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bellard54936002003-05-13 00:25:15 +00001/*
Blue Swirl5b6dd862012-12-02 16:04:43 +00002 * Virtual page mapping
ths5fafdf22007-09-16 21:08:06 +00003 *
bellard54936002003-05-13 00:25:15 +00004 * Copyright (c) 2003 Fabrice Bellard
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
Blue Swirl8167ee82009-07-16 20:47:01 +000017 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
bellard54936002003-05-13 00:25:15 +000018 */
Peter Maydell7b31bbc2016-01-26 18:16:56 +000019#include "qemu/osdep.h"
Markus Armbrusterda34e652016-03-14 09:01:28 +010020#include "qapi/error.h"
Stefan Weil777872e2014-02-23 18:02:08 +010021#ifndef _WIN32
bellardd5a8f072004-09-29 21:15:28 +000022#endif
bellard54936002003-05-13 00:25:15 +000023
Veronia Bahaaf348b6d2016-03-20 19:16:19 +020024#include "qemu/cutils.h"
bellard6180a182003-09-30 21:04:53 +000025#include "cpu.h"
Paolo Bonzini63c91552016-03-15 13:18:37 +010026#include "exec/exec-all.h"
Juan Quintela51180422017-04-24 20:50:19 +020027#include "exec/target_page.h"
bellardb67d9a52008-05-23 09:57:34 +000028#include "tcg.h"
Paolo Bonzini741da0d2014-06-27 08:40:04 +020029#include "hw/qdev-core.h"
Michael S. Tsirkin4485bd22015-03-11 07:56:34 +010030#if !defined(CONFIG_USER_ONLY)
Marcel Apfelbaum47c8ca52015-02-04 17:43:54 +020031#include "hw/boards.h"
Paolo Bonzini33c11872016-03-15 16:58:45 +010032#include "hw/xen/xen.h"
Michael S. Tsirkin4485bd22015-03-11 07:56:34 +010033#endif
Paolo Bonzini9c17d612012-12-17 18:20:04 +010034#include "sysemu/kvm.h"
Markus Armbruster2ff3de62013-07-04 15:09:22 +020035#include "sysemu/sysemu.h"
Paolo Bonzini1de7afc2012-12-17 18:20:00 +010036#include "qemu/timer.h"
37#include "qemu/config-file.h"
Andreas Färber75a34032013-09-02 16:57:02 +020038#include "qemu/error-report.h"
pbrook53a59602006-03-25 19:31:22 +000039#if defined(CONFIG_USER_ONLY)
Markus Armbrustera9c94272016-06-22 19:11:19 +020040#include "qemu.h"
Jun Nakajima432d2682010-08-31 16:41:25 +010041#else /* !CONFIG_USER_ONLY */
Paolo Bonzini741da0d2014-06-27 08:40:04 +020042#include "hw/hw.h"
43#include "exec/memory.h"
Paolo Bonzinidf43d492016-03-16 10:24:54 +010044#include "exec/ioport.h"
Paolo Bonzini741da0d2014-06-27 08:40:04 +020045#include "sysemu/dma.h"
Alexey Kardashevskiy9c607662017-03-02 13:36:11 +110046#include "sysemu/numa.h"
Christian Borntraeger79ca7a12017-03-07 15:19:08 +010047#include "sysemu/hw_accel.h"
Paolo Bonzini741da0d2014-06-27 08:40:04 +020048#include "exec/address-spaces.h"
Paolo Bonzini9c17d612012-12-17 18:20:04 +010049#include "sysemu/xen-mapcache.h"
Daniel P. Berrange0ab8ed12017-01-25 16:14:15 +000050#include "trace-root.h"
Dr. David Alan Gilbertd3a50382017-02-24 18:28:32 +000051
Dr. David Alan Gilberte2fa71f2017-02-24 18:28:33 +000052#ifdef CONFIG_FALLOCATE_PUNCH_HOLE
53#include <fcntl.h>
54#include <linux/falloc.h>
55#endif
56
pbrook53a59602006-03-25 19:31:22 +000057#endif
Paolo Bonzini0d6d3c82012-11-14 15:45:02 +010058#include "exec/cpu-all.h"
Mike Day0dc3f442013-09-05 14:41:35 -040059#include "qemu/rcu_queue.h"
Jan Kiszka4840f102015-06-18 18:47:22 +020060#include "qemu/main-loop.h"
Blue Swirl5b6dd862012-12-02 16:04:43 +000061#include "translate-all.h"
Pavel Dovgalyuk76159362015-09-17 19:25:07 +030062#include "sysemu/replay.h"
Blue Swirl0cac1b62012-04-09 16:50:52 +000063
Paolo Bonzini022c62c2012-12-17 18:19:49 +010064#include "exec/memory-internal.h"
Juan Quintela220c3eb2013-10-14 17:13:59 +020065#include "exec/ram_addr.h"
Paolo Bonzini508127e2016-01-07 16:55:28 +030066#include "exec/log.h"
Avi Kivity67d95c12011-12-15 15:25:22 +020067
Bharata B Rao9dfeca72016-05-12 09:18:12 +053068#include "migration/vmstate.h"
69
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +020070#include "qemu/range.h"
Michael S. Tsirkin794e8f32015-09-24 14:41:17 +030071#ifndef _WIN32
72#include "qemu/mmap-alloc.h"
73#endif
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +020074
Peter Xube9b23c2017-05-12 12:17:41 +080075#include "monitor/monitor.h"
76
blueswir1db7b5422007-05-26 17:36:03 +000077//#define DEBUG_SUBPAGE
ths1196be32007-03-17 15:17:58 +000078
pbrook99773bd2006-04-16 15:14:59 +000079#if !defined(CONFIG_USER_ONLY)
Mike Day0dc3f442013-09-05 14:41:35 -040080/* ram_list is read under rcu_read_lock()/rcu_read_unlock(). Writes
81 * are protected by the ramlist lock.
82 */
Mike Day0d53d9f2015-01-21 13:45:24 +010083RAMList ram_list = { .blocks = QLIST_HEAD_INITIALIZER(ram_list.blocks) };
Avi Kivity62152b82011-07-26 14:26:14 +030084
85static MemoryRegion *system_memory;
Avi Kivity309cb472011-08-08 16:09:03 +030086static MemoryRegion *system_io;
Avi Kivity62152b82011-07-26 14:26:14 +030087
Avi Kivityf6790af2012-10-02 20:13:51 +020088AddressSpace address_space_io;
89AddressSpace address_space_memory;
Avi Kivity2673a5d2012-10-02 18:49:28 +020090
Paolo Bonzini0844e002013-05-24 14:37:28 +020091MemoryRegion io_mem_rom, io_mem_notdirty;
Jan Kiszkaacc9d802013-05-26 21:55:37 +020092static MemoryRegion io_mem_unassigned;
Avi Kivity0e0df1e2012-01-02 00:32:15 +020093
Paolo Bonzini7bd4f432014-05-14 17:43:22 +080094/* RAM is pre-allocated and passed into qemu_ram_alloc_from_ptr */
95#define RAM_PREALLOC (1 << 0)
96
Paolo Bonzinidbcb8982014-06-10 19:15:24 +080097/* RAM is mmap-ed with MAP_SHARED */
98#define RAM_SHARED (1 << 1)
99
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +0200100/* Only a portion of RAM (used_length) is actually used, and migrated.
101 * This used_length size can change across reboots.
102 */
103#define RAM_RESIZEABLE (1 << 2)
104
pbrooke2eef172008-06-08 01:09:01 +0000105#endif
bellard9fa3e852004-01-04 18:06:42 +0000106
Peter Maydell20bccb82016-10-24 16:26:49 +0100107#ifdef TARGET_PAGE_BITS_VARY
108int target_page_bits;
109bool target_page_bits_decided;
110#endif
111
Andreas Färberbdc44642013-06-24 23:50:24 +0200112struct CPUTailQ cpus = QTAILQ_HEAD_INITIALIZER(cpus);
bellard6a00d602005-11-21 23:25:50 +0000113/* current CPU in the current thread. It is only valid inside
114 cpu_exec() */
Paolo Bonzinif240eb62015-08-26 00:17:58 +0200115__thread CPUState *current_cpu;
pbrook2e70f6e2008-06-29 01:03:05 +0000116/* 0 = Do not count executed instructions.
thsbf20dc02008-06-30 17:22:19 +0000117 1 = Precise instruction counting.
pbrook2e70f6e2008-06-29 01:03:05 +0000118 2 = Adaptive rate instruction counting. */
Paolo Bonzini5708fc62012-11-26 15:36:40 +0100119int use_icount;
bellard6a00d602005-11-21 23:25:50 +0000120
Peter Maydell20bccb82016-10-24 16:26:49 +0100121bool set_preferred_target_page_bits(int bits)
122{
123 /* The target page size is the lowest common denominator for all
124 * the CPUs in the system, so we can only make it smaller, never
125 * larger. And we can't make it smaller once we've committed to
126 * a particular size.
127 */
128#ifdef TARGET_PAGE_BITS_VARY
129 assert(bits >= TARGET_PAGE_BITS_MIN);
130 if (target_page_bits == 0 || target_page_bits > bits) {
131 if (target_page_bits_decided) {
132 return false;
133 }
134 target_page_bits = bits;
135 }
136#endif
137 return true;
138}
139
pbrooke2eef172008-06-08 01:09:01 +0000140#if !defined(CONFIG_USER_ONLY)
Avi Kivity4346ae32012-02-10 17:00:01 +0200141
Peter Maydell20bccb82016-10-24 16:26:49 +0100142static void finalize_target_page_bits(void)
143{
144#ifdef TARGET_PAGE_BITS_VARY
145 if (target_page_bits == 0) {
146 target_page_bits = TARGET_PAGE_BITS_MIN;
147 }
148 target_page_bits_decided = true;
149#endif
150}
151
Paolo Bonzini1db8abb2013-05-21 12:07:21 +0200152typedef struct PhysPageEntry PhysPageEntry;
153
154struct PhysPageEntry {
Michael S. Tsirkin9736e552013-11-11 14:42:43 +0200155 /* How many bits skip to next level (in units of L2_SIZE). 0 for a leaf. */
Michael S. Tsirkin8b795762013-11-11 14:51:56 +0200156 uint32_t skip : 6;
Michael S. Tsirkin9736e552013-11-11 14:42:43 +0200157 /* index into phys_sections (!skip) or phys_map_nodes (skip) */
Michael S. Tsirkin8b795762013-11-11 14:51:56 +0200158 uint32_t ptr : 26;
Paolo Bonzini1db8abb2013-05-21 12:07:21 +0200159};
160
Michael S. Tsirkin8b795762013-11-11 14:51:56 +0200161#define PHYS_MAP_NODE_NIL (((uint32_t)~0) >> 6)
162
Paolo Bonzini03f49952013-11-07 17:14:36 +0100163/* Size of the L2 (and L3, etc) page tables. */
Paolo Bonzini57271d62013-11-07 17:14:37 +0100164#define ADDR_SPACE_BITS 64
Paolo Bonzini03f49952013-11-07 17:14:36 +0100165
Michael S. Tsirkin026736c2013-11-13 20:13:03 +0200166#define P_L2_BITS 9
Paolo Bonzini03f49952013-11-07 17:14:36 +0100167#define P_L2_SIZE (1 << P_L2_BITS)
168
169#define P_L2_LEVELS (((ADDR_SPACE_BITS - TARGET_PAGE_BITS - 1) / P_L2_BITS) + 1)
170
171typedef PhysPageEntry Node[P_L2_SIZE];
Paolo Bonzini0475d942013-05-29 12:28:21 +0200172
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200173typedef struct PhysPageMap {
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100174 struct rcu_head rcu;
175
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200176 unsigned sections_nb;
177 unsigned sections_nb_alloc;
178 unsigned nodes_nb;
179 unsigned nodes_nb_alloc;
180 Node *nodes;
181 MemoryRegionSection *sections;
182} PhysPageMap;
183
Paolo Bonzini1db8abb2013-05-21 12:07:21 +0200184struct AddressSpaceDispatch {
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100185 struct rcu_head rcu;
186
Fam Zheng729633c2016-03-01 14:18:24 +0800187 MemoryRegionSection *mru_section;
Paolo Bonzini1db8abb2013-05-21 12:07:21 +0200188 /* This is a multi-level map on the physical address space.
189 * The bottom level has pointers to MemoryRegionSections.
190 */
191 PhysPageEntry phys_map;
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200192 PhysPageMap map;
Jan Kiszkaacc9d802013-05-26 21:55:37 +0200193 AddressSpace *as;
Paolo Bonzini1db8abb2013-05-21 12:07:21 +0200194};
195
Jan Kiszka90260c62013-05-26 21:46:51 +0200196#define SUBPAGE_IDX(addr) ((addr) & ~TARGET_PAGE_MASK)
197typedef struct subpage_t {
198 MemoryRegion iomem;
Jan Kiszkaacc9d802013-05-26 21:55:37 +0200199 AddressSpace *as;
Jan Kiszka90260c62013-05-26 21:46:51 +0200200 hwaddr base;
Vijaya Kumar K2615fab2016-10-24 16:26:49 +0100201 uint16_t sub_section[];
Jan Kiszka90260c62013-05-26 21:46:51 +0200202} subpage_t;
203
Liu Ping Fanb41aac42013-05-29 11:09:17 +0200204#define PHYS_SECTION_UNASSIGNED 0
205#define PHYS_SECTION_NOTDIRTY 1
206#define PHYS_SECTION_ROM 2
207#define PHYS_SECTION_WATCH 3
Avi Kivity5312bd82012-02-12 18:32:55 +0200208
pbrooke2eef172008-06-08 01:09:01 +0000209static void io_mem_init(void);
Avi Kivity62152b82011-07-26 14:26:14 +0300210static void memory_map_init(void);
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000211static void tcg_commit(MemoryListener *listener);
pbrooke2eef172008-06-08 01:09:01 +0000212
Avi Kivity1ec9b902012-01-02 12:47:48 +0200213static MemoryRegion io_mem_watch;
Peter Maydell32857f42015-10-01 15:29:50 +0100214
215/**
216 * CPUAddressSpace: all the information a CPU needs about an AddressSpace
217 * @cpu: the CPU whose AddressSpace this is
218 * @as: the AddressSpace itself
219 * @memory_dispatch: its dispatch pointer (cached, RCU protected)
220 * @tcg_as_listener: listener for tracking changes to the AddressSpace
221 */
222struct CPUAddressSpace {
223 CPUState *cpu;
224 AddressSpace *as;
225 struct AddressSpaceDispatch *memory_dispatch;
226 MemoryListener tcg_as_listener;
227};
228
Gerd Hoffmann8deaf122017-04-21 11:16:25 +0200229struct DirtyBitmapSnapshot {
230 ram_addr_t start;
231 ram_addr_t end;
232 unsigned long dirty[];
233};
234
pbrook6658ffb2007-03-16 23:58:11 +0000235#endif
bellard54936002003-05-13 00:25:15 +0000236
Paul Brook6d9a1302010-02-28 23:55:53 +0000237#if !defined(CONFIG_USER_ONLY)
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200238
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200239static void phys_map_node_reserve(PhysPageMap *map, unsigned nodes)
Avi Kivityf7bf5462012-02-13 20:12:05 +0200240{
Peter Lieven101420b2016-07-15 12:03:50 +0200241 static unsigned alloc_hint = 16;
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200242 if (map->nodes_nb + nodes > map->nodes_nb_alloc) {
Peter Lieven101420b2016-07-15 12:03:50 +0200243 map->nodes_nb_alloc = MAX(map->nodes_nb_alloc, alloc_hint);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200244 map->nodes_nb_alloc = MAX(map->nodes_nb_alloc, map->nodes_nb + nodes);
245 map->nodes = g_renew(Node, map->nodes, map->nodes_nb_alloc);
Peter Lieven101420b2016-07-15 12:03:50 +0200246 alloc_hint = map->nodes_nb_alloc;
Avi Kivityf7bf5462012-02-13 20:12:05 +0200247 }
248}
249
Paolo Bonzinidb946042015-05-21 15:12:29 +0200250static uint32_t phys_map_node_alloc(PhysPageMap *map, bool leaf)
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200251{
252 unsigned i;
Michael S. Tsirkin8b795762013-11-11 14:51:56 +0200253 uint32_t ret;
Paolo Bonzinidb946042015-05-21 15:12:29 +0200254 PhysPageEntry e;
255 PhysPageEntry *p;
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200256
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200257 ret = map->nodes_nb++;
Paolo Bonzinidb946042015-05-21 15:12:29 +0200258 p = map->nodes[ret];
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200259 assert(ret != PHYS_MAP_NODE_NIL);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200260 assert(ret != map->nodes_nb_alloc);
Paolo Bonzinidb946042015-05-21 15:12:29 +0200261
262 e.skip = leaf ? 0 : 1;
263 e.ptr = leaf ? PHYS_SECTION_UNASSIGNED : PHYS_MAP_NODE_NIL;
Paolo Bonzini03f49952013-11-07 17:14:36 +0100264 for (i = 0; i < P_L2_SIZE; ++i) {
Paolo Bonzinidb946042015-05-21 15:12:29 +0200265 memcpy(&p[i], &e, sizeof(e));
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200266 }
Avi Kivityf7bf5462012-02-13 20:12:05 +0200267 return ret;
Avi Kivityd6f2ea22012-02-12 20:12:49 +0200268}
269
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200270static void phys_page_set_level(PhysPageMap *map, PhysPageEntry *lp,
271 hwaddr *index, hwaddr *nb, uint16_t leaf,
Avi Kivity29990972012-02-13 20:21:20 +0200272 int level)
Avi Kivityf7bf5462012-02-13 20:12:05 +0200273{
274 PhysPageEntry *p;
Paolo Bonzini03f49952013-11-07 17:14:36 +0100275 hwaddr step = (hwaddr)1 << (level * P_L2_BITS);
Avi Kivityf7bf5462012-02-13 20:12:05 +0200276
Michael S. Tsirkin9736e552013-11-11 14:42:43 +0200277 if (lp->skip && lp->ptr == PHYS_MAP_NODE_NIL) {
Paolo Bonzinidb946042015-05-21 15:12:29 +0200278 lp->ptr = phys_map_node_alloc(map, level == 0);
Avi Kivityf7bf5462012-02-13 20:12:05 +0200279 }
Paolo Bonzinidb946042015-05-21 15:12:29 +0200280 p = map->nodes[lp->ptr];
Paolo Bonzini03f49952013-11-07 17:14:36 +0100281 lp = &p[(*index >> (level * P_L2_BITS)) & (P_L2_SIZE - 1)];
Avi Kivityf7bf5462012-02-13 20:12:05 +0200282
Paolo Bonzini03f49952013-11-07 17:14:36 +0100283 while (*nb && lp < &p[P_L2_SIZE]) {
Avi Kivity07f07b32012-02-13 20:45:32 +0200284 if ((*index & (step - 1)) == 0 && *nb >= step) {
Michael S. Tsirkin9736e552013-11-11 14:42:43 +0200285 lp->skip = 0;
Avi Kivityc19e8802012-02-13 20:25:31 +0200286 lp->ptr = leaf;
Avi Kivity07f07b32012-02-13 20:45:32 +0200287 *index += step;
288 *nb -= step;
Avi Kivity29990972012-02-13 20:21:20 +0200289 } else {
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200290 phys_page_set_level(map, lp, index, nb, leaf, level - 1);
Avi Kivity29990972012-02-13 20:21:20 +0200291 }
292 ++lp;
Avi Kivityf7bf5462012-02-13 20:12:05 +0200293 }
294}
295
Avi Kivityac1970f2012-10-03 16:22:53 +0200296static void phys_page_set(AddressSpaceDispatch *d,
Avi Kivitya8170e52012-10-23 12:30:10 +0200297 hwaddr index, hwaddr nb,
Avi Kivity29990972012-02-13 20:21:20 +0200298 uint16_t leaf)
bellard92e873b2004-05-21 14:52:29 +0000299{
Avi Kivity29990972012-02-13 20:21:20 +0200300 /* Wildly overreserve - it doesn't matter much. */
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200301 phys_map_node_reserve(&d->map, 3 * P_L2_LEVELS);
bellard92e873b2004-05-21 14:52:29 +0000302
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200303 phys_page_set_level(&d->map, &d->phys_map, &index, &nb, leaf, P_L2_LEVELS - 1);
bellard92e873b2004-05-21 14:52:29 +0000304}
305
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200306/* Compact a non leaf page entry. Simply detect that the entry has a single child,
307 * and update our entry so we can skip it and go directly to the destination.
308 */
Marc-André Lureauefee6782016-09-28 16:37:20 +0400309static void phys_page_compact(PhysPageEntry *lp, Node *nodes)
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200310{
311 unsigned valid_ptr = P_L2_SIZE;
312 int valid = 0;
313 PhysPageEntry *p;
314 int i;
315
316 if (lp->ptr == PHYS_MAP_NODE_NIL) {
317 return;
318 }
319
320 p = nodes[lp->ptr];
321 for (i = 0; i < P_L2_SIZE; i++) {
322 if (p[i].ptr == PHYS_MAP_NODE_NIL) {
323 continue;
324 }
325
326 valid_ptr = i;
327 valid++;
328 if (p[i].skip) {
Marc-André Lureauefee6782016-09-28 16:37:20 +0400329 phys_page_compact(&p[i], nodes);
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200330 }
331 }
332
333 /* We can only compress if there's only one child. */
334 if (valid != 1) {
335 return;
336 }
337
338 assert(valid_ptr < P_L2_SIZE);
339
340 /* Don't compress if it won't fit in the # of bits we have. */
341 if (lp->skip + p[valid_ptr].skip >= (1 << 3)) {
342 return;
343 }
344
345 lp->ptr = p[valid_ptr].ptr;
346 if (!p[valid_ptr].skip) {
347 /* If our only child is a leaf, make this a leaf. */
348 /* By design, we should have made this node a leaf to begin with so we
349 * should never reach here.
350 * But since it's so simple to handle this, let's do it just in case we
351 * change this rule.
352 */
353 lp->skip = 0;
354 } else {
355 lp->skip += p[valid_ptr].skip;
356 }
357}
358
359static void phys_page_compact_all(AddressSpaceDispatch *d, int nodes_nb)
360{
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200361 if (d->phys_map.skip) {
Marc-André Lureauefee6782016-09-28 16:37:20 +0400362 phys_page_compact(&d->phys_map, d->map.nodes);
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200363 }
364}
365
Fam Zheng29cb5332016-03-01 14:18:23 +0800366static inline bool section_covers_addr(const MemoryRegionSection *section,
367 hwaddr addr)
368{
369 /* Memory topology clips a memory region to [0, 2^64); size.hi > 0 means
370 * the section must cover the entire address space.
371 */
Richard Henderson258dfaa2016-06-29 15:48:03 -0700372 return int128_gethi(section->size) ||
Fam Zheng29cb5332016-03-01 14:18:23 +0800373 range_covers_byte(section->offset_within_address_space,
Richard Henderson258dfaa2016-06-29 15:48:03 -0700374 int128_getlo(section->size), addr);
Fam Zheng29cb5332016-03-01 14:18:23 +0800375}
376
Michael S. Tsirkin97115a82013-11-13 20:08:19 +0200377static MemoryRegionSection *phys_page_find(PhysPageEntry lp, hwaddr addr,
Paolo Bonzini9affd6f2013-05-29 12:09:47 +0200378 Node *nodes, MemoryRegionSection *sections)
bellard92e873b2004-05-21 14:52:29 +0000379{
Avi Kivity31ab2b42012-02-13 16:44:19 +0200380 PhysPageEntry *p;
Michael S. Tsirkin97115a82013-11-13 20:08:19 +0200381 hwaddr index = addr >> TARGET_PAGE_BITS;
Avi Kivity31ab2b42012-02-13 16:44:19 +0200382 int i;
Avi Kivityf1f6e3b2011-11-20 17:52:22 +0200383
Michael S. Tsirkin9736e552013-11-11 14:42:43 +0200384 for (i = P_L2_LEVELS; lp.skip && (i -= lp.skip) >= 0;) {
Avi Kivityc19e8802012-02-13 20:25:31 +0200385 if (lp.ptr == PHYS_MAP_NODE_NIL) {
Paolo Bonzini9affd6f2013-05-29 12:09:47 +0200386 return &sections[PHYS_SECTION_UNASSIGNED];
Avi Kivity31ab2b42012-02-13 16:44:19 +0200387 }
Paolo Bonzini9affd6f2013-05-29 12:09:47 +0200388 p = nodes[lp.ptr];
Paolo Bonzini03f49952013-11-07 17:14:36 +0100389 lp = p[(index >> (i * P_L2_BITS)) & (P_L2_SIZE - 1)];
Avi Kivityf1f6e3b2011-11-20 17:52:22 +0200390 }
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200391
Fam Zheng29cb5332016-03-01 14:18:23 +0800392 if (section_covers_addr(&sections[lp.ptr], addr)) {
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +0200393 return &sections[lp.ptr];
394 } else {
395 return &sections[PHYS_SECTION_UNASSIGNED];
396 }
Avi Kivityf3705d52012-03-08 16:16:34 +0200397}
398
Blue Swirle5548612012-04-21 13:08:33 +0000399bool memory_region_is_unassigned(MemoryRegion *mr)
400{
Paolo Bonzini2a8e7492013-05-24 14:34:08 +0200401 return mr != &io_mem_rom && mr != &io_mem_notdirty && !mr->rom_device
Blue Swirle5548612012-04-21 13:08:33 +0000402 && mr != &io_mem_watch;
403}
Paolo Bonzini149f54b2013-05-24 12:59:37 +0200404
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100405/* Called from RCU critical section */
Paolo Bonzinic7086b42013-06-02 15:27:39 +0200406static MemoryRegionSection *address_space_lookup_region(AddressSpaceDispatch *d,
Jan Kiszka90260c62013-05-26 21:46:51 +0200407 hwaddr addr,
408 bool resolve_subpage)
Jan Kiszka9f029602013-05-06 16:48:02 +0200409{
Fam Zheng729633c2016-03-01 14:18:24 +0800410 MemoryRegionSection *section = atomic_read(&d->mru_section);
Jan Kiszka90260c62013-05-26 21:46:51 +0200411 subpage_t *subpage;
Fam Zheng729633c2016-03-01 14:18:24 +0800412 bool update;
Jan Kiszka90260c62013-05-26 21:46:51 +0200413
Fam Zheng729633c2016-03-01 14:18:24 +0800414 if (section && section != &d->map.sections[PHYS_SECTION_UNASSIGNED] &&
415 section_covers_addr(section, addr)) {
416 update = false;
417 } else {
418 section = phys_page_find(d->phys_map, addr, d->map.nodes,
419 d->map.sections);
420 update = true;
421 }
Jan Kiszka90260c62013-05-26 21:46:51 +0200422 if (resolve_subpage && section->mr->subpage) {
423 subpage = container_of(section->mr, subpage_t, iomem);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +0200424 section = &d->map.sections[subpage->sub_section[SUBPAGE_IDX(addr)]];
Jan Kiszka90260c62013-05-26 21:46:51 +0200425 }
Fam Zheng729633c2016-03-01 14:18:24 +0800426 if (update) {
427 atomic_set(&d->mru_section, section);
428 }
Jan Kiszka90260c62013-05-26 21:46:51 +0200429 return section;
Jan Kiszka9f029602013-05-06 16:48:02 +0200430}
431
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100432/* Called from RCU critical section */
Jan Kiszka90260c62013-05-26 21:46:51 +0200433static MemoryRegionSection *
Paolo Bonzinic7086b42013-06-02 15:27:39 +0200434address_space_translate_internal(AddressSpaceDispatch *d, hwaddr addr, hwaddr *xlat,
Jan Kiszka90260c62013-05-26 21:46:51 +0200435 hwaddr *plen, bool resolve_subpage)
Paolo Bonzini149f54b2013-05-24 12:59:37 +0200436{
437 MemoryRegionSection *section;
Paolo Bonzini965eb2f2015-06-17 10:40:27 +0200438 MemoryRegion *mr;
Paolo Bonzinia87f3952014-02-07 15:47:46 +0100439 Int128 diff;
Paolo Bonzini149f54b2013-05-24 12:59:37 +0200440
Paolo Bonzinic7086b42013-06-02 15:27:39 +0200441 section = address_space_lookup_region(d, addr, resolve_subpage);
Paolo Bonzini149f54b2013-05-24 12:59:37 +0200442 /* Compute offset within MemoryRegionSection */
443 addr -= section->offset_within_address_space;
444
445 /* Compute offset within MemoryRegion */
446 *xlat = addr + section->offset_within_region;
447
Paolo Bonzini965eb2f2015-06-17 10:40:27 +0200448 mr = section->mr;
Paolo Bonzinib242e0e2015-07-04 00:24:51 +0200449
450 /* MMIO registers can be expected to perform full-width accesses based only
451 * on their address, without considering adjacent registers that could
452 * decode to completely different MemoryRegions. When such registers
453 * exist (e.g. I/O ports 0xcf8 and 0xcf9 on most PC chipsets), MMIO
454 * regions overlap wildly. For this reason we cannot clamp the accesses
455 * here.
456 *
457 * If the length is small (as is the case for address_space_ldl/stl),
458 * everything works fine. If the incoming length is large, however,
459 * the caller really has to do the clamping through memory_access_size.
460 */
Paolo Bonzini965eb2f2015-06-17 10:40:27 +0200461 if (memory_region_is_ram(mr)) {
Paolo Bonzinie4a511f2015-06-17 10:36:54 +0200462 diff = int128_sub(section->size, int128_make64(addr));
Paolo Bonzini965eb2f2015-06-17 10:40:27 +0200463 *plen = int128_get64(int128_min(diff, int128_make64(*plen)));
464 }
Paolo Bonzini149f54b2013-05-24 12:59:37 +0200465 return section;
466}
Jan Kiszka90260c62013-05-26 21:46:51 +0200467
Paolo Bonzini41063e12015-03-18 14:21:43 +0100468/* Called from RCU critical section */
Peter Xua7640402017-05-17 16:57:42 +0800469static MemoryRegionSection address_space_do_translate(AddressSpace *as,
470 hwaddr addr,
471 hwaddr *xlat,
472 hwaddr *plen,
473 bool is_write,
474 bool is_mmio)
Jan Kiszka90260c62013-05-26 21:46:51 +0200475{
Avi Kivity30951152012-10-30 13:47:46 +0200476 IOMMUTLBEntry iotlb;
477 MemoryRegionSection *section;
478 MemoryRegion *mr;
Avi Kivity30951152012-10-30 13:47:46 +0200479
480 for (;;) {
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100481 AddressSpaceDispatch *d = atomic_rcu_read(&as->dispatch);
Peter Xua7640402017-05-17 16:57:42 +0800482 section = address_space_translate_internal(d, addr, &addr, plen, is_mmio);
Avi Kivity30951152012-10-30 13:47:46 +0200483 mr = section->mr;
484
485 if (!mr->iommu_ops) {
486 break;
487 }
488
Peter Xubf55b7a2017-05-19 11:19:40 +0800489 iotlb = mr->iommu_ops->translate(mr, addr, is_write ?
490 IOMMU_WO : IOMMU_RO);
Avi Kivity30951152012-10-30 13:47:46 +0200491 addr = ((iotlb.translated_addr & ~iotlb.addr_mask)
492 | (addr & iotlb.addr_mask));
Peter Crosthwaite23820db2015-03-16 22:35:54 -0700493 *plen = MIN(*plen, (addr | iotlb.addr_mask) - addr + 1);
Avi Kivity30951152012-10-30 13:47:46 +0200494 if (!(iotlb.perm & (1 << is_write))) {
Peter Xua7640402017-05-17 16:57:42 +0800495 goto translate_fail;
Avi Kivity30951152012-10-30 13:47:46 +0200496 }
497
498 as = iotlb.target_as;
499 }
500
Peter Xua7640402017-05-17 16:57:42 +0800501 *xlat = addr;
502
503 return *section;
504
505translate_fail:
506 return (MemoryRegionSection) { .mr = &io_mem_unassigned };
507}
508
509/* Called from RCU critical section */
510IOMMUTLBEntry address_space_get_iotlb_entry(AddressSpace *as, hwaddr addr,
511 bool is_write)
512{
513 MemoryRegionSection section;
514 hwaddr xlat, plen;
515
516 /* Try to get maximum page mask during translation. */
517 plen = (hwaddr)-1;
518
519 /* This can never be MMIO. */
520 section = address_space_do_translate(as, addr, &xlat, &plen,
521 is_write, false);
522
523 /* Illegal translation */
524 if (section.mr == &io_mem_unassigned) {
525 goto iotlb_fail;
526 }
527
528 /* Convert memory region offset into address space offset */
529 xlat += section.offset_within_address_space -
530 section.offset_within_region;
531
532 if (plen == (hwaddr)-1) {
533 /*
534 * We use default page size here. Logically it only happens
535 * for identity mappings.
536 */
537 plen = TARGET_PAGE_SIZE;
538 }
539
540 /* Convert to address mask */
541 plen -= 1;
542
543 return (IOMMUTLBEntry) {
544 .target_as = section.address_space,
545 .iova = addr & ~plen,
546 .translated_addr = xlat & ~plen,
547 .addr_mask = plen,
548 /* IOTLBs are for DMAs, and DMA only allows on RAMs. */
549 .perm = IOMMU_RW,
550 };
551
552iotlb_fail:
553 return (IOMMUTLBEntry) {0};
554}
555
556/* Called from RCU critical section */
557MemoryRegion *address_space_translate(AddressSpace *as, hwaddr addr,
558 hwaddr *xlat, hwaddr *plen,
559 bool is_write)
560{
561 MemoryRegion *mr;
562 MemoryRegionSection section;
563
564 /* This can be MMIO, so setup MMIO bit. */
565 section = address_space_do_translate(as, addr, xlat, plen, is_write, true);
566 mr = section.mr;
567
Alexey Kardashevskiyfe680d02014-05-07 13:40:39 +0000568 if (xen_enabled() && memory_access_is_direct(mr, is_write)) {
Paolo Bonzinia87f3952014-02-07 15:47:46 +0100569 hwaddr page = ((addr & TARGET_PAGE_MASK) + TARGET_PAGE_SIZE) - addr;
Peter Crosthwaite23820db2015-03-16 22:35:54 -0700570 *plen = MIN(page, *plen);
Paolo Bonzinia87f3952014-02-07 15:47:46 +0100571 }
572
Avi Kivity30951152012-10-30 13:47:46 +0200573 return mr;
Jan Kiszka90260c62013-05-26 21:46:51 +0200574}
575
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +0100576/* Called from RCU critical section */
Jan Kiszka90260c62013-05-26 21:46:51 +0200577MemoryRegionSection *
Peter Maydelld7898cd2016-01-21 14:15:05 +0000578address_space_translate_for_iotlb(CPUState *cpu, int asidx, hwaddr addr,
Paolo Bonzini9d82b5a2013-08-16 08:26:30 +0200579 hwaddr *xlat, hwaddr *plen)
Jan Kiszka90260c62013-05-26 21:46:51 +0200580{
Avi Kivity30951152012-10-30 13:47:46 +0200581 MemoryRegionSection *section;
Alex Bennéef35e44e2016-10-21 16:34:18 +0100582 AddressSpaceDispatch *d = atomic_rcu_read(&cpu->cpu_ases[asidx].memory_dispatch);
Peter Maydelld7898cd2016-01-21 14:15:05 +0000583
584 section = address_space_translate_internal(d, addr, xlat, plen, false);
Avi Kivity30951152012-10-30 13:47:46 +0200585
586 assert(!section->mr->iommu_ops);
587 return section;
Jan Kiszka90260c62013-05-26 21:46:51 +0200588}
bellard9fa3e852004-01-04 18:06:42 +0000589#endif
bellardfd6ce8f2003-05-14 19:00:11 +0000590
Andreas Färberb170fce2013-01-20 20:23:22 +0100591#if !defined(CONFIG_USER_ONLY)
pbrook9656f322008-07-01 20:01:19 +0000592
Juan Quintelae59fb372009-09-29 22:48:21 +0200593static int cpu_common_post_load(void *opaque, int version_id)
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200594{
Andreas Färber259186a2013-01-17 18:51:17 +0100595 CPUState *cpu = opaque;
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200596
aurel323098dba2009-03-07 21:28:24 +0000597 /* 0x01 was CPU_INTERRUPT_EXIT. This line can be removed when the
598 version_id is increased. */
Andreas Färber259186a2013-01-17 18:51:17 +0100599 cpu->interrupt_request &= ~0x01;
Alex Bennéed10eb082016-11-14 14:17:28 +0000600 tlb_flush(cpu);
pbrook9656f322008-07-01 20:01:19 +0000601
602 return 0;
603}
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200604
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400605static int cpu_common_pre_load(void *opaque)
606{
607 CPUState *cpu = opaque;
608
Paolo Bonziniadee6422014-12-19 12:53:14 +0100609 cpu->exception_index = -1;
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400610
611 return 0;
612}
613
614static bool cpu_common_exception_index_needed(void *opaque)
615{
616 CPUState *cpu = opaque;
617
Paolo Bonziniadee6422014-12-19 12:53:14 +0100618 return tcg_enabled() && cpu->exception_index != -1;
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400619}
620
621static const VMStateDescription vmstate_cpu_common_exception_index = {
622 .name = "cpu_common/exception_index",
623 .version_id = 1,
624 .minimum_version_id = 1,
Juan Quintela5cd8cad2014-09-23 14:09:54 +0200625 .needed = cpu_common_exception_index_needed,
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400626 .fields = (VMStateField[]) {
627 VMSTATE_INT32(exception_index, CPUState),
628 VMSTATE_END_OF_LIST()
629 }
630};
631
Andrey Smetaninbac05aa2015-07-03 15:01:44 +0300632static bool cpu_common_crash_occurred_needed(void *opaque)
633{
634 CPUState *cpu = opaque;
635
636 return cpu->crash_occurred;
637}
638
639static const VMStateDescription vmstate_cpu_common_crash_occurred = {
640 .name = "cpu_common/crash_occurred",
641 .version_id = 1,
642 .minimum_version_id = 1,
643 .needed = cpu_common_crash_occurred_needed,
644 .fields = (VMStateField[]) {
645 VMSTATE_BOOL(crash_occurred, CPUState),
646 VMSTATE_END_OF_LIST()
647 }
648};
649
Andreas Färber1a1562f2013-06-17 04:09:11 +0200650const VMStateDescription vmstate_cpu_common = {
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200651 .name = "cpu_common",
652 .version_id = 1,
653 .minimum_version_id = 1,
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400654 .pre_load = cpu_common_pre_load,
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200655 .post_load = cpu_common_post_load,
Juan Quintela35d08452014-04-16 16:01:33 +0200656 .fields = (VMStateField[]) {
Andreas Färber259186a2013-01-17 18:51:17 +0100657 VMSTATE_UINT32(halted, CPUState),
658 VMSTATE_UINT32(interrupt_request, CPUState),
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200659 VMSTATE_END_OF_LIST()
Pavel Dovgaluk6c3bff02014-07-31 09:41:17 +0400660 },
Juan Quintela5cd8cad2014-09-23 14:09:54 +0200661 .subsections = (const VMStateDescription*[]) {
662 &vmstate_cpu_common_exception_index,
Andrey Smetaninbac05aa2015-07-03 15:01:44 +0300663 &vmstate_cpu_common_crash_occurred,
Juan Quintela5cd8cad2014-09-23 14:09:54 +0200664 NULL
Juan Quintelae7f4eff2009-09-10 03:04:33 +0200665 }
666};
Andreas Färber1a1562f2013-06-17 04:09:11 +0200667
pbrook9656f322008-07-01 20:01:19 +0000668#endif
669
Andreas Färber38d8f5c2012-12-17 19:47:15 +0100670CPUState *qemu_get_cpu(int index)
Glauber Costa950f1472009-06-09 12:15:18 -0400671{
Andreas Färberbdc44642013-06-24 23:50:24 +0200672 CPUState *cpu;
Glauber Costa950f1472009-06-09 12:15:18 -0400673
Andreas Färberbdc44642013-06-24 23:50:24 +0200674 CPU_FOREACH(cpu) {
Andreas Färber55e5c282012-12-17 06:18:02 +0100675 if (cpu->cpu_index == index) {
Andreas Färberbdc44642013-06-24 23:50:24 +0200676 return cpu;
Andreas Färber55e5c282012-12-17 06:18:02 +0100677 }
Glauber Costa950f1472009-06-09 12:15:18 -0400678 }
679
Andreas Färberbdc44642013-06-24 23:50:24 +0200680 return NULL;
Glauber Costa950f1472009-06-09 12:15:18 -0400681}
682
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000683#if !defined(CONFIG_USER_ONLY)
Peter Maydell56943e82016-01-21 14:15:04 +0000684void cpu_address_space_init(CPUState *cpu, AddressSpace *as, int asidx)
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000685{
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000686 CPUAddressSpace *newas;
687
688 /* Target code should have set num_ases before calling us */
689 assert(asidx < cpu->num_ases);
690
Peter Maydell56943e82016-01-21 14:15:04 +0000691 if (asidx == 0) {
692 /* address space 0 gets the convenience alias */
693 cpu->as = as;
694 }
695
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000696 /* KVM cannot currently support multiple address spaces. */
697 assert(asidx == 0 || !kvm_enabled());
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000698
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000699 if (!cpu->cpu_ases) {
700 cpu->cpu_ases = g_new0(CPUAddressSpace, cpu->num_ases);
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000701 }
Peter Maydell32857f42015-10-01 15:29:50 +0100702
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000703 newas = &cpu->cpu_ases[asidx];
704 newas->cpu = cpu;
705 newas->as = as;
Peter Maydell56943e82016-01-21 14:15:04 +0000706 if (tcg_enabled()) {
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000707 newas->tcg_as_listener.commit = tcg_commit;
708 memory_listener_register(&newas->tcg_as_listener, as);
Peter Maydell56943e82016-01-21 14:15:04 +0000709 }
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000710}
Peter Maydell651a5bc2016-01-21 14:15:05 +0000711
712AddressSpace *cpu_get_address_space(CPUState *cpu, int asidx)
713{
714 /* Return the AddressSpace corresponding to the specified index */
715 return cpu->cpu_ases[asidx].as;
716}
Edgar E. Iglesias09daed82013-12-17 13:06:51 +1000717#endif
718
Laurent Vivier7bbc1242016-10-20 13:26:04 +0200719void cpu_exec_unrealizefn(CPUState *cpu)
Bharata B Rao1c59eb32016-05-12 09:18:11 +0530720{
Bharata B Rao9dfeca72016-05-12 09:18:12 +0530721 CPUClass *cc = CPU_GET_CLASS(cpu);
722
Paolo Bonzini267f6852016-08-28 03:45:14 +0200723 cpu_list_remove(cpu);
Bharata B Rao9dfeca72016-05-12 09:18:12 +0530724
725 if (cc->vmsd != NULL) {
726 vmstate_unregister(NULL, cc->vmsd, cpu);
727 }
728 if (qdev_get_vmsd(DEVICE(cpu)) == NULL) {
729 vmstate_unregister(NULL, &vmstate_cpu_common, cpu);
730 }
Bharata B Rao1c59eb32016-05-12 09:18:11 +0530731}
732
Laurent Vivier39e329e2016-10-20 13:26:02 +0200733void cpu_exec_initfn(CPUState *cpu)
bellardfd6ce8f2003-05-14 19:00:11 +0000734{
Peter Maydell56943e82016-01-21 14:15:04 +0000735 cpu->as = NULL;
Peter Maydell12ebc9a2016-01-21 14:15:04 +0000736 cpu->num_ases = 0;
Peter Maydell56943e82016-01-21 14:15:04 +0000737
Eduardo Habkost291135b2015-04-27 17:00:33 -0300738#ifndef CONFIG_USER_ONLY
Eduardo Habkost291135b2015-04-27 17:00:33 -0300739 cpu->thread_id = qemu_get_thread_id();
Peter Crosthwaite6731d862016-01-21 14:15:06 +0000740
741 /* This is a softmmu CPU object, so create a property for it
742 * so users can wire up its memory. (This can't go in qom/cpu.c
743 * because that file is compiled only once for both user-mode
744 * and system builds.) The default if no link is set up is to use
745 * the system address space.
746 */
747 object_property_add_link(OBJECT(cpu), "memory", TYPE_MEMORY_REGION,
748 (Object **)&cpu->memory,
749 qdev_prop_allow_set_link_before_realize,
750 OBJ_PROP_LINK_UNREF_ON_RELEASE,
751 &error_abort);
752 cpu->memory = system_memory;
753 object_ref(OBJECT(cpu->memory));
Eduardo Habkost291135b2015-04-27 17:00:33 -0300754#endif
Laurent Vivier39e329e2016-10-20 13:26:02 +0200755}
756
Laurent Vivierce5b1bb2016-10-20 13:26:03 +0200757void cpu_exec_realizefn(CPUState *cpu, Error **errp)
Laurent Vivier39e329e2016-10-20 13:26:02 +0200758{
759 CPUClass *cc ATTRIBUTE_UNUSED = CPU_GET_CLASS(cpu);
Eduardo Habkost291135b2015-04-27 17:00:33 -0300760
Paolo Bonzini267f6852016-08-28 03:45:14 +0200761 cpu_list_add(cpu);
Igor Mammedov1bc7e522016-07-25 11:59:19 +0200762
763#ifndef CONFIG_USER_ONLY
Andreas Färbere0d47942013-07-29 04:07:50 +0200764 if (qdev_get_vmsd(DEVICE(cpu)) == NULL) {
Paolo Bonzini741da0d2014-06-27 08:40:04 +0200765 vmstate_register(NULL, cpu->cpu_index, &vmstate_cpu_common, cpu);
Andreas Färbere0d47942013-07-29 04:07:50 +0200766 }
Andreas Färberb170fce2013-01-20 20:23:22 +0100767 if (cc->vmsd != NULL) {
Paolo Bonzini741da0d2014-06-27 08:40:04 +0200768 vmstate_register(NULL, cpu->cpu_index, cc->vmsd, cpu);
Andreas Färberb170fce2013-01-20 20:23:22 +0100769 }
Paolo Bonzini741da0d2014-06-27 08:40:04 +0200770#endif
bellardfd6ce8f2003-05-14 19:00:11 +0000771}
772
Andreas Färber00b941e2013-06-29 18:55:54 +0200773static void breakpoint_invalidate(CPUState *cpu, target_ulong pc)
Paul Brook94df27f2010-02-28 23:47:45 +0000774{
Peter Maydella9353fe2016-12-06 18:07:09 +0000775 /* Flush the whole TB as this will not have race conditions
776 * even if we don't have proper locking yet.
777 * Ideally we would just invalidate the TBs for the
778 * specified PC.
779 */
780 tb_flush(cpu);
Paul Brook94df27f2010-02-28 23:47:45 +0000781}
bellardd720b932004-04-25 17:57:43 +0000782
Paul Brookc527ee82010-03-01 03:31:14 +0000783#if defined(CONFIG_USER_ONLY)
Andreas Färber75a34032013-09-02 16:57:02 +0200784void cpu_watchpoint_remove_all(CPUState *cpu, int mask)
Paul Brookc527ee82010-03-01 03:31:14 +0000785
786{
787}
788
Peter Maydell3ee887e2014-09-12 14:06:48 +0100789int cpu_watchpoint_remove(CPUState *cpu, vaddr addr, vaddr len,
790 int flags)
791{
792 return -ENOSYS;
793}
794
795void cpu_watchpoint_remove_by_ref(CPUState *cpu, CPUWatchpoint *watchpoint)
796{
797}
798
Andreas Färber75a34032013-09-02 16:57:02 +0200799int cpu_watchpoint_insert(CPUState *cpu, vaddr addr, vaddr len,
Paul Brookc527ee82010-03-01 03:31:14 +0000800 int flags, CPUWatchpoint **watchpoint)
801{
802 return -ENOSYS;
803}
804#else
pbrook6658ffb2007-03-16 23:58:11 +0000805/* Add a watchpoint. */
Andreas Färber75a34032013-09-02 16:57:02 +0200806int cpu_watchpoint_insert(CPUState *cpu, vaddr addr, vaddr len,
aliguoria1d1bb32008-11-18 20:07:32 +0000807 int flags, CPUWatchpoint **watchpoint)
pbrook6658ffb2007-03-16 23:58:11 +0000808{
aliguoric0ce9982008-11-25 22:13:57 +0000809 CPUWatchpoint *wp;
pbrook6658ffb2007-03-16 23:58:11 +0000810
Peter Maydell05068c02014-09-12 14:06:48 +0100811 /* forbid ranges which are empty or run off the end of the address space */
Max Filippov07e28632014-09-17 22:03:36 -0700812 if (len == 0 || (addr + len - 1) < addr) {
Andreas Färber75a34032013-09-02 16:57:02 +0200813 error_report("tried to set invalid watchpoint at %"
814 VADDR_PRIx ", len=%" VADDR_PRIu, addr, len);
aliguorib4051332008-11-18 20:14:20 +0000815 return -EINVAL;
816 }
Anthony Liguori7267c092011-08-20 22:09:37 -0500817 wp = g_malloc(sizeof(*wp));
pbrook6658ffb2007-03-16 23:58:11 +0000818
aliguoria1d1bb32008-11-18 20:07:32 +0000819 wp->vaddr = addr;
Peter Maydell05068c02014-09-12 14:06:48 +0100820 wp->len = len;
aliguoria1d1bb32008-11-18 20:07:32 +0000821 wp->flags = flags;
822
aliguori2dc9f412008-11-18 20:56:59 +0000823 /* keep all GDB-injected watchpoints in front */
Andreas Färberff4700b2013-08-26 18:23:18 +0200824 if (flags & BP_GDB) {
825 QTAILQ_INSERT_HEAD(&cpu->watchpoints, wp, entry);
826 } else {
827 QTAILQ_INSERT_TAIL(&cpu->watchpoints, wp, entry);
828 }
aliguoria1d1bb32008-11-18 20:07:32 +0000829
Andreas Färber31b030d2013-09-04 01:29:02 +0200830 tlb_flush_page(cpu, addr);
aliguoria1d1bb32008-11-18 20:07:32 +0000831
832 if (watchpoint)
833 *watchpoint = wp;
834 return 0;
pbrook6658ffb2007-03-16 23:58:11 +0000835}
836
aliguoria1d1bb32008-11-18 20:07:32 +0000837/* Remove a specific watchpoint. */
Andreas Färber75a34032013-09-02 16:57:02 +0200838int cpu_watchpoint_remove(CPUState *cpu, vaddr addr, vaddr len,
aliguoria1d1bb32008-11-18 20:07:32 +0000839 int flags)
pbrook6658ffb2007-03-16 23:58:11 +0000840{
aliguoria1d1bb32008-11-18 20:07:32 +0000841 CPUWatchpoint *wp;
pbrook6658ffb2007-03-16 23:58:11 +0000842
Andreas Färberff4700b2013-08-26 18:23:18 +0200843 QTAILQ_FOREACH(wp, &cpu->watchpoints, entry) {
Peter Maydell05068c02014-09-12 14:06:48 +0100844 if (addr == wp->vaddr && len == wp->len
aliguori6e140f22008-11-18 20:37:55 +0000845 && flags == (wp->flags & ~BP_WATCHPOINT_HIT)) {
Andreas Färber75a34032013-09-02 16:57:02 +0200846 cpu_watchpoint_remove_by_ref(cpu, wp);
pbrook6658ffb2007-03-16 23:58:11 +0000847 return 0;
848 }
849 }
aliguoria1d1bb32008-11-18 20:07:32 +0000850 return -ENOENT;
pbrook6658ffb2007-03-16 23:58:11 +0000851}
852
aliguoria1d1bb32008-11-18 20:07:32 +0000853/* Remove a specific watchpoint by reference. */
Andreas Färber75a34032013-09-02 16:57:02 +0200854void cpu_watchpoint_remove_by_ref(CPUState *cpu, CPUWatchpoint *watchpoint)
aliguoria1d1bb32008-11-18 20:07:32 +0000855{
Andreas Färberff4700b2013-08-26 18:23:18 +0200856 QTAILQ_REMOVE(&cpu->watchpoints, watchpoint, entry);
edgar_igl7d03f822008-05-17 18:58:29 +0000857
Andreas Färber31b030d2013-09-04 01:29:02 +0200858 tlb_flush_page(cpu, watchpoint->vaddr);
aliguoria1d1bb32008-11-18 20:07:32 +0000859
Anthony Liguori7267c092011-08-20 22:09:37 -0500860 g_free(watchpoint);
edgar_igl7d03f822008-05-17 18:58:29 +0000861}
862
aliguoria1d1bb32008-11-18 20:07:32 +0000863/* Remove all matching watchpoints. */
Andreas Färber75a34032013-09-02 16:57:02 +0200864void cpu_watchpoint_remove_all(CPUState *cpu, int mask)
aliguoria1d1bb32008-11-18 20:07:32 +0000865{
aliguoric0ce9982008-11-25 22:13:57 +0000866 CPUWatchpoint *wp, *next;
aliguoria1d1bb32008-11-18 20:07:32 +0000867
Andreas Färberff4700b2013-08-26 18:23:18 +0200868 QTAILQ_FOREACH_SAFE(wp, &cpu->watchpoints, entry, next) {
Andreas Färber75a34032013-09-02 16:57:02 +0200869 if (wp->flags & mask) {
870 cpu_watchpoint_remove_by_ref(cpu, wp);
871 }
aliguoric0ce9982008-11-25 22:13:57 +0000872 }
aliguoria1d1bb32008-11-18 20:07:32 +0000873}
Peter Maydell05068c02014-09-12 14:06:48 +0100874
875/* Return true if this watchpoint address matches the specified
876 * access (ie the address range covered by the watchpoint overlaps
877 * partially or completely with the address range covered by the
878 * access).
879 */
880static inline bool cpu_watchpoint_address_matches(CPUWatchpoint *wp,
881 vaddr addr,
882 vaddr len)
883{
884 /* We know the lengths are non-zero, but a little caution is
885 * required to avoid errors in the case where the range ends
886 * exactly at the top of the address space and so addr + len
887 * wraps round to zero.
888 */
889 vaddr wpend = wp->vaddr + wp->len - 1;
890 vaddr addrend = addr + len - 1;
891
892 return !(addr > wpend || wp->vaddr > addrend);
893}
894
Paul Brookc527ee82010-03-01 03:31:14 +0000895#endif
aliguoria1d1bb32008-11-18 20:07:32 +0000896
897/* Add a breakpoint. */
Andreas Färberb3310ab2013-09-02 17:26:20 +0200898int cpu_breakpoint_insert(CPUState *cpu, vaddr pc, int flags,
aliguoria1d1bb32008-11-18 20:07:32 +0000899 CPUBreakpoint **breakpoint)
bellard4c3a88a2003-07-26 12:06:08 +0000900{
aliguoric0ce9982008-11-25 22:13:57 +0000901 CPUBreakpoint *bp;
ths3b46e622007-09-17 08:09:54 +0000902
Anthony Liguori7267c092011-08-20 22:09:37 -0500903 bp = g_malloc(sizeof(*bp));
aliguoria1d1bb32008-11-18 20:07:32 +0000904
905 bp->pc = pc;
906 bp->flags = flags;
907
aliguori2dc9f412008-11-18 20:56:59 +0000908 /* keep all GDB-injected breakpoints in front */
Andreas Färber00b941e2013-06-29 18:55:54 +0200909 if (flags & BP_GDB) {
Andreas Färberf0c3c502013-08-26 21:22:53 +0200910 QTAILQ_INSERT_HEAD(&cpu->breakpoints, bp, entry);
Andreas Färber00b941e2013-06-29 18:55:54 +0200911 } else {
Andreas Färberf0c3c502013-08-26 21:22:53 +0200912 QTAILQ_INSERT_TAIL(&cpu->breakpoints, bp, entry);
Andreas Färber00b941e2013-06-29 18:55:54 +0200913 }
aliguoria1d1bb32008-11-18 20:07:32 +0000914
Andreas Färberf0c3c502013-08-26 21:22:53 +0200915 breakpoint_invalidate(cpu, pc);
aliguoria1d1bb32008-11-18 20:07:32 +0000916
Andreas Färber00b941e2013-06-29 18:55:54 +0200917 if (breakpoint) {
aliguoria1d1bb32008-11-18 20:07:32 +0000918 *breakpoint = bp;
Andreas Färber00b941e2013-06-29 18:55:54 +0200919 }
aliguoria1d1bb32008-11-18 20:07:32 +0000920 return 0;
aliguoria1d1bb32008-11-18 20:07:32 +0000921}
922
923/* Remove a specific breakpoint. */
Andreas Färberb3310ab2013-09-02 17:26:20 +0200924int cpu_breakpoint_remove(CPUState *cpu, vaddr pc, int flags)
aliguoria1d1bb32008-11-18 20:07:32 +0000925{
aliguoria1d1bb32008-11-18 20:07:32 +0000926 CPUBreakpoint *bp;
927
Andreas Färberf0c3c502013-08-26 21:22:53 +0200928 QTAILQ_FOREACH(bp, &cpu->breakpoints, entry) {
aliguoria1d1bb32008-11-18 20:07:32 +0000929 if (bp->pc == pc && bp->flags == flags) {
Andreas Färberb3310ab2013-09-02 17:26:20 +0200930 cpu_breakpoint_remove_by_ref(cpu, bp);
bellard4c3a88a2003-07-26 12:06:08 +0000931 return 0;
aliguoria1d1bb32008-11-18 20:07:32 +0000932 }
bellard4c3a88a2003-07-26 12:06:08 +0000933 }
aliguoria1d1bb32008-11-18 20:07:32 +0000934 return -ENOENT;
bellard4c3a88a2003-07-26 12:06:08 +0000935}
936
aliguoria1d1bb32008-11-18 20:07:32 +0000937/* Remove a specific breakpoint by reference. */
Andreas Färberb3310ab2013-09-02 17:26:20 +0200938void cpu_breakpoint_remove_by_ref(CPUState *cpu, CPUBreakpoint *breakpoint)
bellard4c3a88a2003-07-26 12:06:08 +0000939{
Andreas Färberf0c3c502013-08-26 21:22:53 +0200940 QTAILQ_REMOVE(&cpu->breakpoints, breakpoint, entry);
941
942 breakpoint_invalidate(cpu, breakpoint->pc);
aliguoria1d1bb32008-11-18 20:07:32 +0000943
Anthony Liguori7267c092011-08-20 22:09:37 -0500944 g_free(breakpoint);
aliguoria1d1bb32008-11-18 20:07:32 +0000945}
946
947/* Remove all matching breakpoints. */
Andreas Färberb3310ab2013-09-02 17:26:20 +0200948void cpu_breakpoint_remove_all(CPUState *cpu, int mask)
aliguoria1d1bb32008-11-18 20:07:32 +0000949{
aliguoric0ce9982008-11-25 22:13:57 +0000950 CPUBreakpoint *bp, *next;
aliguoria1d1bb32008-11-18 20:07:32 +0000951
Andreas Färberf0c3c502013-08-26 21:22:53 +0200952 QTAILQ_FOREACH_SAFE(bp, &cpu->breakpoints, entry, next) {
Andreas Färberb3310ab2013-09-02 17:26:20 +0200953 if (bp->flags & mask) {
954 cpu_breakpoint_remove_by_ref(cpu, bp);
955 }
aliguoric0ce9982008-11-25 22:13:57 +0000956 }
bellard4c3a88a2003-07-26 12:06:08 +0000957}
958
bellardc33a3462003-07-29 20:50:33 +0000959/* enable or disable single step mode. EXCP_DEBUG is returned by the
960 CPU loop after each instruction */
Andreas Färber3825b282013-06-24 18:41:06 +0200961void cpu_single_step(CPUState *cpu, int enabled)
bellardc33a3462003-07-29 20:50:33 +0000962{
Andreas Färbered2803d2013-06-21 20:20:45 +0200963 if (cpu->singlestep_enabled != enabled) {
964 cpu->singlestep_enabled = enabled;
965 if (kvm_enabled()) {
Stefan Weil38e478e2013-07-25 20:50:21 +0200966 kvm_update_guest_debug(cpu, 0);
Andreas Färbered2803d2013-06-21 20:20:45 +0200967 } else {
Stuart Bradyccbb4d42009-05-03 12:15:06 +0100968 /* must flush all the translated code to avoid inconsistencies */
aliguorie22a25c2009-03-12 20:12:48 +0000969 /* XXX: only flush what is necessary */
Peter Crosthwaitebbd77c12015-06-23 19:31:15 -0700970 tb_flush(cpu);
aliguorie22a25c2009-03-12 20:12:48 +0000971 }
bellardc33a3462003-07-29 20:50:33 +0000972 }
bellardc33a3462003-07-29 20:50:33 +0000973}
974
Andreas Färbera47dddd2013-09-03 17:38:47 +0200975void cpu_abort(CPUState *cpu, const char *fmt, ...)
bellard75012672003-06-21 13:11:07 +0000976{
977 va_list ap;
pbrook493ae1f2007-11-23 16:53:59 +0000978 va_list ap2;
bellard75012672003-06-21 13:11:07 +0000979
980 va_start(ap, fmt);
pbrook493ae1f2007-11-23 16:53:59 +0000981 va_copy(ap2, ap);
bellard75012672003-06-21 13:11:07 +0000982 fprintf(stderr, "qemu: fatal: ");
983 vfprintf(stderr, fmt, ap);
984 fprintf(stderr, "\n");
Andreas Färber878096e2013-05-27 01:33:50 +0200985 cpu_dump_state(cpu, stderr, fprintf, CPU_DUMP_FPU | CPU_DUMP_CCOP);
Paolo Bonzini013a2942015-11-13 13:16:27 +0100986 if (qemu_log_separate()) {
Richard Henderson1ee73212016-09-22 15:17:10 -0700987 qemu_log_lock();
aliguori93fcfe32009-01-15 22:34:14 +0000988 qemu_log("qemu: fatal: ");
989 qemu_log_vprintf(fmt, ap2);
990 qemu_log("\n");
Andreas Färbera0762852013-06-16 07:28:50 +0200991 log_cpu_state(cpu, CPU_DUMP_FPU | CPU_DUMP_CCOP);
aliguori31b1a7b2009-01-15 22:35:09 +0000992 qemu_log_flush();
Richard Henderson1ee73212016-09-22 15:17:10 -0700993 qemu_log_unlock();
aliguori93fcfe32009-01-15 22:34:14 +0000994 qemu_log_close();
balrog924edca2007-06-10 14:07:13 +0000995 }
pbrook493ae1f2007-11-23 16:53:59 +0000996 va_end(ap2);
j_mayerf9373292007-09-29 12:18:20 +0000997 va_end(ap);
Pavel Dovgalyuk76159362015-09-17 19:25:07 +0300998 replay_finish();
Riku Voipiofd052bf2010-01-25 14:30:49 +0200999#if defined(CONFIG_USER_ONLY)
1000 {
1001 struct sigaction act;
1002 sigfillset(&act.sa_mask);
1003 act.sa_handler = SIG_DFL;
1004 sigaction(SIGABRT, &act, NULL);
1005 }
1006#endif
bellard75012672003-06-21 13:11:07 +00001007 abort();
1008}
1009
bellard01243112004-01-04 15:48:17 +00001010#if !defined(CONFIG_USER_ONLY)
Mike Day0dc3f442013-09-05 14:41:35 -04001011/* Called from RCU critical section */
Paolo Bonzini041603f2013-09-09 17:49:45 +02001012static RAMBlock *qemu_get_ram_block(ram_addr_t addr)
1013{
1014 RAMBlock *block;
1015
Paolo Bonzini43771532013-09-09 17:58:40 +02001016 block = atomic_rcu_read(&ram_list.mru_block);
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001017 if (block && addr - block->offset < block->max_length) {
Paolo Bonzini68851b92015-10-22 13:51:30 +02001018 return block;
Paolo Bonzini041603f2013-09-09 17:49:45 +02001019 }
Peter Xu99e15582017-05-12 12:17:39 +08001020 RAMBLOCK_FOREACH(block) {
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001021 if (addr - block->offset < block->max_length) {
Paolo Bonzini041603f2013-09-09 17:49:45 +02001022 goto found;
1023 }
1024 }
1025
1026 fprintf(stderr, "Bad ram offset %" PRIx64 "\n", (uint64_t)addr);
1027 abort();
1028
1029found:
Paolo Bonzini43771532013-09-09 17:58:40 +02001030 /* It is safe to write mru_block outside the iothread lock. This
1031 * is what happens:
1032 *
1033 * mru_block = xxx
1034 * rcu_read_unlock()
1035 * xxx removed from list
1036 * rcu_read_lock()
1037 * read mru_block
1038 * mru_block = NULL;
1039 * call_rcu(reclaim_ramblock, xxx);
1040 * rcu_read_unlock()
1041 *
1042 * atomic_rcu_set is not needed here. The block was already published
1043 * when it was placed into the list. Here we're just making an extra
1044 * copy of the pointer.
1045 */
Paolo Bonzini041603f2013-09-09 17:49:45 +02001046 ram_list.mru_block = block;
1047 return block;
1048}
1049
Juan Quintelaa2f4d5b2013-10-10 11:49:53 +02001050static void tlb_reset_dirty_range_all(ram_addr_t start, ram_addr_t length)
bellard1ccde1c2004-02-06 19:46:14 +00001051{
Peter Crosthwaite9a135652015-09-10 22:39:41 -07001052 CPUState *cpu;
Paolo Bonzini041603f2013-09-09 17:49:45 +02001053 ram_addr_t start1;
Juan Quintelaa2f4d5b2013-10-10 11:49:53 +02001054 RAMBlock *block;
1055 ram_addr_t end;
1056
1057 end = TARGET_PAGE_ALIGN(start + length);
1058 start &= TARGET_PAGE_MASK;
bellardf23db162005-08-21 19:12:28 +00001059
Mike Day0dc3f442013-09-05 14:41:35 -04001060 rcu_read_lock();
Paolo Bonzini041603f2013-09-09 17:49:45 +02001061 block = qemu_get_ram_block(start);
1062 assert(block == qemu_get_ram_block(end - 1));
Michael S. Tsirkin1240be22014-11-12 11:44:41 +02001063 start1 = (uintptr_t)ramblock_ptr(block, start - block->offset);
Peter Crosthwaite9a135652015-09-10 22:39:41 -07001064 CPU_FOREACH(cpu) {
1065 tlb_reset_dirty(cpu, start1, length);
1066 }
Mike Day0dc3f442013-09-05 14:41:35 -04001067 rcu_read_unlock();
Juan Quintelad24981d2012-05-22 00:42:40 +02001068}
1069
1070/* Note: start and end must be within the same ram block. */
Stefan Hajnoczi03eebc92014-12-02 11:23:18 +00001071bool cpu_physical_memory_test_and_clear_dirty(ram_addr_t start,
1072 ram_addr_t length,
1073 unsigned client)
Juan Quintelad24981d2012-05-22 00:42:40 +02001074{
Stefan Hajnoczi5b82b702016-01-25 13:33:20 +00001075 DirtyMemoryBlocks *blocks;
Stefan Hajnoczi03eebc92014-12-02 11:23:18 +00001076 unsigned long end, page;
Stefan Hajnoczi5b82b702016-01-25 13:33:20 +00001077 bool dirty = false;
Juan Quintelad24981d2012-05-22 00:42:40 +02001078
Stefan Hajnoczi03eebc92014-12-02 11:23:18 +00001079 if (length == 0) {
1080 return false;
1081 }
1082
1083 end = TARGET_PAGE_ALIGN(start + length) >> TARGET_PAGE_BITS;
1084 page = start >> TARGET_PAGE_BITS;
Stefan Hajnoczi5b82b702016-01-25 13:33:20 +00001085
1086 rcu_read_lock();
1087
1088 blocks = atomic_rcu_read(&ram_list.dirty_memory[client]);
1089
1090 while (page < end) {
1091 unsigned long idx = page / DIRTY_MEMORY_BLOCK_SIZE;
1092 unsigned long offset = page % DIRTY_MEMORY_BLOCK_SIZE;
1093 unsigned long num = MIN(end - page, DIRTY_MEMORY_BLOCK_SIZE - offset);
1094
1095 dirty |= bitmap_test_and_clear_atomic(blocks->blocks[idx],
1096 offset, num);
1097 page += num;
1098 }
1099
1100 rcu_read_unlock();
Stefan Hajnoczi03eebc92014-12-02 11:23:18 +00001101
1102 if (dirty && tcg_enabled()) {
Juan Quintelaa2f4d5b2013-10-10 11:49:53 +02001103 tlb_reset_dirty_range_all(start, length);
Juan Quintelad24981d2012-05-22 00:42:40 +02001104 }
Stefan Hajnoczi03eebc92014-12-02 11:23:18 +00001105
1106 return dirty;
bellard1ccde1c2004-02-06 19:46:14 +00001107}
1108
Gerd Hoffmann8deaf122017-04-21 11:16:25 +02001109DirtyBitmapSnapshot *cpu_physical_memory_snapshot_and_clear_dirty
1110 (ram_addr_t start, ram_addr_t length, unsigned client)
1111{
1112 DirtyMemoryBlocks *blocks;
1113 unsigned long align = 1UL << (TARGET_PAGE_BITS + BITS_PER_LEVEL);
1114 ram_addr_t first = QEMU_ALIGN_DOWN(start, align);
1115 ram_addr_t last = QEMU_ALIGN_UP(start + length, align);
1116 DirtyBitmapSnapshot *snap;
1117 unsigned long page, end, dest;
1118
1119 snap = g_malloc0(sizeof(*snap) +
1120 ((last - first) >> (TARGET_PAGE_BITS + 3)));
1121 snap->start = first;
1122 snap->end = last;
1123
1124 page = first >> TARGET_PAGE_BITS;
1125 end = last >> TARGET_PAGE_BITS;
1126 dest = 0;
1127
1128 rcu_read_lock();
1129
1130 blocks = atomic_rcu_read(&ram_list.dirty_memory[client]);
1131
1132 while (page < end) {
1133 unsigned long idx = page / DIRTY_MEMORY_BLOCK_SIZE;
1134 unsigned long offset = page % DIRTY_MEMORY_BLOCK_SIZE;
1135 unsigned long num = MIN(end - page, DIRTY_MEMORY_BLOCK_SIZE - offset);
1136
1137 assert(QEMU_IS_ALIGNED(offset, (1 << BITS_PER_LEVEL)));
1138 assert(QEMU_IS_ALIGNED(num, (1 << BITS_PER_LEVEL)));
1139 offset >>= BITS_PER_LEVEL;
1140
1141 bitmap_copy_and_clear_atomic(snap->dirty + dest,
1142 blocks->blocks[idx] + offset,
1143 num);
1144 page += num;
1145 dest += num >> BITS_PER_LEVEL;
1146 }
1147
1148 rcu_read_unlock();
1149
1150 if (tcg_enabled()) {
1151 tlb_reset_dirty_range_all(start, length);
1152 }
1153
1154 return snap;
1155}
1156
1157bool cpu_physical_memory_snapshot_get_dirty(DirtyBitmapSnapshot *snap,
1158 ram_addr_t start,
1159 ram_addr_t length)
1160{
1161 unsigned long page, end;
1162
1163 assert(start >= snap->start);
1164 assert(start + length <= snap->end);
1165
1166 end = TARGET_PAGE_ALIGN(start + length - snap->start) >> TARGET_PAGE_BITS;
1167 page = (start - snap->start) >> TARGET_PAGE_BITS;
1168
1169 while (page < end) {
1170 if (test_bit(page, snap->dirty)) {
1171 return true;
1172 }
1173 page++;
1174 }
1175 return false;
1176}
1177
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01001178/* Called from RCU critical section */
Andreas Färberbb0e6272013-09-03 13:32:01 +02001179hwaddr memory_region_section_get_iotlb(CPUState *cpu,
Paolo Bonzini149f54b2013-05-24 12:59:37 +02001180 MemoryRegionSection *section,
1181 target_ulong vaddr,
1182 hwaddr paddr, hwaddr xlat,
1183 int prot,
1184 target_ulong *address)
Blue Swirle5548612012-04-21 13:08:33 +00001185{
Avi Kivitya8170e52012-10-23 12:30:10 +02001186 hwaddr iotlb;
Blue Swirle5548612012-04-21 13:08:33 +00001187 CPUWatchpoint *wp;
1188
Blue Swirlcc5bea62012-04-14 14:56:48 +00001189 if (memory_region_is_ram(section->mr)) {
Blue Swirle5548612012-04-21 13:08:33 +00001190 /* Normal RAM. */
Paolo Bonzinie4e69792016-03-01 10:44:50 +01001191 iotlb = memory_region_get_ram_addr(section->mr) + xlat;
Blue Swirle5548612012-04-21 13:08:33 +00001192 if (!section->readonly) {
Liu Ping Fanb41aac42013-05-29 11:09:17 +02001193 iotlb |= PHYS_SECTION_NOTDIRTY;
Blue Swirle5548612012-04-21 13:08:33 +00001194 } else {
Liu Ping Fanb41aac42013-05-29 11:09:17 +02001195 iotlb |= PHYS_SECTION_ROM;
Blue Swirle5548612012-04-21 13:08:33 +00001196 }
1197 } else {
Peter Maydell0b8e2c12015-07-20 12:27:16 +01001198 AddressSpaceDispatch *d;
1199
1200 d = atomic_rcu_read(&section->address_space->dispatch);
1201 iotlb = section - d->map.sections;
Paolo Bonzini149f54b2013-05-24 12:59:37 +02001202 iotlb += xlat;
Blue Swirle5548612012-04-21 13:08:33 +00001203 }
1204
1205 /* Make accesses to pages with watchpoints go via the
1206 watchpoint trap routines. */
Andreas Färberff4700b2013-08-26 18:23:18 +02001207 QTAILQ_FOREACH(wp, &cpu->watchpoints, entry) {
Peter Maydell05068c02014-09-12 14:06:48 +01001208 if (cpu_watchpoint_address_matches(wp, vaddr, TARGET_PAGE_SIZE)) {
Blue Swirle5548612012-04-21 13:08:33 +00001209 /* Avoid trapping reads of pages with a write breakpoint. */
1210 if ((prot & PAGE_WRITE) || (wp->flags & BP_MEM_READ)) {
Liu Ping Fanb41aac42013-05-29 11:09:17 +02001211 iotlb = PHYS_SECTION_WATCH + paddr;
Blue Swirle5548612012-04-21 13:08:33 +00001212 *address |= TLB_MMIO;
1213 break;
1214 }
1215 }
1216 }
1217
1218 return iotlb;
1219}
bellard9fa3e852004-01-04 18:06:42 +00001220#endif /* defined(CONFIG_USER_ONLY) */
1221
pbrooke2eef172008-06-08 01:09:01 +00001222#if !defined(CONFIG_USER_ONLY)
pbrook8da3ff12008-12-01 18:59:50 +00001223
Anthony Liguoric227f092009-10-01 16:12:16 -05001224static int subpage_register (subpage_t *mmio, uint32_t start, uint32_t end,
Avi Kivity5312bd82012-02-12 18:32:55 +02001225 uint16_t section);
Jan Kiszkaacc9d802013-05-26 21:55:37 +02001226static subpage_t *subpage_init(AddressSpace *as, hwaddr base);
Avi Kivity54688b12012-02-09 17:34:32 +02001227
Igor Mammedova2b257d2014-10-31 16:38:37 +00001228static void *(*phys_mem_alloc)(size_t size, uint64_t *align) =
1229 qemu_anon_ram_alloc;
Markus Armbruster91138032013-07-31 15:11:08 +02001230
1231/*
1232 * Set a custom physical guest memory alloator.
1233 * Accelerators with unusual needs may need this. Hopefully, we can
1234 * get rid of it eventually.
1235 */
Igor Mammedova2b257d2014-10-31 16:38:37 +00001236void phys_mem_set_alloc(void *(*alloc)(size_t, uint64_t *align))
Markus Armbruster91138032013-07-31 15:11:08 +02001237{
1238 phys_mem_alloc = alloc;
1239}
1240
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001241static uint16_t phys_section_add(PhysPageMap *map,
1242 MemoryRegionSection *section)
Avi Kivity5312bd82012-02-12 18:32:55 +02001243{
Paolo Bonzini68f3f652013-05-07 11:30:23 +02001244 /* The physical section number is ORed with a page-aligned
1245 * pointer to produce the iotlb entries. Thus it should
1246 * never overflow into the page-aligned value.
1247 */
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001248 assert(map->sections_nb < TARGET_PAGE_SIZE);
Paolo Bonzini68f3f652013-05-07 11:30:23 +02001249
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001250 if (map->sections_nb == map->sections_nb_alloc) {
1251 map->sections_nb_alloc = MAX(map->sections_nb_alloc * 2, 16);
1252 map->sections = g_renew(MemoryRegionSection, map->sections,
1253 map->sections_nb_alloc);
Avi Kivity5312bd82012-02-12 18:32:55 +02001254 }
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001255 map->sections[map->sections_nb] = *section;
Paolo Bonzinidfde4e62013-05-06 10:46:11 +02001256 memory_region_ref(section->mr);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001257 return map->sections_nb++;
Avi Kivity5312bd82012-02-12 18:32:55 +02001258}
1259
Paolo Bonzini058bc4b2013-06-25 09:30:48 +02001260static void phys_section_destroy(MemoryRegion *mr)
1261{
Don Slutz55b4e802015-11-30 17:11:04 -05001262 bool have_sub_page = mr->subpage;
1263
Paolo Bonzinidfde4e62013-05-06 10:46:11 +02001264 memory_region_unref(mr);
1265
Don Slutz55b4e802015-11-30 17:11:04 -05001266 if (have_sub_page) {
Paolo Bonzini058bc4b2013-06-25 09:30:48 +02001267 subpage_t *subpage = container_of(mr, subpage_t, iomem);
Peter Crosthwaiteb4fefef2014-06-05 23:15:52 -07001268 object_unref(OBJECT(&subpage->iomem));
Paolo Bonzini058bc4b2013-06-25 09:30:48 +02001269 g_free(subpage);
1270 }
1271}
1272
Paolo Bonzini60926662013-05-29 12:30:26 +02001273static void phys_sections_free(PhysPageMap *map)
Avi Kivity5312bd82012-02-12 18:32:55 +02001274{
Paolo Bonzini9affd6f2013-05-29 12:09:47 +02001275 while (map->sections_nb > 0) {
1276 MemoryRegionSection *section = &map->sections[--map->sections_nb];
Paolo Bonzini058bc4b2013-06-25 09:30:48 +02001277 phys_section_destroy(section->mr);
1278 }
Paolo Bonzini9affd6f2013-05-29 12:09:47 +02001279 g_free(map->sections);
1280 g_free(map->nodes);
Avi Kivity5312bd82012-02-12 18:32:55 +02001281}
1282
Avi Kivityac1970f2012-10-03 16:22:53 +02001283static void register_subpage(AddressSpaceDispatch *d, MemoryRegionSection *section)
Avi Kivity0f0cb162012-02-13 17:14:32 +02001284{
1285 subpage_t *subpage;
Avi Kivitya8170e52012-10-23 12:30:10 +02001286 hwaddr base = section->offset_within_address_space
Avi Kivity0f0cb162012-02-13 17:14:32 +02001287 & TARGET_PAGE_MASK;
Michael S. Tsirkin97115a82013-11-13 20:08:19 +02001288 MemoryRegionSection *existing = phys_page_find(d->phys_map, base,
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001289 d->map.nodes, d->map.sections);
Avi Kivity0f0cb162012-02-13 17:14:32 +02001290 MemoryRegionSection subsection = {
1291 .offset_within_address_space = base,
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001292 .size = int128_make64(TARGET_PAGE_SIZE),
Avi Kivity0f0cb162012-02-13 17:14:32 +02001293 };
Avi Kivitya8170e52012-10-23 12:30:10 +02001294 hwaddr start, end;
Avi Kivity0f0cb162012-02-13 17:14:32 +02001295
Avi Kivityf3705d52012-03-08 16:16:34 +02001296 assert(existing->mr->subpage || existing->mr == &io_mem_unassigned);
Avi Kivity0f0cb162012-02-13 17:14:32 +02001297
Avi Kivityf3705d52012-03-08 16:16:34 +02001298 if (!(existing->mr->subpage)) {
Jan Kiszkaacc9d802013-05-26 21:55:37 +02001299 subpage = subpage_init(d->as, base);
Edgar E. Iglesias3be91e82013-11-07 18:42:51 +01001300 subsection.address_space = d->as;
Avi Kivity0f0cb162012-02-13 17:14:32 +02001301 subsection.mr = &subpage->iomem;
Avi Kivityac1970f2012-10-03 16:22:53 +02001302 phys_page_set(d, base >> TARGET_PAGE_BITS, 1,
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001303 phys_section_add(&d->map, &subsection));
Avi Kivity0f0cb162012-02-13 17:14:32 +02001304 } else {
Avi Kivityf3705d52012-03-08 16:16:34 +02001305 subpage = container_of(existing->mr, subpage_t, iomem);
Avi Kivity0f0cb162012-02-13 17:14:32 +02001306 }
1307 start = section->offset_within_address_space & ~TARGET_PAGE_MASK;
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001308 end = start + int128_get64(section->size) - 1;
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001309 subpage_register(subpage, start, end,
1310 phys_section_add(&d->map, section));
Avi Kivity0f0cb162012-02-13 17:14:32 +02001311}
1312
1313
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001314static void register_multipage(AddressSpaceDispatch *d,
1315 MemoryRegionSection *section)
bellard33417e72003-08-10 21:47:01 +00001316{
Avi Kivitya8170e52012-10-23 12:30:10 +02001317 hwaddr start_addr = section->offset_within_address_space;
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02001318 uint16_t section_index = phys_section_add(&d->map, section);
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001319 uint64_t num_pages = int128_get64(int128_rshift(section->size,
1320 TARGET_PAGE_BITS));
Avi Kivitydd811242012-01-02 12:17:03 +02001321
Paolo Bonzini733d5ef2013-05-27 10:47:10 +02001322 assert(num_pages);
1323 phys_page_set(d, start_addr >> TARGET_PAGE_BITS, num_pages, section_index);
bellard33417e72003-08-10 21:47:01 +00001324}
1325
Avi Kivityac1970f2012-10-03 16:22:53 +02001326static void mem_add(MemoryListener *listener, MemoryRegionSection *section)
Avi Kivity0f0cb162012-02-13 17:14:32 +02001327{
Paolo Bonzini89ae3372013-06-02 10:39:07 +02001328 AddressSpace *as = container_of(listener, AddressSpace, dispatch_listener);
Paolo Bonzini00752702013-05-29 12:13:54 +02001329 AddressSpaceDispatch *d = as->next_dispatch;
Paolo Bonzini99b9cc02013-05-27 13:18:01 +02001330 MemoryRegionSection now = *section, remain = *section;
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001331 Int128 page_size = int128_make64(TARGET_PAGE_SIZE);
Avi Kivity0f0cb162012-02-13 17:14:32 +02001332
Paolo Bonzini733d5ef2013-05-27 10:47:10 +02001333 if (now.offset_within_address_space & ~TARGET_PAGE_MASK) {
1334 uint64_t left = TARGET_PAGE_ALIGN(now.offset_within_address_space)
1335 - now.offset_within_address_space;
1336
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001337 now.size = int128_min(int128_make64(left), now.size);
Avi Kivityac1970f2012-10-03 16:22:53 +02001338 register_subpage(d, &now);
Paolo Bonzini733d5ef2013-05-27 10:47:10 +02001339 } else {
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001340 now.size = int128_zero();
Paolo Bonzini733d5ef2013-05-27 10:47:10 +02001341 }
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001342 while (int128_ne(remain.size, now.size)) {
1343 remain.size = int128_sub(remain.size, now.size);
1344 remain.offset_within_address_space += int128_get64(now.size);
1345 remain.offset_within_region += int128_get64(now.size);
Tyler Hall69b67642012-07-25 18:45:04 -04001346 now = remain;
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001347 if (int128_lt(remain.size, page_size)) {
Paolo Bonzini733d5ef2013-05-27 10:47:10 +02001348 register_subpage(d, &now);
Hu Tao88266242013-08-29 18:21:16 +08001349 } else if (remain.offset_within_address_space & ~TARGET_PAGE_MASK) {
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001350 now.size = page_size;
Avi Kivityac1970f2012-10-03 16:22:53 +02001351 register_subpage(d, &now);
Tyler Hall69b67642012-07-25 18:45:04 -04001352 } else {
Paolo Bonzini052e87b2013-05-27 10:08:27 +02001353 now.size = int128_and(now.size, int128_neg(page_size));
Avi Kivityac1970f2012-10-03 16:22:53 +02001354 register_multipage(d, &now);
Tyler Hall69b67642012-07-25 18:45:04 -04001355 }
Avi Kivity0f0cb162012-02-13 17:14:32 +02001356 }
1357}
1358
Sheng Yang62a27442010-01-26 19:21:16 +08001359void qemu_flush_coalesced_mmio_buffer(void)
1360{
1361 if (kvm_enabled())
1362 kvm_flush_coalesced_mmio_buffer();
1363}
1364
Umesh Deshpandeb2a86582011-08-17 00:01:33 -07001365void qemu_mutex_lock_ramlist(void)
1366{
1367 qemu_mutex_lock(&ram_list.mutex);
1368}
1369
1370void qemu_mutex_unlock_ramlist(void)
1371{
1372 qemu_mutex_unlock(&ram_list.mutex);
1373}
1374
Peter Xube9b23c2017-05-12 12:17:41 +08001375void ram_block_dump(Monitor *mon)
1376{
1377 RAMBlock *block;
1378 char *psize;
1379
1380 rcu_read_lock();
1381 monitor_printf(mon, "%24s %8s %18s %18s %18s\n",
1382 "Block Name", "PSize", "Offset", "Used", "Total");
1383 RAMBLOCK_FOREACH(block) {
1384 psize = size_to_str(block->page_size);
1385 monitor_printf(mon, "%24s %8s 0x%016" PRIx64 " 0x%016" PRIx64
1386 " 0x%016" PRIx64 "\n", block->idstr, psize,
1387 (uint64_t)block->offset,
1388 (uint64_t)block->used_length,
1389 (uint64_t)block->max_length);
1390 g_free(psize);
1391 }
1392 rcu_read_unlock();
1393}
1394
Markus Armbrustere1e84ba2013-07-31 15:11:10 +02001395#ifdef __linux__
Alexey Kardashevskiy9c607662017-03-02 13:36:11 +11001396/*
1397 * FIXME TOCTTOU: this iterates over memory backends' mem-path, which
1398 * may or may not name the same files / on the same filesystem now as
1399 * when we actually open and map them. Iterate over the file
1400 * descriptors instead, and use qemu_fd_getpagesize().
1401 */
1402static int find_max_supported_pagesize(Object *obj, void *opaque)
1403{
1404 char *mem_path;
1405 long *hpsize_min = opaque;
1406
1407 if (object_dynamic_cast(obj, TYPE_MEMORY_BACKEND)) {
1408 mem_path = object_property_get_str(obj, "mem-path", NULL);
1409 if (mem_path) {
1410 long hpsize = qemu_mempath_getpagesize(mem_path);
1411 if (hpsize < *hpsize_min) {
1412 *hpsize_min = hpsize;
1413 }
1414 } else {
1415 *hpsize_min = getpagesize();
1416 }
1417 }
1418
1419 return 0;
1420}
1421
1422long qemu_getrampagesize(void)
1423{
1424 long hpsize = LONG_MAX;
1425 long mainrampagesize;
1426 Object *memdev_root;
1427
1428 if (mem_path) {
1429 mainrampagesize = qemu_mempath_getpagesize(mem_path);
1430 } else {
1431 mainrampagesize = getpagesize();
1432 }
1433
1434 /* it's possible we have memory-backend objects with
1435 * hugepage-backed RAM. these may get mapped into system
1436 * address space via -numa parameters or memory hotplug
1437 * hooks. we want to take these into account, but we
1438 * also want to make sure these supported hugepage
1439 * sizes are applicable across the entire range of memory
1440 * we may boot from, so we take the min across all
1441 * backends, and assume normal pages in cases where a
1442 * backend isn't backed by hugepages.
1443 */
1444 memdev_root = object_resolve_path("/objects", NULL);
1445 if (memdev_root) {
1446 object_child_foreach(memdev_root, find_max_supported_pagesize, &hpsize);
1447 }
1448 if (hpsize == LONG_MAX) {
1449 /* No additional memory regions found ==> Report main RAM page size */
1450 return mainrampagesize;
1451 }
1452
1453 /* If NUMA is disabled or the NUMA nodes are not backed with a
1454 * memory-backend, then there is at least one node using "normal" RAM,
1455 * so if its page size is smaller we have got to report that size instead.
1456 */
1457 if (hpsize > mainrampagesize &&
1458 (nb_numa_nodes == 0 || numa_info[0].node_memdev == NULL)) {
1459 static bool warned;
1460 if (!warned) {
1461 error_report("Huge page support disabled (n/a for main memory).");
1462 warned = true;
1463 }
1464 return mainrampagesize;
1465 }
1466
1467 return hpsize;
1468}
1469#else
1470long qemu_getrampagesize(void)
1471{
1472 return getpagesize();
1473}
1474#endif
1475
1476#ifdef __linux__
Haozhong Zhangd6af99c2016-10-27 12:22:58 +08001477static int64_t get_file_size(int fd)
1478{
1479 int64_t size = lseek(fd, 0, SEEK_END);
1480 if (size < 0) {
1481 return -errno;
1482 }
1483 return size;
1484}
1485
Alex Williamson04b16652010-07-02 11:13:17 -06001486static void *file_ram_alloc(RAMBlock *block,
1487 ram_addr_t memory,
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001488 const char *path,
1489 Error **errp)
Marcelo Tosattic9027602010-03-01 20:25:08 -03001490{
Markus Armbrusterfd97fd42016-03-07 20:25:13 +01001491 bool unlink_on_error = false;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001492 char *filename;
Peter Feiner8ca761f2013-03-04 13:54:25 -05001493 char *sanitized_name;
1494 char *c;
Igor Mammedov056b68a2016-07-20 11:54:03 +02001495 void *area = MAP_FAILED;
Paolo Bonzini5c3ece72016-03-17 15:53:13 +01001496 int fd = -1;
Haozhong Zhangd6af99c2016-10-27 12:22:58 +08001497 int64_t file_size;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001498
Markus Armbrusterfd97fd42016-03-07 20:25:13 +01001499 if (kvm_enabled() && !kvm_has_sync_mmu()) {
1500 error_setg(errp,
1501 "host lacks kvm mmu notifiers, -mem-path unsupported");
1502 return NULL;
1503 }
1504
1505 for (;;) {
1506 fd = open(path, O_RDWR);
1507 if (fd >= 0) {
1508 /* @path names an existing file, use it */
1509 break;
1510 }
1511 if (errno == ENOENT) {
1512 /* @path names a file that doesn't exist, create it */
1513 fd = open(path, O_RDWR | O_CREAT | O_EXCL, 0644);
1514 if (fd >= 0) {
1515 unlink_on_error = true;
1516 break;
1517 }
1518 } else if (errno == EISDIR) {
1519 /* @path names a directory, create a file there */
1520 /* Make name safe to use with mkstemp by replacing '/' with '_'. */
1521 sanitized_name = g_strdup(memory_region_name(block->mr));
1522 for (c = sanitized_name; *c != '\0'; c++) {
1523 if (*c == '/') {
1524 *c = '_';
1525 }
1526 }
1527
1528 filename = g_strdup_printf("%s/qemu_back_mem.%s.XXXXXX", path,
1529 sanitized_name);
1530 g_free(sanitized_name);
1531
1532 fd = mkstemp(filename);
1533 if (fd >= 0) {
1534 unlink(filename);
1535 g_free(filename);
1536 break;
1537 }
1538 g_free(filename);
1539 }
1540 if (errno != EEXIST && errno != EINTR) {
1541 error_setg_errno(errp, errno,
1542 "can't open backing store %s for guest RAM",
1543 path);
1544 goto error;
1545 }
1546 /*
1547 * Try again on EINTR and EEXIST. The latter happens when
1548 * something else creates the file between our two open().
1549 */
1550 }
1551
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01001552 block->page_size = qemu_fd_getpagesize(fd);
Haozhong Zhang83606682016-10-24 20:49:37 +08001553 block->mr->align = block->page_size;
1554#if defined(__s390x__)
1555 if (kvm_enabled()) {
1556 block->mr->align = MAX(block->mr->align, QEMU_VMALLOC_ALIGN);
1557 }
1558#endif
Marcelo Tosattic9027602010-03-01 20:25:08 -03001559
Haozhong Zhangd6af99c2016-10-27 12:22:58 +08001560 file_size = get_file_size(fd);
1561
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01001562 if (memory < block->page_size) {
Hu Tao557529d2014-09-09 13:28:00 +08001563 error_setg(errp, "memory size 0x" RAM_ADDR_FMT " must be equal to "
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01001564 "or larger than page size 0x%zx",
1565 memory, block->page_size);
Hu Tao557529d2014-09-09 13:28:00 +08001566 goto error;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001567 }
1568
Haozhong Zhang1775f112016-11-02 09:05:51 +08001569 if (file_size > 0 && file_size < memory) {
1570 error_setg(errp, "backing store %s size 0x%" PRIx64
1571 " does not match 'size' option 0x" RAM_ADDR_FMT,
1572 path, file_size, memory);
1573 goto error;
1574 }
1575
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01001576 memory = ROUND_UP(memory, block->page_size);
Marcelo Tosattic9027602010-03-01 20:25:08 -03001577
1578 /*
1579 * ftruncate is not supported by hugetlbfs in older
1580 * hosts, so don't bother bailing out on errors.
1581 * If anything goes wrong with it under other filesystems,
1582 * mmap will fail.
Haozhong Zhangd6af99c2016-10-27 12:22:58 +08001583 *
1584 * Do not truncate the non-empty backend file to avoid corrupting
1585 * the existing data in the file. Disabling shrinking is not
1586 * enough. For example, the current vNVDIMM implementation stores
1587 * the guest NVDIMM labels at the end of the backend file. If the
1588 * backend file is later extended, QEMU will not be able to find
1589 * those labels. Therefore, extending the non-empty backend file
1590 * is disabled as well.
Marcelo Tosattic9027602010-03-01 20:25:08 -03001591 */
Haozhong Zhangd6af99c2016-10-27 12:22:58 +08001592 if (!file_size && ftruncate(fd, memory)) {
Yoshiaki Tamura9742bf22010-08-18 13:30:13 +09001593 perror("ftruncate");
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001594 }
Marcelo Tosattic9027602010-03-01 20:25:08 -03001595
Dominik Dingeld2f39ad2016-04-25 13:55:38 +02001596 area = qemu_ram_mmap(fd, memory, block->mr->align,
1597 block->flags & RAM_SHARED);
Marcelo Tosattic9027602010-03-01 20:25:08 -03001598 if (area == MAP_FAILED) {
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001599 error_setg_errno(errp, errno,
Markus Armbrusterfd97fd42016-03-07 20:25:13 +01001600 "unable to map backing store for guest RAM");
Marcelo Tosattif9a49df2014-02-04 13:41:53 -05001601 goto error;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001602 }
Marcelo Tosattief36fa12013-10-28 18:51:46 -02001603
1604 if (mem_prealloc) {
Jitendra Kolhe1e356fc2017-02-24 09:01:43 +05301605 os_mem_prealloc(fd, area, memory, smp_cpus, errp);
Igor Mammedov056b68a2016-07-20 11:54:03 +02001606 if (errp && *errp) {
1607 goto error;
1608 }
Marcelo Tosattief36fa12013-10-28 18:51:46 -02001609 }
1610
Alex Williamson04b16652010-07-02 11:13:17 -06001611 block->fd = fd;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001612 return area;
Marcelo Tosattif9a49df2014-02-04 13:41:53 -05001613
1614error:
Igor Mammedov056b68a2016-07-20 11:54:03 +02001615 if (area != MAP_FAILED) {
1616 qemu_ram_munmap(area, memory);
1617 }
Markus Armbrusterfd97fd42016-03-07 20:25:13 +01001618 if (unlink_on_error) {
1619 unlink(path);
1620 }
Paolo Bonzini5c3ece72016-03-17 15:53:13 +01001621 if (fd != -1) {
1622 close(fd);
1623 }
Marcelo Tosattif9a49df2014-02-04 13:41:53 -05001624 return NULL;
Marcelo Tosattic9027602010-03-01 20:25:08 -03001625}
1626#endif
1627
Mike Day0dc3f442013-09-05 14:41:35 -04001628/* Called with the ramlist lock held. */
Alex Williamsond17b5282010-06-25 11:08:38 -06001629static ram_addr_t find_ram_offset(ram_addr_t size)
1630{
Alex Williamson04b16652010-07-02 11:13:17 -06001631 RAMBlock *block, *next_block;
Alex Williamson3e837b22011-10-31 08:54:09 -06001632 ram_addr_t offset = RAM_ADDR_MAX, mingap = RAM_ADDR_MAX;
Alex Williamson04b16652010-07-02 11:13:17 -06001633
Stefan Hajnoczi49cd9ac2013-03-11 10:20:21 +01001634 assert(size != 0); /* it would hand out same offset multiple times */
1635
Mike Day0dc3f442013-09-05 14:41:35 -04001636 if (QLIST_EMPTY_RCU(&ram_list.blocks)) {
Alex Williamson04b16652010-07-02 11:13:17 -06001637 return 0;
Mike Day0d53d9f2015-01-21 13:45:24 +01001638 }
Alex Williamson04b16652010-07-02 11:13:17 -06001639
Peter Xu99e15582017-05-12 12:17:39 +08001640 RAMBLOCK_FOREACH(block) {
Anthony PERARDf15fbc42011-07-20 08:17:42 +00001641 ram_addr_t end, next = RAM_ADDR_MAX;
Alex Williamson04b16652010-07-02 11:13:17 -06001642
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001643 end = block->offset + block->max_length;
Alex Williamson04b16652010-07-02 11:13:17 -06001644
Peter Xu99e15582017-05-12 12:17:39 +08001645 RAMBLOCK_FOREACH(next_block) {
Alex Williamson04b16652010-07-02 11:13:17 -06001646 if (next_block->offset >= end) {
1647 next = MIN(next, next_block->offset);
1648 }
1649 }
1650 if (next - end >= size && next - end < mingap) {
Alex Williamson3e837b22011-10-31 08:54:09 -06001651 offset = end;
Alex Williamson04b16652010-07-02 11:13:17 -06001652 mingap = next - end;
1653 }
1654 }
Alex Williamson3e837b22011-10-31 08:54:09 -06001655
1656 if (offset == RAM_ADDR_MAX) {
1657 fprintf(stderr, "Failed to find gap of requested size: %" PRIu64 "\n",
1658 (uint64_t)size);
1659 abort();
1660 }
1661
Alex Williamson04b16652010-07-02 11:13:17 -06001662 return offset;
1663}
1664
Juan Quintelab8c48992017-03-21 17:44:30 +01001665unsigned long last_ram_page(void)
Alex Williamson04b16652010-07-02 11:13:17 -06001666{
Alex Williamsond17b5282010-06-25 11:08:38 -06001667 RAMBlock *block;
1668 ram_addr_t last = 0;
1669
Mike Day0dc3f442013-09-05 14:41:35 -04001670 rcu_read_lock();
Peter Xu99e15582017-05-12 12:17:39 +08001671 RAMBLOCK_FOREACH(block) {
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001672 last = MAX(last, block->offset + block->max_length);
Mike Day0d53d9f2015-01-21 13:45:24 +01001673 }
Mike Day0dc3f442013-09-05 14:41:35 -04001674 rcu_read_unlock();
Juan Quintelab8c48992017-03-21 17:44:30 +01001675 return last >> TARGET_PAGE_BITS;
Alex Williamsond17b5282010-06-25 11:08:38 -06001676}
1677
Jason Baronddb97f12012-08-02 15:44:16 -04001678static void qemu_ram_setup_dump(void *addr, ram_addr_t size)
1679{
1680 int ret;
Jason Baronddb97f12012-08-02 15:44:16 -04001681
1682 /* Use MADV_DONTDUMP, if user doesn't want the guest memory in the core */
Marcel Apfelbaum47c8ca52015-02-04 17:43:54 +02001683 if (!machine_dump_guest_core(current_machine)) {
Jason Baronddb97f12012-08-02 15:44:16 -04001684 ret = qemu_madvise(addr, size, QEMU_MADV_DONTDUMP);
1685 if (ret) {
1686 perror("qemu_madvise");
1687 fprintf(stderr, "madvise doesn't support MADV_DONTDUMP, "
1688 "but dump_guest_core=off specified\n");
1689 }
1690 }
1691}
1692
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00001693const char *qemu_ram_get_idstr(RAMBlock *rb)
1694{
1695 return rb->idstr;
1696}
1697
Dr. David Alan Gilbert463a4ac2017-03-07 18:36:36 +00001698bool qemu_ram_is_shared(RAMBlock *rb)
1699{
1700 return rb->flags & RAM_SHARED;
1701}
1702
Mike Dayae3a7042013-09-05 14:41:35 -04001703/* Called with iothread lock held. */
Gongleifa53a0e2016-05-10 10:04:59 +08001704void qemu_ram_set_idstr(RAMBlock *new_block, const char *name, DeviceState *dev)
Hu Tao20cfe882014-04-02 15:13:26 +08001705{
Gongleifa53a0e2016-05-10 10:04:59 +08001706 RAMBlock *block;
Hu Tao20cfe882014-04-02 15:13:26 +08001707
Avi Kivityc5705a72011-12-20 15:59:12 +02001708 assert(new_block);
1709 assert(!new_block->idstr[0]);
Cam Macdonell84b89d72010-07-26 18:10:57 -06001710
Anthony Liguori09e5ab62012-02-03 12:28:43 -06001711 if (dev) {
1712 char *id = qdev_get_dev_path(dev);
Cam Macdonell84b89d72010-07-26 18:10:57 -06001713 if (id) {
1714 snprintf(new_block->idstr, sizeof(new_block->idstr), "%s/", id);
Anthony Liguori7267c092011-08-20 22:09:37 -05001715 g_free(id);
Cam Macdonell84b89d72010-07-26 18:10:57 -06001716 }
1717 }
1718 pstrcat(new_block->idstr, sizeof(new_block->idstr), name);
1719
Gongleiab0a9952016-05-10 10:05:00 +08001720 rcu_read_lock();
Peter Xu99e15582017-05-12 12:17:39 +08001721 RAMBLOCK_FOREACH(block) {
Gongleifa53a0e2016-05-10 10:04:59 +08001722 if (block != new_block &&
1723 !strcmp(block->idstr, new_block->idstr)) {
Cam Macdonell84b89d72010-07-26 18:10:57 -06001724 fprintf(stderr, "RAMBlock \"%s\" already registered, abort!\n",
1725 new_block->idstr);
1726 abort();
1727 }
1728 }
Mike Day0dc3f442013-09-05 14:41:35 -04001729 rcu_read_unlock();
Avi Kivityc5705a72011-12-20 15:59:12 +02001730}
1731
Mike Dayae3a7042013-09-05 14:41:35 -04001732/* Called with iothread lock held. */
Gongleifa53a0e2016-05-10 10:04:59 +08001733void qemu_ram_unset_idstr(RAMBlock *block)
Hu Tao20cfe882014-04-02 15:13:26 +08001734{
Mike Dayae3a7042013-09-05 14:41:35 -04001735 /* FIXME: arch_init.c assumes that this is not called throughout
1736 * migration. Ignore the problem since hot-unplug during migration
1737 * does not work anyway.
1738 */
Hu Tao20cfe882014-04-02 15:13:26 +08001739 if (block) {
1740 memset(block->idstr, 0, sizeof(block->idstr));
1741 }
1742}
1743
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01001744size_t qemu_ram_pagesize(RAMBlock *rb)
1745{
1746 return rb->page_size;
1747}
1748
Dr. David Alan Gilbert67f11b52017-02-24 18:28:34 +00001749/* Returns the largest size of page in use */
1750size_t qemu_ram_pagesize_largest(void)
1751{
1752 RAMBlock *block;
1753 size_t largest = 0;
1754
Peter Xu99e15582017-05-12 12:17:39 +08001755 RAMBLOCK_FOREACH(block) {
Dr. David Alan Gilbert67f11b52017-02-24 18:28:34 +00001756 largest = MAX(largest, qemu_ram_pagesize(block));
1757 }
1758
1759 return largest;
1760}
1761
Luiz Capitulino8490fc72012-09-05 16:50:16 -03001762static int memory_try_enable_merging(void *addr, size_t len)
1763{
Marcel Apfelbaum75cc7f02015-02-04 17:43:55 +02001764 if (!machine_mem_merge(current_machine)) {
Luiz Capitulino8490fc72012-09-05 16:50:16 -03001765 /* disabled by the user */
1766 return 0;
1767 }
1768
1769 return qemu_madvise(addr, len, QEMU_MADV_MERGEABLE);
1770}
1771
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001772/* Only legal before guest might have detected the memory size: e.g. on
1773 * incoming migration, or right after reset.
1774 *
1775 * As memory core doesn't know how is memory accessed, it is up to
1776 * resize callback to update device state and/or add assertions to detect
1777 * misuse, if necessary.
1778 */
Gongleifa53a0e2016-05-10 10:04:59 +08001779int qemu_ram_resize(RAMBlock *block, ram_addr_t newsize, Error **errp)
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001780{
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001781 assert(block);
1782
Dr. David Alan Gilbert4ed023c2015-11-05 18:11:16 +00001783 newsize = HOST_PAGE_ALIGN(newsize);
Michael S. Tsirkin129ddaf2015-02-17 10:15:30 +01001784
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001785 if (block->used_length == newsize) {
1786 return 0;
1787 }
1788
1789 if (!(block->flags & RAM_RESIZEABLE)) {
1790 error_setg_errno(errp, EINVAL,
1791 "Length mismatch: %s: 0x" RAM_ADDR_FMT
1792 " in != 0x" RAM_ADDR_FMT, block->idstr,
1793 newsize, block->used_length);
1794 return -EINVAL;
1795 }
1796
1797 if (block->max_length < newsize) {
1798 error_setg_errno(errp, EINVAL,
1799 "Length too large: %s: 0x" RAM_ADDR_FMT
1800 " > 0x" RAM_ADDR_FMT, block->idstr,
1801 newsize, block->max_length);
1802 return -EINVAL;
1803 }
1804
1805 cpu_physical_memory_clear_dirty_range(block->offset, block->used_length);
1806 block->used_length = newsize;
Paolo Bonzini58d27072015-03-23 11:56:01 +01001807 cpu_physical_memory_set_dirty_range(block->offset, block->used_length,
1808 DIRTY_CLIENTS_ALL);
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001809 memory_region_set_size(block->mr, newsize);
1810 if (block->resized) {
1811 block->resized(block->idstr, newsize, block->host);
1812 }
1813 return 0;
1814}
1815
Stefan Hajnoczi5b82b702016-01-25 13:33:20 +00001816/* Called with ram_list.mutex held */
1817static void dirty_memory_extend(ram_addr_t old_ram_size,
1818 ram_addr_t new_ram_size)
1819{
1820 ram_addr_t old_num_blocks = DIV_ROUND_UP(old_ram_size,
1821 DIRTY_MEMORY_BLOCK_SIZE);
1822 ram_addr_t new_num_blocks = DIV_ROUND_UP(new_ram_size,
1823 DIRTY_MEMORY_BLOCK_SIZE);
1824 int i;
1825
1826 /* Only need to extend if block count increased */
1827 if (new_num_blocks <= old_num_blocks) {
1828 return;
1829 }
1830
1831 for (i = 0; i < DIRTY_MEMORY_NUM; i++) {
1832 DirtyMemoryBlocks *old_blocks;
1833 DirtyMemoryBlocks *new_blocks;
1834 int j;
1835
1836 old_blocks = atomic_rcu_read(&ram_list.dirty_memory[i]);
1837 new_blocks = g_malloc(sizeof(*new_blocks) +
1838 sizeof(new_blocks->blocks[0]) * new_num_blocks);
1839
1840 if (old_num_blocks) {
1841 memcpy(new_blocks->blocks, old_blocks->blocks,
1842 old_num_blocks * sizeof(old_blocks->blocks[0]));
1843 }
1844
1845 for (j = old_num_blocks; j < new_num_blocks; j++) {
1846 new_blocks->blocks[j] = bitmap_new(DIRTY_MEMORY_BLOCK_SIZE);
1847 }
1848
1849 atomic_rcu_set(&ram_list.dirty_memory[i], new_blocks);
1850
1851 if (old_blocks) {
1852 g_free_rcu(old_blocks, rcu);
1853 }
1854 }
1855}
1856
Fam Zheng528f46a2016-03-01 14:18:18 +08001857static void ram_block_add(RAMBlock *new_block, Error **errp)
Avi Kivityc5705a72011-12-20 15:59:12 +02001858{
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001859 RAMBlock *block;
Mike Day0d53d9f2015-01-21 13:45:24 +01001860 RAMBlock *last_block = NULL;
Juan Quintela2152f5c2013-10-08 13:52:02 +02001861 ram_addr_t old_ram_size, new_ram_size;
Markus Armbruster37aa7a02016-01-14 16:09:39 +01001862 Error *err = NULL;
Juan Quintela2152f5c2013-10-08 13:52:02 +02001863
Juan Quintelab8c48992017-03-21 17:44:30 +01001864 old_ram_size = last_ram_page();
Avi Kivityc5705a72011-12-20 15:59:12 +02001865
Umesh Deshpandeb2a86582011-08-17 00:01:33 -07001866 qemu_mutex_lock_ramlist();
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001867 new_block->offset = find_ram_offset(new_block->max_length);
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001868
1869 if (!new_block->host) {
1870 if (xen_enabled()) {
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001871 xen_ram_alloc(new_block->offset, new_block->max_length,
Markus Armbruster37aa7a02016-01-14 16:09:39 +01001872 new_block->mr, &err);
1873 if (err) {
1874 error_propagate(errp, err);
1875 qemu_mutex_unlock_ramlist();
Paolo Bonzini39c350e2016-03-09 18:14:01 +01001876 return;
Markus Armbruster37aa7a02016-01-14 16:09:39 +01001877 }
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001878 } else {
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001879 new_block->host = phys_mem_alloc(new_block->max_length,
Igor Mammedova2b257d2014-10-31 16:38:37 +00001880 &new_block->mr->align);
Markus Armbruster39228252013-07-31 15:11:11 +02001881 if (!new_block->host) {
Hu Taoef701d72014-09-09 13:27:54 +08001882 error_setg_errno(errp, errno,
1883 "cannot set up guest memory '%s'",
1884 memory_region_name(new_block->mr));
1885 qemu_mutex_unlock_ramlist();
Paolo Bonzini39c350e2016-03-09 18:14:01 +01001886 return;
Markus Armbruster39228252013-07-31 15:11:11 +02001887 }
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001888 memory_try_enable_merging(new_block->host, new_block->max_length);
Yoshiaki Tamura6977dfe2010-08-18 15:41:49 +09001889 }
1890 }
Cam Macdonell84b89d72010-07-26 18:10:57 -06001891
Li Zhijiandd631692015-07-02 20:18:06 +08001892 new_ram_size = MAX(old_ram_size,
1893 (new_block->offset + new_block->max_length) >> TARGET_PAGE_BITS);
1894 if (new_ram_size > old_ram_size) {
Stefan Hajnoczi5b82b702016-01-25 13:33:20 +00001895 dirty_memory_extend(old_ram_size, new_ram_size);
Li Zhijiandd631692015-07-02 20:18:06 +08001896 }
Mike Day0d53d9f2015-01-21 13:45:24 +01001897 /* Keep the list sorted from biggest to smallest block. Unlike QTAILQ,
1898 * QLIST (which has an RCU-friendly variant) does not have insertion at
1899 * tail, so save the last element in last_block.
1900 */
Peter Xu99e15582017-05-12 12:17:39 +08001901 RAMBLOCK_FOREACH(block) {
Mike Day0d53d9f2015-01-21 13:45:24 +01001902 last_block = block;
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001903 if (block->max_length < new_block->max_length) {
Paolo Bonziniabb26d62012-11-14 16:00:51 +01001904 break;
1905 }
1906 }
1907 if (block) {
Mike Day0dc3f442013-09-05 14:41:35 -04001908 QLIST_INSERT_BEFORE_RCU(block, new_block, next);
Mike Day0d53d9f2015-01-21 13:45:24 +01001909 } else if (last_block) {
Mike Day0dc3f442013-09-05 14:41:35 -04001910 QLIST_INSERT_AFTER_RCU(last_block, new_block, next);
Mike Day0d53d9f2015-01-21 13:45:24 +01001911 } else { /* list is empty */
Mike Day0dc3f442013-09-05 14:41:35 -04001912 QLIST_INSERT_HEAD_RCU(&ram_list.blocks, new_block, next);
Paolo Bonziniabb26d62012-11-14 16:00:51 +01001913 }
Paolo Bonzini0d6d3c82012-11-14 15:45:02 +01001914 ram_list.mru_block = NULL;
Cam Macdonell84b89d72010-07-26 18:10:57 -06001915
Mike Day0dc3f442013-09-05 14:41:35 -04001916 /* Write list before version */
1917 smp_wmb();
Umesh Deshpandef798b072011-08-18 11:41:17 -07001918 ram_list.version++;
Umesh Deshpandeb2a86582011-08-17 00:01:33 -07001919 qemu_mutex_unlock_ramlist();
Umesh Deshpandef798b072011-08-18 11:41:17 -07001920
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001921 cpu_physical_memory_set_dirty_range(new_block->offset,
Paolo Bonzini58d27072015-03-23 11:56:01 +01001922 new_block->used_length,
1923 DIRTY_CLIENTS_ALL);
Cam Macdonell84b89d72010-07-26 18:10:57 -06001924
Paolo Bonzinia904c912015-01-21 16:18:35 +01001925 if (new_block->host) {
1926 qemu_ram_setup_dump(new_block->host, new_block->max_length);
1927 qemu_madvise(new_block->host, new_block->max_length, QEMU_MADV_HUGEPAGE);
Cao jinc2cd6272016-09-12 14:34:56 +08001928 /* MADV_DONTFORK is also needed by KVM in absence of synchronous MMU */
Paolo Bonzinia904c912015-01-21 16:18:35 +01001929 qemu_madvise(new_block->host, new_block->max_length, QEMU_MADV_DONTFORK);
Paolo Bonzini0987d732016-12-21 00:31:36 +08001930 ram_block_notify_add(new_block->host, new_block->max_length);
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001931 }
Cam Macdonell84b89d72010-07-26 18:10:57 -06001932}
1933
Paolo Bonzini0b183fc2014-05-14 17:43:19 +08001934#ifdef __linux__
Fam Zheng528f46a2016-03-01 14:18:18 +08001935RAMBlock *qemu_ram_alloc_from_file(ram_addr_t size, MemoryRegion *mr,
1936 bool share, const char *mem_path,
1937 Error **errp)
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001938{
1939 RAMBlock *new_block;
Hu Taoef701d72014-09-09 13:27:54 +08001940 Error *local_err = NULL;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001941
1942 if (xen_enabled()) {
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001943 error_setg(errp, "-mem-path not supported with Xen");
Fam Zheng528f46a2016-03-01 14:18:18 +08001944 return NULL;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001945 }
1946
1947 if (phys_mem_alloc != qemu_anon_ram_alloc) {
1948 /*
1949 * file_ram_alloc() needs to allocate just like
1950 * phys_mem_alloc, but we haven't bothered to provide
1951 * a hook there.
1952 */
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001953 error_setg(errp,
1954 "-mem-path not supported with this accelerator");
Fam Zheng528f46a2016-03-01 14:18:18 +08001955 return NULL;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001956 }
1957
Dr. David Alan Gilbert4ed023c2015-11-05 18:11:16 +00001958 size = HOST_PAGE_ALIGN(size);
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001959 new_block = g_malloc0(sizeof(*new_block));
1960 new_block->mr = mr;
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001961 new_block->used_length = size;
1962 new_block->max_length = size;
Paolo Bonzinidbcb8982014-06-10 19:15:24 +08001963 new_block->flags = share ? RAM_SHARED : 0;
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001964 new_block->host = file_ram_alloc(new_block, size,
1965 mem_path, errp);
1966 if (!new_block->host) {
1967 g_free(new_block);
Fam Zheng528f46a2016-03-01 14:18:18 +08001968 return NULL;
Paolo Bonzini7f56e742014-05-14 17:43:20 +08001969 }
1970
Fam Zheng528f46a2016-03-01 14:18:18 +08001971 ram_block_add(new_block, &local_err);
Hu Taoef701d72014-09-09 13:27:54 +08001972 if (local_err) {
1973 g_free(new_block);
1974 error_propagate(errp, local_err);
Fam Zheng528f46a2016-03-01 14:18:18 +08001975 return NULL;
Hu Taoef701d72014-09-09 13:27:54 +08001976 }
Fam Zheng528f46a2016-03-01 14:18:18 +08001977 return new_block;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001978}
Paolo Bonzini0b183fc2014-05-14 17:43:19 +08001979#endif
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001980
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001981static
Fam Zheng528f46a2016-03-01 14:18:18 +08001982RAMBlock *qemu_ram_alloc_internal(ram_addr_t size, ram_addr_t max_size,
1983 void (*resized)(const char*,
1984 uint64_t length,
1985 void *host),
1986 void *host, bool resizeable,
1987 MemoryRegion *mr, Error **errp)
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001988{
1989 RAMBlock *new_block;
Hu Taoef701d72014-09-09 13:27:54 +08001990 Error *local_err = NULL;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001991
Dr. David Alan Gilbert4ed023c2015-11-05 18:11:16 +00001992 size = HOST_PAGE_ALIGN(size);
1993 max_size = HOST_PAGE_ALIGN(max_size);
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08001994 new_block = g_malloc0(sizeof(*new_block));
1995 new_block->mr = mr;
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001996 new_block->resized = resized;
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02001997 new_block->used_length = size;
1998 new_block->max_length = max_size;
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02001999 assert(max_size >= size);
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08002000 new_block->fd = -1;
Dr. David Alan Gilbert863e9622016-09-29 20:09:37 +01002001 new_block->page_size = getpagesize();
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08002002 new_block->host = host;
2003 if (host) {
Paolo Bonzini7bd4f432014-05-14 17:43:22 +08002004 new_block->flags |= RAM_PREALLOC;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08002005 }
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02002006 if (resizeable) {
2007 new_block->flags |= RAM_RESIZEABLE;
2008 }
Fam Zheng528f46a2016-03-01 14:18:18 +08002009 ram_block_add(new_block, &local_err);
Hu Taoef701d72014-09-09 13:27:54 +08002010 if (local_err) {
2011 g_free(new_block);
2012 error_propagate(errp, local_err);
Fam Zheng528f46a2016-03-01 14:18:18 +08002013 return NULL;
Hu Taoef701d72014-09-09 13:27:54 +08002014 }
Fam Zheng528f46a2016-03-01 14:18:18 +08002015 return new_block;
Paolo Bonzinie1c57ab2014-05-14 17:43:18 +08002016}
2017
Fam Zheng528f46a2016-03-01 14:18:18 +08002018RAMBlock *qemu_ram_alloc_from_ptr(ram_addr_t size, void *host,
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02002019 MemoryRegion *mr, Error **errp)
2020{
2021 return qemu_ram_alloc_internal(size, size, NULL, host, false, mr, errp);
2022}
2023
Fam Zheng528f46a2016-03-01 14:18:18 +08002024RAMBlock *qemu_ram_alloc(ram_addr_t size, MemoryRegion *mr, Error **errp)
pbrook94a6b542009-04-11 17:15:54 +00002025{
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02002026 return qemu_ram_alloc_internal(size, size, NULL, NULL, false, mr, errp);
2027}
2028
Fam Zheng528f46a2016-03-01 14:18:18 +08002029RAMBlock *qemu_ram_alloc_resizeable(ram_addr_t size, ram_addr_t maxsz,
Michael S. Tsirkin62be4e32014-11-12 14:27:41 +02002030 void (*resized)(const char*,
2031 uint64_t length,
2032 void *host),
2033 MemoryRegion *mr, Error **errp)
2034{
2035 return qemu_ram_alloc_internal(size, maxsz, resized, NULL, true, mr, errp);
pbrook94a6b542009-04-11 17:15:54 +00002036}
bellarde9a1ab12007-02-08 23:08:38 +00002037
Paolo Bonzini43771532013-09-09 17:58:40 +02002038static void reclaim_ramblock(RAMBlock *block)
2039{
2040 if (block->flags & RAM_PREALLOC) {
2041 ;
2042 } else if (xen_enabled()) {
2043 xen_invalidate_map_cache_entry(block->host);
2044#ifndef _WIN32
2045 } else if (block->fd >= 0) {
Eduardo Habkost2f3a2bb2015-11-06 20:11:21 -02002046 qemu_ram_munmap(block->host, block->max_length);
Paolo Bonzini43771532013-09-09 17:58:40 +02002047 close(block->fd);
2048#endif
2049 } else {
2050 qemu_anon_ram_free(block->host, block->max_length);
2051 }
2052 g_free(block);
2053}
2054
Fam Zhengf1060c52016-03-01 14:18:22 +08002055void qemu_ram_free(RAMBlock *block)
bellarde9a1ab12007-02-08 23:08:38 +00002056{
Marc-André Lureau85bc2a12016-03-29 13:20:51 +02002057 if (!block) {
2058 return;
2059 }
2060
Paolo Bonzini0987d732016-12-21 00:31:36 +08002061 if (block->host) {
2062 ram_block_notify_remove(block->host, block->max_length);
2063 }
2064
Umesh Deshpandeb2a86582011-08-17 00:01:33 -07002065 qemu_mutex_lock_ramlist();
Fam Zhengf1060c52016-03-01 14:18:22 +08002066 QLIST_REMOVE_RCU(block, next);
2067 ram_list.mru_block = NULL;
2068 /* Write list before version */
2069 smp_wmb();
2070 ram_list.version++;
2071 call_rcu(block, reclaim_ramblock, rcu);
Umesh Deshpandeb2a86582011-08-17 00:01:33 -07002072 qemu_mutex_unlock_ramlist();
bellarde9a1ab12007-02-08 23:08:38 +00002073}
2074
Huang Yingcd19cfa2011-03-02 08:56:19 +01002075#ifndef _WIN32
2076void qemu_ram_remap(ram_addr_t addr, ram_addr_t length)
2077{
2078 RAMBlock *block;
2079 ram_addr_t offset;
2080 int flags;
2081 void *area, *vaddr;
2082
Peter Xu99e15582017-05-12 12:17:39 +08002083 RAMBLOCK_FOREACH(block) {
Huang Yingcd19cfa2011-03-02 08:56:19 +01002084 offset = addr - block->offset;
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02002085 if (offset < block->max_length) {
Michael S. Tsirkin1240be22014-11-12 11:44:41 +02002086 vaddr = ramblock_ptr(block, offset);
Paolo Bonzini7bd4f432014-05-14 17:43:22 +08002087 if (block->flags & RAM_PREALLOC) {
Huang Yingcd19cfa2011-03-02 08:56:19 +01002088 ;
Markus Armbrusterdfeaf2a2013-07-31 15:11:05 +02002089 } else if (xen_enabled()) {
2090 abort();
Huang Yingcd19cfa2011-03-02 08:56:19 +01002091 } else {
2092 flags = MAP_FIXED;
Markus Armbruster3435f392013-07-31 15:11:07 +02002093 if (block->fd >= 0) {
Paolo Bonzinidbcb8982014-06-10 19:15:24 +08002094 flags |= (block->flags & RAM_SHARED ?
2095 MAP_SHARED : MAP_PRIVATE);
Markus Armbruster3435f392013-07-31 15:11:07 +02002096 area = mmap(vaddr, length, PROT_READ | PROT_WRITE,
2097 flags, block->fd, offset);
Huang Yingcd19cfa2011-03-02 08:56:19 +01002098 } else {
Markus Armbruster2eb9fba2013-07-31 15:11:09 +02002099 /*
2100 * Remap needs to match alloc. Accelerators that
2101 * set phys_mem_alloc never remap. If they did,
2102 * we'd need a remap hook here.
2103 */
2104 assert(phys_mem_alloc == qemu_anon_ram_alloc);
2105
Huang Yingcd19cfa2011-03-02 08:56:19 +01002106 flags |= MAP_PRIVATE | MAP_ANONYMOUS;
2107 area = mmap(vaddr, length, PROT_READ | PROT_WRITE,
2108 flags, -1, 0);
Huang Yingcd19cfa2011-03-02 08:56:19 +01002109 }
2110 if (area != vaddr) {
Anthony PERARDf15fbc42011-07-20 08:17:42 +00002111 fprintf(stderr, "Could not remap addr: "
2112 RAM_ADDR_FMT "@" RAM_ADDR_FMT "\n",
Huang Yingcd19cfa2011-03-02 08:56:19 +01002113 length, addr);
2114 exit(1);
2115 }
Luiz Capitulino8490fc72012-09-05 16:50:16 -03002116 memory_try_enable_merging(vaddr, length);
Jason Baronddb97f12012-08-02 15:44:16 -04002117 qemu_ram_setup_dump(vaddr, length);
Huang Yingcd19cfa2011-03-02 08:56:19 +01002118 }
Huang Yingcd19cfa2011-03-02 08:56:19 +01002119 }
2120 }
2121}
2122#endif /* !_WIN32 */
2123
Paolo Bonzini1b5ec232013-05-06 14:36:15 +02002124/* Return a host pointer to ram allocated with qemu_ram_alloc.
Mike Dayae3a7042013-09-05 14:41:35 -04002125 * This should not be used for general purpose DMA. Use address_space_map
2126 * or address_space_rw instead. For local memory (e.g. video ram) that the
2127 * device owns, use memory_region_get_ram_ptr.
Mike Day0dc3f442013-09-05 14:41:35 -04002128 *
Paolo Bonzini49b24af2015-12-16 10:30:47 +01002129 * Called within RCU critical section.
Paolo Bonzini1b5ec232013-05-06 14:36:15 +02002130 */
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002131void *qemu_map_ram_ptr(RAMBlock *ram_block, ram_addr_t addr)
Paolo Bonzini1b5ec232013-05-06 14:36:15 +02002132{
Gonglei3655cb92016-02-20 10:35:20 +08002133 RAMBlock *block = ram_block;
2134
2135 if (block == NULL) {
2136 block = qemu_get_ram_block(addr);
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002137 addr -= block->offset;
Gonglei3655cb92016-02-20 10:35:20 +08002138 }
Mike Dayae3a7042013-09-05 14:41:35 -04002139
2140 if (xen_enabled() && block->host == NULL) {
Paolo Bonzini0d6d3c82012-11-14 15:45:02 +01002141 /* We need to check if the requested address is in the RAM
2142 * because we don't want to map the entire memory in QEMU.
2143 * In that case just map until the end of the page.
2144 */
2145 if (block->offset == 0) {
Stefano Stabellini1ff7c592017-05-03 14:00:35 -07002146 return xen_map_cache(addr, 0, 0, false);
Paolo Bonzini0d6d3c82012-11-14 15:45:02 +01002147 }
Mike Dayae3a7042013-09-05 14:41:35 -04002148
Stefano Stabellini1ff7c592017-05-03 14:00:35 -07002149 block->host = xen_map_cache(block->offset, block->max_length, 1, false);
Paolo Bonzini0d6d3c82012-11-14 15:45:02 +01002150 }
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002151 return ramblock_ptr(block, addr);
pbrookdc828ca2009-04-09 22:21:07 +00002152}
2153
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002154/* Return a host pointer to guest's ram. Similar to qemu_map_ram_ptr
Mike Dayae3a7042013-09-05 14:41:35 -04002155 * but takes a size argument.
Mike Day0dc3f442013-09-05 14:41:35 -04002156 *
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01002157 * Called within RCU critical section.
Mike Dayae3a7042013-09-05 14:41:35 -04002158 */
Gonglei3655cb92016-02-20 10:35:20 +08002159static void *qemu_ram_ptr_length(RAMBlock *ram_block, ram_addr_t addr,
2160 hwaddr *size)
Stefano Stabellini38bee5d2011-05-19 18:35:45 +01002161{
Gonglei3655cb92016-02-20 10:35:20 +08002162 RAMBlock *block = ram_block;
Stefano Stabellini8ab934f2011-06-27 18:26:06 +01002163 if (*size == 0) {
2164 return NULL;
2165 }
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01002166
Gonglei3655cb92016-02-20 10:35:20 +08002167 if (block == NULL) {
2168 block = qemu_get_ram_block(addr);
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002169 addr -= block->offset;
Gonglei3655cb92016-02-20 10:35:20 +08002170 }
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002171 *size = MIN(*size, block->max_length - addr);
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01002172
2173 if (xen_enabled() && block->host == NULL) {
2174 /* We need to check if the requested address is in the RAM
2175 * because we don't want to map the entire memory in QEMU.
2176 * In that case just map the requested area.
2177 */
2178 if (block->offset == 0) {
Stefano Stabellini1ff7c592017-05-03 14:00:35 -07002179 return xen_map_cache(addr, *size, 1, true);
Stefano Stabellini38bee5d2011-05-19 18:35:45 +01002180 }
2181
Stefano Stabellini1ff7c592017-05-03 14:00:35 -07002182 block->host = xen_map_cache(block->offset, block->max_length, 1, true);
Stefano Stabellini38bee5d2011-05-19 18:35:45 +01002183 }
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01002184
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002185 return ramblock_ptr(block, addr);
Stefano Stabellini38bee5d2011-05-19 18:35:45 +01002186}
2187
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002188/*
2189 * Translates a host ptr back to a RAMBlock, a ram_addr and an offset
2190 * in that RAMBlock.
2191 *
2192 * ptr: Host pointer to look up
2193 * round_offset: If true round the result offset down to a page boundary
2194 * *ram_addr: set to result ram_addr
2195 * *offset: set to result offset within the RAMBlock
2196 *
2197 * Returns: RAMBlock (or NULL if not found)
Mike Dayae3a7042013-09-05 14:41:35 -04002198 *
2199 * By the time this function returns, the returned pointer is not protected
2200 * by RCU anymore. If the caller is not within an RCU critical section and
2201 * does not hold the iothread lock, it must have other means of protecting the
2202 * pointer, such as a reference to the region that includes the incoming
2203 * ram_addr_t.
2204 */
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002205RAMBlock *qemu_ram_block_from_host(void *ptr, bool round_offset,
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002206 ram_addr_t *offset)
pbrook5579c7f2009-04-11 14:47:08 +00002207{
pbrook94a6b542009-04-11 17:15:54 +00002208 RAMBlock *block;
2209 uint8_t *host = ptr;
2210
Jan Kiszka868bb332011-06-21 22:59:09 +02002211 if (xen_enabled()) {
Paolo Bonzinif615f392016-05-26 10:07:50 +02002212 ram_addr_t ram_addr;
Mike Day0dc3f442013-09-05 14:41:35 -04002213 rcu_read_lock();
Paolo Bonzinif615f392016-05-26 10:07:50 +02002214 ram_addr = xen_ram_addr_from_mapcache(ptr);
2215 block = qemu_get_ram_block(ram_addr);
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002216 if (block) {
Anthony PERARDd6b6aec2016-06-09 16:56:17 +01002217 *offset = ram_addr - block->offset;
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002218 }
Mike Day0dc3f442013-09-05 14:41:35 -04002219 rcu_read_unlock();
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002220 return block;
Stefano Stabellini712c2b42011-05-19 18:35:46 +01002221 }
2222
Mike Day0dc3f442013-09-05 14:41:35 -04002223 rcu_read_lock();
2224 block = atomic_rcu_read(&ram_list.mru_block);
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02002225 if (block && block->host && host - block->host < block->max_length) {
Paolo Bonzini23887b72013-05-06 14:28:39 +02002226 goto found;
2227 }
2228
Peter Xu99e15582017-05-12 12:17:39 +08002229 RAMBLOCK_FOREACH(block) {
Jun Nakajima432d2682010-08-31 16:41:25 +01002230 /* This case append when the block is not mapped. */
2231 if (block->host == NULL) {
2232 continue;
2233 }
Michael S. Tsirkin9b8424d2014-12-15 22:55:32 +02002234 if (host - block->host < block->max_length) {
Paolo Bonzini23887b72013-05-06 14:28:39 +02002235 goto found;
Alex Williamsonf471a172010-06-11 11:11:42 -06002236 }
pbrook94a6b542009-04-11 17:15:54 +00002237 }
Jun Nakajima432d2682010-08-31 16:41:25 +01002238
Mike Day0dc3f442013-09-05 14:41:35 -04002239 rcu_read_unlock();
Paolo Bonzini1b5ec232013-05-06 14:36:15 +02002240 return NULL;
Paolo Bonzini23887b72013-05-06 14:28:39 +02002241
2242found:
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002243 *offset = (host - block->host);
2244 if (round_offset) {
2245 *offset &= TARGET_PAGE_MASK;
2246 }
Mike Day0dc3f442013-09-05 14:41:35 -04002247 rcu_read_unlock();
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002248 return block;
2249}
2250
Dr. David Alan Gilberte3dd7492015-11-05 18:10:33 +00002251/*
2252 * Finds the named RAMBlock
2253 *
2254 * name: The name of RAMBlock to find
2255 *
2256 * Returns: RAMBlock (or NULL if not found)
2257 */
2258RAMBlock *qemu_ram_block_by_name(const char *name)
2259{
2260 RAMBlock *block;
2261
Peter Xu99e15582017-05-12 12:17:39 +08002262 RAMBLOCK_FOREACH(block) {
Dr. David Alan Gilberte3dd7492015-11-05 18:10:33 +00002263 if (!strcmp(name, block->idstr)) {
2264 return block;
2265 }
2266 }
2267
2268 return NULL;
2269}
2270
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002271/* Some of the softmmu routines need to translate from a host pointer
2272 (typically a TLB entry) back to a ram offset. */
Paolo Bonzini07bdaa42016-03-25 12:55:08 +01002273ram_addr_t qemu_ram_addr_from_host(void *ptr)
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002274{
2275 RAMBlock *block;
Paolo Bonzinif615f392016-05-26 10:07:50 +02002276 ram_addr_t offset;
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002277
Paolo Bonzinif615f392016-05-26 10:07:50 +02002278 block = qemu_ram_block_from_host(ptr, false, &offset);
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002279 if (!block) {
Paolo Bonzini07bdaa42016-03-25 12:55:08 +01002280 return RAM_ADDR_INVALID;
Dr. David Alan Gilbert422148d2015-11-05 18:10:32 +00002281 }
2282
Paolo Bonzini07bdaa42016-03-25 12:55:08 +01002283 return block->offset + offset;
Marcelo Tosattie8902612010-10-11 15:31:19 -03002284}
Alex Williamsonf471a172010-06-11 11:11:42 -06002285
Paolo Bonzini49b24af2015-12-16 10:30:47 +01002286/* Called within RCU critical section. */
Avi Kivitya8170e52012-10-23 12:30:10 +02002287static void notdirty_mem_write(void *opaque, hwaddr ram_addr,
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002288 uint64_t val, unsigned size)
bellard1ccde1c2004-02-06 19:46:14 +00002289{
Alex Bennéeba051fb2016-10-27 16:10:16 +01002290 bool locked = false;
2291
Juan Quintela52159192013-10-08 12:44:04 +02002292 if (!cpu_physical_memory_get_dirty_flag(ram_addr, DIRTY_MEMORY_CODE)) {
Alex Bennéeba051fb2016-10-27 16:10:16 +01002293 locked = true;
2294 tb_lock();
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002295 tb_invalidate_phys_page_fast(ram_addr, size);
bellard3a7d9292005-08-21 09:26:42 +00002296 }
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002297 switch (size) {
2298 case 1:
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002299 stb_p(qemu_map_ram_ptr(NULL, ram_addr), val);
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002300 break;
2301 case 2:
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002302 stw_p(qemu_map_ram_ptr(NULL, ram_addr), val);
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002303 break;
2304 case 4:
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002305 stl_p(qemu_map_ram_ptr(NULL, ram_addr), val);
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002306 break;
2307 default:
2308 abort();
2309 }
Alex Bennéeba051fb2016-10-27 16:10:16 +01002310
2311 if (locked) {
2312 tb_unlock();
2313 }
2314
Paolo Bonzini58d27072015-03-23 11:56:01 +01002315 /* Set both VGA and migration bits for simplicity and to remove
2316 * the notdirty callback faster.
2317 */
2318 cpu_physical_memory_set_dirty_range(ram_addr, size,
2319 DIRTY_CLIENTS_NOCODE);
bellardf23db162005-08-21 19:12:28 +00002320 /* we remove the notdirty callback only if the code has been
2321 flushed */
Juan Quintelaa2cd8c82013-10-10 11:20:22 +02002322 if (!cpu_physical_memory_is_clean(ram_addr)) {
Peter Crosthwaitebcae01e2015-09-10 22:39:42 -07002323 tlb_set_dirty(current_cpu, current_cpu->mem_io_vaddr);
Andreas Färber4917cf42013-05-27 05:17:50 +02002324 }
bellard1ccde1c2004-02-06 19:46:14 +00002325}
2326
Paolo Bonzinib018ddf2013-05-24 14:48:38 +02002327static bool notdirty_mem_accepts(void *opaque, hwaddr addr,
2328 unsigned size, bool is_write)
2329{
2330 return is_write;
2331}
2332
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002333static const MemoryRegionOps notdirty_mem_ops = {
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002334 .write = notdirty_mem_write,
Paolo Bonzinib018ddf2013-05-24 14:48:38 +02002335 .valid.accepts = notdirty_mem_accepts,
Avi Kivity0e0df1e2012-01-02 00:32:15 +02002336 .endianness = DEVICE_NATIVE_ENDIAN,
bellard1ccde1c2004-02-06 19:46:14 +00002337};
2338
pbrook0f459d12008-06-09 00:20:13 +00002339/* Generate a debug exception if a watchpoint has been hit. */
Peter Maydell66b9b432015-04-26 16:49:24 +01002340static void check_watchpoint(int offset, int len, MemTxAttrs attrs, int flags)
pbrook0f459d12008-06-09 00:20:13 +00002341{
Andreas Färber93afead2013-08-26 03:41:01 +02002342 CPUState *cpu = current_cpu;
Sergey Fedorov568496c2016-02-11 11:17:32 +00002343 CPUClass *cc = CPU_GET_CLASS(cpu);
Andreas Färber93afead2013-08-26 03:41:01 +02002344 CPUArchState *env = cpu->env_ptr;
aliguori06d55cc2008-11-18 20:24:06 +00002345 target_ulong pc, cs_base;
pbrook0f459d12008-06-09 00:20:13 +00002346 target_ulong vaddr;
aliguoria1d1bb32008-11-18 20:07:32 +00002347 CPUWatchpoint *wp;
Emilio G. Cota89fee742016-04-07 13:19:22 -04002348 uint32_t cpu_flags;
pbrook0f459d12008-06-09 00:20:13 +00002349
Andreas Färberff4700b2013-08-26 18:23:18 +02002350 if (cpu->watchpoint_hit) {
aliguori06d55cc2008-11-18 20:24:06 +00002351 /* We re-entered the check after replacing the TB. Now raise
2352 * the debug interrupt so that is will trigger after the
2353 * current instruction. */
Andreas Färber93afead2013-08-26 03:41:01 +02002354 cpu_interrupt(cpu, CPU_INTERRUPT_DEBUG);
aliguori06d55cc2008-11-18 20:24:06 +00002355 return;
2356 }
Andreas Färber93afead2013-08-26 03:41:01 +02002357 vaddr = (cpu->mem_io_vaddr & TARGET_PAGE_MASK) + offset;
Julian Brown40612002017-02-07 18:29:59 +00002358 vaddr = cc->adjust_watchpoint_address(cpu, vaddr, len);
Andreas Färberff4700b2013-08-26 18:23:18 +02002359 QTAILQ_FOREACH(wp, &cpu->watchpoints, entry) {
Peter Maydell05068c02014-09-12 14:06:48 +01002360 if (cpu_watchpoint_address_matches(wp, vaddr, len)
2361 && (wp->flags & flags)) {
Peter Maydell08225672014-09-12 14:06:48 +01002362 if (flags == BP_MEM_READ) {
2363 wp->flags |= BP_WATCHPOINT_HIT_READ;
2364 } else {
2365 wp->flags |= BP_WATCHPOINT_HIT_WRITE;
2366 }
2367 wp->hitaddr = vaddr;
Peter Maydell66b9b432015-04-26 16:49:24 +01002368 wp->hitattrs = attrs;
Andreas Färberff4700b2013-08-26 18:23:18 +02002369 if (!cpu->watchpoint_hit) {
Sergey Fedorov568496c2016-02-11 11:17:32 +00002370 if (wp->flags & BP_CPU &&
2371 !cc->debug_check_watchpoint(cpu, wp)) {
2372 wp->flags &= ~BP_WATCHPOINT_HIT;
2373 continue;
2374 }
Andreas Färberff4700b2013-08-26 18:23:18 +02002375 cpu->watchpoint_hit = wp;
KONRAD Frederica5e99822016-10-27 16:10:06 +01002376
Jan Kiszka8d04fb52017-02-23 18:29:11 +00002377 /* Both tb_lock and iothread_mutex will be reset when
2378 * cpu_loop_exit or cpu_loop_exit_noexc longjmp
2379 * back into the cpu_exec main loop.
KONRAD Frederica5e99822016-10-27 16:10:06 +01002380 */
2381 tb_lock();
Andreas Färber239c51a2013-09-01 17:12:23 +02002382 tb_check_watchpoint(cpu);
aliguori6e140f22008-11-18 20:37:55 +00002383 if (wp->flags & BP_STOP_BEFORE_ACCESS) {
Andreas Färber27103422013-08-26 08:31:06 +02002384 cpu->exception_index = EXCP_DEBUG;
Andreas Färber5638d182013-08-27 17:52:12 +02002385 cpu_loop_exit(cpu);
aliguori6e140f22008-11-18 20:37:55 +00002386 } else {
2387 cpu_get_tb_cpu_state(env, &pc, &cs_base, &cpu_flags);
Andreas Färber648f0342013-09-01 17:43:17 +02002388 tb_gen_code(cpu, pc, cs_base, cpu_flags, 1);
Peter Maydell6886b982016-05-17 15:18:04 +01002389 cpu_loop_exit_noexc(cpu);
aliguori6e140f22008-11-18 20:37:55 +00002390 }
aliguori06d55cc2008-11-18 20:24:06 +00002391 }
aliguori6e140f22008-11-18 20:37:55 +00002392 } else {
2393 wp->flags &= ~BP_WATCHPOINT_HIT;
pbrook0f459d12008-06-09 00:20:13 +00002394 }
2395 }
2396}
2397
pbrook6658ffb2007-03-16 23:58:11 +00002398/* Watchpoint access routines. Watchpoints are inserted using TLB tricks,
2399 so these check for a hit then pass through to the normal out-of-line
2400 phys routines. */
Peter Maydell66b9b432015-04-26 16:49:24 +01002401static MemTxResult watch_mem_read(void *opaque, hwaddr addr, uint64_t *pdata,
2402 unsigned size, MemTxAttrs attrs)
pbrook6658ffb2007-03-16 23:58:11 +00002403{
Peter Maydell66b9b432015-04-26 16:49:24 +01002404 MemTxResult res;
2405 uint64_t data;
Peter Maydell79ed0412016-01-21 14:15:06 +00002406 int asidx = cpu_asidx_from_attrs(current_cpu, attrs);
2407 AddressSpace *as = current_cpu->cpu_ases[asidx].as;
pbrook6658ffb2007-03-16 23:58:11 +00002408
Peter Maydell66b9b432015-04-26 16:49:24 +01002409 check_watchpoint(addr & ~TARGET_PAGE_MASK, size, attrs, BP_MEM_READ);
Avi Kivity1ec9b902012-01-02 12:47:48 +02002410 switch (size) {
Max Filippov67364152012-01-29 00:01:40 +04002411 case 1:
Peter Maydell79ed0412016-01-21 14:15:06 +00002412 data = address_space_ldub(as, addr, attrs, &res);
Max Filippov67364152012-01-29 00:01:40 +04002413 break;
2414 case 2:
Peter Maydell79ed0412016-01-21 14:15:06 +00002415 data = address_space_lduw(as, addr, attrs, &res);
Max Filippov67364152012-01-29 00:01:40 +04002416 break;
2417 case 4:
Peter Maydell79ed0412016-01-21 14:15:06 +00002418 data = address_space_ldl(as, addr, attrs, &res);
Max Filippov67364152012-01-29 00:01:40 +04002419 break;
Avi Kivity1ec9b902012-01-02 12:47:48 +02002420 default: abort();
2421 }
Peter Maydell66b9b432015-04-26 16:49:24 +01002422 *pdata = data;
2423 return res;
2424}
2425
2426static MemTxResult watch_mem_write(void *opaque, hwaddr addr,
2427 uint64_t val, unsigned size,
2428 MemTxAttrs attrs)
2429{
2430 MemTxResult res;
Peter Maydell79ed0412016-01-21 14:15:06 +00002431 int asidx = cpu_asidx_from_attrs(current_cpu, attrs);
2432 AddressSpace *as = current_cpu->cpu_ases[asidx].as;
Peter Maydell66b9b432015-04-26 16:49:24 +01002433
2434 check_watchpoint(addr & ~TARGET_PAGE_MASK, size, attrs, BP_MEM_WRITE);
2435 switch (size) {
2436 case 1:
Peter Maydell79ed0412016-01-21 14:15:06 +00002437 address_space_stb(as, addr, val, attrs, &res);
Peter Maydell66b9b432015-04-26 16:49:24 +01002438 break;
2439 case 2:
Peter Maydell79ed0412016-01-21 14:15:06 +00002440 address_space_stw(as, addr, val, attrs, &res);
Peter Maydell66b9b432015-04-26 16:49:24 +01002441 break;
2442 case 4:
Peter Maydell79ed0412016-01-21 14:15:06 +00002443 address_space_stl(as, addr, val, attrs, &res);
Peter Maydell66b9b432015-04-26 16:49:24 +01002444 break;
2445 default: abort();
2446 }
2447 return res;
pbrook6658ffb2007-03-16 23:58:11 +00002448}
2449
Avi Kivity1ec9b902012-01-02 12:47:48 +02002450static const MemoryRegionOps watch_mem_ops = {
Peter Maydell66b9b432015-04-26 16:49:24 +01002451 .read_with_attrs = watch_mem_read,
2452 .write_with_attrs = watch_mem_write,
Avi Kivity1ec9b902012-01-02 12:47:48 +02002453 .endianness = DEVICE_NATIVE_ENDIAN,
pbrook6658ffb2007-03-16 23:58:11 +00002454};
pbrook6658ffb2007-03-16 23:58:11 +00002455
Peter Maydellf25a49e2015-04-26 16:49:24 +01002456static MemTxResult subpage_read(void *opaque, hwaddr addr, uint64_t *data,
2457 unsigned len, MemTxAttrs attrs)
blueswir1db7b5422007-05-26 17:36:03 +00002458{
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002459 subpage_t *subpage = opaque;
Paolo Bonziniff6cff72014-12-22 13:11:39 +01002460 uint8_t buf[8];
Peter Maydell5c9eb022015-04-26 16:49:24 +01002461 MemTxResult res;
Paolo Bonzini791af8c2013-05-24 16:10:39 +02002462
blueswir1db7b5422007-05-26 17:36:03 +00002463#if defined(DEBUG_SUBPAGE)
Amos Kong016e9d62013-09-27 09:25:38 +08002464 printf("%s: subpage %p len %u addr " TARGET_FMT_plx "\n", __func__,
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002465 subpage, len, addr);
blueswir1db7b5422007-05-26 17:36:03 +00002466#endif
Peter Maydell5c9eb022015-04-26 16:49:24 +01002467 res = address_space_read(subpage->as, addr + subpage->base,
2468 attrs, buf, len);
2469 if (res) {
2470 return res;
Peter Maydellf25a49e2015-04-26 16:49:24 +01002471 }
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002472 switch (len) {
2473 case 1:
Peter Maydellf25a49e2015-04-26 16:49:24 +01002474 *data = ldub_p(buf);
2475 return MEMTX_OK;
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002476 case 2:
Peter Maydellf25a49e2015-04-26 16:49:24 +01002477 *data = lduw_p(buf);
2478 return MEMTX_OK;
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002479 case 4:
Peter Maydellf25a49e2015-04-26 16:49:24 +01002480 *data = ldl_p(buf);
2481 return MEMTX_OK;
Paolo Bonziniff6cff72014-12-22 13:11:39 +01002482 case 8:
Peter Maydellf25a49e2015-04-26 16:49:24 +01002483 *data = ldq_p(buf);
2484 return MEMTX_OK;
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002485 default:
2486 abort();
2487 }
blueswir1db7b5422007-05-26 17:36:03 +00002488}
2489
Peter Maydellf25a49e2015-04-26 16:49:24 +01002490static MemTxResult subpage_write(void *opaque, hwaddr addr,
2491 uint64_t value, unsigned len, MemTxAttrs attrs)
blueswir1db7b5422007-05-26 17:36:03 +00002492{
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002493 subpage_t *subpage = opaque;
Paolo Bonziniff6cff72014-12-22 13:11:39 +01002494 uint8_t buf[8];
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002495
blueswir1db7b5422007-05-26 17:36:03 +00002496#if defined(DEBUG_SUBPAGE)
Amos Kong016e9d62013-09-27 09:25:38 +08002497 printf("%s: subpage %p len %u addr " TARGET_FMT_plx
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002498 " value %"PRIx64"\n",
2499 __func__, subpage, len, addr, value);
blueswir1db7b5422007-05-26 17:36:03 +00002500#endif
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002501 switch (len) {
2502 case 1:
2503 stb_p(buf, value);
2504 break;
2505 case 2:
2506 stw_p(buf, value);
2507 break;
2508 case 4:
2509 stl_p(buf, value);
2510 break;
Paolo Bonziniff6cff72014-12-22 13:11:39 +01002511 case 8:
2512 stq_p(buf, value);
2513 break;
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002514 default:
2515 abort();
2516 }
Peter Maydell5c9eb022015-04-26 16:49:24 +01002517 return address_space_write(subpage->as, addr + subpage->base,
2518 attrs, buf, len);
blueswir1db7b5422007-05-26 17:36:03 +00002519}
2520
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002521static bool subpage_accepts(void *opaque, hwaddr addr,
Amos Kong016e9d62013-09-27 09:25:38 +08002522 unsigned len, bool is_write)
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002523{
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002524 subpage_t *subpage = opaque;
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002525#if defined(DEBUG_SUBPAGE)
Amos Kong016e9d62013-09-27 09:25:38 +08002526 printf("%s: subpage %p %c len %u addr " TARGET_FMT_plx "\n",
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002527 __func__, subpage, is_write ? 'w' : 'r', len, addr);
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002528#endif
2529
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002530 return address_space_access_valid(subpage->as, addr + subpage->base,
Amos Kong016e9d62013-09-27 09:25:38 +08002531 len, is_write);
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002532}
2533
Avi Kivity70c68e42012-01-02 12:32:48 +02002534static const MemoryRegionOps subpage_ops = {
Peter Maydellf25a49e2015-04-26 16:49:24 +01002535 .read_with_attrs = subpage_read,
2536 .write_with_attrs = subpage_write,
Paolo Bonziniff6cff72014-12-22 13:11:39 +01002537 .impl.min_access_size = 1,
2538 .impl.max_access_size = 8,
2539 .valid.min_access_size = 1,
2540 .valid.max_access_size = 8,
Paolo Bonzinic353e4c2013-05-24 14:02:39 +02002541 .valid.accepts = subpage_accepts,
Avi Kivity70c68e42012-01-02 12:32:48 +02002542 .endianness = DEVICE_NATIVE_ENDIAN,
blueswir1db7b5422007-05-26 17:36:03 +00002543};
2544
Anthony Liguoric227f092009-10-01 16:12:16 -05002545static int subpage_register (subpage_t *mmio, uint32_t start, uint32_t end,
Avi Kivity5312bd82012-02-12 18:32:55 +02002546 uint16_t section)
blueswir1db7b5422007-05-26 17:36:03 +00002547{
2548 int idx, eidx;
2549
2550 if (start >= TARGET_PAGE_SIZE || end >= TARGET_PAGE_SIZE)
2551 return -1;
2552 idx = SUBPAGE_IDX(start);
2553 eidx = SUBPAGE_IDX(end);
2554#if defined(DEBUG_SUBPAGE)
Amos Kong016e9d62013-09-27 09:25:38 +08002555 printf("%s: %p start %08x end %08x idx %08x eidx %08x section %d\n",
2556 __func__, mmio, start, end, idx, eidx, section);
blueswir1db7b5422007-05-26 17:36:03 +00002557#endif
blueswir1db7b5422007-05-26 17:36:03 +00002558 for (; idx <= eidx; idx++) {
Avi Kivity5312bd82012-02-12 18:32:55 +02002559 mmio->sub_section[idx] = section;
blueswir1db7b5422007-05-26 17:36:03 +00002560 }
2561
2562 return 0;
2563}
2564
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002565static subpage_t *subpage_init(AddressSpace *as, hwaddr base)
blueswir1db7b5422007-05-26 17:36:03 +00002566{
Anthony Liguoric227f092009-10-01 16:12:16 -05002567 subpage_t *mmio;
blueswir1db7b5422007-05-26 17:36:03 +00002568
Vijaya Kumar K2615fab2016-10-24 16:26:49 +01002569 mmio = g_malloc0(sizeof(subpage_t) + TARGET_PAGE_SIZE * sizeof(uint16_t));
Jan Kiszkaacc9d802013-05-26 21:55:37 +02002570 mmio->as = as;
aliguori1eec6142009-02-05 22:06:18 +00002571 mmio->base = base;
Paolo Bonzini2c9b15c2013-06-06 05:41:28 -04002572 memory_region_init_io(&mmio->iomem, NULL, &subpage_ops, mmio,
Peter Crosthwaiteb4fefef2014-06-05 23:15:52 -07002573 NULL, TARGET_PAGE_SIZE);
Avi Kivityb3b00c72012-01-02 13:20:11 +02002574 mmio->iomem.subpage = true;
blueswir1db7b5422007-05-26 17:36:03 +00002575#if defined(DEBUG_SUBPAGE)
Amos Kong016e9d62013-09-27 09:25:38 +08002576 printf("%s: %p base " TARGET_FMT_plx " len %08x\n", __func__,
2577 mmio, base, TARGET_PAGE_SIZE);
blueswir1db7b5422007-05-26 17:36:03 +00002578#endif
Liu Ping Fanb41aac42013-05-29 11:09:17 +02002579 subpage_register(mmio, 0, TARGET_PAGE_SIZE-1, PHYS_SECTION_UNASSIGNED);
blueswir1db7b5422007-05-26 17:36:03 +00002580
2581 return mmio;
2582}
2583
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002584static uint16_t dummy_section(PhysPageMap *map, AddressSpace *as,
2585 MemoryRegion *mr)
Avi Kivity5312bd82012-02-12 18:32:55 +02002586{
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002587 assert(as);
Avi Kivity5312bd82012-02-12 18:32:55 +02002588 MemoryRegionSection section = {
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002589 .address_space = as,
Avi Kivity5312bd82012-02-12 18:32:55 +02002590 .mr = mr,
2591 .offset_within_address_space = 0,
2592 .offset_within_region = 0,
Paolo Bonzini052e87b2013-05-27 10:08:27 +02002593 .size = int128_2_64(),
Avi Kivity5312bd82012-02-12 18:32:55 +02002594 };
2595
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002596 return phys_section_add(map, &section);
Avi Kivity5312bd82012-02-12 18:32:55 +02002597}
2598
Peter Maydella54c87b2016-01-21 14:15:05 +00002599MemoryRegion *iotlb_to_region(CPUState *cpu, hwaddr index, MemTxAttrs attrs)
Avi Kivityaa102232012-03-08 17:06:55 +02002600{
Peter Maydella54c87b2016-01-21 14:15:05 +00002601 int asidx = cpu_asidx_from_attrs(cpu, attrs);
2602 CPUAddressSpace *cpuas = &cpu->cpu_ases[asidx];
Peter Maydell32857f42015-10-01 15:29:50 +01002603 AddressSpaceDispatch *d = atomic_rcu_read(&cpuas->memory_dispatch);
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01002604 MemoryRegionSection *sections = d->map.sections;
Paolo Bonzini9d82b5a2013-08-16 08:26:30 +02002605
2606 return sections[index & ~TARGET_PAGE_MASK].mr;
Avi Kivityaa102232012-03-08 17:06:55 +02002607}
2608
Avi Kivitye9179ce2009-06-14 11:38:52 +03002609static void io_mem_init(void)
2610{
Paolo Bonzini1f6245e2014-06-13 10:48:06 +02002611 memory_region_init_io(&io_mem_rom, NULL, &unassigned_mem_ops, NULL, NULL, UINT64_MAX);
Paolo Bonzini2c9b15c2013-06-06 05:41:28 -04002612 memory_region_init_io(&io_mem_unassigned, NULL, &unassigned_mem_ops, NULL,
Paolo Bonzini1f6245e2014-06-13 10:48:06 +02002613 NULL, UINT64_MAX);
Jan Kiszka8d04fb52017-02-23 18:29:11 +00002614
2615 /* io_mem_notdirty calls tb_invalidate_phys_page_fast,
2616 * which can be called without the iothread mutex.
2617 */
Paolo Bonzini2c9b15c2013-06-06 05:41:28 -04002618 memory_region_init_io(&io_mem_notdirty, NULL, &notdirty_mem_ops, NULL,
Paolo Bonzini1f6245e2014-06-13 10:48:06 +02002619 NULL, UINT64_MAX);
Jan Kiszka8d04fb52017-02-23 18:29:11 +00002620 memory_region_clear_global_locking(&io_mem_notdirty);
2621
Paolo Bonzini2c9b15c2013-06-06 05:41:28 -04002622 memory_region_init_io(&io_mem_watch, NULL, &watch_mem_ops, NULL,
Paolo Bonzini1f6245e2014-06-13 10:48:06 +02002623 NULL, UINT64_MAX);
Avi Kivitye9179ce2009-06-14 11:38:52 +03002624}
2625
Avi Kivityac1970f2012-10-03 16:22:53 +02002626static void mem_begin(MemoryListener *listener)
2627{
Paolo Bonzini89ae3372013-06-02 10:39:07 +02002628 AddressSpace *as = container_of(listener, AddressSpace, dispatch_listener);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002629 AddressSpaceDispatch *d = g_new0(AddressSpaceDispatch, 1);
2630 uint16_t n;
2631
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002632 n = dummy_section(&d->map, as, &io_mem_unassigned);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002633 assert(n == PHYS_SECTION_UNASSIGNED);
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002634 n = dummy_section(&d->map, as, &io_mem_notdirty);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002635 assert(n == PHYS_SECTION_NOTDIRTY);
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002636 n = dummy_section(&d->map, as, &io_mem_rom);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002637 assert(n == PHYS_SECTION_ROM);
Peter Crosthwaitea656e222014-06-02 19:08:44 -07002638 n = dummy_section(&d->map, as, &io_mem_watch);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002639 assert(n == PHYS_SECTION_WATCH);
Paolo Bonzini00752702013-05-29 12:13:54 +02002640
Michael S. Tsirkin9736e552013-11-11 14:42:43 +02002641 d->phys_map = (PhysPageEntry) { .ptr = PHYS_MAP_NODE_NIL, .skip = 1 };
Paolo Bonzini00752702013-05-29 12:13:54 +02002642 d->as = as;
2643 as->next_dispatch = d;
2644}
2645
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01002646static void address_space_dispatch_free(AddressSpaceDispatch *d)
2647{
2648 phys_sections_free(&d->map);
2649 g_free(d);
2650}
2651
Paolo Bonzini00752702013-05-29 12:13:54 +02002652static void mem_commit(MemoryListener *listener)
2653{
2654 AddressSpace *as = container_of(listener, AddressSpace, dispatch_listener);
Paolo Bonzini0475d942013-05-29 12:28:21 +02002655 AddressSpaceDispatch *cur = as->dispatch;
2656 AddressSpaceDispatch *next = as->next_dispatch;
Avi Kivityac1970f2012-10-03 16:22:53 +02002657
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002658 phys_page_compact_all(next, next->map.nodes_nb);
Michael S. Tsirkinb35ba302013-11-11 17:52:07 +02002659
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01002660 atomic_rcu_set(&as->dispatch, next);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002661 if (cur) {
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01002662 call_rcu(cur, address_space_dispatch_free, rcu);
Marcel Apfelbaum53cb28c2013-12-01 14:02:23 +02002663 }
Paolo Bonzini9affd6f2013-05-29 12:09:47 +02002664}
2665
Avi Kivity1d711482012-10-02 18:54:45 +02002666static void tcg_commit(MemoryListener *listener)
Avi Kivity50c1e142012-02-08 21:36:02 +02002667{
Peter Maydell32857f42015-10-01 15:29:50 +01002668 CPUAddressSpace *cpuas;
2669 AddressSpaceDispatch *d;
Avi Kivity117712c2012-02-12 21:23:17 +02002670
2671 /* since each CPU stores ram addresses in its TLB cache, we must
2672 reset the modified entries */
Peter Maydell32857f42015-10-01 15:29:50 +01002673 cpuas = container_of(listener, CPUAddressSpace, tcg_as_listener);
2674 cpu_reloading_memory_map();
2675 /* The CPU and TLB are protected by the iothread lock.
2676 * We reload the dispatch pointer now because cpu_reloading_memory_map()
2677 * may have split the RCU critical section.
2678 */
2679 d = atomic_rcu_read(&cpuas->as->dispatch);
Alex Bennéef35e44e2016-10-21 16:34:18 +01002680 atomic_rcu_set(&cpuas->memory_dispatch, d);
Alex Bennéed10eb082016-11-14 14:17:28 +00002681 tlb_flush(cpuas->cpu);
Avi Kivity50c1e142012-02-08 21:36:02 +02002682}
2683
Avi Kivityac1970f2012-10-03 16:22:53 +02002684void address_space_init_dispatch(AddressSpace *as)
2685{
Paolo Bonzini00752702013-05-29 12:13:54 +02002686 as->dispatch = NULL;
Paolo Bonzini89ae3372013-06-02 10:39:07 +02002687 as->dispatch_listener = (MemoryListener) {
Avi Kivityac1970f2012-10-03 16:22:53 +02002688 .begin = mem_begin,
Paolo Bonzini00752702013-05-29 12:13:54 +02002689 .commit = mem_commit,
Avi Kivityac1970f2012-10-03 16:22:53 +02002690 .region_add = mem_add,
2691 .region_nop = mem_add,
2692 .priority = 0,
2693 };
Paolo Bonzini89ae3372013-06-02 10:39:07 +02002694 memory_listener_register(&as->dispatch_listener, as);
Avi Kivityac1970f2012-10-03 16:22:53 +02002695}
2696
Paolo Bonzini6e48e8f2015-02-10 10:25:44 -07002697void address_space_unregister(AddressSpace *as)
2698{
2699 memory_listener_unregister(&as->dispatch_listener);
2700}
2701
Avi Kivity83f3c252012-10-07 12:59:55 +02002702void address_space_destroy_dispatch(AddressSpace *as)
2703{
2704 AddressSpaceDispatch *d = as->dispatch;
2705
Paolo Bonzini79e2b9a2015-01-21 12:09:14 +01002706 atomic_rcu_set(&as->dispatch, NULL);
2707 if (d) {
2708 call_rcu(d, address_space_dispatch_free, rcu);
2709 }
Avi Kivity83f3c252012-10-07 12:59:55 +02002710}
2711
Avi Kivity62152b82011-07-26 14:26:14 +03002712static void memory_map_init(void)
2713{
Anthony Liguori7267c092011-08-20 22:09:37 -05002714 system_memory = g_malloc(sizeof(*system_memory));
Paolo Bonzini03f49952013-11-07 17:14:36 +01002715
Paolo Bonzini57271d62013-11-07 17:14:37 +01002716 memory_region_init(system_memory, NULL, "system", UINT64_MAX);
Alexey Kardashevskiy7dca8042013-04-29 16:25:51 +00002717 address_space_init(&address_space_memory, system_memory, "memory");
Avi Kivity309cb472011-08-08 16:09:03 +03002718
Anthony Liguori7267c092011-08-20 22:09:37 -05002719 system_io = g_malloc(sizeof(*system_io));
Jan Kiszka3bb28b72013-09-02 18:43:30 +02002720 memory_region_init_io(system_io, NULL, &unassigned_io_ops, NULL, "io",
2721 65536);
Alexey Kardashevskiy7dca8042013-04-29 16:25:51 +00002722 address_space_init(&address_space_io, system_io, "I/O");
Avi Kivity62152b82011-07-26 14:26:14 +03002723}
2724
2725MemoryRegion *get_system_memory(void)
2726{
2727 return system_memory;
2728}
2729
Avi Kivity309cb472011-08-08 16:09:03 +03002730MemoryRegion *get_system_io(void)
2731{
2732 return system_io;
2733}
2734
pbrooke2eef172008-06-08 01:09:01 +00002735#endif /* !defined(CONFIG_USER_ONLY) */
2736
bellard13eb76e2004-01-24 15:23:36 +00002737/* physical memory access (slow version, mainly for debug) */
2738#if defined(CONFIG_USER_ONLY)
Andreas Färberf17ec442013-06-29 19:40:58 +02002739int cpu_memory_rw_debug(CPUState *cpu, target_ulong addr,
Paul Brooka68fe892010-03-01 00:08:59 +00002740 uint8_t *buf, int len, int is_write)
bellard13eb76e2004-01-24 15:23:36 +00002741{
2742 int l, flags;
2743 target_ulong page;
pbrook53a59602006-03-25 19:31:22 +00002744 void * p;
bellard13eb76e2004-01-24 15:23:36 +00002745
2746 while (len > 0) {
2747 page = addr & TARGET_PAGE_MASK;
2748 l = (page + TARGET_PAGE_SIZE) - addr;
2749 if (l > len)
2750 l = len;
2751 flags = page_get_flags(page);
2752 if (!(flags & PAGE_VALID))
Paul Brooka68fe892010-03-01 00:08:59 +00002753 return -1;
bellard13eb76e2004-01-24 15:23:36 +00002754 if (is_write) {
2755 if (!(flags & PAGE_WRITE))
Paul Brooka68fe892010-03-01 00:08:59 +00002756 return -1;
bellard579a97f2007-11-11 14:26:47 +00002757 /* XXX: this code should not depend on lock_user */
aurel3272fb7da2008-04-27 23:53:45 +00002758 if (!(p = lock_user(VERIFY_WRITE, addr, l, 0)))
Paul Brooka68fe892010-03-01 00:08:59 +00002759 return -1;
aurel3272fb7da2008-04-27 23:53:45 +00002760 memcpy(p, buf, l);
2761 unlock_user(p, addr, l);
bellard13eb76e2004-01-24 15:23:36 +00002762 } else {
2763 if (!(flags & PAGE_READ))
Paul Brooka68fe892010-03-01 00:08:59 +00002764 return -1;
bellard579a97f2007-11-11 14:26:47 +00002765 /* XXX: this code should not depend on lock_user */
aurel3272fb7da2008-04-27 23:53:45 +00002766 if (!(p = lock_user(VERIFY_READ, addr, l, 1)))
Paul Brooka68fe892010-03-01 00:08:59 +00002767 return -1;
aurel3272fb7da2008-04-27 23:53:45 +00002768 memcpy(buf, p, l);
aurel325b257572008-04-28 08:54:59 +00002769 unlock_user(p, addr, 0);
bellard13eb76e2004-01-24 15:23:36 +00002770 }
2771 len -= l;
2772 buf += l;
2773 addr += l;
2774 }
Paul Brooka68fe892010-03-01 00:08:59 +00002775 return 0;
bellard13eb76e2004-01-24 15:23:36 +00002776}
bellard8df1cd02005-01-28 22:37:22 +00002777
bellard13eb76e2004-01-24 15:23:36 +00002778#else
Anthony PERARD51d7a9e2012-10-03 13:49:05 +00002779
Paolo Bonzini845b6212015-03-23 11:45:53 +01002780static void invalidate_and_set_dirty(MemoryRegion *mr, hwaddr addr,
Avi Kivitya8170e52012-10-23 12:30:10 +02002781 hwaddr length)
Anthony PERARD51d7a9e2012-10-03 13:49:05 +00002782{
Paolo Bonzinie87f7772015-03-25 15:21:39 +01002783 uint8_t dirty_log_mask = memory_region_get_dirty_log_mask(mr);
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002784 addr += memory_region_get_ram_addr(mr);
2785
Paolo Bonzinie87f7772015-03-25 15:21:39 +01002786 /* No early return if dirty_log_mask is or becomes 0, because
2787 * cpu_physical_memory_set_dirty_range will still call
2788 * xen_modified_memory.
2789 */
2790 if (dirty_log_mask) {
2791 dirty_log_mask =
2792 cpu_physical_memory_range_includes_clean(addr, length, dirty_log_mask);
Anthony PERARD51d7a9e2012-10-03 13:49:05 +00002793 }
Paolo Bonzinie87f7772015-03-25 15:21:39 +01002794 if (dirty_log_mask & (1 << DIRTY_MEMORY_CODE)) {
Alex Bennéeba051fb2016-10-27 16:10:16 +01002795 tb_lock();
Paolo Bonzinie87f7772015-03-25 15:21:39 +01002796 tb_invalidate_phys_range(addr, addr + length);
Alex Bennéeba051fb2016-10-27 16:10:16 +01002797 tb_unlock();
Paolo Bonzinie87f7772015-03-25 15:21:39 +01002798 dirty_log_mask &= ~(1 << DIRTY_MEMORY_CODE);
2799 }
2800 cpu_physical_memory_set_dirty_range(addr, length, dirty_log_mask);
Anthony PERARD51d7a9e2012-10-03 13:49:05 +00002801}
2802
Richard Henderson23326162013-07-08 14:55:59 -07002803static int memory_access_size(MemoryRegion *mr, unsigned l, hwaddr addr)
Paolo Bonzini82f25632013-05-24 11:59:43 +02002804{
Paolo Bonzinie1622f42013-07-17 13:17:41 +02002805 unsigned access_size_max = mr->ops->valid.max_access_size;
Richard Henderson23326162013-07-08 14:55:59 -07002806
2807 /* Regions are assumed to support 1-4 byte accesses unless
2808 otherwise specified. */
Richard Henderson23326162013-07-08 14:55:59 -07002809 if (access_size_max == 0) {
2810 access_size_max = 4;
Paolo Bonzini82f25632013-05-24 11:59:43 +02002811 }
Richard Henderson23326162013-07-08 14:55:59 -07002812
2813 /* Bound the maximum access by the alignment of the address. */
2814 if (!mr->ops->impl.unaligned) {
2815 unsigned align_size_max = addr & -addr;
2816 if (align_size_max != 0 && align_size_max < access_size_max) {
2817 access_size_max = align_size_max;
2818 }
2819 }
2820
2821 /* Don't attempt accesses larger than the maximum. */
2822 if (l > access_size_max) {
2823 l = access_size_max;
2824 }
Peter Maydell6554f5c2015-07-24 13:33:10 +01002825 l = pow2floor(l);
Richard Henderson23326162013-07-08 14:55:59 -07002826
2827 return l;
Paolo Bonzini82f25632013-05-24 11:59:43 +02002828}
2829
Jan Kiszka4840f102015-06-18 18:47:22 +02002830static bool prepare_mmio_access(MemoryRegion *mr)
Paolo Bonzini125b3802015-06-18 18:47:21 +02002831{
Jan Kiszka4840f102015-06-18 18:47:22 +02002832 bool unlocked = !qemu_mutex_iothread_locked();
2833 bool release_lock = false;
2834
2835 if (unlocked && mr->global_locking) {
2836 qemu_mutex_lock_iothread();
2837 unlocked = false;
2838 release_lock = true;
Paolo Bonzini125b3802015-06-18 18:47:21 +02002839 }
Jan Kiszka4840f102015-06-18 18:47:22 +02002840 if (mr->flush_coalesced_mmio) {
2841 if (unlocked) {
2842 qemu_mutex_lock_iothread();
2843 }
2844 qemu_flush_coalesced_mmio_buffer();
2845 if (unlocked) {
2846 qemu_mutex_unlock_iothread();
2847 }
2848 }
2849
2850 return release_lock;
Paolo Bonzini125b3802015-06-18 18:47:21 +02002851}
2852
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002853/* Called within RCU critical section. */
2854static MemTxResult address_space_write_continue(AddressSpace *as, hwaddr addr,
2855 MemTxAttrs attrs,
2856 const uint8_t *buf,
2857 int len, hwaddr addr1,
2858 hwaddr l, MemoryRegion *mr)
bellard13eb76e2004-01-24 15:23:36 +00002859{
bellard13eb76e2004-01-24 15:23:36 +00002860 uint8_t *ptr;
Paolo Bonzini791af8c2013-05-24 16:10:39 +02002861 uint64_t val;
Peter Maydell3b643492015-04-26 16:49:23 +01002862 MemTxResult result = MEMTX_OK;
Jan Kiszka4840f102015-06-18 18:47:22 +02002863 bool release_lock = false;
ths3b46e622007-09-17 08:09:54 +00002864
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002865 for (;;) {
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002866 if (!memory_access_is_direct(mr, true)) {
2867 release_lock |= prepare_mmio_access(mr);
2868 l = memory_access_size(mr, l, addr1);
2869 /* XXX: could force current_cpu to NULL to avoid
2870 potential bugs */
2871 switch (l) {
2872 case 8:
2873 /* 64 bit write access */
2874 val = ldq_p(buf);
2875 result |= memory_region_dispatch_write(mr, addr1, val, 8,
2876 attrs);
2877 break;
2878 case 4:
2879 /* 32 bit write access */
Ladi Prosek6da67de2017-01-26 15:22:37 +01002880 val = (uint32_t)ldl_p(buf);
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002881 result |= memory_region_dispatch_write(mr, addr1, val, 4,
2882 attrs);
2883 break;
2884 case 2:
2885 /* 16 bit write access */
2886 val = lduw_p(buf);
2887 result |= memory_region_dispatch_write(mr, addr1, val, 2,
2888 attrs);
2889 break;
2890 case 1:
2891 /* 8 bit write access */
2892 val = ldub_p(buf);
2893 result |= memory_region_dispatch_write(mr, addr1, val, 1,
2894 attrs);
2895 break;
2896 default:
2897 abort();
bellard13eb76e2004-01-24 15:23:36 +00002898 }
2899 } else {
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002900 /* RAM case */
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002901 ptr = qemu_map_ram_ptr(mr->ram_block, addr1);
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002902 memcpy(ptr, buf, l);
2903 invalidate_and_set_dirty(mr, addr1, l);
bellard13eb76e2004-01-24 15:23:36 +00002904 }
Jan Kiszka4840f102015-06-18 18:47:22 +02002905
2906 if (release_lock) {
2907 qemu_mutex_unlock_iothread();
2908 release_lock = false;
2909 }
2910
bellard13eb76e2004-01-24 15:23:36 +00002911 len -= l;
2912 buf += l;
2913 addr += l;
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002914
2915 if (!len) {
2916 break;
2917 }
2918
2919 l = len;
2920 mr = address_space_translate(as, addr, &addr1, &l, true);
bellard13eb76e2004-01-24 15:23:36 +00002921 }
Paolo Bonzinifd8aaa72013-05-21 09:56:55 +02002922
Peter Maydell3b643492015-04-26 16:49:23 +01002923 return result;
bellard13eb76e2004-01-24 15:23:36 +00002924}
bellard8df1cd02005-01-28 22:37:22 +00002925
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002926MemTxResult address_space_write(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
2927 const uint8_t *buf, int len)
Avi Kivityac1970f2012-10-03 16:22:53 +02002928{
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002929 hwaddr l;
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002930 hwaddr addr1;
2931 MemoryRegion *mr;
2932 MemTxResult result = MEMTX_OK;
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002933
2934 if (len > 0) {
2935 rcu_read_lock();
2936 l = len;
2937 mr = address_space_translate(as, addr, &addr1, &l, true);
2938 result = address_space_write_continue(as, addr, attrs, buf, len,
2939 addr1, l, mr);
2940 rcu_read_unlock();
2941 }
2942
2943 return result;
2944}
2945
2946/* Called within RCU critical section. */
2947MemTxResult address_space_read_continue(AddressSpace *as, hwaddr addr,
2948 MemTxAttrs attrs, uint8_t *buf,
2949 int len, hwaddr addr1, hwaddr l,
2950 MemoryRegion *mr)
2951{
2952 uint8_t *ptr;
2953 uint64_t val;
2954 MemTxResult result = MEMTX_OK;
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002955 bool release_lock = false;
2956
Paolo Bonzinia203ac72015-12-09 10:18:57 +01002957 for (;;) {
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002958 if (!memory_access_is_direct(mr, false)) {
2959 /* I/O case */
2960 release_lock |= prepare_mmio_access(mr);
2961 l = memory_access_size(mr, l, addr1);
2962 switch (l) {
2963 case 8:
2964 /* 64 bit read access */
2965 result |= memory_region_dispatch_read(mr, addr1, &val, 8,
2966 attrs);
2967 stq_p(buf, val);
2968 break;
2969 case 4:
2970 /* 32 bit read access */
2971 result |= memory_region_dispatch_read(mr, addr1, &val, 4,
2972 attrs);
2973 stl_p(buf, val);
2974 break;
2975 case 2:
2976 /* 16 bit read access */
2977 result |= memory_region_dispatch_read(mr, addr1, &val, 2,
2978 attrs);
2979 stw_p(buf, val);
2980 break;
2981 case 1:
2982 /* 8 bit read access */
2983 result |= memory_region_dispatch_read(mr, addr1, &val, 1,
2984 attrs);
2985 stb_p(buf, val);
2986 break;
2987 default:
2988 abort();
2989 }
2990 } else {
2991 /* RAM case */
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01002992 ptr = qemu_map_ram_ptr(mr->ram_block, addr1);
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01002993 memcpy(buf, ptr, l);
2994 }
2995
2996 if (release_lock) {
2997 qemu_mutex_unlock_iothread();
2998 release_lock = false;
2999 }
3000
3001 len -= l;
3002 buf += l;
3003 addr += l;
Paolo Bonzinia203ac72015-12-09 10:18:57 +01003004
3005 if (!len) {
3006 break;
3007 }
3008
3009 l = len;
3010 mr = address_space_translate(as, addr, &addr1, &l, false);
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01003011 }
Paolo Bonzinia203ac72015-12-09 10:18:57 +01003012
3013 return result;
3014}
3015
Paolo Bonzini3cc8f882015-12-09 10:34:13 +01003016MemTxResult address_space_read_full(AddressSpace *as, hwaddr addr,
3017 MemTxAttrs attrs, uint8_t *buf, int len)
Paolo Bonzinia203ac72015-12-09 10:18:57 +01003018{
3019 hwaddr l;
3020 hwaddr addr1;
3021 MemoryRegion *mr;
3022 MemTxResult result = MEMTX_OK;
3023
3024 if (len > 0) {
3025 rcu_read_lock();
3026 l = len;
3027 mr = address_space_translate(as, addr, &addr1, &l, false);
3028 result = address_space_read_continue(as, addr, attrs, buf, len,
3029 addr1, l, mr);
3030 rcu_read_unlock();
3031 }
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01003032
3033 return result;
Avi Kivityac1970f2012-10-03 16:22:53 +02003034}
3035
Paolo Bonzinieb7eeb82015-12-09 10:06:31 +01003036MemTxResult address_space_rw(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
3037 uint8_t *buf, int len, bool is_write)
3038{
3039 if (is_write) {
3040 return address_space_write(as, addr, attrs, (uint8_t *)buf, len);
3041 } else {
3042 return address_space_read(as, addr, attrs, (uint8_t *)buf, len);
3043 }
3044}
Avi Kivityac1970f2012-10-03 16:22:53 +02003045
Avi Kivitya8170e52012-10-23 12:30:10 +02003046void cpu_physical_memory_rw(hwaddr addr, uint8_t *buf,
Avi Kivityac1970f2012-10-03 16:22:53 +02003047 int len, int is_write)
3048{
Peter Maydell5c9eb022015-04-26 16:49:24 +01003049 address_space_rw(&address_space_memory, addr, MEMTXATTRS_UNSPECIFIED,
3050 buf, len, is_write);
Avi Kivityac1970f2012-10-03 16:22:53 +02003051}
3052
Alexander Graf582b55a2013-12-11 14:17:44 +01003053enum write_rom_type {
3054 WRITE_DATA,
3055 FLUSH_CACHE,
3056};
3057
Edgar E. Iglesias2a221652013-12-13 16:28:52 +10003058static inline void cpu_physical_memory_write_rom_internal(AddressSpace *as,
Alexander Graf582b55a2013-12-11 14:17:44 +01003059 hwaddr addr, const uint8_t *buf, int len, enum write_rom_type type)
bellardd0ecd2a2006-04-23 17:14:48 +00003060{
Paolo Bonzini149f54b2013-05-24 12:59:37 +02003061 hwaddr l;
bellardd0ecd2a2006-04-23 17:14:48 +00003062 uint8_t *ptr;
Paolo Bonzini149f54b2013-05-24 12:59:37 +02003063 hwaddr addr1;
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003064 MemoryRegion *mr;
ths3b46e622007-09-17 08:09:54 +00003065
Paolo Bonzini41063e12015-03-18 14:21:43 +01003066 rcu_read_lock();
bellardd0ecd2a2006-04-23 17:14:48 +00003067 while (len > 0) {
Paolo Bonzini149f54b2013-05-24 12:59:37 +02003068 l = len;
Edgar E. Iglesias2a221652013-12-13 16:28:52 +10003069 mr = address_space_translate(as, addr, &addr1, &l, true);
ths3b46e622007-09-17 08:09:54 +00003070
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003071 if (!(memory_region_is_ram(mr) ||
3072 memory_region_is_romd(mr))) {
Paolo Bonzinib242e0e2015-07-04 00:24:51 +02003073 l = memory_access_size(mr, l, addr1);
bellardd0ecd2a2006-04-23 17:14:48 +00003074 } else {
bellardd0ecd2a2006-04-23 17:14:48 +00003075 /* ROM/RAM case */
Paolo Bonzini0878d0e2016-02-22 11:02:12 +01003076 ptr = qemu_map_ram_ptr(mr->ram_block, addr1);
Alexander Graf582b55a2013-12-11 14:17:44 +01003077 switch (type) {
3078 case WRITE_DATA:
3079 memcpy(ptr, buf, l);
Paolo Bonzini845b6212015-03-23 11:45:53 +01003080 invalidate_and_set_dirty(mr, addr1, l);
Alexander Graf582b55a2013-12-11 14:17:44 +01003081 break;
3082 case FLUSH_CACHE:
3083 flush_icache_range((uintptr_t)ptr, (uintptr_t)ptr + l);
3084 break;
3085 }
bellardd0ecd2a2006-04-23 17:14:48 +00003086 }
3087 len -= l;
3088 buf += l;
3089 addr += l;
3090 }
Paolo Bonzini41063e12015-03-18 14:21:43 +01003091 rcu_read_unlock();
bellardd0ecd2a2006-04-23 17:14:48 +00003092}
3093
Alexander Graf582b55a2013-12-11 14:17:44 +01003094/* used for ROM loading : can write in RAM and ROM */
Edgar E. Iglesias2a221652013-12-13 16:28:52 +10003095void cpu_physical_memory_write_rom(AddressSpace *as, hwaddr addr,
Alexander Graf582b55a2013-12-11 14:17:44 +01003096 const uint8_t *buf, int len)
3097{
Edgar E. Iglesias2a221652013-12-13 16:28:52 +10003098 cpu_physical_memory_write_rom_internal(as, addr, buf, len, WRITE_DATA);
Alexander Graf582b55a2013-12-11 14:17:44 +01003099}
3100
3101void cpu_flush_icache_range(hwaddr start, int len)
3102{
3103 /*
3104 * This function should do the same thing as an icache flush that was
3105 * triggered from within the guest. For TCG we are always cache coherent,
3106 * so there is no need to flush anything. For KVM / Xen we need to flush
3107 * the host's instruction cache at least.
3108 */
3109 if (tcg_enabled()) {
3110 return;
3111 }
3112
Edgar E. Iglesias2a221652013-12-13 16:28:52 +10003113 cpu_physical_memory_write_rom_internal(&address_space_memory,
3114 start, NULL, len, FLUSH_CACHE);
Alexander Graf582b55a2013-12-11 14:17:44 +01003115}
3116
aliguori6d16c2f2009-01-22 16:59:11 +00003117typedef struct {
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003118 MemoryRegion *mr;
aliguori6d16c2f2009-01-22 16:59:11 +00003119 void *buffer;
Avi Kivitya8170e52012-10-23 12:30:10 +02003120 hwaddr addr;
3121 hwaddr len;
Fam Zhengc2cba0f2015-03-16 17:03:33 +08003122 bool in_use;
aliguori6d16c2f2009-01-22 16:59:11 +00003123} BounceBuffer;
3124
3125static BounceBuffer bounce;
3126
aliguoriba223c22009-01-22 16:59:16 +00003127typedef struct MapClient {
Fam Zhenge95205e2015-03-16 17:03:37 +08003128 QEMUBH *bh;
Blue Swirl72cf2d42009-09-12 07:36:22 +00003129 QLIST_ENTRY(MapClient) link;
aliguoriba223c22009-01-22 16:59:16 +00003130} MapClient;
3131
Fam Zheng38e047b2015-03-16 17:03:35 +08003132QemuMutex map_client_list_lock;
Blue Swirl72cf2d42009-09-12 07:36:22 +00003133static QLIST_HEAD(map_client_list, MapClient) map_client_list
3134 = QLIST_HEAD_INITIALIZER(map_client_list);
aliguoriba223c22009-01-22 16:59:16 +00003135
Fam Zhenge95205e2015-03-16 17:03:37 +08003136static void cpu_unregister_map_client_do(MapClient *client)
aliguoriba223c22009-01-22 16:59:16 +00003137{
Blue Swirl72cf2d42009-09-12 07:36:22 +00003138 QLIST_REMOVE(client, link);
Anthony Liguori7267c092011-08-20 22:09:37 -05003139 g_free(client);
aliguoriba223c22009-01-22 16:59:16 +00003140}
3141
Fam Zheng33b6c2e2015-03-16 17:03:36 +08003142static void cpu_notify_map_clients_locked(void)
aliguoriba223c22009-01-22 16:59:16 +00003143{
3144 MapClient *client;
3145
Blue Swirl72cf2d42009-09-12 07:36:22 +00003146 while (!QLIST_EMPTY(&map_client_list)) {
3147 client = QLIST_FIRST(&map_client_list);
Fam Zhenge95205e2015-03-16 17:03:37 +08003148 qemu_bh_schedule(client->bh);
3149 cpu_unregister_map_client_do(client);
aliguoriba223c22009-01-22 16:59:16 +00003150 }
3151}
3152
Fam Zhenge95205e2015-03-16 17:03:37 +08003153void cpu_register_map_client(QEMUBH *bh)
bellardd0ecd2a2006-04-23 17:14:48 +00003154{
3155 MapClient *client = g_malloc(sizeof(*client));
3156
Fam Zheng38e047b2015-03-16 17:03:35 +08003157 qemu_mutex_lock(&map_client_list_lock);
Fam Zhenge95205e2015-03-16 17:03:37 +08003158 client->bh = bh;
bellardd0ecd2a2006-04-23 17:14:48 +00003159 QLIST_INSERT_HEAD(&map_client_list, client, link);
Fam Zheng33b6c2e2015-03-16 17:03:36 +08003160 if (!atomic_read(&bounce.in_use)) {
3161 cpu_notify_map_clients_locked();
3162 }
Fam Zheng38e047b2015-03-16 17:03:35 +08003163 qemu_mutex_unlock(&map_client_list_lock);
bellardd0ecd2a2006-04-23 17:14:48 +00003164}
3165
Fam Zheng38e047b2015-03-16 17:03:35 +08003166void cpu_exec_init_all(void)
3167{
3168 qemu_mutex_init(&ram_list.mutex);
Peter Maydell20bccb82016-10-24 16:26:49 +01003169 /* The data structures we set up here depend on knowing the page size,
3170 * so no more changes can be made after this point.
3171 * In an ideal world, nothing we did before we had finished the
3172 * machine setup would care about the target page size, and we could
3173 * do this much later, rather than requiring board models to state
3174 * up front what their requirements are.
3175 */
3176 finalize_target_page_bits();
Fam Zheng38e047b2015-03-16 17:03:35 +08003177 io_mem_init();
Paolo Bonzini680a4782015-11-02 09:23:52 +01003178 memory_map_init();
Fam Zheng38e047b2015-03-16 17:03:35 +08003179 qemu_mutex_init(&map_client_list_lock);
3180}
3181
Fam Zhenge95205e2015-03-16 17:03:37 +08003182void cpu_unregister_map_client(QEMUBH *bh)
bellardd0ecd2a2006-04-23 17:14:48 +00003183{
Fam Zhenge95205e2015-03-16 17:03:37 +08003184 MapClient *client;
bellardd0ecd2a2006-04-23 17:14:48 +00003185
Fam Zhenge95205e2015-03-16 17:03:37 +08003186 qemu_mutex_lock(&map_client_list_lock);
3187 QLIST_FOREACH(client, &map_client_list, link) {
3188 if (client->bh == bh) {
3189 cpu_unregister_map_client_do(client);
3190 break;
3191 }
3192 }
3193 qemu_mutex_unlock(&map_client_list_lock);
bellardd0ecd2a2006-04-23 17:14:48 +00003194}
3195
3196static void cpu_notify_map_clients(void)
3197{
Fam Zheng38e047b2015-03-16 17:03:35 +08003198 qemu_mutex_lock(&map_client_list_lock);
Fam Zheng33b6c2e2015-03-16 17:03:36 +08003199 cpu_notify_map_clients_locked();
Fam Zheng38e047b2015-03-16 17:03:35 +08003200 qemu_mutex_unlock(&map_client_list_lock);
aliguori6d16c2f2009-01-22 16:59:11 +00003201}
3202
Paolo Bonzini51644ab2013-04-11 15:40:59 +02003203bool address_space_access_valid(AddressSpace *as, hwaddr addr, int len, bool is_write)
3204{
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003205 MemoryRegion *mr;
Paolo Bonzini51644ab2013-04-11 15:40:59 +02003206 hwaddr l, xlat;
3207
Paolo Bonzini41063e12015-03-18 14:21:43 +01003208 rcu_read_lock();
Paolo Bonzini51644ab2013-04-11 15:40:59 +02003209 while (len > 0) {
3210 l = len;
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003211 mr = address_space_translate(as, addr, &xlat, &l, is_write);
3212 if (!memory_access_is_direct(mr, is_write)) {
3213 l = memory_access_size(mr, l, addr);
3214 if (!memory_region_access_valid(mr, xlat, l, is_write)) {
Roman Kapl5ad4a2b2017-01-09 12:09:21 +01003215 rcu_read_unlock();
Paolo Bonzini51644ab2013-04-11 15:40:59 +02003216 return false;
3217 }
3218 }
3219
3220 len -= l;
3221 addr += l;
3222 }
Paolo Bonzini41063e12015-03-18 14:21:43 +01003223 rcu_read_unlock();
Paolo Bonzini51644ab2013-04-11 15:40:59 +02003224 return true;
3225}
3226
Paolo Bonzini715c31e2016-11-22 12:04:31 +01003227static hwaddr
3228address_space_extend_translation(AddressSpace *as, hwaddr addr, hwaddr target_len,
3229 MemoryRegion *mr, hwaddr base, hwaddr len,
3230 bool is_write)
3231{
3232 hwaddr done = 0;
3233 hwaddr xlat;
3234 MemoryRegion *this_mr;
3235
3236 for (;;) {
3237 target_len -= len;
3238 addr += len;
3239 done += len;
3240 if (target_len == 0) {
3241 return done;
3242 }
3243
3244 len = target_len;
3245 this_mr = address_space_translate(as, addr, &xlat, &len, is_write);
3246 if (this_mr != mr || xlat != base + done) {
3247 return done;
3248 }
3249 }
3250}
3251
aliguori6d16c2f2009-01-22 16:59:11 +00003252/* Map a physical memory region into a host virtual address.
3253 * May map a subset of the requested range, given by and returned in *plen.
3254 * May return NULL if resources needed to perform the mapping are exhausted.
3255 * Use only for reads OR writes - not for read-modify-write operations.
aliguoriba223c22009-01-22 16:59:16 +00003256 * Use cpu_register_map_client() to know when retrying the map operation is
3257 * likely to succeed.
aliguori6d16c2f2009-01-22 16:59:11 +00003258 */
Avi Kivityac1970f2012-10-03 16:22:53 +02003259void *address_space_map(AddressSpace *as,
Avi Kivitya8170e52012-10-23 12:30:10 +02003260 hwaddr addr,
3261 hwaddr *plen,
Avi Kivityac1970f2012-10-03 16:22:53 +02003262 bool is_write)
aliguori6d16c2f2009-01-22 16:59:11 +00003263{
Avi Kivitya8170e52012-10-23 12:30:10 +02003264 hwaddr len = *plen;
Paolo Bonzini715c31e2016-11-22 12:04:31 +01003265 hwaddr l, xlat;
3266 MemoryRegion *mr;
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01003267 void *ptr;
aliguori6d16c2f2009-01-22 16:59:11 +00003268
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003269 if (len == 0) {
3270 return NULL;
3271 }
aliguori6d16c2f2009-01-22 16:59:11 +00003272
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003273 l = len;
Paolo Bonzini41063e12015-03-18 14:21:43 +01003274 rcu_read_lock();
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003275 mr = address_space_translate(as, addr, &xlat, &l, is_write);
Paolo Bonzini41063e12015-03-18 14:21:43 +01003276
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003277 if (!memory_access_is_direct(mr, is_write)) {
Fam Zhengc2cba0f2015-03-16 17:03:33 +08003278 if (atomic_xchg(&bounce.in_use, true)) {
Paolo Bonzini41063e12015-03-18 14:21:43 +01003279 rcu_read_unlock();
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003280 return NULL;
aliguori6d16c2f2009-01-22 16:59:11 +00003281 }
Kevin Wolfe85d9db2013-07-22 14:30:23 +02003282 /* Avoid unbounded allocations */
3283 l = MIN(l, TARGET_PAGE_SIZE);
3284 bounce.buffer = qemu_memalign(TARGET_PAGE_SIZE, l);
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003285 bounce.addr = addr;
3286 bounce.len = l;
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003287
3288 memory_region_ref(mr);
3289 bounce.mr = mr;
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003290 if (!is_write) {
Peter Maydell5c9eb022015-04-26 16:49:24 +01003291 address_space_read(as, addr, MEMTXATTRS_UNSPECIFIED,
3292 bounce.buffer, l);
Stefano Stabellini8ab934f2011-06-27 18:26:06 +01003293 }
aliguori6d16c2f2009-01-22 16:59:11 +00003294
Paolo Bonzini41063e12015-03-18 14:21:43 +01003295 rcu_read_unlock();
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003296 *plen = l;
3297 return bounce.buffer;
3298 }
3299
Paolo Bonzinie3127ae2013-06-28 17:29:27 +02003300
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003301 memory_region_ref(mr);
Paolo Bonzini715c31e2016-11-22 12:04:31 +01003302 *plen = address_space_extend_translation(as, addr, len, mr, xlat, l, is_write);
3303 ptr = qemu_ram_ptr_length(mr->ram_block, xlat, plen);
Paolo Bonzinie81bcda2015-12-16 10:31:26 +01003304 rcu_read_unlock();
3305
3306 return ptr;
aliguori6d16c2f2009-01-22 16:59:11 +00003307}
3308
Avi Kivityac1970f2012-10-03 16:22:53 +02003309/* Unmaps a memory region previously mapped by address_space_map().
aliguori6d16c2f2009-01-22 16:59:11 +00003310 * Will also mark the memory as dirty if is_write == 1. access_len gives
3311 * the amount of memory that was actually read or written by the caller.
3312 */
Avi Kivitya8170e52012-10-23 12:30:10 +02003313void address_space_unmap(AddressSpace *as, void *buffer, hwaddr len,
3314 int is_write, hwaddr access_len)
aliguori6d16c2f2009-01-22 16:59:11 +00003315{
3316 if (buffer != bounce.buffer) {
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003317 MemoryRegion *mr;
3318 ram_addr_t addr1;
3319
Paolo Bonzini07bdaa42016-03-25 12:55:08 +01003320 mr = memory_region_from_host(buffer, &addr1);
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003321 assert(mr != NULL);
aliguori6d16c2f2009-01-22 16:59:11 +00003322 if (is_write) {
Paolo Bonzini845b6212015-03-23 11:45:53 +01003323 invalidate_and_set_dirty(mr, addr1, access_len);
aliguori6d16c2f2009-01-22 16:59:11 +00003324 }
Jan Kiszka868bb332011-06-21 22:59:09 +02003325 if (xen_enabled()) {
Jan Kiszkae41d7c62011-06-21 22:59:08 +02003326 xen_invalidate_map_cache_entry(buffer);
Anthony PERARD050a0dd2010-09-16 13:57:49 +01003327 }
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003328 memory_region_unref(mr);
aliguori6d16c2f2009-01-22 16:59:11 +00003329 return;
3330 }
3331 if (is_write) {
Peter Maydell5c9eb022015-04-26 16:49:24 +01003332 address_space_write(as, bounce.addr, MEMTXATTRS_UNSPECIFIED,
3333 bounce.buffer, access_len);
aliguori6d16c2f2009-01-22 16:59:11 +00003334 }
Herve Poussineauf8a83242010-01-24 21:23:56 +00003335 qemu_vfree(bounce.buffer);
aliguori6d16c2f2009-01-22 16:59:11 +00003336 bounce.buffer = NULL;
Paolo Bonzinid3e71552013-06-28 17:33:29 +02003337 memory_region_unref(bounce.mr);
Fam Zhengc2cba0f2015-03-16 17:03:33 +08003338 atomic_mb_set(&bounce.in_use, false);
aliguoriba223c22009-01-22 16:59:16 +00003339 cpu_notify_map_clients();
aliguori6d16c2f2009-01-22 16:59:11 +00003340}
bellardd0ecd2a2006-04-23 17:14:48 +00003341
Avi Kivitya8170e52012-10-23 12:30:10 +02003342void *cpu_physical_memory_map(hwaddr addr,
3343 hwaddr *plen,
Avi Kivityac1970f2012-10-03 16:22:53 +02003344 int is_write)
3345{
3346 return address_space_map(&address_space_memory, addr, plen, is_write);
3347}
3348
Avi Kivitya8170e52012-10-23 12:30:10 +02003349void cpu_physical_memory_unmap(void *buffer, hwaddr len,
3350 int is_write, hwaddr access_len)
Avi Kivityac1970f2012-10-03 16:22:53 +02003351{
3352 return address_space_unmap(&address_space_memory, buffer, len, is_write, access_len);
3353}
3354
Paolo Bonzini0ce265f2016-11-22 11:34:02 +01003355#define ARG1_DECL AddressSpace *as
3356#define ARG1 as
3357#define SUFFIX
3358#define TRANSLATE(...) address_space_translate(as, __VA_ARGS__)
3359#define IS_DIRECT(mr, is_write) memory_access_is_direct(mr, is_write)
3360#define MAP_RAM(mr, ofs) qemu_map_ram_ptr((mr)->ram_block, ofs)
3361#define INVALIDATE(mr, ofs, len) invalidate_and_set_dirty(mr, ofs, len)
3362#define RCU_READ_LOCK(...) rcu_read_lock()
3363#define RCU_READ_UNLOCK(...) rcu_read_unlock()
3364#include "memory_ldst.inc.c"
Alexander Graf1e78bcc2011-07-06 09:09:23 +02003365
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003366int64_t address_space_cache_init(MemoryRegionCache *cache,
3367 AddressSpace *as,
3368 hwaddr addr,
3369 hwaddr len,
3370 bool is_write)
3371{
Paolo Bonzini90c4fe52017-04-03 13:41:28 +02003372 cache->len = len;
3373 cache->as = as;
3374 cache->xlat = addr;
3375 return len;
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003376}
3377
3378void address_space_cache_invalidate(MemoryRegionCache *cache,
3379 hwaddr addr,
3380 hwaddr access_len)
3381{
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003382}
3383
3384void address_space_cache_destroy(MemoryRegionCache *cache)
3385{
Paolo Bonzini90c4fe52017-04-03 13:41:28 +02003386 cache->as = NULL;
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003387}
3388
3389#define ARG1_DECL MemoryRegionCache *cache
3390#define ARG1 cache
3391#define SUFFIX _cached
Paolo Bonzini90c4fe52017-04-03 13:41:28 +02003392#define TRANSLATE(addr, ...) \
3393 address_space_translate(cache->as, cache->xlat + (addr), __VA_ARGS__)
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003394#define IS_DIRECT(mr, is_write) true
Paolo Bonzini90c4fe52017-04-03 13:41:28 +02003395#define MAP_RAM(mr, ofs) qemu_map_ram_ptr((mr)->ram_block, ofs)
3396#define INVALIDATE(mr, ofs, len) invalidate_and_set_dirty(mr, ofs, len)
3397#define RCU_READ_LOCK() rcu_read_lock()
3398#define RCU_READ_UNLOCK() rcu_read_unlock()
Paolo Bonzini1f4e4962016-11-22 12:04:52 +01003399#include "memory_ldst.inc.c"
3400
aliguori5e2972f2009-03-28 17:51:36 +00003401/* virtual memory access for debug (includes writing to ROM) */
Andreas Färberf17ec442013-06-29 19:40:58 +02003402int cpu_memory_rw_debug(CPUState *cpu, target_ulong addr,
bellardb448f2f2004-02-25 23:24:04 +00003403 uint8_t *buf, int len, int is_write)
bellard13eb76e2004-01-24 15:23:36 +00003404{
3405 int l;
Avi Kivitya8170e52012-10-23 12:30:10 +02003406 hwaddr phys_addr;
j_mayer9b3c35e2007-04-07 11:21:28 +00003407 target_ulong page;
bellard13eb76e2004-01-24 15:23:36 +00003408
Christian Borntraeger79ca7a12017-03-07 15:19:08 +01003409 cpu_synchronize_state(cpu);
bellard13eb76e2004-01-24 15:23:36 +00003410 while (len > 0) {
Peter Maydell5232e4c2016-01-21 14:15:06 +00003411 int asidx;
3412 MemTxAttrs attrs;
3413
bellard13eb76e2004-01-24 15:23:36 +00003414 page = addr & TARGET_PAGE_MASK;
Peter Maydell5232e4c2016-01-21 14:15:06 +00003415 phys_addr = cpu_get_phys_page_attrs_debug(cpu, page, &attrs);
3416 asidx = cpu_asidx_from_attrs(cpu, attrs);
bellard13eb76e2004-01-24 15:23:36 +00003417 /* if no physical page mapped, return an error */
3418 if (phys_addr == -1)
3419 return -1;
3420 l = (page + TARGET_PAGE_SIZE) - addr;
3421 if (l > len)
3422 l = len;
aliguori5e2972f2009-03-28 17:51:36 +00003423 phys_addr += (addr & ~TARGET_PAGE_MASK);
Edgar E. Iglesias2e388472013-12-13 16:31:02 +10003424 if (is_write) {
Peter Maydell5232e4c2016-01-21 14:15:06 +00003425 cpu_physical_memory_write_rom(cpu->cpu_ases[asidx].as,
3426 phys_addr, buf, l);
Edgar E. Iglesias2e388472013-12-13 16:31:02 +10003427 } else {
Peter Maydell5232e4c2016-01-21 14:15:06 +00003428 address_space_rw(cpu->cpu_ases[asidx].as, phys_addr,
3429 MEMTXATTRS_UNSPECIFIED,
Peter Maydell5c9eb022015-04-26 16:49:24 +01003430 buf, l, 0);
Edgar E. Iglesias2e388472013-12-13 16:31:02 +10003431 }
bellard13eb76e2004-01-24 15:23:36 +00003432 len -= l;
3433 buf += l;
3434 addr += l;
3435 }
3436 return 0;
3437}
Dr. David Alan Gilbert038629a2015-11-05 18:10:29 +00003438
3439/*
3440 * Allows code that needs to deal with migration bitmaps etc to still be built
3441 * target independent.
3442 */
Juan Quintela20afaed2017-03-21 09:09:14 +01003443size_t qemu_target_page_size(void)
Dr. David Alan Gilbert038629a2015-11-05 18:10:29 +00003444{
Juan Quintela20afaed2017-03-21 09:09:14 +01003445 return TARGET_PAGE_SIZE;
Dr. David Alan Gilbert038629a2015-11-05 18:10:29 +00003446}
3447
Juan Quintela46d702b2017-04-24 21:03:48 +02003448int qemu_target_page_bits(void)
3449{
3450 return TARGET_PAGE_BITS;
3451}
3452
3453int qemu_target_page_bits_min(void)
3454{
3455 return TARGET_PAGE_BITS_MIN;
3456}
Paul Brooka68fe892010-03-01 00:08:59 +00003457#endif
bellard13eb76e2004-01-24 15:23:36 +00003458
Blue Swirl8e4a4242013-01-06 18:30:17 +00003459/*
3460 * A helper function for the _utterly broken_ virtio device model to find out if
3461 * it's running on a big endian machine. Don't do this at home kids!
3462 */
Greg Kurz98ed8ec2014-06-24 19:26:29 +02003463bool target_words_bigendian(void);
3464bool target_words_bigendian(void)
Blue Swirl8e4a4242013-01-06 18:30:17 +00003465{
3466#if defined(TARGET_WORDS_BIGENDIAN)
3467 return true;
3468#else
3469 return false;
3470#endif
3471}
3472
Wen Congyang76f35532012-05-07 12:04:18 +08003473#ifndef CONFIG_USER_ONLY
Avi Kivitya8170e52012-10-23 12:30:10 +02003474bool cpu_physical_memory_is_io(hwaddr phys_addr)
Wen Congyang76f35532012-05-07 12:04:18 +08003475{
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003476 MemoryRegion*mr;
Paolo Bonzini149f54b2013-05-24 12:59:37 +02003477 hwaddr l = 1;
Paolo Bonzini41063e12015-03-18 14:21:43 +01003478 bool res;
Wen Congyang76f35532012-05-07 12:04:18 +08003479
Paolo Bonzini41063e12015-03-18 14:21:43 +01003480 rcu_read_lock();
Paolo Bonzini5c8a00c2013-05-29 12:42:00 +02003481 mr = address_space_translate(&address_space_memory,
3482 phys_addr, &phys_addr, &l, false);
Wen Congyang76f35532012-05-07 12:04:18 +08003483
Paolo Bonzini41063e12015-03-18 14:21:43 +01003484 res = !(memory_region_is_ram(mr) || memory_region_is_romd(mr));
3485 rcu_read_unlock();
3486 return res;
Wen Congyang76f35532012-05-07 12:04:18 +08003487}
Michael R. Hinesbd2fa512013-06-25 21:35:34 -04003488
Dr. David Alan Gilberte3807052015-05-21 13:24:13 +01003489int qemu_ram_foreach_block(RAMBlockIterFunc func, void *opaque)
Michael R. Hinesbd2fa512013-06-25 21:35:34 -04003490{
3491 RAMBlock *block;
Dr. David Alan Gilberte3807052015-05-21 13:24:13 +01003492 int ret = 0;
Michael R. Hinesbd2fa512013-06-25 21:35:34 -04003493
Mike Day0dc3f442013-09-05 14:41:35 -04003494 rcu_read_lock();
Peter Xu99e15582017-05-12 12:17:39 +08003495 RAMBLOCK_FOREACH(block) {
Dr. David Alan Gilberte3807052015-05-21 13:24:13 +01003496 ret = func(block->idstr, block->host, block->offset,
3497 block->used_length, opaque);
3498 if (ret) {
3499 break;
3500 }
Michael R. Hinesbd2fa512013-06-25 21:35:34 -04003501 }
Mike Day0dc3f442013-09-05 14:41:35 -04003502 rcu_read_unlock();
Dr. David Alan Gilberte3807052015-05-21 13:24:13 +01003503 return ret;
Michael R. Hinesbd2fa512013-06-25 21:35:34 -04003504}
Dr. David Alan Gilbertd3a50382017-02-24 18:28:32 +00003505
3506/*
3507 * Unmap pages of memory from start to start+length such that
3508 * they a) read as 0, b) Trigger whatever fault mechanism
3509 * the OS provides for postcopy.
3510 * The pages must be unmapped by the end of the function.
3511 * Returns: 0 on success, none-0 on failure
3512 *
3513 */
3514int ram_block_discard_range(RAMBlock *rb, uint64_t start, size_t length)
3515{
3516 int ret = -1;
3517
3518 uint8_t *host_startaddr = rb->host + start;
3519
3520 if ((uintptr_t)host_startaddr & (rb->page_size - 1)) {
3521 error_report("ram_block_discard_range: Unaligned start address: %p",
3522 host_startaddr);
3523 goto err;
3524 }
3525
3526 if ((start + length) <= rb->used_length) {
3527 uint8_t *host_endaddr = host_startaddr + length;
3528 if ((uintptr_t)host_endaddr & (rb->page_size - 1)) {
3529 error_report("ram_block_discard_range: Unaligned end address: %p",
3530 host_endaddr);
3531 goto err;
3532 }
3533
3534 errno = ENOTSUP; /* If we are missing MADVISE etc */
3535
Dr. David Alan Gilberte2fa71f2017-02-24 18:28:33 +00003536 if (rb->page_size == qemu_host_page_size) {
Dr. David Alan Gilbertd3a50382017-02-24 18:28:32 +00003537#if defined(CONFIG_MADVISE)
Dr. David Alan Gilberte2fa71f2017-02-24 18:28:33 +00003538 /* Note: We need the madvise MADV_DONTNEED behaviour of definitely
3539 * freeing the page.
3540 */
3541 ret = madvise(host_startaddr, length, MADV_DONTNEED);
Dr. David Alan Gilbertd3a50382017-02-24 18:28:32 +00003542#endif
Dr. David Alan Gilberte2fa71f2017-02-24 18:28:33 +00003543 } else {
3544 /* Huge page case - unfortunately it can't do DONTNEED, but
3545 * it can do the equivalent by FALLOC_FL_PUNCH_HOLE in the
3546 * huge page file.
3547 */
3548#ifdef CONFIG_FALLOCATE_PUNCH_HOLE
3549 ret = fallocate(rb->fd, FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
3550 start, length);
3551#endif
3552 }
Dr. David Alan Gilbertd3a50382017-02-24 18:28:32 +00003553 if (ret) {
3554 ret = -errno;
3555 error_report("ram_block_discard_range: Failed to discard range "
3556 "%s:%" PRIx64 " +%zx (%d)",
3557 rb->idstr, start, length, ret);
3558 }
3559 } else {
3560 error_report("ram_block_discard_range: Overrun block '%s' (%" PRIu64
3561 "/%zx/" RAM_ADDR_FMT")",
3562 rb->idstr, start, length, rb->used_length);
3563 }
3564
3565err:
3566 return ret;
3567}
3568
Peter Maydellec3f8c92013-06-27 20:53:38 +01003569#endif