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path: root/linux/i810_drv.c
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/* i810_drv.c -- I810 driver -*- linux-c -*-
 * Created: Mon Dec 13 01:56:22 1999 by jhartmann@precisioninsight.com
 * 
 * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas.
 * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
 * All Rights Reserved.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 * 
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 * 
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
 * DEALINGS IN THE SOFTWARE.
 *
 * Authors: Rickard E. (Rik) Faith <faith@valinux.com>
 *	    Jeff Hartmann <jhartmann@valinux.com>
 *
 */

#include <linux/config.h>
#define EXPORT_SYMTAB
#include "drmP.h"
#include "i810_drv.h"


EXPORT_SYMBOL(i810_init);
EXPORT_SYMBOL(i810_cleanup);

#define I810_NAME	 "i810"
#define I810_DESC	 "Intel I810"
#define I810_DATE	 "19991213"
#define I810_MAJOR	 1
#define I810_MINOR	 0
#define I810_PATCHLEVEL	 0

static drm_device_t	      i810_device;
drm_ctx_t		      i810_res_ctx;

static struct file_operations i810_fops = {
	open:	 i810_open,
	flush:	 drm_flush,
	release: i810_release,
	ioctl:	 i810_ioctl,
	mmap:	 drm_mmap,
	read:	 drm_read,
	fasync:	 drm_fasync,
      	poll:	 drm_poll,
};

static struct miscdevice      i810_misc = {
	minor: MISC_DYNAMIC_MINOR,
	name:  I810_NAME,
	fops:  &i810_fops,
};

static drm_ioctl_desc_t	      i810_ioctls[] = {
	[DRM_IOCTL_NR(DRM_IOCTL_VERSION)]     = { i810_version,	  0, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_GET_UNIQUE)]  = { drm_getunique,  0, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_GET_MAGIC)]   = { drm_getmagic,	  0, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_IRQ_BUSID)]   = { drm_irq_busid,  0, 1 },

	[DRM_IOCTL_NR(DRM_IOCTL_SET_UNIQUE)]  = { drm_setunique,  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_BLOCK)]	      = { drm_block,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_UNBLOCK)]     = { drm_unblock,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_CONTROL)]     = { i810_control,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AUTH_MAGIC)]  = { drm_authmagic,  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_ADD_MAP)]     = { drm_addmap,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_ADD_BUFS)]    = { i810_addbufs,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_MARK_BUFS)]   = { i810_markbufs,  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_INFO_BUFS)]   = { i810_infobufs,  1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_FREE_BUFS)]   = { i810_freebufs,  1, 0 },

	[DRM_IOCTL_NR(DRM_IOCTL_ADD_CTX)]     = { i810_addctx,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_RM_CTX)]      = { i810_rmctx,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_MOD_CTX)]     = { i810_modctx,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_GET_CTX)]     = { i810_getctx,	  1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_SWITCH_CTX)]  = { i810_switchctx,  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_NEW_CTX)]     = { i810_newctx,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_RES_CTX)]     = { i810_resctx,	  1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_ADD_DRAW)]    = { drm_adddraw,	  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_RM_DRAW)]     = { drm_rmdraw,	  1, 1 },

	[DRM_IOCTL_NR(DRM_IOCTL_LOCK)]	      = { i810_lock,	  1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_UNLOCK)]      = { i810_unlock,	  1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_FINISH)]      = { drm_finish,	  1, 0 },

	[DRM_IOCTL_NR(DRM_IOCTL_AGP_ACQUIRE)] = { drm_agp_acquire, 1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_RELEASE)] = { drm_agp_release, 1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_ENABLE)]  = { drm_agp_enable,  1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_INFO)]    = { drm_agp_info,    1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_ALLOC)]   = { drm_agp_alloc,   1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_FREE)]    = { drm_agp_free,    1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_BIND)]    = { drm_agp_bind,    1, 1 },
	[DRM_IOCTL_NR(DRM_IOCTL_AGP_UNBIND)]  = { drm_agp_unbind,  1, 1 },

   	[DRM_IOCTL_NR(DRM_IOCTL_I810_INIT)]   = { i810_dma_init,   1, 1 },
   	[DRM_IOCTL_NR(DRM_IOCTL_I810_VERTEX)] = { i810_dma_vertex, 1, 0 },
   	[DRM_IOCTL_NR(DRM_IOCTL_I810_CLEAR)]  = { i810_clear_bufs, 1, 0 },
      	[DRM_IOCTL_NR(DRM_IOCTL_I810_FLUSH)]  = { i810_flush_ioctl,1, 0 },
   	[DRM_IOCTL_NR(DRM_IOCTL_I810_GETAGE)] = { i810_getage,     1, 0 },
	[DRM_IOCTL_NR(DRM_IOCTL_I810_GETBUF)] = { i810_getbuf,     1, 0 },
   	[DRM_IOCTL_NR(DRM_IOCTL_I810_SWAP)]   = { i810_swap_bufs,  1, 0 },
};

#define I810_IOCTL_COUNT DRM_ARRAY_SIZE(i810_ioctls)

#ifdef MODULE
int			      init_module(void);
void			      cleanup_module(void);
static char		      *i810 = NULL;

MODULE_AUTHOR("Precision Insight, Inc., Cedar Park, Texas.");
MODULE_DESCRIPTION("Intel I810");
MODULE_PARM(i810, "s");

/* init_module is called when insmod is used to load the module */

int init_module(void)
{
	DRM_DEBUG("doing i810_init()\n");
	return i810_init();
}

/* cleanup_module is called when rmmod is used to unload the module */

void cleanup_module(void)
{
	i810_cleanup();
}
#endif

#ifndef MODULE
/* i810_setup is called by the kernel to parse command-line options passed
 * via the boot-loader (e.g., LILO).  It calls the insmod option routine,
 * drm_parse_drm.
 *
 * This is not currently supported, since it requires changes to
 * linux/init/main.c. */
 

void __init i810_setup(char *str, int *ints)
{
	if (ints[0] != 0) {
		DRM_ERROR("Illegal command line format, ignored\n");
		return;
	}
	drm_parse_options(str);
}
#endif

static int i810_setup(drm_device_t *dev)
{
	int i;
	
	atomic_set(&dev->ioctl_count, 0);
	atomic_set(&dev->vma_count, 0);
	dev->buf_use	  = 0;
	atomic_set(&dev->buf_alloc, 0);

	drm_dma_setup(dev);

	atomic_set(&dev->total_open, 0);
	atomic_set(&dev->total_close, 0);
	atomic_set(&dev->total_ioctl, 0);
	atomic_set(&dev->total_irq, 0);
	atomic_set(&dev->total_ctx, 0);
	atomic_set(&dev->total_locks, 0);
	atomic_set(&dev->total_unlocks, 0);
	atomic_set(&dev->total_contends, 0);
	atomic_set(&dev->total_sleeps, 0);

	for (i = 0; i < DRM_HASH_SIZE; i++) {
		dev->magiclist[i].head = NULL;
		dev->magiclist[i].tail = NULL;
	}
	dev->maplist	    = NULL;
	dev->map_count	    = 0;
	dev->vmalist	    = NULL;
	dev->lock.hw_lock   = NULL;
	init_waitqueue_head(&dev->lock.lock_queue);
	dev->queue_count    = 0;
	dev->queue_reserved = 0;
	dev->queue_slots    = 0;
	dev->queuelist	    = NULL;
	dev->irq	    = 0;
	dev->context_flag   = 0;
	dev->interrupt_flag = 0;
	dev->dma_flag	    = 0;
	dev->last_context   = 0;
	dev->last_switch    = 0;
	dev->last_checked   = 0;
	init_timer(&dev->timer);
	init_waitqueue_head(&dev->context_wait);
#if DRM_DMA_HISTO
	memset(&dev->histo, 0, sizeof(dev->histo));
#endif
	dev->ctx_start	    = 0;
	dev->lck_start	    = 0;
	
	dev->buf_rp	  = dev->buf;
	dev->buf_wp	  = dev->buf;
	dev->buf_end	  = dev->buf + DRM_BSZ;
	dev->buf_async	  = NULL;
	init_waitqueue_head(&dev->buf_readers);
	init_waitqueue_head(&dev->buf_writers);
			
	DRM_DEBUG("\n");
			
	/* The kernel's context could be created here, but is now created
	   in drm_dma_enqueue.	This is more resource-efficient for
	   hardware that does not do DMA, but may mean that
	   drm_select_queue fails between the time the interrupt is
	   initialized and the time the queues are initialized. */
			
	return 0;
}


static int i810_takedown(drm_device_t *dev)
{
	int		  i;
	drm_magic_entry_t *pt, *next;
	drm_map_t	  *map;
	drm_vma_entry_t	  *vma, *vma_next;

	DRM_DEBUG("\n");

	if (dev->irq) i810_irq_uninstall(dev);
	
	down(&dev->struct_sem);
	del_timer(&dev->timer);
	
	if (dev->devname) {
		drm_free(dev->devname, strlen(dev->devname)+1, DRM_MEM_DRIVER);
		dev->devname = NULL;
	}
	
	if (dev->unique) {
		drm_free(dev->unique, strlen(dev->unique)+1, DRM_MEM_DRIVER);
		dev->unique = NULL;
		dev->unique_len = 0;
	}
				/* Clear pid list */
	for (i = 0; i < DRM_HASH_SIZE; i++) {
		for (pt = dev->magiclist[i].head; pt; pt = next) {
			next = pt->next;
			drm_free(pt, sizeof(*pt), DRM_MEM_MAGIC);
		}
		dev->magiclist[i].head = dev->magiclist[i].tail = NULL;
	}
   				/* Clear AGP information */
	if (dev->agp) {
		drm_agp_mem_t *entry;
		drm_agp_mem_t *nexte;
		
				/* Remove AGP resources, but leave dev->agp
                                   intact until r128_cleanup is called. */
		for (entry = dev->agp->memory; entry; entry = nexte) {
			nexte = entry->next;
			if (entry->bound) drm_unbind_agp(entry->memory);
			drm_free_agp(entry->memory, entry->pages);
			drm_free(entry, sizeof(*entry), DRM_MEM_AGPLISTS);
		}
		dev->agp->memory = NULL;
		
		if (dev->agp->acquired && drm_agp.release)
			(*drm_agp.release)();
		
		dev->agp->acquired = 0;
		dev->agp->enabled  = 0;
	}
				/* Clear vma list (only built for debugging) */
	if (dev->vmalist) {
		for (vma = dev->vmalist; vma; vma = vma_next) {
			vma_next = vma->next;
			drm_free(vma, sizeof(*vma), DRM_MEM_VMAS);
		}
		dev->vmalist = NULL;
	}
	
				/* Clear map area and mtrr information */
	if (dev->maplist) {
		for (i = 0; i < dev->map_count; i++) {
			map = dev->maplist[i];
			switch (map->type) {
			case _DRM_REGISTERS:
			case _DRM_FRAME_BUFFER:
#ifdef CONFIG_MTRR
				if (map->mtrr >= 0) {
					int retcode;
					retcode = mtrr_del(map->mtrr,
							   map->offset,
							   map->size);
					DRM_DEBUG("mtrr_del = %d\n", retcode);
				}
#endif
				drm_ioremapfree(map->handle, map->size);
				break;
			case _DRM_SHM:
				drm_free_pages((unsigned long)map->handle,
					       drm_order(map->size)
					       - PAGE_SHIFT,
					       DRM_MEM_SAREA);
				break;
			case _DRM_AGP:
				break;
			}
			drm_free(map, sizeof(*map), DRM_MEM_MAPS);
		}
		drm_free(dev->maplist,
			 dev->map_count * sizeof(*dev->maplist),
			 DRM_MEM_MAPS);
		dev->maplist   = NULL;
		dev->map_count = 0;
	}
	
	if (dev->queuelist) {
		for (i = 0; i < dev->queue_count; i++) {
			drm_waitlist_destroy(&dev->queuelist[i]->waitlist);
			if (dev->queuelist[i]) {
				drm_free(dev->queuelist[i],
					 sizeof(*dev->queuelist[0]),
					 DRM_MEM_QUEUES);
				dev->queuelist[i] = NULL;
			}
		}
		drm_free(dev->queuelist,
			 dev->queue_slots * sizeof(*dev->queuelist),
			 DRM_MEM_QUEUES);
		dev->queuelist	 = NULL;
	}

	drm_dma_takedown(dev);

	dev->queue_count     = 0;
	if (dev->lock.hw_lock) {
		dev->lock.hw_lock    = NULL; /* SHM removed */
		dev->lock.pid	     = 0;
		wake_up_interruptible(&dev->lock.lock_queue);
	}
	up(&dev->struct_sem);
	
	return 0;
}

/* i810_init is called via init_module at module load time, or via
 * linux/init/main.c (this is not currently supported). */

int i810_init(void)
{
	int		      retcode;
	drm_device_t	      *dev = &i810_device;

	DRM_DEBUG("\n");

	memset((void *)dev, 0, sizeof(*dev));
	dev->count_lock	  = SPIN_LOCK_UNLOCKED;
	sema_init(&dev->struct_sem, 1);
	
#ifdef MODULE
	drm_parse_options(i810);
#endif
	DRM_DEBUG("doing misc_register\n");
	if ((retcode = misc_register(&i810_misc))) {
		DRM_ERROR("Cannot register \"%s\"\n", I810_NAME);
		return retcode;
	}
	dev->device = MKDEV(MISC_MAJOR, i810_misc.minor);
	dev->name   = I810_NAME;

   	DRM_DEBUG("doing mem init\n");
	drm_mem_init();
	DRM_DEBUG("doing proc init\n");
	drm_proc_init(dev);
	DRM_DEBUG("doing agp init\n");
	dev->agp    = drm_agp_init();
   	if(dev->agp == NULL) {
	   	DRM_INFO("The i810 drm module requires the agpgart module"
			 " to function correctly\nPlease load the agpgart"
			 " module before you load the i810 module\n");
	   	drm_proc_cleanup();
	   	misc_deregister(&i810_misc);
	   	i810_takedown(dev);
	   	return -ENOMEM;
	}
	DRM_DEBUG("doing ctxbitmap init\n");
	if((retcode = drm_ctxbitmap_init(dev))) {
		DRM_ERROR("Cannot allocate memory for context bitmap.\n");
		drm_proc_cleanup();
		misc_deregister(&i810_misc);
		i810_takedown(dev);
		return retcode;
	}

	DRM_INFO("Initialized %s %d.%d.%d %s on minor %d\n",
		 I810_NAME,
		 I810_MAJOR,
		 I810_MINOR,
		 I810_PATCHLEVEL,
		 I810_DATE,
		 i810_misc.minor);

	return 0;
}

/* i810_cleanup is called via cleanup_module at module unload time. */

void i810_cleanup(void)
{
	drm_device_t	      *dev = &i810_device;

	DRM_DEBUG("\n");
	
	drm_proc_cleanup();
	if (misc_deregister(&i810_misc)) {
		DRM_ERROR("Cannot unload module\n");
	} else {
		DRM_INFO("Module unloaded\n");
	}
	drm_ctxbitmap_cleanup(dev);
	i810_takedown(dev);
	if (dev->agp) {
		drm_free(dev->agp, sizeof(*dev->agp), DRM_MEM_AGPLISTS);
		dev->agp = NULL;
	}
}

int i810_version(struct inode *inode, struct file *filp, unsigned int cmd,
		  unsigned long arg)
{
	drm_version_t version;
	int	      len;

	copy_from_user_ret(&version,
			   (drm_version_t *)arg,
			   sizeof(version),
			   -EFAULT);

#define DRM_COPY(name,value)				     \
	len = strlen(value);				     \
	if (len > name##_len) len = name##_len;		     \
	name##_len = strlen(value);			     \
	if (len && name) {				     \
		copy_to_user_ret(name, value, len, -EFAULT); \
	}

	version.version_major	   = I810_MAJOR;
	version.version_minor	   = I810_MINOR;
	version.version_patchlevel = I810_PATCHLEVEL;

	DRM_COPY(version.name, I810_NAME);
	DRM_COPY(version.date, I810_DATE);
	DRM_COPY(version.desc, I810_DESC);

	copy_to_user_ret((drm_version_t *)arg,
			 &version,
			 sizeof(version),
			 -EFAULT);
	return 0;
}

int i810_open(struct inode *inode, struct file *filp)
{
	drm_device_t  *dev    = &i810_device;
	int	      retcode = 0;
	
	DRM_DEBUG("open_count = %d\n", dev->open_count);
	if (!(retcode = drm_open_helper(inode, filp, dev))) {
		MOD_INC_USE_COUNT;
		atomic_inc(&dev->total_open);
		spin_lock(&dev->count_lock);
		if (!dev->open_count++) {
			spin_unlock(&dev->count_lock);
			return i810_setup(dev);
		}
		spin_unlock(&dev->count_lock);
	}
	return retcode;
}

int i810_release(struct inode *inode, struct file *filp)
{
	drm_file_t    *priv   = filp->private_data;
	drm_device_t  *dev    = priv->dev;
	int	      retcode = 0;

	DRM_DEBUG("pid = %d, device = 0x%x, open_count = %d\n",
		  current->pid, dev->device, dev->open_count);

	if (dev->lock.hw_lock && _DRM_LOCK_IS_HELD(dev->lock.hw_lock->lock)
	    && dev->lock.pid == current->pid) {
	      	i810_reclaim_buffers(dev, priv->pid);
		DRM_ERROR("Process %d dead, freeing lock for context %d\n",
			  current->pid,
			  _DRM_LOCKING_CONTEXT(dev->lock.hw_lock->lock));
		drm_lock_free(dev,
			      &dev->lock.hw_lock->lock,
			      _DRM_LOCKING_CONTEXT(dev->lock.hw_lock->lock));
		
				/* FIXME: may require heavy-handed reset of
                                   hardware at this point, possibly
                                   processed via a callback to the X
                                   server. */
	} else if (dev->lock.hw_lock) {
	   	/* The lock is required to reclaim buffers */
	   	DECLARE_WAITQUEUE(entry, current);
	   	add_wait_queue(&dev->lock.lock_queue, &entry);
		for (;;) {
			if (!dev->lock.hw_lock) {
				/* Device has been unregistered */
				retcode = -EINTR;
				break;
			}
			if (drm_lock_take(&dev->lock.hw_lock->lock,
					  DRM_KERNEL_CONTEXT)) {
				dev->lock.pid	    = priv->pid;
				dev->lock.lock_time = jiffies;
				atomic_inc(&dev->total_locks);
				break;	/* Got lock */
			}			
				/* Contention */
			atomic_inc(&dev->total_sleeps);
			current->state = TASK_INTERRUPTIBLE;
			schedule();
			if (signal_pending(current)) {
				retcode = -ERESTARTSYS;
				break;
			}
		}
		current->state = TASK_RUNNING;
		remove_wait_queue(&dev->lock.lock_queue, &entry);
	   	if(!retcode) {
		   	i810_reclaim_buffers(dev, priv->pid);
		   	drm_lock_free(dev, &dev->lock.hw_lock->lock,
				      DRM_KERNEL_CONTEXT);
		}
	}
	drm_fasync(-1, filp, 0);

	down(&dev->struct_sem);
	if (priv->prev) priv->prev->next = priv->next;
	else		dev->file_first	 = priv->next;
	if (priv->next) priv->next->prev = priv->prev;
	else		dev->file_last	 = priv->prev;
	up(&dev->struct_sem);
	
	drm_free(priv, sizeof(*priv), DRM_MEM_FILES);
   	MOD_DEC_USE_COUNT;
   	atomic_inc(&dev->total_close);
   	spin_lock(&dev->count_lock);
   	if (!--dev->open_count) {
	   	if (atomic_read(&dev->ioctl_count) || dev->blocked) {
		   	DRM_ERROR("Device busy: %d %d\n",
				  atomic_read(&dev->ioctl_count),
				  dev->blocked);
		   	spin_unlock(&dev->count_lock);
		   	return -EBUSY;
		}
	   	spin_unlock(&dev->count_lock);
	   	return i810_takedown(dev);
	}
   	spin_unlock(&dev->count_lock);
	return retcode;
}

/* drm_ioctl is called whenever a process performs an ioctl on /dev/drm. */

int i810_ioctl(struct inode *inode, struct file *filp, unsigned int cmd,
		unsigned long arg)
{
	int		 nr	 = DRM_IOCTL_NR(cmd);
	drm_file_t	 *priv	 = filp->private_data;
	drm_device_t	 *dev	 = priv->dev;
	int		 retcode = 0;
	drm_ioctl_desc_t *ioctl;
	drm_ioctl_t	 *func;

	atomic_inc(&dev->ioctl_count);
	atomic_inc(&dev->total_ioctl);
	++priv->ioctl_count;
	
	DRM_DEBUG("pid = %d, cmd = 0x%02x, nr = 0x%02x, dev 0x%x, auth = %d\n",
		  current->pid, cmd, nr, dev->device, priv->authenticated);

	if (nr >= I810_IOCTL_COUNT) {
		retcode = -EINVAL;
	} else {
		ioctl	  = &i810_ioctls[nr];
		func	  = ioctl->func;

		if (!func) {
			DRM_DEBUG("no function\n");
			retcode = -EINVAL;
		} else if ((ioctl->root_only && !capable(CAP_SYS_ADMIN))
			    || (ioctl->auth_needed && !priv->authenticated)) {
			retcode = -EACCES;
		} else {
			retcode = (func)(inode, filp, cmd, arg);
		}
	}
	
	atomic_dec(&dev->ioctl_count);
	return retcode;
}

int i810_unlock(struct inode *inode, struct file *filp, unsigned int cmd,
		 unsigned long arg)
{
	drm_file_t	  *priv	  = filp->private_data;
	drm_device_t	  *dev	  = priv->dev;
	drm_lock_t	  lock;

	copy_from_user_ret(&lock, (drm_lock_t *)arg, sizeof(lock), -EFAULT);
	
	if (lock.context == DRM_KERNEL_CONTEXT) {
		DRM_ERROR("Process %d using kernel context %d\n",
			  current->pid, lock.context);
		return -EINVAL;
	}

	DRM_DEBUG("%d frees lock (%d holds)\n",
		  lock.context,
		  _DRM_LOCKING_CONTEXT(dev->lock.hw_lock->lock));
	atomic_inc(&dev->total_unlocks);
	if (_DRM_LOCK_IS_CONT(dev->lock.hw_lock->lock))
		atomic_inc(&dev->total_contends);
   	drm_lock_transfer(dev, &dev->lock.hw_lock->lock, DRM_KERNEL_CONTEXT);
	if (!dev->context_flag) {
		if (drm_lock_free(dev, &dev->lock.hw_lock->lock,
				  DRM_KERNEL_CONTEXT)) {
			DRM_ERROR("\n");
		}
	}
#if DRM_DMA_HISTOGRAM
	atomic_inc(&dev->histo.lhld[drm_histogram_slot(get_cycles()
						       - dev->lck_start)]);
#endif
	
	return 0;
}
lass="hl opt">(version); return retval; } /* drmGetLibVersion set version information for the drm user space library. * this version number is driver indepedent */ drmVersionPtr drmGetLibVersion(int fd) { drm_version_t *version = drmMalloc(sizeof(*version)); /* Version history: * revision 1.0.x = original DRM interface with no drmGetLibVersion * entry point and many drm<Device> extensions * revision 1.1.x = added drmCommand entry points for device extensions * added drmGetLibVersion to identify libdrm.a version */ version->version_major = 1; version->version_minor = 1; version->version_patchlevel = 0; return (drmVersionPtr)version; } void drmFreeBusid(const char *busid) { drmFree((void *)busid); } char *drmGetBusid(int fd) { drm_unique_t u; u.unique_len = 0; u.unique = NULL; if (ioctl(fd, DRM_IOCTL_GET_UNIQUE, &u)) return NULL; u.unique = drmMalloc(u.unique_len + 1); if (ioctl(fd, DRM_IOCTL_GET_UNIQUE, &u)) return NULL; u.unique[u.unique_len] = '\0'; return u.unique; } int drmSetBusid(int fd, const char *busid) { drm_unique_t u; u.unique = (char *)busid; u.unique_len = strlen(busid); if (ioctl(fd, DRM_IOCTL_SET_UNIQUE, &u)) { return -errno; } return 0; } int drmGetMagic(int fd, drmMagicPtr magic) { drm_auth_t auth; *magic = 0; if (ioctl(fd, DRM_IOCTL_GET_MAGIC, &auth)) return -errno; *magic = auth.magic; return 0; } int drmAuthMagic(int fd, drmMagic magic) { drm_auth_t auth; auth.magic = magic; if (ioctl(fd, DRM_IOCTL_AUTH_MAGIC, &auth)) return -errno; return 0; } int drmAddMap(int fd, drmHandle offset, drmSize size, drmMapType type, drmMapFlags flags, drmHandlePtr handle) { drm_map_t map; map.offset = offset; /* No longer needed with CVS kernel modules on alpha #ifdef __alpha__ if (type != DRM_SHM) map.offset += BUS_BASE; #endif */ map.size = size; map.handle = 0; map.type = type; map.flags = flags; if (ioctl(fd, DRM_IOCTL_ADD_MAP, &map)) return -errno; if (handle) *handle = (drmHandle)map.handle; return 0; } int drmRmMap(int fd, drmHandle handle) { drm_map_t map; map.handle = (void *)handle; if(ioctl(fd, DRM_IOCTL_RM_MAP, &map)) return -errno; return 0; } int drmAddBufs(int fd, int count, int size, drmBufDescFlags flags, int agp_offset) { drm_buf_desc_t request; request.count = count; request.size = size; request.low_mark = 0; request.high_mark = 0; request.flags = flags; request.agp_start = agp_offset; if (ioctl(fd, DRM_IOCTL_ADD_BUFS, &request)) return -errno; return request.count; } int drmMarkBufs(int fd, double low, double high) { drm_buf_info_t info; int i; info.count = 0; info.list = NULL; if (ioctl(fd, DRM_IOCTL_INFO_BUFS, &info)) return -EINVAL; if (!info.count) return -EINVAL; if (!(info.list = drmMalloc(info.count * sizeof(*info.list)))) return -ENOMEM; if (ioctl(fd, DRM_IOCTL_INFO_BUFS, &info)) { int retval = -errno; drmFree(info.list); return retval; } for (i = 0; i < info.count; i++) { info.list[i].low_mark = low * info.list[i].count; info.list[i].high_mark = high * info.list[i].count; if (ioctl(fd, DRM_IOCTL_MARK_BUFS, &info.list[i])) { int retval = -errno; drmFree(info.list); return retval; } } drmFree(info.list); return 0; } int drmFreeBufs(int fd, int count, int *list) { drm_buf_free_t request; request.count = count; request.list = list; if (ioctl(fd, DRM_IOCTL_FREE_BUFS, &request)) return -errno; return 0; } int drmClose(int fd) { unsigned long key = drmGetKeyFromFd(fd); drmHashEntry *entry = drmGetEntry(fd); drmHashDestroy(entry->tagTable); entry->fd = 0; entry->f = NULL; entry->tagTable = NULL; drmHashDelete(drmHashTable, key); drmFree(entry); return close(fd); } int drmMap(int fd, drmHandle handle, drmSize size, drmAddressPtr address) { static unsigned long pagesize_mask = 0; if (fd < 0) return -EINVAL; if (!pagesize_mask) pagesize_mask = getpagesize() - 1; size = (size + pagesize_mask) & ~pagesize_mask; *address = mmap(0, size, PROT_READ|PROT_WRITE, MAP_SHARED, fd, handle); if (*address == MAP_FAILED) return -errno; return 0; } int drmUnmap(drmAddress address, drmSize size) { return munmap(address, size); } drmBufInfoPtr drmGetBufInfo(int fd) { drm_buf_info_t info; drmBufInfoPtr retval; int i; info.count = 0; info.list = NULL; if (ioctl(fd, DRM_IOCTL_INFO_BUFS, &info)) return NULL; if (info.count) { if (!(info.list = drmMalloc(info.count * sizeof(*info.list)))) return NULL; if (ioctl(fd, DRM_IOCTL_INFO_BUFS, &info)) { drmFree(info.list); return NULL; } /* Now, copy it all back into the client-visible data structure... */ retval = drmMalloc(sizeof(*retval)); retval->count = info.count; retval->list = drmMalloc(info.count * sizeof(*retval->list)); for (i = 0; i < info.count; i++) { retval->list[i].count = info.list[i].count; retval->list[i].size = info.list[i].size; retval->list[i].low_mark = info.list[i].low_mark; retval->list[i].high_mark = info.list[i].high_mark; } drmFree(info.list); return retval; } return NULL; } drmBufMapPtr drmMapBufs(int fd) { drm_buf_map_t bufs; drmBufMapPtr retval; int i; bufs.count = 0; bufs.list = NULL; if (ioctl(fd, DRM_IOCTL_MAP_BUFS, &bufs)) return NULL; if (bufs.count) { if (!(bufs.list = drmMalloc(bufs.count * sizeof(*bufs.list)))) return NULL; if (ioctl(fd, DRM_IOCTL_MAP_BUFS, &bufs)) { drmFree(bufs.list); return NULL; } /* Now, copy it all back into the client-visible data structure... */ retval = drmMalloc(sizeof(*retval)); retval->count = bufs.count; retval->list = drmMalloc(bufs.count * sizeof(*retval->list)); for (i = 0; i < bufs.count; i++) { retval->list[i].idx = bufs.list[i].idx; retval->list[i].total = bufs.list[i].total; retval->list[i].used = 0; retval->list[i].address = bufs.list[i].address; } return retval; } return NULL; } int drmUnmapBufs(drmBufMapPtr bufs) { int i; for (i = 0; i < bufs->count; i++) { munmap(bufs->list[i].address, bufs->list[i].total); } return 0; } #define DRM_DMA_RETRY 16 int drmDMA(int fd, drmDMAReqPtr request) { drm_dma_t dma; int ret, i = 0; /* Copy to hidden structure */ dma.context = request->context; dma.send_count = request->send_count; dma.send_indices = request->send_list; dma.send_sizes = request->send_sizes; dma.flags = request->flags; dma.request_count = request->request_count; dma.request_size = request->request_size; dma.request_indices = request->request_list; dma.request_sizes = request->request_sizes; do { ret = ioctl( fd, DRM_IOCTL_DMA, &dma ); } while ( ret && errno == EAGAIN && i++ < DRM_DMA_RETRY ); if ( ret == 0 ) { request->granted_count = dma.granted_count; return 0; } else { return -errno; } } int drmGetLock(int fd, drmContext context, drmLockFlags flags) { drm_lock_t lock; lock.context = context; lock.flags = 0; if (flags & DRM_LOCK_READY) lock.flags |= _DRM_LOCK_READY; if (flags & DRM_LOCK_QUIESCENT) lock.flags |= _DRM_LOCK_QUIESCENT; if (flags & DRM_LOCK_FLUSH) lock.flags |= _DRM_LOCK_FLUSH; if (flags & DRM_LOCK_FLUSH_ALL) lock.flags |= _DRM_LOCK_FLUSH_ALL; if (flags & DRM_HALT_ALL_QUEUES) lock.flags |= _DRM_HALT_ALL_QUEUES; if (flags & DRM_HALT_CUR_QUEUES) lock.flags |= _DRM_HALT_CUR_QUEUES; while (ioctl(fd, DRM_IOCTL_LOCK, &lock)) ; return 0; } int drmUnlock(int fd, drmContext context) { drm_lock_t lock; lock.context = context; lock.flags = 0; return ioctl(fd, DRM_IOCTL_UNLOCK, &lock); } drmContextPtr drmGetReservedContextList(int fd, int *count) { drm_ctx_res_t res; drm_ctx_t *list; drmContextPtr retval; int i; res.count = 0; res.contexts = NULL; if (ioctl(fd, DRM_IOCTL_RES_CTX, &res)) return NULL; if (!res.count) return NULL; if (!(list = drmMalloc(res.count * sizeof(*list)))) return NULL; if (!(retval = drmMalloc(res.count * sizeof(*retval)))) { drmFree(list); return NULL; } res.contexts = list; if (ioctl(fd, DRM_IOCTL_RES_CTX, &res)) return NULL; for (i = 0; i < res.count; i++) retval[i] = list[i].handle; drmFree(list); *count = res.count; return retval; } void drmFreeReservedContextList(drmContextPtr pt) { drmFree(pt); } int drmCreateContext(int fd, drmContextPtr handle) { drm_ctx_t ctx; ctx.flags = 0; /* Modified with functions below */ if (ioctl(fd, DRM_IOCTL_ADD_CTX, &ctx)) return -errno; *handle = ctx.handle; return 0; } int drmSwitchToContext(int fd, drmContext context) { drm_ctx_t ctx; ctx.handle = context; if (ioctl(fd, DRM_IOCTL_SWITCH_CTX, &ctx)) return -errno; return 0; } int drmSetContextFlags(int fd, drmContext context, drmContextFlags flags) { drm_ctx_t ctx; /* Context preserving means that no context switched are done between DMA buffers from one context and the next. This is suitable for use in the X server (which promises to maintain hardware context, or in the client-side library when buffers are swapped on behalf of two threads. */ ctx.handle = context; ctx.flags = 0; if (flags & DRM_CONTEXT_PRESERVED) ctx.flags |= _DRM_CONTEXT_PRESERVED; if (flags & DRM_CONTEXT_2DONLY) ctx.flags |= _DRM_CONTEXT_2DONLY; if (ioctl(fd, DRM_IOCTL_MOD_CTX, &ctx)) return -errno; return 0; } int drmGetContextFlags(int fd, drmContext context, drmContextFlagsPtr flags) { drm_ctx_t ctx; ctx.handle = context; if (ioctl(fd, DRM_IOCTL_GET_CTX, &ctx)) return -errno; *flags = 0; if (ctx.flags & _DRM_CONTEXT_PRESERVED) *flags |= DRM_CONTEXT_PRESERVED; if (ctx.flags & _DRM_CONTEXT_2DONLY) *flags |= DRM_CONTEXT_2DONLY; return 0; } int drmDestroyContext(int fd, drmContext handle) { drm_ctx_t ctx; ctx.handle = handle; if (ioctl(fd, DRM_IOCTL_RM_CTX, &ctx)) return -errno; return 0; } int drmCreateDrawable(int fd, drmDrawablePtr handle) { drm_draw_t draw; if (ioctl(fd, DRM_IOCTL_ADD_DRAW, &draw)) return -errno; *handle = draw.handle; return 0; } int drmDestroyDrawable(int fd, drmDrawable handle) { drm_draw_t draw; draw.handle = handle; if (ioctl(fd, DRM_IOCTL_RM_DRAW, &draw)) return -errno; return 0; } int drmAgpAcquire(int fd) { if (ioctl(fd, DRM_IOCTL_AGP_ACQUIRE, NULL)) return -errno; return 0; } int drmAgpRelease(int fd) { if (ioctl(fd, DRM_IOCTL_AGP_RELEASE, NULL)) return -errno; return 0; } int drmAgpEnable(int fd, unsigned long mode) { drm_agp_mode_t m; m.mode = mode; if (ioctl(fd, DRM_IOCTL_AGP_ENABLE, &m)) return -errno; return 0; } int drmAgpAlloc(int fd, unsigned long size, unsigned long type, unsigned long *address, unsigned long *handle) { drm_agp_buffer_t b; *handle = 0; b.size = size; b.handle = 0; b.type = type; if (ioctl(fd, DRM_IOCTL_AGP_ALLOC, &b)) return -errno; if (address != 0UL) *address = b.physical; *handle = b.handle; return 0; } int drmAgpFree(int fd, unsigned long handle) { drm_agp_buffer_t b; b.size = 0; b.handle = handle; if (ioctl(fd, DRM_IOCTL_AGP_FREE, &b)) return -errno; return 0; } int drmAgpBind(int fd, unsigned long handle, unsigned long offset) { drm_agp_binding_t b; b.handle = handle; b.offset = offset; if (ioctl(fd, DRM_IOCTL_AGP_BIND, &b)) return -errno; return 0; } int drmAgpUnbind(int fd, unsigned long handle) { drm_agp_binding_t b; b.handle = handle; b.offset = 0; if (ioctl(fd, DRM_IOCTL_AGP_UNBIND, &b)) return -errno; return 0; } int drmAgpVersionMajor(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return -errno; return i.agp_version_major; } int drmAgpVersionMinor(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return -errno; return i.agp_version_minor; } unsigned long drmAgpGetMode(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.mode; } unsigned long drmAgpBase(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.aperture_base; } unsigned long drmAgpSize(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.aperture_size; } unsigned long drmAgpMemoryUsed(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.memory_used; } unsigned long drmAgpMemoryAvail(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.memory_allowed; } unsigned int drmAgpVendorId(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.id_vendor; } unsigned int drmAgpDeviceId(int fd) { drm_agp_info_t i; if (ioctl(fd, DRM_IOCTL_AGP_INFO, &i)) return 0; return i.id_device; } int drmScatterGatherAlloc(int fd, unsigned long size, unsigned long *handle) { drm_scatter_gather_t sg; *handle = 0; sg.size = size; sg.handle = 0; if (ioctl(fd, DRM_IOCTL_SG_ALLOC, &sg)) return -errno; *handle = sg.handle; return 0; } int drmScatterGatherFree(int fd, unsigned long handle) { drm_scatter_gather_t sg; sg.size = 0; sg.handle = handle; if (ioctl(fd, DRM_IOCTL_SG_FREE, &sg)) return -errno; return 0; } int drmError(int err, const char *label) { switch (err) { case DRM_ERR_NO_DEVICE: fprintf(stderr, "%s: no device\n", label); break; case DRM_ERR_NO_ACCESS: fprintf(stderr, "%s: no access\n", label); break; case DRM_ERR_NOT_ROOT: fprintf(stderr, "%s: not root\n", label); break; case DRM_ERR_INVALID: fprintf(stderr, "%s: invalid args\n", label);break; default: if (err < 0) err = -err; fprintf( stderr, "%s: error %d (%s)\n", label, err, strerror(err) ); break; } return 1; } int drmCtlInstHandler(int fd, int irq) { drm_control_t ctl; ctl.func = DRM_INST_HANDLER; ctl.irq = irq; if (ioctl(fd, DRM_IOCTL_CONTROL, &ctl)) return -errno; return 0; } int drmCtlUninstHandler(int fd) { drm_control_t ctl; ctl.func = DRM_UNINST_HANDLER; ctl.irq = 0; if (ioctl(fd, DRM_IOCTL_CONTROL, &ctl)) return -errno; return 0; } int drmFinish(int fd, int context, drmLockFlags flags) { drm_lock_t lock; lock.context = context; lock.flags = 0; if (flags & DRM_LOCK_READY) lock.flags |= _DRM_LOCK_READY; if (flags & DRM_LOCK_QUIESCENT) lock.flags |= _DRM_LOCK_QUIESCENT; if (flags & DRM_LOCK_FLUSH) lock.flags |= _DRM_LOCK_FLUSH; if (flags & DRM_LOCK_FLUSH_ALL) lock.flags |= _DRM_LOCK_FLUSH_ALL; if (flags & DRM_HALT_ALL_QUEUES) lock.flags |= _DRM_HALT_ALL_QUEUES; if (flags & DRM_HALT_CUR_QUEUES) lock.flags |= _DRM_HALT_CUR_QUEUES; if (ioctl(fd, DRM_IOCTL_FINISH, &lock)) return -errno; return 0; } int drmGetInterruptFromBusID(int fd, int busnum, int devnum, int funcnum) { drm_irq_busid_t p; p.busnum = busnum; p.devnum = devnum; p.funcnum = funcnum; if (ioctl(fd, DRM_IOCTL_IRQ_BUSID, &p)) return -errno; return p.irq; } int drmAddContextTag(int fd, drmContext context, void *tag) { drmHashEntry *entry = drmGetEntry(fd); if (drmHashInsert(entry->tagTable, context, tag)) { drmHashDelete(entry->tagTable, context); drmHashInsert(entry->tagTable, context, tag); } return 0; } int drmDelContextTag(int fd, drmContext context) { drmHashEntry *entry = drmGetEntry(fd); return drmHashDelete(entry->tagTable, context); } void *drmGetContextTag(int fd, drmContext context) { drmHashEntry *entry = drmGetEntry(fd); void *value; if (drmHashLookup(entry->tagTable, context, &value)) return NULL; return value; } int drmAddContextPrivateMapping(int fd, drmContext ctx_id, drmHandle handle) { drm_ctx_priv_map_t map; map.ctx_id = ctx_id; map.handle = (void *)handle; if (ioctl(fd, DRM_IOCTL_SET_SAREA_CTX, &map)) return -errno; return 0; } int drmGetContextPrivateMapping(int fd, drmContext ctx_id, drmHandlePtr handle) { drm_ctx_priv_map_t map; map.ctx_id = ctx_id; if (ioctl(fd, DRM_IOCTL_GET_SAREA_CTX, &map)) return -errno; if (handle) *handle = (drmHandle)map.handle; return 0; } int drmGetMap(int fd, int idx, drmHandle *offset, drmSize *size, drmMapType *type, drmMapFlags *flags, drmHandle *handle, int *mtrr) { drm_map_t map; map.offset = idx; if (ioctl(fd, DRM_IOCTL_GET_MAP, &map)) return -errno; *offset = map.offset; *size = map.size; *type = map.type; *flags = map.flags; *handle = (unsigned long)map.handle; *mtrr = map.mtrr; return 0; } int drmGetClient(int fd, int idx, int *auth, int *pid, int *uid, unsigned long *magic, unsigned long *iocs) { drm_client_t client; client.idx = idx; if (ioctl(fd, DRM_IOCTL_GET_CLIENT, &client)) return -errno; *auth = client.auth; *pid = client.pid; *uid = client.uid; *magic = client.magic; *iocs = client.iocs; return 0; } int drmGetStats(int fd, drmStatsT *stats) { drm_stats_t s; int i; if (ioctl(fd, DRM_IOCTL_GET_STATS, &s)) return -errno; stats->count = 0; memset(stats, 0, sizeof(*stats)); if (s.count > sizeof(stats->data)/sizeof(stats->data[0])) return -1; #define SET_VALUE \ stats->data[i].long_format = "%-20.20s"; \ stats->data[i].rate_format = "%8.8s"; \ stats->data[i].isvalue = 1; \ stats->data[i].verbose = 0 #define SET_COUNT \ stats->data[i].long_format = "%-20.20s"; \ stats->data[i].rate_format = "%5.5s"; \ stats->data[i].isvalue = 0; \ stats->data[i].mult_names = "kgm"; \ stats->data[i].mult = 1000; \ stats->data[i].verbose = 0 #define SET_BYTE \ stats->data[i].long_format = "%-20.20s"; \ stats->data[i].rate_format = "%5.5s"; \ stats->data[i].isvalue = 0; \ stats->data[i].mult_names = "KGM"; \ stats->data[i].mult = 1024; \ stats->data[i].verbose = 0 stats->count = s.count; for (i = 0; i < s.count; i++) { stats->data[i].value = s.data[i].value; switch (s.data[i].type) { case _DRM_STAT_LOCK: stats->data[i].long_name = "Lock"; stats->data[i].rate_name = "Lock"; SET_VALUE; break; case _DRM_STAT_OPENS: stats->data[i].long_name = "Opens"; stats->data[i].rate_name = "O"; SET_COUNT; stats->data[i].verbose = 1; break; case _DRM_STAT_CLOSES: stats->data[i].long_name = "Closes"; stats->data[i].rate_name = "Lock"; SET_COUNT; stats->data[i].verbose = 1; break; case _DRM_STAT_IOCTLS: stats->data[i].long_name = "Ioctls"; stats->data[i].rate_name = "Ioc/s"; SET_COUNT; break; case _DRM_STAT_LOCKS: stats->data[i].long_name = "Locks"; stats->data[i].rate_name = "Lck/s"; SET_COUNT; break; case _DRM_STAT_UNLOCKS: stats->data[i].long_name = "Unlocks"; stats->data[i].rate_name = "Unl/s"; SET_COUNT; break; case _DRM_STAT_IRQ: stats->data[i].long_name = "IRQs"; stats->data[i].rate_name = "IRQ/s"; SET_COUNT; break; case _DRM_STAT_PRIMARY: stats->data[i].long_name = "Primary Bytes"; stats->data[i].rate_name = "PB/s"; SET_BYTE; break; case _DRM_STAT_SECONDARY: stats->data[i].long_name = "Secondary Bytes"; stats->data[i].rate_name = "SB/s"; SET_BYTE; break; case _DRM_STAT_DMA: stats->data[i].long_name = "DMA"; stats->data[i].rate_name = "DMA/s"; SET_COUNT; break; case _DRM_STAT_SPECIAL: stats->data[i].long_name = "Special DMA"; stats->data[i].rate_name = "dma/s"; SET_COUNT; break; case _DRM_STAT_MISSED: stats->data[i].long_name = "Miss"; stats->data[i].rate_name = "Ms/s"; SET_COUNT; break; case _DRM_STAT_VALUE: stats->data[i].long_name = "Value"; stats->data[i].rate_name = "Value"; SET_VALUE; break; case _DRM_STAT_BYTE: stats->data[i].long_name = "Bytes"; stats->data[i].rate_name = "B/s"; SET_BYTE; break; case _DRM_STAT_COUNT: default: stats->data[i].long_name = "Count"; stats->data[i].rate_name = "Cnt/s"; SET_COUNT; break; } } return 0; } int drmCommandNone(int fd, unsigned long drmCommandIndex) { void *data = NULL; /* dummy */ unsigned long request; request = DRM_IO( DRM_COMMAND_BASE + drmCommandIndex); if (ioctl(fd, request, data)) { return -errno; } return 0; } int drmCommandRead(int fd, unsigned long drmCommandIndex, void *data, unsigned long size ) { unsigned long request; request = DRM_IOR( DRM_COMMAND_BASE + drmCommandIndex, size); if (ioctl(fd, request, data)) { return -errno; } return 0; } int drmCommandWrite(int fd, unsigned long drmCommandIndex, void *data, unsigned long size ) { unsigned long request; request = DRM_IOW( DRM_COMMAND_BASE + drmCommandIndex, size); if (ioctl(fd, request, data)) { return -errno; } return 0; } int drmCommandWriteRead(int fd, unsigned long drmCommandIndex, void *data, unsigned long size ) { unsigned long request; request = DRM_IOWR( DRM_COMMAND_BASE + drmCommandIndex, size); if (ioctl(fd, request, data)) { return -errno; } return 0; } #if defined(XFree86Server) || defined(DRM_USE_MALLOC) static void drmSIGIOHandler(int interrupt, void *closure) { unsigned long key; void *value; ssize_t count; drm_ctx_t ctx; typedef void (*_drmCallback)(int, void *, void *); char buf[256]; drmContext old; drmContext new; void *oldctx; void *newctx; char *pt; drmHashEntry *entry; if (!drmHashTable) return; if (drmHashFirst(drmHashTable, &key, &value)) { entry = value; do { #if 0 fprintf(stderr, "Trying %d\n", entry->fd); #endif if ((count = read(entry->fd, buf, sizeof(buf)))) { buf[count] = '\0'; #if 0 fprintf(stderr, "Got %s\n", buf); #endif for (pt = buf; *pt != ' '; ++pt); /* Find first space */ ++pt; old = strtol(pt, &pt, 0); new = strtol(pt, NULL, 0); oldctx = drmGetContextTag(entry->fd, old); newctx = drmGetContextTag(entry->fd, new); #if 0 fprintf(stderr, "%d %d %p %p\n", old, new, oldctx, newctx); #endif ((_drmCallback)entry->f)(entry->fd, oldctx, newctx); ctx.handle = new; ioctl(entry->fd, DRM_IOCTL_NEW_CTX, &ctx); } } while (drmHashNext(drmHashTable, &key, &value)); } } int drmInstallSIGIOHandler(int fd, void (*f)(int, void *, void *)) { drmHashEntry *entry; entry = drmGetEntry(fd); entry->f = f; return xf86InstallSIGIOHandler(fd, drmSIGIOHandler, 0); } int drmRemoveSIGIOHandler(int fd) {