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path: root/shared/radeon_mem.c
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/* radeon_mem.c -- Simple GART/fb memory manager for radeon -*- linux-c -*-
 *
 * Copyright (C) The Weather Channel, Inc.  2002.  All Rights Reserved.
 * 
 * The Weather Channel (TM) funded Tungsten Graphics to develop the
 * initial release of the Radeon 8500 driver under the XFree86 license.
 * This notice must be preserved.
 *
 * 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:
 *    Keith Whitwell <keith@tungstengraphics.com>
 */

#include "radeon.h"
#include "drmP.h"
#include "drm.h"
#include "radeon_drm.h"
#include "radeon_drv.h"

/* Very simple allocator for GART memory, working on a static range
 * already mapped into each client's address space.  
 */

static struct mem_block *split_block(struct mem_block *p, int start, int size,
				     DRMFILE filp )
{
	/* Maybe cut off the start of an existing block */
	if (start > p->start) {
		struct mem_block *newblock = DRM(alloc)(sizeof(*newblock), DRM_MEM_BUFS );
		if (!newblock) 
			goto out;
		newblock->start = start;
		newblock->size = p->size - (start - p->start);
		newblock->filp = NULL;
		newblock->next = p->next;
		newblock->prev = p;
		p->next->prev = newblock;
		p->next = newblock;
		p->size -= newblock->size;
		p = newblock;
	}
   
	/* Maybe cut off the end of an existing block */
	if (size < p->size) {
		struct mem_block *newblock = DRM(alloc)(sizeof(*newblock), DRM_MEM_BUFS );
		if (!newblock)
			goto out;
		newblock->start = start + size;
		newblock->size = p->size - size;
		newblock->filp = NULL;
		newblock->next = p->next;
		newblock->prev = p;
		p->next->prev = newblock;
		p->next = newblock;
		p->size = size;
	}

 out:
	/* Our block is in the middle */
	p->filp = filp;
	return p;
}

static struct mem_block *alloc_block( struct mem_block *heap, int size, 
				      int align2, DRMFILE filp )
{
	struct mem_block *p;
	int mask = (1 << align2)-1;

	for (p = heap->next ; p != heap ; p = p->next) {
		int start = (p->start + mask) & ~mask;
		if (p->filp == 0 && start + size <= p->start + p->size)
			return split_block( p, start, size, filp );
	}

	return NULL;
}

static struct mem_block *find_block( struct mem_block *heap, int start )
{
	struct mem_block *p;

	for (p = heap->next ; p != heap ; p = p->next) 
		if (p->start == start)
			return p;

	return NULL;
}


static void free_block( struct mem_block *p )
{
	p->filp = NULL;

	/* Assumes a single contiguous range.  Needs a special filp in
	 * 'heap' to stop it being subsumed.
	 */
	if (p->next->filp == 0) {
		struct mem_block *q = p->next;
		p->size += q->size;
		p->next = q->next;
		p->next->prev = p;
		DRM(free)(q, sizeof(*q), DRM_MEM_BUFS );
	}

	if (p->prev->filp == 0) {
		struct mem_block *q = p->prev;
		q->size += p->size;
		q->next = p->next;
		q->next->prev = q;
		DRM(free)(p, sizeof(*q), DRM_MEM_BUFS );
	}
}

/* Initialize.  How to check for an uninitialized heap?
 */
static int init_heap(struct mem_block **heap, int start, int size)
{
	struct mem_block *blocks = DRM(alloc)(sizeof(*blocks), DRM_MEM_BUFS );

	if (!blocks) 
		return DRM_ERR(ENOMEM);
	
	*heap = DRM(alloc)(sizeof(**heap), DRM_MEM_BUFS );
	if (!*heap) {
		DRM(free)( blocks, sizeof(*blocks), DRM_MEM_BUFS );
		return DRM_ERR(ENOMEM);
	}

	blocks->start = start;
	blocks->size = size;
	blocks->filp = NULL;
	blocks->next = blocks->prev = *heap;

	memset( *heap, 0, sizeof(**heap) );
	(*heap)->filp = (DRMFILE) -1;
	(*heap)->next = (*heap)->prev = blocks;
	return 0;
}


/* Free all blocks associated with the releasing file.
 */
void radeon_mem_release( DRMFILE filp, struct mem_block *heap )
{
	struct mem_block *p;

	if (!heap || !heap->next)
		return;

	for (p = heap->next ; p != heap ; p = p->next) {
		if (p->filp == filp) 
			p->filp = NULL;
	}

	/* Assumes a single contiguous range.  Needs a special filp in
	 * 'heap' to stop it being subsumed.
	 */
	for (p = heap->next ; p != heap ; p = p->next) {
		while (p->filp == 0 && p->next->filp == 0) {
			struct mem_block *q = p->next;
			p->size += q->size;
			p->next = q->next;
			p->next->prev = p;
			DRM(free)(q, sizeof(*q),DRM_MEM_DRIVER);
		}
	}
}

/* Shutdown.
 */
void radeon_mem_takedown( struct mem_block **heap )
{
	struct mem_block *p;
	
	if (!*heap)
		return;

	for (p = (*heap)->next ; p != *heap ; ) {
		struct mem_block *q = p;
		p = p->next;
		DRM(free)(q, sizeof(*q),DRM_MEM_DRIVER);
	}

	DRM(free)( *heap, sizeof(**heap),DRM_MEM_DRIVER );
	*heap = NULL;
}



/* IOCTL HANDLERS */

static struct mem_block **get_heap( drm_radeon_private_t *dev_priv,
				   int region )
{
	switch( region ) {
	case RADEON_MEM_REGION_GART:
 		return &dev_priv->gart_heap; 
	case RADEON_MEM_REGION_FB:
		return &dev_priv->fb_heap;
	default:
		return NULL;
	}
}

int radeon_mem_alloc( DRM_IOCTL_ARGS )
{
	DRM_DEVICE;
	drm_radeon_private_t *dev_priv = dev->dev_private;
	drm_radeon_mem_alloc_t alloc;
	struct mem_block *block, **heap;

	if ( !dev_priv ) {
		DRM_ERROR( "%s called with no initialization\n", __FUNCTION__ );
		return DRM_ERR(EINVAL);
	}

	DRM_COPY_FROM_USER_IOCTL( alloc, (drm_radeon_mem_alloc_t __user *)data,
				  sizeof(alloc) );

	heap = get_heap( dev_priv, alloc.region );
	if (!heap || !*heap)
		return DRM_ERR(EFAULT);
	
	/* Make things easier on ourselves: all allocations at least
	 * 4k aligned.
	 */
	if (alloc.alignment < 12)
		alloc.alignment = 12;

	block = alloc_block( *heap, alloc.size, alloc.alignment,
			     filp );

	if (!block) 
		return DRM_ERR(ENOMEM);

	if ( DRM_COPY_TO_USER( alloc.region_offset, &block->start, 
			       sizeof(int) ) ) {
		DRM_ERROR( "copy_to_user\n" );
		return DRM_ERR(EFAULT);
	}
	
	return 0;
}



int radeon_mem_free( DRM_IOCTL_ARGS )
{
	DRM_DEVICE;
	drm_radeon_private_t *dev_priv = dev->dev_private;
	drm_radeon_mem_free_t memfree;
	struct mem_block *block, **heap;

	if ( !dev_priv ) {
		DRM_ERROR( "%s called with no initialization\n", __FUNCTION__ );
		return DRM_ERR(EINVAL);
	}

	DRM_COPY_FROM_USER_IOCTL( memfree, (drm_radeon_mem_free_t __user *)data,
				  sizeof(memfree) );

	heap = get_heap( dev_priv, memfree.region );
	if (!heap || !*heap)
		return DRM_ERR(EFAULT);
	
	block = find_block( *heap, memfree.region_offset );
	if (!block)
		return DRM_ERR(EFAULT);

	if (block->filp != filp)
		return DRM_ERR(EPERM);

	free_block( block );	
	return 0;
}

int radeon_mem_init_heap( DRM_IOCTL_ARGS )
{
	DRM_DEVICE;
	drm_radeon_private_t *dev_priv = dev->dev_private;
	drm_radeon_mem_init_heap_t initheap;
	struct mem_block **heap;

	if ( !dev_priv ) {
		DRM_ERROR( "%s called with no initialization\n", __FUNCTION__ );
		return DRM_ERR(EINVAL);
	}

	DRM_COPY_FROM_USER_IOCTL( initheap, (drm_radeon_mem_init_heap_t __user *)data,
				  sizeof(initheap) );

	heap = get_heap( dev_priv, initheap.region );
	if (!heap) 
		return DRM_ERR(EFAULT);
	
	if (*heap) {
		DRM_ERROR("heap already initialized?");
		return DRM_ERR(EFAULT);
	}
		
	return init_heap( heap, initheap.start, initheap.size );
}


an>sg_ctxdma; struct page *sg_dummy_page; dma_addr_t sg_dummy_bus; /* nottm hack */ struct drm_ttm_backend *sg_be; unsigned long sg_handle; } gart_info; /* G8x global VRAM page table */ struct nouveau_gpuobj *vm_vram_pt; /* the mtrr covering the FB */ int fb_mtrr; struct mem_block *agp_heap; struct mem_block *fb_heap; struct mem_block *fb_nomap_heap; struct mem_block *ramin_heap; struct mem_block *pci_heap; /* context table pointed to be NV_PGRAPH_CHANNEL_CTX_TABLE (0x400780) */ uint32_t ctx_table_size; struct nouveau_gpuobj_ref *ctx_table; struct nouveau_config config; struct list_head gpuobj_list; void *display_priv; /* internal modesetting */ void *kms_priv; /* related to public interface */ /* Hook these up to the "public interface" to accomodate a certain allocation style. */ /* This is to avoid polluting the internal interface. */ void *(*alloc_crtc) (struct drm_device *dev); void *(*alloc_output) (struct drm_device *dev); void *(*alloc_connector) (struct drm_device *dev); void (*free_crtc) (void *crtc); void (*free_output) (void *output); void (*free_connector) (void *connector); struct bios bios; struct { int entries; struct dcb_entry entry[MAX_NUM_DCB_ENTRIES]; unsigned char i2c_read[MAX_NUM_DCB_ENTRIES]; unsigned char i2c_write[MAX_NUM_DCB_ENTRIES]; } dcb_table; struct nouveau_suspend_resume { uint32_t fifo_mode; uint32_t graph_ctx_control; uint32_t graph_state; uint32_t *ramin_copy; uint64_t ramin_size; } susres; }; #define NOUVEAU_CHECK_INITIALISED_WITH_RETURN do { \ struct drm_nouveau_private *nv = dev->dev_private; \ if (nv->init_state != NOUVEAU_CARD_INIT_DONE) { \ DRM_ERROR("called without init\n"); \ return -EINVAL; \ } \ } while(0) #define NOUVEAU_GET_USER_CHANNEL_WITH_RETURN(id,cl,ch) do { \ struct drm_nouveau_private *nv = dev->dev_private; \ if (!nouveau_fifo_owner(dev, (cl), (id))) { \ DRM_ERROR("pid %d doesn't own channel %d\n", \ DRM_CURRENTPID, (id)); \ return -EPERM; \ } \ (ch) = nv->fifos[(id)]; \ } while(0) /* nouveau_state.c */ extern void nouveau_preclose(struct drm_device *dev, struct drm_file *); extern int nouveau_load(struct drm_device *, unsigned long flags); extern int nouveau_firstopen(struct drm_device *); extern void nouveau_lastclose(struct drm_device *); extern int nouveau_unload(struct drm_device *); extern int nouveau_ioctl_getparam(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_setparam(struct drm_device *, void *data, struct drm_file *); extern void nouveau_wait_for_idle(struct drm_device *); extern int nouveau_card_init(struct drm_device *); extern int nouveau_ioctl_card_init(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_suspend(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_resume(struct drm_device *, void *data, struct drm_file *); /* nouveau_mem.c */ extern int nouveau_mem_init_heap(struct mem_block **, uint64_t start, uint64_t size); extern struct mem_block *nouveau_mem_alloc_block(struct mem_block *, uint64_t size, int align2, struct drm_file *, int tail); extern void nouveau_mem_takedown(struct mem_block **heap); extern void nouveau_mem_free_block(struct mem_block *); extern struct mem_block* find_block_by_handle(struct mem_block *heap, drm_handle_t handle); extern uint64_t nouveau_mem_fb_amount(struct drm_device *); extern void nouveau_mem_release(struct drm_file *, struct mem_block *heap); extern int nouveau_ioctl_mem_alloc(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_mem_free(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_mem_tile(struct drm_device *, void *data, struct drm_file *); extern struct mem_block* nouveau_mem_alloc(struct drm_device *, int alignment, uint64_t size, int flags, struct drm_file *); extern void nouveau_mem_free(struct drm_device *dev, struct mem_block*); extern int nouveau_mem_init(struct drm_device *); extern int nouveau_mem_init_ttm(struct drm_device *); extern void nouveau_mem_close(struct drm_device *); /* nouveau_notifier.c */ extern int nouveau_notifier_init_channel(struct nouveau_channel *); extern void nouveau_notifier_takedown_channel(struct nouveau_channel *); extern int nouveau_notifier_alloc(struct nouveau_channel *, uint32_t handle, int cout, uint32_t *offset); extern int nouveau_ioctl_notifier_alloc(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_notifier_free(struct drm_device *, void *data, struct drm_file *); /* nouveau_fifo.c */ extern int nouveau_fifo_init(struct drm_device *); extern int nouveau_fifo_ctx_size(struct drm_device *); extern void nouveau_fifo_cleanup(struct drm_device *, struct drm_file *); extern int nouveau_fifo_owner(struct drm_device *, struct drm_file *, int channel); extern int nouveau_fifo_alloc(struct drm_device *dev, struct nouveau_channel **chan, struct drm_file *file_priv, struct mem_block *pushbuf, uint32_t fb_ctxdma, uint32_t tt_ctxdma); extern void nouveau_fifo_free(struct nouveau_channel *); extern int nouveau_channel_idle(struct nouveau_channel *chan); /* nouveau_object.c */ extern int nouveau_gpuobj_early_init(struct drm_device *); extern int nouveau_gpuobj_init(struct drm_device *); extern void nouveau_gpuobj_takedown(struct drm_device *); extern void nouveau_gpuobj_late_takedown(struct drm_device *); extern int nouveau_gpuobj_channel_init(struct nouveau_channel *, uint32_t vram_h, uint32_t tt_h); extern void nouveau_gpuobj_channel_takedown(struct nouveau_channel *); extern int nouveau_gpuobj_new(struct drm_device *, struct nouveau_channel *, int size, int align, uint32_t flags, struct nouveau_gpuobj **); extern int nouveau_gpuobj_del(struct drm_device *, struct nouveau_gpuobj **); extern int nouveau_gpuobj_ref_add(struct drm_device *, struct nouveau_channel *, uint32_t handle, struct nouveau_gpuobj *, struct nouveau_gpuobj_ref **); extern int nouveau_gpuobj_ref_del(struct drm_device *, struct nouveau_gpuobj_ref **); extern int nouveau_gpuobj_ref_find(struct nouveau_channel *, uint32_t handle, struct nouveau_gpuobj_ref **ref_ret); extern int nouveau_gpuobj_new_ref(struct drm_device *, struct nouveau_channel *alloc_chan, struct nouveau_channel *ref_chan, uint32_t handle, int size, int align, uint32_t flags, struct nouveau_gpuobj_ref **); extern int nouveau_gpuobj_new_fake(struct drm_device *, uint32_t p_offset, uint32_t b_offset, uint32_t size, uint32_t flags, struct nouveau_gpuobj **, struct nouveau_gpuobj_ref**); extern int nouveau_gpuobj_dma_new(struct nouveau_channel *, int class, uint64_t offset, uint64_t size, int access, int target, struct nouveau_gpuobj **); extern int nouveau_gpuobj_gart_dma_new(struct nouveau_channel *, uint64_t offset, uint64_t size, int access, struct nouveau_gpuobj **, uint32_t *o_ret); extern int nouveau_gpuobj_gr_new(struct nouveau_channel *, int class, struct nouveau_gpuobj **); extern int nouveau_ioctl_grobj_alloc(struct drm_device *, void *data, struct drm_file *); extern int nouveau_ioctl_gpuobj_free(struct drm_device *, void *data, struct drm_file *); /* nouveau_irq.c */ extern irqreturn_t nouveau_irq_handler(DRM_IRQ_ARGS); extern void nouveau_irq_preinstall(struct drm_device *); extern int nouveau_irq_postinstall(struct drm_device *); extern void nouveau_irq_uninstall(struct drm_device *); /* nouveau_sgdma.c */ extern int nouveau_sgdma_init(struct drm_device *); extern void nouveau_sgdma_takedown(struct drm_device *); extern int nouveau_sgdma_get_page(struct drm_device *, uint32_t offset, uint32_t *page); extern struct drm_ttm_backend *nouveau_sgdma_init_ttm(struct drm_device *); extern int nouveau_sgdma_nottm_hack_init(struct drm_device *); extern void nouveau_sgdma_nottm_hack_takedown(struct drm_device *); /* nouveau_dma.c */ extern int nouveau_dma_channel_init(struct drm_device *); extern void nouveau_dma_channel_takedown(struct drm_device *); extern int nouveau_dma_wait(struct drm_device *, int size); /* nv04_fb.c */ extern int nv04_fb_init(struct drm_device *); extern void nv04_fb_takedown(struct drm_device *); /* nv10_fb.c */ extern int nv10_fb_init(struct drm_device *); extern void nv10_fb_takedown(struct drm_device *); /* nv40_fb.c */ extern int nv40_fb_init(struct drm_device *); extern void nv40_fb_takedown(struct drm_device *); /* nv04_fifo.c */ extern int nv04_fifo_channel_id(struct drm_device *); extern int nv04_fifo_create_context(struct nouveau_channel *); extern void nv04_fifo_destroy_context(struct nouveau_channel *); extern int nv04_fifo_load_context(struct nouveau_channel *); extern int nv04_fifo_save_context(struct nouveau_channel *); /* nv10_fifo.c */ extern int nv10_fifo_channel_id(struct drm_device *); extern int nv10_fifo_create_context(struct nouveau_channel *); extern void nv10_fifo_destroy_context(struct nouveau_channel *); extern int nv10_fifo_load_context(struct nouveau_channel *); extern int nv10_fifo_save_context(struct nouveau_channel *); /* nv40_fifo.c */ extern int nv40_fifo_init(struct drm_device *); extern int nv40_fifo_create_context(struct nouveau_channel *); extern void nv40_fifo_destroy_context(struct nouveau_channel *); extern int nv40_fifo_load_context(struct nouveau_channel *); extern int nv40_fifo_save_context(struct nouveau_channel *); /* nv50_fifo.c */ extern int nv50_fifo_init(struct drm_device *); extern void nv50_fifo_takedown(struct drm_device *); extern int nv50_fifo_channel_id(struct drm_device *); extern int nv50_fifo_create_context(struct nouveau_channel *); extern void nv50_fifo_destroy_context(struct nouveau_channel *); extern int nv50_fifo_load_context(struct nouveau_channel *); extern int nv50_fifo_save_context(struct nouveau_channel *); /* nv04_graph.c */ extern void nouveau_nv04_context_switch(struct drm_device *); extern int nv04_graph_init(struct drm_device *); extern void nv04_graph_takedown(struct drm_device *); extern int nv04_graph_create_context(struct nouveau_channel *); extern void nv04_graph_destroy_context(struct nouveau_channel *); extern int nv04_graph_load_context(struct nouveau_channel *); extern int nv04_graph_save_context(struct nouveau_channel *); /* nv10_graph.c */ extern void nouveau_nv10_context_switch(struct drm_device *); extern int nv10_graph_init(struct drm_device *); extern void nv10_graph_takedown(struct drm_device *); extern int nv10_graph_create_context(struct nouveau_channel *); extern void nv10_graph_destroy_context(struct nouveau_channel *); extern int nv10_graph_load_context(struct nouveau_channel *); extern int nv10_graph_save_context(struct nouveau_channel *); /* nv20_graph.c */ extern int nv20_graph_create_context(struct nouveau_channel *); extern void nv20_graph_destroy_context(struct nouveau_channel *); extern int nv20_graph_load_context(struct nouveau_channel *); extern int nv20_graph_save_context(struct nouveau_channel *); extern int nv20_graph_init(struct drm_device *); extern void nv20_graph_takedown(struct drm_device *); extern int nv30_graph_init(struct drm_device *); /* nv40_graph.c */ extern int nv40_graph_init(struct drm_device *); extern void nv40_graph_takedown(struct drm_device *); extern int nv40_graph_create_context(struct nouveau_channel *); extern void nv40_graph_destroy_context(struct nouveau_channel *); extern int nv40_graph_load_context(struct nouveau_channel *); extern int nv40_graph_save_context(struct nouveau_channel *); /* nv50_graph.c */ extern int nv50_graph_init(struct drm_device *); extern void nv50_graph_takedown(struct drm_device *); extern int nv50_graph_create_context(struct nouveau_channel *); extern void nv50_graph_destroy_context(struct nouveau_channel *); extern int nv50_graph_load_context(struct nouveau_channel *); extern int nv50_graph_save_context(struct nouveau_channel *); /* nv04_instmem.c */ extern int nv04_instmem_init(struct drm_device *); extern void nv04_instmem_takedown(struct drm_device *); extern int nv04_instmem_populate(struct drm_device *, struct nouveau_gpuobj *, uint32_t *size); extern void nv04_instmem_clear(struct drm_device *, struct nouveau_gpuobj *); extern int nv04_instmem_bind(struct drm_device *, struct nouveau_gpuobj *); extern int nv04_instmem_unbind(struct drm_device *, struct nouveau_gpuobj *); /* nv50_instmem.c */ extern int nv50_instmem_init(struct drm_device *); extern void nv50_instmem_takedown(struct drm_device *); extern int nv50_instmem_populate(struct drm_device *, struct nouveau_gpuobj *, uint32_t *size); extern void nv50_instmem_clear(struct drm_device *, struct nouveau_gpuobj *); extern int nv50_instmem_bind(struct drm_device *, struct nouveau_gpuobj *); extern int nv50_instmem_unbind(struct drm_device *, struct nouveau_gpuobj *); /* nv04_mc.c */ extern int nv04_mc_init(struct drm_device *); extern void nv04_mc_takedown(struct drm_device *); /* nv40_mc.c */ extern int nv40_mc_init(struct drm_device *); extern void nv40_mc_takedown(struct drm_device *); /* nv50_mc.c */ extern int nv50_mc_init(struct drm_device *); extern void nv50_mc_takedown(struct drm_device *); /* nv04_timer.c */ extern int nv04_timer_init(struct drm_device *); extern uint64_t nv04_timer_read(struct drm_device *); extern void nv04_timer_takedown(struct drm_device *); extern long nouveau_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg); /* nouveau_buffer.c */ extern struct drm_bo_driver nouveau_bo_driver; /* nouveau_fence.c */ extern struct drm_fence_driver nouveau_fence_driver; extern void nouveau_fence_handler(struct drm_device *dev, int channel); #if defined(__powerpc__) #define NV_READ(reg) in_be32((void __iomem *)(dev_priv->mmio)->handle + (reg) ) #define NV_WRITE(reg,val) out_be32((void __iomem *)(dev_priv->mmio)->handle + (reg) , (val) ) #else #define NV_READ(reg) DRM_READ32( dev_priv->mmio, (reg) ) #define NV_WRITE(reg,val) DRM_WRITE32( dev_priv->mmio, (reg), (val) ) #endif /* PRAMIN access */ #if defined(__powerpc__) #define NV_RI32(o) in_be32((void __iomem *)(dev_priv->ramin)->handle+(o)) #define NV_WI32(o,v) out_be32((void __iomem*)(dev_priv->ramin)->handle+(o), (v)) #else #define NV_RI32(o) DRM_READ32(dev_priv->ramin, (o)) #define NV_WI32(o,v) DRM_WRITE32(dev_priv->ramin, (o), (v)) #endif #define INSTANCE_RD(o,i) NV_RI32((o)->im_pramin->start + ((i)<<2)) #define INSTANCE_WR(o,i,v) NV_WI32((o)->im_pramin->start + ((i)<<2), (v)) #endif /* __NOUVEAU_DRV_H__ */