Commit | Line | Data |
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619d5d1c | 1 | #define IMAGER_NO_CONTEXT |
e41cfe8f TC |
2 | #include "imager.h" |
3 | ||
4 | static void flip_h(i_img *im); | |
5 | static void flip_v(i_img *im); | |
6 | static void flip_hv(i_img *im); | |
7 | ||
8 | #define XAXIS 0 | |
9 | #define YAXIS 1 | |
10 | #define XYAXIS 2 | |
11 | ||
12 | /* | |
13 | =item i_flipxy(im, axis) | |
14 | ||
15 | Flips the image inplace around the axis specified. | |
16 | Returns 0 if parameters are invalid. | |
17 | ||
18 | im - Image pointer | |
19 | axis - 0 = x, 1 = y, 2 = both | |
20 | ||
21 | =cut | |
22 | */ | |
23 | ||
24 | undef_int | |
25 | i_flipxy(i_img *im, int direction) { | |
619d5d1c | 26 | dIMCTXim(im); |
e41cfe8f TC |
27 | i_clear_error(); |
28 | ||
619d5d1c | 29 | im_log((aIMCTX, 1, "i_flipxy(im %p, direction %d)\n", im, direction )); |
e41cfe8f | 30 | |
e41cfe8f TC |
31 | switch (direction) { |
32 | case XAXIS: /* Horizontal flip */ | |
33 | flip_h(im); | |
34 | break; | |
35 | ||
36 | case YAXIS: /* Vertical flip */ | |
37 | flip_v(im); | |
38 | break; | |
39 | ||
40 | case XYAXIS: /* Horizontal and Vertical flip */ | |
41 | flip_hv(im); | |
42 | break; | |
43 | ||
44 | default: | |
619d5d1c TC |
45 | im_log((aIMCTX, 1, "i_flipxy: direction is invalid\n" )); |
46 | im_push_errorf(aIMCTX, 0, "direction %d invalid", direction); | |
e41cfe8f | 47 | return 0; |
e41cfe8f TC |
48 | } |
49 | return 1; | |
50 | } | |
51 | ||
52 | static void | |
53 | flip_row_pal(i_palidx *row, i_img_dim width) { | |
54 | i_palidx tmp; | |
55 | i_palidx *leftp = row; | |
56 | i_palidx *rightp = row + width - 1; | |
57 | ||
58 | while (leftp < rightp) { | |
59 | tmp = *leftp; | |
60 | *leftp = *rightp; | |
61 | *rightp = tmp; | |
62 | ++leftp; | |
63 | --rightp; | |
64 | } | |
65 | } | |
66 | ||
67 | #code | |
68 | ||
69 | static void | |
70 | IM_SUFFIX(flip_row)(IM_COLOR *row, i_img_dim width) { | |
71 | IM_COLOR tmp; | |
72 | IM_COLOR *leftp = row; | |
73 | IM_COLOR *rightp = row + width - 1; | |
74 | ||
75 | while (leftp < rightp) { | |
76 | tmp = *leftp; | |
77 | *leftp = *rightp; | |
78 | *rightp = tmp; | |
79 | ++leftp; | |
80 | --rightp; | |
81 | } | |
82 | } | |
83 | ||
84 | #/code | |
85 | ||
86 | static void | |
87 | flip_h(i_img *im) { | |
8d14daab | 88 | i_img_dim y; |
e41cfe8f TC |
89 | if (im->type == i_palette_type) { |
90 | i_palidx *line = mymalloc(im->xsize * sizeof(i_palidx)); | |
91 | for (y = 0; y < im->ysize; ++y) { | |
92 | i_gpal(im, 0, im->xsize, y, line); | |
93 | flip_row_pal(line, im->xsize); | |
94 | i_ppal(im, 0, im->xsize, y, line); | |
95 | } | |
96 | myfree(line); | |
97 | } | |
98 | else { | |
99 | #code im->bits == i_8_bits | |
100 | IM_COLOR *line = mymalloc(im->xsize * sizeof(IM_COLOR)); | |
101 | for (y = 0; y < im->ysize; ++y) { | |
102 | IM_GLIN(im, 0, im->xsize, y, line); | |
103 | IM_SUFFIX(flip_row)(line, im->xsize); | |
104 | IM_PLIN(im, 0, im->xsize, y, line); | |
105 | } | |
106 | myfree(line); | |
107 | #/code | |
108 | } | |
109 | } | |
110 | ||
111 | static void | |
112 | flip_v(i_img *im) { | |
8d14daab TC |
113 | i_img_dim topy = 0; |
114 | i_img_dim boty = im->ysize - 1; | |
e41cfe8f TC |
115 | if (im->type == i_palette_type) { |
116 | i_palidx *top_line = mymalloc(im->xsize * sizeof(i_palidx)); | |
117 | i_palidx *bot_line = mymalloc(im->xsize * sizeof(i_palidx)); | |
118 | while (topy < boty) { | |
119 | i_gpal(im, 0, im->xsize, topy, top_line); | |
120 | i_gpal(im, 0, im->xsize, boty, bot_line); | |
121 | i_ppal(im, 0, im->xsize, topy, bot_line); | |
122 | i_ppal(im, 0, im->xsize, boty, top_line); | |
123 | ++topy; | |
124 | --boty; | |
125 | } | |
126 | myfree(bot_line); | |
127 | myfree(top_line); | |
128 | } | |
129 | else { | |
130 | #code im->bits == i_8_bits | |
131 | IM_COLOR *top_line = mymalloc(im->xsize * sizeof(IM_COLOR)); | |
132 | IM_COLOR *bot_line = mymalloc(im->xsize * sizeof(IM_COLOR)); | |
133 | while (topy < boty) { | |
134 | IM_GLIN(im, 0, im->xsize, topy, top_line); | |
135 | IM_GLIN(im, 0, im->xsize, boty, bot_line); | |
136 | IM_PLIN(im, 0, im->xsize, topy, bot_line); | |
137 | IM_PLIN(im, 0, im->xsize, boty, top_line); | |
138 | ++topy; | |
139 | --boty; | |
140 | } | |
141 | myfree(top_line); | |
142 | myfree(bot_line); | |
143 | #/code | |
144 | } | |
145 | } | |
146 | ||
147 | static void | |
148 | flip_hv(i_img *im) { | |
8d14daab TC |
149 | i_img_dim topy = 0; |
150 | i_img_dim boty = im->ysize - 1; | |
e41cfe8f TC |
151 | if (im->type == i_palette_type) { |
152 | i_palidx *top_line = mymalloc(im->xsize * sizeof(i_palidx)); | |
153 | i_palidx *bot_line = mymalloc(im->xsize * sizeof(i_palidx)); | |
154 | while (topy < boty) { | |
155 | i_gpal(im, 0, im->xsize, topy, top_line); | |
156 | i_gpal(im, 0, im->xsize, boty, bot_line); | |
157 | flip_row_pal(top_line, im->xsize); | |
158 | flip_row_pal(bot_line, im->xsize); | |
159 | i_ppal(im, 0, im->xsize, topy, bot_line); | |
160 | i_ppal(im, 0, im->xsize, boty, top_line); | |
161 | ++topy; | |
162 | --boty; | |
163 | } | |
164 | myfree(bot_line); | |
165 | myfree(top_line); | |
166 | } | |
167 | else { | |
168 | #code im->bits == i_8_bits | |
169 | IM_COLOR *top_line = mymalloc(im->xsize * sizeof(IM_COLOR)); | |
170 | IM_COLOR *bot_line = mymalloc(im->xsize * sizeof(IM_COLOR)); | |
171 | while (topy < boty) { | |
172 | IM_GLIN(im, 0, im->xsize, topy, top_line); | |
173 | IM_GLIN(im, 0, im->xsize, boty, bot_line); | |
174 | IM_SUFFIX(flip_row)(top_line, im->xsize); | |
175 | IM_SUFFIX(flip_row)(bot_line, im->xsize); | |
176 | IM_PLIN(im, 0, im->xsize, topy, bot_line); | |
177 | IM_PLIN(im, 0, im->xsize, boty, top_line); | |
178 | ++topy; | |
179 | --boty; | |
180 | } | |
181 | if (topy == boty) { | |
182 | IM_GLIN(im, 0, im->xsize, topy, top_line); | |
183 | IM_SUFFIX(flip_row)(top_line, im->xsize); | |
184 | IM_PLIN(im, 0, im->xsize, topy, top_line); | |
185 | } | |
186 | myfree(top_line); | |
187 | myfree(bot_line); | |
188 | #/code | |
189 | } | |
190 | } |