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338 lines
8.3 KiB
C
338 lines
8.3 KiB
C
// SONIC ROBO BLAST 2
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//-----------------------------------------------------------------------------
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// Copyright (C) 1993-1996 by id Software, Inc.
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// Copyright (C) 1998-2000 by DooM Legacy Team.
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// Copyright (C) 1999-2023 by Sonic Team Junior.
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//
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// This program is free software distributed under the
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// terms of the GNU General Public License, version 2.
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// See the 'LICENSE' file for more details.
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//-----------------------------------------------------------------------------
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/// \file i_system.h
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/// \brief System specific interface stuff.
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#ifndef __I_SYSTEM__
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#define __I_SYSTEM__
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#include "d_ticcmd.h"
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#include "d_event.h"
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#ifdef __GNUG__
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#pragma interface
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#endif
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/** \brief max quit functions
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*/
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#define MAX_QUIT_FUNCS 16
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/** \brief Graphic system had started up
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*/
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extern UINT8 graphics_started;
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/** \brief Keyboard system is up and run
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*/
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extern UINT8 keyboard_started;
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/** \brief The I_GetFreeMem function
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\param total total memory in the system
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\return free memory in the system
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*/
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size_t I_GetFreeMem(size_t *total);
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/** \brief Returns precise time value for performance measurement. The precise
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time should be a monotonically increasing counter, and will wrap.
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precise_t is internally represented as an unsigned integer and
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integer arithmetic may be used directly between values of precise_t.
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*/
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precise_t I_GetPreciseTime(void);
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/** \brief Fills a buffer with random data, returns amount of data obtained.
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*/
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size_t I_GetRandomBytes(char *destination, size_t count);
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/** \brief Get the precision of precise_t in units per second. Invocations of
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this function for the program's duration MUST return the same value.
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*/
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UINT64 I_GetPrecisePrecision(void);
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/** \brief Get the current time in rendering tics, including fractions.
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*/
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double I_GetFrameTime(void);
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/** \brief Sleeps for the given duration in milliseconds. Depending on the
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operating system's scheduler, the calling thread may give up its
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time slice for a longer duration. The implementation should give a
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best effort to sleep for the given duration, without spin-locking.
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Calling code should check the current precise time after sleeping
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and not assume the thread has slept for the expected duration.
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\return void
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*/
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void I_Sleep(UINT32 ms);
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/** \brief Get events
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Called by D_SRB2Loop,
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called before processing each tic in a frame.
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Quick syncronous operations are performed here.
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Can call D_PostEvent.
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*/
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void I_GetEvent(void);
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/** \brief Asynchronous interrupt functions should maintain private queues
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that are read by the synchronous functions
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to be converted into events.
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*/
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void I_OsPolling(void);
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// Either returns a null ticcmd,
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// or calls a loadable driver to build it.
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// This ticcmd will then be modified by the gameloop
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// for normal input.
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/** \brief Input for the first player
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*/
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ticcmd_t *I_BaseTiccmd(void);
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/** \brief Input for the sencond player
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*/
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ticcmd_t *I_BaseTiccmd2(void);
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/** \brief Called by M_Responder when quit is selected, return exit code 0
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*/
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void I_Quit(void) FUNCNORETURN;
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typedef enum
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{
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EvilForce = -1,
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//Constant
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ConstantForce = 0,
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//Ramp
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RampForce,
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//Periodics
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SquareForce,
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SineForce,
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TriangleForce,
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SawtoothUpForce,
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SawtoothDownForce,
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//MAX
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NumberofForces,
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} FFType;
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typedef struct JoyFF_s
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{
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INT32 ForceX; ///< The X of the Force's Vel
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INT32 ForceY; ///< The Y of the Force's Vel
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//All
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UINT32 Duration; ///< The total duration of the effect, in microseconds
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INT32 Gain; //< /The gain to be applied to the effect, in the range from 0 through 10,000.
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//All, CONSTANTFORCE -10,000 to 10,000
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INT32 Magnitude; ///< Magnitude of the effect, in the range from 0 through 10,000.
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//RAMPFORCE
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INT32 Start; ///< Magnitude at the start of the effect, in the range from -10,000 through 10,000.
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INT32 End; ///< Magnitude at the end of the effect, in the range from -10,000 through 10,000.
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//PERIODIC
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INT32 Offset; ///< Offset of the effect.
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UINT32 Phase; ///< Position in the cycle of the periodic effect at which playback begins, in the range from 0 through 35,999
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UINT32 Period; ///< Period of the effect, in microseconds.
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} JoyFF_t;
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/** \brief Forcefeedback for the first joystick
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\param Type what kind of Effect
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\param Effect Effect Info
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\return void
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*/
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void I_Tactile(FFType Type, const JoyFF_t *Effect);
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/** \brief Forcefeedback for the second joystick
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\param Type what kind of Effect
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\param Effect Effect Info
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\return void
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*/
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void I_Tactile2(FFType Type, const JoyFF_t *Effect);
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/** \brief to set up the first joystick scale
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*/
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void I_JoyScale(void);
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/** \brief to set up the second joystick scale
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*/
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void I_JoyScale2(void);
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// Called by D_SRB2Main.
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/** \brief to startup the first joystick
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*/
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void I_InitJoystick(void);
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/** \brief to startup the second joystick
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*/
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void I_InitJoystick2(void);
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/** \brief return the number of joystick on the system
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*/
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INT32 I_NumJoys(void);
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/** \brief The *I_GetJoyName function
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\param joyindex which joystick
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\return joystick name
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*/
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const char *I_GetJoyName(INT32 joyindex);
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#ifndef NOMUMBLE
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#include "p_mobj.h" // mobj_t
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#include "s_sound.h" // listener_t
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/** \brief to update Mumble of Player Postion
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*/
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void I_UpdateMumble(const mobj_t *mobj, const listener_t listener);
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#endif
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/** \brief Startup the first mouse
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*/
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void I_StartupMouse(void);
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/** \brief Startup the second mouse
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*/
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void I_StartupMouse2(void);
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/** \brief setup timer irq and user timer routine.
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*/
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void I_StartupTimer(void);
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/** \brief sample quit function
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*/
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typedef void (*quitfuncptr)();
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/** \brief add a list of functions to call at program cleanup
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\param (*func)() funcction to call at program cleanup
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\return void
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*/
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void I_AddExitFunc(void (*func)());
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/** \brief The I_RemoveExitFunc function
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\param (*func)() function to remove from the list
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\return void
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*/
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void I_RemoveExitFunc(void (*func)());
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/** \brief Setup signal handler, plus stuff for trapping errors and cleanly exit.
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*/
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INT32 I_StartupSystem(void);
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/** \brief Shutdown systems
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*/
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void I_ShutdownSystem(void);
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/** \brief The I_GetDiskFreeSpace function
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\param freespace a INT64 pointer to hold the free space amount
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\return void
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*/
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void I_GetDiskFreeSpace(INT64 *freespace);
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/** \brief find out the user's name
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*/
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char *I_GetUserName(void);
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/** \brief The I_mkdir function
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\param dirname string of mkidr
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\param unixright unix right
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\return status of new folder
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*/
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INT32 I_mkdir(const char *dirname, INT32 unixright);
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typedef struct {
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int FPU : 1; ///< FPU availabile
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int CPUID : 1; ///< CPUID instruction
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int RDTSC : 1; ///< RDTSC instruction
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int MMX : 1; ///< MMX features
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int MMXExt : 1; ///< MMX Ext. features
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int CMOV : 1; ///< Pentium Pro's "cmov"
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int AMD3DNow : 1; ///< 3DNow features
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int AMD3DNowExt: 1; ///< 3DNow! Ext. features
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int SSE : 1; ///< SSE features
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int SSE2 : 1; ///< SSE2 features
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int SSE3 : 1; ///< SSE3 features
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int IA64 : 1; ///< Running on IA64
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int AMD64 : 1; ///< Running on AMD64
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int AltiVec : 1; ///< AltiVec features
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int FPPE : 1; ///< floating-point precision error
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int PFC : 1; ///< TBD?
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int cmpxchg : 1; ///< ?
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int cmpxchg16b : 1; ///< ?
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int cmp8xchg16 : 1; ///< ?
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int FPE : 1; ///< FPU Emu
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int DEP : 1; ///< Data excution prevent
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int PPCMM64 : 1; ///< PowerPC Movemem 64bit ok?
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int ALPHAbyte : 1; ///< ?
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int PAE : 1; ///< Physical Address Extension
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int CPUs : 8;
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} CPUInfoFlags;
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/** \brief Info about CPU
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\return CPUInfo in bits
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*/
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const CPUInfoFlags *I_CPUInfo(void);
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/** \brief Find main WAD
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\return path to main WAD
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*/
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const char *I_LocateWad(void);
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/** \brief First Joystick's events
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*/
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void I_GetJoystickEvents(void);
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/** \brief Second Joystick's events
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*/
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void I_GetJoystick2Events(void);
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/** \brief Mouses events
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*/
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void I_GetMouseEvents(void);
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/** \brief Checks if the mouse needs to be grabbed
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*/
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void I_UpdateMouseGrab(void);
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char *I_GetEnv(const char *name);
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INT32 I_PutEnv(char *variable);
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/** \brief Put data in system clipboard
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*/
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INT32 I_ClipboardCopy(const char *data, size_t size);
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/** \brief Retrieve data from system clipboard
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*/
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const char *I_ClipboardPaste(void);
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void I_RegisterSysCommands(void);
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/** \brief Return the position of the cursor relative to the top-left window corner.
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*/
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void I_GetCursorPosition(INT32 *x, INT32 *y);
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/** \brief Sets whether the mouse is grabbed
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*/
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void I_SetMouseGrab(boolean grab);
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#endif
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