xref: /kvmtool/kvm.c (revision dc4cd384e16b1c858c8d67d62e739433e4925a13)
1ae1fae34SPekka Enberg #include "kvm/kvm.h"
2ae1fae34SPekka Enberg 
3b3594ec7SCyrill Gorcunov #include "kvm/boot-protocol.h"
472811558SPekka Enberg #include "kvm/cpufeature.h"
572811558SPekka Enberg #include "kvm/read-write.h"
672811558SPekka Enberg #include "kvm/interrupt.h"
70c7c14a7SCyrill Gorcunov #include "kvm/mptable.h"
872811558SPekka Enberg #include "kvm/util.h"
94298ddadSSasha Levin #include "kvm/mutex.h"
104298ddadSSasha Levin #include "kvm/kvm-cpu.h"
11eda03319SPekka Enberg 
126c7d8514SPekka Enberg #include <linux/kvm.h>
13f5ab5f67SPekka Enberg 
14f5ab5f67SPekka Enberg #include <asm/bootparam.h>
15f5ab5f67SPekka Enberg 
16ae1fae34SPekka Enberg #include <sys/ioctl.h>
171f9cff23SPekka Enberg #include <sys/mman.h>
18ce79f1caSPekka Enberg #include <sys/stat.h>
192da26a59SPekka Enberg #include <stdbool.h>
206e5e8b8dSPekka Enberg #include <assert.h>
2106e41eeaSPekka Enberg #include <limits.h>
22ce79f1caSPekka Enberg #include <signal.h>
23f5ab5f67SPekka Enberg #include <stdarg.h>
24b8f6afcdSPekka Enberg #include <stdlib.h>
25f5ab5f67SPekka Enberg #include <string.h>
260d1f17ecSPekka Enberg #include <unistd.h>
271f9cff23SPekka Enberg #include <stdio.h>
28b8f6afcdSPekka Enberg #include <fcntl.h>
29ce79f1caSPekka Enberg #include <time.h>
304298ddadSSasha Levin #include <sys/eventfd.h>
31c7828731SSasha Levin #include <asm/unistd.h>
3263bc8503SSasha Levin #include <dirent.h>
33b8f6afcdSPekka Enberg 
34ae1fae34SPekka Enberg #define DEFINE_KVM_EXIT_REASON(reason) [reason] = #reason
35c71efd96SSasha Levin #define KVM_PID_FILE_PATH	"/.kvm-tools/"
36c71efd96SSasha Levin #define HOME_DIR		getenv("HOME")
370d1f17ecSPekka Enberg 
38ae1fae34SPekka Enberg const char *kvm_exit_reasons[] = {
39ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_UNKNOWN),
40ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_EXCEPTION),
41ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_IO),
42ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_HYPERCALL),
43ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_DEBUG),
44ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_HLT),
45ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_MMIO),
46ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_IRQ_WINDOW_OPEN),
47ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_SHUTDOWN),
48ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_FAIL_ENTRY),
49ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTR),
50ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_SET_TPR),
51ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_TPR_ACCESS),
52ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_SIEIC),
53ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_RESET),
54ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_DCR),
55ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_NMI),
56ae1fae34SPekka Enberg 	DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTERNAL_ERROR),
579b1fb1c3SPekka Enberg };
589b1fb1c3SPekka Enberg 
5955e19624SCyrill Gorcunov #define DEFINE_KVM_EXT(ext)		\
6055e19624SCyrill Gorcunov 	.name = #ext,			\
6155e19624SCyrill Gorcunov 	.code = ext
6255e19624SCyrill Gorcunov 
6355e19624SCyrill Gorcunov struct {
6455e19624SCyrill Gorcunov 	const char *name;
6555e19624SCyrill Gorcunov 	int code;
6655e19624SCyrill Gorcunov } kvm_req_ext[] = {
6755e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_COALESCED_MMIO) },
6855e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_SET_TSS_ADDR) },
6955e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_PIT2) },
7055e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_USER_MEMORY) },
7155e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_IRQ_ROUTING) },
7255e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_IRQCHIP) },
737c0ec28fSCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_HLT) },
7455e19624SCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_IRQ_INJECT_STATUS) },
75d38ad31aSCyrill Gorcunov 	{ DEFINE_KVM_EXT(KVM_CAP_EXT_CPUID) },
7655e19624SCyrill Gorcunov };
7755e19624SCyrill Gorcunov 
784298ddadSSasha Levin extern struct kvm *kvm;
794298ddadSSasha Levin extern struct kvm_cpu *kvm_cpus[KVM_NR_CPUS];
804298ddadSSasha Levin static int pause_event;
814298ddadSSasha Levin static DEFINE_MUTEX(pause_lock);
824298ddadSSasha Levin 
8343835ac9SSasha Levin static bool kvm__supports_extension(struct kvm *kvm, unsigned int extension)
84b8f6afcdSPekka Enberg {
8528fa19c0SPekka Enberg 	int ret;
86b8f6afcdSPekka Enberg 
8743835ac9SSasha Levin 	ret = ioctl(kvm->sys_fd, KVM_CHECK_EXTENSION, extension);
884076b041SPekka Enberg 	if (ret < 0)
894076b041SPekka Enberg 		return false;
904076b041SPekka Enberg 
914076b041SPekka Enberg 	return ret;
924076b041SPekka Enberg }
934076b041SPekka Enberg 
9443835ac9SSasha Levin static int kvm__check_extensions(struct kvm *kvm)
9555e19624SCyrill Gorcunov {
9655e19624SCyrill Gorcunov 	unsigned int i;
9755e19624SCyrill Gorcunov 
9855e19624SCyrill Gorcunov 	for (i = 0; i < ARRAY_SIZE(kvm_req_ext); i++) {
9943835ac9SSasha Levin 		if (!kvm__supports_extension(kvm, kvm_req_ext[i].code)) {
1004542f276SCyrill Gorcunov 			pr_error("Unsuppored KVM extension detected: %s",
10155e19624SCyrill Gorcunov 				kvm_req_ext[i].name);
10255e19624SCyrill Gorcunov 			return (int)-i;
10355e19624SCyrill Gorcunov 		}
10455e19624SCyrill Gorcunov 	}
10555e19624SCyrill Gorcunov 
10655e19624SCyrill Gorcunov 	return 0;
10755e19624SCyrill Gorcunov }
10855e19624SCyrill Gorcunov 
1094076b041SPekka Enberg static struct kvm *kvm__new(void)
1104076b041SPekka Enberg {
11143835ac9SSasha Levin 	struct kvm *kvm = calloc(1, sizeof *kvm);
1124076b041SPekka Enberg 
11343835ac9SSasha Levin 	if (!kvm)
1144076b041SPekka Enberg 		die("out of memory");
1154076b041SPekka Enberg 
11643835ac9SSasha Levin 	return kvm;
1174076b041SPekka Enberg }
1184076b041SPekka Enberg 
1195358b0e6SSasha Levin static void kvm__create_pidfile(struct kvm *kvm)
1205358b0e6SSasha Levin {
1215358b0e6SSasha Levin 	int fd;
1225358b0e6SSasha Levin 	char full_name[PATH_MAX], pid[10];
1235358b0e6SSasha Levin 
1245358b0e6SSasha Levin 	if (!kvm->name)
1255358b0e6SSasha Levin 		return;
1265358b0e6SSasha Levin 
127c71efd96SSasha Levin 	sprintf(full_name, "%s/%s", HOME_DIR, KVM_PID_FILE_PATH);
128c71efd96SSasha Levin 	mkdir(full_name, 0777);
129c71efd96SSasha Levin 	sprintf(full_name, "%s/%s/%s.pid", HOME_DIR, KVM_PID_FILE_PATH, kvm->name);
1305358b0e6SSasha Levin 	fd = open(full_name, O_CREAT | O_WRONLY, 0666);
1315358b0e6SSasha Levin 	sprintf(pid, "%u\n", getpid());
1325358b0e6SSasha Levin 	if (write(fd, pid, strlen(pid)) <= 0)
1335358b0e6SSasha Levin 		die("Failed creating PID file");
1345358b0e6SSasha Levin 	close(fd);
1355358b0e6SSasha Levin }
1365358b0e6SSasha Levin 
137*dc4cd384SSasha Levin void kvm__remove_pidfile(const char *name)
1385358b0e6SSasha Levin {
1395358b0e6SSasha Levin 	char full_name[PATH_MAX];
1405358b0e6SSasha Levin 
141*dc4cd384SSasha Levin 	sprintf(full_name, "%s/%s/%s.pid", HOME_DIR, KVM_PID_FILE_PATH, name);
1425358b0e6SSasha Levin 	unlink(full_name);
1435358b0e6SSasha Levin }
1445358b0e6SSasha Levin 
1455358b0e6SSasha Levin int kvm__get_pid_by_instance(const char *name)
1465358b0e6SSasha Levin {
1475358b0e6SSasha Levin 	int fd, pid;
1485358b0e6SSasha Levin 	char pid_str[10], pid_file[PATH_MAX];
1495358b0e6SSasha Levin 
150c71efd96SSasha Levin 	sprintf(pid_file, "%s/%s/%s.pid", HOME_DIR, KVM_PID_FILE_PATH, name);
1515358b0e6SSasha Levin 	fd = open(pid_file, O_RDONLY);
1525358b0e6SSasha Levin 	if (fd < 0)
1535358b0e6SSasha Levin 		return -1;
1545358b0e6SSasha Levin 
1555358b0e6SSasha Levin 	if (read(fd, pid_str, 10) == 0)
1565358b0e6SSasha Levin 		return -1;
1575358b0e6SSasha Levin 
1585358b0e6SSasha Levin 	pid = atoi(pid_str);
1595358b0e6SSasha Levin 	if (pid < 0)
1605358b0e6SSasha Levin 		return -1;
1615358b0e6SSasha Levin 
1625358b0e6SSasha Levin 	return pid;
1635358b0e6SSasha Levin }
1645358b0e6SSasha Levin 
16563bc8503SSasha Levin int kvm__enumerate_instances(void (*callback)(const char *name, int pid))
16663bc8503SSasha Levin {
16763bc8503SSasha Levin 	char full_name[PATH_MAX];
16863bc8503SSasha Levin 	int pid;
16963bc8503SSasha Levin 	DIR *dir;
17063bc8503SSasha Levin 	struct dirent entry, *result;
17163bc8503SSasha Levin 
17263bc8503SSasha Levin 	sprintf(full_name, "%s/%s", HOME_DIR, KVM_PID_FILE_PATH);
17363bc8503SSasha Levin 	dir = opendir(full_name);
17463bc8503SSasha Levin 
17563bc8503SSasha Levin 	for (;;) {
17663bc8503SSasha Levin 		readdir_r(dir, &entry, &result);
17763bc8503SSasha Levin 		if (result == NULL)
17863bc8503SSasha Levin 			break;
17963bc8503SSasha Levin 		if (entry.d_type == DT_REG) {
18063bc8503SSasha Levin 			entry.d_name[strlen(entry.d_name)-4] = 0;
18163bc8503SSasha Levin 			pid = kvm__get_pid_by_instance(entry.d_name);
18263bc8503SSasha Levin 			callback(entry.d_name, pid);
18363bc8503SSasha Levin 		}
18463bc8503SSasha Levin 	}
18563bc8503SSasha Levin 
18663bc8503SSasha Levin 	return 0;
18763bc8503SSasha Levin }
18863bc8503SSasha Levin 
18943835ac9SSasha Levin void kvm__delete(struct kvm *kvm)
1909ef4c68eSPekka Enberg {
19143835ac9SSasha Levin 	kvm__stop_timer(kvm);
192fbfe68b7SSasha Levin 
19343835ac9SSasha Levin 	munmap(kvm->ram_start, kvm->ram_size);
194*dc4cd384SSasha Levin 	kvm__remove_pidfile(kvm->name);
19543835ac9SSasha Levin 	free(kvm);
1969ef4c68eSPekka Enberg }
1979ef4c68eSPekka Enberg 
198c78b8713SAsias He static bool kvm__cpu_supports_vm(void)
199c78b8713SAsias He {
200c78b8713SAsias He 	struct cpuid_regs regs;
2013fdf659dSSasha Levin 	u32 eax_base;
202831fbf23SPekka Enberg 	int feature;
203c78b8713SAsias He 
204c78b8713SAsias He 	regs	= (struct cpuid_regs) {
205831fbf23SPekka Enberg 		.eax		= 0x00,
206c78b8713SAsias He 	};
207c78b8713SAsias He 	host_cpuid(&regs);
208c78b8713SAsias He 
209ae87afbfSCyrill Gorcunov 	switch (regs.ebx) {
210ae87afbfSCyrill Gorcunov 	case CPUID_VENDOR_INTEL_1:
211831fbf23SPekka Enberg 		eax_base	= 0x00;
212831fbf23SPekka Enberg 		feature		= KVM__X86_FEATURE_VMX;
213ae87afbfSCyrill Gorcunov 		break;
21434649df9SPekka Enberg 
215ae87afbfSCyrill Gorcunov 	case CPUID_VENDOR_AMD_1:
216831fbf23SPekka Enberg 		eax_base	= 0x80000000;
217831fbf23SPekka Enberg 		feature		= KVM__X86_FEATURE_SVM;
218ae87afbfSCyrill Gorcunov 		break;
21934649df9SPekka Enberg 
22034649df9SPekka Enberg 	default:
22134649df9SPekka Enberg 		return false;
222ae87afbfSCyrill Gorcunov 	}
223ae87afbfSCyrill Gorcunov 
224831fbf23SPekka Enberg 	regs	= (struct cpuid_regs) {
225831fbf23SPekka Enberg 		.eax		= eax_base,
226831fbf23SPekka Enberg 	};
227831fbf23SPekka Enberg 	host_cpuid(&regs);
228831fbf23SPekka Enberg 
229831fbf23SPekka Enberg 	if (regs.eax < eax_base + 0x01)
230831fbf23SPekka Enberg 		return false;
231831fbf23SPekka Enberg 
232831fbf23SPekka Enberg 	regs	= (struct cpuid_regs) {
233831fbf23SPekka Enberg 		.eax		= eax_base + 0x01
234831fbf23SPekka Enberg 	};
235831fbf23SPekka Enberg 	host_cpuid(&regs);
236831fbf23SPekka Enberg 
237831fbf23SPekka Enberg 	return regs.ecx & (1 << feature);
238c78b8713SAsias He }
239c78b8713SAsias He 
24096feb589SPekka Enberg /*
24196feb589SPekka Enberg  * Note: KVM_SET_USER_MEMORY_REGION assumes that we don't pass overlapping
24296feb589SPekka Enberg  * memory regions to it. Therefore, be careful if you use this function for
24396feb589SPekka Enberg  * registering memory regions for emulating hardware.
24496feb589SPekka Enberg  */
24596feb589SPekka Enberg void kvm__register_mem(struct kvm *kvm, u64 guest_phys, u64 size, void *userspace_addr)
2464076b041SPekka Enberg {
2472b0e3342SPekka Enberg 	struct kvm_userspace_memory_region mem;
248839051d9SSasha Levin 	int ret;
249839051d9SSasha Levin 
250839051d9SSasha Levin 	mem = (struct kvm_userspace_memory_region) {
25196feb589SPekka Enberg 		.slot			= kvm->mem_slots++,
252874467f8SSasha Levin 		.guest_phys_addr	= guest_phys,
253874467f8SSasha Levin 		.memory_size		= size,
254c4acb611SIngo Molnar 		.userspace_addr		= (unsigned long)userspace_addr,
255839051d9SSasha Levin 	};
256839051d9SSasha Levin 
257874467f8SSasha Levin 	ret = ioctl(kvm->vm_fd, KVM_SET_USER_MEMORY_REGION, &mem);
258839051d9SSasha Levin 	if (ret < 0)
259839051d9SSasha Levin 		die_perror("KVM_SET_USER_MEMORY_REGION ioctl");
260839051d9SSasha Levin }
261839051d9SSasha Levin 
262874467f8SSasha Levin /*
263874467f8SSasha Levin  * Allocating RAM size bigger than 4GB requires us to leave a gap
264874467f8SSasha Levin  * in the RAM which is used for PCI MMIO, hotplug, and unconfigured
265874467f8SSasha Levin  * devices (see documentation of e820_setup_gap() for details).
266874467f8SSasha Levin  *
267874467f8SSasha Levin  * If we're required to initialize RAM bigger than 4GB, we will create
268874467f8SSasha Levin  * a gap between 0xe0000000 and 0x100000000 in the guest virtual mem space.
269874467f8SSasha Levin  */
270874467f8SSasha Levin 
27143835ac9SSasha Levin void kvm__init_ram(struct kvm *kvm)
272874467f8SSasha Levin {
273874467f8SSasha Levin 	u64	phys_start, phys_size;
274874467f8SSasha Levin 	void	*host_mem;
275874467f8SSasha Levin 
27643835ac9SSasha Levin 	if (kvm->ram_size < KVM_32BIT_GAP_START) {
277874467f8SSasha Levin 		/* Use a single block of RAM for 32bit RAM */
278874467f8SSasha Levin 
279874467f8SSasha Levin 		phys_start = 0;
28043835ac9SSasha Levin 		phys_size  = kvm->ram_size;
28143835ac9SSasha Levin 		host_mem   = kvm->ram_start;
282874467f8SSasha Levin 
28396feb589SPekka Enberg 		kvm__register_mem(kvm, phys_start, phys_size, host_mem);
284874467f8SSasha Levin 	} else {
285874467f8SSasha Levin 		/* First RAM range from zero to the PCI gap: */
286874467f8SSasha Levin 
287874467f8SSasha Levin 		phys_start = 0;
288874467f8SSasha Levin 		phys_size  = KVM_32BIT_GAP_START;
28943835ac9SSasha Levin 		host_mem   = kvm->ram_start;
290874467f8SSasha Levin 
29196feb589SPekka Enberg 		kvm__register_mem(kvm, phys_start, phys_size, host_mem);
292874467f8SSasha Levin 
293874467f8SSasha Levin 		/* Second RAM range from 4GB to the end of RAM: */
294874467f8SSasha Levin 
295874467f8SSasha Levin 		phys_start = 0x100000000ULL;
29643835ac9SSasha Levin 		phys_size  = kvm->ram_size - phys_size;
29743835ac9SSasha Levin 		host_mem   = kvm->ram_start + phys_start;
298874467f8SSasha Levin 
29996feb589SPekka Enberg 		kvm__register_mem(kvm, phys_start, phys_size, host_mem);
300874467f8SSasha Levin 	}
301874467f8SSasha Levin }
302874467f8SSasha Levin 
30343835ac9SSasha Levin int kvm__max_cpus(struct kvm *kvm)
304384922b3SPekka Enberg {
305384922b3SPekka Enberg 	int ret;
306384922b3SPekka Enberg 
30743835ac9SSasha Levin 	ret = ioctl(kvm->sys_fd, KVM_CHECK_EXTENSION, KVM_CAP_NR_VCPUS);
308384922b3SPekka Enberg 	if (ret < 0)
309384922b3SPekka Enberg 		die_perror("KVM_CAP_NR_VCPUS");
310384922b3SPekka Enberg 
311384922b3SPekka Enberg 	return ret;
312384922b3SPekka Enberg }
313384922b3SPekka Enberg 
3145358b0e6SSasha Levin struct kvm *kvm__init(const char *kvm_dev, u64 ram_size, const char *name)
315839051d9SSasha Levin {
3169687927dSAsias He 	struct kvm_pit_config pit_config = { .flags = 0, };
31743835ac9SSasha Levin 	struct kvm *kvm;
3184076b041SPekka Enberg 	int ret;
3194076b041SPekka Enberg 
320c78b8713SAsias He 	if (!kvm__cpu_supports_vm())
321c78b8713SAsias He 		die("Your CPU does not support hardware virtualization");
322c78b8713SAsias He 
32343835ac9SSasha Levin 	kvm = kvm__new();
3244076b041SPekka Enberg 
32543835ac9SSasha Levin 	kvm->sys_fd = open(kvm_dev, O_RDWR);
32643835ac9SSasha Levin 	if (kvm->sys_fd < 0) {
3276d7c36ceSPekka Enberg 		if (errno == ENOENT)
328e907b83fSPekka Enberg 			die("'%s' not found. Please make sure your kernel has CONFIG_KVM enabled and that the KVM modules are loaded.", kvm_dev);
329f8334800SIngo Molnar 		if (errno == ENODEV)
330f8334800SIngo Molnar 			die("'%s' KVM driver not available.\n  # (If the KVM module is loaded then 'dmesg' may offer further clues about the failure.)", kvm_dev);
3316d7c36ceSPekka Enberg 
332f8334800SIngo Molnar 		fprintf(stderr, "  Fatal, could not open %s: ", kvm_dev);
333f8334800SIngo Molnar 		perror(NULL);
334f8334800SIngo Molnar 		exit(1);
3356d7c36ceSPekka Enberg 	}
336b8f6afcdSPekka Enberg 
33743835ac9SSasha Levin 	ret = ioctl(kvm->sys_fd, KVM_GET_API_VERSION, 0);
3386c7d8514SPekka Enberg 	if (ret != KVM_API_VERSION)
339f5ab5f67SPekka Enberg 		die_perror("KVM_API_VERSION ioctl");
3406c7d8514SPekka Enberg 
34143835ac9SSasha Levin 	kvm->vm_fd = ioctl(kvm->sys_fd, KVM_CREATE_VM, 0);
34243835ac9SSasha Levin 	if (kvm->vm_fd < 0)
343f5ab5f67SPekka Enberg 		die_perror("KVM_CREATE_VM ioctl");
34428fa19c0SPekka Enberg 
34543835ac9SSasha Levin 	if (kvm__check_extensions(kvm))
34655e19624SCyrill Gorcunov 		die("A required KVM extention is not supported by OS");
3479687927dSAsias He 
34843835ac9SSasha Levin 	ret = ioctl(kvm->vm_fd, KVM_SET_TSS_ADDR, 0xfffbd000);
3499687927dSAsias He 	if (ret < 0)
3509687927dSAsias He 		die_perror("KVM_SET_TSS_ADDR ioctl");
3519687927dSAsias He 
35243835ac9SSasha Levin 	ret = ioctl(kvm->vm_fd, KVM_CREATE_PIT2, &pit_config);
3539687927dSAsias He 	if (ret < 0)
3549687927dSAsias He 		die_perror("KVM_CREATE_PIT2 ioctl");
3559687927dSAsias He 
35643835ac9SSasha Levin 	kvm->ram_size		= ram_size;
3570d1f17ecSPekka Enberg 
35843835ac9SSasha Levin 	if (kvm->ram_size < KVM_32BIT_GAP_START) {
35937c34ca8SSasha Levin 		kvm->ram_start = mmap(NULL, ram_size, PROT_RW, MAP_ANON_NORESERVE, -1, 0);
360874467f8SSasha Levin 	} else {
36137c34ca8SSasha Levin 		kvm->ram_start = mmap(NULL, ram_size + KVM_32BIT_GAP_SIZE, PROT_RW, MAP_ANON_NORESERVE, -1, 0);
36243835ac9SSasha Levin 		if (kvm->ram_start != MAP_FAILED) {
363874467f8SSasha Levin 			/*
364874467f8SSasha Levin 			 * We mprotect the gap (see kvm__init_ram() for details) PROT_NONE so that
365874467f8SSasha Levin 			 * if we accidently write to it, we will know.
366874467f8SSasha Levin 			 */
36743835ac9SSasha Levin 			mprotect(kvm->ram_start + KVM_32BIT_GAP_START, KVM_32BIT_GAP_SIZE, PROT_NONE);
368874467f8SSasha Levin 		}
369874467f8SSasha Levin 	}
37043835ac9SSasha Levin 	if (kvm->ram_start == MAP_FAILED)
3710d1f17ecSPekka Enberg 		die("out of memory");
3720d1f17ecSPekka Enberg 
3737f4f39a4SSasha Levin 	madvise(kvm->ram_start, kvm->ram_size, MADV_MERGEABLE);
3747f4f39a4SSasha Levin 
37543835ac9SSasha Levin 	ret = ioctl(kvm->vm_fd, KVM_CREATE_IRQCHIP);
376895c2fefSPekka Enberg 	if (ret < 0)
3779687927dSAsias He 		die_perror("KVM_CREATE_IRQCHIP ioctl");
3789687927dSAsias He 
3795358b0e6SSasha Levin 	kvm->name = name;
3805358b0e6SSasha Levin 
3815358b0e6SSasha Levin 	kvm__create_pidfile(kvm);
3825358b0e6SSasha Levin 
38343835ac9SSasha Levin 	return kvm;
3844076b041SPekka Enberg }
3854076b041SPekka Enberg 
3865f6772b8SCyrill Gorcunov #define BOOT_LOADER_SELECTOR	0x1000
387b08e9ec4SPekka Enberg #define BOOT_LOADER_IP		0x0000
388dbdb74c2SPekka Enberg #define BOOT_LOADER_SP		0x8000
3892dd4a4edSCyrill Gorcunov #define BOOT_CMDLINE_OFFSET	0x20000
3902dd4a4edSCyrill Gorcunov 
3919a4ecdc5SPekka Enberg #define BOOT_PROTOCOL_REQUIRED	0x206
392a43f6460SCyrill Gorcunov #define LOAD_HIGH		0x01
393009b0758SPekka Enberg 
39443835ac9SSasha Levin static int load_flat_binary(struct kvm *kvm, int fd)
395009b0758SPekka Enberg {
396009b0758SPekka Enberg 	void *p;
397009b0758SPekka Enberg 	int nr;
398009b0758SPekka Enberg 
399009b0758SPekka Enberg 	if (lseek(fd, 0, SEEK_SET) < 0)
400009b0758SPekka Enberg 		die_perror("lseek");
401009b0758SPekka Enberg 
40243835ac9SSasha Levin 	p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP);
403009b0758SPekka Enberg 
404009b0758SPekka Enberg 	while ((nr = read(fd, p, 65536)) > 0)
405009b0758SPekka Enberg 		p += nr;
406009b0758SPekka Enberg 
40743835ac9SSasha Levin 	kvm->boot_selector	= BOOT_LOADER_SELECTOR;
40843835ac9SSasha Levin 	kvm->boot_ip		= BOOT_LOADER_IP;
40943835ac9SSasha Levin 	kvm->boot_sp		= BOOT_LOADER_SP;
410edc8a14dSPekka Enberg 
4117fb218bdSPekka Enberg 	return true;
412009b0758SPekka Enberg }
413009b0758SPekka Enberg 
414ae1fae34SPekka Enberg static const char *BZIMAGE_MAGIC	= "HdrS";
415ae1fae34SPekka Enberg 
41643835ac9SSasha Levin static bool load_bzimage(struct kvm *kvm, int fd_kernel,
41753861c74SJohn Floren 			int fd_initrd, const char *kernel_cmdline, u16 vidmode)
418ae1fae34SPekka Enberg {
419b9271160SPekka Enberg 	struct boot_params *kern_boot;
4204b62331fSPekka Enberg 	unsigned long setup_sects;
421b9271160SPekka Enberg 	struct boot_params boot;
4222dd4a4edSCyrill Gorcunov 	size_t cmdline_size;
4237fb218bdSPekka Enberg 	ssize_t setup_size;
42422489bb0SCyrill Gorcunov 	void *p;
425ae1fae34SPekka Enberg 	int nr;
426ae1fae34SPekka Enberg 
4275d67eaf6SPekka Enberg 	/*
4285d67eaf6SPekka Enberg 	 * See Documentation/x86/boot.txt for details no bzImage on-disk and
4295d67eaf6SPekka Enberg 	 * memory layout.
4305d67eaf6SPekka Enberg 	 */
4315d67eaf6SPekka Enberg 
4322065a6f7SCyrill Gorcunov 	if (lseek(fd_kernel, 0, SEEK_SET) < 0)
433009b0758SPekka Enberg 		die_perror("lseek");
434009b0758SPekka Enberg 
4350b62d2bbSPekka Enberg 	if (read(fd_kernel, &boot, sizeof(boot)) != sizeof(boot))
4362346d461SPekka Enberg 		return false;
437ae1fae34SPekka Enberg 
4380b62d2bbSPekka Enberg 	if (memcmp(&boot.hdr.header, BZIMAGE_MAGIC, strlen(BZIMAGE_MAGIC)))
4397fb218bdSPekka Enberg 		return false;
440ae1fae34SPekka Enberg 
4410ea58e5bSPekka Enberg 	if (boot.hdr.version < BOOT_PROTOCOL_REQUIRED)
4420b62d2bbSPekka Enberg 		die("Too old kernel");
443ad681038SCyrill Gorcunov 
4442065a6f7SCyrill Gorcunov 	if (lseek(fd_kernel, 0, SEEK_SET) < 0)
445e93ab78aSPekka Enberg 		die_perror("lseek");
446e93ab78aSPekka Enberg 
4474cf542bbSCyrill Gorcunov 	if (!boot.hdr.setup_sects)
4484cf542bbSCyrill Gorcunov 		boot.hdr.setup_sects = BZ_DEFAULT_SETUP_SECTS;
44910943d14SPekka Enberg 	setup_sects = boot.hdr.setup_sects + 1;
45010943d14SPekka Enberg 
45154d4a626SPekka Enberg 	setup_size = setup_sects << 9;
45243835ac9SSasha Levin 	p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP);
453ae1fae34SPekka Enberg 
4542065a6f7SCyrill Gorcunov 	/* copy setup.bin to mem*/
4552065a6f7SCyrill Gorcunov 	if (read(fd_kernel, p, setup_size) != setup_size)
4567fb218bdSPekka Enberg 		die_perror("read");
4577fb218bdSPekka Enberg 
4582065a6f7SCyrill Gorcunov 	/* copy vmlinux.bin to BZ_KERNEL_START*/
45943835ac9SSasha Levin 	p = guest_flat_to_host(kvm, BZ_KERNEL_START);
460ae1fae34SPekka Enberg 
4612065a6f7SCyrill Gorcunov 	while ((nr = read(fd_kernel, p, 65536)) > 0)
462ae1fae34SPekka Enberg 		p += nr;
463ae1fae34SPekka Enberg 
46443835ac9SSasha Levin 	p = guest_flat_to_host(kvm, BOOT_CMDLINE_OFFSET);
465debcfac0SCyrill Gorcunov 	if (kernel_cmdline) {
466debcfac0SCyrill Gorcunov 		cmdline_size = strlen(kernel_cmdline) + 1;
467debcfac0SCyrill Gorcunov 		if (cmdline_size > boot.hdr.cmdline_size)
468debcfac0SCyrill Gorcunov 			cmdline_size = boot.hdr.cmdline_size;
469ad681038SCyrill Gorcunov 
4702dd4a4edSCyrill Gorcunov 		memset(p, 0, boot.hdr.cmdline_size);
4712dd4a4edSCyrill Gorcunov 		memcpy(p, kernel_cmdline, cmdline_size - 1);
472debcfac0SCyrill Gorcunov 	}
473debcfac0SCyrill Gorcunov 
47443835ac9SSasha Levin 	kern_boot	= guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, 0x00);
475a43f6460SCyrill Gorcunov 
476b9271160SPekka Enberg 	kern_boot->hdr.cmd_line_ptr	= BOOT_CMDLINE_OFFSET;
477b9271160SPekka Enberg 	kern_boot->hdr.type_of_loader	= 0xff;
478b9271160SPekka Enberg 	kern_boot->hdr.heap_end_ptr	= 0xfe00;
479b9271160SPekka Enberg 	kern_boot->hdr.loadflags	|= CAN_USE_HEAP;
48053861c74SJohn Floren 	kern_boot->hdr.vid_mode		= vidmode;
481a43f6460SCyrill Gorcunov 
4822065a6f7SCyrill Gorcunov 	/*
4832065a6f7SCyrill Gorcunov 	 * Read initrd image into guest memory
4842065a6f7SCyrill Gorcunov 	 */
4852065a6f7SCyrill Gorcunov 	if (fd_initrd >= 0) {
4862065a6f7SCyrill Gorcunov 		struct stat initrd_stat;
4872065a6f7SCyrill Gorcunov 		unsigned long addr;
4882065a6f7SCyrill Gorcunov 
4892065a6f7SCyrill Gorcunov 		if (fstat(fd_initrd, &initrd_stat))
4902065a6f7SCyrill Gorcunov 			die_perror("fstat");
4912065a6f7SCyrill Gorcunov 
4922065a6f7SCyrill Gorcunov 		addr = boot.hdr.initrd_addr_max & ~0xfffff;
4932065a6f7SCyrill Gorcunov 		for (;;) {
4942065a6f7SCyrill Gorcunov 			if (addr < BZ_KERNEL_START)
4952065a6f7SCyrill Gorcunov 				die("Not enough memory for initrd");
49643835ac9SSasha Levin 			else if (addr < (kvm->ram_size - initrd_stat.st_size))
4972065a6f7SCyrill Gorcunov 				break;
4982065a6f7SCyrill Gorcunov 			addr -= 0x100000;
4992065a6f7SCyrill Gorcunov 		}
5002065a6f7SCyrill Gorcunov 
50143835ac9SSasha Levin 		p = guest_flat_to_host(kvm, addr);
5022065a6f7SCyrill Gorcunov 		nr = read(fd_initrd, p, initrd_stat.st_size);
5032065a6f7SCyrill Gorcunov 		if (nr != initrd_stat.st_size)
5042065a6f7SCyrill Gorcunov 			die("Failed to read initrd");
5052065a6f7SCyrill Gorcunov 
5062065a6f7SCyrill Gorcunov 		kern_boot->hdr.ramdisk_image	= addr;
5072065a6f7SCyrill Gorcunov 		kern_boot->hdr.ramdisk_size	= initrd_stat.st_size;
5082065a6f7SCyrill Gorcunov 	}
5092065a6f7SCyrill Gorcunov 
51043835ac9SSasha Levin 	kvm->boot_selector	= BOOT_LOADER_SELECTOR;
511edc8a14dSPekka Enberg 	/*
512edc8a14dSPekka Enberg 	 * The real-mode setup code starts at offset 0x200 of a bzImage. See
513edc8a14dSPekka Enberg 	 * Documentation/x86/boot.txt for details.
514edc8a14dSPekka Enberg 	 */
51543835ac9SSasha Levin 	kvm->boot_ip		= BOOT_LOADER_IP + 0x200;
51643835ac9SSasha Levin 	kvm->boot_sp		= BOOT_LOADER_SP;
517edc8a14dSPekka Enberg 
5187fb218bdSPekka Enberg 	return true;
519ae1fae34SPekka Enberg }
520ae1fae34SPekka Enberg 
52172811558SPekka Enberg /* RFC 1952 */
52272811558SPekka Enberg #define GZIP_ID1		0x1f
52372811558SPekka Enberg #define GZIP_ID2		0x8b
52472811558SPekka Enberg 
52572811558SPekka Enberg static bool initrd_check(int fd)
52672811558SPekka Enberg {
52772811558SPekka Enberg 	unsigned char id[2];
52872811558SPekka Enberg 
52972811558SPekka Enberg 	if (read_in_full(fd, id, ARRAY_SIZE(id)) < 0)
53072811558SPekka Enberg 		return false;
53172811558SPekka Enberg 
53272811558SPekka Enberg 	if (lseek(fd, 0, SEEK_SET) < 0)
53372811558SPekka Enberg 		die_perror("lseek");
53472811558SPekka Enberg 
53572811558SPekka Enberg 	return id[0] == GZIP_ID1 && id[1] == GZIP_ID2;
53672811558SPekka Enberg }
53772811558SPekka Enberg 
5386d1f350dSCyrill Gorcunov bool kvm__load_kernel(struct kvm *kvm, const char *kernel_filename,
53953861c74SJohn Floren 		const char *initrd_filename, const char *kernel_cmdline, u16 vidmode)
540ae1fae34SPekka Enberg {
5417fb218bdSPekka Enberg 	bool ret;
5422065a6f7SCyrill Gorcunov 	int fd_kernel = -1, fd_initrd = -1;
543ae1fae34SPekka Enberg 
5442065a6f7SCyrill Gorcunov 	fd_kernel = open(kernel_filename, O_RDONLY);
5452065a6f7SCyrill Gorcunov 	if (fd_kernel < 0)
5460b62d2bbSPekka Enberg 		die("Unable to open kernel %s", kernel_filename);
547ae1fae34SPekka Enberg 
5482065a6f7SCyrill Gorcunov 	if (initrd_filename) {
5492065a6f7SCyrill Gorcunov 		fd_initrd = open(initrd_filename, O_RDONLY);
5502065a6f7SCyrill Gorcunov 		if (fd_initrd < 0)
5510b62d2bbSPekka Enberg 			die("Unable to open initrd %s", initrd_filename);
55272811558SPekka Enberg 
55372811558SPekka Enberg 		if (!initrd_check(fd_initrd))
55472811558SPekka Enberg 			die("%s is not an initrd", initrd_filename);
5552065a6f7SCyrill Gorcunov 	}
5562065a6f7SCyrill Gorcunov 
55753861c74SJohn Floren 	ret = load_bzimage(kvm, fd_kernel, fd_initrd, kernel_cmdline, vidmode);
55828972750SCyrill Gorcunov 
55928972750SCyrill Gorcunov 	if (initrd_filename)
56028972750SCyrill Gorcunov 		close(fd_initrd);
56128972750SCyrill Gorcunov 
562009b0758SPekka Enberg 	if (ret)
563009b0758SPekka Enberg 		goto found_kernel;
564ae1fae34SPekka Enberg 
5654542f276SCyrill Gorcunov 	pr_warning("%s is not a bzImage. Trying to load it as a flat binary...", kernel_filename);
5660b62d2bbSPekka Enberg 
5672065a6f7SCyrill Gorcunov 	ret = load_flat_binary(kvm, fd_kernel);
568009b0758SPekka Enberg 	if (ret)
569009b0758SPekka Enberg 		goto found_kernel;
570009b0758SPekka Enberg 
5715a6ac675SSasha Levin 	close(fd_kernel);
5725a6ac675SSasha Levin 
573009b0758SPekka Enberg 	die("%s is not a valid bzImage or flat binary", kernel_filename);
574009b0758SPekka Enberg 
575009b0758SPekka Enberg found_kernel:
5765a6ac675SSasha Levin 	close(fd_kernel);
5775a6ac675SSasha Levin 
578ae1fae34SPekka Enberg 	return ret;
579ae1fae34SPekka Enberg }
580ae1fae34SPekka Enberg 
581b3594ec7SCyrill Gorcunov /**
582b3594ec7SCyrill Gorcunov  * kvm__setup_bios - inject BIOS into guest system memory
58343835ac9SSasha Levin  * @kvm - guest system descriptor
584b3594ec7SCyrill Gorcunov  *
585b3594ec7SCyrill Gorcunov  * This function is a main routine where we poke guest memory
586b3594ec7SCyrill Gorcunov  * and install BIOS there.
587b3594ec7SCyrill Gorcunov  */
58843835ac9SSasha Levin void kvm__setup_bios(struct kvm *kvm)
5892f3976eeSPekka Enberg {
590b3594ec7SCyrill Gorcunov 	/* standart minimal configuration */
59143835ac9SSasha Levin 	setup_bios(kvm);
5922f3976eeSPekka Enberg 
593b3594ec7SCyrill Gorcunov 	/* FIXME: SMP, ACPI and friends here */
5940c7c14a7SCyrill Gorcunov 
5950c7c14a7SCyrill Gorcunov 	/* MP table */
59643835ac9SSasha Levin 	mptable_setup(kvm, kvm->nrcpus);
5972f3976eeSPekka Enberg }
5982f3976eeSPekka Enberg 
599ce79f1caSPekka Enberg #define TIMER_INTERVAL_NS 1000000	/* 1 msec */
600ce79f1caSPekka Enberg 
601ce79f1caSPekka Enberg /*
602ce79f1caSPekka Enberg  * This function sets up a timer that's used to inject interrupts from the
603ce79f1caSPekka Enberg  * userspace hypervisor into the guest at periodical intervals. Please note
604ce79f1caSPekka Enberg  * that clock interrupt, for example, is not handled here.
605ce79f1caSPekka Enberg  */
60643835ac9SSasha Levin void kvm__start_timer(struct kvm *kvm)
607ce79f1caSPekka Enberg {
608ce79f1caSPekka Enberg 	struct itimerspec its;
609ce79f1caSPekka Enberg 	struct sigevent sev;
610ce79f1caSPekka Enberg 
611ce79f1caSPekka Enberg 	memset(&sev, 0, sizeof(struct sigevent));
612ce79f1caSPekka Enberg 	sev.sigev_value.sival_int	= 0;
613c7828731SSasha Levin 	sev.sigev_notify		= SIGEV_THREAD_ID;
614ce79f1caSPekka Enberg 	sev.sigev_signo			= SIGALRM;
615c7828731SSasha Levin 	sev._sigev_un._tid		= syscall(__NR_gettid);
616ce79f1caSPekka Enberg 
61743835ac9SSasha Levin 	if (timer_create(CLOCK_REALTIME, &sev, &kvm->timerid) < 0)
618ce79f1caSPekka Enberg 		die("timer_create()");
619ce79f1caSPekka Enberg 
620ce79f1caSPekka Enberg 	its.it_value.tv_sec		= TIMER_INTERVAL_NS / 1000000000;
621ce79f1caSPekka Enberg 	its.it_value.tv_nsec		= TIMER_INTERVAL_NS % 1000000000;
622ce79f1caSPekka Enberg 	its.it_interval.tv_sec		= its.it_value.tv_sec;
623ce79f1caSPekka Enberg 	its.it_interval.tv_nsec		= its.it_value.tv_nsec;
624ce79f1caSPekka Enberg 
62543835ac9SSasha Levin 	if (timer_settime(kvm->timerid, 0, &its, NULL) < 0)
626ce79f1caSPekka Enberg 		die("timer_settime()");
627ce79f1caSPekka Enberg }
628ce79f1caSPekka Enberg 
62943835ac9SSasha Levin void kvm__stop_timer(struct kvm *kvm)
630fbfe68b7SSasha Levin {
63143835ac9SSasha Levin 	if (kvm->timerid)
63243835ac9SSasha Levin 		if (timer_delete(kvm->timerid) < 0)
633fbfe68b7SSasha Levin 			die("timer_delete()");
634fbfe68b7SSasha Levin 
63543835ac9SSasha Levin 	kvm->timerid = 0;
636fbfe68b7SSasha Levin }
637fbfe68b7SSasha Levin 
63843835ac9SSasha Levin void kvm__irq_line(struct kvm *kvm, int irq, int level)
6398b1ff07eSPekka Enberg {
6408b1ff07eSPekka Enberg 	struct kvm_irq_level irq_level;
6418b1ff07eSPekka Enberg 
6428b1ff07eSPekka Enberg 	irq_level	= (struct kvm_irq_level) {
6438b1ff07eSPekka Enberg 		{
6448b1ff07eSPekka Enberg 			.irq		= irq,
6458b1ff07eSPekka Enberg 		},
6468b1ff07eSPekka Enberg 		.level		= level,
6478b1ff07eSPekka Enberg 	};
6488b1ff07eSPekka Enberg 
64943835ac9SSasha Levin 	if (ioctl(kvm->vm_fd, KVM_IRQ_LINE, &irq_level) < 0)
6508b1ff07eSPekka Enberg 		die_perror("KVM_IRQ_LINE failed");
6518b1ff07eSPekka Enberg }
6528b1ff07eSPekka Enberg 
65343835ac9SSasha Levin void kvm__dump_mem(struct kvm *kvm, unsigned long addr, unsigned long size)
654090f898eSCyrill Gorcunov {
655090f898eSCyrill Gorcunov 	unsigned char *p;
656090f898eSCyrill Gorcunov 	unsigned long n;
657090f898eSCyrill Gorcunov 
658090f898eSCyrill Gorcunov 	size &= ~7; /* mod 8 */
659090f898eSCyrill Gorcunov 	if (!size)
660090f898eSCyrill Gorcunov 		return;
661090f898eSCyrill Gorcunov 
66243835ac9SSasha Levin 	p = guest_flat_to_host(kvm, addr);
663090f898eSCyrill Gorcunov 
66448cf3877SPekka Enberg 	for (n = 0; n < size; n += 8) {
66543835ac9SSasha Levin 		if (!host_ptr_in_ram(kvm, p + n))
66648cf3877SPekka Enberg 			break;
66748cf3877SPekka Enberg 
668090f898eSCyrill Gorcunov 		printf("  0x%08lx: %02x %02x %02x %02x  %02x %02x %02x %02x\n",
669090f898eSCyrill Gorcunov 			addr + n, p[n + 0], p[n + 1], p[n + 2], p[n + 3],
670090f898eSCyrill Gorcunov 				  p[n + 4], p[n + 5], p[n + 6], p[n + 7]);
671090f898eSCyrill Gorcunov 	}
67248cf3877SPekka Enberg }
6734298ddadSSasha Levin 
6744298ddadSSasha Levin void kvm__pause(void)
6754298ddadSSasha Levin {
6764298ddadSSasha Levin 	int i, paused_vcpus = 0;
6774298ddadSSasha Levin 
6784298ddadSSasha Levin 	/* Check if the guest is running */
6794298ddadSSasha Levin 	if (!kvm_cpus[0] || kvm_cpus[0]->thread == 0)
6804298ddadSSasha Levin 		return;
6814298ddadSSasha Levin 
6824298ddadSSasha Levin 	mutex_lock(&pause_lock);
6834298ddadSSasha Levin 
6844298ddadSSasha Levin 	pause_event = eventfd(0, 0);
6854298ddadSSasha Levin 	if (pause_event < 0)
6864298ddadSSasha Levin 		die("Failed creating pause notification event");
6874298ddadSSasha Levin 	for (i = 0; i < kvm->nrcpus; i++)
6884298ddadSSasha Levin 		pthread_kill(kvm_cpus[i]->thread, SIGKVMPAUSE);
6894298ddadSSasha Levin 
6904298ddadSSasha Levin 	while (paused_vcpus < kvm->nrcpus) {
6914298ddadSSasha Levin 		u64 cur_read;
6924298ddadSSasha Levin 
6934298ddadSSasha Levin 		if (read(pause_event, &cur_read, sizeof(cur_read)) < 0)
6944298ddadSSasha Levin 			die("Failed reading pause event");
6954298ddadSSasha Levin 		paused_vcpus += cur_read;
6964298ddadSSasha Levin 	}
6974298ddadSSasha Levin 	close(pause_event);
6984298ddadSSasha Levin }
6994298ddadSSasha Levin 
7004298ddadSSasha Levin void kvm__continue(void)
7014298ddadSSasha Levin {
7024298ddadSSasha Levin 	/* Check if the guest is running */
7034298ddadSSasha Levin 	if (!kvm_cpus[0] || kvm_cpus[0]->thread == 0)
7044298ddadSSasha Levin 		return;
7054298ddadSSasha Levin 
7064298ddadSSasha Levin 	mutex_unlock(&pause_lock);
7074298ddadSSasha Levin }
7084298ddadSSasha Levin 
7094298ddadSSasha Levin void kvm__notify_paused(void)
7104298ddadSSasha Levin {
7114298ddadSSasha Levin 	u64 p = 1;
7124298ddadSSasha Levin 
7134298ddadSSasha Levin 	if (write(pause_event, &p, sizeof(p)) < 0)
7144298ddadSSasha Levin 		die("Failed notifying of paused VCPU.");
7154298ddadSSasha Levin 
7164298ddadSSasha Levin 	mutex_lock(&pause_lock);
7174298ddadSSasha Levin 	mutex_unlock(&pause_lock);
7184298ddadSSasha Levin }
719