261 lines
6.1 KiB
C
261 lines
6.1 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Author(s)......: Holger Smolinski <Holger.Smolinski@de.ibm.com>
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* Martin Schwidefsky <schwidefsky@de.ibm.com>
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* Bugreports.to..: <Linux390@de.ibm.com>
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* Copyright IBM Corp. 2000
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*
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* History of changes
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* 07/24/00 new file
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* 05/04/02 code restructuring.
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*/
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#ifndef _S390_IDALS_H
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#define _S390_IDALS_H
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#include <linux/errno.h>
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#include <linux/err.h>
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#include <linux/types.h>
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#include <linux/slab.h>
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#include <linux/uaccess.h>
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#include <asm/dma-types.h>
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#include <asm/cio.h>
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#define IDA_SIZE_SHIFT 12
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#define IDA_BLOCK_SIZE (1UL << IDA_SIZE_SHIFT)
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#define IDA_2K_SIZE_SHIFT 11
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#define IDA_2K_BLOCK_SIZE (1UL << IDA_2K_SIZE_SHIFT)
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/*
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* Test if an address/length pair needs an idal list.
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*/
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static inline bool idal_is_needed(void *vaddr, unsigned int length)
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{
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dma64_t paddr = virt_to_dma64(vaddr);
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return (((__force unsigned long)(paddr) + length - 1) >> 31) != 0;
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}
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/*
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* Return the number of idal words needed for an address/length pair.
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*/
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static inline unsigned int idal_nr_words(void *vaddr, unsigned int length)
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{
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unsigned int cidaw;
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cidaw = (unsigned long)vaddr & (IDA_BLOCK_SIZE - 1);
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cidaw += length + IDA_BLOCK_SIZE - 1;
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cidaw >>= IDA_SIZE_SHIFT;
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return cidaw;
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}
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/*
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* Return the number of 2K IDA words needed for an address/length pair.
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*/
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static inline unsigned int idal_2k_nr_words(void *vaddr, unsigned int length)
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{
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unsigned int cidaw;
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cidaw = (unsigned long)vaddr & (IDA_2K_BLOCK_SIZE - 1);
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cidaw += length + IDA_2K_BLOCK_SIZE - 1;
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cidaw >>= IDA_2K_SIZE_SHIFT;
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return cidaw;
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}
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/*
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* Create the list of idal words for an address/length pair.
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*/
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static inline dma64_t *idal_create_words(dma64_t *idaws, void *vaddr, unsigned int length)
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{
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dma64_t paddr = virt_to_dma64(vaddr);
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unsigned int cidaw;
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*idaws++ = paddr;
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cidaw = idal_nr_words(vaddr, length);
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paddr = dma64_and(paddr, -IDA_BLOCK_SIZE);
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while (--cidaw > 0) {
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paddr = dma64_add(paddr, IDA_BLOCK_SIZE);
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*idaws++ = paddr;
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}
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return idaws;
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}
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/*
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* Sets the address of the data in CCW.
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* If necessary it allocates an IDAL and sets the appropriate flags.
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*/
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static inline int set_normalized_cda(struct ccw1 *ccw, void *vaddr)
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{
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unsigned int nridaws;
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dma64_t *idal;
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if (ccw->flags & CCW_FLAG_IDA)
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return -EINVAL;
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nridaws = idal_nr_words(vaddr, ccw->count);
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if (nridaws > 0) {
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idal = kcalloc(nridaws, sizeof(*idal), GFP_ATOMIC | GFP_DMA);
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if (!idal)
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return -ENOMEM;
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idal_create_words(idal, vaddr, ccw->count);
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ccw->flags |= CCW_FLAG_IDA;
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vaddr = idal;
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}
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ccw->cda = virt_to_dma32(vaddr);
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return 0;
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}
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/*
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* Releases any allocated IDAL related to the CCW.
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*/
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static inline void clear_normalized_cda(struct ccw1 *ccw)
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{
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if (ccw->flags & CCW_FLAG_IDA) {
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kfree(dma32_to_virt(ccw->cda));
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ccw->flags &= ~CCW_FLAG_IDA;
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}
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ccw->cda = 0;
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}
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/*
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* Idal buffer extension
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*/
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struct idal_buffer {
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size_t size;
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size_t page_order;
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dma64_t data[];
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};
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/*
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* Allocate an idal buffer
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*/
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static inline struct idal_buffer *idal_buffer_alloc(size_t size, int page_order)
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{
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int nr_chunks, nr_ptrs, i;
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struct idal_buffer *ib;
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void *vaddr;
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nr_ptrs = (size + IDA_BLOCK_SIZE - 1) >> IDA_SIZE_SHIFT;
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nr_chunks = (PAGE_SIZE << page_order) >> IDA_SIZE_SHIFT;
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ib = kmalloc(struct_size(ib, data, nr_ptrs), GFP_DMA | GFP_KERNEL);
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if (!ib)
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return ERR_PTR(-ENOMEM);
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ib->size = size;
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ib->page_order = page_order;
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for (i = 0; i < nr_ptrs; i++) {
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if (i & (nr_chunks - 1)) {
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ib->data[i] = dma64_add(ib->data[i - 1], IDA_BLOCK_SIZE);
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continue;
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}
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vaddr = (void *)__get_free_pages(GFP_KERNEL, page_order);
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if (!vaddr)
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goto error;
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ib->data[i] = virt_to_dma64(vaddr);
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}
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return ib;
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error:
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while (i >= nr_chunks) {
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i -= nr_chunks;
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vaddr = dma64_to_virt(ib->data[i]);
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free_pages((unsigned long)vaddr, ib->page_order);
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}
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kfree(ib);
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return ERR_PTR(-ENOMEM);
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}
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/*
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* Free an idal buffer.
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*/
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static inline void idal_buffer_free(struct idal_buffer *ib)
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{
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int nr_chunks, nr_ptrs, i;
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void *vaddr;
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nr_ptrs = (ib->size + IDA_BLOCK_SIZE - 1) >> IDA_SIZE_SHIFT;
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nr_chunks = (PAGE_SIZE << ib->page_order) >> IDA_SIZE_SHIFT;
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for (i = 0; i < nr_ptrs; i += nr_chunks) {
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vaddr = dma64_to_virt(ib->data[i]);
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free_pages((unsigned long)vaddr, ib->page_order);
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}
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kfree(ib);
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}
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/*
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* Test if a idal list is really needed.
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*/
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static inline bool __idal_buffer_is_needed(struct idal_buffer *ib)
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{
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if (ib->size > (PAGE_SIZE << ib->page_order))
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return true;
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return idal_is_needed(dma64_to_virt(ib->data[0]), ib->size);
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}
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/*
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* Set channel data address to idal buffer.
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*/
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static inline void idal_buffer_set_cda(struct idal_buffer *ib, struct ccw1 *ccw)
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{
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void *vaddr;
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if (__idal_buffer_is_needed(ib)) {
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/* Setup idals */
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ccw->cda = virt_to_dma32(ib->data);
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ccw->flags |= CCW_FLAG_IDA;
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} else {
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/*
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* No idals needed - use direct addressing. Convert from
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* dma64_t to virt and then to dma32_t only because of type
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* checking. The physical address is known to be below 2GB.
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*/
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vaddr = dma64_to_virt(ib->data[0]);
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ccw->cda = virt_to_dma32(vaddr);
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}
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ccw->count = ib->size;
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}
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/*
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* Copy count bytes from an idal buffer to user memory
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*/
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static inline size_t idal_buffer_to_user(struct idal_buffer *ib, void __user *to, size_t count)
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{
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size_t left;
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void *vaddr;
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int i;
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BUG_ON(count > ib->size);
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for (i = 0; count > IDA_BLOCK_SIZE; i++) {
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vaddr = dma64_to_virt(ib->data[i]);
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left = copy_to_user(to, vaddr, IDA_BLOCK_SIZE);
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if (left)
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return left + count - IDA_BLOCK_SIZE;
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to = (void __user *)to + IDA_BLOCK_SIZE;
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count -= IDA_BLOCK_SIZE;
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}
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vaddr = dma64_to_virt(ib->data[i]);
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return copy_to_user(to, vaddr, count);
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}
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/*
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* Copy count bytes from user memory to an idal buffer
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*/
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static inline size_t idal_buffer_from_user(struct idal_buffer *ib, const void __user *from, size_t count)
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{
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size_t left;
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void *vaddr;
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int i;
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BUG_ON(count > ib->size);
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for (i = 0; count > IDA_BLOCK_SIZE; i++) {
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vaddr = dma64_to_virt(ib->data[i]);
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left = copy_from_user(vaddr, from, IDA_BLOCK_SIZE);
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if (left)
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return left + count - IDA_BLOCK_SIZE;
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from = (void __user *)from + IDA_BLOCK_SIZE;
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count -= IDA_BLOCK_SIZE;
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}
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vaddr = dma64_to_virt(ib->data[i]);
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return copy_from_user(vaddr, from, count);
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}
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#endif
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