acpi_table.c 13 KB

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  1. /*
  2. * Based on acpi.c from coreboot
  3. *
  4. * Copyright (C) 2015, Saket Sinha <saket.sinha89@gmail.com>
  5. * Copyright (C) 2016, Bin Meng <bmeng.cn@gmail.com>
  6. *
  7. * SPDX-License-Identifier: GPL-2.0+
  8. */
  9. #include <common.h>
  10. #include <cpu.h>
  11. #include <dm.h>
  12. #include <dm/uclass-internal.h>
  13. #include <asm/acpi/global_nvs.h>
  14. #include <asm/acpi_table.h>
  15. #include <asm/io.h>
  16. #include <asm/lapic.h>
  17. #include <asm/tables.h>
  18. #include <asm/arch/global_nvs.h>
  19. /*
  20. * IASL compiles the dsdt entries and writes the hex values
  21. * to a C array AmlCode[] (see dsdt.c).
  22. */
  23. extern const unsigned char AmlCode[];
  24. static void acpi_write_rsdp(struct acpi_rsdp *rsdp, struct acpi_rsdt *rsdt,
  25. struct acpi_xsdt *xsdt)
  26. {
  27. memset(rsdp, 0, sizeof(struct acpi_rsdp));
  28. memcpy(rsdp->signature, RSDP_SIG, 8);
  29. memcpy(rsdp->oem_id, OEM_ID, 6);
  30. rsdp->length = sizeof(struct acpi_rsdp);
  31. rsdp->rsdt_address = (u32)rsdt;
  32. /*
  33. * Revision: ACPI 1.0: 0, ACPI 2.0/3.0/4.0: 2
  34. *
  35. * Some OSes expect an XSDT to be present for RSD PTR revisions >= 2.
  36. * If we don't have an ACPI XSDT, force ACPI 1.0 (and thus RSD PTR
  37. * revision 0)
  38. */
  39. if (xsdt == NULL) {
  40. rsdp->revision = ACPI_RSDP_REV_ACPI_1_0;
  41. } else {
  42. rsdp->xsdt_address = (u64)(u32)xsdt;
  43. rsdp->revision = ACPI_RSDP_REV_ACPI_2_0;
  44. }
  45. /* Calculate checksums */
  46. rsdp->checksum = table_compute_checksum((void *)rsdp, 20);
  47. rsdp->ext_checksum = table_compute_checksum((void *)rsdp,
  48. sizeof(struct acpi_rsdp));
  49. }
  50. void acpi_fill_header(struct acpi_table_header *header, char *signature)
  51. {
  52. memcpy(header->signature, signature, 4);
  53. memcpy(header->oem_id, OEM_ID, 6);
  54. memcpy(header->oem_table_id, OEM_TABLE_ID, 8);
  55. memcpy(header->aslc_id, ASLC_ID, 4);
  56. }
  57. static void acpi_write_rsdt(struct acpi_rsdt *rsdt)
  58. {
  59. struct acpi_table_header *header = &(rsdt->header);
  60. /* Fill out header fields */
  61. acpi_fill_header(header, "RSDT");
  62. header->length = sizeof(struct acpi_rsdt);
  63. header->revision = 1;
  64. /* Entries are filled in later, we come with an empty set */
  65. /* Fix checksum */
  66. header->checksum = table_compute_checksum((void *)rsdt,
  67. sizeof(struct acpi_rsdt));
  68. }
  69. static void acpi_write_xsdt(struct acpi_xsdt *xsdt)
  70. {
  71. struct acpi_table_header *header = &(xsdt->header);
  72. /* Fill out header fields */
  73. acpi_fill_header(header, "XSDT");
  74. header->length = sizeof(struct acpi_xsdt);
  75. header->revision = 1;
  76. /* Entries are filled in later, we come with an empty set */
  77. /* Fix checksum */
  78. header->checksum = table_compute_checksum((void *)xsdt,
  79. sizeof(struct acpi_xsdt));
  80. }
  81. /**
  82. * Add an ACPI table to the RSDT (and XSDT) structure, recalculate length
  83. * and checksum.
  84. */
  85. static void acpi_add_table(struct acpi_rsdp *rsdp, void *table)
  86. {
  87. int i, entries_num;
  88. struct acpi_rsdt *rsdt;
  89. struct acpi_xsdt *xsdt = NULL;
  90. /* The RSDT is mandatory while the XSDT is not */
  91. rsdt = (struct acpi_rsdt *)rsdp->rsdt_address;
  92. if (rsdp->xsdt_address)
  93. xsdt = (struct acpi_xsdt *)((u32)rsdp->xsdt_address);
  94. /* This should always be MAX_ACPI_TABLES */
  95. entries_num = ARRAY_SIZE(rsdt->entry);
  96. for (i = 0; i < entries_num; i++) {
  97. if (rsdt->entry[i] == 0)
  98. break;
  99. }
  100. if (i >= entries_num) {
  101. debug("ACPI: Error: too many tables\n");
  102. return;
  103. }
  104. /* Add table to the RSDT */
  105. rsdt->entry[i] = (u32)table;
  106. /* Fix RSDT length or the kernel will assume invalid entries */
  107. rsdt->header.length = sizeof(struct acpi_table_header) +
  108. (sizeof(u32) * (i + 1));
  109. /* Re-calculate checksum */
  110. rsdt->header.checksum = 0;
  111. rsdt->header.checksum = table_compute_checksum((u8 *)rsdt,
  112. rsdt->header.length);
  113. /*
  114. * And now the same thing for the XSDT. We use the same index as for
  115. * now we want the XSDT and RSDT to always be in sync in U-Boot
  116. */
  117. if (xsdt) {
  118. /* Add table to the XSDT */
  119. xsdt->entry[i] = (u64)(u32)table;
  120. /* Fix XSDT length */
  121. xsdt->header.length = sizeof(struct acpi_table_header) +
  122. (sizeof(u64) * (i + 1));
  123. /* Re-calculate checksum */
  124. xsdt->header.checksum = 0;
  125. xsdt->header.checksum = table_compute_checksum((u8 *)xsdt,
  126. xsdt->header.length);
  127. }
  128. }
  129. static void acpi_create_facs(struct acpi_facs *facs)
  130. {
  131. memset((void *)facs, 0, sizeof(struct acpi_facs));
  132. memcpy(facs->signature, "FACS", 4);
  133. facs->length = sizeof(struct acpi_facs);
  134. facs->hardware_signature = 0;
  135. facs->firmware_waking_vector = 0;
  136. facs->global_lock = 0;
  137. facs->flags = 0;
  138. facs->x_firmware_waking_vector_l = 0;
  139. facs->x_firmware_waking_vector_h = 0;
  140. facs->version = 1;
  141. }
  142. static int acpi_create_madt_lapic(struct acpi_madt_lapic *lapic,
  143. u8 cpu, u8 apic)
  144. {
  145. lapic->type = ACPI_APIC_LAPIC;
  146. lapic->length = sizeof(struct acpi_madt_lapic);
  147. lapic->flags = LOCAL_APIC_FLAG_ENABLED;
  148. lapic->processor_id = cpu;
  149. lapic->apic_id = apic;
  150. return lapic->length;
  151. }
  152. int acpi_create_madt_lapics(u32 current)
  153. {
  154. struct udevice *dev;
  155. int total_length = 0;
  156. for (uclass_find_first_device(UCLASS_CPU, &dev);
  157. dev;
  158. uclass_find_next_device(&dev)) {
  159. struct cpu_platdata *plat = dev_get_parent_platdata(dev);
  160. int length = acpi_create_madt_lapic(
  161. (struct acpi_madt_lapic *)current,
  162. plat->cpu_id, plat->cpu_id);
  163. current += length;
  164. total_length += length;
  165. }
  166. return total_length;
  167. }
  168. int acpi_create_madt_ioapic(struct acpi_madt_ioapic *ioapic, u8 id,
  169. u32 addr, u32 gsi_base)
  170. {
  171. ioapic->type = ACPI_APIC_IOAPIC;
  172. ioapic->length = sizeof(struct acpi_madt_ioapic);
  173. ioapic->reserved = 0x00;
  174. ioapic->gsi_base = gsi_base;
  175. ioapic->ioapic_id = id;
  176. ioapic->ioapic_addr = addr;
  177. return ioapic->length;
  178. }
  179. int acpi_create_madt_irqoverride(struct acpi_madt_irqoverride *irqoverride,
  180. u8 bus, u8 source, u32 gsirq, u16 flags)
  181. {
  182. irqoverride->type = ACPI_APIC_IRQ_SRC_OVERRIDE;
  183. irqoverride->length = sizeof(struct acpi_madt_irqoverride);
  184. irqoverride->bus = bus;
  185. irqoverride->source = source;
  186. irqoverride->gsirq = gsirq;
  187. irqoverride->flags = flags;
  188. return irqoverride->length;
  189. }
  190. int acpi_create_madt_lapic_nmi(struct acpi_madt_lapic_nmi *lapic_nmi,
  191. u8 cpu, u16 flags, u8 lint)
  192. {
  193. lapic_nmi->type = ACPI_APIC_LAPIC_NMI;
  194. lapic_nmi->length = sizeof(struct acpi_madt_lapic_nmi);
  195. lapic_nmi->flags = flags;
  196. lapic_nmi->processor_id = cpu;
  197. lapic_nmi->lint = lint;
  198. return lapic_nmi->length;
  199. }
  200. static void acpi_create_madt(struct acpi_madt *madt)
  201. {
  202. struct acpi_table_header *header = &(madt->header);
  203. u32 current = (u32)madt + sizeof(struct acpi_madt);
  204. memset((void *)madt, 0, sizeof(struct acpi_madt));
  205. /* Fill out header fields */
  206. acpi_fill_header(header, "APIC");
  207. header->length = sizeof(struct acpi_madt);
  208. header->revision = 4;
  209. madt->lapic_addr = LAPIC_DEFAULT_BASE;
  210. madt->flags = ACPI_MADT_PCAT_COMPAT;
  211. current = acpi_fill_madt(current);
  212. /* (Re)calculate length and checksum */
  213. header->length = current - (u32)madt;
  214. header->checksum = table_compute_checksum((void *)madt, header->length);
  215. }
  216. static int acpi_create_mcfg_mmconfig(struct acpi_mcfg_mmconfig *mmconfig,
  217. u32 base, u16 seg_nr, u8 start, u8 end)
  218. {
  219. memset(mmconfig, 0, sizeof(*mmconfig));
  220. mmconfig->base_address_l = base;
  221. mmconfig->base_address_h = 0;
  222. mmconfig->pci_segment_group_number = seg_nr;
  223. mmconfig->start_bus_number = start;
  224. mmconfig->end_bus_number = end;
  225. return sizeof(struct acpi_mcfg_mmconfig);
  226. }
  227. static u32 acpi_fill_mcfg(u32 current)
  228. {
  229. current += acpi_create_mcfg_mmconfig
  230. ((struct acpi_mcfg_mmconfig *)current,
  231. CONFIG_PCIE_ECAM_BASE, 0x0, 0x0, 255);
  232. return current;
  233. }
  234. /* MCFG is defined in the PCI Firmware Specification 3.0 */
  235. static void acpi_create_mcfg(struct acpi_mcfg *mcfg)
  236. {
  237. struct acpi_table_header *header = &(mcfg->header);
  238. u32 current = (u32)mcfg + sizeof(struct acpi_mcfg);
  239. memset((void *)mcfg, 0, sizeof(struct acpi_mcfg));
  240. /* Fill out header fields */
  241. acpi_fill_header(header, "MCFG");
  242. header->length = sizeof(struct acpi_mcfg);
  243. header->revision = 1;
  244. current = acpi_fill_mcfg(current);
  245. /* (Re)calculate length and checksum */
  246. header->length = current - (u32)mcfg;
  247. header->checksum = table_compute_checksum((void *)mcfg, header->length);
  248. }
  249. void enter_acpi_mode(int pm1_cnt)
  250. {
  251. u16 val = inw(pm1_cnt);
  252. /*
  253. * PM1_CNT register bit0 selects the power management event to be
  254. * either an SCI or SMI interrupt. When this bit is set, then power
  255. * management events will generate an SCI interrupt. When this bit
  256. * is reset power management events will generate an SMI interrupt.
  257. *
  258. * Per ACPI spec, it is the responsibility of the hardware to set
  259. * or reset this bit. OSPM always preserves this bit position.
  260. *
  261. * U-Boot does not support SMI. And we don't have plan to support
  262. * anything running in SMM within U-Boot. To create a legacy-free
  263. * system, and expose ourselves to OSPM as working under ACPI mode
  264. * already, turn this bit on.
  265. */
  266. outw(val | PM1_CNT_SCI_EN, pm1_cnt);
  267. }
  268. /*
  269. * QEMU's version of write_acpi_tables is defined in
  270. * arch/x86/cpu/qemu/acpi_table.c
  271. */
  272. ulong write_acpi_tables(ulong start)
  273. {
  274. u32 current;
  275. struct acpi_rsdp *rsdp;
  276. struct acpi_rsdt *rsdt;
  277. struct acpi_xsdt *xsdt;
  278. struct acpi_facs *facs;
  279. struct acpi_table_header *dsdt;
  280. struct acpi_fadt *fadt;
  281. struct acpi_mcfg *mcfg;
  282. struct acpi_madt *madt;
  283. int i;
  284. current = start;
  285. /* Align ACPI tables to 16 byte */
  286. current = ALIGN(current, 16);
  287. debug("ACPI: Writing ACPI tables at %lx\n", start);
  288. /* We need at least an RSDP and an RSDT Table */
  289. rsdp = (struct acpi_rsdp *)current;
  290. current += sizeof(struct acpi_rsdp);
  291. current = ALIGN(current, 16);
  292. rsdt = (struct acpi_rsdt *)current;
  293. current += sizeof(struct acpi_rsdt);
  294. current = ALIGN(current, 16);
  295. xsdt = (struct acpi_xsdt *)current;
  296. current += sizeof(struct acpi_xsdt);
  297. /*
  298. * Per ACPI spec, the FACS table address must be aligned to a 64 byte
  299. * boundary (Windows checks this, but Linux does not).
  300. */
  301. current = ALIGN(current, 64);
  302. /* clear all table memory */
  303. memset((void *)start, 0, current - start);
  304. acpi_write_rsdp(rsdp, rsdt, xsdt);
  305. acpi_write_rsdt(rsdt);
  306. acpi_write_xsdt(xsdt);
  307. debug("ACPI: * FACS\n");
  308. facs = (struct acpi_facs *)current;
  309. current += sizeof(struct acpi_facs);
  310. current = ALIGN(current, 16);
  311. acpi_create_facs(facs);
  312. debug("ACPI: * DSDT\n");
  313. dsdt = (struct acpi_table_header *)current;
  314. memcpy(dsdt, &AmlCode, sizeof(struct acpi_table_header));
  315. current += sizeof(struct acpi_table_header);
  316. memcpy((char *)current,
  317. (char *)&AmlCode + sizeof(struct acpi_table_header),
  318. dsdt->length - sizeof(struct acpi_table_header));
  319. current += dsdt->length - sizeof(struct acpi_table_header);
  320. current = ALIGN(current, 16);
  321. /* Pack GNVS into the ACPI table area */
  322. for (i = 0; i < dsdt->length; i++) {
  323. u32 *gnvs = (u32 *)((u32)dsdt + i);
  324. if (*gnvs == ACPI_GNVS_ADDR) {
  325. debug("Fix up global NVS in DSDT to 0x%08x\n", current);
  326. *gnvs = current;
  327. break;
  328. }
  329. }
  330. /* Update DSDT checksum since we patched the GNVS address */
  331. dsdt->checksum = 0;
  332. dsdt->checksum = table_compute_checksum((void *)dsdt, dsdt->length);
  333. /* Fill in platform-specific global NVS variables */
  334. acpi_create_gnvs((struct acpi_global_nvs *)current);
  335. current += sizeof(struct acpi_global_nvs);
  336. current = ALIGN(current, 16);
  337. debug("ACPI: * FADT\n");
  338. fadt = (struct acpi_fadt *)current;
  339. current += sizeof(struct acpi_fadt);
  340. current = ALIGN(current, 16);
  341. acpi_create_fadt(fadt, facs, dsdt);
  342. acpi_add_table(rsdp, fadt);
  343. debug("ACPI: * MADT\n");
  344. madt = (struct acpi_madt *)current;
  345. acpi_create_madt(madt);
  346. current += madt->header.length;
  347. acpi_add_table(rsdp, madt);
  348. current = ALIGN(current, 16);
  349. debug("ACPI: * MCFG\n");
  350. mcfg = (struct acpi_mcfg *)current;
  351. acpi_create_mcfg(mcfg);
  352. current += mcfg->header.length;
  353. acpi_add_table(rsdp, mcfg);
  354. current = ALIGN(current, 16);
  355. debug("current = %x\n", current);
  356. debug("ACPI: done\n");
  357. /*
  358. * Other than waiting for OSPM to request us to switch to ACPI mode,
  359. * do it by ourselves, since SMI will not be triggered.
  360. */
  361. enter_acpi_mode(fadt->pm1a_cnt_blk);
  362. return current;
  363. }
  364. static struct acpi_rsdp *acpi_valid_rsdp(struct acpi_rsdp *rsdp)
  365. {
  366. if (strncmp((char *)rsdp, RSDP_SIG, sizeof(RSDP_SIG) - 1) != 0)
  367. return NULL;
  368. debug("Looking on %p for valid checksum\n", rsdp);
  369. if (table_compute_checksum((void *)rsdp, 20) != 0)
  370. return NULL;
  371. debug("acpi rsdp checksum 1 passed\n");
  372. if ((rsdp->revision > 1) &&
  373. (table_compute_checksum((void *)rsdp, rsdp->length) != 0))
  374. return NULL;
  375. debug("acpi rsdp checksum 2 passed\n");
  376. return rsdp;
  377. }
  378. void *acpi_find_wakeup_vector(void)
  379. {
  380. char *p, *end;
  381. struct acpi_rsdp *rsdp = NULL;
  382. struct acpi_rsdt *rsdt;
  383. struct acpi_fadt *fadt = NULL;
  384. struct acpi_facs *facs;
  385. void *wake_vec;
  386. int i;
  387. debug("Trying to find the wakeup vector...\n");
  388. /* Find RSDP */
  389. for (p = (char *)ROM_TABLE_ADDR; p < (char *)ROM_TABLE_END; p += 16) {
  390. rsdp = acpi_valid_rsdp((struct acpi_rsdp *)p);
  391. if (rsdp)
  392. break;
  393. }
  394. if (rsdp == NULL)
  395. return NULL;
  396. debug("RSDP found at %p\n", rsdp);
  397. rsdt = (struct acpi_rsdt *)rsdp->rsdt_address;
  398. end = (char *)rsdt + rsdt->header.length;
  399. debug("RSDT found at %p ends at %p\n", rsdt, end);
  400. for (i = 0; ((char *)&rsdt->entry[i]) < end; i++) {
  401. fadt = (struct acpi_fadt *)rsdt->entry[i];
  402. if (strncmp((char *)fadt, "FACP", 4) == 0)
  403. break;
  404. fadt = NULL;
  405. }
  406. if (fadt == NULL)
  407. return NULL;
  408. debug("FADT found at %p\n", fadt);
  409. facs = (struct acpi_facs *)fadt->firmware_ctrl;
  410. if (facs == NULL) {
  411. debug("No FACS found, wake up from S3 not possible.\n");
  412. return NULL;
  413. }
  414. debug("FACS found at %p\n", facs);
  415. wake_vec = (void *)facs->firmware_waking_vector;
  416. debug("OS waking vector is %p\n", wake_vec);
  417. return wake_vec;
  418. }