OLD | NEW |
1 | 1 |
2 /* pngwrite.c - general routines to write a PNG file | 2 /* pngwrite.c - general routines to write a PNG file |
3 * | 3 * |
4 * Last changed in libpng 1.6.2 [April 25, 2013] | 4 * Last changed in libpng 1.2.45 [July 7, 2011] |
5 * Copyright (c) 1998-2013 Glenn Randers-Pehrson | 5 * Copyright (c) 1998-2011 Glenn Randers-Pehrson |
6 * (Version 0.96 Copyright (c) 1996, 1997 Andreas Dilger) | 6 * (Version 0.96 Copyright (c) 1996, 1997 Andreas Dilger) |
7 * (Version 0.88 Copyright (c) 1995, 1996 Guy Eric Schalnat, Group 42, Inc.) | 7 * (Version 0.88 Copyright (c) 1995, 1996 Guy Eric Schalnat, Group 42, Inc.) |
8 * | 8 * |
9 * This code is released under the libpng license. | 9 * This code is released under the libpng license. |
10 * For conditions of distribution and use, see the disclaimer | 10 * For conditions of distribution and use, see the disclaimer |
11 * and license in png.h | 11 * and license in png.h |
12 */ | 12 */ |
13 | 13 |
14 #include "pngpriv.h" | 14 /* Get internal access to png.h */ |
15 #if defined(PNG_SIMPLIFIED_WRITE_SUPPORTED) && defined(PNG_STDIO_SUPPORTED) | 15 #define PNG_INTERNAL |
16 # include <errno.h> | 16 #define PNG_NO_PEDANTIC_WARNINGS |
17 #endif | 17 #include "png.h" |
18 | |
19 #ifdef PNG_WRITE_SUPPORTED | 18 #ifdef PNG_WRITE_SUPPORTED |
20 | 19 |
21 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED | |
22 /* Write out all the unknown chunks for the current given location */ | |
23 static void | |
24 write_unknown_chunks(png_structrp png_ptr, png_const_inforp info_ptr, | |
25 unsigned int where) | |
26 { | |
27 if (info_ptr->unknown_chunks_num) | |
28 { | |
29 png_const_unknown_chunkp up; | |
30 | |
31 png_debug(5, "writing extra chunks"); | |
32 | |
33 for (up = info_ptr->unknown_chunks; | |
34 up < info_ptr->unknown_chunks + info_ptr->unknown_chunks_num; | |
35 ++up) | |
36 if (up->location & where) | |
37 { | |
38 /* If per-chunk unknown chunk handling is enabled use it, otherwise | |
39 * just write the chunks the application has set. | |
40 */ | |
41 #ifdef PNG_SET_UNKNOWN_CHUNKS_SUPPORTED | |
42 int keep = png_handle_as_unknown(png_ptr, up->name); | |
43 | |
44 /* NOTE: this code is radically different from the read side in the | |
45 * matter of handling an ancillary unknown chunk. In the read side | |
46 * the default behavior is to discard it, in the code below the default | |
47 * behavior is to write it. Critical chunks are, however, only | |
48 * written if explicitly listed or if the default is set to write all | |
49 * unknown chunks. | |
50 * | |
51 * The default handling is also slightly weird - it is not possible to | |
52 * stop the writing of all unsafe-to-copy chunks! | |
53 * | |
54 * TODO: REVIEW: this would seem to be a bug. | |
55 */ | |
56 if (keep != PNG_HANDLE_CHUNK_NEVER && | |
57 ((up->name[3] & 0x20) /* safe-to-copy overrides everything */ || | |
58 keep == PNG_HANDLE_CHUNK_ALWAYS || | |
59 (keep == PNG_HANDLE_CHUNK_AS_DEFAULT && | |
60 png_ptr->unknown_default == PNG_HANDLE_CHUNK_ALWAYS))) | |
61 #endif | |
62 { | |
63 /* TODO: review, what is wrong with a zero length unknown chunk? */ | |
64 if (up->size == 0) | |
65 png_warning(png_ptr, "Writing zero-length unknown chunk"); | |
66 | |
67 png_write_chunk(png_ptr, up->name, up->data, up->size); | |
68 } | |
69 } | |
70 } | |
71 } | |
72 #endif /* PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED */ | |
73 | |
74 /* Writes all the PNG information. This is the suggested way to use the | 20 /* Writes all the PNG information. This is the suggested way to use the |
75 * library. If you have a new chunk to add, make a function to write it, | 21 * library. If you have a new chunk to add, make a function to write it, |
76 * and put it in the correct location here. If you want the chunk written | 22 * and put it in the correct location here. If you want the chunk written |
77 * after the image data, put it in png_write_end(). I strongly encourage | 23 * after the image data, put it in png_write_end(). I strongly encourage |
78 * you to supply a PNG_INFO_ flag, and check info_ptr->valid before writing | 24 * you to supply a PNG_INFO_ flag, and check info_ptr->valid before writing |
79 * the chunk, as that will keep the code from breaking if you want to just | 25 * the chunk, as that will keep the code from breaking if you want to just |
80 * write a plain PNG file. If you have long comments, I suggest writing | 26 * write a plain PNG file. If you have long comments, I suggest writing |
81 * them in png_write_end(), and compressing them. | 27 * them in png_write_end(), and compressing them. |
82 */ | 28 */ |
83 void PNGAPI | 29 void PNGAPI |
84 png_write_info_before_PLTE(png_structrp png_ptr, png_const_inforp info_ptr) | 30 png_write_info_before_PLTE(png_structp png_ptr, png_infop info_ptr) |
85 { | 31 { |
86 png_debug(1, "in png_write_info_before_PLTE"); | 32 png_debug(1, "in png_write_info_before_PLTE"); |
87 | 33 |
88 if (png_ptr == NULL || info_ptr == NULL) | 34 if (png_ptr == NULL || info_ptr == NULL) |
89 return; | 35 return; |
90 | |
91 if (!(png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE)) | 36 if (!(png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE)) |
92 { | 37 { |
93 /* Write PNG signature */ | 38 /* Write PNG signature */ |
94 png_write_sig(png_ptr); | 39 png_write_sig(png_ptr); |
95 | |
96 #ifdef PNG_MNG_FEATURES_SUPPORTED | 40 #ifdef PNG_MNG_FEATURES_SUPPORTED |
97 if ((png_ptr->mode&PNG_HAVE_PNG_SIGNATURE) && \ | 41 if ((png_ptr->mode&PNG_HAVE_PNG_SIGNATURE) && \ |
98 (png_ptr->mng_features_permitted)) | 42 (png_ptr->mng_features_permitted)) |
99 { | 43 { |
100 png_warning(png_ptr, "MNG features are not allowed in a PNG datastream"); | 44 png_warning(png_ptr, "MNG features are not allowed in a PNG datastream"); |
101 png_ptr->mng_features_permitted = 0; | 45 png_ptr->mng_features_permitted = 0; |
102 } | 46 } |
103 #endif | 47 #endif |
104 | |
105 /* Write IHDR information. */ | 48 /* Write IHDR information. */ |
106 png_write_IHDR(png_ptr, info_ptr->width, info_ptr->height, | 49 png_write_IHDR(png_ptr, info_ptr->width, info_ptr->height, |
107 info_ptr->bit_depth, info_ptr->color_type, info_ptr->compression_type, | 50 info_ptr->bit_depth, info_ptr->color_type, info_ptr->compression_type, |
108 info_ptr->filter_type, | 51 info_ptr->filter_type, |
109 #ifdef PNG_WRITE_INTERLACING_SUPPORTED | 52 #ifdef PNG_WRITE_INTERLACING_SUPPORTED |
110 info_ptr->interlace_type | 53 info_ptr->interlace_type); |
111 #else | 54 #else |
112 0 | 55 0); |
113 #endif | 56 #endif |
114 ); | |
115 | |
116 /* The rest of these check to see if the valid field has the appropriate | 57 /* The rest of these check to see if the valid field has the appropriate |
117 * flag set, and if it does, writes the chunk. | 58 * flag set, and if it does, writes the chunk. |
118 * | |
119 * 1.6.0: COLORSPACE support controls the writing of these chunks too, and | |
120 * the chunks will be written if the WRITE routine is there and information | |
121 * is available in the COLORSPACE. (See png_colorspace_sync_info in png.c | |
122 * for where the valid flags get set.) | |
123 * | |
124 * Under certain circumstances the colorspace can be invalidated without | |
125 * syncing the info_struct 'valid' flags; this happens if libpng detects and | |
126 * error and calls png_error while the color space is being set, yet the | |
127 * application continues writing the PNG. So check the 'invalid' flag here | |
128 * too. | |
129 */ | 59 */ |
130 #ifdef PNG_GAMMA_SUPPORTED | 60 #ifdef PNG_WRITE_gAMA_SUPPORTED |
131 # ifdef PNG_WRITE_gAMA_SUPPORTED | 61 if (info_ptr->valid & PNG_INFO_gAMA) |
132 if (!(info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) && | 62 { |
133 (info_ptr->colorspace.flags & PNG_COLORSPACE_FROM_gAMA) && | 63 # ifdef PNG_FLOATING_POINT_SUPPORTED |
134 (info_ptr->valid & PNG_INFO_gAMA)) | 64 png_write_gAMA(png_ptr, info_ptr->gamma); |
135 png_write_gAMA_fixed(png_ptr, info_ptr->colorspace.gamma); | 65 #else |
| 66 #ifdef PNG_FIXED_POINT_SUPPORTED |
| 67 png_write_gAMA_fixed(png_ptr, info_ptr->int_gamma); |
136 # endif | 68 # endif |
137 #endif | 69 #endif |
138 | 70 } |
139 #ifdef PNG_COLORSPACE_SUPPORTED | 71 #endif |
140 /* Write only one of sRGB or an ICC profile. If a profile was supplied | 72 #ifdef PNG_WRITE_sRGB_SUPPORTED |
141 * and it matches one of the known sRGB ones issue a warning. | 73 if (info_ptr->valid & PNG_INFO_sRGB) |
142 */ | 74 png_write_sRGB(png_ptr, (int)info_ptr->srgb_intent); |
143 # ifdef PNG_WRITE_iCCP_SUPPORTED | 75 #endif |
144 if (!(info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) && | 76 #ifdef PNG_WRITE_iCCP_SUPPORTED |
145 (info_ptr->valid & PNG_INFO_iCCP)) | 77 if (info_ptr->valid & PNG_INFO_iCCP) |
146 { | 78 png_write_iCCP(png_ptr, info_ptr->iccp_name, PNG_COMPRESSION_TYPE_BASE, |
147 # ifdef PNG_WRITE_sRGB_SUPPORTED | 79 info_ptr->iccp_profile, (int)info_ptr->iccp_proflen); |
148 if (info_ptr->valid & PNG_INFO_sRGB) | 80 #endif |
149 png_app_warning(png_ptr, | |
150 "profile matches sRGB but writing iCCP instead"); | |
151 # endif | |
152 | |
153 png_write_iCCP(png_ptr, info_ptr->iccp_name, | |
154 info_ptr->iccp_profile); | |
155 } | |
156 # ifdef PNG_WRITE_sRGB_SUPPORTED | |
157 else | |
158 # endif | |
159 # endif | |
160 | |
161 # ifdef PNG_WRITE_sRGB_SUPPORTED | |
162 if (!(info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) && | |
163 (info_ptr->valid & PNG_INFO_sRGB)) | |
164 png_write_sRGB(png_ptr, info_ptr->colorspace.rendering_intent); | |
165 # endif /* WRITE_sRGB */ | |
166 #endif /* COLORSPACE */ | |
167 | |
168 #ifdef PNG_WRITE_sBIT_SUPPORTED | 81 #ifdef PNG_WRITE_sBIT_SUPPORTED |
169 if (info_ptr->valid & PNG_INFO_sBIT) | 82 if (info_ptr->valid & PNG_INFO_sBIT) |
170 png_write_sBIT(png_ptr, &(info_ptr->sig_bit), info_ptr->color_type); | 83 png_write_sBIT(png_ptr, &(info_ptr->sig_bit), info_ptr->color_type); |
171 #endif | 84 #endif |
172 | 85 #ifdef PNG_WRITE_cHRM_SUPPORTED |
173 #ifdef PNG_COLORSPACE_SUPPORTED | 86 if (info_ptr->valid & PNG_INFO_cHRM) |
174 # ifdef PNG_WRITE_cHRM_SUPPORTED | 87 { |
175 if (!(info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) && | 88 #ifdef PNG_FLOATING_POINT_SUPPORTED |
176 (info_ptr->colorspace.flags & PNG_COLORSPACE_FROM_cHRM) && | 89 png_write_cHRM(png_ptr, |
177 (info_ptr->valid & PNG_INFO_cHRM)) | 90 info_ptr->x_white, info_ptr->y_white, |
178 png_write_cHRM_fixed(png_ptr, &info_ptr->colorspace.end_points_xy); | 91 info_ptr->x_red, info_ptr->y_red, |
| 92 info_ptr->x_green, info_ptr->y_green, |
| 93 info_ptr->x_blue, info_ptr->y_blue); |
| 94 #else |
| 95 # ifdef PNG_FIXED_POINT_SUPPORTED |
| 96 png_write_cHRM_fixed(png_ptr, |
| 97 info_ptr->int_x_white, info_ptr->int_y_white, |
| 98 info_ptr->int_x_red, info_ptr->int_y_red, |
| 99 info_ptr->int_x_green, info_ptr->int_y_green, |
| 100 info_ptr->int_x_blue, info_ptr->int_y_blue); |
179 # endif | 101 # endif |
180 #endif | 102 #endif |
| 103 } |
| 104 #endif |
| 105 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED |
| 106 if (info_ptr->unknown_chunks_num) |
| 107 { |
| 108 png_unknown_chunk *up; |
181 | 109 |
182 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED | 110 png_debug(5, "writing extra chunks"); |
183 write_unknown_chunks(png_ptr, info_ptr, PNG_HAVE_IHDR); | 111 |
| 112 for (up = info_ptr->unknown_chunks; |
| 113 up < info_ptr->unknown_chunks + info_ptr->unknown_chunks_num; |
| 114 up++) |
| 115 { |
| 116 int keep = png_handle_as_unknown(png_ptr, up->name); |
| 117 if (keep != PNG_HANDLE_CHUNK_NEVER && |
| 118 up->location && !(up->location & PNG_HAVE_PLTE) && |
| 119 !(up->location & PNG_HAVE_IDAT) && |
| 120 ((up->name[3] & 0x20) || keep == PNG_HANDLE_CHUNK_ALWAYS || |
| 121 (png_ptr->flags & PNG_FLAG_KEEP_UNSAFE_CHUNKS))) |
| 122 { |
| 123 if (up->size == 0) |
| 124 png_warning(png_ptr, "Writing zero-length unknown chunk"); |
| 125 png_write_chunk(png_ptr, up->name, up->data, up->size); |
| 126 } |
| 127 } |
| 128 } |
184 #endif | 129 #endif |
185 | |
186 png_ptr->mode |= PNG_WROTE_INFO_BEFORE_PLTE; | 130 png_ptr->mode |= PNG_WROTE_INFO_BEFORE_PLTE; |
187 } | 131 } |
188 } | 132 } |
189 | 133 |
190 void PNGAPI | 134 void PNGAPI |
191 png_write_info(png_structrp png_ptr, png_const_inforp info_ptr) | 135 png_write_info(png_structp png_ptr, png_infop info_ptr) |
192 { | 136 { |
193 #if defined(PNG_WRITE_TEXT_SUPPORTED) || defined(PNG_WRITE_sPLT_SUPPORTED) | 137 #if defined(PNG_WRITE_TEXT_SUPPORTED) || defined(PNG_WRITE_sPLT_SUPPORTED) |
194 int i; | 138 int i; |
195 #endif | 139 #endif |
196 | 140 |
197 png_debug(1, "in png_write_info"); | 141 png_debug(1, "in png_write_info"); |
198 | 142 |
199 if (png_ptr == NULL || info_ptr == NULL) | 143 if (png_ptr == NULL || info_ptr == NULL) |
200 return; | 144 return; |
201 | 145 |
202 png_write_info_before_PLTE(png_ptr, info_ptr); | 146 png_write_info_before_PLTE(png_ptr, info_ptr); |
203 | 147 |
204 if (info_ptr->valid & PNG_INFO_PLTE) | 148 if (info_ptr->valid & PNG_INFO_PLTE) |
205 png_write_PLTE(png_ptr, info_ptr->palette, | 149 png_write_PLTE(png_ptr, info_ptr->palette, |
206 (png_uint_32)info_ptr->num_palette); | 150 (png_uint_32)info_ptr->num_palette); |
207 | |
208 else if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) | 151 else if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) |
209 png_error(png_ptr, "Valid palette required for paletted images"); | 152 png_error(png_ptr, "Valid palette required for paletted images"); |
210 | 153 |
211 #ifdef PNG_WRITE_tRNS_SUPPORTED | 154 #ifdef PNG_WRITE_tRNS_SUPPORTED |
212 if (info_ptr->valid & PNG_INFO_tRNS) | 155 if (info_ptr->valid & PNG_INFO_tRNS) |
213 { | 156 { |
214 #ifdef PNG_WRITE_INVERT_ALPHA_SUPPORTED | 157 #ifdef PNG_WRITE_INVERT_ALPHA_SUPPORTED |
215 /* Invert the alpha channel (in tRNS) */ | 158 /* Invert the alpha channel (in tRNS) */ |
216 if ((png_ptr->transformations & PNG_INVERT_ALPHA) && | 159 if ((png_ptr->transformations & PNG_INVERT_ALPHA) && |
217 info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) | 160 info_ptr->color_type == PNG_COLOR_TYPE_PALETTE) |
218 { | 161 { |
219 int j; | 162 int j; |
220 for (j = 0; j<(int)info_ptr->num_trans; j++) | 163 for (j = 0; j<(int)info_ptr->num_trans; j++) |
221 info_ptr->trans_alpha[j] = | 164 info_ptr->trans[j] = (png_byte)(255 - info_ptr->trans[j]); |
222 (png_byte)(255 - info_ptr->trans_alpha[j]); | |
223 } | 165 } |
224 #endif | 166 #endif |
225 png_write_tRNS(png_ptr, info_ptr->trans_alpha, &(info_ptr->trans_color), | 167 png_write_tRNS(png_ptr, info_ptr->trans, &(info_ptr->trans_values), |
226 info_ptr->num_trans, info_ptr->color_type); | 168 info_ptr->num_trans, info_ptr->color_type); |
227 } | 169 } |
228 #endif | 170 #endif |
229 #ifdef PNG_WRITE_bKGD_SUPPORTED | 171 #ifdef PNG_WRITE_bKGD_SUPPORTED |
230 if (info_ptr->valid & PNG_INFO_bKGD) | 172 if (info_ptr->valid & PNG_INFO_bKGD) |
231 png_write_bKGD(png_ptr, &(info_ptr->background), info_ptr->color_type); | 173 png_write_bKGD(png_ptr, &(info_ptr->background), info_ptr->color_type); |
232 #endif | 174 #endif |
233 | |
234 #ifdef PNG_WRITE_hIST_SUPPORTED | 175 #ifdef PNG_WRITE_hIST_SUPPORTED |
235 if (info_ptr->valid & PNG_INFO_hIST) | 176 if (info_ptr->valid & PNG_INFO_hIST) |
236 png_write_hIST(png_ptr, info_ptr->hist, info_ptr->num_palette); | 177 png_write_hIST(png_ptr, info_ptr->hist, info_ptr->num_palette); |
237 #endif | 178 #endif |
238 | |
239 #ifdef PNG_WRITE_oFFs_SUPPORTED | 179 #ifdef PNG_WRITE_oFFs_SUPPORTED |
240 if (info_ptr->valid & PNG_INFO_oFFs) | 180 if (info_ptr->valid & PNG_INFO_oFFs) |
241 png_write_oFFs(png_ptr, info_ptr->x_offset, info_ptr->y_offset, | 181 png_write_oFFs(png_ptr, info_ptr->x_offset, info_ptr->y_offset, |
242 info_ptr->offset_unit_type); | 182 info_ptr->offset_unit_type); |
243 #endif | 183 #endif |
244 | |
245 #ifdef PNG_WRITE_pCAL_SUPPORTED | 184 #ifdef PNG_WRITE_pCAL_SUPPORTED |
246 if (info_ptr->valid & PNG_INFO_pCAL) | 185 if (info_ptr->valid & PNG_INFO_pCAL) |
247 png_write_pCAL(png_ptr, info_ptr->pcal_purpose, info_ptr->pcal_X0, | 186 png_write_pCAL(png_ptr, info_ptr->pcal_purpose, info_ptr->pcal_X0, |
248 info_ptr->pcal_X1, info_ptr->pcal_type, info_ptr->pcal_nparams, | 187 info_ptr->pcal_X1, info_ptr->pcal_type, info_ptr->pcal_nparams, |
249 info_ptr->pcal_units, info_ptr->pcal_params); | 188 info_ptr->pcal_units, info_ptr->pcal_params); |
250 #endif | 189 #endif |
251 | 190 |
| 191 #ifdef PNG_sCAL_SUPPORTED |
| 192 if (info_ptr->valid & PNG_INFO_sCAL) |
252 #ifdef PNG_WRITE_sCAL_SUPPORTED | 193 #ifdef PNG_WRITE_sCAL_SUPPORTED |
253 if (info_ptr->valid & PNG_INFO_sCAL) | 194 #if defined(PNG_FLOATING_POINT_SUPPORTED) && defined(PNG_STDIO_SUPPORTED) |
| 195 png_write_sCAL(png_ptr, (int)info_ptr->scal_unit, |
| 196 info_ptr->scal_pixel_width, info_ptr->scal_pixel_height); |
| 197 #else /* !FLOATING_POINT */ |
| 198 #ifdef PNG_FIXED_POINT_SUPPORTED |
254 png_write_sCAL_s(png_ptr, (int)info_ptr->scal_unit, | 199 png_write_sCAL_s(png_ptr, (int)info_ptr->scal_unit, |
255 info_ptr->scal_s_width, info_ptr->scal_s_height); | 200 info_ptr->scal_s_width, info_ptr->scal_s_height); |
| 201 #endif /* FIXED_POINT */ |
| 202 #endif /* FLOATING_POINT */ |
| 203 #else /* !WRITE_sCAL */ |
| 204 png_warning(png_ptr, |
| 205 "png_write_sCAL not supported; sCAL chunk not written."); |
| 206 #endif /* WRITE_sCAL */ |
256 #endif /* sCAL */ | 207 #endif /* sCAL */ |
257 | 208 |
258 #ifdef PNG_WRITE_pHYs_SUPPORTED | 209 #ifdef PNG_WRITE_pHYs_SUPPORTED |
259 if (info_ptr->valid & PNG_INFO_pHYs) | 210 if (info_ptr->valid & PNG_INFO_pHYs) |
260 png_write_pHYs(png_ptr, info_ptr->x_pixels_per_unit, | 211 png_write_pHYs(png_ptr, info_ptr->x_pixels_per_unit, |
261 info_ptr->y_pixels_per_unit, info_ptr->phys_unit_type); | 212 info_ptr->y_pixels_per_unit, info_ptr->phys_unit_type); |
262 #endif /* pHYs */ | 213 #endif /* pHYs */ |
263 | 214 |
264 #ifdef PNG_WRITE_tIME_SUPPORTED | 215 #ifdef PNG_WRITE_tIME_SUPPORTED |
265 if (info_ptr->valid & PNG_INFO_tIME) | 216 if (info_ptr->valid & PNG_INFO_tIME) |
266 { | 217 { |
267 png_write_tIME(png_ptr, &(info_ptr->mod_time)); | 218 png_write_tIME(png_ptr, &(info_ptr->mod_time)); |
268 png_ptr->mode |= PNG_WROTE_tIME; | 219 png_ptr->mode |= PNG_WROTE_tIME; |
269 } | 220 } |
270 #endif /* tIME */ | 221 #endif /* tIME */ |
271 | 222 |
272 #ifdef PNG_WRITE_sPLT_SUPPORTED | 223 #ifdef PNG_WRITE_sPLT_SUPPORTED |
273 if (info_ptr->valid & PNG_INFO_sPLT) | 224 if (info_ptr->valid & PNG_INFO_sPLT) |
274 for (i = 0; i < (int)info_ptr->splt_palettes_num; i++) | 225 for (i = 0; i < (int)info_ptr->splt_palettes_num; i++) |
275 png_write_sPLT(png_ptr, info_ptr->splt_palettes + i); | 226 png_write_sPLT(png_ptr, info_ptr->splt_palettes + i); |
276 #endif /* sPLT */ | 227 #endif /* sPLT */ |
277 | 228 |
278 #ifdef PNG_WRITE_TEXT_SUPPORTED | 229 #ifdef PNG_WRITE_TEXT_SUPPORTED |
279 /* Check to see if we need to write text chunks */ | 230 /* Check to see if we need to write text chunks */ |
280 for (i = 0; i < info_ptr->num_text; i++) | 231 for (i = 0; i < info_ptr->num_text; i++) |
281 { | 232 { |
282 png_debug2(2, "Writing header text chunk %d, type %d", i, | 233 png_debug2(2, "Writing header text chunk %d, type %d", i, |
283 info_ptr->text[i].compression); | 234 info_ptr->text[i].compression); |
284 /* An internationalized chunk? */ | 235 /* An internationalized chunk? */ |
285 if (info_ptr->text[i].compression > 0) | 236 if (info_ptr->text[i].compression > 0) |
286 { | 237 { |
287 #ifdef PNG_WRITE_iTXt_SUPPORTED | 238 #ifdef PNG_WRITE_iTXt_SUPPORTED |
288 /* Write international chunk */ | 239 /* Write international chunk */ |
289 png_write_iTXt(png_ptr, | 240 png_write_iTXt(png_ptr, |
290 info_ptr->text[i].compression, | 241 info_ptr->text[i].compression, |
291 info_ptr->text[i].key, | 242 info_ptr->text[i].key, |
292 info_ptr->text[i].lang, | 243 info_ptr->text[i].lang, |
293 info_ptr->text[i].lang_key, | 244 info_ptr->text[i].lang_key, |
294 info_ptr->text[i].text); | 245 info_ptr->text[i].text); |
295 #else | 246 #else |
296 png_warning(png_ptr, "Unable to write international text"); | 247 png_warning(png_ptr, "Unable to write international text"); |
297 #endif | 248 #endif |
298 /* Mark this chunk as written */ | 249 /* Mark this chunk as written */ |
299 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; | 250 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; |
300 } | 251 } |
301 | |
302 /* If we want a compressed text chunk */ | 252 /* If we want a compressed text chunk */ |
303 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_zTXt) | 253 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_zTXt) |
304 { | 254 { |
305 #ifdef PNG_WRITE_zTXt_SUPPORTED | 255 #ifdef PNG_WRITE_zTXt_SUPPORTED |
306 /* Write compressed chunk */ | 256 /* Write compressed chunk */ |
307 png_write_zTXt(png_ptr, info_ptr->text[i].key, | 257 png_write_zTXt(png_ptr, info_ptr->text[i].key, |
308 info_ptr->text[i].text, 0, | 258 info_ptr->text[i].text, 0, |
309 info_ptr->text[i].compression); | 259 info_ptr->text[i].compression); |
310 #else | 260 #else |
311 png_warning(png_ptr, "Unable to write compressed text"); | 261 png_warning(png_ptr, "Unable to write compressed text"); |
312 #endif | 262 #endif |
313 /* Mark this chunk as written */ | 263 /* Mark this chunk as written */ |
314 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR; | 264 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR; |
315 } | 265 } |
316 | |
317 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE) | 266 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE) |
318 { | 267 { |
319 #ifdef PNG_WRITE_tEXt_SUPPORTED | 268 #ifdef PNG_WRITE_tEXt_SUPPORTED |
320 /* Write uncompressed chunk */ | 269 /* Write uncompressed chunk */ |
321 png_write_tEXt(png_ptr, info_ptr->text[i].key, | 270 png_write_tEXt(png_ptr, info_ptr->text[i].key, |
322 info_ptr->text[i].text, | 271 info_ptr->text[i].text, |
323 0); | 272 0); |
324 /* Mark this chunk as written */ | 273 /* Mark this chunk as written */ |
325 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; | 274 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; |
326 #else | 275 #else |
327 /* Can't get here */ | 276 /* Can't get here */ |
328 png_warning(png_ptr, "Unable to write uncompressed text"); | 277 png_warning(png_ptr, "Unable to write uncompressed text"); |
329 #endif | 278 #endif |
330 } | 279 } |
331 } | 280 } |
332 #endif /* tEXt */ | 281 #endif /* tEXt */ |
333 | 282 |
334 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED | 283 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED |
335 write_unknown_chunks(png_ptr, info_ptr, PNG_HAVE_PLTE); | 284 if (info_ptr->unknown_chunks_num) |
| 285 { |
| 286 png_unknown_chunk *up; |
| 287 |
| 288 png_debug(5, "writing extra chunks"); |
| 289 |
| 290 for (up = info_ptr->unknown_chunks; |
| 291 up < info_ptr->unknown_chunks + info_ptr->unknown_chunks_num; |
| 292 up++) |
| 293 { |
| 294 int keep = png_handle_as_unknown(png_ptr, up->name); |
| 295 if (keep != PNG_HANDLE_CHUNK_NEVER && |
| 296 up->location && (up->location & PNG_HAVE_PLTE) && |
| 297 !(up->location & PNG_HAVE_IDAT) && |
| 298 !(up->location & PNG_AFTER_IDAT) && |
| 299 ((up->name[3] & 0x20) || keep == PNG_HANDLE_CHUNK_ALWAYS || |
| 300 (png_ptr->flags & PNG_FLAG_KEEP_UNSAFE_CHUNKS))) |
| 301 { |
| 302 png_write_chunk(png_ptr, up->name, up->data, up->size); |
| 303 } |
| 304 } |
| 305 } |
336 #endif | 306 #endif |
337 } | 307 } |
338 | 308 |
339 /* Writes the end of the PNG file. If you don't want to write comments or | 309 /* Writes the end of the PNG file. If you don't want to write comments or |
340 * time information, you can pass NULL for info. If you already wrote these | 310 * time information, you can pass NULL for info. If you already wrote these |
341 * in png_write_info(), do not write them again here. If you have long | 311 * in png_write_info(), do not write them again here. If you have long |
342 * comments, I suggest writing them here, and compressing them. | 312 * comments, I suggest writing them here, and compressing them. |
343 */ | 313 */ |
344 void PNGAPI | 314 void PNGAPI |
345 png_write_end(png_structrp png_ptr, png_inforp info_ptr) | 315 png_write_end(png_structp png_ptr, png_infop info_ptr) |
346 { | 316 { |
347 png_debug(1, "in png_write_end"); | 317 png_debug(1, "in png_write_end"); |
348 | 318 |
349 if (png_ptr == NULL) | 319 if (png_ptr == NULL) |
350 return; | 320 return; |
351 | |
352 if (!(png_ptr->mode & PNG_HAVE_IDAT)) | 321 if (!(png_ptr->mode & PNG_HAVE_IDAT)) |
353 png_error(png_ptr, "No IDATs written into file"); | 322 png_error(png_ptr, "No IDATs written into file"); |
354 | 323 |
355 #ifdef PNG_WRITE_CHECK_FOR_INVALID_INDEX_SUPPORTED | |
356 if (png_ptr->num_palette_max > png_ptr->num_palette) | |
357 png_benign_error(png_ptr, "Wrote palette index exceeding num_palette"); | |
358 #endif | |
359 | |
360 /* See if user wants us to write information chunks */ | 324 /* See if user wants us to write information chunks */ |
361 if (info_ptr != NULL) | 325 if (info_ptr != NULL) |
362 { | 326 { |
363 #ifdef PNG_WRITE_TEXT_SUPPORTED | 327 #ifdef PNG_WRITE_TEXT_SUPPORTED |
364 int i; /* local index variable */ | 328 int i; /* local index variable */ |
365 #endif | 329 #endif |
366 #ifdef PNG_WRITE_tIME_SUPPORTED | 330 #ifdef PNG_WRITE_tIME_SUPPORTED |
367 /* Check to see if user has supplied a time chunk */ | 331 /* Check to see if user has supplied a time chunk */ |
368 if ((info_ptr->valid & PNG_INFO_tIME) && | 332 if ((info_ptr->valid & PNG_INFO_tIME) && |
369 !(png_ptr->mode & PNG_WROTE_tIME)) | 333 !(png_ptr->mode & PNG_WROTE_tIME)) |
370 png_write_tIME(png_ptr, &(info_ptr->mod_time)); | 334 png_write_tIME(png_ptr, &(info_ptr->mod_time)); |
371 | |
372 #endif | 335 #endif |
373 #ifdef PNG_WRITE_TEXT_SUPPORTED | 336 #ifdef PNG_WRITE_TEXT_SUPPORTED |
374 /* Loop through comment chunks */ | 337 /* Loop through comment chunks */ |
375 for (i = 0; i < info_ptr->num_text; i++) | 338 for (i = 0; i < info_ptr->num_text; i++) |
376 { | 339 { |
377 png_debug2(2, "Writing trailer text chunk %d, type %d", i, | 340 png_debug2(2, "Writing trailer text chunk %d, type %d", i, |
378 info_ptr->text[i].compression); | 341 info_ptr->text[i].compression); |
379 /* An internationalized chunk? */ | 342 /* An internationalized chunk? */ |
380 if (info_ptr->text[i].compression > 0) | 343 if (info_ptr->text[i].compression > 0) |
381 { | 344 { |
382 #ifdef PNG_WRITE_iTXt_SUPPORTED | 345 #ifdef PNG_WRITE_iTXt_SUPPORTED |
383 /* Write international chunk */ | 346 /* Write international chunk */ |
384 png_write_iTXt(png_ptr, | 347 png_write_iTXt(png_ptr, |
385 info_ptr->text[i].compression, | 348 info_ptr->text[i].compression, |
386 info_ptr->text[i].key, | 349 info_ptr->text[i].key, |
387 info_ptr->text[i].lang, | 350 info_ptr->text[i].lang, |
388 info_ptr->text[i].lang_key, | 351 info_ptr->text[i].lang_key, |
389 info_ptr->text[i].text); | 352 info_ptr->text[i].text); |
390 #else | 353 #else |
391 png_warning(png_ptr, "Unable to write international text"); | 354 png_warning(png_ptr, "Unable to write international text"); |
392 #endif | 355 #endif |
393 /* Mark this chunk as written */ | 356 /* Mark this chunk as written */ |
394 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; | 357 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; |
395 } | 358 } |
396 | |
397 else if (info_ptr->text[i].compression >= PNG_TEXT_COMPRESSION_zTXt) | 359 else if (info_ptr->text[i].compression >= PNG_TEXT_COMPRESSION_zTXt) |
398 { | 360 { |
399 #ifdef PNG_WRITE_zTXt_SUPPORTED | 361 #ifdef PNG_WRITE_zTXt_SUPPORTED |
400 /* Write compressed chunk */ | 362 /* Write compressed chunk */ |
401 png_write_zTXt(png_ptr, info_ptr->text[i].key, | 363 png_write_zTXt(png_ptr, info_ptr->text[i].key, |
402 info_ptr->text[i].text, 0, | 364 info_ptr->text[i].text, 0, |
403 info_ptr->text[i].compression); | 365 info_ptr->text[i].compression); |
404 #else | 366 #else |
405 png_warning(png_ptr, "Unable to write compressed text"); | 367 png_warning(png_ptr, "Unable to write compressed text"); |
406 #endif | 368 #endif |
407 /* Mark this chunk as written */ | 369 /* Mark this chunk as written */ |
408 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR; | 370 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR; |
409 } | 371 } |
410 | |
411 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE) | 372 else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE) |
412 { | 373 { |
413 #ifdef PNG_WRITE_tEXt_SUPPORTED | 374 #ifdef PNG_WRITE_tEXt_SUPPORTED |
414 /* Write uncompressed chunk */ | 375 /* Write uncompressed chunk */ |
415 png_write_tEXt(png_ptr, info_ptr->text[i].key, | 376 png_write_tEXt(png_ptr, info_ptr->text[i].key, |
416 info_ptr->text[i].text, 0); | 377 info_ptr->text[i].text, 0); |
417 #else | 378 #else |
418 png_warning(png_ptr, "Unable to write uncompressed text"); | 379 png_warning(png_ptr, "Unable to write uncompressed text"); |
419 #endif | 380 #endif |
420 | 381 |
421 /* Mark this chunk as written */ | 382 /* Mark this chunk as written */ |
422 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; | 383 info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR; |
423 } | 384 } |
424 } | 385 } |
425 #endif | 386 #endif |
426 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED | 387 #ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED |
427 write_unknown_chunks(png_ptr, info_ptr, PNG_AFTER_IDAT); | 388 if (info_ptr->unknown_chunks_num) |
| 389 { |
| 390 png_unknown_chunk *up; |
| 391 |
| 392 png_debug(5, "writing extra chunks"); |
| 393 |
| 394 for (up = info_ptr->unknown_chunks; |
| 395 up < info_ptr->unknown_chunks + info_ptr->unknown_chunks_num; |
| 396 up++) |
| 397 { |
| 398 int keep = png_handle_as_unknown(png_ptr, up->name); |
| 399 if (keep != PNG_HANDLE_CHUNK_NEVER && |
| 400 up->location && (up->location & PNG_AFTER_IDAT) && |
| 401 ((up->name[3] & 0x20) || keep == PNG_HANDLE_CHUNK_ALWAYS || |
| 402 (png_ptr->flags & PNG_FLAG_KEEP_UNSAFE_CHUNKS))) |
| 403 { |
| 404 png_write_chunk(png_ptr, up->name, up->data, up->size); |
| 405 } |
| 406 } |
| 407 } |
428 #endif | 408 #endif |
429 } | 409 } |
430 | 410 |
431 png_ptr->mode |= PNG_AFTER_IDAT; | 411 png_ptr->mode |= PNG_AFTER_IDAT; |
432 | 412 |
433 /* Write end of PNG file */ | 413 /* Write end of PNG file */ |
434 png_write_IEND(png_ptr); | 414 png_write_IEND(png_ptr); |
435 /* This flush, added in libpng-1.0.8, removed from libpng-1.0.9beta03, | 415 /* This flush, added in libpng-1.0.8, removed from libpng-1.0.9beta03, |
436 * and restored again in libpng-1.2.30, may cause some applications that | 416 * and restored again in libpng-1.2.30, may cause some applications that |
437 * do not set png_ptr->output_flush_fn to crash. If your application | 417 * do not set png_ptr->output_flush_fn to crash. If your application |
438 * experiences a problem, please try building libpng with | 418 * experiences a problem, please try building libpng with |
439 * PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED defined, and report the event to | 419 * PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED defined, and report the event to |
440 * png-mng-implement at lists.sf.net . | 420 * png-mng-implement at lists.sf.net . |
441 */ | 421 */ |
442 #ifdef PNG_WRITE_FLUSH_SUPPORTED | 422 #ifdef PNG_WRITE_FLUSH_SUPPORTED |
443 # ifdef PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED | 423 # ifdef PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED |
444 png_flush(png_ptr); | 424 png_flush(png_ptr); |
445 # endif | 425 # endif |
446 #endif | 426 #endif |
447 } | 427 } |
448 | 428 |
449 #ifdef PNG_CONVERT_tIME_SUPPORTED | 429 #ifdef PNG_CONVERT_tIME_SUPPORTED |
| 430 /* "tm" structure is not supported on WindowsCE */ |
450 void PNGAPI | 431 void PNGAPI |
451 png_convert_from_struct_tm(png_timep ptime, PNG_CONST struct tm * ttime) | 432 png_convert_from_struct_tm(png_timep ptime, struct tm FAR * ttime) |
452 { | 433 { |
453 png_debug(1, "in png_convert_from_struct_tm"); | 434 png_debug(1, "in png_convert_from_struct_tm"); |
454 | 435 |
455 ptime->year = (png_uint_16)(1900 + ttime->tm_year); | 436 ptime->year = (png_uint_16)(1900 + ttime->tm_year); |
456 ptime->month = (png_byte)(ttime->tm_mon + 1); | 437 ptime->month = (png_byte)(ttime->tm_mon + 1); |
457 ptime->day = (png_byte)ttime->tm_mday; | 438 ptime->day = (png_byte)ttime->tm_mday; |
458 ptime->hour = (png_byte)ttime->tm_hour; | 439 ptime->hour = (png_byte)ttime->tm_hour; |
459 ptime->minute = (png_byte)ttime->tm_min; | 440 ptime->minute = (png_byte)ttime->tm_min; |
460 ptime->second = (png_byte)ttime->tm_sec; | 441 ptime->second = (png_byte)ttime->tm_sec; |
461 } | 442 } |
462 | 443 |
463 void PNGAPI | 444 void PNGAPI |
464 png_convert_from_time_t(png_timep ptime, time_t ttime) | 445 png_convert_from_time_t(png_timep ptime, time_t ttime) |
465 { | 446 { |
466 struct tm *tbuf; | 447 struct tm *tbuf; |
467 | 448 |
468 png_debug(1, "in png_convert_from_time_t"); | 449 png_debug(1, "in png_convert_from_time_t"); |
469 | 450 |
470 tbuf = gmtime(&ttime); | 451 tbuf = gmtime(&ttime); |
471 png_convert_from_struct_tm(ptime, tbuf); | 452 png_convert_from_struct_tm(ptime, tbuf); |
472 } | 453 } |
473 #endif | 454 #endif |
474 | 455 |
475 /* Initialize png_ptr structure, and allocate any memory needed */ | 456 /* Initialize png_ptr structure, and allocate any memory needed */ |
476 PNG_FUNCTION(png_structp,PNGAPI | 457 png_structp PNGAPI |
477 png_create_write_struct,(png_const_charp user_png_ver, png_voidp error_ptr, | 458 png_create_write_struct(png_const_charp user_png_ver, png_voidp error_ptr, |
478 png_error_ptr error_fn, png_error_ptr warn_fn),PNG_ALLOCATED) | 459 png_error_ptr error_fn, png_error_ptr warn_fn) |
479 { | 460 { |
480 #ifndef PNG_USER_MEM_SUPPORTED | 461 #ifdef PNG_USER_MEM_SUPPORTED |
481 png_structrp png_ptr = png_create_png_struct(user_png_ver, error_ptr, | 462 return (png_create_write_struct_2(user_png_ver, error_ptr, error_fn, |
482 error_fn, warn_fn, NULL, NULL, NULL); | 463 warn_fn, png_voidp_NULL, png_malloc_ptr_NULL, png_free_ptr_NULL)); |
483 #else | |
484 return png_create_write_struct_2(user_png_ver, error_ptr, error_fn, | |
485 warn_fn, NULL, NULL, NULL); | |
486 } | 464 } |
487 | 465 |
488 /* Alternate initialize png_ptr structure, and allocate any memory needed */ | 466 /* Alternate initialize png_ptr structure, and allocate any memory needed */ |
489 PNG_FUNCTION(png_structp,PNGAPI | 467 png_structp PNGAPI |
490 png_create_write_struct_2,(png_const_charp user_png_ver, png_voidp error_ptr, | 468 png_create_write_struct_2(png_const_charp user_png_ver, png_voidp error_ptr, |
491 png_error_ptr error_fn, png_error_ptr warn_fn, png_voidp mem_ptr, | 469 png_error_ptr error_fn, png_error_ptr warn_fn, png_voidp mem_ptr, |
492 png_malloc_ptr malloc_fn, png_free_ptr free_fn),PNG_ALLOCATED) | 470 png_malloc_ptr malloc_fn, png_free_ptr free_fn) |
493 { | 471 { |
494 png_structrp png_ptr = png_create_png_struct(user_png_ver, error_ptr, | |
495 error_fn, warn_fn, mem_ptr, malloc_fn, free_fn); | |
496 #endif /* PNG_USER_MEM_SUPPORTED */ | 472 #endif /* PNG_USER_MEM_SUPPORTED */ |
497 if (png_ptr != NULL) | 473 #ifdef PNG_SETJMP_SUPPORTED |
498 { | 474 volatile |
499 /* Set the zlib control values to defaults; they can be overridden by the | 475 #endif |
500 * application after the struct has been created. | 476 png_structp png_ptr; |
501 */ | 477 #ifdef PNG_SETJMP_SUPPORTED |
502 png_ptr->zbuffer_size = PNG_ZBUF_SIZE; | 478 #ifdef USE_FAR_KEYWORD |
503 | 479 jmp_buf jmpbuf; |
504 /* The 'zlib_strategy' setting is irrelevant because png_default_claim in | 480 #endif |
505 * pngwutil.c defaults it according to whether or not filters will be | 481 #endif |
506 * used, and ignores this setting. | 482 int i; |
507 */ | 483 |
508 png_ptr->zlib_strategy = PNG_Z_DEFAULT_STRATEGY; | 484 png_debug(1, "in png_create_write_struct"); |
509 png_ptr->zlib_level = PNG_Z_DEFAULT_COMPRESSION; | 485 |
510 png_ptr->zlib_mem_level = 8; | 486 #ifdef PNG_USER_MEM_SUPPORTED |
511 png_ptr->zlib_window_bits = 15; | 487 png_ptr = (png_structp)png_create_struct_2(PNG_STRUCT_PNG, |
512 png_ptr->zlib_method = 8; | 488 (png_malloc_ptr)malloc_fn, (png_voidp)mem_ptr); |
513 | 489 #else |
514 #ifdef PNG_WRITE_COMPRESSED_TEXT_SUPPORTED | 490 png_ptr = (png_structp)png_create_struct(PNG_STRUCT_PNG); |
515 png_ptr->zlib_text_strategy = PNG_TEXT_Z_DEFAULT_STRATEGY; | 491 #endif /* PNG_USER_MEM_SUPPORTED */ |
516 png_ptr->zlib_text_level = PNG_TEXT_Z_DEFAULT_COMPRESSION; | 492 if (png_ptr == NULL) |
517 png_ptr->zlib_text_mem_level = 8; | 493 return (NULL); |
518 png_ptr->zlib_text_window_bits = 15; | 494 |
519 png_ptr->zlib_text_method = 8; | 495 /* Added at libpng-1.2.6 */ |
520 #endif /* PNG_WRITE_COMPRESSED_TEXT_SUPPORTED */ | 496 #ifdef PNG_SET_USER_LIMITS_SUPPORTED |
521 | 497 png_ptr->user_width_max = PNG_USER_WIDTH_MAX; |
522 /* This is a highly dubious configuration option; by default it is off, | 498 png_ptr->user_height_max = PNG_USER_HEIGHT_MAX; |
523 * but it may be appropriate for private builds that are testing | 499 #endif |
524 * extensions not conformant to the current specification, or of | 500 |
525 * applications that must not fail to write at all costs! | 501 #ifdef PNG_SETJMP_SUPPORTED |
526 */ | 502 #ifdef USE_FAR_KEYWORD |
527 #ifdef PNG_BENIGN_WRITE_ERRORS_SUPPORTED | 503 if (setjmp(jmpbuf)) |
528 png_ptr->flags |= PNG_FLAG_BENIGN_ERRORS_WARN; | 504 #else |
529 /* In stable builds only warn if an application error can be completely | 505 if (setjmp(png_ptr->jmpbuf)) |
530 * handled. | 506 #endif |
531 */ | 507 { |
532 #endif | 508 png_free(png_ptr, png_ptr->zbuf); |
533 | 509 png_ptr->zbuf = NULL; |
534 /* App warnings are warnings in release (or release candidate) builds but | 510 #ifdef PNG_USER_MEM_SUPPORTED |
535 * are errors during development. | 511 png_destroy_struct_2((png_voidp)png_ptr, |
536 */ | 512 (png_free_ptr)free_fn, (png_voidp)mem_ptr); |
537 #if PNG_LIBPNG_BUILD_BASE_TYPE >= PNG_LIBPNG_BUILD_RC | 513 #else |
538 png_ptr->flags |= PNG_FLAG_APP_WARNINGS_WARN; | 514 png_destroy_struct((png_voidp)png_ptr); |
539 #endif | 515 #endif |
540 | 516 return (NULL); |
541 /* TODO: delay this, it can be done in png_init_io() (if the app doesn't | 517 } |
542 * do it itself) avoiding setting the default function if it is not | 518 #ifdef USE_FAR_KEYWORD |
543 * required. | 519 png_memcpy(png_ptr->jmpbuf, jmpbuf, png_sizeof(jmp_buf)); |
544 */ | 520 #endif |
545 png_set_write_fn(png_ptr, NULL, NULL, NULL); | 521 #endif |
546 } | 522 |
547 | 523 #ifdef PNG_USER_MEM_SUPPORTED |
548 return png_ptr; | 524 png_set_mem_fn(png_ptr, mem_ptr, malloc_fn, free_fn); |
549 } | 525 #endif /* PNG_USER_MEM_SUPPORTED */ |
550 | 526 png_set_error_fn(png_ptr, error_ptr, error_fn, warn_fn); |
| 527 |
| 528 if (user_png_ver) |
| 529 { |
| 530 i = 0; |
| 531 do |
| 532 { |
| 533 if (user_png_ver[i] != png_libpng_ver[i]) |
| 534 png_ptr->flags |= PNG_FLAG_LIBRARY_MISMATCH; |
| 535 } while (png_libpng_ver[i++]); |
| 536 } |
| 537 |
| 538 if (png_ptr->flags & PNG_FLAG_LIBRARY_MISMATCH) |
| 539 { |
| 540 /* Libpng 0.90 and later are binary incompatible with libpng 0.89, so |
| 541 * we must recompile any applications that use any older library version. |
| 542 * For versions after libpng 1.0, we will be compatible, so we need |
| 543 * only check the first digit. |
| 544 */ |
| 545 if (user_png_ver == NULL || user_png_ver[0] != png_libpng_ver[0] || |
| 546 (user_png_ver[0] == '1' && user_png_ver[2] != png_libpng_ver[2]) || |
| 547 (user_png_ver[0] == '0' && user_png_ver[2] < '9')) |
| 548 { |
| 549 #if defined(PNG_STDIO_SUPPORTED) && !defined(_WIN32_WCE) |
| 550 char msg[80]; |
| 551 if (user_png_ver) |
| 552 { |
| 553 png_snprintf(msg, 80, |
| 554 "Application was compiled with png.h from libpng-%.20s", |
| 555 user_png_ver); |
| 556 png_warning(png_ptr, msg); |
| 557 } |
| 558 png_snprintf(msg, 80, |
| 559 "Application is running with png.c from libpng-%.20s", |
| 560 png_libpng_ver); |
| 561 png_warning(png_ptr, msg); |
| 562 #endif |
| 563 #ifdef PNG_ERROR_NUMBERS_SUPPORTED |
| 564 png_ptr->flags = 0; |
| 565 #endif |
| 566 png_error(png_ptr, |
| 567 "Incompatible libpng version in application and library"); |
| 568 } |
| 569 } |
| 570 |
| 571 /* Initialize zbuf - compression buffer */ |
| 572 png_ptr->zbuf_size = PNG_ZBUF_SIZE; |
| 573 png_ptr->zbuf = (png_bytep)png_malloc(png_ptr, |
| 574 (png_uint_32)png_ptr->zbuf_size); |
| 575 |
| 576 png_set_write_fn(png_ptr, png_voidp_NULL, png_rw_ptr_NULL, |
| 577 png_flush_ptr_NULL); |
| 578 |
| 579 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED |
| 580 png_set_filter_heuristics(png_ptr, PNG_FILTER_HEURISTIC_DEFAULT, |
| 581 1, png_doublep_NULL, png_doublep_NULL); |
| 582 #endif |
| 583 |
| 584 #ifdef PNG_SETJMP_SUPPORTED |
| 585 /* Applications that neglect to set up their own setjmp() and then |
| 586 * encounter a png_error() will longjmp here. Since the jmpbuf is |
| 587 * then meaningless we abort instead of returning. |
| 588 */ |
| 589 #ifdef USE_FAR_KEYWORD |
| 590 if (setjmp(jmpbuf)) |
| 591 PNG_ABORT(); |
| 592 png_memcpy(png_ptr->jmpbuf, jmpbuf, png_sizeof(jmp_buf)); |
| 593 #else |
| 594 if (setjmp(png_ptr->jmpbuf)) |
| 595 PNG_ABORT(); |
| 596 #endif |
| 597 #endif |
| 598 return (png_ptr); |
| 599 } |
| 600 |
| 601 /* Initialize png_ptr structure, and allocate any memory needed */ |
| 602 #if defined(PNG_1_0_X) || defined(PNG_1_2_X) |
| 603 /* Deprecated. */ |
| 604 #undef png_write_init |
| 605 void PNGAPI |
| 606 png_write_init(png_structp png_ptr) |
| 607 { |
| 608 /* We only come here via pre-1.0.7-compiled applications */ |
| 609 png_write_init_2(png_ptr, "1.0.6 or earlier", 0, 0); |
| 610 } |
| 611 |
| 612 void PNGAPI |
| 613 png_write_init_2(png_structp png_ptr, png_const_charp user_png_ver, |
| 614 png_size_t png_struct_size, png_size_t png_info_size) |
| 615 { |
| 616 /* We only come here via pre-1.0.12-compiled applications */ |
| 617 if (png_ptr == NULL) return; |
| 618 #if defined(PNG_STDIO_SUPPORTED) && !defined(_WIN32_WCE) |
| 619 if (png_sizeof(png_struct) > png_struct_size || |
| 620 png_sizeof(png_info) > png_info_size) |
| 621 { |
| 622 char msg[80]; |
| 623 png_ptr->warning_fn = NULL; |
| 624 if (user_png_ver) |
| 625 { |
| 626 png_snprintf(msg, 80, |
| 627 "Application was compiled with png.h from libpng-%.20s", |
| 628 user_png_ver); |
| 629 png_warning(png_ptr, msg); |
| 630 } |
| 631 png_snprintf(msg, 80, |
| 632 "Application is running with png.c from libpng-%.20s", |
| 633 png_libpng_ver); |
| 634 png_warning(png_ptr, msg); |
| 635 } |
| 636 #endif |
| 637 if (png_sizeof(png_struct) > png_struct_size) |
| 638 { |
| 639 png_ptr->error_fn = NULL; |
| 640 #ifdef PNG_ERROR_NUMBERS_SUPPORTED |
| 641 png_ptr->flags = 0; |
| 642 #endif |
| 643 png_error(png_ptr, |
| 644 "The png struct allocated by the application for writing is" |
| 645 " too small."); |
| 646 } |
| 647 if (png_sizeof(png_info) > png_info_size) |
| 648 { |
| 649 png_ptr->error_fn = NULL; |
| 650 #ifdef PNG_ERROR_NUMBERS_SUPPORTED |
| 651 png_ptr->flags = 0; |
| 652 #endif |
| 653 png_error(png_ptr, |
| 654 "The info struct allocated by the application for writing is" |
| 655 " too small."); |
| 656 } |
| 657 png_write_init_3(&png_ptr, user_png_ver, png_struct_size); |
| 658 } |
| 659 #endif /* PNG_1_0_X || PNG_1_2_X */ |
| 660 |
| 661 |
| 662 void PNGAPI |
| 663 png_write_init_3(png_structpp ptr_ptr, png_const_charp user_png_ver, |
| 664 png_size_t png_struct_size) |
| 665 { |
| 666 png_structp png_ptr = *ptr_ptr; |
| 667 #ifdef PNG_SETJMP_SUPPORTED |
| 668 jmp_buf tmp_jmp; /* to save current jump buffer */ |
| 669 #endif |
| 670 |
| 671 int i = 0; |
| 672 |
| 673 if (png_ptr == NULL) |
| 674 return; |
| 675 |
| 676 do |
| 677 { |
| 678 if (user_png_ver[i] != png_libpng_ver[i]) |
| 679 { |
| 680 #ifdef PNG_LEGACY_SUPPORTED |
| 681 png_ptr->flags |= PNG_FLAG_LIBRARY_MISMATCH; |
| 682 #else |
| 683 png_ptr->warning_fn = NULL; |
| 684 png_warning(png_ptr, |
| 685 "Application uses deprecated png_write_init() and should be recompiled."); |
| 686 #endif |
| 687 } |
| 688 } while (png_libpng_ver[i++]); |
| 689 |
| 690 png_debug(1, "in png_write_init_3"); |
| 691 |
| 692 #ifdef PNG_SETJMP_SUPPORTED |
| 693 /* Save jump buffer and error functions */ |
| 694 png_memcpy(tmp_jmp, png_ptr->jmpbuf, png_sizeof(jmp_buf)); |
| 695 #endif |
| 696 |
| 697 if (png_sizeof(png_struct) > png_struct_size) |
| 698 { |
| 699 png_destroy_struct(png_ptr); |
| 700 png_ptr = (png_structp)png_create_struct(PNG_STRUCT_PNG); |
| 701 *ptr_ptr = png_ptr; |
| 702 } |
| 703 |
| 704 /* Reset all variables to 0 */ |
| 705 png_memset(png_ptr, 0, png_sizeof(png_struct)); |
| 706 |
| 707 /* Added at libpng-1.2.6 */ |
| 708 #ifdef PNG_SET_USER_LIMITS_SUPPORTED |
| 709 png_ptr->user_width_max = PNG_USER_WIDTH_MAX; |
| 710 png_ptr->user_height_max = PNG_USER_HEIGHT_MAX; |
| 711 #endif |
| 712 |
| 713 #ifdef PNG_SETJMP_SUPPORTED |
| 714 /* Restore jump buffer */ |
| 715 png_memcpy(png_ptr->jmpbuf, tmp_jmp, png_sizeof(jmp_buf)); |
| 716 #endif |
| 717 |
| 718 png_set_write_fn(png_ptr, png_voidp_NULL, png_rw_ptr_NULL, |
| 719 png_flush_ptr_NULL); |
| 720 |
| 721 /* Initialize zbuf - compression buffer */ |
| 722 png_ptr->zbuf_size = PNG_ZBUF_SIZE; |
| 723 png_ptr->zbuf = (png_bytep)png_malloc(png_ptr, |
| 724 (png_uint_32)png_ptr->zbuf_size); |
| 725 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED |
| 726 png_set_filter_heuristics(png_ptr, PNG_FILTER_HEURISTIC_DEFAULT, |
| 727 1, png_doublep_NULL, png_doublep_NULL); |
| 728 #endif |
| 729 } |
551 | 730 |
552 /* Write a few rows of image data. If the image is interlaced, | 731 /* Write a few rows of image data. If the image is interlaced, |
553 * either you will have to write the 7 sub images, or, if you | 732 * either you will have to write the 7 sub images, or, if you |
554 * have called png_set_interlace_handling(), you will have to | 733 * have called png_set_interlace_handling(), you will have to |
555 * "write" the image seven times. | 734 * "write" the image seven times. |
556 */ | 735 */ |
557 void PNGAPI | 736 void PNGAPI |
558 png_write_rows(png_structrp png_ptr, png_bytepp row, | 737 png_write_rows(png_structp png_ptr, png_bytepp row, |
559 png_uint_32 num_rows) | 738 png_uint_32 num_rows) |
560 { | 739 { |
561 png_uint_32 i; /* row counter */ | 740 png_uint_32 i; /* row counter */ |
562 png_bytepp rp; /* row pointer */ | 741 png_bytepp rp; /* row pointer */ |
563 | 742 |
564 png_debug(1, "in png_write_rows"); | 743 png_debug(1, "in png_write_rows"); |
565 | 744 |
566 if (png_ptr == NULL) | 745 if (png_ptr == NULL) |
567 return; | 746 return; |
568 | 747 |
569 /* Loop through the rows */ | 748 /* Loop through the rows */ |
570 for (i = 0, rp = row; i < num_rows; i++, rp++) | 749 for (i = 0, rp = row; i < num_rows; i++, rp++) |
571 { | 750 { |
572 png_write_row(png_ptr, *rp); | 751 png_write_row(png_ptr, *rp); |
573 } | 752 } |
574 } | 753 } |
575 | 754 |
576 /* Write the image. You only need to call this function once, even | 755 /* Write the image. You only need to call this function once, even |
577 * if you are writing an interlaced image. | 756 * if you are writing an interlaced image. |
578 */ | 757 */ |
579 void PNGAPI | 758 void PNGAPI |
580 png_write_image(png_structrp png_ptr, png_bytepp image) | 759 png_write_image(png_structp png_ptr, png_bytepp image) |
581 { | 760 { |
582 png_uint_32 i; /* row index */ | 761 png_uint_32 i; /* row index */ |
583 int pass, num_pass; /* pass variables */ | 762 int pass, num_pass; /* pass variables */ |
584 png_bytepp rp; /* points to current row */ | 763 png_bytepp rp; /* points to current row */ |
585 | 764 |
586 if (png_ptr == NULL) | 765 if (png_ptr == NULL) |
587 return; | 766 return; |
588 | 767 |
589 png_debug(1, "in png_write_image"); | 768 png_debug(1, "in png_write_image"); |
590 | 769 |
(...skipping 11 matching lines...) Expand all Loading... |
602 /* Loop through image */ | 781 /* Loop through image */ |
603 for (i = 0, rp = image; i < png_ptr->height; i++, rp++) | 782 for (i = 0, rp = image; i < png_ptr->height; i++, rp++) |
604 { | 783 { |
605 png_write_row(png_ptr, *rp); | 784 png_write_row(png_ptr, *rp); |
606 } | 785 } |
607 } | 786 } |
608 } | 787 } |
609 | 788 |
610 /* Called by user to write a row of image data */ | 789 /* Called by user to write a row of image data */ |
611 void PNGAPI | 790 void PNGAPI |
612 png_write_row(png_structrp png_ptr, png_const_bytep row) | 791 png_write_row(png_structp png_ptr, png_bytep row) |
613 { | 792 { |
614 /* 1.5.6: moved from png_struct to be a local structure: */ | |
615 png_row_info row_info; | |
616 | |
617 if (png_ptr == NULL) | 793 if (png_ptr == NULL) |
618 return; | 794 return; |
619 | 795 |
620 png_debug2(1, "in png_write_row (row %u, pass %d)", | 796 png_debug2(1, "in png_write_row (row %ld, pass %d)", |
621 png_ptr->row_number, png_ptr->pass); | 797 png_ptr->row_number, png_ptr->pass); |
622 | 798 |
623 /* Initialize transformations and other stuff if first time */ | 799 /* Initialize transformations and other stuff if first time */ |
624 if (png_ptr->row_number == 0 && png_ptr->pass == 0) | 800 if (png_ptr->row_number == 0 && png_ptr->pass == 0) |
625 { | 801 { |
626 /* Make sure we wrote the header info */ | 802 /* Make sure we wrote the header info */ |
627 if (!(png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE)) | 803 if (!(png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE)) |
628 png_error(png_ptr, | 804 png_error(png_ptr, |
629 "png_write_info was never called before png_write_row"); | 805 "png_write_info was never called before png_write_row."); |
630 | 806 |
631 /* Check for transforms that have been set but were defined out */ | 807 /* Check for transforms that have been set but were defined out */ |
632 #if !defined(PNG_WRITE_INVERT_SUPPORTED) && defined(PNG_READ_INVERT_SUPPORTED) | 808 #if !defined(PNG_WRITE_INVERT_SUPPORTED) && defined(PNG_READ_INVERT_SUPPORTED) |
633 if (png_ptr->transformations & PNG_INVERT_MONO) | 809 if (png_ptr->transformations & PNG_INVERT_MONO) |
634 png_warning(png_ptr, "PNG_WRITE_INVERT_SUPPORTED is not defined"); | 810 png_warning(png_ptr, |
| 811 "PNG_WRITE_INVERT_SUPPORTED is not defined."); |
635 #endif | 812 #endif |
636 | |
637 #if !defined(PNG_WRITE_FILLER_SUPPORTED) && defined(PNG_READ_FILLER_SUPPORTED) | 813 #if !defined(PNG_WRITE_FILLER_SUPPORTED) && defined(PNG_READ_FILLER_SUPPORTED) |
638 if (png_ptr->transformations & PNG_FILLER) | 814 if (png_ptr->transformations & PNG_FILLER) |
639 png_warning(png_ptr, "PNG_WRITE_FILLER_SUPPORTED is not defined"); | 815 png_warning(png_ptr, |
| 816 "PNG_WRITE_FILLER_SUPPORTED is not defined."); |
640 #endif | 817 #endif |
641 #if !defined(PNG_WRITE_PACKSWAP_SUPPORTED) && \ | 818 #if !defined(PNG_WRITE_PACKSWAP_SUPPORTED) && \ |
642 defined(PNG_READ_PACKSWAP_SUPPORTED) | 819 defined(PNG_READ_PACKSWAP_SUPPORTED) |
643 if (png_ptr->transformations & PNG_PACKSWAP) | 820 if (png_ptr->transformations & PNG_PACKSWAP) |
644 png_warning(png_ptr, | 821 png_warning(png_ptr, |
645 "PNG_WRITE_PACKSWAP_SUPPORTED is not defined"); | 822 "PNG_WRITE_PACKSWAP_SUPPORTED is not defined."); |
646 #endif | 823 #endif |
647 | |
648 #if !defined(PNG_WRITE_PACK_SUPPORTED) && defined(PNG_READ_PACK_SUPPORTED) | 824 #if !defined(PNG_WRITE_PACK_SUPPORTED) && defined(PNG_READ_PACK_SUPPORTED) |
649 if (png_ptr->transformations & PNG_PACK) | 825 if (png_ptr->transformations & PNG_PACK) |
650 png_warning(png_ptr, "PNG_WRITE_PACK_SUPPORTED is not defined"); | 826 png_warning(png_ptr, "PNG_WRITE_PACK_SUPPORTED is not defined."); |
651 #endif | 827 #endif |
652 | |
653 #if !defined(PNG_WRITE_SHIFT_SUPPORTED) && defined(PNG_READ_SHIFT_SUPPORTED) | 828 #if !defined(PNG_WRITE_SHIFT_SUPPORTED) && defined(PNG_READ_SHIFT_SUPPORTED) |
654 if (png_ptr->transformations & PNG_SHIFT) | 829 if (png_ptr->transformations & PNG_SHIFT) |
655 png_warning(png_ptr, "PNG_WRITE_SHIFT_SUPPORTED is not defined"); | 830 png_warning(png_ptr, "PNG_WRITE_SHIFT_SUPPORTED is not defined."); |
656 #endif | 831 #endif |
657 | |
658 #if !defined(PNG_WRITE_BGR_SUPPORTED) && defined(PNG_READ_BGR_SUPPORTED) | 832 #if !defined(PNG_WRITE_BGR_SUPPORTED) && defined(PNG_READ_BGR_SUPPORTED) |
659 if (png_ptr->transformations & PNG_BGR) | 833 if (png_ptr->transformations & PNG_BGR) |
660 png_warning(png_ptr, "PNG_WRITE_BGR_SUPPORTED is not defined"); | 834 png_warning(png_ptr, "PNG_WRITE_BGR_SUPPORTED is not defined."); |
661 #endif | 835 #endif |
662 | |
663 #if !defined(PNG_WRITE_SWAP_SUPPORTED) && defined(PNG_READ_SWAP_SUPPORTED) | 836 #if !defined(PNG_WRITE_SWAP_SUPPORTED) && defined(PNG_READ_SWAP_SUPPORTED) |
664 if (png_ptr->transformations & PNG_SWAP_BYTES) | 837 if (png_ptr->transformations & PNG_SWAP_BYTES) |
665 png_warning(png_ptr, "PNG_WRITE_SWAP_SUPPORTED is not defined"); | 838 png_warning(png_ptr, "PNG_WRITE_SWAP_SUPPORTED is not defined."); |
666 #endif | 839 #endif |
667 | 840 |
668 png_write_start_row(png_ptr); | 841 png_write_start_row(png_ptr); |
669 } | 842 } |
670 | 843 |
671 #ifdef PNG_WRITE_INTERLACING_SUPPORTED | 844 #ifdef PNG_WRITE_INTERLACING_SUPPORTED |
672 /* If interlaced and not interested in row, return */ | 845 /* If interlaced and not interested in row, return */ |
673 if (png_ptr->interlaced && (png_ptr->transformations & PNG_INTERLACE)) | 846 if (png_ptr->interlaced && (png_ptr->transformations & PNG_INTERLACE)) |
674 { | 847 { |
675 switch (png_ptr->pass) | 848 switch (png_ptr->pass) |
676 { | 849 { |
677 case 0: | 850 case 0: |
678 if (png_ptr->row_number & 0x07) | 851 if (png_ptr->row_number & 0x07) |
679 { | 852 { |
680 png_write_finish_row(png_ptr); | 853 png_write_finish_row(png_ptr); |
681 return; | 854 return; |
682 } | 855 } |
683 break; | 856 break; |
684 | |
685 case 1: | 857 case 1: |
686 if ((png_ptr->row_number & 0x07) || png_ptr->width < 5) | 858 if ((png_ptr->row_number & 0x07) || png_ptr->width < 5) |
687 { | 859 { |
688 png_write_finish_row(png_ptr); | 860 png_write_finish_row(png_ptr); |
689 return; | 861 return; |
690 } | 862 } |
691 break; | 863 break; |
692 | |
693 case 2: | 864 case 2: |
694 if ((png_ptr->row_number & 0x07) != 4) | 865 if ((png_ptr->row_number & 0x07) != 4) |
695 { | 866 { |
696 png_write_finish_row(png_ptr); | 867 png_write_finish_row(png_ptr); |
697 return; | 868 return; |
698 } | 869 } |
699 break; | 870 break; |
700 | |
701 case 3: | 871 case 3: |
702 if ((png_ptr->row_number & 0x03) || png_ptr->width < 3) | 872 if ((png_ptr->row_number & 0x03) || png_ptr->width < 3) |
703 { | 873 { |
704 png_write_finish_row(png_ptr); | 874 png_write_finish_row(png_ptr); |
705 return; | 875 return; |
706 } | 876 } |
707 break; | 877 break; |
708 | |
709 case 4: | 878 case 4: |
710 if ((png_ptr->row_number & 0x03) != 2) | 879 if ((png_ptr->row_number & 0x03) != 2) |
711 { | 880 { |
712 png_write_finish_row(png_ptr); | 881 png_write_finish_row(png_ptr); |
713 return; | 882 return; |
714 } | 883 } |
715 break; | 884 break; |
716 | |
717 case 5: | 885 case 5: |
718 if ((png_ptr->row_number & 0x01) || png_ptr->width < 2) | 886 if ((png_ptr->row_number & 0x01) || png_ptr->width < 2) |
719 { | 887 { |
720 png_write_finish_row(png_ptr); | 888 png_write_finish_row(png_ptr); |
721 return; | 889 return; |
722 } | 890 } |
723 break; | 891 break; |
724 | |
725 case 6: | 892 case 6: |
726 if (!(png_ptr->row_number & 0x01)) | 893 if (!(png_ptr->row_number & 0x01)) |
727 { | 894 { |
728 png_write_finish_row(png_ptr); | 895 png_write_finish_row(png_ptr); |
729 return; | 896 return; |
730 } | 897 } |
731 break; | 898 break; |
732 | |
733 default: /* error: ignore it */ | |
734 break; | |
735 } | 899 } |
736 } | 900 } |
737 #endif | 901 #endif |
738 | 902 |
739 /* Set up row info for transformations */ | 903 /* Set up row info for transformations */ |
740 row_info.color_type = png_ptr->color_type; | 904 png_ptr->row_info.color_type = png_ptr->color_type; |
741 row_info.width = png_ptr->usr_width; | 905 png_ptr->row_info.width = png_ptr->usr_width; |
742 row_info.channels = png_ptr->usr_channels; | 906 png_ptr->row_info.channels = png_ptr->usr_channels; |
743 row_info.bit_depth = png_ptr->usr_bit_depth; | 907 png_ptr->row_info.bit_depth = png_ptr->usr_bit_depth; |
744 row_info.pixel_depth = (png_byte)(row_info.bit_depth * row_info.channels); | 908 png_ptr->row_info.pixel_depth = (png_byte)(png_ptr->row_info.bit_depth * |
745 row_info.rowbytes = PNG_ROWBYTES(row_info.pixel_depth, row_info.width); | 909 png_ptr->row_info.channels); |
746 | 910 |
747 png_debug1(3, "row_info->color_type = %d", row_info.color_type); | 911 png_ptr->row_info.rowbytes = PNG_ROWBYTES(png_ptr->row_info.pixel_depth, |
748 png_debug1(3, "row_info->width = %u", row_info.width); | 912 png_ptr->row_info.width); |
749 png_debug1(3, "row_info->channels = %d", row_info.channels); | 913 |
750 png_debug1(3, "row_info->bit_depth = %d", row_info.bit_depth); | 914 png_debug1(3, "row_info->color_type = %d", png_ptr->row_info.color_type); |
751 png_debug1(3, "row_info->pixel_depth = %d", row_info.pixel_depth); | 915 png_debug1(3, "row_info->width = %lu", png_ptr->row_info.width); |
752 png_debug1(3, "row_info->rowbytes = %lu", (unsigned long)row_info.rowbytes); | 916 png_debug1(3, "row_info->channels = %d", png_ptr->row_info.channels); |
| 917 png_debug1(3, "row_info->bit_depth = %d", png_ptr->row_info.bit_depth); |
| 918 png_debug1(3, "row_info->pixel_depth = %d", png_ptr->row_info.pixel_depth); |
| 919 png_debug1(3, "row_info->rowbytes = %lu", png_ptr->row_info.rowbytes); |
753 | 920 |
754 /* Copy user's row into buffer, leaving room for filter byte. */ | 921 /* Copy user's row into buffer, leaving room for filter byte. */ |
755 memcpy(png_ptr->row_buf + 1, row, row_info.rowbytes); | 922 png_memcpy_check(png_ptr, png_ptr->row_buf + 1, row, |
| 923 png_ptr->row_info.rowbytes); |
756 | 924 |
757 #ifdef PNG_WRITE_INTERLACING_SUPPORTED | 925 #ifdef PNG_WRITE_INTERLACING_SUPPORTED |
758 /* Handle interlacing */ | 926 /* Handle interlacing */ |
759 if (png_ptr->interlaced && png_ptr->pass < 6 && | 927 if (png_ptr->interlaced && png_ptr->pass < 6 && |
760 (png_ptr->transformations & PNG_INTERLACE)) | 928 (png_ptr->transformations & PNG_INTERLACE)) |
761 { | 929 { |
762 png_do_write_interlace(&row_info, png_ptr->row_buf + 1, png_ptr->pass); | 930 png_do_write_interlace(&(png_ptr->row_info), |
| 931 png_ptr->row_buf + 1, png_ptr->pass); |
763 /* This should always get caught above, but still ... */ | 932 /* This should always get caught above, but still ... */ |
764 if (!(row_info.width)) | 933 if (!(png_ptr->row_info.width)) |
765 { | 934 { |
766 png_write_finish_row(png_ptr); | 935 png_write_finish_row(png_ptr); |
767 return; | 936 return; |
768 } | 937 } |
769 } | 938 } |
770 #endif | 939 #endif |
771 | 940 |
772 #ifdef PNG_WRITE_TRANSFORMS_SUPPORTED | |
773 /* Handle other transformations */ | 941 /* Handle other transformations */ |
774 if (png_ptr->transformations) | 942 if (png_ptr->transformations) |
775 png_do_write_transformations(png_ptr, &row_info); | 943 png_do_write_transformations(png_ptr); |
776 #endif | |
777 | |
778 /* At this point the row_info pixel depth must match the 'transformed' depth, | |
779 * which is also the output depth. | |
780 */ | |
781 if (row_info.pixel_depth != png_ptr->pixel_depth || | |
782 row_info.pixel_depth != png_ptr->transformed_pixel_depth) | |
783 png_error(png_ptr, "internal write transform logic error"); | |
784 | 944 |
785 #ifdef PNG_MNG_FEATURES_SUPPORTED | 945 #ifdef PNG_MNG_FEATURES_SUPPORTED |
786 /* Write filter_method 64 (intrapixel differencing) only if | 946 /* Write filter_method 64 (intrapixel differencing) only if |
787 * 1. Libpng was compiled with PNG_MNG_FEATURES_SUPPORTED and | 947 * 1. Libpng was compiled with PNG_MNG_FEATURES_SUPPORTED and |
788 * 2. Libpng did not write a PNG signature (this filter_method is only | 948 * 2. Libpng did not write a PNG signature (this filter_method is only |
789 * used in PNG datastreams that are embedded in MNG datastreams) and | 949 * used in PNG datastreams that are embedded in MNG datastreams) and |
790 * 3. The application called png_permit_mng_features with a mask that | 950 * 3. The application called png_permit_mng_features with a mask that |
791 * included PNG_FLAG_MNG_FILTER_64 and | 951 * included PNG_FLAG_MNG_FILTER_64 and |
792 * 4. The filter_method is 64 and | 952 * 4. The filter_method is 64 and |
793 * 5. The color_type is RGB or RGBA | 953 * 5. The color_type is RGB or RGBA |
794 */ | 954 */ |
795 if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) && | 955 if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) && |
796 (png_ptr->filter_type == PNG_INTRAPIXEL_DIFFERENCING)) | 956 (png_ptr->filter_type == PNG_INTRAPIXEL_DIFFERENCING)) |
797 { | 957 { |
798 /* Intrapixel differencing */ | 958 /* Intrapixel differencing */ |
799 png_do_write_intrapixel(&row_info, png_ptr->row_buf + 1); | 959 png_do_write_intrapixel(&(png_ptr->row_info), png_ptr->row_buf + 1); |
800 } | 960 } |
801 #endif | 961 #endif |
802 | 962 |
803 /* Added at libpng-1.5.10 */ | |
804 #ifdef PNG_WRITE_CHECK_FOR_INVALID_INDEX_SUPPORTED | |
805 /* Check for out-of-range palette index */ | |
806 if (row_info.color_type == PNG_COLOR_TYPE_PALETTE && | |
807 png_ptr->num_palette_max >= 0) | |
808 png_do_check_palette_indexes(png_ptr, &row_info); | |
809 #endif | |
810 | |
811 /* Find a filter if necessary, filter the row and write it out. */ | 963 /* Find a filter if necessary, filter the row and write it out. */ |
812 png_write_find_filter(png_ptr, &row_info); | 964 png_write_find_filter(png_ptr, &(png_ptr->row_info)); |
813 | 965 |
814 if (png_ptr->write_row_fn != NULL) | 966 if (png_ptr->write_row_fn != NULL) |
815 (*(png_ptr->write_row_fn))(png_ptr, png_ptr->row_number, png_ptr->pass); | 967 (*(png_ptr->write_row_fn))(png_ptr, png_ptr->row_number, png_ptr->pass); |
816 } | 968 } |
817 | 969 |
818 #ifdef PNG_WRITE_FLUSH_SUPPORTED | 970 #ifdef PNG_WRITE_FLUSH_SUPPORTED |
819 /* Set the automatic flush interval or 0 to turn flushing off */ | 971 /* Set the automatic flush interval or 0 to turn flushing off */ |
820 void PNGAPI | 972 void PNGAPI |
821 png_set_flush(png_structrp png_ptr, int nrows) | 973 png_set_flush(png_structp png_ptr, int nrows) |
822 { | 974 { |
823 png_debug(1, "in png_set_flush"); | 975 png_debug(1, "in png_set_flush"); |
824 | 976 |
825 if (png_ptr == NULL) | 977 if (png_ptr == NULL) |
826 return; | 978 return; |
827 | |
828 png_ptr->flush_dist = (nrows < 0 ? 0 : nrows); | 979 png_ptr->flush_dist = (nrows < 0 ? 0 : nrows); |
829 } | 980 } |
830 | 981 |
831 /* Flush the current output buffers now */ | 982 /* Flush the current output buffers now */ |
832 void PNGAPI | 983 void PNGAPI |
833 png_write_flush(png_structrp png_ptr) | 984 png_write_flush(png_structp png_ptr) |
834 { | 985 { |
| 986 int wrote_IDAT; |
| 987 |
835 png_debug(1, "in png_write_flush"); | 988 png_debug(1, "in png_write_flush"); |
836 | 989 |
837 if (png_ptr == NULL) | 990 if (png_ptr == NULL) |
838 return; | 991 return; |
839 | |
840 /* We have already written out all of the data */ | 992 /* We have already written out all of the data */ |
841 if (png_ptr->row_number >= png_ptr->num_rows) | 993 if (png_ptr->row_number >= png_ptr->num_rows) |
842 return; | 994 return; |
843 | 995 |
844 png_compress_IDAT(png_ptr, NULL, 0, Z_SYNC_FLUSH); | 996 do |
| 997 { |
| 998 int ret; |
| 999 |
| 1000 /* Compress the data */ |
| 1001 ret = deflate(&png_ptr->zstream, Z_SYNC_FLUSH); |
| 1002 wrote_IDAT = 0; |
| 1003 |
| 1004 /* Check for compression errors */ |
| 1005 if (ret != Z_OK) |
| 1006 { |
| 1007 if (png_ptr->zstream.msg != NULL) |
| 1008 png_error(png_ptr, png_ptr->zstream.msg); |
| 1009 else |
| 1010 png_error(png_ptr, "zlib error"); |
| 1011 } |
| 1012 |
| 1013 if (!(png_ptr->zstream.avail_out)) |
| 1014 { |
| 1015 /* Write the IDAT and reset the zlib output buffer */ |
| 1016 png_write_IDAT(png_ptr, png_ptr->zbuf, |
| 1017 png_ptr->zbuf_size); |
| 1018 png_ptr->zstream.next_out = png_ptr->zbuf; |
| 1019 png_ptr->zstream.avail_out = (uInt)png_ptr->zbuf_size; |
| 1020 wrote_IDAT = 1; |
| 1021 } |
| 1022 } while(wrote_IDAT == 1); |
| 1023 |
| 1024 /* If there is any data left to be output, write it into a new IDAT */ |
| 1025 if (png_ptr->zbuf_size != png_ptr->zstream.avail_out) |
| 1026 { |
| 1027 /* Write the IDAT and reset the zlib output buffer */ |
| 1028 png_write_IDAT(png_ptr, png_ptr->zbuf, |
| 1029 png_ptr->zbuf_size - png_ptr->zstream.avail_out); |
| 1030 png_ptr->zstream.next_out = png_ptr->zbuf; |
| 1031 png_ptr->zstream.avail_out = (uInt)png_ptr->zbuf_size; |
| 1032 } |
845 png_ptr->flush_rows = 0; | 1033 png_ptr->flush_rows = 0; |
846 png_flush(png_ptr); | 1034 png_flush(png_ptr); |
847 } | 1035 } |
848 #endif /* PNG_WRITE_FLUSH_SUPPORTED */ | 1036 #endif /* PNG_WRITE_FLUSH_SUPPORTED */ |
849 | 1037 |
850 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED | 1038 /* Free all memory used by the write */ |
851 static void png_reset_filter_heuristics(png_structrp png_ptr);/* forward decl */ | 1039 void PNGAPI |
| 1040 png_destroy_write_struct(png_structpp png_ptr_ptr, png_infopp info_ptr_ptr) |
| 1041 { |
| 1042 png_structp png_ptr = NULL; |
| 1043 png_infop info_ptr = NULL; |
| 1044 #ifdef PNG_USER_MEM_SUPPORTED |
| 1045 png_free_ptr free_fn = NULL; |
| 1046 png_voidp mem_ptr = NULL; |
852 #endif | 1047 #endif |
853 | 1048 |
854 /* Free any memory used in png_ptr struct without freeing the struct itself. */ | 1049 png_debug(1, "in png_destroy_write_struct"); |
855 static void | 1050 |
856 png_write_destroy(png_structrp png_ptr) | 1051 if (png_ptr_ptr != NULL) |
| 1052 { |
| 1053 png_ptr = *png_ptr_ptr; |
| 1054 #ifdef PNG_USER_MEM_SUPPORTED |
| 1055 free_fn = png_ptr->free_fn; |
| 1056 mem_ptr = png_ptr->mem_ptr; |
| 1057 #endif |
| 1058 } |
| 1059 |
| 1060 #ifdef PNG_USER_MEM_SUPPORTED |
| 1061 if (png_ptr != NULL) |
| 1062 { |
| 1063 free_fn = png_ptr->free_fn; |
| 1064 mem_ptr = png_ptr->mem_ptr; |
| 1065 } |
| 1066 #endif |
| 1067 |
| 1068 if (info_ptr_ptr != NULL) |
| 1069 info_ptr = *info_ptr_ptr; |
| 1070 |
| 1071 if (info_ptr != NULL) |
| 1072 { |
| 1073 if (png_ptr != NULL) |
| 1074 { |
| 1075 png_free_data(png_ptr, info_ptr, PNG_FREE_ALL, -1); |
| 1076 |
| 1077 #ifdef PNG_HANDLE_AS_UNKNOWN_SUPPORTED |
| 1078 if (png_ptr->num_chunk_list) |
| 1079 { |
| 1080 png_free(png_ptr, png_ptr->chunk_list); |
| 1081 png_ptr->chunk_list = NULL; |
| 1082 png_ptr->num_chunk_list = 0; |
| 1083 } |
| 1084 #endif |
| 1085 } |
| 1086 |
| 1087 #ifdef PNG_USER_MEM_SUPPORTED |
| 1088 png_destroy_struct_2((png_voidp)info_ptr, (png_free_ptr)free_fn, |
| 1089 (png_voidp)mem_ptr); |
| 1090 #else |
| 1091 png_destroy_struct((png_voidp)info_ptr); |
| 1092 #endif |
| 1093 *info_ptr_ptr = NULL; |
| 1094 } |
| 1095 |
| 1096 if (png_ptr != NULL) |
| 1097 { |
| 1098 png_write_destroy(png_ptr); |
| 1099 #ifdef PNG_USER_MEM_SUPPORTED |
| 1100 png_destroy_struct_2((png_voidp)png_ptr, (png_free_ptr)free_fn, |
| 1101 (png_voidp)mem_ptr); |
| 1102 #else |
| 1103 png_destroy_struct((png_voidp)png_ptr); |
| 1104 #endif |
| 1105 *png_ptr_ptr = NULL; |
| 1106 } |
| 1107 } |
| 1108 |
| 1109 |
| 1110 /* Free any memory used in png_ptr struct (old method) */ |
| 1111 void /* PRIVATE */ |
| 1112 png_write_destroy(png_structp png_ptr) |
857 { | 1113 { |
| 1114 #ifdef PNG_SETJMP_SUPPORTED |
| 1115 jmp_buf tmp_jmp; /* Save jump buffer */ |
| 1116 #endif |
| 1117 png_error_ptr error_fn; |
| 1118 png_error_ptr warning_fn; |
| 1119 png_voidp error_ptr; |
| 1120 #ifdef PNG_USER_MEM_SUPPORTED |
| 1121 png_free_ptr free_fn; |
| 1122 #endif |
| 1123 |
858 png_debug(1, "in png_write_destroy"); | 1124 png_debug(1, "in png_write_destroy"); |
859 | 1125 |
860 /* Free any memory zlib uses */ | 1126 /* Free any memory zlib uses */ |
861 if (png_ptr->flags & PNG_FLAG_ZSTREAM_INITIALIZED) | 1127 deflateEnd(&png_ptr->zstream); |
862 deflateEnd(&png_ptr->zstream); | |
863 | 1128 |
864 /* Free our memory. png_free checks NULL for us. */ | 1129 /* Free our memory. png_free checks NULL for us. */ |
865 png_free_buffer_list(png_ptr, &png_ptr->zbuffer_list); | 1130 png_free(png_ptr, png_ptr->zbuf); |
866 png_free(png_ptr, png_ptr->row_buf); | 1131 png_free(png_ptr, png_ptr->row_buf); |
867 #ifdef PNG_WRITE_FILTER_SUPPORTED | 1132 #ifdef PNG_WRITE_FILTER_SUPPORTED |
868 png_free(png_ptr, png_ptr->prev_row); | 1133 png_free(png_ptr, png_ptr->prev_row); |
869 png_free(png_ptr, png_ptr->sub_row); | 1134 png_free(png_ptr, png_ptr->sub_row); |
870 png_free(png_ptr, png_ptr->up_row); | 1135 png_free(png_ptr, png_ptr->up_row); |
871 png_free(png_ptr, png_ptr->avg_row); | 1136 png_free(png_ptr, png_ptr->avg_row); |
872 png_free(png_ptr, png_ptr->paeth_row); | 1137 png_free(png_ptr, png_ptr->paeth_row); |
873 #endif | 1138 #endif |
874 | 1139 |
| 1140 #ifdef PNG_TIME_RFC1123_SUPPORTED |
| 1141 png_free(png_ptr, png_ptr->time_buffer); |
| 1142 #endif |
| 1143 |
875 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED | 1144 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED |
876 /* Use this to save a little code space, it doesn't free the filter_costs */ | 1145 png_free(png_ptr, png_ptr->prev_filters); |
877 png_reset_filter_heuristics(png_ptr); | 1146 png_free(png_ptr, png_ptr->filter_weights); |
| 1147 png_free(png_ptr, png_ptr->inv_filter_weights); |
878 png_free(png_ptr, png_ptr->filter_costs); | 1148 png_free(png_ptr, png_ptr->filter_costs); |
879 png_free(png_ptr, png_ptr->inv_filter_costs); | 1149 png_free(png_ptr, png_ptr->inv_filter_costs); |
880 #endif | 1150 #endif |
881 | 1151 |
882 #ifdef PNG_SET_UNKNOWN_CHUNKS_SUPPORTED | 1152 #ifdef PNG_SETJMP_SUPPORTED |
883 png_free(png_ptr, png_ptr->chunk_list); | 1153 /* Reset structure */ |
| 1154 png_memcpy(tmp_jmp, png_ptr->jmpbuf, png_sizeof(jmp_buf)); |
884 #endif | 1155 #endif |
885 | 1156 |
886 /* The error handling and memory handling information is left intact at this | 1157 error_fn = png_ptr->error_fn; |
887 * point: the jmp_buf may still have to be freed. See png_destroy_png_struct | 1158 warning_fn = png_ptr->warning_fn; |
888 * for how this happens. | 1159 error_ptr = png_ptr->error_ptr; |
889 */ | 1160 #ifdef PNG_USER_MEM_SUPPORTED |
890 } | 1161 free_fn = png_ptr->free_fn; |
| 1162 #endif |
891 | 1163 |
892 /* Free all memory used by the write. | 1164 png_memset(png_ptr, 0, png_sizeof(png_struct)); |
893 * In libpng 1.6.0 this API changed quietly to no longer accept a NULL value for | |
894 * *png_ptr_ptr. Prior to 1.6.0 it would accept such a value and it would free | |
895 * the passed in info_structs but it would quietly fail to free any of the data | |
896 * inside them. In 1.6.0 it quietly does nothing (it has to be quiet because it | |
897 * has no png_ptr.) | |
898 */ | |
899 void PNGAPI | |
900 png_destroy_write_struct(png_structpp png_ptr_ptr, png_infopp info_ptr_ptr) | |
901 { | |
902 png_debug(1, "in png_destroy_write_struct"); | |
903 | 1165 |
904 if (png_ptr_ptr != NULL) | 1166 png_ptr->error_fn = error_fn; |
905 { | 1167 png_ptr->warning_fn = warning_fn; |
906 png_structrp png_ptr = *png_ptr_ptr; | 1168 png_ptr->error_ptr = error_ptr; |
| 1169 #ifdef PNG_USER_MEM_SUPPORTED |
| 1170 png_ptr->free_fn = free_fn; |
| 1171 #endif |
907 | 1172 |
908 if (png_ptr != NULL) /* added in libpng 1.6.0 */ | 1173 #ifdef PNG_SETJMP_SUPPORTED |
909 { | 1174 png_memcpy(png_ptr->jmpbuf, tmp_jmp, png_sizeof(jmp_buf)); |
910 png_destroy_info_struct(png_ptr, info_ptr_ptr); | 1175 #endif |
911 | |
912 *png_ptr_ptr = NULL; | |
913 png_write_destroy(png_ptr); | |
914 png_destroy_png_struct(png_ptr); | |
915 } | |
916 } | |
917 } | 1176 } |
918 | 1177 |
919 /* Allow the application to select one or more row filters to use. */ | 1178 /* Allow the application to select one or more row filters to use. */ |
920 void PNGAPI | 1179 void PNGAPI |
921 png_set_filter(png_structrp png_ptr, int method, int filters) | 1180 png_set_filter(png_structp png_ptr, int method, int filters) |
922 { | 1181 { |
923 png_debug(1, "in png_set_filter"); | 1182 png_debug(1, "in png_set_filter"); |
924 | 1183 |
925 if (png_ptr == NULL) | 1184 if (png_ptr == NULL) |
926 return; | 1185 return; |
927 | |
928 #ifdef PNG_MNG_FEATURES_SUPPORTED | 1186 #ifdef PNG_MNG_FEATURES_SUPPORTED |
929 if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) && | 1187 if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) && |
930 (method == PNG_INTRAPIXEL_DIFFERENCING)) | 1188 (method == PNG_INTRAPIXEL_DIFFERENCING)) |
931 method = PNG_FILTER_TYPE_BASE; | 1189 method = PNG_FILTER_TYPE_BASE; |
932 | |
933 #endif | 1190 #endif |
934 if (method == PNG_FILTER_TYPE_BASE) | 1191 if (method == PNG_FILTER_TYPE_BASE) |
935 { | 1192 { |
936 switch (filters & (PNG_ALL_FILTERS | 0x07)) | 1193 switch (filters & (PNG_ALL_FILTERS | 0x07)) |
937 { | 1194 { |
938 #ifdef PNG_WRITE_FILTER_SUPPORTED | 1195 #ifdef PNG_WRITE_FILTER_SUPPORTED |
939 case 5: | 1196 case 5: |
940 case 6: | 1197 case 6: |
941 case 7: png_app_error(png_ptr, "Unknown row filter for method 0"); | 1198 case 7: png_warning(png_ptr, "Unknown row filter for method 0"); |
942 /* FALL THROUGH */ | |
943 #endif /* PNG_WRITE_FILTER_SUPPORTED */ | 1199 #endif /* PNG_WRITE_FILTER_SUPPORTED */ |
944 case PNG_FILTER_VALUE_NONE: | 1200 case PNG_FILTER_VALUE_NONE: |
945 png_ptr->do_filter = PNG_FILTER_NONE; break; | 1201 png_ptr->do_filter = PNG_FILTER_NONE; break; |
946 | |
947 #ifdef PNG_WRITE_FILTER_SUPPORTED | 1202 #ifdef PNG_WRITE_FILTER_SUPPORTED |
948 case PNG_FILTER_VALUE_SUB: | 1203 case PNG_FILTER_VALUE_SUB: |
949 png_ptr->do_filter = PNG_FILTER_SUB; break; | 1204 png_ptr->do_filter = PNG_FILTER_SUB; break; |
950 | |
951 case PNG_FILTER_VALUE_UP: | 1205 case PNG_FILTER_VALUE_UP: |
952 png_ptr->do_filter = PNG_FILTER_UP; break; | 1206 png_ptr->do_filter = PNG_FILTER_UP; break; |
953 | |
954 case PNG_FILTER_VALUE_AVG: | 1207 case PNG_FILTER_VALUE_AVG: |
955 png_ptr->do_filter = PNG_FILTER_AVG; break; | 1208 png_ptr->do_filter = PNG_FILTER_AVG; break; |
956 | |
957 case PNG_FILTER_VALUE_PAETH: | 1209 case PNG_FILTER_VALUE_PAETH: |
958 png_ptr->do_filter = PNG_FILTER_PAETH; break; | 1210 png_ptr->do_filter = PNG_FILTER_PAETH; break; |
959 | 1211 default: png_ptr->do_filter = (png_byte)filters; break; |
960 default: | |
961 png_ptr->do_filter = (png_byte)filters; break; | |
962 #else | 1212 #else |
963 default: | 1213 default: png_warning(png_ptr, "Unknown row filter for method 0"); |
964 png_app_error(png_ptr, "Unknown row filter for method 0"); | |
965 #endif /* PNG_WRITE_FILTER_SUPPORTED */ | 1214 #endif /* PNG_WRITE_FILTER_SUPPORTED */ |
966 } | 1215 } |
967 | 1216 |
968 /* If we have allocated the row_buf, this means we have already started | 1217 /* If we have allocated the row_buf, this means we have already started |
969 * with the image and we should have allocated all of the filter buffers | 1218 * with the image and we should have allocated all of the filter buffers |
970 * that have been selected. If prev_row isn't already allocated, then | 1219 * that have been selected. If prev_row isn't already allocated, then |
971 * it is too late to start using the filters that need it, since we | 1220 * it is too late to start using the filters that need it, since we |
972 * will be missing the data in the previous row. If an application | 1221 * will be missing the data in the previous row. If an application |
973 * wants to start and stop using particular filters during compression, | 1222 * wants to start and stop using particular filters during compression, |
974 * it should start out with all of the filters, and then add and | 1223 * it should start out with all of the filters, and then add and |
975 * remove them after the start of compression. | 1224 * remove them after the start of compression. |
976 */ | 1225 */ |
977 if (png_ptr->row_buf != NULL) | 1226 if (png_ptr->row_buf != NULL) |
978 { | 1227 { |
979 #ifdef PNG_WRITE_FILTER_SUPPORTED | 1228 #ifdef PNG_WRITE_FILTER_SUPPORTED |
980 if ((png_ptr->do_filter & PNG_FILTER_SUB) && png_ptr->sub_row == NULL) | 1229 if ((png_ptr->do_filter & PNG_FILTER_SUB) && png_ptr->sub_row == NULL) |
981 { | 1230 { |
982 png_ptr->sub_row = (png_bytep)png_malloc(png_ptr, | 1231 png_ptr->sub_row = (png_bytep)png_malloc(png_ptr, |
983 (png_ptr->rowbytes + 1)); | 1232 (png_ptr->rowbytes + 1)); |
984 png_ptr->sub_row[0] = PNG_FILTER_VALUE_SUB; | 1233 png_ptr->sub_row[0] = PNG_FILTER_VALUE_SUB; |
985 } | 1234 } |
986 | 1235 |
987 if ((png_ptr->do_filter & PNG_FILTER_UP) && png_ptr->up_row == NULL) | 1236 if ((png_ptr->do_filter & PNG_FILTER_UP) && png_ptr->up_row == NULL) |
988 { | 1237 { |
989 if (png_ptr->prev_row == NULL) | 1238 if (png_ptr->prev_row == NULL) |
990 { | 1239 { |
991 png_warning(png_ptr, "Can't add Up filter after starting"); | 1240 png_warning(png_ptr, "Can't add Up filter after starting"); |
992 png_ptr->do_filter = (png_byte)(png_ptr->do_filter & | 1241 png_ptr->do_filter &= ~PNG_FILTER_UP; |
993 ~PNG_FILTER_UP); | |
994 } | 1242 } |
995 | |
996 else | 1243 else |
997 { | 1244 { |
998 png_ptr->up_row = (png_bytep)png_malloc(png_ptr, | 1245 png_ptr->up_row = (png_bytep)png_malloc(png_ptr, |
999 (png_ptr->rowbytes + 1)); | 1246 (png_ptr->rowbytes + 1)); |
1000 png_ptr->up_row[0] = PNG_FILTER_VALUE_UP; | 1247 png_ptr->up_row[0] = PNG_FILTER_VALUE_UP; |
1001 } | 1248 } |
1002 } | 1249 } |
1003 | 1250 |
1004 if ((png_ptr->do_filter & PNG_FILTER_AVG) && png_ptr->avg_row == NULL) | 1251 if ((png_ptr->do_filter & PNG_FILTER_AVG) && png_ptr->avg_row == NULL) |
1005 { | 1252 { |
1006 if (png_ptr->prev_row == NULL) | 1253 if (png_ptr->prev_row == NULL) |
1007 { | 1254 { |
1008 png_warning(png_ptr, "Can't add Average filter after starting"); | 1255 png_warning(png_ptr, "Can't add Average filter after starting"); |
1009 png_ptr->do_filter = (png_byte)(png_ptr->do_filter & | 1256 png_ptr->do_filter &= ~PNG_FILTER_AVG; |
1010 ~PNG_FILTER_AVG); | |
1011 } | 1257 } |
1012 | |
1013 else | 1258 else |
1014 { | 1259 { |
1015 png_ptr->avg_row = (png_bytep)png_malloc(png_ptr, | 1260 png_ptr->avg_row = (png_bytep)png_malloc(png_ptr, |
1016 (png_ptr->rowbytes + 1)); | 1261 (png_ptr->rowbytes + 1)); |
1017 png_ptr->avg_row[0] = PNG_FILTER_VALUE_AVG; | 1262 png_ptr->avg_row[0] = PNG_FILTER_VALUE_AVG; |
1018 } | 1263 } |
1019 } | 1264 } |
1020 | 1265 |
1021 if ((png_ptr->do_filter & PNG_FILTER_PAETH) && | 1266 if ((png_ptr->do_filter & PNG_FILTER_PAETH) && |
1022 png_ptr->paeth_row == NULL) | 1267 png_ptr->paeth_row == NULL) |
1023 { | 1268 { |
1024 if (png_ptr->prev_row == NULL) | 1269 if (png_ptr->prev_row == NULL) |
1025 { | 1270 { |
1026 png_warning(png_ptr, "Can't add Paeth filter after starting"); | 1271 png_warning(png_ptr, "Can't add Paeth filter after starting"); |
1027 png_ptr->do_filter &= (png_byte)(~PNG_FILTER_PAETH); | 1272 png_ptr->do_filter &= (png_byte)(~PNG_FILTER_PAETH); |
1028 } | 1273 } |
1029 | |
1030 else | 1274 else |
1031 { | 1275 { |
1032 png_ptr->paeth_row = (png_bytep)png_malloc(png_ptr, | 1276 png_ptr->paeth_row = (png_bytep)png_malloc(png_ptr, |
1033 (png_ptr->rowbytes + 1)); | 1277 (png_ptr->rowbytes + 1)); |
1034 png_ptr->paeth_row[0] = PNG_FILTER_VALUE_PAETH; | 1278 png_ptr->paeth_row[0] = PNG_FILTER_VALUE_PAETH; |
1035 } | 1279 } |
1036 } | 1280 } |
1037 | 1281 |
1038 if (png_ptr->do_filter == PNG_NO_FILTERS) | 1282 if (png_ptr->do_filter == PNG_NO_FILTERS) |
1039 #endif /* PNG_WRITE_FILTER_SUPPORTED */ | 1283 #endif /* PNG_WRITE_FILTER_SUPPORTED */ |
1040 png_ptr->do_filter = PNG_FILTER_NONE; | 1284 png_ptr->do_filter = PNG_FILTER_NONE; |
1041 } | 1285 } |
1042 } | 1286 } |
1043 else | 1287 else |
1044 png_error(png_ptr, "Unknown custom filter method"); | 1288 png_error(png_ptr, "Unknown custom filter method"); |
1045 } | 1289 } |
1046 | 1290 |
1047 /* This allows us to influence the way in which libpng chooses the "best" | 1291 /* This allows us to influence the way in which libpng chooses the "best" |
1048 * filter for the current scanline. While the "minimum-sum-of-absolute- | 1292 * filter for the current scanline. While the "minimum-sum-of-absolute- |
1049 * differences metric is relatively fast and effective, there is some | 1293 * differences metric is relatively fast and effective, there is some |
1050 * question as to whether it can be improved upon by trying to keep the | 1294 * question as to whether it can be improved upon by trying to keep the |
1051 * filtered data going to zlib more consistent, hopefully resulting in | 1295 * filtered data going to zlib more consistent, hopefully resulting in |
1052 * better compression. | 1296 * better compression. |
1053 */ | 1297 */ |
1054 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED /* GRR 970116 */ | 1298 #ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED /* GRR 970116 */ |
1055 /* Convenience reset API. */ | 1299 void PNGAPI |
1056 static void | 1300 png_set_filter_heuristics(png_structp png_ptr, int heuristic_method, |
1057 png_reset_filter_heuristics(png_structrp png_ptr) | 1301 int num_weights, png_doublep filter_weights, |
1058 { | 1302 png_doublep filter_costs) |
1059 /* Clear out any old values in the 'weights' - this must be done because if | 1303 { |
1060 * the app calls set_filter_heuristics multiple times with different | 1304 int i; |
1061 * 'num_weights' values we would otherwise potentially have wrong sized | 1305 |
1062 * arrays. | 1306 png_debug(1, "in png_set_filter_heuristics"); |
1063 */ | 1307 |
1064 png_ptr->num_prev_filters = 0; | 1308 if (png_ptr == NULL) |
1065 png_ptr->heuristic_method = PNG_FILTER_HEURISTIC_UNWEIGHTED; | 1309 return; |
1066 if (png_ptr->prev_filters != NULL) | 1310 if (heuristic_method >= PNG_FILTER_HEURISTIC_LAST) |
1067 { | 1311 { |
1068 png_bytep old = png_ptr->prev_filters; | 1312 png_warning(png_ptr, "Unknown filter heuristic method"); |
1069 png_ptr->prev_filters = NULL; | 1313 return; |
1070 png_free(png_ptr, old); | 1314 } |
1071 } | 1315 |
1072 if (png_ptr->filter_weights != NULL) | 1316 if (heuristic_method == PNG_FILTER_HEURISTIC_DEFAULT) |
1073 { | 1317 { |
1074 png_uint_16p old = png_ptr->filter_weights; | 1318 heuristic_method = PNG_FILTER_HEURISTIC_UNWEIGHTED; |
1075 png_ptr->filter_weights = NULL; | 1319 } |
1076 png_free(png_ptr, old); | 1320 |
1077 } | 1321 if (num_weights < 0 || filter_weights == NULL || |
1078 | 1322 heuristic_method == PNG_FILTER_HEURISTIC_UNWEIGHTED) |
1079 if (png_ptr->inv_filter_weights != NULL) | 1323 { |
1080 { | 1324 num_weights = 0; |
1081 png_uint_16p old = png_ptr->inv_filter_weights; | 1325 } |
1082 png_ptr->inv_filter_weights = NULL; | 1326 |
1083 png_free(png_ptr, old); | 1327 png_ptr->num_prev_filters = (png_byte)num_weights; |
1084 } | 1328 png_ptr->heuristic_method = (png_byte)heuristic_method; |
1085 | 1329 |
1086 /* Leave the filter_costs - this array is fixed size. */ | 1330 if (num_weights > 0) |
1087 } | 1331 { |
1088 | 1332 if (png_ptr->prev_filters == NULL) |
1089 static int | |
1090 png_init_filter_heuristics(png_structrp png_ptr, int heuristic_method, | |
1091 int num_weights) | |
1092 { | |
1093 if (png_ptr == NULL) | |
1094 return 0; | |
1095 | |
1096 /* Clear out the arrays */ | |
1097 png_reset_filter_heuristics(png_ptr); | |
1098 | |
1099 /* Check arguments; the 'reset' function makes the correct settings for the | |
1100 * unweighted case, but we must handle the weight case by initializing the | |
1101 * arrays for the caller. | |
1102 */ | |
1103 if (heuristic_method == PNG_FILTER_HEURISTIC_WEIGHTED) | |
1104 { | |
1105 int i; | |
1106 | |
1107 if (num_weights > 0) | |
1108 { | 1333 { |
1109 png_ptr->prev_filters = (png_bytep)png_malloc(png_ptr, | 1334 png_ptr->prev_filters = (png_bytep)png_malloc(png_ptr, |
1110 (png_uint_32)((sizeof (png_byte)) * num_weights)); | 1335 (png_uint_32)(png_sizeof(png_byte) * num_weights)); |
1111 | 1336 |
1112 /* To make sure that the weighting starts out fairly */ | 1337 /* To make sure that the weighting starts out fairly */ |
1113 for (i = 0; i < num_weights; i++) | 1338 for (i = 0; i < num_weights; i++) |
1114 { | 1339 { |
1115 png_ptr->prev_filters[i] = 255; | 1340 png_ptr->prev_filters[i] = 255; |
1116 } | 1341 } |
1117 | 1342 } |
| 1343 |
| 1344 if (png_ptr->filter_weights == NULL) |
| 1345 { |
1118 png_ptr->filter_weights = (png_uint_16p)png_malloc(png_ptr, | 1346 png_ptr->filter_weights = (png_uint_16p)png_malloc(png_ptr, |
1119 (png_uint_32)((sizeof (png_uint_16)) * num_weights)); | 1347 (png_uint_32)(png_sizeof(png_uint_16) * num_weights)); |
1120 | 1348 |
1121 png_ptr->inv_filter_weights = (png_uint_16p)png_malloc(png_ptr, | 1349 png_ptr->inv_filter_weights = (png_uint_16p)png_malloc(png_ptr, |
1122 (png_uint_32)((sizeof (png_uint_16)) * num_weights)); | 1350 (png_uint_32)(png_sizeof(png_uint_16) * num_weights)); |
1123 | |
1124 for (i = 0; i < num_weights; i++) | 1351 for (i = 0; i < num_weights; i++) |
1125 { | 1352 { |
1126 png_ptr->inv_filter_weights[i] = | 1353 png_ptr->inv_filter_weights[i] = |
1127 png_ptr->filter_weights[i] = PNG_WEIGHT_FACTOR; | 1354 png_ptr->filter_weights[i] = PNG_WEIGHT_FACTOR; |
1128 } | 1355 } |
1129 | 1356 } |
1130 /* Safe to set this now */ | 1357 |
1131 png_ptr->num_prev_filters = (png_byte)num_weights; | 1358 for (i = 0; i < num_weights; i++) |
1132 } | 1359 { |
1133 | 1360 if (filter_weights[i] < 0.0) |
1134 /* If, in the future, there are other filter methods, this would | 1361 { |
1135 * need to be based on png_ptr->filter. | 1362 png_ptr->inv_filter_weights[i] = |
1136 */ | 1363 png_ptr->filter_weights[i] = PNG_WEIGHT_FACTOR; |
1137 if (png_ptr->filter_costs == NULL) | 1364 } |
1138 { | 1365 else |
1139 png_ptr->filter_costs = (png_uint_16p)png_malloc(png_ptr, | 1366 { |
1140 (png_uint_32)((sizeof (png_uint_16)) * PNG_FILTER_VALUE_LAST)); | 1367 png_ptr->inv_filter_weights[i] = |
1141 | 1368 (png_uint_16)((double)PNG_WEIGHT_FACTOR*filter_weights[i]+0.5); |
1142 png_ptr->inv_filter_costs = (png_uint_16p)png_malloc(png_ptr, | 1369 png_ptr->filter_weights[i] = |
1143 (png_uint_32)((sizeof (png_uint_16)) * PNG_FILTER_VALUE_LAST)); | 1370 (png_uint_16)((double)PNG_WEIGHT_FACTOR/filter_weights[i]+0.5); |
1144 } | 1371 } |
| 1372 } |
| 1373 } |
| 1374 |
| 1375 /* If, in the future, there are other filter methods, this would |
| 1376 * need to be based on png_ptr->filter. |
| 1377 */ |
| 1378 if (png_ptr->filter_costs == NULL) |
| 1379 { |
| 1380 png_ptr->filter_costs = (png_uint_16p)png_malloc(png_ptr, |
| 1381 (png_uint_32)(png_sizeof(png_uint_16) * PNG_FILTER_VALUE_LAST)); |
| 1382 |
| 1383 png_ptr->inv_filter_costs = (png_uint_16p)png_malloc(png_ptr, |
| 1384 (png_uint_32)(png_sizeof(png_uint_16) * PNG_FILTER_VALUE_LAST)); |
1145 | 1385 |
1146 for (i = 0; i < PNG_FILTER_VALUE_LAST; i++) | 1386 for (i = 0; i < PNG_FILTER_VALUE_LAST; i++) |
1147 { | 1387 { |
1148 png_ptr->inv_filter_costs[i] = | 1388 png_ptr->inv_filter_costs[i] = |
1149 png_ptr->filter_costs[i] = PNG_COST_FACTOR; | 1389 png_ptr->filter_costs[i] = PNG_COST_FACTOR; |
1150 } | 1390 } |
1151 | 1391 } |
1152 /* All the arrays are inited, safe to set this: */ | 1392 |
1153 png_ptr->heuristic_method = PNG_FILTER_HEURISTIC_WEIGHTED; | 1393 /* Here is where we set the relative costs of the different filters. We |
1154 | 1394 * should take the desired compression level into account when setting |
1155 /* Return the 'ok' code. */ | 1395 * the costs, so that Paeth, for instance, has a high relative cost at low |
1156 return 1; | 1396 * compression levels, while it has a lower relative cost at higher |
1157 } | 1397 * compression settings. The filter types are in order of increasing |
1158 else if (heuristic_method == PNG_FILTER_HEURISTIC_DEFAULT || | 1398 * relative cost, so it would be possible to do this with an algorithm. |
1159 heuristic_method == PNG_FILTER_HEURISTIC_UNWEIGHTED) | |
1160 { | |
1161 return 1; | |
1162 } | |
1163 else | |
1164 { | |
1165 png_warning(png_ptr, "Unknown filter heuristic method"); | |
1166 return 0; | |
1167 } | |
1168 } | |
1169 | |
1170 /* Provide floating and fixed point APIs */ | |
1171 #ifdef PNG_FLOATING_POINT_SUPPORTED | |
1172 void PNGAPI | |
1173 png_set_filter_heuristics(png_structrp png_ptr, int heuristic_method, | |
1174 int num_weights, png_const_doublep filter_weights, | |
1175 png_const_doublep filter_costs) | |
1176 { | |
1177 png_debug(1, "in png_set_filter_heuristics"); | |
1178 | |
1179 /* The internal API allocates all the arrays and ensures that the elements of | |
1180 * those arrays are set to the default value. | |
1181 */ | 1399 */ |
1182 if (!png_init_filter_heuristics(png_ptr, heuristic_method, num_weights)) | 1400 for (i = 0; i < PNG_FILTER_VALUE_LAST; i++) |
1183 return; | 1401 { |
1184 | 1402 if (filter_costs == NULL || filter_costs[i] < 0.0) |
1185 /* If using the weighted method copy in the weights. */ | |
1186 if (heuristic_method == PNG_FILTER_HEURISTIC_WEIGHTED) | |
1187 { | |
1188 int i; | |
1189 for (i = 0; i < num_weights; i++) | |
1190 { | |
1191 if (filter_weights[i] <= 0.0) | |
1192 { | |
1193 png_ptr->inv_filter_weights[i] = | |
1194 png_ptr->filter_weights[i] = PNG_WEIGHT_FACTOR; | |
1195 } | |
1196 | |
1197 else | |
1198 { | |
1199 png_ptr->inv_filter_weights[i] = | |
1200 (png_uint_16)(PNG_WEIGHT_FACTOR*filter_weights[i]+.5); | |
1201 | |
1202 png_ptr->filter_weights[i] = | |
1203 (png_uint_16)(PNG_WEIGHT_FACTOR/filter_weights[i]+.5); | |
1204 } | |
1205 } | |
1206 | |
1207 /* Here is where we set the relative costs of the different filters. We | |
1208 * should take the desired compression level into account when setting | |
1209 * the costs, so that Paeth, for instance, has a high relative cost at low | |
1210 * compression levels, while it has a lower relative cost at higher | |
1211 * compression settings. The filter types are in order of increasing | |
1212 * relative cost, so it would be possible to do this with an algorithm. | |
1213 */ | |
1214 for (i = 0; i < PNG_FILTER_VALUE_LAST; i++) if (filter_costs[i] >= 1.0) | |
1215 { | 1403 { |
1216 png_ptr->inv_filter_costs[i] = | 1404 png_ptr->inv_filter_costs[i] = |
1217 (png_uint_16)(PNG_COST_FACTOR / filter_costs[i] + .5); | 1405 png_ptr->filter_costs[i] = PNG_COST_FACTOR; |
1218 | 1406 } |
| 1407 else if (filter_costs[i] >= 1.0) |
| 1408 { |
| 1409 png_ptr->inv_filter_costs[i] = |
| 1410 (png_uint_16)((double)PNG_COST_FACTOR / filter_costs[i] + 0.5); |
1219 png_ptr->filter_costs[i] = | 1411 png_ptr->filter_costs[i] = |
1220 (png_uint_16)(PNG_COST_FACTOR * filter_costs[i] + .5); | 1412 (png_uint_16)((double)PNG_COST_FACTOR * filter_costs[i] + 0.5); |
1221 } | 1413 } |
1222 } | 1414 } |
1223 } | 1415 } |
1224 #endif /* FLOATING_POINT */ | |
1225 | |
1226 #ifdef PNG_FIXED_POINT_SUPPORTED | |
1227 void PNGAPI | |
1228 png_set_filter_heuristics_fixed(png_structrp png_ptr, int heuristic_method, | |
1229 int num_weights, png_const_fixed_point_p filter_weights, | |
1230 png_const_fixed_point_p filter_costs) | |
1231 { | |
1232 png_debug(1, "in png_set_filter_heuristics_fixed"); | |
1233 | |
1234 /* The internal API allocates all the arrays and ensures that the elements of | |
1235 * those arrays are set to the default value. | |
1236 */ | |
1237 if (!png_init_filter_heuristics(png_ptr, heuristic_method, num_weights)) | |
1238 return; | |
1239 | |
1240 /* If using the weighted method copy in the weights. */ | |
1241 if (heuristic_method == PNG_FILTER_HEURISTIC_WEIGHTED) | |
1242 { | |
1243 int i; | |
1244 for (i = 0; i < num_weights; i++) | |
1245 { | |
1246 if (filter_weights[i] <= 0) | |
1247 { | |
1248 png_ptr->inv_filter_weights[i] = | |
1249 png_ptr->filter_weights[i] = PNG_WEIGHT_FACTOR; | |
1250 } | |
1251 | |
1252 else | |
1253 { | |
1254 png_ptr->inv_filter_weights[i] = (png_uint_16) | |
1255 ((PNG_WEIGHT_FACTOR*filter_weights[i]+PNG_FP_HALF)/PNG_FP_1); | |
1256 | |
1257 png_ptr->filter_weights[i] = (png_uint_16)((PNG_WEIGHT_FACTOR* | |
1258 PNG_FP_1+(filter_weights[i]/2))/filter_weights[i]); | |
1259 } | |
1260 } | |
1261 | |
1262 /* Here is where we set the relative costs of the different filters. We | |
1263 * should take the desired compression level into account when setting | |
1264 * the costs, so that Paeth, for instance, has a high relative cost at low | |
1265 * compression levels, while it has a lower relative cost at higher | |
1266 * compression settings. The filter types are in order of increasing | |
1267 * relative cost, so it would be possible to do this with an algorithm. | |
1268 */ | |
1269 for (i = 0; i < PNG_FILTER_VALUE_LAST; i++) | |
1270 if (filter_costs[i] >= PNG_FP_1) | |
1271 { | |
1272 png_uint_32 tmp; | |
1273 | |
1274 /* Use a 32 bit unsigned temporary here because otherwise the | |
1275 * intermediate value will be a 32 bit *signed* integer (ANSI rules) | |
1276 * and this will get the wrong answer on division. | |
1277 */ | |
1278 tmp = PNG_COST_FACTOR*PNG_FP_1 + (filter_costs[i]/2); | |
1279 tmp /= filter_costs[i]; | |
1280 | |
1281 png_ptr->inv_filter_costs[i] = (png_uint_16)tmp; | |
1282 | |
1283 tmp = PNG_COST_FACTOR * filter_costs[i] + PNG_FP_HALF; | |
1284 tmp /= PNG_FP_1; | |
1285 | |
1286 png_ptr->filter_costs[i] = (png_uint_16)tmp; | |
1287 } | |
1288 } | |
1289 } | |
1290 #endif /* FIXED_POINT */ | |
1291 #endif /* PNG_WRITE_WEIGHTED_FILTER_SUPPORTED */ | 1416 #endif /* PNG_WRITE_WEIGHTED_FILTER_SUPPORTED */ |
1292 | 1417 |
1293 void PNGAPI | 1418 void PNGAPI |
1294 png_set_compression_level(png_structrp png_ptr, int level) | 1419 png_set_compression_level(png_structp png_ptr, int level) |
1295 { | 1420 { |
1296 png_debug(1, "in png_set_compression_level"); | 1421 png_debug(1, "in png_set_compression_level"); |
1297 | 1422 |
1298 if (png_ptr == NULL) | 1423 if (png_ptr == NULL) |
1299 return; | 1424 return; |
1300 | 1425 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_LEVEL; |
1301 png_ptr->zlib_level = level; | 1426 png_ptr->zlib_level = level; |
1302 } | 1427 } |
1303 | 1428 |
1304 void PNGAPI | 1429 void PNGAPI |
1305 png_set_compression_mem_level(png_structrp png_ptr, int mem_level) | 1430 png_set_compression_mem_level(png_structp png_ptr, int mem_level) |
1306 { | 1431 { |
1307 png_debug(1, "in png_set_compression_mem_level"); | 1432 png_debug(1, "in png_set_compression_mem_level"); |
1308 | 1433 |
1309 if (png_ptr == NULL) | 1434 if (png_ptr == NULL) |
1310 return; | 1435 return; |
1311 | 1436 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_MEM_LEVEL; |
1312 png_ptr->zlib_mem_level = mem_level; | 1437 png_ptr->zlib_mem_level = mem_level; |
1313 } | 1438 } |
1314 | 1439 |
1315 void PNGAPI | 1440 void PNGAPI |
1316 png_set_compression_strategy(png_structrp png_ptr, int strategy) | 1441 png_set_compression_strategy(png_structp png_ptr, int strategy) |
1317 { | 1442 { |
1318 png_debug(1, "in png_set_compression_strategy"); | 1443 png_debug(1, "in png_set_compression_strategy"); |
1319 | 1444 |
1320 if (png_ptr == NULL) | 1445 if (png_ptr == NULL) |
1321 return; | 1446 return; |
1322 | |
1323 /* The flag setting here prevents the libpng dynamic selection of strategy. | |
1324 */ | |
1325 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_STRATEGY; | 1447 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_STRATEGY; |
1326 png_ptr->zlib_strategy = strategy; | 1448 png_ptr->zlib_strategy = strategy; |
1327 } | 1449 } |
1328 | 1450 |
1329 /* If PNG_WRITE_OPTIMIZE_CMF_SUPPORTED is defined, libpng will use a | 1451 void PNGAPI |
1330 * smaller value of window_bits if it can do so safely. | 1452 png_set_compression_window_bits(png_structp png_ptr, int window_bits) |
1331 */ | 1453 { |
1332 void PNGAPI | 1454 if (png_ptr == NULL) |
1333 png_set_compression_window_bits(png_structrp png_ptr, int window_bits) | 1455 return; |
1334 { | |
1335 if (png_ptr == NULL) | |
1336 return; | |
1337 | |
1338 /* Prior to 1.6.0 this would warn but then set the window_bits value, this | |
1339 * meant that negative window bits values could be selected which would cause | |
1340 * libpng to write a non-standard PNG file with raw deflate or gzip | |
1341 * compressed IDAT or ancillary chunks. Such files can be read and there is | |
1342 * no warning on read, so this seems like a very bad idea. | |
1343 */ | |
1344 if (window_bits > 15) | 1456 if (window_bits > 15) |
1345 { | |
1346 png_warning(png_ptr, "Only compression windows <= 32k supported by PNG"); | 1457 png_warning(png_ptr, "Only compression windows <= 32k supported by PNG"); |
1347 window_bits = 15; | |
1348 } | |
1349 | |
1350 else if (window_bits < 8) | 1458 else if (window_bits < 8) |
1351 { | |
1352 png_warning(png_ptr, "Only compression windows >= 256 supported by PNG"); | 1459 png_warning(png_ptr, "Only compression windows >= 256 supported by PNG"); |
1353 window_bits = 8; | 1460 #ifndef WBITS_8_OK |
1354 } | 1461 /* Avoid libpng bug with 256-byte windows */ |
1355 | 1462 if (window_bits == 8) |
| 1463 { |
| 1464 png_warning(png_ptr, "Compression window is being reset to 512"); |
| 1465 window_bits = 9; |
| 1466 } |
| 1467 #endif |
| 1468 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_WINDOW_BITS; |
1356 png_ptr->zlib_window_bits = window_bits; | 1469 png_ptr->zlib_window_bits = window_bits; |
1357 } | 1470 } |
1358 | 1471 |
1359 void PNGAPI | 1472 void PNGAPI |
1360 png_set_compression_method(png_structrp png_ptr, int method) | 1473 png_set_compression_method(png_structp png_ptr, int method) |
1361 { | 1474 { |
1362 png_debug(1, "in png_set_compression_method"); | 1475 png_debug(1, "in png_set_compression_method"); |
1363 | 1476 |
1364 if (png_ptr == NULL) | 1477 if (png_ptr == NULL) |
1365 return; | 1478 return; |
1366 | |
1367 /* This would produce an invalid PNG file if it worked, but it doesn't and | |
1368 * deflate will fault it, so it is harmless to just warn here. | |
1369 */ | |
1370 if (method != 8) | 1479 if (method != 8) |
1371 png_warning(png_ptr, "Only compression method 8 is supported by PNG"); | 1480 png_warning(png_ptr, "Only compression method 8 is supported by PNG"); |
1372 | 1481 png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_METHOD; |
1373 png_ptr->zlib_method = method; | 1482 png_ptr->zlib_method = method; |
1374 } | 1483 } |
1375 | 1484 |
1376 /* The following were added to libpng-1.5.4 */ | 1485 void PNGAPI |
1377 #ifdef PNG_WRITE_CUSTOMIZE_ZTXT_COMPRESSION_SUPPORTED | 1486 png_set_write_status_fn(png_structp png_ptr, png_write_status_ptr write_row_fn) |
1378 void PNGAPI | 1487 { |
1379 png_set_text_compression_level(png_structrp png_ptr, int level) | 1488 if (png_ptr == NULL) |
1380 { | 1489 return; |
1381 png_debug(1, "in png_set_text_compression_level"); | |
1382 | |
1383 if (png_ptr == NULL) | |
1384 return; | |
1385 | |
1386 png_ptr->zlib_text_level = level; | |
1387 } | |
1388 | |
1389 void PNGAPI | |
1390 png_set_text_compression_mem_level(png_structrp png_ptr, int mem_level) | |
1391 { | |
1392 png_debug(1, "in png_set_text_compression_mem_level"); | |
1393 | |
1394 if (png_ptr == NULL) | |
1395 return; | |
1396 | |
1397 png_ptr->zlib_text_mem_level = mem_level; | |
1398 } | |
1399 | |
1400 void PNGAPI | |
1401 png_set_text_compression_strategy(png_structrp png_ptr, int strategy) | |
1402 { | |
1403 png_debug(1, "in png_set_text_compression_strategy"); | |
1404 | |
1405 if (png_ptr == NULL) | |
1406 return; | |
1407 | |
1408 png_ptr->zlib_text_strategy = strategy; | |
1409 } | |
1410 | |
1411 /* If PNG_WRITE_OPTIMIZE_CMF_SUPPORTED is defined, libpng will use a | |
1412 * smaller value of window_bits if it can do so safely. | |
1413 */ | |
1414 void PNGAPI | |
1415 png_set_text_compression_window_bits(png_structrp png_ptr, int window_bits) | |
1416 { | |
1417 if (png_ptr == NULL) | |
1418 return; | |
1419 | |
1420 if (window_bits > 15) | |
1421 { | |
1422 png_warning(png_ptr, "Only compression windows <= 32k supported by PNG"); | |
1423 window_bits = 15; | |
1424 } | |
1425 | |
1426 else if (window_bits < 8) | |
1427 { | |
1428 png_warning(png_ptr, "Only compression windows >= 256 supported by PNG"); | |
1429 window_bits = 8; | |
1430 } | |
1431 | |
1432 png_ptr->zlib_text_window_bits = window_bits; | |
1433 } | |
1434 | |
1435 void PNGAPI | |
1436 png_set_text_compression_method(png_structrp png_ptr, int method) | |
1437 { | |
1438 png_debug(1, "in png_set_text_compression_method"); | |
1439 | |
1440 if (png_ptr == NULL) | |
1441 return; | |
1442 | |
1443 if (method != 8) | |
1444 png_warning(png_ptr, "Only compression method 8 is supported by PNG"); | |
1445 | |
1446 png_ptr->zlib_text_method = method; | |
1447 } | |
1448 #endif /* PNG_WRITE_CUSTOMIZE_ZTXT_COMPRESSION_SUPPORTED */ | |
1449 /* end of API added to libpng-1.5.4 */ | |
1450 | |
1451 void PNGAPI | |
1452 png_set_write_status_fn(png_structrp png_ptr, png_write_status_ptr write_row_fn) | |
1453 { | |
1454 if (png_ptr == NULL) | |
1455 return; | |
1456 | |
1457 png_ptr->write_row_fn = write_row_fn; | 1490 png_ptr->write_row_fn = write_row_fn; |
1458 } | 1491 } |
1459 | 1492 |
1460 #ifdef PNG_WRITE_USER_TRANSFORM_SUPPORTED | 1493 #ifdef PNG_WRITE_USER_TRANSFORM_SUPPORTED |
1461 void PNGAPI | 1494 void PNGAPI |
1462 png_set_write_user_transform_fn(png_structrp png_ptr, png_user_transform_ptr | 1495 png_set_write_user_transform_fn(png_structp png_ptr, png_user_transform_ptr |
1463 write_user_transform_fn) | 1496 write_user_transform_fn) |
1464 { | 1497 { |
1465 png_debug(1, "in png_set_write_user_transform_fn"); | 1498 png_debug(1, "in png_set_write_user_transform_fn"); |
1466 | 1499 |
1467 if (png_ptr == NULL) | 1500 if (png_ptr == NULL) |
1468 return; | 1501 return; |
1469 | |
1470 png_ptr->transformations |= PNG_USER_TRANSFORM; | 1502 png_ptr->transformations |= PNG_USER_TRANSFORM; |
1471 png_ptr->write_user_transform_fn = write_user_transform_fn; | 1503 png_ptr->write_user_transform_fn = write_user_transform_fn; |
1472 } | 1504 } |
1473 #endif | 1505 #endif |
1474 | 1506 |
1475 | 1507 |
1476 #ifdef PNG_INFO_IMAGE_SUPPORTED | 1508 #ifdef PNG_INFO_IMAGE_SUPPORTED |
1477 void PNGAPI | 1509 void PNGAPI |
1478 png_write_png(png_structrp png_ptr, png_inforp info_ptr, | 1510 png_write_png(png_structp png_ptr, png_infop info_ptr, |
1479 int transforms, voidp params) | 1511 int transforms, voidp params) |
1480 { | 1512 { |
1481 if (png_ptr == NULL || info_ptr == NULL) | 1513 if (png_ptr == NULL || info_ptr == NULL) |
1482 return; | 1514 return; |
1483 | 1515 |
1484 /* Write the file header information. */ | 1516 /* Write the file header information. */ |
1485 png_write_info(png_ptr, info_ptr); | 1517 png_write_info(png_ptr, info_ptr); |
1486 | 1518 |
1487 /* ------ these transformations don't touch the info structure ------- */ | 1519 /* ------ these transformations don't touch the info structure ------- */ |
1488 | 1520 |
1489 #ifdef PNG_WRITE_INVERT_SUPPORTED | 1521 #ifdef PNG_WRITE_INVERT_SUPPORTED |
1490 /* Invert monochrome pixels */ | 1522 /* Invert monochrome pixels */ |
1491 if (transforms & PNG_TRANSFORM_INVERT_MONO) | 1523 if (transforms & PNG_TRANSFORM_INVERT_MONO) |
1492 png_set_invert_mono(png_ptr); | 1524 png_set_invert_mono(png_ptr); |
1493 #endif | 1525 #endif |
1494 | 1526 |
1495 #ifdef PNG_WRITE_SHIFT_SUPPORTED | 1527 #ifdef PNG_WRITE_SHIFT_SUPPORTED |
1496 /* Shift the pixels up to a legal bit depth and fill in | 1528 /* Shift the pixels up to a legal bit depth and fill in |
1497 * as appropriate to correctly scale the image. | 1529 * as appropriate to correctly scale the image. |
1498 */ | 1530 */ |
1499 if ((transforms & PNG_TRANSFORM_SHIFT) | 1531 if ((transforms & PNG_TRANSFORM_SHIFT) |
1500 && (info_ptr->valid & PNG_INFO_sBIT)) | 1532 && (info_ptr->valid & PNG_INFO_sBIT)) |
1501 png_set_shift(png_ptr, &info_ptr->sig_bit); | 1533 png_set_shift(png_ptr, &info_ptr->sig_bit); |
1502 #endif | 1534 #endif |
1503 | 1535 |
1504 #ifdef PNG_WRITE_PACK_SUPPORTED | 1536 #ifdef PNG_WRITE_PACK_SUPPORTED |
1505 /* Pack pixels into bytes */ | 1537 /* Pack pixels into bytes */ |
1506 if (transforms & PNG_TRANSFORM_PACKING) | 1538 if (transforms & PNG_TRANSFORM_PACKING) |
1507 png_set_packing(png_ptr); | 1539 png_set_packing(png_ptr); |
1508 #endif | 1540 #endif |
1509 | 1541 |
1510 #ifdef PNG_WRITE_SWAP_ALPHA_SUPPORTED | 1542 #ifdef PNG_WRITE_SWAP_ALPHA_SUPPORTED |
1511 /* Swap location of alpha bytes from ARGB to RGBA */ | 1543 /* Swap location of alpha bytes from ARGB to RGBA */ |
1512 if (transforms & PNG_TRANSFORM_SWAP_ALPHA) | 1544 if (transforms & PNG_TRANSFORM_SWAP_ALPHA) |
1513 png_set_swap_alpha(png_ptr); | 1545 png_set_swap_alpha(png_ptr); |
1514 #endif | 1546 #endif |
1515 | 1547 |
1516 #ifdef PNG_WRITE_FILLER_SUPPORTED | 1548 #ifdef PNG_WRITE_FILLER_SUPPORTED |
1517 /* Pack XRGB/RGBX/ARGB/RGBA into RGB (4 channels -> 3 channels) */ | 1549 /* Pack XRGB/RGBX/ARGB/RGBA into * RGB (4 channels -> 3 channels) */ |
1518 if (transforms & PNG_TRANSFORM_STRIP_FILLER_AFTER) | 1550 if (transforms & PNG_TRANSFORM_STRIP_FILLER_AFTER) |
1519 png_set_filler(png_ptr, 0, PNG_FILLER_AFTER); | 1551 png_set_filler(png_ptr, 0, PNG_FILLER_AFTER); |
1520 | |
1521 else if (transforms & PNG_TRANSFORM_STRIP_FILLER_BEFORE) | 1552 else if (transforms & PNG_TRANSFORM_STRIP_FILLER_BEFORE) |
1522 png_set_filler(png_ptr, 0, PNG_FILLER_BEFORE); | 1553 png_set_filler(png_ptr, 0, PNG_FILLER_BEFORE); |
1523 #endif | 1554 #endif |
1524 | 1555 |
1525 #ifdef PNG_WRITE_BGR_SUPPORTED | 1556 #ifdef PNG_WRITE_BGR_SUPPORTED |
1526 /* Flip BGR pixels to RGB */ | 1557 /* Flip BGR pixels to RGB */ |
1527 if (transforms & PNG_TRANSFORM_BGR) | 1558 if (transforms & PNG_TRANSFORM_BGR) |
1528 png_set_bgr(png_ptr); | 1559 png_set_bgr(png_ptr); |
1529 #endif | 1560 #endif |
1530 | 1561 |
(...skipping 17 matching lines...) Expand all Loading... |
1548 | 1579 |
1549 /* ----------------------- end of transformations ------------------- */ | 1580 /* ----------------------- end of transformations ------------------- */ |
1550 | 1581 |
1551 /* Write the bits */ | 1582 /* Write the bits */ |
1552 if (info_ptr->valid & PNG_INFO_IDAT) | 1583 if (info_ptr->valid & PNG_INFO_IDAT) |
1553 png_write_image(png_ptr, info_ptr->row_pointers); | 1584 png_write_image(png_ptr, info_ptr->row_pointers); |
1554 | 1585 |
1555 /* It is REQUIRED to call this to finish writing the rest of the file */ | 1586 /* It is REQUIRED to call this to finish writing the rest of the file */ |
1556 png_write_end(png_ptr, info_ptr); | 1587 png_write_end(png_ptr, info_ptr); |
1557 | 1588 |
1558 PNG_UNUSED(transforms) /* Quiet compiler warnings */ | 1589 transforms = transforms; /* Quiet compiler warnings */ |
1559 PNG_UNUSED(params) | 1590 params = params; |
1560 } | 1591 } |
1561 #endif | 1592 #endif |
1562 | |
1563 | |
1564 #ifdef PNG_SIMPLIFIED_WRITE_SUPPORTED | |
1565 #ifdef PNG_STDIO_SUPPORTED /* currently required for png_image_write_* */ | |
1566 /* Initialize the write structure - general purpose utility. */ | |
1567 static int | |
1568 png_image_write_init(png_imagep image) | |
1569 { | |
1570 png_structp png_ptr = png_create_write_struct(PNG_LIBPNG_VER_STRING, image, | |
1571 png_safe_error, png_safe_warning); | |
1572 | |
1573 if (png_ptr != NULL) | |
1574 { | |
1575 png_infop info_ptr = png_create_info_struct(png_ptr); | |
1576 | |
1577 if (info_ptr != NULL) | |
1578 { | |
1579 png_controlp control = png_voidcast(png_controlp, | |
1580 png_malloc_warn(png_ptr, (sizeof *control))); | |
1581 | |
1582 if (control != NULL) | |
1583 { | |
1584 memset(control, 0, (sizeof *control)); | |
1585 | |
1586 control->png_ptr = png_ptr; | |
1587 control->info_ptr = info_ptr; | |
1588 control->for_write = 1; | |
1589 | |
1590 image->opaque = control; | |
1591 return 1; | |
1592 } | |
1593 | |
1594 /* Error clean up */ | |
1595 png_destroy_info_struct(png_ptr, &info_ptr); | |
1596 } | |
1597 | |
1598 png_destroy_write_struct(&png_ptr, NULL); | |
1599 } | |
1600 | |
1601 return png_image_error(image, "png_image_write_: out of memory"); | |
1602 } | |
1603 | |
1604 /* Arguments to png_image_write_main: */ | |
1605 typedef struct | |
1606 { | |
1607 /* Arguments: */ | |
1608 png_imagep image; | |
1609 png_const_voidp buffer; | |
1610 png_int_32 row_stride; | |
1611 png_const_voidp colormap; | |
1612 int convert_to_8bit; | |
1613 /* Local variables: */ | |
1614 png_const_voidp first_row; | |
1615 ptrdiff_t row_bytes; | |
1616 png_voidp local_row; | |
1617 } png_image_write_control; | |
1618 | |
1619 /* Write png_uint_16 input to a 16-bit PNG; the png_ptr has already been set to | |
1620 * do any necessary byte swapping. The component order is defined by the | |
1621 * png_image format value. | |
1622 */ | |
1623 static int | |
1624 png_write_image_16bit(png_voidp argument) | |
1625 { | |
1626 png_image_write_control *display = png_voidcast(png_image_write_control*, | |
1627 argument); | |
1628 png_imagep image = display->image; | |
1629 png_structrp png_ptr = image->opaque->png_ptr; | |
1630 | |
1631 png_const_uint_16p input_row = png_voidcast(png_const_uint_16p, | |
1632 display->first_row); | |
1633 png_uint_16p output_row = png_voidcast(png_uint_16p, display->local_row); | |
1634 png_uint_16p row_end; | |
1635 const int channels = (image->format & PNG_FORMAT_FLAG_COLOR) ? 3 : 1; | |
1636 int aindex = 0; | |
1637 png_uint_32 y = image->height; | |
1638 | |
1639 if (image->format & PNG_FORMAT_FLAG_ALPHA) | |
1640 { | |
1641 if (image->format & PNG_FORMAT_FLAG_AFIRST) | |
1642 { | |
1643 aindex = -1; | |
1644 ++input_row; /* To point to the first component */ | |
1645 ++output_row; | |
1646 } | |
1647 | |
1648 else | |
1649 aindex = channels; | |
1650 } | |
1651 | |
1652 else | |
1653 png_error(png_ptr, "png_write_image: internal call error"); | |
1654 | |
1655 /* Work out the output row end and count over this, note that the increment | |
1656 * above to 'row' means that row_end can actually be beyond the end of the | |
1657 * row; this is correct. | |
1658 */ | |
1659 row_end = output_row + image->width * (channels+1); | |
1660 | |
1661 while (y-- > 0) | |
1662 { | |
1663 png_const_uint_16p in_ptr = input_row; | |
1664 png_uint_16p out_ptr = output_row; | |
1665 | |
1666 while (out_ptr < row_end) | |
1667 { | |
1668 const png_uint_16 alpha = in_ptr[aindex]; | |
1669 png_uint_32 reciprocal = 0; | |
1670 int c; | |
1671 | |
1672 out_ptr[aindex] = alpha; | |
1673 | |
1674 /* Calculate a reciprocal. The correct calculation is simply | |
1675 * component/alpha*65535 << 15. (I.e. 15 bits of precision); this | |
1676 * allows correct rounding by adding .5 before the shift. 'reciprocal' | |
1677 * is only initialized when required. | |
1678 */ | |
1679 if (alpha > 0 && alpha < 65535) | |
1680 reciprocal = ((0xffff<<15)+(alpha>>1))/alpha; | |
1681 | |
1682 c = channels; | |
1683 do /* always at least one channel */ | |
1684 { | |
1685 png_uint_16 component = *in_ptr++; | |
1686 | |
1687 /* The following gives 65535 for an alpha of 0, which is fine, | |
1688 * otherwise if 0/0 is represented as some other value there is more | |
1689 * likely to be a discontinuity which will probably damage | |
1690 * compression when moving from a fully transparent area to a | |
1691 * nearly transparent one. (The assumption here is that opaque | |
1692 * areas tend not to be 0 intensity.) | |
1693 */ | |
1694 if (component >= alpha) | |
1695 component = 65535; | |
1696 | |
1697 /* component<alpha, so component/alpha is less than one and | |
1698 * component*reciprocal is less than 2^31. | |
1699 */ | |
1700 else if (component > 0 && alpha < 65535) | |
1701 { | |
1702 png_uint_32 calc = component * reciprocal; | |
1703 calc += 16384; /* round to nearest */ | |
1704 component = (png_uint_16)(calc >> 15); | |
1705 } | |
1706 | |
1707 *out_ptr++ = component; | |
1708 } | |
1709 while (--c > 0); | |
1710 | |
1711 /* Skip to next component (skip the intervening alpha channel) */ | |
1712 ++in_ptr; | |
1713 ++out_ptr; | |
1714 } | |
1715 | |
1716 png_write_row(png_ptr, png_voidcast(png_const_bytep, display->local_row)); | |
1717 input_row += display->row_bytes/(sizeof (png_uint_16)); | |
1718 } | |
1719 | |
1720 return 1; | |
1721 } | |
1722 | |
1723 /* Given 16-bit input (1 to 4 channels) write 8-bit output. If an alpha channel | |
1724 * is present it must be removed from the components, the components are then | |
1725 * written in sRGB encoding. No components are added or removed. | |
1726 * | |
1727 * Calculate an alpha reciprocal to reverse pre-multiplication. As above the | |
1728 * calculation can be done to 15 bits of accuracy; however, the output needs to | |
1729 * be scaled in the range 0..255*65535, so include that scaling here. | |
1730 */ | |
1731 #define UNP_RECIPROCAL(alpha) ((((0xffff*0xff)<<7)+(alpha>>1))/alpha) | |
1732 | |
1733 static png_byte | |
1734 png_unpremultiply(png_uint_32 component, png_uint_32 alpha, | |
1735 png_uint_32 reciprocal/*from the above macro*/) | |
1736 { | |
1737 /* The following gives 1.0 for an alpha of 0, which is fine, otherwise if 0/0 | |
1738 * is represented as some other value there is more likely to be a | |
1739 * discontinuity which will probably damage compression when moving from a | |
1740 * fully transparent area to a nearly transparent one. (The assumption here | |
1741 * is that opaque areas tend not to be 0 intensity.) | |
1742 * | |
1743 * There is a rounding problem here; if alpha is less than 128 it will end up | |
1744 * as 0 when scaled to 8 bits. To avoid introducing spurious colors into the | |
1745 * output change for this too. | |
1746 */ | |
1747 if (component >= alpha || alpha < 128) | |
1748 return 255; | |
1749 | |
1750 /* component<alpha, so component/alpha is less than one and | |
1751 * component*reciprocal is less than 2^31. | |
1752 */ | |
1753 else if (component > 0) | |
1754 { | |
1755 /* The test is that alpha/257 (rounded) is less than 255, the first value | |
1756 * that becomes 255 is 65407. | |
1757 * NOTE: this must agree with the PNG_DIV257 macro (which must, therefore, | |
1758 * be exact!) [Could also test reciprocal != 0] | |
1759 */ | |
1760 if (alpha < 65407) | |
1761 { | |
1762 component *= reciprocal; | |
1763 component += 64; /* round to nearest */ | |
1764 component >>= 7; | |
1765 } | |
1766 | |
1767 else | |
1768 component *= 255; | |
1769 | |
1770 /* Convert the component to sRGB. */ | |
1771 return (png_byte)PNG_sRGB_FROM_LINEAR(component); | |
1772 } | |
1773 | |
1774 else | |
1775 return 0; | |
1776 } | |
1777 | |
1778 static int | |
1779 png_write_image_8bit(png_voidp argument) | |
1780 { | |
1781 png_image_write_control *display = png_voidcast(png_image_write_control*, | |
1782 argument); | |
1783 png_imagep image = display->image; | |
1784 png_structrp png_ptr = image->opaque->png_ptr; | |
1785 | |
1786 png_const_uint_16p input_row = png_voidcast(png_const_uint_16p, | |
1787 display->first_row); | |
1788 png_bytep output_row = png_voidcast(png_bytep, display->local_row); | |
1789 png_uint_32 y = image->height; | |
1790 const int channels = (image->format & PNG_FORMAT_FLAG_COLOR) ? 3 : 1; | |
1791 | |
1792 if (image->format & PNG_FORMAT_FLAG_ALPHA) | |
1793 { | |
1794 png_bytep row_end; | |
1795 int aindex; | |
1796 | |
1797 if (image->format & PNG_FORMAT_FLAG_AFIRST) | |
1798 { | |
1799 aindex = -1; | |
1800 ++input_row; /* To point to the first component */ | |
1801 ++output_row; | |
1802 } | |
1803 | |
1804 else | |
1805 aindex = channels; | |
1806 | |
1807 /* Use row_end in place of a loop counter: */ | |
1808 row_end = output_row + image->width * (channels+1); | |
1809 | |
1810 while (y-- > 0) | |
1811 { | |
1812 png_const_uint_16p in_ptr = input_row; | |
1813 png_bytep out_ptr = output_row; | |
1814 | |
1815 while (out_ptr < row_end) | |
1816 { | |
1817 png_uint_16 alpha = in_ptr[aindex]; | |
1818 png_byte alphabyte = (png_byte)PNG_DIV257(alpha); | |
1819 png_uint_32 reciprocal = 0; | |
1820 int c; | |
1821 | |
1822 /* Scale and write the alpha channel. */ | |
1823 out_ptr[aindex] = alphabyte; | |
1824 | |
1825 if (alphabyte > 0 && alphabyte < 255) | |
1826 reciprocal = UNP_RECIPROCAL(alpha); | |
1827 | |
1828 c = channels; | |
1829 do /* always at least one channel */ | |
1830 *out_ptr++ = png_unpremultiply(*in_ptr++, alpha, reciprocal); | |
1831 while (--c > 0); | |
1832 | |
1833 /* Skip to next component (skip the intervening alpha channel) */ | |
1834 ++in_ptr; | |
1835 ++out_ptr; | |
1836 } /* while out_ptr < row_end */ | |
1837 | |
1838 png_write_row(png_ptr, png_voidcast(png_const_bytep, | |
1839 display->local_row)); | |
1840 input_row += display->row_bytes/(sizeof (png_uint_16)); | |
1841 } /* while y */ | |
1842 } | |
1843 | |
1844 else | |
1845 { | |
1846 /* No alpha channel, so the row_end really is the end of the row and it | |
1847 * is sufficient to loop over the components one by one. | |
1848 */ | |
1849 png_bytep row_end = output_row + image->width * channels; | |
1850 | |
1851 while (y-- > 0) | |
1852 { | |
1853 png_const_uint_16p in_ptr = input_row; | |
1854 png_bytep out_ptr = output_row; | |
1855 | |
1856 while (out_ptr < row_end) | |
1857 { | |
1858 png_uint_32 component = *in_ptr++; | |
1859 | |
1860 component *= 255; | |
1861 *out_ptr++ = (png_byte)PNG_sRGB_FROM_LINEAR(component); | |
1862 } | |
1863 | |
1864 png_write_row(png_ptr, output_row); | |
1865 input_row += display->row_bytes/(sizeof (png_uint_16)); | |
1866 } | |
1867 } | |
1868 | |
1869 return 1; | |
1870 } | |
1871 | |
1872 static void | |
1873 png_image_set_PLTE(png_image_write_control *display) | |
1874 { | |
1875 const png_imagep image = display->image; | |
1876 const void *cmap = display->colormap; | |
1877 const int entries = image->colormap_entries > 256 ? 256 : | |
1878 (int)image->colormap_entries; | |
1879 | |
1880 /* NOTE: the caller must check for cmap != NULL and entries != 0 */ | |
1881 const png_uint_32 format = image->format; | |
1882 const int channels = PNG_IMAGE_SAMPLE_CHANNELS(format); | |
1883 | |
1884 # ifdef PNG_FORMAT_BGR_SUPPORTED | |
1885 const int afirst = (format & PNG_FORMAT_FLAG_AFIRST) != 0 && | |
1886 (format & PNG_FORMAT_FLAG_ALPHA) != 0; | |
1887 # else | |
1888 # define afirst 0 | |
1889 # endif | |
1890 | |
1891 # ifdef PNG_FORMAT_BGR_SUPPORTED | |
1892 const int bgr = (format & PNG_FORMAT_FLAG_BGR) ? 2 : 0; | |
1893 # else | |
1894 # define bgr 0 | |
1895 # endif | |
1896 | |
1897 int i, num_trans; | |
1898 png_color palette[256]; | |
1899 png_byte tRNS[256]; | |
1900 | |
1901 memset(tRNS, 255, (sizeof tRNS)); | |
1902 memset(palette, 0, (sizeof palette)); | |
1903 | |
1904 for (i=num_trans=0; i<entries; ++i) | |
1905 { | |
1906 /* This gets automatically converted to sRGB with reversal of the | |
1907 * pre-multiplication if the color-map has an alpha channel. | |
1908 */ | |
1909 if (format & PNG_FORMAT_FLAG_LINEAR) | |
1910 { | |
1911 png_const_uint_16p entry = png_voidcast(png_const_uint_16p, cmap); | |
1912 | |
1913 entry += i * channels; | |
1914 | |
1915 if (channels & 1) /* no alpha */ | |
1916 { | |
1917 if (channels >= 3) /* RGB */ | |
1918 { | |
1919 palette[i].blue = (png_byte)PNG_sRGB_FROM_LINEAR(255 * | |
1920 entry[(2 ^ bgr)]); | |
1921 palette[i].green = (png_byte)PNG_sRGB_FROM_LINEAR(255 * | |
1922 entry[1]); | |
1923 palette[i].red = (png_byte)PNG_sRGB_FROM_LINEAR(255 * | |
1924 entry[bgr]); | |
1925 } | |
1926 | |
1927 else /* Gray */ | |
1928 palette[i].blue = palette[i].red = palette[i].green = | |
1929 (png_byte)PNG_sRGB_FROM_LINEAR(255 * *entry); | |
1930 } | |
1931 | |
1932 else /* alpha */ | |
1933 { | |
1934 png_uint_16 alpha = entry[afirst ? 0 : channels-1]; | |
1935 png_byte alphabyte = (png_byte)PNG_DIV257(alpha); | |
1936 png_uint_32 reciprocal = 0; | |
1937 | |
1938 /* Calculate a reciprocal, as in the png_write_image_8bit code above | |
1939 * this is designed to produce a value scaled to 255*65535 when | |
1940 * divided by 128 (i.e. asr 7). | |
1941 */ | |
1942 if (alphabyte > 0 && alphabyte < 255) | |
1943 reciprocal = (((0xffff*0xff)<<7)+(alpha>>1))/alpha; | |
1944 | |
1945 tRNS[i] = alphabyte; | |
1946 if (alphabyte < 255) | |
1947 num_trans = i+1; | |
1948 | |
1949 if (channels >= 3) /* RGB */ | |
1950 { | |
1951 palette[i].blue = png_unpremultiply(entry[afirst + (2 ^ bgr)], | |
1952 alpha, reciprocal); | |
1953 palette[i].green = png_unpremultiply(entry[afirst + 1], alpha, | |
1954 reciprocal); | |
1955 palette[i].red = png_unpremultiply(entry[afirst + bgr], alpha, | |
1956 reciprocal); | |
1957 } | |
1958 | |
1959 else /* gray */ | |
1960 palette[i].blue = palette[i].red = palette[i].green = | |
1961 png_unpremultiply(entry[afirst], alpha, reciprocal); | |
1962 } | |
1963 } | |
1964 | |
1965 else /* Color-map has sRGB values */ | |
1966 { | |
1967 png_const_bytep entry = png_voidcast(png_const_bytep, cmap); | |
1968 | |
1969 entry += i * channels; | |
1970 | |
1971 switch (channels) | |
1972 { | |
1973 case 4: | |
1974 tRNS[i] = entry[afirst ? 0 : 3]; | |
1975 if (tRNS[i] < 255) | |
1976 num_trans = i+1; | |
1977 /* FALL THROUGH */ | |
1978 case 3: | |
1979 palette[i].blue = entry[afirst + (2 ^ bgr)]; | |
1980 palette[i].green = entry[afirst + 1]; | |
1981 palette[i].red = entry[afirst + bgr]; | |
1982 break; | |
1983 | |
1984 case 2: | |
1985 tRNS[i] = entry[1 ^ afirst]; | |
1986 if (tRNS[i] < 255) | |
1987 num_trans = i+1; | |
1988 /* FALL THROUGH */ | |
1989 case 1: | |
1990 palette[i].blue = palette[i].red = palette[i].green = | |
1991 entry[afirst]; | |
1992 break; | |
1993 | |
1994 default: | |
1995 break; | |
1996 } | |
1997 } | |
1998 } | |
1999 | |
2000 # ifdef afirst | |
2001 # undef afirst | |
2002 # endif | |
2003 # ifdef bgr | |
2004 # undef bgr | |
2005 # endif | |
2006 | |
2007 png_set_PLTE(image->opaque->png_ptr, image->opaque->info_ptr, palette, | |
2008 entries); | |
2009 | |
2010 if (num_trans > 0) | |
2011 png_set_tRNS(image->opaque->png_ptr, image->opaque->info_ptr, tRNS, | |
2012 num_trans, NULL); | |
2013 | |
2014 image->colormap_entries = entries; | |
2015 } | |
2016 | |
2017 static int | |
2018 png_image_write_main(png_voidp argument) | |
2019 { | |
2020 png_image_write_control *display = png_voidcast(png_image_write_control*, | |
2021 argument); | |
2022 png_imagep image = display->image; | |
2023 png_structrp png_ptr = image->opaque->png_ptr; | |
2024 png_inforp info_ptr = image->opaque->info_ptr; | |
2025 png_uint_32 format = image->format; | |
2026 | |
2027 int colormap = (format & PNG_FORMAT_FLAG_COLORMAP) != 0; | |
2028 int linear = !colormap && (format & PNG_FORMAT_FLAG_LINEAR) != 0; /* input */ | |
2029 int alpha = !colormap && (format & PNG_FORMAT_FLAG_ALPHA) != 0; | |
2030 int write_16bit = linear && !colormap && !display->convert_to_8bit; | |
2031 | |
2032 # ifdef PNG_BENIGN_ERRORS_SUPPORTED | |
2033 /* Make sure we error out on any bad situation */ | |
2034 png_set_benign_errors(png_ptr, 0/*error*/); | |
2035 # endif | |
2036 | |
2037 /* Default the 'row_stride' parameter if required. */ | |
2038 if (display->row_stride == 0) | |
2039 display->row_stride = PNG_IMAGE_ROW_STRIDE(*image); | |
2040 | |
2041 /* Set the required transforms then write the rows in the correct order. */ | |
2042 if (format & PNG_FORMAT_FLAG_COLORMAP) | |
2043 { | |
2044 if (display->colormap != NULL && image->colormap_entries > 0) | |
2045 { | |
2046 png_uint_32 entries = image->colormap_entries; | |
2047 | |
2048 png_set_IHDR(png_ptr, info_ptr, image->width, image->height, | |
2049 entries > 16 ? 8 : (entries > 4 ? 4 : (entries > 2 ? 2 : 1)), | |
2050 PNG_COLOR_TYPE_PALETTE, PNG_INTERLACE_NONE, | |
2051 PNG_COMPRESSION_TYPE_BASE, PNG_FILTER_TYPE_BASE); | |
2052 | |
2053 png_image_set_PLTE(display); | |
2054 } | |
2055 | |
2056 else | |
2057 png_error(image->opaque->png_ptr, | |
2058 "no color-map for color-mapped image"); | |
2059 } | |
2060 | |
2061 else | |
2062 png_set_IHDR(png_ptr, info_ptr, image->width, image->height, | |
2063 write_16bit ? 16 : 8, | |
2064 ((format & PNG_FORMAT_FLAG_COLOR) ? PNG_COLOR_MASK_COLOR : 0) + | |
2065 ((format & PNG_FORMAT_FLAG_ALPHA) ? PNG_COLOR_MASK_ALPHA : 0), | |
2066 PNG_INTERLACE_NONE, PNG_COMPRESSION_TYPE_BASE, PNG_FILTER_TYPE_BASE); | |
2067 | |
2068 /* Counter-intuitively the data transformations must be called *after* | |
2069 * png_write_info, not before as in the read code, but the 'set' functions | |
2070 * must still be called before. Just set the color space information, never | |
2071 * write an interlaced image. | |
2072 */ | |
2073 | |
2074 if (write_16bit) | |
2075 { | |
2076 /* The gamma here is 1.0 (linear) and the cHRM chunk matches sRGB. */ | |
2077 png_set_gAMA_fixed(png_ptr, info_ptr, PNG_GAMMA_LINEAR); | |
2078 | |
2079 if (!(image->flags & PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB)) | |
2080 png_set_cHRM_fixed(png_ptr, info_ptr, | |
2081 /* color x y */ | |
2082 /* white */ 31270, 32900, | |
2083 /* red */ 64000, 33000, | |
2084 /* green */ 30000, 60000, | |
2085 /* blue */ 15000, 6000 | |
2086 ); | |
2087 } | |
2088 | |
2089 else if (!(image->flags & PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB)) | |
2090 png_set_sRGB(png_ptr, info_ptr, PNG_sRGB_INTENT_PERCEPTUAL); | |
2091 | |
2092 /* Else writing an 8-bit file and the *colors* aren't sRGB, but the 8-bit | |
2093 * space must still be gamma encoded. | |
2094 */ | |
2095 else | |
2096 png_set_gAMA_fixed(png_ptr, info_ptr, PNG_GAMMA_sRGB_INVERSE); | |
2097 | |
2098 /* Write the file header. */ | |
2099 png_write_info(png_ptr, info_ptr); | |
2100 | |
2101 /* Now set up the data transformations (*after* the header is written), | |
2102 * remove the handled transformations from the 'format' flags for checking. | |
2103 * | |
2104 * First check for a little endian system if writing 16 bit files. | |
2105 */ | |
2106 if (write_16bit) | |
2107 { | |
2108 PNG_CONST png_uint_16 le = 0x0001; | |
2109 | |
2110 if (*(png_const_bytep)&le) | |
2111 png_set_swap(png_ptr); | |
2112 } | |
2113 | |
2114 # ifdef PNG_SIMPLIFIED_WRITE_BGR_SUPPORTED | |
2115 if (format & PNG_FORMAT_FLAG_BGR) | |
2116 { | |
2117 if (!colormap && (format & PNG_FORMAT_FLAG_COLOR) != 0) | |
2118 png_set_bgr(png_ptr); | |
2119 format &= ~PNG_FORMAT_FLAG_BGR; | |
2120 } | |
2121 # endif | |
2122 | |
2123 # ifdef PNG_SIMPLIFIED_WRITE_AFIRST_SUPPORTED | |
2124 if (format & PNG_FORMAT_FLAG_AFIRST) | |
2125 { | |
2126 if (!colormap && (format & PNG_FORMAT_FLAG_ALPHA) != 0) | |
2127 png_set_swap_alpha(png_ptr); | |
2128 format &= ~PNG_FORMAT_FLAG_AFIRST; | |
2129 } | |
2130 # endif | |
2131 | |
2132 /* If there are 16 or fewer color-map entries we wrote a lower bit depth | |
2133 * above, but the application data is still byte packed. | |
2134 */ | |
2135 if (colormap && image->colormap_entries <= 16) | |
2136 png_set_packing(png_ptr); | |
2137 | |
2138 /* That should have handled all (both) the transforms. */ | |
2139 if ((format & ~(png_uint_32)(PNG_FORMAT_FLAG_COLOR | PNG_FORMAT_FLAG_LINEAR | | |
2140 PNG_FORMAT_FLAG_ALPHA | PNG_FORMAT_FLAG_COLORMAP)) != 0) | |
2141 png_error(png_ptr, "png_write_image: unsupported transformation"); | |
2142 | |
2143 { | |
2144 png_const_bytep row = png_voidcast(png_const_bytep, display->buffer); | |
2145 ptrdiff_t row_bytes = display->row_stride; | |
2146 | |
2147 if (linear) | |
2148 row_bytes *= (sizeof (png_uint_16)); | |
2149 | |
2150 if (row_bytes < 0) | |
2151 row += (image->height-1) * (-row_bytes); | |
2152 | |
2153 display->first_row = row; | |
2154 display->row_bytes = row_bytes; | |
2155 } | |
2156 | |
2157 /* Apply 'fast' options if the flag is set. */ | |
2158 if ((image->flags & PNG_IMAGE_FLAG_FAST) != 0) | |
2159 { | |
2160 png_set_filter(png_ptr, PNG_FILTER_TYPE_BASE, PNG_NO_FILTERS); | |
2161 /* NOTE: determined by experiment using pngstest, this reflects some | |
2162 * balance between the time to write the image once and the time to read | |
2163 * it about 50 times. The speed-up in pngstest was about 10-20% of the | |
2164 * total (user) time on a heavily loaded system. | |
2165 */ | |
2166 png_set_compression_level(png_ptr, 3); | |
2167 } | |
2168 | |
2169 /* Check for the cases that currently require a pre-transform on the row | |
2170 * before it is written. This only applies when the input is 16-bit and | |
2171 * either there is an alpha channel or it is converted to 8-bit. | |
2172 */ | |
2173 if ((linear && alpha) || (!colormap && display->convert_to_8bit)) | |
2174 { | |
2175 png_bytep row = png_voidcast(png_bytep, png_malloc(png_ptr, | |
2176 png_get_rowbytes(png_ptr, info_ptr))); | |
2177 int result; | |
2178 | |
2179 display->local_row = row; | |
2180 if (write_16bit) | |
2181 result = png_safe_execute(image, png_write_image_16bit, display); | |
2182 else | |
2183 result = png_safe_execute(image, png_write_image_8bit, display); | |
2184 display->local_row = NULL; | |
2185 | |
2186 png_free(png_ptr, row); | |
2187 | |
2188 /* Skip the 'write_end' on error: */ | |
2189 if (!result) | |
2190 return 0; | |
2191 } | |
2192 | |
2193 /* Otherwise this is the case where the input is in a format currently | |
2194 * supported by the rest of the libpng write code; call it directly. | |
2195 */ | |
2196 else | |
2197 { | |
2198 png_const_bytep row = png_voidcast(png_const_bytep, display->first_row); | |
2199 ptrdiff_t row_bytes = display->row_bytes; | |
2200 png_uint_32 y = image->height; | |
2201 | |
2202 while (y-- > 0) | |
2203 { | |
2204 png_write_row(png_ptr, row); | |
2205 row += row_bytes; | |
2206 } | |
2207 } | |
2208 | |
2209 png_write_end(png_ptr, info_ptr); | |
2210 return 1; | |
2211 } | |
2212 | |
2213 int PNGAPI | |
2214 png_image_write_to_stdio(png_imagep image, FILE *file, int convert_to_8bit, | |
2215 const void *buffer, png_int_32 row_stride, const void *colormap) | |
2216 { | |
2217 /* Write the image to the given (FILE*). */ | |
2218 if (image != NULL && image->version == PNG_IMAGE_VERSION) | |
2219 { | |
2220 if (file != NULL) | |
2221 { | |
2222 if (png_image_write_init(image)) | |
2223 { | |
2224 png_image_write_control display; | |
2225 int result; | |
2226 | |
2227 /* This is slightly evil, but png_init_io doesn't do anything other | |
2228 * than this and we haven't changed the standard IO functions so | |
2229 * this saves a 'safe' function. | |
2230 */ | |
2231 image->opaque->png_ptr->io_ptr = file; | |
2232 | |
2233 memset(&display, 0, (sizeof display)); | |
2234 display.image = image; | |
2235 display.buffer = buffer; | |
2236 display.row_stride = row_stride; | |
2237 display.colormap = colormap; | |
2238 display.convert_to_8bit = convert_to_8bit; | |
2239 | |
2240 result = png_safe_execute(image, png_image_write_main, &display); | |
2241 png_image_free(image); | |
2242 return result; | |
2243 } | |
2244 | |
2245 else | |
2246 return 0; | |
2247 } | |
2248 | |
2249 else | |
2250 return png_image_error(image, | |
2251 "png_image_write_to_stdio: invalid argument"); | |
2252 } | |
2253 | |
2254 else if (image != NULL) | |
2255 return png_image_error(image, | |
2256 "png_image_write_to_stdio: incorrect PNG_IMAGE_VERSION"); | |
2257 | |
2258 else | |
2259 return 0; | |
2260 } | |
2261 | |
2262 int PNGAPI | |
2263 png_image_write_to_file(png_imagep image, const char *file_name, | |
2264 int convert_to_8bit, const void *buffer, png_int_32 row_stride, | |
2265 const void *colormap) | |
2266 { | |
2267 /* Write the image to the named file. */ | |
2268 if (image != NULL && image->version == PNG_IMAGE_VERSION) | |
2269 { | |
2270 if (file_name != NULL) | |
2271 { | |
2272 FILE *fp = fopen(file_name, "wb"); | |
2273 | |
2274 if (fp != NULL) | |
2275 { | |
2276 if (png_image_write_to_stdio(image, fp, convert_to_8bit, buffer, | |
2277 row_stride, colormap)) | |
2278 { | |
2279 int error; /* from fflush/fclose */ | |
2280 | |
2281 /* Make sure the file is flushed correctly. */ | |
2282 if (fflush(fp) == 0 && ferror(fp) == 0) | |
2283 { | |
2284 if (fclose(fp) == 0) | |
2285 return 1; | |
2286 | |
2287 error = errno; /* from fclose */ | |
2288 } | |
2289 | |
2290 else | |
2291 { | |
2292 error = errno; /* from fflush or ferror */ | |
2293 (void)fclose(fp); | |
2294 } | |
2295 | |
2296 (void)remove(file_name); | |
2297 /* The image has already been cleaned up; this is just used to | |
2298 * set the error (because the original write succeeded). | |
2299 */ | |
2300 return png_image_error(image, strerror(error)); | |
2301 } | |
2302 | |
2303 else | |
2304 { | |
2305 /* Clean up: just the opened file. */ | |
2306 (void)fclose(fp); | |
2307 (void)remove(file_name); | |
2308 return 0; | |
2309 } | |
2310 } | |
2311 | |
2312 else | |
2313 return png_image_error(image, strerror(errno)); | |
2314 } | |
2315 | |
2316 else | |
2317 return png_image_error(image, | |
2318 "png_image_write_to_file: invalid argument"); | |
2319 } | |
2320 | |
2321 else if (image != NULL) | |
2322 return png_image_error(image, | |
2323 "png_image_write_to_file: incorrect PNG_IMAGE_VERSION"); | |
2324 | |
2325 else | |
2326 return 0; | |
2327 } | |
2328 #endif /* PNG_STDIO_SUPPORTED */ | |
2329 #endif /* SIMPLIFIED_WRITE */ | |
2330 #endif /* PNG_WRITE_SUPPORTED */ | 1593 #endif /* PNG_WRITE_SUPPORTED */ |
OLD | NEW |