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aml-build.c 61 KB

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  1. /* Support for generating ACPI tables and passing them to Guests
  2. *
  3. * Copyright (C) 2015 Red Hat Inc
  4. *
  5. * Author: Michael S. Tsirkin <mst@redhat.com>
  6. * Author: Igor Mammedov <imammedo@redhat.com>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. * You should have received a copy of the GNU General Public License along
  17. * with this program; if not, see <http://www.gnu.org/licenses/>.
  18. */
  19. #include "qemu/osdep.h"
  20. #include <glib/gprintf.h>
  21. #include "hw/acpi/aml-build.h"
  22. #include "qemu/bswap.h"
  23. #include "qemu/bitops.h"
  24. #include "sysemu/numa.h"
  25. #include "hw/boards.h"
  26. static GArray *build_alloc_array(void)
  27. {
  28. return g_array_new(false, true /* clear */, 1);
  29. }
  30. static void build_free_array(GArray *array)
  31. {
  32. g_array_free(array, true);
  33. }
  34. static void build_prepend_byte(GArray *array, uint8_t val)
  35. {
  36. g_array_prepend_val(array, val);
  37. }
  38. static void build_append_byte(GArray *array, uint8_t val)
  39. {
  40. g_array_append_val(array, val);
  41. }
  42. static void build_append_array(GArray *array, GArray *val)
  43. {
  44. g_array_append_vals(array, val->data, val->len);
  45. }
  46. #define ACPI_NAMESEG_LEN 4
  47. static void
  48. build_append_nameseg(GArray *array, const char *seg)
  49. {
  50. int len;
  51. len = strlen(seg);
  52. assert(len <= ACPI_NAMESEG_LEN);
  53. g_array_append_vals(array, seg, len);
  54. /* Pad up to ACPI_NAMESEG_LEN characters if necessary. */
  55. g_array_append_vals(array, "____", ACPI_NAMESEG_LEN - len);
  56. }
  57. static void GCC_FMT_ATTR(2, 0)
  58. build_append_namestringv(GArray *array, const char *format, va_list ap)
  59. {
  60. char *s;
  61. char **segs;
  62. char **segs_iter;
  63. int seg_count = 0;
  64. s = g_strdup_vprintf(format, ap);
  65. segs = g_strsplit(s, ".", 0);
  66. g_free(s);
  67. /* count segments */
  68. segs_iter = segs;
  69. while (*segs_iter) {
  70. ++segs_iter;
  71. ++seg_count;
  72. }
  73. /*
  74. * ACPI 5.0 spec: 20.2.2 Name Objects Encoding:
  75. * "SegCount can be from 1 to 255"
  76. */
  77. assert(seg_count > 0 && seg_count <= 255);
  78. /* handle RootPath || PrefixPath */
  79. s = *segs;
  80. while (*s == '\\' || *s == '^') {
  81. build_append_byte(array, *s);
  82. ++s;
  83. }
  84. switch (seg_count) {
  85. case 1:
  86. if (!*s) {
  87. build_append_byte(array, 0x00); /* NullName */
  88. } else {
  89. build_append_nameseg(array, s);
  90. }
  91. break;
  92. case 2:
  93. build_append_byte(array, 0x2E); /* DualNamePrefix */
  94. build_append_nameseg(array, s);
  95. build_append_nameseg(array, segs[1]);
  96. break;
  97. default:
  98. build_append_byte(array, 0x2F); /* MultiNamePrefix */
  99. build_append_byte(array, seg_count);
  100. /* handle the 1st segment manually due to prefix/root path */
  101. build_append_nameseg(array, s);
  102. /* add the rest of segments */
  103. segs_iter = segs + 1;
  104. while (*segs_iter) {
  105. build_append_nameseg(array, *segs_iter);
  106. ++segs_iter;
  107. }
  108. break;
  109. }
  110. g_strfreev(segs);
  111. }
  112. GCC_FMT_ATTR(2, 3)
  113. static void build_append_namestring(GArray *array, const char *format, ...)
  114. {
  115. va_list ap;
  116. va_start(ap, format);
  117. build_append_namestringv(array, format, ap);
  118. va_end(ap);
  119. }
  120. /* 5.4 Definition Block Encoding */
  121. enum {
  122. PACKAGE_LENGTH_1BYTE_SHIFT = 6, /* Up to 63 - use extra 2 bits. */
  123. PACKAGE_LENGTH_2BYTE_SHIFT = 4,
  124. PACKAGE_LENGTH_3BYTE_SHIFT = 12,
  125. PACKAGE_LENGTH_4BYTE_SHIFT = 20,
  126. };
  127. static void
  128. build_prepend_package_length(GArray *package, unsigned length, bool incl_self)
  129. {
  130. uint8_t byte;
  131. unsigned length_bytes;
  132. if (length + 1 < (1 << PACKAGE_LENGTH_1BYTE_SHIFT)) {
  133. length_bytes = 1;
  134. } else if (length + 2 < (1 << PACKAGE_LENGTH_3BYTE_SHIFT)) {
  135. length_bytes = 2;
  136. } else if (length + 3 < (1 << PACKAGE_LENGTH_4BYTE_SHIFT)) {
  137. length_bytes = 3;
  138. } else {
  139. length_bytes = 4;
  140. }
  141. /*
  142. * NamedField uses PkgLength encoding but it doesn't include length
  143. * of PkgLength itself.
  144. */
  145. if (incl_self) {
  146. /*
  147. * PkgLength is the length of the inclusive length of the data
  148. * and PkgLength's length itself when used for terms with
  149. * explitit length.
  150. */
  151. length += length_bytes;
  152. }
  153. switch (length_bytes) {
  154. case 1:
  155. byte = length;
  156. build_prepend_byte(package, byte);
  157. return;
  158. case 4:
  159. byte = length >> PACKAGE_LENGTH_4BYTE_SHIFT;
  160. build_prepend_byte(package, byte);
  161. length &= (1 << PACKAGE_LENGTH_4BYTE_SHIFT) - 1;
  162. /* fall through */
  163. case 3:
  164. byte = length >> PACKAGE_LENGTH_3BYTE_SHIFT;
  165. build_prepend_byte(package, byte);
  166. length &= (1 << PACKAGE_LENGTH_3BYTE_SHIFT) - 1;
  167. /* fall through */
  168. case 2:
  169. byte = length >> PACKAGE_LENGTH_2BYTE_SHIFT;
  170. build_prepend_byte(package, byte);
  171. length &= (1 << PACKAGE_LENGTH_2BYTE_SHIFT) - 1;
  172. /* fall through */
  173. }
  174. /*
  175. * Most significant two bits of byte zero indicate how many following bytes
  176. * are in PkgLength encoding.
  177. */
  178. byte = ((length_bytes - 1) << PACKAGE_LENGTH_1BYTE_SHIFT) | length;
  179. build_prepend_byte(package, byte);
  180. }
  181. static void
  182. build_append_pkg_length(GArray *array, unsigned length, bool incl_self)
  183. {
  184. GArray *tmp = build_alloc_array();
  185. build_prepend_package_length(tmp, length, incl_self);
  186. build_append_array(array, tmp);
  187. build_free_array(tmp);
  188. }
  189. static void build_package(GArray *package, uint8_t op)
  190. {
  191. build_prepend_package_length(package, package->len, true);
  192. build_prepend_byte(package, op);
  193. }
  194. static void build_extop_package(GArray *package, uint8_t op)
  195. {
  196. build_package(package, op);
  197. build_prepend_byte(package, 0x5B); /* ExtOpPrefix */
  198. }
  199. void build_append_int_noprefix(GArray *table, uint64_t value, int size)
  200. {
  201. int i;
  202. for (i = 0; i < size; ++i) {
  203. build_append_byte(table, value & 0xFF);
  204. value = value >> 8;
  205. }
  206. }
  207. static void build_append_int(GArray *table, uint64_t value)
  208. {
  209. if (value == 0x00) {
  210. build_append_byte(table, 0x00); /* ZeroOp */
  211. } else if (value == 0x01) {
  212. build_append_byte(table, 0x01); /* OneOp */
  213. } else if (value <= 0xFF) {
  214. build_append_byte(table, 0x0A); /* BytePrefix */
  215. build_append_int_noprefix(table, value, 1);
  216. } else if (value <= 0xFFFF) {
  217. build_append_byte(table, 0x0B); /* WordPrefix */
  218. build_append_int_noprefix(table, value, 2);
  219. } else if (value <= 0xFFFFFFFF) {
  220. build_append_byte(table, 0x0C); /* DWordPrefix */
  221. build_append_int_noprefix(table, value, 4);
  222. } else {
  223. build_append_byte(table, 0x0E); /* QWordPrefix */
  224. build_append_int_noprefix(table, value, 8);
  225. }
  226. }
  227. /* Generic Address Structure (GAS)
  228. * ACPI 2.0/3.0: 5.2.3.1 Generic Address Structure
  229. * 2.0 compat note:
  230. * @access_width must be 0, see ACPI 2.0:Table 5-1
  231. */
  232. void build_append_gas(GArray *table, AmlAddressSpace as,
  233. uint8_t bit_width, uint8_t bit_offset,
  234. uint8_t access_width, uint64_t address)
  235. {
  236. build_append_int_noprefix(table, as, 1);
  237. build_append_int_noprefix(table, bit_width, 1);
  238. build_append_int_noprefix(table, bit_offset, 1);
  239. build_append_int_noprefix(table, access_width, 1);
  240. build_append_int_noprefix(table, address, 8);
  241. }
  242. /*
  243. * Build NAME(XXXX, 0x00000000) where 0x00000000 is encoded as a dword,
  244. * and return the offset to 0x00000000 for runtime patching.
  245. *
  246. * Warning: runtime patching is best avoided. Only use this as
  247. * a replacement for DataTableRegion (for guests that don't
  248. * support it).
  249. */
  250. int
  251. build_append_named_dword(GArray *array, const char *name_format, ...)
  252. {
  253. int offset;
  254. va_list ap;
  255. build_append_byte(array, 0x08); /* NameOp */
  256. va_start(ap, name_format);
  257. build_append_namestringv(array, name_format, ap);
  258. va_end(ap);
  259. build_append_byte(array, 0x0C); /* DWordPrefix */
  260. offset = array->len;
  261. build_append_int_noprefix(array, 0x00000000, 4);
  262. assert(array->len == offset + 4);
  263. return offset;
  264. }
  265. static GPtrArray *alloc_list;
  266. static Aml *aml_alloc(void)
  267. {
  268. Aml *var = g_new0(typeof(*var), 1);
  269. g_ptr_array_add(alloc_list, var);
  270. var->block_flags = AML_NO_OPCODE;
  271. var->buf = build_alloc_array();
  272. return var;
  273. }
  274. static Aml *aml_opcode(uint8_t op)
  275. {
  276. Aml *var = aml_alloc();
  277. var->op = op;
  278. var->block_flags = AML_OPCODE;
  279. return var;
  280. }
  281. static Aml *aml_bundle(uint8_t op, AmlBlockFlags flags)
  282. {
  283. Aml *var = aml_alloc();
  284. var->op = op;
  285. var->block_flags = flags;
  286. return var;
  287. }
  288. static void aml_free(gpointer data, gpointer user_data)
  289. {
  290. Aml *var = data;
  291. build_free_array(var->buf);
  292. g_free(var);
  293. }
  294. Aml *init_aml_allocator(void)
  295. {
  296. assert(!alloc_list);
  297. alloc_list = g_ptr_array_new();
  298. return aml_alloc();
  299. }
  300. void free_aml_allocator(void)
  301. {
  302. g_ptr_array_foreach(alloc_list, aml_free, NULL);
  303. g_ptr_array_free(alloc_list, true);
  304. alloc_list = 0;
  305. }
  306. /* pack data with DefBuffer encoding */
  307. static void build_buffer(GArray *array, uint8_t op)
  308. {
  309. GArray *data = build_alloc_array();
  310. build_append_int(data, array->len);
  311. g_array_prepend_vals(array, data->data, data->len);
  312. build_free_array(data);
  313. build_package(array, op);
  314. }
  315. void aml_append(Aml *parent_ctx, Aml *child)
  316. {
  317. GArray *buf = build_alloc_array();
  318. build_append_array(buf, child->buf);
  319. switch (child->block_flags) {
  320. case AML_OPCODE:
  321. build_append_byte(parent_ctx->buf, child->op);
  322. break;
  323. case AML_EXT_PACKAGE:
  324. build_extop_package(buf, child->op);
  325. break;
  326. case AML_PACKAGE:
  327. build_package(buf, child->op);
  328. break;
  329. case AML_RES_TEMPLATE:
  330. build_append_byte(buf, 0x79); /* EndTag */
  331. /*
  332. * checksum operations are treated as succeeded if checksum
  333. * field is zero. [ACPI Spec 1.0b, 6.4.2.8 End Tag]
  334. */
  335. build_append_byte(buf, 0);
  336. /* fall through, to pack resources in buffer */
  337. case AML_BUFFER:
  338. build_buffer(buf, child->op);
  339. break;
  340. case AML_NO_OPCODE:
  341. break;
  342. default:
  343. assert(0);
  344. break;
  345. }
  346. build_append_array(parent_ctx->buf, buf);
  347. build_free_array(buf);
  348. }
  349. /* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefScope */
  350. Aml *aml_scope(const char *name_format, ...)
  351. {
  352. va_list ap;
  353. Aml *var = aml_bundle(0x10 /* ScopeOp */, AML_PACKAGE);
  354. va_start(ap, name_format);
  355. build_append_namestringv(var->buf, name_format, ap);
  356. va_end(ap);
  357. return var;
  358. }
  359. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefReturn */
  360. Aml *aml_return(Aml *val)
  361. {
  362. Aml *var = aml_opcode(0xA4 /* ReturnOp */);
  363. aml_append(var, val);
  364. return var;
  365. }
  366. /* ACPI 1.0b: 16.2.6.3 Debug Objects Encoding: DebugObj */
  367. Aml *aml_debug(void)
  368. {
  369. Aml *var = aml_alloc();
  370. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  371. build_append_byte(var->buf, 0x31); /* DebugOp */
  372. return var;
  373. }
  374. /*
  375. * ACPI 1.0b: 16.2.3 Data Objects Encoding:
  376. * encodes: ByteConst, WordConst, DWordConst, QWordConst, ZeroOp, OneOp
  377. */
  378. Aml *aml_int(const uint64_t val)
  379. {
  380. Aml *var = aml_alloc();
  381. build_append_int(var->buf, val);
  382. return var;
  383. }
  384. /*
  385. * helper to construct NameString, which returns Aml object
  386. * for using with aml_append or other aml_* terms
  387. */
  388. Aml *aml_name(const char *name_format, ...)
  389. {
  390. va_list ap;
  391. Aml *var = aml_alloc();
  392. va_start(ap, name_format);
  393. build_append_namestringv(var->buf, name_format, ap);
  394. va_end(ap);
  395. return var;
  396. }
  397. /* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefName */
  398. Aml *aml_name_decl(const char *name, Aml *val)
  399. {
  400. Aml *var = aml_opcode(0x08 /* NameOp */);
  401. build_append_namestring(var->buf, "%s", name);
  402. aml_append(var, val);
  403. return var;
  404. }
  405. /* ACPI 1.0b: 16.2.6.1 Arg Objects Encoding */
  406. Aml *aml_arg(int pos)
  407. {
  408. uint8_t op = 0x68 /* ARG0 op */ + pos;
  409. assert(pos <= 6);
  410. return aml_opcode(op);
  411. }
  412. /* ACPI 2.0a: 17.2.4.4 Type 2 Opcodes Encoding: DefToInteger */
  413. Aml *aml_to_integer(Aml *arg)
  414. {
  415. Aml *var = aml_opcode(0x99 /* ToIntegerOp */);
  416. aml_append(var, arg);
  417. build_append_byte(var->buf, 0x00 /* NullNameOp */);
  418. return var;
  419. }
  420. /* ACPI 2.0a: 17.2.4.4 Type 2 Opcodes Encoding: DefToHexString */
  421. Aml *aml_to_hexstring(Aml *src, Aml *dst)
  422. {
  423. Aml *var = aml_opcode(0x98 /* ToHexStringOp */);
  424. aml_append(var, src);
  425. if (dst) {
  426. aml_append(var, dst);
  427. } else {
  428. build_append_byte(var->buf, 0x00 /* NullNameOp */);
  429. }
  430. return var;
  431. }
  432. /* ACPI 2.0a: 17.2.4.4 Type 2 Opcodes Encoding: DefToBuffer */
  433. Aml *aml_to_buffer(Aml *src, Aml *dst)
  434. {
  435. Aml *var = aml_opcode(0x96 /* ToBufferOp */);
  436. aml_append(var, src);
  437. if (dst) {
  438. aml_append(var, dst);
  439. } else {
  440. build_append_byte(var->buf, 0x00 /* NullNameOp */);
  441. }
  442. return var;
  443. }
  444. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefStore */
  445. Aml *aml_store(Aml *val, Aml *target)
  446. {
  447. Aml *var = aml_opcode(0x70 /* StoreOp */);
  448. aml_append(var, val);
  449. aml_append(var, target);
  450. return var;
  451. }
  452. /**
  453. * build_opcode_2arg_dst:
  454. * @op: 1-byte opcode
  455. * @arg1: 1st operand
  456. * @arg2: 2nd operand
  457. * @dst: optional target to store to, set to NULL if it's not required
  458. *
  459. * An internal helper to compose AML terms that have
  460. * "Op Operand Operand Target"
  461. * pattern.
  462. *
  463. * Returns: The newly allocated and composed according to patter Aml object.
  464. */
  465. static Aml *
  466. build_opcode_2arg_dst(uint8_t op, Aml *arg1, Aml *arg2, Aml *dst)
  467. {
  468. Aml *var = aml_opcode(op);
  469. aml_append(var, arg1);
  470. aml_append(var, arg2);
  471. if (dst) {
  472. aml_append(var, dst);
  473. } else {
  474. build_append_byte(var->buf, 0x00 /* NullNameOp */);
  475. }
  476. return var;
  477. }
  478. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAnd */
  479. Aml *aml_and(Aml *arg1, Aml *arg2, Aml *dst)
  480. {
  481. return build_opcode_2arg_dst(0x7B /* AndOp */, arg1, arg2, dst);
  482. }
  483. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefOr */
  484. Aml *aml_or(Aml *arg1, Aml *arg2, Aml *dst)
  485. {
  486. return build_opcode_2arg_dst(0x7D /* OrOp */, arg1, arg2, dst);
  487. }
  488. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLOr */
  489. Aml *aml_lor(Aml *arg1, Aml *arg2)
  490. {
  491. Aml *var = aml_opcode(0x91 /* LOrOp */);
  492. aml_append(var, arg1);
  493. aml_append(var, arg2);
  494. return var;
  495. }
  496. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefShiftLeft */
  497. Aml *aml_shiftleft(Aml *arg1, Aml *count)
  498. {
  499. return build_opcode_2arg_dst(0x79 /* ShiftLeftOp */, arg1, count, NULL);
  500. }
  501. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefShiftRight */
  502. Aml *aml_shiftright(Aml *arg1, Aml *count, Aml *dst)
  503. {
  504. return build_opcode_2arg_dst(0x7A /* ShiftRightOp */, arg1, count, dst);
  505. }
  506. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLLess */
  507. Aml *aml_lless(Aml *arg1, Aml *arg2)
  508. {
  509. Aml *var = aml_opcode(0x95 /* LLessOp */);
  510. aml_append(var, arg1);
  511. aml_append(var, arg2);
  512. return var;
  513. }
  514. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAdd */
  515. Aml *aml_add(Aml *arg1, Aml *arg2, Aml *dst)
  516. {
  517. return build_opcode_2arg_dst(0x72 /* AddOp */, arg1, arg2, dst);
  518. }
  519. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefSubtract */
  520. Aml *aml_subtract(Aml *arg1, Aml *arg2, Aml *dst)
  521. {
  522. return build_opcode_2arg_dst(0x74 /* SubtractOp */, arg1, arg2, dst);
  523. }
  524. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefIncrement */
  525. Aml *aml_increment(Aml *arg)
  526. {
  527. Aml *var = aml_opcode(0x75 /* IncrementOp */);
  528. aml_append(var, arg);
  529. return var;
  530. }
  531. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefDecrement */
  532. Aml *aml_decrement(Aml *arg)
  533. {
  534. Aml *var = aml_opcode(0x76 /* DecrementOp */);
  535. aml_append(var, arg);
  536. return var;
  537. }
  538. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefIndex */
  539. Aml *aml_index(Aml *arg1, Aml *idx)
  540. {
  541. return build_opcode_2arg_dst(0x88 /* IndexOp */, arg1, idx, NULL);
  542. }
  543. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefNotify */
  544. Aml *aml_notify(Aml *arg1, Aml *arg2)
  545. {
  546. Aml *var = aml_opcode(0x86 /* NotifyOp */);
  547. aml_append(var, arg1);
  548. aml_append(var, arg2);
  549. return var;
  550. }
  551. /* helper to call method without argument */
  552. Aml *aml_call0(const char *method)
  553. {
  554. Aml *var = aml_alloc();
  555. build_append_namestring(var->buf, "%s", method);
  556. return var;
  557. }
  558. /* helper to call method with 1 argument */
  559. Aml *aml_call1(const char *method, Aml *arg1)
  560. {
  561. Aml *var = aml_alloc();
  562. build_append_namestring(var->buf, "%s", method);
  563. aml_append(var, arg1);
  564. return var;
  565. }
  566. /* helper to call method with 2 arguments */
  567. Aml *aml_call2(const char *method, Aml *arg1, Aml *arg2)
  568. {
  569. Aml *var = aml_alloc();
  570. build_append_namestring(var->buf, "%s", method);
  571. aml_append(var, arg1);
  572. aml_append(var, arg2);
  573. return var;
  574. }
  575. /* helper to call method with 3 arguments */
  576. Aml *aml_call3(const char *method, Aml *arg1, Aml *arg2, Aml *arg3)
  577. {
  578. Aml *var = aml_alloc();
  579. build_append_namestring(var->buf, "%s", method);
  580. aml_append(var, arg1);
  581. aml_append(var, arg2);
  582. aml_append(var, arg3);
  583. return var;
  584. }
  585. /* helper to call method with 4 arguments */
  586. Aml *aml_call4(const char *method, Aml *arg1, Aml *arg2, Aml *arg3, Aml *arg4)
  587. {
  588. Aml *var = aml_alloc();
  589. build_append_namestring(var->buf, "%s", method);
  590. aml_append(var, arg1);
  591. aml_append(var, arg2);
  592. aml_append(var, arg3);
  593. aml_append(var, arg4);
  594. return var;
  595. }
  596. /* helper to call method with 5 arguments */
  597. Aml *aml_call5(const char *method, Aml *arg1, Aml *arg2, Aml *arg3, Aml *arg4,
  598. Aml *arg5)
  599. {
  600. Aml *var = aml_alloc();
  601. build_append_namestring(var->buf, "%s", method);
  602. aml_append(var, arg1);
  603. aml_append(var, arg2);
  604. aml_append(var, arg3);
  605. aml_append(var, arg4);
  606. aml_append(var, arg5);
  607. return var;
  608. }
  609. /*
  610. * ACPI 5.0: 6.4.3.8.1 GPIO Connection Descriptor
  611. * Type 1, Large Item Name 0xC
  612. */
  613. static Aml *aml_gpio_connection(AmlGpioConnectionType type,
  614. AmlConsumerAndProducer con_and_pro,
  615. uint8_t flags, AmlPinConfig pin_config,
  616. uint16_t output_drive,
  617. uint16_t debounce_timeout,
  618. const uint32_t pin_list[], uint32_t pin_count,
  619. const char *resource_source_name,
  620. const uint8_t *vendor_data,
  621. uint16_t vendor_data_len)
  622. {
  623. Aml *var = aml_alloc();
  624. const uint16_t min_desc_len = 0x16;
  625. uint16_t resource_source_name_len, length;
  626. uint16_t pin_table_offset, resource_source_name_offset, vendor_data_offset;
  627. uint32_t i;
  628. assert(resource_source_name);
  629. resource_source_name_len = strlen(resource_source_name) + 1;
  630. length = min_desc_len + resource_source_name_len + vendor_data_len;
  631. pin_table_offset = min_desc_len + 1;
  632. resource_source_name_offset = pin_table_offset + pin_count * 2;
  633. vendor_data_offset = resource_source_name_offset + resource_source_name_len;
  634. build_append_byte(var->buf, 0x8C); /* GPIO Connection Descriptor */
  635. build_append_int_noprefix(var->buf, length, 2); /* Length */
  636. build_append_byte(var->buf, 1); /* Revision ID */
  637. build_append_byte(var->buf, type); /* GPIO Connection Type */
  638. /* General Flags (2 bytes) */
  639. build_append_int_noprefix(var->buf, con_and_pro, 2);
  640. /* Interrupt and IO Flags (2 bytes) */
  641. build_append_int_noprefix(var->buf, flags, 2);
  642. /* Pin Configuration 0 = Default 1 = Pull-up 2 = Pull-down 3 = No Pull */
  643. build_append_byte(var->buf, pin_config);
  644. /* Output Drive Strength (2 bytes) */
  645. build_append_int_noprefix(var->buf, output_drive, 2);
  646. /* Debounce Timeout (2 bytes) */
  647. build_append_int_noprefix(var->buf, debounce_timeout, 2);
  648. /* Pin Table Offset (2 bytes) */
  649. build_append_int_noprefix(var->buf, pin_table_offset, 2);
  650. build_append_byte(var->buf, 0); /* Resource Source Index */
  651. /* Resource Source Name Offset (2 bytes) */
  652. build_append_int_noprefix(var->buf, resource_source_name_offset, 2);
  653. /* Vendor Data Offset (2 bytes) */
  654. build_append_int_noprefix(var->buf, vendor_data_offset, 2);
  655. /* Vendor Data Length (2 bytes) */
  656. build_append_int_noprefix(var->buf, vendor_data_len, 2);
  657. /* Pin Number (2n bytes)*/
  658. for (i = 0; i < pin_count; i++) {
  659. build_append_int_noprefix(var->buf, pin_list[i], 2);
  660. }
  661. /* Resource Source Name */
  662. build_append_namestring(var->buf, "%s", resource_source_name);
  663. build_append_byte(var->buf, '\0');
  664. /* Vendor-defined Data */
  665. if (vendor_data != NULL) {
  666. g_array_append_vals(var->buf, vendor_data, vendor_data_len);
  667. }
  668. return var;
  669. }
  670. /*
  671. * ACPI 5.0: 19.5.53
  672. * GpioInt(GPIO Interrupt Connection Resource Descriptor Macro)
  673. */
  674. Aml *aml_gpio_int(AmlConsumerAndProducer con_and_pro,
  675. AmlLevelAndEdge edge_level,
  676. AmlActiveHighAndLow active_level, AmlShared shared,
  677. AmlPinConfig pin_config, uint16_t debounce_timeout,
  678. const uint32_t pin_list[], uint32_t pin_count,
  679. const char *resource_source_name,
  680. const uint8_t *vendor_data, uint16_t vendor_data_len)
  681. {
  682. uint8_t flags = edge_level | (active_level << 1) | (shared << 3);
  683. return aml_gpio_connection(AML_INTERRUPT_CONNECTION, con_and_pro, flags,
  684. pin_config, 0, debounce_timeout, pin_list,
  685. pin_count, resource_source_name, vendor_data,
  686. vendor_data_len);
  687. }
  688. /*
  689. * ACPI 1.0b: 6.4.3.4 32-Bit Fixed Location Memory Range Descriptor
  690. * (Type 1, Large Item Name 0x6)
  691. */
  692. Aml *aml_memory32_fixed(uint32_t addr, uint32_t size,
  693. AmlReadAndWrite read_and_write)
  694. {
  695. Aml *var = aml_alloc();
  696. build_append_byte(var->buf, 0x86); /* Memory32Fixed Resource Descriptor */
  697. build_append_byte(var->buf, 9); /* Length, bits[7:0] value = 9 */
  698. build_append_byte(var->buf, 0); /* Length, bits[15:8] value = 0 */
  699. build_append_byte(var->buf, read_and_write); /* Write status, 1 rw 0 ro */
  700. /* Range base address */
  701. build_append_byte(var->buf, extract32(addr, 0, 8)); /* bits[7:0] */
  702. build_append_byte(var->buf, extract32(addr, 8, 8)); /* bits[15:8] */
  703. build_append_byte(var->buf, extract32(addr, 16, 8)); /* bits[23:16] */
  704. build_append_byte(var->buf, extract32(addr, 24, 8)); /* bits[31:24] */
  705. /* Range length */
  706. build_append_byte(var->buf, extract32(size, 0, 8)); /* bits[7:0] */
  707. build_append_byte(var->buf, extract32(size, 8, 8)); /* bits[15:8] */
  708. build_append_byte(var->buf, extract32(size, 16, 8)); /* bits[23:16] */
  709. build_append_byte(var->buf, extract32(size, 24, 8)); /* bits[31:24] */
  710. return var;
  711. }
  712. /*
  713. * ACPI 5.0: 6.4.3.6 Extended Interrupt Descriptor
  714. * Type 1, Large Item Name 0x9
  715. */
  716. Aml *aml_interrupt(AmlConsumerAndProducer con_and_pro,
  717. AmlLevelAndEdge level_and_edge,
  718. AmlActiveHighAndLow high_and_low, AmlShared shared,
  719. uint32_t *irq_list, uint8_t irq_count)
  720. {
  721. int i;
  722. Aml *var = aml_alloc();
  723. uint8_t irq_flags = con_and_pro | (level_and_edge << 1)
  724. | (high_and_low << 2) | (shared << 3);
  725. const int header_bytes_in_len = 2;
  726. uint16_t len = header_bytes_in_len + irq_count * sizeof(uint32_t);
  727. assert(irq_count > 0);
  728. build_append_byte(var->buf, 0x89); /* Extended irq descriptor */
  729. build_append_byte(var->buf, len & 0xFF); /* Length, bits[7:0] */
  730. build_append_byte(var->buf, len >> 8); /* Length, bits[15:8] */
  731. build_append_byte(var->buf, irq_flags); /* Interrupt Vector Information. */
  732. build_append_byte(var->buf, irq_count); /* Interrupt table length */
  733. /* Interrupt Number List */
  734. for (i = 0; i < irq_count; i++) {
  735. build_append_int_noprefix(var->buf, irq_list[i], 4);
  736. }
  737. return var;
  738. }
  739. /* ACPI 1.0b: 6.4.2.5 I/O Port Descriptor */
  740. Aml *aml_io(AmlIODecode dec, uint16_t min_base, uint16_t max_base,
  741. uint8_t aln, uint8_t len)
  742. {
  743. Aml *var = aml_alloc();
  744. build_append_byte(var->buf, 0x47); /* IO port descriptor */
  745. build_append_byte(var->buf, dec);
  746. build_append_byte(var->buf, min_base & 0xff);
  747. build_append_byte(var->buf, (min_base >> 8) & 0xff);
  748. build_append_byte(var->buf, max_base & 0xff);
  749. build_append_byte(var->buf, (max_base >> 8) & 0xff);
  750. build_append_byte(var->buf, aln);
  751. build_append_byte(var->buf, len);
  752. return var;
  753. }
  754. /*
  755. * ACPI 1.0b: 6.4.2.1.1 ASL Macro for IRQ Descriptor
  756. *
  757. * More verbose description at:
  758. * ACPI 5.0: 19.5.64 IRQNoFlags (Interrupt Resource Descriptor Macro)
  759. * 6.4.2.1 IRQ Descriptor
  760. */
  761. Aml *aml_irq_no_flags(uint8_t irq)
  762. {
  763. uint16_t irq_mask;
  764. Aml *var = aml_alloc();
  765. assert(irq < 16);
  766. build_append_byte(var->buf, 0x22); /* IRQ descriptor 2 byte form */
  767. irq_mask = 1U << irq;
  768. build_append_byte(var->buf, irq_mask & 0xFF); /* IRQ mask bits[7:0] */
  769. build_append_byte(var->buf, irq_mask >> 8); /* IRQ mask bits[15:8] */
  770. return var;
  771. }
  772. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLNot */
  773. Aml *aml_lnot(Aml *arg)
  774. {
  775. Aml *var = aml_opcode(0x92 /* LNotOp */);
  776. aml_append(var, arg);
  777. return var;
  778. }
  779. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLEqual */
  780. Aml *aml_equal(Aml *arg1, Aml *arg2)
  781. {
  782. Aml *var = aml_opcode(0x93 /* LequalOp */);
  783. aml_append(var, arg1);
  784. aml_append(var, arg2);
  785. return var;
  786. }
  787. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLGreater */
  788. Aml *aml_lgreater(Aml *arg1, Aml *arg2)
  789. {
  790. Aml *var = aml_opcode(0x94 /* LGreaterOp */);
  791. aml_append(var, arg1);
  792. aml_append(var, arg2);
  793. return var;
  794. }
  795. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLGreaterEqual */
  796. Aml *aml_lgreater_equal(Aml *arg1, Aml *arg2)
  797. {
  798. /* LGreaterEqualOp := LNotOp LLessOp */
  799. Aml *var = aml_opcode(0x92 /* LNotOp */);
  800. build_append_byte(var->buf, 0x95 /* LLessOp */);
  801. aml_append(var, arg1);
  802. aml_append(var, arg2);
  803. return var;
  804. }
  805. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefIfElse */
  806. Aml *aml_if(Aml *predicate)
  807. {
  808. Aml *var = aml_bundle(0xA0 /* IfOp */, AML_PACKAGE);
  809. aml_append(var, predicate);
  810. return var;
  811. }
  812. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefElse */
  813. Aml *aml_else(void)
  814. {
  815. Aml *var = aml_bundle(0xA1 /* ElseOp */, AML_PACKAGE);
  816. return var;
  817. }
  818. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefWhile */
  819. Aml *aml_while(Aml *predicate)
  820. {
  821. Aml *var = aml_bundle(0xA2 /* WhileOp */, AML_PACKAGE);
  822. aml_append(var, predicate);
  823. return var;
  824. }
  825. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefMethod */
  826. Aml *aml_method(const char *name, int arg_count, AmlSerializeFlag sflag)
  827. {
  828. Aml *var = aml_bundle(0x14 /* MethodOp */, AML_PACKAGE);
  829. int methodflags;
  830. /*
  831. * MethodFlags:
  832. * bit 0-2: ArgCount (0-7)
  833. * bit 3: SerializeFlag
  834. * 0: NotSerialized
  835. * 1: Serialized
  836. * bit 4-7: reserved (must be 0)
  837. */
  838. assert(arg_count < 8);
  839. methodflags = arg_count | (sflag << 3);
  840. build_append_namestring(var->buf, "%s", name);
  841. build_append_byte(var->buf, methodflags); /* MethodFlags: ArgCount */
  842. return var;
  843. }
  844. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefDevice */
  845. Aml *aml_device(const char *name_format, ...)
  846. {
  847. va_list ap;
  848. Aml *var = aml_bundle(0x82 /* DeviceOp */, AML_EXT_PACKAGE);
  849. va_start(ap, name_format);
  850. build_append_namestringv(var->buf, name_format, ap);
  851. va_end(ap);
  852. return var;
  853. }
  854. /* ACPI 1.0b: 6.4.1 ASL Macros for Resource Descriptors */
  855. Aml *aml_resource_template(void)
  856. {
  857. /* ResourceTemplate is a buffer of Resources with EndTag at the end */
  858. Aml *var = aml_bundle(0x11 /* BufferOp */, AML_RES_TEMPLATE);
  859. return var;
  860. }
  861. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefBuffer
  862. * Pass byte_list as NULL to request uninitialized buffer to reserve space.
  863. */
  864. Aml *aml_buffer(int buffer_size, uint8_t *byte_list)
  865. {
  866. int i;
  867. Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
  868. for (i = 0; i < buffer_size; i++) {
  869. if (byte_list == NULL) {
  870. build_append_byte(var->buf, 0x0);
  871. } else {
  872. build_append_byte(var->buf, byte_list[i]);
  873. }
  874. }
  875. return var;
  876. }
  877. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefPackage */
  878. Aml *aml_package(uint8_t num_elements)
  879. {
  880. Aml *var = aml_bundle(0x12 /* PackageOp */, AML_PACKAGE);
  881. build_append_byte(var->buf, num_elements);
  882. return var;
  883. }
  884. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefOpRegion */
  885. Aml *aml_operation_region(const char *name, AmlRegionSpace rs,
  886. Aml *offset, uint32_t len)
  887. {
  888. Aml *var = aml_alloc();
  889. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  890. build_append_byte(var->buf, 0x80); /* OpRegionOp */
  891. build_append_namestring(var->buf, "%s", name);
  892. build_append_byte(var->buf, rs);
  893. aml_append(var, offset);
  894. build_append_int(var->buf, len);
  895. return var;
  896. }
  897. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: NamedField */
  898. Aml *aml_named_field(const char *name, unsigned length)
  899. {
  900. Aml *var = aml_alloc();
  901. build_append_nameseg(var->buf, name);
  902. build_append_pkg_length(var->buf, length, false);
  903. return var;
  904. }
  905. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: ReservedField */
  906. Aml *aml_reserved_field(unsigned length)
  907. {
  908. Aml *var = aml_alloc();
  909. /* ReservedField := 0x00 PkgLength */
  910. build_append_byte(var->buf, 0x00);
  911. build_append_pkg_length(var->buf, length, false);
  912. return var;
  913. }
  914. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefField */
  915. Aml *aml_field(const char *name, AmlAccessType type, AmlLockRule lock,
  916. AmlUpdateRule rule)
  917. {
  918. Aml *var = aml_bundle(0x81 /* FieldOp */, AML_EXT_PACKAGE);
  919. uint8_t flags = rule << 5 | type;
  920. flags |= lock << 4; /* LockRule at 4 bit offset */
  921. build_append_namestring(var->buf, "%s", name);
  922. build_append_byte(var->buf, flags);
  923. return var;
  924. }
  925. static
  926. Aml *create_field_common(int opcode, Aml *srcbuf, Aml *index, const char *name)
  927. {
  928. Aml *var = aml_opcode(opcode);
  929. aml_append(var, srcbuf);
  930. aml_append(var, index);
  931. build_append_namestring(var->buf, "%s", name);
  932. return var;
  933. }
  934. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefCreateField */
  935. Aml *aml_create_field(Aml *srcbuf, Aml *bit_index, Aml *num_bits,
  936. const char *name)
  937. {
  938. Aml *var = aml_alloc();
  939. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  940. build_append_byte(var->buf, 0x13); /* CreateFieldOp */
  941. aml_append(var, srcbuf);
  942. aml_append(var, bit_index);
  943. aml_append(var, num_bits);
  944. build_append_namestring(var->buf, "%s", name);
  945. return var;
  946. }
  947. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefCreateDWordField */
  948. Aml *aml_create_dword_field(Aml *srcbuf, Aml *index, const char *name)
  949. {
  950. return create_field_common(0x8A /* CreateDWordFieldOp */,
  951. srcbuf, index, name);
  952. }
  953. /* ACPI 2.0a: 17.2.4.2 Named Objects Encoding: DefCreateQWordField */
  954. Aml *aml_create_qword_field(Aml *srcbuf, Aml *index, const char *name)
  955. {
  956. return create_field_common(0x8F /* CreateQWordFieldOp */,
  957. srcbuf, index, name);
  958. }
  959. /* ACPI 1.0b: 16.2.3 Data Objects Encoding: String */
  960. Aml *aml_string(const char *name_format, ...)
  961. {
  962. Aml *var = aml_opcode(0x0D /* StringPrefix */);
  963. va_list ap;
  964. char *s;
  965. int len;
  966. va_start(ap, name_format);
  967. len = g_vasprintf(&s, name_format, ap);
  968. va_end(ap);
  969. g_array_append_vals(var->buf, s, len + 1);
  970. g_free(s);
  971. return var;
  972. }
  973. /* ACPI 1.0b: 16.2.6.2 Local Objects Encoding */
  974. Aml *aml_local(int num)
  975. {
  976. uint8_t op = 0x60 /* Local0Op */ + num;
  977. assert(num <= 7);
  978. return aml_opcode(op);
  979. }
  980. /* ACPI 2.0a: 17.2.2 Data Objects Encoding: DefVarPackage */
  981. Aml *aml_varpackage(uint32_t num_elements)
  982. {
  983. Aml *var = aml_bundle(0x13 /* VarPackageOp */, AML_PACKAGE);
  984. build_append_int(var->buf, num_elements);
  985. return var;
  986. }
  987. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefProcessor */
  988. Aml *aml_processor(uint8_t proc_id, uint32_t pblk_addr, uint8_t pblk_len,
  989. const char *name_format, ...)
  990. {
  991. va_list ap;
  992. Aml *var = aml_bundle(0x83 /* ProcessorOp */, AML_EXT_PACKAGE);
  993. va_start(ap, name_format);
  994. build_append_namestringv(var->buf, name_format, ap);
  995. va_end(ap);
  996. build_append_byte(var->buf, proc_id); /* ProcID */
  997. build_append_int_noprefix(var->buf, pblk_addr, sizeof(pblk_addr));
  998. build_append_byte(var->buf, pblk_len); /* PblkLen */
  999. return var;
  1000. }
  1001. static uint8_t Hex2Digit(char c)
  1002. {
  1003. if (c >= 'A') {
  1004. return c - 'A' + 10;
  1005. }
  1006. return c - '0';
  1007. }
  1008. /* ACPI 1.0b: 15.2.3.6.4.1 EISAID Macro - Convert EISA ID String To Integer */
  1009. Aml *aml_eisaid(const char *str)
  1010. {
  1011. Aml *var = aml_alloc();
  1012. uint32_t id;
  1013. g_assert(strlen(str) == 7);
  1014. id = (str[0] - 0x40) << 26 |
  1015. (str[1] - 0x40) << 21 |
  1016. (str[2] - 0x40) << 16 |
  1017. Hex2Digit(str[3]) << 12 |
  1018. Hex2Digit(str[4]) << 8 |
  1019. Hex2Digit(str[5]) << 4 |
  1020. Hex2Digit(str[6]);
  1021. build_append_byte(var->buf, 0x0C); /* DWordPrefix */
  1022. build_append_int_noprefix(var->buf, bswap32(id), sizeof(id));
  1023. return var;
  1024. }
  1025. /* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor: bytes 3-5 */
  1026. static Aml *aml_as_desc_header(AmlResourceType type, AmlMinFixed min_fixed,
  1027. AmlMaxFixed max_fixed, AmlDecode dec,
  1028. uint8_t type_flags)
  1029. {
  1030. uint8_t flags = max_fixed | min_fixed | dec;
  1031. Aml *var = aml_alloc();
  1032. build_append_byte(var->buf, type);
  1033. build_append_byte(var->buf, flags);
  1034. build_append_byte(var->buf, type_flags); /* Type Specific Flags */
  1035. return var;
  1036. }
  1037. /* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor */
  1038. static Aml *aml_word_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
  1039. AmlMaxFixed max_fixed, AmlDecode dec,
  1040. uint16_t addr_gran, uint16_t addr_min,
  1041. uint16_t addr_max, uint16_t addr_trans,
  1042. uint16_t len, uint8_t type_flags)
  1043. {
  1044. Aml *var = aml_alloc();
  1045. build_append_byte(var->buf, 0x88); /* Word Address Space Descriptor */
  1046. /* minimum length since we do not encode optional fields */
  1047. build_append_byte(var->buf, 0x0D);
  1048. build_append_byte(var->buf, 0x0);
  1049. aml_append(var,
  1050. aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
  1051. build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
  1052. build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
  1053. build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
  1054. build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
  1055. build_append_int_noprefix(var->buf, len, sizeof(len));
  1056. return var;
  1057. }
  1058. /* ACPI 1.0b: 6.4.3.5.3 DWord Address Space Descriptor */
  1059. static Aml *aml_dword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
  1060. AmlMaxFixed max_fixed, AmlDecode dec,
  1061. uint32_t addr_gran, uint32_t addr_min,
  1062. uint32_t addr_max, uint32_t addr_trans,
  1063. uint32_t len, uint8_t type_flags)
  1064. {
  1065. Aml *var = aml_alloc();
  1066. build_append_byte(var->buf, 0x87); /* DWord Address Space Descriptor */
  1067. /* minimum length since we do not encode optional fields */
  1068. build_append_byte(var->buf, 23);
  1069. build_append_byte(var->buf, 0x0);
  1070. aml_append(var,
  1071. aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
  1072. build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
  1073. build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
  1074. build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
  1075. build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
  1076. build_append_int_noprefix(var->buf, len, sizeof(len));
  1077. return var;
  1078. }
  1079. /* ACPI 1.0b: 6.4.3.5.1 QWord Address Space Descriptor */
  1080. static Aml *aml_qword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
  1081. AmlMaxFixed max_fixed, AmlDecode dec,
  1082. uint64_t addr_gran, uint64_t addr_min,
  1083. uint64_t addr_max, uint64_t addr_trans,
  1084. uint64_t len, uint8_t type_flags)
  1085. {
  1086. Aml *var = aml_alloc();
  1087. build_append_byte(var->buf, 0x8A); /* QWord Address Space Descriptor */
  1088. /* minimum length since we do not encode optional fields */
  1089. build_append_byte(var->buf, 0x2B);
  1090. build_append_byte(var->buf, 0x0);
  1091. aml_append(var,
  1092. aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
  1093. build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
  1094. build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
  1095. build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
  1096. build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
  1097. build_append_int_noprefix(var->buf, len, sizeof(len));
  1098. return var;
  1099. }
  1100. /*
  1101. * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
  1102. *
  1103. * More verbose description at:
  1104. * ACPI 5.0: 19.5.141 WordBusNumber (Word Bus Number Resource Descriptor Macro)
  1105. */
  1106. Aml *aml_word_bus_number(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
  1107. AmlDecode dec, uint16_t addr_gran,
  1108. uint16_t addr_min, uint16_t addr_max,
  1109. uint16_t addr_trans, uint16_t len)
  1110. {
  1111. return aml_word_as_desc(AML_BUS_NUMBER_RANGE, min_fixed, max_fixed, dec,
  1112. addr_gran, addr_min, addr_max, addr_trans, len, 0);
  1113. }
  1114. /*
  1115. * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
  1116. *
  1117. * More verbose description at:
  1118. * ACPI 5.0: 19.5.142 WordIO (Word IO Resource Descriptor Macro)
  1119. */
  1120. Aml *aml_word_io(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
  1121. AmlDecode dec, AmlISARanges isa_ranges,
  1122. uint16_t addr_gran, uint16_t addr_min,
  1123. uint16_t addr_max, uint16_t addr_trans,
  1124. uint16_t len)
  1125. {
  1126. return aml_word_as_desc(AML_IO_RANGE, min_fixed, max_fixed, dec,
  1127. addr_gran, addr_min, addr_max, addr_trans, len,
  1128. isa_ranges);
  1129. }
  1130. /*
  1131. * ACPI 1.0b: 6.4.3.5.4 ASL Macros for DWORD Address Descriptor
  1132. *
  1133. * More verbose description at:
  1134. * ACPI 5.0: 19.5.33 DWordIO (DWord IO Resource Descriptor Macro)
  1135. */
  1136. Aml *aml_dword_io(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
  1137. AmlDecode dec, AmlISARanges isa_ranges,
  1138. uint32_t addr_gran, uint32_t addr_min,
  1139. uint32_t addr_max, uint32_t addr_trans,
  1140. uint32_t len)
  1141. {
  1142. return aml_dword_as_desc(AML_IO_RANGE, min_fixed, max_fixed, dec,
  1143. addr_gran, addr_min, addr_max, addr_trans, len,
  1144. isa_ranges);
  1145. }
  1146. /*
  1147. * ACPI 1.0b: 6.4.3.5.4 ASL Macros for DWORD Address Space Descriptor
  1148. *
  1149. * More verbose description at:
  1150. * ACPI 5.0: 19.5.34 DWordMemory (DWord Memory Resource Descriptor Macro)
  1151. */
  1152. Aml *aml_dword_memory(AmlDecode dec, AmlMinFixed min_fixed,
  1153. AmlMaxFixed max_fixed, AmlCacheable cacheable,
  1154. AmlReadAndWrite read_and_write,
  1155. uint32_t addr_gran, uint32_t addr_min,
  1156. uint32_t addr_max, uint32_t addr_trans,
  1157. uint32_t len)
  1158. {
  1159. uint8_t flags = read_and_write | (cacheable << 1);
  1160. return aml_dword_as_desc(AML_MEMORY_RANGE, min_fixed, max_fixed,
  1161. dec, addr_gran, addr_min, addr_max,
  1162. addr_trans, len, flags);
  1163. }
  1164. /*
  1165. * ACPI 1.0b: 6.4.3.5.2 ASL Macros for QWORD Address Space Descriptor
  1166. *
  1167. * More verbose description at:
  1168. * ACPI 5.0: 19.5.102 QWordMemory (QWord Memory Resource Descriptor Macro)
  1169. */
  1170. Aml *aml_qword_memory(AmlDecode dec, AmlMinFixed min_fixed,
  1171. AmlMaxFixed max_fixed, AmlCacheable cacheable,
  1172. AmlReadAndWrite read_and_write,
  1173. uint64_t addr_gran, uint64_t addr_min,
  1174. uint64_t addr_max, uint64_t addr_trans,
  1175. uint64_t len)
  1176. {
  1177. uint8_t flags = read_and_write | (cacheable << 1);
  1178. return aml_qword_as_desc(AML_MEMORY_RANGE, min_fixed, max_fixed,
  1179. dec, addr_gran, addr_min, addr_max,
  1180. addr_trans, len, flags);
  1181. }
  1182. /* ACPI 1.0b: 6.4.2.2 DMA Format/6.4.2.2.1 ASL Macro for DMA Descriptor */
  1183. Aml *aml_dma(AmlDmaType typ, AmlDmaBusMaster bm, AmlTransferSize sz,
  1184. uint8_t channel)
  1185. {
  1186. Aml *var = aml_alloc();
  1187. uint8_t flags = sz | bm << 2 | typ << 5;
  1188. assert(channel < 8);
  1189. build_append_byte(var->buf, 0x2A); /* Byte 0: DMA Descriptor */
  1190. build_append_byte(var->buf, 1U << channel); /* Byte 1: _DMA - DmaChannel */
  1191. build_append_byte(var->buf, flags); /* Byte 2 */
  1192. return var;
  1193. }
  1194. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefSleep */
  1195. Aml *aml_sleep(uint64_t msec)
  1196. {
  1197. Aml *var = aml_alloc();
  1198. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  1199. build_append_byte(var->buf, 0x22); /* SleepOp */
  1200. aml_append(var, aml_int(msec));
  1201. return var;
  1202. }
  1203. static uint8_t Hex2Byte(const char *src)
  1204. {
  1205. int hi, lo;
  1206. hi = Hex2Digit(src[0]);
  1207. assert(hi >= 0);
  1208. assert(hi <= 15);
  1209. lo = Hex2Digit(src[1]);
  1210. assert(lo >= 0);
  1211. assert(lo <= 15);
  1212. return (hi << 4) | lo;
  1213. }
  1214. /*
  1215. * ACPI 3.0: 17.5.124 ToUUID (Convert String to UUID Macro)
  1216. * e.g. UUID: aabbccdd-eeff-gghh-iijj-kkllmmnnoopp
  1217. * call aml_touuid("aabbccdd-eeff-gghh-iijj-kkllmmnnoopp");
  1218. */
  1219. Aml *aml_touuid(const char *uuid)
  1220. {
  1221. Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
  1222. assert(strlen(uuid) == 36);
  1223. assert(uuid[8] == '-');
  1224. assert(uuid[13] == '-');
  1225. assert(uuid[18] == '-');
  1226. assert(uuid[23] == '-');
  1227. build_append_byte(var->buf, Hex2Byte(uuid + 6)); /* dd - at offset 00 */
  1228. build_append_byte(var->buf, Hex2Byte(uuid + 4)); /* cc - at offset 01 */
  1229. build_append_byte(var->buf, Hex2Byte(uuid + 2)); /* bb - at offset 02 */
  1230. build_append_byte(var->buf, Hex2Byte(uuid + 0)); /* aa - at offset 03 */
  1231. build_append_byte(var->buf, Hex2Byte(uuid + 11)); /* ff - at offset 04 */
  1232. build_append_byte(var->buf, Hex2Byte(uuid + 9)); /* ee - at offset 05 */
  1233. build_append_byte(var->buf, Hex2Byte(uuid + 16)); /* hh - at offset 06 */
  1234. build_append_byte(var->buf, Hex2Byte(uuid + 14)); /* gg - at offset 07 */
  1235. build_append_byte(var->buf, Hex2Byte(uuid + 19)); /* ii - at offset 08 */
  1236. build_append_byte(var->buf, Hex2Byte(uuid + 21)); /* jj - at offset 09 */
  1237. build_append_byte(var->buf, Hex2Byte(uuid + 24)); /* kk - at offset 10 */
  1238. build_append_byte(var->buf, Hex2Byte(uuid + 26)); /* ll - at offset 11 */
  1239. build_append_byte(var->buf, Hex2Byte(uuid + 28)); /* mm - at offset 12 */
  1240. build_append_byte(var->buf, Hex2Byte(uuid + 30)); /* nn - at offset 13 */
  1241. build_append_byte(var->buf, Hex2Byte(uuid + 32)); /* oo - at offset 14 */
  1242. build_append_byte(var->buf, Hex2Byte(uuid + 34)); /* pp - at offset 15 */
  1243. return var;
  1244. }
  1245. /*
  1246. * ACPI 2.0b: 16.2.3.6.4.3 Unicode Macro (Convert Ascii String To Unicode)
  1247. */
  1248. Aml *aml_unicode(const char *str)
  1249. {
  1250. int i = 0;
  1251. Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
  1252. do {
  1253. build_append_byte(var->buf, str[i]);
  1254. build_append_byte(var->buf, 0);
  1255. i++;
  1256. } while (i <= strlen(str));
  1257. return var;
  1258. }
  1259. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefRefOf */
  1260. Aml *aml_refof(Aml *arg)
  1261. {
  1262. Aml *var = aml_opcode(0x71 /* RefOfOp */);
  1263. aml_append(var, arg);
  1264. return var;
  1265. }
  1266. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefDerefOf */
  1267. Aml *aml_derefof(Aml *arg)
  1268. {
  1269. Aml *var = aml_opcode(0x83 /* DerefOfOp */);
  1270. aml_append(var, arg);
  1271. return var;
  1272. }
  1273. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefSizeOf */
  1274. Aml *aml_sizeof(Aml *arg)
  1275. {
  1276. Aml *var = aml_opcode(0x87 /* SizeOfOp */);
  1277. aml_append(var, arg);
  1278. return var;
  1279. }
  1280. /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefMutex */
  1281. Aml *aml_mutex(const char *name, uint8_t sync_level)
  1282. {
  1283. Aml *var = aml_alloc();
  1284. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  1285. build_append_byte(var->buf, 0x01); /* MutexOp */
  1286. build_append_namestring(var->buf, "%s", name);
  1287. assert(!(sync_level & 0xF0));
  1288. build_append_byte(var->buf, sync_level);
  1289. return var;
  1290. }
  1291. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAcquire */
  1292. Aml *aml_acquire(Aml *mutex, uint16_t timeout)
  1293. {
  1294. Aml *var = aml_alloc();
  1295. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  1296. build_append_byte(var->buf, 0x23); /* AcquireOp */
  1297. aml_append(var, mutex);
  1298. build_append_int_noprefix(var->buf, timeout, sizeof(timeout));
  1299. return var;
  1300. }
  1301. /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefRelease */
  1302. Aml *aml_release(Aml *mutex)
  1303. {
  1304. Aml *var = aml_alloc();
  1305. build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
  1306. build_append_byte(var->buf, 0x27); /* ReleaseOp */
  1307. aml_append(var, mutex);
  1308. return var;
  1309. }
  1310. /* ACPI 1.0b: 16.2.5.1 Name Space Modifier Objects Encoding: DefAlias */
  1311. Aml *aml_alias(const char *source_object, const char *alias_object)
  1312. {
  1313. Aml *var = aml_opcode(0x06 /* AliasOp */);
  1314. aml_append(var, aml_name("%s", source_object));
  1315. aml_append(var, aml_name("%s", alias_object));
  1316. return var;
  1317. }
  1318. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefConcat */
  1319. Aml *aml_concatenate(Aml *source1, Aml *source2, Aml *target)
  1320. {
  1321. return build_opcode_2arg_dst(0x73 /* ConcatOp */, source1, source2,
  1322. target);
  1323. }
  1324. /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefObjectType */
  1325. Aml *aml_object_type(Aml *object)
  1326. {
  1327. Aml *var = aml_opcode(0x8E /* ObjectTypeOp */);
  1328. aml_append(var, object);
  1329. return var;
  1330. }
  1331. void
  1332. build_header(BIOSLinker *linker, GArray *table_data,
  1333. AcpiTableHeader *h, const char *sig, int len, uint8_t rev,
  1334. const char *oem_id, const char *oem_table_id)
  1335. {
  1336. unsigned tbl_offset = (char *)h - table_data->data;
  1337. unsigned checksum_offset = (char *)&h->checksum - table_data->data;
  1338. memcpy(&h->signature, sig, 4);
  1339. h->length = cpu_to_le32(len);
  1340. h->revision = rev;
  1341. if (oem_id) {
  1342. strncpy((char *)h->oem_id, oem_id, sizeof h->oem_id);
  1343. } else {
  1344. memcpy(h->oem_id, ACPI_BUILD_APPNAME6, 6);
  1345. }
  1346. if (oem_table_id) {
  1347. strncpy((char *)h->oem_table_id, oem_table_id, sizeof(h->oem_table_id));
  1348. } else {
  1349. memcpy(h->oem_table_id, ACPI_BUILD_APPNAME4, 4);
  1350. memcpy(h->oem_table_id + 4, sig, 4);
  1351. }
  1352. h->oem_revision = cpu_to_le32(1);
  1353. memcpy(h->asl_compiler_id, ACPI_BUILD_APPNAME4, 4);
  1354. h->asl_compiler_revision = cpu_to_le32(1);
  1355. /* Checksum to be filled in by Guest linker */
  1356. bios_linker_loader_add_checksum(linker, ACPI_BUILD_TABLE_FILE,
  1357. tbl_offset, len, checksum_offset);
  1358. }
  1359. void *acpi_data_push(GArray *table_data, unsigned size)
  1360. {
  1361. unsigned off = table_data->len;
  1362. g_array_set_size(table_data, off + size);
  1363. return table_data->data + off;
  1364. }
  1365. unsigned acpi_data_len(GArray *table)
  1366. {
  1367. assert(g_array_get_element_size(table) == 1);
  1368. return table->len;
  1369. }
  1370. void acpi_add_table(GArray *table_offsets, GArray *table_data)
  1371. {
  1372. uint32_t offset = table_data->len;
  1373. g_array_append_val(table_offsets, offset);
  1374. }
  1375. void acpi_build_tables_init(AcpiBuildTables *tables)
  1376. {
  1377. tables->rsdp = g_array_new(false, true /* clear */, 1);
  1378. tables->table_data = g_array_new(false, true /* clear */, 1);
  1379. tables->tcpalog = g_array_new(false, true /* clear */, 1);
  1380. tables->vmgenid = g_array_new(false, true /* clear */, 1);
  1381. tables->linker = bios_linker_loader_init();
  1382. }
  1383. void acpi_build_tables_cleanup(AcpiBuildTables *tables, bool mfre)
  1384. {
  1385. bios_linker_loader_cleanup(tables->linker);
  1386. g_array_free(tables->rsdp, true);
  1387. g_array_free(tables->table_data, true);
  1388. g_array_free(tables->tcpalog, mfre);
  1389. g_array_free(tables->vmgenid, mfre);
  1390. }
  1391. /*
  1392. * ACPI spec 5.2.5.3 Root System Description Pointer (RSDP).
  1393. * (Revision 1.0 or later)
  1394. */
  1395. void
  1396. build_rsdp(GArray *tbl, BIOSLinker *linker, AcpiRsdpData *rsdp_data)
  1397. {
  1398. int tbl_off = tbl->len; /* Table offset in the RSDP file */
  1399. switch (rsdp_data->revision) {
  1400. case 0:
  1401. /* With ACPI 1.0, we must have an RSDT pointer */
  1402. g_assert(rsdp_data->rsdt_tbl_offset);
  1403. break;
  1404. case 2:
  1405. /* With ACPI 2.0+, we must have an XSDT pointer */
  1406. g_assert(rsdp_data->xsdt_tbl_offset);
  1407. break;
  1408. default:
  1409. /* Only revisions 0 (ACPI 1.0) and 2 (ACPI 2.0+) are valid for RSDP */
  1410. g_assert_not_reached();
  1411. }
  1412. bios_linker_loader_alloc(linker, ACPI_BUILD_RSDP_FILE, tbl, 16,
  1413. true /* fseg memory */);
  1414. g_array_append_vals(tbl, "RSD PTR ", 8); /* Signature */
  1415. build_append_int_noprefix(tbl, 0, 1); /* Checksum */
  1416. g_array_append_vals(tbl, rsdp_data->oem_id, 6); /* OEMID */
  1417. build_append_int_noprefix(tbl, rsdp_data->revision, 1); /* Revision */
  1418. build_append_int_noprefix(tbl, 0, 4); /* RsdtAddress */
  1419. if (rsdp_data->rsdt_tbl_offset) {
  1420. /* RSDT address to be filled by guest linker */
  1421. bios_linker_loader_add_pointer(linker, ACPI_BUILD_RSDP_FILE,
  1422. tbl_off + 16, 4,
  1423. ACPI_BUILD_TABLE_FILE,
  1424. *rsdp_data->rsdt_tbl_offset);
  1425. }
  1426. /* Checksum to be filled by guest linker */
  1427. bios_linker_loader_add_checksum(linker, ACPI_BUILD_RSDP_FILE,
  1428. tbl_off, 20, /* ACPI rev 1.0 RSDP size */
  1429. 8);
  1430. if (rsdp_data->revision == 0) {
  1431. /* ACPI 1.0 RSDP, we're done */
  1432. return;
  1433. }
  1434. build_append_int_noprefix(tbl, 36, 4); /* Length */
  1435. /* XSDT address to be filled by guest linker */
  1436. build_append_int_noprefix(tbl, 0, 8); /* XsdtAddress */
  1437. /* We already validated our xsdt pointer */
  1438. bios_linker_loader_add_pointer(linker, ACPI_BUILD_RSDP_FILE,
  1439. tbl_off + 24, 8,
  1440. ACPI_BUILD_TABLE_FILE,
  1441. *rsdp_data->xsdt_tbl_offset);
  1442. build_append_int_noprefix(tbl, 0, 1); /* Extended Checksum */
  1443. build_append_int_noprefix(tbl, 0, 3); /* Reserved */
  1444. /* Extended checksum to be filled by Guest linker */
  1445. bios_linker_loader_add_checksum(linker, ACPI_BUILD_RSDP_FILE,
  1446. tbl_off, 36, /* ACPI rev 2.0 RSDP size */
  1447. 32);
  1448. }
  1449. /* Build rsdt table */
  1450. void
  1451. build_rsdt(GArray *table_data, BIOSLinker *linker, GArray *table_offsets,
  1452. const char *oem_id, const char *oem_table_id)
  1453. {
  1454. int i;
  1455. unsigned rsdt_entries_offset;
  1456. AcpiRsdtDescriptorRev1 *rsdt;
  1457. const unsigned table_data_len = (sizeof(uint32_t) * table_offsets->len);
  1458. const unsigned rsdt_entry_size = sizeof(rsdt->table_offset_entry[0]);
  1459. const size_t rsdt_len = sizeof(*rsdt) + table_data_len;
  1460. rsdt = acpi_data_push(table_data, rsdt_len);
  1461. rsdt_entries_offset = (char *)rsdt->table_offset_entry - table_data->data;
  1462. for (i = 0; i < table_offsets->len; ++i) {
  1463. uint32_t ref_tbl_offset = g_array_index(table_offsets, uint32_t, i);
  1464. uint32_t rsdt_entry_offset = rsdt_entries_offset + rsdt_entry_size * i;
  1465. /* rsdt->table_offset_entry to be filled by Guest linker */
  1466. bios_linker_loader_add_pointer(linker,
  1467. ACPI_BUILD_TABLE_FILE, rsdt_entry_offset, rsdt_entry_size,
  1468. ACPI_BUILD_TABLE_FILE, ref_tbl_offset);
  1469. }
  1470. build_header(linker, table_data,
  1471. (void *)rsdt, "RSDT", rsdt_len, 1, oem_id, oem_table_id);
  1472. }
  1473. /* Build xsdt table */
  1474. void
  1475. build_xsdt(GArray *table_data, BIOSLinker *linker, GArray *table_offsets,
  1476. const char *oem_id, const char *oem_table_id)
  1477. {
  1478. int i;
  1479. unsigned xsdt_entries_offset;
  1480. AcpiXsdtDescriptorRev2 *xsdt;
  1481. const unsigned table_data_len = (sizeof(uint64_t) * table_offsets->len);
  1482. const unsigned xsdt_entry_size = sizeof(xsdt->table_offset_entry[0]);
  1483. const size_t xsdt_len = sizeof(*xsdt) + table_data_len;
  1484. xsdt = acpi_data_push(table_data, xsdt_len);
  1485. xsdt_entries_offset = (char *)xsdt->table_offset_entry - table_data->data;
  1486. for (i = 0; i < table_offsets->len; ++i) {
  1487. uint64_t ref_tbl_offset = g_array_index(table_offsets, uint32_t, i);
  1488. uint64_t xsdt_entry_offset = xsdt_entries_offset + xsdt_entry_size * i;
  1489. /* xsdt->table_offset_entry to be filled by Guest linker */
  1490. bios_linker_loader_add_pointer(linker,
  1491. ACPI_BUILD_TABLE_FILE, xsdt_entry_offset, xsdt_entry_size,
  1492. ACPI_BUILD_TABLE_FILE, ref_tbl_offset);
  1493. }
  1494. build_header(linker, table_data,
  1495. (void *)xsdt, "XSDT", xsdt_len, 1, oem_id, oem_table_id);
  1496. }
  1497. void build_srat_memory(AcpiSratMemoryAffinity *numamem, uint64_t base,
  1498. uint64_t len, int node, MemoryAffinityFlags flags)
  1499. {
  1500. numamem->type = ACPI_SRAT_MEMORY;
  1501. numamem->length = sizeof(*numamem);
  1502. numamem->proximity = cpu_to_le32(node);
  1503. numamem->flags = cpu_to_le32(flags);
  1504. numamem->base_addr = cpu_to_le64(base);
  1505. numamem->range_length = cpu_to_le64(len);
  1506. }
  1507. /*
  1508. * ACPI spec 5.2.17 System Locality Distance Information Table
  1509. * (Revision 2.0 or later)
  1510. */
  1511. void build_slit(GArray *table_data, BIOSLinker *linker, MachineState *ms)
  1512. {
  1513. int slit_start, i, j;
  1514. slit_start = table_data->len;
  1515. int nb_numa_nodes = ms->numa_state->num_nodes;
  1516. acpi_data_push(table_data, sizeof(AcpiTableHeader));
  1517. build_append_int_noprefix(table_data, nb_numa_nodes, 8);
  1518. for (i = 0; i < nb_numa_nodes; i++) {
  1519. for (j = 0; j < nb_numa_nodes; j++) {
  1520. assert(ms->numa_state->nodes[i].distance[j]);
  1521. build_append_int_noprefix(table_data,
  1522. ms->numa_state->nodes[i].distance[j],
  1523. 1);
  1524. }
  1525. }
  1526. build_header(linker, table_data,
  1527. (void *)(table_data->data + slit_start),
  1528. "SLIT",
  1529. table_data->len - slit_start, 1, NULL, NULL);
  1530. }
  1531. /* build rev1/rev3/rev5.1 FADT */
  1532. void build_fadt(GArray *tbl, BIOSLinker *linker, const AcpiFadtData *f,
  1533. const char *oem_id, const char *oem_table_id)
  1534. {
  1535. int off;
  1536. int fadt_start = tbl->len;
  1537. acpi_data_push(tbl, sizeof(AcpiTableHeader));
  1538. /* FACS address to be filled by Guest linker at runtime */
  1539. off = tbl->len;
  1540. build_append_int_noprefix(tbl, 0, 4); /* FIRMWARE_CTRL */
  1541. if (f->facs_tbl_offset) { /* don't patch if not supported by platform */
  1542. bios_linker_loader_add_pointer(linker,
  1543. ACPI_BUILD_TABLE_FILE, off, 4,
  1544. ACPI_BUILD_TABLE_FILE, *f->facs_tbl_offset);
  1545. }
  1546. /* DSDT address to be filled by Guest linker at runtime */
  1547. off = tbl->len;
  1548. build_append_int_noprefix(tbl, 0, 4); /* DSDT */
  1549. if (f->dsdt_tbl_offset) { /* don't patch if not supported by platform */
  1550. bios_linker_loader_add_pointer(linker,
  1551. ACPI_BUILD_TABLE_FILE, off, 4,
  1552. ACPI_BUILD_TABLE_FILE, *f->dsdt_tbl_offset);
  1553. }
  1554. /* ACPI1.0: INT_MODEL, ACPI2.0+: Reserved */
  1555. build_append_int_noprefix(tbl, f->int_model /* Multiple APIC */, 1);
  1556. /* Preferred_PM_Profile */
  1557. build_append_int_noprefix(tbl, 0 /* Unspecified */, 1);
  1558. build_append_int_noprefix(tbl, f->sci_int, 2); /* SCI_INT */
  1559. build_append_int_noprefix(tbl, f->smi_cmd, 4); /* SMI_CMD */
  1560. build_append_int_noprefix(tbl, f->acpi_enable_cmd, 1); /* ACPI_ENABLE */
  1561. build_append_int_noprefix(tbl, f->acpi_disable_cmd, 1); /* ACPI_DISABLE */
  1562. build_append_int_noprefix(tbl, 0 /* not supported */, 1); /* S4BIOS_REQ */
  1563. /* ACPI1.0: Reserved, ACPI2.0+: PSTATE_CNT */
  1564. build_append_int_noprefix(tbl, 0, 1);
  1565. build_append_int_noprefix(tbl, f->pm1a_evt.address, 4); /* PM1a_EVT_BLK */
  1566. build_append_int_noprefix(tbl, 0, 4); /* PM1b_EVT_BLK */
  1567. build_append_int_noprefix(tbl, f->pm1a_cnt.address, 4); /* PM1a_CNT_BLK */
  1568. build_append_int_noprefix(tbl, 0, 4); /* PM1b_CNT_BLK */
  1569. build_append_int_noprefix(tbl, 0, 4); /* PM2_CNT_BLK */
  1570. build_append_int_noprefix(tbl, f->pm_tmr.address, 4); /* PM_TMR_BLK */
  1571. build_append_int_noprefix(tbl, f->gpe0_blk.address, 4); /* GPE0_BLK */
  1572. build_append_int_noprefix(tbl, 0, 4); /* GPE1_BLK */
  1573. /* PM1_EVT_LEN */
  1574. build_append_int_noprefix(tbl, f->pm1a_evt.bit_width / 8, 1);
  1575. /* PM1_CNT_LEN */
  1576. build_append_int_noprefix(tbl, f->pm1a_cnt.bit_width / 8, 1);
  1577. build_append_int_noprefix(tbl, 0, 1); /* PM2_CNT_LEN */
  1578. build_append_int_noprefix(tbl, f->pm_tmr.bit_width / 8, 1); /* PM_TMR_LEN */
  1579. /* GPE0_BLK_LEN */
  1580. build_append_int_noprefix(tbl, f->gpe0_blk.bit_width / 8, 1);
  1581. build_append_int_noprefix(tbl, 0, 1); /* GPE1_BLK_LEN */
  1582. build_append_int_noprefix(tbl, 0, 1); /* GPE1_BASE */
  1583. build_append_int_noprefix(tbl, 0, 1); /* CST_CNT */
  1584. build_append_int_noprefix(tbl, f->plvl2_lat, 2); /* P_LVL2_LAT */
  1585. build_append_int_noprefix(tbl, f->plvl3_lat, 2); /* P_LVL3_LAT */
  1586. build_append_int_noprefix(tbl, 0, 2); /* FLUSH_SIZE */
  1587. build_append_int_noprefix(tbl, 0, 2); /* FLUSH_STRIDE */
  1588. build_append_int_noprefix(tbl, 0, 1); /* DUTY_OFFSET */
  1589. build_append_int_noprefix(tbl, 0, 1); /* DUTY_WIDTH */
  1590. build_append_int_noprefix(tbl, 0, 1); /* DAY_ALRM */
  1591. build_append_int_noprefix(tbl, 0, 1); /* MON_ALRM */
  1592. build_append_int_noprefix(tbl, f->rtc_century, 1); /* CENTURY */
  1593. build_append_int_noprefix(tbl, 0, 2); /* IAPC_BOOT_ARCH */
  1594. build_append_int_noprefix(tbl, 0, 1); /* Reserved */
  1595. build_append_int_noprefix(tbl, f->flags, 4); /* Flags */
  1596. if (f->rev == 1) {
  1597. goto build_hdr;
  1598. }
  1599. build_append_gas_from_struct(tbl, &f->reset_reg); /* RESET_REG */
  1600. build_append_int_noprefix(tbl, f->reset_val, 1); /* RESET_VALUE */
  1601. /* Since ACPI 5.1 */
  1602. if ((f->rev >= 6) || ((f->rev == 5) && f->minor_ver > 0)) {
  1603. build_append_int_noprefix(tbl, f->arm_boot_arch, 2); /* ARM_BOOT_ARCH */
  1604. /* FADT Minor Version */
  1605. build_append_int_noprefix(tbl, f->minor_ver, 1);
  1606. } else {
  1607. build_append_int_noprefix(tbl, 0, 3); /* Reserved upto ACPI 5.0 */
  1608. }
  1609. build_append_int_noprefix(tbl, 0, 8); /* X_FIRMWARE_CTRL */
  1610. /* XDSDT address to be filled by Guest linker at runtime */
  1611. off = tbl->len;
  1612. build_append_int_noprefix(tbl, 0, 8); /* X_DSDT */
  1613. if (f->xdsdt_tbl_offset) {
  1614. bios_linker_loader_add_pointer(linker,
  1615. ACPI_BUILD_TABLE_FILE, off, 8,
  1616. ACPI_BUILD_TABLE_FILE, *f->xdsdt_tbl_offset);
  1617. }
  1618. build_append_gas_from_struct(tbl, &f->pm1a_evt); /* X_PM1a_EVT_BLK */
  1619. /* X_PM1b_EVT_BLK */
  1620. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0);
  1621. build_append_gas_from_struct(tbl, &f->pm1a_cnt); /* X_PM1a_CNT_BLK */
  1622. /* X_PM1b_CNT_BLK */
  1623. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0);
  1624. /* X_PM2_CNT_BLK */
  1625. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0);
  1626. build_append_gas_from_struct(tbl, &f->pm_tmr); /* X_PM_TMR_BLK */
  1627. build_append_gas_from_struct(tbl, &f->gpe0_blk); /* X_GPE0_BLK */
  1628. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0); /* X_GPE1_BLK */
  1629. if (f->rev <= 4) {
  1630. goto build_hdr;
  1631. }
  1632. /* SLEEP_CONTROL_REG */
  1633. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0);
  1634. /* SLEEP_STATUS_REG */
  1635. build_append_gas(tbl, AML_AS_SYSTEM_MEMORY, 0 , 0, 0, 0);
  1636. /* TODO: extra fields need to be added to support revisions above rev5 */
  1637. assert(f->rev == 5);
  1638. build_hdr:
  1639. build_header(linker, tbl, (void *)(tbl->data + fadt_start),
  1640. "FACP", tbl->len - fadt_start, f->rev, oem_id, oem_table_id);
  1641. }
  1642. /* ACPI 5.0: 6.4.3.8.2 Serial Bus Connection Descriptors */
  1643. static Aml *aml_serial_bus_device(uint8_t serial_bus_type, uint8_t flags,
  1644. uint16_t type_flags,
  1645. uint8_t revid, uint16_t data_length,
  1646. uint16_t resource_source_len)
  1647. {
  1648. Aml *var = aml_alloc();
  1649. uint16_t length = data_length + resource_source_len + 9;
  1650. build_append_byte(var->buf, 0x8e); /* Serial Bus Connection Descriptor */
  1651. build_append_int_noprefix(var->buf, length, sizeof(length));
  1652. build_append_byte(var->buf, 1); /* Revision ID */
  1653. build_append_byte(var->buf, 0); /* Resource Source Index */
  1654. build_append_byte(var->buf, serial_bus_type); /* Serial Bus Type */
  1655. build_append_byte(var->buf, flags); /* General Flags */
  1656. build_append_int_noprefix(var->buf, type_flags, /* Type Specific Flags */
  1657. sizeof(type_flags));
  1658. build_append_byte(var->buf, revid); /* Type Specification Revision ID */
  1659. build_append_int_noprefix(var->buf, data_length, sizeof(data_length));
  1660. return var;
  1661. }
  1662. /* ACPI 5.0: 6.4.3.8.2.1 I2C Serial Bus Connection Resource Descriptor */
  1663. Aml *aml_i2c_serial_bus_device(uint16_t address, const char *resource_source)
  1664. {
  1665. uint16_t resource_source_len = strlen(resource_source) + 1;
  1666. Aml *var = aml_serial_bus_device(AML_SERIAL_BUS_TYPE_I2C, 0, 0, 1,
  1667. 6, resource_source_len);
  1668. /* Connection Speed. Just set to 100K for now, it doesn't really matter. */
  1669. build_append_int_noprefix(var->buf, 100000, 4);
  1670. build_append_int_noprefix(var->buf, address, sizeof(address));
  1671. /* This is a string, not a name, so just copy it directly in. */
  1672. g_array_append_vals(var->buf, resource_source, resource_source_len);
  1673. return var;
  1674. }