586 lines
8.7 KiB
C++
586 lines
8.7 KiB
C++
#include "Caret.h"
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#include <string.h>
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#include "WindowsWrapper.h"
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#include "Draw.h"
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#include "Game.h"
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#include "Triangle.h"
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#define CARET_MAX 0x40
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CARET gCrt[CARET_MAX];
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CARET_TABLE gCaretTable[18] = {
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{0, 0},
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{0x800, 0x800},
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{0x1000, 0x1000},
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{0x1000, 0x1000},
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{0x1000, 0x1000},
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{0x800, 0x800},
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{0x1000, 0x1000},
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{0x800, 0x800},
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{0x1000, 0x1000},
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{0x1000, 0x1000},
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{0x3800, 0x1000},
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{0x800, 0x800},
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{0x2000, 0x2000},
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{0x800, 0x800},
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{0x2800, 0x2800},
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{0x800, 0x800},
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{0x2800, 0x800},
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{0x6800, 0x800}
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};
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void InitCaret(void)
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{
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memset(gCrt, 0, sizeof(gCrt));
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}
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void ActCaret00(CARET *crt)
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{
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(void)crt;
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}
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void ActCaret01(CARET *crt)
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{
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RECT rcLeft[4] = {
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{0, 64, 8, 72},
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{8, 64, 16, 72},
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{16, 64, 24, 72},
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{24, 64, 32, 72},
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};
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RECT rcRight[4] = {
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{64, 24, 72, 32},
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{72, 24, 80, 32},
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{80, 24, 88, 32},
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{88, 24, 96, 32},
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};
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if (crt->act_no == 0)
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{
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crt->act_no = 1;
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crt->xm = Random(-0x400, 0x400);
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crt->ym = Random(-0x400, 0);
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}
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crt->ym += 0x40;
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crt->x += crt->xm;
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crt->y += crt->ym;
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if (++crt->ani_wait > 5)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 3)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rcLeft' and 'rcRight'
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if (crt->direct == 0)
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crt->rect = rcLeft[crt->ani_no];
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else
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crt->rect = rcRight[crt->ani_no];
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}
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void ActCaret02(CARET *crt)
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{
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RECT rect_left[4] = {
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{0, 32, 16, 48},
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{16, 32, 32, 48},
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{32, 32, 48, 48},
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{48, 32, 64, 48},
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};
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RECT rect_right[4] = {
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{176, 0, 192, 16},
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{192, 0, 208, 16},
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{208, 0, 224, 16},
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{224, 0, 240, 16},
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};
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RECT rect_up[3] = {
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{0, 32, 16, 48},
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{32, 32, 48, 48},
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{16, 32, 32, 48},
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};
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switch (crt->direct)
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{
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case 0:
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crt->ym -= 0x10;
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crt->y += crt->ym;
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if (++crt->ani_wait > 5)
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{
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crt->ani_wait = 0;
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++crt->ani_no;
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}
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if (crt->ani_no > 3)
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crt->cond = 0;
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// Note that 'crt->ani_no' can exceed the size of 'rect_left'
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crt->rect = rect_left[crt->ani_no];
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break;
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case 2:
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if (++crt->ani_wait > 2)
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{
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crt->ani_wait = 0;
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++crt->ani_no;
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}
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if (crt->ani_no > 3)
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crt->cond = 0;
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// Note that 'crt->ani_no' can exceed the size of 'rect_right'
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crt->rect = rect_right[crt->ani_no];
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break;
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case 1:
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crt->rect = rect_up[++crt->ani_wait / 2 % 3];
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if (crt->ani_wait > 24)
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crt->cond = 0;
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break;
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}
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}
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void ActCaret03(CARET *crt)
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{
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RECT rect[4] = {
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{0, 48, 16, 64},
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{16, 48, 32, 64},
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{32, 48, 48, 64},
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{48, 48, 64, 64},
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};
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if (++crt->ani_wait > 2)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 3)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rect'
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crt->rect = rect[crt->ani_no];
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}
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void ActCaret04(CARET *crt)
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{
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RECT rect[9] = {
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{64, 32, 80, 48},
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{80, 32, 96, 48},
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{96, 32, 112, 48},
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{64, 48, 80, 64},
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{80, 48, 96, 64},
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{96, 48, 112, 64},
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{64, 64, 80, 80},
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{80, 64, 96, 80},
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{96, 64, 112, 80},
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};
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if (++crt->ani_wait > 1)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 2)
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crt->cond = 0;
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}
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crt->rect = rect[(crt->direct * 3) + crt->ani_no];
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}
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void ActCaret05(CARET *crt)
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{
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RECT rect[7] = {
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{32, 64, 40, 72},
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{32, 72, 40, 80},
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{40, 64, 48, 72},
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{40, 72, 48, 80},
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{40, 64, 48, 72},
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{40, 72, 48, 80},
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{40, 64, 48, 72},
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};
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if (++crt->ani_wait > 4)
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{
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crt->ani_wait = 0;
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++crt->ani_no;
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}
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if (crt->ani_no > 6)
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crt->cond = 0;
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crt->x += 0x80;
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crt->y -= 0x80;
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// Note that 'crt->ani_no' can exceed the size of 'rect'
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crt->rect = rect[crt->ani_no];
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}
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void ActCaret07(CARET *crt)
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{
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RECT rcLeft[7] = {
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{56, 0, 64, 8},
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{64, 0, 72, 8},
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{72, 0, 80, 8},
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{80, 0, 88, 8},
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{88, 0, 96, 8},
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{96, 0, 104, 8},
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{104, 0, 112, 8},
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};
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if (++crt->ani_wait > 1)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 6)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of rcLeft
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crt->rect = rcLeft[crt->ani_no];
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switch (crt->direct)
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{
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case 0:
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crt->x -= 2 * 0x200;
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break;
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case 1:
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crt->y -= 2 * 0x200;
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break;
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case 2:
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crt->x += 2 * 0x200;
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break;
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case 3:
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crt->y += 2 * 0x200;
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break;
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}
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}
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void ActCaret08(CARET *crt)
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{
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RECT rcLeft = {16, 80, 32, 96};
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RECT rcRight = {32, 80, 48, 96};
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if (crt->direct == 0)
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crt->rect = rcLeft;
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else
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crt->rect = rcRight;
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}
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void ActCaret09(CARET *crt)
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{
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RECT rcLeft = {0, 80, 16, 96};
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RECT rcRight = {48, 64, 64, 80};
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if (++crt->ani_wait < 5)
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crt->y -= 0x800;
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if (crt->ani_wait == 32)
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crt->cond = 0;
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if (crt->direct == 0)
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crt->rect = rcLeft;
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else
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crt->rect = rcRight;
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}
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void ActCaret10(CARET *crt)
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{
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RECT rcLeft[2] = {
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{0, 0, 56, 16},
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{0, 16, 56, 32},
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};
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RECT rcRight[2] = {
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{0, 96, 56, 112},
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{0, 112, 56, 128},
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};
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++crt->ani_wait;
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if (crt->direct == 0)
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{
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if (crt->ani_wait < 20)
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crt->y -= 2 * 0x200;
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if (crt->ani_wait == 80)
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crt->cond = 0;
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}
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else
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{
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if (crt->ani_wait < 20)
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crt->y -= 1 * 0x200;
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if (crt->ani_wait == 80)
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crt->cond = 0;
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}
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if (crt->direct == 0)
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crt->rect = rcLeft[crt->ani_wait / 2 % 2];
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else
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crt->rect = rcRight[crt->ani_wait / 2 % 2];
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}
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void ActCaret11(CARET *crt)
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{
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unsigned char deg;
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if (crt->act_no == 0)
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{
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crt->act_no = 1;
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deg = Random(0, 0xFF);
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crt->xm = GetCos(deg) * 2;
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crt->ym = GetSin(deg) * 2;
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}
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crt->x += crt->xm;
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crt->y += crt->ym;
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RECT rcRight[7] = {
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{56, 8, 64, 16},
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{64, 8, 72, 16},
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{72, 8, 80, 16},
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{80, 8, 88, 16},
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{88, 8, 96, 16},
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{96, 8, 104, 16},
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{104, 8, 112, 16},
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};
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if (++crt->ani_wait > 2)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 6)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rcRight'
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crt->rect = rcRight[crt->ani_no];
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}
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void ActCaret12(CARET *crt)
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{
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RECT rcLeft[2] = {
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{112, 0, 144, 32},
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{144, 0, 176, 32},
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};
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if (++crt->ani_wait > 2)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 1)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rcLeft'
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crt->rect = rcLeft[crt->ani_no];
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}
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void ActCaret13(CARET *crt)
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{
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RECT rcLeft[2] = {
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{56, 24, 64, 32},
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{0, 0, 0, 0},
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};
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if (crt->act_no == 0)
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{
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crt->act_no = 1;
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switch (crt->direct)
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{
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case 0:
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crt->xm = Random(-0x600, 0x600);
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crt->ym = Random(-0x200, 0x200);
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break;
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case 1:
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crt->ym = -0x200 * Random(1, 3);
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break;
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}
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}
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switch (crt->direct)
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{
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case 0:
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crt->xm = (crt->xm * 4) / 5;
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crt->ym = (crt->ym * 4) / 5;
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break;
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}
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crt->x += crt->xm;
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crt->y += crt->ym;
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if (++crt->ani_wait > 20)
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crt->cond = 0;
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crt->rect = rcLeft[crt->ani_wait / 2 % 2];
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if (crt->direct == 5)
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crt->x -= 4 * 0x200;
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}
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void ActCaret14(CARET *crt)
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{
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RECT rect[5] = {
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{0, 96, 40, 136},
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{40, 96, 80, 136},
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{80, 96, 120, 136},
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{120, 96, 160, 136},
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{160, 96, 200, 136},
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};
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if (++crt->ani_wait > 1)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 4)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rect'
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crt->rect = rect[crt->ani_no];
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}
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void ActCaret15(CARET *crt)
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{
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RECT rcLeft[4] = {
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{0, 72, 8, 80},
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{8, 72, 16, 80},
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{16, 72, 24, 80},
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{24, 72, 32, 80},
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};
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if (++crt->ani_wait > 2)
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{
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crt->ani_wait = 0;
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if (++crt->ani_no > 3)
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crt->cond = 0;
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}
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// Note that 'crt->ani_no' can exceed the size of 'rcLeft'
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crt->rect = rcLeft[crt->ani_no];
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}
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void ActCaret16(CARET *crt)
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{
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RECT rcLeft[2] = {
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{104, 96, 144, 104},
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{104, 104, 144, 112},
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};
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if (++crt->ani_wait < 10)
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crt->y -= 2 * 0x200;
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if (crt->ani_wait == 40)
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crt->cond = 0;
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crt->rect = rcLeft[crt->ani_wait / 2 % 2];
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}
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void ActCaret17(CARET *crt)
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{
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RECT rcLeft[2] = {
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{0, 144, 144, 152},
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{0, 0, 0, 0},
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};
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if (++crt->ani_wait >= 40)
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crt->ani_wait = 0;
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if (crt->ani_wait < 30)
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crt->rect = rcLeft[0];
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else
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crt->rect = rcLeft[1];
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}
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typedef void (*CARETFUNCTION)(CARET*);
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CARETFUNCTION gpCaretFuncTbl[] =
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{
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ActCaret00,
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ActCaret01,
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ActCaret02,
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ActCaret03,
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ActCaret04,
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ActCaret05,
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ActCaret04,
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ActCaret07,
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ActCaret08,
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ActCaret09,
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ActCaret10,
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ActCaret11,
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ActCaret12,
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ActCaret13,
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ActCaret14,
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ActCaret15,
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ActCaret16,
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ActCaret17,
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};
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void ActCaret(void)
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{
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int i;
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int code;
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for (i = 0; i < CARET_MAX; ++i)
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{
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if (gCrt[i].cond & 0x80)
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{
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code = gCrt[i].code;
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gpCaretFuncTbl[code](&gCrt[i]);
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}
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}
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}
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void PutCaret(int fx, int fy)
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{
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int i;
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for (i = 0; i < CARET_MAX; ++i)
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{
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if (gCrt[i].cond & 0x80)
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{
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PutBitmap3(
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&grcGame,
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((gCrt[i].x - gCrt[i].view_left) / 0x200) - (fx / 0x200),
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((gCrt[i].y - gCrt[i].view_top) / 0x200) - (fy / 0x200),
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&gCrt[i].rect,
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SURFACE_ID_CARET);
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}
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}
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}
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void SetCaret(int x, int y, int code, int dir)
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{
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int c;
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for (c = 0; c < CARET_MAX; ++c)
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if (gCrt[c].cond == 0)
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break;
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if (c == CARET_MAX)
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return;
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memset(&gCrt[c], 0, sizeof(CARET));
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gCrt[c].cond = 0x80;
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gCrt[c].code = code;
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gCrt[c].x = x;
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gCrt[c].y = y;
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gCrt[c].view_left = gCaretTable[code].view_left;
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gCrt[c].view_top = gCaretTable[code].view_top;
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gCrt[c].direct = dir;
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}
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