Rudolf Cornelissen 12/2003-9/2004
*/
#define MODULE_BIT 0x00001000
#include "std.h"
static status_t nv10_nv20_dac2_pix_pll_find(
display_mode target,float * calc_pclk,uint8 * m_result,uint8 * n_result,uint8 * p_result, uint8 test);
bool eng_dac2_crt_connected()
{
uint32 output, dac;
bool present;
* NV11 can't do this: It will report DAC1 status instead because it HAS no
* actual secondary DAC function. */
output = DAC2R(OUTPUT);
dac = DAC2R(TSTCTRL);
DAC2W(TSTCTRL, (DAC2R(TSTCTRL) & 0xfffeffff));
DAC2W(OUTPUT, (output & 0x0000feee));
snooze(1000);
DAC2W(OUTPUT, (DAC2R(OUTPUT) | 0x00000001));
* (NOTE: testsignal function block resides in DAC1 only (!)) */
DACW(TSTDATA, ((0x2 << 30) | (0x140 << 20) | (0x140 << 10) | (0x140 << 0)));
* (NOTE: testsignal function block resides in DAC1 only (!)) */
DACW(TSTCTRL, (DACR(TSTCTRL) | 0x00001000));
snooze(1000);
if (DAC2R(TSTCTRL) & 0x10000000)
{
present = true;
LOG(4,("DAC2: CRT detected on connector #2\n"));
}
else
{
present = false;
LOG(4,("DAC2: no CRT detected on connector #2\n"));
}
* (NOTE: testsignal function block resides in DAC1 only (!)) */
DACW(TSTCTRL, (DACR(TSTCTRL) & 0xffffefff));
DAC2W(OUTPUT, output);
DAC2W(TSTCTRL, dac);
return present;
}
status_t eng_dac2_mode(int mode,float brightness)
{
uint8 *r,*g,*b;
int i, ri;
r = si->color_data;
g = r + 256;
b = g + 256;
LOG(4,("DAC2: Setting screen mode %d brightness %f\n", mode, brightness));
for (i = 0; i < 256; i++)
{
ri = i * brightness;
if (ri > 255) ri = 255;
b[i] = g[i] = r[i] = ri;
}
if (eng_dac2_palette(r,g,b) != B_OK) return B_ERROR;
ENG_REG8(RG8_PAL2MASK) = 0xff;
LOG(2,("DAC2: PAL pixrdmsk readback $%02x\n", ENG_REG8(RG8_PAL2MASK)));
return B_OK;
}
status_t eng_dac2_palette(uint8 r[256],uint8 g[256],uint8 b[256])
{
int i;
LOG(4,("DAC2: setting palette\n"));
ENG_REG8(RG8_PAL2INDW) = 0x00;
for (i = 0; i < 256; i++)
{
ENG_REG8(RG8_PAL2DATA) = r[i];
ENG_REG8(RG8_PAL2DATA) = g[i];
ENG_REG8(RG8_PAL2DATA) = b[i];
}
if (ENG_REG8(RG8_PAL2INDW) != 0x00)
{
LOG(8,("DAC2: PAL write index incorrect after programming\n"));
return B_ERROR;
}
if (1)
{
uint8 R, G, B;
ENG_REG8(RG8_PAL2INDR) = 0x00;
for (i = 0; i < 256; i++)
{
R = ENG_REG8(RG8_PAL2DATA);
G = ENG_REG8(RG8_PAL2DATA);
B = ENG_REG8(RG8_PAL2DATA);
if ((r[i] != R) || (g[i] != G) || (b[i] != B))
LOG(1,("DAC2 palette %d: w %x %x %x, r %x %x %x\n", i, r[i], g[i], b[i], R, G, B));
}
}
return B_OK;
}
status_t eng_dac2_set_pix_pll(display_mode target)
{
uint8 m=0,n=0,p=0;
float pix_setting, req_pclk;
status_t result;
* and there's no overlapping settings range that makes them all work.
* note:
* this assumes the cards BIOS correctly programmed the panel (is likely) */
if (si->ps.tmds2_active && !si->settings.pgm_panel)
{
LOG(4,("DAC2: Not programming DFP refresh (specified in skel.settings)\n"));
return B_OK;
}
* The pixelclock drives the flatpanel modeline, not the CRTC modeline. */
if (si->ps.tmds2_active)
{
LOG(4,("DAC2: Fixing DFP refresh to 60Hz!\n"));
target.timing.pixel_clock = si->ps.p2_timing.pixel_clock;
}
req_pclk = (target.timing.pixel_clock)/1000.0;
LOG(4,("DAC2: Setting PIX PLL for pixelclock %f\n", req_pclk));
result = eng_dac2_pix_pll_find(target,&pix_setting,&m,&n,&p, 1);
if (result != B_OK)
{
return result;
}
DAC2W(PIXPLLC, ((p << 16) | (n << 8) | m));
if (si->ps.ext_pll) DAC2W(PIXPLLC2, 0x80000401);
{
time++;
snooze(1);
}
if (time > 2000)
LOG(2,("DAC: PIX PLL frequency not locked!\n"));
else
LOG(2,("DAC: PIX PLL frequency locked\n"));
DXIW(PIXCLKCTRL,DXIR(PIXCLKCTRL)&0x0B); //enable the PIXPLL
*/
snooze(1000);
LOG(2,("DAC2: PIX PLL frequency should be locked now...\n"));
return B_OK;
}
status_t eng_dac2_pix_pll_find
(display_mode target,float * calc_pclk,uint8 * m_result,uint8 * n_result,uint8 * p_result, uint8 test)
{
switch (si->ps.card_type) {
default: return nv10_nv20_dac2_pix_pll_find(target, calc_pclk, m_result, n_result, p_result, test);
}
return B_ERROR;
}
static status_t nv10_nv20_dac2_pix_pll_find(
display_mode target,float * calc_pclk,uint8 * m_result,uint8 * n_result,uint8 * p_result, uint8 test)
{
int m = 0, n = 0, p = 0;
float error, error_best = 999999999;
int best[3];
float f_vco, max_pclk;
float req_pclk = target.timing.pixel_clock/1000.0;
* current card (see G100, G200 and G400 specs). */
{
case G100:
LOG(4,("DAC: G100 restrictions apply\n"));
m_max = 7;
break;
case G200:
LOG(4,("DAC: G200 restrictions apply\n"));
m_max = 7;
break;
default:
LOG(4,("DAC: G400/G400MAX restrictions apply\n"));
m_max = 32;
break;
}
*/
LOG(4,("DAC2: NV10/NV20 restrictions apply\n"));
switch (target.space)
{
case B_CMAP8:
max_pclk = si->ps.max_dac2_clock_8;
break;
case B_RGB15_LITTLE:
case B_RGB16_LITTLE:
max_pclk = si->ps.max_dac2_clock_16;
break;
case B_RGB24_LITTLE:
max_pclk = si->ps.max_dac2_clock_24;
break;
case B_RGB32_LITTLE:
max_pclk = si->ps.max_dac2_clock_32;
break;
default:
max_pclk = si->ps.max_dac2_clock_32;
break;
}
if ((target.flags & DUALHEAD_BITS) && (target.space == B_RGB32_LITTLE))
max_pclk = si->ps.max_dac2_clock_32dh;
if (req_pclk < (si->ps.min_video_vco / 16.0))
{
LOG(4,("DAC2: clamping pixclock: requested %fMHz, set to %fMHz\n",
req_pclk, (float)(si->ps.min_video_vco / 16.0)));
req_pclk = (si->ps.min_video_vco / 16.0);
}
if (req_pclk > max_pclk)
{
LOG(4,("DAC2: clamping pixclock: requested %fMHz, set to %fMHz\n",
req_pclk, (float)max_pclk));
req_pclk = max_pclk;
}
for (p=0x01; p < 0x20; p = p<<1)
{
f_vco = req_pclk * p;
if ((f_vco >= si->ps.min_video_vco) && (f_vco <= si->ps.max_video_vco))
{
if (si->ps.ext_pll) f_vco /= 4;
for (m = 7; m <= 14; m++)
{
if (si->ps.card_type == NV36)
{
if (((si->ps.f_ref / m) < 3.2) || ((si->ps.f_ref / m) > 6.4)) continue;
}
else
{
if (((si->ps.f_ref / m) < 1.0) || ((si->ps.f_ref / m) > 2.0)) continue;
}
n = (int)(((f_vco * m) / si->ps.f_ref) + 0.5);
if ((n < 1) || (n > 255)) continue;
if (si->ps.ext_pll)
{
error = fabs((req_pclk / 4) - (((si->ps.f_ref / m) * n) / p));
}
else
error = fabs(req_pclk - (((si->ps.f_ref / m) * n) / p));
if (error < error_best)
{
error_best = error;
best[0]=m;
best[1]=n;
best[2]=p;
}
}
}
}
m = best[0];
n = best[1];
p = best[2];
f_vco = ((si->ps.f_ref / m) * n);
if (si->ps.ext_pll) f_vco *= 4;
LOG(2,("DAC2: pix VCO frequency found %fMhz\n", f_vco));
*calc_pclk = (f_vco / p);
*m_result = m;
*n_result = n;
switch(p)
{
case 1:
p = 0x00;
break;
case 2:
p = 0x01;
break;
case 4:
p = 0x02;
break;
case 8:
p = 0x03;
break;
case 16:
p = 0x04;
break;
}
*p_result = p;
LOG(2,("DAC2: pix PLL check: requested %fMHz got %fMHz, mnp 0x%02x 0x%02x 0x%02x\n",
req_pclk, *calc_pclk, *m_result, *n_result, *p_result));
return B_OK;
}