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207 lines
5.5 KiB
C
207 lines
5.5 KiB
C
//----------------------------------------------------------------------------//
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// GNU GPL OS/K //
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// //
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// Authors: spectral` //
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// NeoX //
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// //
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// Desc: Kaleid Kernel base types and functionalities //
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//----------------------------------------------------------------------------//
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//------------------------------------------//
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// Dependencies //
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//------------------------------------------//
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#ifndef _KALEID_H
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#include <kaleid.h>
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#endif
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//------------------------------------------//
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// Start of header //
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//------------------------------------------//
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#ifndef _KALKERN_BASE_H
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#define _KALKERN_BASE_H
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//------------------------------------------//
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// Elementary types //
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//------------------------------------------//
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typedef struct sLock_t volatile Lock_t;
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typedef struct sThread_t Thread_t;
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typedef struct sProcess_t Process_t;
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typedef struct sTerminal_t Terminal_t;
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typedef struct sListHead_t ListHead_t;
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typedef struct sListNode_t ListNode_t;
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//------------------------------------------//
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// Values for __kstate //
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//------------------------------------------//
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//
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// Current state of the kernel
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//
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typedef enum {
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// the kernel is booting
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KSTATE_INIT,
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// the kernel is not running a process
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KSTATE_KERNEL,
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// a process is running in kernel mode
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KSTATE_PROCESS,
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// the kernel is panicking
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KSTATE_PANIC,
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} KernelState_t;
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//------------------------------------------//
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// Multiprocessor misc. //
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//------------------------------------------//
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#ifndef NCPU
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#define NCPU 4
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#endif
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#define GetCurCPU() 0
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//
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// Declare an (extern) CPU-local variable
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//
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#define __DECLARE_PER_CPU(_X, _Tp, _Qual) \
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_Qual _Tp __ ## _X [NCPU]; \
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static inline _Tp Get ## _X (void) \
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{ return __ ## _X [GetCurCPU()]; } \
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static inline void _Set ## _X (_Tp _Y) \
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{ (__ ## _X [GetCurCPU()] = _Y); }
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#define DECLARE_PER_CPU(_X, _Tp) \
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__DECLARE_PER_CPU(_X, _Tp, extern)
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#define LOCAL_DEC_PER_CPU(_X, _Tp) \
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__DECLARE_PER_CPU(_X, _Tp, static)
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//
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// Actually creates a CPU-local variable
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//
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#define CREATE_PER_CPU(_X, _Tp) \
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_Tp __ ## _X [NCPU] = { (_Tp) 0 }
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//------------------------------------------//
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// Global constants //
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//------------------------------------------//
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// XXX
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DECLARE_PER_CPU(PanicStr, const char *);
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DECLARE_PER_CPU(KernState, KernelState_t);
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DECLARE_PER_CPU(_StdOut, Terminal_t *);
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DECLARE_PER_CPU(_StdDbg, Terminal_t *);
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DECLARE_PER_CPU(CurProc, Process_t *);
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DECLARE_PER_CPU(CurThread, Thread_t *);
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//------------------------------------------//
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// Macros for manipulating said //
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// global constants //
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//------------------------------------------//
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#define SetPanicStr(str) \
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do { \
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SetKernState(KSTATE_PANIC); \
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_SetPanicStr(str); \
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} while (0)
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#define SetKernState(x) \
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do { \
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_SetKernState(x); \
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} while (0)
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#define GetStdOut() (GetCurProc() == NULL ? Get_StdOut() : NULL)
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#define SetStdOut(tm) \
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do { \
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if (GetCurProc() == NULL) \
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_Set_StdOut(tm); \
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} while (0);
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#define GetStdDbg() (GetCurProc() == NULL ? Get_StdDbg() : NULL)
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#define SetStdDbg(tm) \
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do { \
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if (GetCurProc() == NULL) \
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_Set_StdDbg(tm); \
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} while (0)
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//------------------------------------------//
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// Other Macros //
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//------------------------------------------//
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//
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// Size of a tabulation in spaces
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// Default: 4 spaces/tab
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//
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#define KTABSIZE 4
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//
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// Disable IRQs
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//
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#define DisableIRQs() asm volatile ("cli")
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//
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// Enable IRQs
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//
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#define EnableIRQs() asm volatile ("sti")
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//
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// Pause CPU until next interuption
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// !!! Enables IRQs !!!
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//
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#define PauseCPU() asm volatile("sti\n\thlt")
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//
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// Halt the CPU indefinitely
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//
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#define HaltCPU() do { asm volatile ("hlt"); } while (1)
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//------------------------------------------//
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// Some base functions //
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//------------------------------------------//
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noreturn void StartPanic(const char *);
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noreturn void CrashSystem(void);
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//------------------------------------------//
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// Useful I/O inlines //
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//------------------------------------------//
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static inline
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void WriteByteOnPort(port_t port, port_t val)
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{
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asm volatile ("out %0, %1" : : "dN" (port), "a" (val));
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}
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static inline
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uchar ReadByteFromPort(port_t port)
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{
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KalAssert(FALSE && ENOSYS);
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(void)port;
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return 0;
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}
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static inline
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ushort ReadWordFromPort(port_t port)
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{
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KalAssert(FALSE && ENOSYS);
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(void)port;
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return 0;
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}
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//------------------------------------------//
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// End of header //
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//------------------------------------------//
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#endif
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