[7e3826d9] | 1 | /*
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| 2 | * Copyright (c) 2017 Jakub Jermar
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| 3 | * All rights reserved.
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| 4 | *
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| 5 | * Redistribution and use in source and binary forms, with or without
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| 6 | * modification, are permitted provided that the following conditions
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| 7 | * are met:
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| 8 | *
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| 9 | * - Redistributions of source code must retain the above copyright
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| 10 | * notice, this list of conditions and the following disclaimer.
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| 11 | * - Redistributions in binary form must reproduce the above copyright
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| 12 | * notice, this list of conditions and the following disclaimer in the
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| 13 | * documentation and/or other materials provided with the distribution.
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| 14 | * - The name of the author may not be used to endorse or promote products
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| 15 | * derived from this software without specific prior written permission.
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| 16 | *
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 27 | */
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| 28 |
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[174156fd] | 29 | /** @addtogroup kernel_generic
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[7e3826d9] | 30 | * @{
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| 31 | */
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| 32 | /** @file
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| 33 | */
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| 34 |
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[6636fb19] | 35 | /*
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| 36 | * HelenOS capabilities are task-local names for references to kernel objects.
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| 37 | * Kernel objects are reference-counted wrappers for a select group of objects
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| 38 | * allocated in and by the kernel that can be made accessible to userspace in a
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| 39 | * controlled way via integer handles.
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| 40 | *
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| 41 | * A kernel object (kobject_t) encapsulates one of the following raw objects:
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| 42 | *
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[ce4a21a0] | 43 | * - IPC call
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[6636fb19] | 44 | * - IPC phone
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| 45 | * - IRQ object
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| 46 | *
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| 47 | * A capability (cap_t) is either free, allocated or published. Free
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| 48 | * capabilities can be allocated, which reserves the capability handle in the
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| 49 | * task-local capability space. Allocated capabilities can be published, which
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| 50 | * associates them with an existing kernel object. Userspace can only access
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| 51 | * published capabilities.
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| 52 | *
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| 53 | * A published capability may get unpublished, which disassociates it from the
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| 54 | * underlying kernel object and puts it back into the allocated state. An
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| 55 | * allocated capability can be freed to become available for future use.
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| 56 | *
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| 57 | * There is a 1:1 correspondence between a kernel object (kobject_t) and the
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| 58 | * actual raw object it encapsulates. A kernel object (kobject_t) may have
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| 59 | * multiple references, either implicit from one or more capabilities (cap_t),
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| 60 | * even from capabilities in different tasks, or explicit as a result of
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| 61 | * creating a new reference from a capability handle using kobject_get(), or
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| 62 | * creating a new reference from an already existing reference by
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| 63 | * kobject_add_ref() or as a result of unpublishing a capability and
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| 64 | * disassociating it from its kobject_t using cap_unpublish().
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| 65 | *
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[d24e987] | 66 | * A holder of an explicit reference to a kernel object may revoke access to it
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| 67 | * from all capabilities that point to it by calling cap_revoke().
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| 68 | *
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[6636fb19] | 69 | * As kernel objects are reference-counted, they get automatically destroyed
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| 70 | * when their last reference is dropped in kobject_put(). The idea is that
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| 71 | * whenever a kernel object is inserted into some sort of a container (e.g. a
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| 72 | * list or hash table), its reference count should be incremented via
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| 73 | * kobject_get() or kobject_add_ref(). When the kernel object is removed from
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| 74 | * the container, the reference count should go down via a call to
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| 75 | * kobject_put().
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| 76 | */
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| 77 |
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[3f74275] | 78 | #include <cap/cap.h>
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[f571ca49] | 79 | #include <abi/cap.h>
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[7e3826d9] | 80 | #include <proc/task.h>
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[9e87562] | 81 | #include <synch/mutex.h>
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[e9d15d9] | 82 | #include <abi/errno.h>
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[e7ac23d0] | 83 | #include <mm/slab.h>
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[9e87562] | 84 | #include <adt/list.h>
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[7e3826d9] | 85 |
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[10d65d70] | 86 | #include <limits.h>
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[05913fe7] | 87 | #include <stdint.h>
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[aafed15] | 88 | #include <stdlib.h>
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[05913fe7] | 89 |
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[9675296] | 90 | #define CAPS_START ((intptr_t) CAP_NIL + 1)
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| 91 | #define CAPS_SIZE (INT_MAX - (int) CAPS_START)
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[f571ca49] | 92 | #define CAPS_LAST (CAPS_SIZE - 1)
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[05913fe7] | 93 |
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[82d515e9] | 94 | static slab_cache_t *cap_cache;
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[e394c196] | 95 | static slab_cache_t *kobject_cache;
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[ce732e74] | 96 |
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[05913fe7] | 97 | static size_t caps_hash(const ht_link_t *item)
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[05ffb41] | 98 | {
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[05913fe7] | 99 | cap_t *cap = hash_table_get_inst(item, cap_t, caps_link);
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[bb97118] | 100 | return hash_mix(cap_handle_raw(cap->handle));
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[05913fe7] | 101 | }
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| 102 |
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[5e801dc] | 103 | static size_t caps_key_hash(const void *key)
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[05913fe7] | 104 | {
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[5e801dc] | 105 | const cap_handle_t *handle = key;
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[bb97118] | 106 | return hash_mix(cap_handle_raw(*handle));
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[05913fe7] | 107 | }
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| 108 |
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[5e801dc] | 109 | static bool caps_key_equal(const void *key, const ht_link_t *item)
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[05913fe7] | 110 | {
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[5e801dc] | 111 | const cap_handle_t *handle = key;
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[05913fe7] | 112 | cap_t *cap = hash_table_get_inst(item, cap_t, caps_link);
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| 113 | return *handle == cap->handle;
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[05ffb41] | 114 | }
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| 115 |
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[05913fe7] | 116 | static hash_table_ops_t caps_ops = {
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| 117 | .hash = caps_hash,
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| 118 | .key_hash = caps_key_hash,
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| 119 | .key_equal = caps_key_equal
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| 120 | };
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| 121 |
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[ce732e74] | 122 | void caps_init(void)
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| 123 | {
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[82d515e9] | 124 | cap_cache = slab_cache_create("cap_t", sizeof(cap_t), 0, NULL,
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[ce732e74] | 125 | NULL, 0);
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[e394c196] | 126 | kobject_cache = slab_cache_create("kobject_t", sizeof(kobject_t), 0,
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| 127 | NULL, NULL, 0);
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[ce732e74] | 128 | }
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| 129 |
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[6636fb19] | 130 | /** Allocate the capability info structure
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| 131 | *
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| 132 | * @param task Task for which to allocate the info structure.
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| 133 | */
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[b7fd2a0] | 134 | errno_t caps_task_alloc(task_t *task)
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[e7ac23d0] | 135 | {
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[11b285d] | 136 | task->cap_info = (cap_info_t *) malloc(sizeof(cap_info_t));
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[c46bfbc] | 137 | if (!task->cap_info)
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| 138 | return ENOMEM;
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[05913fe7] | 139 | task->cap_info->handles = ra_arena_create();
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[c46bfbc] | 140 | if (!task->cap_info->handles)
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| 141 | goto error_handles;
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[f571ca49] | 142 | if (!ra_span_add(task->cap_info->handles, CAPS_START, CAPS_SIZE))
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[c46bfbc] | 143 | goto error_span;
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| 144 | if (!hash_table_create(&task->cap_info->caps, 0, 0, &caps_ops))
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| 145 | goto error_span;
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| 146 | return EOK;
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| 147 |
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| 148 | error_span:
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| 149 | ra_arena_destroy(task->cap_info->handles);
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| 150 | error_handles:
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| 151 | free(task->cap_info);
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| 152 | return ENOMEM;
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[e7ac23d0] | 153 | }
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| 154 |
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[6636fb19] | 155 | /** Initialize the capability info structure
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| 156 | *
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| 157 | * @param task Task for which to initialize the info structure.
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| 158 | */
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[3f74275] | 159 | void caps_task_init(task_t *task)
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[e7ac23d0] | 160 | {
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[c1f68b0] | 161 | mutex_initialize(&task->cap_info->lock, MUTEX_RECURSIVE);
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[9e87562] | 162 |
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[48bcf49] | 163 | for (kobject_type_t t = 0; t < KOBJECT_TYPE_MAX; t++)
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| 164 | list_initialize(&task->cap_info->type_list[t]);
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[e7ac23d0] | 165 | }
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| 166 |
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[6636fb19] | 167 | /** Deallocate the capability info structure
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| 168 | *
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| 169 | * @param task Task from which to deallocate the info structure.
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| 170 | */
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[3f74275] | 171 | void caps_task_free(task_t *task)
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[e7ac23d0] | 172 | {
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[05913fe7] | 173 | hash_table_destroy(&task->cap_info->caps);
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| 174 | ra_arena_destroy(task->cap_info->handles);
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[9e87562] | 175 | free(task->cap_info);
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| 176 | }
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| 177 |
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[6636fb19] | 178 | /** Invoke callback function on task's capabilites of given type
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| 179 | *
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| 180 | * @param task Task where the invocation should take place.
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| 181 | * @param type Kernel object type of the task's capabilities that will be
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| 182 | * subject to the callback invocation.
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| 183 | * @param cb Callback function.
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| 184 | * @param arg Argument for the callback function.
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| 185 | *
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| 186 | * @return True if the callback was called on all matching capabilities.
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| 187 | * @return False if the callback was applied only partially.
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| 188 | */
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[48bcf49] | 189 | bool caps_apply_to_kobject_type(task_t *task, kobject_type_t type,
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[9e87562] | 190 | bool (*cb)(cap_t *, void *), void *arg)
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| 191 | {
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| 192 | bool done = true;
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| 193 |
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| 194 | mutex_lock(&task->cap_info->lock);
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| 195 | list_foreach_safe(task->cap_info->type_list[type], cur, next) {
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[05913fe7] | 196 | cap_t *cap = list_get_instance(cur, cap_t, type_link);
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[9e87562] | 197 | done = cb(cap, arg);
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| 198 | if (!done)
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| 199 | break;
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| 200 | }
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| 201 | mutex_unlock(&task->cap_info->lock);
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| 202 |
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| 203 | return done;
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| 204 | }
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| 205 |
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[05913fe7] | 206 | /** Initialize capability and associate it with its handle
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| 207 | *
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| 208 | * @param cap Address of the capability.
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| 209 | * @param task Backling to the owning task.
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| 210 | * @param handle Capability handle.
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| 211 | */
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| 212 | static void cap_initialize(cap_t *cap, task_t *task, cap_handle_t handle)
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| 213 | {
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| 214 | cap->state = CAP_STATE_FREE;
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| 215 | cap->task = task;
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| 216 | cap->handle = handle;
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[d24e987] | 217 | link_initialize(&cap->kobj_link);
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[05913fe7] | 218 | link_initialize(&cap->type_link);
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| 219 | }
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| 220 |
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[6636fb19] | 221 | /** Get capability using capability handle
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| 222 | *
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| 223 | * @param task Task whose capability to get.
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| 224 | * @param handle Capability handle of the desired capability.
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| 225 | * @param state State in which the capability must be.
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| 226 | *
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| 227 | * @return Address of the desired capability if it exists and its state matches.
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| 228 | * @return NULL if no such capability exists or it's in a different state.
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| 229 | */
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[48bcf49] | 230 | static cap_t *cap_get(task_t *task, cap_handle_t handle, cap_state_t state)
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[7e3826d9] | 231 | {
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[9e87562] | 232 | assert(mutex_locked(&task->cap_info->lock));
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| 233 |
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[bb97118] | 234 | if ((cap_handle_raw(handle) < CAPS_START) ||
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| 235 | (cap_handle_raw(handle) > CAPS_LAST))
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[7e3826d9] | 236 | return NULL;
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[05913fe7] | 237 | ht_link_t *link = hash_table_find(&task->cap_info->caps, &handle);
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| 238 | if (!link)
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| 239 | return NULL;
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| 240 | cap_t *cap = hash_table_get_inst(link, cap_t, caps_link);
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| 241 | if (cap->state != state)
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[7e3826d9] | 242 | return NULL;
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[05913fe7] | 243 | return cap;
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| 244 | }
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| 245 |
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[6636fb19] | 246 | /** Allocate new capability
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| 247 | *
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| 248 | * @param task Task for which to allocate the new capability.
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| 249 | *
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[09d01f2] | 250 | * @param[out] handle New capability handle on success.
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| 251 | *
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[cde999a] | 252 | * @return An error code in case of error.
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[6636fb19] | 253 | */
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[b7fd2a0] | 254 | errno_t cap_alloc(task_t *task, cap_handle_t *handle)
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[7e3826d9] | 255 | {
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[9e87562] | 256 | mutex_lock(&task->cap_info->lock);
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[9fc776c7] | 257 | cap_t *cap = slab_alloc(cap_cache, FRAME_ATOMIC);
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[05913fe7] | 258 | if (!cap) {
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[9fc776c7] | 259 | mutex_unlock(&task->cap_info->lock);
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| 260 | return ENOMEM;
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| 261 | }
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| 262 | uintptr_t hbase;
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| 263 | if (!ra_alloc(task->cap_info->handles, 1, 1, &hbase)) {
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| 264 | slab_free(cap_cache, cap);
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| 265 | mutex_unlock(&task->cap_info->lock);
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| 266 | return ENOMEM;
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[7e3826d9] | 267 | }
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[9fc776c7] | 268 | cap_initialize(cap, task, (cap_handle_t) hbase);
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| 269 | hash_table_insert(&task->cap_info->caps, &cap->caps_link);
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[05913fe7] | 270 |
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| 271 | cap->state = CAP_STATE_ALLOCATED;
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[09d01f2] | 272 | *handle = cap->handle;
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[9e87562] | 273 | mutex_unlock(&task->cap_info->lock);
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[7e3826d9] | 274 |
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[09d01f2] | 275 | return EOK;
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[7e3826d9] | 276 | }
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| 277 |
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[6636fb19] | 278 | /** Publish allocated capability
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| 279 | *
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| 280 | * The kernel object is moved into the capability. In other words, its reference
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| 281 | * is handed over to the capability. Once published, userspace can access and
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| 282 | * manipulate the capability.
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| 283 | *
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| 284 | * @param task Task in which to publish the capability.
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| 285 | * @param handle Capability handle.
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| 286 | * @param kobj Kernel object.
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| 287 | */
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[48bcf49] | 288 | void
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| 289 | cap_publish(task_t *task, cap_handle_t handle, kobject_t *kobj)
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[9e87562] | 290 | {
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[d24e987] | 291 | mutex_lock(&kobj->caps_list_lock);
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[9e87562] | 292 | mutex_lock(&task->cap_info->lock);
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[48bcf49] | 293 | cap_t *cap = cap_get(task, handle, CAP_STATE_ALLOCATED);
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[9e87562] | 294 | assert(cap);
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[48bcf49] | 295 | cap->state = CAP_STATE_PUBLISHED;
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| 296 | /* Hand over kobj's reference to cap */
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| 297 | cap->kobject = kobj;
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[d24e987] | 298 | list_append(&cap->kobj_link, &kobj->caps_list);
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[05913fe7] | 299 | list_append(&cap->type_link, &task->cap_info->type_list[kobj->type]);
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[9e87562] | 300 | mutex_unlock(&task->cap_info->lock);
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[d24e987] | 301 | mutex_unlock(&kobj->caps_list_lock);
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| 302 | }
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| 303 |
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| 304 | static void cap_unpublish_unsafe(cap_t *cap)
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| 305 | {
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| 306 | cap->kobject = NULL;
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| 307 | list_remove(&cap->kobj_link);
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| 308 | list_remove(&cap->type_link);
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| 309 | cap->state = CAP_STATE_ALLOCATED;
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[9e87562] | 310 | }
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| 311 |
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[6636fb19] | 312 | /** Unpublish published capability
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| 313 | *
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| 314 | * The kernel object is moved out of the capability. In other words, the
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| 315 | * capability's reference to the objects is handed over to the kernel object
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| 316 | * pointer returned by this function. Once unpublished, the capability does not
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| 317 | * refer to any kernel object anymore.
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| 318 | *
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| 319 | * @param task Task in which to unpublish the capability.
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| 320 | * @param handle Capability handle.
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| 321 | * @param type Kernel object type of the object associated with the
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| 322 | * capability.
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[d24e987] | 323 | *
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| 324 | * @return Pointer and explicit reference to the kobject that was associated
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| 325 | * with the capability.
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[6636fb19] | 326 | */
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[48bcf49] | 327 | kobject_t *cap_unpublish(task_t *task, cap_handle_t handle, kobject_type_t type)
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| 328 | {
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[c1f68b0] | 329 | kobject_t *kobj = NULL;
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[48bcf49] | 330 |
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[d24e987] | 331 | restart:
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[48bcf49] | 332 | mutex_lock(&task->cap_info->lock);
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[c1f68b0] | 333 | cap_t *cap = cap_get(task, handle, CAP_STATE_PUBLISHED);
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| 334 | if (cap) {
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| 335 | if (cap->kobject->type == type) {
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| 336 | /* Hand over cap's reference to kobj */
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| 337 | kobj = cap->kobject;
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[d24e987] | 338 | if (!mutex_trylock(&kobj->caps_list_lock)) {
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| 339 | mutex_unlock(&task->cap_info->lock);
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| 340 | kobj = NULL;
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| 341 | goto restart;
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| 342 | }
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| 343 | cap_unpublish_unsafe(cap);
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| 344 | mutex_unlock(&kobj->caps_list_lock);
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[c1f68b0] | 345 | }
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| 346 | }
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[9e87562] | 347 | mutex_unlock(&task->cap_info->lock);
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| 348 |
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[48bcf49] | 349 | return kobj;
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[9e87562] | 350 | }
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| 351 |
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[d24e987] | 352 | /** Revoke access to kobject from all existing capabilities
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| 353 | *
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| 354 | * All published capabilities associated with the kobject are unpublished (i.e.
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| 355 | * their new state is set to CAP_STATE_ALLOCATED) and no longer point to the
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| 356 | * kobject. Kobject's reference count is decreased accordingly.
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| 357 | *
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| 358 | * Note that the caller is supposed to hold an explicit reference to the kobject
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| 359 | * so that the kobject is guaranteed to exist when this function returns.
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| 360 | *
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| 361 | * @param kobj Pointer and explicit reference to the kobject capabilities of
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| 362 | * which are about to be unpublished.
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| 363 | */
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| 364 | void cap_revoke(kobject_t *kobj)
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| 365 | {
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| 366 | mutex_lock(&kobj->caps_list_lock);
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| 367 | list_foreach_safe(kobj->caps_list, cur, hlp) {
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| 368 | cap_t *cap = list_get_instance(cur, cap_t, kobj_link);
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| 369 | mutex_lock(&cap->task->cap_info->lock);
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| 370 | cap_unpublish_unsafe(cap);
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| 371 | /* Drop the reference for the unpublished capability */
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| 372 | kobject_put(kobj);
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| 373 | mutex_unlock(&cap->task->cap_info->lock);
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| 374 | }
|
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| 375 | mutex_unlock(&kobj->caps_list_lock);
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| 376 | }
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| 377 |
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[c1f68b0] | 378 | /** Free allocated capability
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[6636fb19] | 379 | *
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[c1f68b0] | 380 | * @param task Task in which to free the capability.
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| 381 | * @param handle Capability handle.
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[6636fb19] | 382 | */
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[c1f68b0] | 383 | void cap_free(task_t *task, cap_handle_t handle)
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[7e3826d9] | 384 | {
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[bb97118] | 385 | assert(cap_handle_raw(handle) >= CAPS_START);
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| 386 | assert(cap_handle_raw(handle) <= CAPS_LAST);
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[7e3826d9] | 387 |
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[c1f68b0] | 388 | mutex_lock(&task->cap_info->lock);
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[05913fe7] | 389 | cap_t *cap = cap_get(task, handle, CAP_STATE_ALLOCATED);
|
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| 390 |
|
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| 391 | assert(cap);
|
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| 392 |
|
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| 393 | hash_table_remove_item(&task->cap_info->caps, &cap->caps_link);
|
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[bb97118] | 394 | ra_free(task->cap_info->handles, cap_handle_raw(handle), 1);
|
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[82d515e9] | 395 | slab_free(cap_cache, cap);
|
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[9e87562] | 396 | mutex_unlock(&task->cap_info->lock);
|
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[7e3826d9] | 397 | }
|
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| 398 |
|
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[e394c196] | 399 | kobject_t *kobject_alloc(unsigned int flags)
|
---|
| 400 | {
|
---|
| 401 | return slab_alloc(kobject_cache, flags);
|
---|
| 402 | }
|
---|
| 403 |
|
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| 404 | void kobject_free(kobject_t *kobj)
|
---|
| 405 | {
|
---|
| 406 | slab_free(kobject_cache, kobj);
|
---|
| 407 | }
|
---|
| 408 |
|
---|
[6636fb19] | 409 | /** Initialize kernel object
|
---|
| 410 | *
|
---|
| 411 | * @param kobj Kernel object to initialize.
|
---|
| 412 | * @param type Type of the kernel object.
|
---|
| 413 | * @param raw Raw pointer to the encapsulated object.
|
---|
| 414 | * @param ops Pointer to kernel object operations for the respective type.
|
---|
| 415 | */
|
---|
[48bcf49] | 416 | void kobject_initialize(kobject_t *kobj, kobject_type_t type, void *raw,
|
---|
| 417 | kobject_ops_t *ops)
|
---|
| 418 | {
|
---|
[e3306d04] | 419 | atomic_store(&kobj->refcnt, 1);
|
---|
[d24e987] | 420 |
|
---|
| 421 | mutex_initialize(&kobj->caps_list_lock, MUTEX_PASSIVE);
|
---|
| 422 | list_initialize(&kobj->caps_list);
|
---|
| 423 |
|
---|
[48bcf49] | 424 | kobj->type = type;
|
---|
| 425 | kobj->raw = raw;
|
---|
| 426 | kobj->ops = ops;
|
---|
| 427 | }
|
---|
| 428 |
|
---|
[6636fb19] | 429 | /** Get new reference to kernel object from capability
|
---|
| 430 | *
|
---|
| 431 | * @param task Task from which to get the reference.
|
---|
| 432 | * @param handle Capability handle.
|
---|
| 433 | * @param type Kernel object type of the object associated with the
|
---|
| 434 | * capability referenced by handle.
|
---|
| 435 | *
|
---|
| 436 | * @return Kernel object with incremented reference count on success.
|
---|
| 437 | * @return NULL if there is no matching capability or kernel object.
|
---|
| 438 | */
|
---|
[48bcf49] | 439 | kobject_t *
|
---|
| 440 | kobject_get(struct task *task, cap_handle_t handle, kobject_type_t type)
|
---|
| 441 | {
|
---|
| 442 | kobject_t *kobj = NULL;
|
---|
| 443 |
|
---|
| 444 | mutex_lock(&task->cap_info->lock);
|
---|
| 445 | cap_t *cap = cap_get(task, handle, CAP_STATE_PUBLISHED);
|
---|
| 446 | if (cap) {
|
---|
| 447 | if (cap->kobject->type == type) {
|
---|
| 448 | kobj = cap->kobject;
|
---|
| 449 | atomic_inc(&kobj->refcnt);
|
---|
| 450 | }
|
---|
| 451 | }
|
---|
| 452 | mutex_unlock(&task->cap_info->lock);
|
---|
| 453 |
|
---|
| 454 | return kobj;
|
---|
| 455 | }
|
---|
| 456 |
|
---|
[6636fb19] | 457 | /** Record new reference
|
---|
| 458 | *
|
---|
| 459 | * @param kobj Kernel object from which the new reference is created.
|
---|
| 460 | */
|
---|
| 461 | void kobject_add_ref(kobject_t *kobj)
|
---|
| 462 | {
|
---|
| 463 | atomic_inc(&kobj->refcnt);
|
---|
| 464 | }
|
---|
| 465 |
|
---|
| 466 | /** Drop reference to kernel object
|
---|
| 467 | *
|
---|
| 468 | * The encapsulated object and the kobject_t wrapper are both destroyed when the
|
---|
| 469 | * last reference is dropped.
|
---|
| 470 | *
|
---|
| 471 | * @param kobj Kernel object whose reference to drop.
|
---|
| 472 | */
|
---|
[48bcf49] | 473 | void kobject_put(kobject_t *kobj)
|
---|
| 474 | {
|
---|
| 475 | if (atomic_postdec(&kobj->refcnt) == 1) {
|
---|
| 476 | kobj->ops->destroy(kobj->raw);
|
---|
[e394c196] | 477 | kobject_free(kobj);
|
---|
[48bcf49] | 478 | }
|
---|
| 479 | }
|
---|
| 480 |
|
---|
[7e3826d9] | 481 | /** @}
|
---|
| 482 | */
|
---|