acpi.c 9.3 KB

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  1. #include "acpi.h"
  2. #include <common/printk.h>
  3. #include <common/kprint.h>
  4. #include <driver/multiboot2/multiboot2.h>
  5. #include <mm/mm.h>
  6. #define acpi_get_RSDT_entry_vaddr(phys_addr) (ACPI_DESCRIPTION_HEDERS_BASE + (phys_addr)-acpi_RSDT_entry_phys_base) // 获取RSDT entry的虚拟地址
  7. // #define acpi_get_XSDT_entry_vaddr(phys_addr) (ACPI_DESCRIPTION_HEDERS_BASE + (phys_addr)-acpi_XSDT_entry_phys_base) // 获取XSDT entry的虚拟地址
  8. static struct acpi_RSDP_t *rsdpv1;
  9. static struct acpi_RSDP_2_t *rsdpv2;
  10. static struct acpi_RSDT_Structure_t *rsdt;
  11. static struct acpi_XSDT_Structure_t *xsdt;
  12. static struct multiboot_tag_old_acpi_t old_acpi;
  13. static struct multiboot_tag_new_acpi_t new_acpi;
  14. static ul acpi_RSDT_offset = 0;
  15. static ul acpi_XSDT_offset = 0;
  16. static uint acpi_RSDT_Entry_num = 0;
  17. static uint acpi_XSDT_Entry_num = 0;
  18. static ul acpi_RSDT_entry_phys_base = 0; // RSDT中的第一个entry所在物理页的基地址
  19. static uint64_t acpi_madt_vaddr = 0; // MADT的虚拟地址
  20. // static ul acpi_XSDT_entry_phys_base = 0; // XSDT中的第一个entry所在物理页的基地址
  21. /**
  22. * @brief 迭代器,用于迭代描述符头(位于ACPI标准文件的Table 5-29)
  23. * @param _fun 迭代操作调用的函数
  24. * @param _data 数据
  25. */
  26. void acpi_iter_SDT(bool (*_fun)(const struct acpi_system_description_table_header_t *, void *),
  27. void *_data)
  28. {
  29. struct acpi_system_description_table_header_t *sdt_header;
  30. if (acpi_use_xsdt)
  31. {
  32. ul *ent = &(xsdt->Entry);
  33. for (int i = 0; i < acpi_XSDT_Entry_num; ++i)
  34. {
  35. mm_map_phys_addr(ACPI_XSDT_DESCRIPTION_HEDERS_BASE + PAGE_2M_SIZE * i, (*(ent + i)) & PAGE_2M_MASK, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  36. sdt_header = (struct acpi_system_description_table_header_t *)((ul)(ACPI_XSDT_DESCRIPTION_HEDERS_BASE + PAGE_2M_SIZE * i));
  37. if (_fun(sdt_header, _data) == true)
  38. return;
  39. }
  40. }
  41. else
  42. {
  43. uint *ent = &(rsdt->Entry);
  44. for (int i = 0; i < acpi_RSDT_Entry_num; ++i)
  45. {
  46. sdt_header = (struct acpi_system_description_table_header_t *)(acpi_get_RSDT_entry_vaddr((ul)(*(ent + i))));
  47. if (_fun(sdt_header, _data) == true)
  48. return;
  49. }
  50. }
  51. return;
  52. }
  53. /**
  54. * @brief 获取MADT信息 Multiple APIC Description Table
  55. *
  56. * @param _iter_data 要被迭代的信息的结构体
  57. * @param _data 返回的MADT的虚拟地址
  58. * @param count 返回数组的长度
  59. * @return true
  60. * @return false
  61. */
  62. bool acpi_get_MADT(const struct acpi_system_description_table_header_t *_iter_data, void *_data)
  63. {
  64. if (!(_iter_data->Signature[0] == 'A' && _iter_data->Signature[1] == 'P' && _iter_data->Signature[2] == 'I' && _iter_data->Signature[3] == 'C'))
  65. return false;
  66. //*(struct acpi_Multiple_APIC_Description_Table_t *)_data = *(struct acpi_Multiple_APIC_Description_Table_t *)_iter_data;
  67. // 返回MADT的虚拟地址
  68. *(ul *)_data = (ul)_iter_data;
  69. acpi_madt_vaddr = (ul)_iter_data;
  70. return true;
  71. }
  72. /**
  73. * @brief 获取HPET HPET_description_table
  74. *
  75. * @param _iter_data 要被迭代的信息的结构体
  76. * @param _data 返回的HPET表的虚拟地址
  77. * @return true
  78. * @return false
  79. */
  80. bool acpi_get_HPET(const struct acpi_system_description_table_header_t *_iter_data, void *_data)
  81. {
  82. if (!(_iter_data->Signature[0] == 'H' && _iter_data->Signature[1] == 'P' && _iter_data->Signature[2] == 'E' && _iter_data->Signature[3] == 'T'))
  83. return false;
  84. *(ul *)_data = (ul)_iter_data;
  85. return true;
  86. }
  87. /**
  88. * @brief 初始化acpi模块
  89. *
  90. */
  91. // todo: 修复bug:当物理机上提供了rsdpv2之后,rsdpv1是不提供的(物理地址为0),因此需要手动判断rsdp的版本信息,然后做对应的解析。
  92. void acpi_init()
  93. {
  94. kinfo("Initializing ACPI...");
  95. // 获取rsdp
  96. int reserved;
  97. multiboot2_iter(multiboot2_get_acpi_old_RSDP, &old_acpi, &reserved);
  98. rsdpv1 = &(old_acpi.rsdp);
  99. kdebug("RSDT_phys_Address=%#018lx", rsdpv1->RsdtAddress);
  100. kdebug("RSDP_Revision=%d", rsdpv1->Revision);
  101. multiboot2_iter(multiboot2_get_acpi_new_RSDP, &new_acpi, &reserved);
  102. rsdpv2 = &(new_acpi.rsdp);
  103. kdebug("Rsdt_v2_phys_Address=%#018lx", rsdpv2->rsdp1.RsdtAddress);
  104. kdebug("Xsdt_phys_Address=%#018lx", rsdpv2->XsdtAddress);
  105. kdebug("RSDP_v2_Revision=%d", rsdpv2->rsdp1.Revision);
  106. // An ACPI-compatible OS must use the XSDT if present
  107. if (rsdpv2->XsdtAddress != 0x00UL)
  108. {
  109. /*
  110. acpi_use_xsdt = true;
  111. ul xsdt_phys_base = rsdpv2->XsdtAddress & PAGE_2M_MASK;
  112. acpi_XSDT_offset = rsdpv2->XsdtAddress - xsdt_phys_base;
  113. mm_map_phys_addr(ACPI_XSDT_VIRT_ADDR_BASE, xsdt_phys_base, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  114. kdebug("XSDT mapped!");
  115. xsdt = (struct acpi_XSDT_Structure_t *)(ACPI_XSDT_VIRT_ADDR_BASE + acpi_XSDT_offset);
  116. // 计算RSDT Entry的数量
  117. kdebug("offset=%d", sizeof(xsdt->header));
  118. kdebug("xsdt sign=%s", xsdt->header.Signature);
  119. acpi_XSDT_Entry_num = (xsdt->header.Length - sizeof(xsdt->header)) / 8;
  120. printk_color(ORANGE, BLACK, "XSDT Length=%dbytes.\n", xsdt->header.Length);
  121. printk_color(ORANGE, BLACK, "XSDT Entry num=%d\n", acpi_XSDT_Entry_num);
  122. mm_map_phys_addr(ACPI_XSDT_VIRT_ADDR_BASE, xsdt_phys_base, xsdt->header.Length + PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  123. // 映射所有的Entry的物理地址
  124. ul *ent = &(xsdt->Entry);
  125. for (int j = 0; j < acpi_XSDT_Entry_num; ++j)
  126. {
  127. kdebug("entry=%#018lx, virt=%#018lx", (*(ent + j)) & PAGE_2M_MASK, ACPI_XSDT_DESCRIPTION_HEDERS_BASE + PAGE_2M_SIZE * j);
  128. // 映射RSDT ENTRY的物理地址
  129. mm_map_phys_addr(ACPI_XSDT_DESCRIPTION_HEDERS_BASE + PAGE_2M_SIZE * j, (*(ent + j)) & PAGE_2M_MASK, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  130. }
  131. */
  132. // 由于解析XSDT出现问题。暂时只使用Rsdpv2的rsdt,但是这是不符合ACPI规范的!!!
  133. ul rsdt_phys_base = rsdpv2->rsdp1.RsdtAddress & PAGE_2M_MASK;
  134. acpi_RSDT_offset = rsdpv2->rsdp1.RsdtAddress - rsdt_phys_base;
  135. mm_map_phys_addr(ACPI_RSDT_VIRT_ADDR_BASE, rsdt_phys_base, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  136. kdebug("RSDT mapped!(v2)");
  137. rsdt = (struct acpi_RSDT_Structure_t *)(ACPI_RSDT_VIRT_ADDR_BASE + acpi_RSDT_offset);
  138. // 计算RSDT Entry的数量
  139. kdebug("offset=%d", sizeof(rsdt->header));
  140. acpi_RSDT_Entry_num = (rsdt->header.Length - 36) / 4;
  141. printk_color(ORANGE, BLACK, "RSDT Length=%dbytes.\n", rsdt->header.Length);
  142. printk_color(ORANGE, BLACK, "RSDT Entry num=%d\n", acpi_RSDT_Entry_num);
  143. mm_map_phys_addr(ACPI_RSDT_VIRT_ADDR_BASE, rsdt_phys_base, rsdt->header.Length + PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  144. // 映射所有的Entry的物理地址
  145. acpi_RSDT_entry_phys_base = ((ul)(rsdt->Entry)) & PAGE_2M_MASK;
  146. // 由于地址只是32bit的,并且存在脏数据,这里需要手动清除高32bit,否则会触发#GP
  147. acpi_RSDT_entry_phys_base = MASK_HIGH_32bit(acpi_RSDT_entry_phys_base);
  148. kdebug("entry=%#018lx", rsdt->Entry);
  149. kdebug("acpi_RSDT_entry_phys_base=%#018lx", acpi_RSDT_entry_phys_base);
  150. // 映射RSDT ENTRY的物理地址
  151. mm_map_phys_addr(ACPI_DESCRIPTION_HEDERS_BASE, acpi_RSDT_entry_phys_base, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  152. }
  153. else if (rsdpv1->RsdtAddress != (uint)0x00UL)
  154. { // 映射RSDT的物理地址到页表
  155. // 暂定字节数为2MB
  156. // 由于页表映射的原因,需要清除低21位地址,才能填入页表
  157. ul rsdt_phys_base = rsdpv1->RsdtAddress & PAGE_2M_MASK;
  158. acpi_RSDT_offset = rsdpv1->RsdtAddress - rsdt_phys_base;
  159. mm_map_phys_addr(ACPI_RSDT_VIRT_ADDR_BASE, rsdt_phys_base, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  160. kdebug("RSDT mapped!");
  161. rsdt = (struct acpi_RSDT_Structure_t *)(ACPI_RSDT_VIRT_ADDR_BASE + acpi_RSDT_offset);
  162. // 计算RSDT Entry的数量
  163. kdebug("offset=%d", sizeof(rsdt->header));
  164. acpi_RSDT_Entry_num = (rsdt->header.Length - 36) / 4;
  165. printk_color(ORANGE, BLACK, "RSDT Length=%dbytes.\n", rsdt->header.Length);
  166. printk_color(ORANGE, BLACK, "RSDT Entry num=%d\n", acpi_RSDT_Entry_num);
  167. mm_map_phys_addr(ACPI_RSDT_VIRT_ADDR_BASE, rsdt_phys_base, rsdt->header.Length + PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  168. // 映射所有的Entry的物理地址
  169. acpi_RSDT_entry_phys_base = ((ul)(rsdt->Entry)) & PAGE_2M_MASK;
  170. // 由于地址只是32bit的,并且存在脏数据,这里需要手动清除高32bit,否则会触发#GP
  171. acpi_RSDT_entry_phys_base = MASK_HIGH_32bit(acpi_RSDT_entry_phys_base);
  172. kdebug("entry=%#018lx", rsdt->Entry);
  173. kdebug("acpi_RSDT_entry_phys_base=%#018lx", acpi_RSDT_entry_phys_base);
  174. // 映射RSDT ENTRY的物理地址
  175. mm_map_phys_addr(ACPI_DESCRIPTION_HEDERS_BASE, acpi_RSDT_entry_phys_base, PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
  176. }
  177. else
  178. {
  179. // should not reach here!
  180. kBUG("At acpi_init(): Cannot get right SDT!");
  181. while (1)
  182. ;
  183. }
  184. kinfo("ACPI module initialized!")
  185. }