mirror of
https://github.com/nebiun/ledHeadWii.git
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526 lines
12 KiB
C
526 lines
12 KiB
C
/*
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LEDhead
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Copyright 2001, Peter Hirschberg
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Author: Peter Hirschberg
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The current version of this SOURCE CODE as well as the official
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versions of the LEDHEAD APPLICATION are available from my website
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at: http://www.peterhirschberg.com
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Based on the handheld electronic games by Mattel Electronics.
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All trademarks copyrighted by their respective owners. This
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program is not affiliated or endorsed by Mattel Electronics.
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License agreement:
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program (license.txt.h" if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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Email : peter@peterhirschberg.com
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Website : http://www.peterhirschberg.com
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*/
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#include "autorace.h"
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#include "slide1_png.h"
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#include "skislalom_screen_png.h"
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#include "skislalom_slide_png.h"
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#include "autorace_screen_png.h"
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#include "autorace_slide_png.h"
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#include "autorace_gear1_raw.h"
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#include "autorace_gear2_raw.h"
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#include "autorace_gear3_raw.h"
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#include "autorace_gear4_raw.h"
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#include "autorace_hit_raw.h"
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#include "autorace_time_raw.h"
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#include "autorace_win_raw.h"
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#include "skislalom_gear1_raw.h"
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#include "skislalom_gear2_raw.h"
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#include "skislalom_gear3_raw.h"
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#include "skislalom_gear4_raw.h"
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#include "skislalom_hit_raw.h"
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#include "skislalom_time_raw.h"
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#include "skislalom_win_raw.h"
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// images
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static GRRLIB_texImg *bmpScreen;
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static GRRLIB_texImg *bmpPowerSlide;
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static GRRLIB_texImg *bmpSlide;
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static int nStick = 1;
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static BOOL bEngineSound = FALSE;
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static BOOL bEngineSoundPlaying = FALSE;
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// **************************************************
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// Ski Slalom is the exact same game as Auto Race,
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// except the screen is flipped. I'm going to cheat
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// and reuse as much of the Auto Race code as I can.
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// This flag is used to toggle between the two games.
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static BOOL bSkiSlalom = FALSE;
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// **************************************************
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static void StartEngineSound();
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static void StopEngineSound();
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static Sound_t tcWaveRes[AUTORACE_SOUND_NSOUNDS];
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static Blip_t blip[AUTORACE_BLIP_COLUMNS][AUTORACE_BLIP_ROWS];
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static Stat_t digit[2];
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static Coord_t i_slider, i_power, i_gear;
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static Help_t autorace_help[] = {
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{ WK_1, { 87, 90} },
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{ WK_2, { 87, 144} },
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{ WK_BUD, {89, 220} },
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{ WK_LR, { 153, 264} }
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};
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static Help_t skislalom_help[] = {
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{ WK_1, { 87, 74} },
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{ WK_2, { 87, 148} },
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{ WK_BUD, {86, 205} },
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{ WK_LR, { 154, 285} }
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};
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//----------------------------------------------------------------------------
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//
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//
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void AutoRace_Help()
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{
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Platform_Help(autorace_help, sizeof(autorace_help)/sizeof(*autorace_help));
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}
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void SkiSlalom_Help()
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{
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Platform_Help(skislalom_help, sizeof(skislalom_help)/sizeof(*skislalom_help));
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}
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static BOOL bInited = FALSE;
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void SkiSlalom_Init()
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{
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int x, y;
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bSkiSlalom = TRUE;
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// Init sounds
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Sound_set(&tcWaveRes[AUTORACE_SOUND_GEAR0], skislalom_gear1_raw, skislalom_gear1_raw_size, 1324);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_GEAR1], skislalom_gear2_raw, skislalom_gear2_raw_size, 1051);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_GEAR2], skislalom_gear3_raw, skislalom_gear3_raw_size, 1045);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_GEAR3], skislalom_gear4_raw, skislalom_gear4_raw_size, 852);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_HIT], skislalom_hit_raw, skislalom_hit_raw_size, 137);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_TIME], skislalom_time_raw, skislalom_time_raw_size, 937);
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Sound_set(&tcWaveRes[AUTORACE_SOUND_WIN], skislalom_win_raw, skislalom_win_raw_size, 1275);
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// load images
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bmpScreen = GRRLIB_LoadTexture(skislalom_screen_png);
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bmpPowerSlide = GRRLIB_LoadTexture(slide1_png);
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bmpSlide = GRRLIB_LoadTexture(skislalom_slide_png);
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// images position
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i_slider.x = skislalom_slider_x;
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i_slider.y = skislalom_slider_y;
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i_power.x = skislalom_power_x;
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i_power.y = skislalom_power_y;
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i_gear.x = skislalom_gear_x;
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i_gear.y = skislalom_gear_y;
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// set blips
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for (y = 0; y < AUTORACE_BLIP_ROWS; y++){
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for (x = 0; x < AUTORACE_BLIP_COLUMNS; x++){
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Blip_t *pblip = &blip[x][y];
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pblip->x = (int)((x * ((float)skislalom_blip_xspacing/100)) + skislalom_blip_x);
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pblip->y = (int)((y * ((float)skislalom_blip_yspacing/100)) + skislalom_blip_y);
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pblip->status = -1;
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}
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}
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// set digits
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for(x = 0; x < 2; x++) {
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digit[x].x = skislalom_digit_x + x * skislalom_digit_spacing;
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digit[x].y = skislalom_digit_y;
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}
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if (!bInited)
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{
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PlatformSetInput(0);
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// turn on the game
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AutoRace_SetSkill(0);
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// start with game off
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AutoRace_PowerOff();
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bInited = TRUE;
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}
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}
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void AutoRace_Init()
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{
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int x, y;
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bSkiSlalom = FALSE;
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// Init sounds
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Sound_set(&tcWaveRes[0], autorace_gear1_raw, autorace_gear1_raw_size, 1324);
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Sound_set(&tcWaveRes[1], autorace_gear2_raw, autorace_gear2_raw_size, 1051);
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Sound_set(&tcWaveRes[2], autorace_gear3_raw, autorace_gear3_raw_size, 1045);
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Sound_set(&tcWaveRes[3], autorace_gear4_raw, autorace_gear4_raw_size, 852);
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Sound_set(&tcWaveRes[4], autorace_hit_raw, autorace_hit_raw_size, 137);
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Sound_set(&tcWaveRes[5], autorace_time_raw, autorace_time_raw_size, 937);
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Sound_set(&tcWaveRes[6], autorace_win_raw, autorace_win_raw_size, 1275);
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// load images
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bmpScreen = GRRLIB_LoadTexture(autorace_screen_png);
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bmpPowerSlide = GRRLIB_LoadTexture(slide1_png);
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bmpSlide = GRRLIB_LoadTexture(autorace_slide_png);
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// images position
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i_slider.x = autorace_slider_x;
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i_slider.y = autorace_slider_y;
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i_power.x = autorace_power_x;
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i_power.y = autorace_power_y;
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i_gear.x = autorace_gear_x;
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i_gear.y = autorace_gear_y;
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// set blips
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for (y = 0; y < AUTORACE_BLIP_ROWS; y++){
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for (x = 0; x < AUTORACE_BLIP_COLUMNS; x++){
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Blip_t *pblip = &blip[x][y];
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pblip->x = (int)((x * ((float)autorace_blip_xspacing/100)) + autorace_blip_x);
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pblip->y = (int)((y * ((float)autorace_blip_yspacing/100)) + autorace_blip_y);
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pblip->status = -1;
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}
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}
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// set digits
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for(x = 0; x < 2; x++) {
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digit[x].x = autorace_digit_x + x * autorace_digit_spacing;
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digit[x].y = autorace_digit_y;
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}
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if (!bInited)
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{
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PlatformSetInput(0);
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// turn on the game
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AutoRace_SetSkill(0);
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// start with game off
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AutoRace_PowerOff();
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bInited = TRUE;
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}
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}
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void AutoRace_StopSound()
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{
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bEngineSoundPlaying = FALSE;
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bEngineSound = FALSE;
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// stop all sounds...
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Platform_StopSound();
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}
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void AutoRace_DeInit()
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{
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// stop all sounds...
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AutoRace_StopSound();
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AutoRace_PowerOff();
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GRRLIB_FreeTexture(bmpScreen);
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GRRLIB_FreeTexture(bmpPowerSlide);
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GRRLIB_FreeTexture(bmpSlide);
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destroy_gear();
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bInited = FALSE;
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}
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void AutoRace_Paint()
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{
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int x, y;
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BOOL power = AutoRace_GetPower();
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int p_switch;
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p_switch = Platform_GetPowerSwitch(ONOFF_SWITCH);
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if(p_switch == -1 && power == TRUE) {
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AutoRace_PowerOff();
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}
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if(p_switch == 1 && power == FALSE) {
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AutoRace_PowerOn();
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}
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// paint the backdrop
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GRRLIB_DrawImg(realx(0), realy(0), bmpScreen, 0, SCALE_X, SCALE_Y, 0xFFFFFFFF);
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// draw gear
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draw_gear(i_gear.x, i_gear.y, 4 - AutoRace_GetSkill());
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// Draw stick
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switch (nStick) {
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case 0:
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x = 2;
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break;
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case 2:
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x = 27;
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break;
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case 1:
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default:
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x = 15;
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break;
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}
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GRRLIB_DrawImg(realx(i_slider.x+x), realy(i_slider.y), bmpSlide, 0, SCALE_X, SCALE_Y, 0xFFFFFFFF);
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// Draw power
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if (power) {
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GRRLIB_DrawImg(realx(i_power.x), realy(i_power.y+3), bmpPowerSlide, 0, SCALE_X, SCALE_Y, 0xFFFFFFFF);
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for (y = 0; y < AUTORACE_BLIP_ROWS; y++){
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for (x = 0; x < AUTORACE_BLIP_COLUMNS; x++){
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if(blip[x][y].status != -1)
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draw_vblip(blip[x][y].x, blip[x][y].y, blip[x][y].status);
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}
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}
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for(x = 0; x < sizeof(digit)/sizeof(*digit); x++)
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draw_digit(digit[x].x, digit[x].y, digit[x].val);
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}
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else {
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GRRLIB_DrawImg(realx(i_power.x), realy(i_power.y+16), bmpPowerSlide, 0, SCALE_X, SCALE_Y, 0xFFFFFFFF);
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}
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}
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void AutoRace_ClearScreen()
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{
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Platform_StartDraw();
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// erase the blips
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for (int y = 0; y < AUTORACE_BLIP_ROWS; y++){
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for (int x = 0; x < AUTORACE_BLIP_COLUMNS; x++){
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AutoRace_DrawBlip(BLIP_OFF, x, y);
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}
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}
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// erase the score display
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AutoRace_DrawTime(-1);
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Platform_EndDraw();
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}
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void AutoRace_PlaySound(int nSound, unsigned int nFlags)
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{
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if ((nFlags & PLAYSOUNDFLAGS_PRIORITY) || bEngineSoundPlaying)
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{
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// stop any playing sounds first
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Platform_StopSound();
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}
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// this sound will cut off any looping sounds
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// note this so we can restart them later
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bEngineSoundPlaying = FALSE;
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Platform_PlaySound(&tcWaveRes[nSound], nFlags);
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}
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//----------------------------------------------------------------------------
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// local fcn's
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//
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static void StartEngineSound()
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{
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// if gear has changed, switch sounds
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static int nOldGear = -1;
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int nGear = AutoRace_GetSkill();
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if (nGear != nOldGear)
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{
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AutoRace_StopEngineSound();
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nOldGear = nGear;
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}
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if (!bEngineSoundPlaying)
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{
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int nSound = AutoRace_GetSkill();
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unsigned int nSoundFlags = PLAYSOUNDFLAGS_LOOP | PLAYSOUNDFLAGS_ASYNC;
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Platform_PlaySound(&tcWaveRes[nSound], nSoundFlags);
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// mark the sound as playing
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bEngineSoundPlaying = TRUE;
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}
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}
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static void StopEngineSound()
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{
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if (bEngineSoundPlaying)
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{
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Platform_StopSound();
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bEngineSoundPlaying = FALSE;
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}
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}
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void AutoRace_PlayEngineSound()
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{
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if (!bEngineSound)
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{
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bEngineSound = TRUE;
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StartEngineSound();
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}
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}
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void AutoRace_StopEngineSound()
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{
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if (bEngineSound)
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{
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bEngineSound = FALSE;
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StopEngineSound();
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}
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}
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void AutoRace_DrawBlip(int nBright, int x, int y)
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{
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if (bSkiSlalom)
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{
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// flip the screen for ski slalom
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y = (AUTORACE_BLIP_ROWS - 1) - y;
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}
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switch(nBright){
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case BLIP_DIM:
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blip[x][y].status = BLIP_TYPE_NORMAL;
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break;
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case BLIP_BRIGHT:
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blip[x][y].status = BLIP_TYPE_BRIGHT;
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break;
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case BLIP_OFF:
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default:
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blip[x][y].status = -1;
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break;
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}
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// update the looped engine sound
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// this is not a good place for this
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// should be in some sort of draw frame function
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// maybe need to add that to the game structure
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if (bEngineSound){
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StartEngineSound();
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} else {
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StopEngineSound();
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}
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}
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void AutoRace_DrawTime(int nTime)
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{
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if (nTime == -1){
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// erase the display
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digit[0].val = -1;
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digit[1].val = -1;
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} else {
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// draw 10s place
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if(nTime >= 10)
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digit[0].val = nTime/10;
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else
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digit[0].val = -1;
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// draw 1s place
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digit[1].val = nTime%10 ;
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}
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}
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int AutoRace_GetInputSTICK()
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{
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// check the keys
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if (Platform_GetInputLEFT()
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&& !Platform_GetInputRIGHT())
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{
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if (nStick != 0)
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{
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nStick = 0;
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}
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return nStick;
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}
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if (Platform_GetInputRIGHT()
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&& !Platform_GetInputLEFT())
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{
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if (nStick != 2)
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{
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nStick = 2;
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}
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return nStick;
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}
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// leave it where it was
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// return nStick;
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if (nStick != 1)
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{
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nStick = 1;
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}
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return nStick;
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}
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int AutoRace_GetInputGEAR(BOOL *pChange)
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{
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static BOOL bLastB = FALSE;
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static BOOL bLastC = FALSE;
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if (pChange){ *pChange = FALSE; }
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int gear = AutoRace_GetSkill();
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// check the keys
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if (Platform_GetInput1())
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{
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if (!bLastB)
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{
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// shift up
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if (gear < 3)
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{
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++gear;
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AutoRace_SetSkill(gear);
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if (pChange)
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{
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*pChange = TRUE;
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}
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}
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bLastB = TRUE;
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}
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}
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else
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{
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bLastB = FALSE;
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}
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if (Platform_GetInput2())
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{
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if (!bLastC)
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{
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// shift down
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if (gear > 0)
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{
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--gear;
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AutoRace_SetSkill(gear);
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if (pChange)
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{
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*pChange = TRUE;
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}
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}
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bLastC = TRUE;
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}
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}
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else
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{
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bLastC = FALSE;
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}
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return gear;
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}
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void AutoRace_GetSize(int *w, int *h)
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{
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*w = bmpScreen->w;
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*h = bmpScreen->h;
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}
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