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32 * Mach Operating System
33 * Copyright (c) 1991,1990,1989,1988,1987 Carnegie Mellon University
34 * All Rights Reserved.
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37 * documentation is hereby granted, provided that both the copyright
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43 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
44 * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
46 * Carnegie Mellon requests users of this software to return to
48 * Software Distribution Coordinator or Software.Distribution@CS.CMU.EDU
49 * School of Computer Science
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53 * any improvements or extensions that they make and grant Carnegie Mellon
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59 * File: mach/memory_object.defs
62 * Basic Mach external memory management interface declaration.
68 #endif /* KERNEL_USER */
71 #endif /* KERNEL_SERVER */
74 #include <mach/std_types.defs>
75 #include <mach/mach_types.defs>
82 * Initialize the specified memory object, providing
83 * a memory object control reference on which to make
84 * cache control calls.
85 * [To allow the mapping of this object to be used, the
86 * memory manager must call memory_object_set_attributes,
87 * specifying the "ready" parameter as TRUE. To reject
88 * all mappings of this object, the memory manager may
89 * use memory_object_destroy.]
91 routine memory_object_init(
92 memory_object : memory_object_t;
93 memory_control : memory_object_control_t;
94 memory_object_page_size : memory_object_cluster_size_t);
98 * Indicates that the specified memory object is no longer
99 * mapped (or cached -- see memory_object_set_attributes),
100 * and that further mappings will cause another memory_object_init
103 * [The kernel will release its reference on the memory object
104 * after this call returns. The memory object control associated
105 * with the memory object is no longer usable - the pager should
106 * drop the control reference granted to it by memory_object_init.]
108 routine memory_object_terminate(
109 memory_object : memory_object_t);
112 * Request data from this memory object. At least
113 * the specified data should be returned with at
114 * least the specified access permitted.
116 * [Response should be upl commit over the specified range.]
118 routine memory_object_data_request(
119 memory_object : memory_object_t;
120 offset : memory_object_offset_t;
121 length : memory_object_cluster_size_t;
122 desired_access : vm_prot_t;
123 fault_info : memory_object_fault_info_t);
126 * Return data to manager. This call is used in place of data_write
127 * for objects initialized by object_ready instead of set_attributes.
128 * This call indicates whether the returned data is dirty and whether
129 * the kernel kept a copy. Precious data remains precious if the
130 * kernel keeps a copy. The indication that the kernel kept a copy
131 * is only a hint if the data is not precious; the cleaned copy may
132 * be discarded without further notifying the manager.
134 * [response should be a upl_commit over the range specified]
136 routine memory_object_data_return(
137 memory_object : memory_object_t;
138 offset : memory_object_offset_t;
139 size : memory_object_cluster_size_t;
140 out resid_offset : memory_object_offset_t;
143 kernel_copy : boolean_t;
147 * Provide initial data contents for this region of
148 * the memory object. If data has already been written
149 * to the object, this value must be discarded; otherwise,
150 * this call acts identically to memory_object_data_return.
152 * [response should be UPL commit over the specified range.]
154 routine memory_object_data_initialize(
155 memory_object : memory_object_t;
156 offset : memory_object_offset_t;
157 size : memory_object_cluster_size_t);
160 * Request that the specified portion of this
161 * memory object be unlocked to allow the specified
162 * forms of access; the kernel already has the data.
164 * [Response should be memory_object_lock_request when
165 * the operation is fully complete.]
167 routine memory_object_data_unlock(
168 memory_object : memory_object_t;
169 offset : memory_object_offset_t;
170 size : memory_object_size_t;
171 desired_access : vm_prot_t);
175 * Request that the specified portion of this
176 * memory object be synchronized with its backing
177 * store according to the supplied flags.
179 * [Response should be memory_object_synchronize_completed when
180 * the operation is fully complete.]
182 routine memory_object_synchronize(
183 memory_object : memory_object_t;
184 offset : memory_object_offset_t;
185 size : memory_object_size_t;
186 sync_flags : vm_sync_t );
189 * Notify the pager that the specified memory object
190 * has no other (mapped) references besides the named
191 * reference held by the pager itself.
193 * [Response should be a release of the named reference when
194 * the pager deems that appropriate.]
196 routine memory_object_map(
197 memory_object : memory_object_t;
199 routine memory_object_last_unmap(
200 memory_object : memory_object_t);
202 routine memory_object_data_reclaim(
203 memory_object : memory_object_t;
204 reclaim_backing_store : boolean_t);
206 /* vim: set ft=c : */