blob: 258a1e40dc8becf2a2b50f16b6053efca121a124 [file] [log] [blame]
Patrick Georgiea063cb2020-05-08 19:28:13 +02001/* sconfig, coreboot device tree compiler */
Patrick Georgi7333a112020-05-08 20:48:04 +02002/* SPDX-License-Identifier: GPL-2.0-only */
Patrick Georgi114e7b22010-05-05 11:19:50 +00003
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06004#include <assert.h>
Patrick Georgi2dbfcb72012-05-30 16:26:30 +02005#include <ctype.h>
Duncan Laurie51c83732020-06-09 11:20:29 -07006#include <getopt.h>
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -06007#include <inttypes.h>
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06008#include <libgen.h>
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -06009/* stat.h needs to be included before commonlib/helpers.h to avoid errors.*/
Werner Zehac14a402019-07-11 12:47:19 +020010#include <sys/stat.h>
Kyösti Mälkkie29a6ac2019-03-15 17:05:19 +020011#include <commonlib/helpers.h>
Duncan Laurie47b7b342020-05-15 15:39:08 -070012#include <stdint.h>
Patrick Georgi114e7b22010-05-05 11:19:50 +000013#include "sconfig.h"
14#include "sconfig.tab.h"
15
Patrick Georgi7fc9e292010-07-15 15:59:07 +000016extern int linenum;
17
Furquan Shaikh27efc502018-06-22 09:19:15 -070018/*
19 * Maintains list of all the unique chip structures for the board.
20 * This is shared across base and override device trees since we need to
21 * generate headers for all chips added by both the trees.
22 */
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -070023static struct chip chip_header;
Furquan Shaikh79e84122018-05-30 15:09:09 -070024
Kyösti Mälkki472d9022011-12-05 20:33:55 +020025typedef enum {
Kyösti Mälkki1a2a6ee2012-03-18 20:19:28 +020026 UNSLASH,
27 SPLIT_1ST,
28 TO_LOWER,
29 TO_UPPER,
30} translate_t;
31
Furquan Shaikh93198262018-06-03 04:22:17 -070032/*
33 * Mainboard is assumed to have a root device whose bus is the parent of all the
34 * devices that are added by parsing the devicetree file. This device has a
35 * mainboard chip instance associated with it.
36 *
37 *
38 *
39 * +------------------------+ +----------------------+
Furquan Shaikhde39fc72018-06-11 04:26:45 -070040 * | Root device | | Mainboard |
41 * +---------+ (base_root_dev) +--------------->+ instance +
Furquan Shaikh93198262018-06-03 04:22:17 -070042 * | | | chip_instance | (mainboard_instance)|
43 * | +------------------------+ | |
44 * | | +----------------------+
45 * | | bus |
46 * | parent v |
47 * | +-------------------+ |
48 * | | Root bus | |
Furquan Shaikhde39fc72018-06-11 04:26:45 -070049 * +----------->+ (base_root_bus) | |
Furquan Shaikh93198262018-06-03 04:22:17 -070050 * | | |
51 * +-------------------+ |
52 * | |
53 * | children | chip
54 * v |
55 * X |
56 * (new devices will |
57 * be added here as |
58 * children) |
59 * |
60 * |
61 * |
62 * +-------+----------+
63 * | |
64 * | Mainboard chip +----------->X (new chips will be
65 * | (mainboard_chip) | added here)
66 * | |
67 * +------------------+
68 *
69 *
70 */
Furquan Shaikh39ac7972018-06-21 18:44:32 -070071
72/* Root device of primary tree. */
Furquan Shaikhde39fc72018-06-11 04:26:45 -070073static struct device base_root_dev;
Furquan Shaikh39ac7972018-06-21 18:44:32 -070074
Duncan Lauriee335c2e2020-07-29 16:28:43 -070075/* Root device of chipset tree. */
76static struct device chipset_root_dev;
77
Furquan Shaikh39ac7972018-06-21 18:44:32 -070078/* Root device of override tree (if applicable). */
79static struct device override_root_dev;
80
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -070081static struct chip_instance mainboard_instance;
82
Furquan Shaikhde39fc72018-06-11 04:26:45 -070083static struct bus base_root_bus = {
Furquan Shaikh93198262018-06-03 04:22:17 -070084 .id = 0,
Furquan Shaikhde39fc72018-06-11 04:26:45 -070085 .dev = &base_root_dev,
Furquan Shaikh93198262018-06-03 04:22:17 -070086};
87
Furquan Shaikhde39fc72018-06-11 04:26:45 -070088static struct device base_root_dev = {
Furquan Shaikh93198262018-06-03 04:22:17 -070089 .name = "dev_root",
Furquan Shaikh93198262018-06-03 04:22:17 -070090 .chip_instance = &mainboard_instance,
91 .path = " .type = DEVICE_PATH_ROOT ",
Furquan Shaikhde39fc72018-06-11 04:26:45 -070092 .parent = &base_root_bus,
Furquan Shaikh93198262018-06-03 04:22:17 -070093 .enabled = 1,
Furquan Shaikhde39fc72018-06-11 04:26:45 -070094 .bus = &base_root_bus,
Furquan Shaikh93198262018-06-03 04:22:17 -070095};
96
Duncan Lauriee335c2e2020-07-29 16:28:43 -070097static struct bus chipset_root_bus = {
98 .id = 0,
99 .dev = &chipset_root_dev,
100};
101
102static struct device chipset_root_dev = {
103 .name = "chipset_root",
104 .chip_instance = &mainboard_instance,
105 .path = " .type = DEVICE_PATH_ROOT ",
106 .parent = &chipset_root_bus,
107 .enabled = 1,
108 .bus = &chipset_root_bus,
109};
110
Furquan Shaikh39ac7972018-06-21 18:44:32 -0700111static struct bus override_root_bus = {
112 .id = 0,
113 .dev = &override_root_dev,
114};
115
116static struct device override_root_dev = {
117 .name = "override_root",
Furquan Shaikh39ac7972018-06-21 18:44:32 -0700118 /*
119 * Override tree root device points to the same mainboard chip instance
120 * as the base tree root device. It should not cause any side-effects
121 * since the mainboard chip instance pointer in override tree will just
122 * be ignored.
123 */
124 .chip_instance = &mainboard_instance,
125 .path = " .type = DEVICE_PATH_ROOT ",
Furquan Shaikh39ac7972018-06-21 18:44:32 -0700126 .parent = &override_root_bus,
127 .enabled = 1,
128 .bus = &override_root_bus,
129};
130
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700131static struct chip mainboard_chip = {
Patrick Georgi114e7b22010-05-05 11:19:50 +0000132 .name = "mainboard",
133 .name_underscore = "mainboard",
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700134 .instance = &mainboard_instance,
135};
136
137static struct chip_instance mainboard_instance = {
138 .id = 0,
139 .chip = &mainboard_chip,
Patrick Georgi114e7b22010-05-05 11:19:50 +0000140};
141
Furquan Shaikh93198262018-06-03 04:22:17 -0700142/* This is the parent of all devices added by parsing the devicetree file. */
Furquan Shaikhde39fc72018-06-11 04:26:45 -0700143struct bus *root_parent;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000144
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700145struct queue_entry {
Furquan Shaikh79e84122018-05-30 15:09:09 -0700146 void *data;
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700147 struct queue_entry *next;
148 struct queue_entry *prev;
149};
Furquan Shaikh79e84122018-05-30 15:09:09 -0700150
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700151#define S_ALLOC(_s) s_alloc(__func__, _s)
Furquan Shaikh79e84122018-05-30 15:09:09 -0700152
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700153static void *s_alloc(const char *f, size_t s)
154{
155 void *data = calloc(1, s);
156 if (!data) {
Maulik V Vaghela82e8c692018-06-08 10:32:08 +0530157 fprintf(stderr, "%s: Failed to alloc mem!\n", f);
Furquan Shaikh79e84122018-05-30 15:09:09 -0700158 exit(1);
159 }
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700160 return data;
161}
162
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700163static struct queue_entry *new_queue_entry(void *data)
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700164{
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700165 struct queue_entry *e = S_ALLOC(sizeof(*e));
Furquan Shaikh79e84122018-05-30 15:09:09 -0700166
167 e->data = data;
168 e->next = e->prev = e;
169 return e;
170}
171
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700172static void enqueue_tail(struct queue_entry **q_head, void *data)
Furquan Shaikh79e84122018-05-30 15:09:09 -0700173{
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700174 struct queue_entry *tmp = new_queue_entry(data);
175 struct queue_entry *q = *q_head;
Furquan Shaikh79e84122018-05-30 15:09:09 -0700176
177 if (!q) {
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700178 *q_head = tmp;
Furquan Shaikh79e84122018-05-30 15:09:09 -0700179 return;
180 }
181
182 q->prev->next = tmp;
183 tmp->prev = q->prev;
184 q->prev = tmp;
185 tmp->next = q;
186}
187
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700188static void *dequeue_tail(struct queue_entry **q_head)
Furquan Shaikh79e84122018-05-30 15:09:09 -0700189{
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700190 struct queue_entry *q = *q_head;
191 struct queue_entry *tmp;
Furquan Shaikh79e84122018-05-30 15:09:09 -0700192 void *data;
193
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700194 if (!q)
195 return NULL;
196
197 tmp = q->prev;
198
Furquan Shaikh79e84122018-05-30 15:09:09 -0700199 if (tmp == q)
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700200 *q_head = NULL;
Furquan Shaikh79e84122018-05-30 15:09:09 -0700201 else {
202 tmp->prev->next = q;
203 q->prev = tmp->prev;
204 }
205
206 data = tmp->data;
207 free(tmp);
208
209 return data;
210}
211
Furquan Shaikh7398ded2018-06-03 10:42:49 -0700212static void *dequeue_head(struct queue_entry **q_head)
213{
214 struct queue_entry *q = *q_head;
215 struct queue_entry *tmp = q;
216 void *data;
217
218 if (!q)
219 return NULL;
220
221 if (q->next == q)
222 *q_head = NULL;
223 else {
224 q->next->prev = q->prev;
225 q->prev->next = q->next;
226 *q_head = q->next;
227 }
228
229 data = tmp->data;
230 free(tmp);
231
232 return data;
233}
234
235static void *peek_queue_head(struct queue_entry *q_head)
236{
237 if (!q_head)
238 return NULL;
239
240 return q_head->data;
241}
242
243static struct queue_entry *chip_q_head;
244
245void chip_enqueue_tail(void *data)
246{
247 enqueue_tail(&chip_q_head, data);
248}
249
250void *chip_dequeue_tail(void)
251{
252 return dequeue_tail(&chip_q_head);
253}
254
Martin Rothbec07532016-08-05 18:32:18 -0600255int yywrap(void)
256{
Patrick Georgi114e7b22010-05-05 11:19:50 +0000257 return 1;
258}
259
Martin Rothbec07532016-08-05 18:32:18 -0600260void yyerror(char const *str)
Patrick Georgi114e7b22010-05-05 11:19:50 +0000261{
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +0000262 extern char *yytext;
Martin Rothbec07532016-08-05 18:32:18 -0600263 fprintf(stderr, "line %d: %s: %s\n", linenum + 1, yytext, str);
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +0000264 exit(1);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000265}
266
Martin Rothbec07532016-08-05 18:32:18 -0600267char *translate_name(const char *str, translate_t mode)
Kyösti Mälkki472d9022011-12-05 20:33:55 +0200268{
Kyösti Mälkki1a2a6ee2012-03-18 20:19:28 +0200269 char *b, *c;
270 b = c = strdup(str);
271 while (c && *c) {
272 if ((mode == SPLIT_1ST) && (*c == '/')) {
273 *c = 0;
274 break;
275 }
Martin Rothbec07532016-08-05 18:32:18 -0600276 if (*c == '/')
277 *c = '_';
278 if (*c == '-')
279 *c = '_';
Kyösti Mälkki1a2a6ee2012-03-18 20:19:28 +0200280 if (mode == TO_UPPER)
Kyösti Mälkki472d9022011-12-05 20:33:55 +0200281 *c = toupper(*c);
Kyösti Mälkki1a2a6ee2012-03-18 20:19:28 +0200282 if (mode == TO_LOWER)
283 *c = tolower(*c);
284 c++;
Kyösti Mälkki472d9022011-12-05 20:33:55 +0200285 }
Kyösti Mälkki1a2a6ee2012-03-18 20:19:28 +0200286 return b;
Kyösti Mälkki472d9022011-12-05 20:33:55 +0200287}
288
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700289static struct chip *get_chip(char *path)
Martin Rothbec07532016-08-05 18:32:18 -0600290{
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700291 struct chip *h = &chip_header;
Furquan Shaikh79e84122018-05-30 15:09:09 -0700292
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700293 while (h->next) {
294 int result = strcmp(path, h->next->name);
295 if (result == 0)
296 return h->next;
297
298 if (result < 0)
299 break;
300
301 h = h->next;
302 }
303
304 struct chip *new_chip = S_ALLOC(sizeof(struct chip));
305 new_chip->next = h->next;
306 h->next = new_chip;
307
Patrick Georgi114e7b22010-05-05 11:19:50 +0000308 new_chip->chiph_exists = 1;
309 new_chip->name = path;
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700310 new_chip->name_underscore = translate_name(path, UNSLASH);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000311
312 struct stat st;
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700313 char *chip_h = S_ALLOC(strlen(path) + 18);
Stefan Reinauer76c44ae2011-10-14 12:41:46 -0700314 sprintf(chip_h, "src/%s", path);
315 if ((stat(chip_h, &st) == -1) && (errno == ENOENT)) {
Patrick Georgi92bcaa22015-11-13 09:39:22 +0100316 /* root_complex gets away without a separate directory, but
317 * exists on on pretty much all AMD chipsets.
318 */
319 if (!strstr(path, "/root_complex")) {
Kyösti Mälkki6aeb4a22013-06-11 17:00:11 +0300320 fprintf(stderr, "ERROR: Chip component %s does not exist.\n",
321 path);
322 exit(1);
323 }
Stefan Reinauer76c44ae2011-10-14 12:41:46 -0700324 }
325
Martin Roth824255e2016-08-05 17:40:39 -0600326 sprintf(chip_h, "src/%s/chip.h", path);
Kyösti Mälkki472d9022011-12-05 20:33:55 +0200327
Martin Roth824255e2016-08-05 17:40:39 -0600328 if ((stat(chip_h, &st) == -1) && (errno == ENOENT))
Martin Rothbec07532016-08-05 18:32:18 -0600329 new_chip->chiph_exists = 0;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000330
Patrick Georgi1f688802014-08-03 15:51:19 +0200331 free(chip_h);
Furquan Shaikh79e84122018-05-30 15:09:09 -0700332
Patrick Georgi114e7b22010-05-05 11:19:50 +0000333 return new_chip;
334}
335
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700336struct chip_instance *new_chip_instance(char *path)
337{
338 struct chip *chip = get_chip(path);
339 struct chip_instance *instance = S_ALLOC(sizeof(*instance));
340
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700341 instance->chip = chip;
342 instance->next = chip->instance;
343 chip->instance = instance;
344
345 return instance;
346}
347
Duncan Laurie47b7b342020-05-15 15:39:08 -0700348/* List of fw_config fields added during parsing. */
349static struct fw_config_field *fw_config_fields;
350
351static struct fw_config_option *find_fw_config_option(struct fw_config_field *field,
352 const char *name)
353{
354 struct fw_config_option *option = field->options;
355
356 while (option && option->name) {
357 if (!strcmp(option->name, name))
358 return option;
359 option = option->next;
360 }
361 return NULL;
362}
363
364static struct fw_config_field *find_fw_config_field(const char *name)
365{
366 struct fw_config_field *field = fw_config_fields;
367
368 while (field && field->name) {
369 if (!strcmp(field->name, name))
370 return field;
371 field = field->next;
372 }
373 return NULL;
374}
375
376struct fw_config_field *get_fw_config_field(const char *name)
377{
378 struct fw_config_field *field = find_fw_config_field(name);
379
380 /* Fail if the field does not exist, new fields must be added with a mask. */
381 if (!field) {
382 printf("ERROR: fw_config field not found: %s\n", name);
383 exit(1);
384 }
385 return field;
386}
387
388static void append_fw_config_field(struct fw_config_field *add)
389{
390 struct fw_config_field *field = fw_config_fields;
391
392 if (!fw_config_fields) {
393 fw_config_fields = add;
394 } else {
395 while (field && field->next)
396 field = field->next;
397 field->next = add;
398 }
399}
400
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600401void append_fw_config_bits(struct fw_config_field_bits **bits,
402 unsigned int start_bit, unsigned int end_bit)
403{
404 struct fw_config_field_bits *new_bits = S_ALLOC(sizeof(*new_bits));
405 new_bits->start_bit = start_bit;
406 new_bits->end_bit = end_bit;
407 new_bits->next = NULL;
408
409 if (*bits == NULL) {
410 *bits = new_bits;
411 return;
412 }
413
414 struct fw_config_field_bits *tmp = *bits;
415 while (tmp->next)
416 tmp = tmp->next;
417
418 tmp->next = new_bits;
419}
420
421int fw_config_masks_overlap(struct fw_config_field *existing,
422 unsigned int start_bit, unsigned int end_bit)
423{
424 struct fw_config_field_bits *bits = existing->bits;
425 while (bits) {
426 if (start_bit <= bits->end_bit && end_bit >= bits->start_bit) {
427 printf("ERROR: fw_config field [%u-%u] overlaps %s[%u-%u]\n",
428 start_bit, end_bit,
429 existing->name, bits->start_bit, bits->end_bit);
430 return 1;
431 }
432 bits = bits->next;
433 }
434
435 return 0;
436}
437
438struct fw_config_field *new_fw_config_field(const char *name, struct fw_config_field_bits *bits)
Duncan Laurie47b7b342020-05-15 15:39:08 -0700439{
440 struct fw_config_field *field = find_fw_config_field(name);
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600441 struct fw_config_field_bits *tmp;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700442
443 /* Don't allow re-defining a field, only adding new fields. */
444 if (field) {
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600445 printf("ERROR: fw_config field %s already exists\n", name);
Duncan Laurie47b7b342020-05-15 15:39:08 -0700446 exit(1);
447 }
448
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600449 /* Check that each field is within 64 bits. */
450 tmp = bits;
451 while (tmp) {
452 if (tmp->start_bit > tmp->end_bit || tmp->end_bit > 63) {
Tim Wawrzynczak54c36622021-05-04 10:08:10 -0600453 printf("ERROR: fw_config field %s has invalid range %u-%u\n", name,
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600454 tmp->start_bit, tmp->end_bit);
Duncan Laurie47b7b342020-05-15 15:39:08 -0700455 exit(1);
456 }
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600457
458 /* Check for overlap with an existing field. */
459 struct fw_config_field *existing = fw_config_fields;
460 while (existing) {
461 if (fw_config_masks_overlap(existing, tmp->start_bit, tmp->end_bit))
462 exit(1);
463 existing = existing->next;
464 }
465
466 tmp = tmp->next;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700467 }
468
469 field = S_ALLOC(sizeof(*field));
470 field->name = name;
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600471 field->bits = bits;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700472 append_fw_config_field(field);
473
474 return field;
475}
476
477static void append_fw_config_option_to_field(struct fw_config_field *field,
478 struct fw_config_option *add)
479{
480 struct fw_config_option *option = field->options;
481
482 if (!option) {
483 field->options = add;
484 } else {
485 while (option && option->next)
486 option = option->next;
487 option->next = add;
488 }
489}
490
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600491static uint64_t calc_max_field_value(const struct fw_config_field *field)
492{
493 unsigned int bit_count = 0;
494
495 const struct fw_config_field_bits *bits = field->bits;
496 while (bits) {
497 bit_count += 1 + bits->end_bit - bits->start_bit;
498 bits = bits->next;
499 };
500
501 return (1ull << bit_count) - 1ull;
502}
503
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600504void add_fw_config_option(struct fw_config_field *field, const char *name, uint64_t value)
Duncan Laurie47b7b342020-05-15 15:39:08 -0700505{
506 struct fw_config_option *option;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700507
508 /* Check that option value fits within field mask. */
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600509 uint64_t field_max_value = calc_max_field_value(field);
Duncan Laurie47b7b342020-05-15 15:39:08 -0700510 if (value > field_max_value) {
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600511 printf("ERROR: fw_config option %s:%s value %" PRIx64 " larger than field max %"
512 PRIx64 "\n",
Duncan Laurie47b7b342020-05-15 15:39:08 -0700513 field->name, name, value, field_max_value);
514 exit(1);
515 }
516
517 /* Check for existing option with this name or value. */
518 option = field->options;
519 while (option) {
520 if (!strcmp(option->name, name)) {
521 printf("ERROR: fw_config option name %s:%s already exists\n",
522 field->name, name);
523 exit(1);
524 }
525 /* Compare values. */
526 if (value == option->value) {
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600527 printf("ERROR: fw_config option %s:%s[%" PRIx64 "] redefined as %s\n",
Duncan Laurie47b7b342020-05-15 15:39:08 -0700528 field->name, option->name, value, name);
529 exit(1);
530 }
531 option = option->next;
532 }
533
534 option = S_ALLOC(sizeof(*option));
535 option->name = name;
536 option->value = value;
537
538 /* Add option to the current field. */
539 append_fw_config_option_to_field(field, option);
540}
541
542static void append_fw_config_probe_to_dev(struct device *dev, struct fw_config_probe *add)
543{
544 struct fw_config_probe *probe = dev->probe;
545
546 if (!probe) {
547 dev->probe = add;
548 } else {
549 while (probe && probe->next)
550 probe = probe->next;
551 probe->next = add;
552 }
553}
554
555void add_fw_config_probe(struct bus *bus, const char *field, const char *option)
556{
557 struct fw_config_probe *probe;
558
559 probe = bus->dev->probe;
560 while (probe) {
561 if (!strcmp(probe->field, field) && !strcmp(probe->option, option)) {
562 printf("ERROR: fw_config probe %s:%s already exists\n", field, option);
563 exit(1);
564 }
565 probe = probe->next;
566 }
567
568 probe = S_ALLOC(sizeof(*probe));
569 probe->field = field;
570 probe->option = option;
571
572 append_fw_config_probe_to_dev(bus->dev, probe);
573}
574
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600575static uint64_t compute_fw_config_mask(const struct fw_config_field_bits *bits)
576{
577 uint64_t mask = 0;
578
579 while (bits) {
580 /* Compute mask from start and end bit. */
581 uint64_t tmp = ((1ull << (1ull + bits->end_bit - bits->start_bit)) - 1ull);
582 tmp <<= bits->start_bit;
583 mask |= tmp;
584 bits = bits->next;
585 }
586
587 return mask;
588}
589
590static unsigned int bits_width(const struct fw_config_field_bits *bits)
591{
592 return 1 + bits->end_bit - bits->start_bit;
593}
594
595static uint64_t calc_option_value(const struct fw_config_field *field,
596 const struct fw_config_option *option)
597{
598 uint64_t value = 0;
599 uint64_t original = option->value;
600
601 struct fw_config_field_bits *bits = field->bits;
602 while (bits) {
603 const unsigned int width = bits_width(bits);
604 const uint64_t orig_mask = (1ull << width) - 1ull;
605 const uint64_t orig = (original & orig_mask);
606 value |= (orig << bits->start_bit);
607
608 original >>= width;
609 bits = bits->next;
610 }
611
612 return value;
613}
614
Duncan Laurie47b7b342020-05-15 15:39:08 -0700615static void emit_fw_config(FILE *fil)
616{
617 struct fw_config_field *field = fw_config_fields;
618
619 if (!field)
620 return;
621
Duncan Laurie47b7b342020-05-15 15:39:08 -0700622 while (field) {
623 struct fw_config_option *option = field->options;
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600624 uint64_t mask;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700625
626 fprintf(fil, "#define FW_CONFIG_FIELD_%s_NAME \"%s\"\n",
627 field->name, field->name);
628
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600629 mask = compute_fw_config_mask(field->bits);
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600630 fprintf(fil, "#define FW_CONFIG_FIELD_%s_MASK 0x%" PRIx64 "\n",
Duncan Laurie47b7b342020-05-15 15:39:08 -0700631 field->name, mask);
632
633 while (option) {
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600634 const uint64_t value = calc_option_value(field, option);
Duncan Laurie47b7b342020-05-15 15:39:08 -0700635 fprintf(fil, "#define FW_CONFIG_FIELD_%s_OPTION_%s_NAME \"%s\"\n",
636 field->name, option->name, option->name);
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600637 fprintf(fil, "#define FW_CONFIG_FIELD_%s_OPTION_%s_VALUE 0x%"
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -0600638 PRIx64 "\n", field->name, option->name, value);
Duncan Laurie47b7b342020-05-15 15:39:08 -0700639 option = option->next;
640 }
641
642 field = field->next;
643 }
644
645 fprintf(fil, "\n");
646}
647
648static int emit_fw_config_probe(FILE *fil, struct device *dev)
649{
650 struct fw_config_probe *probe = dev->probe;
651
652 fprintf(fil, "STORAGE struct fw_config %s_probe_list[] = {\n", dev->name);
653
654 while (probe) {
655 /* Find matching field. */
656 struct fw_config_field *field;
657 struct fw_config_option *option;
Tim Wawrzynczak24b4af62020-10-01 15:41:31 -0600658 uint64_t mask, value;
Duncan Laurie47b7b342020-05-15 15:39:08 -0700659
660 field = find_fw_config_field(probe->field);
661 if (!field) {
662 printf("ERROR: fw_config_probe field %s not found\n", probe->field);
663 return -1;
664 }
665 option = find_fw_config_option(field, probe->option);
666 if (!option) {
667 printf("ERROR: fw_config_probe field %s option %s not found\n",
668 probe->field, probe->option);
669 return -1;
670 }
671
672 /* Fill out the probe structure with values from emit_fw_config(). */
673 fprintf(fil, "\t{\n");
674 fprintf(fil, "\t\t.field_name = FW_CONFIG_FIELD_%s_NAME,\n", probe->field);
675 fprintf(fil, "\t\t.option_name = FW_CONFIG_FIELD_%s_OPTION_%s_NAME,\n",
676 probe->field, probe->option);
677 fprintf(fil, "\t\t.mask = FW_CONFIG_FIELD_%s_MASK,\n", probe->field);
678 fprintf(fil, "\t\t.value = FW_CONFIG_FIELD_%s_OPTION_%s_VALUE,\n",
679 probe->field, probe->option);
680 fprintf(fil, "\t},\n");
681
682 probe = probe->next;
683 }
684
685 /* Add empty entry to mark end of list. */
686 fprintf(fil, "\t{ }\n};\n");
687 return 0;
688}
689
Furquan Shaikh93198262018-06-03 04:22:17 -0700690/*
691 * Allocate a new bus for the provided device.
692 * - If this is the first bus being allocated under this device, then its id
693 * is set to 0 and bus and last_bus are pointed to the newly allocated bus.
694 * - If this is not the first bus under this device, then its id is set to 1
695 * plus the id of last bus and newly allocated bus is added to the list of
696 * buses under the device. last_bus is updated to point to the newly
697 * allocated bus.
698 */
699static void alloc_bus(struct device *dev)
700{
701 struct bus *bus = S_ALLOC(sizeof(*bus));
702
703 bus->dev = dev;
704
705 if (dev->last_bus == NULL) {
706 bus->id = 0;
707 dev->bus = bus;
708 } else {
709 bus->id = dev->last_bus->id + 1;
710 dev->last_bus->next_bus = bus;
711 }
712
713 dev->last_bus = bus;
714}
715
716/*
717 * Allocate a new device under the given parent. This function allocates a new
718 * device structure under the provided parent bus and allocates a bus structure
719 * under the newly allocated device.
720 */
721static struct device *alloc_dev(struct bus *parent)
722{
723 struct device *dev = S_ALLOC(sizeof(*dev));
724
Furquan Shaikh93198262018-06-03 04:22:17 -0700725 dev->parent = parent;
726 dev->subsystem_vendor = -1;
727 dev->subsystem_device = -1;
728
729 alloc_bus(dev);
730
731 return dev;
732}
733
734/*
735 * This function scans the children of given bus to see if any device matches
736 * the new device that is requested.
737 *
738 * Returns pointer to the node if found, else NULL.
739 */
740static struct device *get_dev(struct bus *parent, int path_a, int path_b,
741 int bustype, struct chip_instance *chip_instance)
742{
743 struct device *child = parent->children;
744
745 while (child) {
746 if ((child->path_a == path_a) && (child->path_b == path_b) &&
747 (child->bustype == bustype) &&
748 (child->chip_instance == chip_instance))
749 return child;
750
751 child = child->sibling;
752 }
753
754 return NULL;
755}
756
Furquan Shaikh27efc502018-06-22 09:19:15 -0700757/*
758 * Add given node as child of the provided parent. If this is the first child of
759 * the parent, update parent->children pointer as well.
760 */
761static void set_new_child(struct bus *parent, struct device *child)
762{
763 struct device *c = parent->children;
764 if (c) {
765 while (c->sibling)
766 c = c->sibling;
767 c->sibling = child;
768 } else
769 parent->children = child;
770
771 child->sibling = NULL;
772 child->parent = parent;
773}
774
Nico Huber8e1ea522020-06-03 10:20:07 -0700775static const struct device *find_alias(const struct device *const parent,
776 const char *const alias)
777{
778 if (parent->alias && !strcmp(parent->alias, alias))
779 return parent;
780
781 const struct bus *bus;
782 for (bus = parent->bus; bus; bus = bus->next_bus) {
783 const struct device *child;
784 for (child = bus->children; child; child = child->sibling) {
785 const struct device *const ret = find_alias(child, alias);
786 if (ret)
787 return ret;
788 }
789 }
790
791 return NULL;
792}
793
Duncan Lauriee335c2e2020-07-29 16:28:43 -0700794static struct device *new_device_with_path(struct bus *parent,
795 struct chip_instance *chip_instance,
796 const int bustype, int path_a, int path_b,
797 char *alias, int status)
Martin Rothbec07532016-08-05 18:32:18 -0600798{
Furquan Shaikh93198262018-06-03 04:22:17 -0700799 struct device *new_d;
800
Furquan Shaikh93198262018-06-03 04:22:17 -0700801 /* If device is found under parent, no need to allocate new device. */
802 new_d = get_dev(parent, path_a, path_b, bustype, chip_instance);
803 if (new_d) {
804 alloc_bus(new_d);
805 return new_d;
806 }
807
808 new_d = alloc_dev(parent);
809
810 new_d->bustype = bustype;
811
812 new_d->path_a = path_a;
813 new_d->path_b = path_b;
Nico Huber8e1ea522020-06-03 10:20:07 -0700814 new_d->alias = alias;
Furquan Shaikh93198262018-06-03 04:22:17 -0700815
Hung-Te Lin936dbe12018-09-10 10:51:26 +0800816 new_d->enabled = status & 0x01;
817 new_d->hidden = (status >> 1) & 0x01;
Ronald G. Minnich466ca2c2019-10-22 02:02:24 +0000818 new_d->mandatory = (status >> 2) & 0x01;
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -0700819 new_d->chip_instance = chip_instance;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000820
Furquan Shaikh27efc502018-06-22 09:19:15 -0700821 set_new_child(parent, new_d);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000822
Furquan Shaikha9b64292018-05-31 07:52:00 -0700823 switch (bustype) {
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200824 case PCI:
Patrick Georgi114e7b22010-05-05 11:19:50 +0000825 new_d->path = ".type=DEVICE_PATH_PCI,{.pci={ .devfn = PCI_DEVFN(0x%x,%d)}}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200826 break;
827
828 case PNP:
Patrick Georgi114e7b22010-05-05 11:19:50 +0000829 new_d->path = ".type=DEVICE_PATH_PNP,{.pnp={ .port = 0x%x, .device = 0x%x }}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200830 break;
831
832 case I2C:
Duncan Laurieb7ce5fe2016-05-07 19:49:37 -0700833 new_d->path = ".type=DEVICE_PATH_I2C,{.i2c={ .device = 0x%x, .mode_10bit = %d }}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200834 break;
835
836 case APIC:
Patrick Georgi114e7b22010-05-05 11:19:50 +0000837 new_d->path = ".type=DEVICE_PATH_APIC,{.apic={ .apic_id = 0x%x }}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200838 break;
839
Stefan Reinauer0aa37c42013-02-12 15:20:54 -0800840 case CPU_CLUSTER:
841 new_d->path = ".type=DEVICE_PATH_CPU_CLUSTER,{.cpu_cluster={ .cluster = 0x%x }}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200842 break;
843
Aaron Durbinffda804b2014-09-03 12:40:15 -0500844 case CPU:
845 new_d->path = ".type=DEVICE_PATH_CPU,{.cpu={ .id = 0x%x }}";
846 break;
847
Stefan Reinauer4aff4452013-02-12 14:17:15 -0800848 case DOMAIN:
849 new_d->path = ".type=DEVICE_PATH_DOMAIN,{.domain={ .domain = 0x%x }}";
Sven Schnelle0fa50a12012-06-21 22:19:48 +0200850 break;
851
852 case IOAPIC:
853 new_d->path = ".type=DEVICE_PATH_IOAPIC,{.ioapic={ .ioapic_id = 0x%x }}";
854 break;
Duncan Laurie4650f5b2016-05-07 20:01:34 -0700855
856 case GENERIC:
857 new_d->path = ".type=DEVICE_PATH_GENERIC,{.generic={ .id = 0x%x, .subid = 0x%x }}";
858 break;
Furquan Shaikhe6700292017-02-11 00:50:38 -0800859
860 case SPI:
861 new_d->path = ".type=DEVICE_PATH_SPI,{.spi={ .cs = 0x%x }}";
862 break;
863
Duncan Lauriebae9f852018-05-07 14:18:13 -0700864 case USB:
865 new_d->path = ".type=DEVICE_PATH_USB,{.usb={ .port_type = %d, .port_id = %d }}";
866 break;
867
Justin TerAvestca2ed9f2018-01-17 16:36:30 -0800868 case MMIO:
869 new_d->path = ".type=DEVICE_PATH_MMIO,{.mmio={ .addr = 0x%x }}";
870 break;
Raul E Rangel3f3f53c2020-05-06 11:47:04 -0600871
872 case ESPI:
873 new_d->path = ".type=DEVICE_PATH_ESPI,{.espi={ .addr = 0x%x }}";
874 break;
875
876 case LPC:
877 new_d->path = ".type=DEVICE_PATH_LPC,{.lpc={ .addr = 0x%x }}";
878 break;
Michael Niewöhnerdbb667a2020-12-11 21:26:02 +0100879
880 case GPIO:
881 new_d->path = ".type=DEVICE_PATH_GPIO,{.gpio={ .id = 0x%x }}";
882 break;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000883 }
Justin TerAvestca2ed9f2018-01-17 16:36:30 -0800884
Patrick Georgi114e7b22010-05-05 11:19:50 +0000885 return new_d;
886}
887
Duncan Lauriee335c2e2020-07-29 16:28:43 -0700888struct device *new_device_reference(struct bus *parent,
889 struct chip_instance *chip_instance,
890 const char *reference, int status)
891{
892 const struct device *dev = find_alias(&base_root_dev, reference);
893
894 if (!dev) {
895 printf("ERROR: Unable to find device reference %s\n", reference);
896 exit(1);
897 }
898
899 return new_device_with_path(parent, chip_instance, dev->bustype, dev->path_a,
900 dev->path_b, NULL, status);
901}
902
903struct device *new_device_raw(struct bus *parent,
904 struct chip_instance *chip_instance,
905 const int bustype, const char *devnum,
906 char *alias, int status)
907{
908 char *tmp;
909 int path_a;
910 int path_b = 0;
911
912 /* Check for alias name conflicts. */
913 if (alias && find_alias(root_parent->dev, alias)) {
914 printf("ERROR: Alias already exists: %s\n", alias);
915 exit(1);
916 }
917
918 path_a = strtol(devnum, &tmp, 16);
919 if (*tmp == '.') {
920 tmp++;
921 path_b = strtol(tmp, NULL, 16);
922 }
923
924 return new_device_with_path(parent, chip_instance, bustype, path_a, path_b, alias,
925 status);
926}
927
Furquan Shaikh27efc502018-06-22 09:19:15 -0700928static void new_resource(struct device *dev, int type, int index, int base)
Martin Rothbec07532016-08-05 18:32:18 -0600929{
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700930 struct resource *r = S_ALLOC(sizeof(struct resource));
931
Patrick Georgi114e7b22010-05-05 11:19:50 +0000932 r->type = type;
933 r->index = index;
934 r->base = base;
Patrick Georgi68befd52010-05-05 12:05:25 +0000935 if (dev->res) {
936 struct resource *head = dev->res;
Martin Rothbec07532016-08-05 18:32:18 -0600937 while (head->next)
938 head = head->next;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000939 head->next = r;
940 } else {
Patrick Georgi68befd52010-05-05 12:05:25 +0000941 dev->res = r;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000942 }
Patrick Georgi114e7b22010-05-05 11:19:50 +0000943}
944
Furquan Shaikh27efc502018-06-22 09:19:15 -0700945void add_resource(struct bus *bus, int type, int index, int base)
946{
947 new_resource(bus->dev, type, index, base);
948}
949
Nico Huberd09459f2020-05-26 22:13:09 +0200950static void add_reg(struct reg **const head, char *const name, char *const val)
Martin Rothbec07532016-08-05 18:32:18 -0600951{
Nico Huberd09459f2020-05-26 22:13:09 +0200952 struct reg *const r = S_ALLOC(sizeof(struct reg));
953 struct reg *prev = NULL;
954 struct reg *cur;
Furquan Shaikh369e1f02018-05-31 09:48:51 -0700955
Patrick Georgi114e7b22010-05-05 11:19:50 +0000956 r->key = name;
957 r->value = val;
Nico Huberd09459f2020-05-26 22:13:09 +0200958
959 for (cur = *head; cur != NULL; prev = cur, cur = cur->next) {
960 const int sort = strcmp(r->key, cur->key);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000961 if (sort == 0) {
Patrick Georgi51933122020-11-02 18:08:14 +0100962 printf("ERROR: duplicate 'register' key '%s'.\n", r->key);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000963 exit(1);
964 }
Nico Huberd09459f2020-05-26 22:13:09 +0200965 if (sort < 0)
966 break;
Patrick Georgi114e7b22010-05-05 11:19:50 +0000967 }
Nico Huberd09459f2020-05-26 22:13:09 +0200968 r->next = cur;
969 if (prev)
970 prev->next = r;
971 else
972 *head = r;
973}
974
975void add_register(struct chip_instance *chip_instance, char *name, char *val)
976{
977 add_reg(&chip_instance->reg, name, val);
Patrick Georgi114e7b22010-05-05 11:19:50 +0000978}
979
Nico Huber8e1ea522020-06-03 10:20:07 -0700980void add_reference(struct chip_instance *const chip_instance,
981 char *const name, char *const alias)
982{
983 add_reg(&chip_instance->ref, name, alias);
984}
985
986static void set_reference(struct chip_instance *const chip_instance,
987 char *const name, char *const alias)
988{
989 const struct device *const dev = find_alias(&base_root_dev, alias);
990 if (!dev) {
991 printf("ERROR: Cannot find device alias '%s'.\n", alias);
992 exit(1);
993 }
994
995 char *const ref_name = S_ALLOC(strlen(dev->name) + 2);
996 sprintf(ref_name, "&%s", dev->name);
997 add_register(chip_instance, name, ref_name);
998}
999
1000static void update_references(FILE *file, FILE *head, struct device *dev,
1001 struct device *next)
1002{
1003 struct reg *ref;
1004
1005 for (ref = dev->chip_instance->ref; ref; ref = ref->next)
1006 set_reference(dev->chip_instance, ref->key, ref->value);
1007}
1008
Patrick Rudolphac24d3c2019-04-12 14:42:17 +02001009void add_slot_desc(struct bus *bus, char *type, char *length, char *designation,
1010 char *data_width)
1011{
1012 struct device *dev = bus->dev;
1013
1014 if (dev->bustype != PCI && dev->bustype != DOMAIN) {
1015 printf("ERROR: 'slot_type' only allowed for PCI devices\n");
1016 exit(1);
1017 }
1018
1019 dev->smbios_slot_type = type;
1020 dev->smbios_slot_length = length;
1021 dev->smbios_slot_data_width = data_width;
1022 dev->smbios_slot_designation = designation;
1023}
1024
Furquan Shaikh93198262018-06-03 04:22:17 -07001025void add_pci_subsystem_ids(struct bus *bus, int vendor, int device,
Martin Rothbec07532016-08-05 18:32:18 -06001026 int inherit)
Sven Schnelle270a9082011-03-01 19:58:15 +00001027{
Furquan Shaikh93198262018-06-03 04:22:17 -07001028 struct device *dev = bus->dev;
1029
Stefan Reinauer4aff4452013-02-12 14:17:15 -08001030 if (dev->bustype != PCI && dev->bustype != DOMAIN) {
Sven Schnelle270a9082011-03-01 19:58:15 +00001031 printf("ERROR: 'subsystem' only allowed for PCI devices\n");
1032 exit(1);
1033 }
1034
1035 dev->subsystem_vendor = vendor;
1036 dev->subsystem_device = device;
1037 dev->inherit_subsystem = inherit;
1038}
1039
Furquan Shaikh93198262018-06-03 04:22:17 -07001040void add_ioapic_info(struct bus *bus, int apicid, const char *_srcpin,
Martin Rothbec07532016-08-05 18:32:18 -06001041 int irqpin)
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001042{
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001043 int srcpin;
Furquan Shaikh93198262018-06-03 04:22:17 -07001044 struct device *dev = bus->dev;
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001045
Martin Rothbec07532016-08-05 18:32:18 -06001046 if (!_srcpin || strlen(_srcpin) < 4 || strncasecmp(_srcpin, "INT", 3) ||
1047 _srcpin[3] < 'A' || _srcpin[3] > 'D') {
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001048 printf("ERROR: malformed ioapic_irq args: %s\n", _srcpin);
1049 exit(1);
1050 }
1051
1052 srcpin = _srcpin[3] - 'A';
1053
Stefan Reinauer4aff4452013-02-12 14:17:15 -08001054 if (dev->bustype != PCI && dev->bustype != DOMAIN) {
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001055 printf("ERROR: ioapic config only allowed for PCI devices\n");
1056 exit(1);
1057 }
1058
1059 if (srcpin > 3) {
Patrick Georgi116327e2012-07-20 12:47:06 +02001060 printf("ERROR: srcpin '%d' invalid\n", srcpin);
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001061 exit(1);
1062 }
1063 dev->pci_irq_info[srcpin].ioapic_irq_pin = irqpin;
1064 dev->pci_irq_info[srcpin].ioapic_dst_id = apicid;
1065}
1066
Furquan Shaikh93198262018-06-03 04:22:17 -07001067static int dev_has_children(struct device *dev)
Martin Rothbec07532016-08-05 18:32:18 -06001068{
Furquan Shaikh93198262018-06-03 04:22:17 -07001069 struct bus *bus = dev->bus;
1070
1071 while (bus) {
1072 if (bus->children)
1073 return 1;
1074 bus = bus->next_bus;
1075 }
1076
1077 return 0;
1078}
1079
Nico Huber17e9bcb2019-09-20 12:05:51 +02001080static void pass0(FILE *fil, FILE *head, struct device *ptr, struct device *next)
Furquan Shaikh93198262018-06-03 04:22:17 -07001081{
Furquan Shaikh4ebe9532020-05-02 15:34:42 -07001082 static int dev_id;
1083
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001084 if (ptr == &base_root_dev) {
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001085 fprintf(fil, "STORAGE struct bus %s_links[];\n",
Furquan Shaikh93198262018-06-03 04:22:17 -07001086 ptr->name);
1087 return;
1088 }
1089
Furquan Shaikh4ebe9532020-05-02 15:34:42 -07001090 char *name = S_ALLOC(10);
1091 sprintf(name, "_dev%d", dev_id++);
1092 ptr->name = name;
1093
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001094 fprintf(fil, "STORAGE struct device %s;\n", ptr->name);
Furquan Shaikh4ca3a8a2018-06-07 23:36:45 -07001095 if (ptr->res)
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001096 fprintf(fil, "STORAGE struct resource %s_res[];\n",
Furquan Shaikh93198262018-06-03 04:22:17 -07001097 ptr->name);
1098 if (dev_has_children(ptr))
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001099 fprintf(fil, "STORAGE struct bus %s_links[];\n",
Martin Rothbec07532016-08-05 18:32:18 -06001100 ptr->name);
Stefan Reinauer57879c92012-07-31 16:47:25 -07001101
Furquan Shaikh93198262018-06-03 04:22:17 -07001102 if (next)
1103 return;
1104
1105 fprintf(fil,
1106 "DEVTREE_CONST struct device * DEVTREE_CONST last_dev = &%s;\n",
1107 ptr->name);
Patrick Georgi114e7b22010-05-05 11:19:50 +00001108}
1109
Furquan Shaikh93198262018-06-03 04:22:17 -07001110static void emit_resources(FILE *fil, struct device *ptr)
1111{
Furquan Shaikh4ca3a8a2018-06-07 23:36:45 -07001112 if (ptr->res == NULL)
Furquan Shaikh93198262018-06-03 04:22:17 -07001113 return;
1114
1115 int i = 1;
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001116 fprintf(fil, "STORAGE struct resource %s_res[] = {\n", ptr->name);
Furquan Shaikh93198262018-06-03 04:22:17 -07001117 struct resource *r = ptr->res;
1118 while (r) {
1119 fprintf(fil,
1120 "\t\t{ .flags=IORESOURCE_FIXED | IORESOURCE_ASSIGNED | IORESOURCE_");
1121 if (r->type == IRQ)
1122 fprintf(fil, "IRQ");
1123 if (r->type == DRQ)
1124 fprintf(fil, "DRQ");
1125 if (r->type == IO)
1126 fprintf(fil, "IO");
1127 fprintf(fil, ", .index=0x%x, .base=0x%x,", r->index,
1128 r->base);
1129 if (r->next)
1130 fprintf(fil, ".next=&%s_res[%d]},\n", ptr->name,
1131 i++);
1132 else
1133 fprintf(fil, ".next=NULL },\n");
1134 r = r->next;
1135 }
1136
1137 fprintf(fil, "\t };\n");
1138}
1139
1140static void emit_bus(FILE *fil, struct bus *bus)
1141{
1142 fprintf(fil, "\t\t[%d] = {\n", bus->id);
1143 fprintf(fil, "\t\t\t.link_num = %d,\n", bus->id);
1144 fprintf(fil, "\t\t\t.dev = &%s,\n", bus->dev->name);
1145 if (bus->children)
1146 fprintf(fil, "\t\t\t.children = &%s,\n", bus->children->name);
1147
1148 if (bus->next_bus)
1149 fprintf(fil, "\t\t\t.next=&%s_links[%d],\n", bus->dev->name,
1150 bus->id + 1);
1151 else
1152 fprintf(fil, "\t\t\t.next = NULL,\n");
1153 fprintf(fil, "\t\t},\n");
1154}
1155
1156static void emit_dev_links(FILE *fil, struct device *ptr)
1157{
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001158 fprintf(fil, "STORAGE struct bus %s_links[] = {\n",
Furquan Shaikh93198262018-06-03 04:22:17 -07001159 ptr->name);
1160
1161 struct bus *bus = ptr->bus;
1162
1163 while (bus) {
1164 emit_bus(fil, bus);
1165 bus = bus->next_bus;
1166 }
1167
1168 fprintf(fil, "\t};\n");
1169}
1170
Furquan Shaikhfceca922021-01-06 22:36:59 -08001171static struct chip_instance *get_chip_instance(const struct device *dev)
Sven Schnelle0fa50a12012-06-21 22:19:48 +02001172{
Furquan Shaikhfceca922021-01-06 22:36:59 -08001173 struct chip_instance *chip_ins = dev->chip_instance;
Furquan Shaikhbbade242020-05-02 16:05:29 -07001174 /*
1175 * If the chip instance of device has base_chip_instance pointer set, then follow that
1176 * to update the chip instance for current device.
1177 */
1178 if (chip_ins->base_chip_instance)
1179 chip_ins = chip_ins->base_chip_instance;
1180
Furquan Shaikhfceca922021-01-06 22:36:59 -08001181 return chip_ins;
1182}
1183
1184static void pass1(FILE *fil, FILE *head, struct device *ptr, struct device *next)
1185{
1186 int pin;
1187 struct chip_instance *chip_ins = get_chip_instance(ptr);
1188 int has_children = dev_has_children(ptr);
1189
Duncan Laurie47b7b342020-05-15 15:39:08 -07001190 /* Emit probe structures. */
1191 if (ptr->probe && (emit_fw_config_probe(fil, ptr) < 0)) {
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001192 if (head)
1193 fclose(head);
Duncan Laurie47b7b342020-05-15 15:39:08 -07001194 fclose(fil);
1195 exit(1);
1196 }
1197
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001198 if (ptr == &base_root_dev)
1199 fprintf(fil, "DEVTREE_CONST struct device %s = {\n", ptr->name);
1200 else
1201 fprintf(fil, "STORAGE struct device %s = {\n", ptr->name);
1202
Furquan Shaikh93198262018-06-03 04:22:17 -07001203 fprintf(fil, "#if !DEVTREE_EARLY\n");
Furquan Shaikh50ddc0b2018-06-23 00:59:31 -07001204
1205 /*
1206 * ops field is set to default_dev_ops_root only for the root
1207 * device. For all other devices, it is set by the driver at runtime.
1208 */
1209 if (ptr == &base_root_dev)
1210 fprintf(fil, "\t.ops = &default_dev_ops_root,\n");
1211 else
1212 fprintf(fil, "\t.ops = NULL,\n");
Furquan Shaikh93198262018-06-03 04:22:17 -07001213 fprintf(fil, "#endif\n");
1214 fprintf(fil, "\t.bus = &%s_links[%d],\n", ptr->parent->dev->name,
1215 ptr->parent->id);
1216 fprintf(fil, "\t.path = {");
1217 fprintf(fil, ptr->path, ptr->path_a, ptr->path_b);
1218 fprintf(fil, "},\n");
1219 fprintf(fil, "\t.enabled = %d,\n", ptr->enabled);
Hung-Te Lin936dbe12018-09-10 10:51:26 +08001220 fprintf(fil, "\t.hidden = %d,\n", ptr->hidden);
Ronald G. Minnich466ca2c2019-10-22 02:02:24 +00001221 fprintf(fil, "\t.mandatory = %d,\n", ptr->mandatory);
Furquan Shaikh93198262018-06-03 04:22:17 -07001222 fprintf(fil, "\t.on_mainboard = 1,\n");
1223 if (ptr->subsystem_vendor > 0)
1224 fprintf(fil, "\t.subsystem_vendor = 0x%04x,\n",
1225 ptr->subsystem_vendor);
Sven Schnelle270a9082011-03-01 19:58:15 +00001226
Furquan Shaikh93198262018-06-03 04:22:17 -07001227 if (ptr->subsystem_device > 0)
1228 fprintf(fil, "\t.subsystem_device = 0x%04x,\n",
1229 ptr->subsystem_device);
1230
Furquan Shaikh4ca3a8a2018-06-07 23:36:45 -07001231 if (ptr->res) {
Furquan Shaikh93198262018-06-03 04:22:17 -07001232 fprintf(fil, "\t.resource_list = &%s_res[0],\n",
Martin Rothbec07532016-08-05 18:32:18 -06001233 ptr->name);
Furquan Shaikh93198262018-06-03 04:22:17 -07001234 }
1235 if (has_children)
1236 fprintf(fil, "\t.link_list = &%s_links[0],\n",
1237 ptr->name);
1238 else
1239 fprintf(fil, "\t.link_list = NULL,\n");
1240 if (ptr->sibling)
1241 fprintf(fil, "\t.sibling = &%s,\n", ptr->sibling->name);
Aaron Durbind47afe92020-03-26 12:29:35 -06001242 else
1243 fprintf(fil, "\t.sibling = NULL,\n");
Duncan Laurie47b7b342020-05-15 15:39:08 -07001244 if (ptr->probe)
1245 fprintf(fil, "\t.probe_list = %s_probe_list,\n", ptr->name);
Furquan Shaikhe59ad2e2021-05-22 07:36:58 -07001246 fprintf(fil, "#if !DEVTREE_EARLY\n");
Kyösti Mälkki1557a672019-06-30 10:51:31 +03001247 for (pin = 0; pin < 4; pin++) {
1248 if (ptr->pci_irq_info[pin].ioapic_irq_pin > 0)
1249 fprintf(fil,
1250 "\t.pci_irq_info[%d].ioapic_irq_pin = %d,\n",
1251 pin, ptr->pci_irq_info[pin].ioapic_irq_pin);
1252
1253 if (ptr->pci_irq_info[pin].ioapic_dst_id > 0)
1254 fprintf(fil,
1255 "\t.pci_irq_info[%d].ioapic_dst_id = %d,\n",
1256 pin, ptr->pci_irq_info[pin].ioapic_dst_id);
1257 }
Furquan Shaikh93198262018-06-03 04:22:17 -07001258 fprintf(fil, "\t.chip_ops = &%s_ops,\n",
1259 chip_ins->chip->name_underscore);
1260 if (chip_ins == &mainboard_instance)
1261 fprintf(fil, "\t.name = mainboard_name,\n");
1262 fprintf(fil, "#endif\n");
1263 if (chip_ins->chip->chiph_exists)
1264 fprintf(fil, "\t.chip_info = &%s_info_%d,\n",
1265 chip_ins->chip->name_underscore, chip_ins->id);
1266 if (next)
Patrick Rudolphac24d3c2019-04-12 14:42:17 +02001267 fprintf(fil, "\t.next=&%s,\n", next->name);
1268 if (ptr->smbios_slot_type || ptr->smbios_slot_data_width ||
1269 ptr->smbios_slot_designation || ptr->smbios_slot_length) {
1270 fprintf(fil, "#if !DEVTREE_EARLY\n");
1271 fprintf(fil, "#if CONFIG(GENERATE_SMBIOS_TABLES)\n");
1272 }
1273 /* SMBIOS types start at 1, if zero it hasn't been set */
1274 if (ptr->smbios_slot_type)
1275 fprintf(fil, "\t.smbios_slot_type = %s,\n",
1276 ptr->smbios_slot_type);
1277 if (ptr->smbios_slot_data_width)
1278 fprintf(fil, "\t.smbios_slot_data_width = %s,\n",
1279 ptr->smbios_slot_data_width);
1280 if (ptr->smbios_slot_designation)
1281 fprintf(fil, "\t.smbios_slot_designation = \"%s\",\n",
1282 ptr->smbios_slot_designation);
1283 if (ptr->smbios_slot_length)
1284 fprintf(fil, "\t.smbios_slot_length = %s,\n",
1285 ptr->smbios_slot_length);
1286 if (ptr->smbios_slot_type || ptr->smbios_slot_data_width ||
1287 ptr->smbios_slot_designation || ptr->smbios_slot_length) {
1288 fprintf(fil, "#endif\n");
1289 fprintf(fil, "#endif\n");
1290 }
Furquan Shaikh93198262018-06-03 04:22:17 -07001291 fprintf(fil, "};\n");
1292
1293 emit_resources(fil, ptr);
1294
1295 if (has_children)
1296 emit_dev_links(fil, ptr);
1297}
1298
Nico Huber17e9bcb2019-09-20 12:05:51 +02001299static void expose_device_names(FILE *fil, FILE *head, struct device *ptr, struct device *next)
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001300{
Furquan Shaikhfceca922021-01-06 22:36:59 -08001301 struct chip_instance *chip_ins = get_chip_instance(ptr);
1302
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001303 /* Only devices on root bus here. */
Nico Huber17e9bcb2019-09-20 12:05:51 +02001304 if (ptr->bustype == PCI && ptr->parent->dev->bustype == DOMAIN) {
Furquan Shaikh708f25e2021-01-08 09:54:54 -08001305 fprintf(head, "extern DEVTREE_CONST struct device *const __pci_0_%02x_%d;\n",
Nico Huber17e9bcb2019-09-20 12:05:51 +02001306 ptr->path_a, ptr->path_b);
Furquan Shaikh708f25e2021-01-08 09:54:54 -08001307 fprintf(fil, "DEVTREE_CONST struct device *const __pci_0_%02x_%d = &%s;\n",
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001308 ptr->path_a, ptr->path_b, ptr->name);
Furquan Shaikhfceca922021-01-06 22:36:59 -08001309
1310 if (chip_ins->chip->chiph_exists) {
1311 fprintf(head, "extern DEVTREE_CONST void *const __pci_0_%02x_%d_config;\n",
1312 ptr->path_a, ptr->path_b);
1313 fprintf(fil, "DEVTREE_CONST void *const __pci_0_%02x_%d_config = &%s_info_%d;\n",
1314 ptr->path_a, ptr->path_b, chip_ins->chip->name_underscore, chip_ins->id);
1315 }
Nico Huber17e9bcb2019-09-20 12:05:51 +02001316 }
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001317
Nico Huber17e9bcb2019-09-20 12:05:51 +02001318 if (ptr->bustype == PNP) {
Furquan Shaikh708f25e2021-01-08 09:54:54 -08001319 fprintf(head, "extern DEVTREE_CONST struct device *const __pnp_%04x_%02x;\n",
Nico Huber17e9bcb2019-09-20 12:05:51 +02001320 ptr->path_a, ptr->path_b);
Furquan Shaikh708f25e2021-01-08 09:54:54 -08001321 fprintf(fil, "DEVTREE_CONST struct device *const __pnp_%04x_%02x = &%s;\n",
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001322 ptr->path_a, ptr->path_b, ptr->name);
Nico Huber17e9bcb2019-09-20 12:05:51 +02001323 }
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02001324}
1325
Furquan Shaikh93198262018-06-03 04:22:17 -07001326static void add_siblings_to_queue(struct queue_entry **bfs_q_head,
1327 struct device *d)
1328{
1329 while (d) {
1330 enqueue_tail(bfs_q_head, d);
1331 d = d->sibling;
1332 }
1333}
1334
1335static void add_children_to_queue(struct queue_entry **bfs_q_head,
1336 struct device *d)
1337{
1338 struct bus *bus = d->bus;
1339
1340 while (bus) {
1341 if (bus->children)
1342 add_siblings_to_queue(bfs_q_head, bus->children);
1343 bus = bus->next_bus;
Myles Watson894a3472010-06-09 22:41:35 +00001344 }
Patrick Georgi114e7b22010-05-05 11:19:50 +00001345}
1346
Nico Huber17e9bcb2019-09-20 12:05:51 +02001347static void walk_device_tree(FILE *fil, FILE *head, struct device *ptr,
1348 void (*func)(FILE *, FILE *, struct device *,
Furquan Shaikh93198262018-06-03 04:22:17 -07001349 struct device *))
Martin Rothbec07532016-08-05 18:32:18 -06001350{
Furquan Shaikh93198262018-06-03 04:22:17 -07001351 struct queue_entry *bfs_q_head = NULL;
1352
1353 enqueue_tail(&bfs_q_head, ptr);
1354
1355 while ((ptr = dequeue_head(&bfs_q_head))) {
1356 add_children_to_queue(&bfs_q_head, ptr);
Nico Huber17e9bcb2019-09-20 12:05:51 +02001357 func(fil, head, ptr, peek_queue_head(bfs_q_head));
Furquan Shaikh93198262018-06-03 04:22:17 -07001358 }
Patrick Georgi114e7b22010-05-05 11:19:50 +00001359}
1360
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001361static void emit_chip_headers(FILE *fil, struct chip *chip)
Furquan Shaikha0cc5a62018-05-30 23:46:16 -07001362{
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001363 struct chip *tmp = chip;
Furquan Shaikha0cc5a62018-05-30 23:46:16 -07001364
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001365 while (chip) {
1366 if (chip->chiph_exists)
1367 fprintf(fil, "#include \"%s/chip.h\"\n", chip->name);
1368 chip = chip->next;
Furquan Shaikha0cc5a62018-05-30 23:46:16 -07001369 }
1370 fprintf(fil, "\n#if !DEVTREE_EARLY\n");
1371 fprintf(fil,
1372 "__attribute__((weak)) struct chip_operations mainboard_ops = {};\n");
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001373
1374 chip = tmp;
1375 while (chip) {
Kyösti Mälkkib2a10f82019-08-17 06:28:40 +03001376 /* A lot of cpus do not define chip_operations at all, and the ones
1377 that do only initialise .name. */
1378 if (strstr(chip->name_underscore, "cpu_") == chip->name_underscore) {
1379 fprintf(fil,
1380 "__attribute__((weak)) struct chip_operations %s_ops = {};\n",
1381 chip->name_underscore);
1382 } else {
1383 fprintf(fil, "extern struct chip_operations %s_ops;\n",
1384 chip->name_underscore);
1385 }
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001386 chip = chip->next;
Furquan Shaikha0cc5a62018-05-30 23:46:16 -07001387 }
1388 fprintf(fil, "#endif\n");
1389}
1390
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001391static void emit_chip_instance(FILE *fil, struct chip_instance *instance)
1392{
Kyösti Mälkki5ccce7c2019-03-15 10:04:11 +02001393 fprintf(fil, "STORAGE struct %s_config %s_info_%d = {",
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001394 instance->chip->name_underscore,
1395 instance->chip->name_underscore,
1396 instance->id);
1397
1398 if (instance->reg) {
1399 fprintf(fil, "\n");
1400 struct reg *r = instance->reg;
1401 while (r) {
1402 fprintf(fil, "\t.%s = %s,\n", r->key, r->value);
1403 r = r->next;
1404 }
1405 }
1406 fprintf(fil, "};\n\n");
1407}
1408
Nico Huber8e1ea522020-06-03 10:20:07 -07001409static void emit_chip_configs(FILE *fil)
Furquan Shaikh79e84122018-05-30 15:09:09 -07001410{
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001411 struct chip *chip = chip_header.next;
1412 struct chip_instance *instance;
Furquan Shaikh9f681d22020-05-02 15:51:02 -07001413 int chip_id;
Furquan Shaikh79e84122018-05-30 15:09:09 -07001414
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001415 for (; chip; chip = chip->next) {
Furquan Shaikh79e84122018-05-30 15:09:09 -07001416 if (!chip->chiph_exists)
1417 continue;
1418
Furquan Shaikh9f681d22020-05-02 15:51:02 -07001419 chip_id = 1;
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001420 instance = chip->instance;
1421 while (instance) {
Furquan Shaikhbbade242020-05-02 16:05:29 -07001422 /*
1423 * Emit this chip instance only if there is no forwarding pointer to the
1424 * base tree chip instance.
1425 */
1426 if (instance->base_chip_instance == NULL) {
1427 instance->id = chip_id++;
1428 emit_chip_instance(fil, instance);
1429 }
Furquan Shaikhc56ae2f2018-05-31 10:33:16 -07001430 instance = instance->next;
Furquan Shaikh79e84122018-05-30 15:09:09 -07001431 }
1432 }
1433}
1434
Nico Huber17e9bcb2019-09-20 12:05:51 +02001435static void inherit_subsystem_ids(FILE *file, FILE *head, struct device *dev,
Furquan Shaikh93198262018-06-03 04:22:17 -07001436 struct device *next)
Sven Schnelle270a9082011-03-01 19:58:15 +00001437{
1438 struct device *p;
Sven Schnelle270a9082011-03-01 19:58:15 +00001439
1440 if (dev->subsystem_vendor != -1 && dev->subsystem_device != -1) {
1441 /* user already gave us a subsystem vendor/device */
1442 return;
1443 }
1444
Furquan Shaikh93198262018-06-03 04:22:17 -07001445 for (p = dev; p && p->parent->dev != p; p = p->parent->dev) {
Sven Schnelle270a9082011-03-01 19:58:15 +00001446
Stefan Reinauer4aff4452013-02-12 14:17:15 -08001447 if (p->bustype != PCI && p->bustype != DOMAIN)
Sven Schnelle270a9082011-03-01 19:58:15 +00001448 continue;
1449
1450 if (p->inherit_subsystem) {
1451 dev->subsystem_vendor = p->subsystem_vendor;
1452 dev->subsystem_device = p->subsystem_device;
1453 break;
1454 }
1455 }
1456}
1457
Kyösti Mälkki472d9022011-12-05 20:33:55 +02001458static void usage(void)
1459{
Duncan Laurie51c83732020-06-09 11:20:29 -07001460 printf("usage: sconfig <options>\n");
1461 printf(" -c | --output_c : Path to output static.c file (required)\n");
1462 printf(" -r | --output_h : Path to header static.h file (required)\n");
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001463 printf(" -d | --output_d : Path to header static_devices.h file (required)\n");
1464 printf(" -f | --output_f : Path to header static_fw_config.h file (required)\n");
Duncan Laurie51c83732020-06-09 11:20:29 -07001465 printf(" -m | --mainboard_devtree : Path to mainboard devicetree file (required)\n");
1466 printf(" -o | --override_devtree : Path to override devicetree file (optional)\n");
Duncan Lauriee335c2e2020-07-29 16:28:43 -07001467 printf(" -p | --chipset_devtree : Path to chipset/SOC devicetree file (optional)\n");
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001468
Martin Rothbec07532016-08-05 18:32:18 -06001469 exit(1);
Kyösti Mälkki472d9022011-12-05 20:33:55 +02001470}
1471
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001472static void parse_devicetree(const char *file, struct bus *parent)
Martin Rothbec07532016-08-05 18:32:18 -06001473{
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001474 FILE *filec = fopen(file, "r");
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +00001475 if (!filec) {
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +00001476 perror(NULL);
1477 exit(1);
1478 }
1479
Patrick Georgi114e7b22010-05-05 11:19:50 +00001480 yyrestart(filec);
1481
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001482 root_parent = parent;
1483 linenum = 0;
1484
Patrick Georgi114e7b22010-05-05 11:19:50 +00001485 yyparse();
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +00001486
Patrick Georgi114e7b22010-05-05 11:19:50 +00001487 fclose(filec);
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001488}
1489
Furquan Shaikh27efc502018-06-22 09:19:15 -07001490/*
1491 * Match device nodes from base and override tree to see if they are the same
1492 * node.
1493 */
1494static int device_match(struct device *a, struct device *b)
1495{
1496 return ((a->path_a == b->path_a) &&
1497 (a->path_b == b->path_b) &&
1498 (a->bustype == b->bustype) &&
1499 (a->chip_instance->chip ==
1500 b->chip_instance->chip));
1501}
1502
1503/*
Bill XIEc61d4152019-11-21 18:16:12 +08001504 * Match resource nodes from base and override tree to see if they are the same
1505 * node.
1506 */
1507static int res_match(struct resource *a, struct resource *b)
1508{
1509 return ((a->type == b->type) &&
1510 (a->index == b->index));
1511}
1512
1513/*
Furquan Shaikh27efc502018-06-22 09:19:15 -07001514 * Add resource to device. If resource is already present, then update its base
1515 * and index. If not, then add a new resource to the device.
1516 */
1517static void update_resource(struct device *dev, struct resource *res)
1518{
1519 struct resource *base_res = dev->res;
1520
1521 while (base_res) {
Bill XIEc61d4152019-11-21 18:16:12 +08001522 if (res_match(base_res, res)) {
Furquan Shaikh27efc502018-06-22 09:19:15 -07001523 base_res->base = res->base;
1524 return;
1525 }
1526 base_res = base_res->next;
1527 }
1528
1529 new_resource(dev, res->type, res->index, res->base);
1530}
1531
1532/*
1533 * Add register to chip instance. If register is already present, then update
1534 * its value. If not, then add a new register to the chip instance.
1535 */
Nico Huber8e1ea522020-06-03 10:20:07 -07001536static void update_register(struct reg **const head, struct reg *reg)
Furquan Shaikh27efc502018-06-22 09:19:15 -07001537{
Nico Huber8e1ea522020-06-03 10:20:07 -07001538 struct reg *base_reg = *head;
Furquan Shaikh27efc502018-06-22 09:19:15 -07001539
1540 while (base_reg) {
1541 if (!strcmp(base_reg->key, reg->key)) {
1542 base_reg->value = reg->value;
1543 return;
1544 }
1545 base_reg = base_reg->next;
1546 }
1547
Nico Huber8e1ea522020-06-03 10:20:07 -07001548 add_reg(head, reg->key, reg->value);
Furquan Shaikh27efc502018-06-22 09:19:15 -07001549}
1550
1551static void override_devicetree(struct bus *base_parent,
1552 struct bus *override_parent);
1553
1554/*
1555 * Update the base device properties using the properties of override device. In
1556 * addition to that, call override_devicetree for all the buses under the
1557 * override device.
1558 *
1559 * Override Rules:
1560 * +--------------------+--------------------------------------------+
1561 * | | |
1562 * |struct device member| Rule |
1563 * | | |
1564 * +-----------------------------------------------------------------+
1565 * | | |
1566 * | id | Unchanged. This is used to generate device |
1567 * | | structure name in static.c. So, no need to |
1568 * | | override. |
1569 * | | |
1570 * +-----------------------------------------------------------------+
1571 * | | |
1572 * | enabled | Copy enabled state from override device. |
1573 * | | This allows variants to override device |
1574 * | | state. |
1575 * | | |
1576 * +-----------------------------------------------------------------+
1577 * | | |
1578 * | subsystem_vendor | Copy from override device only if any one |
1579 * | subsystem_device | of the ids is non-zero. |
1580 * | | |
1581 * +-----------------------------------------------------------------+
1582 * | | |
1583 * | inherit_subsystem | Copy from override device only if it is |
1584 * | | non-zero. This allows variant to only |
1585 * | | enable inherit flag for a device. |
1586 * | | |
1587 * +-----------------------------------------------------------------+
1588 * | | |
1589 * | path | Unchanged since these are same for both |
1590 * | path_a | base and override device (Used for |
1591 * | path_b | matching devices). |
1592 * | | |
1593 * +-----------------------------------------------------------------+
1594 * | | |
1595 * | bustype | Unchanged since this is same for both base |
1596 * | | and override device (User for matching |
1597 * | | devices). |
1598 * | | |
1599 * +-----------------------------------------------------------------+
1600 * | | |
1601 * | pci_irq_info | Unchanged. |
1602 * | | |
1603 * +-----------------------------------------------------------------+
1604 * | | |
1605 * | parent | Unchanged. This is meaningful only within |
1606 * | sibling | the parse tree, hence not being copied. |
1607 * | | |
1608 * +-----------------------------------------------------------------+
1609 * | | |
1610 * | res | Each resource that is present in override |
1611 * | | device is copied over to base device: |
Bill XIEc61d4152019-11-21 18:16:12 +08001612 * | | 1. If resource of same type and index is |
1613 * | | present in base device, then base of |
1614 * | | the resource is copied. |
Furquan Shaikh27efc502018-06-22 09:19:15 -07001615 * | | 2. If not, then a new resource is allocated|
1616 * | | under the base device using type, index |
1617 * | | and base from override res. |
1618 * | | |
1619 * +-----------------------------------------------------------------+
1620 * | | |
Nico Huber8e1ea522020-06-03 10:20:07 -07001621 * | ref | Each reference that is present in override |
1622 * | | device is copied over to base device with |
1623 * | | the same rules as registers. |
1624 * | | |
1625 * +-----------------------------------------------------------------+
1626 * | | |
1627 * | alias | Base device alias is copied to override. |
1628 * | | Override devices cannot change/remove an |
1629 * | | existing alias, but they can add an alias |
1630 * | | if one does not exist. |
1631 * | | |
1632 * +-----------------------------------------------------------------+
1633 * | | |
Frans Hendriks3a7db272021-01-20 07:40:05 +01001634 * | smbios_slot info | Copy SMBIOS slot information from override.|
1635 * | | This allows variants to override PCI(e) |
1636 * | | slot information in SMBIOS tables. |
1637 * | | |
1638 * +-----------------------------------------------------------------+
1639 * | | |
Furquan Shaikh27efc502018-06-22 09:19:15 -07001640 * | chip_instance | Each register of chip_instance is copied |
1641 * | | over from override device to base device: |
1642 * | | 1. If register with same key is present in |
1643 * | | base device, then value of the register |
1644 * | | is copied. |
1645 * | | 2. If not, then a new register is allocated|
1646 * | | under the base chip_instance using key |
1647 * | | and value from override register. |
1648 * | | |
1649 * +-----------------------------------------------------------------+
1650 * | | |
1651 * | bus | Recursively call override_devicetree on |
1652 * | last_bus | each bus of override device. It is assumed |
1653 * | | that bus with id X under base device |
1654 * | | to bus with id X under override device. If |
1655 * | | override device has more buses than base |
1656 * | | device, then new buses are allocated under |
1657 * | | base device. |
1658 * | | |
1659 * +-----------------------------------------------------------------+
1660 */
1661static void update_device(struct device *base_dev, struct device *override_dev)
1662{
1663 /*
1664 * Copy the enabled state of override device to base device. This allows
1665 * override tree to enable or disable a particular device.
1666 */
1667 base_dev->enabled = override_dev->enabled;
1668
1669 /*
Duncan Laurie7f6a4842020-10-28 14:22:34 -07001670 * Copy the hidden state of override device to base device. This allows
1671 * override tree to hide or unhide a particular device.
1672 */
1673 base_dev->hidden = override_dev->hidden;
1674
1675 /*
Furquan Shaikh27efc502018-06-22 09:19:15 -07001676 * Copy subsystem vendor and device ids from override device to base
1677 * device only if the ids are non-zero in override device. Else, honor
1678 * the values in base device.
1679 */
1680 if (override_dev->subsystem_vendor ||
1681 override_dev->subsystem_device) {
1682 base_dev->subsystem_vendor = override_dev->subsystem_vendor;
1683 base_dev->subsystem_device = override_dev->subsystem_device;
1684 }
1685
1686 /*
1687 * Copy value of inherity_subsystem from override device to base device
1688 * only if it is non-zero in override device. This allows override
1689 * tree to only enable inhert flag for a device.
1690 */
1691 if (override_dev->inherit_subsystem)
1692 base_dev->inherit_subsystem = override_dev->inherit_subsystem;
1693
1694 /*
1695 * Copy resources of override device to base device.
1696 * 1. If resource is already present in base device, then index and base
1697 * of the resource will be copied over.
1698 * 2. If resource is not already present in base device, a new resource
1699 * will be allocated.
1700 */
1701 struct resource *res = override_dev->res;
1702 while (res) {
1703 update_resource(base_dev, res);
1704 res = res->next;
1705 }
1706
1707 /*
1708 * Copy registers of override chip instance to base chip instance.
1709 * 1. If register key is already present in base chip instance, then
1710 * value for the register is copied over.
1711 * 2. If register key is not already present in base chip instance, then
1712 * a new register will be allocated.
1713 */
1714 struct reg *reg = override_dev->chip_instance->reg;
1715 while (reg) {
Nico Huber8e1ea522020-06-03 10:20:07 -07001716 update_register(&base_dev->chip_instance->reg, reg);
Furquan Shaikh27efc502018-06-22 09:19:15 -07001717 reg = reg->next;
1718 }
1719
Nico Huber8e1ea522020-06-03 10:20:07 -07001720 /* Copy references just as with registers. */
1721 reg = override_dev->chip_instance->ref;
1722 while (reg) {
1723 update_register(&base_dev->chip_instance->ref, reg);
1724 reg = reg->next;
1725 }
1726
1727 /* Check for alias name conflicts. */
1728 if (override_dev->alias && find_alias(&base_root_dev, override_dev->alias)) {
1729 printf("ERROR: alias already exists: %s\n", override_dev->alias);
1730 exit(1);
1731 }
1732
1733 /*
1734 * Copy alias from base device.
1735 *
1736 * Override devices cannot change/remove an existing alias,
1737 * but they can add an alias to a device if one does not exist yet.
1738 */
1739 if (base_dev->alias)
1740 override_dev->alias = base_dev->alias;
1741 else
1742 base_dev->alias = override_dev->alias;
1743
Furquan Shaikh27efc502018-06-22 09:19:15 -07001744 /*
Duncan Laurie47b7b342020-05-15 15:39:08 -07001745 * Use probe list from override device in place of base device, in order
1746 * to allow an override to remove a probe from the base device.
1747 */
1748 base_dev->probe = override_dev->probe;
1749
Frans Hendriks3a7db272021-01-20 07:40:05 +01001750 /* Copy SMBIOS slot information from base device */
1751 base_dev->smbios_slot_type = override_dev->smbios_slot_type;
1752 base_dev->smbios_slot_length = override_dev->smbios_slot_length;
1753 base_dev->smbios_slot_data_width = override_dev->smbios_slot_data_width;
1754 base_dev->smbios_slot_designation = override_dev->smbios_slot_designation;
1755
Duncan Laurie47b7b342020-05-15 15:39:08 -07001756 /*
Furquan Shaikhbbade242020-05-02 16:05:29 -07001757 * Update base_chip_instance member in chip instance of override tree to forward it to
1758 * the chip instance in base tree.
1759 */
Furquan Shaikh9d1bf812021-02-17 19:07:18 -08001760 override_dev->chip_instance->base_chip_instance = get_chip_instance(base_dev);
Furquan Shaikhbbade242020-05-02 16:05:29 -07001761
1762 /*
Furquan Shaikh27efc502018-06-22 09:19:15 -07001763 * Now that the device properties are all copied over, look at each bus
1764 * of the override device and run override_devicetree in a recursive
1765 * manner. The assumption here is that first bus of override device
1766 * corresponds to first bus of base device and so on. If base device has
1767 * lesser buses than override tree, then new buses are allocated for it.
1768 */
1769 struct bus *override_bus = override_dev->bus;
1770 struct bus *base_bus = base_dev->bus;
1771
1772 while (override_bus) {
1773
1774 /*
1775 * If we have more buses in override tree device, then allocate
1776 * a new bus for the base tree device as well.
1777 */
1778 if (!base_bus) {
1779 alloc_bus(base_dev);
1780 base_bus = base_dev->last_bus;
1781 }
1782
1783 override_devicetree(base_dev->bus, override_dev->bus);
1784
1785 override_bus = override_bus->next_bus;
1786 base_bus = base_bus->next_bus;
1787 }
Furquan Shaikh27efc502018-06-22 09:19:15 -07001788}
1789
1790/*
1791 * Perform copy of device and properties from override parent to base parent.
1792 * This function walks through the override tree in a depth-first manner
1793 * performing following actions:
1794 * 1. If matching device is found in base tree, then copy the properties of
1795 * override device to base tree device. Call override_devicetree recursively on
1796 * the bus of override device.
1797 * 2. If matching device is not found in base tree, then set override tree
1798 * device as new child of base_parent and update the chip pointers in override
1799 * device subtree to ensure the nodes do not point to override tree chip
1800 * instance.
1801 */
1802static void override_devicetree(struct bus *base_parent,
1803 struct bus *override_parent)
1804{
1805 struct device *base_child;
1806 struct device *override_child = override_parent->children;
1807 struct device *next_child;
1808
1809 while (override_child) {
1810
1811 /* Look for a matching device in base tree. */
1812 for (base_child = base_parent->children;
1813 base_child; base_child = base_child->sibling) {
1814 if (device_match(base_child, override_child))
1815 break;
1816 }
1817
1818 next_child = override_child->sibling;
1819
1820 /*
1821 * If matching device is found, copy properties of
1822 * override_child to base_child.
1823 */
1824 if (base_child)
1825 update_device(base_child, override_child);
1826 else {
1827 /*
1828 * If matching device is not found, set override_child
1829 * as a new child of base_parent.
1830 */
1831 set_new_child(base_parent, override_child);
Furquan Shaikh27efc502018-06-22 09:19:15 -07001832 }
1833
1834 override_child = next_child;
1835 }
1836}
1837
Duncan Lauriecbd0bd82020-06-09 11:24:10 -07001838static void parse_override_devicetree(const char *file, struct device *dev)
1839{
1840 parse_devicetree(file, dev->bus);
1841
1842 if (!dev_has_children(dev)) {
1843 fprintf(stderr, "ERROR: Override tree needs at least one device!\n");
1844 exit(1);
1845 }
1846
1847 override_devicetree(&base_root_bus, dev->bus);
1848}
1849
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001850static void generate_outputh(FILE *f, const char *fw_conf_header, const char *device_header)
1851{
1852 fprintf(f, "#ifndef __STATIC_DEVICE_TREE_H\n");
1853 fprintf(f, "#define __STATIC_DEVICE_TREE_H\n\n");
1854
1855 fprintf(f, "#include <%s>\n", fw_conf_header);
1856 fprintf(f, "#include <%s>\n\n", device_header);
1857
1858 fprintf(f, "\n#endif /* __STATIC_DEVICE_TREE_H */\n");
1859}
1860
1861static void generate_outputc(FILE *f, const char *static_header)
1862{
1863 fprintf(f, "#include <device/device.h>\n");
1864 fprintf(f, "#include <device/pci.h>\n");
1865 fprintf(f, "#include <fw_config.h>\n");
1866 fprintf(f, "#include <%s>\n", static_header);
1867 emit_chip_headers(f, chip_header.next);
1868 fprintf(f, "\n#define STORAGE static __unused DEVTREE_CONST\n\n");
1869
1870 walk_device_tree(NULL, NULL, &base_root_dev, inherit_subsystem_ids);
1871 fprintf(f, "\n/* pass 0 */\n");
1872 walk_device_tree(f, NULL, &base_root_dev, pass0);
1873 walk_device_tree(NULL, NULL, &base_root_dev, update_references);
1874 fprintf(f, "\n/* chip configs */\n");
1875 emit_chip_configs(f);
1876 fprintf(f, "\n/* pass 1 */\n");
1877 walk_device_tree(f, NULL, &base_root_dev, pass1);
1878}
1879
1880static void generate_outputd(FILE *gen, FILE *dev)
1881{
1882 fprintf(dev, "#ifndef __STATIC_DEVICES_H\n");
1883 fprintf(dev, "#define __STATIC_DEVICES_H\n\n");
1884 fprintf(dev, "#include <device/device.h>\n\n");
1885 fprintf(dev, "/* expose_device_names */\n");
1886 walk_device_tree(gen, dev, &base_root_dev, expose_device_names);
1887 fprintf(dev, "\n#endif /* __STATIC_DEVICE_NAMES_H */\n");
1888}
1889
1890static void generate_outputf(FILE *f)
1891{
1892 fprintf(f, "#ifndef __STATIC_FW_CONFIG_H\n");
1893 fprintf(f, "#define __STATIC_FW_CONFIG_H\n\n");
1894 emit_fw_config(f);
1895 fprintf(f, "\n#endif /* __STATIC_FW_CONFIG_H */\n");
1896}
1897
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001898int main(int argc, char **argv)
1899{
Duncan Laurie51c83732020-06-09 11:20:29 -07001900 static const struct option long_options[] = {
1901 { "mainboard_devtree", 1, NULL, 'm' },
1902 { "override_devtree", 1, NULL, 'o' },
Duncan Lauriee335c2e2020-07-29 16:28:43 -07001903 { "chipset_devtree", 1, NULL, 'p' },
Duncan Laurie51c83732020-06-09 11:20:29 -07001904 { "output_c", 1, NULL, 'c' },
1905 { "output_h", 1, NULL, 'r' },
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001906 { "output_d", 1, NULL, 'd' },
1907 { "output_f", 1, NULL, 'f' },
Duncan Laurie51c83732020-06-09 11:20:29 -07001908 { "help", 1, NULL, 'h' },
1909 { }
1910 };
1911 const char *override_devtree = NULL;
1912 const char *base_devtree = NULL;
Duncan Lauriee335c2e2020-07-29 16:28:43 -07001913 const char *chipset_devtree = NULL;
Duncan Laurie51c83732020-06-09 11:20:29 -07001914 const char *outputc = NULL;
1915 const char *outputh = NULL;
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001916 const char *outputd = NULL;
1917 const char *outputf = NULL;
Duncan Laurie51c83732020-06-09 11:20:29 -07001918 int opt, option_index;
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001919
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001920 while ((opt = getopt_long(argc, argv, "m:o:p:c:r:d:f:h", long_options,
Duncan Laurie51c83732020-06-09 11:20:29 -07001921 &option_index)) != EOF) {
1922 switch (opt) {
1923 case 'm':
1924 base_devtree = strdup(optarg);
1925 break;
1926 case 'o':
1927 override_devtree = strdup(optarg);
1928 break;
Duncan Lauriee335c2e2020-07-29 16:28:43 -07001929 case 'p':
1930 chipset_devtree = strdup(optarg);
1931 break;
Duncan Laurie51c83732020-06-09 11:20:29 -07001932 case 'c':
1933 outputc = strdup(optarg);
1934 break;
1935 case 'r':
1936 outputh = strdup(optarg);
1937 break;
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001938 case 'd':
1939 outputd = strdup(optarg);
1940 break;
1941 case 'f':
1942 outputf = strdup(optarg);
1943 break;
Duncan Laurie51c83732020-06-09 11:20:29 -07001944 case 'h':
1945 default:
1946 usage();
1947 }
1948 }
1949
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001950 if (!base_devtree || !outputc || !outputh || !outputd || !outputf)
Duncan Laurie51c83732020-06-09 11:20:29 -07001951 usage();
Furquan Shaikhde39fc72018-06-11 04:26:45 -07001952
Duncan Lauriee335c2e2020-07-29 16:28:43 -07001953 if (chipset_devtree) {
1954 /* Use the chipset devicetree as the base, then override
1955 with the mainboard "base" devicetree. */
1956 parse_devicetree(chipset_devtree, &base_root_bus);
1957 parse_override_devicetree(base_devtree, &chipset_root_dev);
1958 } else {
1959 parse_devicetree(base_devtree, &base_root_bus);
1960 }
Patrick Georgi114e7b22010-05-05 11:19:50 +00001961
Duncan Lauriecbd0bd82020-06-09 11:24:10 -07001962 if (override_devtree)
1963 parse_override_devicetree(override_devtree, &override_root_dev);
Furquan Shaikh39ac7972018-06-21 18:44:32 -07001964
Tim Wawrzynczak13e240c2021-04-28 14:03:07 -06001965
Kyösti Mälkki472d9022011-12-05 20:33:55 +02001966 FILE *autogen = fopen(outputc, "w");
1967 if (!autogen) {
Martin Rothbec07532016-08-05 18:32:18 -06001968 fprintf(stderr, "Could not open file '%s' for writing: ",
1969 outputc);
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +00001970 perror(NULL);
1971 exit(1);
1972 }
1973
Nico Huber17e9bcb2019-09-20 12:05:51 +02001974 FILE *autohead = fopen(outputh, "w");
1975 if (!autohead) {
1976 fprintf(stderr, "Could not open file '%s' for writing: ", outputh);
1977 perror(NULL);
1978 fclose(autogen);
1979 exit(1);
1980 }
Nico Huber17e9bcb2019-09-20 12:05:51 +02001981
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001982 FILE *autodev = fopen(outputd, "w");
1983 if (!autodev) {
1984 fprintf(stderr, "Could not open file '%s' for writing: ", outputd);
1985 perror(NULL);
1986 fclose(autogen);
1987 fclose(autohead);
1988 exit(1);
1989 }
Furquan Shaikh79e84122018-05-30 15:09:09 -07001990
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06001991 FILE *autofwconf = fopen(outputf, "w");
1992 if (!autofwconf) {
1993 fprintf(stderr, "Could not open file '%s' for writing: ", outputf);
1994 perror(NULL);
1995 fclose(autogen);
1996 fclose(autohead);
1997 fclose(autodev);
1998 exit(1);
1999 }
Sven Schnelle270a9082011-03-01 19:58:15 +00002000
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06002001 char *f = strdup(outputf);
2002 assert(f);
2003 char *d = strdup(outputd);
2004 assert(d);
2005 char *h = strdup(outputh);
2006 assert(h);
Kyösti Mälkki5e2a2cd2019-03-15 17:44:23 +02002007
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06002008 const char *fw_conf_header = basename(f);
2009 const char *device_header = basename(d);
2010 const char *static_header = basename(h);
2011
2012 generate_outputh(autohead, fw_conf_header, device_header);
2013 generate_outputc(autogen, static_header);
2014 generate_outputd(autogen, autodev);
2015 generate_outputf(autofwconf);
2016
Nico Huber17e9bcb2019-09-20 12:05:51 +02002017 fclose(autohead);
Kyösti Mälkki472d9022011-12-05 20:33:55 +02002018 fclose(autogen);
Tim Wawrzynczakba4a4902020-09-23 15:36:30 -06002019 fclose(autodev);
2020 fclose(autofwconf);
2021 free(f);
2022 free(d);
2023 free(h);
Stefan Reinauer7c1f6b82010-08-16 18:21:56 +00002024
Patrick Georgi114e7b22010-05-05 11:19:50 +00002025 return 0;
2026}