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|
/*
* linux/drivers/video/cyber2000fb.c
*
* Copyright (C) 1998-2000 Russell King
*
* Integraphics Cyber2000 frame buffer device
*
* Based on cyberfb.c
*/
#include <linux/config.h>
#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/errno.h>
#include <linux/string.h>
#include <linux/mm.h>
#include <linux/tty.h>
#include <linux/malloc.h>
#include <linux/delay.h>
#include <linux/fb.h>
#include <linux/pci.h>
#include <linux/init.h>
#include <asm/io.h>
#include <asm/irq.h>
#include <asm/pgtable.h>
#include <asm/system.h>
#include <asm/uaccess.h>
#include <video/fbcon.h>
#include <video/fbcon-cfb8.h>
#include <video/fbcon-cfb16.h>
#include <video/fbcon-cfb24.h>
#define MMIO_SIZE 0x000c0000
/*#define CFB16_IS_CFB15*/
static char *CyberRegs;
#include "cyber2000fb.h"
static struct display global_disp;
static struct fb_info fb_info;
static struct cyber2000fb_par current_par;
static struct display_switch *dispsw;
static struct fb_var_screeninfo __initdata init_var = {};
#if defined(DEBUG) && defined(CONFIG_DEBUG_LL)
static void debug_printf(char *fmt, ...)
{
char buffer[128];
va_list ap;
va_start(ap, fmt);
vsprintf(buffer, fmt, ap);
va_end(ap);
printascii(buffer);
}
#else
#define debug_printf(x...) do { } while (0)
#endif
/* -------------------- Hardware specific routines ------------------------- */
/*
* Hardware Cyber2000 Acceleration
*/
static void cyber2000_accel_wait(void)
{
int count = 10000;
while (cyber2000_inb(CO_REG_CONTROL) & 0x80) {
if (!count--) {
debug_printf("accel_wait timed out\n");
cyber2000_outb(0, CO_REG_CONTROL);
return;
}
udelay(10);
}
}
static void
cyber2000_accel_setup(struct display *p)
{
dispsw->setup(p);
}
static void
cyber2000_accel_bmove(struct display *p, int sy, int sx, int dy, int dx,
int height, int width)
{
unsigned long src, dst;
unsigned int fh, fw;
int cmd = CO_CMD_L_PATTERN_FGCOL;
fw = fontwidth(p);
sx *= fw;
dx *= fw;
width *= fw;
width -= 1;
if (sx < dx) {
sx += width;
dx += width;
cmd |= CO_CMD_L_INC_LEFT;
}
fh = fontheight(p);
sy *= fh;
dy *= fh;
height *= fh;
height -= 1;
if (sy < dy) {
sy += height;
dy += height;
cmd |= CO_CMD_L_INC_UP;
}
src = sx + sy * p->var.xres_virtual;
dst = dx + dy * p->var.xres_virtual;
cyber2000_accel_wait();
cyber2000_outb(0x00, CO_REG_CONTROL);
cyber2000_outb(0x03, CO_REG_FORE_MIX);
cyber2000_outw(width, CO_REG_WIDTH);
if (p->var.bits_per_pixel != 24) {
cyber2000_outl(dst, CO_REG_DEST_PTR);
cyber2000_outl(src, CO_REG_SRC_PTR);
} else {
cyber2000_outl(dst * 3, CO_REG_DEST_PTR);
cyber2000_outb(dst, CO_REG_X_PHASE);
cyber2000_outl(src * 3, CO_REG_SRC_PTR);
}
cyber2000_outw(height, CO_REG_HEIGHT);
cyber2000_outw(cmd, CO_REG_CMD_L);
cyber2000_outw(0x2800, CO_REG_CMD_H);
}
static void
cyber2000_accel_clear(struct vc_data *conp, struct display *p, int sy, int sx,
int height, int width)
{
unsigned long dst;
unsigned int fw, fh;
u32 bgx = attr_bgcol_ec(p, conp);
fw = fontwidth(p);
fh = fontheight(p);
dst = sx * fw + sy * p->var.xres_virtual * fh;
width = width * fw - 1;
height = height * fh - 1;
cyber2000_accel_wait();
cyber2000_outb(0x00, CO_REG_CONTROL);
cyber2000_outb(0x03, CO_REG_FORE_MIX);
cyber2000_outw(width, CO_REG_WIDTH);
cyber2000_outw(height, CO_REG_HEIGHT);
switch (p->var.bits_per_pixel) {
case 15:
case 16:
bgx = ((u16 *)p->dispsw_data)[bgx];
case 8:
cyber2000_outl(dst, CO_REG_DEST_PTR);
break;
case 24:
cyber2000_outl(dst * 3, CO_REG_DEST_PTR);
cyber2000_outb(dst, CO_REG_X_PHASE);
bgx = ((u32 *)p->dispsw_data)[bgx];
break;
}
cyber2000_outl(bgx, CO_REG_FOREGROUND);
cyber2000_outw(CO_CMD_L_PATTERN_FGCOL, CO_REG_CMD_L);
cyber2000_outw(0x0800, CO_REG_CMD_H);
}
static void
cyber2000_accel_putc(struct vc_data *conp, struct display *p, int c, int yy, int xx)
{
cyber2000_accel_wait();
dispsw->putc(conp, p, c, yy, xx);
}
static void
cyber2000_accel_putcs(struct vc_data *conp, struct display *p,
const unsigned short *s, int count, int yy, int xx)
{
cyber2000_accel_wait();
dispsw->putcs(conp, p, s, count, yy, xx);
}
static void
cyber2000_accel_revc(struct display *p, int xx, int yy)
{
cyber2000_accel_wait();
dispsw->revc(p, xx, yy);
}
static void
cyber2000_accel_clear_margins(struct vc_data *conp, struct display *p, int bottom_only)
{
dispsw->clear_margins(conp, p, bottom_only);
}
static struct display_switch fbcon_cyber_accel = {
cyber2000_accel_setup,
cyber2000_accel_bmove,
cyber2000_accel_clear,
cyber2000_accel_putc,
cyber2000_accel_putcs,
cyber2000_accel_revc,
NULL,
NULL,
cyber2000_accel_clear_margins,
FONTWIDTH(8)|FONTWIDTH(16)
};
/*
* Palette
*/
static int
cyber2000_getcolreg(u_int regno, u_int * red, u_int * green, u_int * blue,
u_int * transp, struct fb_info *fb_info)
{
int t;
if (regno >= 256)
return 1;
t = current_par.palette[regno].red;
*red = t << 10 | t << 4 | t >> 2;
t = current_par.palette[regno].green;
*green = t << 10 | t << 4 | t >> 2;
t = current_par.palette[regno].blue;
*blue = t << 10 | t << 4 | t >> 2;
*transp = 0;
return 0;
}
/*
* Set a single color register. Return != 0 for invalid regno.
*/
static int
cyber2000_setcolreg(u_int regno, u_int red, u_int green, u_int blue,
u_int transp, struct fb_info *fb_info)
{
if (regno > 255)
return 1;
red >>= 10;
green >>= 10;
blue >>= 10;
current_par.palette[regno].red = red;
current_par.palette[regno].green = green;
current_par.palette[regno].blue = blue;
switch (fb_display[current_par.currcon].var.bits_per_pixel) {
#ifdef FBCON_HAS_CFB8
case 8:
cyber2000_outb(regno, 0x3c8);
cyber2000_outb(red, 0x3c9);
cyber2000_outb(green, 0x3c9);
cyber2000_outb(blue, 0x3c9);
break;
#endif
#ifdef FBCON_HAS_CFB16
case 16:
#ifndef CFB16_IS_CFB15
if (regno < 64) {
/* write green */
cyber2000_outb(regno << 2, 0x3c8);
cyber2000_outb(current_par.palette[regno >> 1].red, 0x3c9);
cyber2000_outb(green, 0x3c9);
cyber2000_outb(current_par.palette[regno >> 1].blue, 0x3c9);
}
if (regno < 32) {
/* write red,blue */
cyber2000_outb(regno << 3, 0x3c8);
cyber2000_outb(red, 0x3c9);
cyber2000_outb(current_par.palette[regno << 1].green, 0x3c9);
cyber2000_outb(blue, 0x3c9);
}
if (regno < 16)
current_par.c_table.cfb16[regno] = regno | regno << 5 | regno << 11;
break;
#endif
case 15:
if (regno < 32) {
cyber2000_outb(regno << 3, 0x3c8);
cyber2000_outb(red, 0x3c9);
cyber2000_outb(green, 0x3c9);
cyber2000_outb(blue, 0x3c9);
}
if (regno < 16)
current_par.c_table.cfb16[regno] = regno | regno << 5 | regno << 10;
break;
#endif
#ifdef FBCON_HAS_CFB24
case 24:
cyber2000_outb(regno, 0x3c8);
cyber2000_outb(red, 0x3c9);
cyber2000_outb(green, 0x3c9);
cyber2000_outb(blue, 0x3c9);
if (regno < 16)
current_par.c_table.cfb24[regno] = regno | regno << 8 | regno << 16;
break;
#endif
default:
return 1;
}
return 0;
}
struct par_info {
/*
* Hardware
*/
unsigned char clock_mult;
unsigned char clock_div;
unsigned char visualid;
unsigned char pixformat;
unsigned char crtc_ofl;
unsigned char crtc[19];
unsigned int width;
unsigned int pitch;
unsigned int fetch;
/*
* Other
*/
unsigned int visual;
unsigned char palette_ctrl;
};
static const char crtc_idx[] = {
0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
0x08, 0x09,
0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18
};
static void cyber2000fb_set_timing(struct par_info *hw)
{
unsigned int i;
/*
* Blank palette
*/
for (i = 0; i < 256; i++) {
cyber2000_outb(i, 0x3c8);
cyber2000_outb(0, 0x3c9);
cyber2000_outb(0, 0x3c9);
cyber2000_outb(0, 0x3c9);
}
cyber2000_outb(0xef, 0x3c2);
cyber2000_crtcw(0x11, 0x0b);
cyber2000_attrw(0x11, 0x00);
cyber2000_seqw(0x00, 0x01);
cyber2000_seqw(0x01, 0x01);
cyber2000_seqw(0x02, 0x0f);
cyber2000_seqw(0x03, 0x00);
cyber2000_seqw(0x04, 0x0e);
cyber2000_seqw(0x00, 0x03);
for (i = 0; i < sizeof(crtc_idx); i++)
cyber2000_crtcw(crtc_idx[i], hw->crtc[i]);
for (i = 0x0a; i < 0x10; i++)
cyber2000_crtcw(i, 0);
cyber2000_grphw(0x11, hw->crtc_ofl);
cyber2000_grphw(0x00, 0x00);
cyber2000_grphw(0x01, 0x00);
cyber2000_grphw(0x02, 0x00);
cyber2000_grphw(0x03, 0x00);
cyber2000_grphw(0x04, 0x00);
cyber2000_grphw(0x05, 0x60);
cyber2000_grphw(0x06, 0x05);
cyber2000_grphw(0x07, 0x0f);
cyber2000_grphw(0x08, 0xff);
/* Attribute controller registers */
for (i = 0; i < 16; i++)
cyber2000_attrw(i, i);
cyber2000_attrw(0x10, 0x01);
cyber2000_attrw(0x11, 0x00);
cyber2000_attrw(0x12, 0x0f);
cyber2000_attrw(0x13, 0x00);
cyber2000_attrw(0x14, 0x00);
/* PLL registers */
cyber2000_grphw(0xb0, hw->clock_mult);
cyber2000_grphw(0xb1, hw->clock_div);
cyber2000_grphw(0xb2, 0xdb);
cyber2000_grphw(0xb3, 0x54); /* MCLK: 75MHz */
cyber2000_grphw(0x90, 0x01);
cyber2000_grphw(0xb9, 0x80);
cyber2000_grphw(0xb9, 0x00);
cyber2000_outb(0x56, 0x3ce);
i = cyber2000_inb(0x3cf);
cyber2000_outb(i | 4, 0x3cf);
cyber2000_outb(hw->palette_ctrl, 0x3c6);
cyber2000_outb(i, 0x3cf);
cyber2000_outb(0x20, 0x3c0);
cyber2000_outb(0xff, 0x3c6);
cyber2000_grphw(0x14, hw->fetch);
cyber2000_grphw(0x15, ((hw->fetch >> 8) & 0x03) | ((hw->pitch >> 4) & 0x30));
cyber2000_grphw(0x77, hw->visualid);
cyber2000_grphw(0x33, 0x0c);
/*
* Set up accelerator registers
*/
cyber2000_outw(hw->width, CO_REG_SRC_WIDTH);
cyber2000_outw(hw->width, CO_REG_DEST_WIDTH);
cyber2000_outb(hw->pixformat, CO_REG_PIX_FORMAT);
}
static inline int
cyber2000fb_update_start(struct fb_var_screeninfo *var)
{
unsigned int base;
base = var->yoffset * var->xres_virtual + var->xoffset;
base >>= 2;
if (base >= 1 << 20)
return -EINVAL;
/*
* FIXME: need the upper bits of the start offset
*/
cyber2000_grphw(0x10, base >> 16 | 0x10);
cyber2000_crtcw(0x0c, base >> 8);
cyber2000_crtcw(0x0d, base);
return 0;
}
/*
* Open/Release the frame buffer device
*/
static int cyber2000fb_open(struct fb_info *info, int user)
{
MOD_INC_USE_COUNT;
return 0;
}
static int cyber2000fb_release(struct fb_info *info, int user)
{
MOD_DEC_USE_COUNT;
return 0;
}
/*
* Get the Colormap
*/
static int
cyber2000fb_get_cmap(struct fb_cmap *cmap, int kspc, int con,
struct fb_info *info)
{
int err = 0;
if (con == current_par.currcon) /* current console? */
err = fb_get_cmap(cmap, kspc, cyber2000_getcolreg, info);
else if (fb_display[con].cmap.len) /* non default colormap? */
fb_copy_cmap(&fb_display[con].cmap, cmap, kspc ? 0 : 2);
else
fb_copy_cmap(fb_default_cmap(1 << fb_display[con].var.bits_per_pixel),
cmap, kspc ? 0 : 2);
return err;
}
/*
* Set the Colormap
*/
static int
cyber2000fb_set_cmap(struct fb_cmap *cmap, int kspc, int con,
struct fb_info *info)
{
struct display *disp = &fb_display[con];
int err = 0;
if (!disp->cmap.len) { /* no colormap allocated? */
int size;
if (disp->var.bits_per_pixel == 16)
size = 32;
else
size = 256;
err = fb_alloc_cmap(&disp->cmap, size, 0);
}
if (!err) {
if (con == current_par.currcon) /* current console? */
err = fb_set_cmap(cmap, kspc, cyber2000_setcolreg,
info);
else
fb_copy_cmap(cmap, &disp->cmap, kspc ? 0 : 1);
}
return err;
}
static int cyber2000fb_decode_crtc(struct par_info *hw, struct fb_var_screeninfo *var)
{
unsigned int Htotal, Hblankend, Hsyncend;
unsigned int Vtotal, Vdispend, Vblankstart, Vblankend, Vsyncstart, Vsyncend;
#define BIT(v,b1,m,b2) (((v >> b1) & m) << b2)
hw->crtc[13] = hw->pitch;
hw->crtc[17] = 0xe3;
hw->crtc[14] = 0;
hw->crtc[8] = 0;
Htotal = var->xres + var->right_margin + var->hsync_len + var->left_margin;
if (Htotal > 2080)
return -EINVAL;
hw->crtc[0] = (Htotal >> 3) - 5; /* Htotal */
hw->crtc[1] = (var->xres >> 3) - 1; /* Hdispend */
hw->crtc[2] = var->xres >> 3; /* Hblankstart */
hw->crtc[4] = (var->xres + var->right_margin) >> 3; /* Hsyncstart */
Hblankend = (Htotal - 4*8) >> 3;
hw->crtc[3] = BIT(Hblankend, 0, 0x1f, 0) | /* Hblankend */
BIT(1, 0, 0x01, 7);
Hsyncend = (var->xres + var->right_margin + var->hsync_len) >> 3;
hw->crtc[5] = BIT(Hsyncend, 0, 0x1f, 0) | /* Hsyncend */
BIT(Hblankend, 5, 0x01, 7);
Vdispend = var->yres - 1;
Vsyncstart = var->yres + var->lower_margin;
Vsyncend = var->yres + var->lower_margin + var->vsync_len;
Vtotal = var->yres + var->lower_margin + var->vsync_len + var->upper_margin - 2;
if (Vtotal > 2047)
return -EINVAL;
Vblankstart = var->yres + 6;
Vblankend = Vtotal - 10;
hw->crtc[6] = Vtotal;
hw->crtc[7] = BIT(Vtotal, 8, 0x01, 0) |
BIT(Vdispend, 8, 0x01, 1) |
BIT(Vsyncstart, 8, 0x01, 2) |
BIT(Vblankstart,8, 0x01, 3) |
BIT(1, 0, 0x01, 4) |
BIT(Vtotal, 9, 0x01, 5) |
BIT(Vdispend, 9, 0x01, 6) |
BIT(Vsyncstart, 9, 0x01, 7);
hw->crtc[9] = BIT(0, 0, 0x1f, 0) |
BIT(Vblankstart,9, 0x01, 5) |
BIT(1, 0, 0x01, 6);
hw->crtc[10] = Vsyncstart;
hw->crtc[11] = BIT(Vsyncend, 0, 0x0f, 0) |
BIT(1, 0, 0x01, 7);
hw->crtc[12] = Vdispend;
hw->crtc[15] = Vblankstart;
hw->crtc[16] = Vblankend;
hw->crtc[18] = 0xff;
/* overflow - graphics reg 0x11 */
/* 0=VTOTAL:10 1=VDEND:10 2=VRSTART:10 3=VBSTART:10 4=LINECOMP:10 5-IVIDEO 6=FIXCNT */
hw->crtc_ofl =
BIT(Vtotal, 10, 0x01, 0) |
BIT(Vdispend, 10, 0x01, 1) |
BIT(Vsyncstart, 10, 0x01, 2) |
BIT(Vblankstart,10, 0x01, 3) |
1 << 4;
return 0;
}
/*
* The following was discovered by a good monitor,
* bit twiddling, theorising and but mostly luck.
* Strangely, it looks like everyone elses' PLL!
*
* Clock registers:
* fclock = fpll / div2
* fpll = fref * mult / div1
* where:
* fref = 14.318MHz (69842ps)
* mult = reg0xb0.7:0
* div1 = (reg0xb1.5:0 + 1)
* div2 = 2^(reg0xb1.7:6)
* fpll should be between 115 and 257 MHz
* (8696ps and 3891ps)
*/
static int
cyber2000fb_decode_clock(struct par_info *hw, struct fb_var_screeninfo *var)
{
static unsigned int divisors_2000[] = { 1, 2, 4, 8 };
static unsigned int divisors_2010[] = { 1, 2, 4, 6 };
unsigned long pll_ps = var->pixclock;
unsigned long ref_ps = 69842;
unsigned int *divisors;
int div2, div1, mult;
/*
* Step 1:
* find div2 such that 115MHz < fpll < 257MHz
* and 0 <= div2 < 4
*/
if (current_par.dev_id == PCI_DEVICE_ID_INTERG_2010)
divisors = divisors_2010;
else
divisors = divisors_2000;
for (div2 = 0; div2 < 4; div2++) {
unsigned long new_pll;
new_pll = pll_ps / divisors[div2];
if (8696 > new_pll && new_pll > 3891) {
pll_ps = new_pll;
break;
}
}
if (div2 == 4)
return -EINVAL;
#if 0
/*
* Step 2:
* Find fpll
* fpll = fref * mult / div1
*
* Note! This just picks any old values at the moment,
* and as such I don't trust it. It certainly doesn't
* come out with the values below, so the PLL may become
* unstable under some circumstances (you don't want an
* FM dot clock)
*/
for (div1 = 32; div1 > 1; div1 -= 1) {
mult = (ref_ps * div1 + pll_ps / 2) / pll_ps;
if (mult < 256)
break;
}
#else
/*
* 1600x1200 1280x1024 1152x864 1024x768 800x600 640x480
* 5051 5051 yes 76*
* 5814 5814 no 66
* 6411 6411 no 60
* 7408 7408 yes 75*
* 74*
* 7937 7937 yes 70*
* 9091 4545 yes 80*
* 75* 100*
* 9260 4630 yes 60*
* 10000 5000 no 70 90
* 12500 6250 yes 47-lace* 60*
* 43-lace*
* 12699 6349 yes 75*
* 13334 6667 no 72
* 70
* 14815 7407 yes 100*
* 15385 7692 yes 47-lace* 60*
* 43-lace*
* 17656 4414 no 90
* 20000 5000 no 72
* 20203 5050 yes 75*
* 22272 5568 yes 43-lace* 70* 100*
* 25000 6250 yes 60*
* 25057 6264 no 90
* 27778 6944 yes 56*
* 48-lace*
* 31747 7936 yes 75*
* 32052 8013 no 72
* 39722 /6 6620 no
* 39722 /8 4965 yes 60*
*/
/* /1 /2 /4 /6 /8 */
/* (2010) (2000) */
if (pll_ps >= 4543 && pll_ps <= 4549) {
mult = 169; /*u220.0 110.0 54.99 36.663 27.497 */
div1 = 11; /* 4546 9092 18184 27276 36367 */
} else if (pll_ps >= 4596 && pll_ps <= 4602) {
mult = 243; /* 217.5 108.7 54.36 36.243 27.181 */
div1 = 16; /* 4599 9197 18395 27592 36789 */
} else if (pll_ps >= 4627 && pll_ps <= 4633) {
mult = 181; /*u216.0, 108.0, 54.00, 36.000 27.000 */
div1 = 12; /* 4630 9260 18520 27780 37040 */
} else if (pll_ps >= 4962 && pll_ps <= 4968) {
mult = 211; /*u201.0, 100.5, 50.25, 33.500 25.125 */
div1 = 15; /* 4965 9930 19860 29790 39720 */
} else if (pll_ps >= 5005 && pll_ps <= 5011) {
mult = 251; /* 200.0 99.8 49.92 33.280 24.960 */
div1 = 18; /* 5008 10016 20032 30048 40064 */
} else if (pll_ps >= 5047 && pll_ps <= 5053) {
mult = 83; /*u198.0, 99.0, 49.50, 33.000 24.750 */
div1 = 6; /* 5050 10100 20200 30300 40400 */
} else if (pll_ps >= 5490 && pll_ps <= 5496) {
mult = 89; /* 182.0 91.0 45.51 30.342 22.756 */
div1 = 7; /* 5493 10986 21972 32958 43944 */
} else if (pll_ps >= 5567 && pll_ps <= 5573) {
mult = 163; /*u179.5 89.8 44.88 29.921 22.441 */
div1 = 13; /* 5570 11140 22281 33421 44562 */
} else if (pll_ps >= 6246 && pll_ps <= 6252) {
mult = 190; /*u160.0, 80.0, 40.00, 26.671 20.003 */
div1 = 17; /* 6249 12498 24996 37494 49992 */
} else if (pll_ps >= 6346 && pll_ps <= 6352) {
mult = 209; /*u158.0, 79.0, 39.50, 26.333 19.750 */
div1 = 19; /* 6349 12698 25396 38094 50792 */
} else if (pll_ps >= 6648 && pll_ps <= 6655) {
mult = 210; /*u150.3 75.2 37.58 25.057 18.792 */
div1 = 20; /* 6652 13303 26606 39909 53213 */
} else if (pll_ps >= 6943 && pll_ps <= 6949) {
mult = 181; /*u144.0 72.0 36.00 23.996 17.997 */
div1 = 18; /* 6946 13891 27782 41674 55565 */
} else if (pll_ps >= 7404 && pll_ps <= 7410) {
mult = 198; /*u134.0 67.5 33.75 22.500 16.875 */
div1 = 21; /* 7407 14815 29630 44445 59260 */
} else if (pll_ps >= 7689 && pll_ps <= 7695) {
mult = 227; /*u130.0 65.0 32.50 21.667 16.251 */
div1 = 25; /* 7692 15384 30768 46152 61536 */
} else if (pll_ps >= 7808 && pll_ps <= 7814) {
mult = 152; /* 128.0 64.0 32.00 21.337 16.003 */
div1 = 17; /* 7811 15623 31245 46868 62490 */
} else if (pll_ps >= 7934 && pll_ps <= 7940) {
mult = 44; /*u126.0 63.0 31.498 20.999 15.749 */
div1 = 5; /* 7937 15874 31748 47622 63494 */
} else
return -EINVAL;
/* 187 13 -> 4855 */
/* 181 18 -> 6946 */
/* 163 13 -> 5570 */
/* 169 11 -> 4545 */
#endif
/*
* Step 3:
* combine values
*/
hw->clock_mult = mult - 1;
hw->clock_div = div2 << 6 | (div1 - 1);
return 0;
}
/*
* Decode the info required for the hardware.
* This involves the PLL parameters for the dot clock,
* CRTC registers, and accelerator settings.
*/
static int
cyber2000fb_decode_var(struct fb_var_screeninfo *var, int con, struct par_info *hw)
{
int err;
hw->width = var->xres_virtual;
var->red.msb_right = 0;
var->green.msb_right = 0;
var->blue.msb_right = 0;
switch (var->bits_per_pixel) {
#ifdef FBCON_HAS_CFB8
case 8: /* PSEUDOCOLOUR, 256 */
var->bits_per_pixel = 8;
var->red.offset = 0;
var->red.length = 8;
var->green.offset = 0;
var->green.length = 8;
var->blue.offset = 0;
var->blue.length = 8;
hw->visual = FB_VISUAL_PSEUDOCOLOR;
hw->pixformat = PIXFORMAT_8BPP;
hw->visualid = VISUALID_256;
hw->pitch = hw->width >> 3;
hw->palette_ctrl = 0x04;
break;
#endif
#ifdef FBCON_HAS_CFB16
case 16:/* DIRECTCOLOUR, 64k */
#ifndef CFB16_IS_CFB15
var->bits_per_pixel = 16;
var->red.offset = 11;
var->red.length = 5;
var->green.offset = 5;
var->green.length = 6;
var->blue.offset = 0;
var->blue.length = 5;
hw->visual = FB_VISUAL_DIRECTCOLOR;
hw->pixformat = PIXFORMAT_16BPP;
hw->visualid = VISUALID_64K;
hw->pitch = hw->width >> 2;
hw->palette_ctrl = 0x14;
break;
#endif
case 15:/* DIRECTCOLOUR, 32k */
var->bits_per_pixel = 15;
var->red.offset = 10;
var->red.length = 5;
var->green.offset = 5;
var->green.length = 5;
var->blue.offset = 0;
var->blue.length = 5;
hw->visual = FB_VISUAL_DIRECTCOLOR;
hw->pixformat = PIXFORMAT_16BPP;
hw->visualid = VISUALID_32K;
hw->pitch = hw->width >> 2;
hw->palette_ctrl = 0x14;
break;
#endif
#ifdef FBCON_HAS_CFB24
case 24:/* TRUECOLOUR, 16m */
var->bits_per_pixel = 24;
var->red.offset = 16;
var->red.length = 8;
var->green.offset = 8;
var->green.length = 8;
var->blue.offset = 0;
var->blue.length = 8;
hw->visual = FB_VISUAL_TRUECOLOR;
hw->pixformat = PIXFORMAT_24BPP;
hw->visualid = VISUALID_16M;
hw->width *= 3;
hw->pitch = hw->width >> 3;
hw->palette_ctrl = 0x14;
break;
#endif
default:
return -EINVAL;
}
err = cyber2000fb_decode_clock(hw, var);
if (err)
return err;
err = cyber2000fb_decode_crtc(hw, var);
if (err)
return err;
debug_printf("Clock: %02X %02X\n",
hw->clock_mult, hw->clock_div);
{
int i;
for (i = 0; i < 19; i++)
debug_printf("%2d ", i);
debug_printf("\n");
for (i = 0; i < 18; i++)
debug_printf("%02X ", hw->crtc[i]);
debug_printf("%02X\n", hw->crtc_ofl);
}
hw->width -= 1;
hw->fetch = hw->pitch;
if (current_par.bus_64bit == 0)
hw->fetch <<= 1;
hw->fetch += 1;
return 0;
}
/*
* Get the Fixed Part of the Display
*/
static int
cyber2000fb_get_fix(struct fb_fix_screeninfo *fix, int con,
struct fb_info *fb_info)
{
struct display *display;
memset(fix, 0, sizeof(struct fb_fix_screeninfo));
strcpy(fix->id, current_par.dev_name);
if (con >= 0)
display = fb_display + con;
else
display = &global_disp;
fix->smem_start = current_par.screen_base_p;
fix->smem_len = current_par.screen_size;
fix->mmio_start = current_par.regs_base_p;
fix->mmio_len = MMIO_SIZE;
fix->type = display->type;
fix->type_aux = display->type_aux;
fix->xpanstep = 0;
fix->ypanstep = display->ypanstep;
fix->ywrapstep = display->ywrapstep;
fix->visual = display->visual;
fix->line_length = display->line_length;
fix->accel = 22; /*FB_ACCEL_IGS_CYBER2000*/
return 0;
}
/*
* Get the User Defined Part of the Display
*/
static int
cyber2000fb_get_var(struct fb_var_screeninfo *var, int con,
struct fb_info *fb_info)
{
if (con == -1)
*var = global_disp.var;
else
*var = fb_display[con].var;
return 0;
}
/*
* Set the User Defined Part of the Display
*/
static int
cyber2000fb_set_var(struct fb_var_screeninfo *var, int con, struct fb_info *info)
{
struct display *display;
struct par_info hw;
int err, chgvar = 0;
if (con >= 0)
display = fb_display + con;
else
display = &global_disp;
err = cyber2000fb_decode_var(var, con, &hw);
if (err)
return err;
switch (var->activate & FB_ACTIVATE_MASK) {
case FB_ACTIVATE_TEST:
return 0;
case FB_ACTIVATE_NXTOPEN:
case FB_ACTIVATE_NOW:
break;
default:
return -EINVAL;
}
if (con >= 0) {
if (display->var.xres != var->xres)
chgvar = 1;
if (display->var.yres != var->yres)
chgvar = 1;
if (display->var.xres_virtual != var->xres_virtual)
chgvar = 1;
if (display->var.yres_virtual != var->yres_virtual)
chgvar = 1;
if (display->var.accel_flags != var->accel_flags)
chgvar = 1;
if (memcmp(&display->var.red, &var->red, sizeof(var->red)))
chgvar = 1;
if (memcmp(&display->var.green, &var->green, sizeof(var->green)))
chgvar = 1;
if (memcmp(&display->var.blue, &var->blue, sizeof(var->green)))
chgvar = 1;
}
display->var = *var;
display->var.activate &= ~FB_ACTIVATE_ALL;
if (var->activate & FB_ACTIVATE_ALL)
global_disp.var = display->var;
display->screen_base = current_par.screen_base;
display->visual = hw.visual;
display->type = FB_TYPE_PACKED_PIXELS;
display->type_aux = 0;
display->ypanstep = 1;
display->ywrapstep = 0;
display->can_soft_blank = 1;
display->inverse = 0;
switch (display->var.bits_per_pixel) {
#ifdef FBCON_HAS_CFB8
case 8:
dispsw = &fbcon_cfb8;
display->dispsw_data = NULL;
display->next_line = var->xres_virtual;
break;
#endif
#ifdef FBCON_HAS_CFB16
case 15:
case 16:
dispsw = &fbcon_cfb16;
display->dispsw_data = current_par.c_table.cfb16;
display->next_line = var->xres_virtual * 2;
break;
#endif
#ifdef FBCON_HAS_CFB24
case 24:
dispsw = &fbcon_cfb24;
display->dispsw_data = current_par.c_table.cfb24;
display->next_line = var->xres_virtual * 3;
break;
#endif
default:
printk(KERN_WARNING "%s: no support for %dbpp\n",
current_par.dev_name, display->var.bits_per_pixel);
dispsw = &fbcon_dummy;
break;
}
display->line_length = display->next_line;
if (display->var.accel_flags & FB_ACCELF_TEXT &&
dispsw != &fbcon_dummy)
display->dispsw = &fbcon_cyber_accel;
else
display->dispsw = dispsw;
if (chgvar && info && info->changevar)
info->changevar(con);
if (con == current_par.currcon) {
struct fb_cmap *cmap;
cyber2000fb_update_start(var);
cyber2000fb_set_timing(&hw);
if (display->cmap.len)
cmap = &display->cmap;
else
cmap = fb_default_cmap(current_par.palette_size);
fb_set_cmap(cmap, 1, cyber2000_setcolreg, info);
}
return 0;
}
/*
* Pan or Wrap the Display
*/
static int cyber2000fb_pan_display(struct fb_var_screeninfo *var, int con,
struct fb_info *info)
{
u_int y_bottom;
y_bottom = var->yoffset;
if (!(var->vmode & FB_VMODE_YWRAP))
y_bottom += var->yres;
if (var->xoffset > (var->xres_virtual - var->xres))
return -EINVAL;
if (y_bottom > fb_display[con].var.yres_virtual)
return -EINVAL;
if (cyber2000fb_update_start(var))
return -EINVAL;
fb_display[con].var.xoffset = var->xoffset;
fb_display[con].var.yoffset = var->yoffset;
if (var->vmode & FB_VMODE_YWRAP)
fb_display[con].var.vmode |= FB_VMODE_YWRAP;
else
fb_display[con].var.vmode &= ~FB_VMODE_YWRAP;
return 0;
}
static int cyber2000fb_ioctl(struct inode *inode, struct file *file,
u_int cmd, u_long arg, int con, struct fb_info *info)
{
return -EINVAL;
}
/*
* Update the `var' structure (called by fbcon.c)
*
* This call looks only at yoffset and the FB_VMODE_YWRAP flag in `var'.
* Since it's called by a kernel driver, no range checking is done.
*/
static int
cyber2000fb_updatevar(int con, struct fb_info *info)
{
int ret = 0;
if (con == current_par.currcon)
ret = cyber2000fb_update_start(&fb_display[con].var);
return ret;
}
static int
cyber2000fb_switch(int con, struct fb_info *info)
{
struct fb_cmap *cmap;
if (current_par.currcon >= 0) {
cmap = &fb_display[current_par.currcon].cmap;
if (cmap->len)
fb_get_cmap(cmap, 1, cyber2000_getcolreg, info);
}
current_par.currcon = con;
fb_display[con].var.activate = FB_ACTIVATE_NOW;
cyber2000fb_set_var(&fb_display[con].var, con, info);
return 0;
}
/*
* (Un)Blank the display.
*/
static void cyber2000fb_blank(int blank, struct fb_info *fb_info)
{
int i;
if (blank) {
for (i = 0; i < 256; i++) {
cyber2000_outb(i, 0x3c8);
cyber2000_outb(0, 0x3c9);
cyber2000_outb(0, 0x3c9);
cyber2000_outb(0, 0x3c9);
}
} else {
for (i = 0; i < 256; i++) {
cyber2000_outb(i, 0x3c8);
cyber2000_outb(current_par.palette[i].red, 0x3c9);
cyber2000_outb(current_par.palette[i].green, 0x3c9);
cyber2000_outb(current_par.palette[i].blue, 0x3c9);
}
}
}
static struct fb_ops cyber2000fb_ops =
{
cyber2000fb_open,
cyber2000fb_release,
cyber2000fb_get_fix,
cyber2000fb_get_var,
cyber2000fb_set_var,
cyber2000fb_get_cmap,
cyber2000fb_set_cmap,
cyber2000fb_pan_display,
cyber2000fb_ioctl
};
int cyber2000fb_attach(struct cyberpro_info *info)
{
if (current_par.initialised) {
info->regs = CyberRegs;
info->fb = current_par.screen_base;
info->fb_size = current_par.screen_size;
strncpy(info->dev_name, current_par.dev_name, sizeof(info->dev_name));
MOD_INC_USE_COUNT;
}
return current_par.initialised;
}
void cyber2000fb_detach(void)
{
MOD_DEC_USE_COUNT;
}
EXPORT_SYMBOL(cyber2000fb_attach);
EXPORT_SYMBOL(cyber2000fb_detach);
/*
* These parameters give
* 640x480, hsync 31.5kHz, vsync 60Hz
*/
static struct fb_videomode __initdata
cyber2000fb_default_mode = {
name: NULL,
refresh: 60,
xres: 640,
yres: 480,
pixclock: 39722,
left_margin: 56,
right_margin: 16,
upper_margin: 34,
lower_margin: 9,
hsync_len: 88,
vsync_len: 2,
sync: FB_SYNC_COMP_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,
vmode: FB_VMODE_NONINTERLACED
};
static void __init
cyber2000fb_init_fbinfo(void)
{
static int first = 1;
if (!first)
return;
first = 0;
strcpy(fb_info.modename, "Cyber2000");
strcpy(fb_info.fontname, "Acorn8x8");
fb_info.node = -1;
fb_info.fbops = &cyber2000fb_ops;
fb_info.disp = &global_disp;
fb_info.changevar = NULL;
fb_info.switch_con = cyber2000fb_switch;
fb_info.updatevar = cyber2000fb_updatevar;
fb_info.blank = cyber2000fb_blank;
fb_info.flags = FBINFO_FLAG_DEFAULT;
/*
* setup initial parameters
*/
memset(&init_var, 0, sizeof(init_var));
init_var.red.msb_right = 0;
init_var.green.msb_right = 0;
init_var.blue.msb_right = 0;
switch(init_var.bits_per_pixel) {
default:
init_var.bits_per_pixel = 8;
case 8: /* PSEUDOCOLOUR */
init_var.bits_per_pixel = 8;
init_var.red.offset = 0;
init_var.red.length = 8;
init_var.green.offset = 0;
init_var.green.length = 8;
init_var.blue.offset = 0;
init_var.blue.length = 8;
break;
case 15: /* RGB555 */
init_var.bits_per_pixel = 15;
init_var.red.offset = 10;
init_var.red.length = 5;
init_var.green.offset = 5;
init_var.green.length = 5;
init_var.blue.offset = 0;
init_var.blue.length = 5;
break;
case 16: /* RGB565 */
init_var.bits_per_pixel = 16;
init_var.red.offset = 11;
init_var.red.length = 5;
init_var.green.offset = 5;
init_var.green.length = 6;
init_var.blue.offset = 0;
init_var.blue.length = 5;
break;
case 24: /* RGB888 */
init_var.bits_per_pixel = 24;
init_var.red.offset = 16;
init_var.red.length = 8;
init_var.green.offset = 8;
init_var.green.length = 8;
init_var.blue.offset = 0;
init_var.blue.length = 8;
break;
}
init_var.nonstd = 0;
init_var.activate = FB_ACTIVATE_NOW;
init_var.height = -1;
init_var.width = -1;
init_var.accel_flags = FB_ACCELF_TEXT;
}
/*
* Cyber2000 options:
*
* font:fontname
* Set the fontname
*
* res:XxY
* Set the default display resolution
*/
static void __init
cyber2000fb_parse_font(char *opt)
{
strcpy(fb_info.fontname, opt);
}
static struct options {
char *name;
void (*parse)(char *opt);
} opt_table[] __initdata = {
{ "font", cyber2000fb_parse_font },
{ NULL, NULL }
};
int __init
cyber2000fb_setup(char *options)
{
struct options *optp;
char *opt;
if (!options || !*options)
return 0;
cyber2000fb_init_fbinfo();
for (opt = strtok(options, ","); opt; opt = strtok(NULL, ",")) {
if (!*opt)
continue;
for (optp = opt_table; optp->name; optp++) {
int optlen;
optlen = strlen(optp->name);
if (strncmp(opt, optp->name, optlen) == 0 &&
opt[optlen] == ':') {
optp->parse(opt + optlen + 1);
break;
}
}
if (!optp->name)
printk(KERN_ERR "CyberPro20x0: unknown parameter: %s\n",
opt);
}
return 0;
}
static char igs_regs[] __initdata = {
0x10, 0x10, 0x12, 0x00, 0x13, 0x00,
0x31, 0x00, 0x32, 0x00, 0x33, 0x01,
0x50, 0x00, 0x51, 0x00, 0x52, 0x00, 0x53, 0x00,
0x54, 0x00, 0x55, 0x00, 0x56, 0x00, 0x57, 0x01,
0x58, 0x00, 0x59, 0x00, 0x5a, 0x00,
0x70, 0x0b, 0x73, 0x30,
0x74, 0x0b, 0x75, 0x17, 0x76, 0x00, 0x7a, 0xc8
};
static void __init cyber2000fb_hw_init(void)
{
int i;
for (i = 0; i < sizeof(igs_regs); i += 2)
cyber2000_grphw(igs_regs[i], igs_regs[i+1]);
}
static unsigned short device_ids[] __initdata = {
PCI_DEVICE_ID_INTERG_2000,
PCI_DEVICE_ID_INTERG_2010,
PCI_DEVICE_ID_INTERG_5000
};
/*
* Initialization
*/
int __init cyber2000fb_init(void)
{
struct pci_dev *dev;
u_int h_sync, v_sync;
u_long mmio_base, smem_base, smem_size;
int err = 0, i;
for (i = 0; i < sizeof(device_ids) / sizeof(device_ids[0]); i++) {
dev = pci_find_device(PCI_VENDOR_ID_INTERG,
device_ids[i], NULL);
if (dev)
break;
}
if (!dev)
return -ENXIO;
sprintf(current_par.dev_name, "CyberPro%4X", dev->device);
smem_base = dev->resource[0].start;
mmio_base = dev->resource[0].start + 0x00800000;
current_par.dev_id = dev->device;
/*
* Map in the registers
*/
if (!request_mem_region(mmio_base, MMIO_SIZE, "memory mapped I/O")) {
printk("%s: memory mapped IO in use\n",
current_par.dev_name);
return -EBUSY;
}
CyberRegs = ioremap(mmio_base, MMIO_SIZE);
if (!CyberRegs) {
printk("%s: unable to map memory mapped IO\n",
current_par.dev_name);
err = -ENOMEM;
goto release_mmio_resource;
}
cyber2000_outb(0x18, 0x46e8);
cyber2000_outb(0x01, 0x102);
cyber2000_outb(0x08, 0x46e8);
/*
* get the video RAM size and width from the VGA register.
* This should have been already initialised by the BIOS,
* but if it's garbage, claim default 1MB VRAM (woody)
*/
cyber2000_outb(0x72, 0x3ce);
i = cyber2000_inb(0x3cf);
current_par.bus_64bit = i & 4;
switch (i & 3) {
case 2: smem_size = 0x00400000; break;
case 1: smem_size = 0x00200000; break;
default: smem_size = 0x00100000; break;
}
/*
* Map in screen memory
*/
if (!request_mem_region(smem_base, smem_size, "frame buffer")) {
printk("%s: frame buffer in use\n",
current_par.dev_name);
err = -EBUSY;
goto release_mmio;
}
current_par.screen_base = ioremap(smem_base, smem_size);
if (!current_par.screen_base) {
printk("%s: unable to map screen memory\n",
current_par.dev_name);
err = -ENOMEM;
goto release_smem_resource;
}
current_par.screen_size = smem_size;
current_par.screen_base_p = smem_base + 0x80000000;
current_par.regs_base_p = mmio_base + 0x80000000;
current_par.currcon = -1;
cyber2000fb_init_fbinfo();
if (!fb_find_mode(&init_var, &fb_info, NULL,
NULL, 0, &cyber2000fb_default_mode, 8)) {
printk("%s: no valid mode found\n",
current_par.dev_name);
goto release_smem_resource;
}
init_var.yres_virtual = smem_size * 8 /
(init_var.bits_per_pixel * init_var.xres_virtual);
if (init_var.yres_virtual < init_var.yres)
init_var.yres_virtual = init_var.yres;
cyber2000fb_hw_init();
cyber2000fb_set_var(&init_var, -1, &fb_info);
h_sync = 1953125000 / init_var.pixclock;
h_sync = h_sync * 512 / (init_var.xres + init_var.left_margin +
init_var.right_margin + init_var.hsync_len);
v_sync = h_sync / (init_var.yres + init_var.upper_margin +
init_var.lower_margin + init_var.vsync_len);
printk("%s: %ldkB VRAM, using %dx%d, %d.%03dkHz, %dHz\n",
current_par.dev_name,
current_par.screen_size >> 10,
init_var.xres, init_var.yres,
h_sync / 1000, h_sync % 1000, v_sync);
if (register_framebuffer(&fb_info) < 0) {
err = -EINVAL;
goto release_smem;
}
current_par.initialised = 1;
MOD_INC_USE_COUNT; /* TODO: This driver cannot be unloaded yet */
return 0;
release_smem:
iounmap(current_par.screen_base);
release_smem_resource:
release_mem_region(smem_base, smem_size);
release_mmio:
iounmap(CyberRegs);
release_mmio_resource:
release_mem_region(mmio_base, MMIO_SIZE);
return err;
}
#ifdef MODULE
int __init init_module(void)
{
int ret;
ret = cyber2000fb_init();
if (ret)
return ret;
return 0;
}
void cleanup_module(void)
{
/* Not reached because the usecount will never be
decremented to zero */
unregister_framebuffer(&fb_info);
iounmap(current_par.screen_base);
iounmap(CyberRegs);
release_mem_region(smem_base, current_par.screen_size);
release_mem_region(mmio_base, MMIO_SIZE);
}
#endif /* MODULE */
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