9bd1ba7c47
which included commits to RCS files with non-trunk default branches.
559 lines
14 KiB
C
559 lines
14 KiB
C
/*
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THE COMPUTER CODE CONTAINED HEREIN IS THE SOLE PROPERTY OF PARALLAX
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SOFTWARE CORPORATION ("PARALLAX"). PARALLAX, IN DISTRIBUTING THE CODE TO
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END-USERS, AND SUBJECT TO ALL OF THE TERMS AND CONDITIONS HEREIN, GRANTS A
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ROYALTY-FREE, PERPETUAL LICENSE TO SUCH END-USERS FOR USE BY SUCH END-USERS
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IN USING, DISPLAYING, AND CREATING DERIVATIVE WORKS THEREOF, SO LONG AS
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SUCH USE, DISPLAY OR CREATION IS FOR NON-COMMERCIAL, ROYALTY OR REVENUE
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FREE PURPOSES. IN NO EVENT SHALL THE END-USER USE THE COMPUTER CODE
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CONTAINED HEREIN FOR REVENUE-BEARING PURPOSES. THE END-USER UNDERSTANDS
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AND AGREES TO THE TERMS HEREIN AND ACCEPTS THE SAME BY USE OF THIS FILE.
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COPYRIGHT 1993-1999 PARALLAX SOFTWARE CORPORATION. ALL RIGHTS RESERVED.
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*/
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#pragma off (unreferenced)
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static char rcsid[] = "$Id: mouse.c,v 1.1.1.1 2001-01-19 03:30:14 bradleyb Exp $";
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#pragma on (unreferenced)
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#include <stdlib.h>
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#include <stdio.h>
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#include <conio.h>
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#include <dos.h>
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#include <i86.h>
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#include <string.h>
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#include "error.h"
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#include "fix.h"
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#include "dpmi.h"
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#include "mouse.h"
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#include "timer.h"
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#define ME_CURSOR_MOVED (1<<0)
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#define ME_LB_P (1<<1)
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#define ME_LB_R (1<<2)
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#define ME_RB_P (1<<3)
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#define ME_RB_R (1<<4)
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#define ME_MB_P (1<<5)
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#define ME_MB_R (1<<6)
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#define ME_OB_P (1<<7)
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#define ME_OB_R (1<<8)
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#define ME_X_C (1<<9)
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#define ME_Y_C (1<<10)
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#define ME_Z_C (1<<11)
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#define ME_P_C (1<<12)
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#define ME_B_C (1<<13)
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#define ME_H_C (1<<14)
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#define ME_O_C (1<<15)
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#define MOUSE_MAX_BUTTONS 11
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typedef struct event_info {
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short x;
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short y;
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short z;
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short pitch;
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short bank;
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short heading;
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ushort button_status;
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ushort device_dependant;
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} event_info;
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typedef struct mouse_info {
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fix ctime;
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ubyte cyberman;
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int num_buttons;
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ubyte pressed[MOUSE_MAX_BUTTONS];
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fix time_went_down[MOUSE_MAX_BUTTONS];
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fix time_held_down[MOUSE_MAX_BUTTONS];
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uint num_downs[MOUSE_MAX_BUTTONS];
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uint num_ups[MOUSE_MAX_BUTTONS];
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event_info *x_info;
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ushort button_status;
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} mouse_info;
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typedef struct cyberman_info {
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ubyte device_type;
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ubyte major_version;
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ubyte minor_version;
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ubyte x_descriptor;
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ubyte y_descriptor;
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ubyte z_descriptor;
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ubyte pitch_descriptor;
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ubyte roll_descriptor;
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ubyte yaw_descriptor;
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ubyte reserved;
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} cyberman_info;
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static mouse_info Mouse;
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static int Mouse_installed = 0;
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#pragma off (check_stack)
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void _loadds far mouse_handler (int m_ax, int mbx, int mcx, int mdx, int msi, int mdi)
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{
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#pragma aux mouse_handler parm [EAX] [EBX] [ECX] [EDX] [ESI] [EDI]
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Mouse.ctime = timer_get_fixed_secondsX();
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if (m_ax & ME_LB_P) { // left button pressed
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if (!Mouse.pressed[MB_LEFT]) {
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Mouse.pressed[MB_LEFT] = 1;
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Mouse.time_went_down[MB_LEFT] = Mouse.ctime;
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}
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Mouse.num_downs[MB_LEFT]++;
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} else if (m_ax & ME_LB_R ) { // left button released
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if (Mouse.pressed[MB_LEFT]) {
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Mouse.pressed[MB_LEFT] = 0;
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Mouse.time_held_down[MB_LEFT] += Mouse.ctime-Mouse.time_went_down[MB_LEFT];
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}
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Mouse.num_ups[MB_LEFT]++;
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}
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if (m_ax & ME_RB_P ) { // right button pressed
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if (!Mouse.pressed[MB_RIGHT]) {
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Mouse.pressed[MB_RIGHT] = 1;
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Mouse.time_went_down[MB_RIGHT] = Mouse.ctime;
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}
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Mouse.num_downs[MB_RIGHT]++;
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} else if (m_ax & ME_RB_R ) {// right button released
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if (Mouse.pressed[MB_RIGHT]) {
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Mouse.pressed[MB_RIGHT] = 0;
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Mouse.time_held_down[MB_RIGHT] += Mouse.ctime-Mouse.time_went_down[MB_RIGHT];
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}
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Mouse.num_ups[MB_RIGHT]++;
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}
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if (m_ax & ME_MB_P ) { // middle button pressed
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if (!Mouse.pressed[MB_MIDDLE]) {
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Mouse.pressed[MB_MIDDLE] = 1;
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Mouse.time_went_down[MB_MIDDLE] = Mouse.ctime;
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}
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Mouse.num_downs[MB_MIDDLE]++;
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} else if (m_ax & ME_MB_R ) { // middle button released
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if (Mouse.pressed[MB_MIDDLE]) {
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Mouse.pressed[MB_MIDDLE] = 0;
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Mouse.time_held_down[MB_MIDDLE] += Mouse.ctime-Mouse.time_went_down[MB_MIDDLE];
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}
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Mouse.num_ups[MB_MIDDLE]++;
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}
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if (Mouse.cyberman && (m_ax & (ME_Z_C|ME_P_C|ME_B_C|ME_H_C))) {
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Mouse.x_info = (event_info *)((msi & 0xFFFF) << 4);
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if (m_ax & ME_Z_C ) { // z axis changed
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if (Mouse.pressed[MB_Z_UP]) {
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// z up released
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Mouse.pressed[MB_Z_UP] = 0;
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Mouse.time_held_down[MB_Z_UP] += Mouse.ctime-Mouse.time_went_down[MB_Z_UP];
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Mouse.num_ups[MB_Z_UP]++;
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} else if ( Mouse.x_info->z>0 ) {
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// z up pressed
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Mouse.pressed[MB_Z_UP] = 1;
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Mouse.time_went_down[MB_Z_UP]=Mouse.ctime;
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Mouse.num_downs[MB_Z_UP]++;
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}
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if (Mouse.pressed[MB_Z_DOWN]) {
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// z down released
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Mouse.pressed[MB_Z_DOWN] = 0;
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Mouse.time_held_down[MB_Z_DOWN] += Mouse.ctime-Mouse.time_went_down[MB_Z_DOWN];
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Mouse.num_ups[MB_Z_DOWN]++;
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} else if ( Mouse.x_info->z<0 ) {
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// z down pressed
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Mouse.pressed[MB_Z_DOWN] = 1;
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Mouse.time_went_down[MB_Z_DOWN]=Mouse.ctime;
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Mouse.num_downs[MB_Z_DOWN]++;
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}
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}
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if (m_ax & ME_P_C ) { // pitch changed
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if (Mouse.pressed[MB_PITCH_BACKWARD]) {
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// pitch backward released
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Mouse.pressed[MB_PITCH_BACKWARD] = 0;
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Mouse.time_held_down[MB_PITCH_BACKWARD] += Mouse.ctime-Mouse.time_went_down[MB_PITCH_BACKWARD];
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Mouse.num_ups[MB_PITCH_BACKWARD]++;
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} else if ( Mouse.x_info->pitch>0 ) {
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// pitch backward pressed
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Mouse.pressed[MB_PITCH_BACKWARD] = 1;
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Mouse.time_went_down[MB_PITCH_BACKWARD]=Mouse.ctime;
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Mouse.num_downs[MB_PITCH_BACKWARD]++;
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}
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if (Mouse.pressed[MB_PITCH_FORWARD]) {
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// pitch forward released
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Mouse.pressed[MB_PITCH_FORWARD] = 0;
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Mouse.time_held_down[MB_PITCH_FORWARD] += Mouse.ctime-Mouse.time_went_down[MB_PITCH_FORWARD];
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Mouse.num_ups[MB_PITCH_FORWARD]++;
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} else if ( Mouse.x_info->pitch<0 ) {
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// pitch forward pressed
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Mouse.pressed[MB_PITCH_FORWARD] = 1;
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Mouse.time_went_down[MB_PITCH_FORWARD]=Mouse.ctime;
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Mouse.num_downs[MB_PITCH_FORWARD]++;
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}
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}
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if (m_ax & ME_B_C ) { // bank changed
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if (Mouse.pressed[MB_BANK_LEFT]) {
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// bank left released
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Mouse.pressed[MB_BANK_LEFT] = 0;
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Mouse.time_held_down[MB_BANK_LEFT] += Mouse.ctime-Mouse.time_went_down[MB_BANK_LEFT];
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Mouse.num_ups[MB_BANK_LEFT]++;
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} else if ( Mouse.x_info->bank>0 ) {
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// bank left pressed
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Mouse.pressed[MB_BANK_LEFT] = 1;
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Mouse.time_went_down[MB_BANK_LEFT]=Mouse.ctime;
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Mouse.num_downs[MB_BANK_LEFT]++;
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}
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if (Mouse.pressed[MB_BANK_RIGHT]) {
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// bank right released
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Mouse.pressed[MB_BANK_RIGHT] = 0;
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Mouse.time_held_down[MB_BANK_RIGHT] += Mouse.ctime-Mouse.time_went_down[MB_BANK_RIGHT];
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Mouse.num_ups[MB_BANK_RIGHT]++;
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} else if ( Mouse.x_info->bank<0 ) {
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// bank right pressed
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Mouse.pressed[MB_BANK_RIGHT] = 1;
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Mouse.time_went_down[MB_BANK_RIGHT]=Mouse.ctime;
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Mouse.num_downs[MB_BANK_RIGHT]++;
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}
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}
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if (m_ax & ME_H_C ) { // heading changed
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if (Mouse.pressed[MB_HEAD_LEFT]) {
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// head left released
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Mouse.pressed[MB_HEAD_LEFT] = 0;
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Mouse.time_held_down[MB_HEAD_LEFT] += Mouse.ctime-Mouse.time_went_down[MB_HEAD_LEFT];
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Mouse.num_ups[MB_HEAD_LEFT]++;
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} else if ( Mouse.x_info->heading>0 ) {
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// head left pressed
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Mouse.pressed[MB_HEAD_LEFT] = 1;
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Mouse.time_went_down[MB_HEAD_LEFT]=Mouse.ctime;
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Mouse.num_downs[MB_HEAD_LEFT]++;
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}
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if (Mouse.pressed[MB_HEAD_RIGHT]) {
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// head right released
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Mouse.pressed[MB_HEAD_RIGHT] = 0;
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Mouse.time_held_down[MB_HEAD_RIGHT] += Mouse.ctime-Mouse.time_went_down[MB_HEAD_RIGHT];
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Mouse.num_ups[MB_HEAD_RIGHT]++;
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} else if ( Mouse.x_info->heading<0 ) {
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// head right pressed
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Mouse.pressed[MB_HEAD_RIGHT] = 1;
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Mouse.time_went_down[MB_HEAD_RIGHT]=Mouse.ctime;
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Mouse.num_downs[MB_HEAD_RIGHT]++;
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}
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}
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}
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}
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void mouse_handler_end (void) // dummy functions
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{
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}
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#pragma on (check_stack)
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//--------------------------------------------------------
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// returns 0 if no mouse
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// else number of buttons
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int mouse_init(int enable_cyberman)
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{
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dpmi_real_regs rr;
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cyberman_info *ci;
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struct SREGS sregs;
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union REGS inregs, outregs;
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ubyte *Mouse_dos_mem;
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if (Mouse_installed)
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return Mouse.num_buttons;
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if (_dos_getvect(0x33) == NULL) {
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// No mouse driver loaded
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return 0;
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}
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// Reset the mouse driver
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memset( &inregs, 0, sizeof(inregs) );
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inregs.w.ax = 0;
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int386(0x33, &inregs, &outregs);
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if (outregs.w.ax != 0xffff)
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return 0;
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Mouse.num_buttons = outregs.w.bx;
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Mouse.cyberman = 0;
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// Enable mouse driver
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memset( &inregs, 0, sizeof(inregs) );
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inregs.w.ax = 0x0020;
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int386(0x33, &inregs, &outregs);
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if (outregs.w.ax != 0xffff )
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return 0;
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if ( enable_cyberman ) {
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Mouse_dos_mem = dpmi_get_temp_low_buffer( 64 );
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if (Mouse_dos_mem==NULL) {
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printf( "Unable to allocate DOS buffer in mouse.c\n" );
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} else {
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// Check for Cyberman...
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memset( &rr, 0, sizeof(dpmi_real_regs) );
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rr.es = DPMI_real_segment(Mouse_dos_mem);
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rr.edx = DPMI_real_offset(Mouse_dos_mem);
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rr.eax = 0x53c1;
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dpmi_real_int386x( 0x33, &rr );
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if (rr.eax==1) {
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// SWIFT functions supported
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ci = (cyberman_info *)Mouse_dos_mem;
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if (ci->device_type==1) { // Cyberman
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Mouse.cyberman = 1;
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//printf( "Cyberman mouse detected\n" );
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Mouse.num_buttons = 11;
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}
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}
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}
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}
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if (!dpmi_lock_region(&Mouse,sizeof(mouse_info))) {
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Error( "Unable to lock mouse data region" );
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}
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if (!dpmi_lock_region((void near *)mouse_handler,(char *)mouse_handler_end - (char near *)mouse_handler)) {
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Error( "Unable to lock mouse handler" );
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}
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// Install mouse handler
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memset( &inregs, 0, sizeof(inregs));
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memset( &sregs, 0, sizeof(sregs));
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inregs.w.ax = 0xC;
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inregs.w.cx = ME_LB_P|ME_LB_R|ME_RB_P|ME_RB_R|ME_MB_P|ME_MB_R; // watch all 3 button ups/downs
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if (Mouse.cyberman)
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inregs.w.cx |= ME_Z_C| ME_P_C| ME_B_C| ME_H_C; // if using a cyberman, also watch z, pitch, bank, heading.
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inregs.x.edx = FP_OFF(mouse_handler);
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sregs.es = FP_SEG(mouse_handler);
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int386x(0x33, &inregs, &outregs, &sregs);
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Mouse_installed = 1;
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atexit( mouse_close );
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mouse_flush();
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return Mouse.num_buttons;
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}
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void mouse_close()
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{
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struct SREGS sregs;
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union REGS inregs, outregs;
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if (Mouse_installed) {
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Mouse_installed = 0;
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// clear mouse handler by setting flags to 0.
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memset( &inregs, 0, sizeof(inregs));
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memset( &sregs, 0, sizeof(sregs));
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inregs.w.ax = 0xC;
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inregs.w.cx = 0; // disable event handler by setting to zero.
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inregs.x.edx = 0;
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sregs.es = 0;
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int386x(0x33, &inregs, &outregs, &sregs);
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}
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}
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void mouse_set_limits( int x1, int y1, int x2, int y2 )
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{
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union REGS inregs, outregs;
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if (!Mouse_installed) return;
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memset( &inregs, 0, sizeof(inregs));
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inregs.w.ax = 0x7; // Set Horizontal Limits for Pointer
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inregs.w.cx = x1;
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inregs.w.dx = x2;
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int386(0x33, &inregs, &outregs);
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memset( &inregs, 0, sizeof(inregs));
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inregs.w.ax = 0x8; // Set Vertical Limits for Pointer
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inregs.w.cx = y1;
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inregs.w.dx = y2;
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int386(0x33, &inregs, &outregs);
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}
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void mouse_get_pos( int *x, int *y)
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{
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union REGS inregs, outregs;
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if (!Mouse_installed) {
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*x = *y = 0;
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return;
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}
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memset( &inregs, 0, sizeof(inregs));
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inregs.w.ax = 0x3; // Get Mouse Position and Button Status
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int386(0x33, &inregs, &outregs);
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*x = (short)outregs.w.cx;
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*y = (short)outregs.w.dx;
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}
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void mouse_get_delta( int *dx, int *dy )
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{
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union REGS inregs, outregs;
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if (!Mouse_installed) {
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*dx = *dy = 0;
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return;
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}
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memset( &inregs, 0, sizeof(inregs));
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inregs.w.ax = 0xb; // Read Mouse motion counters
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int386(0x33, &inregs, &outregs);
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*dx = (short)outregs.w.cx;
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*dy = (short)outregs.w.dx;
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}
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int mouse_get_btns()
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{
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int i;
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uint flag=1;
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int status = 0;
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if (!Mouse_installed)
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return 0;
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for (i=0; i<MOUSE_MAX_BUTTONS; i++ ) {
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if (Mouse.pressed[i])
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status |= flag;
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flag <<= 1;
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}
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return status;
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}
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void mouse_set_pos( int x, int y)
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{
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union REGS inregs, outregs;
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if (!Mouse_installed)
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return;
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memset( &inregs, 0, sizeof(inregs));
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inregs.w.ax = 0x4; // Set Mouse Pointer Position
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inregs.w.cx = x;
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inregs.w.dx = y;
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int386(0x33, &inregs, &outregs);
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}
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void mouse_flush()
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{
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int i;
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fix CurTime;
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if (!Mouse_installed)
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return;
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_disable();
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//Clear the mouse data
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CurTime =timer_get_fixed_secondsX();
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for (i=0; i<MOUSE_MAX_BUTTONS; i++ ) {
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Mouse.pressed[i] = 0;
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Mouse.time_went_down[i] = CurTime;
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Mouse.time_held_down[i] = 0;
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Mouse.num_downs[i]=0;
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Mouse.num_ups[i]=0;
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}
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_enable();
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}
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// Returns how many times this button has went down since last call.
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int mouse_button_down_count(int button)
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{
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int count;
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if (!Mouse_installed)
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return 0;
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_disable();
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count = Mouse.num_downs[button];
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Mouse.num_downs[button]=0;
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_enable();
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return count;
|
|
}
|
|
|
|
// Returns 1 if this button is currently down
|
|
int mouse_button_state(int button)
|
|
{
|
|
int state;
|
|
|
|
if (!Mouse_installed)
|
|
return 0;
|
|
|
|
_disable();
|
|
|
|
state = Mouse.pressed[button];
|
|
|
|
_enable();
|
|
|
|
return state;
|
|
}
|
|
|
|
|
|
|
|
// Returns how long this button has been down since last call.
|
|
fix mouse_button_down_time(int button)
|
|
{
|
|
fix time_down, time;
|
|
|
|
if (!Mouse_installed)
|
|
return 0;
|
|
|
|
_disable();
|
|
|
|
if ( !Mouse.pressed[button] ) {
|
|
time_down = Mouse.time_held_down[button];
|
|
Mouse.time_held_down[button] = 0;
|
|
} else {
|
|
time = timer_get_fixed_secondsX();
|
|
time_down = time - Mouse.time_went_down[button];
|
|
Mouse.time_went_down[button] = time;
|
|
}
|
|
|
|
_enable();
|
|
|
|
return time_down;
|
|
}
|
|
|
|
void mouse_get_cyberman_pos( int *x, int *y )
|
|
{
|
|
dpmi_real_regs rr;
|
|
event_info * ei;
|
|
ubyte *Mouse_dos_mem;
|
|
|
|
if ( (!Mouse_installed) || (!Mouse.cyberman) ) {
|
|
*x = *y = 0;
|
|
return;
|
|
}
|
|
|
|
Mouse_dos_mem = dpmi_get_temp_low_buffer( 64 );
|
|
|
|
if ( !Mouse_dos_mem ) {
|
|
*x = *y = 0;
|
|
return;
|
|
}
|
|
|
|
|
|
memset( &rr, 0, sizeof(dpmi_real_regs) );
|
|
rr.es = DPMI_real_segment(Mouse_dos_mem);
|
|
rr.edx = DPMI_real_offset(Mouse_dos_mem);
|
|
rr.eax = 0x5301;
|
|
dpmi_real_int386x( 0x33, &rr );
|
|
|
|
ei = (event_info *)Mouse_dos_mem;
|
|
|
|
*x = (((ei->x+8128)*256)/(8064+8128+1)) - 127;
|
|
*y = (((ei->y+8128)*256)/(8064+8128+1)) - 127;
|
|
|
|
}
|
|
|