linux/drivers/media/common/videobuf2/videobuf2-dma-contig.c
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   1/*
   2 * videobuf2-dma-contig.c - DMA contig memory allocator for videobuf2
   3 *
   4 * Copyright (C) 2010 Samsung Electronics
   5 *
   6 * Author: Pawel Osciak <pawel@osciak.com>
   7 *
   8 * This program is free software; you can redistribute it and/or modify
   9 * it under the terms of the GNU General Public License as published by
  10 * the Free Software Foundation.
  11 */
  12
  13#include <linux/dma-buf.h>
  14#include <linux/module.h>
  15#include <linux/refcount.h>
  16#include <linux/scatterlist.h>
  17#include <linux/sched.h>
  18#include <linux/slab.h>
  19#include <linux/dma-mapping.h>
  20
  21#include <media/videobuf2-v4l2.h>
  22#include <media/videobuf2-dma-contig.h>
  23#include <media/videobuf2-memops.h>
  24
  25struct vb2_dc_buf {
  26        struct device                   *dev;
  27        void                            *vaddr;
  28        unsigned long                   size;
  29        void                            *cookie;
  30        dma_addr_t                      dma_addr;
  31        unsigned long                   attrs;
  32        enum dma_data_direction         dma_dir;
  33        struct sg_table                 *dma_sgt;
  34        struct frame_vector             *vec;
  35
  36        /* MMAP related */
  37        struct vb2_vmarea_handler       handler;
  38        refcount_t                      refcount;
  39        struct sg_table                 *sgt_base;
  40
  41        /* DMABUF related */
  42        struct dma_buf_attachment       *db_attach;
  43};
  44
  45/*********************************************/
  46/*        scatterlist table functions        */
  47/*********************************************/
  48
  49static unsigned long vb2_dc_get_contiguous_size(struct sg_table *sgt)
  50{
  51        struct scatterlist *s;
  52        dma_addr_t expected = sg_dma_address(sgt->sgl);
  53        unsigned int i;
  54        unsigned long size = 0;
  55
  56        for_each_sg(sgt->sgl, s, sgt->nents, i) {
  57                if (sg_dma_address(s) != expected)
  58                        break;
  59                expected = sg_dma_address(s) + sg_dma_len(s);
  60                size += sg_dma_len(s);
  61        }
  62        return size;
  63}
  64
  65/*********************************************/
  66/*         callbacks for all buffers         */
  67/*********************************************/
  68
  69static void *vb2_dc_cookie(void *buf_priv)
  70{
  71        struct vb2_dc_buf *buf = buf_priv;
  72
  73        return &buf->dma_addr;
  74}
  75
  76static void *vb2_dc_vaddr(void *buf_priv)
  77{
  78        struct vb2_dc_buf *buf = buf_priv;
  79
  80        if (!buf->vaddr && buf->db_attach)
  81                buf->vaddr = dma_buf_vmap(buf->db_attach->dmabuf);
  82
  83        return buf->vaddr;
  84}
  85
  86static unsigned int vb2_dc_num_users(void *buf_priv)
  87{
  88        struct vb2_dc_buf *buf = buf_priv;
  89
  90        return refcount_read(&buf->refcount);
  91}
  92
  93static void vb2_dc_prepare(void *buf_priv)
  94{
  95        struct vb2_dc_buf *buf = buf_priv;
  96        struct sg_table *sgt = buf->dma_sgt;
  97
  98        /* DMABUF exporter will flush the cache for us */
  99        if (!sgt || buf->db_attach)
 100                return;
 101
 102        dma_sync_sg_for_device(buf->dev, sgt->sgl, sgt->orig_nents,
 103                               buf->dma_dir);
 104}
 105
 106static void vb2_dc_finish(void *buf_priv)
 107{
 108        struct vb2_dc_buf *buf = buf_priv;
 109        struct sg_table *sgt = buf->dma_sgt;
 110
 111        /* DMABUF exporter will flush the cache for us */
 112        if (!sgt || buf->db_attach)
 113                return;
 114
 115        dma_sync_sg_for_cpu(buf->dev, sgt->sgl, sgt->orig_nents, buf->dma_dir);
 116}
 117
 118/*********************************************/
 119/*        callbacks for MMAP buffers         */
 120/*********************************************/
 121
 122static void vb2_dc_put(void *buf_priv)
 123{
 124        struct vb2_dc_buf *buf = buf_priv;
 125
 126        if (!refcount_dec_and_test(&buf->refcount))
 127                return;
 128
 129        if (buf->sgt_base) {
 130                sg_free_table(buf->sgt_base);
 131                kfree(buf->sgt_base);
 132        }
 133        dma_free_attrs(buf->dev, buf->size, buf->cookie, buf->dma_addr,
 134                       buf->attrs);
 135        put_device(buf->dev);
 136        kfree(buf);
 137}
 138
 139static void *vb2_dc_alloc(struct device *dev, unsigned long attrs,
 140                          unsigned long size, enum dma_data_direction dma_dir,
 141                          gfp_t gfp_flags)
 142{
 143        struct vb2_dc_buf *buf;
 144
 145        if (WARN_ON(!dev))
 146                return ERR_PTR(-EINVAL);
 147
 148        buf = kzalloc(sizeof *buf, GFP_KERNEL);
 149        if (!buf)
 150                return ERR_PTR(-ENOMEM);
 151
 152        if (attrs)
 153                buf->attrs = attrs;
 154        buf->cookie = dma_alloc_attrs(dev, size, &buf->dma_addr,
 155                                        GFP_KERNEL | gfp_flags, buf->attrs);
 156        if (!buf->cookie) {
 157                dev_err(dev, "dma_alloc_coherent of size %ld failed\n", size);
 158                kfree(buf);
 159                return ERR_PTR(-ENOMEM);
 160        }
 161
 162        if ((buf->attrs & DMA_ATTR_NO_KERNEL_MAPPING) == 0)
 163                buf->vaddr = buf->cookie;
 164
 165        /* Prevent the device from being released while the buffer is used */
 166        buf->dev = get_device(dev);
 167        buf->size = size;
 168        buf->dma_dir = dma_dir;
 169
 170        buf->handler.refcount = &buf->refcount;
 171        buf->handler.put = vb2_dc_put;
 172        buf->handler.arg = buf;
 173
 174        refcount_set(&buf->refcount, 1);
 175
 176        return buf;
 177}
 178
 179static int vb2_dc_mmap(void *buf_priv, struct vm_area_struct *vma)
 180{
 181        struct vb2_dc_buf *buf = buf_priv;
 182        int ret;
 183
 184        if (!buf) {
 185                printk(KERN_ERR "No buffer to map\n");
 186                return -EINVAL;
 187        }
 188
 189        /*
 190         * dma_mmap_* uses vm_pgoff as in-buffer offset, but we want to
 191         * map whole buffer
 192         */
 193        vma->vm_pgoff = 0;
 194
 195        ret = dma_mmap_attrs(buf->dev, vma, buf->cookie,
 196                buf->dma_addr, buf->size, buf->attrs);
 197
 198        if (ret) {
 199                pr_err("Remapping memory failed, error: %d\n", ret);
 200                return ret;
 201        }
 202
 203        vma->vm_flags           |= VM_DONTEXPAND | VM_DONTDUMP;
 204        vma->vm_private_data    = &buf->handler;
 205        vma->vm_ops             = &vb2_common_vm_ops;
 206
 207        vma->vm_ops->open(vma);
 208
 209        pr_debug("%s: mapped dma addr 0x%08lx at 0x%08lx, size %ld\n",
 210                __func__, (unsigned long)buf->dma_addr, vma->vm_start,
 211                buf->size);
 212
 213        return 0;
 214}
 215
 216/*********************************************/
 217/*         DMABUF ops for exporters          */
 218/*********************************************/
 219
 220struct vb2_dc_attachment {
 221        struct sg_table sgt;
 222        enum dma_data_direction dma_dir;
 223};
 224
 225static int vb2_dc_dmabuf_ops_attach(struct dma_buf *dbuf, struct device *dev,
 226        struct dma_buf_attachment *dbuf_attach)
 227{
 228        struct vb2_dc_attachment *attach;
 229        unsigned int i;
 230        struct scatterlist *rd, *wr;
 231        struct sg_table *sgt;
 232        struct vb2_dc_buf *buf = dbuf->priv;
 233        int ret;
 234
 235        attach = kzalloc(sizeof(*attach), GFP_KERNEL);
 236        if (!attach)
 237                return -ENOMEM;
 238
 239        sgt = &attach->sgt;
 240        /* Copy the buf->base_sgt scatter list to the attachment, as we can't
 241         * map the same scatter list to multiple attachments at the same time.
 242         */
 243        ret = sg_alloc_table(sgt, buf->sgt_base->orig_nents, GFP_KERNEL);
 244        if (ret) {
 245                kfree(attach);
 246                return -ENOMEM;
 247        }
 248
 249        rd = buf->sgt_base->sgl;
 250        wr = sgt->sgl;
 251        for (i = 0; i < sgt->orig_nents; ++i) {
 252                sg_set_page(wr, sg_page(rd), rd->length, rd->offset);
 253                rd = sg_next(rd);
 254                wr = sg_next(wr);
 255        }
 256
 257        attach->dma_dir = DMA_NONE;
 258        dbuf_attach->priv = attach;
 259
 260        return 0;
 261}
 262
 263static void vb2_dc_dmabuf_ops_detach(struct dma_buf *dbuf,
 264        struct dma_buf_attachment *db_attach)
 265{
 266        struct vb2_dc_attachment *attach = db_attach->priv;
 267        struct sg_table *sgt;
 268
 269        if (!attach)
 270                return;
 271
 272        sgt = &attach->sgt;
 273
 274        /* release the scatterlist cache */
 275        if (attach->dma_dir != DMA_NONE)
 276                dma_unmap_sg(db_attach->dev, sgt->sgl, sgt->orig_nents,
 277                        attach->dma_dir);
 278        sg_free_table(sgt);
 279        kfree(attach);
 280        db_attach->priv = NULL;
 281}
 282
 283static struct sg_table *vb2_dc_dmabuf_ops_map(
 284        struct dma_buf_attachment *db_attach, enum dma_data_direction dma_dir)
 285{
 286        struct vb2_dc_attachment *attach = db_attach->priv;
 287        /* stealing dmabuf mutex to serialize map/unmap operations */
 288        struct mutex *lock = &db_attach->dmabuf->lock;
 289        struct sg_table *sgt;
 290
 291        mutex_lock(lock);
 292
 293        sgt = &attach->sgt;
 294        /* return previously mapped sg table */
 295        if (attach->dma_dir == dma_dir) {
 296                mutex_unlock(lock);
 297                return sgt;
 298        }
 299
 300        /* release any previous cache */
 301        if (attach->dma_dir != DMA_NONE) {
 302                dma_unmap_sg(db_attach->dev, sgt->sgl, sgt->orig_nents,
 303                        attach->dma_dir);
 304                attach->dma_dir = DMA_NONE;
 305        }
 306
 307        /* mapping to the client with new direction */
 308        sgt->nents = dma_map_sg(db_attach->dev, sgt->sgl, sgt->orig_nents,
 309                                dma_dir);
 310        if (!sgt->nents) {
 311                pr_err("failed to map scatterlist\n");
 312                mutex_unlock(lock);
 313                return ERR_PTR(-EIO);
 314        }
 315
 316        attach->dma_dir = dma_dir;
 317
 318        mutex_unlock(lock);
 319
 320        return sgt;
 321}
 322
 323static void vb2_dc_dmabuf_ops_unmap(struct dma_buf_attachment *db_attach,
 324        struct sg_table *sgt, enum dma_data_direction dma_dir)
 325{
 326        /* nothing to be done here */
 327}
 328
 329static void vb2_dc_dmabuf_ops_release(struct dma_buf *dbuf)
 330{
 331        /* drop reference obtained in vb2_dc_get_dmabuf */
 332        vb2_dc_put(dbuf->priv);
 333}
 334
 335static void *vb2_dc_dmabuf_ops_kmap(struct dma_buf *dbuf, unsigned long pgnum)
 336{
 337        struct vb2_dc_buf *buf = dbuf->priv;
 338
 339        return buf->vaddr ? buf->vaddr + pgnum * PAGE_SIZE : NULL;
 340}
 341
 342static void *vb2_dc_dmabuf_ops_vmap(struct dma_buf *dbuf)
 343{
 344        struct vb2_dc_buf *buf = dbuf->priv;
 345
 346        return buf->vaddr;
 347}
 348
 349static int vb2_dc_dmabuf_ops_mmap(struct dma_buf *dbuf,
 350        struct vm_area_struct *vma)
 351{
 352        return vb2_dc_mmap(dbuf->priv, vma);
 353}
 354
 355static const struct dma_buf_ops vb2_dc_dmabuf_ops = {
 356        .attach = vb2_dc_dmabuf_ops_attach,
 357        .detach = vb2_dc_dmabuf_ops_detach,
 358        .map_dma_buf = vb2_dc_dmabuf_ops_map,
 359        .unmap_dma_buf = vb2_dc_dmabuf_ops_unmap,
 360        .map = vb2_dc_dmabuf_ops_kmap,
 361        .map_atomic = vb2_dc_dmabuf_ops_kmap,
 362        .vmap = vb2_dc_dmabuf_ops_vmap,
 363        .mmap = vb2_dc_dmabuf_ops_mmap,
 364        .release = vb2_dc_dmabuf_ops_release,
 365};
 366
 367static struct sg_table *vb2_dc_get_base_sgt(struct vb2_dc_buf *buf)
 368{
 369        int ret;
 370        struct sg_table *sgt;
 371
 372        sgt = kmalloc(sizeof(*sgt), GFP_KERNEL);
 373        if (!sgt) {
 374                dev_err(buf->dev, "failed to alloc sg table\n");
 375                return NULL;
 376        }
 377
 378        ret = dma_get_sgtable_attrs(buf->dev, sgt, buf->cookie, buf->dma_addr,
 379                buf->size, buf->attrs);
 380        if (ret < 0) {
 381                dev_err(buf->dev, "failed to get scatterlist from DMA API\n");
 382                kfree(sgt);
 383                return NULL;
 384        }
 385
 386        return sgt;
 387}
 388
 389static struct dma_buf *vb2_dc_get_dmabuf(void *buf_priv, unsigned long flags)
 390{
 391        struct vb2_dc_buf *buf = buf_priv;
 392        struct dma_buf *dbuf;
 393        DEFINE_DMA_BUF_EXPORT_INFO(exp_info);
 394
 395        exp_info.ops = &vb2_dc_dmabuf_ops;
 396        exp_info.size = buf->size;
 397        exp_info.flags = flags;
 398        exp_info.priv = buf;
 399
 400        if (!buf->sgt_base)
 401                buf->sgt_base = vb2_dc_get_base_sgt(buf);
 402
 403        if (WARN_ON(!buf->sgt_base))
 404                return NULL;
 405
 406        dbuf = dma_buf_export(&exp_info);
 407        if (IS_ERR(dbuf))
 408                return NULL;
 409
 410        /* dmabuf keeps reference to vb2 buffer */
 411        refcount_inc(&buf->refcount);
 412
 413        return dbuf;
 414}
 415
 416/*********************************************/
 417/*       callbacks for USERPTR buffers       */
 418/*********************************************/
 419
 420static void vb2_dc_put_userptr(void *buf_priv)
 421{
 422        struct vb2_dc_buf *buf = buf_priv;
 423        struct sg_table *sgt = buf->dma_sgt;
 424        int i;
 425        struct page **pages;
 426
 427        if (sgt) {
 428                /*
 429                 * No need to sync to CPU, it's already synced to the CPU
 430                 * since the finish() memop will have been called before this.
 431                 */
 432                dma_unmap_sg_attrs(buf->dev, sgt->sgl, sgt->orig_nents,
 433                                   buf->dma_dir, DMA_ATTR_SKIP_CPU_SYNC);
 434                pages = frame_vector_pages(buf->vec);
 435                /* sgt should exist only if vector contains pages... */
 436                BUG_ON(IS_ERR(pages));
 437                if (buf->dma_dir == DMA_FROM_DEVICE ||
 438                    buf->dma_dir == DMA_BIDIRECTIONAL)
 439                        for (i = 0; i < frame_vector_count(buf->vec); i++)
 440                                set_page_dirty_lock(pages[i]);
 441                sg_free_table(sgt);
 442                kfree(sgt);
 443        }
 444        vb2_destroy_framevec(buf->vec);
 445        kfree(buf);
 446}
 447
 448/*
 449 * For some kind of reserved memory there might be no struct page available,
 450 * so all that can be done to support such 'pages' is to try to convert
 451 * pfn to dma address or at the last resort just assume that
 452 * dma address == physical address (like it has been assumed in earlier version
 453 * of videobuf2-dma-contig
 454 */
 455
 456#ifdef __arch_pfn_to_dma
 457static inline dma_addr_t vb2_dc_pfn_to_dma(struct device *dev, unsigned long pfn)
 458{
 459        return (dma_addr_t)__arch_pfn_to_dma(dev, pfn);
 460}
 461#elif defined(__pfn_to_bus)
 462static inline dma_addr_t vb2_dc_pfn_to_dma(struct device *dev, unsigned long pfn)
 463{
 464        return (dma_addr_t)__pfn_to_bus(pfn);
 465}
 466#elif defined(__pfn_to_phys)
 467static inline dma_addr_t vb2_dc_pfn_to_dma(struct device *dev, unsigned long pfn)
 468{
 469        return (dma_addr_t)__pfn_to_phys(pfn);
 470}
 471#else
 472static inline dma_addr_t vb2_dc_pfn_to_dma(struct device *dev, unsigned long pfn)
 473{
 474        /* really, we cannot do anything better at this point */
 475        return (dma_addr_t)(pfn) << PAGE_SHIFT;
 476}
 477#endif
 478
 479static void *vb2_dc_get_userptr(struct device *dev, unsigned long vaddr,
 480        unsigned long size, enum dma_data_direction dma_dir)
 481{
 482        struct vb2_dc_buf *buf;
 483        struct frame_vector *vec;
 484        unsigned int offset;
 485        int n_pages, i;
 486        int ret = 0;
 487        struct sg_table *sgt;
 488        unsigned long contig_size;
 489        unsigned long dma_align = dma_get_cache_alignment();
 490
 491        /* Only cache aligned DMA transfers are reliable */
 492        if (!IS_ALIGNED(vaddr | size, dma_align)) {
 493                pr_debug("user data must be aligned to %lu bytes\n", dma_align);
 494                return ERR_PTR(-EINVAL);
 495        }
 496
 497        if (!size) {
 498                pr_debug("size is zero\n");
 499                return ERR_PTR(-EINVAL);
 500        }
 501
 502        if (WARN_ON(!dev))
 503                return ERR_PTR(-EINVAL);
 504
 505        buf = kzalloc(sizeof *buf, GFP_KERNEL);
 506        if (!buf)
 507                return ERR_PTR(-ENOMEM);
 508
 509        buf->dev = dev;
 510        buf->dma_dir = dma_dir;
 511
 512        offset = lower_32_bits(offset_in_page(vaddr));
 513        vec = vb2_create_framevec(vaddr, size, dma_dir == DMA_FROM_DEVICE ||
 514                                               dma_dir == DMA_BIDIRECTIONAL);
 515        if (IS_ERR(vec)) {
 516                ret = PTR_ERR(vec);
 517                goto fail_buf;
 518        }
 519        buf->vec = vec;
 520        n_pages = frame_vector_count(vec);
 521        ret = frame_vector_to_pages(vec);
 522        if (ret < 0) {
 523                unsigned long *nums = frame_vector_pfns(vec);
 524
 525                /*
 526                 * Failed to convert to pages... Check the memory is physically
 527                 * contiguous and use direct mapping
 528                 */
 529                for (i = 1; i < n_pages; i++)
 530                        if (nums[i-1] + 1 != nums[i])
 531                                goto fail_pfnvec;
 532                buf->dma_addr = vb2_dc_pfn_to_dma(buf->dev, nums[0]);
 533                goto out;
 534        }
 535
 536        sgt = kzalloc(sizeof(*sgt), GFP_KERNEL);
 537        if (!sgt) {
 538                pr_err("failed to allocate sg table\n");
 539                ret = -ENOMEM;
 540                goto fail_pfnvec;
 541        }
 542
 543        ret = sg_alloc_table_from_pages(sgt, frame_vector_pages(vec), n_pages,
 544                offset, size, GFP_KERNEL);
 545        if (ret) {
 546                pr_err("failed to initialize sg table\n");
 547                goto fail_sgt;
 548        }
 549
 550        /*
 551         * No need to sync to the device, this will happen later when the
 552         * prepare() memop is called.
 553         */
 554        sgt->nents = dma_map_sg_attrs(buf->dev, sgt->sgl, sgt->orig_nents,
 555                                      buf->dma_dir, DMA_ATTR_SKIP_CPU_SYNC);
 556        if (sgt->nents <= 0) {
 557                pr_err("failed to map scatterlist\n");
 558                ret = -EIO;
 559                goto fail_sgt_init;
 560        }
 561
 562        contig_size = vb2_dc_get_contiguous_size(sgt);
 563        if (contig_size < size) {
 564                pr_err("contiguous mapping is too small %lu/%lu\n",
 565                        contig_size, size);
 566                ret = -EFAULT;
 567                goto fail_map_sg;
 568        }
 569
 570        buf->dma_addr = sg_dma_address(sgt->sgl);
 571        buf->dma_sgt = sgt;
 572out:
 573        buf->size = size;
 574
 575        return buf;
 576
 577fail_map_sg:
 578        dma_unmap_sg_attrs(buf->dev, sgt->sgl, sgt->orig_nents,
 579                           buf->dma_dir, DMA_ATTR_SKIP_CPU_SYNC);
 580
 581fail_sgt_init:
 582        sg_free_table(sgt);
 583
 584fail_sgt:
 585        kfree(sgt);
 586
 587fail_pfnvec:
 588        vb2_destroy_framevec(vec);
 589
 590fail_buf:
 591        kfree(buf);
 592
 593        return ERR_PTR(ret);
 594}
 595
 596/*********************************************/
 597/*       callbacks for DMABUF buffers        */
 598/*********************************************/
 599
 600static int vb2_dc_map_dmabuf(void *mem_priv)
 601{
 602        struct vb2_dc_buf *buf = mem_priv;
 603        struct sg_table *sgt;
 604        unsigned long contig_size;
 605
 606        if (WARN_ON(!buf->db_attach)) {
 607                pr_err("trying to pin a non attached buffer\n");
 608                return -EINVAL;
 609        }
 610
 611        if (WARN_ON(buf->dma_sgt)) {
 612                pr_err("dmabuf buffer is already pinned\n");
 613                return 0;
 614        }
 615
 616        /* get the associated scatterlist for this buffer */
 617        sgt = dma_buf_map_attachment(buf->db_attach, buf->dma_dir);
 618        if (IS_ERR(sgt)) {
 619                pr_err("Error getting dmabuf scatterlist\n");
 620                return -EINVAL;
 621        }
 622
 623        /* checking if dmabuf is big enough to store contiguous chunk */
 624        contig_size = vb2_dc_get_contiguous_size(sgt);
 625        if (contig_size < buf->size) {
 626                pr_err("contiguous chunk is too small %lu/%lu b\n",
 627                        contig_size, buf->size);
 628                dma_buf_unmap_attachment(buf->db_attach, sgt, buf->dma_dir);
 629                return -EFAULT;
 630        }
 631
 632        buf->dma_addr = sg_dma_address(sgt->sgl);
 633        buf->dma_sgt = sgt;
 634        buf->vaddr = NULL;
 635
 636        return 0;
 637}
 638
 639static void vb2_dc_unmap_dmabuf(void *mem_priv)
 640{
 641        struct vb2_dc_buf *buf = mem_priv;
 642        struct sg_table *sgt = buf->dma_sgt;
 643
 644        if (WARN_ON(!buf->db_attach)) {
 645                pr_err("trying to unpin a not attached buffer\n");
 646                return;
 647        }
 648
 649        if (WARN_ON(!sgt)) {
 650                pr_err("dmabuf buffer is already unpinned\n");
 651                return;
 652        }
 653
 654        if (buf->vaddr) {
 655                dma_buf_vunmap(buf->db_attach->dmabuf, buf->vaddr);
 656                buf->vaddr = NULL;
 657        }
 658        dma_buf_unmap_attachment(buf->db_attach, sgt, buf->dma_dir);
 659
 660        buf->dma_addr = 0;
 661        buf->dma_sgt = NULL;
 662}
 663
 664static void vb2_dc_detach_dmabuf(void *mem_priv)
 665{
 666        struct vb2_dc_buf *buf = mem_priv;
 667
 668        /* if vb2 works correctly you should never detach mapped buffer */
 669        if (WARN_ON(buf->dma_addr))
 670                vb2_dc_unmap_dmabuf(buf);
 671
 672        /* detach this attachment */
 673        dma_buf_detach(buf->db_attach->dmabuf, buf->db_attach);
 674        kfree(buf);
 675}
 676
 677static void *vb2_dc_attach_dmabuf(struct device *dev, struct dma_buf *dbuf,
 678        unsigned long size, enum dma_data_direction dma_dir)
 679{
 680        struct vb2_dc_buf *buf;
 681        struct dma_buf_attachment *dba;
 682
 683        if (dbuf->size < size)
 684                return ERR_PTR(-EFAULT);
 685
 686        if (WARN_ON(!dev))
 687                return ERR_PTR(-EINVAL);
 688
 689        buf = kzalloc(sizeof(*buf), GFP_KERNEL);
 690        if (!buf)
 691                return ERR_PTR(-ENOMEM);
 692
 693        buf->dev = dev;
 694        /* create attachment for the dmabuf with the user device */
 695        dba = dma_buf_attach(dbuf, buf->dev);
 696        if (IS_ERR(dba)) {
 697                pr_err("failed to attach dmabuf\n");
 698                kfree(buf);
 699                return dba;
 700        }
 701
 702        buf->dma_dir = dma_dir;
 703        buf->size = size;
 704        buf->db_attach = dba;
 705
 706        return buf;
 707}
 708
 709/*********************************************/
 710/*       DMA CONTIG exported functions       */
 711/*********************************************/
 712
 713const struct vb2_mem_ops vb2_dma_contig_memops = {
 714        .alloc          = vb2_dc_alloc,
 715        .put            = vb2_dc_put,
 716        .get_dmabuf     = vb2_dc_get_dmabuf,
 717        .cookie         = vb2_dc_cookie,
 718        .vaddr          = vb2_dc_vaddr,
 719        .mmap           = vb2_dc_mmap,
 720        .get_userptr    = vb2_dc_get_userptr,
 721        .put_userptr    = vb2_dc_put_userptr,
 722        .prepare        = vb2_dc_prepare,
 723        .finish         = vb2_dc_finish,
 724        .map_dmabuf     = vb2_dc_map_dmabuf,
 725        .unmap_dmabuf   = vb2_dc_unmap_dmabuf,
 726        .attach_dmabuf  = vb2_dc_attach_dmabuf,
 727        .detach_dmabuf  = vb2_dc_detach_dmabuf,
 728        .num_users      = vb2_dc_num_users,
 729};
 730EXPORT_SYMBOL_GPL(vb2_dma_contig_memops);
 731
 732/**
 733 * vb2_dma_contig_set_max_seg_size() - configure DMA max segment size
 734 * @dev:        device for configuring DMA parameters
 735 * @size:       size of DMA max segment size to set
 736 *
 737 * To allow mapping the scatter-list into a single chunk in the DMA
 738 * address space, the device is required to have the DMA max segment
 739 * size parameter set to a value larger than the buffer size. Otherwise,
 740 * the DMA-mapping subsystem will split the mapping into max segment
 741 * size chunks. This function sets the DMA max segment size
 742 * parameter to let DMA-mapping map a buffer as a single chunk in DMA
 743 * address space.
 744 * This code assumes that the DMA-mapping subsystem will merge all
 745 * scatterlist segments if this is really possible (for example when
 746 * an IOMMU is available and enabled).
 747 * Ideally, this parameter should be set by the generic bus code, but it
 748 * is left with the default 64KiB value due to historical litmiations in
 749 * other subsystems (like limited USB host drivers) and there no good
 750 * place to set it to the proper value.
 751 * This function should be called from the drivers, which are known to
 752 * operate on platforms with IOMMU and provide access to shared buffers
 753 * (either USERPTR or DMABUF). This should be done before initializing
 754 * videobuf2 queue.
 755 */
 756int vb2_dma_contig_set_max_seg_size(struct device *dev, unsigned int size)
 757{
 758        if (!dev->dma_parms) {
 759                dev->dma_parms = kzalloc(sizeof(*dev->dma_parms), GFP_KERNEL);
 760                if (!dev->dma_parms)
 761                        return -ENOMEM;
 762        }
 763        if (dma_get_max_seg_size(dev) < size)
 764                return dma_set_max_seg_size(dev, size);
 765
 766        return 0;
 767}
 768EXPORT_SYMBOL_GPL(vb2_dma_contig_set_max_seg_size);
 769
 770/*
 771 * vb2_dma_contig_clear_max_seg_size() - release resources for DMA parameters
 772 * @dev:        device for configuring DMA parameters
 773 *
 774 * This function releases resources allocated to configure DMA parameters
 775 * (see vb2_dma_contig_set_max_seg_size() function). It should be called from
 776 * device drivers on driver remove.
 777 */
 778void vb2_dma_contig_clear_max_seg_size(struct device *dev)
 779{
 780        kfree(dev->dma_parms);
 781        dev->dma_parms = NULL;
 782}
 783EXPORT_SYMBOL_GPL(vb2_dma_contig_clear_max_seg_size);
 784
 785MODULE_DESCRIPTION("DMA-contig memory handling routines for videobuf2");
 786MODULE_AUTHOR("Pawel Osciak <pawel@osciak.com>");
 787MODULE_LICENSE("GPL");
 788