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  1. // 这是内核执行头程序
  2. // Created by longjin.
  3. // 2022/01/20
  4. #include "common/asm.h"
  5. // 以下是来自 multiboot2 规范的定义
  6. // How many bytes from the start of the file we search for the header.
  7. #define MULTIBOOT_SEARCH 32768
  8. #define MULTIBOOT_HEADER_ALIGN 8
  9. // The magic field should contain this.
  10. #define MULTIBOOT2_HEADER_MAGIC 0xe85250d6
  11. // This should be in %eax.
  12. #define MULTIBOOT2_BOOTLOADER_MAGIC 0x36d76289
  13. // Alignment of multiboot modules.
  14. #define MULTIBOOT_MOD_ALIGN 0x00001000
  15. // Alignment of the multiboot info structure.
  16. #define MULTIBOOT_INFO_ALIGN 0x00000008
  17. // Flags set in the 'flags' member of the multiboot header.
  18. #define MULTIBOOT_TAG_ALIGN 8
  19. #define MULTIBOOT_TAG_TYPE_END 0
  20. #define MULTIBOOT_TAG_TYPE_CMDLINE 1
  21. #define MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME 2
  22. #define MULTIBOOT_TAG_TYPE_MODULE 3
  23. #define MULTIBOOT_TAG_TYPE_BASIC_MEMINFO 4
  24. #define MULTIBOOT_TAG_TYPE_BOOTDEV 5
  25. #define MULTIBOOT_TAG_TYPE_MMAP 6
  26. #define MULTIBOOT_TAG_TYPE_VBE 7
  27. #define MULTIBOOT_TAG_TYPE_FRAMEBUFFER 8
  28. #define MULTIBOOT_TAG_TYPE_ELF_SECTIONS 9
  29. #define MULTIBOOT_TAG_TYPE_APM 10
  30. #define MULTIBOOT_TAG_TYPE_EFI32 11
  31. #define MULTIBOOT_TAG_TYPE_EFI64 12
  32. #define MULTIBOOT_TAG_TYPE_SMBIOS 13
  33. #define MULTIBOOT_TAG_TYPE_ACPI_OLD 14
  34. #define MULTIBOOT_TAG_TYPE_ACPI_NEW 15
  35. #define MULTIBOOT_TAG_TYPE_NETWORK 16
  36. #define MULTIBOOT_TAG_TYPE_EFI_MMAP 17
  37. #define MULTIBOOT_TAG_TYPE_EFI_BS 18
  38. #define MULTIBOOT_TAG_TYPE_EFI32_IH 19
  39. #define MULTIBOOT_TAG_TYPE_EFI64_IH 20
  40. #define MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR 21
  41. #define MULTIBOOT_HEADER_TAG_END 0
  42. #define MULTIBOOT_HEADER_TAG_INFORMATION_REQUEST 1
  43. #define MULTIBOOT_HEADER_TAG_ADDRESS 2
  44. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS 3
  45. #define MULTIBOOT_HEADER_TAG_CONSOLE_FLAGS 4
  46. #define MULTIBOOT_HEADER_TAG_FRAMEBUFFER 5
  47. #define MULTIBOOT_HEADER_TAG_MODULE_ALIGN 6
  48. #define MULTIBOOT_HEADER_TAG_EFI_BS 7
  49. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI32 8
  50. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI64 9
  51. #define MULTIBOOT_HEADER_TAG_RELOCATABLE 10
  52. #define MULTIBOOT_ARCHITECTURE_I386 0
  53. #define MULTIBOOT_ARCHITECTURE_MIPS32 4
  54. #define MULTIBOOT_HEADER_TAG_OPTIONAL 1
  55. #define MULTIBOOT_LOAD_PREFERENCE_NONE 0
  56. #define MULTIBOOT_LOAD_PREFERENCE_LOW 1
  57. #define MULTIBOOT_LOAD_PREFERENCE_HIGH 2
  58. #define MULTIBOOT_CONSOLE_FLAGS_CONSOLE_REQUIRED 1
  59. #define MULTIBOOT_CONSOLE_FLAGS_EGA_TEXT_SUPPORTED 2
  60. // 以下是来自 multiboot2 规范的定义
  61. // How many bytes from the start of the file we search for the header.
  62. #define MULTIBOOT_SEARCH 32768
  63. #define MULTIBOOT_HEADER_ALIGN 8
  64. // The magic field should contain this.
  65. #define MULTIBOOT2_HEADER_MAGIC 0xe85250d6
  66. // This should be in %eax.
  67. #define MULTIBOOT2_BOOTLOADER_MAGIC 0x36d76289
  68. // Alignment of multiboot modules.
  69. #define MULTIBOOT_MOD_ALIGN 0x00001000
  70. // Alignment of the multiboot info structure.
  71. #define MULTIBOOT_INFO_ALIGN 0x00000008
  72. // Flags set in the 'flags' member of the multiboot header.
  73. #define MULTIBOOT_TAG_ALIGN 8
  74. #define MULTIBOOT_TAG_TYPE_END 0
  75. #define MULTIBOOT_TAG_TYPE_CMDLINE 1
  76. #define MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME 2
  77. #define MULTIBOOT_TAG_TYPE_MODULE 3
  78. #define MULTIBOOT_TAG_TYPE_BASIC_MEMINFO 4
  79. #define MULTIBOOT_TAG_TYPE_BOOTDEV 5
  80. #define MULTIBOOT_TAG_TYPE_MMAP 6
  81. #define MULTIBOOT_TAG_TYPE_VBE 7
  82. #define MULTIBOOT_TAG_TYPE_FRAMEBUFFER 8
  83. #define MULTIBOOT_TAG_TYPE_ELF_SECTIONS 9
  84. #define MULTIBOOT_TAG_TYPE_APM 10
  85. #define MULTIBOOT_TAG_TYPE_EFI32 11
  86. #define MULTIBOOT_TAG_TYPE_EFI64 12
  87. #define MULTIBOOT_TAG_TYPE_SMBIOS 13
  88. #define MULTIBOOT_TAG_TYPE_ACPI_OLD 14
  89. #define MULTIBOOT_TAG_TYPE_ACPI_NEW 15
  90. #define MULTIBOOT_TAG_TYPE_NETWORK 16
  91. #define MULTIBOOT_TAG_TYPE_EFI_MMAP 17
  92. #define MULTIBOOT_TAG_TYPE_EFI_BS 18
  93. #define MULTIBOOT_TAG_TYPE_EFI32_IH 19
  94. #define MULTIBOOT_TAG_TYPE_EFI64_IH 20
  95. #define MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR 21
  96. #define MULTIBOOT_HEADER_TAG_END 0
  97. #define MULTIBOOT_HEADER_TAG_INFORMATION_REQUEST 1
  98. #define MULTIBOOT_HEADER_TAG_ADDRESS 2
  99. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS 3
  100. #define MULTIBOOT_HEADER_TAG_CONSOLE_FLAGS 4
  101. #define MULTIBOOT_HEADER_TAG_FRAMEBUFFER 5
  102. #define MULTIBOOT_HEADER_TAG_MODULE_ALIGN 6
  103. #define MULTIBOOT_HEADER_TAG_EFI_BS 7
  104. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI32 8
  105. #define MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI64 9
  106. #define MULTIBOOT_HEADER_TAG_RELOCATABLE 10
  107. #define MULTIBOOT_ARCHITECTURE_I386 0
  108. #define MULTIBOOT_ARCHITECTURE_MIPS32 4
  109. #define MULTIBOOT_HEADER_TAG_OPTIONAL 1
  110. #define MULTIBOOT_LOAD_PREFERENCE_NONE 0
  111. #define MULTIBOOT_LOAD_PREFERENCE_LOW 1
  112. #define MULTIBOOT_LOAD_PREFERENCE_HIGH 2
  113. #define MULTIBOOT_CONSOLE_FLAGS_CONSOLE_REQUIRED 1
  114. #define MULTIBOOT_CONSOLE_FLAGS_EGA_TEXT_SUPPORTED 2
  115. // 直接用 -m64 编译出来的是 64 位代码,
  116. // 但是启动后的机器是 32 位的,相当于在 32 位机器上跑 64 位程序。
  117. // 得加一层跳转到 64 位的 -m32 代码,开启 long 模式后再跳转到以 -m64 编译的代码中
  118. // 对于 x86_64,需要在启动阶段进入长模式(IA32E),这意味着需要一个临时页表
  119. // See https://wiki.osdev.org/Creating_a_64-bit_kernel:
  120. // With a 32-bit bootstrap in your kernel
  121. // 这部分是从保护模式启动 long 模式的代码
  122. // 工作在 32bit
  123. // 声明这一段代码以 32 位模式编译
  124. .code32
  125. // multiboot2 文件头
  126. // 计算头长度
  127. .SET HEADER_LENGTH, multiboot_header_end - multiboot_header
  128. // 计算校验和
  129. .SET CHECKSUM, -(MULTIBOOT2_HEADER_MAGIC + MULTIBOOT_ARCHITECTURE_I386 + HEADER_LENGTH)
  130. // 8 字节对齐
  131. .align MULTIBOOT_HEADER_ALIGN
  132. // 声明所属段
  133. .section .multiboot_header
  134. multiboot_header:
  135. // 魔数
  136. .long MULTIBOOT2_HEADER_MAGIC
  137. // 架构
  138. .long MULTIBOOT_ARCHITECTURE_I386
  139. // 头长度
  140. .long HEADER_LENGTH
  141. // 校验和
  142. .long CHECKSUM
  143. // 添加其它内容在此,详细信息见 Multiboot2 Specification version 2.0.pdf
  144. // 设置帧缓冲区
  145. .align 8
  146. framebuffer_tag_start:
  147. .short MULTIBOOT_HEADER_TAG_FRAMEBUFFER
  148. .short MULTIBOOT_HEADER_TAG_OPTIONAL
  149. .long framebuffer_tag_end - framebuffer_tag_start
  150. .long 1440
  151. .long 900
  152. .long 32
  153. framebuffer_tag_end:
  154. .align 8
  155. .short MULTIBOOT_HEADER_TAG_END
  156. // 结束标记
  157. .short 0
  158. .long 8
  159. multiboot_header_end:
  160. // 临时页表 4KB/页
  161. .section .data
  162. .align 0x1000
  163. pml4:
  164. .skip 0x1000
  165. pdpt:
  166. .skip 0x1000
  167. pd:
  168. .skip 0x1000
  169. pt:
  170. .skip 0x1000
  171. // 临时 GDT
  172. .align 16
  173. gdt64:
  174. null_desc:
  175. .short 0xFFFF
  176. .short 0
  177. .byte 0
  178. .byte 0
  179. .byte 0
  180. .byte 0
  181. code_desc:
  182. .short 0
  183. .short 0
  184. .byte 0
  185. .byte 0x9A
  186. .byte 0x20
  187. .byte 0
  188. data_desc:
  189. .short 0
  190. .short 0
  191. .byte 0
  192. .byte 0x92
  193. .byte 0
  194. .byte 0
  195. user_code_desc:
  196. .short 0
  197. .short 0
  198. .byte 0
  199. .byte 0xFA
  200. .byte 0x20
  201. .byte 0
  202. user_data_desc:
  203. .short 0
  204. .short 0
  205. .byte 0
  206. .byte 0xF2
  207. .byte 0
  208. .byte 0
  209. gdt64_pointer:
  210. .short gdt64_pointer-gdt64-1
  211. .quad gdt64
  212. gdt64_pointer64:
  213. .short gdt64_pointer-gdt64-1
  214. .quad gdt64
  215. .section .text
  216. .global _start
  217. .type _start, @function
  218. # 在 multiboot2.cpp 中定义
  219. .extern boot_info_addr
  220. .extern multiboot2_magic
  221. .extern _start64
  222. _start:
  223. // 关中断
  224. cli
  225. // multiboot2_info 结构体指针
  226. mov %ebx, boot_info_addr
  227. // 魔数
  228. mov %eax, multiboot2_magic
  229. / 从保护模式跳转到长模式
  230. // 1. 允许 PAE
  231. mov %cr4, %eax
  232. or $(1<<5), %eax
  233. mov %eax, %cr4
  234. // 2. 设置临时页表
  235. // 最高级
  236. mov $pml4, %eax
  237. mov $pdpt, %ebx
  238. or $0x3, %ebx
  239. mov %ebx, 0(%eax)
  240. // 次级
  241. mov $pdpt, %eax
  242. mov $pd, %ebx
  243. or $0x3, %ebx
  244. mov %ebx, 0(%eax)
  245. // 次低级
  246. mov $pd, %eax
  247. mov $pt, %ebx
  248. or $0x3, %ebx
  249. mov %ebx, 0(%eax)
  250. // 最低级
  251. // 循环 512 次,填满一页
  252. mov $512, %ecx
  253. mov $pt, %eax
  254. mov $0x3, %ebx
  255. .fill_pt:
  256. mov %ebx, 0(%eax)
  257. add $0x1000, %ebx
  258. add $8, %eax
  259. loop .fill_pt
  260. // 填写 CR3
  261. mov $pml4, %eax
  262. mov %eax, %cr3
  263. // 3. 切换到 long 模式
  264. mov $0xC0000080, %ecx
  265. rdmsr
  266. or $(1<<8), %eax
  267. wrmsr
  268. // 4. 开启分页
  269. mov %cr0, %eax
  270. or $(1<<31), %eax
  271. mov %eax, %cr0
  272. // 5. 重新设置 GDT
  273. mov $gdt64_pointer, %eax
  274. lgdt 0(%eax)
  275. // 6. 跳转到 64 位代码执行
  276. jmp $0x8, $_start64
  277. hlt
  278. ret
  279. .section .text
  280. .code64
  281. .global _start64
  282. .type _start64, @function
  283. .extern Start_Kernel
  284. ENTRY(_start64)
  285. // 初始化寄存器
  286. mov $0x10, %ax
  287. mov %ax, %ds
  288. mov %ax, %es
  289. mov %ax, %fs
  290. mov %ax, %ss
  291. mov $0x7e00, %esp
  292. // === 加载GDTR ====
  293. lgdt GDT_POINTER(%rip) //这里我没搞明白rip相对寻址, 看了文档,大概是用来实现PIC的(position independent code)
  294. // === 加载IDTR ====
  295. lidt IDT_POINTER(%rip)
  296. mov $0x10, %ax
  297. mov %ax, %ds
  298. mov %ax, %es
  299. mov %ax, %fs
  300. mov %ax, %ss
  301. mov %ax, %gs
  302. movq $0x7e00, %rsp
  303. // 2. 设置临时页表
  304. // 最高级
  305. mov $__PML4E, %eax
  306. mov $__PDPTE, %ebx
  307. or $0x3, %ebx
  308. mov %ebx, 0(%eax)
  309. // 次级
  310. mov $__PDPTE, %eax
  311. mov $__PDE, %ebx
  312. or $0x3, %ebx
  313. mov %ebx, 0(%eax)
  314. // ==== 加载CR3寄存器
  315. movq $__PML4E, %rax //设置页目录基地址
  316. movq %rax, %cr3
  317. movq switch_seg(%rip), %rax
  318. // 由于ljmp和lcall在GAS中不受支持,因此我们需要先伪造函数调用现场,通过lret的方式,给它跳转过去。才能更新cs寄存器
  319. // 实在是太妙了!Amazing!
  320. pushq $0x08 //段选择子
  321. pushq %rax
  322. lretq
  323. // 64位模式的代码
  324. switch_seg:
  325. .quad entry64
  326. entry64:
  327. movq $0x10, %rax
  328. movq %rax, %ds
  329. movq %rax, %es
  330. movq %rax, %gs
  331. movq %rax, %ss
  332. movq _stack_start(%rip), %rsp //rsp的地址
  333. setup_IDT:
  334. leaq m_ignore_int(%rip), %rdx // 将ignore_int的地址暂时存到中段描述符的高8B
  335. movq $(0x08 << 16), %rax // 设置段选择子。由IDT结构和段选择子结构可知,本行设置段基地址为0x100000,TI=0,RPL=0
  336. movw %dx, %ax
  337. movq $ (0x8e00 << 32), %rcx // 设置Type=1110 P=1 DPL=00 0=0
  338. addq %rcx, %rax
  339. // 把ignore_int的地址填写到正确位置, rax存低8B, rdx存高8B
  340. movl %edx, %ecx
  341. shrl $16, %ecx // 去除低16位
  342. shlq $48, %rcx
  343. addq %rcx, %rax // 填写段内偏移31:16
  344. shrq $32, %rdx // (已经填写了32位,故右移32)
  345. leaq IDT_Table(%rip), %rdi // 获取中断描述符表的首地址,存储到rdi
  346. mov $256, %rcx // 初始化每个中断描述符
  347. repeat_set_idt:
  348. // ====== 循环,初始化总共256个中断描述符 ===
  349. movq %rax, (%rdi) // 保存低8B
  350. movq %rdx, 8(%rdi) // 保存高8B
  351. addq $0x10, %rdi // 转到下一个IDT表项
  352. dec %rcx
  353. jne repeat_set_idt
  354. SetUp_TSS64:
  355. // == 设置64位的任务状态段表 ===
  356. //rdx保存高8B, rax保存低8B
  357. leaq TSS64_Table(%rip), %rdx
  358. xorq %rax, %rax
  359. xorq %rcx, %rcx
  360. // 设置TSS描述符的47:40位为1000 1001
  361. movq $0x89, %rax
  362. shlq $40, %rax
  363. // 设置段基地址31:24
  364. movl %edx, %ecx
  365. shrl $24, %ecx
  366. shlq $56, %rcx
  367. addq %rcx, %rax
  368. xorq %rcx, %rcx
  369. // 设置段基地址23:00
  370. movl %edx, %ecx
  371. andl $0xffffff, %ecx // 清空ecx的中有效值的高8位(也就是上面已经赋值了的)
  372. shlq $16, %rcx
  373. addq %rcx, %rax
  374. addq $103, %rax // 设置段长度
  375. leaq GDT_Table(%rip), %rdi
  376. movq %rax, 80(%rdi) // 把低八B存储到GDT第10项
  377. shrq $32, %rdx
  378. movq %rdx, 88(%rdi) // 高8B存到GDT第11项
  379. // 装载任务状态段寄存器(已改为在main.c中使用load_TR宏进行装载)
  380. // mov $0x50, %ax // 设置起始地址为80
  381. // ltr %ax
  382. //now enable SSE and the like
  383. movq %cr0, %rax
  384. and $0xFFFB, %ax //clear coprocessor emulation CR0.EM
  385. or $0x2, %ax //set coprocessor monitoring CR0.MP
  386. movq %rax, %cr0
  387. movq %cr4, %rax
  388. or $(3 << 9), %ax //set CR4.OSFXSR and CR4.OSXMMEXCPT at the same time
  389. movq %rax, %cr4
  390. call Start_Kernel
  391. go_to_kernel:
  392. .quad Start_Kernel
  393. // ==== 异常/中断处理模块 ignore int: 忽略中断
  394. m_ignore_int:
  395. // 切换到c语言的ignore_int
  396. movq go_to_ignore_int(%rip), %rax
  397. pushq $0x08
  398. pushq %rax
  399. lretq
  400. lretq
  401. go_to_ignore_int:
  402. .quad ignore_int
  403. ENTRY(_stack_start)
  404. .quad initial_proc_union + 32768
  405. // 初始化页表
  406. .align 0x1000 //设置为4k对齐
  407. .org 0x1000 //设置页表位置为内核执行头程序的0x1000处
  408. __PML4E:
  409. .quad 0x103003 // 用户访问,可读写,已存在, 地址在31~12位
  410. .fill 255,8,0
  411. .quad 0x103003
  412. .fill 255,8,0
  413. .org 0x2000
  414. __PDPTE:
  415. .quad 0x104003 // 用户访问,可读写,已存在
  416. .fill 511,8,0
  417. .org 0x3000
  418. __PDE:
  419. .quad 0x000083 // 用户访问,可读写,已存在
  420. .quad 0x200083
  421. .quad 0x400083
  422. .quad 0x600083
  423. .quad 0x800083
  424. .quad 0xa00083
  425. .quad 0xc00083
  426. .quad 0xe00083
  427. .quad 0x1000083
  428. .quad 0x1200083
  429. .quad 0x1400083
  430. .quad 0x1600083
  431. .quad 0x1800083
  432. .quad 0x1a00083
  433. .quad 0x1c00083
  434. .quad 0x1e00083
  435. .quad 0x2000083
  436. .quad 0x2200083
  437. .quad 0x2400083
  438. .quad 0x2600083
  439. .quad 0x2800083
  440. .quad 0x2a00083
  441. .quad 0x2c00083
  442. .quad 0x2e00083
  443. .quad 0xe0000083 /*虚拟地址0x 3000000 初始情况下,帧缓冲区映射到这里*/
  444. .quad 0xe0200083
  445. .quad 0xe0400083
  446. .quad 0xe0600083 /*0x1000000*/
  447. .quad 0xe0800083
  448. .quad 0xe0a00083
  449. .quad 0xe0c00083
  450. .quad 0xe0e00083
  451. .fill 480,8,0
  452. // GDT表
  453. .section .data
  454. .align 16
  455. .global GDT_Table // 使得GDT可以被外部程序引用或者访问
  456. GDT_Table:
  457. .quad 0x0000000000000000 // 0 空描述符 0x00
  458. .quad 0x0020980000000000 // 1 内核64位代码段描述符 0x08
  459. .quad 0x0000920000000000 // 2 内核64位数据段描述符 0x10
  460. .quad 0x0000000000000000 // 3 用户32位代码段描述符 0x18
  461. .quad 0x0000000000000000 // 4 用户32位数据段描述符 0x20
  462. .quad 0x0020f80000000000 // 5 用户64位代码段描述符 0x28
  463. .quad 0x0000f20000000000 // 6 用户64位数据段描述符 0x30
  464. .quad 0x00cf9a000000ffff // 7 内核32位代码段描述符 0x38
  465. .quad 0x00cf92000000ffff // 8 内核32位数据段描述符 0x40
  466. .fill 10, 8, 0 // 10-11 TSS(跳过了第9段) 重复十次填充8字节的空间,赋值为0
  467. GDT_END:
  468. GDT_POINTER:
  469. GDT_LIMIT: .word GDT_END - GDT_Table - 1 // GDT的大小
  470. GDT_BASE: .quad GDT_Table
  471. // IDT 表
  472. .global IDT_Table
  473. IDT_Table:
  474. .fill 512, 8, 0 // 设置512*8字节的IDT表的空间
  475. IDT_END:
  476. IDT_POINTER:
  477. IDT_LIMIT: .word IDT_END - IDT_Table - 1
  478. IDT_BASE: .quad IDT_Table
  479. // 64位的TSS表
  480. .global TSS64_Table
  481. TSS64_Table:
  482. .fill 13, 8, 0
  483. TSS64_END:
  484. TSS64_POINTER:
  485. TSS64_LIMIT: .word TSS64_END - TSS64_Table - 1
  486. TSS64_BASE: .quad TSS64_Table