blob: 427b978d96e421cc00f0bdaec36f8b73e2aba99a [file] [log] [blame]
Eric Biederman8ca8d762003-04-22 19:02:15 +00001#include <console/console.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +00002#include <ip_checksum.h>
Stefan Reinauerca374d42008-01-18 16:16:45 +00003#include <boot/coreboot_tables.h>
4#include "coreboot_table.h"
Eric Biederman8ca8d762003-04-22 19:02:15 +00005#include <string.h>
6#include <version.h>
Eric Biedermanb78c1972004-10-14 20:54:17 +00007#include <device/device.h>
8#include <stdlib.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +00009
Eric Biederman8ca8d762003-04-22 19:02:15 +000010struct lb_header *lb_table_init(unsigned long addr)
11{
12 struct lb_header *header;
13
14 /* 16 byte align the address */
15 addr += 15;
16 addr &= ~15;
17
18 header = (void *)addr;
19 header->signature[0] = 'L';
20 header->signature[1] = 'B';
21 header->signature[2] = 'I';
22 header->signature[3] = 'O';
23 header->header_bytes = sizeof(*header);
24 header->header_checksum = 0;
25 header->table_bytes = 0;
26 header->table_checksum = 0;
27 header->table_entries = 0;
28 return header;
29}
30
31struct lb_record *lb_first_record(struct lb_header *header)
32{
33 struct lb_record *rec;
34 rec = (void *)(((char *)header) + sizeof(*header));
35 return rec;
36}
37
38struct lb_record *lb_last_record(struct lb_header *header)
39{
40 struct lb_record *rec;
41 rec = (void *)(((char *)header) + sizeof(*header) + header->table_bytes);
42 return rec;
43}
44
45struct lb_record *lb_next_record(struct lb_record *rec)
46{
47 rec = (void *)(((char *)rec) + rec->size);
48 return rec;
49}
50
51struct lb_record *lb_new_record(struct lb_header *header)
52{
53 struct lb_record *rec;
54 rec = lb_last_record(header);
55 if (header->table_entries) {
56 header->table_bytes += rec->size;
57 }
58 rec = lb_last_record(header);
59 header->table_entries++;
60 rec->tag = LB_TAG_UNUSED;
61 rec->size = sizeof(*rec);
62 return rec;
63}
64
65
66struct lb_memory *lb_memory(struct lb_header *header)
67{
68 struct lb_record *rec;
69 struct lb_memory *mem;
70 rec = lb_new_record(header);
71 mem = (struct lb_memory *)rec;
72 mem->tag = LB_TAG_MEMORY;
73 mem->size = sizeof(*mem);
74 return mem;
75}
76
Patrick Georgi8c2a0c12008-01-25 18:28:18 +000077struct lb_serial *lb_serial(struct lb_header *header)
78{
79#if defined(TTYS0_BASE)
80 struct lb_record *rec;
81 struct lb_serial *serial;
82 rec = lb_new_record(header);
83 serial = (struct lb_serial *)rec;
84 serial->tag = LB_TAG_SERIAL;
85 serial->size = sizeof(*serial);
86 serial->ioport = TTYS0_BASE;
Patrick Georgic2e8fd42008-06-29 06:41:12 +000087 serial->baud = TTYS0_BAUD;
Patrick Georgi8c2a0c12008-01-25 18:28:18 +000088 return serial;
89#else
90 return header;
91#endif
92}
93
Patrick Georgi3bbf2ff2008-01-27 14:12:54 +000094void add_console(struct lb_header *header, u16 consoletype)
95{
96 struct lb_record *rec;
97 struct lb_console *console;
98 rec = lb_new_record(header);
99 console = (struct lb_console *)lb_new_record(header);
100 console->tag = LB_TAG_CONSOLE;
101 console->size = sizeof(*console);
102 console->type = consoletype;
103}
104
105void lb_console(struct lb_header *header)
106{
107#ifdef CONFIG_CONSOLE_SERIAL8250
108 add_console(header, LB_TAG_CONSOLE_SERIAL8250);
109#endif
110#ifdef CONFIG_CONSOLE_VGA
111 add_console(header, LB_TAG_CONSOLE_VGA);
112#endif
113#ifdef CONFIG_CONSOLE_BTEXT
114 add_console(header, LB_TAG_CONSOLE_BTEXT);
115#endif
116#ifdef CONFIG_CONSOLE_LOGBUF
117 add_console(header, LB_TAG_CONSOLE_LOGBUF);
118#endif
119#ifdef CONFIG_CONSOLE_SROM
120 add_console(header, LB_TAG_CONSOLE_SROM);
121#endif
122#ifdef CONFIG_USBDEBUG_DIRECT
123 add_console(header, LB_TAG_CONSOLE_EHCI);
124#endif
125}
126
Eric Biederman8ca8d762003-04-22 19:02:15 +0000127struct lb_mainboard *lb_mainboard(struct lb_header *header)
128{
129 struct lb_record *rec;
130 struct lb_mainboard *mainboard;
131 rec = lb_new_record(header);
132 mainboard = (struct lb_mainboard *)rec;
133 mainboard->tag = LB_TAG_MAINBOARD;
134
135 mainboard->size = (sizeof(*mainboard) +
136 strlen(mainboard_vendor) + 1 +
137 strlen(mainboard_part_number) + 1 +
138 3) & ~3;
139
140 mainboard->vendor_idx = 0;
141 mainboard->part_number_idx = strlen(mainboard_vendor) + 1;
142
143 memcpy(mainboard->strings + mainboard->vendor_idx,
144 mainboard_vendor, strlen(mainboard_vendor) + 1);
145 memcpy(mainboard->strings + mainboard->part_number_idx,
146 mainboard_part_number, strlen(mainboard_part_number) + 1);
147
148 return mainboard;
149}
150
Stefan Reinauer4bd0de02005-12-03 22:39:23 +0000151struct cmos_checksum *lb_cmos_checksum(struct lb_header *header)
152{
153 struct lb_record *rec;
154 struct cmos_checksum *cmos_checksum;
155 rec = lb_new_record(header);
156 cmos_checksum = (struct cmos_checksum *)rec;
157 cmos_checksum->tag = LB_TAG_OPTION_CHECKSUM;
158
159 cmos_checksum->size = (sizeof(*cmos_checksum));
160
161 cmos_checksum->range_start = LB_CKS_RANGE_START * 8;
162 cmos_checksum->range_end = ( LB_CKS_RANGE_END * 8 ) + 7;
163 cmos_checksum->location = LB_CKS_LOC * 8;
164 cmos_checksum->type = CHECKSUM_PCBIOS;
165
166 return cmos_checksum;
167}
168
Eric Biederman8ca8d762003-04-22 19:02:15 +0000169void lb_strings(struct lb_header *header)
170{
171 static const struct {
172 uint32_t tag;
Stefan Reinauer0dff6e32007-10-23 22:17:45 +0000173 const char *string;
Eric Biederman8ca8d762003-04-22 19:02:15 +0000174 } strings[] = {
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000175 { LB_TAG_VERSION, coreboot_version, },
176 { LB_TAG_EXTRA_VERSION, coreboot_extra_version, },
177 { LB_TAG_BUILD, coreboot_build, },
178 { LB_TAG_COMPILE_TIME, coreboot_compile_time, },
179 { LB_TAG_COMPILE_BY, coreboot_compile_by, },
180 { LB_TAG_COMPILE_HOST, coreboot_compile_host, },
181 { LB_TAG_COMPILE_DOMAIN, coreboot_compile_domain, },
182 { LB_TAG_COMPILER, coreboot_compiler, },
183 { LB_TAG_LINKER, coreboot_linker, },
184 { LB_TAG_ASSEMBLER, coreboot_assembler, },
Eric Biederman8ca8d762003-04-22 19:02:15 +0000185 };
Eric Biederman52685572003-05-19 19:16:21 +0000186 unsigned int i;
Carl-Daniel Hailfinger2ee67792008-10-01 12:52:52 +0000187 for(i = 0; i < ARRAY_SIZE(strings); i++) {
Eric Biederman8ca8d762003-04-22 19:02:15 +0000188 struct lb_string *rec;
189 size_t len;
190 rec = (struct lb_string *)lb_new_record(header);
191 len = strlen(strings[i].string);
192 rec->tag = strings[i].tag;
193 rec->size = (sizeof(*rec) + len + 1 + 3) & ~3;
194 memcpy(rec->string, strings[i].string, len+1);
195 }
196
197}
198
Eric Biederman8ca8d762003-04-22 19:02:15 +0000199void lb_memory_range(struct lb_memory *mem,
Eric Biederman6e53f502004-10-27 08:53:57 +0000200 uint32_t type, uint64_t start, uint64_t size)
Eric Biederman8ca8d762003-04-22 19:02:15 +0000201{
202 int entries;
203 entries = (mem->size - sizeof(*mem))/sizeof(mem->map[0]);
Eric Biedermanec01aa92004-12-10 20:50:43 +0000204 mem->map[entries].start = pack_lb64(start);
205 mem->map[entries].size = pack_lb64(size);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000206 mem->map[entries].type = type;
207 mem->size += sizeof(mem->map[0]);
208}
209
Eric Biederman8ca8d762003-04-22 19:02:15 +0000210static void lb_reserve_table_memory(struct lb_header *head)
211{
212 struct lb_record *last_rec;
213 struct lb_memory *mem;
214 uint64_t start;
215 uint64_t end;
216 int i, entries;
217
218 last_rec = lb_last_record(head);
219 mem = get_lb_mem();
220 start = (unsigned long)head;
221 end = (unsigned long)last_rec;
222 entries = (mem->size - sizeof(*mem))/sizeof(mem->map[0]);
223 /* Resize the right two memory areas so this table is in
224 * a reserved area of memory. Everything has been carefully
225 * setup so that is all we need to do.
226 */
227 for(i = 0; i < entries; i++ ) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000228 uint64_t map_start = unpack_lb64(mem->map[i].start);
229 uint64_t map_end = map_start + unpack_lb64(mem->map[i].size);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000230 /* Does this area need to be expanded? */
231 if (map_end == start) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000232 mem->map[i].size = pack_lb64(end - map_start);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000233 }
234 /* Does this area need to be contracted? */
235 else if (map_start == start) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000236 mem->map[i].start = pack_lb64(end);
237 mem->map[i].size = pack_lb64(map_end - end);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000238 }
239 }
240}
241
Eric Biederman8ca8d762003-04-22 19:02:15 +0000242unsigned long lb_table_fini(struct lb_header *head)
243{
244 struct lb_record *rec, *first_rec;
245 rec = lb_last_record(head);
246 if (head->table_entries) {
247 head->table_bytes += rec->size;
248 }
249 lb_reserve_table_memory(head);
250 first_rec = lb_first_record(head);
251 head->table_checksum = compute_ip_checksum(first_rec, head->table_bytes);
252 head->header_checksum = 0;
253 head->header_checksum = compute_ip_checksum(head, sizeof(*head));
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000254 printk_debug("Wrote coreboot table at: %p - %p checksum %lx\n",
Eric Biederman8ca8d762003-04-22 19:02:15 +0000255 head, rec, head->table_checksum);
256 return (unsigned long)rec;
257}
258
Eric Biederman6e53f502004-10-27 08:53:57 +0000259static void lb_cleanup_memory_ranges(struct lb_memory *mem)
260{
261 int entries;
262 int i, j;
263 entries = (mem->size - sizeof(*mem))/sizeof(mem->map[0]);
264
265 /* Sort the lb memory ranges */
266 for(i = 0; i < entries; i++) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000267 uint64_t entry_start = unpack_lb64(mem->map[i].start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000268 for(j = i; j < entries; j++) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000269 uint64_t temp_start = unpack_lb64(mem->map[j].start);
270 if (temp_start < entry_start) {
Eric Biederman6e53f502004-10-27 08:53:57 +0000271 struct lb_memory_range tmp;
272 tmp = mem->map[i];
273 mem->map[i] = mem->map[j];
274 mem->map[j] = tmp;
275 }
276 }
277 }
278
279 /* Merge adjacent entries */
280 for(i = 0; (i + 1) < entries; i++) {
281 uint64_t start, end, nstart, nend;
282 if (mem->map[i].type != mem->map[i + 1].type) {
283 continue;
284 }
Eric Biedermanec01aa92004-12-10 20:50:43 +0000285 start = unpack_lb64(mem->map[i].start);
286 end = start + unpack_lb64(mem->map[i].size);
287 nstart = unpack_lb64(mem->map[i + 1].start);
288 nend = nstart + unpack_lb64(mem->map[i + 1].size);
Eric Biederman6e53f502004-10-27 08:53:57 +0000289 if ((start <= nstart) && (end > nstart)) {
290 if (start > nstart) {
291 start = nstart;
292 }
293 if (end < nend) {
294 end = nend;
295 }
296 /* Record the new region size */
Eric Biedermanec01aa92004-12-10 20:50:43 +0000297 mem->map[i].start = pack_lb64(start);
298 mem->map[i].size = pack_lb64(end - start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000299
300 /* Delete the entry I have merged with */
301 memmove(&mem->map[i + 1], &mem->map[i + 2],
302 ((entries - i - 2) * sizeof(mem->map[0])));
303 mem->size -= sizeof(mem->map[0]);
304 entries -= 1;
305 /* See if I can merge with the next entry as well */
306 i -= 1;
307 }
308 }
309}
310
311static void lb_remove_memory_range(struct lb_memory *mem,
312 uint64_t start, uint64_t size)
313{
314 uint64_t end;
315 int entries;
316 int i;
317
318 end = start + size;
319 entries = (mem->size - sizeof(*mem))/sizeof(mem->map[0]);
320
321 /* Remove a reserved area from the memory map */
322 for(i = 0; i < entries; i++) {
Eric Biedermanec01aa92004-12-10 20:50:43 +0000323 uint64_t map_start = unpack_lb64(mem->map[i].start);
324 uint64_t map_end = map_start + unpack_lb64(mem->map[i].size);
Eric Biederman6e53f502004-10-27 08:53:57 +0000325 if ((start <= map_start) && (end >= map_end)) {
326 /* Remove the completely covered range */
327 memmove(&mem->map[i], &mem->map[i + 1],
328 ((entries - i - 1) * sizeof(mem->map[0])));
329 mem->size -= sizeof(mem->map[0]);
330 entries -= 1;
331 /* Since the index will disappear revisit what will appear here */
332 i -= 1;
333 }
334 else if ((start > map_start) && (end < map_end)) {
335 /* Split the memory range */
336 memmove(&mem->map[i + 1], &mem->map[i],
337 ((entries - i) * sizeof(mem->map[0])));
338 mem->size += sizeof(mem->map[0]);
339 entries += 1;
340 /* Update the first map entry */
Eric Biedermanec01aa92004-12-10 20:50:43 +0000341 mem->map[i].size = pack_lb64(start - map_start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000342 /* Update the second map entry */
Eric Biedermanec01aa92004-12-10 20:50:43 +0000343 mem->map[i + 1].start = pack_lb64(end);
344 mem->map[i + 1].size = pack_lb64(map_end - end);
Eric Biederman6e53f502004-10-27 08:53:57 +0000345 /* Don't bother with this map entry again */
346 i += 1;
347 }
348 else if ((start <= map_start) && (end > map_start)) {
349 /* Shrink the start of the memory range */
Eric Biedermanec01aa92004-12-10 20:50:43 +0000350 mem->map[i].start = pack_lb64(end);
351 mem->map[i].size = pack_lb64(map_end - end);
Eric Biederman6e53f502004-10-27 08:53:57 +0000352 }
353 else if ((start < map_end) && (start > map_start)) {
354 /* Shrink the end of the memory range */
Eric Biedermanec01aa92004-12-10 20:50:43 +0000355 mem->map[i].size = pack_lb64(start - map_start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000356 }
357 }
358}
359
360static void lb_add_memory_range(struct lb_memory *mem,
361 uint32_t type, uint64_t start, uint64_t size)
362{
363 lb_remove_memory_range(mem, start, size);
364 lb_memory_range(mem, type, start, size);
365 lb_cleanup_memory_ranges(mem);
366}
Eric Biederman8ca8d762003-04-22 19:02:15 +0000367
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000368/* Routines to extract part so the coreboot table or
369 * information from the coreboot table after we have written it.
Eric Biederman8ca8d762003-04-22 19:02:15 +0000370 * Currently get_lb_mem relies on a global we can change the
371 * implementaiton.
372 */
373static struct lb_memory *mem_ranges = 0;
374struct lb_memory *get_lb_mem(void)
375{
376 return mem_ranges;
377}
378
Eric Biedermanf8a2ddd2004-10-30 08:05:41 +0000379static void build_lb_mem_range(void *gp, struct device *dev, struct resource *res)
380{
381 struct lb_memory *mem = gp;
382 lb_memory_range(mem, LB_MEM_RAM, res->base, res->size);
383}
384
Eric Biederman6e53f502004-10-27 08:53:57 +0000385static struct lb_memory *build_lb_mem(struct lb_header *head)
Eric Biedermanb78c1972004-10-14 20:54:17 +0000386{
Eric Biederman6e53f502004-10-27 08:53:57 +0000387 struct lb_memory *mem;
Eric Biedermanb78c1972004-10-14 20:54:17 +0000388
Eric Biederman6e53f502004-10-27 08:53:57 +0000389 /* Record where the lb memory ranges will live */
390 mem = lb_memory(head);
391 mem_ranges = mem;
392
393 /* Build the raw table of memory */
Eric Biedermanf8a2ddd2004-10-30 08:05:41 +0000394 search_global_resources(
395 IORESOURCE_MEM | IORESOURCE_CACHEABLE, IORESOURCE_MEM | IORESOURCE_CACHEABLE,
396 build_lb_mem_range, mem);
Eric Biederman6e53f502004-10-27 08:53:57 +0000397 lb_cleanup_memory_ranges(mem);
Eric Biedermanb78c1972004-10-14 20:54:17 +0000398 return mem;
399}
400
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000401unsigned long write_coreboot_table(
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000402 unsigned long low_table_start, unsigned long low_table_end,
403 unsigned long rom_table_start, unsigned long rom_table_end)
Eric Biederman8ca8d762003-04-22 19:02:15 +0000404{
Eric Biederman8ca8d762003-04-22 19:02:15 +0000405 struct lb_header *head;
406 struct lb_memory *mem;
Eric Biederman8ca8d762003-04-22 19:02:15 +0000407
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000408 if(low_table_end > (0x1000 - sizeof(struct lb_header))) { /* after 4K */
409 /* We need to put lbtable on to [0xf0000,0x100000) */
410 head = lb_table_init(rom_table_end);
411 rom_table_end = (unsigned long)head;
412 } else {
413 head = lb_table_init(low_table_end);
414 low_table_end = (unsigned long)head;
415 }
Yinghai Lu47cb7c72007-04-06 20:27:40 +0000416
417 printk_debug("Adjust low_table_end from 0x%08x to ", low_table_end);
418 low_table_end += 0xfff; // 4K aligned
419 low_table_end &= ~0xfff;
420 printk_debug("0x%08x \n", low_table_end);
421
422 /* The Linux kernel assumes this region is reserved */
423 printk_debug("Adjust rom_table_end from 0x%08x to ", rom_table_end);
424 rom_table_end += 0xffff; // 64K align
425 rom_table_end &= ~0xffff;
426 printk_debug("0x%08x \n", rom_table_end);
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000427
Stefan Reinauerba430642007-04-06 12:14:51 +0000428#if (HAVE_OPTION_TABLE == 1)
429 {
Eric Biederman6e53f502004-10-27 08:53:57 +0000430 struct lb_record *rec_dest, *rec_src;
431 /* Write the option config table... */
432 rec_dest = lb_new_record(head);
Eric Biedermana9e632c2004-11-18 22:38:08 +0000433 rec_src = (struct lb_record *)(void *)&option_table;
Eric Biederman6e53f502004-10-27 08:53:57 +0000434 memcpy(rec_dest, rec_src, rec_src->size);
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000435 /* Create cmos checksum entry in coreboot table */
Stefan Reinauer4bd0de02005-12-03 22:39:23 +0000436 lb_cmos_checksum(head);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000437 }
Stefan Reinauerba430642007-04-06 12:14:51 +0000438#endif
Eric Biederman6e53f502004-10-27 08:53:57 +0000439 /* Record where RAM is located */
440 mem = build_lb_mem(head);
441
Eric Biederman6e53f502004-10-27 08:53:57 +0000442 /* Record the mptable and the the lb_table (This will be adjusted later) */
443 lb_add_memory_range(mem, LB_MEM_TABLE,
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000444 low_table_start, low_table_end - low_table_start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000445
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000446 /* Record the pirq table, acpi tables, and maybe the mptable */
Eric Biederman6e53f502004-10-27 08:53:57 +0000447 lb_add_memory_range(mem, LB_MEM_TABLE,
Roman Kononov96e30222008-07-23 23:22:59 +0000448 rom_table_start, rom_table_end-rom_table_start);
Eric Biederman6e53f502004-10-27 08:53:57 +0000449
Michael Xie06755e42008-09-22 13:07:20 +0000450 /* AMD rs690 chip, we should remove the UMA from system memory. */
451#if (CONFIG_GFXUMA == 1)
452 printk_info("uma_memory_start=0x%x, uma_memory_size=0x%x \n",
453 uma_memory_start, uma_memory_size);
454 lb_add_memory_range(mem, LB_MEM_TABLE,
455 uma_memory_start, uma_memory_size);
456#endif
457
458
Eric Biederman6e53f502004-10-27 08:53:57 +0000459 /* Note:
460 * I assume that there is always memory at immediately after
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000461 * the low_table_end. This means that after I setup the coreboot table.
Eric Biederman6e53f502004-10-27 08:53:57 +0000462 * I can trivially fixup the reserved memory ranges to hold the correct
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000463 * size of the coreboot table.
Eric Biederman6e53f502004-10-27 08:53:57 +0000464 */
Eric Biederman8ca8d762003-04-22 19:02:15 +0000465
Patrick Georgi8c2a0c12008-01-25 18:28:18 +0000466 /* Record our motherboard */
Eric Biederman8ca8d762003-04-22 19:02:15 +0000467 lb_mainboard(head);
Patrick Georgi8c2a0c12008-01-25 18:28:18 +0000468 /* Record the serial port, if present */
469 lb_serial(head);
Patrick Georgi3bbf2ff2008-01-27 14:12:54 +0000470 /* Record our console setup */
471 lb_console(head);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000472 /* Record our various random string information */
473 lb_strings(head);
474
Eric Biederman8ca8d762003-04-22 19:02:15 +0000475 /* Remember where my valid memory ranges are */
Stefan Reinauer4f1cb232006-07-19 15:32:49 +0000476 return lb_table_fini(head);
477
Eric Biederman8ca8d762003-04-22 19:02:15 +0000478}