linux/drivers/gpu/drm/nouveau/nouveau_vm.c
<<
>>
Prefs
   1/*
   2 * Copyright 2010 Red Hat Inc.
   3 *
   4 * Permission is hereby granted, free of charge, to any person obtaining a
   5 * copy of this software and associated documentation files (the "Software"),
   6 * to deal in the Software without restriction, including without limitation
   7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
   8 * and/or sell copies of the Software, and to permit persons to whom the
   9 * Software is furnished to do so, subject to the following conditions:
  10 *
  11 * The above copyright notice and this permission notice shall be included in
  12 * all copies or substantial portions of the Software.
  13 *
  14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
  17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  20 * OTHER DEALINGS IN THE SOFTWARE.
  21 *
  22 * Authors: Ben Skeggs
  23 */
  24
  25#include "drmP.h"
  26#include "nouveau_drv.h"
  27#include "nouveau_mm.h"
  28#include "nouveau_vm.h"
  29
  30void
  31nouveau_vm_map_at(struct nouveau_vma *vma, u64 delta, struct nouveau_mem *node)
  32{
  33        struct nouveau_vm *vm = vma->vm;
  34        struct nouveau_mm_node *r;
  35        int big = vma->node->type != vm->spg_shift;
  36        u32 offset = vma->node->offset + (delta >> 12);
  37        u32 bits = vma->node->type - 12;
  38        u32 pde  = (offset >> vm->pgt_bits) - vm->fpde;
  39        u32 pte  = (offset & ((1 << vm->pgt_bits) - 1)) >> bits;
  40        u32 max  = 1 << (vm->pgt_bits - bits);
  41        u32 end, len;
  42
  43        delta = 0;
  44        list_for_each_entry(r, &node->regions, rl_entry) {
  45                u64 phys = (u64)r->offset << 12;
  46                u32 num  = r->length >> bits;
  47
  48                while (num) {
  49                        struct nouveau_gpuobj *pgt = vm->pgt[pde].obj[big];
  50
  51                        end = (pte + num);
  52                        if (unlikely(end >= max))
  53                                end = max;
  54                        len = end - pte;
  55
  56                        vm->map(vma, pgt, node, pte, len, phys, delta);
  57
  58                        num -= len;
  59                        pte += len;
  60                        if (unlikely(end >= max)) {
  61                                pde++;
  62                                pte = 0;
  63                        }
  64
  65                        delta += (u64)len << vma->node->type;
  66                }
  67        }
  68
  69        vm->flush(vm);
  70}
  71
  72void
  73nouveau_vm_map(struct nouveau_vma *vma, struct nouveau_mem *node)
  74{
  75        nouveau_vm_map_at(vma, 0, node);
  76}
  77
  78void
  79nouveau_vm_map_sg(struct nouveau_vma *vma, u64 delta, u64 length,
  80                  struct nouveau_mem *mem, dma_addr_t *list)
  81{
  82        struct nouveau_vm *vm = vma->vm;
  83        int big = vma->node->type != vm->spg_shift;
  84        u32 offset = vma->node->offset + (delta >> 12);
  85        u32 bits = vma->node->type - 12;
  86        u32 num  = length >> vma->node->type;
  87        u32 pde  = (offset >> vm->pgt_bits) - vm->fpde;
  88        u32 pte  = (offset & ((1 << vm->pgt_bits) - 1)) >> bits;
  89        u32 max  = 1 << (vm->pgt_bits - bits);
  90        u32 end, len;
  91
  92        while (num) {
  93                struct nouveau_gpuobj *pgt = vm->pgt[pde].obj[big];
  94
  95                end = (pte + num);
  96                if (unlikely(end >= max))
  97                        end = max;
  98                len = end - pte;
  99
 100                vm->map_sg(vma, pgt, mem, pte, len, list);
 101
 102                num  -= len;
 103                pte  += len;
 104                list += len;
 105                if (unlikely(end >= max)) {
 106                        pde++;
 107                        pte = 0;
 108                }
 109        }
 110
 111        vm->flush(vm);
 112}
 113
 114void
 115nouveau_vm_unmap_at(struct nouveau_vma *vma, u64 delta, u64 length)
 116{
 117        struct nouveau_vm *vm = vma->vm;
 118        int big = vma->node->type != vm->spg_shift;
 119        u32 offset = vma->node->offset + (delta >> 12);
 120        u32 bits = vma->node->type - 12;
 121        u32 num  = length >> vma->node->type;
 122        u32 pde  = (offset >> vm->pgt_bits) - vm->fpde;
 123        u32 pte  = (offset & ((1 << vm->pgt_bits) - 1)) >> bits;
 124        u32 max  = 1 << (vm->pgt_bits - bits);
 125        u32 end, len;
 126
 127        while (num) {
 128                struct nouveau_gpuobj *pgt = vm->pgt[pde].obj[big];
 129
 130                end = (pte + num);
 131                if (unlikely(end >= max))
 132                        end = max;
 133                len = end - pte;
 134
 135                vm->unmap(pgt, pte, len);
 136
 137                num -= len;
 138                pte += len;
 139                if (unlikely(end >= max)) {
 140                        pde++;
 141                        pte = 0;
 142                }
 143        }
 144
 145        vm->flush(vm);
 146}
 147
 148void
 149nouveau_vm_unmap(struct nouveau_vma *vma)
 150{
 151        nouveau_vm_unmap_at(vma, 0, (u64)vma->node->length << 12);
 152}
 153
 154static void
 155nouveau_vm_unmap_pgt(struct nouveau_vm *vm, int big, u32 fpde, u32 lpde)
 156{
 157        struct nouveau_vm_pgd *vpgd;
 158        struct nouveau_vm_pgt *vpgt;
 159        struct nouveau_gpuobj *pgt;
 160        u32 pde;
 161
 162        for (pde = fpde; pde <= lpde; pde++) {
 163                vpgt = &vm->pgt[pde - vm->fpde];
 164                if (--vpgt->refcount[big])
 165                        continue;
 166
 167                pgt = vpgt->obj[big];
 168                vpgt->obj[big] = NULL;
 169
 170                list_for_each_entry(vpgd, &vm->pgd_list, head) {
 171                        vm->map_pgt(vpgd->obj, pde, vpgt->obj);
 172                }
 173
 174                mutex_unlock(&vm->mm->mutex);
 175                nouveau_gpuobj_ref(NULL, &pgt);
 176                mutex_lock(&vm->mm->mutex);
 177        }
 178}
 179
 180static int
 181nouveau_vm_map_pgt(struct nouveau_vm *vm, u32 pde, u32 type)
 182{
 183        struct nouveau_vm_pgt *vpgt = &vm->pgt[pde - vm->fpde];
 184        struct nouveau_vm_pgd *vpgd;
 185        struct nouveau_gpuobj *pgt;
 186        int big = (type != vm->spg_shift);
 187        u32 pgt_size;
 188        int ret;
 189
 190        pgt_size  = (1 << (vm->pgt_bits + 12)) >> type;
 191        pgt_size *= 8;
 192
 193        mutex_unlock(&vm->mm->mutex);
 194        ret = nouveau_gpuobj_new(vm->dev, NULL, pgt_size, 0x1000,
 195                                 NVOBJ_FLAG_ZERO_ALLOC, &pgt);
 196        mutex_lock(&vm->mm->mutex);
 197        if (unlikely(ret))
 198                return ret;
 199
 200        /* someone beat us to filling the PDE while we didn't have the lock */
 201        if (unlikely(vpgt->refcount[big]++)) {
 202                mutex_unlock(&vm->mm->mutex);
 203                nouveau_gpuobj_ref(NULL, &pgt);
 204                mutex_lock(&vm->mm->mutex);
 205                return 0;
 206        }
 207
 208        vpgt->obj[big] = pgt;
 209        list_for_each_entry(vpgd, &vm->pgd_list, head) {
 210                vm->map_pgt(vpgd->obj, pde, vpgt->obj);
 211        }
 212
 213        return 0;
 214}
 215
 216int
 217nouveau_vm_get(struct nouveau_vm *vm, u64 size, u32 page_shift,
 218               u32 access, struct nouveau_vma *vma)
 219{
 220        u32 align = (1 << page_shift) >> 12;
 221        u32 msize = size >> 12;
 222        u32 fpde, lpde, pde;
 223        int ret;
 224
 225        mutex_lock(&vm->mm->mutex);
 226        ret = nouveau_mm_get(vm->mm, page_shift, msize, 0, align, &vma->node);
 227        if (unlikely(ret != 0)) {
 228                mutex_unlock(&vm->mm->mutex);
 229                return ret;
 230        }
 231
 232        fpde = (vma->node->offset >> vm->pgt_bits);
 233        lpde = (vma->node->offset + vma->node->length - 1) >> vm->pgt_bits;
 234        for (pde = fpde; pde <= lpde; pde++) {
 235                struct nouveau_vm_pgt *vpgt = &vm->pgt[pde - vm->fpde];
 236                int big = (vma->node->type != vm->spg_shift);
 237
 238                if (likely(vpgt->refcount[big])) {
 239                        vpgt->refcount[big]++;
 240                        continue;
 241                }
 242
 243                ret = nouveau_vm_map_pgt(vm, pde, vma->node->type);
 244                if (ret) {
 245                        if (pde != fpde)
 246                                nouveau_vm_unmap_pgt(vm, big, fpde, pde - 1);
 247                        nouveau_mm_put(vm->mm, vma->node);
 248                        mutex_unlock(&vm->mm->mutex);
 249                        vma->node = NULL;
 250                        return ret;
 251                }
 252        }
 253        mutex_unlock(&vm->mm->mutex);
 254
 255        vma->vm     = vm;
 256        vma->offset = (u64)vma->node->offset << 12;
 257        vma->access = access;
 258        return 0;
 259}
 260
 261void
 262nouveau_vm_put(struct nouveau_vma *vma)
 263{
 264        struct nouveau_vm *vm = vma->vm;
 265        u32 fpde, lpde;
 266
 267        if (unlikely(vma->node == NULL))
 268                return;
 269        fpde = (vma->node->offset >> vm->pgt_bits);
 270        lpde = (vma->node->offset + vma->node->length - 1) >> vm->pgt_bits;
 271
 272        mutex_lock(&vm->mm->mutex);
 273        nouveau_vm_unmap_pgt(vm, vma->node->type != vm->spg_shift, fpde, lpde);
 274        nouveau_mm_put(vm->mm, vma->node);
 275        vma->node = NULL;
 276        mutex_unlock(&vm->mm->mutex);
 277}
 278
 279int
 280nouveau_vm_new(struct drm_device *dev, u64 offset, u64 length, u64 mm_offset,
 281               struct nouveau_vm **pvm)
 282{
 283        struct drm_nouveau_private *dev_priv = dev->dev_private;
 284        struct nouveau_vm *vm;
 285        u64 mm_length = (offset + length) - mm_offset;
 286        u32 block, pgt_bits;
 287        int ret;
 288
 289        vm = kzalloc(sizeof(*vm), GFP_KERNEL);
 290        if (!vm)
 291                return -ENOMEM;
 292
 293        if (dev_priv->card_type == NV_50) {
 294                vm->map_pgt = nv50_vm_map_pgt;
 295                vm->map = nv50_vm_map;
 296                vm->map_sg = nv50_vm_map_sg;
 297                vm->unmap = nv50_vm_unmap;
 298                vm->flush = nv50_vm_flush;
 299                vm->spg_shift = 12;
 300                vm->lpg_shift = 16;
 301
 302                pgt_bits = 29;
 303                block = (1 << pgt_bits);
 304                if (length < block)
 305                        block = length;
 306
 307        } else
 308        if (dev_priv->card_type == NV_C0) {
 309                vm->map_pgt = nvc0_vm_map_pgt;
 310                vm->map = nvc0_vm_map;
 311                vm->map_sg = nvc0_vm_map_sg;
 312                vm->unmap = nvc0_vm_unmap;
 313                vm->flush = nvc0_vm_flush;
 314                vm->spg_shift = 12;
 315                vm->lpg_shift = 17;
 316                pgt_bits = 27;
 317                block = 4096;
 318        } else {
 319                kfree(vm);
 320                return -ENOSYS;
 321        }
 322
 323        vm->fpde   = offset >> pgt_bits;
 324        vm->lpde   = (offset + length - 1) >> pgt_bits;
 325        vm->pgt = kcalloc(vm->lpde - vm->fpde + 1, sizeof(*vm->pgt), GFP_KERNEL);
 326        if (!vm->pgt) {
 327                kfree(vm);
 328                return -ENOMEM;
 329        }
 330
 331        INIT_LIST_HEAD(&vm->pgd_list);
 332        vm->dev = dev;
 333        vm->refcount = 1;
 334        vm->pgt_bits = pgt_bits - 12;
 335
 336        ret = nouveau_mm_init(&vm->mm, mm_offset >> 12, mm_length >> 12,
 337                              block >> 12);
 338        if (ret) {
 339                kfree(vm);
 340                return ret;
 341        }
 342
 343        *pvm = vm;
 344        return 0;
 345}
 346
 347static int
 348nouveau_vm_link(struct nouveau_vm *vm, struct nouveau_gpuobj *pgd)
 349{
 350        struct nouveau_vm_pgd *vpgd;
 351        int i;
 352
 353        if (!pgd)
 354                return 0;
 355
 356        vpgd = kzalloc(sizeof(*vpgd), GFP_KERNEL);
 357        if (!vpgd)
 358                return -ENOMEM;
 359
 360        nouveau_gpuobj_ref(pgd, &vpgd->obj);
 361
 362        mutex_lock(&vm->mm->mutex);
 363        for (i = vm->fpde; i <= vm->lpde; i++)
 364                vm->map_pgt(pgd, i, vm->pgt[i - vm->fpde].obj);
 365        list_add(&vpgd->head, &vm->pgd_list);
 366        mutex_unlock(&vm->mm->mutex);
 367        return 0;
 368}
 369
 370static void
 371nouveau_vm_unlink(struct nouveau_vm *vm, struct nouveau_gpuobj *pgd)
 372{
 373        struct nouveau_vm_pgd *vpgd, *tmp;
 374
 375        if (!pgd)
 376                return;
 377
 378        mutex_lock(&vm->mm->mutex);
 379        list_for_each_entry_safe(vpgd, tmp, &vm->pgd_list, head) {
 380                if (vpgd->obj != pgd)
 381                        continue;
 382
 383                list_del(&vpgd->head);
 384                nouveau_gpuobj_ref(NULL, &vpgd->obj);
 385                kfree(vpgd);
 386        }
 387        mutex_unlock(&vm->mm->mutex);
 388}
 389
 390static void
 391nouveau_vm_del(struct nouveau_vm *vm)
 392{
 393        struct nouveau_vm_pgd *vpgd, *tmp;
 394
 395        list_for_each_entry_safe(vpgd, tmp, &vm->pgd_list, head) {
 396                nouveau_vm_unlink(vm, vpgd->obj);
 397        }
 398        WARN_ON(nouveau_mm_fini(&vm->mm) != 0);
 399
 400        kfree(vm->pgt);
 401        kfree(vm);
 402}
 403
 404int
 405nouveau_vm_ref(struct nouveau_vm *ref, struct nouveau_vm **ptr,
 406               struct nouveau_gpuobj *pgd)
 407{
 408        struct nouveau_vm *vm;
 409        int ret;
 410
 411        vm = ref;
 412        if (vm) {
 413                ret = nouveau_vm_link(vm, pgd);
 414                if (ret)
 415                        return ret;
 416
 417                vm->refcount++;
 418        }
 419
 420        vm = *ptr;
 421        *ptr = ref;
 422
 423        if (vm) {
 424                nouveau_vm_unlink(vm, pgd);
 425
 426                if (--vm->refcount == 0)
 427                        nouveau_vm_del(vm);
 428        }
 429
 430        return 0;
 431}
 432