savagefb_driver.c 63.5 KB
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/*
 * linux/drivers/video/savagefb.c -- S3 Savage Framebuffer Driver
 *
 * Copyright (c) 2001-2002  Denis Oliver Kropp <dok@directfb.org>
 *                          Sven Neumann <neo@directfb.org>
 *
 *
 * Card specific code is based on XFree86's savage driver.
 * Framebuffer framework code is based on code of cyber2000fb and tdfxfb.
 *
 * This file is subject to the terms and conditions of the GNU General
 * Public License.  See the file COPYING in the main directory of this
 * archive for more details.
 *
 * 0.4.0 (neo)
 *  - hardware accelerated clear and move
 *
 * 0.3.2 (dok)
 *  - wait for vertical retrace before writing to cr67
 *    at the beginning of savagefb_set_par
 *  - use synchronization registers cr23 and cr26
 *
 * 0.3.1 (dok)
 *  - reset 3D engine
 *  - don't return alpha bits for 32bit format
 *
 * 0.3.0 (dok)
 *  - added WaitIdle functions for all Savage types
 *  - do WaitIdle before mode switching
 *  - code cleanup
 *
 * 0.2.0 (dok)
 *  - first working version
 *
 *
 * TODO
 * - clock validations in decode_var
 *
 * BUGS
 * - white margin on bootup
 *
 */

#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/errno.h>
#include <linux/string.h>
#include <linux/mm.h>
#include <linux/slab.h>
#include <linux/delay.h>
#include <linux/fb.h>
#include <linux/pci.h>
#include <linux/init.h>
#include <linux/console.h>

#include <asm/io.h>
#include <asm/irq.h>
#include <asm/pgtable.h>
#include <asm/system.h>
#include <asm/uaccess.h>

#ifdef CONFIG_MTRR
#include <asm/mtrr.h>
#endif

#include "savagefb.h"


#define SAVAGEFB_VERSION "0.4.0_2.6"

/* --------------------------------------------------------------------- */


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static char *mode_option __devinitdata = NULL;
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#ifdef MODULE

MODULE_AUTHOR("(c) 2001-2002  Denis Oliver Kropp <dok@directfb.org>");
MODULE_LICENSE("GPL");
MODULE_DESCRIPTION("FBDev driver for S3 Savage PCI/AGP Chips");

#endif


/* --------------------------------------------------------------------- */

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static void vgaHWSeqReset(struct savagefb_par *par, int start)
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{
	if (start)
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		VGAwSEQ(0x00, 0x01, par);	/* Synchronous Reset */
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	else
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		VGAwSEQ(0x00, 0x03, par);	/* End Reset */
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}

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static void vgaHWProtect(struct savagefb_par *par, int on)
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{
	unsigned char tmp;

	if (on) {
		/*
		 * Turn off screen and disable sequencer.
		 */
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		tmp = VGArSEQ(0x01, par);
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		vgaHWSeqReset(par, 1);	        /* start synchronous reset */
		VGAwSEQ(0x01, tmp | 0x20, par);/* disable the display */
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		VGAenablePalette(par);
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	} else {
		/*
		 * Reenable sequencer, then turn on screen.
		 */

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		tmp = VGArSEQ(0x01, par);
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		VGAwSEQ(0x01, tmp & ~0x20, par);/* reenable display */
		vgaHWSeqReset(par, 0);	        /* clear synchronous reset */
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		VGAdisablePalette(par);
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	}
}

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static void vgaHWRestore(struct savagefb_par  *par, struct savage_reg *reg)
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{
	int i;

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	VGAwMISC(reg->MiscOutReg, par);
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	for (i = 1; i < 5; i++)
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		VGAwSEQ(i, reg->Sequencer[i], par);
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	/* Ensure CRTC registers 0-7 are unlocked by clearing bit 7 or
	   CRTC[17] */
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	VGAwCR(17, reg->CRTC[17] & ~0x80, par);
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	for (i = 0; i < 25; i++)
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		VGAwCR(i, reg->CRTC[i], par);
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	for (i = 0; i < 9; i++)
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		VGAwGR(i, reg->Graphics[i], par);
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	VGAenablePalette(par);
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	for (i = 0; i < 21; i++)
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		VGAwATTR(i, reg->Attribute[i], par);
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	VGAdisablePalette(par);
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}

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static void vgaHWInit(struct fb_var_screeninfo *var,
		      struct savagefb_par            *par,
		      struct xtimings                *timings,
		      struct savage_reg              *reg)
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{
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	reg->MiscOutReg = 0x23;
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	if (!(timings->sync & FB_SYNC_HOR_HIGH_ACT))
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		reg->MiscOutReg |= 0x40;
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	if (!(timings->sync & FB_SYNC_VERT_HIGH_ACT))
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		reg->MiscOutReg |= 0x80;
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	/*
	 * Time Sequencer
	 */
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	reg->Sequencer[0x00] = 0x00;
	reg->Sequencer[0x01] = 0x01;
	reg->Sequencer[0x02] = 0x0F;
	reg->Sequencer[0x03] = 0x00;          /* Font select */
	reg->Sequencer[0x04] = 0x0E;          /* Misc */
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	/*
	 * CRTC Controller
	 */
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	reg->CRTC[0x00] = (timings->HTotal >> 3) - 5;
	reg->CRTC[0x01] = (timings->HDisplay >> 3) - 1;
	reg->CRTC[0x02] = (timings->HSyncStart >> 3) - 1;
	reg->CRTC[0x03] = (((timings->HSyncEnd >> 3)  - 1) & 0x1f) | 0x80;
	reg->CRTC[0x04] = (timings->HSyncStart >> 3);
	reg->CRTC[0x05] = ((((timings->HSyncEnd >> 3) - 1) & 0x20) << 2) |
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		(((timings->HSyncEnd >> 3)) & 0x1f);
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	reg->CRTC[0x06] = (timings->VTotal - 2) & 0xFF;
	reg->CRTC[0x07] = (((timings->VTotal - 2) & 0x100) >> 8) |
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		(((timings->VDisplay - 1) & 0x100) >> 7) |
		((timings->VSyncStart & 0x100) >> 6) |
		(((timings->VSyncStart - 1) & 0x100) >> 5) |
		0x10 |
		(((timings->VTotal - 2) & 0x200) >> 4) |
		(((timings->VDisplay - 1) & 0x200) >> 3) |
		((timings->VSyncStart & 0x200) >> 2);
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	reg->CRTC[0x08] = 0x00;
	reg->CRTC[0x09] = (((timings->VSyncStart - 1) & 0x200) >> 4) | 0x40;
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	if (timings->dblscan)
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		reg->CRTC[0x09] |= 0x80;

	reg->CRTC[0x0a] = 0x00;
	reg->CRTC[0x0b] = 0x00;
	reg->CRTC[0x0c] = 0x00;
	reg->CRTC[0x0d] = 0x00;
	reg->CRTC[0x0e] = 0x00;
	reg->CRTC[0x0f] = 0x00;
	reg->CRTC[0x10] = timings->VSyncStart & 0xff;
	reg->CRTC[0x11] = (timings->VSyncEnd & 0x0f) | 0x20;
	reg->CRTC[0x12] = (timings->VDisplay - 1) & 0xff;
	reg->CRTC[0x13] = var->xres_virtual >> 4;
	reg->CRTC[0x14] = 0x00;
	reg->CRTC[0x15] = (timings->VSyncStart - 1) & 0xff;
	reg->CRTC[0x16] = (timings->VSyncEnd - 1) & 0xff;
	reg->CRTC[0x17] = 0xc3;
	reg->CRTC[0x18] = 0xff;
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	/*
	 * are these unnecessary?
	 * vgaHWHBlankKGA(mode, regp, 0, KGA_FIX_OVERSCAN|KGA_ENABLE_ON_ZERO);
	 * vgaHWVBlankKGA(mode, regp, 0, KGA_FIX_OVERSCAN|KGA_ENABLE_ON_ZERO);
	 */

	/*
	 * Graphics Display Controller
	 */
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	reg->Graphics[0x00] = 0x00;
	reg->Graphics[0x01] = 0x00;
	reg->Graphics[0x02] = 0x00;
	reg->Graphics[0x03] = 0x00;
	reg->Graphics[0x04] = 0x00;
	reg->Graphics[0x05] = 0x40;
	reg->Graphics[0x06] = 0x05;   /* only map 64k VGA memory !!!! */
	reg->Graphics[0x07] = 0x0F;
	reg->Graphics[0x08] = 0xFF;


	reg->Attribute[0x00]  = 0x00; /* standard colormap translation */
	reg->Attribute[0x01]  = 0x01;
	reg->Attribute[0x02]  = 0x02;
	reg->Attribute[0x03]  = 0x03;
	reg->Attribute[0x04]  = 0x04;
	reg->Attribute[0x05]  = 0x05;
	reg->Attribute[0x06]  = 0x06;
	reg->Attribute[0x07]  = 0x07;
	reg->Attribute[0x08]  = 0x08;
	reg->Attribute[0x09]  = 0x09;
	reg->Attribute[0x0a] = 0x0A;
	reg->Attribute[0x0b] = 0x0B;
	reg->Attribute[0x0c] = 0x0C;
	reg->Attribute[0x0d] = 0x0D;
	reg->Attribute[0x0e] = 0x0E;
	reg->Attribute[0x0f] = 0x0F;
	reg->Attribute[0x10] = 0x41;
	reg->Attribute[0x11] = 0xFF;
	reg->Attribute[0x12] = 0x0F;
	reg->Attribute[0x13] = 0x00;
	reg->Attribute[0x14] = 0x00;
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}

/* -------------------- Hardware specific routines ------------------------- */

/*
 * Hardware Acceleration for SavageFB
 */

/* Wait for fifo space */
static void
savage3D_waitfifo(struct savagefb_par *par, int space)
{
	int slots = MAXFIFO - space;

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	while ((savage_in32(0x48C00, par) & 0x0000ffff) > slots);
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}

static void
savage4_waitfifo(struct savagefb_par *par, int space)
{
	int slots = MAXFIFO - space;

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	while ((savage_in32(0x48C60, par) & 0x001fffff) > slots);
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}

static void
savage2000_waitfifo(struct savagefb_par *par, int space)
{
	int slots = MAXFIFO - space;

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	while ((savage_in32(0x48C60, par) & 0x0000ffff) > slots);
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}

/* Wait for idle accelerator */
static void
savage3D_waitidle(struct savagefb_par *par)
{
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	while ((savage_in32(0x48C00, par) & 0x0008ffff) != 0x80000);
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}

static void
savage4_waitidle(struct savagefb_par *par)
{
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	while ((savage_in32(0x48C60, par) & 0x00a00000) != 0x00a00000);
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}

static void
savage2000_waitidle(struct savagefb_par *par)
{
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	while ((savage_in32(0x48C60, par) & 0x009fffff));
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}

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#ifdef CONFIG_FB_SAVAGE_ACCEL
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static void
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SavageSetup2DEngine(struct savagefb_par  *par)
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{
	unsigned long GlobalBitmapDescriptor;

	GlobalBitmapDescriptor = 1 | 8 | BCI_BD_BW_DISABLE;
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	BCI_BD_SET_BPP(GlobalBitmapDescriptor, par->depth);
	BCI_BD_SET_STRIDE(GlobalBitmapDescriptor, par->vwidth);
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	switch(par->chip) {
	case S3_SAVAGE3D:
	case S3_SAVAGE_MX:
		/* Disable BCI */
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		savage_out32(0x48C18, savage_in32(0x48C18, par) & 0x3FF0, par);
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		/* Setup BCI command overflow buffer */
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		savage_out32(0x48C14,
			     (par->cob_offset >> 11) | (par->cob_index << 29),
			     par);
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		/* Program shadow status update. */
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		savage_out32(0x48C10, 0x78207220, par);
		savage_out32(0x48C0C, 0, par);
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		/* Enable BCI and command overflow buffer */
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		savage_out32(0x48C18, savage_in32(0x48C18, par) | 0x0C, par);
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		break;
	case S3_SAVAGE4:
	case S3_PROSAVAGE:
	case S3_SUPERSAVAGE:
		/* Disable BCI */
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		savage_out32(0x48C18, savage_in32(0x48C18, par) & 0x3FF0, par);
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		/* Program shadow status update */
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		savage_out32(0x48C10, 0x00700040, par);
		savage_out32(0x48C0C, 0, par);
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		/* Enable BCI without the COB */
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		savage_out32(0x48C18, savage_in32(0x48C18, par) | 0x08, par);
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		break;
	case S3_SAVAGE2000:
		/* Disable BCI */
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		savage_out32(0x48C18, 0, par);
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		/* Setup BCI command overflow buffer */
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		savage_out32(0x48C18,
			     (par->cob_offset >> 7) | (par->cob_index),
			     par);
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		/* Disable shadow status update */
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		savage_out32(0x48A30, 0, par);
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		/* Enable BCI and command overflow buffer */
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		savage_out32(0x48C18, savage_in32(0x48C18, par) | 0x00280000,
			     par);
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		break;
	    default:
		break;
	}
	/* Turn on 16-bit register access. */
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	vga_out8(0x3d4, 0x31, par);
	vga_out8(0x3d5, 0x0c, par);
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	/* Set stride to use GBD. */
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	vga_out8(0x3d4, 0x50, par);
	vga_out8(0x3d5, vga_in8(0x3d5, par) | 0xC1, par);
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	/* Enable 2D engine. */
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	vga_out8(0x3d4, 0x40, par);
	vga_out8(0x3d5, 0x01, par);
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	savage_out32(MONO_PAT_0, ~0, par);
	savage_out32(MONO_PAT_1, ~0, par);
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	/* Setup plane masks */
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	savage_out32(0x8128, ~0, par); /* enable all write planes */
	savage_out32(0x812C, ~0, par); /* enable all read planes */
	savage_out16(0x8134, 0x27, par);
	savage_out16(0x8136, 0x07, par);
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	/* Now set the GBD */
	par->bci_ptr = 0;
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	par->SavageWaitFifo(par, 4);
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	BCI_SEND(BCI_CMD_SETREG | (1 << 16) | BCI_GBD1);
	BCI_SEND(0);
	BCI_SEND(BCI_CMD_SETREG | (1 << 16) | BCI_GBD2);
	BCI_SEND(GlobalBitmapDescriptor);
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}

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static void savagefb_set_clip(struct fb_info *info)
{
	struct savagefb_par *par = info->par;
	int cmd;

	cmd = BCI_CMD_NOP | BCI_CMD_CLIP_NEW;
	par->bci_ptr = 0;
	par->SavageWaitFifo(par,3);
	BCI_SEND(cmd);
	BCI_SEND(BCI_CLIP_TL(0, 0));
	BCI_SEND(BCI_CLIP_BR(0xfff, 0xfff));
}
#else
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static void SavageSetup2DEngine(struct savagefb_par  *par) {}
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#endif
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static void SavageCalcClock(long freq, int min_m, int min_n1, int max_n1,
			    int min_n2, int max_n2, long freq_min,
			    long freq_max, unsigned int *mdiv,
			    unsigned int *ndiv, unsigned int *r)
{
	long diff, best_diff;
	unsigned int m;
	unsigned char n1, n2, best_n1=16+2, best_n2=2, best_m=125+2;

	if (freq < freq_min / (1 << max_n2)) {
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		printk(KERN_ERR "invalid frequency %ld Khz\n", freq);
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		freq = freq_min / (1 << max_n2);
	}
	if (freq > freq_max / (1 << min_n2)) {
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		printk(KERN_ERR "invalid frequency %ld Khz\n", freq);
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		freq = freq_max / (1 << min_n2);
	}

	/* work out suitable timings */
	best_diff = freq;

	for (n2=min_n2; n2<=max_n2; n2++) {
		for (n1=min_n1+2; n1<=max_n1+2; n1++) {
			m = (freq * n1 * (1 << n2) + HALF_BASE_FREQ) /
				BASE_FREQ;
			if (m < min_m+2 || m > 127+2)
				continue;
			if ((m * BASE_FREQ >= freq_min * n1) &&
			    (m * BASE_FREQ <= freq_max * n1)) {
				diff = freq * (1 << n2) * n1 - BASE_FREQ * m;
				if (diff < 0)
					diff = -diff;
				if (diff < best_diff) {
					best_diff = diff;
					best_m = m;
					best_n1 = n1;
					best_n2 = n2;
				}
			}
		}
	}

	*ndiv = best_n1 - 2;
	*r = best_n2;
	*mdiv = best_m - 2;
}

static int common_calc_clock(long freq, int min_m, int min_n1, int max_n1,
			     int min_n2, int max_n2, long freq_min,
			     long freq_max, unsigned char *mdiv,
			     unsigned char *ndiv)
{
	long diff, best_diff;
	unsigned int m;
	unsigned char n1, n2;
	unsigned char best_n1 = 16+2, best_n2 = 2, best_m = 125+2;

	best_diff = freq;

	for (n2 = min_n2; n2 <= max_n2; n2++) {
		for (n1 = min_n1+2; n1 <= max_n1+2; n1++) {
			m = (freq * n1 * (1 << n2) + HALF_BASE_FREQ) /
				BASE_FREQ;
			if (m < min_m + 2 || m > 127+2)
				continue;
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			if ((m * BASE_FREQ >= freq_min * n1) &&
			    (m * BASE_FREQ <= freq_max * n1)) {
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				diff = freq * (1 << n2) * n1 - BASE_FREQ * m;
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				if (diff < 0)
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					diff = -diff;
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				if (diff < best_diff) {
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					best_diff = diff;
					best_m = m;
					best_n1 = n1;
					best_n2 = n2;
				}
			}
		}
	}

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	if (max_n1 == 63)
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		*ndiv = (best_n1 - 2) | (best_n2 << 6);
	else
		*ndiv = (best_n1 - 2) | (best_n2 << 5);

	*mdiv = best_m - 2;

	return 0;
}

#ifdef SAVAGEFB_DEBUG
/* This function is used to debug, it prints out the contents of s3 regs */

static void SavagePrintRegs(void)
{
	unsigned char i;
	int vgaCRIndex = 0x3d4;
	int vgaCRReg = 0x3d5;

	printk(KERN_DEBUG "SR    x0 x1 x2 x3 x4 x5 x6 x7 x8 x9 xA xB xC xD xE "
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	       "xF");
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	for (i = 0; i < 0x70; i++) {
		if (!(i % 16))
			printk(KERN_DEBUG "\nSR%xx ", i >> 4);
		vga_out8(0x3c4, i, par);
		printk(KERN_DEBUG " %02x", vga_in8(0x3c5, par));
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	}

	printk(KERN_DEBUG "\n\nCR    x0 x1 x2 x3 x4 x5 x6 x7 x8 x9 xA xB xC "
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	       "xD xE xF");
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	for (i = 0; i < 0xB7; i++) {
		if (!(i % 16))
			printk(KERN_DEBUG "\nCR%xx ", i >> 4);
		vga_out8(vgaCRIndex, i, par);
		printk(KERN_DEBUG " %02x", vga_in8(vgaCRReg, par));
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	}

	printk(KERN_DEBUG "\n\n");
}
#endif

/* --------------------------------------------------------------------- */

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static void savage_get_default_par(struct savagefb_par *par, struct savage_reg *reg)
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{
	unsigned char cr3a, cr53, cr66;

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	vga_out16(0x3d4, 0x4838, par);
	vga_out16(0x3d4, 0xa039, par);
	vga_out16(0x3c4, 0x0608, par);

	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x80, par);
	vga_out8(0x3d4, 0x3a, par);
	cr3a = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3a | 0x80, par);
	vga_out8(0x3d4, 0x53, par);
	cr53 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr53 & 0x7f, par);

	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);

	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);
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	/* unlock extended seq regs */
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	vga_out8(0x3c4, 0x08, par);
	reg->SR08 = vga_in8(0x3c5, par);
	vga_out8(0x3c5, 0x06, par);
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	/* now save all the extended regs we need */
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	vga_out8(0x3d4, 0x31, par);
	reg->CR31 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x32, par);
	reg->CR32 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x34, par);
	reg->CR34 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x36, par);
	reg->CR36 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x3a, par);
	reg->CR3A = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x40, par);
	reg->CR40 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x42, par);
	reg->CR42 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x45, par);
	reg->CR45 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x50, par);
	reg->CR50 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x51, par);
	reg->CR51 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x53, par);
	reg->CR53 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x58, par);
	reg->CR58 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x60, par);
	reg->CR60 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x66, par);
	reg->CR66 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x67, par);
	reg->CR67 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x68, par);
	reg->CR68 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x69, par);
	reg->CR69 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x6f, par);
	reg->CR6F = vga_in8(0x3d5, par);

	vga_out8(0x3d4, 0x33, par);
	reg->CR33 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x86, par);
	reg->CR86 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x88, par);
	reg->CR88 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x90, par);
	reg->CR90 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x91, par);
	reg->CR91 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0xb0, par);
	reg->CRB0 = vga_in8(0x3d5, par) | 0x80;
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	/* extended mode timing regs */
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	vga_out8(0x3d4, 0x3b, par);
	reg->CR3B = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x3c, par);
	reg->CR3C = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x43, par);
	reg->CR43 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x5d, par);
	reg->CR5D = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x5e, par);
	reg->CR5E = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x65, par);
	reg->CR65 = vga_in8(0x3d5, par);
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	/* save seq extended regs for DCLK PLL programming */
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	vga_out8(0x3c4, 0x0e, par);
	reg->SR0E = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x0f, par);
	reg->SR0F = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x10, par);
	reg->SR10 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x11, par);
	reg->SR11 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x12, par);
	reg->SR12 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x13, par);
	reg->SR13 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x29, par);
	reg->SR29 = vga_in8(0x3c5, par);

	vga_out8(0x3c4, 0x15, par);
	reg->SR15 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x30, par);
	reg->SR30 = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x18, par);
	reg->SR18 = vga_in8(0x3c5, par);
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	/* Save flat panel expansion regsters. */
	if (par->chip == S3_SAVAGE_MX) {
		int i;

		for (i = 0; i < 8; i++) {
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			vga_out8(0x3c4, 0x54+i, par);
			reg->SR54[i] = vga_in8(0x3c5, par);
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		}
	}

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	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x80, par);
	vga_out8(0x3d4, 0x3a, par);
	cr3a = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3a | 0x80, par);
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	/* now save MIU regs */
	if (par->chip != S3_SAVAGE_MX) {
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		reg->MMPR0 = savage_in32(FIFO_CONTROL_REG, par);
		reg->MMPR1 = savage_in32(MIU_CONTROL_REG, par);
		reg->MMPR2 = savage_in32(STREAMS_TIMEOUT_REG, par);
		reg->MMPR3 = savage_in32(MISC_TIMEOUT_REG, par);
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	}

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	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
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}

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static void savage_set_default_par(struct savagefb_par *par,
				struct savage_reg *reg)
{
	unsigned char cr3a, cr53, cr66;

	vga_out16(0x3d4, 0x4838, par);
	vga_out16(0x3d4, 0xa039, par);
	vga_out16(0x3c4, 0x0608, par);

	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x80, par);
	vga_out8(0x3d4, 0x3a, par);
	cr3a = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3a | 0x80, par);
	vga_out8(0x3d4, 0x53, par);
	cr53 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr53 & 0x7f, par);

	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);

	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);

	/* unlock extended seq regs */
	vga_out8(0x3c4, 0x08, par);
	vga_out8(0x3c5, reg->SR08, par);
	vga_out8(0x3c5, 0x06, par);

	/* now restore all the extended regs we need */
	vga_out8(0x3d4, 0x31, par);
	vga_out8(0x3d5, reg->CR31, par);
	vga_out8(0x3d4, 0x32, par);
	vga_out8(0x3d5, reg->CR32, par);
	vga_out8(0x3d4, 0x34, par);
	vga_out8(0x3d5, reg->CR34, par);
	vga_out8(0x3d4, 0x36, par);
	vga_out8(0x3d5,reg->CR36, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, reg->CR3A, par);
	vga_out8(0x3d4, 0x40, par);
	vga_out8(0x3d5, reg->CR40, par);
	vga_out8(0x3d4, 0x42, par);
	vga_out8(0x3d5, reg->CR42, par);
	vga_out8(0x3d4, 0x45, par);
	vga_out8(0x3d5, reg->CR45, par);
	vga_out8(0x3d4, 0x50, par);
	vga_out8(0x3d5, reg->CR50, par);
	vga_out8(0x3d4, 0x51, par);
	vga_out8(0x3d5, reg->CR51, par);
	vga_out8(0x3d4, 0x53, par);
	vga_out8(0x3d5, reg->CR53, par);
	vga_out8(0x3d4, 0x58, par);
	vga_out8(0x3d5, reg->CR58, par);
	vga_out8(0x3d4, 0x60, par);
	vga_out8(0x3d5, reg->CR60, par);
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, reg->CR66, par);
	vga_out8(0x3d4, 0x67, par);
	vga_out8(0x3d5, reg->CR67, par);
	vga_out8(0x3d4, 0x68, par);
	vga_out8(0x3d5, reg->CR68, par);
	vga_out8(0x3d4, 0x69, par);
	vga_out8(0x3d5, reg->CR69, par);
	vga_out8(0x3d4, 0x6f, par);
	vga_out8(0x3d5, reg->CR6F, par);

	vga_out8(0x3d4, 0x33, par);
	vga_out8(0x3d5, reg->CR33, par);
	vga_out8(0x3d4, 0x86, par);
	vga_out8(0x3d5, reg->CR86, par);
	vga_out8(0x3d4, 0x88, par);
	vga_out8(0x3d5, reg->CR88, par);
	vga_out8(0x3d4, 0x90, par);
	vga_out8(0x3d5, reg->CR90, par);
	vga_out8(0x3d4, 0x91, par);
	vga_out8(0x3d5, reg->CR91, par);
	vga_out8(0x3d4, 0xb0, par);
	vga_out8(0x3d5, reg->CRB0, par);

	/* extended mode timing regs */
	vga_out8(0x3d4, 0x3b, par);
	vga_out8(0x3d5, reg->CR3B, par);
	vga_out8(0x3d4, 0x3c, par);
	vga_out8(0x3d5, reg->CR3C, par);
	vga_out8(0x3d4, 0x43, par);
	vga_out8(0x3d5, reg->CR43, par);
	vga_out8(0x3d4, 0x5d, par);
	vga_out8(0x3d5, reg->CR5D, par);
	vga_out8(0x3d4, 0x5e, par);
	vga_out8(0x3d5, reg->CR5E, par);
	vga_out8(0x3d4, 0x65, par);
	vga_out8(0x3d5, reg->CR65, par);

	/* save seq extended regs for DCLK PLL programming */
	vga_out8(0x3c4, 0x0e, par);
	vga_out8(0x3c5, reg->SR0E, par);
	vga_out8(0x3c4, 0x0f, par);
	vga_out8(0x3c5, reg->SR0F, par);
	vga_out8(0x3c4, 0x10, par);
	vga_out8(0x3c5, reg->SR10, par);
	vga_out8(0x3c4, 0x11, par);
	vga_out8(0x3c5, reg->SR11, par);
	vga_out8(0x3c4, 0x12, par);
	vga_out8(0x3c5, reg->SR12, par);
	vga_out8(0x3c4, 0x13, par);
	vga_out8(0x3c5, reg->SR13, par);
	vga_out8(0x3c4, 0x29, par);
	vga_out8(0x3c5, reg->SR29, par);

	vga_out8(0x3c4, 0x15, par);
	vga_out8(0x3c5, reg->SR15, par);
	vga_out8(0x3c4, 0x30, par);
	vga_out8(0x3c5, reg->SR30, par);
	vga_out8(0x3c4, 0x18, par);
	vga_out8(0x3c5, reg->SR18, par);

	/* Save flat panel expansion regsters. */
	if (par->chip == S3_SAVAGE_MX) {
		int i;

		for (i = 0; i < 8; i++) {
			vga_out8(0x3c4, 0x54+i, par);
			vga_out8(0x3c5, reg->SR54[i], par);
		}
	}

	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x80, par);
	vga_out8(0x3d4, 0x3a, par);
	cr3a = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3a | 0x80, par);

	/* now save MIU regs */
	if (par->chip != S3_SAVAGE_MX) {
		savage_out32(FIFO_CONTROL_REG, reg->MMPR0, par);
		savage_out32(MIU_CONTROL_REG, reg->MMPR1, par);
		savage_out32(STREAMS_TIMEOUT_REG, reg->MMPR2, par);
		savage_out32(MISC_TIMEOUT_REG, reg->MMPR3, par);
	}

	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
}

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static void savage_update_var(struct fb_var_screeninfo *var, struct fb_videomode *modedb)
{
	var->xres = var->xres_virtual = modedb->xres;
	var->yres = modedb->yres;
        if (var->yres_virtual < var->yres)
	    var->yres_virtual = var->yres;
        var->xoffset = var->yoffset = 0;
        var->pixclock = modedb->pixclock;
        var->left_margin = modedb->left_margin;
        var->right_margin = modedb->right_margin;
        var->upper_margin = modedb->upper_margin;
        var->lower_margin = modedb->lower_margin;
        var->hsync_len = modedb->hsync_len;
        var->vsync_len = modedb->vsync_len;
        var->sync = modedb->sync;
        var->vmode = modedb->vmode;
}

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static int savagefb_check_var(struct fb_var_screeninfo   *var,
			      struct fb_info *info)
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{
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	struct savagefb_par *par = info->par;
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	int memlen, vramlen, mode_valid = 0;

	DBG("savagefb_check_var");

	var->transp.offset = 0;
	var->transp.length = 0;
	switch (var->bits_per_pixel) {
	case 8:
		var->red.offset = var->green.offset =
			var->blue.offset = 0;
		var->red.length = var->green.length =
			var->blue.length = var->bits_per_pixel;
		break;
	case 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;
		break;
	case 32:
		var->transp.offset = 24;
		var->transp.length = 8;
		var->red.offset = 16;
		var->red.length = 8;
		var->green.offset = 8;
		var->green.length = 8;
		var->blue.offset = 0;
		var->blue.length = 8;
		break;

	default:
		return -EINVAL;
	}

	if (!info->monspecs.hfmax || !info->monspecs.vfmax ||
	    !info->monspecs.dclkmax || !fb_validate_mode(var, info))
		mode_valid = 1;

	/* calculate modeline if supported by monitor */
	if (!mode_valid && info->monspecs.gtf) {
		if (!fb_get_mode(FB_MAXTIMINGS, 0, var, info))
			mode_valid = 1;
	}

	if (!mode_valid) {
		struct fb_videomode *mode;

		mode = fb_find_best_mode(var, &info->modelist);
		if (mode) {
			savage_update_var(var, mode);
			mode_valid = 1;
		}
	}

	if (!mode_valid && info->monspecs.modedb_len)
		return -EINVAL;

	/* Is the mode larger than the LCD panel? */
	if (par->SavagePanelWidth &&
	    (var->xres > par->SavagePanelWidth ||
	     var->yres > par->SavagePanelHeight)) {
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		printk(KERN_INFO "Mode (%dx%d) larger than the LCD panel "
		       "(%dx%d)\n", var->xres,  var->yres,
		       par->SavagePanelWidth,
		       par->SavagePanelHeight);
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		return -1;
	}

	if (var->yres_virtual < var->yres)
		var->yres_virtual = var->yres;
	if (var->xres_virtual < var->xres)
		var->xres_virtual = var->xres;

	vramlen = info->fix.smem_len;

	memlen = var->xres_virtual * var->bits_per_pixel *
		var->yres_virtual / 8;
	if (memlen > vramlen) {
		var->yres_virtual = vramlen * 8 /
			(var->xres_virtual * var->bits_per_pixel);
		memlen = var->xres_virtual * var->bits_per_pixel *
			var->yres_virtual / 8;
	}

	/* we must round yres/xres down, we already rounded y/xres_virtual up
	   if it was possible. We should return -EINVAL, but I disagree */
	if (var->yres_virtual < var->yres)
		var->yres = var->yres_virtual;
	if (var->xres_virtual < var->xres)
		var->xres = var->xres_virtual;
	if (var->xoffset + var->xres > var->xres_virtual)
		var->xoffset = var->xres_virtual - var->xres;
	if (var->yoffset + var->yres > var->yres_virtual)
		var->yoffset = var->yres_virtual - var->yres;

	return 0;
}


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static int savagefb_decode_var(struct fb_var_screeninfo   *var,
			       struct savagefb_par        *par,
			       struct savage_reg          *reg)
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{
	struct xtimings timings;
	int width, dclk, i, j; /*, refresh; */
	unsigned int m, n, r;
	unsigned char tmp = 0;
	unsigned int pixclock = var->pixclock;

	DBG("savagefb_decode_var");

971
	memset(&timings, 0, sizeof(timings));
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	if (!pixclock) pixclock = 10000;	/* 10ns = 100MHz */
	timings.Clock = 1000000000 / pixclock;
	if (timings.Clock < 1) timings.Clock = 1;
	timings.dblscan = var->vmode & FB_VMODE_DOUBLE;
	timings.interlaced = var->vmode & FB_VMODE_INTERLACED;
	timings.HDisplay = var->xres;
	timings.HSyncStart = timings.HDisplay + var->right_margin;
	timings.HSyncEnd = timings.HSyncStart + var->hsync_len;
	timings.HTotal = timings.HSyncEnd + var->left_margin;
	timings.VDisplay = var->yres;
	timings.VSyncStart = timings.VDisplay + var->lower_margin;
	timings.VSyncEnd = timings.VSyncStart + var->vsync_len;
	timings.VTotal = timings.VSyncEnd + var->upper_margin;
	timings.sync = var->sync;


	par->depth  = var->bits_per_pixel;
	par->vwidth = var->xres_virtual;

	if (var->bits_per_pixel == 16  &&  par->chip == S3_SAVAGE3D) {
		timings.HDisplay *= 2;
		timings.HSyncStart *= 2;
		timings.HSyncEnd *= 2;
		timings.HTotal *= 2;
	}

	/*
	 * This will allocate the datastructure and initialize all of the
	 * generic VGA registers.
	 */
1003
	vgaHWInit(var, par, &timings, reg);
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	/* We need to set CR67 whether or not we use the BIOS. */

	dclk = timings.Clock;
1008
	reg->CR67 = 0x00;
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1010
	switch(var->bits_per_pixel) {
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	case 8:
1012
		if ((par->chip == S3_SAVAGE2000) && (dclk >= 230000))
1013
			reg->CR67 = 0x10;	/* 8bpp, 2 pixels/clock */
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		else
1015
			reg->CR67 = 0x00;	/* 8bpp, 1 pixel/clock */
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		break;
	case 15:
1018 1019
		if (S3_SAVAGE_MOBILE_SERIES(par->chip) ||
		    ((par->chip == S3_SAVAGE2000) && (dclk >= 230000)))
1020
			reg->CR67 = 0x30;	/* 15bpp, 2 pixel/clock */
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1021
		else
1022
			reg->CR67 = 0x20;	/* 15bpp, 1 pixels/clock */
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		break;
	case 16:
1025 1026
		if (S3_SAVAGE_MOBILE_SERIES(par->chip) ||
		   ((par->chip == S3_SAVAGE2000) && (dclk >= 230000)))
1027
			reg->CR67 = 0x50;	/* 16bpp, 2 pixel/clock */
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		else
1029
			reg->CR67 = 0x40;	/* 16bpp, 1 pixels/clock */
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		break;
	case 24:
1032
		reg->CR67 = 0x70;
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		break;
	case 32:
1035
		reg->CR67 = 0xd0;
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		break;
	}

	/*
	 * Either BIOS use is disabled, or we failed to find a suitable
	 * match.  Fall back to traditional register-crunching.
	 */

1044 1045
	vga_out8(0x3d4, 0x3a, par);
	tmp = vga_in8(0x3d5, par);
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	if (1 /*FIXME:psav->pci_burst*/)
1047
		reg->CR3A = (tmp & 0x7f) | 0x15;
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1048
	else
1049
		reg->CR3A = tmp | 0x95;
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1050

1051 1052 1053
	reg->CR53 = 0x00;
	reg->CR31 = 0x8c;
	reg->CR66 = 0x89;
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1054

1055 1056
	vga_out8(0x3d4, 0x58, par);
	reg->CR58 = vga_in8(0x3d5, par) & 0x80;
1057
	reg->CR58 |= 0x13;
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1058

1059 1060 1061
	reg->SR15 = 0x03 | 0x80;
	reg->SR18 = 0x00;
	reg->CR43 = reg->CR45 = reg->CR65 = 0x00;
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1063 1064
	vga_out8(0x3d4, 0x40, par);
	reg->CR40 = vga_in8(0x3d5, par) & ~0x01;
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1066 1067 1068 1069
	reg->MMPR0 = 0x010400;
	reg->MMPR1 = 0x00;
	reg->MMPR2 = 0x0808;
	reg->MMPR3 = 0x08080810;
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1071
	SavageCalcClock(dclk, 1, 1, 127, 0, 4, 180000, 360000, &m, &n, &r);
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	/* m = 107; n = 4; r = 2; */

	if (par->MCLK <= 0) {
1075 1076
		reg->SR10 = 255;
		reg->SR11 = 255;
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	} else {
1078
		common_calc_clock(par->MCLK, 1, 1, 31, 0, 3, 135000, 270000,
1079 1080 1081
				   &reg->SR11, &reg->SR10);
		/*      reg->SR10 = 80; // MCLK == 286000 */
		/*      reg->SR11 = 125; */
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	}

1084 1085 1086
	reg->SR12 = (r << 6) | (n & 0x3f);
	reg->SR13 = m & 0xff;
	reg->SR29 = (r & 4) | (m & 0x100) >> 5 | (n & 0x40) >> 2;
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	if (var->bits_per_pixel < 24)
1089
		reg->MMPR0 -= 0x8000;
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1090
	else
1091
		reg->MMPR0 -= 0x4000;
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1092 1093

	if (timings.interlaced)
1094
		reg->CR42 = 0x20;
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1095
	else
1096
		reg->CR42 = 0x00;
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1097

1098
	reg->CR34 = 0x10; /* display fifo */
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	i = ((((timings.HTotal >> 3) - 5) & 0x100) >> 8) |
		((((timings.HDisplay >> 3) - 1) & 0x100) >> 7) |
		((((timings.HSyncStart >> 3) - 1) & 0x100) >> 6) |
		((timings.HSyncStart & 0x800) >> 7);

	if ((timings.HSyncEnd >> 3) - (timings.HSyncStart >> 3) > 64)
		i |= 0x08;
	if ((timings.HSyncEnd >> 3) - (timings.HSyncStart >> 3) > 32)
		i |= 0x20;

1110 1111
	j = (reg->CRTC[0] + ((i & 0x01) << 8) +
	     reg->CRTC[4] + ((i & 0x10) << 4) + 1) / 2;
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1113 1114 1115 1116
	if (j - (reg->CRTC[4] + ((i & 0x10) << 4)) < 4) {
		if (reg->CRTC[4] + ((i & 0x10) << 4) + 4 <=
		    reg->CRTC[0] + ((i & 0x01) << 8))
			j = reg->CRTC[4] + ((i & 0x10) << 4) + 4;
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1117
		else
1118
			j = reg->CRTC[0] + ((i & 0x01) << 8) + 1;
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1119 1120
	}

1121
	reg->CR3B = j & 0xff;
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	i |= (j & 0x100) >> 2;
1123 1124 1125
	reg->CR3C = (reg->CRTC[0] + ((i & 0x01) << 8)) / 2;
	reg->CR5D = i;
	reg->CR5E = (((timings.VTotal - 2) & 0x400) >> 10) |
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		(((timings.VDisplay - 1) & 0x400) >> 9) |
		(((timings.VSyncStart) & 0x400) >> 8) |
		(((timings.VSyncStart) & 0x400) >> 6) | 0x40;
	width = (var->xres_virtual * ((var->bits_per_pixel+7) / 8)) >> 3;
1130 1131 1132 1133
	reg->CR91 = reg->CRTC[19] = 0xff & width;
	reg->CR51 = (0x300 & width) >> 4;
	reg->CR90 = 0x80 | (width >> 8);
	reg->MiscOutReg |= 0x0c;
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	/* Set frame buffer description. */

	if (var->bits_per_pixel <= 8)
1138
		reg->CR50 = 0;
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1139
	else if (var->bits_per_pixel <= 16)
1140
		reg->CR50 = 0x10;
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1141
	else
1142
		reg->CR50 = 0x30;
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1143 1144

	if (var->xres_virtual <= 640)
1145
		reg->CR50 |= 0x40;
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1146
	else if (var->xres_virtual == 800)
1147
		reg->CR50 |= 0x80;
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1148
	else if (var->xres_virtual == 1024)
1149
		reg->CR50 |= 0x00;
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1150
	else if (var->xres_virtual == 1152)
1151
		reg->CR50 |= 0x01;
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1152
	else if (var->xres_virtual == 1280)
1153
		reg->CR50 |= 0xc0;
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1154
	else if (var->xres_virtual == 1600)
1155
		reg->CR50 |= 0x81;
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1156
	else
1157
		reg->CR50 |= 0xc1;	/* Use GBD */
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1158

1159
	if (par->chip == S3_SAVAGE2000)
1160
		reg->CR33 = 0x08;
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1161
	else
1162
		reg->CR33 = 0x20;
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1163

1164
	reg->CRTC[0x17] = 0xeb;
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1165

1166
	reg->CR67 |= 1;
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1167

1168
	vga_out8(0x3d4, 0x36, par);
1169 1170 1171
	reg->CR36 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x68, par);
	reg->CR68 = vga_in8(0x3d5, par);
1172
	reg->CR69 = 0;
1173 1174 1175 1176 1177 1178 1179 1180
	vga_out8(0x3d4, 0x6f, par);
	reg->CR6F = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x86, par);
	reg->CR86 = vga_in8(0x3d5, par);
	vga_out8(0x3d4, 0x88, par);
	reg->CR88 = vga_in8(0x3d5, par) | 0x08;
	vga_out8(0x3d4, 0xb0, par);
	reg->CRB0 = vga_in8(0x3d5, par) | 0x80;
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	return 0;
}

/* --------------------------------------------------------------------- */

/*
 *    Set a single color register. Return != 0 for invalid regno.
 */
static int savagefb_setcolreg(unsigned        regno,
			      unsigned        red,
			      unsigned        green,
			      unsigned        blue,
			      unsigned        transp,
			      struct fb_info *info)
{
1197
	struct savagefb_par *par = info->par;
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1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208

	if (regno >= NR_PALETTE)
		return -EINVAL;

	par->palette[regno].red    = red;
	par->palette[regno].green  = green;
	par->palette[regno].blue   = blue;
	par->palette[regno].transp = transp;

	switch (info->var.bits_per_pixel) {
	case 8:
1209
		vga_out8(0x3c8, regno, par);
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1211 1212 1213
		vga_out8(0x3c9, red   >> 10, par);
		vga_out8(0x3c9, green >> 10, par);
		vga_out8(0x3c9, blue  >> 10, par);
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		break;

	case 16:
		if (regno < 16)
			((u32 *)info->pseudo_palette)[regno] =
				((red   & 0xf800)      ) |
				((green & 0xfc00) >>  5) |
				((blue  & 0xf800) >> 11);
		break;

	case 24:
		if (regno < 16)
			((u32 *)info->pseudo_palette)[regno] =
				((red    & 0xff00) <<  8) |
				((green  & 0xff00)      ) |
				((blue   & 0xff00) >>  8);
		break;
	case 32:
		if (regno < 16)
			((u32 *)info->pseudo_palette)[regno] =
				((transp & 0xff00) << 16) |
				((red    & 0xff00) <<  8) |
				((green  & 0xff00)      ) |
				((blue   & 0xff00) >>  8);
		break;

	default:
		return 1;
	}

	return 0;
}

1247
static void savagefb_set_par_int(struct savagefb_par  *par, struct savage_reg *reg)
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{
	unsigned char tmp, cr3a, cr66, cr67;

1251
	DBG("savagefb_set_par_int");
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1252

1253
	par->SavageWaitIdle(par);
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1254

1255
	vga_out8(0x3c2, 0x23, par);
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1257 1258 1259
	vga_out16(0x3d4, 0x4838, par);
	vga_out16(0x3d4, 0xa539, par);
	vga_out16(0x3c4, 0x0608, par);
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1261
	vgaHWProtect(par, 1);
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	/*
	 * Some Savage/MX and /IX systems go nuts when trying to exit the
	 * server after WindowMaker has displayed a gradient background.  I
	 * haven't been able to find what causes it, but a non-destructive
	 * switch to mode 3 here seems to eliminate the issue.
	 */

1270
	VerticalRetraceWait(par);
1271 1272 1273
	vga_out8(0x3d4, 0x67, par);
	cr67 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr67/*par->CR67*/ & ~0x0c, par); /* no STREAMS yet */
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1275 1276 1277 1278
	vga_out8(0x3d4, 0x23, par);
	vga_out8(0x3d5, 0x00, par);
	vga_out8(0x3d4, 0x26, par);
	vga_out8(0x3d5, 0x00, par);
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1279 1280

	/* restore extended regs */
1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, reg->CR66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, reg->CR3A, par);
	vga_out8(0x3d4, 0x31, par);
	vga_out8(0x3d5, reg->CR31, par);
	vga_out8(0x3d4, 0x32, par);
	vga_out8(0x3d5, reg->CR32, par);
	vga_out8(0x3d4, 0x58, par);
	vga_out8(0x3d5, reg->CR58, par);
	vga_out8(0x3d4, 0x53, par);
	vga_out8(0x3d5, reg->CR53 & 0x7f, par);

	vga_out16(0x3c4, 0x0608, par);
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	/* Restore DCLK registers. */

1298 1299 1300 1301 1302 1303 1304 1305
	vga_out8(0x3c4, 0x0e, par);
	vga_out8(0x3c5, reg->SR0E, par);
	vga_out8(0x3c4, 0x0f, par);
	vga_out8(0x3c5, reg->SR0F, par);
	vga_out8(0x3c4, 0x29, par);
	vga_out8(0x3c5, reg->SR29, par);
	vga_out8(0x3c4, 0x15, par);
	vga_out8(0x3c5, reg->SR15, par);
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1306 1307

	/* Restore flat panel expansion regsters. */
1308
	if (par->chip == S3_SAVAGE_MX) {
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1309 1310
		int i;

1311 1312 1313
		for (i = 0; i < 8; i++) {
			vga_out8(0x3c4, 0x54+i, par);
			vga_out8(0x3c5, reg->SR54[i], par);
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1314 1315 1316
		}
	}

1317
	vgaHWRestore (par, reg);
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	/* extended mode timing registers */
1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
	vga_out8(0x3d4, 0x53, par);
	vga_out8(0x3d5, reg->CR53, par);
	vga_out8(0x3d4, 0x5d, par);
	vga_out8(0x3d5, reg->CR5D, par);
	vga_out8(0x3d4, 0x5e, par);
	vga_out8(0x3d5, reg->CR5E, par);
	vga_out8(0x3d4, 0x3b, par);
	vga_out8(0x3d5, reg->CR3B, par);
	vga_out8(0x3d4, 0x3c, par);
	vga_out8(0x3d5, reg->CR3C, par);
	vga_out8(0x3d4, 0x43, par);
	vga_out8(0x3d5, reg->CR43, par);
	vga_out8(0x3d4, 0x65, par);
	vga_out8(0x3d5, reg->CR65, par);
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1334 1335

	/* restore the desired video mode with cr67 */
1336
	vga_out8(0x3d4, 0x67, par);
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1337
	/* following part not present in X11 driver */
1338 1339 1340 1341
	cr67 = vga_in8(0x3d5, par) & 0xf;
	vga_out8(0x3d5, 0x50 | cr67, par);
	udelay(10000);
	vga_out8(0x3d4, 0x67, par);
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1342
	/* end of part */
1343
	vga_out8(0x3d5, reg->CR67 & ~0x0c, par);
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1344 1345

	/* other mode timing and extended regs */
1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357
	vga_out8(0x3d4, 0x34, par);
	vga_out8(0x3d5, reg->CR34, par);
	vga_out8(0x3d4, 0x40, par);
	vga_out8(0x3d5, reg->CR40, par);
	vga_out8(0x3d4, 0x42, par);
	vga_out8(0x3d5, reg->CR42, par);
	vga_out8(0x3d4, 0x45, par);
	vga_out8(0x3d5, reg->CR45, par);
	vga_out8(0x3d4, 0x50, par);
	vga_out8(0x3d5, reg->CR50, par);
	vga_out8(0x3d4, 0x51, par);
	vga_out8(0x3d5, reg->CR51, par);
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1358 1359

	/* memory timings */
1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380
	vga_out8(0x3d4, 0x36, par);
	vga_out8(0x3d5, reg->CR36, par);
	vga_out8(0x3d4, 0x60, par);
	vga_out8(0x3d5, reg->CR60, par);
	vga_out8(0x3d4, 0x68, par);
	vga_out8(0x3d5, reg->CR68, par);
	vga_out8(0x3d4, 0x69, par);
	vga_out8(0x3d5, reg->CR69, par);
	vga_out8(0x3d4, 0x6f, par);
	vga_out8(0x3d5, reg->CR6F, par);

	vga_out8(0x3d4, 0x33, par);
	vga_out8(0x3d5, reg->CR33, par);
	vga_out8(0x3d4, 0x86, par);
	vga_out8(0x3d5, reg->CR86, par);
	vga_out8(0x3d4, 0x88, par);
	vga_out8(0x3d5, reg->CR88, par);
	vga_out8(0x3d4, 0x90, par);
	vga_out8(0x3d5, reg->CR90, par);
	vga_out8(0x3d4, 0x91, par);
	vga_out8(0x3d5, reg->CR91, par);
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1381 1382

	if (par->chip == S3_SAVAGE4) {
1383 1384
		vga_out8(0x3d4, 0xb0, par);
		vga_out8(0x3d5, reg->CRB0, par);
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1385 1386
	}

1387 1388
	vga_out8(0x3d4, 0x32, par);
	vga_out8(0x3d5, reg->CR32, par);
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1389 1390

	/* unlock extended seq regs */
1391 1392
	vga_out8(0x3c4, 0x08, par);
	vga_out8(0x3c5, 0x06, par);
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	/* Restore extended sequencer regs for MCLK. SR10 == 255 indicates
	 * that we should leave the default SR10 and SR11 values there.
	 */
1397
	if (reg->SR10 != 255) {
1398 1399 1400 1401
		vga_out8(0x3c4, 0x10, par);
		vga_out8(0x3c5, reg->SR10, par);
		vga_out8(0x3c4, 0x11, par);
		vga_out8(0x3c5, reg->SR11, par);
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	}

	/* restore extended seq regs for dclk */
1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416
	vga_out8(0x3c4, 0x0e, par);
	vga_out8(0x3c5, reg->SR0E, par);
	vga_out8(0x3c4, 0x0f, par);
	vga_out8(0x3c5, reg->SR0F, par);
	vga_out8(0x3c4, 0x12, par);
	vga_out8(0x3c5, reg->SR12, par);
	vga_out8(0x3c4, 0x13, par);
	vga_out8(0x3c5, reg->SR13, par);
	vga_out8(0x3c4, 0x29, par);
	vga_out8(0x3c5, reg->SR29, par);
	vga_out8(0x3c4, 0x18, par);
	vga_out8(0x3c5, reg->SR18, par);
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	/* load new m, n pll values for dclk & mclk */
1419 1420
	vga_out8(0x3c4, 0x15, par);
	tmp = vga_in8(0x3c5, par) & ~0x21;
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1422 1423 1424 1425 1426
	vga_out8(0x3c5, tmp | 0x03, par);
	vga_out8(0x3c5, tmp | 0x23, par);
	vga_out8(0x3c5, tmp | 0x03, par);
	vga_out8(0x3c5, reg->SR15, par);
	udelay(100);
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1428 1429 1430 1431
	vga_out8(0x3c4, 0x30, par);
	vga_out8(0x3c5, reg->SR30, par);
	vga_out8(0x3c4, 0x08, par);
	vga_out8(0x3c5, reg->SR08, par);
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	/* now write out cr67 in full, possibly starting STREAMS */
1434
	VerticalRetraceWait(par);
1435 1436
	vga_out8(0x3d4, 0x67, par);
	vga_out8(0x3d5, reg->CR67, par);
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1438 1439 1440 1441 1442 1443
	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x80, par);
	vga_out8(0x3d4, 0x3a, par);
	cr3a = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3a | 0x80, par);
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	if (par->chip != S3_SAVAGE_MX) {
1446
		VerticalRetraceWait(par);
1447 1448 1449 1450 1451 1452 1453
		savage_out32(FIFO_CONTROL_REG, reg->MMPR0, par);
		par->SavageWaitIdle(par);
		savage_out32(MIU_CONTROL_REG, reg->MMPR1, par);
		par->SavageWaitIdle(par);
		savage_out32(STREAMS_TIMEOUT_REG, reg->MMPR2, par);
		par->SavageWaitIdle(par);
		savage_out32(MISC_TIMEOUT_REG, reg->MMPR3, par);
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	}

1456 1457 1458 1459
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66, par);
	vga_out8(0x3d4, 0x3a, par);
	vga_out8(0x3d5, cr3a, par);
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1461 1462
	SavageSetup2DEngine(par);
	vgaHWProtect(par, 0);
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}

1465 1466
static void savagefb_update_start(struct savagefb_par      *par,
				  struct fb_var_screeninfo *var)
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{
	int base;

	base = ((var->yoffset * var->xres_virtual + (var->xoffset & ~1))
		* ((var->bits_per_pixel+7) / 8)) >> 2;

	/* now program the start address registers */
1474 1475
	vga_out16(0x3d4, (base & 0x00ff00) | 0x0c, par);
	vga_out16(0x3d4, ((base & 0x00ff) << 8) | 0x0d, par);
1476 1477
	vga_out8(0x3d4, 0x69, par);
	vga_out8(0x3d5, (base & 0x7f0000) >> 16, par);
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}


static void savagefb_set_fix(struct fb_info *info)
{
	info->fix.line_length = info->var.xres_virtual *
		info->var.bits_per_pixel / 8;

1486
	if (info->var.bits_per_pixel == 8) {
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		info->fix.visual      = FB_VISUAL_PSEUDOCOLOR;
1488 1489
		info->fix.xpanstep    = 4;
	} else {
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		info->fix.visual      = FB_VISUAL_TRUECOLOR;
1491 1492 1493
		info->fix.xpanstep    = 2;
	}

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}

1496
static int savagefb_set_par(struct fb_info *info)
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{
1498
	struct savagefb_par *par = info->par;
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	struct fb_var_screeninfo *var = &info->var;
	int err;

	DBG("savagefb_set_par");
1503
	err = savagefb_decode_var(var, par, &par->state);
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	if (err)
		return err;

	if (par->dacSpeedBpp <= 0) {
		if (var->bits_per_pixel > 24)
			par->dacSpeedBpp = par->clock[3];
		else if (var->bits_per_pixel >= 24)
			par->dacSpeedBpp = par->clock[2];
		else if ((var->bits_per_pixel > 8) && (var->bits_per_pixel < 24))
			par->dacSpeedBpp = par->clock[1];
		else if (var->bits_per_pixel <= 8)
			par->dacSpeedBpp = par->clock[0];
	}

	/* Set ramdac limits */
	par->maxClock = par->dacSpeedBpp;
	par->minClock = 10000;

1522 1523
	savagefb_set_par_int(par, &par->state);
	fb_set_cmap(&info->cmap, info);
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	savagefb_set_fix(info);
	savagefb_set_clip(info);

	SavagePrintRegs();
	return 0;
}

/*
 *    Pan or Wrap the Display
 */
1534 1535
static int savagefb_pan_display(struct fb_var_screeninfo *var,
				struct fb_info           *info)
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{
1537
	struct savagefb_par *par = info->par;
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1539
	savagefb_update_start(par, var);
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	return 0;
}

1543 1544 1545 1546 1547 1548
static int savagefb_blank(int blank, struct fb_info *info)
{
	struct savagefb_par *par = info->par;
	u8 sr8 = 0, srd = 0;

	if (par->display_type == DISP_CRT) {
1549 1550
		vga_out8(0x3c4, 0x08, par);
		sr8 = vga_in8(0x3c5, par);
1551
		sr8 |= 0x06;
1552 1553 1554
		vga_out8(0x3c5, sr8, par);
		vga_out8(0x3c4, 0x0d, par);
		srd = vga_in8(0x3c5, par);
1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571
		srd &= 0x03;

		switch (blank) {
		case FB_BLANK_UNBLANK:
		case FB_BLANK_NORMAL:
			break;
		case FB_BLANK_VSYNC_SUSPEND:
			srd |= 0x10;
			break;
		case FB_BLANK_HSYNC_SUSPEND:
			srd |= 0x40;
			break;
		case FB_BLANK_POWERDOWN:
			srd |= 0x50;
			break;
		}

1572 1573
		vga_out8(0x3c4, 0x0d, par);
		vga_out8(0x3c5, srd, par);
1574 1575 1576 1577 1578 1579 1580
	}

	if (par->display_type == DISP_LCD ||
	    par->display_type == DISP_DFP) {
		switch(blank) {
		case FB_BLANK_UNBLANK:
		case FB_BLANK_NORMAL:
1581 1582
			vga_out8(0x3c4, 0x31, par); /* SR31 bit 4 - FP enable */
			vga_out8(0x3c5, vga_in8(0x3c5, par) | 0x10, par);
1583 1584 1585 1586
			break;
		case FB_BLANK_VSYNC_SUSPEND:
		case FB_BLANK_HSYNC_SUSPEND:
		case FB_BLANK_POWERDOWN:
1587 1588
			vga_out8(0x3c4, 0x31, par); /* SR31 bit 4 - FP enable */
			vga_out8(0x3c5, vga_in8(0x3c5, par) & ~0x10, par);
1589 1590 1591 1592 1593 1594
			break;
		}
	}

	return (blank == FB_BLANK_NORMAL) ? 1 : 0;
}
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1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611
static void savagefb_save_state(struct fb_info *info)
{
	struct savagefb_par *par = info->par;

	savage_get_default_par(par, &par->save);
}

static void savagefb_restore_state(struct fb_info *info)
{
	struct savagefb_par *par = info->par;

	savagefb_blank(FB_BLANK_POWERDOWN, info);
	savage_set_default_par(par, &par->save);
	savagefb_blank(FB_BLANK_UNBLANK, info);
}

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static struct fb_ops savagefb_ops = {
	.owner          = THIS_MODULE,
	.fb_check_var   = savagefb_check_var,
	.fb_set_par     = savagefb_set_par,
	.fb_setcolreg   = savagefb_setcolreg,
	.fb_pan_display = savagefb_pan_display,
1618
	.fb_blank       = savagefb_blank,
1619 1620
	.fb_save_state  = savagefb_save_state,
	.fb_restore_state = savagefb_restore_state,
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#if defined(CONFIG_FB_SAVAGE_ACCEL)
	.fb_fillrect    = savagefb_fillrect,
	.fb_copyarea    = savagefb_copyarea,
	.fb_imageblit   = savagefb_imageblit,
	.fb_sync        = savagefb_sync,
#else
	.fb_fillrect    = cfb_fillrect,
	.fb_copyarea    = cfb_copyarea,
	.fb_imageblit   = cfb_imageblit,
#endif
};

/* --------------------------------------------------------------------- */

static struct fb_var_screeninfo __devinitdata savagefb_var800x600x8 = {
	.accel_flags =	FB_ACCELF_TEXT,
	.xres =		800,
	.yres =		600,
	.xres_virtual =  800,
	.yres_virtual =  600,
	.bits_per_pixel = 8,
	.pixclock =	25000,
	.left_margin =	88,
	.right_margin =	40,
	.upper_margin =	23,
	.lower_margin =	1,
	.hsync_len =	128,
	.vsync_len =	4,
	.sync =		FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT,
	.vmode =	FB_VMODE_NONINTERLACED
};

1653
static void savage_enable_mmio(struct savagefb_par *par)
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{
	unsigned char val;

1657
	DBG("savage_enable_mmio\n");
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1659 1660 1661 1662
	val = vga_in8(0x3c3, par);
	vga_out8(0x3c3, val | 0x01, par);
	val = vga_in8(0x3cc, par);
	vga_out8(0x3c2, val | 0x01, par);
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	if (par->chip >= S3_SAVAGE4) {
1665 1666 1667
		vga_out8(0x3d4, 0x40, par);
		val = vga_in8(0x3d5, par);
		vga_out8(0x3d5, val | 1, par);
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	}
}


1672
static void savage_disable_mmio(struct savagefb_par *par)
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{
	unsigned char val;

1676
	DBG("savage_disable_mmio\n");
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1678 1679 1680 1681
	if (par->chip >= S3_SAVAGE4) {
		vga_out8(0x3d4, 0x40, par);
		val = vga_in8(0x3d5, par);
		vga_out8(0x3d5, val | 1, par);
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	}
}


1686
static int __devinit savage_map_mmio(struct fb_info *info)
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{
1688
	struct savagefb_par *par = info->par;
1689
	DBG("savage_map_mmio");
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1691 1692
	if (S3_SAVAGE3D_SERIES(par->chip))
		par->mmio.pbase = pci_resource_start(par->pcidev, 0) +
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			SAVAGE_NEWMMIO_REGBASE_S3;
	else
1695
		par->mmio.pbase = pci_resource_start(par->pcidev, 0) +
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			SAVAGE_NEWMMIO_REGBASE_S4;

	par->mmio.len = SAVAGE_NEWMMIO_REGSIZE;

1700
	par->mmio.vbase = ioremap(par->mmio.pbase, par->mmio.len);
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	if (!par->mmio.vbase) {
1702
		printk("savagefb: unable to map memory mapped IO\n");
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		return -ENOMEM;
	} else
1705
		printk(KERN_INFO "savagefb: mapped io at %p\n",
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			par->mmio.vbase);

	info->fix.mmio_start = par->mmio.pbase;
	info->fix.mmio_len   = par->mmio.len;

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	par->bci_base = (u32 __iomem *)(par->mmio.vbase + BCI_BUFFER_OFFSET);
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	par->bci_ptr  = 0;

1714
	savage_enable_mmio(par);
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	return 0;
}

1719
static void savage_unmap_mmio(struct fb_info *info)
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{
1721
	struct savagefb_par *par = info->par;
1722
	DBG("savage_unmap_mmio");
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	savage_disable_mmio(par);

	if (par->mmio.vbase) {
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		iounmap(par->mmio.vbase);
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		par->mmio.vbase = NULL;
	}
}

1732 1733
static int __devinit savage_map_video(struct fb_info *info,
				      int video_len)
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{
1735
	struct savagefb_par *par = info->par;
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	int resource;

	DBG("savage_map_video");

1740
	if (S3_SAVAGE3D_SERIES(par->chip))
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		resource = 0;
	else
		resource = 1;

1745
	par->video.pbase = pci_resource_start(par->pcidev, resource);
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	par->video.len   = video_len;
1747
	par->video.vbase = ioremap(par->video.pbase, par->video.len);
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	if (!par->video.vbase) {
1750
		printk("savagefb: unable to map screen memory\n");
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		return -ENOMEM;
	} else
1753 1754
		printk(KERN_INFO "savagefb: mapped framebuffer at %p, "
		       "pbase == %x\n", par->video.vbase, par->video.pbase);
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	info->fix.smem_start = par->video.pbase;
	info->fix.smem_len   = par->video.len - par->cob_size;
	info->screen_base    = par->video.vbase;

#ifdef CONFIG_MTRR
1761 1762
	par->video.mtrr = mtrr_add(par->video.pbase, video_len,
				   MTRR_TYPE_WRCOMB, 1);
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#endif

	/* Clear framebuffer, it's all white in memory after boot */
1766
	memset_io(par->video.vbase, 0, par->video.len);
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	return 0;
}

1771
static void savage_unmap_video(struct fb_info *info)
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{
1773
	struct savagefb_par *par = info->par;
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	DBG("savage_unmap_video");

	if (par->video.vbase) {
#ifdef CONFIG_MTRR
1779
		mtrr_del(par->video.mtrr, par->video.pbase, par->video.len);
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#endif

1782
		iounmap(par->video.vbase);
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		par->video.vbase = NULL;
		info->screen_base = NULL;
	}
}

1788
static int savage_init_hw(struct savagefb_par *par)
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{
	unsigned char config1, m, n, n1, n2, sr8, cr3f, cr66 = 0, tmp;

	static unsigned char RamSavage3D[] = { 8, 4, 4, 2 };
	static unsigned char RamSavage4[] =  { 2, 4, 8, 12, 16, 32, 64, 32 };
	static unsigned char RamSavageMX[] = { 2, 8, 4, 16, 8, 16, 4, 16 };
	static unsigned char RamSavageNB[] = { 0, 2, 4, 8, 16, 32, 2, 2 };
1796
	int videoRam, videoRambytes, dvi;
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	DBG("savage_init_hw");

	/* unprotect CRTC[0-7] */
1801 1802 1803
	vga_out8(0x3d4, 0x11, par);
	tmp = vga_in8(0x3d5, par);
	vga_out8(0x3d5, tmp & 0x7f, par);
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	/* unlock extended regs */
1806 1807 1808
	vga_out16(0x3d4, 0x4838, par);
	vga_out16(0x3d4, 0xa039, par);
	vga_out16(0x3c4, 0x0608, par);
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1810 1811 1812
	vga_out8(0x3d4, 0x40, par);
	tmp = vga_in8(0x3d5, par);
	vga_out8(0x3d5, tmp & ~0x01, par);
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	/* unlock sys regs */
1815 1816
	vga_out8(0x3d4, 0x38, par);
	vga_out8(0x3d5, 0x48, par);
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	/* Unlock system registers. */
1819
	vga_out16(0x3d4, 0x4838, par);
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	/* Next go on to detect amount of installed ram */

1823 1824
	vga_out8(0x3d4, 0x36, par);            /* for register CR36 (CONFG_REG1), */
	config1 = vga_in8(0x3d5, par);    /* get amount of vram installed */
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	/* Compute the amount of video memory and offscreen memory. */

	switch  (par->chip) {
	case S3_SAVAGE3D:
1830
		videoRam = RamSavage3D[(config1 & 0xC0) >> 6 ] * 1024;
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		break;

	case S3_SAVAGE4:
		/*
		 * The Savage4 has one ugly special case to consider.  On
		 * systems with 4 banks of 2Mx32 SDRAM, the BIOS says 4MB
		 * when it really means 8MB.  Why do it the same when you
		 * can do it different...
		 */
1840
		vga_out8(0x3d4, 0x68, par);	/* memory control 1 */
1841
		if ((vga_in8(0x3d5, par) & 0xC0) == (0x01 << 6))
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			RamSavage4[1] = 8;

		/*FALLTHROUGH*/

	case S3_SAVAGE2000:
1847
		videoRam = RamSavage4[(config1 & 0xE0) >> 5] * 1024;
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		break;

	case S3_SAVAGE_MX:
	case S3_SUPERSAVAGE:
1852
		videoRam = RamSavageMX[(config1 & 0x0E) >> 1] * 1024;
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		break;

	case S3_PROSAVAGE:
1856
		videoRam = RamSavageNB[(config1 & 0xE0) >> 5] * 1024;
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		break;

	default:
		/* How did we get here? */
		videoRam = 0;
		break;
	}

	videoRambytes = videoRam * 1024;

1867
	printk(KERN_INFO "savagefb: probed videoram:  %dk\n", videoRam);
L
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1868 1869

	/* reset graphics engine to avoid memory corruption */
1870 1871 1872 1873
	vga_out8(0x3d4, 0x66, par);
	cr66 = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr66 | 0x02, par);
	udelay(10000);
L
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1874

1875 1876 1877
	vga_out8(0x3d4, 0x66, par);
	vga_out8(0x3d5, cr66 & ~0x02, par);	/* clear reset flag */
	udelay(10000);
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1878 1879 1880 1881 1882 1883


	/*
	 * reset memory interface, 3D engine, AGP master, PCI master,
	 * master engine unit, motion compensation/LPB
	 */
1884 1885 1886 1887
	vga_out8(0x3d4, 0x3f, par);
	cr3f = vga_in8(0x3d5, par);
	vga_out8(0x3d5, cr3f | 0x08, par);
	udelay(10000);
L
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1888

1889 1890 1891
	vga_out8(0x3d4, 0x3f, par);
	vga_out8(0x3d5, cr3f & ~0x08, par);	/* clear reset flags */
	udelay(10000);
L
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1892 1893 1894 1895 1896 1897 1898 1899 1900

	/* Savage ramdac speeds */
	par->numClocks = 4;
	par->clock[0] = 250000;
	par->clock[1] = 250000;
	par->clock[2] = 220000;
	par->clock[3] = 220000;

	/* detect current mclk */
1901 1902 1903 1904 1905 1906 1907 1908 1909
	vga_out8(0x3c4, 0x08, par);
	sr8 = vga_in8(0x3c5, par);
	vga_out8(0x3c5, 0x06, par);
	vga_out8(0x3c4, 0x10, par);
	n = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x11, par);
	m = vga_in8(0x3c5, par);
	vga_out8(0x3c4, 0x08, par);
	vga_out8(0x3c5, sr8, par);
L
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1910 1911 1912 1913
	m &= 0x7f;
	n1 = n & 0x1f;
	n2 = (n >> 5) & 0x03;
	par->MCLK = ((1431818 * (m+2)) / (n1+2) / (1 << n2) + 50) / 100;
1914
	printk(KERN_INFO "savagefb: Detected current MCLK value of %d kHz\n",
L
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1915 1916
		par->MCLK);

1917 1918 1919 1920 1921 1922
	/* check for DVI/flat panel */
	dvi = 0;

	if (par->chip == S3_SAVAGE4) {
		unsigned char sr30 = 0x00;

1923
		vga_out8(0x3c4, 0x30, par);
1924
		/* clear bit 1 */
1925 1926
		vga_out8(0x3c5, vga_in8(0x3c5, par) & ~0x02, par);
		sr30 = vga_in8(0x3c5, par);
1927 1928 1929 1930 1931 1932
		if (sr30 & 0x02 /*0x04 */) {
			dvi = 1;
			printk("savagefb: Digital Flat Panel Detected\n");
		}
	}

1933
	if (S3_SAVAGE_MOBILE_SERIES(par->chip) && !par->crtonly)
1934 1935 1936 1937 1938 1939
		par->display_type = DISP_LCD;
	else if (dvi || (par->chip == S3_SAVAGE4 && par->dvi))
		par->display_type = DISP_DFP;
	else
		par->display_type = DISP_CRT;

L
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1940 1941
	/* Check LCD panel parrmation */

1942
	if (par->display_type == DISP_LCD) {
1943
		unsigned char cr6b = VGArCR(0x6b, par);
L
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1944

1945 1946 1947 1948
		int panelX = (VGArSEQ(0x61, par) +
			      ((VGArSEQ(0x66, par) & 0x02) << 7) + 1) * 8;
		int panelY = (VGArSEQ(0x69, par) +
			      ((VGArSEQ(0x6e, par) & 0x70) << 4) + 1);
L
Linus Torvalds 已提交
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969

		char * sTechnology = "Unknown";

		/* OK, I admit it.  I don't know how to limit the max dot clock
		 * for LCD panels of various sizes.  I thought I copied the
		 * formula from the BIOS, but many users have parrmed me of
		 * my folly.
		 *
		 * Instead, I'll abandon any attempt to automatically limit the
		 * clock, and add an LCDClock option to XF86Config.  Some day,
		 * I should come back to this.
		 */

		enum ACTIVE_DISPLAYS { /* These are the bits in CR6B */
			ActiveCRT = 0x01,
			ActiveLCD = 0x02,
			ActiveTV = 0x04,
			ActiveCRT2 = 0x20,
			ActiveDUO = 0x80
		};

1970
		if ((VGArSEQ(0x39, par) & 0x03) == 0) {
L
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1971
			sTechnology = "TFT";
1972
		} else if ((VGArSEQ(0x30, par) & 0x01) == 0) {
L
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1973 1974 1975 1976 1977
			sTechnology = "DSTN";
		} else 	{
			sTechnology = "STN";
		}

1978 1979 1980
		printk(KERN_INFO "savagefb: %dx%d %s LCD panel detected %s\n",
		       panelX, panelY, sTechnology,
		       cr6b & ActiveLCD ? "and active" : "but not active");
L
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1981

1982
		if (cr6b & ActiveLCD) 	{
L
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1983 1984 1985 1986 1987
			/*
			 * If the LCD is active and panel expansion is enabled,
			 * we probably want to kill the HW cursor.
			 */

1988 1989
			printk(KERN_INFO "savagefb: Limiting video mode to "
				"%dx%d\n", panelX, panelY);
L
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1990 1991 1992 1993

			par->SavagePanelWidth = panelX;
			par->SavagePanelHeight = panelY;

1994 1995
		} else
			par->display_type = DISP_CRT;
L
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1996 1997
	}

1998
	savage_get_default_par(par, &par->state);
1999
	par->save = par->state;
L
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2000

2001
	if (S3_SAVAGE4_SERIES(par->chip)) {
L
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2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019
		/*
		 * The Savage4 and ProSavage have COB coherency bugs which
		 * render the buffer useless.  We disable it.
		 */
		par->cob_index = 2;
		par->cob_size = 0x8000 << par->cob_index;
		par->cob_offset = videoRambytes;
	} else {
		/* We use 128kB for the COB on all chips. */

		par->cob_index  = 7;
		par->cob_size   = 0x400 << par->cob_index;
		par->cob_offset = videoRambytes - par->cob_size;
	}

	return videoRambytes;
}

2020 2021 2022
static int __devinit savage_init_fb_info(struct fb_info *info,
					 struct pci_dev *dev,
					 const struct pci_device_id *id)
L
Linus Torvalds 已提交
2023
{
2024
	struct savagefb_par *par = info->par;
L
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2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037
	int err = 0;

	par->pcidev  = dev;

	info->fix.type	   = FB_TYPE_PACKED_PIXELS;
	info->fix.type_aux	   = 0;
	info->fix.ypanstep	   = 1;
	info->fix.ywrapstep   = 0;
	info->fix.accel       = id->driver_data;

	switch (info->fix.accel) {
	case FB_ACCEL_SUPERSAVAGE:
		par->chip = S3_SUPERSAVAGE;
2038
		snprintf(info->fix.id, 16, "SuperSavage");
L
Linus Torvalds 已提交
2039 2040 2041
		break;
	case FB_ACCEL_SAVAGE4:
		par->chip = S3_SAVAGE4;
2042
		snprintf(info->fix.id, 16, "Savage4");
L
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2043 2044 2045
		break;
	case FB_ACCEL_SAVAGE3D:
		par->chip = S3_SAVAGE3D;
2046
		snprintf(info->fix.id, 16, "Savage3D");
L
Linus Torvalds 已提交
2047 2048 2049
		break;
	case FB_ACCEL_SAVAGE3D_MV:
		par->chip = S3_SAVAGE3D;
2050
		snprintf(info->fix.id, 16, "Savage3D-MV");
L
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2051 2052 2053
		break;
	case FB_ACCEL_SAVAGE2000:
		par->chip = S3_SAVAGE2000;
2054
		snprintf(info->fix.id, 16, "Savage2000");
L
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2055 2056 2057
		break;
	case FB_ACCEL_SAVAGE_MX_MV:
		par->chip = S3_SAVAGE_MX;
2058
		snprintf(info->fix.id, 16, "Savage/MX-MV");
L
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2059 2060 2061
		break;
	case FB_ACCEL_SAVAGE_MX:
		par->chip = S3_SAVAGE_MX;
2062
		snprintf(info->fix.id, 16, "Savage/MX");
L
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2063 2064 2065
		break;
	case FB_ACCEL_SAVAGE_IX_MV:
		par->chip = S3_SAVAGE_MX;
2066
		snprintf(info->fix.id, 16, "Savage/IX-MV");
L
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2067 2068 2069
		break;
	case FB_ACCEL_SAVAGE_IX:
		par->chip = S3_SAVAGE_MX;
2070
		snprintf(info->fix.id, 16, "Savage/IX");
L
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2071 2072 2073
		break;
	case FB_ACCEL_PROSAVAGE_PM:
		par->chip = S3_PROSAVAGE;
2074
		snprintf(info->fix.id, 16, "ProSavagePM");
L
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2075 2076 2077
		break;
	case FB_ACCEL_PROSAVAGE_KM:
		par->chip = S3_PROSAVAGE;
2078
		snprintf(info->fix.id, 16, "ProSavageKM");
L
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2079 2080
		break;
	case FB_ACCEL_S3TWISTER_P:
2081
		par->chip = S3_PROSAVAGE;
2082
		snprintf(info->fix.id, 16, "TwisterP");
L
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2083 2084
		break;
	case FB_ACCEL_S3TWISTER_K:
2085
		par->chip = S3_PROSAVAGE;
2086
		snprintf(info->fix.id, 16, "TwisterK");
L
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2087 2088
		break;
	case FB_ACCEL_PROSAVAGE_DDR:
2089
		par->chip = S3_PROSAVAGE;
2090
		snprintf(info->fix.id, 16, "ProSavageDDR");
L
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2091 2092 2093
		break;
	case FB_ACCEL_PROSAVAGE_DDRK:
		par->chip = S3_PROSAVAGE;
2094
		snprintf(info->fix.id, 16, "ProSavage8");
L
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2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132
		break;
	}

	if (S3_SAVAGE3D_SERIES(par->chip)) {
		par->SavageWaitIdle = savage3D_waitidle;
		par->SavageWaitFifo = savage3D_waitfifo;
	} else if (S3_SAVAGE4_SERIES(par->chip) ||
		   S3_SUPERSAVAGE == par->chip) {
		par->SavageWaitIdle = savage4_waitidle;
		par->SavageWaitFifo = savage4_waitfifo;
	} else {
		par->SavageWaitIdle = savage2000_waitidle;
		par->SavageWaitFifo = savage2000_waitfifo;
	}

	info->var.nonstd      = 0;
	info->var.activate    = FB_ACTIVATE_NOW;
	info->var.width       = -1;
	info->var.height      = -1;
	info->var.accel_flags = 0;

	info->fbops          = &savagefb_ops;
	info->flags          = FBINFO_DEFAULT |
		               FBINFO_HWACCEL_YPAN |
		               FBINFO_HWACCEL_XPAN;

	info->pseudo_palette = par->pseudo_palette;

#if defined(CONFIG_FB_SAVAGE_ACCEL)
	/* FIFO size + padding for commands */
	info->pixmap.addr = kmalloc(8*1024, GFP_KERNEL);

	err = -ENOMEM;
	if (info->pixmap.addr) {
		memset(info->pixmap.addr, 0, 8*1024);
		info->pixmap.size = 8*1024;
		info->pixmap.scan_align = 4;
		info->pixmap.buf_align = 4;
2133
		info->pixmap.access_align = 32;
L
Linus Torvalds 已提交
2134

2135
		err = fb_alloc_cmap(&info->cmap, NR_PALETTE, 0);
2136
		if (!err)
L
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2137 2138 2139 2140 2141 2142 2143 2144 2145 2146
		info->flags |= FBINFO_HWACCEL_COPYAREA |
	                       FBINFO_HWACCEL_FILLRECT |
		               FBINFO_HWACCEL_IMAGEBLIT;
	}
#endif
	return err;
}

/* --------------------------------------------------------------------- */

2147 2148
static int __devinit savagefb_probe(struct pci_dev* dev,
				    const struct pci_device_id* id)
L
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2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166
{
	struct fb_info *info;
	struct savagefb_par *par;
	u_int h_sync, v_sync;
	int err, lpitch;
	int video_len;

	DBG("savagefb_probe");
	SavagePrintRegs();

	info = framebuffer_alloc(sizeof(struct savagefb_par), &dev->dev);
	if (!info)
		return -ENOMEM;
	par = info->par;
	err = pci_enable_device(dev);
	if (err)
		goto failed_enable;

2167
	if ((err = pci_request_regions(dev, "savagefb"))) {
L
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2168 2169 2170 2171 2172 2173
		printk(KERN_ERR "cannot request PCI regions\n");
		goto failed_enable;
	}

	err = -ENOMEM;

2174
	if ((err = savage_init_fb_info(info, dev, id)))
L
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2175 2176 2177 2178 2179 2180 2181
		goto failed_init;

	err = savage_map_mmio(info);
	if (err)
		goto failed_mmio;

	video_len = savage_init_hw(par);
2182
	/* FIXME: cant be negative */
L
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2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194
	if (video_len < 0) {
		err = video_len;
		goto failed_mmio;
	}

	err = savage_map_video(info, video_len);
	if (err)
		goto failed_video;

	INIT_LIST_HEAD(&info->modelist);
#if defined(CONFIG_FB_SAVAGE_I2C)
	savagefb_create_i2c_busses(info);
2195
	savagefb_probe_i2c_connector(info, &par->edid);
L
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2196
	fb_edid_to_monspecs(par->edid, &info->monspecs);
2197
	kfree(par->edid);
L
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2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208
	fb_videomode_to_modelist(info->monspecs.modedb,
				 info->monspecs.modedb_len,
				 &info->modelist);
#endif
	info->var = savagefb_var800x600x8;

	if (mode_option) {
		fb_find_mode(&info->var, info, mode_option,
			     info->monspecs.modedb, info->monspecs.modedb_len,
			     NULL, 8);
	} else if (info->monspecs.modedb != NULL) {
2209
		struct fb_videomode *modedb;
L
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2210

2211 2212 2213
		modedb = fb_find_best_display(&info->monspecs,
					      &info->modelist);
		savage_update_var(&info->var, modedb);
L
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2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259
	}

	/* maximize virtual vertical length */
	lpitch = info->var.xres_virtual*((info->var.bits_per_pixel + 7) >> 3);
	info->var.yres_virtual = info->fix.smem_len/lpitch;

	if (info->var.yres_virtual < info->var.yres)
		goto failed;

#if defined(CONFIG_FB_SAVAGE_ACCEL)
	/*
	 * The clipping coordinates are masked with 0xFFF, so limit our
	 * virtual resolutions to these sizes.
	 */
	if (info->var.yres_virtual > 0x1000)
		info->var.yres_virtual = 0x1000;

	if (info->var.xres_virtual > 0x1000)
		info->var.xres_virtual = 0x1000;
#endif
	savagefb_check_var(&info->var, info);
	savagefb_set_fix(info);

	/*
	 * Calculate the hsync and vsync frequencies.  Note that
	 * we split the 1e12 constant up so that we can preserve
	 * the precision and fit the results into 32-bit registers.
	 *  (1953125000 * 512 = 1e12)
	 */
	h_sync = 1953125000 / info->var.pixclock;
	h_sync = h_sync * 512 / (info->var.xres + info->var.left_margin +
				 info->var.right_margin +
				 info->var.hsync_len);
	v_sync = h_sync / (info->var.yres + info->var.upper_margin +
			   info->var.lower_margin + info->var.vsync_len);

	printk(KERN_INFO "savagefb v" SAVAGEFB_VERSION ": "
	       "%dkB VRAM, using %dx%d, %d.%03dkHz, %dHz\n",
	       info->fix.smem_len >> 10,
	       info->var.xres, info->var.yres,
	       h_sync / 1000, h_sync % 1000, v_sync);


	fb_destroy_modedb(info->monspecs.modedb);
	info->monspecs.modedb = NULL;

2260
	err = register_framebuffer(info);
L
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2261 2262 2263
	if (err < 0)
		goto failed;

2264 2265
	printk(KERN_INFO "fb: S3 %s frame buffer device\n",
	       info->fix.id);
L
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2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277

	/*
	 * Our driver data
	 */
	pci_set_drvdata(dev, info);

	return 0;

 failed:
#ifdef CONFIG_FB_SAVAGE_I2C
	savagefb_delete_i2c_busses(info);
#endif
2278
	fb_alloc_cmap(&info->cmap, 0, 0);
L
Linus Torvalds 已提交
2279 2280
	savage_unmap_video(info);
 failed_video:
2281
	savage_unmap_mmio(info);
L
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2282 2283 2284 2285 2286 2287 2288 2289 2290 2291
 failed_mmio:
	kfree(info->pixmap.addr);
 failed_init:
	pci_release_regions(dev);
 failed_enable:
	framebuffer_release(info);

	return err;
}

2292
static void __devexit savagefb_remove(struct pci_dev *dev)
L
Linus Torvalds 已提交
2293
{
2294
	struct fb_info *info = pci_get_drvdata(dev);
L
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2295 2296 2297 2298 2299 2300 2301 2302 2303

	DBG("savagefb_remove");

	if (info) {
		/*
		 * If unregister_framebuffer fails, then
		 * we will be leaving hooks that could cause
		 * oopsen laying around.
		 */
2304 2305 2306
		if (unregister_framebuffer(info))
			printk(KERN_WARNING "savagefb: danger danger! "
			       "Oopsen imminent!\n");
L
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2307 2308 2309 2310

#ifdef CONFIG_FB_SAVAGE_I2C
		savagefb_delete_i2c_busses(info);
#endif
2311 2312 2313
		fb_alloc_cmap(&info->cmap, 0, 0);
		savage_unmap_video(info);
		savage_unmap_mmio(info);
L
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2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325
		kfree(info->pixmap.addr);
		pci_release_regions(dev);
		framebuffer_release(info);

		/*
		 * Ensure that the driver data is no longer
		 * valid.
		 */
		pci_set_drvdata(dev, NULL);
	}
}

2326
static int savagefb_suspend(struct pci_dev *dev, pm_message_t mesg)
L
Linus Torvalds 已提交
2327
{
2328 2329
	struct fb_info *info = pci_get_drvdata(dev);
	struct savagefb_par *par = info->par;
L
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2330 2331 2332

	DBG("savagefb_suspend");

2333 2334 2335 2336
	if (mesg.event == PM_EVENT_PRETHAW)
		mesg.event = PM_EVENT_FREEZE;
	par->pm_state = mesg.event;
	dev->dev.power.power_state = mesg;
2337 2338 2339 2340 2341

	/*
	 * For PM_EVENT_FREEZE, do not power down so the console
	 * can remain active.
	 */
2342
	if (mesg.event == PM_EVENT_FREEZE)
2343 2344
		return 0;

L
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2345
	acquire_console_sem();
2346
	fb_set_suspend(info, 1);
L
Linus Torvalds 已提交
2347

2348 2349 2350 2351
	if (info->fbops->fb_sync)
		info->fbops->fb_sync(info);

	savagefb_blank(FB_BLANK_POWERDOWN, info);
2352
	savage_set_default_par(par, &par->save);
2353 2354
	savage_disable_mmio(par);
	pci_save_state(dev);
L
Linus Torvalds 已提交
2355
	pci_disable_device(dev);
2356
	pci_set_power_state(dev, pci_choose_state(dev, mesg));
2357
	release_console_sem();
L
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2358 2359 2360 2361

	return 0;
}

2362
static int savagefb_resume(struct pci_dev* dev)
L
Linus Torvalds 已提交
2363
{
2364 2365
	struct fb_info *info = pci_get_drvdata(dev);
	struct savagefb_par *par = info->par;
2366
	int cur_state = par->pm_state;
L
Linus Torvalds 已提交
2367 2368 2369

	DBG("savage_resume");

2370
	par->pm_state = PM_EVENT_ON;
L
Linus Torvalds 已提交
2371

2372 2373 2374 2375 2376 2377 2378 2379
	/*
	 * The adapter was not powered down coming back from a
	 * PM_EVENT_FREEZE.
	 */
	if (cur_state == PM_EVENT_FREEZE) {
		pci_set_power_state(dev, PCI_D0);
		return 0;
	}
L
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	acquire_console_sem();

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	pci_set_power_state(dev, PCI_D0);
	pci_restore_state(dev);

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	if (pci_enable_device(dev))
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		DBG("err");

	pci_set_master(dev);
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	savage_enable_mmio(par);
	savage_init_hw(par);
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	savagefb_set_par(info);
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	fb_set_suspend(info, 0);
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	savagefb_blank(FB_BLANK_UNBLANK, info);
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	release_console_sem();

	return 0;
}


static struct pci_device_id savagefb_devices[] __devinitdata = {
	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_MX128,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_MX64,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_MX64C,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IX128SDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IX128DDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IX64SDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IX64DDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IXCSDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SUPSAV_IXCDDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SUPERSAVAGE},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE4,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE4},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE3D,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE3D},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE3D_MV,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE3D_MV},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE2000,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE2000},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE_MX_MV,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE_MX_MV},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE_MX,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE_MX},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE_IX_MV,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE_IX_MV},

	{PCI_VENDOR_ID_S3, PCI_CHIP_SAVAGE_IX,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_SAVAGE_IX},

	{PCI_VENDOR_ID_S3, PCI_CHIP_PROSAVAGE_PM,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_PROSAVAGE_PM},

	{PCI_VENDOR_ID_S3, PCI_CHIP_PROSAVAGE_KM,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_PROSAVAGE_KM},

	{PCI_VENDOR_ID_S3, PCI_CHIP_S3TWISTER_P,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_S3TWISTER_P},

	{PCI_VENDOR_ID_S3, PCI_CHIP_S3TWISTER_K,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_S3TWISTER_K},

	{PCI_VENDOR_ID_S3, PCI_CHIP_PROSAVAGE_DDR,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_PROSAVAGE_DDR},

	{PCI_VENDOR_ID_S3, PCI_CHIP_PROSAVAGE_DDRK,
	 PCI_ANY_ID, PCI_ANY_ID, 0, 0, FB_ACCEL_PROSAVAGE_DDRK},

	{0, 0, 0, 0, 0, 0, 0}
};

MODULE_DEVICE_TABLE(pci, savagefb_devices);

static struct pci_driver savagefb_driver = {
	.name =     "savagefb",
	.id_table = savagefb_devices,
	.probe =    savagefb_probe,
	.suspend =  savagefb_suspend,
	.resume =   savagefb_resume,
	.remove =   __devexit_p(savagefb_remove)
};

/* **************************** exit-time only **************************** */

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static void __exit savage_done(void)
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{
	DBG("savage_done");
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	pci_unregister_driver(&savagefb_driver);
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}


/* ************************* init in-kernel code ************************** */

static int __init savagefb_setup(char *options)
{
#ifndef MODULE
	char *this_opt;

	if (!options || !*options)
		return 0;

	while ((this_opt = strsep(&options, ",")) != NULL) {
		mode_option = this_opt;
	}
#endif /* !MODULE */
	return 0;
}

static int __init savagefb_init(void)
{
	char *option;

	DBG("savagefb_init");

	if (fb_get_options("savagefb", &option))
		return -ENODEV;

	savagefb_setup(option);
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	return pci_register_driver(&savagefb_driver);
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}

module_init(savagefb_init);
module_exit(savage_done);
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module_param(mode_option, charp, 0);
MODULE_PARM_DESC(mode_option, "Specify initial video mode");