xref: /freebsd/lib/libvmmapi/vmmapi.h (revision da5137ab)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2011 NetApp, Inc.
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  *
28  * $FreeBSD$
29  */
30 
31 #ifndef _VMMAPI_H_
32 #define	_VMMAPI_H_
33 
34 #include <sys/param.h>
35 #include <sys/cpuset.h>
36 #include <machine/vmm_dev.h>
37 
38 #include <stdbool.h>
39 
40 /*
41  * API version for out-of-tree consumers like grub-bhyve for making compile
42  * time decisions.
43  */
44 #define	VMMAPI_VERSION	0103	/* 2 digit major followed by 2 digit minor */
45 
46 struct iovec;
47 struct vmctx;
48 struct vm_snapshot_meta;
49 enum x2apic_state;
50 
51 /*
52  * Different styles of mapping the memory assigned to a VM into the address
53  * space of the controlling process.
54  */
55 enum vm_mmap_style {
56 	VM_MMAP_NONE,		/* no mapping */
57 	VM_MMAP_ALL,		/* fully and statically mapped */
58 	VM_MMAP_SPARSE,		/* mappings created on-demand */
59 };
60 
61 /*
62  * 'flags' value passed to 'vm_set_memflags()'.
63  */
64 #define	VM_MEM_F_INCORE	0x01	/* include guest memory in core file */
65 #define	VM_MEM_F_WIRED	0x02	/* guest memory is wired */
66 
67 /*
68  * Identifiers for memory segments:
69  * - vm_setup_memory() uses VM_SYSMEM for the system memory segment.
70  * - the remaining identifiers can be used to create devmem segments.
71  */
72 enum {
73 	VM_SYSMEM,
74 	VM_BOOTROM,
75 	VM_FRAMEBUFFER,
76 	VM_PCIROM,
77 };
78 
79 /*
80  * Get the length and name of the memory segment identified by 'segid'.
81  * Note that system memory segments are identified with a nul name.
82  *
83  * Returns 0 on success and non-zero otherwise.
84  */
85 int	vm_get_memseg(struct vmctx *ctx, int ident, size_t *lenp, char *name,
86 	    size_t namesiz);
87 
88 /*
89  * Iterate over the guest address space. This function finds an address range
90  * that starts at an address >= *gpa.
91  *
92  * Returns 0 if the next address range was found and non-zero otherwise.
93  */
94 int	vm_mmap_getnext(struct vmctx *ctx, vm_paddr_t *gpa, int *segid,
95 	    vm_ooffset_t *segoff, size_t *len, int *prot, int *flags);
96 
97 int	vm_get_guestmem_from_ctx(struct vmctx *ctx, char **guest_baseaddr,
98 				 size_t *lowmem_size, size_t *highmem_size);
99 
100 /*
101  * Create a device memory segment identified by 'segid'.
102  *
103  * Returns a pointer to the memory segment on success and MAP_FAILED otherwise.
104  */
105 void	*vm_create_devmem(struct vmctx *ctx, int segid, const char *name,
106 	    size_t len);
107 
108 /*
109  * Map the memory segment identified by 'segid' into the guest address space
110  * at [gpa,gpa+len) with protection 'prot'.
111  */
112 int	vm_mmap_memseg(struct vmctx *ctx, vm_paddr_t gpa, int segid,
113 	    vm_ooffset_t segoff, size_t len, int prot);
114 
115 int	vm_munmap_memseg(struct vmctx *ctx, vm_paddr_t gpa, size_t len);
116 
117 int	vm_create(const char *name);
118 int	vm_get_device_fd(struct vmctx *ctx);
119 struct vmctx *vm_open(const char *name);
120 void	vm_destroy(struct vmctx *ctx);
121 int	vm_parse_memsize(const char *optarg, size_t *memsize);
122 int	vm_setup_memory(struct vmctx *ctx, size_t len, enum vm_mmap_style s);
123 void	*vm_map_gpa(struct vmctx *ctx, vm_paddr_t gaddr, size_t len);
124 /* inverse operation to vm_map_gpa - extract guest address from host pointer */
125 vm_paddr_t vm_rev_map_gpa(struct vmctx *ctx, void *addr);
126 int	vm_get_gpa_pmap(struct vmctx *, uint64_t gpa, uint64_t *pte, int *num);
127 int	vm_gla2gpa(struct vmctx *, int vcpuid, struct vm_guest_paging *paging,
128 		   uint64_t gla, int prot, uint64_t *gpa, int *fault);
129 int	vm_gla2gpa_nofault(struct vmctx *, int vcpuid,
130 		   struct vm_guest_paging *paging, uint64_t gla, int prot,
131 		   uint64_t *gpa, int *fault);
132 uint32_t vm_get_lowmem_limit(struct vmctx *ctx);
133 void	vm_set_lowmem_limit(struct vmctx *ctx, uint32_t limit);
134 void	vm_set_memflags(struct vmctx *ctx, int flags);
135 int	vm_get_memflags(struct vmctx *ctx);
136 const char *vm_get_name(struct vmctx *ctx);
137 size_t	vm_get_lowmem_size(struct vmctx *ctx);
138 size_t	vm_get_highmem_size(struct vmctx *ctx);
139 int	vm_set_desc(struct vmctx *ctx, int vcpu, int reg,
140 		    uint64_t base, uint32_t limit, uint32_t access);
141 int	vm_get_desc(struct vmctx *ctx, int vcpu, int reg,
142 		    uint64_t *base, uint32_t *limit, uint32_t *access);
143 int	vm_get_seg_desc(struct vmctx *ctx, int vcpu, int reg,
144 			struct seg_desc *seg_desc);
145 int	vm_set_register(struct vmctx *ctx, int vcpu, int reg, uint64_t val);
146 int	vm_get_register(struct vmctx *ctx, int vcpu, int reg, uint64_t *retval);
147 int	vm_set_register_set(struct vmctx *ctx, int vcpu, unsigned int count,
148     const int *regnums, uint64_t *regvals);
149 int	vm_get_register_set(struct vmctx *ctx, int vcpu, unsigned int count,
150     const int *regnums, uint64_t *regvals);
151 int	vm_run(struct vmctx *ctx, int vcpu, struct vm_exit *ret_vmexit);
152 int	vm_suspend(struct vmctx *ctx, enum vm_suspend_how how);
153 int	vm_reinit(struct vmctx *ctx);
154 int	vm_apicid2vcpu(struct vmctx *ctx, int apicid);
155 int	vm_inject_exception(struct vmctx *ctx, int vcpu, int vector,
156     int errcode_valid, uint32_t errcode, int restart_instruction);
157 int	vm_lapic_irq(struct vmctx *ctx, int vcpu, int vector);
158 int	vm_lapic_local_irq(struct vmctx *ctx, int vcpu, int vector);
159 int	vm_lapic_msi(struct vmctx *ctx, uint64_t addr, uint64_t msg);
160 int	vm_ioapic_assert_irq(struct vmctx *ctx, int irq);
161 int	vm_ioapic_deassert_irq(struct vmctx *ctx, int irq);
162 int	vm_ioapic_pulse_irq(struct vmctx *ctx, int irq);
163 int	vm_ioapic_pincount(struct vmctx *ctx, int *pincount);
164 int	vm_readwrite_kernemu_device(struct vmctx *ctx, int vcpu,
165 	    vm_paddr_t gpa, bool write, int size, uint64_t *value);
166 int	vm_isa_assert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq);
167 int	vm_isa_deassert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq);
168 int	vm_isa_pulse_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq);
169 int	vm_isa_set_irq_trigger(struct vmctx *ctx, int atpic_irq,
170 	    enum vm_intr_trigger trigger);
171 int	vm_inject_nmi(struct vmctx *ctx, int vcpu);
172 int	vm_capability_name2type(const char *capname);
173 const char *vm_capability_type2name(int type);
174 int	vm_get_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap,
175 			  int *retval);
176 int	vm_set_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap,
177 			  int val);
178 int	vm_assign_pptdev(struct vmctx *ctx, int bus, int slot, int func);
179 int	vm_unassign_pptdev(struct vmctx *ctx, int bus, int slot, int func);
180 int	vm_map_pptdev_mmio(struct vmctx *ctx, int bus, int slot, int func,
181 			   vm_paddr_t gpa, size_t len, vm_paddr_t hpa);
182 int	vm_unmap_pptdev_mmio(struct vmctx *ctx, int bus, int slot, int func,
183 			     vm_paddr_t gpa, size_t len);
184 int	vm_setup_pptdev_msi(struct vmctx *ctx, int vcpu, int bus, int slot,
185 	    int func, uint64_t addr, uint64_t msg, int numvec);
186 int	vm_setup_pptdev_msix(struct vmctx *ctx, int vcpu, int bus, int slot,
187 	    int func, int idx, uint64_t addr, uint64_t msg,
188 	    uint32_t vector_control);
189 int	vm_disable_pptdev_msix(struct vmctx *ctx, int bus, int slot, int func);
190 
191 int	vm_get_intinfo(struct vmctx *ctx, int vcpu, uint64_t *i1, uint64_t *i2);
192 int	vm_set_intinfo(struct vmctx *ctx, int vcpu, uint64_t exit_intinfo);
193 
194 const cap_ioctl_t *vm_get_ioctls(size_t *len);
195 
196 /*
197  * Return a pointer to the statistics buffer. Note that this is not MT-safe.
198  */
199 uint64_t *vm_get_stats(struct vmctx *ctx, int vcpu, struct timeval *ret_tv,
200 		       int *ret_entries);
201 const char *vm_get_stat_desc(struct vmctx *ctx, int index);
202 
203 int	vm_get_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state *s);
204 int	vm_set_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state s);
205 
206 int	vm_get_hpet_capabilities(struct vmctx *ctx, uint32_t *capabilities);
207 
208 /*
209  * Translate the GLA range [gla,gla+len) into GPA segments in 'iov'.
210  * The 'iovcnt' should be big enough to accommodate all GPA segments.
211  *
212  * retval	fault		Interpretation
213  *   0		  0		Success
214  *   0		  1		An exception was injected into the guest
215  * EFAULT	 N/A		Error
216  */
217 int	vm_copy_setup(struct vmctx *ctx, int vcpu, struct vm_guest_paging *pg,
218 	    uint64_t gla, size_t len, int prot, struct iovec *iov, int iovcnt,
219 	    int *fault);
220 void	vm_copyin(struct vmctx *ctx, int vcpu, struct iovec *guest_iov,
221 	    void *host_dst, size_t len);
222 void	vm_copyout(struct vmctx *ctx, int vcpu, const void *host_src,
223 	    struct iovec *guest_iov, size_t len);
224 void	vm_copy_teardown(struct vmctx *ctx, int vcpu, struct iovec *iov,
225 	    int iovcnt);
226 
227 /* RTC */
228 int	vm_rtc_write(struct vmctx *ctx, int offset, uint8_t value);
229 int	vm_rtc_read(struct vmctx *ctx, int offset, uint8_t *retval);
230 int	vm_rtc_settime(struct vmctx *ctx, time_t secs);
231 int	vm_rtc_gettime(struct vmctx *ctx, time_t *secs);
232 
233 /* Reset vcpu register state */
234 int	vcpu_reset(struct vmctx *ctx, int vcpu);
235 
236 int	vm_active_cpus(struct vmctx *ctx, cpuset_t *cpus);
237 int	vm_suspended_cpus(struct vmctx *ctx, cpuset_t *cpus);
238 int	vm_debug_cpus(struct vmctx *ctx, cpuset_t *cpus);
239 int	vm_activate_cpu(struct vmctx *ctx, int vcpu);
240 int	vm_suspend_cpu(struct vmctx *ctx, int vcpu);
241 int	vm_resume_cpu(struct vmctx *ctx, int vcpu);
242 
243 /* CPU topology */
244 int	vm_set_topology(struct vmctx *ctx, uint16_t sockets, uint16_t cores,
245 	    uint16_t threads, uint16_t maxcpus);
246 int	vm_get_topology(struct vmctx *ctx, uint16_t *sockets, uint16_t *cores,
247 	    uint16_t *threads, uint16_t *maxcpus);
248 
249 /*
250  * FreeBSD specific APIs
251  */
252 int	vm_setup_freebsd_registers(struct vmctx *ctx, int vcpu,
253 				uint64_t rip, uint64_t cr3, uint64_t gdtbase,
254 				uint64_t rsp);
255 int	vm_setup_freebsd_registers_i386(struct vmctx *vmctx, int vcpu,
256 					uint32_t eip, uint32_t gdtbase,
257 					uint32_t esp);
258 void	vm_setup_freebsd_gdt(uint64_t *gdtr);
259 
260 /*
261  * Save and restore
262  */
263 int	vm_snapshot_req(struct vm_snapshot_meta *meta);
264 int	vm_restore_time(struct vmctx *ctx);
265 
266 #endif	/* _VMMAPI_H_ */
267