root / proj / src / sprite.c @ 180
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1 | 152 | up20180642 | #include <lcom/lcf.h> |
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2 | |||
3 | #include "sprite.h" |
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4 | |||
5 | 166 | up20180642 | #include "graph.h" |
6 | 163 | up20180642 | #include "utils.h" |
7 | 168 | up20180642 | #include "fast_math.h" |
8 | 160 | up20180642 | #include <math.h> |
9 | 152 | up20180642 | |
10 | struct sprite{
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11 | 163 | up20180642 | int16_t x, y; |
12 | uint16_t w, h; |
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13 | int16_t u0, v0; |
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14 | 168 | up20180642 | float theta;
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15 | 152 | up20180642 | uint8_t *map; |
16 | }; |
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17 | |||
18 | 163 | up20180642 | sprite_t* (sprite_ctor)(const char **xpm, int u0, int v0){ |
19 | 152 | up20180642 | sprite_t *ret = (sprite_t*)malloc(sizeof(sprite_t));
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20 | if(ret == NULL) return NULL; |
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21 | 160 | up20180642 | enum xpm_image_type type = XPM_8_8_8_8;
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22 | 152 | up20180642 | xpm_image_t img; |
23 | 162 | up20180642 | ret->map = xpm_load((xpm_map_t)xpm, type, &img); |
24 | 152 | up20180642 | if(ret->map == NULL){ |
25 | free(ret); |
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26 | return NULL; |
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27 | } |
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28 | 159 | up20180642 | ret->x = 0;
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29 | ret->y = 0;
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30 | 152 | up20180642 | ret->w = img.width; |
31 | ret->h = img.height; |
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32 | 162 | up20180642 | ret->u0 = u0; |
33 | ret->v0 = u0; |
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34 | 160 | up20180642 | ret->theta = 0;
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35 | 152 | up20180642 | return ret;
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36 | } |
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37 | 163 | up20180642 | void (sprite_dtor)(sprite_t *p){
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38 | 152 | up20180642 | if(p == NULL) return; |
39 | 178 | up20180642 | free(p->map); |
40 | 152 | up20180642 | free(p); |
41 | } |
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42 | |||
43 | 179 | up20180642 | void (sprite_set_pos) (sprite_t *p, int16_t x, int16_t y){ p->x = x; p->y = y; }
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44 | 163 | up20180642 | void (sprite_set_angle) (sprite_t *p, double angle){ p->theta = angle; } |
45 | void (sprite_set_center)(sprite_t *p, int16_t u0, int16_t v0){ p->u0 = u0; p->v0 = v0; }
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46 | 152 | up20180642 | |
47 | 178 | up20180642 | int16_t (sprite_get_x)(const sprite_t *p){ return p->x; } |
48 | int16_t (sprite_get_y)(const sprite_t *p){ return p->y; } |
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49 | uint16_t (sprite_get_w)(const sprite_t *p){ return p->w; } |
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50 | uint16_t (sprite_get_h)(const sprite_t *p){ return p->h; } |
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51 | 152 | up20180642 | |
52 | 163 | up20180642 | void (sprite_src2pic)(const sprite_t *p, int16_t x, int16_t y, int16_t *u, int16_t *v){ |
53 | int16_t dx = x - p->x; |
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54 | int16_t dy = y - p->y; |
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55 | 168 | up20180642 | double s = fm_sin(p->theta);
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56 | double c = fm_cos(p->theta);
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57 | 162 | up20180642 | *u = dx*c - dy*s + p->u0; |
58 | *v = dx*s + dy*c + p->v0; |
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59 | 160 | up20180642 | } |
60 | |||
61 | 163 | up20180642 | void (sprite_draw)(const sprite_t *p){ |
62 | const int16_t diag = sqrt(p->w*p->w + p->h*p->h)+2; |
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63 | int16_t u, v; |
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64 | 165 | up20180642 | for(int16_t y = max(0,p->y-diag); y < min(p->y+diag,graph_get_YRes()); ++y){ |
65 | for(int16_t x = max(0,p->x-diag); x < min(p->x+diag,graph_get_XRes()); ++x){ |
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66 | 163 | up20180642 | sprite_src2pic(p, x, y, &u, &v); |
67 | if(0 <= u && u < p->w && 0 <= v && v < p->h){ |
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68 | uint8_t *m = p->map + (v*p->w + u)*4;
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69 | uint32_t color = SET_RGB(*(m+2), *(m+1), *(m)); |
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70 | 165 | up20180642 | graph_set_pixel_alpha(p->x + x, p->y + y, color, *(m+3));
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71 | 152 | up20180642 | } |
72 | } |
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73 | } |
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74 | } |