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/**
 * \file i915_ioc32.c
 *
 * 32-bit ioctl compatibility routines for the i915 DRM.
 *
 * \author Alan Hourihane <alanh@fairlite.demon.co.uk> 
 *
 *
 * Copyright (C) Paul Mackerras 2005
 * Copyright (C) Alan Hourihane 2005
 * 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
 * THE AUTHOR 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.
 */
#include <linux/compat.h>

#include "drmP.h"
#include "drm.h"
#include "i915_drm.h"

typedef struct _drm_i915_batchbuffer32 {
	int start;		/* agp offset */
	int used;		/* nr bytes in use */
	int DR1;		/* hw flags for GFX_OP_DRAWRECT_INFO */
	int DR4;		/* window origin for GFX_OP_DRAWRECT_INFO */
	int num_cliprects;	/* mulitpass with multiple cliprects? */
	u32 cliprects;	/* pointer to userspace cliprects */
} drm_i915_batchbuffer32_t;

static int compat_i915_batchbuffer(struct file *file, unsigned int cmd,
			   unsigned long arg)
{
	drm_i915_batchbuffer32_t batchbuffer32;
	drm_i915_batchbuffer_t __user *batchbuffer;
	
	if (copy_from_user
	    (&batchbuffer32, (void __user *)arg, sizeof(batchbuffer32)))
		return -EFAULT;
	
	batchbuffer = compat_alloc_user_space(sizeof(*batchbuffer));
	if (!access_ok(VERIFY_WRITE, batchbuffer, sizeof(*batchbuffer))
	    || __put_user(batchbuffer32.start, &batchbuffer->start)
	    || __put_user(batchbuffer32.used, &batchbuffer->used)
	    || __put_user(batchbuffer32.DR1, &batchbuffer->DR1)
	    || __put_user(batchbuffer32.DR4, &batchbuffer->DR4)
	    || __put_user(batchbuffer32.num_cliprects,
			  &batchbuffer->num_cliprects)
	    || __put_user((int __user *)(unsigned long)batchbuffer32.cliprects,
			  &batchbuffer->cliprects))
		return -EFAULT;
	
	return drm_ioctl(file->f_dentry->d_inode, file,
			 DRM_IOCTL_I915_BATCHBUFFER,
			 (unsigned long) batchbuffer);
}

typedef struct _drm_i915_cmdbuffer32 {
	u32 buf;	/* pointer to userspace command buffer */
	int sz;			/* nr bytes in buf */
	int DR1;		/* hw flags for GFX_OP_DRAWRECT_INFO */
	int DR4;		/* window origin for GFX_OP_DRAWRECT_INFO */
	int num_cliprects;	/* mulitpass with multiple cliprects? */
	u32 cliprects;	/* pointer to userspace cliprects */
} drm_i915_cmdbuffer32_t;

static int compat_i915_cmdbuffer(struct file *file, unsigned int cmd,
			   unsigned long arg)
{
	drm_i915_cmdbuffer32_t cmdbuffer32;
	drm_i915_cmdbuffer_t __user *cmdbuffer;
	
	if (copy_from_user
	    (&cmdbuffer32, (void __user *)arg, sizeof(cmdbuffer32)))
		return -EFAULT;
	
	cmdbuffer = compat_alloc_user_space(sizeof(*cmdbuffer));
	if (!access_ok(VERIFY_WRITE, cmdbuffer, sizeof(*cmdbuffer))
	    || __put_user((int __user *)(unsigned long)cmdbuffer32.buf,
			  &cmdbuffer->buf)
	    || __put_user(cmdbuffer32.sz, &cmdbuffer->sz)
	    || __put_user(cmdbuffer32.DR1, &cmdbuffer->DR1)
	    || __put_user(cmdbuffer32.DR4, &cmdbuffer->DR4)
	    || __put_user(cmdbuffer32.num_cliprects, &cmdbuffer->num_cliprects)
	    || __put_user((int __user *)(unsigned long)cmdbuffer32.cliprects,
			  &cmdbuffer->cliprects))
		return -EFAULT;
	
	return drm_ioctl(file->f_dentry->d_inode, file,
			 DRM_IOCTL_I915_CMDBUFFER, (unsigned long) cmdbuffer);
}

typedef struct drm_i915_irq_emit32 {
	u32 irq_seq;
} drm_i915_irq_emit32_t;

static int compat_i915_irq_emit(struct file *file, unsigned int cmd,
				  unsigned long arg)
{
	drm_i915_irq_emit32_t req32;
	drm_i915_irq_emit_t __user *request;

	if (copy_from_user(&req32, (void __user *) arg, sizeof(req32)))
		return -EFAULT;

	request = compat_alloc_user_space(sizeof(*request));
	if (!access_ok(VERIFY_WRITE, request, sizeof(*request))
	    || __put_user((int __user *)(unsigned long)req32.irq_seq,
			  &request->irq_seq))
		return -EFAULT;

	return drm_ioctl(file->f_dentry->d_inode, file,
			 DRM_IOCTL_I915_IRQ_EMIT, (unsigned long) request);
}
typedef struct drm_i915_getparam32 {
	int param;
	u32 value;
} drm_i915_getparam32_t;

static int compat_i915_getparam(struct file *file, unsigned int cmd,
				     unsigned long arg)
{
	drm_i915_getparam32_t req32;
	drm_i915_getparam_t __user *request;

	if (copy_from_user(&req32, (void __user *) arg, sizeof(req32)))
		return -EFAULT;

	request = compat_alloc_user_space(sizeof(*request));
	if (!access_ok(VERIFY_WRITE, request, sizeof(*request))
	    || __put_user(req32.param, &request->param)
	    || __put_user((void __user *)(unsigned long)req32.value,
			  &request->value))
		return -EFAULT;

	return drm_ioctl(file->f_dentry->d_inode, file,
			 DRM_IOCTL_I915_GETPARAM, (unsigned long) request);
}

typedef struct drm_i915_mem_alloc32 {
	int region;
	int alignment;
	int size;
	u32 region_offset;	/* offset from start of fb or agp */
} drm_i915_mem_alloc32_t;

static int compat_i915_alloc(struct file *file, unsigned int cmd,
				     unsigned long arg)
{
	drm_i915_mem_alloc32_t req32;
	drm_i915_mem_alloc_t __user *request;

	if (copy_from_user(&req32, (void __user *) arg, sizeof(req32)))
		return -EFAULT;

	request = compat_alloc_user_space(sizeof(*request));
	if (!access_ok(VERIFY_WRITE, request, sizeof(*request))
	    || __put_user(req32.region, &request->region)
	    || __put_user(req32.alignment, &request->alignment)
	    || __put_user(req32.size, &request->size)
	    || __put_user((void __user *)(unsigned long)req32.region_offset,
			  &request->region_offset))
		return -EFAULT;

	return drm_ioctl(file->f_dentry->d_inode, file,
			 DRM_IOCTL_I915_ALLOC, (unsigned long) request);
}


drm_ioctl_compat_t *i915_compat_ioctls[] = {
	[DRM_I915_BATCHBUFFER] = compat_i915_batchbuffer,
	[DRM_I915_CMDBUFFER] = compat_i915_cmdbuffer,
	[DRM_I915_GETPARAM] = compat_i915_getparam,
	[DRM_I915_IRQ_EMIT] = compat_i915_irq_emit,
	[DRM_I915_ALLOC] = compat_i915_alloc
};

/**
 * Called whenever a 32-bit process running under a 64-bit kernel
 * performs an ioctl on /dev/dri/card<n>.
 *
 * \param filp file pointer.
 * \param cmd command.
 * \param arg user argument.
 * \return zero on success or negative number on failure.
 */
long i915_compat_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
{
	unsigned int nr = DRM_IOCTL_NR(cmd);
	drm_ioctl_compat_t *fn = NULL;
	int ret;

	if (nr < DRM_COMMAND_BASE)
		return drm_compat_ioctl(filp, cmd, arg);
	
	if (nr < DRM_COMMAND_BASE + DRM_ARRAY_SIZE(i915_compat_ioctls))
		fn = i915_compat_ioctls[nr - DRM_COMMAND_BASE];

	lock_kernel();		/* XXX for now */
	if (fn != NULL)
		ret = (*fn)(filp, cmd, arg);
	else
		ret = drm_ioctl(filp->f_dentry->d_inode, filp, cmd, arg);
	unlock_kernel();

	return ret;
}
pt">(!minor->dev_root) { DRM_ERROR("Cannot create /proc/dri/%s\n", name); return -1; } for (i = 0; i < DRM_PROC_ENTRIES; i++) { ent = create_proc_entry(drm_proc_list[i].name, S_IFREG | S_IRUGO, minor->dev_root); if (!ent) { DRM_ERROR("Cannot create /proc/dri/%s/%s\n", name, drm_proc_list[i].name); for (j = 0; j < i; j++) remove_proc_entry(drm_proc_list[i].name, minor->dev_root); remove_proc_entry(name, root); minor->dev_root = NULL; return -1; } ent->read_proc = drm_proc_list[i].f; ent->data = minor; } return 0; } /** * Cleanup the proc filesystem resources. * * \param minor device minor number. * \param root DRI proc dir entry. * \param dev_root DRI device proc dir entry. * \return always zero. * * Remove all proc entries created by proc_init(). */ int drm_proc_cleanup(struct drm_minor *minor, struct proc_dir_entry *root) { int i; char name[64]; if (!root || !minor->dev_root) return 0; for (i = 0; i < DRM_PROC_ENTRIES; i++) remove_proc_entry(drm_proc_list[i].name, minor->dev_root); sprintf(name, "%d", minor->index); remove_proc_entry(name, root); return 0; } /** * Called when "/proc/dri/.../name" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. * * Prints the device name together with the bus id if available. */ static int drm_name_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_master *master = minor->master; struct drm_device *dev = minor->dev; int len = 0; if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } if (!master) return 0; *start = &buf[offset]; *eof = 0; if (master->unique) { DRM_PROC_PRINT("%s %s %s\n", dev->driver->pci_driver.name, pci_name(dev->pdev), master->unique); } else { DRM_PROC_PRINT("%s %s\n", dev->driver->pci_driver.name, pci_name(dev->pdev)); } if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Called when "/proc/dri/.../vm" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. * * Prints information about all mappings in drm_device::maplist. */ static int drm__vm_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; struct drm_map *map; struct drm_map_list *r_list; /* Hardcoded from _DRM_FRAME_BUFFER, _DRM_REGISTERS, _DRM_SHM, _DRM_AGP, _DRM_SCATTER_GATHER, and _DRM_CONSISTENT. */ const char *types[] = { "FB", "REG", "SHM", "AGP", "SG", "PCI" }; const char *type; int i; if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT("slot offset size type flags " "address mtrr\n\n"); i = 0; list_for_each_entry(r_list, &dev->maplist, head) { map = r_list->map; if (!map) continue; if (map->type < 0 || map->type > 5) type = "??"; else type = types[map->type]; DRM_PROC_PRINT("%4d 0x%08lx 0x%08lx %4.4s 0x%02x 0x%08lx ", i, map->offset, map->size, type, map->flags, (unsigned long) r_list->user_token); if (map->mtrr < 0) { DRM_PROC_PRINT("none\n"); } else { DRM_PROC_PRINT("%4d\n", map->mtrr); } i++; } if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Simply calls _vm_info() while holding the drm_device::struct_mutex lock. */ static int drm_vm_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__vm_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } /** * Called when "/proc/dri/.../queues" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. */ static int drm__queues_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; int i; struct drm_queue *q; if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT(" ctx/flags use fin" " blk/rw/rwf wait flushed queued" " locks\n\n"); for (i = 0; i < dev->queue_count; i++) { q = dev->queuelist[i]; atomic_inc(&q->use_count); DRM_PROC_PRINT_RET(atomic_dec(&q->use_count), "%5d/0x%03x %5d %5d" " %5d/%c%c/%c%c%c %5Zd\n", i, q->flags, atomic_read(&q->use_count), atomic_read(&q->finalization), atomic_read(&q->block_count), atomic_read(&q->block_read) ? 'r' : '-', atomic_read(&q->block_write) ? 'w' : '-', waitqueue_active(&q->read_queue) ? 'r' : '-', waitqueue_active(&q-> write_queue) ? 'w' : '-', waitqueue_active(&q-> flush_queue) ? 'f' : '-', DRM_BUFCOUNT(&q->waitlist)); atomic_dec(&q->use_count); } if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Simply calls _queues_info() while holding the drm_device::struct_mutex lock. */ static int drm_queues_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__queues_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } /** * Called when "/proc/dri/.../bufs" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. */ static int drm__bufs_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; struct drm_device_dma *dma = dev->dma; int i; if (!dma || offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT(" o size count free segs pages kB\n\n"); for (i = 0; i <= DRM_MAX_ORDER; i++) { if (dma->bufs[i].buf_count) DRM_PROC_PRINT("%2d %8d %5d %5d %5d %5d %5ld\n", i, dma->bufs[i].buf_size, dma->bufs[i].buf_count, atomic_read(&dma->bufs[i] .freelist.count), dma->bufs[i].seg_count, dma->bufs[i].seg_count * (1 << dma->bufs[i].page_order), (dma->bufs[i].seg_count * (1 << dma->bufs[i].page_order)) * PAGE_SIZE / 1024); } DRM_PROC_PRINT("\n"); for (i = 0; i < dma->buf_count; i++) { if (i && !(i % 32)) DRM_PROC_PRINT("\n"); DRM_PROC_PRINT(" %d", dma->buflist[i]->list); } DRM_PROC_PRINT("\n"); if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Simply calls _bufs_info() while holding the drm_device::struct_mutex lock. */ static int drm_bufs_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__bufs_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } /** * Called when "/proc/dri/.../objects" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. */ static int drm__objects_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; struct drm_buffer_manager *bm = &dev->bm; struct drm_fence_manager *fm = &dev->fm; uint64_t used_mem; uint64_t used_emer; uint64_t low_mem; uint64_t high_mem; uint64_t emer_mem; if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT("Object accounting:\n\n"); if (fm->initialized) { DRM_PROC_PRINT("Number of active fence objects: %d.\n", atomic_read(&fm->count)); } else { DRM_PROC_PRINT("Fence objects are not supported by this driver\n"); } if (bm->initialized) { DRM_PROC_PRINT("Number of active buffer objects: %d.\n\n", atomic_read(&bm->count)); } DRM_PROC_PRINT("Memory accounting:\n\n"); if (bm->initialized) { DRM_PROC_PRINT("Number of locked GATT pages: %lu.\n", bm->cur_pages); } else { DRM_PROC_PRINT("Buffer objects are not supported by this driver.\n"); } drm_query_memctl(&used_mem, &used_emer, &low_mem, &high_mem, &emer_mem); if (used_mem > 16*PAGE_SIZE) { DRM_PROC_PRINT("Used object memory is %lu pages.\n", (unsigned long) (used_mem >> PAGE_SHIFT)); } else { DRM_PROC_PRINT("Used object memory is %lu bytes.\n", (unsigned long) used_mem); } if (used_emer > 16*PAGE_SIZE) { DRM_PROC_PRINT("Used emergency memory is %lu pages.\n", (unsigned long) (used_emer >> PAGE_SHIFT)); } else { DRM_PROC_PRINT("Used emergency memory is %lu bytes.\n\n", (unsigned long) used_emer); } DRM_PROC_PRINT("Soft object memory usage threshold is %lu pages.\n", (unsigned long) (low_mem >> PAGE_SHIFT)); DRM_PROC_PRINT("Hard object memory usage threshold is %lu pages.\n", (unsigned long) (high_mem >> PAGE_SHIFT)); DRM_PROC_PRINT("Emergency root only memory usage threshold is %lu pages.\n", (unsigned long) (emer_mem >> PAGE_SHIFT)); DRM_PROC_PRINT("\n"); if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Simply calls _objects_info() while holding the drm_device::struct_mutex lock. */ static int drm_objects_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__objects_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } /** * Called when "/proc/dri/.../clients" is read. * * \param buf output buffer. * \param start start of output data. * \param offset requested start offset. * \param request requested number of bytes. * \param eof whether there is no more data to return. * \param data private data. * \return number of written bytes. */ static int drm__clients_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; struct drm_file *priv; if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT("a dev pid uid magic ioctls\n\n"); list_for_each_entry(priv, &dev->filelist, lhead) { DRM_PROC_PRINT("%c %3d %5d %5d %10u %10lu\n", priv->authenticated ? 'y' : 'n', priv->minor->index, priv->pid, priv->uid, priv->magic, priv->ioctl_count); } if (len > request + offset) return request; *eof = 1; return len - offset; } /** * Simply calls _clients_info() while holding the drm_device::struct_mutex lock. */ static int drm_clients_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__clients_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } #if DRM_DEBUG_CODE static int drm__vma_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int len = 0; struct drm_vma_entry *pt; struct vm_area_struct *vma; #if defined(__i386__) unsigned int pgprot; #endif if (offset > DRM_PROC_LIMIT) { *eof = 1; return 0; } *start = &buf[offset]; *eof = 0; DRM_PROC_PRINT("vma use count: %d, high_memory = %p, 0x%08lx\n", atomic_read(&dev->vma_count), high_memory, virt_to_phys(high_memory)); list_for_each_entry(pt, &dev->vmalist, head) { if (!(vma = pt->vma)) continue; DRM_PROC_PRINT("\n%5d 0x%08lx-0x%08lx %c%c%c%c%c%c 0x%08lx000", pt->pid, vma->vm_start, vma->vm_end, vma->vm_flags & VM_READ ? 'r' : '-', vma->vm_flags & VM_WRITE ? 'w' : '-', vma->vm_flags & VM_EXEC ? 'x' : '-', vma->vm_flags & VM_MAYSHARE ? 's' : 'p', vma->vm_flags & VM_LOCKED ? 'l' : '-', vma->vm_flags & VM_IO ? 'i' : '-', vma->vm_pgoff); #if defined(__i386__) pgprot = pgprot_val(vma->vm_page_prot); DRM_PROC_PRINT(" %c%c%c%c%c%c%c%c%c", pgprot & _PAGE_PRESENT ? 'p' : '-', pgprot & _PAGE_RW ? 'w' : 'r', pgprot & _PAGE_USER ? 'u' : 's', pgprot & _PAGE_PWT ? 't' : 'b', pgprot & _PAGE_PCD ? 'u' : 'c', pgprot & _PAGE_ACCESSED ? 'a' : '-', pgprot & _PAGE_DIRTY ? 'd' : '-', pgprot & _PAGE_PSE ? 'm' : 'k', pgprot & _PAGE_GLOBAL ? 'g' : 'l'); #endif DRM_PROC_PRINT("\n"); } if (len > request + offset) return request; *eof = 1; return len - offset; } static int drm_vma_info(char *buf, char **start, off_t offset, int request, int *eof, void *data) { struct drm_minor *minor = (struct drm_minor *) data; struct drm_device *dev = minor->dev; int ret; mutex_lock(&dev->struct_mutex); ret = drm__vma_info(buf, start, offset, request, eof, data); mutex_unlock(&dev->struct_mutex); return ret; } #endif