linux/drivers/char/agp/frontend.c History
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   1/*
   2 * AGPGART driver frontend
   3 * Copyright (C) 2004 Silicon Graphics, Inc.
   4 * Copyright (C) 2002-2003 Dave Jones
   5 * Copyright (C) 1999 Jeff Hartmann
   6 * Copyright (C) 1999 Precision Insight, Inc.
   7 * Copyright (C) 1999 Xi Graphics, Inc.
   8 *
   9 * Permission is hereby granted, free of charge, to any person obtaining a
  10 * copy of this software and associated documentation files (the "Software"),
  11 * to deal in the Software without restriction, including without limitation
  12 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  13 * and/or sell copies of the Software, and to permit persons to whom the
  14 * Software is furnished to do so, subject to the following conditions:
  15 *
  16 * The above copyright notice and this permission notice shall be included
  17 * in all copies or substantial portions of the Software.
  18 *
  19 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
  20 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  21 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
  22 * JEFF HARTMANN, OR ANY OTHER CONTRIBUTORS BE LIABLE FOR ANY CLAIM,
  23 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
  24 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE
  25 * OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
  26 *
  27 */
  28
  29#include <linux/types.h>
  30#include <linux/kernel.h>
  31#include <linux/module.h>
  32#include <linux/mman.h>
  33#include <linux/pci.h>
  34#include <linux/init.h>
  35#include <linux/miscdevice.h>
  36#include <linux/agp_backend.h>
  37#include <linux/agpgart.h>
  38#include <linux/slab.h>
  39#include <linux/mm.h>
  40#include <linux/fs.h>
  41#include <linux/sched.h>
  42#include <linux/smp_lock.h>
  43#include <asm/uaccess.h>
  44#include <asm/pgtable.h>
  45#include "agp.h"
  46
  47struct agp_front_data agp_fe;
  48
  49struct agp_memory *agp_find_mem_by_key(int key)
  50{
  51        struct agp_memory *curr;
  52
  53        if (agp_fe.current_controller == NULL)
  54                return NULL;
  55
  56        curr = agp_fe.current_controller->pool;
  57
  58        while (curr != NULL) {
  59                if (curr->key == key)
  60                        break;
  61                curr = curr->next;
  62        }
  63
  64        DBG("key=%d -> mem=%p", key, curr);
  65        return curr;
  66}
  67
  68static void agp_remove_from_pool(struct agp_memory *temp)
  69{
  70        struct agp_memory *prev;
  71        struct agp_memory *next;
  72
  73        /* Check to see if this is even in the memory pool */
  74
  75        DBG("mem=%p", temp);
  76        if (agp_find_mem_by_key(temp->key) != NULL) {
  77                next = temp->next;
  78                prev = temp->prev;
  79
  80                if (prev != NULL) {
  81                        prev->next = next;
  82                        if (next != NULL)
  83                                next->prev = prev;
  84
  85                } else {
  86                        /* This is the first item on the list */
  87                        if (next != NULL)
  88                                next->prev = NULL;
  89
  90                        agp_fe.current_controller->pool = next;
  91                }
  92        }
  93}
  94
  95/*
  96 * Routines for managing each client's segment list -
  97 * These routines handle adding and removing segments
  98 * to each auth'ed client.
  99 */
 100
 101static struct
 102agp_segment_priv *agp_find_seg_in_client(const struct agp_client *client,
 103                                                unsigned long offset,
 104                                            int size, pgprot_t page_prot)
 105{
 106        struct agp_segment_priv *seg;
 107        int num_segments, i;
 108        off_t pg_start;
 109        size_t pg_count;
 110
 111        pg_start = offset / 4096;
 112        pg_count = size / 4096;
 113        seg = *(client->segments);
 114        num_segments = client->num_segments;
 115
 116        for (i = 0; i < client->num_segments; i++) {
 117                if ((seg[i].pg_start == pg_start) &&
 118                    (seg[i].pg_count == pg_count) &&
 119                    (pgprot_val(seg[i].prot) == pgprot_val(page_prot))) {
 120                        return seg + i;
 121                }
 122        }
 123
 124        return NULL;
 125}
 126
 127static void agp_remove_seg_from_client(struct agp_client *client)
 128{
 129        DBG("client=%p", client);
 130
 131        if (client->segments != NULL) {
 132                if (*(client->segments) != NULL) {
 133                        DBG("Freeing %p from client %p", *(client->segments), client);
 134                        kfree(*(client->segments));
 135                }
 136                DBG("Freeing %p from client %p", client->segments, client);
 137                kfree(client->segments);
 138                client->segments = NULL;
 139        }
 140}
 141
 142static void agp_add_seg_to_client(struct agp_client *client,
 143                               struct agp_segment_priv ** seg, int num_segments)
 144{
 145        struct agp_segment_priv **prev_seg;
 146
 147        prev_seg = client->segments;
 148
 149        if (prev_seg != NULL)
 150                agp_remove_seg_from_client(client);
 151
 152        DBG("Adding seg %p (%d segments) to client %p", seg, num_segments, client);
 153        client->num_segments = num_segments;
 154        client->segments = seg;
 155}
 156
 157static pgprot_t agp_convert_mmap_flags(int prot)
 158{
 159        unsigned long prot_bits;
 160
 161        prot_bits = calc_vm_prot_bits(prot) | VM_SHARED;
 162        return vm_get_page_prot(prot_bits);
 163}
 164
 165int agp_create_segment(struct agp_client *client, struct agp_region *region)
 166{
 167        struct agp_segment_priv **ret_seg;
 168        struct agp_segment_priv *seg;
 169        struct agp_segment *user_seg;
 170        size_t i;
 171
 172        seg = kzalloc((sizeof(struct agp_segment_priv) * region->seg_count), GFP_KERNEL);
 173        if (seg == NULL) {
 174                kfree(region->seg_list);
 175                region->seg_list = NULL;
 176                return -ENOMEM;
 177        }
 178        user_seg = region->seg_list;
 179
 180        for (i = 0; i < region->seg_count; i++) {
 181                seg[i].pg_start = user_seg[i].pg_start;
 182                seg[i].pg_count = user_seg[i].pg_count;
 183                seg[i].prot = agp_convert_mmap_flags(user_seg[i].prot);
 184        }
 185        kfree(region->seg_list);
 186        region->seg_list = NULL;
 187
 188        ret_seg = kmalloc(sizeof(void *), GFP_KERNEL);
 189        if (ret_seg == NULL) {
 190                kfree(seg);
 191                return -ENOMEM;
 192        }
 193        *ret_seg = seg;
 194        agp_add_seg_to_client(client, ret_seg, region->seg_count);
 195        return 0;
 196}
 197
 198/* End - Routines for managing each client's segment list */
 199
 200/* This function must only be called when current_controller != NULL */
 201static void agp_insert_into_pool(struct agp_memory * temp)
 202{
 203        struct agp_memory *prev;
 204
 205        prev = agp_fe.current_controller->pool;
 206
 207        if (prev != NULL) {
 208                prev->prev = temp;
 209                temp->next = prev;
 210        }
 211        agp_fe.current_controller->pool = temp;
 212}
 213
 214
 215/* File private list routines */
 216
 217struct agp_file_private *agp_find_private(pid_t pid)
 218{
 219        struct agp_file_private *curr;
 220
 221        curr = agp_fe.file_priv_list;
 222
 223        while (curr != NULL) {
 224                if (curr->my_pid == pid)
 225                        return curr;
 226                curr = curr->next;
 227        }
 228
 229        return NULL;
 230}
 231
 232static void agp_insert_file_private(struct agp_file_private * priv)
 233{
 234        struct agp_file_private *prev;
 235
 236        prev = agp_fe.file_priv_list;
 237
 238        if (prev != NULL)
 239                prev->prev = priv;
 240        priv->next = prev;
 241        agp_fe.file_priv_list = priv;
 242}
 243
 244static void agp_remove_file_private(struct agp_file_private * priv)
 245{
 246        struct agp_file_private *next;
 247        struct agp_file_private *prev;
 248
 249        next = priv->next;
 250        prev = priv->prev;
 251
 252        if (prev != NULL) {
 253                prev->next = next;
 254
 255                if (next != NULL)
 256                        next->prev = prev;
 257
 258        } else {
 259                if (next != NULL)
 260                        next->prev = NULL;
 261
 262                agp_fe.file_priv_list = next;
 263        }
 264}
 265
 266/* End - File flag list routines */
 267
 268/*
 269 * Wrappers for agp_free_memory & agp_allocate_memory
 270 * These make sure that internal lists are kept updated.
 271 */
 272void agp_free_memory_wrap(struct agp_memory *memory)
 273{
 274        agp_remove_from_pool(memory);
 275        agp_free_memory(memory);
 276}
 277
 278struct agp_memory *agp_allocate_memory_wrap(size_t pg_count, u32 type)
 279{
 280        struct agp_memory *memory;
 281
 282        memory = agp_allocate_memory(agp_bridge, pg_count, type);
 283        if (memory == NULL)
 284                return NULL;
 285
 286        agp_insert_into_pool(memory);
 287        return memory;
 288}
 289
 290/* Routines for managing the list of controllers -
 291 * These routines manage the current controller, and the list of
 292 * controllers
 293 */
 294
 295static struct agp_controller *agp_find_controller_by_pid(pid_t id)
 296{
 297        struct agp_controller *controller;
 298
 299        controller = agp_fe.controllers;
 300
 301        while (controller != NULL) {
 302                if (controller->pid == id)
 303                        return controller;
 304                controller = controller->next;
 305        }
 306
 307        return NULL;
 308}
 309
 310static struct agp_controller *agp_create_controller(pid_t id)
 311{
 312        struct agp_controller *controller;
 313
 314        controller = kzalloc(sizeof(struct agp_controller), GFP_KERNEL);
 315        if (controller == NULL)
 316                return NULL;
 317
 318        controller->pid = id;
 319        return controller;
 320}
 321
 322static int agp_insert_controller(struct agp_controller *controller)
 323{
 324        struct agp_controller *prev_controller;
 325
 326        prev_controller = agp_fe.controllers;
 327        controller->next = prev_controller;
 328
 329        if (prev_controller != NULL)
 330                prev_controller->prev = controller;
 331
 332        agp_fe.controllers = controller;
 333
 334        return 0;
 335}
 336
 337static void agp_remove_all_clients(struct agp_controller *controller)
 338{
 339        struct agp_client *client;
 340        struct agp_client *temp;
 341
 342        client = controller->clients;
 343
 344        while (client) {
 345                struct agp_file_private *priv;
 346
 347                temp = client;
 348                agp_remove_seg_from_client(temp);
 349                priv = agp_find_private(temp->pid);
 350
 351                if (priv != NULL) {
 352                        clear_bit(AGP_FF_IS_VALID, &priv->access_flags);
 353                        clear_bit(AGP_FF_IS_CLIENT, &priv->access_flags);
 354                }
 355                client = client->next;
 356                kfree(temp);
 357        }
 358}
 359
 360static void agp_remove_all_memory(struct agp_controller *controller)
 361{
 362        struct agp_memory *memory;
 363        struct agp_memory *temp;
 364
 365        memory = controller->pool;
 366
 367        while (memory) {
 368                temp = memory;
 369                memory = memory->next;
 370                agp_free_memory_wrap(temp);
 371        }
 372}
 373
 374static int agp_remove_controller(struct agp_controller *controller)
 375{
 376        struct agp_controller *prev_controller;
 377        struct agp_controller *next_controller;
 378
 379        prev_controller = controller->prev;
 380        next_controller = controller->next;
 381
 382        if (prev_controller != NULL) {
 383                prev_controller->next = next_controller;
 384                if (next_controller != NULL)
 385                        next_controller->prev = prev_controller;
 386
 387        } else {
 388                if (next_controller != NULL)
 389                        next_controller->prev = NULL;
 390
 391                agp_fe.controllers = next_controller;
 392        }
 393
 394        agp_remove_all_memory(controller);
 395        agp_remove_all_clients(controller);
 396
 397        if (agp_fe.current_controller == controller) {
 398                agp_fe.current_controller = NULL;
 399                agp_fe.backend_acquired = false;
 400                agp_backend_release(agp_bridge);
 401        }
 402        kfree(controller);
 403        return 0;
 404}
 405
 406static void agp_controller_make_current(struct agp_controller *controller)
 407{
 408        struct agp_client *clients;
 409
 410        clients = controller->clients;
 411
 412        while (clients != NULL) {
 413                struct agp_file_private *priv;
 414
 415                priv = agp_find_private(clients->pid);
 416
 417                if (priv != NULL) {
 418                        set_bit(AGP_FF_IS_VALID, &priv->access_flags);
 419                        set_bit(AGP_FF_IS_CLIENT, &priv->access_flags);
 420                }
 421                clients = clients->next;
 422        }
 423
 424        agp_fe.current_controller = controller;
 425}
 426
 427static void agp_controller_release_current(struct agp_controller *controller,
 428                                      struct agp_file_private *controller_priv)
 429{
 430        struct agp_client *clients;
 431
 432        clear_bit(AGP_FF_IS_VALID, &controller_priv->access_flags);
 433        clients = controller->clients;
 434
 435        while (clients != NULL) {
 436                struct agp_file_private *priv;
 437
 438                priv = agp_find_private(clients->pid);
 439
 440                if (priv != NULL)
 441                        clear_bit(AGP_FF_IS_VALID, &priv->access_flags);
 442
 443                clients = clients->next;
 444        }
 445
 446        agp_fe.current_controller = NULL;
 447        agp_fe.used_by_controller = false;
 448        agp_backend_release(agp_bridge);
 449}
 450
 451/*
 452 * Routines for managing client lists -
 453 * These routines are for managing the list of auth'ed clients.
 454 */
 455
 456static struct agp_client
 457*agp_find_client_in_controller(struct agp_controller *controller, pid_t id)
 458{
 459        struct agp_client *client;
 460
 461        if (controller == NULL)
 462                return NULL;
 463
 464        client = controller->clients;
 465
 466        while (client != NULL) {
 467                if (client->pid == id)
 468                        return client;
 469                client = client->next;
 470        }
 471
 472        return NULL;
 473}
 474
 475static struct agp_controller *agp_find_controller_for_client(pid_t id)
 476{
 477        struct agp_controller *controller;
 478
 479        controller = agp_fe.controllers;
 480
 481        while (controller != NULL) {
 482                if ((agp_find_client_in_controller(controller, id)) != NULL)
 483                        return controller;
 484                controller = controller->next;
 485        }
 486
 487        return NULL;
 488}
 489
 490struct agp_client *agp_find_client_by_pid(pid_t id)
 491{
 492        struct agp_client *temp;
 493
 494        if (agp_fe.current_controller == NULL)
 495                return NULL;
 496
 497        temp = agp_find_client_in_controller(agp_fe.current_controller, id);
 498        return temp;
 499}
 500
 501static void agp_insert_client(struct agp_client *client)
 502{
 503        struct agp_client *prev_client;
 504
 505        prev_client = agp_fe.current_controller->clients;
 506        client->next = prev_client;
 507
 508        if (prev_client != NULL)
 509                prev_client->prev = client;
 510
 511        agp_fe.current_controller->clients = client;
 512        agp_fe.current_controller->num_clients++;
 513}
 514
 515struct agp_client *agp_create_client(pid_t id)
 516{
 517        struct agp_client *new_client;
 518
 519        new_client = kzalloc(sizeof(struct agp_client), GFP_KERNEL);
 520        if (new_client == NULL)
 521                return NULL;
 522
 523        new_client->pid = id;
 524        agp_insert_client(new_client);
 525        return new_client;
 526}
 527
 528int agp_remove_client(pid_t id)
 529{
 530        struct agp_client *client;
 531        struct agp_client *prev_client;
 532        struct agp_client *next_client;
 533        struct agp_controller *controller;
 534
 535        controller = agp_find_controller_for_client(id);
 536        if (controller == NULL)
 537                return -EINVAL;
 538
 539        client = agp_find_client_in_controller(controller, id);
 540        if (client == NULL)
 541                return -EINVAL;
 542
 543        prev_client = client->prev;
 544        next_client = client->next;
 545
 546        if (prev_client != NULL) {
 547                prev_client->next = next_client;
 548                if (next_client != NULL)
 549                        next_client->prev = prev_client;
 550
 551        } else {
 552                if (next_client != NULL)
 553                        next_client->prev = NULL;
 554                controller->clients = next_client;
 555        }
 556
 557        controller->num_clients--;
 558        agp_remove_seg_from_client(client);
 559        kfree(client);
 560        return 0;
 561}
 562
 563/* End - Routines for managing client lists */
 564
 565/* File Operations */
 566
 567static int agp_mmap(struct file *file, struct vm_area_struct *vma)
 568{
 569        unsigned int size, current_size;
 570        unsigned long offset;
 571        struct agp_client *client;
 572        struct agp_file_private *priv = file->private_data;
 573        struct agp_kern_info kerninfo;
 574
 575        mutex_lock(&(agp_fe.agp_mutex));
 576
 577        if (agp_fe.backend_acquired != true)
 578                goto out_eperm;
 579
 580        if (!(test_bit(AGP_FF_IS_VALID, &priv->access_flags)))
 581                goto out_eperm;
 582
 583        agp_copy_info(agp_bridge, &kerninfo);
 584        size = vma->vm_end - vma->vm_start;
 585        current_size = kerninfo.aper_size;
 586        current_size = current_size * 0x100000;
 587        offset = vma->vm_pgoff << PAGE_SHIFT;
 588        DBG("%lx:%lx", offset, offset+size);
 589
 590        if (test_bit(AGP_FF_IS_CLIENT, &priv->access_flags)) {
 591                if ((size + offset) > current_size)
 592                        goto out_inval;
 593
 594                client = agp_find_client_by_pid(current->pid);
 595
 596                if (client == NULL)
 597                        goto out_eperm;
 598
 599                if (!agp_find_seg_in_client(client, offset, size, vma->vm_page_prot))
 600                        goto out_inval;
 601
 602                DBG("client vm_ops=%p", kerninfo.vm_ops);
 603                if (kerninfo.vm_ops) {
 604                        vma->vm_ops = kerninfo.vm_ops;
 605                } else if (io_remap_pfn_range(vma, vma->vm_start,
 606                                (kerninfo.aper_base + offset) >> PAGE_SHIFT,
 607                                            size, vma->vm_page_prot)) {
 608                        goto out_again;
 609                }
 610                mutex_unlock(&(agp_fe.agp_mutex));
 611                return 0;
 612        }
 613
 614        if (test_bit(AGP_FF_IS_CONTROLLER, &priv->access_flags)) {
 615                if (size != current_size)
 616                        goto out_inval;
 617
 618                DBG("controller vm_ops=%p", kerninfo.vm_ops);
 619                if (kerninfo.vm_ops) {
 620                        vma->vm_ops = kerninfo.vm_ops;
 621                } else if (io_remap_pfn_range(vma, vma->vm_start,
 622                                            kerninfo.aper_base >> PAGE_SHIFT,
 623                                            size, vma->vm_page_prot)) {
 624                        goto out_again;
 625                }
 626                mutex_unlock(&(agp_fe.agp_mutex));
 627                return 0;
 628        }
 629
 630out_eperm:
 631        mutex_unlock(&(agp_fe.agp_mutex));
 632        return -EPERM;
 633
 634out_inval:
 635        mutex_unlock(&(agp_fe.agp_mutex));
 636        return -EINVAL;
 637
 638out_again:
 639        mutex_unlock(&(agp_fe.agp_mutex));
 640        return -EAGAIN;
 641}
 642
 643static int agp_release(struct inode *inode, struct file *file)
 644{
 645        struct agp_file_private *priv = file->private_data;
 646
 647        mutex_lock(&(agp_fe.agp_mutex));
 648
 649        DBG("priv=%p", priv);
 650
 651        if (test_bit(AGP_FF_IS_CONTROLLER, &priv->access_flags)) {
 652                struct agp_controller *controller;
 653
 654                controller = agp_find_controller_by_pid(priv->my_pid);
 655
 656                if (controller != NULL) {
 657                        if (controller == agp_fe.current_controller)
 658                                agp_controller_release_current(controller, priv);
 659                        agp_remove_controller(controller);
 660                        controller = NULL;
 661                }
 662        }
 663
 664        if (test_bit(AGP_FF_IS_CLIENT, &priv->access_flags))
 665                agp_remove_client(priv->my_pid);
 666
 667        agp_remove_file_private(priv);
 668        kfree(priv);
 669        file->private_data = NULL;
 670        mutex_unlock(&(agp_fe.agp_mutex));
 671        return 0;
 672}
 673
 674static int agp_open(struct inode *inode, struct file *file)
 675{
 676        int minor = iminor(inode);
 677        struct agp_file_private *priv;
 678        struct agp_client *client;
 679
 680        if (minor != AGPGART_MINOR)
 681                return -ENXIO;
 682
 683        mutex_lock(&(agp_fe.agp_mutex));
 684
 685        priv = kzalloc(sizeof(struct agp_file_private), GFP_KERNEL);
 686        if (priv == NULL) {
 687                mutex_unlock(&(agp_fe.agp_mutex));
 688                return -ENOMEM;
 689        }
 690
 691        set_bit(AGP_FF_ALLOW_CLIENT, &priv->access_flags);
 692        priv->my_pid = current->pid;
 693
 694        if (capable(CAP_SYS_RAWIO))
 695                /* Root priv, can be controller */
 696                set_bit(AGP_FF_ALLOW_CONTROLLER, &priv->access_flags);
 697
 698        client = agp_find_client_by_pid(current->pid);
 699
 700        if (client != NULL) {
 701                set_bit(AGP_FF_IS_CLIENT, &priv->access_flags);
 702                set_bit(AGP_FF_IS_VALID, &priv->access_flags);
 703        }
 704        file->private_data = (void *) priv;
 705        agp_insert_file_private(priv);
 706        DBG("private=%p, client=%p", priv, client);
 707
 708        mutex_unlock(&(agp_fe.agp_mutex));
 709
 710        return 0;
 711}
 712
 713
 714static ssize_t agp_read(struct file *file, char __user *buf,
 715                        size_t count, loff_t * ppos)
 716{
 717        return -EINVAL;
 718}
 719
 720static ssize_t agp_write(struct file *file, const char __user *buf,
 721                         size_t count, loff_t * ppos)
 722{
 723        return -EINVAL;
 724}
 725
 726static int agpioc_info_wrap(struct agp_file_private *priv, void __user *arg)
 727{
 728        struct agp_info userinfo;
 729        struct agp_kern_info kerninfo;
 730
 731        agp_copy_info(agp_bridge, &kerninfo);
 732
 733        userinfo.version.major = kerninfo.version.major;
 734        userinfo.version.minor = kerninfo.version.minor;
 735        userinfo.bridge_id = kerninfo.device->vendor |
 736            (kerninfo.device->device << 16);
 737        userinfo.agp_mode = kerninfo.mode;
 738        userinfo.aper_base = kerninfo.aper_base;
 739        userinfo.aper_size = kerninfo.aper_size;
 740        userinfo.pg_total = userinfo.pg_system = kerninfo.max_memory;
 741        userinfo.pg_used = kerninfo.current_memory;
 742
 743        if (copy_to_user(arg, &userinfo, sizeof(struct agp_info)))
 744                return -EFAULT;
 745
 746        return 0;
 747}
 748
 749int agpioc_acquire_wrap(struct agp_file_private *priv)
 750{
 751        struct agp_controller *controller;
 752
 753        DBG("");
 754
 755        if (!(test_bit(AGP_FF_ALLOW_CONTROLLER, &priv->access_flags)))
 756                return -EPERM;
 757
 758        if (agp_fe.current_controller != NULL)
 759                return -EBUSY;
 760
 761        if (!agp_bridge)
 762                return -ENODEV;
 763
 764        if (atomic_read(&agp_bridge->agp_in_use))
 765                return -EBUSY;
 766
 767        atomic_inc(&agp_bridge->agp_in_use);
 768
 769        agp_fe.backend_acquired = true;
 770
 771        controller = agp_find_controller_by_pid(priv->my_pid);
 772
 773        if (controller != NULL) {
 774                agp_controller_make_current(controller);
 775        } else {
 776                controller = agp_create_controller(priv->my_pid);
 777
 778                if (controller == NULL) {
 779                        agp_fe.backend_acquired = false;
 780                        agp_backend_release(agp_bridge);
 781                        return -ENOMEM;
 782                }
 783                agp_insert_controller(controller);
 784                agp_controller_make_current(controller);
 785        }
 786
 787        set_bit(AGP_FF_IS_CONTROLLER, &priv->access_flags);
 788        set_bit(AGP_FF_IS_VALID, &priv->access_flags);
 789        return 0;
 790}
 791
 792int agpioc_release_wrap(struct agp_file_private *priv)
 793{
 794        DBG("");
 795        agp_controller_release_current(agp_fe.current_controller, priv);
 796        return 0;
 797}
 798
 799int agpioc_setup_wrap(struct agp_file_private *priv, void __user *arg)
 800{
 801        struct agp_setup mode;
 802
 803        DBG("");
 804        if (copy_from_user(&mode, arg, sizeof(struct agp_setup)))
 805                return -EFAULT;
 806
 807        agp_enable(agp_bridge, mode.agp_mode);
 808        return 0;
 809}
 810
 811static int agpioc_reserve_wrap(struct agp_file_private *priv, void __user *arg)
 812{
 813        struct agp_region reserve;
 814        struct agp_client *client;
 815        struct agp_file_private *client_priv;
 816
 817        DBG("");
 818        if (copy_from_user(&reserve, arg, sizeof(struct agp_region)))
 819                return -EFAULT;
 820
 821        if ((unsigned) reserve.seg_count >= ~0U/sizeof(struct agp_segment))
 822                return -EFAULT;
 823
 824        client = agp_find_client_by_pid(reserve.pid);
 825
 826        if (reserve.seg_count == 0) {
 827                /* remove a client */
 828                client_priv = agp_find_private(reserve.pid);
 829
 830                if (client_priv != NULL) {
 831                        set_bit(AGP_FF_IS_CLIENT, &client_priv->access_flags);
 832                        set_bit(AGP_FF_IS_VALID, &client_priv->access_flags);
 833                }
 834                if (client == NULL) {
 835                        /* client is already removed */
 836                        return 0;
 837                }
 838                return agp_remove_client(reserve.pid);
 839        } else {
 840                struct agp_segment *segment;
 841
 842                if (reserve.seg_count >= 16384)
 843                        return -EINVAL;
 844
 845                segment = kmalloc((sizeof(struct agp_segment) * reserve.seg_count),
 846                                  GFP_KERNEL);
 847
 848                if (segment == NULL)
 849                        return -ENOMEM;
 850
 851                if (copy_from_user(segment, (void __user *) reserve.seg_list,
 852                                   sizeof(struct agp_segment) * reserve.seg_count)) {
 853                        kfree(segment);
 854                        return -EFAULT;
 855                }
 856                reserve.seg_list = segment;
 857
 858                if (client == NULL) {
 859                        /* Create the client and add the segment */
 860                        client = agp_create_client(reserve.pid);
 861
 862                        if (client == NULL) {
 863                                kfree(segment);
 864                                return -ENOMEM;
 865                        }
 866                        client_priv = agp_find_private(reserve.pid);
 867
 868                        if (client_priv != NULL) {
 869                                set_bit(AGP_FF_IS_CLIENT, &client_priv->access_flags);
 870                                set_bit(AGP_FF_IS_VALID, &client_priv->access_flags);
 871                        }
 872                }
 873                return agp_create_segment(client, &reserve);
 874        }
 875        /* Will never really happen */
 876        return -EINVAL;
 877}
 878
 879int agpioc_protect_wrap(struct agp_file_private *priv)
 880{
 881        DBG("");
 882        /* This function is not currently implemented */
 883        return -EINVAL;
 884}
 885
 886static int agpioc_allocate_wrap(struct agp_file_private *priv, void __user *arg)
 887{
 888        struct agp_memory *memory;
 889        struct agp_allocate alloc;
 890
 891        DBG("");
 892        if (copy_from_user(&alloc, arg, sizeof(struct agp_allocate)))
 893                return -EFAULT;
 894
 895        if (alloc.type >= AGP_USER_TYPES)
 896                return -EINVAL;
 897
 898        memory = agp_allocate_memory_wrap(alloc.pg_count, alloc.type);
 899
 900        if (memory == NULL)
 901                return -ENOMEM;
 902
 903        alloc.key = memory->key;
 904        alloc.physical = memory->physical;
 905
 906        if (copy_to_user(arg, &alloc, sizeof(struct agp_allocate))) {
 907                agp_free_memory_wrap(memory);
 908                return -EFAULT;
 909        }
 910        return 0;
 911}
 912
 913int agpioc_deallocate_wrap(struct agp_file_private *priv, int arg)
 914{
 915        struct agp_memory *memory;
 916
 917        DBG("");
 918        memory = agp_find_mem_by_key(arg);
 919
 920        if (memory == NULL)
 921                return -EINVAL;
 922
 923        agp_free_memory_wrap(memory);
 924        return 0;
 925}
 926
 927static int agpioc_bind_wrap(struct agp_file_private *priv, void __user *arg)
 928{
 929        struct agp_bind bind_info;
 930        struct agp_memory *memory;
 931
 932        DBG("");
 933        if (copy_from_user(&bind_info, arg, sizeof(struct agp_bind)))
 934                return -EFAULT;
 935
 936        memory = agp_find_mem_by_key(bind_info.key);
 937
 938        if (memory == NULL)
 939                return -EINVAL;
 940
 941        return agp_bind_memory(memory, bind_info.pg_start);
 942}
 943
 944static int agpioc_unbind_wrap(struct agp_file_private *priv, void __user *arg)
 945{
 946        struct agp_memory *memory;
 947        struct agp_unbind unbind;
 948
 949        DBG("");
 950        if (copy_from_user(&unbind, arg, sizeof(struct agp_unbind)))
 951                return -EFAULT;
 952
 953        memory = agp_find_mem_by_key(unbind.key);
 954
 955        if (memory == NULL)
 956                return -EINVAL;
 957
 958        return agp_unbind_memory(memory);
 959}
 960
 961int agpioc_chipset_flush_wrap(struct agp_file_private *priv)
 962{
 963        DBG("");
 964        agp_flush_chipset(agp_bridge);
 965        return 0;
 966}
 967
 968static long agp_ioctl(struct file *file,
 969                     unsigned int cmd, unsigned long arg)
 970{
 971        struct agp_file_private *curr_priv = file->private_data;
 972        int ret_val = -ENOTTY;
 973
 974        DBG("priv=%p, cmd=%x", curr_priv, cmd);
 975        mutex_lock(&(agp_fe.agp_mutex));
 976
 977        if ((agp_fe.current_controller == NULL) &&
 978            (cmd != AGPIOC_ACQUIRE)) {
 979                ret_val = -EINVAL;
 980                goto ioctl_out;
 981        }
 982        if ((agp_fe.backend_acquired != true) &&
 983            (cmd != AGPIOC_ACQUIRE)) {
 984                ret_val = -EBUSY;
 985                goto ioctl_out;
 986        }
 987        if (cmd != AGPIOC_ACQUIRE) {
 988                if (!(test_bit(AGP_FF_IS_CONTROLLER, &curr_priv->access_flags))) {
 989                        ret_val = -EPERM;
 990                        goto ioctl_out;
 991                }
 992                /* Use the original pid of the controller,
 993                 * in case it's threaded */
 994
 995                if (agp_fe.current_controller->pid != curr_priv->my_pid) {
 996                        ret_val = -EBUSY;
 997                        goto ioctl_out;
 998                }
 999        }
1000
1001        switch (cmd) {
1002        case AGPIOC_INFO:
1003                ret_val = agpioc_info_wrap(curr_priv, (void __user *) arg);
1004                break;
1005
1006        case AGPIOC_ACQUIRE:
1007                ret_val = agpioc_acquire_wrap(curr_priv);
1008                break;
1009
1010        case AGPIOC_RELEASE:
1011                ret_val = agpioc_release_wrap(curr_priv);
1012                break;
1013
1014        case AGPIOC_SETUP:
1015                ret_val = agpioc_setup_wrap(curr_priv, (void __user *) arg);
1016                break;
1017
1018        case AGPIOC_RESERVE:
1019                ret_val = agpioc_reserve_wrap(curr_priv, (void __user *) arg);
1020                break;
1021
1022        case AGPIOC_PROTECT:
1023                ret_val = agpioc_protect_wrap(curr_priv);
1024                break;
1025
1026        case AGPIOC_ALLOCATE:
1027                ret_val = agpioc_allocate_wrap(curr_priv, (void __user *) arg);
1028                break;
1029
1030        case AGPIOC_DEALLOCATE:
1031                ret_val = agpioc_deallocate_wrap(curr_priv, (int) arg);
1032                break;
1033
1034        case AGPIOC_BIND:
1035                ret_val = agpioc_bind_wrap(curr_priv, (void __user *) arg);
1036                break;
1037
1038        case AGPIOC_UNBIND:
1039                ret_val = agpioc_unbind_wrap(curr_priv, (void __user *) arg);
1040                break;
1041               
1042        case AGPIOC_CHIPSET_FLUSH:
1043                ret_val = agpioc_chipset_flush_wrap(curr_priv);
1044                break;
1045        }
1046
1047ioctl_out:
1048        DBG("ioctl returns %d\n", ret_val);
1049        mutex_unlock(&(agp_fe.agp_mutex));
1050        return ret_val;
1051}
1052
1053static const struct file_operations agp_fops =
1054{
1055        .owner          = THIS_MODULE,
1056        .llseek         = no_llseek,
1057        .read           = agp_read,
1058        .write          = agp_write,
1059        .unlocked_ioctl = agp_ioctl,
1060#ifdef CONFIG_COMPAT
1061        .compat_ioctl   = compat_agp_ioctl,
1062#endif
1063        .mmap           = agp_mmap,
1064        .open           = agp_open,
1065        .release        = agp_release,
1066};
1067
1068static struct miscdevice agp_miscdev =
1069{
1070        .minor  = AGPGART_MINOR,
1071        .name   = "agpgart",
1072        .fops   = &agp_fops
1073};
1074
1075int agp_frontend_initialize(void)
1076{
1077        memset(&agp_fe, 0, sizeof(struct agp_front_data));
1078        mutex_init(&(agp_fe.agp_mutex));
1079
1080        if (misc_register(&agp_miscdev)) {
1081                printk(KERN_ERR PFX "unable to get minor: %d\n", AGPGART_MINOR);
1082                return -EIO;
1083        }
1084        return 0;
1085}
1086
1087void agp_frontend_cleanup(void)
1088{
1089        misc_deregister(&agp_miscdev);
1090}
1091
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