Task.h 4.5 KB

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  1. #pragma once
  2. #include "types.h"
  3. #include "IPC.h"
  4. #include "InlineLinkedList.h"
  5. #include <AK/String.h>
  6. #include "TSS.h"
  7. #include <AK/Vector.h>
  8. #include "i386.h"
  9. //#define TASK_SANITY_CHECKS
  10. class FileHandle;
  11. class Zone;
  12. class Task : public InlineLinkedListNode<Task> {
  13. friend class InlineLinkedListNode<Task>;
  14. public:
  15. static Task* create(const String& path, uid_t, gid_t);
  16. Task(String&& name, uid_t, gid_t);
  17. static Vector<Task*> allTasks();
  18. #ifdef TASK_SANITY_CHECKS
  19. static void checkSanity(const char* msg = nullptr);
  20. #else
  21. static void checkSanity(const char*) { }
  22. #endif
  23. enum State {
  24. Invalid = 0,
  25. Runnable = 1,
  26. Running = 2,
  27. BlockedReceive = 3,
  28. BlockedSend = 4,
  29. BlockedSleep = 5,
  30. Terminated = 6,
  31. Crashing = 7,
  32. Exiting = 8,
  33. BlockedWait = 9,
  34. };
  35. enum RingLevel {
  36. Ring0 = 0,
  37. Ring3 = 3,
  38. };
  39. bool isRing0() const { return m_ring == Ring0; }
  40. static Task* fromPID(pid_t);
  41. static Task* fromIPCHandle(IPC::Handle);
  42. static Task* kernelTask();
  43. Task(void (*entry)(), const char* name, IPC::Handle, RingLevel);
  44. ~Task();
  45. const String& name() const { return m_name; }
  46. pid_t pid() const { return m_pid; }
  47. DWORD ticks() const { return m_ticks; }
  48. WORD selector() const { return m_farPtr.selector; }
  49. TSS32& tss() { return m_tss; }
  50. State state() const { return m_state; }
  51. IPC::Handle handle() const { return m_handle; }
  52. uid_t uid() const { return m_uid; }
  53. uid_t gid() const { return m_gid; }
  54. const FarPtr& farPtr() const { return m_farPtr; }
  55. FileHandle* fileHandleIfExists(int fd);
  56. static void doHouseKeeping();
  57. bool acceptsMessageFrom(Task&);
  58. void block(Task::State);
  59. void unblock();
  60. void setWakeupTime(DWORD t) { m_wakeupTime = t; }
  61. DWORD wakeupTime() const { return m_wakeupTime; }
  62. static void prepForIRETToNewTask();
  63. bool tick() { ++m_ticks; return --m_ticksLeft; }
  64. void setTicksLeft(DWORD t) { m_ticksLeft = t; }
  65. void setSelector(WORD s) { m_farPtr.selector = s; }
  66. void setState(State s) { m_state = s; }
  67. uid_t sys$getuid();
  68. gid_t sys$getgid();
  69. pid_t sys$getpid();
  70. int sys$open(const char* path, size_t pathLength);
  71. int sys$close(int fd);
  72. int sys$read(int fd, void* outbuf, size_t nread);
  73. int sys$seek(int fd, int offset);
  74. int sys$kill(pid_t pid, int sig);
  75. int sys$geterror() { return m_error; }
  76. void sys$sleep(DWORD ticks);
  77. void sys$exit(int status);
  78. int sys$spawn(const char* path);
  79. pid_t sys$waitpid(pid_t);
  80. void* sys$mmap(void*, size_t size);
  81. int sys$munmap(void*, size_t size);
  82. struct
  83. {
  84. IPC::Message msg;
  85. IPC::Handle dst;
  86. IPC::Handle src;
  87. DWORD notifies { 0 };
  88. } ipc;
  89. static void initialize();
  90. void setError(int);
  91. static void taskDidCrash(Task*);
  92. void dumpRegions();
  93. void didSchedule() { ++m_timesScheduled; }
  94. dword timesScheduled() const { return m_timesScheduled; }
  95. pid_t waitee() const { return m_waitee; }
  96. private:
  97. friend class MemoryManager;
  98. FileHandle* openFile(String&&);
  99. void allocateLDT();
  100. Task* m_prev { nullptr };
  101. Task* m_next { nullptr };
  102. String m_name;
  103. void (*m_entry)() { nullptr };
  104. pid_t m_pid { 0 };
  105. uid_t m_uid { 0 };
  106. gid_t m_gid { 0 };
  107. DWORD m_ticks { 0 };
  108. DWORD m_ticksLeft { 0 };
  109. IPC::Handle m_handle { 0 };
  110. DWORD m_stackTop { 0 };
  111. FarPtr m_farPtr;
  112. State m_state { Invalid };
  113. DWORD m_wakeupTime { 0 };
  114. TSS32 m_tss;
  115. Descriptor* m_ldtEntries { nullptr };
  116. Vector<OwnPtr<FileHandle>> m_fileHandles;
  117. RingLevel m_ring { Ring0 };
  118. int m_error { 0 };
  119. void* m_kernelStack { nullptr };
  120. dword m_timesScheduled { 0 };
  121. pid_t m_waitee { -1 };
  122. struct Region {
  123. Region(LinearAddress, size_t, RetainPtr<Zone>&&, String&&);
  124. ~Region();
  125. LinearAddress linearAddress;
  126. size_t size { 0 };
  127. RetainPtr<Zone> zone;
  128. String name;
  129. };
  130. Region* allocateRegion(size_t, String&& name);
  131. bool deallocateRegion(Region& region);
  132. Region* regionFromRange(LinearAddress, size_t);
  133. Vector<OwnPtr<Region>> m_regions;
  134. // FIXME: Implement some kind of ASLR?
  135. LinearAddress m_nextRegion;
  136. };
  137. extern void task_init();
  138. extern void yield();
  139. extern bool scheduleNewTask();
  140. extern void switchNow();
  141. extern void block(Task::State);
  142. extern void sleep(DWORD ticks);
  143. /* The currently executing task. NULL during kernel bootup. */
  144. extern Task* current;