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qemu: refactor main_loop (Marcelo Tosatti)
[mirror_qemu.git] / vl.c
CommitLineData
0824d6fc 1/*
80cabfad 2 * QEMU System Emulator
5fafdf24 3 *
68d0f70e 4 * Copyright (c) 2003-2008 Fabrice Bellard
5fafdf24 5 *
1df912cf
FB
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
0824d6fc 23 */
0824d6fc 24#include <unistd.h>
0824d6fc
FB
25#include <fcntl.h>
26#include <signal.h>
27#include <time.h>
0824d6fc 28#include <errno.h>
67b915a5 29#include <sys/time.h>
c88676f8 30#include <zlib.h>
67b915a5 31
179a2c19 32/* Needed early for HOST_BSD etc. */
d40cdb10
BS
33#include "config-host.h"
34
67b915a5 35#ifndef _WIN32
0858532e 36#include <pwd.h>
67b915a5 37#include <sys/times.h>
f1510b2c 38#include <sys/wait.h>
67b915a5 39#include <termios.h>
67b915a5 40#include <sys/mman.h>
f1510b2c 41#include <sys/ioctl.h>
24646c7e 42#include <sys/resource.h>
f1510b2c 43#include <sys/socket.h>
c94c8d64 44#include <netinet/in.h>
24646c7e
BS
45#include <net/if.h>
46#if defined(__NetBSD__)
47#include <net/if_tap.h>
48#endif
49#ifdef __linux__
50#include <linux/if_tun.h>
51#endif
52#include <arpa/inet.h>
9d728e8c 53#include <dirent.h>
7c9d8e07 54#include <netdb.h>
cb4b976b 55#include <sys/select.h>
179a2c19 56#ifdef HOST_BSD
7d3505c5 57#include <sys/stat.h>
c5e97233 58#if defined(__FreeBSD__) || defined(__DragonFly__)
7d3505c5 59#include <libutil.h>
24646c7e
BS
60#else
61#include <util.h>
128ab2ff 62#endif
5c40d2bd
TS
63#elif defined (__GLIBC__) && defined (__FreeBSD_kernel__)
64#include <freebsd/stdlib.h>
7d3505c5 65#else
223f0d72 66#ifdef __linux__
7d3505c5
FB
67#include <pty.h>
68#include <malloc.h>
fd872598 69#include <linux/rtc.h>
bd494f4c
TS
70
71/* For the benefit of older linux systems which don't supply it,
72 we use a local copy of hpet.h. */
73/* #include <linux/hpet.h> */
74#include "hpet.h"
75
e57a8c0e 76#include <linux/ppdev.h>
5867c88a 77#include <linux/parport.h>
223f0d72
BS
78#endif
79#ifdef __sun__
d5d10bc3
TS
80#include <sys/stat.h>
81#include <sys/ethernet.h>
82#include <sys/sockio.h>
d5d10bc3
TS
83#include <netinet/arp.h>
84#include <netinet/in.h>
85#include <netinet/in_systm.h>
86#include <netinet/ip.h>
87#include <netinet/ip_icmp.h> // must come after ip.h
88#include <netinet/udp.h>
89#include <netinet/tcp.h>
90#include <net/if.h>
91#include <syslog.h>
92#include <stropts.h>
67b915a5 93#endif
7d3505c5 94#endif
ec530c81 95#endif
67b915a5 96
9892fbfb
BS
97#if defined(__OpenBSD__)
98#include <util.h>
99#endif
100
8a16d273
TS
101#if defined(CONFIG_VDE)
102#include <libvdeplug.h>
103#endif
104
67b915a5 105#ifdef _WIN32
49dc768d 106#include <windows.h>
7d3505c5 107#include <malloc.h>
67b915a5 108#include <sys/timeb.h>
4fddf62a 109#include <mmsystem.h>
67b915a5
FB
110#define getopt_long_only getopt_long
111#define memalign(align, size) malloc(size)
112#endif
113
73332e5c 114#ifdef CONFIG_SDL
96bcd4f8 115#ifdef __APPLE__
83fb7adf 116#include <SDL/SDL.h>
880fec5d 117int qemu_main(int argc, char **argv, char **envp);
118int main(int argc, char **argv)
119{
120 qemu_main(argc, argv, NULL);
121}
122#undef main
123#define main qemu_main
96bcd4f8 124#endif
73332e5c 125#endif /* CONFIG_SDL */
0824d6fc 126
5b0753e0
FB
127#ifdef CONFIG_COCOA
128#undef main
129#define main qemu_main
130#endif /* CONFIG_COCOA */
131
511d2b14
BS
132#include "hw/hw.h"
133#include "hw/boards.h"
134#include "hw/usb.h"
135#include "hw/pcmcia.h"
136#include "hw/pc.h"
137#include "hw/audiodev.h"
138#include "hw/isa.h"
139#include "hw/baum.h"
140#include "hw/bt.h"
b6f6e3d3 141#include "hw/smbios.h"
e37630ca 142#include "hw/xen.h"
5ef4efa4 143#include "bt-host.h"
511d2b14
BS
144#include "net.h"
145#include "monitor.h"
146#include "console.h"
147#include "sysemu.h"
148#include "gdbstub.h"
149#include "qemu-timer.h"
150#include "qemu-char.h"
151#include "cache-utils.h"
152#include "block.h"
a718acec 153#include "dma.h"
511d2b14
BS
154#include "audio/audio.h"
155#include "migration.h"
156#include "kvm.h"
157#include "balloon.h"
158
0824d6fc 159#include "disas.h"
fc01f7e7 160
8a7ddc38 161#include "exec-all.h"
0824d6fc 162
511d2b14
BS
163#include "qemu_socket.h"
164
165#if defined(CONFIG_SLIRP)
166#include "libslirp.h"
167#endif
168
0824d6fc 169//#define DEBUG_UNUSED_IOPORT
fd872598 170//#define DEBUG_IOPORT
9dc63a1e
BS
171//#define DEBUG_NET
172//#define DEBUG_SLIRP
330d0414 173
d12d51d5
AL
174
175#ifdef DEBUG_IOPORT
93fcfe39 176# define LOG_IOPORT(...) qemu_log_mask(CPU_LOG_IOPORT, ## __VA_ARGS__)
d12d51d5
AL
177#else
178# define LOG_IOPORT(...) do { } while (0)
179#endif
180
1bfe856e 181#define DEFAULT_RAM_SIZE 128
313aa567 182
0d92ed30
PB
183/* Max number of USB devices that can be specified on the commandline. */
184#define MAX_USB_CMDLINE 8
185
dc72ac14
AZ
186/* Max number of bluetooth switches on the commandline. */
187#define MAX_BT_CMDLINE 10
188
7dea1da4
FB
189/* XXX: use a two level table to limit memory usage */
190#define MAX_IOPORTS 65536
0824d6fc 191
80cabfad 192const char *bios_dir = CONFIG_QEMU_SHAREDIR;
1192dad8 193const char *bios_name = NULL;
dbed7e40
BS
194static void *ioport_opaque[MAX_IOPORTS];
195static IOPortReadFunc *ioport_read_table[3][MAX_IOPORTS];
196static IOPortWriteFunc *ioport_write_table[3][MAX_IOPORTS];
e4bcb14c 197/* Note: drives_table[MAX_DRIVES] is a dummy block driver if none available
faea38e7 198 to store the VM snapshots */
e4bcb14c
TS
199DriveInfo drives_table[MAX_DRIVES+1];
200int nb_drives;
dbed7e40 201static int vga_ram_size;
cb5a7aa8 202enum vga_retrace_method vga_retrace_method = VGA_RETRACE_DUMB;
3023f332 203static DisplayState *display_state;
a20dd508 204int nographic;
dbed7e40 205static int curses;
7d957bd8 206static int sdl;
3d11d0eb 207const char* keyboard_layout = NULL;
313aa567 208int64_t ticks_per_sec;
00f82b8a 209ram_addr_t ram_size;
c4b1fcc0 210int nb_nics;
7c9d8e07 211NICInfo nd_table[MAX_NICS];
8a7ddc38 212int vm_running;
c0f4ce77 213static int autostart;
f6503059
AZ
214static int rtc_utc = 1;
215static int rtc_date_offset = -1; /* -1 means no change */
1bfe856e 216int cirrus_vga_enabled = 1;
c2b3b41a 217int std_vga_enabled = 0;
d34cab9f 218int vmsvga_enabled = 0;
94909d9f 219int xenfb_enabled = 0;
d827220b
FB
220#ifdef TARGET_SPARC
221int graphic_width = 1024;
222int graphic_height = 768;
eee0b836 223int graphic_depth = 8;
d827220b 224#else
1bfe856e
FB
225int graphic_width = 800;
226int graphic_height = 600;
e9b137c2 227int graphic_depth = 15;
eee0b836 228#endif
dbed7e40 229static int full_screen = 0;
634a21f6 230#ifdef CONFIG_SDL
dbed7e40 231static int no_frame = 0;
634a21f6 232#endif
667accab 233int no_quit = 0;
8d11df9e 234CharDriverState *serial_hds[MAX_SERIAL_PORTS];
6508fe59 235CharDriverState *parallel_hds[MAX_PARALLEL_PORTS];
9ede2fde 236CharDriverState *virtcon_hds[MAX_VIRTIO_CONSOLES];
a09db21f
FB
237#ifdef TARGET_I386
238int win2k_install_hack = 0;
73822ec8 239int rtc_td_hack = 0;
a09db21f 240#endif
bb36d470 241int usb_enabled = 0;
1b530a6d 242int singlestep = 0;
6a00d601 243int smp_cpus = 1;
73fc9742 244const char *vnc_display;
6515b203 245int acpi_enabled = 1;
16b29ae1 246int no_hpet = 0;
52ca8d6a 247int fd_bootchk = 1;
d1beab82 248int no_reboot = 0;
b2f76161 249int no_shutdown = 0;
9467cd46 250int cursor_hide = 1;
a171fe39 251int graphic_rotate = 0;
b9e82a59 252#ifndef _WIN32
71e3ceb8 253int daemonize = 0;
b9e82a59 254#endif
9ae02555
TS
255const char *option_rom[MAX_OPTION_ROMS];
256int nb_option_roms;
8e71621f 257int semihosting_enabled = 0;
2b8f2d41
AZ
258#ifdef TARGET_ARM
259int old_param = 0;
260#endif
c35734b2 261const char *qemu_name;
3780e197 262int alt_grab = 0;
95efd11c 263#if defined(TARGET_SPARC) || defined(TARGET_PPC)
66508601
BS
264unsigned int nb_prom_envs = 0;
265const char *prom_envs[MAX_PROM_ENVS];
266#endif
ec691c80
AL
267int nb_drives_opt;
268struct drive_opt drives_opt[MAX_DRIVES];
0824d6fc 269
268a362c
AL
270int nb_numa_nodes;
271uint64_t node_mem[MAX_NODES];
272uint64_t node_cpumask[MAX_NODES];
273
ee5605e5
AZ
274static CPUState *cur_cpu;
275static CPUState *next_cpu;
43b96858 276static int timer_alarm_pending = 1;
bf20dc07 277/* Conversion factor from emulated instructions to virtual clock ticks. */
2e70f6ef 278static int icount_time_shift;
bf20dc07 279/* Arbitrarily pick 1MIPS as the minimum allowable speed. */
2e70f6ef
PB
280#define MAX_ICOUNT_SHIFT 10
281/* Compensate for varying guest execution speed. */
282static int64_t qemu_icount_bias;
dbed7e40
BS
283static QEMUTimer *icount_rt_timer;
284static QEMUTimer *icount_vm_timer;
9043b62d 285static QEMUTimer *nographic_timer;
ee5605e5 286
8fcb1b90
BS
287uint8_t qemu_uuid[16];
288
0824d6fc 289/***********************************************************/
26aa7d72
FB
290/* x86 ISA bus support */
291
292target_phys_addr_t isa_mem_base = 0;
3de388f6 293PicState2 *isa_pic;
0824d6fc 294
477e3edf
AL
295static IOPortReadFunc default_ioport_readb, default_ioport_readw, default_ioport_readl;
296static IOPortWriteFunc default_ioport_writeb, default_ioport_writew, default_ioport_writel;
297
298static uint32_t ioport_read(int index, uint32_t address)
299{
300 static IOPortReadFunc *default_func[3] = {
301 default_ioport_readb,
302 default_ioport_readw,
303 default_ioport_readl
304 };
305 IOPortReadFunc *func = ioport_read_table[index][address];
306 if (!func)
307 func = default_func[index];
308 return func(ioport_opaque[address], address);
309}
310
311static void ioport_write(int index, uint32_t address, uint32_t data)
312{
313 static IOPortWriteFunc *default_func[3] = {
314 default_ioport_writeb,
315 default_ioport_writew,
316 default_ioport_writel
317 };
318 IOPortWriteFunc *func = ioport_write_table[index][address];
319 if (!func)
320 func = default_func[index];
321 func(ioport_opaque[address], address, data);
322}
323
9596ebb7 324static uint32_t default_ioport_readb(void *opaque, uint32_t address)
0824d6fc
FB
325{
326#ifdef DEBUG_UNUSED_IOPORT
1196be37 327 fprintf(stderr, "unused inb: port=0x%04x\n", address);
0824d6fc 328#endif
fc01f7e7 329 return 0xff;
0824d6fc
FB
330}
331
9596ebb7 332static void default_ioport_writeb(void *opaque, uint32_t address, uint32_t data)
0824d6fc
FB
333{
334#ifdef DEBUG_UNUSED_IOPORT
1196be37 335 fprintf(stderr, "unused outb: port=0x%04x data=0x%02x\n", address, data);
0824d6fc
FB
336#endif
337}
338
339/* default is to make two byte accesses */
9596ebb7 340static uint32_t default_ioport_readw(void *opaque, uint32_t address)
0824d6fc
FB
341{
342 uint32_t data;
477e3edf 343 data = ioport_read(0, address);
db45c29a 344 address = (address + 1) & (MAX_IOPORTS - 1);
477e3edf 345 data |= ioport_read(0, address) << 8;
0824d6fc
FB
346 return data;
347}
348
9596ebb7 349static void default_ioport_writew(void *opaque, uint32_t address, uint32_t data)
0824d6fc 350{
477e3edf 351 ioport_write(0, address, data & 0xff);
db45c29a 352 address = (address + 1) & (MAX_IOPORTS - 1);
477e3edf 353 ioport_write(0, address, (data >> 8) & 0xff);
0824d6fc
FB
354}
355
9596ebb7 356static uint32_t default_ioport_readl(void *opaque, uint32_t address)
0824d6fc 357{
fc01f7e7 358#ifdef DEBUG_UNUSED_IOPORT
1196be37 359 fprintf(stderr, "unused inl: port=0x%04x\n", address);
fc01f7e7
FB
360#endif
361 return 0xffffffff;
0824d6fc
FB
362}
363
9596ebb7 364static void default_ioport_writel(void *opaque, uint32_t address, uint32_t data)
0824d6fc 365{
fc01f7e7 366#ifdef DEBUG_UNUSED_IOPORT
1196be37 367 fprintf(stderr, "unused outl: port=0x%04x data=0x%02x\n", address, data);
fc01f7e7 368#endif
0824d6fc
FB
369}
370
fc01f7e7 371/* size is the word size in byte */
5fafdf24 372int register_ioport_read(int start, int length, int size,
c4b1fcc0 373 IOPortReadFunc *func, void *opaque)
f1510b2c 374{
fc01f7e7 375 int i, bsize;
f1510b2c 376
c4b1fcc0 377 if (size == 1) {
fc01f7e7 378 bsize = 0;
c4b1fcc0 379 } else if (size == 2) {
fc01f7e7 380 bsize = 1;
c4b1fcc0 381 } else if (size == 4) {
fc01f7e7 382 bsize = 2;
c4b1fcc0 383 } else {
88fdf56f 384 hw_error("register_ioport_read: invalid size");
fc01f7e7 385 return -1;
c4b1fcc0
FB
386 }
387 for(i = start; i < start + length; i += size) {
fc01f7e7 388 ioport_read_table[bsize][i] = func;
c4b1fcc0 389 if (ioport_opaque[i] != NULL && ioport_opaque[i] != opaque)
88fdf56f 390 hw_error("register_ioport_read: invalid opaque");
c4b1fcc0
FB
391 ioport_opaque[i] = opaque;
392 }
f1510b2c
FB
393 return 0;
394}
395
fc01f7e7 396/* size is the word size in byte */
5fafdf24 397int register_ioport_write(int start, int length, int size,
c4b1fcc0 398 IOPortWriteFunc *func, void *opaque)
f1510b2c 399{
fc01f7e7 400 int i, bsize;
f1510b2c 401
c4b1fcc0 402 if (size == 1) {
fc01f7e7 403 bsize = 0;
c4b1fcc0 404 } else if (size == 2) {
fc01f7e7 405 bsize = 1;
c4b1fcc0 406 } else if (size == 4) {
fc01f7e7 407 bsize = 2;
c4b1fcc0 408 } else {
88fdf56f 409 hw_error("register_ioport_write: invalid size");
fc01f7e7 410 return -1;
c4b1fcc0
FB
411 }
412 for(i = start; i < start + length; i += size) {
fc01f7e7 413 ioport_write_table[bsize][i] = func;
88fdf56f
AZ
414 if (ioport_opaque[i] != NULL && ioport_opaque[i] != opaque)
415 hw_error("register_ioport_write: invalid opaque");
c4b1fcc0
FB
416 ioport_opaque[i] = opaque;
417 }
f1510b2c
FB
418 return 0;
419}
420
69b91039
FB
421void isa_unassign_ioport(int start, int length)
422{
423 int i;
424
425 for(i = start; i < start + length; i++) {
426 ioport_read_table[0][i] = default_ioport_readb;
427 ioport_read_table[1][i] = default_ioport_readw;
428 ioport_read_table[2][i] = default_ioport_readl;
429
430 ioport_write_table[0][i] = default_ioport_writeb;
431 ioport_write_table[1][i] = default_ioport_writew;
432 ioport_write_table[2][i] = default_ioport_writel;
a7607f7e
AL
433
434 ioport_opaque[i] = NULL;
69b91039
FB
435 }
436}
437
20f32282
FB
438/***********************************************************/
439
c45886db 440void cpu_outb(CPUState *env, int addr, int val)
0824d6fc 441{
d12d51d5 442 LOG_IOPORT("outb: %04x %02x\n", addr, val);
477e3edf 443 ioport_write(0, addr, val);
640f42e4 444#ifdef CONFIG_KQEMU
89bfc105
FB
445 if (env)
446 env->last_io_time = cpu_get_time_fast();
447#endif
0824d6fc
FB
448}
449
c45886db 450void cpu_outw(CPUState *env, int addr, int val)
0824d6fc 451{
d12d51d5 452 LOG_IOPORT("outw: %04x %04x\n", addr, val);
477e3edf 453 ioport_write(1, addr, val);
640f42e4 454#ifdef CONFIG_KQEMU
89bfc105
FB
455 if (env)
456 env->last_io_time = cpu_get_time_fast();
457#endif
0824d6fc
FB
458}
459
c45886db 460void cpu_outl(CPUState *env, int addr, int val)
0824d6fc 461{
d12d51d5 462 LOG_IOPORT("outl: %04x %08x\n", addr, val);
477e3edf 463 ioport_write(2, addr, val);
640f42e4 464#ifdef CONFIG_KQEMU
89bfc105
FB
465 if (env)
466 env->last_io_time = cpu_get_time_fast();
467#endif
0824d6fc
FB
468}
469
c45886db 470int cpu_inb(CPUState *env, int addr)
0824d6fc 471{
fd872598 472 int val;
477e3edf 473 val = ioport_read(0, addr);
d12d51d5 474 LOG_IOPORT("inb : %04x %02x\n", addr, val);
640f42e4 475#ifdef CONFIG_KQEMU
89bfc105
FB
476 if (env)
477 env->last_io_time = cpu_get_time_fast();
fd872598
FB
478#endif
479 return val;
0824d6fc
FB
480}
481
c45886db 482int cpu_inw(CPUState *env, int addr)
0824d6fc 483{
fd872598 484 int val;
477e3edf 485 val = ioport_read(1, addr);
d12d51d5 486 LOG_IOPORT("inw : %04x %04x\n", addr, val);
640f42e4 487#ifdef CONFIG_KQEMU
89bfc105
FB
488 if (env)
489 env->last_io_time = cpu_get_time_fast();
fd872598
FB
490#endif
491 return val;
0824d6fc
FB
492}
493
c45886db 494int cpu_inl(CPUState *env, int addr)
0824d6fc 495{
fd872598 496 int val;
477e3edf 497 val = ioport_read(2, addr);
d12d51d5 498 LOG_IOPORT("inl : %04x %08x\n", addr, val);
640f42e4 499#ifdef CONFIG_KQEMU
89bfc105
FB
500 if (env)
501 env->last_io_time = cpu_get_time_fast();
fd872598
FB
502#endif
503 return val;
0824d6fc
FB
504}
505
506/***********************************************************/
0824d6fc
FB
507void hw_error(const char *fmt, ...)
508{
509 va_list ap;
6a00d601 510 CPUState *env;
0824d6fc
FB
511
512 va_start(ap, fmt);
513 fprintf(stderr, "qemu: hardware error: ");
514 vfprintf(stderr, fmt, ap);
515 fprintf(stderr, "\n");
6a00d601
FB
516 for(env = first_cpu; env != NULL; env = env->next_cpu) {
517 fprintf(stderr, "CPU #%d:\n", env->cpu_index);
0824d6fc 518#ifdef TARGET_I386
6a00d601 519 cpu_dump_state(env, stderr, fprintf, X86_DUMP_FPU);
c45886db 520#else
6a00d601 521 cpu_dump_state(env, stderr, fprintf, 0);
0824d6fc 522#endif
6a00d601 523 }
0824d6fc
FB
524 va_end(ap);
525 abort();
526}
df751fa8
AL
527
528/***************/
529/* ballooning */
530
531static QEMUBalloonEvent *qemu_balloon_event;
532void *qemu_balloon_event_opaque;
533
534void qemu_add_balloon_handler(QEMUBalloonEvent *func, void *opaque)
535{
536 qemu_balloon_event = func;
537 qemu_balloon_event_opaque = opaque;
538}
539
540void qemu_balloon(ram_addr_t target)
541{
542 if (qemu_balloon_event)
543 qemu_balloon_event(qemu_balloon_event_opaque, target);
544}
545
546ram_addr_t qemu_balloon_status(void)
547{
548 if (qemu_balloon_event)
549 return qemu_balloon_event(qemu_balloon_event_opaque, 0);
550 return 0;
551}
0824d6fc 552
63066f4f
FB
553/***********************************************************/
554/* keyboard/mouse */
555
556static QEMUPutKBDEvent *qemu_put_kbd_event;
557static void *qemu_put_kbd_event_opaque;
455204eb
TS
558static QEMUPutMouseEntry *qemu_put_mouse_event_head;
559static QEMUPutMouseEntry *qemu_put_mouse_event_current;
63066f4f
FB
560
561void qemu_add_kbd_event_handler(QEMUPutKBDEvent *func, void *opaque)
562{
563 qemu_put_kbd_event_opaque = opaque;
564 qemu_put_kbd_event = func;
565}
566
455204eb
TS
567QEMUPutMouseEntry *qemu_add_mouse_event_handler(QEMUPutMouseEvent *func,
568 void *opaque, int absolute,
569 const char *name)
63066f4f 570{
455204eb
TS
571 QEMUPutMouseEntry *s, *cursor;
572
573 s = qemu_mallocz(sizeof(QEMUPutMouseEntry));
455204eb
TS
574
575 s->qemu_put_mouse_event = func;
576 s->qemu_put_mouse_event_opaque = opaque;
577 s->qemu_put_mouse_event_absolute = absolute;
578 s->qemu_put_mouse_event_name = qemu_strdup(name);
579 s->next = NULL;
580
581 if (!qemu_put_mouse_event_head) {
582 qemu_put_mouse_event_head = qemu_put_mouse_event_current = s;
583 return s;
584 }
585
586 cursor = qemu_put_mouse_event_head;
587 while (cursor->next != NULL)
588 cursor = cursor->next;
589
590 cursor->next = s;
591 qemu_put_mouse_event_current = s;
592
593 return s;
594}
595
596void qemu_remove_mouse_event_handler(QEMUPutMouseEntry *entry)
597{
598 QEMUPutMouseEntry *prev = NULL, *cursor;
599
600 if (!qemu_put_mouse_event_head || entry == NULL)
601 return;
602
603 cursor = qemu_put_mouse_event_head;
604 while (cursor != NULL && cursor != entry) {
605 prev = cursor;
606 cursor = cursor->next;
607 }
608
609 if (cursor == NULL) // does not exist or list empty
610 return;
611 else if (prev == NULL) { // entry is head
612 qemu_put_mouse_event_head = cursor->next;
613 if (qemu_put_mouse_event_current == entry)
614 qemu_put_mouse_event_current = cursor->next;
615 qemu_free(entry->qemu_put_mouse_event_name);
616 qemu_free(entry);
617 return;
618 }
619
620 prev->next = entry->next;
621
622 if (qemu_put_mouse_event_current == entry)
623 qemu_put_mouse_event_current = prev;
624
625 qemu_free(entry->qemu_put_mouse_event_name);
626 qemu_free(entry);
63066f4f
FB
627}
628
629void kbd_put_keycode(int keycode)
630{
631 if (qemu_put_kbd_event) {
632 qemu_put_kbd_event(qemu_put_kbd_event_opaque, keycode);
633 }
634}
635
636void kbd_mouse_event(int dx, int dy, int dz, int buttons_state)
637{
455204eb
TS
638 QEMUPutMouseEvent *mouse_event;
639 void *mouse_event_opaque;
a171fe39 640 int width;
455204eb
TS
641
642 if (!qemu_put_mouse_event_current) {
643 return;
644 }
645
646 mouse_event =
647 qemu_put_mouse_event_current->qemu_put_mouse_event;
648 mouse_event_opaque =
649 qemu_put_mouse_event_current->qemu_put_mouse_event_opaque;
650
651 if (mouse_event) {
a171fe39
AZ
652 if (graphic_rotate) {
653 if (qemu_put_mouse_event_current->qemu_put_mouse_event_absolute)
654 width = 0x7fff;
655 else
b94ed577 656 width = graphic_width - 1;
a171fe39
AZ
657 mouse_event(mouse_event_opaque,
658 width - dy, dx, dz, buttons_state);
659 } else
660 mouse_event(mouse_event_opaque,
661 dx, dy, dz, buttons_state);
63066f4f
FB
662 }
663}
664
09b26c5e
FB
665int kbd_mouse_is_absolute(void)
666{
455204eb
TS
667 if (!qemu_put_mouse_event_current)
668 return 0;
669
670 return qemu_put_mouse_event_current->qemu_put_mouse_event_absolute;
671}
672
376253ec 673void do_info_mice(Monitor *mon)
455204eb
TS
674{
675 QEMUPutMouseEntry *cursor;
676 int index = 0;
677
678 if (!qemu_put_mouse_event_head) {
376253ec 679 monitor_printf(mon, "No mouse devices connected\n");
455204eb
TS
680 return;
681 }
682
376253ec 683 monitor_printf(mon, "Mouse devices available:\n");
455204eb
TS
684 cursor = qemu_put_mouse_event_head;
685 while (cursor != NULL) {
376253ec
AL
686 monitor_printf(mon, "%c Mouse #%d: %s\n",
687 (cursor == qemu_put_mouse_event_current ? '*' : ' '),
688 index, cursor->qemu_put_mouse_event_name);
455204eb
TS
689 index++;
690 cursor = cursor->next;
691 }
692}
693
376253ec 694void do_mouse_set(Monitor *mon, int index)
455204eb
TS
695{
696 QEMUPutMouseEntry *cursor;
697 int i = 0;
698
699 if (!qemu_put_mouse_event_head) {
376253ec 700 monitor_printf(mon, "No mouse devices connected\n");
455204eb
TS
701 return;
702 }
703
704 cursor = qemu_put_mouse_event_head;
705 while (cursor != NULL && index != i) {
706 i++;
707 cursor = cursor->next;
708 }
709
710 if (cursor != NULL)
711 qemu_put_mouse_event_current = cursor;
712 else
376253ec 713 monitor_printf(mon, "Mouse at given index not found\n");
09b26c5e
FB
714}
715
1dce7c3c
FB
716/* compute with 96 bit intermediate result: (a*b)/c */
717uint64_t muldiv64(uint64_t a, uint32_t b, uint32_t c)
0824d6fc 718{
1dce7c3c
FB
719 union {
720 uint64_t ll;
721 struct {
722#ifdef WORDS_BIGENDIAN
723 uint32_t high, low;
724#else
725 uint32_t low, high;
3b46e624 726#endif
1dce7c3c
FB
727 } l;
728 } u, res;
729 uint64_t rl, rh;
0824d6fc 730
1dce7c3c
FB
731 u.ll = a;
732 rl = (uint64_t)u.l.low * (uint64_t)b;
733 rh = (uint64_t)u.l.high * (uint64_t)b;
734 rh += (rl >> 32);
735 res.l.high = rh / c;
736 res.l.low = (((rh % c) << 32) + (rl & 0xffffffff)) / c;
737 return res.ll;
34865134
FB
738}
739
1dce7c3c
FB
740/***********************************************************/
741/* real time host monotonic timer */
34865134 742
1dce7c3c 743#define QEMU_TIMER_BASE 1000000000LL
34865134 744
1dce7c3c 745#ifdef WIN32
0824d6fc 746
1dce7c3c 747static int64_t clock_freq;
1115dde7 748
1dce7c3c 749static void init_get_clock(void)
1115dde7 750{
a8e5ac33
FB
751 LARGE_INTEGER freq;
752 int ret;
1dce7c3c
FB
753 ret = QueryPerformanceFrequency(&freq);
754 if (ret == 0) {
755 fprintf(stderr, "Could not calibrate ticks\n");
756 exit(1);
757 }
758 clock_freq = freq.QuadPart;
1115dde7
FB
759}
760
1dce7c3c 761static int64_t get_clock(void)
b8076a74 762{
1dce7c3c
FB
763 LARGE_INTEGER ti;
764 QueryPerformanceCounter(&ti);
765 return muldiv64(ti.QuadPart, QEMU_TIMER_BASE, clock_freq);
b8076a74
FB
766}
767
1dce7c3c 768#else
90cb9493 769
1dce7c3c
FB
770static int use_rt_clock;
771
772static void init_get_clock(void)
90cb9493 773{
1dce7c3c 774 use_rt_clock = 0;
c5e97233
BS
775#if defined(__linux__) || (defined(__FreeBSD__) && __FreeBSD_version >= 500000) \
776 || defined(__DragonFly__)
1dce7c3c
FB
777 {
778 struct timespec ts;
779 if (clock_gettime(CLOCK_MONOTONIC, &ts) == 0) {
780 use_rt_clock = 1;
781 }
782 }
783#endif
90cb9493
FB
784}
785
1dce7c3c 786static int64_t get_clock(void)
fdbb4691 787{
c5e97233
BS
788#if defined(__linux__) || (defined(__FreeBSD__) && __FreeBSD_version >= 500000) \
789 || defined(__DragonFly__)
1dce7c3c
FB
790 if (use_rt_clock) {
791 struct timespec ts;
792 clock_gettime(CLOCK_MONOTONIC, &ts);
793 return ts.tv_sec * 1000000000LL + ts.tv_nsec;
5fafdf24 794 } else
fdbb4691 795#endif
1dce7c3c
FB
796 {
797 /* XXX: using gettimeofday leads to problems if the date
798 changes, so it should be avoided. */
799 struct timeval tv;
800 gettimeofday(&tv, NULL);
801 return tv.tv_sec * 1000000000LL + (tv.tv_usec * 1000);
802 }
fdbb4691 803}
34865134
FB
804#endif
805
2e70f6ef
PB
806/* Return the virtual CPU time, based on the instruction counter. */
807static int64_t cpu_get_icount(void)
808{
809 int64_t icount;
810 CPUState *env = cpu_single_env;;
811 icount = qemu_icount;
812 if (env) {
813 if (!can_do_io(env))
814 fprintf(stderr, "Bad clock read\n");
815 icount -= (env->icount_decr.u16.low + env->icount_extra);
816 }
817 return qemu_icount_bias + (icount << icount_time_shift);
818}
819
1dce7c3c
FB
820/***********************************************************/
821/* guest cycle counter */
822
eade0f19 823static int64_t cpu_ticks_prev;
34865134 824static int64_t cpu_ticks_offset;
1dce7c3c 825static int64_t cpu_clock_offset;
8a7ddc38 826static int cpu_ticks_enabled;
34865134 827
1dce7c3c
FB
828/* return the host CPU cycle counter and handle stop/restart */
829int64_t cpu_get_ticks(void)
34865134 830{
2e70f6ef
PB
831 if (use_icount) {
832 return cpu_get_icount();
833 }
8a7ddc38
FB
834 if (!cpu_ticks_enabled) {
835 return cpu_ticks_offset;
836 } else {
eade0f19
FB
837 int64_t ticks;
838 ticks = cpu_get_real_ticks();
839 if (cpu_ticks_prev > ticks) {
840 /* Note: non increasing ticks may happen if the host uses
841 software suspend */
842 cpu_ticks_offset += cpu_ticks_prev - ticks;
843 }
844 cpu_ticks_prev = ticks;
845 return ticks + cpu_ticks_offset;
8a7ddc38 846 }
34865134
FB
847}
848
1dce7c3c
FB
849/* return the host CPU monotonic timer and handle stop/restart */
850static int64_t cpu_get_clock(void)
851{
852 int64_t ti;
853 if (!cpu_ticks_enabled) {
854 return cpu_clock_offset;
855 } else {
856 ti = get_clock();
857 return ti + cpu_clock_offset;
858 }
859}
860
34865134
FB
861/* enable cpu_get_ticks() */
862void cpu_enable_ticks(void)
863{
8a7ddc38
FB
864 if (!cpu_ticks_enabled) {
865 cpu_ticks_offset -= cpu_get_real_ticks();
1dce7c3c 866 cpu_clock_offset -= get_clock();
8a7ddc38
FB
867 cpu_ticks_enabled = 1;
868 }
34865134
FB
869}
870
871/* disable cpu_get_ticks() : the clock is stopped. You must not call
872 cpu_get_ticks() after that. */
873void cpu_disable_ticks(void)
874{
8a7ddc38
FB
875 if (cpu_ticks_enabled) {
876 cpu_ticks_offset = cpu_get_ticks();
1dce7c3c 877 cpu_clock_offset = cpu_get_clock();
8a7ddc38
FB
878 cpu_ticks_enabled = 0;
879 }
34865134
FB
880}
881
1dce7c3c
FB
882/***********************************************************/
883/* timers */
5fafdf24 884
8a7ddc38
FB
885#define QEMU_TIMER_REALTIME 0
886#define QEMU_TIMER_VIRTUAL 1
887
888struct QEMUClock {
889 int type;
890 /* XXX: add frequency */
891};
892
893struct QEMUTimer {
894 QEMUClock *clock;
895 int64_t expire_time;
896 QEMUTimerCB *cb;
897 void *opaque;
898 struct QEMUTimer *next;
899};
900
c8994013
TS
901struct qemu_alarm_timer {
902 char const *name;
efe75411 903 unsigned int flags;
c8994013
TS
904
905 int (*start)(struct qemu_alarm_timer *t);
906 void (*stop)(struct qemu_alarm_timer *t);
efe75411 907 void (*rearm)(struct qemu_alarm_timer *t);
c8994013
TS
908 void *priv;
909};
910
efe75411 911#define ALARM_FLAG_DYNTICKS 0x1
d5d08334 912#define ALARM_FLAG_EXPIRED 0x2
efe75411
TS
913
914static inline int alarm_has_dynticks(struct qemu_alarm_timer *t)
915{
916 return t->flags & ALARM_FLAG_DYNTICKS;
917}
918
919static void qemu_rearm_alarm_timer(struct qemu_alarm_timer *t)
920{
921 if (!alarm_has_dynticks(t))
922 return;
923
924 t->rearm(t);
925}
926
927/* TODO: MIN_TIMER_REARM_US should be optimized */
928#define MIN_TIMER_REARM_US 250
929
c8994013 930static struct qemu_alarm_timer *alarm_timer;
8a7ddc38 931
40c3bac3 932#ifdef _WIN32
c8994013
TS
933
934struct qemu_alarm_win32 {
935 MMRESULT timerId;
c8994013
TS
936 unsigned int period;
937} alarm_win32_data = {0, NULL, -1};
938
939static int win32_start_timer(struct qemu_alarm_timer *t);
940static void win32_stop_timer(struct qemu_alarm_timer *t);
efe75411 941static void win32_rearm_timer(struct qemu_alarm_timer *t);
c8994013 942
40c3bac3 943#else
c8994013
TS
944
945static int unix_start_timer(struct qemu_alarm_timer *t);
946static void unix_stop_timer(struct qemu_alarm_timer *t);
947
231c6586
TS
948#ifdef __linux__
949
efe75411
TS
950static int dynticks_start_timer(struct qemu_alarm_timer *t);
951static void dynticks_stop_timer(struct qemu_alarm_timer *t);
952static void dynticks_rearm_timer(struct qemu_alarm_timer *t);
953
c40ec5a9
TS
954static int hpet_start_timer(struct qemu_alarm_timer *t);
955static void hpet_stop_timer(struct qemu_alarm_timer *t);
956
c8994013
TS
957static int rtc_start_timer(struct qemu_alarm_timer *t);
958static void rtc_stop_timer(struct qemu_alarm_timer *t);
959
efe75411 960#endif /* __linux__ */
8a7ddc38 961
c8994013
TS
962#endif /* _WIN32 */
963
2e70f6ef 964/* Correlation between real and virtual time is always going to be
bf20dc07 965 fairly approximate, so ignore small variation.
2e70f6ef
PB
966 When the guest is idle real and virtual time will be aligned in
967 the IO wait loop. */
968#define ICOUNT_WOBBLE (QEMU_TIMER_BASE / 10)
969
970static void icount_adjust(void)
971{
972 int64_t cur_time;
973 int64_t cur_icount;
974 int64_t delta;
975 static int64_t last_delta;
976 /* If the VM is not running, then do nothing. */
977 if (!vm_running)
978 return;
979
980 cur_time = cpu_get_clock();
981 cur_icount = qemu_get_clock(vm_clock);
982 delta = cur_icount - cur_time;
983 /* FIXME: This is a very crude algorithm, somewhat prone to oscillation. */
984 if (delta > 0
985 && last_delta + ICOUNT_WOBBLE < delta * 2
986 && icount_time_shift > 0) {
987 /* The guest is getting too far ahead. Slow time down. */
988 icount_time_shift--;
989 }
990 if (delta < 0
991 && last_delta - ICOUNT_WOBBLE > delta * 2
992 && icount_time_shift < MAX_ICOUNT_SHIFT) {
993 /* The guest is getting too far behind. Speed time up. */
994 icount_time_shift++;
995 }
996 last_delta = delta;
997 qemu_icount_bias = cur_icount - (qemu_icount << icount_time_shift);
998}
999
1000static void icount_adjust_rt(void * opaque)
1001{
1002 qemu_mod_timer(icount_rt_timer,
1003 qemu_get_clock(rt_clock) + 1000);
1004 icount_adjust();
1005}
1006
1007static void icount_adjust_vm(void * opaque)
1008{
1009 qemu_mod_timer(icount_vm_timer,
1010 qemu_get_clock(vm_clock) + QEMU_TIMER_BASE / 10);
1011 icount_adjust();
1012}
1013
1014static void init_icount_adjust(void)
1015{
1016 /* Have both realtime and virtual time triggers for speed adjustment.
1017 The realtime trigger catches emulated time passing too slowly,
1018 the virtual time trigger catches emulated time passing too fast.
1019 Realtime triggers occur even when idle, so use them less frequently
1020 than VM triggers. */
1021 icount_rt_timer = qemu_new_timer(rt_clock, icount_adjust_rt, NULL);
1022 qemu_mod_timer(icount_rt_timer,
1023 qemu_get_clock(rt_clock) + 1000);
1024 icount_vm_timer = qemu_new_timer(vm_clock, icount_adjust_vm, NULL);
1025 qemu_mod_timer(icount_vm_timer,
1026 qemu_get_clock(vm_clock) + QEMU_TIMER_BASE / 10);
1027}
1028
c8994013 1029static struct qemu_alarm_timer alarm_timers[] = {
efe75411 1030#ifndef _WIN32
231c6586 1031#ifdef __linux__
efe75411
TS
1032 {"dynticks", ALARM_FLAG_DYNTICKS, dynticks_start_timer,
1033 dynticks_stop_timer, dynticks_rearm_timer, NULL},
c40ec5a9 1034 /* HPET - if available - is preferred */
efe75411 1035 {"hpet", 0, hpet_start_timer, hpet_stop_timer, NULL, NULL},
c40ec5a9 1036 /* ...otherwise try RTC */
efe75411 1037 {"rtc", 0, rtc_start_timer, rtc_stop_timer, NULL, NULL},
c8994013 1038#endif
efe75411 1039 {"unix", 0, unix_start_timer, unix_stop_timer, NULL, NULL},
c8994013 1040#else
efe75411
TS
1041 {"dynticks", ALARM_FLAG_DYNTICKS, win32_start_timer,
1042 win32_stop_timer, win32_rearm_timer, &alarm_win32_data},
1043 {"win32", 0, win32_start_timer,
1044 win32_stop_timer, NULL, &alarm_win32_data},
c8994013
TS
1045#endif
1046 {NULL, }
1047};
1048
3f47aa8c 1049static void show_available_alarms(void)
f3dcfada
TS
1050{
1051 int i;
1052
1053 printf("Available alarm timers, in order of precedence:\n");
1054 for (i = 0; alarm_timers[i].name; i++)
1055 printf("%s\n", alarm_timers[i].name);
1056}
1057
1058static void configure_alarms(char const *opt)
1059{
1060 int i;
1061 int cur = 0;
b1503cda 1062 int count = ARRAY_SIZE(alarm_timers) - 1;
f3dcfada
TS
1063 char *arg;
1064 char *name;
2e70f6ef 1065 struct qemu_alarm_timer tmp;
f3dcfada 1066
3adda04c 1067 if (!strcmp(opt, "?")) {
f3dcfada
TS
1068 show_available_alarms();
1069 exit(0);
1070 }
1071
1072 arg = strdup(opt);
1073
1074 /* Reorder the array */
1075 name = strtok(arg, ",");
1076 while (name) {
e2b577e5 1077 for (i = 0; i < count && alarm_timers[i].name; i++) {
f3dcfada
TS
1078 if (!strcmp(alarm_timers[i].name, name))
1079 break;
1080 }
1081
1082 if (i == count) {
1083 fprintf(stderr, "Unknown clock %s\n", name);
1084 goto next;
1085 }
1086
1087 if (i < cur)
1088 /* Ignore */
1089 goto next;
1090
1091 /* Swap */
1092 tmp = alarm_timers[i];
1093 alarm_timers[i] = alarm_timers[cur];
1094 alarm_timers[cur] = tmp;
1095
1096 cur++;
1097next:
1098 name = strtok(NULL, ",");
1099 }
1100
1101 free(arg);
1102
1103 if (cur) {
2e70f6ef 1104 /* Disable remaining timers */
f3dcfada
TS
1105 for (i = cur; i < count; i++)
1106 alarm_timers[i].name = NULL;
3adda04c
AJ
1107 } else {
1108 show_available_alarms();
1109 exit(1);
f3dcfada 1110 }
f3dcfada
TS
1111}
1112
c8994013
TS
1113QEMUClock *rt_clock;
1114QEMUClock *vm_clock;
1115
1116static QEMUTimer *active_timers[2];
1117
9596ebb7 1118static QEMUClock *qemu_new_clock(int type)
8a7ddc38
FB
1119{
1120 QEMUClock *clock;
1121 clock = qemu_mallocz(sizeof(QEMUClock));
8a7ddc38
FB
1122 clock->type = type;
1123 return clock;
1124}
1125
1126QEMUTimer *qemu_new_timer(QEMUClock *clock, QEMUTimerCB *cb, void *opaque)
1127{
1128 QEMUTimer *ts;
1129
1130 ts = qemu_mallocz(sizeof(QEMUTimer));
1131 ts->clock = clock;
1132 ts->cb = cb;
1133 ts->opaque = opaque;
1134 return ts;
1135}
1136
1137void qemu_free_timer(QEMUTimer *ts)
1138{
1139 qemu_free(ts);
1140}
1141
1142/* stop a timer, but do not dealloc it */
1143void qemu_del_timer(QEMUTimer *ts)
1144{
1145 QEMUTimer **pt, *t;
1146
1147 /* NOTE: this code must be signal safe because
1148 qemu_timer_expired() can be called from a signal. */
1149 pt = &active_timers[ts->clock->type];
1150 for(;;) {
1151 t = *pt;
1152 if (!t)
1153 break;
1154 if (t == ts) {
1155 *pt = t->next;
1156 break;
1157 }
1158 pt = &t->next;
1159 }
1160}
1161
1162/* modify the current timer so that it will be fired when current_time
1163 >= expire_time. The corresponding callback will be called. */
1164void qemu_mod_timer(QEMUTimer *ts, int64_t expire_time)
1165{
1166 QEMUTimer **pt, *t;
1167
1168 qemu_del_timer(ts);
1169
1170 /* add the timer in the sorted list */
1171 /* NOTE: this code must be signal safe because
1172 qemu_timer_expired() can be called from a signal. */
1173 pt = &active_timers[ts->clock->type];
1174 for(;;) {
1175 t = *pt;
1176 if (!t)
1177 break;
5fafdf24 1178 if (t->expire_time > expire_time)
8a7ddc38
FB
1179 break;
1180 pt = &t->next;
1181 }
1182 ts->expire_time = expire_time;
1183 ts->next = *pt;
1184 *pt = ts;
d5d08334
AZ
1185
1186 /* Rearm if necessary */
2e70f6ef
PB
1187 if (pt == &active_timers[ts->clock->type]) {
1188 if ((alarm_timer->flags & ALARM_FLAG_EXPIRED) == 0) {
1189 qemu_rearm_alarm_timer(alarm_timer);
1190 }
1191 /* Interrupt execution to force deadline recalculation. */
d9f75a4e
AL
1192 if (use_icount)
1193 qemu_notify_event();
2e70f6ef 1194 }
8a7ddc38
FB
1195}
1196
1197int qemu_timer_pending(QEMUTimer *ts)
1198{
1199 QEMUTimer *t;
1200 for(t = active_timers[ts->clock->type]; t != NULL; t = t->next) {
1201 if (t == ts)
1202 return 1;
1203 }
1204 return 0;
1205}
1206
1207static inline int qemu_timer_expired(QEMUTimer *timer_head, int64_t current_time)
1208{
1209 if (!timer_head)
1210 return 0;
1211 return (timer_head->expire_time <= current_time);
1212}
1213
1214static void qemu_run_timers(QEMUTimer **ptimer_head, int64_t current_time)
1215{
1216 QEMUTimer *ts;
3b46e624 1217
8a7ddc38
FB
1218 for(;;) {
1219 ts = *ptimer_head;
e95c8d51 1220 if (!ts || ts->expire_time > current_time)
8a7ddc38
FB
1221 break;
1222 /* remove timer from the list before calling the callback */
1223 *ptimer_head = ts->next;
1224 ts->next = NULL;
3b46e624 1225
8a7ddc38
FB
1226 /* run the callback (the timer list can be modified) */
1227 ts->cb(ts->opaque);
1228 }
1229}
1230
1231int64_t qemu_get_clock(QEMUClock *clock)
1232{
1233 switch(clock->type) {
1234 case QEMU_TIMER_REALTIME:
1dce7c3c 1235 return get_clock() / 1000000;
8a7ddc38
FB
1236 default:
1237 case QEMU_TIMER_VIRTUAL:
2e70f6ef
PB
1238 if (use_icount) {
1239 return cpu_get_icount();
1240 } else {
1241 return cpu_get_clock();
1242 }
8a7ddc38
FB
1243 }
1244}
1245
1dce7c3c
FB
1246static void init_timers(void)
1247{
1248 init_get_clock();
1249 ticks_per_sec = QEMU_TIMER_BASE;
1250 rt_clock = qemu_new_clock(QEMU_TIMER_REALTIME);
1251 vm_clock = qemu_new_clock(QEMU_TIMER_VIRTUAL);
1252}
1253
8a7ddc38
FB
1254/* save a timer */
1255void qemu_put_timer(QEMUFile *f, QEMUTimer *ts)
1256{
1257 uint64_t expire_time;
1258
1259 if (qemu_timer_pending(ts)) {
1260 expire_time = ts->expire_time;
1261 } else {
1262 expire_time = -1;
1263 }
1264 qemu_put_be64(f, expire_time);
1265}
1266
1267void qemu_get_timer(QEMUFile *f, QEMUTimer *ts)
1268{
1269 uint64_t expire_time;
1270
1271 expire_time = qemu_get_be64(f);
1272 if (expire_time != -1) {
1273 qemu_mod_timer(ts, expire_time);
1274 } else {
1275 qemu_del_timer(ts);
1276 }
1277}
1278
1279static void timer_save(QEMUFile *f, void *opaque)
1280{
1281 if (cpu_ticks_enabled) {
1282 hw_error("cannot save state if virtual timers are running");
1283 }
bee8d684
TS
1284 qemu_put_be64(f, cpu_ticks_offset);
1285 qemu_put_be64(f, ticks_per_sec);
1286 qemu_put_be64(f, cpu_clock_offset);
8a7ddc38
FB
1287}
1288
1289static int timer_load(QEMUFile *f, void *opaque, int version_id)
1290{
c88676f8 1291 if (version_id != 1 && version_id != 2)
8a7ddc38
FB
1292 return -EINVAL;
1293 if (cpu_ticks_enabled) {
1294 return -EINVAL;
1295 }
bee8d684
TS
1296 cpu_ticks_offset=qemu_get_be64(f);
1297 ticks_per_sec=qemu_get_be64(f);
c88676f8 1298 if (version_id == 2) {
bee8d684 1299 cpu_clock_offset=qemu_get_be64(f);
c88676f8 1300 }
8a7ddc38
FB
1301 return 0;
1302}
1303
50317c7f
AL
1304static void qemu_event_increment(void);
1305
67b915a5 1306#ifdef _WIN32
b9e82a59
BS
1307static void CALLBACK host_alarm_handler(UINT uTimerID, UINT uMsg,
1308 DWORD_PTR dwUser, DWORD_PTR dw1,
1309 DWORD_PTR dw2)
67b915a5 1310#else
8a7ddc38 1311static void host_alarm_handler(int host_signum)
67b915a5 1312#endif
8a7ddc38 1313{
02ba45c5
FB
1314#if 0
1315#define DISP_FREQ 1000
1316 {
1317 static int64_t delta_min = INT64_MAX;
1318 static int64_t delta_max, delta_cum, last_clock, delta, ti;
1319 static int count;
1320 ti = qemu_get_clock(vm_clock);
1321 if (last_clock != 0) {
1322 delta = ti - last_clock;
1323 if (delta < delta_min)
1324 delta_min = delta;
1325 if (delta > delta_max)
1326 delta_max = delta;
1327 delta_cum += delta;
1328 if (++count == DISP_FREQ) {
26a76461 1329 printf("timer: min=%" PRId64 " us max=%" PRId64 " us avg=%" PRId64 " us avg_freq=%0.3f Hz\n",
02ba45c5
FB
1330 muldiv64(delta_min, 1000000, ticks_per_sec),
1331 muldiv64(delta_max, 1000000, ticks_per_sec),
1332 muldiv64(delta_cum, 1000000 / DISP_FREQ, ticks_per_sec),
1333 (double)ticks_per_sec / ((double)delta_cum / DISP_FREQ));
1334 count = 0;
1335 delta_min = INT64_MAX;
1336 delta_max = 0;
1337 delta_cum = 0;
1338 }
1339 }
1340 last_clock = ti;
1341 }
1342#endif
efe75411 1343 if (alarm_has_dynticks(alarm_timer) ||
2e70f6ef
PB
1344 (!use_icount &&
1345 qemu_timer_expired(active_timers[QEMU_TIMER_VIRTUAL],
1346 qemu_get_clock(vm_clock))) ||
8a7ddc38
FB
1347 qemu_timer_expired(active_timers[QEMU_TIMER_REALTIME],
1348 qemu_get_clock(rt_clock))) {
c96f1a48 1349 CPUState *env = next_cpu;
c96f1a48 1350
50317c7f 1351 qemu_event_increment();
d5d08334
AZ
1352 alarm_timer->flags |= ALARM_FLAG_EXPIRED;
1353
4f8eb8da
AZ
1354 if (env) {
1355 /* stop the currently executing cpu because a timer occured */
3098dba0 1356 cpu_exit(env);
640f42e4 1357#ifdef CONFIG_KQEMU
4f8eb8da
AZ
1358 if (env->kqemu_enabled) {
1359 kqemu_cpu_interrupt(env);
1360 }
ee5605e5 1361#endif
4f8eb8da 1362 }
43b96858 1363 timer_alarm_pending = 1;
d9f75a4e 1364 qemu_notify_event();
8a7ddc38
FB
1365 }
1366}
1367
2e70f6ef 1368static int64_t qemu_next_deadline(void)
efe75411 1369{
2e70f6ef 1370 int64_t delta;
efe75411
TS
1371
1372 if (active_timers[QEMU_TIMER_VIRTUAL]) {
2e70f6ef
PB
1373 delta = active_timers[QEMU_TIMER_VIRTUAL]->expire_time -
1374 qemu_get_clock(vm_clock);
1375 } else {
1376 /* To avoid problems with overflow limit this to 2^32. */
1377 delta = INT32_MAX;
efe75411
TS
1378 }
1379
2e70f6ef
PB
1380 if (delta < 0)
1381 delta = 0;
efe75411 1382
2e70f6ef
PB
1383 return delta;
1384}
1385
8632fb9a 1386#if defined(__linux__) || defined(_WIN32)
2e70f6ef
PB
1387static uint64_t qemu_next_deadline_dyntick(void)
1388{
1389 int64_t delta;
1390 int64_t rtdelta;
1391
1392 if (use_icount)
1393 delta = INT32_MAX;
1394 else
1395 delta = (qemu_next_deadline() + 999) / 1000;
1396
1397 if (active_timers[QEMU_TIMER_REALTIME]) {
1398 rtdelta = (active_timers[QEMU_TIMER_REALTIME]->expire_time -
1399 qemu_get_clock(rt_clock))*1000;
1400 if (rtdelta < delta)
1401 delta = rtdelta;
1402 }
1403
1404 if (delta < MIN_TIMER_REARM_US)
1405 delta = MIN_TIMER_REARM_US;
1406
1407 return delta;
efe75411 1408}
8632fb9a 1409#endif
efe75411 1410
fd872598
FB
1411#ifndef _WIN32
1412
7183b4b4
AL
1413/* Sets a specific flag */
1414static int fcntl_setfl(int fd, int flag)
1415{
1416 int flags;
1417
1418 flags = fcntl(fd, F_GETFL);
1419 if (flags == -1)
1420 return -errno;
1421
1422 if (fcntl(fd, F_SETFL, flags | flag) == -1)
1423 return -errno;
1424
1425 return 0;
1426}
1427
829309c7
FB
1428#if defined(__linux__)
1429
fd872598
FB
1430#define RTC_FREQ 1024
1431
de9a95f0 1432static void enable_sigio_timer(int fd)
c8994013
TS
1433{
1434 struct sigaction act;
1435
1436 /* timer signal */
1437 sigfillset(&act.sa_mask);
1438 act.sa_flags = 0;
c8994013
TS
1439 act.sa_handler = host_alarm_handler;
1440
1441 sigaction(SIGIO, &act, NULL);
7183b4b4 1442 fcntl_setfl(fd, O_ASYNC);
c8994013
TS
1443 fcntl(fd, F_SETOWN, getpid());
1444}
829309c7 1445
c40ec5a9
TS
1446static int hpet_start_timer(struct qemu_alarm_timer *t)
1447{
1448 struct hpet_info info;
1449 int r, fd;
1450
1451 fd = open("/dev/hpet", O_RDONLY);
1452 if (fd < 0)
1453 return -1;
1454
1455 /* Set frequency */
1456 r = ioctl(fd, HPET_IRQFREQ, RTC_FREQ);
1457 if (r < 0) {
1458 fprintf(stderr, "Could not configure '/dev/hpet' to have a 1024Hz timer. This is not a fatal\n"
1459 "error, but for better emulation accuracy type:\n"
1460 "'echo 1024 > /proc/sys/dev/hpet/max-user-freq' as root.\n");
1461 goto fail;
1462 }
1463
1464 /* Check capabilities */
1465 r = ioctl(fd, HPET_INFO, &info);
1466 if (r < 0)
1467 goto fail;
1468
1469 /* Enable periodic mode */
1470 r = ioctl(fd, HPET_EPI, 0);
1471 if (info.hi_flags && (r < 0))
1472 goto fail;
1473
1474 /* Enable interrupt */
1475 r = ioctl(fd, HPET_IE_ON, 0);
1476 if (r < 0)
1477 goto fail;
1478
1479 enable_sigio_timer(fd);
fcdc2129 1480 t->priv = (void *)(long)fd;
c40ec5a9
TS
1481
1482 return 0;
1483fail:
1484 close(fd);
1485 return -1;
1486}
1487
1488static void hpet_stop_timer(struct qemu_alarm_timer *t)
1489{
fcdc2129 1490 int fd = (long)t->priv;
c40ec5a9
TS
1491
1492 close(fd);
1493}
1494
c8994013 1495static int rtc_start_timer(struct qemu_alarm_timer *t)
fd872598 1496{
c8994013 1497 int rtc_fd;
b5a23ad4 1498 unsigned long current_rtc_freq = 0;
c8994013 1499
aeb30be6 1500 TFR(rtc_fd = open("/dev/rtc", O_RDONLY));
fd872598
FB
1501 if (rtc_fd < 0)
1502 return -1;
b5a23ad4
AZ
1503 ioctl(rtc_fd, RTC_IRQP_READ, &current_rtc_freq);
1504 if (current_rtc_freq != RTC_FREQ &&
1505 ioctl(rtc_fd, RTC_IRQP_SET, RTC_FREQ) < 0) {
fd872598
FB
1506 fprintf(stderr, "Could not configure '/dev/rtc' to have a 1024 Hz timer. This is not a fatal\n"
1507 "error, but for better emulation accuracy either use a 2.6 host Linux kernel or\n"
1508 "type 'echo 1024 > /proc/sys/dev/rtc/max-user-freq' as root.\n");
1509 goto fail;
1510 }
1511 if (ioctl(rtc_fd, RTC_PIE_ON, 0) < 0) {
1512 fail:
1513 close(rtc_fd);
1514 return -1;
1515 }
c8994013
TS
1516
1517 enable_sigio_timer(rtc_fd);
1518
fcdc2129 1519 t->priv = (void *)(long)rtc_fd;
c8994013 1520
fd872598
FB
1521 return 0;
1522}
1523
c8994013 1524static void rtc_stop_timer(struct qemu_alarm_timer *t)
829309c7 1525{
fcdc2129 1526 int rtc_fd = (long)t->priv;
c8994013
TS
1527
1528 close(rtc_fd);
829309c7
FB
1529}
1530
efe75411
TS
1531static int dynticks_start_timer(struct qemu_alarm_timer *t)
1532{
1533 struct sigevent ev;
1534 timer_t host_timer;
1535 struct sigaction act;
1536
1537 sigfillset(&act.sa_mask);
1538 act.sa_flags = 0;
efe75411
TS
1539 act.sa_handler = host_alarm_handler;
1540
1541 sigaction(SIGALRM, &act, NULL);
1542
1543 ev.sigev_value.sival_int = 0;
1544 ev.sigev_notify = SIGEV_SIGNAL;
1545 ev.sigev_signo = SIGALRM;
1546
1547 if (timer_create(CLOCK_REALTIME, &ev, &host_timer)) {
1548 perror("timer_create");
1549
1550 /* disable dynticks */
1551 fprintf(stderr, "Dynamic Ticks disabled\n");
1552
1553 return -1;
1554 }
1555
0399bfe0 1556 t->priv = (void *)(long)host_timer;
efe75411
TS
1557
1558 return 0;
1559}
1560
1561static void dynticks_stop_timer(struct qemu_alarm_timer *t)
1562{
0399bfe0 1563 timer_t host_timer = (timer_t)(long)t->priv;
efe75411
TS
1564
1565 timer_delete(host_timer);
1566}
1567
1568static void dynticks_rearm_timer(struct qemu_alarm_timer *t)
1569{
0399bfe0 1570 timer_t host_timer = (timer_t)(long)t->priv;
efe75411
TS
1571 struct itimerspec timeout;
1572 int64_t nearest_delta_us = INT64_MAX;
1573 int64_t current_us;
1574
1575 if (!active_timers[QEMU_TIMER_REALTIME] &&
1576 !active_timers[QEMU_TIMER_VIRTUAL])
d5d08334 1577 return;
efe75411 1578
2e70f6ef 1579 nearest_delta_us = qemu_next_deadline_dyntick();
efe75411
TS
1580
1581 /* check whether a timer is already running */
1582 if (timer_gettime(host_timer, &timeout)) {
1583 perror("gettime");
1584 fprintf(stderr, "Internal timer error: aborting\n");
1585 exit(1);
1586 }
1587 current_us = timeout.it_value.tv_sec * 1000000 + timeout.it_value.tv_nsec/1000;
1588 if (current_us && current_us <= nearest_delta_us)
1589 return;
1590
1591 timeout.it_interval.tv_sec = 0;
1592 timeout.it_interval.tv_nsec = 0; /* 0 for one-shot timer */
1593 timeout.it_value.tv_sec = nearest_delta_us / 1000000;
1594 timeout.it_value.tv_nsec = (nearest_delta_us % 1000000) * 1000;
1595 if (timer_settime(host_timer, 0 /* RELATIVE */, &timeout, NULL)) {
1596 perror("settime");
1597 fprintf(stderr, "Internal timer error: aborting\n");
1598 exit(1);
1599 }
1600}
1601
70744b3a 1602#endif /* defined(__linux__) */
231c6586 1603
c8994013
TS
1604static int unix_start_timer(struct qemu_alarm_timer *t)
1605{
1606 struct sigaction act;
1607 struct itimerval itv;
1608 int err;
1609
1610 /* timer signal */
1611 sigfillset(&act.sa_mask);
1612 act.sa_flags = 0;
c8994013
TS
1613 act.sa_handler = host_alarm_handler;
1614
1615 sigaction(SIGALRM, &act, NULL);
1616
1617 itv.it_interval.tv_sec = 0;
1618 /* for i386 kernel 2.6 to get 1 ms */
1619 itv.it_interval.tv_usec = 999;
1620 itv.it_value.tv_sec = 0;
1621 itv.it_value.tv_usec = 10 * 1000;
1622
1623 err = setitimer(ITIMER_REAL, &itv, NULL);
1624 if (err)
1625 return -1;
1626
1627 return 0;
1628}
1629
1630static void unix_stop_timer(struct qemu_alarm_timer *t)
1631{
1632 struct itimerval itv;
1633
1634 memset(&itv, 0, sizeof(itv));
1635 setitimer(ITIMER_REAL, &itv, NULL);
1636}
1637
829309c7 1638#endif /* !defined(_WIN32) */
fd872598 1639
f49e58dc 1640
c8994013
TS
1641#ifdef _WIN32
1642
1643static int win32_start_timer(struct qemu_alarm_timer *t)
1644{
1645 TIMECAPS tc;
1646 struct qemu_alarm_win32 *data = t->priv;
efe75411 1647 UINT flags;
c8994013 1648
c8994013
TS
1649 memset(&tc, 0, sizeof(tc));
1650 timeGetDevCaps(&tc, sizeof(tc));
1651
1652 if (data->period < tc.wPeriodMin)
1653 data->period = tc.wPeriodMin;
1654
1655 timeBeginPeriod(data->period);
1656
efe75411
TS
1657 flags = TIME_CALLBACK_FUNCTION;
1658 if (alarm_has_dynticks(t))
1659 flags |= TIME_ONESHOT;
1660 else
1661 flags |= TIME_PERIODIC;
1662
c8994013
TS
1663 data->timerId = timeSetEvent(1, // interval (ms)
1664 data->period, // resolution
1665 host_alarm_handler, // function
1666 (DWORD)t, // parameter
efe75411 1667 flags);
c8994013
TS
1668
1669 if (!data->timerId) {
1670 perror("Failed to initialize win32 alarm timer");
c8994013 1671 timeEndPeriod(data->period);
c8994013
TS
1672 return -1;
1673 }
1674
c8994013
TS
1675 return 0;
1676}
1677
1678static void win32_stop_timer(struct qemu_alarm_timer *t)
1679{
1680 struct qemu_alarm_win32 *data = t->priv;
1681
1682 timeKillEvent(data->timerId);
1683 timeEndPeriod(data->period);
c8994013
TS
1684}
1685
efe75411
TS
1686static void win32_rearm_timer(struct qemu_alarm_timer *t)
1687{
1688 struct qemu_alarm_win32 *data = t->priv;
1689 uint64_t nearest_delta_us;
1690
1691 if (!active_timers[QEMU_TIMER_REALTIME] &&
1692 !active_timers[QEMU_TIMER_VIRTUAL])
d5d08334 1693 return;
efe75411 1694
2e70f6ef 1695 nearest_delta_us = qemu_next_deadline_dyntick();
efe75411
TS
1696 nearest_delta_us /= 1000;
1697
1698 timeKillEvent(data->timerId);
1699
1700 data->timerId = timeSetEvent(1,
1701 data->period,
1702 host_alarm_handler,
1703 (DWORD)t,
1704 TIME_ONESHOT | TIME_PERIODIC);
1705
1706 if (!data->timerId) {
1707 perror("Failed to re-arm win32 alarm timer");
1708
1709 timeEndPeriod(data->period);
efe75411
TS
1710 exit(1);
1711 }
1712}
1713
c8994013
TS
1714#endif /* _WIN32 */
1715
7183b4b4 1716static int init_timer_alarm(void)
8a7ddc38 1717{
223f0d72 1718 struct qemu_alarm_timer *t = NULL;
c8994013 1719 int i, err = -1;
f49e58dc 1720
c8994013
TS
1721 for (i = 0; alarm_timers[i].name; i++) {
1722 t = &alarm_timers[i];
1723
c8994013
TS
1724 err = t->start(t);
1725 if (!err)
1726 break;
67b915a5 1727 }
fd872598 1728
c8994013 1729 if (err) {
7183b4b4
AL
1730 err = -ENOENT;
1731 goto fail;
67b915a5 1732 }
c8994013
TS
1733
1734 alarm_timer = t;
7183b4b4 1735
6abfbd79 1736 return 0;
7183b4b4
AL
1737
1738fail:
7183b4b4 1739 return err;
8a7ddc38
FB
1740}
1741
9596ebb7 1742static void quit_timers(void)
40c3bac3 1743{
c8994013
TS
1744 alarm_timer->stop(alarm_timer);
1745 alarm_timer = NULL;
40c3bac3
FB
1746}
1747
f6503059
AZ
1748/***********************************************************/
1749/* host time/date access */
1750void qemu_get_timedate(struct tm *tm, int offset)
1751{
1752 time_t ti;
1753 struct tm *ret;
1754
1755 time(&ti);
1756 ti += offset;
1757 if (rtc_date_offset == -1) {
1758 if (rtc_utc)
1759 ret = gmtime(&ti);
1760 else
1761 ret = localtime(&ti);
1762 } else {
1763 ti -= rtc_date_offset;
1764 ret = gmtime(&ti);
1765 }
1766
1767 memcpy(tm, ret, sizeof(struct tm));
1768}
1769
1770int qemu_timedate_diff(struct tm *tm)
1771{
1772 time_t seconds;
1773
1774 if (rtc_date_offset == -1)
1775 if (rtc_utc)
1776 seconds = mktimegm(tm);
1777 else
1778 seconds = mktime(tm);
1779 else
1780 seconds = mktimegm(tm) + rtc_date_offset;
1781
1782 return seconds - time(NULL);
1783}
1784
fd1dff4b 1785#ifdef _WIN32
fd1dff4b
FB
1786static void socket_cleanup(void)
1787{
1788 WSACleanup();
1789}
82c643ff 1790
fd1dff4b
FB
1791static int socket_init(void)
1792{
1793 WSADATA Data;
1794 int ret, err;
1795
1796 ret = WSAStartup(MAKEWORD(2,2), &Data);
1797 if (ret != 0) {
1798 err = WSAGetLastError();
1799 fprintf(stderr, "WSAStartup: %d\n", err);
1800 return -1;
1801 }
1802 atexit(socket_cleanup);
1803 return 0;
1804}
64b7b733
AJ
1805#endif
1806
268a362c 1807const char *get_opt_name(char *buf, int buf_size, const char *p, char delim)
609497ab
AZ
1808{
1809 char *q;
1810
1811 q = buf;
268a362c 1812 while (*p != '\0' && *p != delim) {
609497ab
AZ
1813 if (q && (q - buf) < buf_size - 1)
1814 *q++ = *p;
1815 p++;
1816 }
1817 if (q)
1818 *q = '\0';
1819
1820 return p;
1821}
1822
63a01ef8 1823const char *get_opt_value(char *buf, int buf_size, const char *p)
e4bcb14c
TS
1824{
1825 char *q;
e4bcb14c 1826
e4bcb14c
TS
1827 q = buf;
1828 while (*p != '\0') {
609497ab
AZ
1829 if (*p == ',') {
1830 if (*(p + 1) != ',')
e4bcb14c 1831 break;
e4bcb14c 1832 p++;
609497ab 1833 }
e4bcb14c
TS
1834 if (q && (q - buf) < buf_size - 1)
1835 *q++ = *p;
1836 p++;
1837 }
1838 if (q)
1839 *q = '\0';
1840
1841 return p;
1842}
1843
63a01ef8
AL
1844int get_param_value(char *buf, int buf_size,
1845 const char *tag, const char *str)
7c9d8e07
FB
1846{
1847 const char *p;
7c9d8e07
FB
1848 char option[128];
1849
1850 p = str;
1851 for(;;) {
268a362c 1852 p = get_opt_name(option, sizeof(option), p, '=');
7c9d8e07
FB
1853 if (*p != '=')
1854 break;
1855 p++;
1856 if (!strcmp(tag, option)) {
609497ab 1857 (void)get_opt_value(buf, buf_size, p);
e4bcb14c 1858 return strlen(buf);
7c9d8e07 1859 } else {
609497ab 1860 p = get_opt_value(NULL, 0, p);
7c9d8e07
FB
1861 }
1862 if (*p != ',')
1863 break;
1864 p++;
1865 }
1866 return 0;
1867}
1868
63a01ef8
AL
1869int check_params(char *buf, int buf_size,
1870 const char * const *params, const char *str)
e4bcb14c
TS
1871{
1872 const char *p;
1873 int i;
1874
1875 p = str;
10300216 1876 while (*p != '\0') {
268a362c 1877 p = get_opt_name(buf, buf_size, p, '=');
e4bcb14c
TS
1878 if (*p != '=')
1879 return -1;
1880 p++;
1881 for(i = 0; params[i] != NULL; i++)
1882 if (!strcmp(params[i], buf))
1883 break;
1884 if (params[i] == NULL)
1885 return -1;
609497ab 1886 p = get_opt_value(NULL, 0, p);
e4bcb14c
TS
1887 if (*p != ',')
1888 break;
1889 p++;
1890 }
1891 return 0;
1892}
1893
1ae26a18
AZ
1894/***********************************************************/
1895/* Bluetooth support */
1896static int nb_hcis;
1897static int cur_hci;
1898static struct HCIInfo *hci_table[MAX_NICS];
dc72ac14 1899
1ae26a18
AZ
1900static struct bt_vlan_s {
1901 struct bt_scatternet_s net;
1902 int id;
1903 struct bt_vlan_s *next;
1904} *first_bt_vlan;
1905
1906/* find or alloc a new bluetooth "VLAN" */
674bb261 1907static struct bt_scatternet_s *qemu_find_bt_vlan(int id)
1ae26a18
AZ
1908{
1909 struct bt_vlan_s **pvlan, *vlan;
1910 for (vlan = first_bt_vlan; vlan != NULL; vlan = vlan->next) {
1911 if (vlan->id == id)
1912 return &vlan->net;
1913 }
1914 vlan = qemu_mallocz(sizeof(struct bt_vlan_s));
1915 vlan->id = id;
1916 pvlan = &first_bt_vlan;
1917 while (*pvlan != NULL)
1918 pvlan = &(*pvlan)->next;
1919 *pvlan = vlan;
1920 return &vlan->net;
1921}
1922
1923static void null_hci_send(struct HCIInfo *hci, const uint8_t *data, int len)
1924{
1925}
1926
1927static int null_hci_addr_set(struct HCIInfo *hci, const uint8_t *bd_addr)
1928{
1929 return -ENOTSUP;
1930}
1931
1932static struct HCIInfo null_hci = {
1933 .cmd_send = null_hci_send,
1934 .sco_send = null_hci_send,
1935 .acl_send = null_hci_send,
1936 .bdaddr_set = null_hci_addr_set,
1937};
1938
1939struct HCIInfo *qemu_next_hci(void)
1940{
1941 if (cur_hci == nb_hcis)
1942 return &null_hci;
1943
1944 return hci_table[cur_hci++];
1945}
1946
dc72ac14
AZ
1947static struct HCIInfo *hci_init(const char *str)
1948{
1949 char *endp;
1950 struct bt_scatternet_s *vlan = 0;
1951
1952 if (!strcmp(str, "null"))
1953 /* null */
1954 return &null_hci;
1955 else if (!strncmp(str, "host", 4) && (str[4] == '\0' || str[4] == ':'))
1956 /* host[:hciN] */
1957 return bt_host_hci(str[4] ? str + 5 : "hci0");
1958 else if (!strncmp(str, "hci", 3)) {
1959 /* hci[,vlan=n] */
1960 if (str[3]) {
1961 if (!strncmp(str + 3, ",vlan=", 6)) {
1962 vlan = qemu_find_bt_vlan(strtol(str + 9, &endp, 0));
1963 if (*endp)
1964 vlan = 0;
1965 }
1966 } else
1967 vlan = qemu_find_bt_vlan(0);
1968 if (vlan)
1969 return bt_new_hci(vlan);
1970 }
1971
1972 fprintf(stderr, "qemu: Unknown bluetooth HCI `%s'.\n", str);
1973
1974 return 0;
1975}
1976
1977static int bt_hci_parse(const char *str)
1978{
1979 struct HCIInfo *hci;
1980 bdaddr_t bdaddr;
1981
1982 if (nb_hcis >= MAX_NICS) {
1983 fprintf(stderr, "qemu: Too many bluetooth HCIs (max %i).\n", MAX_NICS);
1984 return -1;
1985 }
1986
1987 hci = hci_init(str);
1988 if (!hci)
1989 return -1;
1990
1991 bdaddr.b[0] = 0x52;
1992 bdaddr.b[1] = 0x54;
1993 bdaddr.b[2] = 0x00;
1994 bdaddr.b[3] = 0x12;
1995 bdaddr.b[4] = 0x34;
1996 bdaddr.b[5] = 0x56 + nb_hcis;
1997 hci->bdaddr_set(hci, bdaddr.b);
1998
1999 hci_table[nb_hcis++] = hci;
2000
2001 return 0;
2002}
2003
2004static void bt_vhci_add(int vlan_id)
2005{
2006 struct bt_scatternet_s *vlan = qemu_find_bt_vlan(vlan_id);
2007
2008 if (!vlan->slave)
2009 fprintf(stderr, "qemu: warning: adding a VHCI to "
2010 "an empty scatternet %i\n", vlan_id);
2011
2012 bt_vhci_init(bt_new_hci(vlan));
2013}
2014
2015static struct bt_device_s *bt_device_add(const char *opt)
2016{
2017 struct bt_scatternet_s *vlan;
2018 int vlan_id = 0;
2019 char *endp = strstr(opt, ",vlan=");
2020 int len = (endp ? endp - opt : strlen(opt)) + 1;
2021 char devname[10];
2022
2023 pstrcpy(devname, MIN(sizeof(devname), len), opt);
2024
2025 if (endp) {
2026 vlan_id = strtol(endp + 6, &endp, 0);
2027 if (*endp) {
2028 fprintf(stderr, "qemu: unrecognised bluetooth vlan Id\n");
2029 return 0;
2030 }
2031 }
2032
2033 vlan = qemu_find_bt_vlan(vlan_id);
2034
2035 if (!vlan->slave)
2036 fprintf(stderr, "qemu: warning: adding a slave device to "
2037 "an empty scatternet %i\n", vlan_id);
2038
2039 if (!strcmp(devname, "keyboard"))
2040 return bt_keyboard_init(vlan);
2041
2042 fprintf(stderr, "qemu: unsupported bluetooth device `%s'\n", devname);
2043 return 0;
2044}
2045
2046static int bt_parse(const char *opt)
2047{
2048 const char *endp, *p;
2049 int vlan;
2050
2051 if (strstart(opt, "hci", &endp)) {
2052 if (!*endp || *endp == ',') {
2053 if (*endp)
2054 if (!strstart(endp, ",vlan=", 0))
2055 opt = endp + 1;
2056
2057 return bt_hci_parse(opt);
2058 }
2059 } else if (strstart(opt, "vhci", &endp)) {
2060 if (!*endp || *endp == ',') {
2061 if (*endp) {
2062 if (strstart(endp, ",vlan=", &p)) {
2063 vlan = strtol(p, (char **) &endp, 0);
2064 if (*endp) {
2065 fprintf(stderr, "qemu: bad scatternet '%s'\n", p);
2066 return 1;
2067 }
2068 } else {
2069 fprintf(stderr, "qemu: bad parameter '%s'\n", endp + 1);
2070 return 1;
2071 }
2072 } else
2073 vlan = 0;
2074
2075 bt_vhci_add(vlan);
2076 return 0;
2077 }
2078 } else if (strstart(opt, "device:", &endp))
2079 return !bt_device_add(endp);
2080
2081 fprintf(stderr, "qemu: bad bluetooth parameter '%s'\n", opt);
2082 return 1;
2083}
2084
1ae26a18
AZ
2085/***********************************************************/
2086/* QEMU Block devices */
2087
609497ab 2088#define HD_ALIAS "index=%d,media=disk"
e4bcb14c 2089#define CDROM_ALIAS "index=2,media=cdrom"
e4bcb14c 2090#define FD_ALIAS "index=%d,if=floppy"
609497ab
AZ
2091#define PFLASH_ALIAS "if=pflash"
2092#define MTD_ALIAS "if=mtd"
9d413d1d 2093#define SD_ALIAS "index=0,if=sd"
e4bcb14c 2094
7d5aca9e
AL
2095static int drive_opt_get_free_idx(void)
2096{
2097 int index;
2098
2099 for (index = 0; index < MAX_DRIVES; index++)
2100 if (!drives_opt[index].used) {
2101 drives_opt[index].used = 1;
2102 return index;
2103 }
2104
2105 return -1;
2106}
2107
2108static int drive_get_free_idx(void)
2109{
2110 int index;
2111
2112 for (index = 0; index < MAX_DRIVES; index++)
2113 if (!drives_table[index].used) {
2114 drives_table[index].used = 1;
2115 return index;
2116 }
2117
2118 return -1;
2119}
2120
4d73cd3b 2121int drive_add(const char *file, const char *fmt, ...)
e4bcb14c
TS
2122{
2123 va_list ap;
7d5aca9e 2124 int index = drive_opt_get_free_idx();
e4bcb14c 2125
7d5aca9e 2126 if (nb_drives_opt >= MAX_DRIVES || index == -1) {
e4bcb14c 2127 fprintf(stderr, "qemu: too many drives\n");
4d73cd3b 2128 return -1;
e4bcb14c
TS
2129 }
2130
7d5aca9e 2131 drives_opt[index].file = file;
e4bcb14c 2132 va_start(ap, fmt);
7d5aca9e 2133 vsnprintf(drives_opt[index].opt,
609497ab 2134 sizeof(drives_opt[0].opt), fmt, ap);
e4bcb14c
TS
2135 va_end(ap);
2136
7d5aca9e
AL
2137 nb_drives_opt++;
2138 return index;
e4bcb14c
TS
2139}
2140
b01b1111
AL
2141void drive_remove(int index)
2142{
2143 drives_opt[index].used = 0;
2144 nb_drives_opt--;
2145}
2146
f60d39bc 2147int drive_get_index(BlockInterfaceType type, int bus, int unit)
e4bcb14c
TS
2148{
2149 int index;
2150
2151 /* seek interface, bus and unit */
2152
7d5aca9e 2153 for (index = 0; index < MAX_DRIVES; index++)
f60d39bc 2154 if (drives_table[index].type == type &&
e4bcb14c 2155 drives_table[index].bus == bus &&
7d5aca9e
AL
2156 drives_table[index].unit == unit &&
2157 drives_table[index].used)
e4bcb14c
TS
2158 return index;
2159
2160 return -1;
2161}
2162
f60d39bc 2163int drive_get_max_bus(BlockInterfaceType type)
e4bcb14c
TS
2164{
2165 int max_bus;
2166 int index;
2167
2168 max_bus = -1;
2169 for (index = 0; index < nb_drives; index++) {
f60d39bc 2170 if(drives_table[index].type == type &&
e4bcb14c
TS
2171 drives_table[index].bus > max_bus)
2172 max_bus = drives_table[index].bus;
2173 }
2174 return max_bus;
2175}
2176
fa879c64
AL
2177const char *drive_get_serial(BlockDriverState *bdrv)
2178{
2179 int index;
2180
2181 for (index = 0; index < nb_drives; index++)
2182 if (drives_table[index].bdrv == bdrv)
2183 return drives_table[index].serial;
2184
2185 return "\0";
2186}
2187
428c5705
AL
2188BlockInterfaceErrorAction drive_get_onerror(BlockDriverState *bdrv)
2189{
2190 int index;
2191
2192 for (index = 0; index < nb_drives; index++)
2193 if (drives_table[index].bdrv == bdrv)
2194 return drives_table[index].onerror;
2195
cdad4bd8 2196 return BLOCK_ERR_STOP_ENOSPC;
428c5705
AL
2197}
2198
a1620fac
AJ
2199static void bdrv_format_print(void *opaque, const char *name)
2200{
2201 fprintf(stderr, " %s", name);
2202}
2203
b01b1111
AL
2204void drive_uninit(BlockDriverState *bdrv)
2205{
2206 int i;
2207
2208 for (i = 0; i < MAX_DRIVES; i++)
2209 if (drives_table[i].bdrv == bdrv) {
2210 drives_table[i].bdrv = NULL;
2211 drives_table[i].used = 0;
2212 drive_remove(drives_table[i].drive_opt_idx);
2213 nb_drives--;
2214 break;
2215 }
2216}
2217
4d73cd3b 2218int drive_init(struct drive_opt *arg, int snapshot, void *opaque)
e4bcb14c
TS
2219{
2220 char buf[128];
2221 char file[1024];
c8522bdf 2222 char devname[128];
fa879c64 2223 char serial[21];
c8522bdf 2224 const char *mediastr = "";
f60d39bc 2225 BlockInterfaceType type;
e4bcb14c
TS
2226 enum { MEDIA_DISK, MEDIA_CDROM } media;
2227 int bus_id, unit_id;
2228 int cyls, heads, secs, translation;
2229 BlockDriverState *bdrv;
1e72d3b7 2230 BlockDriver *drv = NULL;
4d73cd3b 2231 QEMUMachine *machine = opaque;
e4bcb14c
TS
2232 int max_devs;
2233 int index;
33f00271 2234 int cache;
428c5705 2235 int bdrv_flags, onerror;
7d5aca9e 2236 int drives_table_idx;
609497ab 2237 char *str = arg->opt;
7ccfb2eb
BS
2238 static const char * const params[] = { "bus", "unit", "if", "index",
2239 "cyls", "heads", "secs", "trans",
2240 "media", "snapshot", "file",
428c5705
AL
2241 "cache", "format", "serial", "werror",
2242 NULL };
e4bcb14c
TS
2243
2244 if (check_params(buf, sizeof(buf), params, str) < 0) {
ff993638 2245 fprintf(stderr, "qemu: unknown parameter '%s' in '%s'\n",
e4bcb14c
TS
2246 buf, str);
2247 return -1;
2248 }
2249
2250 file[0] = 0;
2251 cyls = heads = secs = 0;
2252 bus_id = 0;
2253 unit_id = -1;
2254 translation = BIOS_ATA_TRANSLATION_AUTO;
2255 index = -1;
4dc822d7 2256 cache = 3;
e4bcb14c 2257
c9b1ae2c 2258 if (machine->use_scsi) {
f60d39bc 2259 type = IF_SCSI;
e4bcb14c 2260 max_devs = MAX_SCSI_DEVS;
363a37d5 2261 pstrcpy(devname, sizeof(devname), "scsi");
e4bcb14c 2262 } else {
f60d39bc 2263 type = IF_IDE;
e4bcb14c 2264 max_devs = MAX_IDE_DEVS;
363a37d5 2265 pstrcpy(devname, sizeof(devname), "ide");
e4bcb14c
TS
2266 }
2267 media = MEDIA_DISK;
2268
2269 /* extract parameters */
2270
2271 if (get_param_value(buf, sizeof(buf), "bus", str)) {
2272 bus_id = strtol(buf, NULL, 0);
2273 if (bus_id < 0) {
2274 fprintf(stderr, "qemu: '%s' invalid bus id\n", str);
2275 return -1;
2276 }
2277 }
2278
2279 if (get_param_value(buf, sizeof(buf), "unit", str)) {
2280 unit_id = strtol(buf, NULL, 0);
2281 if (unit_id < 0) {
2282 fprintf(stderr, "qemu: '%s' invalid unit id\n", str);
2283 return -1;
2284 }
2285 }
2286
2287 if (get_param_value(buf, sizeof(buf), "if", str)) {
ae45d369 2288 pstrcpy(devname, sizeof(devname), buf);
e4bcb14c 2289 if (!strcmp(buf, "ide")) {
f60d39bc 2290 type = IF_IDE;
e4bcb14c
TS
2291 max_devs = MAX_IDE_DEVS;
2292 } else if (!strcmp(buf, "scsi")) {
f60d39bc 2293 type = IF_SCSI;
e4bcb14c
TS
2294 max_devs = MAX_SCSI_DEVS;
2295 } else if (!strcmp(buf, "floppy")) {
f60d39bc 2296 type = IF_FLOPPY;
e4bcb14c
TS
2297 max_devs = 0;
2298 } else if (!strcmp(buf, "pflash")) {
f60d39bc 2299 type = IF_PFLASH;
e4bcb14c
TS
2300 max_devs = 0;
2301 } else if (!strcmp(buf, "mtd")) {
f60d39bc 2302 type = IF_MTD;
e4bcb14c
TS
2303 max_devs = 0;
2304 } else if (!strcmp(buf, "sd")) {
f60d39bc 2305 type = IF_SD;
e4bcb14c 2306 max_devs = 0;
6e02c38d
AL
2307 } else if (!strcmp(buf, "virtio")) {
2308 type = IF_VIRTIO;
2309 max_devs = 0;
62d23efa
AL
2310 } else if (!strcmp(buf, "xen")) {
2311 type = IF_XEN;
2312 max_devs = 0;
2313 } else {
e4bcb14c
TS
2314 fprintf(stderr, "qemu: '%s' unsupported bus type '%s'\n", str, buf);
2315 return -1;
2316 }
2317 }
2318
2319 if (get_param_value(buf, sizeof(buf), "index", str)) {
2320 index = strtol(buf, NULL, 0);
2321 if (index < 0) {
2322 fprintf(stderr, "qemu: '%s' invalid index\n", str);
2323 return -1;
2324 }
2325 }
2326
2327 if (get_param_value(buf, sizeof(buf), "cyls", str)) {
2328 cyls = strtol(buf, NULL, 0);
2329 }
2330
2331 if (get_param_value(buf, sizeof(buf), "heads", str)) {
2332 heads = strtol(buf, NULL, 0);
2333 }
2334
2335 if (get_param_value(buf, sizeof(buf), "secs", str)) {
2336 secs = strtol(buf, NULL, 0);
2337 }
2338
2339 if (cyls || heads || secs) {
2340 if (cyls < 1 || cyls > 16383) {
2341 fprintf(stderr, "qemu: '%s' invalid physical cyls number\n", str);
2342 return -1;
2343 }
2344 if (heads < 1 || heads > 16) {
2345 fprintf(stderr, "qemu: '%s' invalid physical heads number\n", str);
2346 return -1;
2347 }
2348 if (secs < 1 || secs > 63) {
2349 fprintf(stderr, "qemu: '%s' invalid physical secs number\n", str);
2350 return -1;
2351 }
2352 }
2353
2354 if (get_param_value(buf, sizeof(buf), "trans", str)) {
2355 if (!cyls) {
2356 fprintf(stderr,
2357 "qemu: '%s' trans must be used with cyls,heads and secs\n",
2358 str);
2359 return -1;
2360 }
2361 if (!strcmp(buf, "none"))
2362 translation = BIOS_ATA_TRANSLATION_NONE;
2363 else if (!strcmp(buf, "lba"))
2364 translation = BIOS_ATA_TRANSLATION_LBA;
2365 else if (!strcmp(buf, "auto"))
2366 translation = BIOS_ATA_TRANSLATION_AUTO;
2367 else {
2368 fprintf(stderr, "qemu: '%s' invalid translation type\n", str);
2369 return -1;
2370 }
2371 }
2372
2373 if (get_param_value(buf, sizeof(buf), "media", str)) {
2374 if (!strcmp(buf, "disk")) {
2375 media = MEDIA_DISK;
2376 } else if (!strcmp(buf, "cdrom")) {
2377 if (cyls || secs || heads) {
2378 fprintf(stderr,
2379 "qemu: '%s' invalid physical CHS format\n", str);
2380 return -1;
2381 }
2382 media = MEDIA_CDROM;
2383 } else {
2384 fprintf(stderr, "qemu: '%s' invalid media\n", str);
2385 return -1;
2386 }
2387 }
2388
2389 if (get_param_value(buf, sizeof(buf), "snapshot", str)) {
2390 if (!strcmp(buf, "on"))
2391 snapshot = 1;
2392 else if (!strcmp(buf, "off"))
2393 snapshot = 0;
2394 else {
2395 fprintf(stderr, "qemu: '%s' invalid snapshot option\n", str);
2396 return -1;
2397 }
2398 }
2399
33f00271 2400 if (get_param_value(buf, sizeof(buf), "cache", str)) {
9f7965c7 2401 if (!strcmp(buf, "off") || !strcmp(buf, "none"))
33f00271 2402 cache = 0;
9f7965c7 2403 else if (!strcmp(buf, "writethrough"))
33f00271 2404 cache = 1;
9f7965c7
AL
2405 else if (!strcmp(buf, "writeback"))
2406 cache = 2;
33f00271
AZ
2407 else {
2408 fprintf(stderr, "qemu: invalid cache option\n");
2409 return -1;
2410 }
2411 }
2412
1e72d3b7 2413 if (get_param_value(buf, sizeof(buf), "format", str)) {
a1620fac
AJ
2414 if (strcmp(buf, "?") == 0) {
2415 fprintf(stderr, "qemu: Supported formats:");
2416 bdrv_iterate_format(bdrv_format_print, NULL);
2417 fprintf(stderr, "\n");
2418 return -1;
2419 }
1e72d3b7
AJ
2420 drv = bdrv_find_format(buf);
2421 if (!drv) {
2422 fprintf(stderr, "qemu: '%s' invalid format\n", buf);
2423 return -1;
2424 }
2425 }
2426
609497ab
AZ
2427 if (arg->file == NULL)
2428 get_param_value(file, sizeof(file), "file", str);
2429 else
2430 pstrcpy(file, sizeof(file), arg->file);
e4bcb14c 2431
fa879c64
AL
2432 if (!get_param_value(serial, sizeof(serial), "serial", str))
2433 memset(serial, 0, sizeof(serial));
2434
cdad4bd8 2435 onerror = BLOCK_ERR_STOP_ENOSPC;
428c5705 2436 if (get_param_value(buf, sizeof(serial), "werror", str)) {
869a5c6d 2437 if (type != IF_IDE && type != IF_SCSI && type != IF_VIRTIO) {
ea8a5d7f 2438 fprintf(stderr, "werror is no supported by this format\n");
428c5705
AL
2439 return -1;
2440 }
2441 if (!strcmp(buf, "ignore"))
2442 onerror = BLOCK_ERR_IGNORE;
2443 else if (!strcmp(buf, "enospc"))
2444 onerror = BLOCK_ERR_STOP_ENOSPC;
2445 else if (!strcmp(buf, "stop"))
2446 onerror = BLOCK_ERR_STOP_ANY;
2447 else if (!strcmp(buf, "report"))
2448 onerror = BLOCK_ERR_REPORT;
2449 else {
2450 fprintf(stderr, "qemu: '%s' invalid write error action\n", buf);
2451 return -1;
2452 }
2453 }
2454
e4bcb14c
TS
2455 /* compute bus and unit according index */
2456
2457 if (index != -1) {
2458 if (bus_id != 0 || unit_id != -1) {
2459 fprintf(stderr,
2460 "qemu: '%s' index cannot be used with bus and unit\n", str);
2461 return -1;
2462 }
2463 if (max_devs == 0)
2464 {
2465 unit_id = index;
2466 bus_id = 0;
2467 } else {
2468 unit_id = index % max_devs;
2469 bus_id = index / max_devs;
2470 }
2471 }
2472
2473 /* if user doesn't specify a unit_id,
2474 * try to find the first free
2475 */
2476
2477 if (unit_id == -1) {
2478 unit_id = 0;
f60d39bc 2479 while (drive_get_index(type, bus_id, unit_id) != -1) {
e4bcb14c
TS
2480 unit_id++;
2481 if (max_devs && unit_id >= max_devs) {
2482 unit_id -= max_devs;
2483 bus_id++;
2484 }
2485 }
2486 }
2487
2488 /* check unit id */
2489
2490 if (max_devs && unit_id >= max_devs) {
2491 fprintf(stderr, "qemu: '%s' unit %d too big (max is %d)\n",
2492 str, unit_id, max_devs - 1);
2493 return -1;
2494 }
2495
2496 /*
2497 * ignore multiple definitions
2498 */
2499
f60d39bc 2500 if (drive_get_index(type, bus_id, unit_id) != -1)
4d73cd3b 2501 return -2;
e4bcb14c
TS
2502
2503 /* init */
2504
f60d39bc 2505 if (type == IF_IDE || type == IF_SCSI)
c8522bdf 2506 mediastr = (media == MEDIA_CDROM) ? "-cd" : "-hd";
e6198a70
AZ
2507 if (max_devs)
2508 snprintf(buf, sizeof(buf), "%s%i%s%i",
2509 devname, bus_id, mediastr, unit_id);
2510 else
2511 snprintf(buf, sizeof(buf), "%s%s%i",
2512 devname, mediastr, unit_id);
e4bcb14c 2513 bdrv = bdrv_new(buf);
7d5aca9e
AL
2514 drives_table_idx = drive_get_free_idx();
2515 drives_table[drives_table_idx].bdrv = bdrv;
2516 drives_table[drives_table_idx].type = type;
2517 drives_table[drives_table_idx].bus = bus_id;
2518 drives_table[drives_table_idx].unit = unit_id;
2519 drives_table[drives_table_idx].onerror = onerror;
b01b1111 2520 drives_table[drives_table_idx].drive_opt_idx = arg - drives_opt;
fa879c64 2521 strncpy(drives_table[nb_drives].serial, serial, sizeof(serial));
e4bcb14c
TS
2522 nb_drives++;
2523
f60d39bc 2524 switch(type) {
e4bcb14c
TS
2525 case IF_IDE:
2526 case IF_SCSI:
62d23efa 2527 case IF_XEN:
e4bcb14c
TS
2528 switch(media) {
2529 case MEDIA_DISK:
2530 if (cyls != 0) {
2531 bdrv_set_geometry_hint(bdrv, cyls, heads, secs);
2532 bdrv_set_translation_hint(bdrv, translation);
2533 }
2534 break;
2535 case MEDIA_CDROM:
2536 bdrv_set_type_hint(bdrv, BDRV_TYPE_CDROM);
2537 break;
2538 }
2539 break;
2540 case IF_SD:
2541 /* FIXME: This isn't really a floppy, but it's a reasonable
2542 approximation. */
2543 case IF_FLOPPY:
2544 bdrv_set_type_hint(bdrv, BDRV_TYPE_FLOPPY);
2545 break;
2546 case IF_PFLASH:
2547 case IF_MTD:
6e02c38d 2548 case IF_VIRTIO:
e4bcb14c
TS
2549 break;
2550 }
2551 if (!file[0])
4d73cd3b 2552 return -2;
33f00271 2553 bdrv_flags = 0;
9f7965c7 2554 if (snapshot) {
33f00271 2555 bdrv_flags |= BDRV_O_SNAPSHOT;
9f7965c7
AL
2556 cache = 2; /* always use write-back with snapshot */
2557 }
2558 if (cache == 0) /* no caching */
2559 bdrv_flags |= BDRV_O_NOCACHE;
2560 else if (cache == 2) /* write-back */
2561 bdrv_flags |= BDRV_O_CACHE_WB;
4dc822d7
AL
2562 else if (cache == 3) /* not specified */
2563 bdrv_flags |= BDRV_O_CACHE_DEF;
c0f4ce77 2564 if (bdrv_open2(bdrv, file, bdrv_flags, drv) < 0) {
e4bcb14c
TS
2565 fprintf(stderr, "qemu: could not open disk image %s\n",
2566 file);
2567 return -1;
2568 }
c0f4ce77
AL
2569 if (bdrv_key_required(bdrv))
2570 autostart = 0;
4d73cd3b 2571 return drives_table_idx;
e4bcb14c
TS
2572}
2573
268a362c
AL
2574static void numa_add(const char *optarg)
2575{
2576 char option[128];
2577 char *endptr;
2578 unsigned long long value, endvalue;
2579 int nodenr;
2580
2581 optarg = get_opt_name(option, 128, optarg, ',') + 1;
2582 if (!strcmp(option, "node")) {
2583 if (get_param_value(option, 128, "nodeid", optarg) == 0) {
2584 nodenr = nb_numa_nodes;
2585 } else {
2586 nodenr = strtoull(option, NULL, 10);
2587 }
2588
2589 if (get_param_value(option, 128, "mem", optarg) == 0) {
2590 node_mem[nodenr] = 0;
2591 } else {
2592 value = strtoull(option, &endptr, 0);
2593 switch (*endptr) {
2594 case 0: case 'M': case 'm':
2595 value <<= 20;
2596 break;
2597 case 'G': case 'g':
2598 value <<= 30;
2599 break;
2600 }
2601 node_mem[nodenr] = value;
2602 }
2603 if (get_param_value(option, 128, "cpus", optarg) == 0) {
2604 node_cpumask[nodenr] = 0;
2605 } else {
2606 value = strtoull(option, &endptr, 10);
2607 if (value >= 64) {
2608 value = 63;
2609 fprintf(stderr, "only 64 CPUs in NUMA mode supported.\n");
2610 } else {
2611 if (*endptr == '-') {
2612 endvalue = strtoull(endptr+1, &endptr, 10);
2613 if (endvalue >= 63) {
2614 endvalue = 62;
2615 fprintf(stderr,
2616 "only 63 CPUs in NUMA mode supported.\n");
2617 }
2618 value = (1 << (endvalue + 1)) - (1 << value);
2619 } else {
2620 value = 1 << value;
2621 }
2622 }
2623 node_cpumask[nodenr] = value;
2624 }
2625 nb_numa_nodes++;
2626 }
2627 return;
2628}
2629
a594cfbf
FB
2630/***********************************************************/
2631/* USB devices */
2632
0d92ed30
PB
2633static USBPort *used_usb_ports;
2634static USBPort *free_usb_ports;
2635
2636/* ??? Maybe change this to register a hub to keep track of the topology. */
2637void qemu_register_usb_port(USBPort *port, void *opaque, int index,
2638 usb_attachfn attach)
2639{
2640 port->opaque = opaque;
2641 port->index = index;
2642 port->attach = attach;
2643 port->next = free_usb_ports;
2644 free_usb_ports = port;
2645}
2646
4b096fc9
AL
2647int usb_device_add_dev(USBDevice *dev)
2648{
2649 USBPort *port;
2650
2651 /* Find a USB port to add the device to. */
2652 port = free_usb_ports;
2653 if (!port->next) {
2654 USBDevice *hub;
2655
2656 /* Create a new hub and chain it on. */
2657 free_usb_ports = NULL;
2658 port->next = used_usb_ports;
2659 used_usb_ports = port;
2660
2661 hub = usb_hub_init(VM_USB_HUB_SIZE);
2662 usb_attach(port, hub);
2663 port = free_usb_ports;
2664 }
2665
2666 free_usb_ports = port->next;
2667 port->next = used_usb_ports;
2668 used_usb_ports = port;
2669 usb_attach(port, dev);
2670 return 0;
2671}
2672
bb5fc20f
AL
2673static void usb_msd_password_cb(void *opaque, int err)
2674{
2675 USBDevice *dev = opaque;
2676
2677 if (!err)
2678 usb_device_add_dev(dev);
2679 else
2680 dev->handle_destroy(dev);
2681}
2682
c0f4ce77 2683static int usb_device_add(const char *devname, int is_hotplug)
a594cfbf
FB
2684{
2685 const char *p;
2686 USBDevice *dev;
a594cfbf 2687
0d92ed30 2688 if (!free_usb_ports)
a594cfbf
FB
2689 return -1;
2690
2691 if (strstart(devname, "host:", &p)) {
2692 dev = usb_host_device_open(p);
a594cfbf
FB
2693 } else if (!strcmp(devname, "mouse")) {
2694 dev = usb_mouse_init();
09b26c5e 2695 } else if (!strcmp(devname, "tablet")) {
47b2d338
AZ
2696 dev = usb_tablet_init();
2697 } else if (!strcmp(devname, "keyboard")) {
2698 dev = usb_keyboard_init();
2e5d83bb 2699 } else if (strstart(devname, "disk:", &p)) {
c0f4ce77
AL
2700 BlockDriverState *bs;
2701
bb5fc20f 2702 dev = usb_msd_init(p);
c0f4ce77
AL
2703 if (!dev)
2704 return -1;
bb5fc20f 2705 bs = usb_msd_get_bdrv(dev);
c0f4ce77
AL
2706 if (bdrv_key_required(bs)) {
2707 autostart = 0;
bb5fc20f 2708 if (is_hotplug) {
376253ec
AL
2709 monitor_read_bdrv_key_start(cur_mon, bs, usb_msd_password_cb,
2710 dev);
bb5fc20f 2711 return 0;
c0f4ce77
AL
2712 }
2713 }
f6d2a316
AZ
2714 } else if (!strcmp(devname, "wacom-tablet")) {
2715 dev = usb_wacom_init();
a7954218
AZ
2716 } else if (strstart(devname, "serial:", &p)) {
2717 dev = usb_serial_init(p);
2e4d9fb1
AJ
2718#ifdef CONFIG_BRLAPI
2719 } else if (!strcmp(devname, "braille")) {
2720 dev = usb_baum_init();
2721#endif
6c9f886c 2722 } else if (strstart(devname, "net:", &p)) {
9ad97e65 2723 int nic = nb_nics;
6c9f886c 2724
9ad97e65 2725 if (net_client_init("nic", p) < 0)
6c9f886c 2726 return -1;
9ad97e65
AZ
2727 nd_table[nic].model = "usb";
2728 dev = usb_net_init(&nd_table[nic]);
dc72ac14
AZ
2729 } else if (!strcmp(devname, "bt") || strstart(devname, "bt:", &p)) {
2730 dev = usb_bt_init(devname[2] ? hci_init(p) :
2731 bt_new_hci(qemu_find_bt_vlan(0)));
a594cfbf
FB
2732 } else {
2733 return -1;
2734 }
0d92ed30
PB
2735 if (!dev)
2736 return -1;
2737
4b096fc9 2738 return usb_device_add_dev(dev);
a594cfbf
FB
2739}
2740
1f3870ab 2741int usb_device_del_addr(int bus_num, int addr)
a594cfbf 2742{
0d92ed30
PB
2743 USBPort *port;
2744 USBPort **lastp;
059809e4 2745 USBDevice *dev;
a594cfbf 2746
0d92ed30 2747 if (!used_usb_ports)
a594cfbf
FB
2748 return -1;
2749
a594cfbf
FB
2750 if (bus_num != 0)
2751 return -1;
0d92ed30
PB
2752
2753 lastp = &used_usb_ports;
2754 port = used_usb_ports;
2755 while (port && port->dev->addr != addr) {
2756 lastp = &port->next;
2757 port = port->next;
a594cfbf 2758 }
0d92ed30
PB
2759
2760 if (!port)
a594cfbf 2761 return -1;
0d92ed30 2762
059809e4 2763 dev = port->dev;
0d92ed30
PB
2764 *lastp = port->next;
2765 usb_attach(port, NULL);
059809e4 2766 dev->handle_destroy(dev);
0d92ed30
PB
2767 port->next = free_usb_ports;
2768 free_usb_ports = port;
a594cfbf
FB
2769 return 0;
2770}
2771
1f3870ab
AL
2772static int usb_device_del(const char *devname)
2773{
2774 int bus_num, addr;
2775 const char *p;
2776
5d0c5750
AL
2777 if (strstart(devname, "host:", &p))
2778 return usb_host_device_close(p);
2779
1f3870ab
AL
2780 if (!used_usb_ports)
2781 return -1;
2782
2783 p = strchr(devname, '.');
2784 if (!p)
2785 return -1;
2786 bus_num = strtoul(devname, NULL, 0);
2787 addr = strtoul(p + 1, NULL, 0);
2788
2789 return usb_device_del_addr(bus_num, addr);
2790}
2791
376253ec 2792void do_usb_add(Monitor *mon, const char *devname)
a594cfbf 2793{
c0f4ce77 2794 usb_device_add(devname, 1);
a594cfbf
FB
2795}
2796
376253ec 2797void do_usb_del(Monitor *mon, const char *devname)
a594cfbf 2798{
4b096fc9 2799 usb_device_del(devname);
a594cfbf
FB
2800}
2801
376253ec 2802void usb_info(Monitor *mon)
a594cfbf
FB
2803{
2804 USBDevice *dev;
0d92ed30 2805 USBPort *port;
a594cfbf
FB
2806 const char *speed_str;
2807
0d92ed30 2808 if (!usb_enabled) {
376253ec 2809 monitor_printf(mon, "USB support not enabled\n");
a594cfbf
FB
2810 return;
2811 }
2812
0d92ed30
PB
2813 for (port = used_usb_ports; port; port = port->next) {
2814 dev = port->dev;
2815 if (!dev)
2816 continue;
2817 switch(dev->speed) {
5fafdf24
TS
2818 case USB_SPEED_LOW:
2819 speed_str = "1.5";
0d92ed30 2820 break;
5fafdf24
TS
2821 case USB_SPEED_FULL:
2822 speed_str = "12";
0d92ed30 2823 break;
5fafdf24
TS
2824 case USB_SPEED_HIGH:
2825 speed_str = "480";
0d92ed30
PB
2826 break;
2827 default:
5fafdf24 2828 speed_str = "?";
0d92ed30 2829 break;
a594cfbf 2830 }
376253ec
AL
2831 monitor_printf(mon, " Device %d.%d, Speed %s Mb/s, Product %s\n",
2832 0, dev->addr, speed_str, dev->devname);
a594cfbf
FB
2833 }
2834}
2835
201a51fc
AZ
2836/***********************************************************/
2837/* PCMCIA/Cardbus */
2838
2839static struct pcmcia_socket_entry_s {
2840 struct pcmcia_socket_s *socket;
2841 struct pcmcia_socket_entry_s *next;
2842} *pcmcia_sockets = 0;
2843
2844void pcmcia_socket_register(struct pcmcia_socket_s *socket)
2845{
2846 struct pcmcia_socket_entry_s *entry;
2847
2848 entry = qemu_malloc(sizeof(struct pcmcia_socket_entry_s));
2849 entry->socket = socket;
2850 entry->next = pcmcia_sockets;
2851 pcmcia_sockets = entry;
2852}
2853
2854void pcmcia_socket_unregister(struct pcmcia_socket_s *socket)
2855{
2856 struct pcmcia_socket_entry_s *entry, **ptr;
2857
2858 ptr = &pcmcia_sockets;
2859 for (entry = *ptr; entry; ptr = &entry->next, entry = *ptr)
2860 if (entry->socket == socket) {
2861 *ptr = entry->next;
2862 qemu_free(entry);
2863 }
2864}
2865
376253ec 2866void pcmcia_info(Monitor *mon)
201a51fc
AZ
2867{
2868 struct pcmcia_socket_entry_s *iter;
376253ec 2869
201a51fc 2870 if (!pcmcia_sockets)
376253ec 2871 monitor_printf(mon, "No PCMCIA sockets\n");
201a51fc
AZ
2872
2873 for (iter = pcmcia_sockets; iter; iter = iter->next)
376253ec
AL
2874 monitor_printf(mon, "%s: %s\n", iter->socket->slot_string,
2875 iter->socket->attached ? iter->socket->card_string :
2876 "Empty");
201a51fc
AZ
2877}
2878
2ff89790 2879/***********************************************************/
3023f332
AL
2880/* register display */
2881
7b5d76da
AL
2882struct DisplayAllocator default_allocator = {
2883 defaultallocator_create_displaysurface,
2884 defaultallocator_resize_displaysurface,
2885 defaultallocator_free_displaysurface
2886};
2887
3023f332
AL
2888void register_displaystate(DisplayState *ds)
2889{
2890 DisplayState **s;
2891 s = &display_state;
2892 while (*s != NULL)
2893 s = &(*s)->next;
2894 ds->next = NULL;
2895 *s = ds;
2896}
2897
2898DisplayState *get_displaystate(void)
2899{
2900 return display_state;
2901}
2902
7b5d76da
AL
2903DisplayAllocator *register_displayallocator(DisplayState *ds, DisplayAllocator *da)
2904{
2905 if(ds->allocator == &default_allocator) ds->allocator = da;
2906 return ds->allocator;
2907}
2908
2ff89790
TS
2909/* dumb display */
2910
8f391ab4 2911static void dumb_display_init(void)
2ff89790 2912{
8f391ab4 2913 DisplayState *ds = qemu_mallocz(sizeof(DisplayState));
7b5d76da
AL
2914 ds->allocator = &default_allocator;
2915 ds->surface = qemu_create_displaysurface(ds, 640, 480);
8f391ab4 2916 register_displaystate(ds);
2ff89790
TS
2917}
2918
8a7ddc38
FB
2919/***********************************************************/
2920/* I/O handling */
0824d6fc 2921
c4b1fcc0
FB
2922typedef struct IOHandlerRecord {
2923 int fd;
7c9d8e07
FB
2924 IOCanRWHandler *fd_read_poll;
2925 IOHandler *fd_read;
2926 IOHandler *fd_write;
cafffd40 2927 int deleted;
c4b1fcc0
FB
2928 void *opaque;
2929 /* temporary data */
2930 struct pollfd *ufd;
8a7ddc38 2931 struct IOHandlerRecord *next;
c4b1fcc0
FB
2932} IOHandlerRecord;
2933
8a7ddc38 2934static IOHandlerRecord *first_io_handler;
c4b1fcc0 2935
7c9d8e07
FB
2936/* XXX: fd_read_poll should be suppressed, but an API change is
2937 necessary in the character devices to suppress fd_can_read(). */
5fafdf24
TS
2938int qemu_set_fd_handler2(int fd,
2939 IOCanRWHandler *fd_read_poll,
2940 IOHandler *fd_read,
2941 IOHandler *fd_write,
7c9d8e07 2942 void *opaque)
c4b1fcc0 2943{
7c9d8e07 2944 IOHandlerRecord **pioh, *ioh;
c4b1fcc0 2945
7c9d8e07
FB
2946 if (!fd_read && !fd_write) {
2947 pioh = &first_io_handler;
2948 for(;;) {
2949 ioh = *pioh;
2950 if (ioh == NULL)
2951 break;
2952 if (ioh->fd == fd) {
cafffd40 2953 ioh->deleted = 1;
7c9d8e07
FB
2954 break;
2955 }
2956 pioh = &ioh->next;
2957 }
2958 } else {
2959 for(ioh = first_io_handler; ioh != NULL; ioh = ioh->next) {
2960 if (ioh->fd == fd)
2961 goto found;
2962 }
2963 ioh = qemu_mallocz(sizeof(IOHandlerRecord));
7c9d8e07
FB
2964 ioh->next = first_io_handler;
2965 first_io_handler = ioh;
2966 found:
2967 ioh->fd = fd;
2968 ioh->fd_read_poll = fd_read_poll;
2969 ioh->fd_read = fd_read;
2970 ioh->fd_write = fd_write;
2971 ioh->opaque = opaque;
cafffd40 2972 ioh->deleted = 0;
7c9d8e07 2973 }
c4b1fcc0
FB
2974 return 0;
2975}
2976
5fafdf24
TS
2977int qemu_set_fd_handler(int fd,
2978 IOHandler *fd_read,
2979 IOHandler *fd_write,
7c9d8e07 2980 void *opaque)
8a7ddc38 2981{
7c9d8e07 2982 return qemu_set_fd_handler2(fd, NULL, fd_read, fd_write, opaque);
8a7ddc38
FB
2983}
2984
56f3a5d0 2985#ifdef _WIN32
f331110f
FB
2986/***********************************************************/
2987/* Polling handling */
2988
2989typedef struct PollingEntry {
2990 PollingFunc *func;
2991 void *opaque;
2992 struct PollingEntry *next;
2993} PollingEntry;
2994
2995static PollingEntry *first_polling_entry;
2996
2997int qemu_add_polling_cb(PollingFunc *func, void *opaque)
2998{
2999 PollingEntry **ppe, *pe;
3000 pe = qemu_mallocz(sizeof(PollingEntry));
f331110f
FB
3001 pe->func = func;
3002 pe->opaque = opaque;
3003 for(ppe = &first_polling_entry; *ppe != NULL; ppe = &(*ppe)->next);
3004 *ppe = pe;
3005 return 0;
3006}
3007
3008void qemu_del_polling_cb(PollingFunc *func, void *opaque)
3009{
3010 PollingEntry **ppe, *pe;
3011 for(ppe = &first_polling_entry; *ppe != NULL; ppe = &(*ppe)->next) {
3012 pe = *ppe;
3013 if (pe->func == func && pe->opaque == opaque) {
3014 *ppe = pe->next;
3015 qemu_free(pe);
3016 break;
3017 }
3018 }
3019}
3020
a18e524a
FB
3021/***********************************************************/
3022/* Wait objects support */
3023typedef struct WaitObjects {
3024 int num;
3025 HANDLE events[MAXIMUM_WAIT_OBJECTS + 1];
3026 WaitObjectFunc *func[MAXIMUM_WAIT_OBJECTS + 1];
3027 void *opaque[MAXIMUM_WAIT_OBJECTS + 1];
3028} WaitObjects;
3029
3030static WaitObjects wait_objects = {0};
3b46e624 3031
a18e524a
FB
3032int qemu_add_wait_object(HANDLE handle, WaitObjectFunc *func, void *opaque)
3033{
3034 WaitObjects *w = &wait_objects;
3035
3036 if (w->num >= MAXIMUM_WAIT_OBJECTS)
3037 return -1;
3038 w->events[w->num] = handle;
3039 w->func[w->num] = func;
3040 w->opaque[w->num] = opaque;
3041 w->num++;
3042 return 0;
3043}
3044
3045void qemu_del_wait_object(HANDLE handle, WaitObjectFunc *func, void *opaque)
3046{
3047 int i, found;
3048 WaitObjects *w = &wait_objects;
3049
3050 found = 0;
3051 for (i = 0; i < w->num; i++) {
3052 if (w->events[i] == handle)
3053 found = 1;
3054 if (found) {
3055 w->events[i] = w->events[i + 1];
3056 w->func[i] = w->func[i + 1];
3057 w->opaque[i] = w->opaque[i + 1];
3b46e624 3058 }
a18e524a
FB
3059 }
3060 if (found)
3061 w->num--;
3062}
3063#endif
3064
8a7ddc38
FB
3065/***********************************************************/
3066/* ram save/restore */
3067
8a7ddc38
FB
3068static int ram_get_page(QEMUFile *f, uint8_t *buf, int len)
3069{
3070 int v;
3071
3072 v = qemu_get_byte(f);
3073 switch(v) {
3074 case 0:
3075 if (qemu_get_buffer(f, buf, len) != len)
3076 return -EIO;
3077 break;
3078 case 1:
3079 v = qemu_get_byte(f);
3080 memset(buf, v, len);
3081 break;
3082 default:
3083 return -EINVAL;
3084 }
871d2f07
AL
3085
3086 if (qemu_file_has_error(f))
3087 return -EIO;
3088
8a7ddc38
FB
3089 return 0;
3090}
3091
c88676f8
FB
3092static int ram_load_v1(QEMUFile *f, void *opaque)
3093{
00f82b8a
AJ
3094 int ret;
3095 ram_addr_t i;
c88676f8 3096
94a6b54f 3097 if (qemu_get_be32(f) != last_ram_offset)
c88676f8 3098 return -EINVAL;
94a6b54f 3099 for(i = 0; i < last_ram_offset; i+= TARGET_PAGE_SIZE) {
5579c7f3 3100 ret = ram_get_page(f, qemu_get_ram_ptr(i), TARGET_PAGE_SIZE);
c88676f8
FB
3101 if (ret)
3102 return ret;
3103 }
3104 return 0;
3105}
3106
3107#define BDRV_HASH_BLOCK_SIZE 1024
3108#define IOBUF_SIZE 4096
3109#define RAM_CBLOCK_MAGIC 0xfabe
3110
c88676f8
FB
3111typedef struct RamDecompressState {
3112 z_stream zstream;
3113 QEMUFile *f;
3114 uint8_t buf[IOBUF_SIZE];
3115} RamDecompressState;
3116
3117static int ram_decompress_open(RamDecompressState *s, QEMUFile *f)
3118{
3119 int ret;
3120 memset(s, 0, sizeof(*s));
3121 s->f = f;
3122 ret = inflateInit(&s->zstream);
3123 if (ret != Z_OK)
3124 return -1;
3125 return 0;
3126}
3127
3128static int ram_decompress_buf(RamDecompressState *s, uint8_t *buf, int len)
3129{
3130 int ret, clen;
3131
3132 s->zstream.avail_out = len;
3133 s->zstream.next_out = buf;
3134 while (s->zstream.avail_out > 0) {
3135 if (s->zstream.avail_in == 0) {
3136 if (qemu_get_be16(s->f) != RAM_CBLOCK_MAGIC)
3137 return -1;
3138 clen = qemu_get_be16(s->f);
3139 if (clen > IOBUF_SIZE)
3140 return -1;
3141 qemu_get_buffer(s->f, s->buf, clen);
3142 s->zstream.avail_in = clen;
3143 s->zstream.next_in = s->buf;
3144 }
3145 ret = inflate(&s->zstream, Z_PARTIAL_FLUSH);
3146 if (ret != Z_OK && ret != Z_STREAM_END) {
3147 return -1;
3148 }
3149 }
3150 return 0;
3151}
3152
3153static void ram_decompress_close(RamDecompressState *s)
3154{
3155 inflateEnd(&s->zstream);
3156}
3157
475e4277
AL
3158#define RAM_SAVE_FLAG_FULL 0x01
3159#define RAM_SAVE_FLAG_COMPRESS 0x02
3160#define RAM_SAVE_FLAG_MEM_SIZE 0x04
3161#define RAM_SAVE_FLAG_PAGE 0x08
3162#define RAM_SAVE_FLAG_EOS 0x10
3163
3164static int is_dup_page(uint8_t *page, uint8_t ch)
8a7ddc38 3165{
475e4277
AL
3166 uint32_t val = ch << 24 | ch << 16 | ch << 8 | ch;
3167 uint32_t *array = (uint32_t *)page;
3168 int i;
3b46e624 3169
475e4277
AL
3170 for (i = 0; i < (TARGET_PAGE_SIZE / 4); i++) {
3171 if (array[i] != val)
3172 return 0;
3173 }
3174
3175 return 1;
3176}
3177
3178static int ram_save_block(QEMUFile *f)
3179{
3180 static ram_addr_t current_addr = 0;
3181 ram_addr_t saved_addr = current_addr;
3182 ram_addr_t addr = 0;
3183 int found = 0;
3184
94a6b54f 3185 while (addr < last_ram_offset) {
475e4277 3186 if (cpu_physical_memory_get_dirty(current_addr, MIGRATION_DIRTY_FLAG)) {
5579c7f3 3187 uint8_t *p;
475e4277
AL
3188
3189 cpu_physical_memory_reset_dirty(current_addr,
3190 current_addr + TARGET_PAGE_SIZE,
3191 MIGRATION_DIRTY_FLAG);
3192
5579c7f3 3193 p = qemu_get_ram_ptr(current_addr);
475e4277 3194
5579c7f3 3195 if (is_dup_page(p, *p)) {
475e4277 3196 qemu_put_be64(f, current_addr | RAM_SAVE_FLAG_COMPRESS);
5579c7f3 3197 qemu_put_byte(f, *p);
475e4277
AL
3198 } else {
3199 qemu_put_be64(f, current_addr | RAM_SAVE_FLAG_PAGE);
5579c7f3 3200 qemu_put_buffer(f, p, TARGET_PAGE_SIZE);
c88676f8 3201 }
475e4277
AL
3202
3203 found = 1;
3204 break;
c88676f8 3205 }
475e4277 3206 addr += TARGET_PAGE_SIZE;
94a6b54f 3207 current_addr = (saved_addr + addr) % last_ram_offset;
8a7ddc38 3208 }
475e4277
AL
3209
3210 return found;
8a7ddc38
FB
3211}
3212
475e4277
AL
3213static ram_addr_t ram_save_threshold = 10;
3214
3215static ram_addr_t ram_save_remaining(void)
3216{
3217 ram_addr_t addr;
3218 ram_addr_t count = 0;
3219
94a6b54f 3220 for (addr = 0; addr < last_ram_offset; addr += TARGET_PAGE_SIZE) {
475e4277
AL
3221 if (cpu_physical_memory_get_dirty(addr, MIGRATION_DIRTY_FLAG))
3222 count++;
3223 }
3224
3225 return count;
3226}
3227
3228static int ram_save_live(QEMUFile *f, int stage, void *opaque)
3229{
3230 ram_addr_t addr;
3231
3232 if (stage == 1) {
3233 /* Make sure all dirty bits are set */
94a6b54f 3234 for (addr = 0; addr < last_ram_offset; addr += TARGET_PAGE_SIZE) {
475e4277
AL
3235 if (!cpu_physical_memory_get_dirty(addr, MIGRATION_DIRTY_FLAG))
3236 cpu_physical_memory_set_dirty(addr);
3237 }
3238
3239 /* Enable dirty memory tracking */
3240 cpu_physical_memory_set_dirty_tracking(1);
3241
94a6b54f 3242 qemu_put_be64(f, last_ram_offset | RAM_SAVE_FLAG_MEM_SIZE);
475e4277
AL
3243 }
3244
3245 while (!qemu_file_rate_limit(f)) {
3246 int ret;
3247
3248 ret = ram_save_block(f);
3249 if (ret == 0) /* no more blocks */
3250 break;
3251 }
3252
3253 /* try transferring iterative blocks of memory */
3254
3255 if (stage == 3) {
475e4277
AL
3256
3257 /* flush all remaining blocks regardless of rate limiting */
3258 while (ram_save_block(f) != 0);
8215e914 3259 cpu_physical_memory_set_dirty_tracking(0);
475e4277
AL
3260 }
3261
3262 qemu_put_be64(f, RAM_SAVE_FLAG_EOS);
3263
3264 return (stage == 2) && (ram_save_remaining() < ram_save_threshold);
3265}
3266
3267static int ram_load_dead(QEMUFile *f, void *opaque)
8a7ddc38 3268{
c88676f8
FB
3269 RamDecompressState s1, *s = &s1;
3270 uint8_t buf[10];
00f82b8a 3271 ram_addr_t i;
8a7ddc38 3272
c88676f8
FB
3273 if (ram_decompress_open(s, f) < 0)
3274 return -EINVAL;
94a6b54f 3275 for(i = 0; i < last_ram_offset; i+= BDRV_HASH_BLOCK_SIZE) {
c88676f8
FB
3276 if (ram_decompress_buf(s, buf, 1) < 0) {
3277 fprintf(stderr, "Error while reading ram block header\n");
3278 goto error;
3279 }
3280 if (buf[0] == 0) {
5579c7f3
PB
3281 if (ram_decompress_buf(s, qemu_get_ram_ptr(i),
3282 BDRV_HASH_BLOCK_SIZE) < 0) {
00f82b8a 3283 fprintf(stderr, "Error while reading ram block address=0x%08" PRIx64, (uint64_t)i);
c88676f8
FB
3284 goto error;
3285 }
475e4277 3286 } else {
c88676f8
FB
3287 error:
3288 printf("Error block header\n");
3289 return -EINVAL;
3290 }
8a7ddc38 3291 }
c88676f8 3292 ram_decompress_close(s);
475e4277
AL
3293
3294 return 0;
3295}
3296
3297static int ram_load(QEMUFile *f, void *opaque, int version_id)
3298{
3299 ram_addr_t addr;
3300 int flags;
3301
3302 if (version_id == 1)
3303 return ram_load_v1(f, opaque);
3304
3305 if (version_id == 2) {
94a6b54f 3306 if (qemu_get_be32(f) != last_ram_offset)
475e4277
AL
3307 return -EINVAL;
3308 return ram_load_dead(f, opaque);
3309 }
3310
3311 if (version_id != 3)
3312 return -EINVAL;
3313
3314 do {
3315 addr = qemu_get_be64(f);
3316
3317 flags = addr & ~TARGET_PAGE_MASK;
3318 addr &= TARGET_PAGE_MASK;
3319
3320 if (flags & RAM_SAVE_FLAG_MEM_SIZE) {
94a6b54f 3321 if (addr != last_ram_offset)
475e4277
AL
3322 return -EINVAL;
3323 }
3324
3325 if (flags & RAM_SAVE_FLAG_FULL) {
3326 if (ram_load_dead(f, opaque) < 0)
3327 return -EINVAL;
3328 }
3329
3330 if (flags & RAM_SAVE_FLAG_COMPRESS) {
3331 uint8_t ch = qemu_get_byte(f);
5579c7f3 3332 memset(qemu_get_ram_ptr(addr), ch, TARGET_PAGE_SIZE);
475e4277 3333 } else if (flags & RAM_SAVE_FLAG_PAGE)
5579c7f3 3334 qemu_get_buffer(f, qemu_get_ram_ptr(addr), TARGET_PAGE_SIZE);
475e4277
AL
3335 } while (!(flags & RAM_SAVE_FLAG_EOS));
3336
8a7ddc38
FB
3337 return 0;
3338}
3339
9e472e10
AL
3340void qemu_service_io(void)
3341{
d9f75a4e 3342 qemu_notify_event();
9e472e10
AL
3343}
3344
83f64091
FB
3345/***********************************************************/
3346/* bottom halves (can be seen as timers which expire ASAP) */
3347
3348struct QEMUBH {
3349 QEMUBHFunc *cb;
3350 void *opaque;
3351 int scheduled;
1b435b10
AL
3352 int idle;
3353 int deleted;
83f64091
FB
3354 QEMUBH *next;
3355};
3356
3357static QEMUBH *first_bh = NULL;
3358
3359QEMUBH *qemu_bh_new(QEMUBHFunc *cb, void *opaque)
3360{
3361 QEMUBH *bh;
3362 bh = qemu_mallocz(sizeof(QEMUBH));
83f64091
FB
3363 bh->cb = cb;
3364 bh->opaque = opaque;
1b435b10
AL
3365 bh->next = first_bh;
3366 first_bh = bh;
83f64091
FB
3367 return bh;
3368}
3369
6eb5733a 3370int qemu_bh_poll(void)
83f64091 3371{
1b435b10 3372 QEMUBH *bh, **bhp;
6eb5733a 3373 int ret;
83f64091 3374
6eb5733a 3375 ret = 0;
1b435b10
AL
3376 for (bh = first_bh; bh; bh = bh->next) {
3377 if (!bh->deleted && bh->scheduled) {
3378 bh->scheduled = 0;
3379 if (!bh->idle)
3380 ret = 1;
3381 bh->idle = 0;
3382 bh->cb(bh->opaque);
3383 }
83f64091 3384 }
1b435b10
AL
3385
3386 /* remove deleted bhs */
3387 bhp = &first_bh;
3388 while (*bhp) {
3389 bh = *bhp;
3390 if (bh->deleted) {
3391 *bhp = bh->next;
3392 qemu_free(bh);
3393 } else
3394 bhp = &bh->next;
3395 }
3396
6eb5733a 3397 return ret;
83f64091
FB
3398}
3399
1b435b10
AL
3400void qemu_bh_schedule_idle(QEMUBH *bh)
3401{
3402 if (bh->scheduled)
3403 return;
3404 bh->scheduled = 1;
3405 bh->idle = 1;
3406}
3407
83f64091
FB
3408void qemu_bh_schedule(QEMUBH *bh)
3409{
83f64091
FB
3410 if (bh->scheduled)
3411 return;
3412 bh->scheduled = 1;
1b435b10 3413 bh->idle = 0;
83f64091 3414 /* stop the currently executing CPU to execute the BH ASAP */
d9f75a4e 3415 qemu_notify_event();
83f64091
FB
3416}
3417
3418void qemu_bh_cancel(QEMUBH *bh)
3419{
1b435b10 3420 bh->scheduled = 0;
83f64091
FB
3421}
3422
3423void qemu_bh_delete(QEMUBH *bh)
3424{
1b435b10
AL
3425 bh->scheduled = 0;
3426 bh->deleted = 1;
83f64091
FB
3427}
3428
56f3a5d0
AL
3429static void qemu_bh_update_timeout(int *timeout)
3430{
3431 QEMUBH *bh;
3432
3433 for (bh = first_bh; bh; bh = bh->next) {
3434 if (!bh->deleted && bh->scheduled) {
3435 if (bh->idle) {
3436 /* idle bottom halves will be polled at least
3437 * every 10ms */
3438 *timeout = MIN(10, *timeout);
3439 } else {
3440 /* non-idle bottom halves will be executed
3441 * immediately */
3442 *timeout = 0;
3443 break;
3444 }
3445 }
3446 }
3447}
3448
cc1daa40
FB
3449/***********************************************************/
3450/* machine registration */
3451
bdaf78e0 3452static QEMUMachine *first_machine = NULL;
6f338c34 3453QEMUMachine *current_machine = NULL;
cc1daa40
FB
3454
3455int qemu_register_machine(QEMUMachine *m)
3456{
3457 QEMUMachine **pm;
3458 pm = &first_machine;
3459 while (*pm != NULL)
3460 pm = &(*pm)->next;
3461 m->next = NULL;
3462 *pm = m;
3463 return 0;
3464}
3465
9596ebb7 3466static QEMUMachine *find_machine(const char *name)
cc1daa40
FB
3467{
3468 QEMUMachine *m;
3469
3470 for(m = first_machine; m != NULL; m = m->next) {
3471 if (!strcmp(m->name, name))
3472 return m;
3473 }
3474 return NULL;
3475}
3476
8a7ddc38
FB
3477/***********************************************************/
3478/* main execution loop */
3479
9596ebb7 3480static void gui_update(void *opaque)
8a7ddc38 3481{
7d957bd8 3482 uint64_t interval = GUI_REFRESH_INTERVAL;
740733bb 3483 DisplayState *ds = opaque;
7d957bd8
AL
3484 DisplayChangeListener *dcl = ds->listeners;
3485
3486 dpy_refresh(ds);
3487
3488 while (dcl != NULL) {
3489 if (dcl->gui_timer_interval &&
3490 dcl->gui_timer_interval < interval)
3491 interval = dcl->gui_timer_interval;
3492 dcl = dcl->next;
3493 }
3494 qemu_mod_timer(ds->gui_timer, interval + qemu_get_clock(rt_clock));
8a7ddc38
FB
3495}
3496
9043b62d
BS
3497static void nographic_update(void *opaque)
3498{
3499 uint64_t interval = GUI_REFRESH_INTERVAL;
3500
3501 qemu_mod_timer(nographic_timer, interval + qemu_get_clock(rt_clock));
3502}
3503
0bd48850
FB
3504struct vm_change_state_entry {
3505 VMChangeStateHandler *cb;
3506 void *opaque;
3507 LIST_ENTRY (vm_change_state_entry) entries;
3508};
3509
3510static LIST_HEAD(vm_change_state_head, vm_change_state_entry) vm_change_state_head;
3511
3512VMChangeStateEntry *qemu_add_vm_change_state_handler(VMChangeStateHandler *cb,
3513 void *opaque)
3514{
3515 VMChangeStateEntry *e;
3516
3517 e = qemu_mallocz(sizeof (*e));
0bd48850
FB
3518
3519 e->cb = cb;
3520 e->opaque = opaque;
3521 LIST_INSERT_HEAD(&vm_change_state_head, e, entries);
3522 return e;
3523}
3524
3525void qemu_del_vm_change_state_handler(VMChangeStateEntry *e)
3526{
3527 LIST_REMOVE (e, entries);
3528 qemu_free (e);
3529}
3530
9781e040 3531static void vm_state_notify(int running, int reason)
0bd48850
FB
3532{
3533 VMChangeStateEntry *e;
3534
3535 for (e = vm_change_state_head.lh_first; e; e = e->entries.le_next) {
9781e040 3536 e->cb(e->opaque, running, reason);
0bd48850
FB
3537 }
3538}
3539
8a7ddc38
FB
3540void vm_start(void)
3541{
3542 if (!vm_running) {
3543 cpu_enable_ticks();
3544 vm_running = 1;
9781e040 3545 vm_state_notify(1, 0);
efe75411 3546 qemu_rearm_alarm_timer(alarm_timer);
8a7ddc38
FB
3547 }
3548}
3549
5fafdf24 3550void vm_stop(int reason)
8a7ddc38
FB
3551{
3552 if (vm_running) {
3553 cpu_disable_ticks();
3554 vm_running = 0;
9781e040 3555 vm_state_notify(0, reason);
8a7ddc38
FB
3556 }
3557}
3558
bb0c6722
FB
3559/* reset/shutdown handler */
3560
3561typedef struct QEMUResetEntry {
3562 QEMUResetHandler *func;
3563 void *opaque;
3564 struct QEMUResetEntry *next;
3565} QEMUResetEntry;
3566
3567static QEMUResetEntry *first_reset_entry;
3568static int reset_requested;
3569static int shutdown_requested;
3475187d 3570static int powerdown_requested;
bb0c6722 3571
cf7a2fe2
AJ
3572int qemu_shutdown_requested(void)
3573{
3574 int r = shutdown_requested;
3575 shutdown_requested = 0;
3576 return r;
3577}
3578
3579int qemu_reset_requested(void)
3580{
3581 int r = reset_requested;
3582 reset_requested = 0;
3583 return r;
3584}
3585
3586int qemu_powerdown_requested(void)
3587{
3588 int r = powerdown_requested;
3589 powerdown_requested = 0;
3590 return r;
3591}
3592
bb0c6722
FB
3593void qemu_register_reset(QEMUResetHandler *func, void *opaque)
3594{
3595 QEMUResetEntry **pre, *re;
3596
3597 pre = &first_reset_entry;
3598 while (*pre != NULL)
3599 pre = &(*pre)->next;
3600 re = qemu_mallocz(sizeof(QEMUResetEntry));
3601 re->func = func;
3602 re->opaque = opaque;
3603 re->next = NULL;
3604 *pre = re;
3605}
3606
cf7a2fe2 3607void qemu_system_reset(void)
bb0c6722
FB
3608{
3609 QEMUResetEntry *re;
3610
3611 /* reset all devices */
3612 for(re = first_reset_entry; re != NULL; re = re->next) {
3613 re->func(re->opaque);
3614 }
29203dcf
AL
3615 if (kvm_enabled())
3616 kvm_sync_vcpus();
bb0c6722
FB
3617}
3618
3619void qemu_system_reset_request(void)
3620{
d1beab82
FB
3621 if (no_reboot) {
3622 shutdown_requested = 1;
3623 } else {
3624 reset_requested = 1;
3625 }
d9f75a4e 3626 qemu_notify_event();
bb0c6722
FB
3627}
3628
3629void qemu_system_shutdown_request(void)
3630{
3631 shutdown_requested = 1;
d9f75a4e 3632 qemu_notify_event();
bb0c6722
FB
3633}
3634
3475187d
FB
3635void qemu_system_powerdown_request(void)
3636{
3637 powerdown_requested = 1;
d9f75a4e
AL
3638 qemu_notify_event();
3639}
3640
3641void qemu_notify_event(void)
3642{
3643 CPUState *env = cpu_single_env;
3644
3645 if (env) {
3646 cpu_exit(env);
3647#ifdef USE_KQEMU
3648 if (env->kqemu_enabled)
3649 kqemu_cpu_interrupt(env);
3650#endif
3651 }
bb0c6722
FB
3652}
3653
50317c7f
AL
3654#ifndef _WIN32
3655static int io_thread_fd = -1;
3656
3657static void qemu_event_increment(void)
3fcf7b6b 3658{
50317c7f
AL
3659 static const char byte = 0;
3660
3661 if (io_thread_fd == -1)
3662 return;
3663
3664 write(io_thread_fd, &byte, sizeof(byte));
3665}
3666
3667static void qemu_event_read(void *opaque)
3668{
3669 int fd = (unsigned long)opaque;
3670 ssize_t len;
3671
3672 /* Drain the notify pipe */
3673 do {
3674 char buffer[512];
3675 len = read(fd, buffer, sizeof(buffer));
3676 } while ((len == -1 && errno == EINTR) || len > 0);
3677}
3678
3679static int qemu_event_init(void)
3680{
3681 int err;
3682 int fds[2];
3683
3684 err = pipe(fds);
3685 if (err == -1)
3686 return -errno;
3687
3688 err = fcntl_setfl(fds[0], O_NONBLOCK);
3689 if (err < 0)
3690 goto fail;
3691
3692 err = fcntl_setfl(fds[1], O_NONBLOCK);
3693 if (err < 0)
3694 goto fail;
3695
3696 qemu_set_fd_handler2(fds[0], NULL, qemu_event_read, NULL,
3697 (void *)(unsigned long)fds[0]);
3698
3699 io_thread_fd = fds[1];
3700fail:
3701 close(fds[0]);
3702 close(fds[1]);
3703 return err;
3704}
3705#else
3706HANDLE qemu_event_handle;
3707
3708static void dummy_event_handler(void *opaque)
3709{
3710}
3711
3712static int qemu_event_init(void)
3713{
3714 qemu_event_handle = CreateEvent(NULL, FALSE, FALSE, NULL);
3715 if (!qemu_event_handle) {
3716 perror("Failed CreateEvent");
3717 return -1;
3718 }
3719 qemu_add_wait_object(qemu_event_handle, dummy_event_handler, NULL);
3fcf7b6b
AL
3720 return 0;
3721}
3722
50317c7f
AL
3723static void qemu_event_increment(void)
3724{
3725 SetEvent(qemu_event_handle);
3726}
3727#endif
3728
3729static int qemu_init_main_loop(void)
3730{
3731 return qemu_event_init();
3732}
3733
877cf882 3734#ifdef _WIN32
69d6451c 3735static void host_main_loop_wait(int *timeout)
56f3a5d0
AL
3736{
3737 int ret, ret2, i;
f331110f
FB
3738 PollingEntry *pe;
3739
c4b1fcc0 3740
f331110f
FB
3741 /* XXX: need to suppress polling by better using win32 events */
3742 ret = 0;
3743 for(pe = first_polling_entry; pe != NULL; pe = pe->next) {
3744 ret |= pe->func(pe->opaque);
3745 }
e6b1e558 3746 if (ret == 0) {
a18e524a
FB
3747 int err;
3748 WaitObjects *w = &wait_objects;
3b46e624 3749
56f3a5d0 3750 ret = WaitForMultipleObjects(w->num, w->events, FALSE, *timeout);
a18e524a
FB
3751 if (WAIT_OBJECT_0 + 0 <= ret && ret <= WAIT_OBJECT_0 + w->num - 1) {
3752 if (w->func[ret - WAIT_OBJECT_0])
3753 w->func[ret - WAIT_OBJECT_0](w->opaque[ret - WAIT_OBJECT_0]);
3b46e624 3754
5fafdf24 3755 /* Check for additional signaled events */
e6b1e558 3756 for(i = (ret - WAIT_OBJECT_0 + 1); i < w->num; i++) {
3b46e624 3757
e6b1e558
TS
3758 /* Check if event is signaled */
3759 ret2 = WaitForSingleObject(w->events[i], 0);
3760 if(ret2 == WAIT_OBJECT_0) {
3761 if (w->func[i])
3762 w->func[i](w->opaque[i]);
3763 } else if (ret2 == WAIT_TIMEOUT) {
3764 } else {
3765 err = GetLastError();
3766 fprintf(stderr, "WaitForSingleObject error %d %d\n", i, err);
3b46e624
TS
3767 }
3768 }
a18e524a
FB
3769 } else if (ret == WAIT_TIMEOUT) {
3770 } else {
3771 err = GetLastError();
e6b1e558 3772 fprintf(stderr, "WaitForMultipleObjects error %d %d\n", ret, err);
a18e524a 3773 }
f331110f 3774 }
56f3a5d0
AL
3775
3776 *timeout = 0;
3777}
3778#else
69d6451c 3779static void host_main_loop_wait(int *timeout)
56f3a5d0
AL
3780{
3781}
fd1dff4b 3782#endif
56f3a5d0
AL
3783
3784void main_loop_wait(int timeout)
3785{
3786 IOHandlerRecord *ioh;
3787 fd_set rfds, wfds, xfds;
3788 int ret, nfds;
3789 struct timeval tv;
3790
3791 qemu_bh_update_timeout(&timeout);
3792
3793 host_main_loop_wait(&timeout);
3794
fd1dff4b
FB
3795 /* poll any events */
3796 /* XXX: separate device handlers from system ones */
6abfbd79 3797 nfds = -1;
fd1dff4b
FB
3798 FD_ZERO(&rfds);
3799 FD_ZERO(&wfds);
e035649e 3800 FD_ZERO(&xfds);
fd1dff4b 3801 for(ioh = first_io_handler; ioh != NULL; ioh = ioh->next) {
cafffd40
TS
3802 if (ioh->deleted)
3803 continue;
fd1dff4b
FB
3804 if (ioh->fd_read &&
3805 (!ioh->fd_read_poll ||
3806 ioh->fd_read_poll(ioh->opaque) != 0)) {
3807 FD_SET(ioh->fd, &rfds);
3808 if (ioh->fd > nfds)
3809 nfds = ioh->fd;
3810 }
3811 if (ioh->fd_write) {
3812 FD_SET(ioh->fd, &wfds);
3813 if (ioh->fd > nfds)
3814 nfds = ioh->fd;
3815 }
3816 }
3b46e624 3817
56f3a5d0
AL
3818 tv.tv_sec = timeout / 1000;
3819 tv.tv_usec = (timeout % 1000) * 1000;
3820
e035649e 3821#if defined(CONFIG_SLIRP)
63a01ef8 3822 if (slirp_is_inited()) {
e035649e
FB
3823 slirp_select_fill(&nfds, &rfds, &wfds, &xfds);
3824 }
3825#endif
3826 ret = select(nfds + 1, &rfds, &wfds, &xfds, &tv);
fd1dff4b 3827 if (ret > 0) {
cafffd40
TS
3828 IOHandlerRecord **pioh;
3829
3830 for(ioh = first_io_handler; ioh != NULL; ioh = ioh->next) {
6ab43fdc 3831 if (!ioh->deleted && ioh->fd_read && FD_ISSET(ioh->fd, &rfds)) {
fd1dff4b 3832 ioh->fd_read(ioh->opaque);
7c9d8e07 3833 }
6ab43fdc 3834 if (!ioh->deleted && ioh->fd_write && FD_ISSET(ioh->fd, &wfds)) {
fd1dff4b 3835 ioh->fd_write(ioh->opaque);
c4b1fcc0 3836 }
b4608c04 3837 }
cafffd40
TS
3838
3839 /* remove deleted IO handlers */
3840 pioh = &first_io_handler;
3841 while (*pioh) {
3842 ioh = *pioh;
3843 if (ioh->deleted) {
3844 *pioh = ioh->next;
3845 qemu_free(ioh);
5fafdf24 3846 } else
cafffd40
TS
3847 pioh = &ioh->next;
3848 }
fd1dff4b 3849 }
c20709aa 3850#if defined(CONFIG_SLIRP)
63a01ef8 3851 if (slirp_is_inited()) {
e035649e
FB
3852 if (ret < 0) {
3853 FD_ZERO(&rfds);
3854 FD_ZERO(&wfds);
3855 FD_ZERO(&xfds);
c20709aa 3856 }
e035649e 3857 slirp_select_poll(&rfds, &wfds, &xfds);
fd1dff4b 3858 }
e035649e 3859#endif
b4608c04 3860
50317c7f
AL
3861 /* rearm timer, if not periodic */
3862 if (alarm_timer->flags & ALARM_FLAG_EXPIRED) {
3863 alarm_timer->flags &= ~ALARM_FLAG_EXPIRED;
3864 qemu_rearm_alarm_timer(alarm_timer);
3865 }
3866
357c692c
AL
3867 /* vm time timers */
3868 if (vm_running && likely(!(cur_cpu->singlestep_enabled & SSTEP_NOTIMER)))
3869 qemu_run_timers(&active_timers[QEMU_TIMER_VIRTUAL],
3870 qemu_get_clock(vm_clock));
3871
3872 /* real time timers */
3873 qemu_run_timers(&active_timers[QEMU_TIMER_REALTIME],
3874 qemu_get_clock(rt_clock));
3875
423f0742
PB
3876 /* Check bottom-halves last in case any of the earlier events triggered
3877 them. */
3878 qemu_bh_poll();
3b46e624 3879
5905b2e5
FB
3880}
3881
43b96858 3882static int qemu_cpu_exec(CPUState *env)
5905b2e5 3883{
43b96858 3884 int ret;
89bfc105
FB
3885#ifdef CONFIG_PROFILER
3886 int64_t ti;
3887#endif
5905b2e5 3888
89bfc105 3889#ifdef CONFIG_PROFILER
43b96858 3890 ti = profile_getclock();
89bfc105 3891#endif
43b96858
AL
3892 if (use_icount) {
3893 int64_t count;
3894 int decr;
3895 qemu_icount -= (env->icount_decr.u16.low + env->icount_extra);
3896 env->icount_decr.u16.low = 0;
3897 env->icount_extra = 0;
3898 count = qemu_next_deadline();
3899 count = (count + (1 << icount_time_shift) - 1)
3900 >> icount_time_shift;
3901 qemu_icount += count;
3902 decr = (count > 0xffff) ? 0xffff : count;
3903 count -= decr;
3904 env->icount_decr.u16.low = decr;
3905 env->icount_extra = count;
3906 }
3907 ret = cpu_exec(env);
89bfc105 3908#ifdef CONFIG_PROFILER
43b96858 3909 qemu_time += profile_getclock() - ti;
89bfc105 3910#endif
43b96858
AL
3911 if (use_icount) {
3912 /* Fold pending instructions back into the
3913 instruction counter, and clear the interrupt flag. */
3914 qemu_icount -= (env->icount_decr.u16.low
3915 + env->icount_extra);
3916 env->icount_decr.u32 = 0;
3917 env->icount_extra = 0;
3918 }
3919 return ret;
3920}
3921
3922static int cpu_has_work(CPUState *env)
3923{
3924 if (!env->halted)
3925 return 1;
3926 if (qemu_cpu_has_work(env))
3927 return 1;
3928 return 0;
3929}
3930
3931static int tcg_has_work(void)
3932{
3933 CPUState *env;
3934
3935 for (env = first_cpu; env != NULL; env = env->next_cpu)
3936 if (cpu_has_work(env))
3937 return 1;
3938 return 0;
3939}
3940
3941static int qemu_calculate_timeout(void)
3942{
3943 int timeout;
3944
3945 if (!vm_running)
3946 timeout = 5000;
3947 else if (tcg_has_work())
3948 timeout = 0;
3949 else if (!use_icount)
3950 timeout = 5000;
3951 else {
3952 /* XXX: use timeout computed from timers */
3953 int64_t add;
3954 int64_t delta;
3955 /* Advance virtual time to the next event. */
3956 if (use_icount == 1) {
3957 /* When not using an adaptive execution frequency
3958 we tend to get badly out of sync with real time,
3959 so just delay for a reasonable amount of time. */
3960 delta = 0;
3961 } else {
3962 delta = cpu_get_icount() - cpu_get_clock();
3963 }
3964 if (delta > 0) {
3965 /* If virtual time is ahead of real time then just
3966 wait for IO. */
3967 timeout = (delta / 1000000) + 1;
3968 } else {
3969 /* Wait for either IO to occur or the next
3970 timer event. */
3971 add = qemu_next_deadline();
3972 /* We advance the timer before checking for IO.
3973 Limit the amount we advance so that early IO
3974 activity won't get the guest too far ahead. */
3975 if (add > 10000000)
3976 add = 10000000;
3977 delta += add;
3978 add = (add + (1 << icount_time_shift) - 1)
3979 >> icount_time_shift;
3980 qemu_icount += add;
3981 timeout = delta / 1000000;
3982 if (timeout < 0)
3983 timeout = 0;
3984 }
3985 }
3986
3987 return timeout;
3988}
3989
3990static int vm_can_run(void)
3991{
3992 if (powerdown_requested)
3993 return 0;
3994 if (reset_requested)
3995 return 0;
3996 if (shutdown_requested)
3997 return 0;
3998 return 1;
3999}
4000
4001static void main_loop(void)
4002{
4003 int ret = 0;
4004#ifdef CONFIG_PROFILER
4005 int64_t ti;
4006#endif
4007
4008 for (;;) {
4009 do {
4010 if (next_cpu == NULL)
4011 next_cpu = first_cpu;
4012 for (; next_cpu != NULL; next_cpu = next_cpu->next_cpu) {
4013 CPUState *env = cur_cpu = next_cpu;
4014
4015 if (!vm_running)
15a76449 4016 break;
43b96858
AL
4017 if (timer_alarm_pending) {
4018 timer_alarm_pending = 0;
15a76449 4019 break;
b2f76161 4020 }
43b96858
AL
4021 ret = qemu_cpu_exec(env);
4022 if (ret == EXCP_DEBUG) {
4023 gdb_set_stop_cpu(env);
b2f76161 4024 break;
2e70f6ef 4025 }
98448f58 4026 }
89bfc105 4027#ifdef CONFIG_PROFILER
43b96858 4028 ti = profile_getclock();
89bfc105 4029#endif
43b96858 4030 main_loop_wait(qemu_calculate_timeout());
89bfc105 4031#ifdef CONFIG_PROFILER
43b96858 4032 dev_time += profile_getclock() - ti;
89bfc105 4033#endif
43b96858
AL
4034 } while (ret != EXCP_DEBUG && vm_can_run());
4035
4036 if (ret == EXCP_DEBUG)
4037 vm_stop(EXCP_DEBUG);
4038
4039 if (qemu_shutdown_requested()) {
4040 if (no_shutdown) {
4041 vm_stop(0);
4042 no_shutdown = 0;
4043 } else
4044 break;
4045 }
4046 if (qemu_reset_requested())
4047 qemu_system_reset();
4048 if (qemu_powerdown_requested())
4049 qemu_system_powerdown();
b4608c04
FB
4050 }
4051}
4052
9bd7e6d9
PB
4053static void version(void)
4054{
4a19f1ec 4055 printf("QEMU PC emulator version " QEMU_VERSION QEMU_PKGVERSION ", Copyright (c) 2003-2008 Fabrice Bellard\n");
9bd7e6d9
PB
4056}
4057
15f82208 4058static void help(int exitcode)
0824d6fc 4059{
9bd7e6d9
PB
4060 version();
4061 printf("usage: %s [options] [disk_image]\n"
0824d6fc 4062 "\n"
a20dd508 4063 "'disk_image' is a raw hard image image for IDE hard disk 0\n"
fc01f7e7 4064 "\n"
5824d651
BS
4065#define DEF(option, opt_arg, opt_enum, opt_help) \
4066 opt_help
4067#define DEFHEADING(text) stringify(text) "\n"
4068#include "qemu-options.h"
4069#undef DEF
4070#undef DEFHEADING
4071#undef GEN_DOCS
0824d6fc 4072 "\n"
82c643ff 4073 "During emulation, the following keys are useful:\n"
032a8c9e
FB
4074 "ctrl-alt-f toggle full screen\n"
4075 "ctrl-alt-n switch to virtual console 'n'\n"
4076 "ctrl-alt toggle mouse and keyboard grab\n"
82c643ff
FB
4077 "\n"
4078 "When using -nographic, press 'ctrl-a h' to get some help.\n"
4079 ,
0db63474 4080 "qemu",
a00bad7e 4081 DEFAULT_RAM_SIZE,
7c9d8e07 4082#ifndef _WIN32
a00bad7e 4083 DEFAULT_NETWORK_SCRIPT,
b46a8906 4084 DEFAULT_NETWORK_DOWN_SCRIPT,
7c9d8e07 4085#endif
6e44ba7f 4086 DEFAULT_GDBSTUB_PORT,
bce61846 4087 "/tmp/qemu.log");
15f82208 4088 exit(exitcode);
0824d6fc
FB
4089}
4090
cd6f1169
FB
4091#define HAS_ARG 0x0001
4092
4093enum {
5824d651
BS
4094#define DEF(option, opt_arg, opt_enum, opt_help) \
4095 opt_enum,
4096#define DEFHEADING(text)
4097#include "qemu-options.h"
4098#undef DEF
4099#undef DEFHEADING
4100#undef GEN_DOCS
cd6f1169
FB
4101};
4102
4103typedef struct QEMUOption {
4104 const char *name;
4105 int flags;
4106 int index;
4107} QEMUOption;
4108
dbed7e40 4109static const QEMUOption qemu_options[] = {
cd6f1169 4110 { "h", 0, QEMU_OPTION_h },
5824d651
BS
4111#define DEF(option, opt_arg, opt_enum, opt_help) \
4112 { option, opt_arg, opt_enum },
4113#define DEFHEADING(text)
4114#include "qemu-options.h"
4115#undef DEF
4116#undef DEFHEADING
4117#undef GEN_DOCS
cd6f1169 4118 { NULL },
fc01f7e7
FB
4119};
4120
1d14ffa9 4121#ifdef HAS_AUDIO
6a36d84e 4122struct soundhw soundhw[] = {
b00052e4 4123#ifdef HAS_AUDIO_CHOICE
4ce7ff6e 4124#if defined(TARGET_I386) || defined(TARGET_MIPS)
fd06c375
FB
4125 {
4126 "pcspk",
4127 "PC speaker",
4128 0,
4129 1,
4130 { .init_isa = pcspk_audio_init }
4131 },
4132#endif
4c9b53e3 4133
4134#ifdef CONFIG_SB16
6a36d84e
FB
4135 {
4136 "sb16",
4137 "Creative Sound Blaster 16",
4138 0,
4139 1,
4140 { .init_isa = SB16_init }
4141 },
4c9b53e3 4142#endif
6a36d84e 4143
cc53d26d 4144#ifdef CONFIG_CS4231A
4145 {
4146 "cs4231a",
4147 "CS4231A",
4148 0,
4149 1,
4150 { .init_isa = cs4231a_init }
4151 },
4152#endif
4153
1d14ffa9 4154#ifdef CONFIG_ADLIB
6a36d84e
FB
4155 {
4156 "adlib",
1d14ffa9 4157#ifdef HAS_YMF262
6a36d84e 4158 "Yamaha YMF262 (OPL3)",
1d14ffa9 4159#else
6a36d84e 4160 "Yamaha YM3812 (OPL2)",
1d14ffa9 4161#endif
6a36d84e
FB
4162 0,
4163 1,
4164 { .init_isa = Adlib_init }
4165 },
1d14ffa9 4166#endif
6a36d84e 4167
1d14ffa9 4168#ifdef CONFIG_GUS
6a36d84e
FB
4169 {
4170 "gus",
4171 "Gravis Ultrasound GF1",
4172 0,
4173 1,
4174 { .init_isa = GUS_init }
4175 },
1d14ffa9 4176#endif
6a36d84e 4177
4c9b53e3 4178#ifdef CONFIG_AC97
e5c9a13e
AZ
4179 {
4180 "ac97",
4181 "Intel 82801AA AC97 Audio",
4182 0,
4183 0,
4184 { .init_pci = ac97_init }
4185 },
4c9b53e3 4186#endif
e5c9a13e 4187
4c9b53e3 4188#ifdef CONFIG_ES1370
6a36d84e
FB
4189 {
4190 "es1370",
4191 "ENSONIQ AudioPCI ES1370",
4192 0,
4193 0,
4194 { .init_pci = es1370_init }
4195 },
b00052e4 4196#endif
6a36d84e 4197
4c9b53e3 4198#endif /* HAS_AUDIO_CHOICE */
4199
6a36d84e
FB
4200 { NULL, NULL, 0, 0, { NULL } }
4201};
4202
4203static void select_soundhw (const char *optarg)
4204{
4205 struct soundhw *c;
4206
4207 if (*optarg == '?') {
4208 show_valid_cards:
4209
4210 printf ("Valid sound card names (comma separated):\n");
4211 for (c = soundhw; c->name; ++c) {
4212 printf ("%-11s %s\n", c->name, c->descr);
4213 }
4214 printf ("\n-soundhw all will enable all of the above\n");
1d14ffa9
FB
4215 exit (*optarg != '?');
4216 }
4217 else {
6a36d84e 4218 size_t l;
1d14ffa9
FB
4219 const char *p;
4220 char *e;
4221 int bad_card = 0;
4222
6a36d84e
FB
4223 if (!strcmp (optarg, "all")) {
4224 for (c = soundhw; c->name; ++c) {
4225 c->enabled = 1;
4226 }
4227 return;
4228 }
1d14ffa9 4229
6a36d84e 4230 p = optarg;
1d14ffa9
FB
4231 while (*p) {
4232 e = strchr (p, ',');
4233 l = !e ? strlen (p) : (size_t) (e - p);
6a36d84e
FB
4234
4235 for (c = soundhw; c->name; ++c) {
4236 if (!strncmp (c->name, p, l)) {
4237 c->enabled = 1;
1d14ffa9
FB
4238 break;
4239 }
4240 }
6a36d84e
FB
4241
4242 if (!c->name) {
1d14ffa9
FB
4243 if (l > 80) {
4244 fprintf (stderr,
4245 "Unknown sound card name (too big to show)\n");
4246 }
4247 else {
4248 fprintf (stderr, "Unknown sound card name `%.*s'\n",
4249 (int) l, p);
4250 }
4251 bad_card = 1;
4252 }
4253 p += l + (e != NULL);
4254 }
4255
4256 if (bad_card)
4257 goto show_valid_cards;
4258 }
4259}
4260#endif
4261
3893c124 4262static void select_vgahw (const char *p)
4263{
4264 const char *opts;
4265
28b85ed8
AL
4266 cirrus_vga_enabled = 0;
4267 std_vga_enabled = 0;
4268 vmsvga_enabled = 0;
94909d9f 4269 xenfb_enabled = 0;
3893c124 4270 if (strstart(p, "std", &opts)) {
c2b3b41a 4271 std_vga_enabled = 1;
3893c124 4272 } else if (strstart(p, "cirrus", &opts)) {
4273 cirrus_vga_enabled = 1;
3893c124 4274 } else if (strstart(p, "vmware", &opts)) {
3893c124 4275 vmsvga_enabled = 1;
94909d9f
AL
4276 } else if (strstart(p, "xenfb", &opts)) {
4277 xenfb_enabled = 1;
28b85ed8 4278 } else if (!strstart(p, "none", &opts)) {
3893c124 4279 invalid_vga:
4280 fprintf(stderr, "Unknown vga type: %s\n", p);
4281 exit(1);
4282 }
cb5a7aa8 4283 while (*opts) {
4284 const char *nextopt;
4285
4286 if (strstart(opts, ",retrace=", &nextopt)) {
4287 opts = nextopt;
4288 if (strstart(opts, "dumb", &nextopt))
4289 vga_retrace_method = VGA_RETRACE_DUMB;
4290 else if (strstart(opts, "precise", &nextopt))
4291 vga_retrace_method = VGA_RETRACE_PRECISE;
4292 else goto invalid_vga;
4293 } else goto invalid_vga;
4294 opts = nextopt;
4295 }
3893c124 4296}
4297
3587d7e6
FB
4298#ifdef _WIN32
4299static BOOL WINAPI qemu_ctrl_handler(DWORD type)
4300{
4301 exit(STATUS_CONTROL_C_EXIT);
4302 return TRUE;
4303}
4304#endif
4305
c4be29ff 4306int qemu_uuid_parse(const char *str, uint8_t *uuid)
8fcb1b90
BS
4307{
4308 int ret;
4309
4310 if(strlen(str) != 36)
4311 return -1;
4312
4313 ret = sscanf(str, UUID_FMT, &uuid[0], &uuid[1], &uuid[2], &uuid[3],
4314 &uuid[4], &uuid[5], &uuid[6], &uuid[7], &uuid[8], &uuid[9],
4315 &uuid[10], &uuid[11], &uuid[12], &uuid[13], &uuid[14], &uuid[15]);
4316
4317 if(ret != 16)
4318 return -1;
4319
b6f6e3d3
AL
4320#ifdef TARGET_I386
4321 smbios_add_field(1, offsetof(struct smbios_type_1, uuid), 16, uuid);
4322#endif
4323
8fcb1b90
BS
4324 return 0;
4325}
4326
7c9d8e07 4327#define MAX_NET_CLIENTS 32
c20709aa 4328
5b08fc10
AL
4329#ifndef _WIN32
4330
4331static void termsig_handler(int signal)
4332{
4333 qemu_system_shutdown_request();
4334}
4335
6f9e3801 4336static void termsig_setup(void)
5b08fc10
AL
4337{
4338 struct sigaction act;
4339
4340 memset(&act, 0, sizeof(act));
4341 act.sa_handler = termsig_handler;
4342 sigaction(SIGINT, &act, NULL);
4343 sigaction(SIGHUP, &act, NULL);
4344 sigaction(SIGTERM, &act, NULL);
4345}
4346
4347#endif
4348
902b3d5c 4349int main(int argc, char **argv, char **envp)
0824d6fc 4350{
67b915a5 4351#ifdef CONFIG_GDBSTUB
59030a8c 4352 const char *gdbstub_dev = NULL;
67b915a5 4353#endif
28c5af54 4354 uint32_t boot_devices_bitmap = 0;
e4bcb14c 4355 int i;
28c5af54 4356 int snapshot, linux_boot, net_boot;
7f7f9873 4357 const char *initrd_filename;
a20dd508 4358 const char *kernel_filename, *kernel_cmdline;
28c5af54 4359 const char *boot_devices = "";
3023f332 4360 DisplayState *ds;
7d957bd8 4361 DisplayChangeListener *dcl;
46d4767d 4362 int cyls, heads, secs, translation;
fd5f393a 4363 const char *net_clients[MAX_NET_CLIENTS];
7c9d8e07 4364 int nb_net_clients;
dc72ac14
AZ
4365 const char *bt_opts[MAX_BT_CMDLINE];
4366 int nb_bt_opts;
e4bcb14c 4367 int hda_index;
cd6f1169
FB
4368 int optind;
4369 const char *r, *optarg;
4c621805 4370 CharDriverState *monitor_hd = NULL;
fd5f393a
PB
4371 const char *monitor_device;
4372 const char *serial_devices[MAX_SERIAL_PORTS];
8d11df9e 4373 int serial_device_index;
fd5f393a 4374 const char *parallel_devices[MAX_PARALLEL_PORTS];
6508fe59 4375 int parallel_device_index;
9ede2fde
AL
4376 const char *virtio_consoles[MAX_VIRTIO_CONSOLES];
4377 int virtio_console_index;
d63d307f 4378 const char *loadvm = NULL;
cc1daa40 4379 QEMUMachine *machine;
94fc95cd 4380 const char *cpu_model;
fd5f393a 4381 const char *usb_devices[MAX_USB_CMDLINE];
a594cfbf 4382 int usb_devices_index;
b9e82a59 4383#ifndef _WIN32
71e3ceb8 4384 int fds[2];
b9e82a59 4385#endif
26a5f13b 4386 int tb_size;
93815bc2 4387 const char *pid_file = NULL;
5bb7910a 4388 const char *incoming = NULL;
b9e82a59 4389#ifndef _WIN32
54042bcf
AL
4390 int fd = 0;
4391 struct passwd *pwd = NULL;
0858532e
AL
4392 const char *chroot_dir = NULL;
4393 const char *run_as = NULL;
b9e82a59 4394#endif
268a362c 4395 CPUState *env;
0bd48850 4396
902b3d5c 4397 qemu_cache_utils_init(envp);
4398
0bd48850 4399 LIST_INIT (&vm_change_state_head);
be995c27
FB
4400#ifndef _WIN32
4401 {
4402 struct sigaction act;
4403 sigfillset(&act.sa_mask);
4404 act.sa_flags = 0;
4405 act.sa_handler = SIG_IGN;
4406 sigaction(SIGPIPE, &act, NULL);
4407 }
3587d7e6
FB
4408#else
4409 SetConsoleCtrlHandler(qemu_ctrl_handler, TRUE);
a8e5ac33
FB
4410 /* Note: cpu_interrupt() is currently not SMP safe, so we force
4411 QEMU to run on a single CPU */
4412 {
4413 HANDLE h;
4414 DWORD mask, smask;
4415 int i;
4416 h = GetCurrentProcess();
4417 if (GetProcessAffinityMask(h, &mask, &smask)) {
4418 for(i = 0; i < 32; i++) {
4419 if (mask & (1 << i))
4420 break;
4421 }
4422 if (i != 32) {
4423 mask = 1 << i;
4424 SetProcessAffinityMask(h, mask);
4425 }
4426 }
4427 }
67b915a5 4428#endif
be995c27 4429
cc1daa40
FB
4430 register_machines();
4431 machine = first_machine;
94fc95cd 4432 cpu_model = NULL;
fc01f7e7 4433 initrd_filename = NULL;
4fc5d071 4434 ram_size = 0;
313aa567 4435 vga_ram_size = VGA_RAM_SIZE;
33e3963e 4436 snapshot = 0;
a20dd508 4437 nographic = 0;
4d3b6f6e 4438 curses = 0;
a20dd508
FB
4439 kernel_filename = NULL;
4440 kernel_cmdline = "";
c4b1fcc0 4441 cyls = heads = secs = 0;
46d4767d 4442 translation = BIOS_ATA_TRANSLATION_AUTO;
d47d13b9 4443 monitor_device = "vc:80Cx24C";
c4b1fcc0 4444
c75a823c 4445 serial_devices[0] = "vc:80Cx24C";
8d11df9e 4446 for(i = 1; i < MAX_SERIAL_PORTS; i++)
fd5f393a 4447 serial_devices[i] = NULL;
8d11df9e 4448 serial_device_index = 0;
3b46e624 4449
8290edda 4450 parallel_devices[0] = "vc:80Cx24C";
6508fe59 4451 for(i = 1; i < MAX_PARALLEL_PORTS; i++)
fd5f393a 4452 parallel_devices[i] = NULL;
6508fe59 4453 parallel_device_index = 0;
3b46e624 4454
1b8fc811 4455 for(i = 0; i < MAX_VIRTIO_CONSOLES; i++)
9ede2fde
AL
4456 virtio_consoles[i] = NULL;
4457 virtio_console_index = 0;
4458
268a362c
AL
4459 for (i = 0; i < MAX_NODES; i++) {
4460 node_mem[i] = 0;
4461 node_cpumask[i] = 0;
4462 }
4463
a594cfbf 4464 usb_devices_index = 0;
3b46e624 4465
7c9d8e07 4466 nb_net_clients = 0;
dc72ac14 4467 nb_bt_opts = 0;
e4bcb14c
TS
4468 nb_drives = 0;
4469 nb_drives_opt = 0;
268a362c 4470 nb_numa_nodes = 0;
e4bcb14c 4471 hda_index = -1;
7c9d8e07
FB
4472
4473 nb_nics = 0;
3b46e624 4474
26a5f13b 4475 tb_size = 0;
41bd639b
BS
4476 autostart= 1;
4477
cd6f1169 4478 optind = 1;
0824d6fc 4479 for(;;) {
cd6f1169 4480 if (optind >= argc)
0824d6fc 4481 break;
cd6f1169
FB
4482 r = argv[optind];
4483 if (r[0] != '-') {
609497ab 4484 hda_index = drive_add(argv[optind++], HD_ALIAS, 0);
cd6f1169
FB
4485 } else {
4486 const QEMUOption *popt;
4487
4488 optind++;
dff5efc8
PB
4489 /* Treat --foo the same as -foo. */
4490 if (r[1] == '-')
4491 r++;
cd6f1169
FB
4492 popt = qemu_options;
4493 for(;;) {
4494 if (!popt->name) {
5fafdf24 4495 fprintf(stderr, "%s: invalid option -- '%s'\n",
cd6f1169
FB
4496 argv[0], r);
4497 exit(1);
4498 }
4499 if (!strcmp(popt->name, r + 1))
4500 break;
4501 popt++;
4502 }
4503 if (popt->flags & HAS_ARG) {
4504 if (optind >= argc) {
4505 fprintf(stderr, "%s: option '%s' requires an argument\n",
4506 argv[0], r);
4507 exit(1);
4508 }
4509 optarg = argv[optind++];
4510 } else {
4511 optarg = NULL;
4512 }
4513
4514 switch(popt->index) {
cc1daa40
FB
4515 case QEMU_OPTION_M:
4516 machine = find_machine(optarg);
4517 if (!machine) {
4518 QEMUMachine *m;
4519 printf("Supported machines are:\n");
4520 for(m = first_machine; m != NULL; m = m->next) {
4521 printf("%-10s %s%s\n",
5fafdf24 4522 m->name, m->desc,
cc1daa40
FB
4523 m == first_machine ? " (default)" : "");
4524 }
15f82208 4525 exit(*optarg != '?');
cc1daa40
FB
4526 }
4527 break;
94fc95cd
JM
4528 case QEMU_OPTION_cpu:
4529 /* hw initialization will check this */
15f82208 4530 if (*optarg == '?') {
c732abe2
JM
4531/* XXX: implement xxx_cpu_list for targets that still miss it */
4532#if defined(cpu_list)
4533 cpu_list(stdout, &fprintf);
94fc95cd 4534#endif
15f82208 4535 exit(0);
94fc95cd
JM
4536 } else {
4537 cpu_model = optarg;
4538 }
4539 break;
cd6f1169 4540 case QEMU_OPTION_initrd:
fc01f7e7
FB
4541 initrd_filename = optarg;
4542 break;
cd6f1169 4543 case QEMU_OPTION_hda:
e4bcb14c 4544 if (cyls == 0)
609497ab 4545 hda_index = drive_add(optarg, HD_ALIAS, 0);
e4bcb14c 4546 else
609497ab 4547 hda_index = drive_add(optarg, HD_ALIAS
e4bcb14c 4548 ",cyls=%d,heads=%d,secs=%d%s",
609497ab 4549 0, cyls, heads, secs,
e4bcb14c
TS
4550 translation == BIOS_ATA_TRANSLATION_LBA ?
4551 ",trans=lba" :
4552 translation == BIOS_ATA_TRANSLATION_NONE ?
4553 ",trans=none" : "");
4554 break;
cd6f1169 4555 case QEMU_OPTION_hdb:
cc1daa40
FB
4556 case QEMU_OPTION_hdc:
4557 case QEMU_OPTION_hdd:
609497ab 4558 drive_add(optarg, HD_ALIAS, popt->index - QEMU_OPTION_hda);
fc01f7e7 4559 break;
e4bcb14c 4560 case QEMU_OPTION_drive:
609497ab 4561 drive_add(NULL, "%s", optarg);
e4bcb14c 4562 break;
3e3d5815 4563 case QEMU_OPTION_mtdblock:
609497ab 4564 drive_add(optarg, MTD_ALIAS);
3e3d5815 4565 break;
a1bb27b1 4566 case QEMU_OPTION_sd:
609497ab 4567 drive_add(optarg, SD_ALIAS);
a1bb27b1 4568 break;
86f55663 4569 case QEMU_OPTION_pflash:
609497ab 4570 drive_add(optarg, PFLASH_ALIAS);
86f55663 4571 break;
cd6f1169 4572 case QEMU_OPTION_snapshot:
33e3963e
FB
4573 snapshot = 1;
4574 break;
cd6f1169 4575 case QEMU_OPTION_hdachs:
330d0414 4576 {
330d0414
FB
4577 const char *p;
4578 p = optarg;
4579 cyls = strtol(p, (char **)&p, 0);
46d4767d
FB
4580 if (cyls < 1 || cyls > 16383)
4581 goto chs_fail;
330d0414
FB
4582 if (*p != ',')
4583 goto chs_fail;
4584 p++;
4585 heads = strtol(p, (char **)&p, 0);
46d4767d
FB
4586 if (heads < 1 || heads > 16)
4587 goto chs_fail;
330d0414
FB
4588 if (*p != ',')
4589 goto chs_fail;
4590 p++;
4591 secs = strtol(p, (char **)&p, 0);
46d4767d
FB
4592 if (secs < 1 || secs > 63)
4593 goto chs_fail;
4594 if (*p == ',') {
4595 p++;
4596 if (!strcmp(p, "none"))
4597 translation = BIOS_ATA_TRANSLATION_NONE;
4598 else if (!strcmp(p, "lba"))
4599 translation = BIOS_ATA_TRANSLATION_LBA;
4600 else if (!strcmp(p, "auto"))
4601 translation = BIOS_ATA_TRANSLATION_AUTO;
4602 else
4603 goto chs_fail;
4604 } else if (*p != '\0') {
c4b1fcc0 4605 chs_fail:
46d4767d
FB
4606 fprintf(stderr, "qemu: invalid physical CHS format\n");
4607 exit(1);
c4b1fcc0 4608 }
e4bcb14c 4609 if (hda_index != -1)
609497ab
AZ
4610 snprintf(drives_opt[hda_index].opt,
4611 sizeof(drives_opt[hda_index].opt),
4612 HD_ALIAS ",cyls=%d,heads=%d,secs=%d%s",
4613 0, cyls, heads, secs,
e4bcb14c
TS
4614 translation == BIOS_ATA_TRANSLATION_LBA ?
4615 ",trans=lba" :
4616 translation == BIOS_ATA_TRANSLATION_NONE ?
4617 ",trans=none" : "");
330d0414
FB
4618 }
4619 break;
268a362c
AL
4620 case QEMU_OPTION_numa:
4621 if (nb_numa_nodes >= MAX_NODES) {
4622 fprintf(stderr, "qemu: too many NUMA nodes\n");
4623 exit(1);
4624 }
4625 numa_add(optarg);
4626 break;
cd6f1169 4627 case QEMU_OPTION_nographic:
a20dd508
FB
4628 nographic = 1;
4629 break;
4d3b6f6e
AZ
4630#ifdef CONFIG_CURSES
4631 case QEMU_OPTION_curses:
4632 curses = 1;
4633 break;
4634#endif
a171fe39
AZ
4635 case QEMU_OPTION_portrait:
4636 graphic_rotate = 1;
4637 break;
cd6f1169 4638 case QEMU_OPTION_kernel:
a20dd508
FB
4639 kernel_filename = optarg;
4640 break;
cd6f1169 4641 case QEMU_OPTION_append:
a20dd508 4642 kernel_cmdline = optarg;
313aa567 4643 break;
cd6f1169 4644 case QEMU_OPTION_cdrom:
609497ab 4645 drive_add(optarg, CDROM_ALIAS);
36b486bb 4646 break;
cd6f1169 4647 case QEMU_OPTION_boot:
28c5af54
JM
4648 boot_devices = optarg;
4649 /* We just do some generic consistency checks */
4650 {
4651 /* Could easily be extended to 64 devices if needed */
60fe76f3 4652 const char *p;
28c5af54
JM
4653
4654 boot_devices_bitmap = 0;
4655 for (p = boot_devices; *p != '\0'; p++) {
4656 /* Allowed boot devices are:
4657 * a b : floppy disk drives
4658 * c ... f : IDE disk drives
4659 * g ... m : machine implementation dependant drives
4660 * n ... p : network devices
4661 * It's up to each machine implementation to check
4662 * if the given boot devices match the actual hardware
4663 * implementation and firmware features.
4664 */
4665 if (*p < 'a' || *p > 'q') {
4666 fprintf(stderr, "Invalid boot device '%c'\n", *p);
4667 exit(1);
4668 }
4669 if (boot_devices_bitmap & (1 << (*p - 'a'))) {
4670 fprintf(stderr,
4671 "Boot device '%c' was given twice\n",*p);
4672 exit(1);
4673 }
4674 boot_devices_bitmap |= 1 << (*p - 'a');
4675 }
36b486bb
FB
4676 }
4677 break;
cd6f1169 4678 case QEMU_OPTION_fda:
cd6f1169 4679 case QEMU_OPTION_fdb:
609497ab 4680 drive_add(optarg, FD_ALIAS, popt->index - QEMU_OPTION_fda);
c45886db 4681 break;
52ca8d6a
FB
4682#ifdef TARGET_I386
4683 case QEMU_OPTION_no_fd_bootchk:
4684 fd_bootchk = 0;
4685 break;
4686#endif
7c9d8e07
FB
4687 case QEMU_OPTION_net:
4688 if (nb_net_clients >= MAX_NET_CLIENTS) {
4689 fprintf(stderr, "qemu: too many network clients\n");
c4b1fcc0
FB
4690 exit(1);
4691 }
fd5f393a 4692 net_clients[nb_net_clients] = optarg;
7c9d8e07 4693 nb_net_clients++;
702c651c 4694 break;
c7f74643
FB
4695#ifdef CONFIG_SLIRP
4696 case QEMU_OPTION_tftp:
c7f74643 4697 tftp_prefix = optarg;
9bf05444 4698 break;
47d5d01a
TS
4699 case QEMU_OPTION_bootp:
4700 bootp_filename = optarg;
4701 break;
c94c8d64 4702#ifndef _WIN32
9d728e8c
FB
4703 case QEMU_OPTION_smb:
4704 net_slirp_smb(optarg);
4705 break;
c94c8d64 4706#endif
9bf05444 4707 case QEMU_OPTION_redir:
d4ebe193 4708 net_slirp_redir(NULL, optarg);
9bf05444 4709 break;
c7f74643 4710#endif
dc72ac14
AZ
4711 case QEMU_OPTION_bt:
4712 if (nb_bt_opts >= MAX_BT_CMDLINE) {
4713 fprintf(stderr, "qemu: too many bluetooth options\n");
4714 exit(1);
4715 }
4716 bt_opts[nb_bt_opts++] = optarg;
4717 break;
1d14ffa9 4718#ifdef HAS_AUDIO
1d14ffa9
FB
4719 case QEMU_OPTION_audio_help:
4720 AUD_help ();
4721 exit (0);
4722 break;
4723 case QEMU_OPTION_soundhw:
4724 select_soundhw (optarg);
4725 break;
4726#endif
cd6f1169 4727 case QEMU_OPTION_h:
15f82208 4728 help(0);
cd6f1169 4729 break;
9bd7e6d9
PB
4730 case QEMU_OPTION_version:
4731 version();
4732 exit(0);
4733 break;
00f82b8a
AJ
4734 case QEMU_OPTION_m: {
4735 uint64_t value;
4736 char *ptr;
4737
4738 value = strtoul(optarg, &ptr, 10);
4739 switch (*ptr) {
4740 case 0: case 'M': case 'm':
4741 value <<= 20;
4742 break;
4743 case 'G': case 'g':
4744 value <<= 30;
4745 break;
4746 default:
4747 fprintf(stderr, "qemu: invalid ram size: %s\n", optarg);
cd6f1169
FB
4748 exit(1);
4749 }
00f82b8a
AJ
4750
4751 /* On 32-bit hosts, QEMU is limited by virtual address space */
4752 if (value > (2047 << 20)
640f42e4 4753#ifndef CONFIG_KQEMU
00f82b8a
AJ
4754 && HOST_LONG_BITS == 32
4755#endif
4756 ) {
4757 fprintf(stderr, "qemu: at most 2047 MB RAM can be simulated\n");
4758 exit(1);
4759 }
4760 if (value != (uint64_t)(ram_addr_t)value) {
4761 fprintf(stderr, "qemu: ram size too large\n");
4762 exit(1);
4763 }
4764 ram_size = value;
cd6f1169 4765 break;
00f82b8a 4766 }
cd6f1169
FB
4767 case QEMU_OPTION_d:
4768 {
4769 int mask;
c7cd6a37 4770 const CPULogItem *item;
3b46e624 4771
cd6f1169
FB
4772 mask = cpu_str_to_log_mask(optarg);
4773 if (!mask) {
4774 printf("Log items (comma separated):\n");
f193c797
FB
4775 for(item = cpu_log_items; item->mask != 0; item++) {
4776 printf("%-10s %s\n", item->name, item->help);
4777 }
4778 exit(1);
cd6f1169
FB
4779 }
4780 cpu_set_log(mask);
f193c797 4781 }
cd6f1169 4782 break;
67b915a5 4783#ifdef CONFIG_GDBSTUB
cd6f1169 4784 case QEMU_OPTION_s:
59030a8c 4785 gdbstub_dev = "tcp::" DEFAULT_GDBSTUB_PORT;
cd6f1169 4786 break;
59030a8c
AL
4787 case QEMU_OPTION_gdb:
4788 gdbstub_dev = optarg;
cd6f1169 4789 break;
67b915a5 4790#endif
cd6f1169
FB
4791 case QEMU_OPTION_L:
4792 bios_dir = optarg;
4793 break;
1192dad8
JM
4794 case QEMU_OPTION_bios:
4795 bios_name = optarg;
4796 break;
1b530a6d
AJ
4797 case QEMU_OPTION_singlestep:
4798 singlestep = 1;
4799 break;
cd6f1169 4800 case QEMU_OPTION_S:
3c07f8e8 4801 autostart = 0;
cd6f1169 4802 break;
5824d651 4803#ifndef _WIN32
3d11d0eb
FB
4804 case QEMU_OPTION_k:
4805 keyboard_layout = optarg;
4806 break;
5824d651 4807#endif
ee22c2f7
FB
4808 case QEMU_OPTION_localtime:
4809 rtc_utc = 0;
4810 break;
3893c124 4811 case QEMU_OPTION_vga:
4812 select_vgahw (optarg);
1bfe856e 4813 break;
5824d651 4814#if defined(TARGET_PPC) || defined(TARGET_SPARC)
e9b137c2
FB
4815 case QEMU_OPTION_g:
4816 {
4817 const char *p;
4818 int w, h, depth;
4819 p = optarg;
4820 w = strtol(p, (char **)&p, 10);
4821 if (w <= 0) {
4822 graphic_error:
4823 fprintf(stderr, "qemu: invalid resolution or depth\n");
4824 exit(1);
4825 }
4826 if (*p != 'x')
4827 goto graphic_error;
4828 p++;
4829 h = strtol(p, (char **)&p, 10);
4830 if (h <= 0)
4831 goto graphic_error;
4832 if (*p == 'x') {
4833 p++;
4834 depth = strtol(p, (char **)&p, 10);
5fafdf24 4835 if (depth != 8 && depth != 15 && depth != 16 &&
e9b137c2
FB
4836 depth != 24 && depth != 32)
4837 goto graphic_error;
4838 } else if (*p == '\0') {
4839 depth = graphic_depth;
4840 } else {
4841 goto graphic_error;
4842 }
3b46e624 4843
e9b137c2
FB
4844 graphic_width = w;
4845 graphic_height = h;
4846 graphic_depth = depth;
4847 }
4848 break;
5824d651 4849#endif
20d8a3ed
TS
4850 case QEMU_OPTION_echr:
4851 {
4852 char *r;
4853 term_escape_char = strtol(optarg, &r, 0);
4854 if (r == optarg)
4855 printf("Bad argument to echr\n");
4856 break;
4857 }
82c643ff 4858 case QEMU_OPTION_monitor:
fd5f393a 4859 monitor_device = optarg;
82c643ff
FB
4860 break;
4861 case QEMU_OPTION_serial:
8d11df9e
FB
4862 if (serial_device_index >= MAX_SERIAL_PORTS) {
4863 fprintf(stderr, "qemu: too many serial ports\n");
4864 exit(1);
4865 }
fd5f393a 4866 serial_devices[serial_device_index] = optarg;
8d11df9e 4867 serial_device_index++;
82c643ff 4868 break;
51ecf136
AL
4869 case QEMU_OPTION_virtiocon:
4870 if (virtio_console_index >= MAX_VIRTIO_CONSOLES) {
4871 fprintf(stderr, "qemu: too many virtio consoles\n");
4872 exit(1);
4873 }
4874 virtio_consoles[virtio_console_index] = optarg;
4875 virtio_console_index++;
4876 break;
6508fe59
FB
4877 case QEMU_OPTION_parallel:
4878 if (parallel_device_index >= MAX_PARALLEL_PORTS) {
4879 fprintf(stderr, "qemu: too many parallel ports\n");
4880 exit(1);
4881 }
fd5f393a 4882 parallel_devices[parallel_device_index] = optarg;
6508fe59
FB
4883 parallel_device_index++;
4884 break;
d63d307f
FB
4885 case QEMU_OPTION_loadvm:
4886 loadvm = optarg;
4887 break;
4888 case QEMU_OPTION_full_screen:
4889 full_screen = 1;
4890 break;
667accab 4891#ifdef CONFIG_SDL
43523e93
TS
4892 case QEMU_OPTION_no_frame:
4893 no_frame = 1;
4894 break;
3780e197
TS
4895 case QEMU_OPTION_alt_grab:
4896 alt_grab = 1;
4897 break;
667accab
TS
4898 case QEMU_OPTION_no_quit:
4899 no_quit = 1;
4900 break;
7d957bd8
AL
4901 case QEMU_OPTION_sdl:
4902 sdl = 1;
4903 break;
667accab 4904#endif
f7cce898 4905 case QEMU_OPTION_pidfile:
93815bc2 4906 pid_file = optarg;
f7cce898 4907 break;
a09db21f
FB
4908#ifdef TARGET_I386
4909 case QEMU_OPTION_win2k_hack:
4910 win2k_install_hack = 1;
4911 break;
73822ec8
AL
4912 case QEMU_OPTION_rtc_td_hack:
4913 rtc_td_hack = 1;
4914 break;
8a92ea2f
AL
4915 case QEMU_OPTION_acpitable:
4916 if(acpi_table_add(optarg) < 0) {
4917 fprintf(stderr, "Wrong acpi table provided\n");
4918 exit(1);
4919 }
4920 break;
b6f6e3d3
AL
4921 case QEMU_OPTION_smbios:
4922 if(smbios_entry_add(optarg) < 0) {
4923 fprintf(stderr, "Wrong smbios provided\n");
4924 exit(1);
4925 }
4926 break;
a09db21f 4927#endif
640f42e4 4928#ifdef CONFIG_KQEMU
d993e026
FB
4929 case QEMU_OPTION_no_kqemu:
4930 kqemu_allowed = 0;
4931 break;
89bfc105
FB
4932 case QEMU_OPTION_kernel_kqemu:
4933 kqemu_allowed = 2;
4934 break;
7ba1e619
AL
4935#endif
4936#ifdef CONFIG_KVM
4937 case QEMU_OPTION_enable_kvm:
4938 kvm_allowed = 1;
640f42e4 4939#ifdef CONFIG_KQEMU
7ba1e619
AL
4940 kqemu_allowed = 0;
4941#endif
4942 break;
d993e026 4943#endif
bb36d470
FB
4944 case QEMU_OPTION_usb:
4945 usb_enabled = 1;
4946 break;
a594cfbf
FB
4947 case QEMU_OPTION_usbdevice:
4948 usb_enabled = 1;
0d92ed30 4949 if (usb_devices_index >= MAX_USB_CMDLINE) {
a594cfbf
FB
4950 fprintf(stderr, "Too many USB devices\n");
4951 exit(1);
4952 }
fd5f393a 4953 usb_devices[usb_devices_index] = optarg;
a594cfbf
FB
4954 usb_devices_index++;
4955 break;
6a00d601
FB
4956 case QEMU_OPTION_smp:
4957 smp_cpus = atoi(optarg);
b2097003 4958 if (smp_cpus < 1) {
6a00d601
FB
4959 fprintf(stderr, "Invalid number of CPUs\n");
4960 exit(1);
4961 }
4962 break;
24236869 4963 case QEMU_OPTION_vnc:
73fc9742 4964 vnc_display = optarg;
24236869 4965 break;
5824d651 4966#ifdef TARGET_I386
6515b203
FB
4967 case QEMU_OPTION_no_acpi:
4968 acpi_enabled = 0;
4969 break;
16b29ae1
AL
4970 case QEMU_OPTION_no_hpet:
4971 no_hpet = 1;
4972 break;
5824d651 4973#endif
d1beab82
FB
4974 case QEMU_OPTION_no_reboot:
4975 no_reboot = 1;
4976 break;
b2f76161
AJ
4977 case QEMU_OPTION_no_shutdown:
4978 no_shutdown = 1;
4979 break;
9467cd46
AZ
4980 case QEMU_OPTION_show_cursor:
4981 cursor_hide = 0;
4982 break;
8fcb1b90
BS
4983 case QEMU_OPTION_uuid:
4984 if(qemu_uuid_parse(optarg, qemu_uuid) < 0) {
4985 fprintf(stderr, "Fail to parse UUID string."
4986 " Wrong format.\n");
4987 exit(1);
4988 }
4989 break;
5824d651 4990#ifndef _WIN32
71e3ceb8
TS
4991 case QEMU_OPTION_daemonize:
4992 daemonize = 1;
4993 break;
5824d651 4994#endif
9ae02555
TS
4995 case QEMU_OPTION_option_rom:
4996 if (nb_option_roms >= MAX_OPTION_ROMS) {
4997 fprintf(stderr, "Too many option ROMs\n");
4998 exit(1);
4999 }
5000 option_rom[nb_option_roms] = optarg;
5001 nb_option_roms++;
5002 break;
5824d651 5003#if defined(TARGET_ARM) || defined(TARGET_M68K)
8e71621f
PB
5004 case QEMU_OPTION_semihosting:
5005 semihosting_enabled = 1;
5006 break;
5824d651 5007#endif
c35734b2
TS
5008 case QEMU_OPTION_name:
5009 qemu_name = optarg;
5010 break;
95efd11c 5011#if defined(TARGET_SPARC) || defined(TARGET_PPC)
66508601
BS
5012 case QEMU_OPTION_prom_env:
5013 if (nb_prom_envs >= MAX_PROM_ENVS) {
5014 fprintf(stderr, "Too many prom variables\n");
5015 exit(1);
5016 }
5017 prom_envs[nb_prom_envs] = optarg;
5018 nb_prom_envs++;
5019 break;
2b8f2d41
AZ
5020#endif
5021#ifdef TARGET_ARM
5022 case QEMU_OPTION_old_param:
5023 old_param = 1;
05ebd537 5024 break;
66508601 5025#endif
f3dcfada
TS
5026 case QEMU_OPTION_clock:
5027 configure_alarms(optarg);
5028 break;
7e0af5d0
FB
5029 case QEMU_OPTION_startdate:
5030 {
5031 struct tm tm;
f6503059 5032 time_t rtc_start_date;
7e0af5d0 5033 if (!strcmp(optarg, "now")) {
f6503059 5034 rtc_date_offset = -1;
7e0af5d0
FB
5035 } else {
5036 if (sscanf(optarg, "%d-%d-%dT%d:%d:%d",
5037 &tm.tm_year,
5038 &tm.tm_mon,
5039 &tm.tm_mday,
5040 &tm.tm_hour,
5041 &tm.tm_min,
5042 &tm.tm_sec) == 6) {
5043 /* OK */
5044 } else if (sscanf(optarg, "%d-%d-%d",
5045 &tm.tm_year,
5046 &tm.tm_mon,
5047 &tm.tm_mday) == 3) {
5048 tm.tm_hour = 0;
5049 tm.tm_min = 0;
5050 tm.tm_sec = 0;
5051 } else {
5052 goto date_fail;
5053 }
5054 tm.tm_year -= 1900;
5055 tm.tm_mon--;
3c6b2088 5056 rtc_start_date = mktimegm(&tm);
7e0af5d0
FB
5057 if (rtc_start_date == -1) {
5058 date_fail:
5059 fprintf(stderr, "Invalid date format. Valid format are:\n"
5060 "'now' or '2006-06-17T16:01:21' or '2006-06-17'\n");
5061 exit(1);
5062 }
f6503059 5063 rtc_date_offset = time(NULL) - rtc_start_date;
7e0af5d0
FB
5064 }
5065 }
5066 break;
26a5f13b
FB
5067 case QEMU_OPTION_tb_size:
5068 tb_size = strtol(optarg, NULL, 0);
5069 if (tb_size < 0)
5070 tb_size = 0;
5071 break;
2e70f6ef
PB
5072 case QEMU_OPTION_icount:
5073 use_icount = 1;
5074 if (strcmp(optarg, "auto") == 0) {
5075 icount_time_shift = -1;
5076 } else {
5077 icount_time_shift = strtol(optarg, NULL, 0);
5078 }
5079 break;
5bb7910a
AL
5080 case QEMU_OPTION_incoming:
5081 incoming = optarg;
5082 break;
5824d651 5083#ifndef _WIN32
0858532e
AL
5084 case QEMU_OPTION_chroot:
5085 chroot_dir = optarg;
5086 break;
5087 case QEMU_OPTION_runas:
5088 run_as = optarg;
5089 break;
e37630ca
AL
5090#endif
5091#ifdef CONFIG_XEN
5092 case QEMU_OPTION_xen_domid:
5093 xen_domid = atoi(optarg);
5094 break;
5095 case QEMU_OPTION_xen_create:
5096 xen_mode = XEN_CREATE;
5097 break;
5098 case QEMU_OPTION_xen_attach:
5099 xen_mode = XEN_ATTACH;
5100 break;
5824d651 5101#endif
cd6f1169 5102 }
0824d6fc
FB
5103 }
5104 }
330d0414 5105
640f42e4 5106#if defined(CONFIG_KVM) && defined(CONFIG_KQEMU)
7ba1e619
AL
5107 if (kvm_allowed && kqemu_allowed) {
5108 fprintf(stderr,
5109 "You can not enable both KVM and kqemu at the same time\n");
5110 exit(1);
5111 }
5112#endif
5113
3d878caa 5114 machine->max_cpus = machine->max_cpus ?: 1; /* Default to UP */
b2097003
AL
5115 if (smp_cpus > machine->max_cpus) {
5116 fprintf(stderr, "Number of SMP cpus requested (%d), exceeds max cpus "
5117 "supported by machine `%s' (%d)\n", smp_cpus, machine->name,
5118 machine->max_cpus);
5119 exit(1);
5120 }
5121
bc0129d9
AL
5122 if (nographic) {
5123 if (serial_device_index == 0)
5124 serial_devices[0] = "stdio";
5125 if (parallel_device_index == 0)
5126 parallel_devices[0] = "null";
5127 if (strncmp(monitor_device, "vc", 2) == 0)
5128 monitor_device = "stdio";
5129 }
5130
71e3ceb8 5131#ifndef _WIN32
71e3ceb8
TS
5132 if (daemonize) {
5133 pid_t pid;
5134
5135 if (pipe(fds) == -1)
5136 exit(1);
5137
5138 pid = fork();
5139 if (pid > 0) {
5140 uint8_t status;
5141 ssize_t len;
5142
5143 close(fds[1]);
5144
5145 again:
93815bc2
TS
5146 len = read(fds[0], &status, 1);
5147 if (len == -1 && (errno == EINTR))
5148 goto again;
5149
5150 if (len != 1)
5151 exit(1);
5152 else if (status == 1) {
5153 fprintf(stderr, "Could not acquire pidfile\n");
5154 exit(1);
5155 } else
5156 exit(0);
71e3ceb8 5157 } else if (pid < 0)
93815bc2 5158 exit(1);
71e3ceb8
TS
5159
5160 setsid();
5161
5162 pid = fork();
5163 if (pid > 0)
5164 exit(0);
5165 else if (pid < 0)
5166 exit(1);
5167
5168 umask(027);
71e3ceb8
TS
5169
5170 signal(SIGTSTP, SIG_IGN);
5171 signal(SIGTTOU, SIG_IGN);
5172 signal(SIGTTIN, SIG_IGN);
5173 }
71e3ceb8 5174
aa26bb2d 5175 if (pid_file && qemu_create_pidfile(pid_file) != 0) {
93815bc2
TS
5176 if (daemonize) {
5177 uint8_t status = 1;
5178 write(fds[1], &status, 1);
5179 } else
5180 fprintf(stderr, "Could not acquire pid file\n");
5181 exit(1);
5182 }
b9e82a59 5183#endif
93815bc2 5184
640f42e4 5185#ifdef CONFIG_KQEMU
ff3fbb30
FB
5186 if (smp_cpus > 1)
5187 kqemu_allowed = 0;
5188#endif
3fcf7b6b
AL
5189 if (qemu_init_main_loop()) {
5190 fprintf(stderr, "qemu_init_main_loop failed\n");
5191 exit(1);
5192 }
a20dd508 5193 linux_boot = (kernel_filename != NULL);
7317b8ca 5194 net_boot = (boot_devices_bitmap >> ('n' - 'a')) & 0xF;
6c41b272 5195
f8d39c01
TS
5196 if (!linux_boot && *kernel_cmdline != '\0') {
5197 fprintf(stderr, "-append only allowed with -kernel option\n");
5198 exit(1);
5199 }
5200
5201 if (!linux_boot && initrd_filename != NULL) {
5202 fprintf(stderr, "-initrd only allowed with -kernel option\n");
5203 exit(1);
5204 }
5205
96d30e48 5206 /* boot to floppy or the default cd if no hard disk defined yet */
28c5af54 5207 if (!boot_devices[0]) {
e4bcb14c 5208 boot_devices = "cad";
96d30e48 5209 }
b118d61e 5210 setvbuf(stdout, NULL, _IOLBF, 0);
3b46e624 5211
634fce96 5212 init_timers();
7183b4b4
AL
5213 if (init_timer_alarm() < 0) {
5214 fprintf(stderr, "could not initialize alarm timer\n");
5215 exit(1);
5216 }
2e70f6ef
PB
5217 if (use_icount && icount_time_shift < 0) {
5218 use_icount = 2;
5219 /* 125MIPS seems a reasonable initial guess at the guest speed.
5220 It will be corrected fairly quickly anyway. */
5221 icount_time_shift = 3;
5222 init_icount_adjust();
5223 }
634fce96 5224
fd1dff4b
FB
5225#ifdef _WIN32
5226 socket_init();
5227#endif
5228
7c9d8e07
FB
5229 /* init network clients */
5230 if (nb_net_clients == 0) {
5231 /* if no clients, we use a default config */
f441b28b
AL
5232 net_clients[nb_net_clients++] = "nic";
5233#ifdef CONFIG_SLIRP
5234 net_clients[nb_net_clients++] = "user";
5235#endif
c20709aa
FB
5236 }
5237
7c9d8e07 5238 for(i = 0;i < nb_net_clients; i++) {
9ad97e65 5239 if (net_client_parse(net_clients[i]) < 0)
7c9d8e07 5240 exit(1);
702c651c 5241 }
63a01ef8 5242 net_client_check();
f1510b2c 5243
eec85c2a 5244#ifdef TARGET_I386
ed494d87 5245 /* XXX: this should be moved in the PC machine instantiation code */
28c5af54
JM
5246 if (net_boot != 0) {
5247 int netroms = 0;
5248 for (i = 0; i < nb_nics && i < 4; i++) {
eec85c2a
TS
5249 const char *model = nd_table[i].model;
5250 char buf[1024];
28c5af54
JM
5251 if (net_boot & (1 << i)) {
5252 if (model == NULL)
5253 model = "ne2k_pci";
5254 snprintf(buf, sizeof(buf), "%s/pxe-%s.bin", bios_dir, model);
5255 if (get_image_size(buf) > 0) {
5256 if (nb_option_roms >= MAX_OPTION_ROMS) {
5257 fprintf(stderr, "Too many option ROMs\n");
5258 exit(1);
5259 }
5260 option_rom[nb_option_roms] = strdup(buf);
5261 nb_option_roms++;
5262 netroms++;
5263 }
5264 }
eec85c2a 5265 }
28c5af54 5266 if (netroms == 0) {
eec85c2a
TS
5267 fprintf(stderr, "No valid PXE rom found for network device\n");
5268 exit(1);
5269 }
eec85c2a
TS
5270 }
5271#endif
5272
dc72ac14
AZ
5273 /* init the bluetooth world */
5274 for (i = 0; i < nb_bt_opts; i++)
5275 if (bt_parse(bt_opts[i]))
5276 exit(1);
5277
0824d6fc 5278 /* init the memory */
94a6b54f
PB
5279 if (ram_size == 0)
5280 ram_size = DEFAULT_RAM_SIZE * 1024 * 1024;
9ae02555 5281
640f42e4 5282#ifdef CONFIG_KQEMU
94a6b54f
PB
5283 /* FIXME: This is a nasty hack because kqemu can't cope with dynamic
5284 guest ram allocation. It needs to go away. */
5285 if (kqemu_allowed) {
5286 kqemu_phys_ram_size = ram_size + VGA_RAM_SIZE + 4 * 1024 * 1024;
5287 kqemu_phys_ram_base = qemu_vmalloc(kqemu_phys_ram_size);
5288 if (!kqemu_phys_ram_base) {
5289 fprintf(stderr, "Could not allocate physical memory\n");
5290 exit(1);
5291 }
0824d6fc 5292 }
94a6b54f 5293#endif
0824d6fc 5294
26a5f13b
FB
5295 /* init the dynamic translator */
5296 cpu_exec_init_all(tb_size * 1024 * 1024);
5297
5905b2e5 5298 bdrv_init();
6512a2a7 5299 dma_helper_init();
c4b1fcc0 5300
e4bcb14c 5301 /* we always create the cdrom drive, even if no disk is there */
c4b1fcc0 5302
e4bcb14c 5303 if (nb_drives_opt < MAX_DRIVES)
609497ab 5304 drive_add(NULL, CDROM_ALIAS);
c4b1fcc0 5305
9d413d1d 5306 /* we always create at least one floppy */
33e3963e 5307
e4bcb14c 5308 if (nb_drives_opt < MAX_DRIVES)
609497ab 5309 drive_add(NULL, FD_ALIAS, 0);
86f55663 5310
9d413d1d
AZ
5311 /* we always create one sd slot, even if no card is in it */
5312
5313 if (nb_drives_opt < MAX_DRIVES)
609497ab 5314 drive_add(NULL, SD_ALIAS);
9d413d1d 5315
e4bcb14c
TS
5316 /* open the virtual block devices */
5317
5318 for(i = 0; i < nb_drives_opt; i++)
609497ab 5319 if (drive_init(&drives_opt[i], snapshot, machine) == -1)
e4bcb14c 5320 exit(1);
3e3d5815 5321
c88676f8 5322 register_savevm("timer", 0, 2, timer_save, timer_load, NULL);
475e4277 5323 register_savevm_live("ram", 0, 3, ram_save_live, NULL, ram_load, NULL);
8a7ddc38 5324
3023f332
AL
5325#ifndef _WIN32
5326 /* must be after terminal init, SDL library changes signal handlers */
5327 termsig_setup();
5328#endif
5329
5330 /* Maintain compatibility with multiple stdio monitors */
5331 if (!strcmp(monitor_device,"stdio")) {
5332 for (i = 0; i < MAX_SERIAL_PORTS; i++) {
5333 const char *devname = serial_devices[i];
5334 if (devname && !strcmp(devname,"mon:stdio")) {
5335 monitor_device = NULL;
5336 break;
5337 } else if (devname && !strcmp(devname,"stdio")) {
5338 monitor_device = NULL;
5339 serial_devices[i] = "mon:stdio";
5340 break;
5341 }
5342 }
5343 }
5344
268a362c
AL
5345 if (nb_numa_nodes > 0) {
5346 int i;
5347
5348 if (nb_numa_nodes > smp_cpus) {
5349 nb_numa_nodes = smp_cpus;
5350 }
5351
5352 /* If no memory size if given for any node, assume the default case
5353 * and distribute the available memory equally across all nodes
5354 */
5355 for (i = 0; i < nb_numa_nodes; i++) {
5356 if (node_mem[i] != 0)
5357 break;
5358 }
5359 if (i == nb_numa_nodes) {
5360 uint64_t usedmem = 0;
5361
5362 /* On Linux, the each node's border has to be 8MB aligned,
5363 * the final node gets the rest.
5364 */
5365 for (i = 0; i < nb_numa_nodes - 1; i++) {
5366 node_mem[i] = (ram_size / nb_numa_nodes) & ~((1 << 23UL) - 1);
5367 usedmem += node_mem[i];
5368 }
5369 node_mem[i] = ram_size - usedmem;
5370 }
5371
5372 for (i = 0; i < nb_numa_nodes; i++) {
5373 if (node_cpumask[i] != 0)
5374 break;
5375 }
5376 /* assigning the VCPUs round-robin is easier to implement, guest OSes
5377 * must cope with this anyway, because there are BIOSes out there in
5378 * real machines which also use this scheme.
5379 */
5380 if (i == nb_numa_nodes) {
5381 for (i = 0; i < smp_cpus; i++) {
5382 node_cpumask[i % nb_numa_nodes] |= 1 << i;
5383 }
5384 }
5385 }
5386
3023f332
AL
5387 if (kvm_enabled()) {
5388 int ret;
5389
5390 ret = kvm_init(smp_cpus);
5391 if (ret < 0) {
5392 fprintf(stderr, "failed to initialize KVM\n");
5393 exit(1);
5394 }
5395 }
5396
4c621805 5397 if (monitor_device) {
ceecf1d1 5398 monitor_hd = qemu_chr_open("monitor", monitor_device, NULL);
4c621805
AL
5399 if (!monitor_hd) {
5400 fprintf(stderr, "qemu: could not open monitor device '%s'\n", monitor_device);
5401 exit(1);
5402 }
5403 }
5404
2796dae0
AL
5405 for(i = 0; i < MAX_SERIAL_PORTS; i++) {
5406 const char *devname = serial_devices[i];
5407 if (devname && strcmp(devname, "none")) {
5408 char label[32];
5409 snprintf(label, sizeof(label), "serial%d", i);
ceecf1d1 5410 serial_hds[i] = qemu_chr_open(label, devname, NULL);
2796dae0
AL
5411 if (!serial_hds[i]) {
5412 fprintf(stderr, "qemu: could not open serial device '%s'\n",
5413 devname);
5414 exit(1);
5415 }
5416 }
5417 }
5418
5419 for(i = 0; i < MAX_PARALLEL_PORTS; i++) {
5420 const char *devname = parallel_devices[i];
5421 if (devname && strcmp(devname, "none")) {
5422 char label[32];
5423 snprintf(label, sizeof(label), "parallel%d", i);
ceecf1d1 5424 parallel_hds[i] = qemu_chr_open(label, devname, NULL);
2796dae0
AL
5425 if (!parallel_hds[i]) {
5426 fprintf(stderr, "qemu: could not open parallel device '%s'\n",
5427 devname);
5428 exit(1);
5429 }
5430 }
5431 }
5432
5433 for(i = 0; i < MAX_VIRTIO_CONSOLES; i++) {
5434 const char *devname = virtio_consoles[i];
5435 if (devname && strcmp(devname, "none")) {
5436 char label[32];
5437 snprintf(label, sizeof(label), "virtcon%d", i);
ceecf1d1 5438 virtcon_hds[i] = qemu_chr_open(label, devname, NULL);
2796dae0
AL
5439 if (!virtcon_hds[i]) {
5440 fprintf(stderr, "qemu: could not open virtio console '%s'\n",
5441 devname);
5442 exit(1);
5443 }
5444 }
5445 }
5446
3023f332
AL
5447 machine->init(ram_size, vga_ram_size, boot_devices,
5448 kernel_filename, kernel_cmdline, initrd_filename, cpu_model);
5449
268a362c
AL
5450
5451 for (env = first_cpu; env != NULL; env = env->next_cpu) {
5452 for (i = 0; i < nb_numa_nodes; i++) {
5453 if (node_cpumask[i] & (1 << env->cpu_index)) {
5454 env->numa_node = i;
5455 }
5456 }
5457 }
5458
6f338c34
AL
5459 current_machine = machine;
5460
3023f332
AL
5461 /* Set KVM's vcpu state to qemu's initial CPUState. */
5462 if (kvm_enabled()) {
5463 int ret;
5464
5465 ret = kvm_sync_vcpus();
5466 if (ret < 0) {
5467 fprintf(stderr, "failed to initialize vcpus\n");
5468 exit(1);
5469 }
5470 }
5471
5472 /* init USB devices */
5473 if (usb_enabled) {
5474 for(i = 0; i < usb_devices_index; i++) {
c0f4ce77 5475 if (usb_device_add(usb_devices[i], 0) < 0) {
3023f332
AL
5476 fprintf(stderr, "Warning: could not add USB device %s\n",
5477 usb_devices[i]);
5478 }
5479 }
5480 }
5481
8f391ab4
AL
5482 if (!display_state)
5483 dumb_display_init();
3023f332
AL
5484 /* just use the first displaystate for the moment */
5485 ds = display_state;
313aa567 5486 /* terminal init */
a20dd508 5487 if (nographic) {
4d3b6f6e
AZ
5488 if (curses) {
5489 fprintf(stderr, "fatal: -nographic can't be used with -curses\n");
5490 exit(1);
5491 }
7d957bd8 5492 } else {
4d3b6f6e 5493#if defined(CONFIG_CURSES)
7d957bd8
AL
5494 if (curses) {
5495 /* At the moment curses cannot be used with other displays */
5496 curses_display_init(ds, full_screen);
5497 } else
4d3b6f6e 5498#endif
7d957bd8
AL
5499 {
5500 if (vnc_display != NULL) {
5501 vnc_display_init(ds);
5502 if (vnc_display_open(ds, vnc_display) < 0)
5503 exit(1);
5504 }
5b0753e0 5505#if defined(CONFIG_SDL)
d268de04 5506 if (sdl || !vnc_display)
7d957bd8 5507 sdl_display_init(ds, full_screen, no_frame);
5b0753e0 5508#elif defined(CONFIG_COCOA)
d268de04 5509 if (sdl || !vnc_display)
7d957bd8 5510 cocoa_display_init(ds, full_screen);
313aa567 5511#endif
7d957bd8 5512 }
313aa567 5513 }
7d957bd8 5514 dpy_resize(ds);
5b08fc10 5515
3023f332
AL
5516 dcl = ds->listeners;
5517 while (dcl != NULL) {
5518 if (dcl->dpy_refresh != NULL) {
5519 ds->gui_timer = qemu_new_timer(rt_clock, gui_update, ds);
5520 qemu_mod_timer(ds->gui_timer, qemu_get_clock(rt_clock));
20d8a3ed 5521 }
3023f332 5522 dcl = dcl->next;
20d8a3ed 5523 }
3023f332 5524
9043b62d
BS
5525 if (nographic || (vnc_display && !sdl)) {
5526 nographic_timer = qemu_new_timer(rt_clock, nographic_update, NULL);
5527 qemu_mod_timer(nographic_timer, qemu_get_clock(rt_clock));
5528 }
5529
2796dae0 5530 text_consoles_set_display(display_state);
2970a6c9 5531 qemu_chr_initial_reset();
2796dae0 5532
4c621805 5533 if (monitor_device && monitor_hd)
cde76ee1 5534 monitor_init(monitor_hd, MONITOR_USE_READLINE | MONITOR_IS_DEFAULT);
82c643ff 5535
8d11df9e 5536 for(i = 0; i < MAX_SERIAL_PORTS; i++) {
c03b0f0f 5537 const char *devname = serial_devices[i];
fd5f393a 5538 if (devname && strcmp(devname, "none")) {
5ccfae10
AL
5539 char label[32];
5540 snprintf(label, sizeof(label), "serial%d", i);
af3a9031 5541 if (strstart(devname, "vc", 0))
7ba1260a 5542 qemu_chr_printf(serial_hds[i], "serial%d console\r\n", i);
8d11df9e 5543 }
82c643ff 5544 }
82c643ff 5545
6508fe59 5546 for(i = 0; i < MAX_PARALLEL_PORTS; i++) {
c03b0f0f 5547 const char *devname = parallel_devices[i];
fd5f393a 5548 if (devname && strcmp(devname, "none")) {
5ccfae10
AL
5549 char label[32];
5550 snprintf(label, sizeof(label), "parallel%d", i);
af3a9031 5551 if (strstart(devname, "vc", 0))
7ba1260a 5552 qemu_chr_printf(parallel_hds[i], "parallel%d console\r\n", i);
6508fe59
FB
5553 }
5554 }
5555
9ede2fde
AL
5556 for(i = 0; i < MAX_VIRTIO_CONSOLES; i++) {
5557 const char *devname = virtio_consoles[i];
2796dae0 5558 if (virtcon_hds[i] && devname) {
9ede2fde
AL
5559 char label[32];
5560 snprintf(label, sizeof(label), "virtcon%d", i);
9ede2fde
AL
5561 if (strstart(devname, "vc", 0))
5562 qemu_chr_printf(virtcon_hds[i], "virtio console%d\r\n", i);
5563 }
5564 }
5565
67b915a5 5566#ifdef CONFIG_GDBSTUB
59030a8c
AL
5567 if (gdbstub_dev && gdbserver_start(gdbstub_dev) < 0) {
5568 fprintf(stderr, "qemu: could not open gdbserver on device '%s'\n",
5569 gdbstub_dev);
5570 exit(1);
45669e00 5571 }
67b915a5 5572#endif
45669e00 5573
d63d307f 5574 if (loadvm)
376253ec 5575 do_loadvm(cur_mon, loadvm);
d63d307f 5576
5bb7910a
AL
5577 if (incoming) {
5578 autostart = 0; /* fixme how to deal with -daemonize */
5579 qemu_start_incoming_migration(incoming);
5580 }
5581
c0f4ce77
AL
5582 if (autostart)
5583 vm_start();
ffd843bc 5584
b9e82a59 5585#ifndef _WIN32
71e3ceb8
TS
5586 if (daemonize) {
5587 uint8_t status = 0;
5588 ssize_t len;
71e3ceb8
TS
5589
5590 again1:
5591 len = write(fds[1], &status, 1);
5592 if (len == -1 && (errno == EINTR))
5593 goto again1;
5594
5595 if (len != 1)
5596 exit(1);
5597
bd54b863 5598 chdir("/");
aeb30be6 5599 TFR(fd = open("/dev/null", O_RDWR));
71e3ceb8
TS
5600 if (fd == -1)
5601 exit(1);
0858532e 5602 }
71e3ceb8 5603
0858532e
AL
5604 if (run_as) {
5605 pwd = getpwnam(run_as);
5606 if (!pwd) {
5607 fprintf(stderr, "User \"%s\" doesn't exist\n", run_as);
5608 exit(1);
5609 }
5610 }
5611
5612 if (chroot_dir) {
5613 if (chroot(chroot_dir) < 0) {
5614 fprintf(stderr, "chroot failed\n");
5615 exit(1);
5616 }
5617 chdir("/");
5618 }
5619
5620 if (run_as) {
5621 if (setgid(pwd->pw_gid) < 0) {
5622 fprintf(stderr, "Failed to setgid(%d)\n", pwd->pw_gid);
5623 exit(1);
5624 }
5625 if (setuid(pwd->pw_uid) < 0) {
5626 fprintf(stderr, "Failed to setuid(%d)\n", pwd->pw_uid);
5627 exit(1);
5628 }
5629 if (setuid(0) != -1) {
5630 fprintf(stderr, "Dropping privileges failed\n");
5631 exit(1);
5632 }
5633 }
0858532e
AL
5634
5635 if (daemonize) {
5636 dup2(fd, 0);
5637 dup2(fd, 1);
5638 dup2(fd, 2);
71e3ceb8 5639
0858532e 5640 close(fd);
71e3ceb8 5641 }
b9e82a59 5642#endif
71e3ceb8 5643
8a7ddc38 5644 main_loop();
40c3bac3 5645 quit_timers();
63a01ef8 5646 net_cleanup();
b46a8906 5647
0824d6fc
FB
5648 return 0;
5649}