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memory: remove assertion on memory_region_destroy
[mirror_qemu.git] / memory.c
CommitLineData
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1/*
2 * Physical memory management
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 *
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PB
12 * Contributions after 2012-01-13 are licensed under the terms of the
13 * GNU GPL, version 2 or (at your option) any later version.
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14 */
15
022c62cb
PB
16#include "exec/memory.h"
17#include "exec/address-spaces.h"
18#include "exec/ioport.h"
409ddd01 19#include "qapi/visitor.h"
1de7afc9 20#include "qemu/bitops.h"
2c9b15ca 21#include "qom/object.h"
55d5d048 22#include "trace.h"
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23#include <assert.h>
24
022c62cb 25#include "exec/memory-internal.h"
220c3ebd 26#include "exec/ram_addr.h"
e1c57ab8 27#include "sysemu/sysemu.h"
67d95c15 28
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PB
29//#define DEBUG_UNASSIGNED
30
22bde714
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31static unsigned memory_region_transaction_depth;
32static bool memory_region_update_pending;
4dc56152 33static bool ioeventfd_update_pending;
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34static bool global_dirty_log = false;
35
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PB
36/* flat_view_mutex is taken around reading as->current_map; the critical
37 * section is extremely short, so I'm using a single mutex for every AS.
38 * We could also RCU for the read-side.
39 *
40 * The BQL is taken around transaction commits, hence both locks are taken
41 * while writing to as->current_map (with the BQL taken outside).
42 */
43static QemuMutex flat_view_mutex;
44
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45static QTAILQ_HEAD(memory_listeners, MemoryListener) memory_listeners
46 = QTAILQ_HEAD_INITIALIZER(memory_listeners);
4ef4db86 47
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48static QTAILQ_HEAD(, AddressSpace) address_spaces
49 = QTAILQ_HEAD_INITIALIZER(address_spaces);
50
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PB
51static void memory_init(void)
52{
53 qemu_mutex_init(&flat_view_mutex);
54}
55
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56typedef struct AddrRange AddrRange;
57
8417cebf 58/*
c9cdaa3a 59 * Note that signed integers are needed for negative offsetting in aliases
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60 * (large MemoryRegion::alias_offset).
61 */
093bc2cd 62struct AddrRange {
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63 Int128 start;
64 Int128 size;
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65};
66
08dafab4 67static AddrRange addrrange_make(Int128 start, Int128 size)
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68{
69 return (AddrRange) { start, size };
70}
71
72static bool addrrange_equal(AddrRange r1, AddrRange r2)
73{
08dafab4 74 return int128_eq(r1.start, r2.start) && int128_eq(r1.size, r2.size);
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75}
76
08dafab4 77static Int128 addrrange_end(AddrRange r)
093bc2cd 78{
08dafab4 79 return int128_add(r.start, r.size);
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80}
81
08dafab4 82static AddrRange addrrange_shift(AddrRange range, Int128 delta)
093bc2cd 83{
08dafab4 84 int128_addto(&range.start, delta);
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85 return range;
86}
87
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88static bool addrrange_contains(AddrRange range, Int128 addr)
89{
90 return int128_ge(addr, range.start)
91 && int128_lt(addr, addrrange_end(range));
92}
93
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94static bool addrrange_intersects(AddrRange r1, AddrRange r2)
95{
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96 return addrrange_contains(r1, r2.start)
97 || addrrange_contains(r2, r1.start);
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98}
99
100static AddrRange addrrange_intersection(AddrRange r1, AddrRange r2)
101{
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102 Int128 start = int128_max(r1.start, r2.start);
103 Int128 end = int128_min(addrrange_end(r1), addrrange_end(r2));
104 return addrrange_make(start, int128_sub(end, start));
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105}
106
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107enum ListenerDirection { Forward, Reverse };
108
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109static bool memory_listener_match(MemoryListener *listener,
110 MemoryRegionSection *section)
111{
112 return !listener->address_space_filter
113 || listener->address_space_filter == section->address_space;
114}
115
116#define MEMORY_LISTENER_CALL_GLOBAL(_callback, _direction, _args...) \
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117 do { \
118 MemoryListener *_listener; \
119 \
120 switch (_direction) { \
121 case Forward: \
122 QTAILQ_FOREACH(_listener, &memory_listeners, link) { \
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123 if (_listener->_callback) { \
124 _listener->_callback(_listener, ##_args); \
125 } \
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126 } \
127 break; \
128 case Reverse: \
129 QTAILQ_FOREACH_REVERSE(_listener, &memory_listeners, \
130 memory_listeners, link) { \
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131 if (_listener->_callback) { \
132 _listener->_callback(_listener, ##_args); \
133 } \
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134 } \
135 break; \
136 default: \
137 abort(); \
138 } \
139 } while (0)
140
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141#define MEMORY_LISTENER_CALL(_callback, _direction, _section, _args...) \
142 do { \
143 MemoryListener *_listener; \
144 \
145 switch (_direction) { \
146 case Forward: \
147 QTAILQ_FOREACH(_listener, &memory_listeners, link) { \
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148 if (_listener->_callback \
149 && memory_listener_match(_listener, _section)) { \
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150 _listener->_callback(_listener, _section, ##_args); \
151 } \
152 } \
153 break; \
154 case Reverse: \
155 QTAILQ_FOREACH_REVERSE(_listener, &memory_listeners, \
156 memory_listeners, link) { \
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157 if (_listener->_callback \
158 && memory_listener_match(_listener, _section)) { \
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159 _listener->_callback(_listener, _section, ##_args); \
160 } \
161 } \
162 break; \
163 default: \
164 abort(); \
165 } \
166 } while (0)
167
dfde4e6e 168/* No need to ref/unref .mr, the FlatRange keeps it alive. */
0e0d36b4 169#define MEMORY_LISTENER_UPDATE_REGION(fr, as, dir, callback) \
7376e582 170 MEMORY_LISTENER_CALL(callback, dir, (&(MemoryRegionSection) { \
0e0d36b4 171 .mr = (fr)->mr, \
f6790af6 172 .address_space = (as), \
0e0d36b4 173 .offset_within_region = (fr)->offset_in_region, \
052e87b0 174 .size = (fr)->addr.size, \
0e0d36b4 175 .offset_within_address_space = int128_get64((fr)->addr.start), \
7a8499e8 176 .readonly = (fr)->readonly, \
7376e582 177 }))
0e0d36b4 178
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179struct CoalescedMemoryRange {
180 AddrRange addr;
181 QTAILQ_ENTRY(CoalescedMemoryRange) link;
182};
183
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184struct MemoryRegionIoeventfd {
185 AddrRange addr;
186 bool match_data;
187 uint64_t data;
753d5e14 188 EventNotifier *e;
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189};
190
191static bool memory_region_ioeventfd_before(MemoryRegionIoeventfd a,
192 MemoryRegionIoeventfd b)
193{
08dafab4 194 if (int128_lt(a.addr.start, b.addr.start)) {
3e9d69e7 195 return true;
08dafab4 196 } else if (int128_gt(a.addr.start, b.addr.start)) {
3e9d69e7 197 return false;
08dafab4 198 } else if (int128_lt(a.addr.size, b.addr.size)) {
3e9d69e7 199 return true;
08dafab4 200 } else if (int128_gt(a.addr.size, b.addr.size)) {
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201 return false;
202 } else if (a.match_data < b.match_data) {
203 return true;
204 } else if (a.match_data > b.match_data) {
205 return false;
206 } else if (a.match_data) {
207 if (a.data < b.data) {
208 return true;
209 } else if (a.data > b.data) {
210 return false;
211 }
212 }
753d5e14 213 if (a.e < b.e) {
3e9d69e7 214 return true;
753d5e14 215 } else if (a.e > b.e) {
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216 return false;
217 }
218 return false;
219}
220
221static bool memory_region_ioeventfd_equal(MemoryRegionIoeventfd a,
222 MemoryRegionIoeventfd b)
223{
224 return !memory_region_ioeventfd_before(a, b)
225 && !memory_region_ioeventfd_before(b, a);
226}
227
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228typedef struct FlatRange FlatRange;
229typedef struct FlatView FlatView;
230
231/* Range of memory in the global map. Addresses are absolute. */
232struct FlatRange {
233 MemoryRegion *mr;
a8170e5e 234 hwaddr offset_in_region;
093bc2cd 235 AddrRange addr;
5a583347 236 uint8_t dirty_log_mask;
5f9a5ea1 237 bool romd_mode;
fb1cd6f9 238 bool readonly;
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239};
240
241/* Flattened global view of current active memory hierarchy. Kept in sorted
242 * order.
243 */
244struct FlatView {
856d7245 245 unsigned ref;
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246 FlatRange *ranges;
247 unsigned nr;
248 unsigned nr_allocated;
249};
250
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251typedef struct AddressSpaceOps AddressSpaceOps;
252
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253#define FOR_EACH_FLAT_RANGE(var, view) \
254 for (var = (view)->ranges; var < (view)->ranges + (view)->nr; ++var)
255
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256static bool flatrange_equal(FlatRange *a, FlatRange *b)
257{
258 return a->mr == b->mr
259 && addrrange_equal(a->addr, b->addr)
d0a9b5bc 260 && a->offset_in_region == b->offset_in_region
5f9a5ea1 261 && a->romd_mode == b->romd_mode
fb1cd6f9 262 && a->readonly == b->readonly;
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263}
264
265static void flatview_init(FlatView *view)
266{
856d7245 267 view->ref = 1;
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268 view->ranges = NULL;
269 view->nr = 0;
270 view->nr_allocated = 0;
271}
272
273/* Insert a range into a given position. Caller is responsible for maintaining
274 * sorting order.
275 */
276static void flatview_insert(FlatView *view, unsigned pos, FlatRange *range)
277{
278 if (view->nr == view->nr_allocated) {
279 view->nr_allocated = MAX(2 * view->nr, 10);
7267c094 280 view->ranges = g_realloc(view->ranges,
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281 view->nr_allocated * sizeof(*view->ranges));
282 }
283 memmove(view->ranges + pos + 1, view->ranges + pos,
284 (view->nr - pos) * sizeof(FlatRange));
285 view->ranges[pos] = *range;
dfde4e6e 286 memory_region_ref(range->mr);
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287 ++view->nr;
288}
289
290static void flatview_destroy(FlatView *view)
291{
dfde4e6e
PB
292 int i;
293
294 for (i = 0; i < view->nr; i++) {
295 memory_region_unref(view->ranges[i].mr);
296 }
7267c094 297 g_free(view->ranges);
a9a0c06d 298 g_free(view);
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299}
300
856d7245
PB
301static void flatview_ref(FlatView *view)
302{
303 atomic_inc(&view->ref);
304}
305
306static void flatview_unref(FlatView *view)
307{
308 if (atomic_fetch_dec(&view->ref) == 1) {
309 flatview_destroy(view);
310 }
311}
312
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313static bool can_merge(FlatRange *r1, FlatRange *r2)
314{
08dafab4 315 return int128_eq(addrrange_end(r1->addr), r2->addr.start)
3d8e6bf9 316 && r1->mr == r2->mr
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317 && int128_eq(int128_add(int128_make64(r1->offset_in_region),
318 r1->addr.size),
319 int128_make64(r2->offset_in_region))
d0a9b5bc 320 && r1->dirty_log_mask == r2->dirty_log_mask
5f9a5ea1 321 && r1->romd_mode == r2->romd_mode
fb1cd6f9 322 && r1->readonly == r2->readonly;
3d8e6bf9
AK
323}
324
8508e024 325/* Attempt to simplify a view by merging adjacent ranges */
3d8e6bf9
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326static void flatview_simplify(FlatView *view)
327{
328 unsigned i, j;
329
330 i = 0;
331 while (i < view->nr) {
332 j = i + 1;
333 while (j < view->nr
334 && can_merge(&view->ranges[j-1], &view->ranges[j])) {
08dafab4 335 int128_addto(&view->ranges[i].addr.size, view->ranges[j].addr.size);
3d8e6bf9
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336 ++j;
337 }
338 ++i;
339 memmove(&view->ranges[i], &view->ranges[j],
340 (view->nr - j) * sizeof(view->ranges[j]));
341 view->nr -= j - i;
342 }
343}
344
e7342aa3
PB
345static bool memory_region_big_endian(MemoryRegion *mr)
346{
347#ifdef TARGET_WORDS_BIGENDIAN
348 return mr->ops->endianness != DEVICE_LITTLE_ENDIAN;
349#else
350 return mr->ops->endianness == DEVICE_BIG_ENDIAN;
351#endif
352}
353
e11ef3d1
PB
354static bool memory_region_wrong_endianness(MemoryRegion *mr)
355{
356#ifdef TARGET_WORDS_BIGENDIAN
357 return mr->ops->endianness == DEVICE_LITTLE_ENDIAN;
358#else
359 return mr->ops->endianness == DEVICE_BIG_ENDIAN;
360#endif
361}
362
363static void adjust_endianness(MemoryRegion *mr, uint64_t *data, unsigned size)
364{
365 if (memory_region_wrong_endianness(mr)) {
366 switch (size) {
367 case 1:
368 break;
369 case 2:
370 *data = bswap16(*data);
371 break;
372 case 4:
373 *data = bswap32(*data);
374 break;
375 case 8:
376 *data = bswap64(*data);
377 break;
378 default:
379 abort();
380 }
381 }
382}
383
547e9201 384static void memory_region_oldmmio_read_accessor(MemoryRegion *mr,
ce5d2f33
PB
385 hwaddr addr,
386 uint64_t *value,
387 unsigned size,
388 unsigned shift,
389 uint64_t mask)
390{
ce5d2f33
PB
391 uint64_t tmp;
392
393 tmp = mr->ops->old_mmio.read[ctz32(size)](mr->opaque, addr);
55d5d048 394 trace_memory_region_ops_read(mr, addr, tmp, size);
ce5d2f33
PB
395 *value |= (tmp & mask) << shift;
396}
397
547e9201 398static void memory_region_read_accessor(MemoryRegion *mr,
a8170e5e 399 hwaddr addr,
164a4dcd
AK
400 uint64_t *value,
401 unsigned size,
402 unsigned shift,
403 uint64_t mask)
404{
164a4dcd
AK
405 uint64_t tmp;
406
d410515e
JK
407 if (mr->flush_coalesced_mmio) {
408 qemu_flush_coalesced_mmio_buffer();
409 }
164a4dcd 410 tmp = mr->ops->read(mr->opaque, addr, size);
55d5d048 411 trace_memory_region_ops_read(mr, addr, tmp, size);
164a4dcd
AK
412 *value |= (tmp & mask) << shift;
413}
414
547e9201 415static void memory_region_oldmmio_write_accessor(MemoryRegion *mr,
ce5d2f33
PB
416 hwaddr addr,
417 uint64_t *value,
418 unsigned size,
419 unsigned shift,
420 uint64_t mask)
421{
ce5d2f33
PB
422 uint64_t tmp;
423
424 tmp = (*value >> shift) & mask;
55d5d048 425 trace_memory_region_ops_write(mr, addr, tmp, size);
ce5d2f33
PB
426 mr->ops->old_mmio.write[ctz32(size)](mr->opaque, addr, tmp);
427}
428
547e9201 429static void memory_region_write_accessor(MemoryRegion *mr,
a8170e5e 430 hwaddr addr,
164a4dcd
AK
431 uint64_t *value,
432 unsigned size,
433 unsigned shift,
434 uint64_t mask)
435{
164a4dcd
AK
436 uint64_t tmp;
437
d410515e
JK
438 if (mr->flush_coalesced_mmio) {
439 qemu_flush_coalesced_mmio_buffer();
440 }
164a4dcd 441 tmp = (*value >> shift) & mask;
55d5d048 442 trace_memory_region_ops_write(mr, addr, tmp, size);
164a4dcd
AK
443 mr->ops->write(mr->opaque, addr, tmp, size);
444}
445
a8170e5e 446static void access_with_adjusted_size(hwaddr addr,
164a4dcd
AK
447 uint64_t *value,
448 unsigned size,
449 unsigned access_size_min,
450 unsigned access_size_max,
547e9201 451 void (*access)(MemoryRegion *mr,
a8170e5e 452 hwaddr addr,
164a4dcd
AK
453 uint64_t *value,
454 unsigned size,
455 unsigned shift,
456 uint64_t mask),
547e9201 457 MemoryRegion *mr)
164a4dcd
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458{
459 uint64_t access_mask;
460 unsigned access_size;
461 unsigned i;
462
463 if (!access_size_min) {
464 access_size_min = 1;
465 }
466 if (!access_size_max) {
467 access_size_max = 4;
468 }
ce5d2f33
PB
469
470 /* FIXME: support unaligned access? */
164a4dcd
AK
471 access_size = MAX(MIN(size, access_size_max), access_size_min);
472 access_mask = -1ULL >> (64 - access_size * 8);
e7342aa3
PB
473 if (memory_region_big_endian(mr)) {
474 for (i = 0; i < size; i += access_size) {
475 access(mr, addr + i, value, access_size,
476 (size - access_size - i) * 8, access_mask);
477 }
478 } else {
479 for (i = 0; i < size; i += access_size) {
480 access(mr, addr + i, value, access_size, i * 8, access_mask);
481 }
164a4dcd
AK
482 }
483}
484
e2177955
AK
485static AddressSpace *memory_region_to_address_space(MemoryRegion *mr)
486{
0d673e36
AK
487 AddressSpace *as;
488
feca4ac1
PB
489 while (mr->container) {
490 mr = mr->container;
e2177955 491 }
0d673e36
AK
492 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
493 if (mr == as->root) {
494 return as;
495 }
e2177955 496 }
eed2bacf 497 return NULL;
e2177955
AK
498}
499
093bc2cd
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500/* Render a memory region into the global view. Ranges in @view obscure
501 * ranges in @mr.
502 */
503static void render_memory_region(FlatView *view,
504 MemoryRegion *mr,
08dafab4 505 Int128 base,
fb1cd6f9
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506 AddrRange clip,
507 bool readonly)
093bc2cd
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508{
509 MemoryRegion *subregion;
510 unsigned i;
a8170e5e 511 hwaddr offset_in_region;
08dafab4
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512 Int128 remain;
513 Int128 now;
093bc2cd
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514 FlatRange fr;
515 AddrRange tmp;
516
6bba19ba
AK
517 if (!mr->enabled) {
518 return;
519 }
520
08dafab4 521 int128_addto(&base, int128_make64(mr->addr));
fb1cd6f9 522 readonly |= mr->readonly;
093bc2cd
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523
524 tmp = addrrange_make(base, mr->size);
525
526 if (!addrrange_intersects(tmp, clip)) {
527 return;
528 }
529
530 clip = addrrange_intersection(tmp, clip);
531
532 if (mr->alias) {
08dafab4
AK
533 int128_subfrom(&base, int128_make64(mr->alias->addr));
534 int128_subfrom(&base, int128_make64(mr->alias_offset));
fb1cd6f9 535 render_memory_region(view, mr->alias, base, clip, readonly);
093bc2cd
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536 return;
537 }
538
539 /* Render subregions in priority order. */
540 QTAILQ_FOREACH(subregion, &mr->subregions, subregions_link) {
fb1cd6f9 541 render_memory_region(view, subregion, base, clip, readonly);
093bc2cd
AK
542 }
543
14a3c10a 544 if (!mr->terminates) {
093bc2cd
AK
545 return;
546 }
547
08dafab4 548 offset_in_region = int128_get64(int128_sub(clip.start, base));
093bc2cd
AK
549 base = clip.start;
550 remain = clip.size;
551
2eb74e1a
PC
552 fr.mr = mr;
553 fr.dirty_log_mask = mr->dirty_log_mask;
554 fr.romd_mode = mr->romd_mode;
555 fr.readonly = readonly;
556
093bc2cd 557 /* Render the region itself into any gaps left by the current view. */
08dafab4
AK
558 for (i = 0; i < view->nr && int128_nz(remain); ++i) {
559 if (int128_ge(base, addrrange_end(view->ranges[i].addr))) {
093bc2cd
AK
560 continue;
561 }
08dafab4
AK
562 if (int128_lt(base, view->ranges[i].addr.start)) {
563 now = int128_min(remain,
564 int128_sub(view->ranges[i].addr.start, base));
093bc2cd
AK
565 fr.offset_in_region = offset_in_region;
566 fr.addr = addrrange_make(base, now);
567 flatview_insert(view, i, &fr);
568 ++i;
08dafab4
AK
569 int128_addto(&base, now);
570 offset_in_region += int128_get64(now);
571 int128_subfrom(&remain, now);
093bc2cd 572 }
d26a8cae
AK
573 now = int128_sub(int128_min(int128_add(base, remain),
574 addrrange_end(view->ranges[i].addr)),
575 base);
576 int128_addto(&base, now);
577 offset_in_region += int128_get64(now);
578 int128_subfrom(&remain, now);
093bc2cd 579 }
08dafab4 580 if (int128_nz(remain)) {
093bc2cd
AK
581 fr.offset_in_region = offset_in_region;
582 fr.addr = addrrange_make(base, remain);
583 flatview_insert(view, i, &fr);
584 }
585}
586
587/* Render a memory topology into a list of disjoint absolute ranges. */
a9a0c06d 588static FlatView *generate_memory_topology(MemoryRegion *mr)
093bc2cd 589{
a9a0c06d 590 FlatView *view;
093bc2cd 591
a9a0c06d
PB
592 view = g_new(FlatView, 1);
593 flatview_init(view);
093bc2cd 594
83f3c251 595 if (mr) {
a9a0c06d 596 render_memory_region(view, mr, int128_zero(),
83f3c251
AK
597 addrrange_make(int128_zero(), int128_2_64()), false);
598 }
a9a0c06d 599 flatview_simplify(view);
093bc2cd
AK
600
601 return view;
602}
603
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604static void address_space_add_del_ioeventfds(AddressSpace *as,
605 MemoryRegionIoeventfd *fds_new,
606 unsigned fds_new_nb,
607 MemoryRegionIoeventfd *fds_old,
608 unsigned fds_old_nb)
609{
610 unsigned iold, inew;
80a1ea37
AK
611 MemoryRegionIoeventfd *fd;
612 MemoryRegionSection section;
3e9d69e7
AK
613
614 /* Generate a symmetric difference of the old and new fd sets, adding
615 * and deleting as necessary.
616 */
617
618 iold = inew = 0;
619 while (iold < fds_old_nb || inew < fds_new_nb) {
620 if (iold < fds_old_nb
621 && (inew == fds_new_nb
622 || memory_region_ioeventfd_before(fds_old[iold],
623 fds_new[inew]))) {
80a1ea37
AK
624 fd = &fds_old[iold];
625 section = (MemoryRegionSection) {
f6790af6 626 .address_space = as,
80a1ea37 627 .offset_within_address_space = int128_get64(fd->addr.start),
052e87b0 628 .size = fd->addr.size,
80a1ea37
AK
629 };
630 MEMORY_LISTENER_CALL(eventfd_del, Forward, &section,
753d5e14 631 fd->match_data, fd->data, fd->e);
3e9d69e7
AK
632 ++iold;
633 } else if (inew < fds_new_nb
634 && (iold == fds_old_nb
635 || memory_region_ioeventfd_before(fds_new[inew],
636 fds_old[iold]))) {
80a1ea37
AK
637 fd = &fds_new[inew];
638 section = (MemoryRegionSection) {
f6790af6 639 .address_space = as,
80a1ea37 640 .offset_within_address_space = int128_get64(fd->addr.start),
052e87b0 641 .size = fd->addr.size,
80a1ea37
AK
642 };
643 MEMORY_LISTENER_CALL(eventfd_add, Reverse, &section,
753d5e14 644 fd->match_data, fd->data, fd->e);
3e9d69e7
AK
645 ++inew;
646 } else {
647 ++iold;
648 ++inew;
649 }
650 }
651}
652
856d7245
PB
653static FlatView *address_space_get_flatview(AddressSpace *as)
654{
655 FlatView *view;
656
657 qemu_mutex_lock(&flat_view_mutex);
658 view = as->current_map;
659 flatview_ref(view);
660 qemu_mutex_unlock(&flat_view_mutex);
661 return view;
662}
663
3e9d69e7
AK
664static void address_space_update_ioeventfds(AddressSpace *as)
665{
99e86347 666 FlatView *view;
3e9d69e7
AK
667 FlatRange *fr;
668 unsigned ioeventfd_nb = 0;
669 MemoryRegionIoeventfd *ioeventfds = NULL;
670 AddrRange tmp;
671 unsigned i;
672
856d7245 673 view = address_space_get_flatview(as);
99e86347 674 FOR_EACH_FLAT_RANGE(fr, view) {
3e9d69e7
AK
675 for (i = 0; i < fr->mr->ioeventfd_nb; ++i) {
676 tmp = addrrange_shift(fr->mr->ioeventfds[i].addr,
08dafab4
AK
677 int128_sub(fr->addr.start,
678 int128_make64(fr->offset_in_region)));
3e9d69e7
AK
679 if (addrrange_intersects(fr->addr, tmp)) {
680 ++ioeventfd_nb;
7267c094 681 ioeventfds = g_realloc(ioeventfds,
3e9d69e7
AK
682 ioeventfd_nb * sizeof(*ioeventfds));
683 ioeventfds[ioeventfd_nb-1] = fr->mr->ioeventfds[i];
684 ioeventfds[ioeventfd_nb-1].addr = tmp;
685 }
686 }
687 }
688
689 address_space_add_del_ioeventfds(as, ioeventfds, ioeventfd_nb,
690 as->ioeventfds, as->ioeventfd_nb);
691
7267c094 692 g_free(as->ioeventfds);
3e9d69e7
AK
693 as->ioeventfds = ioeventfds;
694 as->ioeventfd_nb = ioeventfd_nb;
856d7245 695 flatview_unref(view);
3e9d69e7
AK
696}
697
b8af1afb 698static void address_space_update_topology_pass(AddressSpace *as,
a9a0c06d
PB
699 const FlatView *old_view,
700 const FlatView *new_view,
b8af1afb 701 bool adding)
093bc2cd 702{
093bc2cd
AK
703 unsigned iold, inew;
704 FlatRange *frold, *frnew;
093bc2cd
AK
705
706 /* Generate a symmetric difference of the old and new memory maps.
707 * Kill ranges in the old map, and instantiate ranges in the new map.
708 */
709 iold = inew = 0;
a9a0c06d
PB
710 while (iold < old_view->nr || inew < new_view->nr) {
711 if (iold < old_view->nr) {
712 frold = &old_view->ranges[iold];
093bc2cd
AK
713 } else {
714 frold = NULL;
715 }
a9a0c06d
PB
716 if (inew < new_view->nr) {
717 frnew = &new_view->ranges[inew];
093bc2cd
AK
718 } else {
719 frnew = NULL;
720 }
721
722 if (frold
723 && (!frnew
08dafab4
AK
724 || int128_lt(frold->addr.start, frnew->addr.start)
725 || (int128_eq(frold->addr.start, frnew->addr.start)
093bc2cd 726 && !flatrange_equal(frold, frnew)))) {
41a6e477 727 /* In old but not in new, or in both but attributes changed. */
093bc2cd 728
b8af1afb 729 if (!adding) {
72e22d2f 730 MEMORY_LISTENER_UPDATE_REGION(frold, as, Reverse, region_del);
b8af1afb
AK
731 }
732
093bc2cd
AK
733 ++iold;
734 } else if (frold && frnew && flatrange_equal(frold, frnew)) {
41a6e477 735 /* In both and unchanged (except logging may have changed) */
093bc2cd 736
b8af1afb 737 if (adding) {
50c1e149 738 MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, region_nop);
b8af1afb 739 if (frold->dirty_log_mask && !frnew->dirty_log_mask) {
72e22d2f 740 MEMORY_LISTENER_UPDATE_REGION(frnew, as, Reverse, log_stop);
b8af1afb 741 } else if (frnew->dirty_log_mask && !frold->dirty_log_mask) {
72e22d2f 742 MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, log_start);
b8af1afb 743 }
5a583347
AK
744 }
745
093bc2cd
AK
746 ++iold;
747 ++inew;
093bc2cd
AK
748 } else {
749 /* In new */
750
b8af1afb 751 if (adding) {
72e22d2f 752 MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, region_add);
b8af1afb
AK
753 }
754
093bc2cd
AK
755 ++inew;
756 }
757 }
b8af1afb
AK
758}
759
760
761static void address_space_update_topology(AddressSpace *as)
762{
856d7245 763 FlatView *old_view = address_space_get_flatview(as);
a9a0c06d 764 FlatView *new_view = generate_memory_topology(as->root);
b8af1afb
AK
765
766 address_space_update_topology_pass(as, old_view, new_view, false);
767 address_space_update_topology_pass(as, old_view, new_view, true);
768
856d7245
PB
769 qemu_mutex_lock(&flat_view_mutex);
770 flatview_unref(as->current_map);
a9a0c06d 771 as->current_map = new_view;
856d7245
PB
772 qemu_mutex_unlock(&flat_view_mutex);
773
774 /* Note that all the old MemoryRegions are still alive up to this
775 * point. This relieves most MemoryListeners from the need to
776 * ref/unref the MemoryRegions they get---unless they use them
777 * outside the iothread mutex, in which case precise reference
778 * counting is necessary.
779 */
780 flatview_unref(old_view);
781
3e9d69e7 782 address_space_update_ioeventfds(as);
093bc2cd
AK
783}
784
4ef4db86
AK
785void memory_region_transaction_begin(void)
786{
bb880ded 787 qemu_flush_coalesced_mmio_buffer();
4ef4db86
AK
788 ++memory_region_transaction_depth;
789}
790
4dc56152
GA
791static void memory_region_clear_pending(void)
792{
793 memory_region_update_pending = false;
794 ioeventfd_update_pending = false;
795}
796
4ef4db86
AK
797void memory_region_transaction_commit(void)
798{
0d673e36
AK
799 AddressSpace *as;
800
4ef4db86
AK
801 assert(memory_region_transaction_depth);
802 --memory_region_transaction_depth;
4dc56152
GA
803 if (!memory_region_transaction_depth) {
804 if (memory_region_update_pending) {
805 MEMORY_LISTENER_CALL_GLOBAL(begin, Forward);
02e2b95f 806
4dc56152
GA
807 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
808 address_space_update_topology(as);
809 }
02e2b95f 810
4dc56152
GA
811 MEMORY_LISTENER_CALL_GLOBAL(commit, Forward);
812 } else if (ioeventfd_update_pending) {
813 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
814 address_space_update_ioeventfds(as);
815 }
816 }
817 memory_region_clear_pending();
818 }
4ef4db86
AK
819}
820
545e92e0
AK
821static void memory_region_destructor_none(MemoryRegion *mr)
822{
823}
824
825static void memory_region_destructor_ram(MemoryRegion *mr)
826{
827 qemu_ram_free(mr->ram_addr);
828}
829
dfde4e6e
PB
830static void memory_region_destructor_alias(MemoryRegion *mr)
831{
832 memory_region_unref(mr->alias);
833}
834
545e92e0
AK
835static void memory_region_destructor_ram_from_ptr(MemoryRegion *mr)
836{
837 qemu_ram_free_from_ptr(mr->ram_addr);
838}
839
d0a9b5bc
AK
840static void memory_region_destructor_rom_device(MemoryRegion *mr)
841{
842 qemu_ram_free(mr->ram_addr & TARGET_PAGE_MASK);
d0a9b5bc
AK
843}
844
b4fefef9
PC
845static bool memory_region_need_escape(char c)
846{
847 return c == '/' || c == '[' || c == '\\' || c == ']';
848}
849
850static char *memory_region_escape_name(const char *name)
851{
852 const char *p;
853 char *escaped, *q;
854 uint8_t c;
855 size_t bytes = 0;
856
857 for (p = name; *p; p++) {
858 bytes += memory_region_need_escape(*p) ? 4 : 1;
859 }
860 if (bytes == p - name) {
861 return g_memdup(name, bytes + 1);
862 }
863
864 escaped = g_malloc(bytes + 1);
865 for (p = name, q = escaped; *p; p++) {
866 c = *p;
867 if (unlikely(memory_region_need_escape(c))) {
868 *q++ = '\\';
869 *q++ = 'x';
870 *q++ = "0123456789abcdef"[c >> 4];
871 c = "0123456789abcdef"[c & 15];
872 }
873 *q++ = c;
874 }
875 *q = 0;
876 return escaped;
877}
878
093bc2cd 879void memory_region_init(MemoryRegion *mr,
2c9b15ca 880 Object *owner,
093bc2cd
AK
881 const char *name,
882 uint64_t size)
883{
22a893e4
PB
884 if (!owner) {
885 owner = qdev_get_machine();
886 }
b4fefef9 887
22a893e4 888 object_initialize(mr, sizeof(*mr), TYPE_MEMORY_REGION);
08dafab4
AK
889 mr->size = int128_make64(size);
890 if (size == UINT64_MAX) {
891 mr->size = int128_2_64();
892 }
302fa283 893 mr->name = g_strdup(name);
b4fefef9
PC
894
895 if (name) {
843ef73a
PC
896 char *escaped_name = memory_region_escape_name(name);
897 char *name_array = g_strdup_printf("%s[*]", escaped_name);
898 object_property_add_child(owner, name_array, OBJECT(mr), &error_abort);
b4fefef9 899 object_unref(OBJECT(mr));
843ef73a
PC
900 g_free(name_array);
901 g_free(escaped_name);
b4fefef9
PC
902 }
903}
904
409ddd01
PC
905static void memory_region_get_addr(Object *obj, Visitor *v, void *opaque,
906 const char *name, Error **errp)
907{
908 MemoryRegion *mr = MEMORY_REGION(obj);
909 uint64_t value = mr->addr;
910
911 visit_type_uint64(v, &value, name, errp);
912}
913
914static void memory_region_get_container(Object *obj, Visitor *v, void *opaque,
915 const char *name, Error **errp)
916{
917 MemoryRegion *mr = MEMORY_REGION(obj);
918 gchar *path = (gchar *)"";
919
920 if (mr->container) {
921 path = object_get_canonical_path(OBJECT(mr->container));
922 }
923 visit_type_str(v, &path, name, errp);
924 if (mr->container) {
925 g_free(path);
926 }
927}
928
929static Object *memory_region_resolve_container(Object *obj, void *opaque,
930 const char *part)
931{
932 MemoryRegion *mr = MEMORY_REGION(obj);
933
934 return OBJECT(mr->container);
935}
936
d33382da
PC
937static void memory_region_get_priority(Object *obj, Visitor *v, void *opaque,
938 const char *name, Error **errp)
939{
940 MemoryRegion *mr = MEMORY_REGION(obj);
941 int32_t value = mr->priority;
942
943 visit_type_int32(v, &value, name, errp);
944}
945
946static bool memory_region_get_may_overlap(Object *obj, Error **errp)
947{
948 MemoryRegion *mr = MEMORY_REGION(obj);
949
950 return mr->may_overlap;
951}
952
52aef7bb
PC
953static void memory_region_get_size(Object *obj, Visitor *v, void *opaque,
954 const char *name, Error **errp)
955{
956 MemoryRegion *mr = MEMORY_REGION(obj);
957 uint64_t value = memory_region_size(mr);
958
959 visit_type_uint64(v, &value, name, errp);
960}
961
b4fefef9
PC
962static void memory_region_initfn(Object *obj)
963{
964 MemoryRegion *mr = MEMORY_REGION(obj);
409ddd01 965 ObjectProperty *op;
b4fefef9
PC
966
967 mr->ops = &unassigned_mem_ops;
6bba19ba 968 mr->enabled = true;
5f9a5ea1 969 mr->romd_mode = true;
545e92e0 970 mr->destructor = memory_region_destructor_none;
093bc2cd 971 QTAILQ_INIT(&mr->subregions);
093bc2cd 972 QTAILQ_INIT(&mr->coalesced);
409ddd01
PC
973
974 op = object_property_add(OBJECT(mr), "container",
975 "link<" TYPE_MEMORY_REGION ">",
976 memory_region_get_container,
977 NULL, /* memory_region_set_container */
978 NULL, NULL, &error_abort);
979 op->resolve = memory_region_resolve_container;
980
981 object_property_add(OBJECT(mr), "addr", "uint64",
982 memory_region_get_addr,
983 NULL, /* memory_region_set_addr */
984 NULL, NULL, &error_abort);
d33382da
PC
985 object_property_add(OBJECT(mr), "priority", "uint32",
986 memory_region_get_priority,
987 NULL, /* memory_region_set_priority */
988 NULL, NULL, &error_abort);
989 object_property_add_bool(OBJECT(mr), "may-overlap",
990 memory_region_get_may_overlap,
991 NULL, /* memory_region_set_may_overlap */
992 &error_abort);
52aef7bb
PC
993 object_property_add(OBJECT(mr), "size", "uint64",
994 memory_region_get_size,
995 NULL, /* memory_region_set_size, */
996 NULL, NULL, &error_abort);
093bc2cd
AK
997}
998
b018ddf6
PB
999static uint64_t unassigned_mem_read(void *opaque, hwaddr addr,
1000 unsigned size)
1001{
1002#ifdef DEBUG_UNASSIGNED
1003 printf("Unassigned mem read " TARGET_FMT_plx "\n", addr);
1004#endif
4917cf44
AF
1005 if (current_cpu != NULL) {
1006 cpu_unassigned_access(current_cpu, addr, false, false, 0, size);
c658b94f 1007 }
68a7439a 1008 return 0;
b018ddf6
PB
1009}
1010
1011static void unassigned_mem_write(void *opaque, hwaddr addr,
1012 uint64_t val, unsigned size)
1013{
1014#ifdef DEBUG_UNASSIGNED
1015 printf("Unassigned mem write " TARGET_FMT_plx " = 0x%"PRIx64"\n", addr, val);
1016#endif
4917cf44
AF
1017 if (current_cpu != NULL) {
1018 cpu_unassigned_access(current_cpu, addr, true, false, 0, size);
c658b94f 1019 }
b018ddf6
PB
1020}
1021
d197063f
PB
1022static bool unassigned_mem_accepts(void *opaque, hwaddr addr,
1023 unsigned size, bool is_write)
1024{
1025 return false;
1026}
1027
1028const MemoryRegionOps unassigned_mem_ops = {
1029 .valid.accepts = unassigned_mem_accepts,
1030 .endianness = DEVICE_NATIVE_ENDIAN,
1031};
1032
d2702032
PB
1033bool memory_region_access_valid(MemoryRegion *mr,
1034 hwaddr addr,
1035 unsigned size,
1036 bool is_write)
093bc2cd 1037{
a014ed07
PB
1038 int access_size_min, access_size_max;
1039 int access_size, i;
897fa7cf 1040
093bc2cd
AK
1041 if (!mr->ops->valid.unaligned && (addr & (size - 1))) {
1042 return false;
1043 }
1044
a014ed07 1045 if (!mr->ops->valid.accepts) {
093bc2cd
AK
1046 return true;
1047 }
1048
a014ed07
PB
1049 access_size_min = mr->ops->valid.min_access_size;
1050 if (!mr->ops->valid.min_access_size) {
1051 access_size_min = 1;
1052 }
1053
1054 access_size_max = mr->ops->valid.max_access_size;
1055 if (!mr->ops->valid.max_access_size) {
1056 access_size_max = 4;
1057 }
1058
1059 access_size = MAX(MIN(size, access_size_max), access_size_min);
1060 for (i = 0; i < size; i += access_size) {
1061 if (!mr->ops->valid.accepts(mr->opaque, addr + i, access_size,
1062 is_write)) {
1063 return false;
1064 }
093bc2cd 1065 }
a014ed07 1066
093bc2cd
AK
1067 return true;
1068}
1069
a621f38d 1070static uint64_t memory_region_dispatch_read1(MemoryRegion *mr,
a8170e5e 1071 hwaddr addr,
a621f38d 1072 unsigned size)
093bc2cd 1073{
164a4dcd 1074 uint64_t data = 0;
093bc2cd 1075
ce5d2f33
PB
1076 if (mr->ops->read) {
1077 access_with_adjusted_size(addr, &data, size,
1078 mr->ops->impl.min_access_size,
1079 mr->ops->impl.max_access_size,
1080 memory_region_read_accessor, mr);
1081 } else {
1082 access_with_adjusted_size(addr, &data, size, 1, 4,
1083 memory_region_oldmmio_read_accessor, mr);
74901c3b
AK
1084 }
1085
093bc2cd
AK
1086 return data;
1087}
1088
791af8c8
PB
1089static bool memory_region_dispatch_read(MemoryRegion *mr,
1090 hwaddr addr,
1091 uint64_t *pval,
1092 unsigned size)
a621f38d 1093{
791af8c8
PB
1094 if (!memory_region_access_valid(mr, addr, size, false)) {
1095 *pval = unassigned_mem_read(mr, addr, size);
1096 return true;
1097 }
a621f38d 1098
791af8c8
PB
1099 *pval = memory_region_dispatch_read1(mr, addr, size);
1100 adjust_endianness(mr, pval, size);
1101 return false;
a621f38d 1102}
093bc2cd 1103
791af8c8 1104static bool memory_region_dispatch_write(MemoryRegion *mr,
a8170e5e 1105 hwaddr addr,
a621f38d
AK
1106 uint64_t data,
1107 unsigned size)
1108{
897fa7cf 1109 if (!memory_region_access_valid(mr, addr, size, true)) {
b018ddf6 1110 unassigned_mem_write(mr, addr, data, size);
791af8c8 1111 return true;
093bc2cd
AK
1112 }
1113
a621f38d
AK
1114 adjust_endianness(mr, &data, size);
1115
ce5d2f33
PB
1116 if (mr->ops->write) {
1117 access_with_adjusted_size(addr, &data, size,
1118 mr->ops->impl.min_access_size,
1119 mr->ops->impl.max_access_size,
1120 memory_region_write_accessor, mr);
1121 } else {
1122 access_with_adjusted_size(addr, &data, size, 1, 4,
1123 memory_region_oldmmio_write_accessor, mr);
74901c3b 1124 }
791af8c8 1125 return false;
093bc2cd
AK
1126}
1127
093bc2cd 1128void memory_region_init_io(MemoryRegion *mr,
2c9b15ca 1129 Object *owner,
093bc2cd
AK
1130 const MemoryRegionOps *ops,
1131 void *opaque,
1132 const char *name,
1133 uint64_t size)
1134{
2c9b15ca 1135 memory_region_init(mr, owner, name, size);
093bc2cd
AK
1136 mr->ops = ops;
1137 mr->opaque = opaque;
14a3c10a 1138 mr->terminates = true;
97161e17 1139 mr->ram_addr = ~(ram_addr_t)0;
093bc2cd
AK
1140}
1141
1142void memory_region_init_ram(MemoryRegion *mr,
2c9b15ca 1143 Object *owner,
093bc2cd 1144 const char *name,
49946538
HT
1145 uint64_t size,
1146 Error **errp)
093bc2cd 1147{
2c9b15ca 1148 memory_region_init(mr, owner, name, size);
8ea9252a 1149 mr->ram = true;
14a3c10a 1150 mr->terminates = true;
545e92e0 1151 mr->destructor = memory_region_destructor_ram;
49946538 1152 mr->ram_addr = qemu_ram_alloc(size, mr, errp);
0b183fc8
PB
1153}
1154
60786ef3
MT
1155void memory_region_init_resizeable_ram(MemoryRegion *mr,
1156 Object *owner,
1157 const char *name,
1158 uint64_t size,
1159 uint64_t max_size,
1160 void (*resized)(const char*,
1161 uint64_t length,
1162 void *host),
1163 Error **errp)
1164{
1165 memory_region_init(mr, owner, name, size);
1166 mr->ram = true;
1167 mr->terminates = true;
1168 mr->destructor = memory_region_destructor_ram;
1169 mr->ram_addr = qemu_ram_alloc_resizeable(size, max_size, resized, mr, errp);
1170}
1171
0b183fc8
PB
1172#ifdef __linux__
1173void memory_region_init_ram_from_file(MemoryRegion *mr,
1174 struct Object *owner,
1175 const char *name,
1176 uint64_t size,
dbcb8981 1177 bool share,
7f56e740
PB
1178 const char *path,
1179 Error **errp)
0b183fc8
PB
1180{
1181 memory_region_init(mr, owner, name, size);
1182 mr->ram = true;
1183 mr->terminates = true;
1184 mr->destructor = memory_region_destructor_ram;
dbcb8981 1185 mr->ram_addr = qemu_ram_alloc_from_file(size, mr, share, path, errp);
093bc2cd 1186}
0b183fc8 1187#endif
093bc2cd
AK
1188
1189void memory_region_init_ram_ptr(MemoryRegion *mr,
2c9b15ca 1190 Object *owner,
093bc2cd
AK
1191 const char *name,
1192 uint64_t size,
1193 void *ptr)
1194{
2c9b15ca 1195 memory_region_init(mr, owner, name, size);
8ea9252a 1196 mr->ram = true;
14a3c10a 1197 mr->terminates = true;
545e92e0 1198 mr->destructor = memory_region_destructor_ram_from_ptr;
ef701d7b
HT
1199
1200 /* qemu_ram_alloc_from_ptr cannot fail with ptr != NULL. */
1201 assert(ptr != NULL);
1202 mr->ram_addr = qemu_ram_alloc_from_ptr(size, ptr, mr, &error_abort);
093bc2cd
AK
1203}
1204
e4dc3f59
ND
1205void memory_region_set_skip_dump(MemoryRegion *mr)
1206{
1207 mr->skip_dump = true;
1208}
1209
093bc2cd 1210void memory_region_init_alias(MemoryRegion *mr,
2c9b15ca 1211 Object *owner,
093bc2cd
AK
1212 const char *name,
1213 MemoryRegion *orig,
a8170e5e 1214 hwaddr offset,
093bc2cd
AK
1215 uint64_t size)
1216{
2c9b15ca 1217 memory_region_init(mr, owner, name, size);
dfde4e6e
PB
1218 memory_region_ref(orig);
1219 mr->destructor = memory_region_destructor_alias;
093bc2cd
AK
1220 mr->alias = orig;
1221 mr->alias_offset = offset;
1222}
1223
d0a9b5bc 1224void memory_region_init_rom_device(MemoryRegion *mr,
2c9b15ca 1225 Object *owner,
d0a9b5bc 1226 const MemoryRegionOps *ops,
75f5941c 1227 void *opaque,
d0a9b5bc 1228 const char *name,
33e0eb52
HT
1229 uint64_t size,
1230 Error **errp)
d0a9b5bc 1231{
2c9b15ca 1232 memory_region_init(mr, owner, name, size);
7bc2b9cd 1233 mr->ops = ops;
75f5941c 1234 mr->opaque = opaque;
d0a9b5bc 1235 mr->terminates = true;
75c578dc 1236 mr->rom_device = true;
d0a9b5bc 1237 mr->destructor = memory_region_destructor_rom_device;
33e0eb52 1238 mr->ram_addr = qemu_ram_alloc(size, mr, errp);
d0a9b5bc
AK
1239}
1240
30951157 1241void memory_region_init_iommu(MemoryRegion *mr,
2c9b15ca 1242 Object *owner,
30951157
AK
1243 const MemoryRegionIOMMUOps *ops,
1244 const char *name,
1245 uint64_t size)
1246{
2c9b15ca 1247 memory_region_init(mr, owner, name, size);
30951157
AK
1248 mr->iommu_ops = ops,
1249 mr->terminates = true; /* then re-forwards */
06866575 1250 notifier_list_init(&mr->iommu_notify);
30951157
AK
1251}
1252
1660e72d 1253void memory_region_init_reservation(MemoryRegion *mr,
2c9b15ca 1254 Object *owner,
1660e72d
JK
1255 const char *name,
1256 uint64_t size)
1257{
2c9b15ca 1258 memory_region_init_io(mr, owner, &unassigned_mem_ops, mr, name, size);
1660e72d
JK
1259}
1260
b4fefef9 1261static void memory_region_finalize(Object *obj)
093bc2cd 1262{
b4fefef9
PC
1263 MemoryRegion *mr = MEMORY_REGION(obj);
1264
093bc2cd 1265 assert(QTAILQ_EMPTY(&mr->subregions));
545e92e0 1266 mr->destructor(mr);
093bc2cd 1267 memory_region_clear_coalescing(mr);
302fa283 1268 g_free((char *)mr->name);
7267c094 1269 g_free(mr->ioeventfds);
093bc2cd
AK
1270}
1271
803c0816
PB
1272Object *memory_region_owner(MemoryRegion *mr)
1273{
22a893e4
PB
1274 Object *obj = OBJECT(mr);
1275 return obj->parent;
803c0816
PB
1276}
1277
46637be2
PB
1278void memory_region_ref(MemoryRegion *mr)
1279{
22a893e4
PB
1280 /* MMIO callbacks most likely will access data that belongs
1281 * to the owner, hence the need to ref/unref the owner whenever
1282 * the memory region is in use.
1283 *
1284 * The memory region is a child of its owner. As long as the
1285 * owner doesn't call unparent itself on the memory region,
1286 * ref-ing the owner will also keep the memory region alive.
1287 * Memory regions without an owner are supposed to never go away,
1288 * but we still ref/unref them for debugging purposes.
1289 */
1290 Object *obj = OBJECT(mr);
1291 if (obj && obj->parent) {
1292 object_ref(obj->parent);
b4fefef9 1293 } else {
22a893e4 1294 object_ref(obj);
46637be2
PB
1295 }
1296}
1297
1298void memory_region_unref(MemoryRegion *mr)
1299{
22a893e4
PB
1300 Object *obj = OBJECT(mr);
1301 if (obj && obj->parent) {
1302 object_unref(obj->parent);
b4fefef9 1303 } else {
22a893e4 1304 object_unref(obj);
46637be2
PB
1305 }
1306}
1307
093bc2cd
AK
1308uint64_t memory_region_size(MemoryRegion *mr)
1309{
08dafab4
AK
1310 if (int128_eq(mr->size, int128_2_64())) {
1311 return UINT64_MAX;
1312 }
1313 return int128_get64(mr->size);
093bc2cd
AK
1314}
1315
5d546d4b 1316const char *memory_region_name(const MemoryRegion *mr)
8991c79b 1317{
d1dd32af
PC
1318 if (!mr->name) {
1319 ((MemoryRegion *)mr)->name =
1320 object_get_canonical_path_component(OBJECT(mr));
1321 }
302fa283 1322 return mr->name;
8991c79b
AK
1323}
1324
8ea9252a
AK
1325bool memory_region_is_ram(MemoryRegion *mr)
1326{
1327 return mr->ram;
1328}
1329
e4dc3f59
ND
1330bool memory_region_is_skip_dump(MemoryRegion *mr)
1331{
1332 return mr->skip_dump;
1333}
1334
55043ba3
AK
1335bool memory_region_is_logging(MemoryRegion *mr)
1336{
1337 return mr->dirty_log_mask;
1338}
1339
ce7923da
AK
1340bool memory_region_is_rom(MemoryRegion *mr)
1341{
1342 return mr->ram && mr->readonly;
1343}
1344
30951157
AK
1345bool memory_region_is_iommu(MemoryRegion *mr)
1346{
1347 return mr->iommu_ops;
1348}
1349
06866575
DG
1350void memory_region_register_iommu_notifier(MemoryRegion *mr, Notifier *n)
1351{
1352 notifier_list_add(&mr->iommu_notify, n);
1353}
1354
1355void memory_region_unregister_iommu_notifier(Notifier *n)
1356{
1357 notifier_remove(n);
1358}
1359
1360void memory_region_notify_iommu(MemoryRegion *mr,
1361 IOMMUTLBEntry entry)
1362{
1363 assert(memory_region_is_iommu(mr));
1364 notifier_list_notify(&mr->iommu_notify, &entry);
1365}
1366
093bc2cd
AK
1367void memory_region_set_log(MemoryRegion *mr, bool log, unsigned client)
1368{
5a583347
AK
1369 uint8_t mask = 1 << client;
1370
59023ef4 1371 memory_region_transaction_begin();
5a583347 1372 mr->dirty_log_mask = (mr->dirty_log_mask & ~mask) | (log * mask);
22bde714 1373 memory_region_update_pending |= mr->enabled;
59023ef4 1374 memory_region_transaction_commit();
093bc2cd
AK
1375}
1376
a8170e5e
AK
1377bool memory_region_get_dirty(MemoryRegion *mr, hwaddr addr,
1378 hwaddr size, unsigned client)
093bc2cd 1379{
14a3c10a 1380 assert(mr->terminates);
52159192 1381 return cpu_physical_memory_get_dirty(mr->ram_addr + addr, size, client);
093bc2cd
AK
1382}
1383
a8170e5e
AK
1384void memory_region_set_dirty(MemoryRegion *mr, hwaddr addr,
1385 hwaddr size)
093bc2cd 1386{
14a3c10a 1387 assert(mr->terminates);
75218e7f 1388 cpu_physical_memory_set_dirty_range(mr->ram_addr + addr, size);
093bc2cd
AK
1389}
1390
6c279db8
JQ
1391bool memory_region_test_and_clear_dirty(MemoryRegion *mr, hwaddr addr,
1392 hwaddr size, unsigned client)
1393{
1394 bool ret;
1395 assert(mr->terminates);
52159192 1396 ret = cpu_physical_memory_get_dirty(mr->ram_addr + addr, size, client);
6c279db8 1397 if (ret) {
a2f4d5be 1398 cpu_physical_memory_reset_dirty(mr->ram_addr + addr, size, client);
6c279db8
JQ
1399 }
1400 return ret;
1401}
1402
1403
093bc2cd
AK
1404void memory_region_sync_dirty_bitmap(MemoryRegion *mr)
1405{
0d673e36 1406 AddressSpace *as;
5a583347
AK
1407 FlatRange *fr;
1408
0d673e36 1409 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
856d7245 1410 FlatView *view = address_space_get_flatview(as);
99e86347 1411 FOR_EACH_FLAT_RANGE(fr, view) {
0d673e36
AK
1412 if (fr->mr == mr) {
1413 MEMORY_LISTENER_UPDATE_REGION(fr, as, Forward, log_sync);
1414 }
5a583347 1415 }
856d7245 1416 flatview_unref(view);
5a583347 1417 }
093bc2cd
AK
1418}
1419
1420void memory_region_set_readonly(MemoryRegion *mr, bool readonly)
1421{
fb1cd6f9 1422 if (mr->readonly != readonly) {
59023ef4 1423 memory_region_transaction_begin();
fb1cd6f9 1424 mr->readonly = readonly;
22bde714 1425 memory_region_update_pending |= mr->enabled;
59023ef4 1426 memory_region_transaction_commit();
fb1cd6f9 1427 }
093bc2cd
AK
1428}
1429
5f9a5ea1 1430void memory_region_rom_device_set_romd(MemoryRegion *mr, bool romd_mode)
d0a9b5bc 1431{
5f9a5ea1 1432 if (mr->romd_mode != romd_mode) {
59023ef4 1433 memory_region_transaction_begin();
5f9a5ea1 1434 mr->romd_mode = romd_mode;
22bde714 1435 memory_region_update_pending |= mr->enabled;
59023ef4 1436 memory_region_transaction_commit();
d0a9b5bc
AK
1437 }
1438}
1439
a8170e5e
AK
1440void memory_region_reset_dirty(MemoryRegion *mr, hwaddr addr,
1441 hwaddr size, unsigned client)
093bc2cd 1442{
14a3c10a 1443 assert(mr->terminates);
a2f4d5be 1444 cpu_physical_memory_reset_dirty(mr->ram_addr + addr, size, client);
093bc2cd
AK
1445}
1446
a35ba7be
PB
1447int memory_region_get_fd(MemoryRegion *mr)
1448{
1449 if (mr->alias) {
1450 return memory_region_get_fd(mr->alias);
1451 }
1452
1453 assert(mr->terminates);
1454
1455 return qemu_get_ram_fd(mr->ram_addr & TARGET_PAGE_MASK);
1456}
1457
093bc2cd
AK
1458void *memory_region_get_ram_ptr(MemoryRegion *mr)
1459{
1460 if (mr->alias) {
1461 return memory_region_get_ram_ptr(mr->alias) + mr->alias_offset;
1462 }
1463
14a3c10a 1464 assert(mr->terminates);
093bc2cd 1465
021d26d1 1466 return qemu_get_ram_ptr(mr->ram_addr & TARGET_PAGE_MASK);
093bc2cd
AK
1467}
1468
0d673e36 1469static void memory_region_update_coalesced_range_as(MemoryRegion *mr, AddressSpace *as)
093bc2cd 1470{
99e86347 1471 FlatView *view;
093bc2cd
AK
1472 FlatRange *fr;
1473 CoalescedMemoryRange *cmr;
1474 AddrRange tmp;
95d2994a 1475 MemoryRegionSection section;
093bc2cd 1476
856d7245 1477 view = address_space_get_flatview(as);
99e86347 1478 FOR_EACH_FLAT_RANGE(fr, view) {
093bc2cd 1479 if (fr->mr == mr) {
95d2994a 1480 section = (MemoryRegionSection) {
f6790af6 1481 .address_space = as,
95d2994a 1482 .offset_within_address_space = int128_get64(fr->addr.start),
052e87b0 1483 .size = fr->addr.size,
95d2994a
AK
1484 };
1485
1486 MEMORY_LISTENER_CALL(coalesced_mmio_del, Reverse, &section,
1487 int128_get64(fr->addr.start),
1488 int128_get64(fr->addr.size));
093bc2cd
AK
1489 QTAILQ_FOREACH(cmr, &mr->coalesced, link) {
1490 tmp = addrrange_shift(cmr->addr,
08dafab4
AK
1491 int128_sub(fr->addr.start,
1492 int128_make64(fr->offset_in_region)));
093bc2cd
AK
1493 if (!addrrange_intersects(tmp, fr->addr)) {
1494 continue;
1495 }
1496 tmp = addrrange_intersection(tmp, fr->addr);
95d2994a
AK
1497 MEMORY_LISTENER_CALL(coalesced_mmio_add, Forward, &section,
1498 int128_get64(tmp.start),
1499 int128_get64(tmp.size));
093bc2cd
AK
1500 }
1501 }
1502 }
856d7245 1503 flatview_unref(view);
093bc2cd
AK
1504}
1505
0d673e36
AK
1506static void memory_region_update_coalesced_range(MemoryRegion *mr)
1507{
1508 AddressSpace *as;
1509
1510 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
1511 memory_region_update_coalesced_range_as(mr, as);
1512 }
1513}
1514
093bc2cd
AK
1515void memory_region_set_coalescing(MemoryRegion *mr)
1516{
1517 memory_region_clear_coalescing(mr);
08dafab4 1518 memory_region_add_coalescing(mr, 0, int128_get64(mr->size));
093bc2cd
AK
1519}
1520
1521void memory_region_add_coalescing(MemoryRegion *mr,
a8170e5e 1522 hwaddr offset,
093bc2cd
AK
1523 uint64_t size)
1524{
7267c094 1525 CoalescedMemoryRange *cmr = g_malloc(sizeof(*cmr));
093bc2cd 1526
08dafab4 1527 cmr->addr = addrrange_make(int128_make64(offset), int128_make64(size));
093bc2cd
AK
1528 QTAILQ_INSERT_TAIL(&mr->coalesced, cmr, link);
1529 memory_region_update_coalesced_range(mr);
d410515e 1530 memory_region_set_flush_coalesced(mr);
093bc2cd
AK
1531}
1532
1533void memory_region_clear_coalescing(MemoryRegion *mr)
1534{
1535 CoalescedMemoryRange *cmr;
ab5b3db5 1536 bool updated = false;
093bc2cd 1537
d410515e
JK
1538 qemu_flush_coalesced_mmio_buffer();
1539 mr->flush_coalesced_mmio = false;
1540
093bc2cd
AK
1541 while (!QTAILQ_EMPTY(&mr->coalesced)) {
1542 cmr = QTAILQ_FIRST(&mr->coalesced);
1543 QTAILQ_REMOVE(&mr->coalesced, cmr, link);
7267c094 1544 g_free(cmr);
ab5b3db5
FZ
1545 updated = true;
1546 }
1547
1548 if (updated) {
1549 memory_region_update_coalesced_range(mr);
093bc2cd 1550 }
093bc2cd
AK
1551}
1552
d410515e
JK
1553void memory_region_set_flush_coalesced(MemoryRegion *mr)
1554{
1555 mr->flush_coalesced_mmio = true;
1556}
1557
1558void memory_region_clear_flush_coalesced(MemoryRegion *mr)
1559{
1560 qemu_flush_coalesced_mmio_buffer();
1561 if (QTAILQ_EMPTY(&mr->coalesced)) {
1562 mr->flush_coalesced_mmio = false;
1563 }
1564}
1565
3e9d69e7 1566void memory_region_add_eventfd(MemoryRegion *mr,
a8170e5e 1567 hwaddr addr,
3e9d69e7
AK
1568 unsigned size,
1569 bool match_data,
1570 uint64_t data,
753d5e14 1571 EventNotifier *e)
3e9d69e7
AK
1572{
1573 MemoryRegionIoeventfd mrfd = {
08dafab4
AK
1574 .addr.start = int128_make64(addr),
1575 .addr.size = int128_make64(size),
3e9d69e7
AK
1576 .match_data = match_data,
1577 .data = data,
753d5e14 1578 .e = e,
3e9d69e7
AK
1579 };
1580 unsigned i;
1581
28f362be 1582 adjust_endianness(mr, &mrfd.data, size);
59023ef4 1583 memory_region_transaction_begin();
3e9d69e7
AK
1584 for (i = 0; i < mr->ioeventfd_nb; ++i) {
1585 if (memory_region_ioeventfd_before(mrfd, mr->ioeventfds[i])) {
1586 break;
1587 }
1588 }
1589 ++mr->ioeventfd_nb;
7267c094 1590 mr->ioeventfds = g_realloc(mr->ioeventfds,
3e9d69e7
AK
1591 sizeof(*mr->ioeventfds) * mr->ioeventfd_nb);
1592 memmove(&mr->ioeventfds[i+1], &mr->ioeventfds[i],
1593 sizeof(*mr->ioeventfds) * (mr->ioeventfd_nb-1 - i));
1594 mr->ioeventfds[i] = mrfd;
4dc56152 1595 ioeventfd_update_pending |= mr->enabled;
59023ef4 1596 memory_region_transaction_commit();
3e9d69e7
AK
1597}
1598
1599void memory_region_del_eventfd(MemoryRegion *mr,
a8170e5e 1600 hwaddr addr,
3e9d69e7
AK
1601 unsigned size,
1602 bool match_data,
1603 uint64_t data,
753d5e14 1604 EventNotifier *e)
3e9d69e7
AK
1605{
1606 MemoryRegionIoeventfd mrfd = {
08dafab4
AK
1607 .addr.start = int128_make64(addr),
1608 .addr.size = int128_make64(size),
3e9d69e7
AK
1609 .match_data = match_data,
1610 .data = data,
753d5e14 1611 .e = e,
3e9d69e7
AK
1612 };
1613 unsigned i;
1614
28f362be 1615 adjust_endianness(mr, &mrfd.data, size);
59023ef4 1616 memory_region_transaction_begin();
3e9d69e7
AK
1617 for (i = 0; i < mr->ioeventfd_nb; ++i) {
1618 if (memory_region_ioeventfd_equal(mrfd, mr->ioeventfds[i])) {
1619 break;
1620 }
1621 }
1622 assert(i != mr->ioeventfd_nb);
1623 memmove(&mr->ioeventfds[i], &mr->ioeventfds[i+1],
1624 sizeof(*mr->ioeventfds) * (mr->ioeventfd_nb - (i+1)));
1625 --mr->ioeventfd_nb;
7267c094 1626 mr->ioeventfds = g_realloc(mr->ioeventfds,
3e9d69e7 1627 sizeof(*mr->ioeventfds)*mr->ioeventfd_nb + 1);
4dc56152 1628 ioeventfd_update_pending |= mr->enabled;
59023ef4 1629 memory_region_transaction_commit();
3e9d69e7
AK
1630}
1631
feca4ac1 1632static void memory_region_update_container_subregions(MemoryRegion *subregion)
093bc2cd 1633{
0598701a 1634 hwaddr offset = subregion->addr;
feca4ac1 1635 MemoryRegion *mr = subregion->container;
093bc2cd
AK
1636 MemoryRegion *other;
1637
59023ef4
JK
1638 memory_region_transaction_begin();
1639
dfde4e6e 1640 memory_region_ref(subregion);
093bc2cd
AK
1641 QTAILQ_FOREACH(other, &mr->subregions, subregions_link) {
1642 if (subregion->may_overlap || other->may_overlap) {
1643 continue;
1644 }
2c7cfd65 1645 if (int128_ge(int128_make64(offset),
08dafab4
AK
1646 int128_add(int128_make64(other->addr), other->size))
1647 || int128_le(int128_add(int128_make64(offset), subregion->size),
1648 int128_make64(other->addr))) {
093bc2cd
AK
1649 continue;
1650 }
a5e1cbc8 1651#if 0
860329b2
MW
1652 printf("warning: subregion collision %llx/%llx (%s) "
1653 "vs %llx/%llx (%s)\n",
093bc2cd 1654 (unsigned long long)offset,
08dafab4 1655 (unsigned long long)int128_get64(subregion->size),
860329b2
MW
1656 subregion->name,
1657 (unsigned long long)other->addr,
08dafab4 1658 (unsigned long long)int128_get64(other->size),
860329b2 1659 other->name);
a5e1cbc8 1660#endif
093bc2cd
AK
1661 }
1662 QTAILQ_FOREACH(other, &mr->subregions, subregions_link) {
1663 if (subregion->priority >= other->priority) {
1664 QTAILQ_INSERT_BEFORE(other, subregion, subregions_link);
1665 goto done;
1666 }
1667 }
1668 QTAILQ_INSERT_TAIL(&mr->subregions, subregion, subregions_link);
1669done:
22bde714 1670 memory_region_update_pending |= mr->enabled && subregion->enabled;
59023ef4 1671 memory_region_transaction_commit();
093bc2cd
AK
1672}
1673
0598701a
PC
1674static void memory_region_add_subregion_common(MemoryRegion *mr,
1675 hwaddr offset,
1676 MemoryRegion *subregion)
1677{
feca4ac1
PB
1678 assert(!subregion->container);
1679 subregion->container = mr;
0598701a 1680 subregion->addr = offset;
feca4ac1 1681 memory_region_update_container_subregions(subregion);
0598701a 1682}
093bc2cd
AK
1683
1684void memory_region_add_subregion(MemoryRegion *mr,
a8170e5e 1685 hwaddr offset,
093bc2cd
AK
1686 MemoryRegion *subregion)
1687{
1688 subregion->may_overlap = false;
1689 subregion->priority = 0;
1690 memory_region_add_subregion_common(mr, offset, subregion);
1691}
1692
1693void memory_region_add_subregion_overlap(MemoryRegion *mr,
a8170e5e 1694 hwaddr offset,
093bc2cd 1695 MemoryRegion *subregion,
a1ff8ae0 1696 int priority)
093bc2cd
AK
1697{
1698 subregion->may_overlap = true;
1699 subregion->priority = priority;
1700 memory_region_add_subregion_common(mr, offset, subregion);
1701}
1702
1703void memory_region_del_subregion(MemoryRegion *mr,
1704 MemoryRegion *subregion)
1705{
59023ef4 1706 memory_region_transaction_begin();
feca4ac1
PB
1707 assert(subregion->container == mr);
1708 subregion->container = NULL;
093bc2cd 1709 QTAILQ_REMOVE(&mr->subregions, subregion, subregions_link);
dfde4e6e 1710 memory_region_unref(subregion);
22bde714 1711 memory_region_update_pending |= mr->enabled && subregion->enabled;
59023ef4 1712 memory_region_transaction_commit();
6bba19ba
AK
1713}
1714
1715void memory_region_set_enabled(MemoryRegion *mr, bool enabled)
1716{
1717 if (enabled == mr->enabled) {
1718 return;
1719 }
59023ef4 1720 memory_region_transaction_begin();
6bba19ba 1721 mr->enabled = enabled;
22bde714 1722 memory_region_update_pending = true;
59023ef4 1723 memory_region_transaction_commit();
093bc2cd 1724}
1c0ffa58 1725
e7af4c67
MT
1726void memory_region_set_size(MemoryRegion *mr, uint64_t size)
1727{
1728 Int128 s = int128_make64(size);
1729
1730 if (size == UINT64_MAX) {
1731 s = int128_2_64();
1732 }
1733 if (int128_eq(s, mr->size)) {
1734 return;
1735 }
1736 memory_region_transaction_begin();
1737 mr->size = s;
1738 memory_region_update_pending = true;
1739 memory_region_transaction_commit();
1740}
1741
67891b8a 1742static void memory_region_readd_subregion(MemoryRegion *mr)
2282e1af 1743{
feca4ac1 1744 MemoryRegion *container = mr->container;
2282e1af 1745
feca4ac1 1746 if (container) {
67891b8a
PC
1747 memory_region_transaction_begin();
1748 memory_region_ref(mr);
feca4ac1
PB
1749 memory_region_del_subregion(container, mr);
1750 mr->container = container;
1751 memory_region_update_container_subregions(mr);
67891b8a
PC
1752 memory_region_unref(mr);
1753 memory_region_transaction_commit();
2282e1af 1754 }
67891b8a 1755}
2282e1af 1756
67891b8a
PC
1757void memory_region_set_address(MemoryRegion *mr, hwaddr addr)
1758{
1759 if (addr != mr->addr) {
1760 mr->addr = addr;
1761 memory_region_readd_subregion(mr);
1762 }
2282e1af
AK
1763}
1764
a8170e5e 1765void memory_region_set_alias_offset(MemoryRegion *mr, hwaddr offset)
4703359e 1766{
4703359e 1767 assert(mr->alias);
4703359e 1768
59023ef4 1769 if (offset == mr->alias_offset) {
4703359e
AK
1770 return;
1771 }
1772
59023ef4
JK
1773 memory_region_transaction_begin();
1774 mr->alias_offset = offset;
22bde714 1775 memory_region_update_pending |= mr->enabled;
59023ef4 1776 memory_region_transaction_commit();
4703359e
AK
1777}
1778
e34911c4
AK
1779ram_addr_t memory_region_get_ram_addr(MemoryRegion *mr)
1780{
e34911c4
AK
1781 return mr->ram_addr;
1782}
1783
a2b257d6
IM
1784uint64_t memory_region_get_alignment(const MemoryRegion *mr)
1785{
1786 return mr->align;
1787}
1788
e2177955
AK
1789static int cmp_flatrange_addr(const void *addr_, const void *fr_)
1790{
1791 const AddrRange *addr = addr_;
1792 const FlatRange *fr = fr_;
1793
1794 if (int128_le(addrrange_end(*addr), fr->addr.start)) {
1795 return -1;
1796 } else if (int128_ge(addr->start, addrrange_end(fr->addr))) {
1797 return 1;
1798 }
1799 return 0;
1800}
1801
99e86347 1802static FlatRange *flatview_lookup(FlatView *view, AddrRange addr)
e2177955 1803{
99e86347 1804 return bsearch(&addr, view->ranges, view->nr,
e2177955
AK
1805 sizeof(FlatRange), cmp_flatrange_addr);
1806}
1807
feca4ac1 1808bool memory_region_present(MemoryRegion *container, hwaddr addr)
3ce10901 1809{
feca4ac1
PB
1810 MemoryRegion *mr = memory_region_find(container, addr, 1).mr;
1811 if (!mr || (mr == container)) {
3ce10901
PB
1812 return false;
1813 }
dfde4e6e 1814 memory_region_unref(mr);
3ce10901
PB
1815 return true;
1816}
1817
eed2bacf
IM
1818bool memory_region_is_mapped(MemoryRegion *mr)
1819{
1820 return mr->container ? true : false;
1821}
1822
73034e9e 1823MemoryRegionSection memory_region_find(MemoryRegion *mr,
a8170e5e 1824 hwaddr addr, uint64_t size)
e2177955 1825{
052e87b0 1826 MemoryRegionSection ret = { .mr = NULL };
73034e9e
PB
1827 MemoryRegion *root;
1828 AddressSpace *as;
1829 AddrRange range;
99e86347 1830 FlatView *view;
73034e9e
PB
1831 FlatRange *fr;
1832
1833 addr += mr->addr;
feca4ac1
PB
1834 for (root = mr; root->container; ) {
1835 root = root->container;
73034e9e
PB
1836 addr += root->addr;
1837 }
e2177955 1838
73034e9e 1839 as = memory_region_to_address_space(root);
eed2bacf
IM
1840 if (!as) {
1841 return ret;
1842 }
73034e9e 1843 range = addrrange_make(int128_make64(addr), int128_make64(size));
99e86347 1844
856d7245 1845 view = address_space_get_flatview(as);
99e86347 1846 fr = flatview_lookup(view, range);
e2177955 1847 if (!fr) {
6307d974 1848 flatview_unref(view);
e2177955
AK
1849 return ret;
1850 }
1851
99e86347 1852 while (fr > view->ranges && addrrange_intersects(fr[-1].addr, range)) {
e2177955
AK
1853 --fr;
1854 }
1855
1856 ret.mr = fr->mr;
73034e9e 1857 ret.address_space = as;
e2177955
AK
1858 range = addrrange_intersection(range, fr->addr);
1859 ret.offset_within_region = fr->offset_in_region;
1860 ret.offset_within_region += int128_get64(int128_sub(range.start,
1861 fr->addr.start));
052e87b0 1862 ret.size = range.size;
e2177955 1863 ret.offset_within_address_space = int128_get64(range.start);
7a8499e8 1864 ret.readonly = fr->readonly;
dfde4e6e
PB
1865 memory_region_ref(ret.mr);
1866
856d7245 1867 flatview_unref(view);
e2177955
AK
1868 return ret;
1869}
1870
1d671369 1871void address_space_sync_dirty_bitmap(AddressSpace *as)
86e775c6 1872{
99e86347 1873 FlatView *view;
7664e80c
AK
1874 FlatRange *fr;
1875
856d7245 1876 view = address_space_get_flatview(as);
99e86347 1877 FOR_EACH_FLAT_RANGE(fr, view) {
72e22d2f 1878 MEMORY_LISTENER_UPDATE_REGION(fr, as, Forward, log_sync);
7664e80c 1879 }
856d7245 1880 flatview_unref(view);
7664e80c
AK
1881}
1882
1883void memory_global_dirty_log_start(void)
1884{
7664e80c 1885 global_dirty_log = true;
7376e582 1886 MEMORY_LISTENER_CALL_GLOBAL(log_global_start, Forward);
7664e80c
AK
1887}
1888
1889void memory_global_dirty_log_stop(void)
1890{
7664e80c 1891 global_dirty_log = false;
7376e582 1892 MEMORY_LISTENER_CALL_GLOBAL(log_global_stop, Reverse);
7664e80c
AK
1893}
1894
1895static void listener_add_address_space(MemoryListener *listener,
1896 AddressSpace *as)
1897{
99e86347 1898 FlatView *view;
7664e80c
AK
1899 FlatRange *fr;
1900
221b3a3f 1901 if (listener->address_space_filter
f6790af6 1902 && listener->address_space_filter != as) {
221b3a3f
JG
1903 return;
1904 }
1905
7664e80c 1906 if (global_dirty_log) {
975aefe0
AK
1907 if (listener->log_global_start) {
1908 listener->log_global_start(listener);
1909 }
7664e80c 1910 }
975aefe0 1911
856d7245 1912 view = address_space_get_flatview(as);
99e86347 1913 FOR_EACH_FLAT_RANGE(fr, view) {
7664e80c
AK
1914 MemoryRegionSection section = {
1915 .mr = fr->mr,
f6790af6 1916 .address_space = as,
7664e80c 1917 .offset_within_region = fr->offset_in_region,
052e87b0 1918 .size = fr->addr.size,
7664e80c 1919 .offset_within_address_space = int128_get64(fr->addr.start),
7a8499e8 1920 .readonly = fr->readonly,
7664e80c 1921 };
975aefe0
AK
1922 if (listener->region_add) {
1923 listener->region_add(listener, &section);
1924 }
7664e80c 1925 }
856d7245 1926 flatview_unref(view);
7664e80c
AK
1927}
1928
f6790af6 1929void memory_listener_register(MemoryListener *listener, AddressSpace *filter)
7664e80c 1930{
72e22d2f 1931 MemoryListener *other = NULL;
0d673e36 1932 AddressSpace *as;
72e22d2f 1933
7376e582 1934 listener->address_space_filter = filter;
72e22d2f
AK
1935 if (QTAILQ_EMPTY(&memory_listeners)
1936 || listener->priority >= QTAILQ_LAST(&memory_listeners,
1937 memory_listeners)->priority) {
1938 QTAILQ_INSERT_TAIL(&memory_listeners, listener, link);
1939 } else {
1940 QTAILQ_FOREACH(other, &memory_listeners, link) {
1941 if (listener->priority < other->priority) {
1942 break;
1943 }
1944 }
1945 QTAILQ_INSERT_BEFORE(other, listener, link);
1946 }
0d673e36
AK
1947
1948 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
1949 listener_add_address_space(listener, as);
1950 }
7664e80c
AK
1951}
1952
1953void memory_listener_unregister(MemoryListener *listener)
1954{
72e22d2f 1955 QTAILQ_REMOVE(&memory_listeners, listener, link);
86e775c6 1956}
e2177955 1957
7dca8043 1958void address_space_init(AddressSpace *as, MemoryRegion *root, const char *name)
1c0ffa58 1959{
856d7245
PB
1960 if (QTAILQ_EMPTY(&address_spaces)) {
1961 memory_init();
1962 }
1963
59023ef4 1964 memory_region_transaction_begin();
8786db7c
AK
1965 as->root = root;
1966 as->current_map = g_new(FlatView, 1);
1967 flatview_init(as->current_map);
4c19eb72
AK
1968 as->ioeventfd_nb = 0;
1969 as->ioeventfds = NULL;
0d673e36 1970 QTAILQ_INSERT_TAIL(&address_spaces, as, address_spaces_link);
7dca8043 1971 as->name = g_strdup(name ? name : "anonymous");
ac1970fb 1972 address_space_init_dispatch(as);
f43793c7
PB
1973 memory_region_update_pending |= root->enabled;
1974 memory_region_transaction_commit();
1c0ffa58 1975}
658b2224 1976
83f3c251
AK
1977void address_space_destroy(AddressSpace *as)
1978{
078c44f4
DG
1979 MemoryListener *listener;
1980
83f3c251
AK
1981 /* Flush out anything from MemoryListeners listening in on this */
1982 memory_region_transaction_begin();
1983 as->root = NULL;
1984 memory_region_transaction_commit();
1985 QTAILQ_REMOVE(&address_spaces, as, address_spaces_link);
1986 address_space_destroy_dispatch(as);
078c44f4
DG
1987
1988 QTAILQ_FOREACH(listener, &memory_listeners, link) {
1989 assert(listener->address_space_filter != as);
1990 }
1991
856d7245 1992 flatview_unref(as->current_map);
7dca8043 1993 g_free(as->name);
4c19eb72 1994 g_free(as->ioeventfds);
83f3c251
AK
1995}
1996
791af8c8 1997bool io_mem_read(MemoryRegion *mr, hwaddr addr, uint64_t *pval, unsigned size)
acbbec5d 1998{
791af8c8 1999 return memory_region_dispatch_read(mr, addr, pval, size);
acbbec5d
AK
2000}
2001
791af8c8 2002bool io_mem_write(MemoryRegion *mr, hwaddr addr,
acbbec5d
AK
2003 uint64_t val, unsigned size)
2004{
791af8c8 2005 return memory_region_dispatch_write(mr, addr, val, size);
acbbec5d
AK
2006}
2007
314e2987
BS
2008typedef struct MemoryRegionList MemoryRegionList;
2009
2010struct MemoryRegionList {
2011 const MemoryRegion *mr;
314e2987
BS
2012 QTAILQ_ENTRY(MemoryRegionList) queue;
2013};
2014
2015typedef QTAILQ_HEAD(queue, MemoryRegionList) MemoryRegionListHead;
2016
2017static void mtree_print_mr(fprintf_function mon_printf, void *f,
2018 const MemoryRegion *mr, unsigned int level,
a8170e5e 2019 hwaddr base,
9479c57a 2020 MemoryRegionListHead *alias_print_queue)
314e2987 2021{
9479c57a
JK
2022 MemoryRegionList *new_ml, *ml, *next_ml;
2023 MemoryRegionListHead submr_print_queue;
314e2987
BS
2024 const MemoryRegion *submr;
2025 unsigned int i;
2026
7ea692b2 2027 if (!mr || !mr->enabled) {
314e2987
BS
2028 return;
2029 }
2030
2031 for (i = 0; i < level; i++) {
2032 mon_printf(f, " ");
2033 }
2034
2035 if (mr->alias) {
2036 MemoryRegionList *ml;
2037 bool found = false;
2038
2039 /* check if the alias is already in the queue */
9479c57a 2040 QTAILQ_FOREACH(ml, alias_print_queue, queue) {
f54bb15f 2041 if (ml->mr == mr->alias) {
314e2987
BS
2042 found = true;
2043 }
2044 }
2045
2046 if (!found) {
2047 ml = g_new(MemoryRegionList, 1);
2048 ml->mr = mr->alias;
9479c57a 2049 QTAILQ_INSERT_TAIL(alias_print_queue, ml, queue);
314e2987 2050 }
4896d74b
JK
2051 mon_printf(f, TARGET_FMT_plx "-" TARGET_FMT_plx
2052 " (prio %d, %c%c): alias %s @%s " TARGET_FMT_plx
2053 "-" TARGET_FMT_plx "\n",
314e2987 2054 base + mr->addr,
08dafab4 2055 base + mr->addr
fd1d9926
AW
2056 + (int128_nz(mr->size) ?
2057 (hwaddr)int128_get64(int128_sub(mr->size,
2058 int128_one())) : 0),
4b474ba7 2059 mr->priority,
5f9a5ea1
JK
2060 mr->romd_mode ? 'R' : '-',
2061 !mr->readonly && !(mr->rom_device && mr->romd_mode) ? 'W'
2062 : '-',
3fb18b4d
PC
2063 memory_region_name(mr),
2064 memory_region_name(mr->alias),
314e2987 2065 mr->alias_offset,
08dafab4 2066 mr->alias_offset
a66670c7
AK
2067 + (int128_nz(mr->size) ?
2068 (hwaddr)int128_get64(int128_sub(mr->size,
2069 int128_one())) : 0));
314e2987 2070 } else {
4896d74b
JK
2071 mon_printf(f,
2072 TARGET_FMT_plx "-" TARGET_FMT_plx " (prio %d, %c%c): %s\n",
314e2987 2073 base + mr->addr,
08dafab4 2074 base + mr->addr
fd1d9926
AW
2075 + (int128_nz(mr->size) ?
2076 (hwaddr)int128_get64(int128_sub(mr->size,
2077 int128_one())) : 0),
4b474ba7 2078 mr->priority,
5f9a5ea1
JK
2079 mr->romd_mode ? 'R' : '-',
2080 !mr->readonly && !(mr->rom_device && mr->romd_mode) ? 'W'
2081 : '-',
3fb18b4d 2082 memory_region_name(mr));
314e2987 2083 }
9479c57a
JK
2084
2085 QTAILQ_INIT(&submr_print_queue);
2086
314e2987 2087 QTAILQ_FOREACH(submr, &mr->subregions, subregions_link) {
9479c57a
JK
2088 new_ml = g_new(MemoryRegionList, 1);
2089 new_ml->mr = submr;
2090 QTAILQ_FOREACH(ml, &submr_print_queue, queue) {
2091 if (new_ml->mr->addr < ml->mr->addr ||
2092 (new_ml->mr->addr == ml->mr->addr &&
2093 new_ml->mr->priority > ml->mr->priority)) {
2094 QTAILQ_INSERT_BEFORE(ml, new_ml, queue);
2095 new_ml = NULL;
2096 break;
2097 }
2098 }
2099 if (new_ml) {
2100 QTAILQ_INSERT_TAIL(&submr_print_queue, new_ml, queue);
2101 }
2102 }
2103
2104 QTAILQ_FOREACH(ml, &submr_print_queue, queue) {
2105 mtree_print_mr(mon_printf, f, ml->mr, level + 1, base + mr->addr,
2106 alias_print_queue);
2107 }
2108
88365e47 2109 QTAILQ_FOREACH_SAFE(ml, &submr_print_queue, queue, next_ml) {
9479c57a 2110 g_free(ml);
314e2987
BS
2111 }
2112}
2113
2114void mtree_info(fprintf_function mon_printf, void *f)
2115{
2116 MemoryRegionListHead ml_head;
2117 MemoryRegionList *ml, *ml2;
0d673e36 2118 AddressSpace *as;
314e2987
BS
2119
2120 QTAILQ_INIT(&ml_head);
2121
0d673e36 2122 QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
0d673e36
AK
2123 mon_printf(f, "%s\n", as->name);
2124 mtree_print_mr(mon_printf, f, as->root, 0, 0, &ml_head);
b9f9be88
BS
2125 }
2126
2127 mon_printf(f, "aliases\n");
314e2987
BS
2128 /* print aliased regions */
2129 QTAILQ_FOREACH(ml, &ml_head, queue) {
f54bb15f
PB
2130 mon_printf(f, "%s\n", memory_region_name(ml->mr));
2131 mtree_print_mr(mon_printf, f, ml->mr, 0, 0, &ml_head);
314e2987
BS
2132 }
2133
2134 QTAILQ_FOREACH_SAFE(ml, &ml_head, queue, ml2) {
88365e47 2135 g_free(ml);
314e2987 2136 }
314e2987 2137}
b4fefef9
PC
2138
2139static const TypeInfo memory_region_info = {
2140 .parent = TYPE_OBJECT,
2141 .name = TYPE_MEMORY_REGION,
2142 .instance_size = sizeof(MemoryRegion),
2143 .instance_init = memory_region_initfn,
2144 .instance_finalize = memory_region_finalize,
2145};
2146
2147static void memory_register_types(void)
2148{
2149 type_register_static(&memory_region_info);
2150}
2151
2152type_init(memory_register_types)