1/*
2	Copyright 1999, Be Incorporated.   All Rights Reserved.
3	This file may be used under the terms of the Be Sample Code License.
4
5	Other authors for NV driver:
6	Mark Watson,
7	Rudolf Cornelissen 9/2002-10/2004
8*/
9
10#define MODULE_BIT 0x00400000
11
12#include "acc_std.h"
13
14#define	T_POSITIVE_SYNC	(B_POSITIVE_HSYNC | B_POSITIVE_VSYNC)
15/* mode flags will be setup as status info by PROPOSEMODE! */
16#define MODE_FLAGS 0
17#define MODE_COUNT (sizeof (mode_list) / sizeof (display_mode))
18
19/*some monitors only handle a fixed set of modes*/
20#include "valid_mode_list"
21
22/* Standard VESA modes,
23 * plus panel specific resolution modes which are internally modified during run-time depending on the requirements of the actual
24 * panel connected. The modes as listed here, should timing-wise be as compatible with analog (CRT) monitors as can be... */
25static const display_mode mode_list[] = {
26/* 4:3 modes; 307.2k pixels */
27{ { 25175, 640, 656, 752, 800, 480, 490, 492, 525, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(640X480X8.Z1) */
28{ { 27500, 640, 672, 768, 864, 480, 488, 494, 530, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* 640X480X60Hz */
29{ { 30500, 640, 672, 768, 864, 480, 517, 523, 588, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* SVGA_640X480X60HzNI */
30{ { 31500, 640, 664, 704, 832, 480, 489, 492, 520, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70-72Hz_(640X480X8.Z1) */
31{ { 31500, 640, 656, 720, 840, 480, 481, 484, 500, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(640X480X8.Z1) */
32{ { 36000, 640, 696, 752, 832, 480, 481, 484, 509, 0}, B_CMAP8, 640, 480, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@85Hz_(640X480X8.Z1) */
33/* 4:3 modes; 480k pixels */
34{ { 36000, 800, 824, 896, 1024, 600, 601, 603, 625, 0}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@56Hz_(800X600) from Be, Inc. driver + XFree86 */
35{ { 38100, 800, 832, 960, 1088, 600, 602, 606, 620, 0}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* SVGA_800X600X56HzNI */
36{ { 40000, 800, 840, 968, 1056, 600, 601, 605, 628, T_POSITIVE_SYNC}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(800X600X8.Z1) + XFree86 */
37{ { 49500, 800, 816, 896, 1056, 600, 601, 604, 625, T_POSITIVE_SYNC}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(800X600X8.Z1) + XFree86 */
38{ { 50000, 800, 856, 976, 1040, 600, 637, 643, 666, T_POSITIVE_SYNC}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70-72Hz_(800X600X8.Z1) + XFree86 */
39{ { 56250, 800, 832, 896, 1048, 600, 601, 604, 631, T_POSITIVE_SYNC}, B_CMAP8, 800, 600, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@85Hz_(800X600X8.Z1) + XFree86 */
40/* 4:3 modes; 786.432k pixels */
41{ { 65000, 1024, 1048, 1184, 1344, 768, 771, 777, 806, 0}, B_CMAP8, 1024, 768, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1024X768X8.Z1) + XFree86 */
42{ { 75000, 1024, 1048, 1184, 1328, 768, 771, 777, 806, 0}, B_CMAP8, 1024, 768, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70-72Hz_(1024X768X8.Z1) + XFree86 */
43{ { 78750, 1024, 1040, 1136, 1312, 768, 769, 772, 800, T_POSITIVE_SYNC}, B_CMAP8, 1024, 768, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1024X768X8.Z1) + XFree86 */
44{ { 94500, 1024, 1072, 1168, 1376, 768, 769, 772, 808, T_POSITIVE_SYNC}, B_CMAP8, 1024, 768, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@85Hz_(1024X768X8.Z1) + XFree86 */
45/* 4:3 modes; 995.328k pixels */
46{ { 94200, 1152, 1184, 1280, 1472, 864, 865, 868, 914, T_POSITIVE_SYNC}, B_CMAP8, 1152, 864, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70Hz_(1152X864X8.Z1) */
47{ { 97800, 1152, 1216, 1344, 1552, 864, 865, 868, 900, T_POSITIVE_SYNC}, B_CMAP8, 1152, 864, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70Hz_(1152X864X8.Z1) */
48{ { 108000, 1152, 1216, 1344, 1600, 864, 865, 868, 900, T_POSITIVE_SYNC}, B_CMAP8, 1152, 864, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1152X864X8.Z1) + XFree86 */
49{ { 121500, 1152, 1216, 1344, 1568, 864, 865, 868, 911, T_POSITIVE_SYNC}, B_CMAP8, 1152, 864, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@85Hz_(1152X864X8.Z1) */
50/* 5:4 modes; 1.311M pixels */
51{ { 108000, 1280, 1328, 1440, 1688, 1024, 1025, 1028, 1066, T_POSITIVE_SYNC}, B_CMAP8, 1280, 1024, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1280X1024) from Be, Inc. driver + XFree86 */
52{ { 135000, 1280, 1296, 1440, 1688, 1024, 1025, 1028, 1066, T_POSITIVE_SYNC}, B_CMAP8, 1280, 1024, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1280X1024X8.Z1) + XFree86 */
53{ { 157500, 1280, 1344, 1504, 1728, 1024, 1025, 1028, 1072, T_POSITIVE_SYNC}, B_CMAP8, 1280, 1024, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@85Hz_(1280X1024X8.Z1) + XFree86 */
54/* 4:3 panel mode; 1.47M pixels */
55{ { 122600, 1400, 1488, 1640, 1880, 1050, 1051, 1054, 1087, T_POSITIVE_SYNC}, B_CMAP8, 1400, 1050, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1400X1050) */
56/* 4:3 modes; 1.92M pixels */
57{ { 162000, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1600X1200X8.Z1) + XFree86 */
58/* identical lines to above one, apart from refreshrate.. */
59{ { 175500, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@65Hz_(1600X1200X8.Z1) + XFree86 */
60{ { 189000, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@70Hz_(1600X1200X8.Z1) + XFree86 */
61{ { 202500, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1600X1200X8.Z1) + XFree86 */
62{ { 216000, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@80Hz_(1600X1200X8.Z1) */
63{ { 229500, 1600, 1664, 1856, 2160, 1200, 1201, 1204, 1250, T_POSITIVE_SYNC}, B_CMAP8, 1600, 1200, 0, 0, MODE_FLAGS},  /* Vesa_Monitor_@85Hz_(1600X1200X8.Z1) + XFree86 */
64/* end identical lines. */
65/* 4:3 modes; 2.408M pixels */
66{ { 204750, 1792, 1920, 2120, 2448, 1344, 1345, 1348, 1394, B_POSITIVE_VSYNC}, B_CMAP8, 1792, 1344, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1792X1344) from Be, Inc. driver + XFree86 */
67{ { 261000, 1792, 1888, 2104, 2456, 1344, 1345, 1348, 1417, B_POSITIVE_VSYNC}, B_CMAP8, 1792, 1344, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1792X1344) from Be, Inc. driver + XFree86 */
68/* 4:3 modes; 2.584M pixels */
69{ { 218250, 1856, 1952, 2176, 2528, 1392, 1393, 1396, 1439, B_POSITIVE_VSYNC}, B_CMAP8, 1856, 1392, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1856X1392) from Be, Inc. driver + XFree86 */
70{ { 288000, 1856, 1984, 2208, 2560, 1392, 1393, 1396, 1500, B_POSITIVE_VSYNC}, B_CMAP8, 1856, 1392, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1856X1392) from Be, Inc. driver + XFree86 */
71/* 4:3 modes; 2.765M pixels */
72{ { 234000, 1920, 2048, 2256, 2600, 1440, 1441, 1444, 1500, B_POSITIVE_VSYNC}, B_CMAP8, 1920, 1440, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1920X1440) from Be, Inc. driver + XFree86 */
73{ { 297000, 1920, 2064, 2288, 2640, 1440, 1441, 1444, 1500, B_POSITIVE_VSYNC}, B_CMAP8, 1920, 1440, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@75Hz_(1920X1440) from Be, Inc. driver + XFree86 */
74/* 4:3 modes; 3.146M pixels */
75{ { 266950, 2048, 2200, 2424, 2800, 1536, 1537, 1540, 1589, B_POSITIVE_VSYNC}, B_CMAP8, 2048, 1536, 0, 0, MODE_FLAGS}, /* From XFree86 posting @60Hz + XFree86 */
76/* 16:10 panel mode; 400k pixels */
77{ { 31300, 800, 848, 928, 1008, 500, 501, 504, 518, T_POSITIVE_SYNC}, B_CMAP8, 800, 500, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(800X500) */
78/* 16:10 panel mode; 655.36k pixels */
79{ { 52800, 1024, 1072, 1176, 1328, 640, 641, 644, 663, T_POSITIVE_SYNC}, B_CMAP8, 1024, 640, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1024X640) */
80/* 16:10 panel-TV mode; 983.04k pixels */
81{ { 80135, 1280, 1344, 1480, 1680, 768, 769, 772, 795, T_POSITIVE_SYNC}, B_CMAP8, 1280, 768, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1280X768) */
82/* 16:10 panel mode; 1.024M pixels */
83{ { 83500, 1280, 1344, 1480, 1680, 800, 801, 804, 828, T_POSITIVE_SYNC}, B_CMAP8, 1280, 800, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1280X800) */
84/* 16:10 panel mode; 1.296M pixels */
85{ { 106500, 1440, 1520, 1672, 1904, 900, 901, 904, 932, T_POSITIVE_SYNC}, B_CMAP8, 1440, 900, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1440X900) */
86/* 16:10 panel mode; 1.764M pixels */
87{ { 147100, 1680, 1784, 1968, 2256, 1050, 1051, 1054, 1087, T_POSITIVE_SYNC}, B_CMAP8, 1680, 1050, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1680X1050) */
88/* 16:10 panel mode; 2.304M pixels */
89{ { 193200, 1920, 2048, 2256, 2592, 1200, 1201, 1204, 1242, T_POSITIVE_SYNC}, B_CMAP8, 1920, 1200, 0, 0, MODE_FLAGS}, /* Vesa_Monitor_@60Hz_(1920X1200) */
90};
91
92/*
93Check mode is between low and high limits
94returns:
95	B_OK - found one
96	B_BAD_VALUE - mode can be made, but outside limits
97	B_ERROR - not possible
98*/
99/* BOUNDS WARNING:
100 * BeOS (tested R5.0.3PE) is failing BWindowScreen.SetFrameBuffer() if PROPOSEMODE
101 * returns B_BAD_VALUE. It's called by the OS with target, low and high set to
102 * have the same settings for BWindowScreen!
103 * Which means we should not return B_BAD_VALUE on anything except for deviations on:
104 * display_mode.virtual_width;
105 * display_mode.virtual_height;
106 * display_mode.timing.h_display;
107 * display_mode.timing.v_display;
108 */
109/* Note:
110 * The target mode should be modified to correspond to the mode as it can be made. */
111status_t PROPOSE_DISPLAY_MODE(display_mode *target, const display_mode *low, const display_mode *high)
112{
113	status_t status = B_OK;
114	float pix_clock_found, target_aspect;
115	uint8 m,n,p, bpp;
116	status_t result;
117	uint32 max_vclk, row_bytes, pointer_reservation;
118	bool acc_mode;
119	double target_refresh = ((double)target->timing.pixel_clock * 1000.0) /
120			(
121				(double)target->timing.h_total *
122				(double)target->timing.v_total
123			);
124	bool
125		want_same_width = target->timing.h_display == target->virtual_width,
126		want_same_height = target->timing.v_display == target->virtual_height;
127
128	LOG(1, ("PROPOSEMODE: (ENTER) requested virtual_width %d, virtual_height %d\n",
129									target->virtual_width, target->virtual_height));
130
131	/*check valid list:
132		if (VALID_REQUIRED is set)
133		{
134			if (find modes with same size)
135			{
136				pick one with nearest pixel clock
137			}
138			else
139			{
140				pick next largest with nearest pixel clock and modify visible portion as far as possible
141			}
142		}
143	*/
144	#ifdef VALID_MODE_REQUIRED
145	{
146		int i;
147		int closest_mode_ptr;
148		uint32 closest_mode_clock;
149
150		LOG(1, ("PROPOSEMODE: valid mode required!\n"));
151
152		closest_mode_ptr = 0xbad;
153		closest_mode_clock = 0;
154		for (i=0;i<VALID_MODES;i++)
155		{
156			/*check size is ok and clock is better than any found before*/
157			if(
158				target->timing.h_display==valid_mode_list[i].h_display &&
159				target->timing.v_display==valid_mode_list[i].v_display
160			)
161			{
162				if (
163					abs(valid_mode_list[i].pixel_clock-target->timing.pixel_clock)<
164					abs(closest_mode_clock-target->timing.pixel_clock)
165				)
166				{
167					closest_mode_clock=valid_mode_list[i].pixel_clock;
168					closest_mode_ptr=i;
169				}
170			}
171		}
172
173		if (closest_mode_ptr==0xbad)/*if no modes of correct size*/
174		{
175			LOG(4, ("PROPOSEMODE: no valid mode found, aborted.\n"));
176			return B_ERROR;
177		}
178		else
179		{
180			target->timing=valid_mode_list[closest_mode_ptr];
181			target_refresh = ((double)target->timing.pixel_clock * 1000.0) /  /*I require this refresh*/
182			((double)target->timing.h_total * (double)target->timing.v_total);
183		}
184	}
185	#endif
186
187	/*find a nearby valid timing from that given*/
188	result = head1_validate_timing
189	(
190		&target->timing.h_display, &target->timing.h_sync_start, &target->timing.h_sync_end, &target->timing.h_total,
191		&target->timing.v_display, &target->timing.v_sync_start, &target->timing.v_sync_end, &target->timing.v_total
192	);
193	if (result == B_ERROR)
194	{
195		LOG(4, ("PROPOSEMODE: could not validate timing, aborted.\n"));
196		return result;
197	}
198
199	/* check if all connected output devices can display the requested mode's aspect: */
200	/* calculate display mode aspect */
201	target_aspect = (target->timing.h_display / ((float)target->timing.v_display));
202	/* NOTE:
203	 * allow 0.10 difference so 5:4 aspect panels will be able to use 4:3 aspect modes! */
204	switch (si->ps.monitors)
205	{
206	case 0x01: /* digital panel on head 1, nothing on head 2 */
207		if (si->ps.panel1_aspect < (target_aspect - 0.10))
208		{
209			LOG(4, ("PROPOSEMODE: connected panel1 is not widescreen type, aborted.\n"));
210			return B_ERROR;
211		}
212		break;
213	case 0x10: /* nothing on head 1, digital panel on head 2 */
214		if (si->ps.panel2_aspect < (target_aspect - 0.10))
215		{
216			LOG(4, ("PROPOSEMODE: connected panel2 is not widescreen type, aborted.\n"));
217			return B_ERROR;
218		}
219		break;
220	case 0x11: /* digital panels on both heads */
221		if ((si->ps.panel1_aspect < (target_aspect - 0.10)) ||
222			(si->ps.panel2_aspect < (target_aspect - 0.10)))
223		{
224			LOG(4, ("PROPOSEMODE: not all connected panels are widescreen type, aborted.\n"));
225			return B_ERROR;
226		}
227		break;
228	default: /* at least one analog monitor is connected, or nothing detected at all */
229		if (target_aspect > 1.34)
230		{
231			LOG(4, ("PROPOSEMODE: not all output devices can display widescreen modes, aborted.\n"));
232			return B_ERROR;
233		}
234		break;
235	}
236
237	/* only export widescreen panel-TV modes when an exact resolution match exists,
238	 * to prevent the modelist from becoming too crowded */
239	if (target_aspect > 1.61)
240	{
241		status_t panel_TV_stat = B_ERROR;
242
243		if (si->ps.tmds1_active)
244		{
245			if ((target->timing.h_display == si->ps.p1_timing.h_display) &&
246				(target->timing.v_display == si->ps.p1_timing.v_display))
247			{
248				panel_TV_stat = B_OK;
249			}
250		}
251		if (si->ps.tmds2_active)
252		{
253			if ((target->timing.h_display == si->ps.p2_timing.h_display) &&
254				(target->timing.v_display == si->ps.p2_timing.v_display))
255			{
256				panel_TV_stat = B_OK;
257			}
258		}
259		if (panel_TV_stat != B_OK)
260		{
261			LOG(4, ("PROPOSEMODE: WS panel_TV mode requested but no such TV here, aborted.\n"));
262			return B_ERROR;
263		}
264	}
265
266	/* check if panel(s) can display the requested resolution (if connected) */
267	if (si->ps.tmds1_active)
268	{
269		if ((target->timing.h_display > si->ps.p1_timing.h_display) ||
270			(target->timing.v_display > si->ps.p1_timing.v_display))
271		{
272			LOG(4, ("PROPOSEMODE: panel1 can't display requested resolution, aborted.\n"));
273			return B_ERROR;
274		}
275	}
276	if (si->ps.tmds2_active)
277	{
278		if ((target->timing.h_display > si->ps.p2_timing.h_display) ||
279			(target->timing.v_display > si->ps.p2_timing.v_display))
280		{
281			LOG(4, ("PROPOSEMODE: panel2 can't display requested resolution, aborted.\n"));
282			return B_ERROR;
283		}
284	}
285
286	/* validate display vs. virtual */
287	if ((target->timing.h_display > target->virtual_width) || want_same_width)
288		target->virtual_width = target->timing.h_display;
289	if ((target->timing.v_display > target->virtual_height) || want_same_height)
290		target->virtual_height = target->timing.v_display;
291
292	/* nail virtual size and 'subsequently' calculate rowbytes */
293	result = eng_general_validate_pic_size (target, &row_bytes, &acc_mode);
294	if (result == B_ERROR)
295	{
296		LOG(4, ("PROPOSEMODE: could not validate virtual picture size, aborted.\n"));
297		return result;
298	}
299
300	/*check if virtual_width is still within the requested limits*/
301	if ((target->virtual_width < low->virtual_width) ||
302		(target->virtual_width > high->virtual_width))
303	{
304		status = B_BAD_VALUE;
305		LOG(4, ("PROPOSEMODE: WARNING: virtual_width deviates too much\n"));
306	}
307
308	/*check if timing found is within the requested horizontal limits*/
309	if ((target->timing.h_display < low->timing.h_display) ||
310		(target->timing.h_display > high->timing.h_display) ||
311		(target->timing.h_sync_start < low->timing.h_sync_start) ||
312		(target->timing.h_sync_start > high->timing.h_sync_start) ||
313		(target->timing.h_sync_end < low->timing.h_sync_end) ||
314		(target->timing.h_sync_end > high->timing.h_sync_end) ||
315		(target->timing.h_total < low->timing.h_total) ||
316		(target->timing.h_total > high->timing.h_total))
317	{
318		/* BWindowScreen workaround: we accept everything except h_display deviations */
319		if ((target->timing.h_display < low->timing.h_display) ||
320			(target->timing.h_display > high->timing.h_display))
321		{
322			status = B_BAD_VALUE;
323		}
324		LOG(4, ("PROPOSEMODE: WARNING: horizontal timing deviates too much\n"));
325	}
326
327	/*check if timing found is within the requested vertical limits*/
328	if (
329		(target->timing.v_display < low->timing.v_display) ||
330		(target->timing.v_display > high->timing.v_display) ||
331		(target->timing.v_sync_start < low->timing.v_sync_start) ||
332		(target->timing.v_sync_start > high->timing.v_sync_start) ||
333		(target->timing.v_sync_end < low->timing.v_sync_end) ||
334		(target->timing.v_sync_end > high->timing.v_sync_end) ||
335		(target->timing.v_total < low->timing.v_total) ||
336		(target->timing.v_total > high->timing.v_total)
337	)
338	{
339		/* BWindowScreen workaround: we accept everything except v_display deviations */
340		if ((target->timing.v_display < low->timing.v_display) ||
341			(target->timing.v_display > high->timing.v_display))
342		{
343			status = B_BAD_VALUE;
344		}
345		LOG(4, ("PROPOSEMODE: WARNING: vertical timing deviates too much\n"));
346	}
347
348	/* adjust pixelclock for possible timing modifications done above */
349	target->timing.pixel_clock = target_refresh * ((double)target->timing.h_total) * ((double)target->timing.v_total) / 1000.0;
350
351	/* Now find the nearest valid pixelclock we actually can setup for the target mode,
352	 * this also makes sure we don't generate more pixel bandwidth than the device can handle */
353	/* calculate settings, but do not actually test anything (that costs too much time!) */
354	result = head1_pix_pll_find(*target,&pix_clock_found,&m,&n,&p,0);
355	/* update the target mode */
356	target->timing.pixel_clock = (pix_clock_found * 1000);
357
358	/* note if we fell outside the limits */
359	if ((target->timing.pixel_clock < low->timing.pixel_clock) ||
360		(target->timing.pixel_clock > high->timing.pixel_clock)
361	)
362	{
363		/* BWindowScreen workaround: we accept deviations <= 1Mhz */
364		if ((target->timing.pixel_clock < (low->timing.pixel_clock - 1000)) ||
365			(target->timing.pixel_clock > (high->timing.pixel_clock + 1000)))
366		{
367			status = B_BAD_VALUE;
368		}
369		LOG(4, ("PROPOSEMODE: WARNING: pixelclock deviates too much\n"));
370	}
371
372	/* checkout space needed for hardcursor (if any) */
373	pointer_reservation = 0;
374	if (si->settings.hardcursor) pointer_reservation = 2048;
375	/* memory requirement for frame buffer */
376	if ((row_bytes * target->virtual_height) >
377		(si->ps.memory_size - pointer_reservation))
378	{
379		target->virtual_height =
380			(si->ps.memory_size - pointer_reservation) / row_bytes;
381	}
382	if (target->virtual_height < target->timing.v_display)
383	{
384		LOG(4,("PROPOSEMODE: not enough memory for current mode, aborted.\n"));
385		return B_ERROR;
386	}
387	LOG(4,("PROPOSEMODE: validated virtual_width %d, virtual_height %d pixels\n",
388		target->virtual_width, target->virtual_height));
389
390	if ((target->virtual_height < low->virtual_height) ||
391		(target->virtual_height > high->virtual_height))
392	{
393		status = B_BAD_VALUE;
394		LOG(4, ("PROPOSEMODE: WARNING: virtual_height deviates too much\n"));
395	}
396
397	/* setup status flags */
398	LOG(1, ("PROPOSEMODE: initial modeflags: $%08x\n", target->flags));
399	/* preset to singlehead card without TVout, no overlay support and no hardcursor.
400	 * also advice system that app_server and acc engine may touch the framebuffer
401	 * simultaneously (fixed). */
402	target->flags &=
403		~(DUALHEAD_CAPABLE | TV_CAPABLE | B_SUPPORTS_OVERLAYS | B_HARDWARE_CURSOR | B_IO_FB_NA);
404	/* we always allow parallel access (fixed), the DAC is always in 'enhanced'
405	 * mode (fixed), and all modes support DPMS (fixed);
406	 * We support scrolling and panning in every mode, so we 'send a signal' to
407	 * BWindowScreen.CanControlFrameBuffer() by setting B_SCROLL.  */
408	/* BTW: B_PARALLEL_ACCESS in combination with a hardcursor enables
409	 * BDirectWindow windowed modes. */
410	target->flags |= (B_PARALLEL_ACCESS | B_8_BIT_DAC | B_DPMS | B_SCROLL);
411
412	/* determine the 'would be' max. pixelclock for the second DAC for the current videomode if dualhead were activated */
413	switch (target->space)
414	{
415		case B_CMAP8:
416			max_vclk = si->ps.max_dac2_clock_8;
417			bpp = 1;
418			break;
419		case B_RGB15_LITTLE:
420		case B_RGB16_LITTLE:
421			max_vclk = si->ps.max_dac2_clock_16;
422			bpp = 2;
423			break;
424		case B_RGB24_LITTLE:
425			max_vclk = si->ps.max_dac2_clock_24;
426			bpp = 3;
427			break;
428		case B_RGB32_LITTLE:
429			max_vclk = si->ps.max_dac2_clock_32dh;
430			bpp = 4;
431			break;
432		default:
433			/* use fail-safe value */
434			max_vclk = si->ps.max_dac2_clock_32dh;
435			bpp = 4;
436			break;
437	}
438
439	/* set DUALHEAD_CAPABLE if suitable */
440	//fixme: update for independant secondary head use! (reserve fixed memory then)
441	if (si->ps.secondary_head && (target->timing.pixel_clock <= (max_vclk * 1000)))
442	{
443		switch (target->flags & DUALHEAD_BITS)
444		{
445		case DUALHEAD_ON:
446		case DUALHEAD_SWITCH:
447			if (((si->ps.memory_size - pointer_reservation) >=
448					(row_bytes * target->virtual_height)) &&
449			 	((uint16)(row_bytes / bpp) >= (target->timing.h_display * 2)))
450			{
451				target->flags |= DUALHEAD_CAPABLE;
452			}
453			break;
454		case DUALHEAD_CLONE:
455			if ((si->ps.memory_size - pointer_reservation) >=
456					(row_bytes * target->virtual_height))
457			{
458				target->flags |= DUALHEAD_CAPABLE;
459			}
460			break;
461		case DUALHEAD_OFF:
462			if ((si->ps.memory_size - pointer_reservation) >=
463					(row_bytes * target->virtual_height * 2))
464			{
465				target->flags |= DUALHEAD_CAPABLE;
466			}
467			break;
468		}
469	}
470
471	/* set TV_CAPABLE if suitable: pixelclock is not important (defined by TVstandard) */
472	//fixme: modify for G100 and G200 TVout later on...
473	if (target->flags & DUALHEAD_CAPABLE)
474	{
475		if (si->ps.tvout &&
476			(target->timing.h_display <= 1024) &&
477			(target->timing.v_display <= 768))
478		{
479			target->flags |= TV_CAPABLE;
480		}
481	}
482
483	/* set HARDWARE_CURSOR mode if suitable */
484	if (si->settings.hardcursor)
485		target->flags |= B_HARDWARE_CURSOR;
486
487	/* set SUPPORTS_OVERLAYS */
488	target->flags |= B_SUPPORTS_OVERLAYS;
489
490	LOG(1, ("PROPOSEMODE: validated status modeflags: $%08x\n", target->flags));
491
492	/* overrule timing command flags to be (fixed) blank_pedestal = 0.0IRE,
493	 * progressive scan (fixed), and sync_on_green not avaible. */
494	target->timing.flags &= ~(B_BLANK_PEDESTAL | B_TIMING_INTERLACED | B_SYNC_ON_GREEN);
495	/* The HSYNC and VSYNC command flags are actually executed by the driver. */
496
497	if (status == B_OK)	LOG(4, ("PROPOSEMODE: completed successfully.\n"));
498	else LOG(4, ("PROPOSEMODE: mode can be made, but outside given limits.\n"));
499	return status;
500}
501
502/* Return the number of modes this device will return from GET_MODE_LIST().
503	This is precalculated in create_mode_list (called from InitAccelerant stuff)
504*/
505uint32 ACCELERANT_MODE_COUNT(void)
506{
507	LOG(1, ("ACCELERANT_MODE_COUNT: the modelist contains %d modes\n",si->mode_count));
508
509	return si->mode_count;
510}
511
512/* Copy the list of guaranteed supported video modes to the location provided.*/
513status_t GET_MODE_LIST(display_mode *dm)
514{
515	LOG(1, ("GET_MODE_LIST: exporting the modelist created before.\n"));
516
517	memcpy(dm, my_mode_list, si->mode_count * sizeof(display_mode));
518	return B_OK;
519}
520
521/* Create a list of display_modes to pass back to the caller.*/
522status_t create_mode_list(void)
523{
524	size_t max_size;
525	uint32
526		i, j,
527		pix_clk_range;
528	const display_mode
529		*src;
530	display_mode
531		*dst,
532		low,
533		high;
534
535	color_space spaces[4] = {B_RGB32_LITTLE,B_RGB16_LITTLE,B_RGB15_LITTLE,B_CMAP8};
536
537	/* figure out how big the list could be, and adjust up to nearest multiple of B_PAGE_SIZE */
538	max_size = (((MODE_COUNT * 4) * sizeof(display_mode)) + (B_PAGE_SIZE-1)) & ~(B_PAGE_SIZE-1);
539	/* create an area to hold the info */
540	si->mode_area = my_mode_list_area =
541		create_area("NV accelerant mode info", (void **)&my_mode_list, B_ANY_ADDRESS, max_size,
542			B_NO_LOCK, B_READ_AREA | B_WRITE_AREA | B_CLONEABLE_AREA);
543	if (my_mode_list_area < B_OK) return my_mode_list_area;
544
545	/* walk through our predefined list and see which modes fit this device */
546	src = mode_list;
547	dst = my_mode_list;
548	si->mode_count = 0;
549	for (i = 0; i < MODE_COUNT; i++)
550	{
551		/* set ranges for acceptable values */
552		low = high = *src;
553		/* range is 6.25% of default clock: arbitrarily picked */
554		pix_clk_range = low.timing.pixel_clock >> 5;
555		low.timing.pixel_clock -= pix_clk_range;
556		high.timing.pixel_clock += pix_clk_range;
557		/* 'some cards need wider virtual widths for certain modes':
558		 * Not true. They might need a wider pitch, but this is _not_ reflected in
559		 * virtual_width, but in fbc.bytes_per_row. */
560		//So disable next line:
561		//high.virtual_width = 4096;
562		/* do it once for each depth we want to support */
563		for (j = 0; j < (sizeof(spaces) / sizeof(color_space)); j++)
564		{
565			/* set target values */
566			*dst = *src;
567			/* poke the specific space */
568			dst->space = low.space = high.space = spaces[j];
569			/* ask for a compatible mode */
570			/* We have to check for B_OK, because otherwise the pix_clk_range
571			 * won't be taken into account!! */
572			//So don't do this:
573			//if (PROPOSE_DISPLAY_MODE(dst, &low, &high) != B_ERROR) {
574			//Instead, do this:
575			if (PROPOSE_DISPLAY_MODE(dst, &low, &high) == B_OK) {
576				/* count it, and move on to next mode */
577				dst++;
578				si->mode_count++;
579			}
580		}
581		/* advance to next mode */
582		src++;
583	}
584
585	return B_OK;
586}
587