VirtualBox

source: vbox/trunk/src/VBox/Additions/x11/VBoxClient/display-svga-xf86cvt.cpp

Last change on this file was 98202, checked in by vboxsync, 16 months ago

add/x11/VBoxClient: Fix warning. bugref:10348

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1/* $Id: display-svga-xf86cvt.cpp 98202 2023-01-22 02:05:53Z vboxsync $ */
2/** @file
3 * Guest Additions - Our version of xf86CVTMode.
4 */
5
6/*
7 * Copyright (C) 2006-2023 Oracle and/or its affiliates.
8 * This file is based on x.org server 1.18.0 file xf86cvt.c:
9 *
10 * Copyright 2005-2006 Luc Verhaegen.
11 *
12 * Permission is hereby granted, free of charge, to any person obtaining a
13 * copy of this software and associated documentation files (the "Software"),
14 * to deal in the Software without restriction, including without limitation
15 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
16 * and/or sell copies of the Software, and to permit persons to whom the
17 * Software is furnished to do so, subject to the following conditions:
18 *
19 * The above copyright notice and this permission notice shall be included in
20 * all copies or substantial portions of the Software.
21 *
22 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
23 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
24 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
25 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
26 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
27 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
28 * OTHER DEALINGS IN THE SOFTWARE.
29 */
30
31#if 0
32/*
33 * The reason for having this function in a file of its own is
34 * so that ../utils/cvt/cvt can link to it, and that xf86CVTMode
35 * code is shared directly.
36 */
37
38#ifdef HAVE_XORG_CONFIG_H
39#include <xorg-config.h>
40#else
41#ifdef HAVE_CONFIG_H
42#include <config.h>
43#endif
44#endif
45
46#include "xf86.h"
47#include "xf86Modes.h"
48
49#include <string.h>
50#else
51# include "VBoxClient.h"
52# include "display-svga-xf86cvt.h"
53#endif
54
55/*
56 * This is a slightly modified version of the xf86CVTMode function from
57 * xf86cvt.c from the xorg xserver source code. Computes several parameters
58 * of a display mode out of horizontal and vertical resolutions. Replicated
59 * here to avoid further dependencies.
60 *
61 *----------------------------------------------------------------------------
62 *
63 * Generate a CVT standard mode from HDisplay, VDisplay and VRefresh.
64 *
65 * These calculations are stolen from the CVT calculation spreadsheet written
66 * by Graham Loveridge. He seems to be claiming no copyright and there seems to
67 * be no license attached to this. He apparently just wants to see his name
68 * mentioned.
69 *
70 * This file can be found at http://www.vesa.org/Public/CVT/CVTd6r1.xls
71 *
72 * Comments and structure corresponds to the comments and structure of the xls.
73 * This should ease importing of future changes to the standard (not very
74 * likely though).
75 *
76 * About margins; i'm sure that they are to be the bit between HDisplay and
77 * HBlankStart, HBlankEnd and HTotal, VDisplay and VBlankStart, VBlankEnd and
78 * VTotal, where the overscan colour is shown. FB seems to call _all_ blanking
79 * outside sync "margin" for some reason. Since we prefer seeing proper
80 * blanking instead of the overscan colour, and since the Crtc* values will
81 * probably get altered after us, we will disable margins altogether. With
82 * these calculations, Margins will plainly expand H/VDisplay, and we don't
83 * want that. -- libv
84 *
85 */
86DisplayModeR VBoxClient_xf86CVTMode(int HDisplay, int VDisplay, float VRefresh /* Herz */, bool Reduced, bool Interlaced)
87{
88 DisplayModeR Mode;
89
90 /* 1) top/bottom margin size (% of height) - default: 1.8 */
91#define CVT_MARGIN_PERCENTAGE 1.8
92
93 /* 2) character cell horizontal granularity (pixels) - default 8 */
94#define CVT_H_GRANULARITY 8
95
96 /* 4) Minimum vertical porch (lines) - default 3 */
97#define CVT_MIN_V_PORCH 3
98
99 /* 4) Minimum number of vertical back porch lines - default 6 */
100#define CVT_MIN_V_BPORCH 6
101
102 /* Pixel Clock step (kHz) */
103#define CVT_CLOCK_STEP 250
104
105 bool Margins = false;
106 float VFieldRate, HPeriod;
107 int HDisplayRnd, HMargin;
108 int VDisplayRnd, VMargin, VSync;
109 float Interlace; /* Please rename this */
110
111 /* CVT default is 60.0Hz */
112 if (!VRefresh)
113 VRefresh = 60.0;
114
115 /* 1. Required field rate */
116 if (Interlaced)
117 VFieldRate = VRefresh * 2;
118 else
119 VFieldRate = VRefresh;
120
121 /* 2. Horizontal pixels */
122 HDisplayRnd = HDisplay - (HDisplay % CVT_H_GRANULARITY);
123
124 /* 3. Determine left and right borders */
125 if (Margins) {
126 /* right margin is actually exactly the same as left */
127 HMargin = (int)((float)HDisplayRnd * CVT_MARGIN_PERCENTAGE / 100.0);
128 HMargin -= HMargin % CVT_H_GRANULARITY;
129 }
130 else
131 HMargin = 0;
132
133 /* 4. Find total active pixels */
134 Mode.HDisplay = HDisplayRnd + 2 * HMargin;
135
136 /* 5. Find number of lines per field */
137 if (Interlaced)
138 VDisplayRnd = VDisplay / 2;
139 else
140 VDisplayRnd = VDisplay;
141
142 /* 6. Find top and bottom margins */
143 /* nope. */
144 if (Margins)
145 /* top and bottom margins are equal again. */
146 VMargin = (int)((float)VDisplayRnd * CVT_MARGIN_PERCENTAGE / 100.0);
147 else
148 VMargin = 0;
149
150 Mode.VDisplay = VDisplay + 2 * VMargin;
151
152 /* 7. Interlace */
153 if (Interlaced)
154 Interlace = 0.5;
155 else
156 Interlace = 0.0;
157
158 /* Determine VSync Width from aspect ratio */
159 if (!(VDisplay % 3) && ((VDisplay * 4 / 3) == HDisplay))
160 VSync = 4;
161 else if (!(VDisplay % 9) && ((VDisplay * 16 / 9) == HDisplay))
162 VSync = 5;
163 else if (!(VDisplay % 10) && ((VDisplay * 16 / 10) == HDisplay))
164 VSync = 6;
165 else if (!(VDisplay % 4) && ((VDisplay * 5 / 4) == HDisplay))
166 VSync = 7;
167 else if (!(VDisplay % 9) && ((VDisplay * 15 / 9) == HDisplay))
168 VSync = 7;
169 else /* Custom */
170 VSync = 10;
171
172 if (!Reduced) { /* simplified GTF calculation */
173
174 /* 4) Minimum time of vertical sync + back porch interval (µs)
175 * default 550.0 */
176#define CVT_MIN_VSYNC_BP 550.0
177
178 /* 3) Nominal HSync width (% of line period) - default 8 */
179#define CVT_HSYNC_PERCENTAGE 8
180
181 float HBlankPercentage;
182 int VSyncAndBackPorch, VBackPorch;
183 int HBlank;
184
185 /* 8. Estimated Horizontal period */
186 HPeriod = ((float)(1000000.0 / VFieldRate - CVT_MIN_VSYNC_BP))
187 / (VDisplayRnd + 2 * VMargin + CVT_MIN_V_PORCH + Interlace);
188
189 /* 9. Find number of lines in sync + backporch */
190 if ((int)(CVT_MIN_VSYNC_BP / HPeriod) + 1 < VSync + CVT_MIN_V_PORCH)
191 VSyncAndBackPorch = VSync + CVT_MIN_V_PORCH;
192 else
193 VSyncAndBackPorch = (int)(CVT_MIN_VSYNC_BP / HPeriod) + 1;
194
195 /* 10. Find number of lines in back porch */
196 VBackPorch = VSyncAndBackPorch - VSync;
197 (void) VBackPorch;
198
199 /* 11. Find total number of lines in vertical field */
200 Mode.VTotal = (int)(VDisplayRnd + 2 * VMargin + VSyncAndBackPorch + Interlace + CVT_MIN_V_PORCH);
201
202 /* 5) Definition of Horizontal blanking time limitation */
203 /* Gradient (%/kHz) - default 600 */
204#define CVT_M_FACTOR 600
205
206 /* Offset (%) - default 40 */
207#define CVT_C_FACTOR 40
208
209 /* Blanking time scaling factor - default 128 */
210#define CVT_K_FACTOR 128
211
212 /* Scaling factor weighting - default 20 */
213#define CVT_J_FACTOR 20
214
215#define CVT_M_PRIME (CVT_M_FACTOR * CVT_K_FACTOR / 256)
216#define CVT_C_PRIME ((CVT_C_FACTOR - CVT_J_FACTOR) * CVT_K_FACTOR / 256 + CVT_J_FACTOR)
217
218 /* 12. Find ideal blanking duty cycle from formula */
219 HBlankPercentage = CVT_C_PRIME - CVT_M_PRIME * HPeriod / 1000.0;
220
221 /* 13. Blanking time */
222 if (HBlankPercentage < 20)
223 HBlankPercentage = 20;
224
225 HBlank = (int)(Mode.HDisplay * HBlankPercentage / (100.0 - HBlankPercentage));
226 HBlank -= HBlank % (2 * CVT_H_GRANULARITY);
227
228 /* 14. Find total number of pixels in a line. */
229 Mode.HTotal = Mode.HDisplay + HBlank;
230
231 /* Fill in HSync values */
232 Mode.HSyncEnd = Mode.HDisplay + HBlank / 2;
233
234 Mode.HSyncStart = Mode.HSyncEnd - (Mode.HTotal * CVT_HSYNC_PERCENTAGE) / 100;
235 Mode.HSyncStart += CVT_H_GRANULARITY - Mode.HSyncStart % CVT_H_GRANULARITY;
236
237 /* Fill in VSync values */
238 Mode.VSyncStart = Mode.VDisplay + CVT_MIN_V_PORCH;
239 Mode.VSyncEnd = Mode.VSyncStart + VSync;
240
241 }
242 else { /* Reduced blanking */
243 /* Minimum vertical blanking interval time (µs) - default 460 */
244#define CVT_RB_MIN_VBLANK 460.0
245
246 /* Fixed number of clocks for horizontal sync */
247#define CVT_RB_H_SYNC 32.0
248
249 /* Fixed number of clocks for horizontal blanking */
250#define CVT_RB_H_BLANK 160.0
251
252 /* Fixed number of lines for vertical front porch - default 3 */
253#define CVT_RB_VFPORCH 3
254
255 int VBILines;
256
257 /* 8. Estimate Horizontal period. */
258 HPeriod = ((float)(1000000.0 / VFieldRate - CVT_RB_MIN_VBLANK)) / (VDisplayRnd + 2 * VMargin);
259
260 /* 9. Find number of lines in vertical blanking */
261 VBILines = (int)((float)CVT_RB_MIN_VBLANK / HPeriod + 1);
262
263 /* 10. Check if vertical blanking is sufficient */
264 if (VBILines < CVT_RB_VFPORCH + VSync + CVT_MIN_V_BPORCH)
265 VBILines = CVT_RB_VFPORCH + VSync + CVT_MIN_V_BPORCH;
266
267 /* 11. Find total number of lines in vertical field */
268 Mode.VTotal = (int)(VDisplayRnd + 2 * VMargin + Interlace + VBILines);
269
270 /* 12. Find total number of pixels in a line */
271 Mode.HTotal = (int)(Mode.HDisplay + CVT_RB_H_BLANK);
272
273 /* Fill in HSync values */
274 Mode.HSyncEnd = (int)(Mode.HDisplay + CVT_RB_H_BLANK / 2);
275 Mode.HSyncStart = (int)(Mode.HSyncEnd - CVT_RB_H_SYNC);
276
277 /* Fill in VSync values */
278 Mode.VSyncStart = Mode.VDisplay + CVT_RB_VFPORCH;
279 Mode.VSyncEnd = Mode.VSyncStart + VSync;
280 }
281 /* 15/13. Find pixel clock frequency (kHz for xf86) */
282 Mode.Clock = (int)(Mode.HTotal * 1000.0 / HPeriod);
283 Mode.Clock -= Mode.Clock % CVT_CLOCK_STEP;
284
285 /* 16/14. Find actual Horizontal Frequency (kHz) */
286 Mode.HSync = (float)Mode.Clock / (float)Mode.HTotal;
287
288 /* 17/15. Find actual Field rate */
289 Mode.VRefresh = (1000.0 * (float)Mode.Clock) / (float)(Mode.HTotal * Mode.VTotal);
290
291 /* 18/16. Find actual vertical frame frequency */
292 /* ignore - just set the mode flag for interlaced */
293 if (Interlaced)
294 Mode.VTotal *= 2;
295
296#if 0
297 XNFasprintf(&tmp, "%dx%d", HDisplay, VDisplay);
298 Mode->name = tmp;
299
300 if (Reduced)
301 Mode->Flags |= V_PHSYNC | V_NVSYNC;
302 else
303 Mode->Flags |= V_NHSYNC | V_PVSYNC;
304
305 if (Interlaced)
306 Mode->Flags |= V_INTERLACE;
307#endif
308
309 return Mode;
310}
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