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vmstate, memory: decouple vmstate from memory API
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1/*
2 * Physical memory management API
3 *
4 * Copyright 2011 Red Hat, Inc. and/or its affiliates
5 *
6 * Authors:
7 * Avi Kivity <avi@redhat.com>
8 *
9 * This work is licensed under the terms of the GNU GPL, version 2. See
10 * the COPYING file in the top-level directory.
11 *
12 */
13
14#ifndef MEMORY_H
15#define MEMORY_H
16
17#ifndef CONFIG_USER_ONLY
18
19#include <stdint.h>
20#include <stdbool.h>
21#include "qemu-common.h"
22#include "cpu-common.h"
23#include "targphys.h"
24#include "qemu-queue.h"
658b2224 25#include "iorange.h"
627a0e90 26#include "ioport.h"
08dafab4 27#include "int128.h"
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28
29typedef struct MemoryRegionOps MemoryRegionOps;
30typedef struct MemoryRegion MemoryRegion;
627a0e90 31typedef struct MemoryRegionPortio MemoryRegionPortio;
74901c3b 32typedef struct MemoryRegionMmio MemoryRegionMmio;
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33
34/* Must match *_DIRTY_FLAGS in cpu-all.h. To be replaced with dynamic
35 * registration.
36 */
37#define DIRTY_MEMORY_VGA 0
38#define DIRTY_MEMORY_CODE 1
39#define DIRTY_MEMORY_MIGRATION 3
40
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41struct MemoryRegionMmio {
42 CPUReadMemoryFunc *read[3];
43 CPUWriteMemoryFunc *write[3];
44};
45
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46/*
47 * Memory region callbacks
48 */
49struct MemoryRegionOps {
50 /* Read from the memory region. @addr is relative to @mr; @size is
51 * in bytes. */
52 uint64_t (*read)(void *opaque,
53 target_phys_addr_t addr,
54 unsigned size);
55 /* Write to the memory region. @addr is relative to @mr; @size is
56 * in bytes. */
57 void (*write)(void *opaque,
58 target_phys_addr_t addr,
59 uint64_t data,
60 unsigned size);
61
62 enum device_endian endianness;
63 /* Guest-visible constraints: */
64 struct {
65 /* If nonzero, specify bounds on access sizes beyond which a machine
66 * check is thrown.
67 */
68 unsigned min_access_size;
69 unsigned max_access_size;
70 /* If true, unaligned accesses are supported. Otherwise unaligned
71 * accesses throw machine checks.
72 */
73 bool unaligned;
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74 /*
75 * If present, and returns #false, the transaction is not accepted
76 * by the device (and results in machine dependent behaviour such
77 * as a machine check exception).
78 */
79 bool (*accepts)(void *opaque, target_phys_addr_t addr,
80 unsigned size, bool is_write);
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81 } valid;
82 /* Internal implementation constraints: */
83 struct {
84 /* If nonzero, specifies the minimum size implemented. Smaller sizes
85 * will be rounded upwards and a partial result will be returned.
86 */
87 unsigned min_access_size;
88 /* If nonzero, specifies the maximum size implemented. Larger sizes
89 * will be done as a series of accesses with smaller sizes.
90 */
91 unsigned max_access_size;
92 /* If true, unaligned accesses are supported. Otherwise all accesses
93 * are converted to (possibly multiple) naturally aligned accesses.
94 */
95 bool unaligned;
96 } impl;
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97
98 /* If .read and .write are not present, old_portio may be used for
99 * backwards compatibility with old portio registration
100 */
101 const MemoryRegionPortio *old_portio;
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102 /* If .read and .write are not present, old_mmio may be used for
103 * backwards compatibility with old mmio registration
104 */
105 const MemoryRegionMmio old_mmio;
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106};
107
108typedef struct CoalescedMemoryRange CoalescedMemoryRange;
3e9d69e7 109typedef struct MemoryRegionIoeventfd MemoryRegionIoeventfd;
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110
111struct MemoryRegion {
112 /* All fields are private - violators will be prosecuted */
113 const MemoryRegionOps *ops;
114 void *opaque;
115 MemoryRegion *parent;
08dafab4 116 Int128 size;
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117 target_phys_addr_t addr;
118 target_phys_addr_t offset;
16ef61c9 119 bool backend_registered;
545e92e0 120 void (*destructor)(MemoryRegion *mr);
093bc2cd 121 ram_addr_t ram_addr;
658b2224 122 IORange iorange;
14a3c10a 123 bool terminates;
d0a9b5bc 124 bool readable;
8ea9252a 125 bool ram;
fb1cd6f9 126 bool readonly; /* For RAM regions */
6bba19ba 127 bool enabled;
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128 MemoryRegion *alias;
129 target_phys_addr_t alias_offset;
130 unsigned priority;
131 bool may_overlap;
132 QTAILQ_HEAD(subregions, MemoryRegion) subregions;
133 QTAILQ_ENTRY(MemoryRegion) subregions_link;
134 QTAILQ_HEAD(coalesced_ranges, CoalescedMemoryRange) coalesced;
135 const char *name;
5a583347 136 uint8_t dirty_log_mask;
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137 unsigned ioeventfd_nb;
138 MemoryRegionIoeventfd *ioeventfds;
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139};
140
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141struct MemoryRegionPortio {
142 uint32_t offset;
143 uint32_t len;
144 unsigned size;
145 IOPortReadFunc *read;
146 IOPortWriteFunc *write;
147};
148
2dd30228 149#define PORTIO_END_OF_LIST() { }
627a0e90 150
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151typedef struct MemoryRegionSection MemoryRegionSection;
152
153/**
154 * MemoryRegionSection: describes a fragment of a #MemoryRegion
155 *
156 * @mr: the region, or %NULL if empty
7664e80c 157 * @address_space: the address space the region is mapped in
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158 * @offset_within_region: the beginning of the section, relative to @mr's start
159 * @size: the size of the section; will not exceed @mr's boundaries
160 * @offset_within_address_space: the address of the first byte of the section
161 * relative to the region's address space
162 */
163struct MemoryRegionSection {
164 MemoryRegion *mr;
7664e80c 165 MemoryRegion *address_space;
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166 target_phys_addr_t offset_within_region;
167 uint64_t size;
168 target_phys_addr_t offset_within_address_space;
169};
170
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171typedef struct MemoryListener MemoryListener;
172
173/**
174 * MemoryListener: callbacks structure for updates to the physical memory map
175 *
176 * Allows a component to adjust to changes in the guest-visible memory map.
177 * Use with memory_listener_register() and memory_listener_unregister().
178 */
179struct MemoryListener {
180 void (*region_add)(MemoryListener *listener, MemoryRegionSection *section);
181 void (*region_del)(MemoryListener *listener, MemoryRegionSection *section);
182 void (*log_start)(MemoryListener *listener, MemoryRegionSection *section);
183 void (*log_stop)(MemoryListener *listener, MemoryRegionSection *section);
184 void (*log_sync)(MemoryListener *listener, MemoryRegionSection *section);
185 void (*log_global_start)(MemoryListener *listener);
186 void (*log_global_stop)(MemoryListener *listener);
187 QLIST_ENTRY(MemoryListener) link;
188};
189
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190/**
191 * memory_region_init: Initialize a memory region
192 *
69ddaf66 193 * The region typically acts as a container for other memory regions. Use
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194 * memory_region_add_subregion() to add subregions.
195 *
196 * @mr: the #MemoryRegion to be initialized
197 * @name: used for debugging; not visible to the user or ABI
198 * @size: size of the region; any subregions beyond this size will be clipped
199 */
200void memory_region_init(MemoryRegion *mr,
201 const char *name,
202 uint64_t size);
203/**
204 * memory_region_init_io: Initialize an I/O memory region.
205 *
69ddaf66 206 * Accesses into the region will cause the callbacks in @ops to be called.
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207 * if @size is nonzero, subregions will be clipped to @size.
208 *
209 * @mr: the #MemoryRegion to be initialized.
210 * @ops: a structure containing read and write callbacks to be used when
211 * I/O is performed on the region.
212 * @opaque: passed to to the read and write callbacks of the @ops structure.
213 * @name: used for debugging; not visible to the user or ABI
214 * @size: size of the region.
215 */
216void memory_region_init_io(MemoryRegion *mr,
217 const MemoryRegionOps *ops,
218 void *opaque,
219 const char *name,
220 uint64_t size);
221
222/**
223 * memory_region_init_ram: Initialize RAM memory region. Accesses into the
69ddaf66 224 * region will modify memory directly.
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225 *
226 * @mr: the #MemoryRegion to be initialized.
c5705a77 227 * @name: the name of the region.
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228 * @size: size of the region.
229 */
230void memory_region_init_ram(MemoryRegion *mr,
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231 const char *name,
232 uint64_t size);
233
234/**
235 * memory_region_init_ram: Initialize RAM memory region from a user-provided.
69ddaf66 236 * pointer. Accesses into the region will modify
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237 * memory directly.
238 *
239 * @mr: the #MemoryRegion to be initialized.
c5705a77 240 * @name: the name of the region.
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241 * @size: size of the region.
242 * @ptr: memory to be mapped; must contain at least @size bytes.
243 */
244void memory_region_init_ram_ptr(MemoryRegion *mr,
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245 const char *name,
246 uint64_t size,
247 void *ptr);
248
249/**
250 * memory_region_init_alias: Initialize a memory region that aliases all or a
251 * part of another memory region.
252 *
253 * @mr: the #MemoryRegion to be initialized.
254 * @name: used for debugging; not visible to the user or ABI
255 * @orig: the region to be referenced; @mr will be equivalent to
256 * @orig between @offset and @offset + @size - 1.
257 * @offset: start of the section in @orig to be referenced.
258 * @size: size of the region.
259 */
260void memory_region_init_alias(MemoryRegion *mr,
261 const char *name,
262 MemoryRegion *orig,
263 target_phys_addr_t offset,
264 uint64_t size);
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265
266/**
267 * memory_region_init_rom_device: Initialize a ROM memory region. Writes are
268 * handled via callbacks.
269 *
270 * @mr: the #MemoryRegion to be initialized.
271 * @ops: callbacks for write access handling.
c5705a77 272 * @name: the name of the region.
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273 * @size: size of the region.
274 */
275void memory_region_init_rom_device(MemoryRegion *mr,
276 const MemoryRegionOps *ops,
75f5941c 277 void *opaque,
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278 const char *name,
279 uint64_t size);
280
093bc2cd 281/**
69ddaf66 282 * memory_region_destroy: Destroy a memory region and reclaim all resources.
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283 *
284 * @mr: the region to be destroyed. May not currently be a subregion
285 * (see memory_region_add_subregion()) or referenced in an alias
286 * (see memory_region_init_alias()).
287 */
288void memory_region_destroy(MemoryRegion *mr);
289
290/**
291 * memory_region_size: get a memory region's size.
292 *
293 * @mr: the memory region being queried.
294 */
295uint64_t memory_region_size(MemoryRegion *mr);
296
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297/**
298 * memory_region_is_ram: check whether a memory region is random access
299 *
300 * Returns %true is a memory region is random access.
301 *
302 * @mr: the memory region being queried
303 */
304bool memory_region_is_ram(MemoryRegion *mr);
305
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306/**
307 * memory_region_name: get a memory region's name
308 *
309 * Returns the string that was used to initialize the memory region.
310 *
311 * @mr: the memory region being queried
312 */
313const char *memory_region_name(MemoryRegion *mr);
314
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315/**
316 * memory_region_is_logging: return whether a memory region is logging writes
317 *
318 * Returns %true if the memory region is logging writes
319 *
320 * @mr: the memory region being queried
321 */
322bool memory_region_is_logging(MemoryRegion *mr);
323
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324/**
325 * memory_region_is_rom: check whether a memory region is ROM
326 *
327 * Returns %true is a memory region is read-only memory.
328 *
329 * @mr: the memory region being queried
330 */
331bool memory_region_is_rom(MemoryRegion *mr);
332
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333/**
334 * memory_region_get_ram_ptr: Get a pointer into a RAM memory region.
335 *
336 * Returns a host pointer to a RAM memory region (created with
337 * memory_region_init_ram() or memory_region_init_ram_ptr()). Use with
338 * care.
339 *
340 * @mr: the memory region being queried.
341 */
342void *memory_region_get_ram_ptr(MemoryRegion *mr);
343
344/**
345 * memory_region_set_offset: Sets an offset to be added to MemoryRegionOps
346 * callbacks.
347 *
348 * This function is deprecated and should not be used in new code.
349 */
350void memory_region_set_offset(MemoryRegion *mr, target_phys_addr_t offset);
351
352/**
353 * memory_region_set_log: Turn dirty logging on or off for a region.
354 *
355 * Turns dirty logging on or off for a specified client (display, migration).
356 * Only meaningful for RAM regions.
357 *
358 * @mr: the memory region being updated.
359 * @log: whether dirty logging is to be enabled or disabled.
360 * @client: the user of the logging information; %DIRTY_MEMORY_MIGRATION or
361 * %DIRTY_MEMORY_VGA.
362 */
363void memory_region_set_log(MemoryRegion *mr, bool log, unsigned client);
364
365/**
366 * memory_region_get_dirty: Check whether a page is dirty for a specified
367 * client.
368 *
369 * Checks whether a page has been written to since the last
370 * call to memory_region_reset_dirty() with the same @client. Dirty logging
371 * must be enabled.
372 *
373 * @mr: the memory region being queried.
374 * @addr: the address (relative to the start of the region) being queried.
375 * @client: the user of the logging information; %DIRTY_MEMORY_MIGRATION or
376 * %DIRTY_MEMORY_VGA.
377 */
378bool memory_region_get_dirty(MemoryRegion *mr, target_phys_addr_t addr,
379 unsigned client);
380
381/**
382 * memory_region_set_dirty: Mark a page as dirty in a memory region.
383 *
384 * Marks a page as dirty, after it has been dirtied outside guest code.
385 *
386 * @mr: the memory region being queried.
387 * @addr: the address (relative to the start of the region) being dirtied.
388 */
389void memory_region_set_dirty(MemoryRegion *mr, target_phys_addr_t addr);
390
391/**
392 * memory_region_sync_dirty_bitmap: Synchronize a region's dirty bitmap with
393 * any external TLBs (e.g. kvm)
394 *
395 * Flushes dirty information from accelerators such as kvm and vhost-net
396 * and makes it available to users of the memory API.
397 *
398 * @mr: the region being flushed.
399 */
400void memory_region_sync_dirty_bitmap(MemoryRegion *mr);
401
402/**
403 * memory_region_reset_dirty: Mark a range of pages as clean, for a specified
404 * client.
405 *
406 * Marks a range of pages as no longer dirty.
407 *
408 * @mr: the region being updated.
409 * @addr: the start of the subrange being cleaned.
410 * @size: the size of the subrange being cleaned.
411 * @client: the user of the logging information; %DIRTY_MEMORY_MIGRATION or
412 * %DIRTY_MEMORY_VGA.
413 */
414void memory_region_reset_dirty(MemoryRegion *mr, target_phys_addr_t addr,
415 target_phys_addr_t size, unsigned client);
416
417/**
418 * memory_region_set_readonly: Turn a memory region read-only (or read-write)
419 *
420 * Allows a memory region to be marked as read-only (turning it into a ROM).
421 * only useful on RAM regions.
422 *
423 * @mr: the region being updated.
424 * @readonly: whether rhe region is to be ROM or RAM.
425 */
426void memory_region_set_readonly(MemoryRegion *mr, bool readonly);
427
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428/**
429 * memory_region_rom_device_set_readable: enable/disable ROM readability
430 *
431 * Allows a ROM device (initialized with memory_region_init_rom_device() to
432 * to be marked as readable (default) or not readable. When it is readable,
433 * the device is mapped to guest memory. When not readable, reads are
434 * forwarded to the #MemoryRegion.read function.
435 *
436 * @mr: the memory region to be updated
437 * @readable: whether reads are satisified directly (%true) or via callbacks
438 * (%false)
439 */
440void memory_region_rom_device_set_readable(MemoryRegion *mr, bool readable);
441
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442/**
443 * memory_region_set_coalescing: Enable memory coalescing for the region.
444 *
445 * Enabled writes to a region to be queued for later processing. MMIO ->write
446 * callbacks may be delayed until a non-coalesced MMIO is issued.
447 * Only useful for IO regions. Roughly similar to write-combining hardware.
448 *
449 * @mr: the memory region to be write coalesced
450 */
451void memory_region_set_coalescing(MemoryRegion *mr);
452
453/**
454 * memory_region_add_coalescing: Enable memory coalescing for a sub-range of
455 * a region.
456 *
457 * Like memory_region_set_coalescing(), but works on a sub-range of a region.
458 * Multiple calls can be issued coalesced disjoint ranges.
459 *
460 * @mr: the memory region to be updated.
461 * @offset: the start of the range within the region to be coalesced.
462 * @size: the size of the subrange to be coalesced.
463 */
464void memory_region_add_coalescing(MemoryRegion *mr,
465 target_phys_addr_t offset,
466 uint64_t size);
467
468/**
469 * memory_region_clear_coalescing: Disable MMIO coalescing for the region.
470 *
471 * Disables any coalescing caused by memory_region_set_coalescing() or
472 * memory_region_add_coalescing(). Roughly equivalent to uncacheble memory
473 * hardware.
474 *
475 * @mr: the memory region to be updated.
476 */
477void memory_region_clear_coalescing(MemoryRegion *mr);
478
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479/**
480 * memory_region_add_eventfd: Request an eventfd to be triggered when a word
481 * is written to a location.
482 *
483 * Marks a word in an IO region (initialized with memory_region_init_io())
484 * as a trigger for an eventfd event. The I/O callback will not be called.
69ddaf66 485 * The caller must be prepared to handle failure (that is, take the required
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486 * action if the callback _is_ called).
487 *
488 * @mr: the memory region being updated.
489 * @addr: the address within @mr that is to be monitored
490 * @size: the size of the access to trigger the eventfd
491 * @match_data: whether to match against @data, instead of just @addr
492 * @data: the data to match against the guest write
493 * @fd: the eventfd to be triggered when @addr, @size, and @data all match.
494 **/
495void memory_region_add_eventfd(MemoryRegion *mr,
496 target_phys_addr_t addr,
497 unsigned size,
498 bool match_data,
499 uint64_t data,
500 int fd);
501
502/**
69ddaf66 503 * memory_region_del_eventfd: Cancel an eventfd.
3e9d69e7 504 *
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505 * Cancels an eventfd trigger requested by a previous
506 * memory_region_add_eventfd() call.
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507 *
508 * @mr: the memory region being updated.
509 * @addr: the address within @mr that is to be monitored
510 * @size: the size of the access to trigger the eventfd
511 * @match_data: whether to match against @data, instead of just @addr
512 * @data: the data to match against the guest write
513 * @fd: the eventfd to be triggered when @addr, @size, and @data all match.
514 */
515void memory_region_del_eventfd(MemoryRegion *mr,
516 target_phys_addr_t addr,
517 unsigned size,
518 bool match_data,
519 uint64_t data,
520 int fd);
093bc2cd 521/**
69ddaf66 522 * memory_region_add_subregion: Add a subregion to a container.
093bc2cd 523 *
69ddaf66 524 * Adds a subregion at @offset. The subregion may not overlap with other
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525 * subregions (except for those explicitly marked as overlapping). A region
526 * may only be added once as a subregion (unless removed with
527 * memory_region_del_subregion()); use memory_region_init_alias() if you
528 * want a region to be a subregion in multiple locations.
529 *
530 * @mr: the region to contain the new subregion; must be a container
531 * initialized with memory_region_init().
532 * @offset: the offset relative to @mr where @subregion is added.
533 * @subregion: the subregion to be added.
534 */
535void memory_region_add_subregion(MemoryRegion *mr,
536 target_phys_addr_t offset,
537 MemoryRegion *subregion);
538/**
69ddaf66 539 * memory_region_add_subregion: Add a subregion to a container, with overlap.
093bc2cd 540 *
69ddaf66 541 * Adds a subregion at @offset. The subregion may overlap with other
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542 * subregions. Conflicts are resolved by having a higher @priority hide a
543 * lower @priority. Subregions without priority are taken as @priority 0.
544 * A region may only be added once as a subregion (unless removed with
545 * memory_region_del_subregion()); use memory_region_init_alias() if you
546 * want a region to be a subregion in multiple locations.
547 *
548 * @mr: the region to contain the new subregion; must be a container
549 * initialized with memory_region_init().
550 * @offset: the offset relative to @mr where @subregion is added.
551 * @subregion: the subregion to be added.
552 * @priority: used for resolving overlaps; highest priority wins.
553 */
554void memory_region_add_subregion_overlap(MemoryRegion *mr,
555 target_phys_addr_t offset,
556 MemoryRegion *subregion,
557 unsigned priority);
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558
559/**
560 * memory_region_get_ram_addr: Get the ram address associated with a memory
561 * region
562 *
563 * DO NOT USE THIS FUCNTION. This is a temporary workaround while the Xen
564 * code is being reworked.
565 */
566ram_addr_t memory_region_get_ram_addr(MemoryRegion *mr);
567
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568/**
569 * memory_region_del_subregion: Remove a subregion.
570 *
571 * Removes a subregion from its container.
572 *
573 * @mr: the container to be updated.
574 * @subregion: the region being removed; must be a current subregion of @mr.
575 */
576void memory_region_del_subregion(MemoryRegion *mr,
577 MemoryRegion *subregion);
578
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579/*
580 * memory_region_set_enabled: dynamically enable or disable a region
581 *
582 * Enables or disables a memory region. A disabled memory region
583 * ignores all accesses to itself and its subregions. It does not
584 * obscure sibling subregions with lower priority - it simply behaves as
585 * if it was removed from the hierarchy.
586 *
587 * Regions default to being enabled.
588 *
589 * @mr: the region to be updated
590 * @enabled: whether to enable or disable the region
591 */
592void memory_region_set_enabled(MemoryRegion *mr, bool enabled);
593
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594/*
595 * memory_region_set_address: dynamically update the address of a region
596 *
597 * Dynamically updates the address of a region, relative to its parent.
598 * May be used on regions are currently part of a memory hierarchy.
599 *
600 * @mr: the region to be updated
601 * @addr: new address, relative to parent region
602 */
603void memory_region_set_address(MemoryRegion *mr, target_phys_addr_t addr);
604
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605/*
606 * memory_region_set_alias_offset: dynamically update a memory alias's offset
607 *
608 * Dynamically updates the offset into the target region that an alias points
609 * to, as if the fourth argument to memory_region_init_alias() has changed.
610 *
611 * @mr: the #MemoryRegion to be updated; should be an alias.
612 * @offset: the new offset into the target memory region
613 */
614void memory_region_set_alias_offset(MemoryRegion *mr,
615 target_phys_addr_t offset);
616
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617/**
618 * memory_region_find: locate a MemoryRegion in an address space
619 *
620 * Locates the first #MemoryRegion within an address space given by
621 * @address_space that overlaps the range given by @addr and @size.
622 *
623 * Returns a #MemoryRegionSection that describes a contiguous overlap.
624 * It will have the following characteristics:
625 * .@offset_within_address_space >= @addr
626 * .@offset_within_address_space + .@size <= @addr + @size
627 * .@size = 0 iff no overlap was found
628 * .@mr is non-%NULL iff an overlap was found
629 *
630 * @address_space: a top-level (i.e. parentless) region that contains
631 * the region to be found
632 * @addr: start of the area within @address_space to be searched
633 * @size: size of the area to be searched
634 */
635MemoryRegionSection memory_region_find(MemoryRegion *address_space,
636 target_phys_addr_t addr, uint64_t size);
637
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638
639/**
640 * memory_global_sync_dirty_bitmap: synchronize the dirty log for all memory
641 *
642 * Synchronizes the dirty page log for an entire address space.
643 * @address_space: a top-level (i.e. parentless) region that contains the
644 * memory being synchronized
645 */
646void memory_global_sync_dirty_bitmap(MemoryRegion *address_space);
647
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648/**
649 * memory_region_transaction_begin: Start a transaction.
650 *
651 * During a transaction, changes will be accumulated and made visible
652 * only when the transaction ends (is commited).
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653 */
654void memory_region_transaction_begin(void);
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655
656/**
657 * memory_region_transaction_commit: Commit a transaction and make changes
658 * visible to the guest.
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659 */
660void memory_region_transaction_commit(void);
661
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662/**
663 * memory_listener_register: register callbacks to be called when memory
664 * sections are mapped or unmapped into an address
665 * space
666 *
667 * @listener: an object containing the callbacks to be called
668 */
669void memory_listener_register(MemoryListener *listener);
670
671/**
672 * memory_listener_unregister: undo the effect of memory_listener_register()
673 *
674 * @listener: an object containing the callbacks to be removed
675 */
676void memory_listener_unregister(MemoryListener *listener);
677
678/**
679 * memory_global_dirty_log_start: begin dirty logging for all regions
680 */
681void memory_global_dirty_log_start(void);
682
683/**
684 * memory_global_dirty_log_stop: begin dirty logging for all regions
685 */
686void memory_global_dirty_log_stop(void);
687
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688void mtree_info(fprintf_function mon_printf, void *f);
689
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690#endif
691
692#endif