irq.c 6.5 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264
  1. #include "irq.h"
  2. #include <common/errno.h>
  3. #if _INTR_8259A_
  4. #include <driver/interrupt/8259A/8259A.h>
  5. #else
  6. #include <driver/interrupt/apic/apic.h>
  7. #endif
  8. #include <common/asm.h>
  9. #include <common/printk.h>
  10. #include <common/string.h>
  11. #include "gate.h"
  12. #include <mm/slab.h>
  13. #pragma GCC push_options
  14. #pragma GCC optimize("O0")
  15. // 保存函数调用现场的寄存器
  16. #define SAVE_ALL_REGS \
  17. "cld; \n\t" \
  18. "pushq %rax; \n\t" \
  19. "pushq %rax; \n\t" \
  20. "movq %es, %rax; \n\t" \
  21. "pushq %rax; \n\t" \
  22. "movq %ds, %rax; \n\t" \
  23. "pushq %rax; \n\t" \
  24. "xorq %rax, %rax;\n\t" \
  25. "pushq %rbp; \n\t" \
  26. "pushq %rdi; \n\t" \
  27. "pushq %rsi; \n\t" \
  28. "pushq %rdx; \n\t" \
  29. "pushq %rcx; \n\t" \
  30. "pushq %rbx; \n\t" \
  31. "pushq %r8 ; \n\t" \
  32. "pushq %r9 ; \n\t" \
  33. "pushq %r10; \n\t" \
  34. "pushq %r11; \n\t" \
  35. "pushq %r12; \n\t" \
  36. "pushq %r13; \n\t" \
  37. "pushq %r14; \n\t" \
  38. "pushq %r15; \n\t" \
  39. "movq $0x10, %rdx;\n\t" \
  40. "movq %rdx, %ds; \n\t" \
  41. "movq %rdx, %es; \n\t"
  42. // 定义IRQ处理函数的名字格式:IRQ+中断号+interrupt
  43. #define IRQ_NAME2(name1) name1##interrupt(void)
  44. #define IRQ_NAME(number) IRQ_NAME2(IRQ##number)
  45. // 构造中断entry
  46. // 为了复用返回函数的代码,需要压入一个错误码0
  47. // todo: 将这里改为volatile,也许能解决编译选项为O1时,系统崩溃的问题
  48. #define Build_IRQ(number) \
  49. void IRQ_NAME(number); \
  50. __asm__(SYMBOL_NAME_STR(IRQ) #number "interrupt: \n\t" \
  51. "pushq $0x00 \n\t" SAVE_ALL_REGS \
  52. "movq %rsp, %rdi \n\t" \
  53. "leaq ret_from_intr(%rip), %rax \n\t" \
  54. "pushq %rax \n\t" \
  55. "movq $" #number ", %rsi \n\t" \
  56. "jmp do_IRQ \n\t");
  57. // 构造中断入口
  58. Build_IRQ(0x20);
  59. Build_IRQ(0x21);
  60. Build_IRQ(0x22);
  61. Build_IRQ(0x23);
  62. Build_IRQ(0x24);
  63. Build_IRQ(0x25);
  64. Build_IRQ(0x26);
  65. Build_IRQ(0x27);
  66. Build_IRQ(0x28);
  67. Build_IRQ(0x29);
  68. Build_IRQ(0x2a);
  69. Build_IRQ(0x2b);
  70. Build_IRQ(0x2c);
  71. Build_IRQ(0x2d);
  72. Build_IRQ(0x2e);
  73. Build_IRQ(0x2f);
  74. Build_IRQ(0x30);
  75. Build_IRQ(0x31);
  76. Build_IRQ(0x32);
  77. Build_IRQ(0x33);
  78. Build_IRQ(0x34);
  79. Build_IRQ(0x35);
  80. Build_IRQ(0x36);
  81. Build_IRQ(0x37);
  82. // 初始化中断数组
  83. void (*interrupt_table[24])(void) =
  84. {
  85. IRQ0x20interrupt,
  86. IRQ0x21interrupt,
  87. IRQ0x22interrupt,
  88. IRQ0x23interrupt,
  89. IRQ0x24interrupt,
  90. IRQ0x25interrupt,
  91. IRQ0x26interrupt,
  92. IRQ0x27interrupt,
  93. IRQ0x28interrupt,
  94. IRQ0x29interrupt,
  95. IRQ0x2ainterrupt,
  96. IRQ0x2binterrupt,
  97. IRQ0x2cinterrupt,
  98. IRQ0x2dinterrupt,
  99. IRQ0x2einterrupt,
  100. IRQ0x2finterrupt,
  101. IRQ0x30interrupt,
  102. IRQ0x31interrupt,
  103. IRQ0x32interrupt,
  104. IRQ0x33interrupt,
  105. IRQ0x34interrupt,
  106. IRQ0x35interrupt,
  107. IRQ0x36interrupt,
  108. IRQ0x37interrupt,
  109. };
  110. /**
  111. * @brief 声明10个IPI消息处理程序,向量号从200(0xc8)开始
  112. *
  113. */
  114. /*
  115. */
  116. Build_IRQ(0xc8);
  117. Build_IRQ(0xc9);
  118. Build_IRQ(0xca);
  119. Build_IRQ(0xcb);
  120. Build_IRQ(0xcc);
  121. Build_IRQ(0xcd);
  122. Build_IRQ(0xce);
  123. Build_IRQ(0xcf);
  124. Build_IRQ(0xd0);
  125. Build_IRQ(0xd1);
  126. Build_IRQ(0x80); // 系统调用入口
  127. void (*syscall_intr_table[1])(void) = {IRQ0x80interrupt};
  128. // 初始化IPI中断服务程序数组
  129. void (*SMP_interrupt_table[SMP_IRQ_NUM])(void) =
  130. {
  131. IRQ0xc8interrupt,
  132. IRQ0xc9interrupt,
  133. IRQ0xcainterrupt,
  134. IRQ0xcbinterrupt,
  135. IRQ0xccinterrupt,
  136. IRQ0xcdinterrupt,
  137. IRQ0xceinterrupt,
  138. IRQ0xcfinterrupt,
  139. IRQ0xd0interrupt,
  140. IRQ0xd1interrupt,
  141. };
  142. // 初始化local apic中断服务程序数组
  143. Build_IRQ(0x96);
  144. Build_IRQ(0x97);
  145. Build_IRQ(0x98);
  146. Build_IRQ(0x99);
  147. Build_IRQ(0x9a);
  148. Build_IRQ(0x9b);
  149. Build_IRQ(0x9c);
  150. Build_IRQ(0x9d);
  151. Build_IRQ(0x9e);
  152. Build_IRQ(0x9f);
  153. void (*local_apic_interrupt_table[LOCAL_APIC_IRQ_NUM])(void) =
  154. {
  155. IRQ0x96interrupt,
  156. IRQ0x97interrupt,
  157. IRQ0x98interrupt,
  158. IRQ0x99interrupt,
  159. IRQ0x9ainterrupt,
  160. IRQ0x9binterrupt,
  161. IRQ0x9cinterrupt,
  162. IRQ0x9dinterrupt,
  163. IRQ0x9einterrupt,
  164. IRQ0x9finterrupt,
  165. };
  166. /**
  167. * @brief 中断注册函数
  168. *
  169. * @param irq_num 中断向量号
  170. * @param arg 传递给中断安装接口的参数
  171. * @param handler 中断处理函数
  172. * @param paramater 中断处理函数的参数
  173. * @param controller 中断控制器结构
  174. * @param irq_name 中断名
  175. * @return int
  176. */
  177. int irq_register(ul irq_num, void *arg, void (*handler)(ul irq_num, ul parameter, struct pt_regs *regs), ul paramater, hardware_intr_controller *controller, char *irq_name)
  178. {
  179. // 由于为I/O APIC分配的中断向量号是从32开始的,因此要减去32才是对应的interrupt_desc的元素
  180. irq_desc_t *p = NULL;
  181. if (irq_num >= 32 && irq_num < 0x80)
  182. p = &interrupt_desc[irq_num - 32];
  183. else if (irq_num >= 150 && irq_num < 200)
  184. p = &local_apic_interrupt_desc[irq_num - 150];
  185. else
  186. {
  187. kerror("irq_register(): invalid irq num: %ld.", irq_num);
  188. return -EINVAL;
  189. }
  190. p->controller = controller;
  191. if (p->irq_name == NULL)
  192. {
  193. int namelen = sizeof(strlen(irq_name) + 1);
  194. p->irq_name = (char *)kmalloc(namelen, 0);
  195. memset(p->irq_name, 0, namelen);
  196. strncpy(p->irq_name, irq_name, namelen);
  197. }
  198. p->parameter = paramater;
  199. p->flags = 0;
  200. p->handler = handler;
  201. io_mfence();
  202. p->controller->install(irq_num, arg);
  203. io_mfence();
  204. p->controller->enable(irq_num);
  205. io_mfence();
  206. return 0;
  207. }
  208. /**
  209. * @brief 中断注销函数
  210. *
  211. * @param irq_num 中断向量号
  212. * @return int
  213. */
  214. int irq_unregister(ul irq_num)
  215. {
  216. irq_desc_t *p = &interrupt_desc[irq_num - 32];
  217. p->controller->disable(irq_num);
  218. p->controller->uninstall(irq_num);
  219. p->controller = NULL;
  220. if (p->irq_name)
  221. kfree(p->irq_name);
  222. p->irq_name = NULL;
  223. p->parameter = NULL;
  224. p->flags = 0;
  225. p->handler = NULL;
  226. return 0;
  227. }
  228. /**
  229. * @brief 初始化中断模块
  230. */
  231. void irq_init()
  232. {
  233. #if _INTR_8259A_
  234. init_8259A();
  235. #else
  236. memset((void *)interrupt_desc, 0, sizeof(irq_desc_t) * IRQ_NUM);
  237. apic_init();
  238. #endif
  239. }
  240. #pragma GCC optimize("O0")