1141e9d4bSMatthew Wilcox 2141e9d4bSMatthew Wilcox #include <linux/device.h> 3141e9d4bSMatthew Wilcox #include <linux/mm.h> 4141e9d4bSMatthew Wilcox #include <asm/io.h> /* Needed for i386 to build */ 5141e9d4bSMatthew Wilcox #include <linux/dma-mapping.h> 6141e9d4bSMatthew Wilcox #include <linux/dmapool.h> 7141e9d4bSMatthew Wilcox #include <linux/slab.h> 8141e9d4bSMatthew Wilcox #include <linux/module.h> 9141e9d4bSMatthew Wilcox #include <linux/poison.h> 10141e9d4bSMatthew Wilcox #include <linux/sched.h> 11141e9d4bSMatthew Wilcox 12141e9d4bSMatthew Wilcox /* 13141e9d4bSMatthew Wilcox * Pool allocator ... wraps the dma_alloc_coherent page allocator, so 14141e9d4bSMatthew Wilcox * small blocks are easily used by drivers for bus mastering controllers. 15141e9d4bSMatthew Wilcox * This should probably be sharing the guts of the slab allocator. 16141e9d4bSMatthew Wilcox */ 17141e9d4bSMatthew Wilcox 18141e9d4bSMatthew Wilcox struct dma_pool { /* the pool */ 19141e9d4bSMatthew Wilcox struct list_head page_list; 20141e9d4bSMatthew Wilcox spinlock_t lock; 21141e9d4bSMatthew Wilcox size_t blocks_per_page; 22141e9d4bSMatthew Wilcox size_t size; 23141e9d4bSMatthew Wilcox struct device *dev; 24141e9d4bSMatthew Wilcox size_t allocation; 25141e9d4bSMatthew Wilcox char name[32]; 26141e9d4bSMatthew Wilcox wait_queue_head_t waitq; 27141e9d4bSMatthew Wilcox struct list_head pools; 28141e9d4bSMatthew Wilcox }; 29141e9d4bSMatthew Wilcox 30141e9d4bSMatthew Wilcox struct dma_page { /* cacheable header for 'allocation' bytes */ 31141e9d4bSMatthew Wilcox struct list_head page_list; 32141e9d4bSMatthew Wilcox void *vaddr; 33141e9d4bSMatthew Wilcox dma_addr_t dma; 34141e9d4bSMatthew Wilcox unsigned in_use; 35141e9d4bSMatthew Wilcox unsigned long bitmap[0]; 36141e9d4bSMatthew Wilcox }; 37141e9d4bSMatthew Wilcox 38141e9d4bSMatthew Wilcox #define POOL_TIMEOUT_JIFFIES ((100 /* msec */ * HZ) / 1000) 39141e9d4bSMatthew Wilcox 40141e9d4bSMatthew Wilcox static DEFINE_MUTEX(pools_lock); 41141e9d4bSMatthew Wilcox 42141e9d4bSMatthew Wilcox static ssize_t 43141e9d4bSMatthew Wilcox show_pools(struct device *dev, struct device_attribute *attr, char *buf) 44141e9d4bSMatthew Wilcox { 45141e9d4bSMatthew Wilcox unsigned temp; 46141e9d4bSMatthew Wilcox unsigned size; 47141e9d4bSMatthew Wilcox char *next; 48141e9d4bSMatthew Wilcox struct dma_page *page; 49141e9d4bSMatthew Wilcox struct dma_pool *pool; 50141e9d4bSMatthew Wilcox 51141e9d4bSMatthew Wilcox next = buf; 52141e9d4bSMatthew Wilcox size = PAGE_SIZE; 53141e9d4bSMatthew Wilcox 54141e9d4bSMatthew Wilcox temp = scnprintf(next, size, "poolinfo - 0.1\n"); 55141e9d4bSMatthew Wilcox size -= temp; 56141e9d4bSMatthew Wilcox next += temp; 57141e9d4bSMatthew Wilcox 58141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 59141e9d4bSMatthew Wilcox list_for_each_entry(pool, &dev->dma_pools, pools) { 60141e9d4bSMatthew Wilcox unsigned pages = 0; 61141e9d4bSMatthew Wilcox unsigned blocks = 0; 62141e9d4bSMatthew Wilcox 63141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 64141e9d4bSMatthew Wilcox pages++; 65141e9d4bSMatthew Wilcox blocks += page->in_use; 66141e9d4bSMatthew Wilcox } 67141e9d4bSMatthew Wilcox 68141e9d4bSMatthew Wilcox /* per-pool info, no real statistics yet */ 69141e9d4bSMatthew Wilcox temp = scnprintf(next, size, "%-16s %4u %4Zu %4Zu %2u\n", 70141e9d4bSMatthew Wilcox pool->name, 71141e9d4bSMatthew Wilcox blocks, pages * pool->blocks_per_page, 72141e9d4bSMatthew Wilcox pool->size, pages); 73141e9d4bSMatthew Wilcox size -= temp; 74141e9d4bSMatthew Wilcox next += temp; 75141e9d4bSMatthew Wilcox } 76141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 77141e9d4bSMatthew Wilcox 78141e9d4bSMatthew Wilcox return PAGE_SIZE - size; 79141e9d4bSMatthew Wilcox } 80*e87aa773SMatthew Wilcox 81141e9d4bSMatthew Wilcox static DEVICE_ATTR(pools, S_IRUGO, show_pools, NULL); 82141e9d4bSMatthew Wilcox 83141e9d4bSMatthew Wilcox /** 84141e9d4bSMatthew Wilcox * dma_pool_create - Creates a pool of consistent memory blocks, for dma. 85141e9d4bSMatthew Wilcox * @name: name of pool, for diagnostics 86141e9d4bSMatthew Wilcox * @dev: device that will be doing the DMA 87141e9d4bSMatthew Wilcox * @size: size of the blocks in this pool. 88141e9d4bSMatthew Wilcox * @align: alignment requirement for blocks; must be a power of two 89141e9d4bSMatthew Wilcox * @allocation: returned blocks won't cross this boundary (or zero) 90141e9d4bSMatthew Wilcox * Context: !in_interrupt() 91141e9d4bSMatthew Wilcox * 92141e9d4bSMatthew Wilcox * Returns a dma allocation pool with the requested characteristics, or 93141e9d4bSMatthew Wilcox * null if one can't be created. Given one of these pools, dma_pool_alloc() 94141e9d4bSMatthew Wilcox * may be used to allocate memory. Such memory will all have "consistent" 95141e9d4bSMatthew Wilcox * DMA mappings, accessible by the device and its driver without using 96141e9d4bSMatthew Wilcox * cache flushing primitives. The actual size of blocks allocated may be 97141e9d4bSMatthew Wilcox * larger than requested because of alignment. 98141e9d4bSMatthew Wilcox * 99141e9d4bSMatthew Wilcox * If allocation is nonzero, objects returned from dma_pool_alloc() won't 100141e9d4bSMatthew Wilcox * cross that size boundary. This is useful for devices which have 101141e9d4bSMatthew Wilcox * addressing restrictions on individual DMA transfers, such as not crossing 102141e9d4bSMatthew Wilcox * boundaries of 4KBytes. 103141e9d4bSMatthew Wilcox */ 104*e87aa773SMatthew Wilcox struct dma_pool *dma_pool_create(const char *name, struct device *dev, 105141e9d4bSMatthew Wilcox size_t size, size_t align, size_t allocation) 106141e9d4bSMatthew Wilcox { 107141e9d4bSMatthew Wilcox struct dma_pool *retval; 108141e9d4bSMatthew Wilcox 109141e9d4bSMatthew Wilcox if (align == 0) 110141e9d4bSMatthew Wilcox align = 1; 111141e9d4bSMatthew Wilcox if (size == 0) 112141e9d4bSMatthew Wilcox return NULL; 113141e9d4bSMatthew Wilcox else if (size < align) 114141e9d4bSMatthew Wilcox size = align; 115141e9d4bSMatthew Wilcox else if ((size % align) != 0) { 116141e9d4bSMatthew Wilcox size += align + 1; 117141e9d4bSMatthew Wilcox size &= ~(align - 1); 118141e9d4bSMatthew Wilcox } 119141e9d4bSMatthew Wilcox 120141e9d4bSMatthew Wilcox if (allocation == 0) { 121141e9d4bSMatthew Wilcox if (PAGE_SIZE < size) 122141e9d4bSMatthew Wilcox allocation = size; 123141e9d4bSMatthew Wilcox else 124141e9d4bSMatthew Wilcox allocation = PAGE_SIZE; 125*e87aa773SMatthew Wilcox /* FIXME: round up for less fragmentation */ 126141e9d4bSMatthew Wilcox } else if (allocation < size) 127141e9d4bSMatthew Wilcox return NULL; 128141e9d4bSMatthew Wilcox 129*e87aa773SMatthew Wilcox if (! 130*e87aa773SMatthew Wilcox (retval = 131*e87aa773SMatthew Wilcox kmalloc_node(sizeof *retval, GFP_KERNEL, dev_to_node(dev)))) 132141e9d4bSMatthew Wilcox return retval; 133141e9d4bSMatthew Wilcox 134141e9d4bSMatthew Wilcox strlcpy(retval->name, name, sizeof retval->name); 135141e9d4bSMatthew Wilcox 136141e9d4bSMatthew Wilcox retval->dev = dev; 137141e9d4bSMatthew Wilcox 138141e9d4bSMatthew Wilcox INIT_LIST_HEAD(&retval->page_list); 139141e9d4bSMatthew Wilcox spin_lock_init(&retval->lock); 140141e9d4bSMatthew Wilcox retval->size = size; 141141e9d4bSMatthew Wilcox retval->allocation = allocation; 142141e9d4bSMatthew Wilcox retval->blocks_per_page = allocation / size; 143141e9d4bSMatthew Wilcox init_waitqueue_head(&retval->waitq); 144141e9d4bSMatthew Wilcox 145141e9d4bSMatthew Wilcox if (dev) { 146141e9d4bSMatthew Wilcox int ret; 147141e9d4bSMatthew Wilcox 148141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 149141e9d4bSMatthew Wilcox if (list_empty(&dev->dma_pools)) 150141e9d4bSMatthew Wilcox ret = device_create_file(dev, &dev_attr_pools); 151141e9d4bSMatthew Wilcox else 152141e9d4bSMatthew Wilcox ret = 0; 153141e9d4bSMatthew Wilcox /* note: not currently insisting "name" be unique */ 154141e9d4bSMatthew Wilcox if (!ret) 155141e9d4bSMatthew Wilcox list_add(&retval->pools, &dev->dma_pools); 156141e9d4bSMatthew Wilcox else { 157141e9d4bSMatthew Wilcox kfree(retval); 158141e9d4bSMatthew Wilcox retval = NULL; 159141e9d4bSMatthew Wilcox } 160141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 161141e9d4bSMatthew Wilcox } else 162141e9d4bSMatthew Wilcox INIT_LIST_HEAD(&retval->pools); 163141e9d4bSMatthew Wilcox 164141e9d4bSMatthew Wilcox return retval; 165141e9d4bSMatthew Wilcox } 166*e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_create); 167141e9d4bSMatthew Wilcox 168*e87aa773SMatthew Wilcox static struct dma_page *pool_alloc_page(struct dma_pool *pool, gfp_t mem_flags) 169141e9d4bSMatthew Wilcox { 170141e9d4bSMatthew Wilcox struct dma_page *page; 171141e9d4bSMatthew Wilcox int mapsize; 172141e9d4bSMatthew Wilcox 173141e9d4bSMatthew Wilcox mapsize = pool->blocks_per_page; 174141e9d4bSMatthew Wilcox mapsize = (mapsize + BITS_PER_LONG - 1) / BITS_PER_LONG; 175141e9d4bSMatthew Wilcox mapsize *= sizeof(long); 176141e9d4bSMatthew Wilcox 177141e9d4bSMatthew Wilcox page = kmalloc(mapsize + sizeof *page, mem_flags); 178141e9d4bSMatthew Wilcox if (!page) 179141e9d4bSMatthew Wilcox return NULL; 180141e9d4bSMatthew Wilcox page->vaddr = dma_alloc_coherent(pool->dev, 181141e9d4bSMatthew Wilcox pool->allocation, 182*e87aa773SMatthew Wilcox &page->dma, mem_flags); 183141e9d4bSMatthew Wilcox if (page->vaddr) { 184*e87aa773SMatthew Wilcox memset(page->bitmap, 0xff, mapsize); /* bit set == free */ 185141e9d4bSMatthew Wilcox #ifdef CONFIG_DEBUG_SLAB 186141e9d4bSMatthew Wilcox memset(page->vaddr, POOL_POISON_FREED, pool->allocation); 187141e9d4bSMatthew Wilcox #endif 188141e9d4bSMatthew Wilcox list_add(&page->page_list, &pool->page_list); 189141e9d4bSMatthew Wilcox page->in_use = 0; 190141e9d4bSMatthew Wilcox } else { 191141e9d4bSMatthew Wilcox kfree(page); 192141e9d4bSMatthew Wilcox page = NULL; 193141e9d4bSMatthew Wilcox } 194141e9d4bSMatthew Wilcox return page; 195141e9d4bSMatthew Wilcox } 196141e9d4bSMatthew Wilcox 197*e87aa773SMatthew Wilcox static inline int is_page_busy(int blocks, unsigned long *bitmap) 198141e9d4bSMatthew Wilcox { 199141e9d4bSMatthew Wilcox while (blocks > 0) { 200141e9d4bSMatthew Wilcox if (*bitmap++ != ~0UL) 201141e9d4bSMatthew Wilcox return 1; 202141e9d4bSMatthew Wilcox blocks -= BITS_PER_LONG; 203141e9d4bSMatthew Wilcox } 204141e9d4bSMatthew Wilcox return 0; 205141e9d4bSMatthew Wilcox } 206141e9d4bSMatthew Wilcox 207*e87aa773SMatthew Wilcox static void pool_free_page(struct dma_pool *pool, struct dma_page *page) 208141e9d4bSMatthew Wilcox { 209141e9d4bSMatthew Wilcox dma_addr_t dma = page->dma; 210141e9d4bSMatthew Wilcox 211141e9d4bSMatthew Wilcox #ifdef CONFIG_DEBUG_SLAB 212141e9d4bSMatthew Wilcox memset(page->vaddr, POOL_POISON_FREED, pool->allocation); 213141e9d4bSMatthew Wilcox #endif 214141e9d4bSMatthew Wilcox dma_free_coherent(pool->dev, pool->allocation, page->vaddr, dma); 215141e9d4bSMatthew Wilcox list_del(&page->page_list); 216141e9d4bSMatthew Wilcox kfree(page); 217141e9d4bSMatthew Wilcox } 218141e9d4bSMatthew Wilcox 219141e9d4bSMatthew Wilcox /** 220141e9d4bSMatthew Wilcox * dma_pool_destroy - destroys a pool of dma memory blocks. 221141e9d4bSMatthew Wilcox * @pool: dma pool that will be destroyed 222141e9d4bSMatthew Wilcox * Context: !in_interrupt() 223141e9d4bSMatthew Wilcox * 224141e9d4bSMatthew Wilcox * Caller guarantees that no more memory from the pool is in use, 225141e9d4bSMatthew Wilcox * and that nothing will try to use the pool after this call. 226141e9d4bSMatthew Wilcox */ 227*e87aa773SMatthew Wilcox void dma_pool_destroy(struct dma_pool *pool) 228141e9d4bSMatthew Wilcox { 229141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 230141e9d4bSMatthew Wilcox list_del(&pool->pools); 231141e9d4bSMatthew Wilcox if (pool->dev && list_empty(&pool->dev->dma_pools)) 232141e9d4bSMatthew Wilcox device_remove_file(pool->dev, &dev_attr_pools); 233141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 234141e9d4bSMatthew Wilcox 235141e9d4bSMatthew Wilcox while (!list_empty(&pool->page_list)) { 236141e9d4bSMatthew Wilcox struct dma_page *page; 237141e9d4bSMatthew Wilcox page = list_entry(pool->page_list.next, 238141e9d4bSMatthew Wilcox struct dma_page, page_list); 239141e9d4bSMatthew Wilcox if (is_page_busy(pool->blocks_per_page, page->bitmap)) { 240141e9d4bSMatthew Wilcox if (pool->dev) 241*e87aa773SMatthew Wilcox dev_err(pool->dev, 242*e87aa773SMatthew Wilcox "dma_pool_destroy %s, %p busy\n", 243141e9d4bSMatthew Wilcox pool->name, page->vaddr); 244141e9d4bSMatthew Wilcox else 245*e87aa773SMatthew Wilcox printk(KERN_ERR 246*e87aa773SMatthew Wilcox "dma_pool_destroy %s, %p busy\n", 247141e9d4bSMatthew Wilcox pool->name, page->vaddr); 248141e9d4bSMatthew Wilcox /* leak the still-in-use consistent memory */ 249141e9d4bSMatthew Wilcox list_del(&page->page_list); 250141e9d4bSMatthew Wilcox kfree(page); 251141e9d4bSMatthew Wilcox } else 252141e9d4bSMatthew Wilcox pool_free_page(pool, page); 253141e9d4bSMatthew Wilcox } 254141e9d4bSMatthew Wilcox 255141e9d4bSMatthew Wilcox kfree(pool); 256141e9d4bSMatthew Wilcox } 257*e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_destroy); 258141e9d4bSMatthew Wilcox 259141e9d4bSMatthew Wilcox /** 260141e9d4bSMatthew Wilcox * dma_pool_alloc - get a block of consistent memory 261141e9d4bSMatthew Wilcox * @pool: dma pool that will produce the block 262141e9d4bSMatthew Wilcox * @mem_flags: GFP_* bitmask 263141e9d4bSMatthew Wilcox * @handle: pointer to dma address of block 264141e9d4bSMatthew Wilcox * 265141e9d4bSMatthew Wilcox * This returns the kernel virtual address of a currently unused block, 266141e9d4bSMatthew Wilcox * and reports its dma address through the handle. 267141e9d4bSMatthew Wilcox * If such a memory block can't be allocated, null is returned. 268141e9d4bSMatthew Wilcox */ 269*e87aa773SMatthew Wilcox void *dma_pool_alloc(struct dma_pool *pool, gfp_t mem_flags, 270*e87aa773SMatthew Wilcox dma_addr_t *handle) 271141e9d4bSMatthew Wilcox { 272141e9d4bSMatthew Wilcox unsigned long flags; 273141e9d4bSMatthew Wilcox struct dma_page *page; 274141e9d4bSMatthew Wilcox int map, block; 275141e9d4bSMatthew Wilcox size_t offset; 276141e9d4bSMatthew Wilcox void *retval; 277141e9d4bSMatthew Wilcox 278141e9d4bSMatthew Wilcox restart: 279141e9d4bSMatthew Wilcox spin_lock_irqsave(&pool->lock, flags); 280141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 281141e9d4bSMatthew Wilcox int i; 282141e9d4bSMatthew Wilcox /* only cachable accesses here ... */ 283141e9d4bSMatthew Wilcox for (map = 0, i = 0; 284*e87aa773SMatthew Wilcox i < pool->blocks_per_page; i += BITS_PER_LONG, map++) { 285141e9d4bSMatthew Wilcox if (page->bitmap[map] == 0) 286141e9d4bSMatthew Wilcox continue; 287141e9d4bSMatthew Wilcox block = ffz(~page->bitmap[map]); 288141e9d4bSMatthew Wilcox if ((i + block) < pool->blocks_per_page) { 289141e9d4bSMatthew Wilcox clear_bit(block, &page->bitmap[map]); 290141e9d4bSMatthew Wilcox offset = (BITS_PER_LONG * map) + block; 291141e9d4bSMatthew Wilcox offset *= pool->size; 292141e9d4bSMatthew Wilcox goto ready; 293141e9d4bSMatthew Wilcox } 294141e9d4bSMatthew Wilcox } 295141e9d4bSMatthew Wilcox } 296*e87aa773SMatthew Wilcox page = pool_alloc_page(pool, GFP_ATOMIC); 297*e87aa773SMatthew Wilcox if (!page) { 298141e9d4bSMatthew Wilcox if (mem_flags & __GFP_WAIT) { 299141e9d4bSMatthew Wilcox DECLARE_WAITQUEUE(wait, current); 300141e9d4bSMatthew Wilcox 301141e9d4bSMatthew Wilcox __set_current_state(TASK_INTERRUPTIBLE); 302141e9d4bSMatthew Wilcox add_wait_queue(&pool->waitq, &wait); 303141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 304141e9d4bSMatthew Wilcox 305141e9d4bSMatthew Wilcox schedule_timeout(POOL_TIMEOUT_JIFFIES); 306141e9d4bSMatthew Wilcox 307141e9d4bSMatthew Wilcox remove_wait_queue(&pool->waitq, &wait); 308141e9d4bSMatthew Wilcox goto restart; 309141e9d4bSMatthew Wilcox } 310141e9d4bSMatthew Wilcox retval = NULL; 311141e9d4bSMatthew Wilcox goto done; 312141e9d4bSMatthew Wilcox } 313141e9d4bSMatthew Wilcox 314141e9d4bSMatthew Wilcox clear_bit(0, &page->bitmap[0]); 315141e9d4bSMatthew Wilcox offset = 0; 316141e9d4bSMatthew Wilcox ready: 317141e9d4bSMatthew Wilcox page->in_use++; 318141e9d4bSMatthew Wilcox retval = offset + page->vaddr; 319141e9d4bSMatthew Wilcox *handle = offset + page->dma; 320141e9d4bSMatthew Wilcox #ifdef CONFIG_DEBUG_SLAB 321141e9d4bSMatthew Wilcox memset(retval, POOL_POISON_ALLOCATED, pool->size); 322141e9d4bSMatthew Wilcox #endif 323141e9d4bSMatthew Wilcox done: 324141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 325141e9d4bSMatthew Wilcox return retval; 326141e9d4bSMatthew Wilcox } 327*e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_alloc); 328141e9d4bSMatthew Wilcox 329*e87aa773SMatthew Wilcox static struct dma_page *pool_find_page(struct dma_pool *pool, dma_addr_t dma) 330141e9d4bSMatthew Wilcox { 331141e9d4bSMatthew Wilcox unsigned long flags; 332141e9d4bSMatthew Wilcox struct dma_page *page; 333141e9d4bSMatthew Wilcox 334141e9d4bSMatthew Wilcox spin_lock_irqsave(&pool->lock, flags); 335141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 336141e9d4bSMatthew Wilcox if (dma < page->dma) 337141e9d4bSMatthew Wilcox continue; 338141e9d4bSMatthew Wilcox if (dma < (page->dma + pool->allocation)) 339141e9d4bSMatthew Wilcox goto done; 340141e9d4bSMatthew Wilcox } 341141e9d4bSMatthew Wilcox page = NULL; 342141e9d4bSMatthew Wilcox done: 343141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 344141e9d4bSMatthew Wilcox return page; 345141e9d4bSMatthew Wilcox } 346141e9d4bSMatthew Wilcox 347141e9d4bSMatthew Wilcox /** 348141e9d4bSMatthew Wilcox * dma_pool_free - put block back into dma pool 349141e9d4bSMatthew Wilcox * @pool: the dma pool holding the block 350141e9d4bSMatthew Wilcox * @vaddr: virtual address of block 351141e9d4bSMatthew Wilcox * @dma: dma address of block 352141e9d4bSMatthew Wilcox * 353141e9d4bSMatthew Wilcox * Caller promises neither device nor driver will again touch this block 354141e9d4bSMatthew Wilcox * unless it is first re-allocated. 355141e9d4bSMatthew Wilcox */ 356*e87aa773SMatthew Wilcox void dma_pool_free(struct dma_pool *pool, void *vaddr, dma_addr_t dma) 357141e9d4bSMatthew Wilcox { 358141e9d4bSMatthew Wilcox struct dma_page *page; 359141e9d4bSMatthew Wilcox unsigned long flags; 360141e9d4bSMatthew Wilcox int map, block; 361141e9d4bSMatthew Wilcox 362*e87aa773SMatthew Wilcox page = pool_find_page(pool, dma); 363*e87aa773SMatthew Wilcox if (!page) { 364141e9d4bSMatthew Wilcox if (pool->dev) 365*e87aa773SMatthew Wilcox dev_err(pool->dev, 366*e87aa773SMatthew Wilcox "dma_pool_free %s, %p/%lx (bad dma)\n", 367141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long)dma); 368141e9d4bSMatthew Wilcox else 369141e9d4bSMatthew Wilcox printk(KERN_ERR "dma_pool_free %s, %p/%lx (bad dma)\n", 370141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long)dma); 371141e9d4bSMatthew Wilcox return; 372141e9d4bSMatthew Wilcox } 373141e9d4bSMatthew Wilcox 374141e9d4bSMatthew Wilcox block = dma - page->dma; 375141e9d4bSMatthew Wilcox block /= pool->size; 376141e9d4bSMatthew Wilcox map = block / BITS_PER_LONG; 377141e9d4bSMatthew Wilcox block %= BITS_PER_LONG; 378141e9d4bSMatthew Wilcox 379141e9d4bSMatthew Wilcox #ifdef CONFIG_DEBUG_SLAB 380141e9d4bSMatthew Wilcox if (((dma - page->dma) + (void *)page->vaddr) != vaddr) { 381141e9d4bSMatthew Wilcox if (pool->dev) 382*e87aa773SMatthew Wilcox dev_err(pool->dev, 383*e87aa773SMatthew Wilcox "dma_pool_free %s, %p (bad vaddr)/%Lx\n", 384141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long long)dma); 385141e9d4bSMatthew Wilcox else 386*e87aa773SMatthew Wilcox printk(KERN_ERR 387*e87aa773SMatthew Wilcox "dma_pool_free %s, %p (bad vaddr)/%Lx\n", 388141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long long)dma); 389141e9d4bSMatthew Wilcox return; 390141e9d4bSMatthew Wilcox } 391141e9d4bSMatthew Wilcox if (page->bitmap[map] & (1UL << block)) { 392141e9d4bSMatthew Wilcox if (pool->dev) 393*e87aa773SMatthew Wilcox dev_err(pool->dev, 394*e87aa773SMatthew Wilcox "dma_pool_free %s, dma %Lx already free\n", 395141e9d4bSMatthew Wilcox pool->name, (unsigned long long)dma); 396141e9d4bSMatthew Wilcox else 397*e87aa773SMatthew Wilcox printk(KERN_ERR 398*e87aa773SMatthew Wilcox "dma_pool_free %s, dma %Lx already free\n", 399141e9d4bSMatthew Wilcox pool->name, (unsigned long long)dma); 400141e9d4bSMatthew Wilcox return; 401141e9d4bSMatthew Wilcox } 402141e9d4bSMatthew Wilcox memset(vaddr, POOL_POISON_FREED, pool->size); 403141e9d4bSMatthew Wilcox #endif 404141e9d4bSMatthew Wilcox 405141e9d4bSMatthew Wilcox spin_lock_irqsave(&pool->lock, flags); 406141e9d4bSMatthew Wilcox page->in_use--; 407141e9d4bSMatthew Wilcox set_bit(block, &page->bitmap[map]); 408141e9d4bSMatthew Wilcox if (waitqueue_active(&pool->waitq)) 409141e9d4bSMatthew Wilcox wake_up(&pool->waitq); 410141e9d4bSMatthew Wilcox /* 411141e9d4bSMatthew Wilcox * Resist a temptation to do 412141e9d4bSMatthew Wilcox * if (!is_page_busy(bpp, page->bitmap)) pool_free_page(pool, page); 413141e9d4bSMatthew Wilcox * Better have a few empty pages hang around. 414141e9d4bSMatthew Wilcox */ 415141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 416141e9d4bSMatthew Wilcox } 417*e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_free); 418141e9d4bSMatthew Wilcox 419141e9d4bSMatthew Wilcox /* 420141e9d4bSMatthew Wilcox * Managed DMA pool 421141e9d4bSMatthew Wilcox */ 422141e9d4bSMatthew Wilcox static void dmam_pool_release(struct device *dev, void *res) 423141e9d4bSMatthew Wilcox { 424141e9d4bSMatthew Wilcox struct dma_pool *pool = *(struct dma_pool **)res; 425141e9d4bSMatthew Wilcox 426141e9d4bSMatthew Wilcox dma_pool_destroy(pool); 427141e9d4bSMatthew Wilcox } 428141e9d4bSMatthew Wilcox 429141e9d4bSMatthew Wilcox static int dmam_pool_match(struct device *dev, void *res, void *match_data) 430141e9d4bSMatthew Wilcox { 431141e9d4bSMatthew Wilcox return *(struct dma_pool **)res == match_data; 432141e9d4bSMatthew Wilcox } 433141e9d4bSMatthew Wilcox 434141e9d4bSMatthew Wilcox /** 435141e9d4bSMatthew Wilcox * dmam_pool_create - Managed dma_pool_create() 436141e9d4bSMatthew Wilcox * @name: name of pool, for diagnostics 437141e9d4bSMatthew Wilcox * @dev: device that will be doing the DMA 438141e9d4bSMatthew Wilcox * @size: size of the blocks in this pool. 439141e9d4bSMatthew Wilcox * @align: alignment requirement for blocks; must be a power of two 440141e9d4bSMatthew Wilcox * @allocation: returned blocks won't cross this boundary (or zero) 441141e9d4bSMatthew Wilcox * 442141e9d4bSMatthew Wilcox * Managed dma_pool_create(). DMA pool created with this function is 443141e9d4bSMatthew Wilcox * automatically destroyed on driver detach. 444141e9d4bSMatthew Wilcox */ 445141e9d4bSMatthew Wilcox struct dma_pool *dmam_pool_create(const char *name, struct device *dev, 446141e9d4bSMatthew Wilcox size_t size, size_t align, size_t allocation) 447141e9d4bSMatthew Wilcox { 448141e9d4bSMatthew Wilcox struct dma_pool **ptr, *pool; 449141e9d4bSMatthew Wilcox 450141e9d4bSMatthew Wilcox ptr = devres_alloc(dmam_pool_release, sizeof(*ptr), GFP_KERNEL); 451141e9d4bSMatthew Wilcox if (!ptr) 452141e9d4bSMatthew Wilcox return NULL; 453141e9d4bSMatthew Wilcox 454141e9d4bSMatthew Wilcox pool = *ptr = dma_pool_create(name, dev, size, align, allocation); 455141e9d4bSMatthew Wilcox if (pool) 456141e9d4bSMatthew Wilcox devres_add(dev, ptr); 457141e9d4bSMatthew Wilcox else 458141e9d4bSMatthew Wilcox devres_free(ptr); 459141e9d4bSMatthew Wilcox 460141e9d4bSMatthew Wilcox return pool; 461141e9d4bSMatthew Wilcox } 462*e87aa773SMatthew Wilcox EXPORT_SYMBOL(dmam_pool_create); 463141e9d4bSMatthew Wilcox 464141e9d4bSMatthew Wilcox /** 465141e9d4bSMatthew Wilcox * dmam_pool_destroy - Managed dma_pool_destroy() 466141e9d4bSMatthew Wilcox * @pool: dma pool that will be destroyed 467141e9d4bSMatthew Wilcox * 468141e9d4bSMatthew Wilcox * Managed dma_pool_destroy(). 469141e9d4bSMatthew Wilcox */ 470141e9d4bSMatthew Wilcox void dmam_pool_destroy(struct dma_pool *pool) 471141e9d4bSMatthew Wilcox { 472141e9d4bSMatthew Wilcox struct device *dev = pool->dev; 473141e9d4bSMatthew Wilcox 474141e9d4bSMatthew Wilcox dma_pool_destroy(pool); 475141e9d4bSMatthew Wilcox WARN_ON(devres_destroy(dev, dmam_pool_release, dmam_pool_match, pool)); 476141e9d4bSMatthew Wilcox } 477141e9d4bSMatthew Wilcox EXPORT_SYMBOL(dmam_pool_destroy); 478