2 * QEMU PC System Emulator
4 * Copyright (c) 2003-2004 Fabrice Bellard
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:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
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
28 #include "vmware_vga.h"
35 #include "audio/audio.h"
41 #include "hpet_emul.h"
48 /* output Bochs bios info messages */
51 /* Show multiboot debug output */
52 //#define DEBUG_MULTIBOOT
54 #define BIOS_FILENAME "bios.bin"
56 #define PC_MAX_BIOS_SIZE (4 * 1024 * 1024)
58 /* Leave a chunk of memory at the top of RAM for the BIOS ACPI tables. */
59 #define ACPI_DATA_SIZE 0x10000
60 #define BIOS_CFG_IOPORT 0x510
61 #define FW_CFG_ACPI_TABLES (FW_CFG_ARCH_LOCAL + 0)
62 #define FW_CFG_SMBIOS_ENTRIES (FW_CFG_ARCH_LOCAL + 1)
63 #define FW_CFG_IRQ0_OVERRIDE (FW_CFG_ARCH_LOCAL + 2)
67 static fdctrl_t
*floppy_controller
;
68 static RTCState
*rtc_state
;
70 static PCII440FXState
*i440fx_state
;
72 typedef struct isa_irq_state
{
77 static void isa_irq_handler(void *opaque
, int n
, int level
)
79 IsaIrqState
*isa
= (IsaIrqState
*)opaque
;
82 qemu_set_irq(isa
->i8259
[n
], level
);
85 qemu_set_irq(isa
->ioapic
[n
], level
);
88 static void ioport80_write(void *opaque
, uint32_t addr
, uint32_t data
)
92 /* MSDOS compatibility mode FPU exception support */
93 static qemu_irq ferr_irq
;
94 /* XXX: add IGNNE support */
95 void cpu_set_ferr(CPUX86State
*s
)
97 qemu_irq_raise(ferr_irq
);
100 static void ioportF0_write(void *opaque
, uint32_t addr
, uint32_t data
)
102 qemu_irq_lower(ferr_irq
);
106 uint64_t cpu_get_tsc(CPUX86State
*env
)
108 return cpu_get_ticks();
112 void cpu_smm_update(CPUState
*env
)
114 if (i440fx_state
&& env
== first_cpu
)
115 i440fx_set_smm(i440fx_state
, (env
->hflags
>> HF_SMM_SHIFT
) & 1);
120 int cpu_get_pic_interrupt(CPUState
*env
)
124 intno
= apic_get_interrupt(env
);
126 /* set irq request if a PIC irq is still pending */
127 /* XXX: improve that */
128 pic_update_irq(isa_pic
);
131 /* read the irq from the PIC */
132 if (!apic_accept_pic_intr(env
))
135 intno
= pic_read_irq(isa_pic
);
139 static void pic_irq_request(void *opaque
, int irq
, int level
)
141 CPUState
*env
= first_cpu
;
143 if (env
->apic_state
) {
145 if (apic_accept_pic_intr(env
))
146 apic_deliver_pic_intr(env
, level
);
151 cpu_interrupt(env
, CPU_INTERRUPT_HARD
);
153 cpu_reset_interrupt(env
, CPU_INTERRUPT_HARD
);
157 /* PC cmos mappings */
159 #define REG_EQUIPMENT_BYTE 0x14
161 static int cmos_get_fd_drive_type(int fd0
)
167 /* 1.44 Mb 3"5 drive */
171 /* 2.88 Mb 3"5 drive */
175 /* 1.2 Mb 5"5 drive */
185 static void cmos_init_hd(int type_ofs
, int info_ofs
, BlockDriverState
*hd
)
187 RTCState
*s
= rtc_state
;
188 int cylinders
, heads
, sectors
;
189 bdrv_get_geometry_hint(hd
, &cylinders
, &heads
, §ors
);
190 rtc_set_memory(s
, type_ofs
, 47);
191 rtc_set_memory(s
, info_ofs
, cylinders
);
192 rtc_set_memory(s
, info_ofs
+ 1, cylinders
>> 8);
193 rtc_set_memory(s
, info_ofs
+ 2, heads
);
194 rtc_set_memory(s
, info_ofs
+ 3, 0xff);
195 rtc_set_memory(s
, info_ofs
+ 4, 0xff);
196 rtc_set_memory(s
, info_ofs
+ 5, 0xc0 | ((heads
> 8) << 3));
197 rtc_set_memory(s
, info_ofs
+ 6, cylinders
);
198 rtc_set_memory(s
, info_ofs
+ 7, cylinders
>> 8);
199 rtc_set_memory(s
, info_ofs
+ 8, sectors
);
202 /* convert boot_device letter to something recognizable by the bios */
203 static int boot_device2nibble(char boot_device
)
205 switch(boot_device
) {
208 return 0x01; /* floppy boot */
210 return 0x02; /* hard drive boot */
212 return 0x03; /* CD-ROM boot */
214 return 0x04; /* Network boot */
219 /* copy/pasted from cmos_init, should be made a general function
220 and used there as well */
221 static int pc_boot_set(void *opaque
, const char *boot_device
)
223 Monitor
*mon
= cur_mon
;
224 #define PC_MAX_BOOT_DEVICES 3
225 RTCState
*s
= (RTCState
*)opaque
;
226 int nbds
, bds
[3] = { 0, };
229 nbds
= strlen(boot_device
);
230 if (nbds
> PC_MAX_BOOT_DEVICES
) {
231 monitor_printf(mon
, "Too many boot devices for PC\n");
234 for (i
= 0; i
< nbds
; i
++) {
235 bds
[i
] = boot_device2nibble(boot_device
[i
]);
237 monitor_printf(mon
, "Invalid boot device for PC: '%c'\n",
242 rtc_set_memory(s
, 0x3d, (bds
[1] << 4) | bds
[0]);
243 rtc_set_memory(s
, 0x38, (bds
[2] << 4));
247 /* hd_table must contain 4 block drivers */
248 static void cmos_init(ram_addr_t ram_size
, ram_addr_t above_4g_mem_size
,
249 const char *boot_device
, DriveInfo
**hd_table
)
251 RTCState
*s
= rtc_state
;
252 int nbds
, bds
[3] = { 0, };
257 /* various important CMOS locations needed by PC/Bochs bios */
260 val
= 640; /* base memory in K */
261 rtc_set_memory(s
, 0x15, val
);
262 rtc_set_memory(s
, 0x16, val
>> 8);
264 val
= (ram_size
/ 1024) - 1024;
267 rtc_set_memory(s
, 0x17, val
);
268 rtc_set_memory(s
, 0x18, val
>> 8);
269 rtc_set_memory(s
, 0x30, val
);
270 rtc_set_memory(s
, 0x31, val
>> 8);
272 if (above_4g_mem_size
) {
273 rtc_set_memory(s
, 0x5b, (unsigned int)above_4g_mem_size
>> 16);
274 rtc_set_memory(s
, 0x5c, (unsigned int)above_4g_mem_size
>> 24);
275 rtc_set_memory(s
, 0x5d, (uint64_t)above_4g_mem_size
>> 32);
278 if (ram_size
> (16 * 1024 * 1024))
279 val
= (ram_size
/ 65536) - ((16 * 1024 * 1024) / 65536);
284 rtc_set_memory(s
, 0x34, val
);
285 rtc_set_memory(s
, 0x35, val
>> 8);
287 /* set the number of CPU */
288 rtc_set_memory(s
, 0x5f, smp_cpus
- 1);
290 /* set boot devices, and disable floppy signature check if requested */
291 #define PC_MAX_BOOT_DEVICES 3
292 nbds
= strlen(boot_device
);
293 if (nbds
> PC_MAX_BOOT_DEVICES
) {
294 fprintf(stderr
, "Too many boot devices for PC\n");
297 for (i
= 0; i
< nbds
; i
++) {
298 bds
[i
] = boot_device2nibble(boot_device
[i
]);
300 fprintf(stderr
, "Invalid boot device for PC: '%c'\n",
305 rtc_set_memory(s
, 0x3d, (bds
[1] << 4) | bds
[0]);
306 rtc_set_memory(s
, 0x38, (bds
[2] << 4) | (fd_bootchk
? 0x0 : 0x1));
310 fd0
= fdctrl_get_drive_type(floppy_controller
, 0);
311 fd1
= fdctrl_get_drive_type(floppy_controller
, 1);
313 val
= (cmos_get_fd_drive_type(fd0
) << 4) | cmos_get_fd_drive_type(fd1
);
314 rtc_set_memory(s
, 0x10, val
);
326 val
|= 0x01; /* 1 drive, ready for boot */
329 val
|= 0x41; /* 2 drives, ready for boot */
332 val
|= 0x02; /* FPU is there */
333 val
|= 0x04; /* PS/2 mouse installed */
334 rtc_set_memory(s
, REG_EQUIPMENT_BYTE
, val
);
338 rtc_set_memory(s
, 0x12, (hd_table
[0] ? 0xf0 : 0) | (hd_table
[1] ? 0x0f : 0));
340 cmos_init_hd(0x19, 0x1b, hd_table
[0]->bdrv
);
342 cmos_init_hd(0x1a, 0x24, hd_table
[1]->bdrv
);
345 for (i
= 0; i
< 4; i
++) {
347 int cylinders
, heads
, sectors
, translation
;
348 /* NOTE: bdrv_get_geometry_hint() returns the physical
349 geometry. It is always such that: 1 <= sects <= 63, 1
350 <= heads <= 16, 1 <= cylinders <= 16383. The BIOS
351 geometry can be different if a translation is done. */
352 translation
= bdrv_get_translation_hint(hd_table
[i
]->bdrv
);
353 if (translation
== BIOS_ATA_TRANSLATION_AUTO
) {
354 bdrv_get_geometry_hint(hd_table
[i
]->bdrv
, &cylinders
, &heads
, §ors
);
355 if (cylinders
<= 1024 && heads
<= 16 && sectors
<= 63) {
356 /* No translation. */
359 /* LBA translation. */
365 val
|= translation
<< (i
* 2);
368 rtc_set_memory(s
, 0x39, val
);
371 void ioport_set_a20(int enable
)
373 /* XXX: send to all CPUs ? */
374 cpu_x86_set_a20(first_cpu
, enable
);
377 int ioport_get_a20(void)
379 return ((first_cpu
->a20_mask
>> 20) & 1);
382 static void ioport92_write(void *opaque
, uint32_t addr
, uint32_t val
)
384 ioport_set_a20((val
>> 1) & 1);
385 /* XXX: bit 0 is fast reset */
388 static uint32_t ioport92_read(void *opaque
, uint32_t addr
)
390 return ioport_get_a20() << 1;
393 /***********************************************************/
394 /* Bochs BIOS debug ports */
396 static void bochs_bios_write(void *opaque
, uint32_t addr
, uint32_t val
)
398 static const char shutdown_str
[8] = "Shutdown";
399 static int shutdown_index
= 0;
402 /* Bochs BIOS messages */
405 fprintf(stderr
, "BIOS panic at rombios.c, line %d\n", val
);
410 fprintf(stderr
, "%c", val
);
414 /* same as Bochs power off */
415 if (val
== shutdown_str
[shutdown_index
]) {
417 if (shutdown_index
== 8) {
419 qemu_system_shutdown_request();
426 /* LGPL'ed VGA BIOS messages */
429 fprintf(stderr
, "VGA BIOS panic, line %d\n", val
);
434 fprintf(stderr
, "%c", val
);
440 static void *bochs_bios_init(void)
443 uint8_t *smbios_table
;
445 uint64_t *numa_fw_cfg
;
448 register_ioport_write(0x400, 1, 2, bochs_bios_write
, NULL
);
449 register_ioport_write(0x401, 1, 2, bochs_bios_write
, NULL
);
450 register_ioport_write(0x402, 1, 1, bochs_bios_write
, NULL
);
451 register_ioport_write(0x403, 1, 1, bochs_bios_write
, NULL
);
452 register_ioport_write(0x8900, 1, 1, bochs_bios_write
, NULL
);
454 register_ioport_write(0x501, 1, 2, bochs_bios_write
, NULL
);
455 register_ioport_write(0x502, 1, 2, bochs_bios_write
, NULL
);
456 register_ioport_write(0x500, 1, 1, bochs_bios_write
, NULL
);
457 register_ioport_write(0x503, 1, 1, bochs_bios_write
, NULL
);
459 fw_cfg
= fw_cfg_init(BIOS_CFG_IOPORT
, BIOS_CFG_IOPORT
+ 1, 0, 0);
461 fw_cfg_add_i32(fw_cfg
, FW_CFG_ID
, 1);
462 fw_cfg_add_i64(fw_cfg
, FW_CFG_RAM_SIZE
, (uint64_t)ram_size
);
463 fw_cfg_add_bytes(fw_cfg
, FW_CFG_ACPI_TABLES
, (uint8_t *)acpi_tables
,
465 fw_cfg_add_bytes(fw_cfg
, FW_CFG_IRQ0_OVERRIDE
, &irq0override
, 1);
467 smbios_table
= smbios_get_table(&smbios_len
);
469 fw_cfg_add_bytes(fw_cfg
, FW_CFG_SMBIOS_ENTRIES
,
470 smbios_table
, smbios_len
);
472 /* allocate memory for the NUMA channel: one (64bit) word for the number
473 * of nodes, one word for each VCPU->node and one word for each node to
474 * hold the amount of memory.
476 numa_fw_cfg
= qemu_mallocz((1 + smp_cpus
+ nb_numa_nodes
) * 8);
477 numa_fw_cfg
[0] = cpu_to_le64(nb_numa_nodes
);
478 for (i
= 0; i
< smp_cpus
; i
++) {
479 for (j
= 0; j
< nb_numa_nodes
; j
++) {
480 if (node_cpumask
[j
] & (1 << i
)) {
481 numa_fw_cfg
[i
+ 1] = cpu_to_le64(j
);
486 for (i
= 0; i
< nb_numa_nodes
; i
++) {
487 numa_fw_cfg
[smp_cpus
+ 1 + i
] = cpu_to_le64(node_mem
[i
]);
489 fw_cfg_add_bytes(fw_cfg
, FW_CFG_NUMA
, (uint8_t *)numa_fw_cfg
,
490 (1 + smp_cpus
+ nb_numa_nodes
) * 8);
495 static long get_file_size(FILE *f
)
499 /* XXX: on Unix systems, using fstat() probably makes more sense */
502 fseek(f
, 0, SEEK_END
);
504 fseek(f
, where
, SEEK_SET
);
509 #define MULTIBOOT_STRUCT_ADDR 0x9000
511 #if MULTIBOOT_STRUCT_ADDR > 0xf0000
512 #error multiboot struct needs to fit in 16 bit real mode
515 static int load_multiboot(void *fw_cfg
,
517 const char *kernel_filename
,
518 const char *initrd_filename
,
519 const char *kernel_cmdline
,
522 int i
, is_multiboot
= 0;
524 uint32_t mh_entry_addr
;
525 uint32_t mh_load_addr
;
526 uint32_t mb_kernel_size
;
527 uint32_t mmap_addr
= MULTIBOOT_STRUCT_ADDR
;
528 uint32_t mb_bootinfo
= MULTIBOOT_STRUCT_ADDR
+ 0x500;
530 uint8_t bootinfo
[0x500];
531 uint32_t cmdline
= 0x200;
532 uint8_t *mb_kernel_data
;
533 uint8_t *mb_bootinfo_data
;
535 /* Ok, let's see if it is a multiboot image.
536 The header is 12x32bit long, so the latest entry may be 8192 - 48. */
537 for (i
= 0; i
< (8192 - 48); i
+= 4) {
538 if (ldl_p(header
+i
) == 0x1BADB002) {
539 uint32_t checksum
= ldl_p(header
+i
+8);
540 flags
= ldl_p(header
+i
+4);
542 checksum
+= (uint32_t)0x1BADB002;
551 return 0; /* no multiboot */
553 #ifdef DEBUG_MULTIBOOT
554 fprintf(stderr
, "qemu: I believe we found a multiboot image!\n");
556 memset(bootinfo
, 0, sizeof(bootinfo
));
558 if (flags
& 0x00000004) { /* MULTIBOOT_HEADER_HAS_VBE */
559 fprintf(stderr
, "qemu: multiboot knows VBE. we don't.\n");
561 if (!(flags
& 0x00010000)) { /* MULTIBOOT_HEADER_HAS_ADDR */
563 uint64_t elf_low
, elf_high
;
566 kernel_size
= load_elf(kernel_filename
, 0, &elf_entry
, &elf_low
, &elf_high
,
568 if (kernel_size
< 0) {
569 fprintf(stderr
, "Error while loading elf kernel\n");
572 mh_load_addr
= elf_low
;
573 mb_kernel_size
= elf_high
- elf_low
;
574 mh_entry_addr
= elf_entry
;
576 mb_kernel_data
= qemu_malloc(mb_kernel_size
);
577 if (rom_copy(mb_kernel_data
, mh_load_addr
, mb_kernel_size
) != mb_kernel_size
) {
578 fprintf(stderr
, "Error while fetching elf kernel from rom\n");
582 #ifdef DEBUG_MULTIBOOT
583 fprintf(stderr
, "qemu: loading multiboot-elf kernel (%#x bytes) with entry %#zx\n",
584 mb_kernel_size
, (size_t)mh_entry_addr
);
587 /* Valid if mh_flags sets MULTIBOOT_HEADER_HAS_ADDR. */
588 uint32_t mh_header_addr
= ldl_p(header
+i
+12);
589 mh_load_addr
= ldl_p(header
+i
+16);
590 #ifdef DEBUG_MULTIBOOT
591 uint32_t mh_load_end_addr
= ldl_p(header
+i
+20);
592 uint32_t mh_bss_end_addr
= ldl_p(header
+i
+24);
594 uint32_t mb_kernel_text_offset
= i
- (mh_header_addr
- mh_load_addr
);
596 mh_entry_addr
= ldl_p(header
+i
+28);
597 mb_kernel_size
= get_file_size(f
) - mb_kernel_text_offset
;
599 /* Valid if mh_flags sets MULTIBOOT_HEADER_HAS_VBE.
600 uint32_t mh_mode_type = ldl_p(header+i+32);
601 uint32_t mh_width = ldl_p(header+i+36);
602 uint32_t mh_height = ldl_p(header+i+40);
603 uint32_t mh_depth = ldl_p(header+i+44); */
605 #ifdef DEBUG_MULTIBOOT
606 fprintf(stderr
, "multiboot: mh_header_addr = %#x\n", mh_header_addr
);
607 fprintf(stderr
, "multiboot: mh_load_addr = %#x\n", mh_load_addr
);
608 fprintf(stderr
, "multiboot: mh_load_end_addr = %#x\n", mh_load_end_addr
);
609 fprintf(stderr
, "multiboot: mh_bss_end_addr = %#x\n", mh_bss_end_addr
);
610 fprintf(stderr
, "qemu: loading multiboot kernel (%#x bytes) at %#x\n",
611 mb_kernel_size
, mh_load_addr
);
614 mb_kernel_data
= qemu_malloc(mb_kernel_size
);
615 fseek(f
, mb_kernel_text_offset
, SEEK_SET
);
616 fread(mb_kernel_data
, 1, mb_kernel_size
, f
);
620 /* blob size is only the kernel for now */
621 mb_mod_end
= mh_load_addr
+ mb_kernel_size
;
624 stl_p(bootinfo
+ 20, 0x0); /* mods_count */
625 if (initrd_filename
) {
626 uint32_t mb_mod_info
= 0x100;
627 uint32_t mb_mod_cmdline
= 0x300;
628 uint32_t mb_mod_start
= mh_load_addr
;
629 uint32_t mb_mod_length
= mb_kernel_size
;
632 int mb_mod_count
= 0;
635 if (mb_mod_info
+ 16 > mb_mod_cmdline
) {
636 printf("WARNING: Too many modules loaded, aborting.\n");
640 next_initrd
= strchr(initrd_filename
, ',');
643 /* if a space comes after the module filename, treat everything
644 after that as parameters */
645 pstrcpy((char*)bootinfo
+ mb_mod_cmdline
,
646 sizeof(bootinfo
) - mb_mod_cmdline
,
648 stl_p(bootinfo
+ mb_mod_info
+ 8, mb_bootinfo
+ mb_mod_cmdline
); /* string */
649 mb_mod_cmdline
+= strlen(initrd_filename
) + 1;
650 if (mb_mod_cmdline
> sizeof(bootinfo
)) {
651 mb_mod_cmdline
= sizeof(bootinfo
);
652 printf("WARNING: Too many module cmdlines loaded, aborting.\n");
655 if ((next_space
= strchr(initrd_filename
, ' ')))
657 #ifdef DEBUG_MULTIBOOT
658 printf("multiboot loading module: %s\n", initrd_filename
);
660 mb_mod_start
= (mb_mod_start
+ mb_mod_length
+ (TARGET_PAGE_SIZE
- 1))
661 & (TARGET_PAGE_MASK
);
662 mb_mod_length
= get_image_size(initrd_filename
);
663 if (mb_mod_length
< 0) {
664 fprintf(stderr
, "failed to get %s image size\n", initrd_filename
);
667 mb_mod_end
= mb_mod_start
+ mb_mod_length
;
670 /* append module data at the end of last module */
671 mb_kernel_data
= qemu_realloc(mb_kernel_data
,
672 mb_mod_end
- mh_load_addr
);
673 load_image(initrd_filename
,
674 mb_kernel_data
+ mb_mod_start
- mh_load_addr
);
676 stl_p(bootinfo
+ mb_mod_info
+ 0, mb_mod_start
);
677 stl_p(bootinfo
+ mb_mod_info
+ 4, mb_mod_start
+ mb_mod_length
);
678 stl_p(bootinfo
+ mb_mod_info
+ 12, 0x0); /* reserved */
679 #ifdef DEBUG_MULTIBOOT
680 printf("mod_start: %#x\nmod_end: %#x\n", mb_mod_start
,
681 mb_mod_start
+ mb_mod_length
);
683 initrd_filename
= next_initrd
+1;
685 } while (next_initrd
);
686 stl_p(bootinfo
+ 20, mb_mod_count
); /* mods_count */
687 stl_p(bootinfo
+ 24, mb_bootinfo
+ 0x100); /* mods_addr */
690 /* Commandline support */
691 stl_p(bootinfo
+ 16, mb_bootinfo
+ cmdline
);
692 snprintf((char*)bootinfo
+ cmdline
, 0x100, "%s %s",
693 kernel_filename
, kernel_cmdline
);
695 /* the kernel is where we want it to be now */
696 #define MULTIBOOT_FLAGS_MEMORY (1 << 0)
697 #define MULTIBOOT_FLAGS_BOOT_DEVICE (1 << 1)
698 #define MULTIBOOT_FLAGS_CMDLINE (1 << 2)
699 #define MULTIBOOT_FLAGS_MODULES (1 << 3)
700 #define MULTIBOOT_FLAGS_MMAP (1 << 6)
701 stl_p(bootinfo
, MULTIBOOT_FLAGS_MEMORY
702 | MULTIBOOT_FLAGS_BOOT_DEVICE
703 | MULTIBOOT_FLAGS_CMDLINE
704 | MULTIBOOT_FLAGS_MODULES
705 | MULTIBOOT_FLAGS_MMAP
);
706 stl_p(bootinfo
+ 4, 640); /* mem_lower */
707 stl_p(bootinfo
+ 8, ram_size
/ 1024); /* mem_upper */
708 stl_p(bootinfo
+ 12, 0x8001ffff); /* XXX: use the -boot switch? */
709 stl_p(bootinfo
+ 48, mmap_addr
); /* mmap_addr */
711 #ifdef DEBUG_MULTIBOOT
712 fprintf(stderr
, "multiboot: mh_entry_addr = %#x\n", mh_entry_addr
);
715 /* save bootinfo off the stack */
716 mb_bootinfo_data
= qemu_malloc(sizeof(bootinfo
));
717 memcpy(mb_bootinfo_data
, bootinfo
, sizeof(bootinfo
));
719 /* Pass variables to option rom */
720 fw_cfg_add_i32(fw_cfg
, FW_CFG_KERNEL_ENTRY
, mh_entry_addr
);
721 fw_cfg_add_i32(fw_cfg
, FW_CFG_KERNEL_ADDR
, mh_load_addr
);
722 fw_cfg_add_i32(fw_cfg
, FW_CFG_KERNEL_SIZE
, mb_mod_end
- mh_load_addr
);
723 fw_cfg_add_bytes(fw_cfg
, FW_CFG_KERNEL_DATA
, mb_kernel_data
,
724 mb_mod_end
- mh_load_addr
);
726 fw_cfg_add_i32(fw_cfg
, FW_CFG_INITRD_ADDR
, mb_bootinfo
);
727 fw_cfg_add_i32(fw_cfg
, FW_CFG_INITRD_SIZE
, sizeof(bootinfo
));
728 fw_cfg_add_bytes(fw_cfg
, FW_CFG_INITRD_DATA
, mb_bootinfo_data
,
731 option_rom
[nb_option_roms
] = "multiboot.bin";
734 return 1; /* yes, we are multiboot */
737 static void load_linux(void *fw_cfg
,
738 const char *kernel_filename
,
739 const char *initrd_filename
,
740 const char *kernel_cmdline
,
741 target_phys_addr_t max_ram_size
)
744 int setup_size
, kernel_size
, initrd_size
= 0, cmdline_size
;
746 uint8_t header
[8192], *setup
, *kernel
, *initrd_data
;
747 target_phys_addr_t real_addr
, prot_addr
, cmdline_addr
, initrd_addr
= 0;
751 /* Align to 16 bytes as a paranoia measure */
752 cmdline_size
= (strlen(kernel_cmdline
)+16) & ~15;
754 /* load the kernel header */
755 f
= fopen(kernel_filename
, "rb");
756 if (!f
|| !(kernel_size
= get_file_size(f
)) ||
757 fread(header
, 1, MIN(ARRAY_SIZE(header
), kernel_size
), f
) !=
758 MIN(ARRAY_SIZE(header
), kernel_size
)) {
759 fprintf(stderr
, "qemu: could not load kernel '%s': %s\n",
760 kernel_filename
, strerror(errno
));
764 /* kernel protocol version */
766 fprintf(stderr
, "header magic: %#x\n", ldl_p(header
+0x202));
768 if (ldl_p(header
+0x202) == 0x53726448)
769 protocol
= lduw_p(header
+0x206);
771 /* This looks like a multiboot kernel. If it is, let's stop
772 treating it like a Linux kernel. */
773 if (load_multiboot(fw_cfg
, f
, kernel_filename
,
774 initrd_filename
, kernel_cmdline
, header
))
779 if (protocol
< 0x200 || !(header
[0x211] & 0x01)) {
782 cmdline_addr
= 0x9a000 - cmdline_size
;
784 } else if (protocol
< 0x202) {
785 /* High but ancient kernel */
787 cmdline_addr
= 0x9a000 - cmdline_size
;
788 prot_addr
= 0x100000;
790 /* High and recent kernel */
792 cmdline_addr
= 0x20000;
793 prot_addr
= 0x100000;
798 "qemu: real_addr = 0x" TARGET_FMT_plx
"\n"
799 "qemu: cmdline_addr = 0x" TARGET_FMT_plx
"\n"
800 "qemu: prot_addr = 0x" TARGET_FMT_plx
"\n",
806 /* highest address for loading the initrd */
807 if (protocol
>= 0x203)
808 initrd_max
= ldl_p(header
+0x22c);
810 initrd_max
= 0x37ffffff;
812 if (initrd_max
>= max_ram_size
-ACPI_DATA_SIZE
)
813 initrd_max
= max_ram_size
-ACPI_DATA_SIZE
-1;
815 fw_cfg_add_i32(fw_cfg
, FW_CFG_CMDLINE_ADDR
, cmdline_addr
);
816 fw_cfg_add_i32(fw_cfg
, FW_CFG_CMDLINE_SIZE
, strlen(kernel_cmdline
)+1);
817 fw_cfg_add_bytes(fw_cfg
, FW_CFG_CMDLINE_DATA
,
818 (uint8_t*)strdup(kernel_cmdline
),
819 strlen(kernel_cmdline
)+1);
821 if (protocol
>= 0x202) {
822 stl_p(header
+0x228, cmdline_addr
);
824 stw_p(header
+0x20, 0xA33F);
825 stw_p(header
+0x22, cmdline_addr
-real_addr
);
828 /* handle vga= parameter */
829 vmode
= strstr(kernel_cmdline
, "vga=");
831 unsigned int video_mode
;
834 if (!strncmp(vmode
, "normal", 6)) {
836 } else if (!strncmp(vmode
, "ext", 3)) {
838 } else if (!strncmp(vmode
, "ask", 3)) {
841 video_mode
= strtol(vmode
, NULL
, 0);
843 stw_p(header
+0x1fa, video_mode
);
847 /* High nybble = B reserved for Qemu; low nybble is revision number.
848 If this code is substantially changed, you may want to consider
849 incrementing the revision. */
850 if (protocol
>= 0x200)
851 header
[0x210] = 0xB0;
854 if (protocol
>= 0x201) {
855 header
[0x211] |= 0x80; /* CAN_USE_HEAP */
856 stw_p(header
+0x224, cmdline_addr
-real_addr
-0x200);
860 if (initrd_filename
) {
861 if (protocol
< 0x200) {
862 fprintf(stderr
, "qemu: linux kernel too old to load a ram disk\n");
866 initrd_size
= get_image_size(initrd_filename
);
867 initrd_addr
= (initrd_max
-initrd_size
) & ~4095;
869 initrd_data
= qemu_malloc(initrd_size
);
870 load_image(initrd_filename
, initrd_data
);
872 fw_cfg_add_i32(fw_cfg
, FW_CFG_INITRD_ADDR
, initrd_addr
);
873 fw_cfg_add_i32(fw_cfg
, FW_CFG_INITRD_SIZE
, initrd_size
);
874 fw_cfg_add_bytes(fw_cfg
, FW_CFG_INITRD_DATA
, initrd_data
, initrd_size
);
876 stl_p(header
+0x218, initrd_addr
);
877 stl_p(header
+0x21c, initrd_size
);
880 /* load kernel and setup */
881 setup_size
= header
[0x1f1];
884 setup_size
= (setup_size
+1)*512;
885 kernel_size
-= setup_size
;
887 setup
= qemu_malloc(setup_size
);
888 kernel
= qemu_malloc(kernel_size
);
889 fseek(f
, 0, SEEK_SET
);
890 fread(setup
, 1, setup_size
, f
);
891 fread(kernel
, 1, kernel_size
, f
);
893 memcpy(setup
, header
, MIN(sizeof(header
), setup_size
));
895 fw_cfg_add_i32(fw_cfg
, FW_CFG_KERNEL_ADDR
, prot_addr
);
896 fw_cfg_add_i32(fw_cfg
, FW_CFG_KERNEL_SIZE
, kernel_size
);
897 fw_cfg_add_bytes(fw_cfg
, FW_CFG_KERNEL_DATA
, kernel
, kernel_size
);
899 fw_cfg_add_i32(fw_cfg
, FW_CFG_SETUP_ADDR
, real_addr
);
900 fw_cfg_add_i32(fw_cfg
, FW_CFG_SETUP_SIZE
, setup_size
);
901 fw_cfg_add_bytes(fw_cfg
, FW_CFG_SETUP_DATA
, setup
, setup_size
);
903 option_rom
[nb_option_roms
] = "linuxboot.bin";
907 static const int ide_iobase
[2] = { 0x1f0, 0x170 };
908 static const int ide_iobase2
[2] = { 0x3f6, 0x376 };
909 static const int ide_irq
[2] = { 14, 15 };
911 #define NE2000_NB_MAX 6
913 static const int ne2000_io
[NE2000_NB_MAX
] = { 0x300, 0x320, 0x340, 0x360,
915 static const int ne2000_irq
[NE2000_NB_MAX
] = { 9, 10, 11, 3, 4, 5 };
917 static const int parallel_io
[MAX_PARALLEL_PORTS
] = { 0x378, 0x278, 0x3bc };
918 static const int parallel_irq
[MAX_PARALLEL_PORTS
] = { 7, 7, 7 };
921 static void audio_init (PCIBus
*pci_bus
, qemu_irq
*pic
)
925 for (c
= soundhw
; c
->name
; ++c
) {
928 c
->init
.init_isa(pic
);
931 c
->init
.init_pci(pci_bus
);
939 static void pc_init_ne2k_isa(NICInfo
*nd
)
941 static int nb_ne2k
= 0;
943 if (nb_ne2k
== NE2000_NB_MAX
)
945 isa_ne2000_init(ne2000_io
[nb_ne2k
],
946 ne2000_irq
[nb_ne2k
], nd
);
950 int cpu_is_bsp(CPUState
*env
)
952 return env
->cpuid_apic_id
== 0;
955 static CPUState
*pc_new_cpu(const char *cpu_model
)
959 env
= cpu_init(cpu_model
);
961 fprintf(stderr
, "Unable to find x86 CPU definition\n");
964 if ((env
->cpuid_features
& CPUID_APIC
) || smp_cpus
> 1) {
965 env
->cpuid_apic_id
= env
->cpu_index
;
966 /* APIC reset callback resets cpu */
969 qemu_register_reset((QEMUResetHandler
*)cpu_reset
, env
);
974 /* PC hardware initialisation */
975 static void pc_init1(ram_addr_t ram_size
,
976 const char *boot_device
,
977 const char *kernel_filename
,
978 const char *kernel_cmdline
,
979 const char *initrd_filename
,
980 const char *cpu_model
,
984 int ret
, linux_boot
, i
;
985 ram_addr_t ram_addr
, bios_offset
, option_rom_offset
;
986 ram_addr_t below_4g_mem_size
, above_4g_mem_size
= 0;
987 int bios_size
, isa_bios_size
;
990 int piix3_devfn
= -1;
995 IsaIrqState
*isa_irq_state
;
996 DriveInfo
*hd
[MAX_IDE_BUS
* MAX_IDE_DEVS
];
997 DriveInfo
*fd
[MAX_FD
];
1000 if (ram_size
>= 0xe0000000 ) {
1001 above_4g_mem_size
= ram_size
- 0xe0000000;
1002 below_4g_mem_size
= 0xe0000000;
1004 below_4g_mem_size
= ram_size
;
1007 linux_boot
= (kernel_filename
!= NULL
);
1010 if (cpu_model
== NULL
) {
1011 #ifdef TARGET_X86_64
1012 cpu_model
= "qemu64";
1014 cpu_model
= "qemu32";
1018 for (i
= 0; i
< smp_cpus
; i
++) {
1019 env
= pc_new_cpu(cpu_model
);
1025 ram_addr
= qemu_ram_alloc(0xa0000);
1026 cpu_register_physical_memory(0, 0xa0000, ram_addr
);
1028 /* Allocate, even though we won't register, so we don't break the
1029 * phys_ram_base + PA assumption. This range includes vga (0xa0000 - 0xc0000),
1030 * and some bios areas, which will be registered later
1032 ram_addr
= qemu_ram_alloc(0x100000 - 0xa0000);
1033 ram_addr
= qemu_ram_alloc(below_4g_mem_size
- 0x100000);
1034 cpu_register_physical_memory(0x100000,
1035 below_4g_mem_size
- 0x100000,
1038 /* above 4giga memory allocation */
1039 if (above_4g_mem_size
> 0) {
1040 #if TARGET_PHYS_ADDR_BITS == 32
1041 hw_error("To much RAM for 32-bit physical address");
1043 ram_addr
= qemu_ram_alloc(above_4g_mem_size
);
1044 cpu_register_physical_memory(0x100000000ULL
,
1052 if (bios_name
== NULL
)
1053 bios_name
= BIOS_FILENAME
;
1054 filename
= qemu_find_file(QEMU_FILE_TYPE_BIOS
, bios_name
);
1056 bios_size
= get_image_size(filename
);
1060 if (bios_size
<= 0 ||
1061 (bios_size
% 65536) != 0) {
1064 bios_offset
= qemu_ram_alloc(bios_size
);
1065 ret
= rom_add_file_fixed(bios_name
, (uint32_t)(-bios_size
));
1068 fprintf(stderr
, "qemu: could not load PC BIOS '%s'\n", bios_name
);
1072 qemu_free(filename
);
1074 /* map the last 128KB of the BIOS in ISA space */
1075 isa_bios_size
= bios_size
;
1076 if (isa_bios_size
> (128 * 1024))
1077 isa_bios_size
= 128 * 1024;
1078 cpu_register_physical_memory(0x100000 - isa_bios_size
,
1080 (bios_offset
+ bios_size
- isa_bios_size
) | IO_MEM_ROM
);
1084 rom_enable_driver_roms
= 1;
1085 option_rom_offset
= qemu_ram_alloc(PC_ROM_SIZE
);
1086 cpu_register_physical_memory(PC_ROM_MIN_VGA
, PC_ROM_SIZE
, option_rom_offset
);
1088 /* map all the bios at the top of memory */
1089 cpu_register_physical_memory((uint32_t)(-bios_size
),
1090 bios_size
, bios_offset
| IO_MEM_ROM
);
1092 fw_cfg
= bochs_bios_init();
1095 load_linux(fw_cfg
, kernel_filename
, initrd_filename
, kernel_cmdline
, below_4g_mem_size
);
1098 for (i
= 0; i
< nb_option_roms
; i
++) {
1099 rom_add_option(option_rom
[i
]);
1102 cpu_irq
= qemu_allocate_irqs(pic_irq_request
, NULL
, 1);
1103 i8259
= i8259_init(cpu_irq
[0]);
1104 isa_irq_state
= qemu_mallocz(sizeof(*isa_irq_state
));
1105 isa_irq_state
->i8259
= i8259
;
1106 isa_irq
= qemu_allocate_irqs(isa_irq_handler
, isa_irq_state
, 24);
1109 pci_bus
= i440fx_init(&i440fx_state
, &piix3_devfn
, isa_irq
);
1114 isa_bus_irqs(isa_irq
);
1116 ferr_irq
= isa_reserve_irq(13);
1118 /* init basic PC hardware */
1119 register_ioport_write(0x80, 1, 1, ioport80_write
, NULL
);
1121 register_ioport_write(0xf0, 1, 1, ioportF0_write
, NULL
);
1123 if (cirrus_vga_enabled
) {
1125 pci_cirrus_vga_init(pci_bus
);
1127 isa_cirrus_vga_init();
1129 } else if (vmsvga_enabled
) {
1131 pci_vmsvga_init(pci_bus
);
1133 fprintf(stderr
, "%s: vmware_vga: no PCI bus\n", __FUNCTION__
);
1134 } else if (std_vga_enabled
) {
1136 pci_vga_init(pci_bus
, 0, 0);
1142 rtc_state
= rtc_init(2000);
1144 qemu_register_boot_set(pc_boot_set
, rtc_state
);
1146 register_ioport_read(0x92, 1, 1, ioport92_read
, NULL
);
1147 register_ioport_write(0x92, 1, 1, ioport92_write
, NULL
);
1150 isa_irq_state
->ioapic
= ioapic_init();
1152 pit
= pit_init(0x40, isa_reserve_irq(0));
1158 for(i
= 0; i
< MAX_SERIAL_PORTS
; i
++) {
1159 if (serial_hds
[i
]) {
1160 serial_isa_init(i
, serial_hds
[i
]);
1164 for(i
= 0; i
< MAX_PARALLEL_PORTS
; i
++) {
1165 if (parallel_hds
[i
]) {
1166 parallel_init(i
, parallel_hds
[i
]);
1170 for(i
= 0; i
< nb_nics
; i
++) {
1171 NICInfo
*nd
= &nd_table
[i
];
1173 if (!pci_enabled
|| (nd
->model
&& strcmp(nd
->model
, "ne2k_isa") == 0))
1174 pc_init_ne2k_isa(nd
);
1176 pci_nic_init_nofail(nd
, "e1000", NULL
);
1179 if (drive_get_max_bus(IF_IDE
) >= MAX_IDE_BUS
) {
1180 fprintf(stderr
, "qemu: too many IDE bus\n");
1184 for(i
= 0; i
< MAX_IDE_BUS
* MAX_IDE_DEVS
; i
++) {
1185 hd
[i
] = drive_get(IF_IDE
, i
/ MAX_IDE_DEVS
, i
% MAX_IDE_DEVS
);
1189 pci_piix3_ide_init(pci_bus
, hd
, piix3_devfn
+ 1);
1191 for(i
= 0; i
< MAX_IDE_BUS
; i
++) {
1192 isa_ide_init(ide_iobase
[i
], ide_iobase2
[i
], ide_irq
[i
],
1193 hd
[MAX_IDE_DEVS
* i
], hd
[MAX_IDE_DEVS
* i
+ 1]);
1197 isa_dev
= isa_create_simple("i8042");
1200 audio_init(pci_enabled
? pci_bus
: NULL
, isa_irq
);
1203 for(i
= 0; i
< MAX_FD
; i
++) {
1204 fd
[i
] = drive_get(IF_FLOPPY
, 0, i
);
1206 floppy_controller
= fdctrl_init_isa(fd
);
1208 cmos_init(below_4g_mem_size
, above_4g_mem_size
, boot_device
, hd
);
1210 if (pci_enabled
&& usb_enabled
) {
1211 usb_uhci_piix3_init(pci_bus
, piix3_devfn
+ 2);
1214 if (pci_enabled
&& acpi_enabled
) {
1215 uint8_t *eeprom_buf
= qemu_mallocz(8 * 256); /* XXX: make this persistent */
1218 /* TODO: Populate SPD eeprom data. */
1219 smbus
= piix4_pm_init(pci_bus
, piix3_devfn
+ 3, 0xb100,
1220 isa_reserve_irq(9));
1221 for (i
= 0; i
< 8; i
++) {
1222 DeviceState
*eeprom
;
1223 eeprom
= qdev_create((BusState
*)smbus
, "smbus-eeprom");
1224 qdev_prop_set_uint8(eeprom
, "address", 0x50 + i
);
1225 qdev_prop_set_ptr(eeprom
, "data", eeprom_buf
+ (i
* 256));
1226 qdev_init_nofail(eeprom
);
1228 piix4_acpi_system_hot_add_init(pci_bus
);
1232 i440fx_init_memory_mappings(i440fx_state
);
1239 max_bus
= drive_get_max_bus(IF_SCSI
);
1240 for (bus
= 0; bus
<= max_bus
; bus
++) {
1241 pci_create_simple(pci_bus
, -1, "lsi53c895a");
1245 /* Add virtio console devices */
1247 for(i
= 0; i
< MAX_VIRTIO_CONSOLES
; i
++) {
1248 if (virtcon_hds
[i
]) {
1249 pci_create_simple(pci_bus
, -1, "virtio-console-pci");
1254 rom_load_fw(fw_cfg
);
1257 static void pc_init_pci(ram_addr_t ram_size
,
1258 const char *boot_device
,
1259 const char *kernel_filename
,
1260 const char *kernel_cmdline
,
1261 const char *initrd_filename
,
1262 const char *cpu_model
)
1264 pc_init1(ram_size
, boot_device
,
1265 kernel_filename
, kernel_cmdline
,
1266 initrd_filename
, cpu_model
, 1);
1269 static void pc_init_isa(ram_addr_t ram_size
,
1270 const char *boot_device
,
1271 const char *kernel_filename
,
1272 const char *kernel_cmdline
,
1273 const char *initrd_filename
,
1274 const char *cpu_model
)
1276 if (cpu_model
== NULL
)
1278 pc_init1(ram_size
, boot_device
,
1279 kernel_filename
, kernel_cmdline
,
1280 initrd_filename
, cpu_model
, 0);
1283 /* set CMOS shutdown status register (index 0xF) as S3_resume(0xFE)
1284 BIOS will read it and start S3 resume at POST Entry */
1285 void cmos_set_s3_resume(void)
1288 rtc_set_memory(rtc_state
, 0xF, 0xFE);
1291 static QEMUMachine pc_machine
= {
1294 .desc
= "Standard PC",
1295 .init
= pc_init_pci
,
1300 static QEMUMachine pc_machine_v0_10
= {
1302 .desc
= "Standard PC, qemu 0.10",
1303 .init
= pc_init_pci
,
1305 .compat_props
= (GlobalProperty
[]) {
1307 .driver
= "virtio-blk-pci",
1308 .property
= "class",
1309 .value
= stringify(PCI_CLASS_STORAGE_OTHER
),
1311 .driver
= "virtio-console-pci",
1312 .property
= "class",
1313 .value
= stringify(PCI_CLASS_DISPLAY_OTHER
),
1315 .driver
= "virtio-net-pci",
1316 .property
= "vectors",
1317 .value
= stringify(0),
1319 .driver
= "virtio-blk-pci",
1320 .property
= "vectors",
1321 .value
= stringify(0),
1323 { /* end of list */ }
1327 static QEMUMachine isapc_machine
= {
1329 .desc
= "ISA-only PC",
1330 .init
= pc_init_isa
,
1334 static void pc_machine_init(void)
1336 qemu_register_machine(&pc_machine
);
1337 qemu_register_machine(&pc_machine_v0_10
);
1338 qemu_register_machine(&isapc_machine
);
1341 machine_init(pc_machine_init
);