interrupt.cpp 7.5 KB

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  1. #define _INTERRUPT_C_
  2. #include <asm/port_io.h>
  3. #include <kernel/hw/keyboard.h>
  4. #include <kernel/hw/serial.h>
  5. #include <kernel/hw/timer.h>
  6. #include <kernel/interrupt.h>
  7. #include <kernel/mem.h>
  8. #include <kernel/mm.hpp>
  9. #include <kernel/process.hpp>
  10. #include <kernel/stdio.h>
  11. #include <kernel/syscall.hpp>
  12. #include <kernel/tty.h>
  13. #include <kernel/vfs.hpp>
  14. #include <kernel/vga.h>
  15. #include <kernel_main.h>
  16. #include <types/size.h>
  17. #include <types/stdint.h>
  18. #include <types/types.h>
  19. static struct IDT_entry IDT[256];
  20. void init_idt()
  21. {
  22. asm_cli();
  23. memset(IDT, 0x00, sizeof(IDT));
  24. // invalid opcode
  25. SET_IDT_ENTRY_FN(6, int6, 0x08, KERNEL_INTERRUPT_GATE_TYPE);
  26. // double fault
  27. SET_IDT_ENTRY_FN(8, int8, 0x08, KERNEL_INTERRUPT_GATE_TYPE);
  28. // general protection
  29. SET_IDT_ENTRY_FN(13, int13, 0x08, KERNEL_INTERRUPT_GATE_TYPE);
  30. // page fault
  31. SET_IDT_ENTRY_FN(14, int14, 0x08, KERNEL_INTERRUPT_GATE_TYPE);
  32. // system call
  33. SET_IDT_ENTRY_FN(0x80, syscall_stub, 0x08, USER_INTERRUPT_GATE_TYPE);
  34. init_syscall();
  35. uint16_t idt_descriptor[3];
  36. idt_descriptor[0] = sizeof(struct IDT_entry) * 256;
  37. *((uint32_t*)(idt_descriptor + 1)) = (ptr_t)IDT;
  38. asm_load_idt(idt_descriptor, 0);
  39. }
  40. void init_pic(void)
  41. {
  42. asm_cli();
  43. asm_outb(PORT_PIC1_COMMAND, 0x11); // edge trigger mode
  44. asm_outb(PORT_PIC1_DATA, 0x20); // start from int 0x20
  45. asm_outb(PORT_PIC1_DATA, 0x04); // PIC1 is connected to IRQ2 (1 << 2)
  46. asm_outb(PORT_PIC1_DATA, 0x01); // no buffer mode
  47. asm_outb(PORT_PIC2_COMMAND, 0x11); // edge trigger mode
  48. asm_outb(PORT_PIC2_DATA, 0x28); // start from int 0x28
  49. asm_outb(PORT_PIC2_DATA, 0x02); // connected to IRQ2
  50. asm_outb(PORT_PIC2_DATA, 0x01); // no buffer mode
  51. // allow all the interrupts
  52. asm_outb(PORT_PIC1_DATA, 0x00);
  53. asm_outb(PORT_PIC2_DATA, 0x00);
  54. // 0x08 stands for kernel code segment
  55. SET_UP_IRQ(0, 0x08);
  56. SET_UP_IRQ(1, 0x08);
  57. SET_UP_IRQ(2, 0x08);
  58. SET_UP_IRQ(3, 0x08);
  59. SET_UP_IRQ(4, 0x08);
  60. SET_UP_IRQ(5, 0x08);
  61. SET_UP_IRQ(6, 0x08);
  62. SET_UP_IRQ(7, 0x08);
  63. SET_UP_IRQ(8, 0x08);
  64. SET_UP_IRQ(9, 0x08);
  65. SET_UP_IRQ(10, 0x08);
  66. SET_UP_IRQ(11, 0x08);
  67. SET_UP_IRQ(12, 0x08);
  68. SET_UP_IRQ(13, 0x08);
  69. SET_UP_IRQ(14, 0x08);
  70. SET_UP_IRQ(15, 0x08);
  71. asm_sti();
  72. }
  73. extern "C" void int6_handler(
  74. struct regs_32 s_regs,
  75. ptr_t eip,
  76. uint16_t cs,
  77. uint32_t eflags)
  78. {
  79. char buf[512];
  80. tty_print(console, "\n---- INVALID OPCODE ----\n");
  81. snprintf(
  82. buf, 512,
  83. "eax: %x, ebx: %x, ecx: %x, edx: %x\n"
  84. "esp: %x, ebp: %x, esi: %x, edi: %x\n"
  85. "eip: %x, cs: %x, eflags: %x \n",
  86. s_regs.eax, s_regs.ebx, s_regs.ecx,
  87. s_regs.edx, s_regs.esp, s_regs.ebp,
  88. s_regs.esi, s_regs.edi, eip,
  89. cs, eflags);
  90. tty_print(console, buf);
  91. tty_print(console, "---- HALTING SYSTEM ----\n");
  92. asm_cli();
  93. asm_hlt();
  94. }
  95. // general protection
  96. extern "C" void int13_handler(
  97. struct regs_32 s_regs,
  98. uint32_t error_code,
  99. ptr_t eip,
  100. uint16_t cs,
  101. uint32_t eflags)
  102. {
  103. char buf[512];
  104. tty_print(console, "\n---- SEGMENTATION FAULT ----\n");
  105. snprintf(
  106. buf, 512,
  107. "eax: %x, ebx: %x, ecx: %x, edx: %x\n"
  108. "esp: %x, ebp: %x, esi: %x, edi: %x\n"
  109. "eip: %x, cs: %x, error_code: %x \n"
  110. "eflags: %x \n",
  111. s_regs.eax, s_regs.ebx, s_regs.ecx,
  112. s_regs.edx, s_regs.esp, s_regs.ebp,
  113. s_regs.esi, s_regs.edi, eip,
  114. cs, error_code, eflags);
  115. tty_print(console, buf);
  116. tty_print(console, "---- HALTING SYSTEM ----\n");
  117. asm_cli();
  118. asm_hlt();
  119. }
  120. struct PACKED int14_data {
  121. void* l_addr;
  122. struct regs_32 s_regs;
  123. struct page_fault_error_code error_code;
  124. void* v_eip;
  125. uint32_t cs;
  126. uint32_t eflags;
  127. };
  128. static inline void _int14_panic(void* eip, void* cr2, struct page_fault_error_code error_code)
  129. {
  130. char buf[256] {};
  131. snprintf(
  132. buf, 256,
  133. "\nkilled: segmentation fault (eip: %x, cr2: %x, error_code: %x)\n", eip, cr2, error_code);
  134. tty_print(console, buf);
  135. MAKE_BREAK_POINT();
  136. asm_cli();
  137. asm_hlt();
  138. }
  139. // page fault
  140. extern "C" void int14_handler(int14_data* d)
  141. {
  142. mm_list* mms = nullptr;
  143. if (current_process)
  144. mms = &current_process->mms;
  145. else
  146. mms = kernel_mms;
  147. mm* mm_area = find_mm_area(mms, d->l_addr);
  148. if (unlikely(!mm_area))
  149. _int14_panic(d->v_eip, d->l_addr, d->error_code);
  150. pte_t* pte = to_pte(mms_get_pd(mms), d->l_addr);
  151. page* page = lto_page(mm_area, d->l_addr);
  152. if (unlikely(d->error_code.present == 0 && !mm_area->mapped_file))
  153. _int14_panic(d->v_eip, d->l_addr, d->error_code);
  154. // copy on write
  155. if (page->attr.in.cow == 1) {
  156. // if it is a dying page
  157. if (*page->ref_count == 1) {
  158. page->attr.in.cow = 0;
  159. pte->in.a = 0;
  160. pte->in.rw = mm_area->attr.in.write;
  161. return;
  162. }
  163. // duplicate the page
  164. page_t new_page = alloc_raw_page();
  165. // memory mapped
  166. if (d->error_code.present == 0)
  167. pte->in.p = 1;
  168. char* new_page_data = (char*)to_vp(new_page);
  169. memcpy(new_page_data, to_vp(page->phys_page_id), PAGE_SIZE);
  170. pte->in.page = new_page;
  171. pte->in.rw = mm_area->attr.in.write;
  172. pte->in.a = 0;
  173. --*page->ref_count;
  174. page->ref_count = (size_t*)ki_malloc(sizeof(size_t));
  175. *page->ref_count = 1;
  176. page->attr.in.cow = 0;
  177. page->phys_page_id = new_page;
  178. // memory mapped
  179. if (d->error_code.present == 0) {
  180. size_t offset = vptrdiff(d->l_addr, mm_area->start) & 0xfffff000;
  181. vfs_read(mm_area->mapped_file, new_page_data, PAGE_SIZE, mm_area->file_offset + offset, PAGE_SIZE);
  182. }
  183. }
  184. }
  185. extern "C" void irq0_handler(struct interrupt_stack* d)
  186. {
  187. inc_tick();
  188. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  189. do_scheduling(d);
  190. }
  191. // keyboard interrupt
  192. extern "C" void irq1_handler(void)
  193. {
  194. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  195. handle_keyboard_interrupt();
  196. }
  197. extern "C" void irq2_handler(void)
  198. {
  199. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  200. }
  201. extern "C" void irq3_handler(void)
  202. {
  203. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  204. }
  205. extern "C" void irq4_handler(void)
  206. {
  207. serial_receive_data_interrupt();
  208. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  209. }
  210. extern "C" void irq5_handler(void)
  211. {
  212. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  213. }
  214. extern "C" void irq6_handler(void)
  215. {
  216. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  217. }
  218. extern "C" void irq7_handler(void)
  219. {
  220. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  221. }
  222. extern "C" void irq8_handler(void)
  223. {
  224. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  225. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  226. }
  227. extern "C" void irq9_handler(void)
  228. {
  229. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  230. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  231. }
  232. extern "C" void irq10_handler(void)
  233. {
  234. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  235. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  236. }
  237. extern "C" void irq11_handler(void)
  238. {
  239. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  240. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  241. }
  242. extern "C" void irq12_handler(void)
  243. {
  244. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  245. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  246. }
  247. extern "C" void irq13_handler(void)
  248. {
  249. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  250. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  251. }
  252. extern "C" void irq14_handler(void)
  253. {
  254. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  255. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  256. }
  257. extern "C" void irq15_handler(void)
  258. {
  259. asm_outb(PORT_PIC2_COMMAND, PIC_EOI);
  260. asm_outb(PORT_PIC1_COMMAND, PIC_EOI);
  261. }