g80_display.c revision f3561b8b
1fc5a983dSmrg/*
2fc5a983dSmrg * Copyright (c) 2007 NVIDIA, Corporation
3fc5a983dSmrg *
4fc5a983dSmrg * Permission is hereby granted, free of charge, to any person obtaining a
5fc5a983dSmrg * copy of this software and associated documentation files (the
6fc5a983dSmrg * "Software"), to deal in the Software without restriction, including
7fc5a983dSmrg * without limitation the rights to use, copy, modify, merge, publish,
8fc5a983dSmrg * distribute, sublicense, and/or sell copies of the Software, and to
9fc5a983dSmrg * permit persons to whom the Software is furnished to do so, subject to
10fc5a983dSmrg * the following conditions:
11fc5a983dSmrg *
12fc5a983dSmrg * The above copyright notice and this permission notice shall be included
13fc5a983dSmrg * in all copies or substantial portions of the Software.
14fc5a983dSmrg *
15fc5a983dSmrg * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
16fc5a983dSmrg * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
17fc5a983dSmrg * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
18fc5a983dSmrg * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
19fc5a983dSmrg * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
20fc5a983dSmrg * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
21fc5a983dSmrg * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
22fc5a983dSmrg */
23fc5a983dSmrg
24fc5a983dSmrg
25fc5a983dSmrg#ifdef HAVE_CONFIG_H
26fc5a983dSmrg#include "config.h"
27fc5a983dSmrg#endif
28fc5a983dSmrg
29fc5a983dSmrg#include <float.h>
30fc5a983dSmrg#include <math.h>
31fc5a983dSmrg#include <strings.h>
32fc5a983dSmrg#include <unistd.h>
33fc5a983dSmrg
34fc5a983dSmrg#include "g80_type.h"
35fc5a983dSmrg#include "g80_cursor.h"
36fc5a983dSmrg#include "g80_display.h"
37fc5a983dSmrg#include "g80_output.h"
38fc5a983dSmrg
39fc5a983dSmrgtypedef struct G80CrtcPrivRec {
40fc5a983dSmrg    Head head;
41fc5a983dSmrg    int pclk; /* Target pixel clock in kHz */
42fc5a983dSmrg    Bool cursorVisible;
43fc5a983dSmrg    Bool skipModeFixup;
44fc5a983dSmrg    Bool dither;
45fc5a983dSmrg} G80CrtcPrivRec, *G80CrtcPrivPtr;
46fc5a983dSmrg
47fc5a983dSmrgstatic void G80CrtcShowHideCursor(xf86CrtcPtr crtc, Bool show, Bool update);
48fc5a983dSmrg
49fc5a983dSmrg/*
50fc5a983dSmrg * PLL calculation.  pclk is in kHz.
51fc5a983dSmrg */
52fc5a983dSmrgstatic void
53fc5a983dSmrgG80CalcPLL(float pclk, int *pNA, int *pMA, int *pNB, int *pMB, int *pP)
54fc5a983dSmrg{
55fc5a983dSmrg    const float refclk = 27000.0f;
56fc5a983dSmrg    const float minVcoA = 100000;
57fc5a983dSmrg    const float maxVcoA = 400000;
58fc5a983dSmrg    const float minVcoB = 600000;
59fc5a983dSmrg    float maxVcoB = 1400000;
60fc5a983dSmrg    const float minUA = 2000;
61fc5a983dSmrg    const float maxUA = 400000;
62fc5a983dSmrg    const float minUB = 50000;
63fc5a983dSmrg    const float maxUB = 200000;
64fc5a983dSmrg    const int minNA = 1, maxNA = 255;
65fc5a983dSmrg    const int minNB = 1, maxNB = 31;
66fc5a983dSmrg    const int minMA = 1, maxMA = 255;
67fc5a983dSmrg    const int minMB = 1, maxMB = 31;
68fc5a983dSmrg    const int minP = 0, maxP = 6;
69fc5a983dSmrg    int lowP, highP;
70fc5a983dSmrg    float vcoB;
71fc5a983dSmrg
72fc5a983dSmrg    int na, ma, nb, mb, p;
73fc5a983dSmrg    float bestError = FLT_MAX;
74fc5a983dSmrg
75fc5a983dSmrg    *pNA = *pMA = *pNB = *pMB = *pP = 0;
76fc5a983dSmrg
77fc5a983dSmrg    if(maxVcoB < pclk + pclk / 200)
78fc5a983dSmrg        maxVcoB = pclk + pclk / 200;
79fc5a983dSmrg    if(minVcoB / (1 << maxP) > pclk)
80fc5a983dSmrg        pclk = minVcoB / (1 << maxP);
81fc5a983dSmrg
82fc5a983dSmrg    vcoB = maxVcoB - maxVcoB / 200;
83fc5a983dSmrg    lowP = minP;
84fc5a983dSmrg    vcoB /= 1 << (lowP + 1);
85fc5a983dSmrg
86fc5a983dSmrg    while(pclk <= vcoB && lowP < maxP)
87fc5a983dSmrg    {
88fc5a983dSmrg        vcoB /= 2;
89fc5a983dSmrg        lowP++;
90fc5a983dSmrg    }
91fc5a983dSmrg
92fc5a983dSmrg    vcoB = maxVcoB + maxVcoB / 200;
93fc5a983dSmrg    highP = lowP;
94fc5a983dSmrg    vcoB /= 1 << (highP + 1);
95fc5a983dSmrg
96fc5a983dSmrg    while(pclk <= vcoB && highP < maxP)
97fc5a983dSmrg    {
98fc5a983dSmrg        vcoB /= 2;
99fc5a983dSmrg        highP++;
100fc5a983dSmrg    }
101fc5a983dSmrg
102fc5a983dSmrg    for(p = lowP; p <= highP; p++)
103fc5a983dSmrg    {
104fc5a983dSmrg        for(ma = minMA; ma <= maxMA; ma++)
105fc5a983dSmrg        {
106fc5a983dSmrg            if(refclk / ma < minUA)
107fc5a983dSmrg                break;
108fc5a983dSmrg            else if(refclk / ma > maxUA)
109fc5a983dSmrg                continue;
110fc5a983dSmrg
111fc5a983dSmrg            for(na = minNA; na <= maxNA; na++)
112fc5a983dSmrg            {
113fc5a983dSmrg                if(refclk * na / ma < minVcoA || refclk * na / ma > maxVcoA)
114fc5a983dSmrg                    continue;
115fc5a983dSmrg
116fc5a983dSmrg                for(mb = minMB; mb <= maxMB; mb++)
117fc5a983dSmrg                {
118fc5a983dSmrg                    if(refclk * na / ma / mb < minUB)
119fc5a983dSmrg                        break;
120fc5a983dSmrg                    else if(refclk * na / ma / mb > maxUB)
121fc5a983dSmrg                        continue;
122fc5a983dSmrg
123fc5a983dSmrg                    nb = rint(pclk * (1 << p) * (ma / (float)na) * mb / refclk);
124fc5a983dSmrg
125fc5a983dSmrg                    if(nb > maxNB)
126fc5a983dSmrg                        break;
127fc5a983dSmrg                    else if(nb < minNB)
128fc5a983dSmrg                        continue;
129fc5a983dSmrg                    else
130fc5a983dSmrg                    {
131fc5a983dSmrg                        float freq = refclk * (na / (float)ma) * (nb / (float)mb) / (1 << p);
132fc5a983dSmrg                        float error = fabsf(pclk - freq);
133fc5a983dSmrg                        if(error < bestError) {
134fc5a983dSmrg                            *pNA = na;
135fc5a983dSmrg                            *pMA = ma;
136fc5a983dSmrg                            *pNB = nb;
137fc5a983dSmrg                            *pMB = mb;
138fc5a983dSmrg                            *pP = p;
139fc5a983dSmrg                            bestError = error;
140fc5a983dSmrg                        }
141fc5a983dSmrg                    }
142fc5a983dSmrg                }
143fc5a983dSmrg            }
144fc5a983dSmrg        }
145fc5a983dSmrg    }
146fc5a983dSmrg}
147fc5a983dSmrg
148fc5a983dSmrgstatic void
149fc5a983dSmrgG80CrtcSetPClk(xf86CrtcPtr crtc)
150fc5a983dSmrg{
151fc5a983dSmrg    G80Ptr pNv = G80PTR(crtc->scrn);
152fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
153fc5a983dSmrg    xf86CrtcConfigPtr xf86_config = XF86_CRTC_CONFIG_PTR(crtc->scrn);
154fc5a983dSmrg    const int headOff = 0x800 * pPriv->head;
155fc5a983dSmrg    int lo_n, lo_m, hi_n, hi_m, p, i;
156fc5a983dSmrg    CARD32 lo = pNv->reg[(0x00614104+headOff)/4];
157fc5a983dSmrg    CARD32 hi = pNv->reg[(0x00614108+headOff)/4];
158fc5a983dSmrg
159fc5a983dSmrg    pNv->reg[(0x00614100+headOff)/4] = 0x10000610;
160fc5a983dSmrg    lo &= 0xff00ff00;
161fc5a983dSmrg    hi &= 0x8000ff00;
162fc5a983dSmrg
163fc5a983dSmrg    G80CalcPLL(pPriv->pclk, &lo_n, &lo_m, &hi_n, &hi_m, &p);
164fc5a983dSmrg
165fc5a983dSmrg    lo |= (lo_m << 16) | lo_n;
166fc5a983dSmrg    hi |= (p << 28) | (hi_m << 16) | hi_n;
167fc5a983dSmrg    pNv->reg[(0x00614104+headOff)/4] = lo;
168fc5a983dSmrg    pNv->reg[(0x00614108+headOff)/4] = hi;
169fc5a983dSmrg    pNv->reg[(0x00614200+headOff)/4] = 0;
170fc5a983dSmrg
171fc5a983dSmrg    for(i = 0; i < xf86_config->num_output; i++) {
172fc5a983dSmrg        xf86OutputPtr output = xf86_config->output[i];
173fc5a983dSmrg
174fc5a983dSmrg        if(output->crtc != crtc)
175fc5a983dSmrg            continue;
176fc5a983dSmrg        G80OutputSetPClk(output, pPriv->pclk);
177fc5a983dSmrg    }
178fc5a983dSmrg}
179fc5a983dSmrg
180fc5a983dSmrgvoid
181fc5a983dSmrgG80DispCommand(ScrnInfoPtr pScrn, CARD32 addr, CARD32 data)
182fc5a983dSmrg{
183fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
184fc5a983dSmrg
185fc5a983dSmrg    pNv->reg[0x00610304/4] = data;
186fc5a983dSmrg    pNv->reg[0x00610300/4] = addr | 0x80010001;
187fc5a983dSmrg
188fc5a983dSmrg    while(pNv->reg[0x00610300/4] & 0x80000000) {
189fc5a983dSmrg        const int super = ffs((pNv->reg[0x00610024/4] >> 4) & 7);
190fc5a983dSmrg
191fc5a983dSmrg        if(super) {
192fc5a983dSmrg            if(super == 2) {
193fc5a983dSmrg                xf86CrtcConfigPtr xf86_config = XF86_CRTC_CONFIG_PTR(pScrn);
194fc5a983dSmrg                int i;
195fc5a983dSmrg
196fc5a983dSmrg                for(i = 0; i < xf86_config->num_crtc; i++)
197fc5a983dSmrg                {
198fc5a983dSmrg                    xf86CrtcPtr crtc = xf86_config->crtc[i];
199f3561b8bSmrg                    const int headOff = 0x800 * G80CrtcGetHead(crtc);
200fc5a983dSmrg
201f3561b8bSmrg                    if((pNv->reg[(0x00614200+headOff)/4] & 0xc0) == 0x80)
202fc5a983dSmrg                        G80CrtcSetPClk(crtc);
203fc5a983dSmrg                }
204fc5a983dSmrg            }
205fc5a983dSmrg
206fc5a983dSmrg            pNv->reg[0x00610024/4] = 8 << super;
207fc5a983dSmrg            pNv->reg[0x00610030/4] = 0x80000000;
208fc5a983dSmrg        }
209fc5a983dSmrg    }
210fc5a983dSmrg}
211fc5a983dSmrg
212fc5a983dSmrgHead
213fc5a983dSmrgG80CrtcGetHead(xf86CrtcPtr crtc)
214fc5a983dSmrg{
215fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
216fc5a983dSmrg    return pPriv->head;
217fc5a983dSmrg}
218fc5a983dSmrg
219fc5a983dSmrgBool
220fc5a983dSmrgG80DispPreInit(ScrnInfoPtr pScrn)
221fc5a983dSmrg{
222fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
223fc5a983dSmrg
224fc5a983dSmrg    pNv->reg[0x00610184/4] = pNv->reg[0x00614004/4];
225fc5a983dSmrg    pNv->reg[0x00610190/4] = pNv->reg[0x00616100/4];
226fc5a983dSmrg    pNv->reg[0x006101a0/4] = pNv->reg[0x00616900/4];
227fc5a983dSmrg    pNv->reg[0x00610194/4] = pNv->reg[0x00616104/4];
228fc5a983dSmrg    pNv->reg[0x006101a4/4] = pNv->reg[0x00616904/4];
229fc5a983dSmrg    pNv->reg[0x00610198/4] = pNv->reg[0x00616108/4];
230fc5a983dSmrg    pNv->reg[0x006101a8/4] = pNv->reg[0x00616908/4];
231fc5a983dSmrg    pNv->reg[0x0061019C/4] = pNv->reg[0x0061610C/4];
232fc5a983dSmrg    pNv->reg[0x006101ac/4] = pNv->reg[0x0061690c/4];
233fc5a983dSmrg    pNv->reg[0x006101D0/4] = pNv->reg[0x0061A000/4];
234fc5a983dSmrg    pNv->reg[0x006101D4/4] = pNv->reg[0x0061A800/4];
235fc5a983dSmrg    pNv->reg[0x006101D8/4] = pNv->reg[0x0061B000/4];
236fc5a983dSmrg    pNv->reg[0x006101E0/4] = pNv->reg[0x0061C000/4];
237fc5a983dSmrg    pNv->reg[0x006101E4/4] = pNv->reg[0x0061C800/4];
238fc5a983dSmrg    pNv->reg[0x0061A004/4] = 0x80550000;
239fc5a983dSmrg    pNv->reg[0x0061A010/4] = 0x00000001;
240fc5a983dSmrg    pNv->reg[0x0061A804/4] = 0x80550000;
241fc5a983dSmrg    pNv->reg[0x0061A810/4] = 0x00000001;
242fc5a983dSmrg    pNv->reg[0x0061B004/4] = 0x80550000;
243fc5a983dSmrg    pNv->reg[0x0061B010/4] = 0x00000001;
244fc5a983dSmrg
245fc5a983dSmrg    return TRUE;
246fc5a983dSmrg}
247fc5a983dSmrg
248fc5a983dSmrgBool
249fc5a983dSmrgG80DispInit(ScrnInfoPtr pScrn)
250fc5a983dSmrg{
251fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
252fc5a983dSmrg    CARD32 val;
253fc5a983dSmrg
254fc5a983dSmrg    if(pNv->reg[0x00610024/4] & 0x100) {
255fc5a983dSmrg        pNv->reg[0x00610024/4] = 0x100;
256fc5a983dSmrg        pNv->reg[0x006194E8/4] &= ~1;
257fc5a983dSmrg        while(pNv->reg[0x006194E8/4] & 2);
258fc5a983dSmrg    }
259fc5a983dSmrg
260fc5a983dSmrg    pNv->reg[0x00610200/4] = 0x2b00;
261fc5a983dSmrg    do {
262fc5a983dSmrg        val = pNv->reg[0x00610200/4];
263fc5a983dSmrg
264fc5a983dSmrg        if ((val & 0x9f0000) == 0x20000)
265fc5a983dSmrg            pNv->reg[0x00610200/4] = val | 0x800000;
266fc5a983dSmrg
267fc5a983dSmrg        if ((val & 0x3f0000) == 0x30000)
268fc5a983dSmrg            pNv->reg[0x00610200/4] = val | 0x200000;
269fc5a983dSmrg    } while ((val & 0x1e0000) != 0);
270fc5a983dSmrg    pNv->reg[0x00610300/4] = 1;
271fc5a983dSmrg    pNv->reg[0x00610200/4] = 0x1000b03;
272fc5a983dSmrg    while(!(pNv->reg[0x00610200/4] & 0x40000000));
273fc5a983dSmrg
274fc5a983dSmrg    C(0x00000084, 0);
275fc5a983dSmrg    C(0x00000088, 0);
276fc5a983dSmrg    C(0x00000874, 0);
277fc5a983dSmrg    C(0x00000800, 0);
278fc5a983dSmrg    C(0x00000810, 0);
279fc5a983dSmrg    C(0x0000082C, 0);
280fc5a983dSmrg
281fc5a983dSmrg    return TRUE;
282fc5a983dSmrg}
283fc5a983dSmrg
284fc5a983dSmrgvoid
285fc5a983dSmrgG80DispShutdown(ScrnInfoPtr pScrn)
286fc5a983dSmrg{
287fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
288fc5a983dSmrg    xf86CrtcConfigPtr xf86_config = XF86_CRTC_CONFIG_PTR(pScrn);
289fc5a983dSmrg    int i;
290fc5a983dSmrg
291fc5a983dSmrg    for(i = 0; i < xf86_config->num_crtc; i++) {
292fc5a983dSmrg        xf86CrtcPtr crtc = xf86_config->crtc[i];
293fc5a983dSmrg
294fc5a983dSmrg        G80CrtcBlankScreen(crtc, TRUE);
295fc5a983dSmrg    }
296fc5a983dSmrg
297fc5a983dSmrg    C(0x00000080, 0);
298fc5a983dSmrg
299fc5a983dSmrg    for(i = 0; i < xf86_config->num_crtc; i++) {
300fc5a983dSmrg        xf86CrtcPtr crtc = xf86_config->crtc[i];
301fc5a983dSmrg
302fc5a983dSmrg        if(crtc->enabled) {
303fc5a983dSmrg            const CARD32 mask = 4 << G80CrtcGetHead(crtc);
304fc5a983dSmrg
305fc5a983dSmrg            pNv->reg[0x00610024/4] = mask;
306fc5a983dSmrg            while(!(pNv->reg[0x00610024/4] & mask));
307fc5a983dSmrg        }
308fc5a983dSmrg    }
309fc5a983dSmrg
310fc5a983dSmrg    pNv->reg[0x00610200/4] = 0;
311fc5a983dSmrg    pNv->reg[0x00610300/4] = 0;
312fc5a983dSmrg    while((pNv->reg[0x00610200/4] & 0x1e0000) != 0);
313fc5a983dSmrg    while((pNv->reg[0x61C030/4] & 0x10000000));
314fc5a983dSmrg    while((pNv->reg[0x61C830/4] & 0x10000000));
315fc5a983dSmrg}
316fc5a983dSmrg
317fc5a983dSmrgvoid
318fc5a983dSmrgG80CrtcDoModeFixup(DisplayModePtr dst, const DisplayModePtr src)
319fc5a983dSmrg{
320fc5a983dSmrg    /* Magic mode timing fudge factor */
321fc5a983dSmrg    const int fudge = ((src->Flags & V_INTERLACE) && (src->Flags & V_DBLSCAN)) ? 2 : 1;
322fc5a983dSmrg    const int interlaceDiv = (src->Flags & V_INTERLACE) ? 2 : 1;
323fc5a983dSmrg
324fc5a983dSmrg    /* Stash the src timings in the Crtc fields in dst */
325fc5a983dSmrg    dst->CrtcHBlankStart = src->CrtcVTotal << 16 | src->CrtcHTotal;
326fc5a983dSmrg    dst->CrtcHSyncEnd = ((src->CrtcVSyncEnd - src->CrtcVSyncStart) / interlaceDiv - 1) << 16 |
327fc5a983dSmrg        (src->CrtcHSyncEnd - src->CrtcHSyncStart - 1);
328fc5a983dSmrg    dst->CrtcHBlankEnd = ((src->CrtcVBlankEnd - src->CrtcVSyncStart) / interlaceDiv - fudge) << 16 |
329fc5a983dSmrg        (src->CrtcHBlankEnd - src->CrtcHSyncStart - 1);
330fc5a983dSmrg    dst->CrtcHTotal = ((src->CrtcVTotal - src->CrtcVSyncStart + src->CrtcVBlankStart) / interlaceDiv - fudge) << 16 |
331fc5a983dSmrg        (src->CrtcHTotal - src->CrtcHSyncStart + src->CrtcHBlankStart - 1);
332fc5a983dSmrg    dst->CrtcHSkew = ((src->CrtcVTotal + src->CrtcVBlankEnd - src->CrtcVSyncStart) / 2 - 2) << 16 |
333fc5a983dSmrg        ((2*src->CrtcVTotal - src->CrtcVSyncStart + src->CrtcVBlankStart) / 2 - 2);
334fc5a983dSmrg}
335fc5a983dSmrg
336fc5a983dSmrgstatic Bool
337fc5a983dSmrgG80CrtcModeFixup(xf86CrtcPtr crtc,
338fc5a983dSmrg                 DisplayModePtr mode, DisplayModePtr adjusted_mode)
339fc5a983dSmrg{
340fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
341fc5a983dSmrg
342fc5a983dSmrg    if(pPriv->skipModeFixup)
343fc5a983dSmrg        return TRUE;
344fc5a983dSmrg
345fc5a983dSmrg    G80CrtcDoModeFixup(adjusted_mode, mode);
346fc5a983dSmrg    return TRUE;
347fc5a983dSmrg}
348fc5a983dSmrg
349fc5a983dSmrgstatic void
350fc5a983dSmrgG80CrtcModeSet(xf86CrtcPtr crtc, DisplayModePtr mode,
351fc5a983dSmrg               DisplayModePtr adjusted_mode, int x, int y)
352fc5a983dSmrg{
353fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
354fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
355fc5a983dSmrg    const int HDisplay = adjusted_mode->HDisplay, VDisplay = adjusted_mode->VDisplay;
356fc5a983dSmrg    const int headOff = 0x400 * G80CrtcGetHead(crtc);
357fc5a983dSmrg
358fc5a983dSmrg    pPriv->pclk = adjusted_mode->Clock;
359fc5a983dSmrg
360fc5a983dSmrg    C(0x00000804 + headOff, adjusted_mode->Clock | 0x800000);
361fc5a983dSmrg    C(0x00000808 + headOff, (adjusted_mode->Flags & V_INTERLACE) ? 2 : 0);
362fc5a983dSmrg    C(0x00000810 + headOff, 0);
363fc5a983dSmrg    C(0x0000082C + headOff, 0);
364fc5a983dSmrg    C(0x00000814 + headOff, adjusted_mode->CrtcHBlankStart);
365fc5a983dSmrg    C(0x00000818 + headOff, adjusted_mode->CrtcHSyncEnd);
366fc5a983dSmrg    C(0x0000081C + headOff, adjusted_mode->CrtcHBlankEnd);
367fc5a983dSmrg    C(0x00000820 + headOff, adjusted_mode->CrtcHTotal);
368fc5a983dSmrg    if(adjusted_mode->Flags & V_INTERLACE)
369fc5a983dSmrg        C(0x00000824 + headOff, adjusted_mode->CrtcHSkew);
370fc5a983dSmrg    C(0x00000868 + headOff, pScrn->virtualY << 16 | pScrn->virtualX);
371fc5a983dSmrg    C(0x0000086C + headOff, pScrn->displayWidth * (pScrn->bitsPerPixel / 8) | 0x100000);
372fc5a983dSmrg    switch(pScrn->depth) {
373fc5a983dSmrg        case  8: C(0x00000870 + headOff, 0x1E00); break;
374fc5a983dSmrg        case 15: C(0x00000870 + headOff, 0xE900); break;
375fc5a983dSmrg        case 16: C(0x00000870 + headOff, 0xE800); break;
376fc5a983dSmrg        case 24: C(0x00000870 + headOff, 0xCF00); break;
377fc5a983dSmrg    }
378fc5a983dSmrg    G80CrtcSetDither(crtc, pPriv->dither, FALSE);
379fc5a983dSmrg    C(0x000008A8 + headOff, 0x40000);
380fc5a983dSmrg    C(0x000008C0 + headOff, y << 16 | x);
381fc5a983dSmrg    C(0x000008C8 + headOff, VDisplay << 16 | HDisplay);
382fc5a983dSmrg    C(0x000008D4 + headOff, 0);
383fc5a983dSmrg
384fc5a983dSmrg    G80CrtcBlankScreen(crtc, FALSE);
385fc5a983dSmrg}
386fc5a983dSmrg
387fc5a983dSmrgvoid
388fc5a983dSmrgG80CrtcBlankScreen(xf86CrtcPtr crtc, Bool blank)
389fc5a983dSmrg{
390fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
391fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
392fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
393fc5a983dSmrg    const int headOff = 0x400 * pPriv->head;
394fc5a983dSmrg
395fc5a983dSmrg    if(blank) {
396fc5a983dSmrg        G80CrtcShowHideCursor(crtc, FALSE, FALSE);
397fc5a983dSmrg
398fc5a983dSmrg        C(0x00000840 + headOff, 0);
399fc5a983dSmrg        C(0x00000844 + headOff, 0);
400fc5a983dSmrg        if(pNv->architecture != 0x50)
401fc5a983dSmrg            C(0x0000085C + headOff, 0);
402fc5a983dSmrg        C(0x00000874 + headOff, 0);
403fc5a983dSmrg        if(pNv->architecture != 0x50)
404fc5a983dSmrg            C(0x0000089C + headOff, 0);
405fc5a983dSmrg    } else {
406fc5a983dSmrg        C(0x00000860 + headOff, 0);
407fc5a983dSmrg        C(0x00000864 + headOff, 0);
408fc5a983dSmrg        pNv->reg[0x00610380/4] = 0;
409fc5a983dSmrg        pNv->reg[0x00610384/4] = pNv->videoRam * 1024 - 1;
410fc5a983dSmrg        pNv->reg[0x00610388/4] = 0x150000;
411fc5a983dSmrg        pNv->reg[0x0061038C/4] = 0;
412fc5a983dSmrg        C(0x00000884 + headOff, (pNv->videoRam << 2) - 0x40);
413fc5a983dSmrg        if(pNv->architecture != 0x50)
414fc5a983dSmrg            C(0x0000089C + headOff, 1);
415fc5a983dSmrg        if(pPriv->cursorVisible)
416fc5a983dSmrg            G80CrtcShowHideCursor(crtc, TRUE, FALSE);
417fc5a983dSmrg        C(0x00000840 + headOff, pScrn->depth == 8 ? 0x80000000 : 0xc0000000);
418fc5a983dSmrg        C(0x00000844 + headOff, (pNv->videoRam * 1024 - 0x5000) >> 8);
419fc5a983dSmrg        if(pNv->architecture != 0x50)
420fc5a983dSmrg            C(0x0000085C + headOff, 1);
421fc5a983dSmrg        C(0x00000874 + headOff, 1);
422fc5a983dSmrg    }
423fc5a983dSmrg}
424fc5a983dSmrg
425fc5a983dSmrgstatic void
426fc5a983dSmrgG80CrtcDPMSSet(xf86CrtcPtr crtc, int mode)
427fc5a983dSmrg{
428fc5a983dSmrg}
429fc5a983dSmrg
430fc5a983dSmrg/******************************** Cursor stuff ********************************/
431fc5a983dSmrgstatic void G80CrtcShowHideCursor(xf86CrtcPtr crtc, Bool show, Bool update)
432fc5a983dSmrg{
433fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
434fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
435fc5a983dSmrg    const int headOff = 0x400 * G80CrtcGetHead(crtc);
436fc5a983dSmrg
437fc5a983dSmrg    C(0x00000880 + headOff, show ? 0x85000000 : 0x5000000);
438fc5a983dSmrg    if(update) {
439fc5a983dSmrg        pPriv->cursorVisible = show;
440fc5a983dSmrg        C(0x00000080, 0);
441fc5a983dSmrg    }
442fc5a983dSmrg}
443fc5a983dSmrg
444fc5a983dSmrgstatic void G80CrtcShowCursor(xf86CrtcPtr crtc)
445fc5a983dSmrg{
446fc5a983dSmrg    G80CrtcShowHideCursor(crtc, TRUE, TRUE);
447fc5a983dSmrg}
448fc5a983dSmrg
449fc5a983dSmrgstatic void G80CrtcHideCursor(xf86CrtcPtr crtc)
450fc5a983dSmrg{
451fc5a983dSmrg    G80CrtcShowHideCursor(crtc, FALSE, TRUE);
452fc5a983dSmrg}
453fc5a983dSmrg
454fc5a983dSmrg/******************************** CRTC stuff ********************************/
455fc5a983dSmrg
456fc5a983dSmrgstatic Bool
457fc5a983dSmrgG80CrtcLock(xf86CrtcPtr crtc)
458fc5a983dSmrg{
459fc5a983dSmrg    return FALSE;
460fc5a983dSmrg}
461fc5a983dSmrg
462fc5a983dSmrgstatic void
463fc5a983dSmrgG80CrtcPrepare(xf86CrtcPtr crtc)
464fc5a983dSmrg{
465fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
466fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
467fc5a983dSmrg    xf86CrtcConfigPtr xf86_config = XF86_CRTC_CONFIG_PTR(pScrn);
468fc5a983dSmrg    int i;
469fc5a983dSmrg
470fc5a983dSmrg    for(i = 0; i < xf86_config->num_output; i++) {
471fc5a983dSmrg        xf86OutputPtr output = xf86_config->output[i];
472fc5a983dSmrg
473fc5a983dSmrg        if(!output->crtc)
474fc5a983dSmrg            output->funcs->mode_set(output, NULL, NULL);
475fc5a983dSmrg    }
476fc5a983dSmrg
477fc5a983dSmrg    pPriv->skipModeFixup = FALSE;
478fc5a983dSmrg}
479fc5a983dSmrg
480fc5a983dSmrgvoid
481fc5a983dSmrgG80CrtcSkipModeFixup(xf86CrtcPtr crtc)
482fc5a983dSmrg{
483fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
484fc5a983dSmrg    pPriv->skipModeFixup = TRUE;
485fc5a983dSmrg}
486fc5a983dSmrg
487fc5a983dSmrgvoid
488fc5a983dSmrgG80CrtcSetDither(xf86CrtcPtr crtc, Bool dither, Bool update)
489fc5a983dSmrg{
490fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
491fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
492fc5a983dSmrg    const int headOff = 0x400 * G80CrtcGetHead(crtc);
493fc5a983dSmrg
494fc5a983dSmrg    pPriv->dither = dither;
495fc5a983dSmrg
496fc5a983dSmrg    C(0x000008A0 + headOff, dither ? 0x11 : 0);
497fc5a983dSmrg    if(update) C(0x00000080, 0);
498fc5a983dSmrg}
499fc5a983dSmrg
500fc5a983dSmrgstatic void ComputeAspectScale(DisplayModePtr mode, int *outX, int *outY)
501fc5a983dSmrg{
502fc5a983dSmrg    float scaleX, scaleY, scale;
503fc5a983dSmrg
504fc5a983dSmrg    scaleX = mode->CrtcHDisplay / (float)mode->HDisplay;
505fc5a983dSmrg    scaleY = mode->CrtcVDisplay / (float)mode->VDisplay;
506fc5a983dSmrg
507fc5a983dSmrg    if(scaleX > scaleY)
508fc5a983dSmrg        scale = scaleY;
509fc5a983dSmrg    else
510fc5a983dSmrg        scale = scaleX;
511fc5a983dSmrg
512fc5a983dSmrg    *outX = mode->HDisplay * scale;
513fc5a983dSmrg    *outY = mode->VDisplay * scale;
514fc5a983dSmrg}
515fc5a983dSmrg
516fc5a983dSmrgvoid G80CrtcSetScale(xf86CrtcPtr crtc, DisplayModePtr mode,
517fc5a983dSmrg                     enum G80ScaleMode scale)
518fc5a983dSmrg{
519fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
520fc5a983dSmrg    G80CrtcPrivPtr pPriv = crtc->driver_private;
521fc5a983dSmrg    const int headOff = 0x400 * pPriv->head;
522fc5a983dSmrg    int outX, outY;
523fc5a983dSmrg
524fc5a983dSmrg    switch(scale) {
525fc5a983dSmrg        default:
526fc5a983dSmrg        case G80_SCALE_ASPECT:
527fc5a983dSmrg            ComputeAspectScale(mode, &outX, &outY);
528fc5a983dSmrg            break;
529fc5a983dSmrg
530fc5a983dSmrg        case G80_SCALE_OFF:
531fc5a983dSmrg        case G80_SCALE_FILL:
532fc5a983dSmrg            outX = mode->CrtcHDisplay;
533fc5a983dSmrg            outY = mode->CrtcVDisplay;
534fc5a983dSmrg            break;
535fc5a983dSmrg
536fc5a983dSmrg        case G80_SCALE_CENTER:
537fc5a983dSmrg            outX = mode->HDisplay;
538fc5a983dSmrg            outY = mode->VDisplay;
539fc5a983dSmrg            break;
540fc5a983dSmrg    }
541fc5a983dSmrg
542fc5a983dSmrg    if((mode->Flags & V_DBLSCAN) || (mode->Flags & V_INTERLACE) ||
543fc5a983dSmrg       mode->HDisplay != outX || mode->VDisplay != outY) {
544fc5a983dSmrg        C(0x000008A4 + headOff, 9);
545fc5a983dSmrg    } else {
546fc5a983dSmrg        C(0x000008A4 + headOff, 0);
547fc5a983dSmrg    }
548fc5a983dSmrg    C(0x000008D8 + headOff, outY << 16 | outX);
549fc5a983dSmrg    C(0x000008DC + headOff, outY << 16 | outX);
550fc5a983dSmrg}
551fc5a983dSmrg
552fc5a983dSmrgstatic void
553fc5a983dSmrgG80CrtcCommit(xf86CrtcPtr crtc)
554fc5a983dSmrg{
555fc5a983dSmrg    ScrnInfoPtr pScrn = crtc->scrn;
556fc5a983dSmrg    xf86CrtcConfigPtr xf86_config = XF86_CRTC_CONFIG_PTR(crtc->scrn);
557fc5a983dSmrg    int i, crtc_mask = 0;
558fc5a983dSmrg
559fc5a983dSmrg    /* If any heads are unused, blank them */
560fc5a983dSmrg    for(i = 0; i < xf86_config->num_output; i++) {
561fc5a983dSmrg        xf86OutputPtr output = xf86_config->output[i];
562fc5a983dSmrg
563fc5a983dSmrg        if(output->crtc)
564fc5a983dSmrg            /* XXXagp: This assumes that xf86_config->crtc[i] is HEADi */
565fc5a983dSmrg            crtc_mask |= 1 << G80CrtcGetHead(output->crtc);
566fc5a983dSmrg    }
567fc5a983dSmrg
568fc5a983dSmrg    for(i = 0; i < xf86_config->num_crtc; i++)
569fc5a983dSmrg        if(!((1 << i) & crtc_mask))
570fc5a983dSmrg            G80CrtcBlankScreen(xf86_config->crtc[i], TRUE);
571fc5a983dSmrg
572fc5a983dSmrg    C(0x00000080, 0);
573fc5a983dSmrg}
574fc5a983dSmrg
575fc5a983dSmrgstatic const xf86CrtcFuncsRec g80_crtc_funcs = {
576fc5a983dSmrg    .dpms = G80CrtcDPMSSet,
577fc5a983dSmrg    .save = NULL,
578fc5a983dSmrg    .restore = NULL,
579fc5a983dSmrg    .lock = G80CrtcLock,
580fc5a983dSmrg    .unlock = NULL,
581fc5a983dSmrg    .mode_fixup = G80CrtcModeFixup,
582fc5a983dSmrg    .prepare = G80CrtcPrepare,
583fc5a983dSmrg    .mode_set = G80CrtcModeSet,
584fc5a983dSmrg    // .gamma_set = G80DispGammaSet,
585fc5a983dSmrg    .commit = G80CrtcCommit,
586fc5a983dSmrg    .shadow_create = NULL,
587fc5a983dSmrg    .shadow_destroy = NULL,
588fc5a983dSmrg    .set_cursor_position = G80SetCursorPosition,
589fc5a983dSmrg    .show_cursor = G80CrtcShowCursor,
590fc5a983dSmrg    .hide_cursor = G80CrtcHideCursor,
591fc5a983dSmrg    .load_cursor_argb = G80LoadCursorARGB,
592fc5a983dSmrg    .destroy = NULL,
593fc5a983dSmrg};
594fc5a983dSmrg
595fc5a983dSmrgvoid
596fc5a983dSmrgG80DispCreateCrtcs(ScrnInfoPtr pScrn)
597fc5a983dSmrg{
598fc5a983dSmrg    G80Ptr pNv = G80PTR(pScrn);
599fc5a983dSmrg    Head head;
600fc5a983dSmrg    xf86CrtcPtr crtc;
601fc5a983dSmrg    G80CrtcPrivPtr g80_crtc;
602fc5a983dSmrg
603fc5a983dSmrg    /* Create a "crtc" object for each head */
604fc5a983dSmrg    for(head = HEAD0; head <= HEAD1; head++) {
605fc5a983dSmrg        crtc = xf86CrtcCreate(pScrn, &g80_crtc_funcs);
606fc5a983dSmrg        if(!crtc) return;
607fc5a983dSmrg
608fc5a983dSmrg        g80_crtc = xnfcalloc(sizeof(*g80_crtc), 1);
609fc5a983dSmrg        g80_crtc->head = head;
610fc5a983dSmrg        g80_crtc->dither = pNv->Dither;
611fc5a983dSmrg        crtc->driver_private = g80_crtc;
612fc5a983dSmrg    }
613fc5a983dSmrg}
614