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Andrew Scull18834872018-10-12 11:48:09 +01001/*
Andrew Walbran692b3252019-03-07 15:51:31 +00002 * Copyright 2018 The Hafnium Authors.
Andrew Scull18834872018-10-12 11:48:09 +01003 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * https://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Andrew Scull18c78fc2018-08-20 12:57:41 +010017#include "hf/cpu.h"
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +010018
Andrew Scull04502e42018-09-03 14:54:52 +010019#include <stdalign.h>
20
Andrew Scull18c78fc2018-08-20 12:57:41 +010021#include "hf/arch/cpu.h"
22
23#include "hf/api.h"
Andrew Scull877ae4b2019-07-02 12:52:33 +010024#include "hf/check.h"
Andrew Scull18c78fc2018-08-20 12:57:41 +010025#include "hf/dlog.h"
Andrew Walbranb037d5b2019-06-25 17:19:41 +010026#include "hf/spci.h"
Andrew Scull8d9e1212019-04-05 13:52:55 +010027#include "hf/std.h"
Andrew Scull18c78fc2018-08-20 12:57:41 +010028#include "hf/vm.h"
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +010029
Andrew Scull19503262018-09-20 14:48:39 +010030#include "vmapi/hf/call.h"
31
Andrew Scull23e93a82018-10-26 14:56:04 +010032#define STACK_SIZE PAGE_SIZE
33
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010034/* The stack to be used by the CPUs. */
Andrew Scull37402872018-10-24 14:23:06 +010035alignas(2 * sizeof(uintreg_t)) static char callstacks[MAX_CPUS][STACK_SIZE];
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010036
Jose Marinho20713fa2019-08-07 15:42:07 +010037/**
38 * Internal buffer used to store SPCI messages from a VM Tx. Its usage prevents
39 * TOCTOU issues while Hafnium performs actions on information that would
40 * otherwise be re-writable by the VM.
41 *
42 * Each buffer is owned by a single cpu. The buffer can only be used for
43 * spci_msg_send. The information stored in the buffer is only valid during the
44 * spci_msg_send request is performed.
45 */
46alignas(PAGE_SIZE) uint8_t cpu_message_buffer[MAX_CPUS][PAGE_SIZE];
47
48uint8_t *cpu_get_buffer(cpu_id_t cpu_id)
49{
50 CHECK(cpu_id < MAX_CPUS);
51
52 return cpu_message_buffer[cpu_id];
53}
54
55uint32_t cpu_get_buffer_size(cpu_id_t cpu_id)
56{
57 CHECK(cpu_id < MAX_CPUS);
58
59 return sizeof(cpu_message_buffer[cpu_id]);
60}
61
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010062/* State of all supported CPUs. The stack of the first one is initialized. */
63struct cpu cpus[MAX_CPUS] = {
64 {
65 .is_on = 1,
Andrew Scullf3d45592018-09-20 14:30:22 +010066 .stack_bottom = &callstacks[0][STACK_SIZE],
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010067 },
68};
69
Andrew Scullbb3ab6c2018-11-26 20:38:49 +000070static uint32_t cpu_count = 1;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010071
Andrew Walbran4d3fa282019-06-26 13:31:15 +010072void cpu_module_init(const cpu_id_t *cpu_ids, size_t count)
Andrew Scullbb3ab6c2018-11-26 20:38:49 +000073{
74 uint32_t i;
75 uint32_t j;
Andrew Walbran4d3fa282019-06-26 13:31:15 +010076 cpu_id_t boot_cpu_id = cpus[0].id;
Andrew Scullbb3ab6c2018-11-26 20:38:49 +000077 bool found_boot_cpu = false;
78
79 cpu_count = count;
80
81 /*
82 * Initialize CPUs with the IDs from the configuration passed in. The
83 * CPUs after the boot CPU are initialized in reverse order. The boot
84 * CPU is initialized when it is found or in place of the last CPU if it
85 * is not found.
86 */
87 j = cpu_count;
88 for (i = 0; i < cpu_count; ++i) {
89 struct cpu *c;
Andrew Walbran4d3fa282019-06-26 13:31:15 +010090 cpu_id_t id = cpu_ids[i];
Andrew Scullbb3ab6c2018-11-26 20:38:49 +000091
92 if (found_boot_cpu || id != boot_cpu_id) {
Andrew Scull48973982019-08-16 17:40:28 +010093 --j;
94 c = &cpus[j];
95 c->stack_bottom = &callstacks[j][STACK_SIZE];
Andrew Scullbb3ab6c2018-11-26 20:38:49 +000096 } else {
97 found_boot_cpu = true;
98 c = &cpus[0];
Andrew Scull48973982019-08-16 17:40:28 +010099 CHECK(c->stack_bottom == &callstacks[0][STACK_SIZE]);
Andrew Scullbb3ab6c2018-11-26 20:38:49 +0000100 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +0000101
Andrew Scull48973982019-08-16 17:40:28 +0100102 sl_init(&c->lock);
Andrew Scullbb3ab6c2018-11-26 20:38:49 +0000103 c->id = id;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100104 }
Andrew Scullbb3ab6c2018-11-26 20:38:49 +0000105
106 if (!found_boot_cpu) {
107 /* Boot CPU was initialized but with wrong ID. */
108 dlog("Boot CPU's ID not found in config.");
109 cpus[0].id = boot_cpu_id;
110 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100111}
112
113size_t cpu_index(struct cpu *c)
114{
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100115 return c - cpus;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100116}
117
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100118/**
119 * Turns CPU on and returns the previous state.
120 */
Andrew Scull37402872018-10-24 14:23:06 +0100121bool cpu_on(struct cpu *c, ipaddr_t entry, uintreg_t arg)
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100122{
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100123 bool prev;
124
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100125 sl_lock(&c->lock);
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100126 prev = c->is_on;
127 c->is_on = true;
128 sl_unlock(&c->lock);
129
130 if (!prev) {
Andrew Walbran42347a92019-05-09 13:59:03 +0100131 struct vm *vm = vm_find(HF_PRIMARY_VM_ID);
Andrew Walbrane1310df2019-04-29 17:28:28 +0100132 struct vcpu *vcpu = vm_get_vcpu(vm, cpu_index(c));
Andrew Walbranb58f8992019-04-15 12:29:31 +0100133 struct vcpu_locked vcpu_locked;
Wedson Almeida Filho81568c42019-01-04 13:33:02 +0000134
Andrew Walbranb58f8992019-04-15 12:29:31 +0100135 vcpu_locked = vcpu_lock(vcpu);
136 vcpu_on(vcpu_locked, entry, arg);
137 vcpu_unlock(&vcpu_locked);
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100138 }
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100139
140 return prev;
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100141}
142
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100143/**
144 * Prepares the CPU for turning itself off.
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100145 */
146void cpu_off(struct cpu *c)
147{
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100148 sl_lock(&c->lock);
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100149 c->is_on = false;
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100150 sl_unlock(&c->lock);
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100151}
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100152
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100153/**
154 * Searches for a CPU based on its id.
155 */
Andrew Walbran4d3fa282019-06-26 13:31:15 +0100156struct cpu *cpu_find(cpu_id_t id)
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100157{
158 size_t i;
159
Andrew Scullbb3ab6c2018-11-26 20:38:49 +0000160 for (i = 0; i < cpu_count; i++) {
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100161 if (cpus[i].id == id) {
Andrew Scullf3d45592018-09-20 14:30:22 +0100162 return &cpus[i];
Wedson Almeida Filho03e767a2018-07-30 15:32:03 +0100163 }
164 }
165
166 return NULL;
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100167}
168
Andrew Walbranb58f8992019-04-15 12:29:31 +0100169/**
170 * Locks the given vCPU and updates `locked` to hold the newly locked vCPU.
171 */
172struct vcpu_locked vcpu_lock(struct vcpu *vcpu)
173{
174 struct vcpu_locked locked = {
175 .vcpu = vcpu,
176 };
177
178 sl_lock(&vcpu->lock);
179
180 return locked;
181}
182
183/**
184 * Unlocks a vCPU previously locked with vpu_lock, and updates `locked` to
185 * reflect the fact that the vCPU is no longer locked.
186 */
187void vcpu_unlock(struct vcpu_locked *locked)
188{
189 sl_unlock(&locked->vcpu->lock);
190 locked->vcpu = NULL;
191}
192
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100193void vcpu_init(struct vcpu *vcpu, struct vm *vm)
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100194{
Andrew Scull2b5fbad2019-04-05 13:55:56 +0100195 memset_s(vcpu, sizeof(*vcpu), 0, sizeof(*vcpu));
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100196 sl_init(&vcpu->lock);
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000197 vcpu->regs_available = true;
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100198 vcpu->vm = vm;
Andrew Sculld6ee1102019-04-05 22:12:42 +0100199 vcpu->state = VCPU_STATE_OFF;
Wedson Almeida Filho987c0ff2018-06-20 16:34:38 +0100200}
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100201
Andrew Walbranb58f8992019-04-15 12:29:31 +0100202/**
203 * Initialise the registers for the given vCPU and set the state to
204 * VCPU_STATE_READY. The caller must hold the vCPU lock while calling this.
205 */
206void vcpu_on(struct vcpu_locked vcpu, ipaddr_t entry, uintreg_t arg)
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100207{
Andrew Walbranb58f8992019-04-15 12:29:31 +0100208 arch_regs_set_pc_arg(&vcpu.vcpu->regs, entry, arg);
209 vcpu.vcpu->state = VCPU_STATE_READY;
Wedson Almeida Filho87009642018-07-02 10:20:07 +0100210}
211
Andrew Walbranb037d5b2019-06-25 17:19:41 +0100212spci_vcpu_index_t vcpu_index(const struct vcpu *vcpu)
Wedson Almeida Filho9d5040f2018-10-29 08:41:27 +0000213{
Andrew Walbranb037d5b2019-06-25 17:19:41 +0100214 size_t index = vcpu - vcpu->vm->vcpus;
215
Andrew Scull877ae4b2019-07-02 12:52:33 +0100216 CHECK(index < UINT16_MAX);
Andrew Walbranb037d5b2019-06-25 17:19:41 +0100217 return index;
Wedson Almeida Filho9d5040f2018-10-29 08:41:27 +0000218}
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000219
220/**
Andrew Walbran33645652019-04-15 12:29:31 +0100221 * Check whether the given vcpu_state is an off state, for the purpose of
222 * turning vCPUs on and off. Note that aborted still counts as on in this
223 * context.
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100224 */
Andrew Walbran33645652019-04-15 12:29:31 +0100225bool vcpu_is_off(struct vcpu_locked vcpu)
226{
227 switch (vcpu.vcpu->state) {
228 case VCPU_STATE_OFF:
229 return true;
230 case VCPU_STATE_READY:
231 case VCPU_STATE_RUNNING:
232 case VCPU_STATE_BLOCKED_MAILBOX:
233 case VCPU_STATE_BLOCKED_INTERRUPT:
234 case VCPU_STATE_ABORTED:
235 /*
236 * Aborted still counts as ON for the purposes of PSCI,
237 * because according to the PSCI specification (section
238 * 5.7.1) a core is only considered to be off if it has
239 * been turned off with a CPU_OFF call or hasn't yet
240 * been turned on with a CPU_ON call.
241 */
242 return false;
243 }
244}
245
246/**
247 * Starts a vCPU of a secondary VM.
248 *
249 * Returns true if the secondary was reset and started, or false if it was
250 * already on and so nothing was done.
251 */
252bool vcpu_secondary_reset_and_start(struct vcpu *vcpu, ipaddr_t entry,
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100253 uintreg_t arg)
254{
Andrew Walbranb58f8992019-04-15 12:29:31 +0100255 struct vcpu_locked vcpu_locked;
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100256 struct vm *vm = vcpu->vm;
Andrew Walbran33645652019-04-15 12:29:31 +0100257 bool vcpu_was_off;
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100258
Andrew Scull877ae4b2019-07-02 12:52:33 +0100259 CHECK(vm->id != HF_PRIMARY_VM_ID);
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100260
Andrew Walbranb58f8992019-04-15 12:29:31 +0100261 vcpu_locked = vcpu_lock(vcpu);
Andrew Walbran33645652019-04-15 12:29:31 +0100262 vcpu_was_off = vcpu_is_off(vcpu_locked);
263 if (vcpu_was_off) {
264 /*
265 * Set vCPU registers to a clean state ready for boot. As this
266 * is a secondary which can migrate between pCPUs, the ID of the
267 * vCPU is defined as the index and does not match the ID of the
268 * pCPU it is running on.
269 */
270 arch_regs_reset(&vcpu->regs, false, vm->id, vcpu_index(vcpu),
271 vm->ptable.root);
272 vcpu_on(vcpu_locked, entry, arg);
273 }
Andrew Walbranb58f8992019-04-15 12:29:31 +0100274 vcpu_unlock(&vcpu_locked);
Andrew Walbran33645652019-04-15 12:29:31 +0100275
276 return vcpu_was_off;
Andrew Walbran9a43fee2019-04-18 17:42:32 +0100277}
278
279/**
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000280 * Handles a page fault. It does so by determining if it's a legitimate or
281 * spurious fault, and recovering from the latter.
282 *
283 * Returns true if the caller should resume the current vcpu, or false if its VM
284 * should be aborted.
285 */
286bool vcpu_handle_page_fault(const struct vcpu *current,
287 struct vcpu_fault_info *f)
288{
289 struct vm *vm = current->vm;
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000290 int mode;
291 int mask = f->mode | MM_MODE_INVALID;
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100292 bool resume;
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000293
294 sl_lock(&vm->lock);
295
296 /*
297 * Check if this is a legitimate fault, i.e., if the page table doesn't
298 * allow the access attemped by the VM.
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100299 *
300 * Otherwise, this is a spurious fault, likely because another CPU is
301 * updating the page table. It is responsible for issuing global TLB
302 * invalidations while holding the VM lock, so we don't need to do
303 * anything else to recover from it. (Acquiring/releasing the lock
304 * ensured that the invalidations have completed.)
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000305 */
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100306 resume = mm_vm_get_mode(&vm->ptable, f->ipaddr, ipa_add(f->ipaddr, 1),
307 &mode) &&
308 (mode & mask) == f->mode;
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000309
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000310 sl_unlock(&vm->lock);
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100311
312 if (!resume) {
Andrew Walbranac5b2612019-07-12 16:44:19 +0100313 dlog("Stage-2 page fault: pc=%#x, vmid=%u, vcpu=%u, "
314 "vaddr=%#x, ipaddr=%#x, mode=%#x\n",
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000315 f->pc, vm->id, vcpu_index(current), f->vaddr, f->ipaddr,
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100316 f->mode);
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000317 }
Andrew Sculld3cfaad2019-04-04 11:34:10 +0100318
319 return resume;
Wedson Almeida Filho99d2d4c2019-02-14 12:53:46 +0000320}