e678b00471e6d0d9e10cfbba6de832a44639cc50
[swftools.git] / lib / gfxpoly / poly.h
1 #ifndef __poly_h__
2 #define __poly_h__
3
4 #include <stdint.h>
5 #include "../q.h"
6
7 typedef enum {DIR_UP, DIR_DOWN} segment_dir_t;
8 typedef enum {EVENT_CROSS, EVENT_END, EVENT_HORIZONTAL, EVENT_START} eventtype_t;
9 typedef enum {SLOPE_POSITIVE, SLOPE_NEGATIVE} slope_t;
10
11 typedef struct _point {
12     int32_t x;
13     int32_t y;
14 } point_t;
15
16 typedef struct _fillstyle {
17     char is_filled;
18 } fillstyle_t;
19
20 typedef struct _edge {
21     point_t a;
22     point_t b;
23     fillstyle_t*style;
24     struct _edge *next;
25 } edge_t;
26
27 typedef struct _windstate
28 {
29     char is_filled;
30     int wind_nr;
31     int num_polygons;
32 } windstate_t;
33
34 typedef struct _windrule
35 {
36     windstate_t (*start)(int num_polygons);
37     windstate_t (*add)(windstate_t left, fillstyle_t*edge, segment_dir_t dir, int polygon_nr);
38     fillstyle_t* (*diff)(windstate_t*left, windstate_t*right);
39 } windrule_t;
40
41 typedef struct _segment {
42     point_t a;
43     point_t b;
44     point_t delta;
45     double k; //k = a.x*b.y-a.y*b.x = delta.y*a.x - delta.x*a.y (=0 for points on the segment)
46     
47     segment_dir_t dir;
48     fillstyle_t*fs;
49     fillstyle_t*fs_out;
50     char fs_out_ok;
51     
52     int polygon_nr;
53     windstate_t wind;
54     int nr;
55
56     struct _segment*left;
57     struct _segment*right;
58     
59     point_t pos;
60
61     dict_t scheduled_crossings;
62 } segment_t;
63
64 #define LINE_EQ(p,s) ((double)(s)->delta.y*(p).x - (double)(s)->delta.x*(p).y - (s)->k)
65 #define XPOS(s,ypos) ((s)->a.x + ceil(((s)->delta.x * (double)((ypos) - (s)->a.y)) / (s)->delta.y))
66
67 typedef struct _gfxpoly {
68     double gridsize;
69     edge_t*edges;
70 } gfxpoly_t;
71
72 gfxpoly_t* gfxpoly_new(double gridsize);
73 void gfxpoly_dump(gfxpoly_t*poly);
74 gfxpoly_t* gfxpoly_process(gfxpoly_t*poly, windrule_t*windrule);
75
76 typedef struct _event {
77     eventtype_t type;
78     point_t p;
79     segment_t*s1;
80     segment_t*s2;
81 } event_t;
82
83 #endif