1 /* sane - Scanner Access Now Easy.
2
3 Copyright (C) 2019 Povilas Kanapickas <povilas@radix.lt>
4
5 This file is part of the SANE package.
6
7 This program is free software; you can redistribute it and/or
8 modify it under the terms of the GNU General Public License as
9 published by the Free Software Foundation; either version 2 of the
10 License, or (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <https://www.gnu.org/licenses/>.
19 */
20
21 #ifndef BACKEND_GENESYS_SETTINGS_H
22 #define BACKEND_GENESYS_SETTINGS_H
23
24 #include "enums.h"
25 #include "serialize.h"
26 #include "utilities.h"
27 #include "sensor.h"
28
29 namespace genesys {
30
31 struct Genesys_Settings
32 {
33 ScanMethod scan_method = ScanMethod::FLATBED;
34 ScanColorMode scan_mode = ScanColorMode::LINEART;
35
36 // horizontal dpi
37 unsigned xres = 0;
38 // vertical dpi
39 unsigned yres = 0;
40
41 //x start on scan table in mm
42 float tl_x = 0;
43 // y start on scan table in mm
44 float tl_y = 0;
45
46 // number of lines at scan resolution
47 unsigned int lines = 0;
48 // number of pixels expected from the scanner
49 unsigned int pixels = 0;
50 // number of pixels expected by the frontend
51 unsigned requested_pixels = 0;
52
53 // bit depth of the scan
54 unsigned int depth = 0;
55
56 ColorFilter color_filter = ColorFilter::NONE;
57
58 // value for contrast enhancement in the [-100..100] range
59 int contrast = 0;
60
61 // value for brightness enhancement in the [-100..100] range
62 int brightness = 0;
63
64 // cache entries expiration time
65 int expiration_time = 0;
66
get_channelsGenesys_Settings67 unsigned get_channels() const
68 {
69 if (scan_mode == ScanColorMode::COLOR_SINGLE_PASS)
70 return 3;
71 return 1;
72 }
73 };
74
75 std::ostream& operator<<(std::ostream& out, const Genesys_Settings& settings);
76
77
78 struct SetupParams {
79
80 static constexpr unsigned NOT_SET = std::numeric_limits<unsigned>::max();
81 static constexpr unsigned NOT_SET_I = std::numeric_limits<int>::max();
82
83 // resolution in x direction
84 unsigned xres = NOT_SET;
85 // resolution in y direction
86 unsigned yres = NOT_SET;
87 // start pixel in X direction, from dummy_pixel + 1. Counted in terms of xres.
88 unsigned startx = NOT_SET;
89 // start pixel in Y direction, counted according to base_ydpi
90 unsigned starty = NOT_SET;
91 // the number of pixels in X direction. Counted in terms of xres.
92 // Note that each logical pixel may correspond to more than one CCD pixel, see CKSEL and
93 // GenesysSensor::ccd_pixels_per_system_pixel()
94 unsigned pixels = NOT_SET;
95
96 // the number of pixels in the X direction as requested by the frontend. This will be different
97 // from `pixels` if the X resolution requested by the frontend is different than the actual
98 // resolution. This is only needed to compute dev->total_bytes_to_read. If 0, then the value
99 // is the same as pixels.
100 // TODO: move the computation of total_bytes_to_read to a higher layer.
101 unsigned requested_pixels = 0;
102
103 // the number of pixels in Y direction
104 unsigned lines = NOT_SET;
105 // the depth of the scan in bits. Allowed are 1, 8, 16
106 unsigned depth = NOT_SET;
107 // the number of channels
108 unsigned channels = NOT_SET;
109
110 ScanMethod scan_method = static_cast<ScanMethod>(NOT_SET);
111
112 ScanColorMode scan_mode = static_cast<ScanColorMode>(NOT_SET);
113
114 ColorFilter color_filter = static_cast<ColorFilter>(NOT_SET);
115
116 // the values for contrast and brightness adjustment in the range of [-100..100]
117 int contrast_adjustment = NOT_SET_I;
118 int brightness_adjustment = NOT_SET_I;
119
120 ScanFlag flags = ScanFlag::NONE;
121
get_requested_pixelsSetupParams122 unsigned get_requested_pixels() const
123 {
124 if (requested_pixels != 0) {
125 return requested_pixels;
126 }
127 return pixels;
128 }
129
assert_validSetupParams130 void assert_valid() const
131 {
132 if (xres == NOT_SET || yres == NOT_SET || startx == NOT_SET || starty == NOT_SET ||
133 pixels == NOT_SET || lines == NOT_SET ||depth == NOT_SET || channels == NOT_SET ||
134 scan_method == static_cast<ScanMethod>(NOT_SET) ||
135 scan_mode == static_cast<ScanColorMode>(NOT_SET) ||
136 color_filter == static_cast<ColorFilter>(NOT_SET) ||
137 contrast_adjustment == NOT_SET_I || brightness_adjustment == NOT_SET_I)
138 {
139 throw std::runtime_error("SetupParams are not valid");
140 }
141 }
142
143 bool operator==(const SetupParams& other) const
144 {
145 return xres == other.xres &&
146 yres == other.yres &&
147 startx == other.startx &&
148 starty == other.starty &&
149 pixels == other.pixels &&
150 requested_pixels == other.requested_pixels &&
151 lines == other.lines &&
152 depth == other.depth &&
153 channels == other.channels &&
154 scan_method == other.scan_method &&
155 scan_mode == other.scan_mode &&
156 color_filter == other.color_filter &&
157 contrast_adjustment == other.contrast_adjustment &&
158 brightness_adjustment == other.brightness_adjustment &&
159 flags == other.flags;
160 }
161 };
162
163 std::ostream& operator<<(std::ostream& out, const SetupParams& params);
164
165 template<class Stream>
serialize(Stream & str,SetupParams & x)166 void serialize(Stream& str, SetupParams& x)
167 {
168 serialize(str, x.xres);
169 serialize(str, x.yres);
170 serialize(str, x.startx);
171 serialize(str, x.starty);
172 serialize(str, x.pixels);
173 serialize(str, x.requested_pixels);
174 serialize(str, x.lines);
175 serialize(str, x.depth);
176 serialize(str, x.channels);
177 serialize(str, x.scan_method);
178 serialize(str, x.scan_mode);
179 serialize(str, x.color_filter);
180 serialize(str, x.contrast_adjustment);
181 serialize(str, x.brightness_adjustment);
182 serialize(str, x.flags);
183 }
184
185 struct ScanSession {
186 SetupParams params;
187
188 // whether the session setup has been computed via compute_session()
189 bool computed = false;
190
191 // specifies the full resolution of the sensor that is being used.
192 unsigned full_resolution = 0;
193
194 // the optical resolution of the sensor that is being used.
195 unsigned optical_resolution = 0;
196
197 // the number of pixels at the optical resolution, not including segmentation overhead.
198 unsigned optical_pixels = 0;
199
200 // the number of pixels at the optical resolution, including segmentation overhead.
201 // only on gl846, g847
202 unsigned optical_pixels_raw = 0;
203
204 // the number of optical scan lines. Equal to output_line_count on CCD scanners.
205 unsigned optical_line_count = 0;
206
207 // the resolution of the output data.
208 unsigned output_resolution = 0;
209
210 // the offset in pixels from the beginning of output data
211 unsigned output_startx = 0;
212
213 // the number of pixels in output data (after desegmentation)
214 unsigned output_pixels = 0;
215
216 // the number of bytes in the output of a channel of a single line (after desegmentation)
217 unsigned output_channel_bytes = 0;
218
219 // the number of bytes in the output of a single line (after desegmentation)
220 unsigned output_line_bytes = 0;
221
222 // the number of bytes per line in the output data from the scanner (before desegmentation)
223 // Equal to output_line_bytes if sensor does not have segments
224 unsigned output_line_bytes_raw = 0;
225
226 // the number of bytes per line as requested by the frontend
227 unsigned output_line_bytes_requested = 0;
228
229 // the number of lines in the output of the scanner. This must be larger than the user
230 // requested number due to line staggering and color channel shifting.
231 unsigned output_line_count = 0;
232
233 // the total number of bytes to read from the scanner (before desegmentation)
234 unsigned output_total_bytes_raw = 0;
235
236 // the total number of bytes to read from the scanner (after desegmentation)
237 unsigned output_total_bytes = 0;
238
239 // the number of staggered lines (i.e. lines that overlap during scanning due to line being
240 // thinner than the CCD element). Computed according to stagger_y.
241 unsigned num_staggered_lines = 0;
242
243 // the number of lines that color channels shift due to different physical positions of
244 // different color channels.
245 unsigned max_color_shift_lines = 0;
246
247 // actual line shift of the red color
248 unsigned color_shift_lines_r = 0;
249 // actual line shift of the green color
250 unsigned color_shift_lines_g = 0;
251 // actual line shift of the blue color
252 unsigned color_shift_lines_b = 0;
253
254 // The shifts that need to be applied to the output pixels in x direction.
255 StaggerConfig stagger_x;
256 // The shifts that need to be applied to the output pixels in y direction.
257 StaggerConfig stagger_y;
258
259 // the number of scanner segments used in the current scan
260 unsigned segment_count = 1;
261
262 // the physical pixel positions that are sent to the registers
263 unsigned pixel_startx = 0;
264 unsigned pixel_endx = 0;
265
266 /* The following defines the ratio between logical pixel count and pixel count setting sent to
267 the scanner. The ratio is affected by the following:
268
269 - Certain scanners just like to multiply the pixel number by a multiplier that depends on
270 the resolution.
271
272 - The sensor may be configured to output one value per multiple physical pixels
273
274 - The scanner will automatically average the pixels that come from the sensor using a
275 certain ratio.
276 */
277 Ratio pixel_count_ratio = Ratio{1, 1};
278
279 // Distance in pixels between consecutive pixels, e.g. between odd and even pixels. Note that
280 // the number of segments can be large.
281 // only on gl124, gl846, gl847
282 unsigned conseq_pixel_dist = 0;
283
284 // The number of "even" pixels to scan. This corresponds to the number of pixels that will be
285 // scanned from a single segment
286 // only on gl124, gl846, gl847
287 unsigned output_segment_pixel_group_count = 0;
288
289 // The number of bytes to skip at start of line during desegmentation.
290 // Currently it's always zero.
291 unsigned output_segment_start_offset = 0;
292
293 // How many pixels the shading data is offset to the right from the acquired data. Calculated
294 // in shading resolution.
295 int shading_pixel_offset = 0;
296
297 // the size of the read buffer.
298 size_t buffer_size_read = 0;
299
300 // whether to enable ledadd functionality
301 bool enable_ledadd = false;
302
303 // whether calibration should be performed host-side
304 bool use_host_side_calib = false;
305
306 // whether gray scanning should be performed host-side (scan as color and merge to gray)
307 bool use_host_side_gray = false;
308
assert_computedScanSession309 void assert_computed() const
310 {
311 if (!computed) {
312 throw std::runtime_error("ScanSession is not computed");
313 }
314 }
315
316 bool operator==(const ScanSession& other) const;
317 };
318
319 std::ostream& operator<<(std::ostream& out, const ScanSession& session);
320
321 template<class Stream>
serialize(Stream & str,ScanSession & x)322 void serialize(Stream& str, ScanSession& x)
323 {
324 serialize(str, x.params);
325 serialize_newline(str);
326 serialize(str, x.computed);
327 serialize(str, x.full_resolution);
328 serialize(str, x.optical_resolution);
329 serialize(str, x.optical_pixels);
330 serialize(str, x.optical_pixels_raw);
331 serialize(str, x.optical_line_count);
332 serialize(str, x.output_resolution);
333 serialize(str, x.output_startx);
334 serialize(str, x.output_pixels);
335 serialize(str, x.output_channel_bytes);
336 serialize(str, x.output_line_bytes);
337 serialize(str, x.output_line_bytes_raw);
338 serialize(str, x.output_line_bytes_requested);
339 serialize(str, x.output_line_count);
340 serialize(str, x.output_total_bytes_raw);
341 serialize(str, x.output_total_bytes);
342 serialize(str, x.num_staggered_lines);
343 serialize(str, x.max_color_shift_lines);
344 serialize(str, x.color_shift_lines_r);
345 serialize(str, x.color_shift_lines_g);
346 serialize(str, x.color_shift_lines_b);
347 serialize(str, x.stagger_x);
348 serialize(str, x.stagger_y);
349 serialize(str, x.segment_count);
350 serialize(str, x.pixel_startx);
351 serialize(str, x.pixel_endx);
352 serialize(str, x.pixel_count_ratio);
353 serialize(str, x.conseq_pixel_dist);
354 serialize(str, x.output_segment_pixel_group_count);
355 serialize(str, x.output_segment_start_offset);
356 serialize(str, x.shading_pixel_offset);
357 serialize(str, x.buffer_size_read);
358 serialize(str, x.enable_ledadd);
359 serialize(str, x.use_host_side_calib);
360 serialize(str, x.use_host_side_gray);
361 }
362
363 std::ostream& operator<<(std::ostream& out, const SANE_Parameters& params);
364
365 } // namespace genesys
366
367 #endif // BACKEND_GENESYS_SETTINGS_H
368