x%x within footer+table\n",
35962aeddbfSDean Luick entry->offset);
36062aeddbfSDean Luick ret = -EINVAL;
36162aeddbfSDean Luick goto done;
36262aeddbfSDean Luick }
36362aeddbfSDean Luick bytes_available -= directory_size;
36462aeddbfSDean Luick }
36562aeddbfSDean Luick
36662aeddbfSDean Luick /* calculate bytes wanted */
36762aeddbfSDean Luick to_copy = entry->size - ncopied;
36862aeddbfSDean Luick
36962aeddbfSDean Luick /* max out at the available bytes in this segment */
37062aeddbfSDean Luick if (to_copy > bytes_available)
37162aeddbfSDean Luick to_copy = bytes_available;
37262aeddbfSDean Luick
37362aeddbfSDean Luick /*
37462aeddbfSDean Luick * Read from the EPROM.
37562aeddbfSDean Luick *
37662aeddbfSDean Luick * The sanity check for entry->offset is done in read_length().
37762aeddbfSDean Luick * The EPROM offset is validated against what the hardware
37862aeddbfSDean Luick * addressing supports. In addition, if the offset is larger
37962aeddbfSDean Luick * than the actual EPROM, it silently wraps. It will work
38062aeddbfSDean Luick * fine, though the reader may not get what they expected
38162aeddbfSDean Luick * from the EPROM.
38262aeddbfSDean Luick */
38362aeddbfSDean Luick ret = read_length(dd, seg_base + seg_offset, to_copy,
38462aeddbfSDean Luick buffer + ncopied);
38562aeddbfSDean Luick if (ret)
38662aeddbfSDean Luick goto done;
38762aeddbfSDean Luick
38862aeddbfSDean Luick ncopied += to_copy;
38962aeddbfSDean Luick
39062aeddbfSDean Luick /* set up for next segment */
39162aeddbfSDean Luick seg_offset = footer->oprom_size;
39262aeddbfSDean Luick seg_base += SEG_SIZE;
39362aeddbfSDean Luick }
39462aeddbfSDean Luick
39562aeddbfSDean Luick /* success */
39662aeddbfSDean Luick ret = 0;
39762aeddbfSDean Luick *data = buffer;
39862aeddbfSDean Luick *size = entry->size;
39962aeddbfSDean Luick
40062aeddbfSDean Luick done:
40162aeddbfSDean Luick kfree(table_buffer);
40262aeddbfSDean Luick if (ret)
40362aeddbfSDean Luick kfree(buffer);
40462aeddbfSDean Luick return ret;
40562aeddbfSDean Luick }
40662aeddbfSDean Luick
40762aeddbfSDean Luick /*
408107ffbc5SDean Luick * Read the platform configuration file from the EPROM.
409107ffbc5SDean Luick *
410107ffbc5SDean Luick * On success, an allocated buffer containing the data and its size are
411107ffbc5SDean Luick * returned. It is up to the caller to free this buffer.
412107ffbc5SDean Luick *
413107ffbc5SDean Luick * Return value:
414107ffbc5SDean Luick * 0 - success
415107ffbc5SDean Luick * -ENXIO - no EPROM is available
416107ffbc5SDean Luick * -EBUSY - not able to acquire access to the EPROM
417107ffbc5SDean Luick * -ENOENT - no recognizable file written
418107ffbc5SDean Luick * -ENOMEM - buffer could not be allocated
41962aeddbfSDean Luick * -EINVAL - invalid EPROM contentents found
420107ffbc5SDean Luick */
eprom_read_platform_config(struct hfi1_devdata * dd,void ** data,u32 * size)421107ffbc5SDean Luick int eprom_read_platform_config(struct hfi1_devdata *dd, void **data, u32 *size)
422107ffbc5SDean Luick {
423107ffbc5SDean Luick u32 directory[EP_PAGE_DWORDS]; /* aligned buffer */
424107ffbc5SDean Luick int ret;
425107ffbc5SDean Luick
426107ffbc5SDean Luick if (!dd->eprom_available)
427107ffbc5SDean Luick return -ENXIO;
428107ffbc5SDean Luick
429107ffbc5SDean Luick ret = acquire_chip_resource(dd, CR_EPROM, EPROM_TIMEOUT);
430107ffbc5SDean Luick if (ret)
431107ffbc5SDean Luick return -EBUSY;
432107ffbc5SDean Luick
43362aeddbfSDean Luick /* read the last page of the segment for the EPROM format magic */
43462aeddbfSDean Luick ret = read_length(dd, SEG_SIZE - EP_PAGE_SIZE, EP_PAGE_SIZE, directory);
435107ffbc5SDean Luick if (ret)
436107ffbc5SDean Luick goto done;
437107ffbc5SDean Luick
43862aeddbfSDean Luick /* last dword of the segment contains a magic value */
43962aeddbfSDean Luick if (directory[EP_PAGE_DWORDS - 1] == FOOTER_MAGIC) {
44062aeddbfSDean Luick /* segment format */
44162aeddbfSDean Luick ret = read_segment_platform_config(dd, directory, data, size);
44262aeddbfSDean Luick } else {
443107ffbc5SDean Luick /* partition format */
444107ffbc5SDean Luick ret = read_partition_platform_config(dd, data, size);
445107ffbc5SDean Luick }
446107ffbc5SDean Luick
447107ffbc5SDean Luick done:
448107ffbc5SDean Luick release_chip_resource(dd, CR_EPROM);
449107ffbc5SDean Luick return ret;
450107ffbc5SDean Luick }
451