Parser.cpp 17 KB

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  1. /*
  2. * Copyright (c) 2020, Liav A. <liavalb@hotmail.co.il>
  3. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  4. * All rights reserved.
  5. *
  6. * Redistribution and use in source and binary forms, with or without
  7. * modification, are permitted provided that the following conditions are met:
  8. *
  9. * 1. Redistributions of source code must retain the above copyright notice, this
  10. * list of conditions and the following disclaimer.
  11. *
  12. * 2. Redistributions in binary form must reproduce the above copyright notice,
  13. * this list of conditions and the following disclaimer in the documentation
  14. * and/or other materials provided with the distribution.
  15. *
  16. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  17. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  18. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  19. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  20. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  21. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  22. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  23. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  24. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  25. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  26. */
  27. #include <AK/StringView.h>
  28. #include <Kernel/ACPI/Parser.h>
  29. #include <Kernel/Arch/PC/BIOS.h>
  30. #include <Kernel/IO.h>
  31. #include <Kernel/PCI/Access.h>
  32. #include <Kernel/StdLib.h>
  33. #include <Kernel/VM/MemoryManager.h>
  34. #include <Kernel/VM/TypedMapping.h>
  35. namespace Kernel {
  36. namespace ACPI {
  37. static Parser* s_acpi_parser;
  38. Parser* Parser::the()
  39. {
  40. return s_acpi_parser;
  41. }
  42. void Parser::set_the(Parser& parser)
  43. {
  44. ASSERT(!s_acpi_parser);
  45. s_acpi_parser = &parser;
  46. }
  47. static bool match_table_signature(PhysicalAddress table_header, const StringView& signature);
  48. static PhysicalAddress search_table_in_xsdt(PhysicalAddress xsdt, const StringView& signature);
  49. static PhysicalAddress search_table_in_rsdt(PhysicalAddress rsdt, const StringView& signature);
  50. static bool validate_table(const Structures::SDTHeader&, size_t length);
  51. void Parser::locate_static_data()
  52. {
  53. locate_main_system_description_table();
  54. initialize_main_system_description_table();
  55. init_fadt();
  56. init_facs();
  57. }
  58. PhysicalAddress Parser::find_table(const StringView& signature)
  59. {
  60. #ifdef ACPI_DEBUG
  61. dbg() << "ACPI: Calling Find Table method!";
  62. #endif
  63. for (auto p_sdt : m_sdt_pointers) {
  64. auto sdt = map_typed<Structures::SDTHeader>(p_sdt);
  65. #ifdef ACPI_DEBUG
  66. dbg() << "ACPI: Examining Table @ P " << p_sdt;
  67. #endif
  68. if (!strncmp(sdt->sig, signature.characters_without_null_termination(), 4)) {
  69. #ifdef ACPI_DEBUG
  70. dbg() << "ACPI: Found Table @ P " << p_sdt;
  71. #endif
  72. return p_sdt;
  73. }
  74. }
  75. return {};
  76. }
  77. void Parser::init_facs()
  78. {
  79. m_facs = find_table("FACS");
  80. }
  81. void Parser::init_fadt()
  82. {
  83. klog() << "ACPI: Initializing Fixed ACPI data";
  84. klog() << "ACPI: Searching for the Fixed ACPI Data Table";
  85. m_fadt = find_table("FACP");
  86. ASSERT(!m_fadt.is_null());
  87. auto sdt = map_typed<Structures::FADT>(m_fadt);
  88. #ifdef ACPI_DEBUG
  89. dbg() << "ACPI: FADT @ V " << &sdt << ", P " << (void*)m_fadt.as_ptr();
  90. #endif
  91. klog() << "ACPI: Fixed ACPI data, Revision " << sdt->h.revision << ", Length " << sdt->h.length << " bytes";
  92. klog() << "ACPI: DSDT " << PhysicalAddress(sdt->dsdt_ptr);
  93. m_x86_specific_flags.cmos_rtc_not_present = (sdt->ia_pc_boot_arch_flags & (u8)FADTFlags::IA_PC_Flags::CMOS_RTC_Not_Present);
  94. // FIXME: QEMU doesn't report that we have an i8042 controller in these flags, even if it should (when FADT revision is 3),
  95. // Later on, we need to make sure that we enumerate the ACPI namespace (AML encoded), instead of just using this value.
  96. m_x86_specific_flags.keyboard_8042 = (sdt->h.revision <= 3) || (sdt->ia_pc_boot_arch_flags & (u8)FADTFlags::IA_PC_Flags::PS2_8042);
  97. m_x86_specific_flags.legacy_devices = (sdt->ia_pc_boot_arch_flags & (u8)FADTFlags::IA_PC_Flags::Legacy_Devices);
  98. m_x86_specific_flags.msi_not_supported = (sdt->ia_pc_boot_arch_flags & (u8)FADTFlags::IA_PC_Flags::MSI_Not_Supported);
  99. m_x86_specific_flags.vga_not_present = (sdt->ia_pc_boot_arch_flags & (u8)FADTFlags::IA_PC_Flags::VGA_Not_Present);
  100. m_hardware_flags.cpu_software_sleep = (sdt->flags & (u32)FADTFlags::FeatureFlags::CPU_SW_SLP);
  101. m_hardware_flags.docking_capability = (sdt->flags & (u32)FADTFlags::FeatureFlags::DCK_CAP);
  102. m_hardware_flags.fix_rtc = (sdt->flags & (u32)FADTFlags::FeatureFlags::FIX_RTC);
  103. m_hardware_flags.force_apic_cluster_model = (sdt->flags & (u32)FADTFlags::FeatureFlags::FORCE_APIC_CLUSTER_MODEL);
  104. m_hardware_flags.force_apic_physical_destination_mode = (sdt->flags & (u32)FADTFlags::FeatureFlags::FORCE_APIC_PHYSICAL_DESTINATION_MODE);
  105. m_hardware_flags.hardware_reduced_acpi = (sdt->flags & (u32)FADTFlags::FeatureFlags::HW_REDUCED_ACPI);
  106. m_hardware_flags.headless = (sdt->flags & (u32)FADTFlags::FeatureFlags::HEADLESS);
  107. m_hardware_flags.low_power_s0_idle_capable = (sdt->flags & (u32)FADTFlags::FeatureFlags::LOW_POWER_S0_IDLE_CAPABLE);
  108. m_hardware_flags.multiprocessor_c2 = (sdt->flags & (u32)FADTFlags::FeatureFlags::P_LVL2_UP);
  109. m_hardware_flags.pci_express_wake = (sdt->flags & (u32)FADTFlags::FeatureFlags::PCI_EXP_WAK);
  110. m_hardware_flags.power_button = (sdt->flags & (u32)FADTFlags::FeatureFlags::PWR_BUTTON);
  111. m_hardware_flags.processor_c1 = (sdt->flags & (u32)FADTFlags::FeatureFlags::PROC_C1);
  112. m_hardware_flags.remote_power_on_capable = (sdt->flags & (u32)FADTFlags::FeatureFlags::REMOTE_POWER_ON_CAPABLE);
  113. m_hardware_flags.reset_register_supported = (sdt->flags & (u32)FADTFlags::FeatureFlags::RESET_REG_SUPPORTED);
  114. m_hardware_flags.rtc_s4 = (sdt->flags & (u32)FADTFlags::FeatureFlags::RTC_s4);
  115. m_hardware_flags.s4_rtc_status_valid = (sdt->flags & (u32)FADTFlags::FeatureFlags::S4_RTC_STS_VALID);
  116. m_hardware_flags.sealed_case = (sdt->flags & (u32)FADTFlags::FeatureFlags::SEALED_CASE);
  117. m_hardware_flags.sleep_button = (sdt->flags & (u32)FADTFlags::FeatureFlags::SLP_BUTTON);
  118. m_hardware_flags.timer_value_extension = (sdt->flags & (u32)FADTFlags::FeatureFlags::TMR_VAL_EXT);
  119. m_hardware_flags.use_platform_clock = (sdt->flags & (u32)FADTFlags::FeatureFlags::USE_PLATFORM_CLOCK);
  120. m_hardware_flags.wbinvd = (sdt->flags & (u32)FADTFlags::FeatureFlags::WBINVD);
  121. m_hardware_flags.wbinvd_flush = (sdt->flags & (u32)FADTFlags::FeatureFlags::WBINVD_FLUSH);
  122. }
  123. bool Parser::can_reboot()
  124. {
  125. auto fadt = map_typed<Structures::FADT>(m_fadt);
  126. if (fadt->h.revision < 2)
  127. return false;
  128. return m_hardware_flags.reset_register_supported;
  129. }
  130. void Parser::access_generic_address(const Structures::GenericAddressStructure& structure, u32 value)
  131. {
  132. switch ((GenericAddressStructure::AddressSpace)structure.address_space) {
  133. case GenericAddressStructure::AddressSpace::SystemIO: {
  134. IOAddress address(structure.address);
  135. dbgln("ACPI: Sending value {:x} to {:p}", value, address);
  136. switch (structure.access_size) {
  137. case (u8)GenericAddressStructure::AccessSize::QWord: {
  138. dbgln("Trying to send QWord to IO port");
  139. ASSERT_NOT_REACHED();
  140. break;
  141. }
  142. case (u8)GenericAddressStructure::AccessSize::Undefined: {
  143. dbgln("ACPI Warning: Unknown access size {}", structure.access_size);
  144. ASSERT(structure.bit_width != (u8)GenericAddressStructure::BitWidth::QWord);
  145. ASSERT(structure.bit_width != (u8)GenericAddressStructure::BitWidth::Undefined);
  146. dbg() << "ACPI: Bit Width - " << structure.bit_width << " bits";
  147. address.out(value, structure.bit_width);
  148. break;
  149. }
  150. default:
  151. address.out(value, (8 << (structure.access_size - 1)));
  152. break;
  153. }
  154. return;
  155. }
  156. case GenericAddressStructure::AddressSpace::SystemMemory: {
  157. dbgln("ACPI: Sending value {:x} to {}", value, PhysicalAddress(structure.address));
  158. switch ((GenericAddressStructure::AccessSize)structure.access_size) {
  159. case GenericAddressStructure::AccessSize::Byte:
  160. *map_typed<u8>(PhysicalAddress(structure.address)) = value;
  161. break;
  162. case GenericAddressStructure::AccessSize::Word:
  163. *map_typed<u16>(PhysicalAddress(structure.address)) = value;
  164. break;
  165. case GenericAddressStructure::AccessSize::DWord:
  166. *map_typed<u32>(PhysicalAddress(structure.address)) = value;
  167. break;
  168. case GenericAddressStructure::AccessSize::QWord: {
  169. *map_typed<u64>(PhysicalAddress(structure.address)) = value;
  170. break;
  171. }
  172. default:
  173. ASSERT_NOT_REACHED();
  174. }
  175. return;
  176. }
  177. case GenericAddressStructure::AddressSpace::PCIConfigurationSpace: {
  178. // According to the ACPI specification 6.2, page 168, PCI addresses must be confined to devices on Segment group 0, bus 0.
  179. auto pci_address = PCI::Address(0, 0, ((structure.address >> 24) & 0xFF), ((structure.address >> 16) & 0xFF));
  180. dbgln("ACPI: Sending value {:x} to {}", value, pci_address);
  181. u32 offset_in_pci_address = structure.address & 0xFFFF;
  182. if (structure.access_size == (u8)GenericAddressStructure::AccessSize::QWord) {
  183. dbgln("Trying to send QWord to PCI configuration space");
  184. ASSERT_NOT_REACHED();
  185. }
  186. ASSERT(structure.access_size != (u8)GenericAddressStructure::AccessSize::Undefined);
  187. PCI::raw_access(pci_address, offset_in_pci_address, (1 << (structure.access_size - 1)), value);
  188. return;
  189. }
  190. default:
  191. ASSERT_NOT_REACHED();
  192. }
  193. ASSERT_NOT_REACHED();
  194. }
  195. bool Parser::validate_reset_register()
  196. {
  197. // According to the ACPI spec 6.2, page 152, The reset register can only be located in I/O bus, PCI bus or memory-mapped.
  198. auto fadt = map_typed<Structures::FADT>(m_fadt);
  199. return (fadt->reset_reg.address_space == (u8)GenericAddressStructure::AddressSpace::PCIConfigurationSpace || fadt->reset_reg.address_space == (u8)GenericAddressStructure::AddressSpace::SystemMemory || fadt->reset_reg.address_space == (u8)GenericAddressStructure::AddressSpace::SystemIO);
  200. }
  201. void Parser::try_acpi_reboot()
  202. {
  203. InterruptDisabler disabler;
  204. if (!can_reboot()) {
  205. klog() << "ACPI: Reboot, Not supported!";
  206. return;
  207. }
  208. #ifdef ACPI_DEBUG
  209. dbg() << "ACPI: Rebooting, Probing FADT (" << m_fadt << ")";
  210. #endif
  211. auto fadt = map_typed<Structures::FADT>(m_fadt);
  212. ASSERT(validate_reset_register());
  213. access_generic_address(fadt->reset_reg, fadt->reset_value);
  214. Processor::halt();
  215. }
  216. void Parser::try_acpi_shutdown()
  217. {
  218. klog() << "ACPI: Shutdown is not supported with the current configuration, Abort!";
  219. }
  220. size_t Parser::get_table_size(PhysicalAddress table_header)
  221. {
  222. InterruptDisabler disabler;
  223. #ifdef ACPI_DEBUG
  224. dbg() << "ACPI: Checking SDT Length";
  225. #endif
  226. return map_typed<Structures::SDTHeader>(table_header)->length;
  227. }
  228. u8 Parser::get_table_revision(PhysicalAddress table_header)
  229. {
  230. InterruptDisabler disabler;
  231. #ifdef ACPI_DEBUG
  232. dbg() << "ACPI: Checking SDT Revision";
  233. #endif
  234. return map_typed<Structures::SDTHeader>(table_header)->revision;
  235. }
  236. void Parser::initialize_main_system_description_table()
  237. {
  238. #ifdef ACPI_DEBUG
  239. dbg() << "ACPI: Checking Main SDT Length to choose the correct mapping size";
  240. #endif
  241. ASSERT(!m_main_system_description_table.is_null());
  242. auto length = get_table_size(m_main_system_description_table);
  243. auto revision = get_table_revision(m_main_system_description_table);
  244. auto sdt = map_typed<Structures::SDTHeader>(m_main_system_description_table, length);
  245. klog() << "ACPI: Main Description Table valid? " << validate_table(*sdt, length);
  246. if (m_xsdt_supported) {
  247. auto& xsdt = (const Structures::XSDT&)*sdt;
  248. klog() << "ACPI: Using XSDT, Enumerating tables @ " << m_main_system_description_table;
  249. klog() << "ACPI: XSDT Revision " << revision << ", Total length - " << length;
  250. #ifdef ACPI_DEBUG
  251. dbg() << "ACPI: XSDT pointer @ V " << &xsdt;
  252. #endif
  253. for (u32 i = 0; i < ((length - sizeof(Structures::SDTHeader)) / sizeof(u64)); i++) {
  254. #ifdef ACPI_DEBUG
  255. dbg() << "ACPI: Found new table [" << i << "], @ V 0x" << String::format("%x", &xsdt.table_ptrs[i]) << " - P 0x" << String::format("%x", xsdt.table_ptrs[i]);
  256. #endif
  257. m_sdt_pointers.append(PhysicalAddress(xsdt.table_ptrs[i]));
  258. }
  259. } else {
  260. auto& rsdt = (const Structures::RSDT&)*sdt;
  261. klog() << "ACPI: Using RSDT, Enumerating tables @ " << m_main_system_description_table;
  262. klog() << "ACPI: RSDT Revision " << revision << ", Total length - " << length;
  263. #ifdef ACPI_DEBUG
  264. dbg() << "ACPI: RSDT pointer @ V " << &rsdt;
  265. #endif
  266. for (u32 i = 0; i < ((length - sizeof(Structures::SDTHeader)) / sizeof(u32)); i++) {
  267. #ifdef ACPI_DEBUG
  268. dbg() << "ACPI: Found new table [" << i << "], @ V 0x" << String::format("%x", &rsdt.table_ptrs[i]) << " - P 0x" << String::format("%x", rsdt.table_ptrs[i]);
  269. #endif
  270. m_sdt_pointers.append(PhysicalAddress(rsdt.table_ptrs[i]));
  271. }
  272. }
  273. }
  274. void Parser::locate_main_system_description_table()
  275. {
  276. auto rsdp = map_typed<Structures::RSDPDescriptor20>(m_rsdp);
  277. if (rsdp->base.revision == 0) {
  278. m_xsdt_supported = false;
  279. } else if (rsdp->base.revision >= 2) {
  280. if (rsdp->xsdt_ptr != (u64) nullptr) {
  281. m_xsdt_supported = true;
  282. } else {
  283. m_xsdt_supported = false;
  284. }
  285. }
  286. if (!m_xsdt_supported) {
  287. m_main_system_description_table = PhysicalAddress(rsdp->base.rsdt_ptr);
  288. } else {
  289. m_main_system_description_table = PhysicalAddress(rsdp->xsdt_ptr);
  290. }
  291. }
  292. Parser::Parser(PhysicalAddress rsdp)
  293. : m_rsdp(rsdp)
  294. {
  295. klog() << "ACPI: Using RSDP @ " << rsdp;
  296. locate_static_data();
  297. }
  298. static bool validate_table(const Structures::SDTHeader& v_header, size_t length)
  299. {
  300. u8 checksum = 0;
  301. auto* sdt = (const u8*)&v_header;
  302. for (size_t i = 0; i < length; i++)
  303. checksum += sdt[i];
  304. if (checksum == 0)
  305. return true;
  306. return false;
  307. }
  308. Optional<PhysicalAddress> StaticParsing::find_rsdp()
  309. {
  310. StringView signature("RSD PTR ");
  311. auto rsdp = map_ebda().find_chunk_starting_with(signature, 16);
  312. if (rsdp.has_value())
  313. return rsdp;
  314. return map_bios().find_chunk_starting_with(signature, 16);
  315. }
  316. PhysicalAddress StaticParsing::find_table(PhysicalAddress rsdp_address, const StringView& signature)
  317. {
  318. // FIXME: There's no validation of ACPI tables here. Use the checksum to validate the tables.
  319. ASSERT(signature.length() == 4);
  320. auto rsdp = map_typed<Structures::RSDPDescriptor20>(rsdp_address);
  321. if (rsdp->base.revision == 0)
  322. return search_table_in_rsdt(PhysicalAddress(rsdp->base.rsdt_ptr), signature);
  323. if (rsdp->base.revision >= 2) {
  324. if (rsdp->xsdt_ptr)
  325. return search_table_in_xsdt(PhysicalAddress(rsdp->xsdt_ptr), signature);
  326. return search_table_in_rsdt(PhysicalAddress(rsdp->base.rsdt_ptr), signature);
  327. }
  328. ASSERT_NOT_REACHED();
  329. }
  330. static PhysicalAddress search_table_in_xsdt(PhysicalAddress xsdt_address, const StringView& signature)
  331. {
  332. // FIXME: There's no validation of ACPI tables here. Use the checksum to validate the tables.
  333. ASSERT(signature.length() == 4);
  334. auto xsdt = map_typed<Structures::XSDT>(xsdt_address);
  335. for (size_t i = 0; i < ((xsdt->h.length - sizeof(Structures::SDTHeader)) / sizeof(u64)); ++i) {
  336. if (match_table_signature(PhysicalAddress((FlatPtr)xsdt->table_ptrs[i]), signature))
  337. return PhysicalAddress((FlatPtr)xsdt->table_ptrs[i]);
  338. }
  339. return {};
  340. }
  341. static bool match_table_signature(PhysicalAddress table_header, const StringView& signature)
  342. {
  343. // FIXME: There's no validation of ACPI tables here. Use the checksum to validate the tables.
  344. ASSERT(signature.length() == 4);
  345. auto table = map_typed<Structures::RSDT>(table_header);
  346. return !strncmp(table->h.sig, signature.characters_without_null_termination(), 4);
  347. }
  348. static PhysicalAddress search_table_in_rsdt(PhysicalAddress rsdt_address, const StringView& signature)
  349. {
  350. // FIXME: There's no validation of ACPI tables here. Use the checksum to validate the tables.
  351. ASSERT(signature.length() == 4);
  352. auto rsdt = map_typed<Structures::RSDT>(rsdt_address);
  353. for (u32 i = 0; i < ((rsdt->h.length - sizeof(Structures::SDTHeader)) / sizeof(u32)); i++) {
  354. if (match_table_signature(PhysicalAddress((FlatPtr)rsdt->table_ptrs[i]), signature))
  355. return PhysicalAddress((FlatPtr)rsdt->table_ptrs[i]);
  356. }
  357. return {};
  358. }
  359. void Parser::enable_aml_interpretation()
  360. {
  361. ASSERT_NOT_REACHED();
  362. }
  363. void Parser::enable_aml_interpretation(File&)
  364. {
  365. ASSERT_NOT_REACHED();
  366. }
  367. void Parser::enable_aml_interpretation(u8*, u32)
  368. {
  369. ASSERT_NOT_REACHED();
  370. }
  371. void Parser::disable_aml_interpretation()
  372. {
  373. ASSERT_NOT_REACHED();
  374. }
  375. }
  376. }