16182a094SMatthew Wilcox /* 26182a094SMatthew Wilcox * DMA Pool allocator 36182a094SMatthew Wilcox * 46182a094SMatthew Wilcox * Copyright 2001 David Brownell 56182a094SMatthew Wilcox * Copyright 2007 Intel Corporation 66182a094SMatthew Wilcox * Author: Matthew Wilcox <willy@linux.intel.com> 76182a094SMatthew Wilcox * 86182a094SMatthew Wilcox * This software may be redistributed and/or modified under the terms of 96182a094SMatthew Wilcox * the GNU General Public License ("GPL") version 2 as published by the 106182a094SMatthew Wilcox * Free Software Foundation. 116182a094SMatthew Wilcox * 126182a094SMatthew Wilcox * This allocator returns small blocks of a given size which are DMA-able by 136182a094SMatthew Wilcox * the given device. It uses the dma_alloc_coherent page allocator to get 146182a094SMatthew Wilcox * new pages, then splits them up into blocks of the required size. 156182a094SMatthew Wilcox * Many older drivers still have their own code to do this. 166182a094SMatthew Wilcox * 176182a094SMatthew Wilcox * The current design of this allocator is fairly simple. The pool is 186182a094SMatthew Wilcox * represented by the 'struct dma_pool' which keeps a doubly-linked list of 196182a094SMatthew Wilcox * allocated pages. Each page in the page_list is split into blocks of at 20a35a3455SMatthew Wilcox * least 'size' bytes. Free blocks are tracked in an unsorted singly-linked 21a35a3455SMatthew Wilcox * list of free blocks within the page. Used blocks aren't tracked, but we 22a35a3455SMatthew Wilcox * keep a count of how many are currently allocated from each page. 236182a094SMatthew Wilcox */ 24141e9d4bSMatthew Wilcox 25141e9d4bSMatthew Wilcox #include <linux/device.h> 26141e9d4bSMatthew Wilcox #include <linux/dma-mapping.h> 27141e9d4bSMatthew Wilcox #include <linux/dmapool.h> 286182a094SMatthew Wilcox #include <linux/kernel.h> 296182a094SMatthew Wilcox #include <linux/list.h> 30b95f1b31SPaul Gortmaker #include <linux/export.h> 316182a094SMatthew Wilcox #include <linux/mutex.h> 32141e9d4bSMatthew Wilcox #include <linux/poison.h> 33141e9d4bSMatthew Wilcox #include <linux/sched.h> 346182a094SMatthew Wilcox #include <linux/slab.h> 357c77509cSPaul Gortmaker #include <linux/stat.h> 366182a094SMatthew Wilcox #include <linux/spinlock.h> 376182a094SMatthew Wilcox #include <linux/string.h> 386182a094SMatthew Wilcox #include <linux/types.h> 396182a094SMatthew Wilcox #include <linux/wait.h> 40141e9d4bSMatthew Wilcox 41b5ee5befSAndi Kleen #if defined(CONFIG_DEBUG_SLAB) || defined(CONFIG_SLUB_DEBUG_ON) 42b5ee5befSAndi Kleen #define DMAPOOL_DEBUG 1 43b5ee5befSAndi Kleen #endif 44b5ee5befSAndi Kleen 45141e9d4bSMatthew Wilcox struct dma_pool { /* the pool */ 46141e9d4bSMatthew Wilcox struct list_head page_list; 47141e9d4bSMatthew Wilcox spinlock_t lock; 48141e9d4bSMatthew Wilcox size_t size; 49141e9d4bSMatthew Wilcox struct device *dev; 50141e9d4bSMatthew Wilcox size_t allocation; 51e34f44b3SMatthew Wilcox size_t boundary; 52141e9d4bSMatthew Wilcox char name[32]; 53141e9d4bSMatthew Wilcox struct list_head pools; 54141e9d4bSMatthew Wilcox }; 55141e9d4bSMatthew Wilcox 56141e9d4bSMatthew Wilcox struct dma_page { /* cacheable header for 'allocation' bytes */ 57141e9d4bSMatthew Wilcox struct list_head page_list; 58141e9d4bSMatthew Wilcox void *vaddr; 59141e9d4bSMatthew Wilcox dma_addr_t dma; 60a35a3455SMatthew Wilcox unsigned int in_use; 61a35a3455SMatthew Wilcox unsigned int offset; 62141e9d4bSMatthew Wilcox }; 63141e9d4bSMatthew Wilcox 64141e9d4bSMatthew Wilcox static DEFINE_MUTEX(pools_lock); 65141e9d4bSMatthew Wilcox 66141e9d4bSMatthew Wilcox static ssize_t 67141e9d4bSMatthew Wilcox show_pools(struct device *dev, struct device_attribute *attr, char *buf) 68141e9d4bSMatthew Wilcox { 69141e9d4bSMatthew Wilcox unsigned temp; 70141e9d4bSMatthew Wilcox unsigned size; 71141e9d4bSMatthew Wilcox char *next; 72141e9d4bSMatthew Wilcox struct dma_page *page; 73141e9d4bSMatthew Wilcox struct dma_pool *pool; 74141e9d4bSMatthew Wilcox 75141e9d4bSMatthew Wilcox next = buf; 76141e9d4bSMatthew Wilcox size = PAGE_SIZE; 77141e9d4bSMatthew Wilcox 78141e9d4bSMatthew Wilcox temp = scnprintf(next, size, "poolinfo - 0.1\n"); 79141e9d4bSMatthew Wilcox size -= temp; 80141e9d4bSMatthew Wilcox next += temp; 81141e9d4bSMatthew Wilcox 82141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 83141e9d4bSMatthew Wilcox list_for_each_entry(pool, &dev->dma_pools, pools) { 84141e9d4bSMatthew Wilcox unsigned pages = 0; 85141e9d4bSMatthew Wilcox unsigned blocks = 0; 86141e9d4bSMatthew Wilcox 87c4956823SThomas Gleixner spin_lock_irq(&pool->lock); 88141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 89141e9d4bSMatthew Wilcox pages++; 90141e9d4bSMatthew Wilcox blocks += page->in_use; 91141e9d4bSMatthew Wilcox } 92c4956823SThomas Gleixner spin_unlock_irq(&pool->lock); 93141e9d4bSMatthew Wilcox 94141e9d4bSMatthew Wilcox /* per-pool info, no real statistics yet */ 95141e9d4bSMatthew Wilcox temp = scnprintf(next, size, "%-16s %4u %4Zu %4Zu %2u\n", 96a35a3455SMatthew Wilcox pool->name, blocks, 97a35a3455SMatthew Wilcox pages * (pool->allocation / pool->size), 98141e9d4bSMatthew Wilcox pool->size, pages); 99141e9d4bSMatthew Wilcox size -= temp; 100141e9d4bSMatthew Wilcox next += temp; 101141e9d4bSMatthew Wilcox } 102141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 103141e9d4bSMatthew Wilcox 104141e9d4bSMatthew Wilcox return PAGE_SIZE - size; 105141e9d4bSMatthew Wilcox } 106e87aa773SMatthew Wilcox 107141e9d4bSMatthew Wilcox static DEVICE_ATTR(pools, S_IRUGO, show_pools, NULL); 108141e9d4bSMatthew Wilcox 109141e9d4bSMatthew Wilcox /** 110141e9d4bSMatthew Wilcox * dma_pool_create - Creates a pool of consistent memory blocks, for dma. 111141e9d4bSMatthew Wilcox * @name: name of pool, for diagnostics 112141e9d4bSMatthew Wilcox * @dev: device that will be doing the DMA 113141e9d4bSMatthew Wilcox * @size: size of the blocks in this pool. 114141e9d4bSMatthew Wilcox * @align: alignment requirement for blocks; must be a power of two 115e34f44b3SMatthew Wilcox * @boundary: returned blocks won't cross this power of two boundary 116141e9d4bSMatthew Wilcox * Context: !in_interrupt() 117141e9d4bSMatthew Wilcox * 118141e9d4bSMatthew Wilcox * Returns a dma allocation pool with the requested characteristics, or 119141e9d4bSMatthew Wilcox * null if one can't be created. Given one of these pools, dma_pool_alloc() 120141e9d4bSMatthew Wilcox * may be used to allocate memory. Such memory will all have "consistent" 121141e9d4bSMatthew Wilcox * DMA mappings, accessible by the device and its driver without using 122141e9d4bSMatthew Wilcox * cache flushing primitives. The actual size of blocks allocated may be 123141e9d4bSMatthew Wilcox * larger than requested because of alignment. 124141e9d4bSMatthew Wilcox * 125e34f44b3SMatthew Wilcox * If @boundary is nonzero, objects returned from dma_pool_alloc() won't 126141e9d4bSMatthew Wilcox * cross that size boundary. This is useful for devices which have 127141e9d4bSMatthew Wilcox * addressing restrictions on individual DMA transfers, such as not crossing 128141e9d4bSMatthew Wilcox * boundaries of 4KBytes. 129141e9d4bSMatthew Wilcox */ 130e87aa773SMatthew Wilcox struct dma_pool *dma_pool_create(const char *name, struct device *dev, 131e34f44b3SMatthew Wilcox size_t size, size_t align, size_t boundary) 132141e9d4bSMatthew Wilcox { 133141e9d4bSMatthew Wilcox struct dma_pool *retval; 134e34f44b3SMatthew Wilcox size_t allocation; 135141e9d4bSMatthew Wilcox 136399154beSMatthew Wilcox if (align == 0) { 137141e9d4bSMatthew Wilcox align = 1; 138399154beSMatthew Wilcox } else if (align & (align - 1)) { 139399154beSMatthew Wilcox return NULL; 140399154beSMatthew Wilcox } 141399154beSMatthew Wilcox 142a35a3455SMatthew Wilcox if (size == 0) { 143141e9d4bSMatthew Wilcox return NULL; 144a35a3455SMatthew Wilcox } else if (size < 4) { 145a35a3455SMatthew Wilcox size = 4; 146a35a3455SMatthew Wilcox } 147399154beSMatthew Wilcox 148399154beSMatthew Wilcox if ((size % align) != 0) 149399154beSMatthew Wilcox size = ALIGN(size, align); 150141e9d4bSMatthew Wilcox 151e34f44b3SMatthew Wilcox allocation = max_t(size_t, size, PAGE_SIZE); 152141e9d4bSMatthew Wilcox 153e34f44b3SMatthew Wilcox if (!boundary) { 154e34f44b3SMatthew Wilcox boundary = allocation; 155e34f44b3SMatthew Wilcox } else if ((boundary < size) || (boundary & (boundary - 1))) { 156e34f44b3SMatthew Wilcox return NULL; 157e34f44b3SMatthew Wilcox } 158e34f44b3SMatthew Wilcox 159e34f44b3SMatthew Wilcox retval = kmalloc_node(sizeof(*retval), GFP_KERNEL, dev_to_node(dev)); 160e34f44b3SMatthew Wilcox if (!retval) 161141e9d4bSMatthew Wilcox return retval; 162141e9d4bSMatthew Wilcox 163e34f44b3SMatthew Wilcox strlcpy(retval->name, name, sizeof(retval->name)); 164141e9d4bSMatthew Wilcox 165141e9d4bSMatthew Wilcox retval->dev = dev; 166141e9d4bSMatthew Wilcox 167141e9d4bSMatthew Wilcox INIT_LIST_HEAD(&retval->page_list); 168141e9d4bSMatthew Wilcox spin_lock_init(&retval->lock); 169141e9d4bSMatthew Wilcox retval->size = size; 170e34f44b3SMatthew Wilcox retval->boundary = boundary; 171141e9d4bSMatthew Wilcox retval->allocation = allocation; 172141e9d4bSMatthew Wilcox 173141e9d4bSMatthew Wilcox if (dev) { 174141e9d4bSMatthew Wilcox int ret; 175141e9d4bSMatthew Wilcox 176141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 177141e9d4bSMatthew Wilcox if (list_empty(&dev->dma_pools)) 178141e9d4bSMatthew Wilcox ret = device_create_file(dev, &dev_attr_pools); 179141e9d4bSMatthew Wilcox else 180141e9d4bSMatthew Wilcox ret = 0; 181141e9d4bSMatthew Wilcox /* note: not currently insisting "name" be unique */ 182141e9d4bSMatthew Wilcox if (!ret) 183141e9d4bSMatthew Wilcox list_add(&retval->pools, &dev->dma_pools); 184141e9d4bSMatthew Wilcox else { 185141e9d4bSMatthew Wilcox kfree(retval); 186141e9d4bSMatthew Wilcox retval = NULL; 187141e9d4bSMatthew Wilcox } 188141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 189141e9d4bSMatthew Wilcox } else 190141e9d4bSMatthew Wilcox INIT_LIST_HEAD(&retval->pools); 191141e9d4bSMatthew Wilcox 192141e9d4bSMatthew Wilcox return retval; 193141e9d4bSMatthew Wilcox } 194e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_create); 195141e9d4bSMatthew Wilcox 196a35a3455SMatthew Wilcox static void pool_initialise_page(struct dma_pool *pool, struct dma_page *page) 197a35a3455SMatthew Wilcox { 198a35a3455SMatthew Wilcox unsigned int offset = 0; 199e34f44b3SMatthew Wilcox unsigned int next_boundary = pool->boundary; 200a35a3455SMatthew Wilcox 201a35a3455SMatthew Wilcox do { 202a35a3455SMatthew Wilcox unsigned int next = offset + pool->size; 203e34f44b3SMatthew Wilcox if (unlikely((next + pool->size) >= next_boundary)) { 204e34f44b3SMatthew Wilcox next = next_boundary; 205e34f44b3SMatthew Wilcox next_boundary += pool->boundary; 206e34f44b3SMatthew Wilcox } 207a35a3455SMatthew Wilcox *(int *)(page->vaddr + offset) = next; 208a35a3455SMatthew Wilcox offset = next; 209a35a3455SMatthew Wilcox } while (offset < pool->allocation); 210a35a3455SMatthew Wilcox } 211a35a3455SMatthew Wilcox 212e87aa773SMatthew Wilcox static struct dma_page *pool_alloc_page(struct dma_pool *pool, gfp_t mem_flags) 213141e9d4bSMatthew Wilcox { 214141e9d4bSMatthew Wilcox struct dma_page *page; 215141e9d4bSMatthew Wilcox 216a35a3455SMatthew Wilcox page = kmalloc(sizeof(*page), mem_flags); 217141e9d4bSMatthew Wilcox if (!page) 218141e9d4bSMatthew Wilcox return NULL; 219a35a3455SMatthew Wilcox page->vaddr = dma_alloc_coherent(pool->dev, pool->allocation, 220e87aa773SMatthew Wilcox &page->dma, mem_flags); 221141e9d4bSMatthew Wilcox if (page->vaddr) { 222b5ee5befSAndi Kleen #ifdef DMAPOOL_DEBUG 223141e9d4bSMatthew Wilcox memset(page->vaddr, POOL_POISON_FREED, pool->allocation); 224141e9d4bSMatthew Wilcox #endif 225a35a3455SMatthew Wilcox pool_initialise_page(pool, page); 226141e9d4bSMatthew Wilcox page->in_use = 0; 227a35a3455SMatthew Wilcox page->offset = 0; 228141e9d4bSMatthew Wilcox } else { 229141e9d4bSMatthew Wilcox kfree(page); 230141e9d4bSMatthew Wilcox page = NULL; 231141e9d4bSMatthew Wilcox } 232141e9d4bSMatthew Wilcox return page; 233141e9d4bSMatthew Wilcox } 234141e9d4bSMatthew Wilcox 235a35a3455SMatthew Wilcox static inline int is_page_busy(struct dma_page *page) 236141e9d4bSMatthew Wilcox { 237a35a3455SMatthew Wilcox return page->in_use != 0; 238141e9d4bSMatthew Wilcox } 239141e9d4bSMatthew Wilcox 240e87aa773SMatthew Wilcox static void pool_free_page(struct dma_pool *pool, struct dma_page *page) 241141e9d4bSMatthew Wilcox { 242141e9d4bSMatthew Wilcox dma_addr_t dma = page->dma; 243141e9d4bSMatthew Wilcox 244b5ee5befSAndi Kleen #ifdef DMAPOOL_DEBUG 245141e9d4bSMatthew Wilcox memset(page->vaddr, POOL_POISON_FREED, pool->allocation); 246141e9d4bSMatthew Wilcox #endif 247141e9d4bSMatthew Wilcox dma_free_coherent(pool->dev, pool->allocation, page->vaddr, dma); 248141e9d4bSMatthew Wilcox list_del(&page->page_list); 249141e9d4bSMatthew Wilcox kfree(page); 250141e9d4bSMatthew Wilcox } 251141e9d4bSMatthew Wilcox 252141e9d4bSMatthew Wilcox /** 253141e9d4bSMatthew Wilcox * dma_pool_destroy - destroys a pool of dma memory blocks. 254141e9d4bSMatthew Wilcox * @pool: dma pool that will be destroyed 255141e9d4bSMatthew Wilcox * Context: !in_interrupt() 256141e9d4bSMatthew Wilcox * 257141e9d4bSMatthew Wilcox * Caller guarantees that no more memory from the pool is in use, 258141e9d4bSMatthew Wilcox * and that nothing will try to use the pool after this call. 259141e9d4bSMatthew Wilcox */ 260e87aa773SMatthew Wilcox void dma_pool_destroy(struct dma_pool *pool) 261141e9d4bSMatthew Wilcox { 262141e9d4bSMatthew Wilcox mutex_lock(&pools_lock); 263141e9d4bSMatthew Wilcox list_del(&pool->pools); 264141e9d4bSMatthew Wilcox if (pool->dev && list_empty(&pool->dev->dma_pools)) 265141e9d4bSMatthew Wilcox device_remove_file(pool->dev, &dev_attr_pools); 266141e9d4bSMatthew Wilcox mutex_unlock(&pools_lock); 267141e9d4bSMatthew Wilcox 268141e9d4bSMatthew Wilcox while (!list_empty(&pool->page_list)) { 269141e9d4bSMatthew Wilcox struct dma_page *page; 270141e9d4bSMatthew Wilcox page = list_entry(pool->page_list.next, 271141e9d4bSMatthew Wilcox struct dma_page, page_list); 272a35a3455SMatthew Wilcox if (is_page_busy(page)) { 273141e9d4bSMatthew Wilcox if (pool->dev) 274e87aa773SMatthew Wilcox dev_err(pool->dev, 275e87aa773SMatthew Wilcox "dma_pool_destroy %s, %p busy\n", 276141e9d4bSMatthew Wilcox pool->name, page->vaddr); 277141e9d4bSMatthew Wilcox else 278e87aa773SMatthew Wilcox printk(KERN_ERR 279e87aa773SMatthew Wilcox "dma_pool_destroy %s, %p busy\n", 280141e9d4bSMatthew Wilcox pool->name, page->vaddr); 281141e9d4bSMatthew Wilcox /* leak the still-in-use consistent memory */ 282141e9d4bSMatthew Wilcox list_del(&page->page_list); 283141e9d4bSMatthew Wilcox kfree(page); 284141e9d4bSMatthew Wilcox } else 285141e9d4bSMatthew Wilcox pool_free_page(pool, page); 286141e9d4bSMatthew Wilcox } 287141e9d4bSMatthew Wilcox 288141e9d4bSMatthew Wilcox kfree(pool); 289141e9d4bSMatthew Wilcox } 290e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_destroy); 291141e9d4bSMatthew Wilcox 292141e9d4bSMatthew Wilcox /** 293141e9d4bSMatthew Wilcox * dma_pool_alloc - get a block of consistent memory 294141e9d4bSMatthew Wilcox * @pool: dma pool that will produce the block 295141e9d4bSMatthew Wilcox * @mem_flags: GFP_* bitmask 296141e9d4bSMatthew Wilcox * @handle: pointer to dma address of block 297141e9d4bSMatthew Wilcox * 298141e9d4bSMatthew Wilcox * This returns the kernel virtual address of a currently unused block, 299141e9d4bSMatthew Wilcox * and reports its dma address through the handle. 3006182a094SMatthew Wilcox * If such a memory block can't be allocated, %NULL is returned. 301141e9d4bSMatthew Wilcox */ 302e87aa773SMatthew Wilcox void *dma_pool_alloc(struct dma_pool *pool, gfp_t mem_flags, 303e87aa773SMatthew Wilcox dma_addr_t *handle) 304141e9d4bSMatthew Wilcox { 305141e9d4bSMatthew Wilcox unsigned long flags; 306141e9d4bSMatthew Wilcox struct dma_page *page; 307141e9d4bSMatthew Wilcox size_t offset; 308141e9d4bSMatthew Wilcox void *retval; 309141e9d4bSMatthew Wilcox 310ea05c844SDima Zavin might_sleep_if(mem_flags & __GFP_WAIT); 311ea05c844SDima Zavin 312141e9d4bSMatthew Wilcox spin_lock_irqsave(&pool->lock, flags); 313141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 314a35a3455SMatthew Wilcox if (page->offset < pool->allocation) 315141e9d4bSMatthew Wilcox goto ready; 316141e9d4bSMatthew Wilcox } 317141e9d4bSMatthew Wilcox 318387870f2SMarek Szyprowski /* pool_alloc_page() might sleep, so temporarily drop &pool->lock */ 319141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 320141e9d4bSMatthew Wilcox 321387870f2SMarek Szyprowski page = pool_alloc_page(pool, mem_flags); 322387870f2SMarek Szyprowski if (!page) 323387870f2SMarek Szyprowski return NULL; 324141e9d4bSMatthew Wilcox 3252cae367eSMatthew Wilcox spin_lock_irqsave(&pool->lock, flags); 326141e9d4bSMatthew Wilcox 327387870f2SMarek Szyprowski list_add(&page->page_list, &pool->page_list); 328141e9d4bSMatthew Wilcox ready: 329141e9d4bSMatthew Wilcox page->in_use++; 330a35a3455SMatthew Wilcox offset = page->offset; 331a35a3455SMatthew Wilcox page->offset = *(int *)(page->vaddr + offset); 332141e9d4bSMatthew Wilcox retval = offset + page->vaddr; 333141e9d4bSMatthew Wilcox *handle = offset + page->dma; 334b5ee5befSAndi Kleen #ifdef DMAPOOL_DEBUG 335*5de55b26SMatthieu CASTET { 336*5de55b26SMatthieu CASTET int i; 337*5de55b26SMatthieu CASTET u8 *data = retval; 338*5de55b26SMatthieu CASTET /* page->offset is stored in first 4 bytes */ 339*5de55b26SMatthieu CASTET for (i = sizeof(page->offset); i < pool->size; i++) { 340*5de55b26SMatthieu CASTET if (data[i] == POOL_POISON_FREED) 341*5de55b26SMatthieu CASTET continue; 342*5de55b26SMatthieu CASTET if (pool->dev) 343*5de55b26SMatthieu CASTET dev_err(pool->dev, 344*5de55b26SMatthieu CASTET "dma_pool_alloc %s, %p (corruped)\n", 345*5de55b26SMatthieu CASTET pool->name, retval); 346*5de55b26SMatthieu CASTET else 347*5de55b26SMatthieu CASTET pr_err("dma_pool_alloc %s, %p (corruped)\n", 348*5de55b26SMatthieu CASTET pool->name, retval); 349*5de55b26SMatthieu CASTET 350*5de55b26SMatthieu CASTET /* 351*5de55b26SMatthieu CASTET * Dump the first 4 bytes even if they are not 352*5de55b26SMatthieu CASTET * POOL_POISON_FREED 353*5de55b26SMatthieu CASTET */ 354*5de55b26SMatthieu CASTET print_hex_dump(KERN_ERR, "", DUMP_PREFIX_OFFSET, 16, 1, 355*5de55b26SMatthieu CASTET data, pool->size, 1); 356*5de55b26SMatthieu CASTET break; 357*5de55b26SMatthieu CASTET } 358*5de55b26SMatthieu CASTET } 359141e9d4bSMatthew Wilcox memset(retval, POOL_POISON_ALLOCATED, pool->size); 360141e9d4bSMatthew Wilcox #endif 361141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 362141e9d4bSMatthew Wilcox return retval; 363141e9d4bSMatthew Wilcox } 364e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_alloc); 365141e9d4bSMatthew Wilcox 366e87aa773SMatthew Wilcox static struct dma_page *pool_find_page(struct dma_pool *pool, dma_addr_t dma) 367141e9d4bSMatthew Wilcox { 368141e9d4bSMatthew Wilcox struct dma_page *page; 369141e9d4bSMatthew Wilcox 370141e9d4bSMatthew Wilcox list_for_each_entry(page, &pool->page_list, page_list) { 371141e9d4bSMatthew Wilcox if (dma < page->dma) 372141e9d4bSMatthew Wilcox continue; 373141e9d4bSMatthew Wilcox if (dma < (page->dma + pool->allocation)) 374141e9d4bSMatthew Wilcox return page; 375141e9d4bSMatthew Wilcox } 37684bc227dSRolf Eike Beer return NULL; 37784bc227dSRolf Eike Beer } 378141e9d4bSMatthew Wilcox 379141e9d4bSMatthew Wilcox /** 380141e9d4bSMatthew Wilcox * dma_pool_free - put block back into dma pool 381141e9d4bSMatthew Wilcox * @pool: the dma pool holding the block 382141e9d4bSMatthew Wilcox * @vaddr: virtual address of block 383141e9d4bSMatthew Wilcox * @dma: dma address of block 384141e9d4bSMatthew Wilcox * 385141e9d4bSMatthew Wilcox * Caller promises neither device nor driver will again touch this block 386141e9d4bSMatthew Wilcox * unless it is first re-allocated. 387141e9d4bSMatthew Wilcox */ 388e87aa773SMatthew Wilcox void dma_pool_free(struct dma_pool *pool, void *vaddr, dma_addr_t dma) 389141e9d4bSMatthew Wilcox { 390141e9d4bSMatthew Wilcox struct dma_page *page; 391141e9d4bSMatthew Wilcox unsigned long flags; 392a35a3455SMatthew Wilcox unsigned int offset; 393141e9d4bSMatthew Wilcox 39484bc227dSRolf Eike Beer spin_lock_irqsave(&pool->lock, flags); 395e87aa773SMatthew Wilcox page = pool_find_page(pool, dma); 396e87aa773SMatthew Wilcox if (!page) { 39784bc227dSRolf Eike Beer spin_unlock_irqrestore(&pool->lock, flags); 398141e9d4bSMatthew Wilcox if (pool->dev) 399e87aa773SMatthew Wilcox dev_err(pool->dev, 400e87aa773SMatthew Wilcox "dma_pool_free %s, %p/%lx (bad dma)\n", 401141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long)dma); 402141e9d4bSMatthew Wilcox else 403141e9d4bSMatthew Wilcox printk(KERN_ERR "dma_pool_free %s, %p/%lx (bad dma)\n", 404141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long)dma); 405141e9d4bSMatthew Wilcox return; 406141e9d4bSMatthew Wilcox } 407141e9d4bSMatthew Wilcox 408a35a3455SMatthew Wilcox offset = vaddr - page->vaddr; 409b5ee5befSAndi Kleen #ifdef DMAPOOL_DEBUG 410a35a3455SMatthew Wilcox if ((dma - page->dma) != offset) { 41184bc227dSRolf Eike Beer spin_unlock_irqrestore(&pool->lock, flags); 412141e9d4bSMatthew Wilcox if (pool->dev) 413e87aa773SMatthew Wilcox dev_err(pool->dev, 414e87aa773SMatthew Wilcox "dma_pool_free %s, %p (bad vaddr)/%Lx\n", 415141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long long)dma); 416141e9d4bSMatthew Wilcox else 417e87aa773SMatthew Wilcox printk(KERN_ERR 418e87aa773SMatthew Wilcox "dma_pool_free %s, %p (bad vaddr)/%Lx\n", 419141e9d4bSMatthew Wilcox pool->name, vaddr, (unsigned long long)dma); 420141e9d4bSMatthew Wilcox return; 421141e9d4bSMatthew Wilcox } 422a35a3455SMatthew Wilcox { 423a35a3455SMatthew Wilcox unsigned int chain = page->offset; 424a35a3455SMatthew Wilcox while (chain < pool->allocation) { 425a35a3455SMatthew Wilcox if (chain != offset) { 426a35a3455SMatthew Wilcox chain = *(int *)(page->vaddr + chain); 427a35a3455SMatthew Wilcox continue; 428a35a3455SMatthew Wilcox } 42984bc227dSRolf Eike Beer spin_unlock_irqrestore(&pool->lock, flags); 430141e9d4bSMatthew Wilcox if (pool->dev) 431a35a3455SMatthew Wilcox dev_err(pool->dev, "dma_pool_free %s, dma %Lx " 432a35a3455SMatthew Wilcox "already free\n", pool->name, 433a35a3455SMatthew Wilcox (unsigned long long)dma); 434141e9d4bSMatthew Wilcox else 435a35a3455SMatthew Wilcox printk(KERN_ERR "dma_pool_free %s, dma %Lx " 436a35a3455SMatthew Wilcox "already free\n", pool->name, 437a35a3455SMatthew Wilcox (unsigned long long)dma); 438141e9d4bSMatthew Wilcox return; 439141e9d4bSMatthew Wilcox } 440a35a3455SMatthew Wilcox } 441141e9d4bSMatthew Wilcox memset(vaddr, POOL_POISON_FREED, pool->size); 442141e9d4bSMatthew Wilcox #endif 443141e9d4bSMatthew Wilcox 444141e9d4bSMatthew Wilcox page->in_use--; 445a35a3455SMatthew Wilcox *(int *)vaddr = page->offset; 446a35a3455SMatthew Wilcox page->offset = offset; 447141e9d4bSMatthew Wilcox /* 448141e9d4bSMatthew Wilcox * Resist a temptation to do 449a35a3455SMatthew Wilcox * if (!is_page_busy(page)) pool_free_page(pool, page); 450141e9d4bSMatthew Wilcox * Better have a few empty pages hang around. 451141e9d4bSMatthew Wilcox */ 452141e9d4bSMatthew Wilcox spin_unlock_irqrestore(&pool->lock, flags); 453141e9d4bSMatthew Wilcox } 454e87aa773SMatthew Wilcox EXPORT_SYMBOL(dma_pool_free); 455141e9d4bSMatthew Wilcox 456141e9d4bSMatthew Wilcox /* 457141e9d4bSMatthew Wilcox * Managed DMA pool 458141e9d4bSMatthew Wilcox */ 459141e9d4bSMatthew Wilcox static void dmam_pool_release(struct device *dev, void *res) 460141e9d4bSMatthew Wilcox { 461141e9d4bSMatthew Wilcox struct dma_pool *pool = *(struct dma_pool **)res; 462141e9d4bSMatthew Wilcox 463141e9d4bSMatthew Wilcox dma_pool_destroy(pool); 464141e9d4bSMatthew Wilcox } 465141e9d4bSMatthew Wilcox 466141e9d4bSMatthew Wilcox static int dmam_pool_match(struct device *dev, void *res, void *match_data) 467141e9d4bSMatthew Wilcox { 468141e9d4bSMatthew Wilcox return *(struct dma_pool **)res == match_data; 469141e9d4bSMatthew Wilcox } 470141e9d4bSMatthew Wilcox 471141e9d4bSMatthew Wilcox /** 472141e9d4bSMatthew Wilcox * dmam_pool_create - Managed dma_pool_create() 473141e9d4bSMatthew Wilcox * @name: name of pool, for diagnostics 474141e9d4bSMatthew Wilcox * @dev: device that will be doing the DMA 475141e9d4bSMatthew Wilcox * @size: size of the blocks in this pool. 476141e9d4bSMatthew Wilcox * @align: alignment requirement for blocks; must be a power of two 477141e9d4bSMatthew Wilcox * @allocation: returned blocks won't cross this boundary (or zero) 478141e9d4bSMatthew Wilcox * 479141e9d4bSMatthew Wilcox * Managed dma_pool_create(). DMA pool created with this function is 480141e9d4bSMatthew Wilcox * automatically destroyed on driver detach. 481141e9d4bSMatthew Wilcox */ 482141e9d4bSMatthew Wilcox struct dma_pool *dmam_pool_create(const char *name, struct device *dev, 483141e9d4bSMatthew Wilcox size_t size, size_t align, size_t allocation) 484141e9d4bSMatthew Wilcox { 485141e9d4bSMatthew Wilcox struct dma_pool **ptr, *pool; 486141e9d4bSMatthew Wilcox 487141e9d4bSMatthew Wilcox ptr = devres_alloc(dmam_pool_release, sizeof(*ptr), GFP_KERNEL); 488141e9d4bSMatthew Wilcox if (!ptr) 489141e9d4bSMatthew Wilcox return NULL; 490141e9d4bSMatthew Wilcox 491141e9d4bSMatthew Wilcox pool = *ptr = dma_pool_create(name, dev, size, align, allocation); 492141e9d4bSMatthew Wilcox if (pool) 493141e9d4bSMatthew Wilcox devres_add(dev, ptr); 494141e9d4bSMatthew Wilcox else 495141e9d4bSMatthew Wilcox devres_free(ptr); 496141e9d4bSMatthew Wilcox 497141e9d4bSMatthew Wilcox return pool; 498141e9d4bSMatthew Wilcox } 499e87aa773SMatthew Wilcox EXPORT_SYMBOL(dmam_pool_create); 500141e9d4bSMatthew Wilcox 501141e9d4bSMatthew Wilcox /** 502141e9d4bSMatthew Wilcox * dmam_pool_destroy - Managed dma_pool_destroy() 503141e9d4bSMatthew Wilcox * @pool: dma pool that will be destroyed 504141e9d4bSMatthew Wilcox * 505141e9d4bSMatthew Wilcox * Managed dma_pool_destroy(). 506141e9d4bSMatthew Wilcox */ 507141e9d4bSMatthew Wilcox void dmam_pool_destroy(struct dma_pool *pool) 508141e9d4bSMatthew Wilcox { 509141e9d4bSMatthew Wilcox struct device *dev = pool->dev; 510141e9d4bSMatthew Wilcox 511141e9d4bSMatthew Wilcox WARN_ON(devres_destroy(dev, dmam_pool_release, dmam_pool_match, pool)); 512ae891a1bSMaxin B John dma_pool_destroy(pool); 513141e9d4bSMatthew Wilcox } 514141e9d4bSMatthew Wilcox EXPORT_SYMBOL(dmam_pool_destroy); 515