blob: 1b98cda7218baed968a4936db7bcc2e31ff645ea [file] [log] [blame]
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +00001/*
2 * This file is part of the libpayload project.
3 *
4 * Copyright (C) 2008 coresystems GmbH
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * 3. The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 */
29
30#include <libpayload.h>
31#include <coreboot_tables.h>
32
Patrick Georgi5febb002012-02-02 15:51:29 +010033u8 *mem_accessor_base;
34
35static u8 mem_read(u8 reg)
36{
37 return mem_accessor_base[reg];
38}
39
40static void mem_write(u8 val, u8 reg)
41{
42 mem_accessor_base[reg] = val;
43}
44
Patrick Georgi317ca0d2012-01-16 10:14:24 +010045struct nvram_accessor *use_nvram = &(struct nvram_accessor) {
46 nvram_read,
47 nvram_write
48};
49
Patrick Georgi5febb002012-02-02 15:51:29 +010050struct nvram_accessor *use_mem = &(struct nvram_accessor) {
51 mem_read,
52 mem_write
53};
54
Patrick Georgi317ca0d2012-01-16 10:14:24 +010055struct cb_cmos_option_table *get_system_option_table(void)
56{
57 return phys_to_virt(lib_sysinfo.option_table);
58}
59
Patrick Georgi56f468d2012-01-16 15:03:11 +010060int options_checksum_valid(const struct nvram_accessor *nvram)
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000061{
62 int i;
Stefan Reinauer71c006f2008-09-26 18:39:06 +000063 int range_start = lib_sysinfo.cmos_range_start / 8;
64 int range_end = lib_sysinfo.cmos_range_end / 8;
65 int checksum_location = lib_sysinfo.cmos_checksum_location / 8;
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000066 u16 checksum = 0, checksum_old;
67
68 for(i = range_start; i <= range_end; i++) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +010069 checksum += nvram->read(i);
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000070 }
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000071
Patrick Georgi317ca0d2012-01-16 10:14:24 +010072 checksum_old = ((nvram->read(checksum_location)<<8) | nvram->read(checksum_location+1));
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000073
74 return (checksum_old == checksum);
75}
76
Patrick Georgi317ca0d2012-01-16 10:14:24 +010077void fix_options_checksum_with(const struct nvram_accessor *nvram)
Stefan Reinauer59a1b7f2010-08-17 10:14:50 +000078{
79 int i;
80 int range_start = lib_sysinfo.cmos_range_start / 8;
81 int range_end = lib_sysinfo.cmos_range_end / 8;
82 int checksum_location = lib_sysinfo.cmos_checksum_location / 8;
83 u16 checksum = 0;
84
85 for(i = range_start; i <= range_end; i++) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +010086 checksum += nvram->read(i);
Stefan Reinauer59a1b7f2010-08-17 10:14:50 +000087 }
Stefan Reinauer59a1b7f2010-08-17 10:14:50 +000088
Patrick Georgi317ca0d2012-01-16 10:14:24 +010089 nvram->write((checksum >> 8), checksum_location);
90 nvram->write((checksum & 0xff), checksum_location + 1);
Stefan Reinauer59a1b7f2010-08-17 10:14:50 +000091}
92
Patrick Georgi317ca0d2012-01-16 10:14:24 +010093void fix_options_checksum(void)
94{
95 fix_options_checksum_with(use_nvram);
96}
97
98static int get_cmos_value(const struct nvram_accessor *nvram, u32 bitnum, u32 len, void *valptr)
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +000099{
100 u8 *value = (u8 *)valptr;
101 int offs = 0;
102 u32 addr, bit;
103 u8 reg8;
104
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000105 /* Convert to byte borders */
106 addr=(bitnum / 8);
107 bit=(bitnum % 8);
108
109 /* Handle single byte or less */
110 if(len <= 8) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100111 reg8 = nvram->read(addr);
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000112 reg8 >>= bit;
113 value[0] = reg8 & ((1 << len) -1);
114 return 0;
115 }
116
117 /* When handling more than a byte, copy whole bytes */
118 while (len > 0) {
119 len -= 8;
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100120 value[offs++]=nvram->read(addr++);
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000121 }
122
123 return 0;
124}
125
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100126static int set_cmos_value(const struct nvram_accessor *nvram, u32 bitnum, u32 len, void *valptr)
Patrick Georgidbde8092011-11-22 13:07:45 +0100127{
128 u8 *value = (u8 *)valptr;
129 int offs = 0;
130 u32 addr, bit;
131 u8 reg8;
132
133 /* Convert to byte borders */
134 addr=(bitnum / 8);
135 bit=(bitnum % 8);
136
137 /* Handle single byte or less */
138 if (len <= 8) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100139 reg8 = nvram->read(addr);
Patrick Georgidbde8092011-11-22 13:07:45 +0100140 reg8 &= ~(((1 << len) - 1) << bit);
141 reg8 |= (value[0] & ((1 << len) - 1)) << bit;
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100142 nvram->write(reg8, addr);
Patrick Georgidbde8092011-11-22 13:07:45 +0100143 return 0;
144 }
145
146 /* When handling more than a byte, copy whole bytes */
147 while (len > 0) {
148 len -= 8;
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100149 nvram->write(value[offs++], addr++);
Patrick Georgidbde8092011-11-22 13:07:45 +0100150 }
151
152 return 0;
153}
154
155static struct cb_cmos_entries *lookup_cmos_entry(struct cb_cmos_option_table *option_table, char *name)
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000156{
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000157 struct cb_cmos_entries *cmos_entry;
158 int len = strnlen(name, CMOS_MAX_NAME_LENGTH);
Stefan Reinauer14e22772010-04-27 06:56:47 +0000159
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000160 /* cmos entries are located right after the option table */
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000161
162 for ( cmos_entry = (struct cb_cmos_entries*)((unsigned char *)option_table + option_table->header_length);
163 cmos_entry->tag == CB_TAG_OPTION;
164 cmos_entry = (struct cb_cmos_entries*)((unsigned char *)cmos_entry + cmos_entry->size)) {
Stefan Reinauer34b9f862008-08-19 17:51:30 +0000165 if (memcmp((const char*)cmos_entry->name, name, len))
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000166 continue;
Patrick Georgidbde8092011-11-22 13:07:45 +0100167 return cmos_entry;
168 }
169
170 printf("ERROR: No such CMOS option (%s)\n", name);
171 return NULL;
172}
173
Patrick Georgida59f9a2012-01-16 13:47:33 +0100174/* Either value or text must be NULL. Returns the field that matches "the other" for a given config_id */
175static struct cb_cmos_enums *lookup_cmos_enum_core(struct cb_cmos_option_table *option_table, int config_id, u8 *value, char *text)
176{
177 struct cb_cmos_entries *cmos_entry;
178 int len = strnlen(text, CMOS_MAX_TEXT_LENGTH);
179
180 /* cmos entries are located right after the option table. Skip them */
181 cmos_entry = (struct cb_cmos_entries*)((unsigned char *)option_table + option_table->header_length);
182 while (cmos_entry->tag == CB_TAG_OPTION)
183 cmos_entry = (struct cb_cmos_entries*)((unsigned char *)cmos_entry + cmos_entry->size);
184
185 /* cmos enums are located after cmos entries. */
186 struct cb_cmos_enums *cmos_enum;
187 for ( cmos_enum = (struct cb_cmos_enums*)cmos_entry;
188 cmos_enum->tag == CB_TAG_OPTION_ENUM;
189 cmos_enum = (struct cb_cmos_enums*)((unsigned char *)cmos_enum + cmos_enum->size)) {
190 if ((cmos_enum->config_id == config_id)
191 && ((value == NULL) || (cmos_enum->value == *value))
192 && ((text == NULL) || (memcmp((const char*)cmos_enum->text, text, len)))) {
193 return cmos_enum;
194 }
195 }
196
197 return NULL;
198}
199
200static struct cb_cmos_enums *lookup_cmos_enum_by_value(struct cb_cmos_option_table *option_table, int config_id, u8 *value)
201{
202 return lookup_cmos_enum_core(option_table, config_id, value, NULL);
203}
204
205static struct cb_cmos_enums *lookup_cmos_enum_by_label(struct cb_cmos_option_table *option_table, int config_id, char *label)
206{
207 return lookup_cmos_enum_core(option_table, config_id, NULL, label);
208}
209
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100210int get_option_with(const struct nvram_accessor *nvram, struct cb_cmos_option_table *option_table, void *dest, char *name)
Patrick Georgidbde8092011-11-22 13:07:45 +0100211{
212 struct cb_cmos_entries *cmos_entry = lookup_cmos_entry(option_table, name);
213 if (cmos_entry) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100214 if(get_cmos_value(nvram, cmos_entry->bit, cmos_entry->length, dest))
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000215 return 1;
216
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100217 if(!options_checksum_valid(nvram))
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000218 return 1;
219
220 return 0;
221 }
Stefan Reinauer95a6e1c2008-08-07 10:21:05 +0000222 return 1;
223}
Patrick Georgic2300582011-07-12 11:40:29 +0200224
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100225int get_option_from(struct cb_cmos_option_table *option_table, void *dest, char *name)
226{
227 return get_option_with(use_nvram, option_table, dest, name);
228}
229
Patrick Georgic2300582011-07-12 11:40:29 +0200230int get_option(void *dest, char *name)
231{
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100232 return get_option_from(get_system_option_table(), dest, name);
Patrick Georgic2300582011-07-12 11:40:29 +0200233}
Patrick Georgidbde8092011-11-22 13:07:45 +0100234
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100235int set_option_with(const struct nvram_accessor *nvram, struct cb_cmos_option_table *option_table, void *value, char *name)
Patrick Georgidbde8092011-11-22 13:07:45 +0100236{
Patrick Georgidbde8092011-11-22 13:07:45 +0100237 struct cb_cmos_entries *cmos_entry = lookup_cmos_entry(option_table, name);
238 if (cmos_entry) {
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100239 set_cmos_value(nvram, cmos_entry->bit, cmos_entry->length, value);
240 fix_options_checksum_with(nvram);
Patrick Georgidbde8092011-11-22 13:07:45 +0100241 return 0;
242 }
243 return 1;
244}
245
Patrick Georgi317ca0d2012-01-16 10:14:24 +0100246int set_option(void *value, char *name)
247{
248 return set_option_with(use_nvram, get_system_option_table(), value, name);
249}
Patrick Georgida59f9a2012-01-16 13:47:33 +0100250
251int get_option_as_string(const struct nvram_accessor *nvram, struct cb_cmos_option_table *option_table, char **dest, char *name)
252{
253 void *raw;
254 struct cb_cmos_entries *cmos_entry = lookup_cmos_entry(option_table, name);
255 if (!cmos_entry)
256 return 1;
257 int cmos_length = (cmos_entry->length+7)/8;
258
259 /* extra byte to ensure 0-terminated strings */
260 raw = malloc(cmos_length+1);
261 memset(raw, 0, cmos_length+1);
262
263 int ret = get_option_with(nvram, option_table, raw, name);
264
265 struct cb_cmos_enums *cmos_enum;
266 switch (cmos_entry->config) {
267 case 'h':
268 /* only works on little endian.
269 26 bytes is enough for a 64bit value in decimal */
270 *dest = malloc(26);
271 sprintf(*dest, "%ull", *(u64*)raw);
272 break;
273 case 's':
274 *dest = strdup(raw);
275 break;
276 case 'e':
277 cmos_enum = lookup_cmos_enum_by_value(option_table, cmos_entry->config_id, (u8*)raw);
278 *dest = strdup((const char*)cmos_enum->text);
279 break;
280 default: /* fail */
281 return 1;
282 }
283 free(raw);
284 return ret;
285}
286
287int set_option_from_string(const struct nvram_accessor *nvram, struct cb_cmos_option_table *option_table, char *value, char *name)
288{
289 void *raw;
290 struct cb_cmos_entries *cmos_entry = lookup_cmos_entry(option_table, name);
291 if (!cmos_entry)
292 return 1;
293
294 struct cb_cmos_enums *cmos_enum;
295 switch (cmos_entry->config) {
296 case 'h':
297 /* only works on little endian */
298 raw = malloc(8);
299 *(u64*)raw = strtoull(value, NULL, 0);
300 break;
301 case 's':
302 raw = strdup(value);
303 break;
304 case 'e':
305 cmos_enum = lookup_cmos_enum_by_label(option_table, cmos_entry->config_id, value);
306 raw = malloc(sizeof(u32));
307 *(u32*)raw = cmos_enum->value;
308 break;
309 default: /* fail */
310 return 1;
311 }
312
313 int ret = set_option_with(nvram, option_table, raw, name);
314 free(raw);
315 return ret;
316}