main.c 7.0 KB

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  1. //
  2. // Created by longjin on 2022/1/20.
  3. //
  4. #include "common/glib.h"
  5. #include "common/printk.h"
  6. #include "common/kprint.h"
  7. #include "exception/gate.h"
  8. #include "exception/trap.h"
  9. #include "exception/irq.h"
  10. #include "mm/mm.h"
  11. #include "mm/slab.h"
  12. #include "process/process.h"
  13. #include "syscall/syscall.h"
  14. #include "driver/multiboot2/multiboot2.h"
  15. #include "driver/acpi/acpi.h"
  16. #include "driver/keyboard/keyboard.h"
  17. unsigned int *FR_address = (unsigned int *)0xb8000; //帧缓存区的地址
  18. struct memory_desc memory_management_struct = {{0}, 0};
  19. // struct Global_Memory_Descriptor memory_management_struct = {{0}, 0};
  20. void test_slab();
  21. void show_welcome()
  22. {
  23. /**
  24. * @brief 打印欢迎页面
  25. *
  26. */
  27. printk("\n\n");
  28. for (int i = 0; i < 74; ++i)
  29. printk(" ");
  30. printk_color(0x00e0ebeb, 0x00e0ebeb, " \n");
  31. for (int i = 0; i < 74; ++i)
  32. printk(" ");
  33. printk_color(BLACK, 0x00e0ebeb, " Welcome to DragonOS ! \n");
  34. for (int i = 0; i < 74; ++i)
  35. printk(" ");
  36. printk_color(0x00e0ebeb, 0x00e0ebeb, " \n\n");
  37. }
  38. // 测试内存管理单元
  39. void test_mm()
  40. {
  41. kinfo("Testing memory management unit...");
  42. struct Page *page = NULL;
  43. page = alloc_pages(ZONE_NORMAL, 63, 0);
  44. page = alloc_pages(ZONE_NORMAL, 63, 0);
  45. printk_color(ORANGE, BLACK, "4.memory_management_struct.bmp:%#018lx\tmemory_management_struct.bmp+1:%#018lx\tmemory_management_struct.bmp+2:%#018lx\tzone_struct->count_pages_using:%d\tzone_struct->count_pages_free:%d\n", *memory_management_struct.bmp, *(memory_management_struct.bmp + 1), *(memory_management_struct.bmp + 2), memory_management_struct.zones_struct->count_pages_using, memory_management_struct.zones_struct->count_pages_free);
  46. for (int i = 80; i <= 85; ++i)
  47. {
  48. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\t", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  49. i++;
  50. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\n", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  51. }
  52. for (int i = 140; i <= 145; i++)
  53. {
  54. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\t", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  55. i++;
  56. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\n", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  57. }
  58. free_pages(page, 1);
  59. printk_color(ORANGE, BLACK, "5.memory_management_struct.bmp:%#018lx\tmemory_management_struct.bmp+1:%#018lx\tmemory_management_struct.bmp+2:%#018lx\tzone_struct->count_pages_using:%d\tzone_struct->count_pages_free:%d\n", *memory_management_struct.bmp, *(memory_management_struct.bmp + 1), *(memory_management_struct.bmp + 2), memory_management_struct.zones_struct->count_pages_using, memory_management_struct.zones_struct->count_pages_free);
  60. for (int i = 75; i <= 85; i++)
  61. {
  62. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\t", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  63. i++;
  64. printk_color(INDIGO, BLACK, "page%03d attr:%#018lx address:%#018lx\n", i, (memory_management_struct.pages_struct + i)->attr, (memory_management_struct.pages_struct + i)->addr_phys);
  65. }
  66. page = alloc_pages(ZONE_UNMAPPED_IN_PGT, 63, 0);
  67. printk_color(ORANGE, BLACK, "6.memory_management_struct.bmp:%#018lx\tmemory_management_struct.bmp+1:%#018lx\tzone_struct->count_pages_using:%d\tzone_struct->count_pages_free:%d\n", *(memory_management_struct.bmp + (page->addr_phys >> PAGE_2M_SHIFT >> 6)), *(memory_management_struct.bmp + 1 + (page->addr_phys >> PAGE_2M_SHIFT >> 6)), (memory_management_struct.zones_struct + ZONE_UNMAPPED_INDEX)->count_pages_using, (memory_management_struct.zones_struct + ZONE_UNMAPPED_INDEX)->count_pages_free);
  68. free_pages(page, 1);
  69. printk_color(ORANGE, BLACK, "7.memory_management_struct.bmp:%#018lx\tmemory_management_struct.bmp+1:%#018lx\tzone_struct->count_pages_using:%d\tzone_struct->count_pages_free:%d\n", *(memory_management_struct.bmp + (page->addr_phys >> PAGE_2M_SHIFT >> 6)), *(memory_management_struct.bmp + 1 + (page->addr_phys >> PAGE_2M_SHIFT >> 6)), (memory_management_struct.zones_struct + ZONE_UNMAPPED_INDEX)->count_pages_using, (memory_management_struct.zones_struct + ZONE_UNMAPPED_INDEX)->count_pages_free);
  70. test_slab();
  71. kinfo("Memory management module test completed!");
  72. }
  73. void test_slab()
  74. {
  75. kinfo("Testing SLAB...");
  76. kinfo("Testing kmalloc()...");
  77. for (int i = 1; i < 16; ++i)
  78. {
  79. printk_color(ORANGE, BLACK, "mem_obj_size: %ldbytes\t", kmalloc_cache_group[i].size);
  80. printk_color(ORANGE, BLACK, "bmp(before): %#018lx\t", *kmalloc_cache_group[i].cache_pool_entry->bmp);
  81. ul *tmp = kmalloc(kmalloc_cache_group[i].size, 0);
  82. if (tmp == NULL)
  83. {
  84. kBUG("Cannot kmalloc such a memory: %ld bytes", kmalloc_cache_group[i].size);
  85. }
  86. printk_color(ORANGE, BLACK, "bmp(middle): %#018lx\t", *kmalloc_cache_group[i].cache_pool_entry->bmp);
  87. kfree(tmp);
  88. printk_color(ORANGE, BLACK, "bmp(after): %#018lx\n", *kmalloc_cache_group[i].cache_pool_entry->bmp);
  89. }
  90. // 测试自动扩容
  91. void *ptrs[7];
  92. for (int i = 0; i < 7; ++i)
  93. ptrs[i] = kmalloc(kmalloc_cache_group[15].size, 0);
  94. struct slab_obj *slab_obj_ptr = kmalloc_cache_group[15].cache_pool_entry;
  95. int count = 0;
  96. do
  97. {
  98. kdebug("bmp(%d): addr=%#018lx\t value=%#018lx", count, slab_obj_ptr->bmp, *slab_obj_ptr->bmp);
  99. slab_obj_ptr = container_of(list_next(&slab_obj_ptr->list), struct slab_obj, list);
  100. ++count;
  101. } while (slab_obj_ptr != kmalloc_cache_group[15].cache_pool_entry);
  102. for (int i = 0; i < 7; ++i)
  103. kfree(ptrs[i]);
  104. kinfo("SLAB test completed!");
  105. }
  106. // 初始化系统各模块
  107. void system_initialize()
  108. {
  109. // 初始化printk
  110. printk_init(8, 16);
  111. kinfo("Kernel Starting...");
  112. load_TR(10); // 加载TR寄存器
  113. ul tss_item_addr = 0x7c00;
  114. set_TSS64(_stack_start, _stack_start, _stack_start, tss_item_addr, tss_item_addr,
  115. tss_item_addr, tss_item_addr, tss_item_addr, tss_item_addr, tss_item_addr);
  116. // 初始化中断描述符表
  117. sys_vector_init();
  118. // 初始化内存管理单元
  119. mm_init();
  120. acpi_init();
  121. // 初始化中断模块
  122. irq_init();
  123. // 先初始化系统调用模块
  124. syscall_init();
  125. cpu_init();
  126. keyboard_init();
  127. // test_slab();
  128. // test_mm();
  129. // 再初始化进程模块。顺序不能调转
  130. // process_init();
  131. }
  132. //操作系统内核从这里开始执行
  133. void Start_Kernel(void)
  134. {
  135. system_initialize();
  136. // show_welcome();
  137. // test_mm();
  138. while (1)
  139. ;
  140. }
  141. void ignore_int()
  142. {
  143. kwarn("Unknown interrupt or fault at RIP.\n");
  144. return;
  145. }