blob: d1316564791f3627b94207a177c63e24f0fae1e9 [file] [log] [blame]
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 *
Andrew Walbrane959ec12020-06-17 15:01:09 +01004 * Use of this source code is governed by a BSD-style
5 * license that can be found in the LICENSE file or at
6 * https://opensource.org/licenses/BSD-3-Clause.
Andrew Scull18834872018-10-12 11:48:09 +01007 */
8
Andrew Scull18c78fc2018-08-20 12:57:41 +01009#include "hf/api.h"
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010010
Andrew Walbran318f5732018-11-20 16:23:42 +000011#include "hf/arch/cpu.h"
Olivier Deprez96a2a262020-06-11 17:21:38 +020012#include "hf/arch/mm.h"
Olivier Deprez112d2b52020-09-30 07:39:23 +020013#include "hf/arch/other_world.h"
Andrew Walbran508e63c2018-12-20 17:02:37 +000014#include "hf/arch/timer.h"
Olivier Deprez764fd2e2020-07-29 15:14:09 +020015#include "hf/arch/vm.h"
Andrew Walbran318f5732018-11-20 16:23:42 +000016
Andrew Scull877ae4b2019-07-02 12:52:33 +010017#include "hf/check.h"
Andrew Walbran318f5732018-11-20 16:23:42 +000018#include "hf/dlog.h"
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010019#include "hf/ffa_internal.h"
20#include "hf/ffa_memory.h"
Andrew Scull6386f252018-12-06 13:29:10 +000021#include "hf/mm.h"
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +010022#include "hf/plat/console.h"
Andrew Scull6386f252018-12-06 13:29:10 +000023#include "hf/spinlock.h"
Andrew Scull877ae4b2019-07-02 12:52:33 +010024#include "hf/static_assert.h"
Andrew Scull8d9e1212019-04-05 13:52:55 +010025#include "hf/std.h"
Andrew Scull18c78fc2018-08-20 12:57:41 +010026#include "hf/vm.h"
27
Andrew Scullf35a5c92018-08-07 18:09:46 +010028#include "vmapi/hf/call.h"
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010029#include "vmapi/hf/ffa.h"
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010030
Fuad Tabbae4efcc32020-07-16 15:37:27 +010031static_assert(sizeof(struct ffa_partition_info) == 8,
32 "Partition information descriptor size doesn't match the one in "
33 "the FF-A 1.0 EAC specification, Table 82.");
34
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +000035/*
36 * To eliminate the risk of deadlocks, we define a partial order for the
37 * acquisition of locks held concurrently by the same physical CPU. Our current
38 * ordering requirements are as follows:
39 *
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +010040 * vm::lock -> vcpu::lock -> mm_stage1_lock -> dlog sl
Andrew Scull6386f252018-12-06 13:29:10 +000041 *
Andrew Scull4caadaf2019-07-03 13:13:47 +010042 * Locks of the same kind require the lock of lowest address to be locked first,
43 * see `sl_lock_both()`.
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +000044 */
45
Andrew Scullaa039b32018-10-04 15:02:26 +010046static_assert(HF_MAILBOX_SIZE == PAGE_SIZE,
Andrew Scull13652af2018-09-17 14:49:08 +010047 "Currently, a page is mapped for the send and receive buffers so "
48 "the maximum request is the size of a page.");
49
Andrew Walbran5de9c3d2020-02-10 13:35:29 +000050static_assert(MM_PPOOL_ENTRY_SIZE >= HF_MAILBOX_SIZE,
51 "The page pool entry size must be at least as big as the mailbox "
52 "size, so that memory region descriptors can be copied from the "
53 "mailbox for memory sharing.");
54
Wedson Almeida Filho9ed8da52018-12-17 16:09:11 +000055static struct mpool api_page_pool;
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000056
57/**
Wedson Almeida Filho81568c42019-01-04 13:33:02 +000058 * Initialises the API page pool by taking ownership of the contents of the
59 * given page pool.
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000060 */
61void api_init(struct mpool *ppool)
62{
Wedson Almeida Filho9ed8da52018-12-17 16:09:11 +000063 mpool_init_from(&api_page_pool, ppool);
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000064}
65
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010066/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +000067 * Switches the physical CPU back to the corresponding vCPU of the primary VM.
Andrew Scullaa039b32018-10-04 15:02:26 +010068 *
69 * This triggers the scheduling logic to run. Run in the context of secondary VM
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010070 * to cause FFA_RUN to return and the primary VM to regain control of the CPU.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +010071 */
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +010072static struct vcpu *api_switch_to_primary(struct vcpu *current,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010073 struct ffa_value primary_ret,
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +000074 enum vcpu_state secondary_state)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +010075{
Andrew Walbran42347a92019-05-09 13:59:03 +010076 struct vm *primary = vm_find(HF_PRIMARY_VM_ID);
Andrew Walbrane1310df2019-04-29 17:28:28 +010077 struct vcpu *next = vm_get_vcpu(primary, cpu_index(current->cpu));
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +010078
Andrew Walbran508e63c2018-12-20 17:02:37 +000079 /*
80 * If the secondary is blocked but has a timer running, sleep until the
81 * timer fires rather than indefinitely.
82 */
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +010083 switch (primary_ret.func) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010084 case HF_FFA_RUN_WAIT_FOR_INTERRUPT:
85 case FFA_MSG_WAIT_32: {
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +010086 if (arch_timer_enabled_current()) {
87 uint64_t remaining_ns =
88 arch_timer_remaining_ns_current();
89
90 if (remaining_ns == 0) {
91 /*
92 * Timer is pending, so the current vCPU should
93 * be run again right away.
94 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010095 primary_ret.func = FFA_INTERRUPT_32;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +010096 /*
97 * primary_ret.arg1 should already be set to the
98 * current VM ID and vCPU ID.
99 */
100 primary_ret.arg2 = 0;
101 } else {
102 primary_ret.arg2 = remaining_ns;
103 }
104 } else {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100105 primary_ret.arg2 = FFA_SLEEP_INDEFINITE;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100106 }
Andrew Scullb06d1752019-02-04 10:15:48 +0000107 break;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100108 }
Andrew Scullb06d1752019-02-04 10:15:48 +0000109
110 default:
111 /* Do nothing. */
112 break;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000113 }
114
Andrew Walbrana0e30b02020-10-22 15:55:45 +0100115 /* Set the return value for the primary VM's call to FFA_RUN. */
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100116 arch_regs_set_retval(&next->regs, primary_ret);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100117
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000118 /* Mark the current vCPU as waiting. */
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +0000119 sl_lock(&current->lock);
120 current->state = secondary_state;
121 sl_unlock(&current->lock);
122
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100123 return next;
124}
125
126/**
Olivier Deprez2ebae3a2020-06-11 16:34:30 +0200127 * Choose next vCPU to run to be the counterpart vCPU in the other
128 * world (run the normal world if currently running in the secure
129 * world). Set current vCPU state to the given vcpu_state parameter.
130 * Set FF-A return values to the target vCPU in the other world.
131 *
132 * Called in context of a direct message response from a secure
133 * partition to a VM.
134 */
135static struct vcpu *api_switch_to_other_world(struct vcpu *current,
136 struct ffa_value other_world_ret,
137 enum vcpu_state vcpu_state)
138{
139 struct vcpu *next = vcpu_get_other_world_counterpart(current);
140
141 CHECK(next != NULL);
142
143 /* Set the return value for the other world's VM. */
144 arch_regs_set_retval(&next->regs, other_world_ret);
145
146 /* Set the current vCPU state. */
147 sl_lock(&current->lock);
148 current->state = vcpu_state;
149 sl_unlock(&current->lock);
150
151 return next;
152}
153
154/**
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100155 * Checks whether the given `to` VM's mailbox is currently busy, and optionally
156 * registers the `from` VM to be notified when it becomes available.
157 */
158static bool msg_receiver_busy(struct vm_locked to, struct vm *from, bool notify)
159{
160 if (to.vm->mailbox.state != MAILBOX_STATE_EMPTY ||
161 to.vm->mailbox.recv == NULL) {
162 /*
163 * Fail if the receiver isn't currently ready to receive data,
164 * setting up for notification if requested.
165 */
166 if (notify) {
167 struct wait_entry *entry =
168 vm_get_wait_entry(from, to.vm->id);
169
170 /* Append waiter only if it's not there yet. */
171 if (list_empty(&entry->wait_links)) {
172 list_append(&to.vm->mailbox.waiter_list,
173 &entry->wait_links);
174 }
175 }
176
177 return true;
178 }
179
180 return false;
181}
182
183/**
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000184 * Returns true if the given vCPU is executing in context of an
185 * FFA_MSG_SEND_DIRECT_REQ invocation.
186 */
187static bool is_ffa_direct_msg_request_ongoing(struct vcpu_locked locked)
188{
189 return locked.vcpu->direct_request_origin_vm_id != HF_INVALID_VM_ID;
190}
191
192/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000193 * Returns to the primary VM and signals that the vCPU still has work to do so.
Andrew Scull33fecd32019-01-08 14:48:27 +0000194 */
195struct vcpu *api_preempt(struct vcpu *current)
196{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100197 struct ffa_value ret = {
198 .func = FFA_INTERRUPT_32,
199 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Scull33fecd32019-01-08 14:48:27 +0000200 };
201
Andrew Sculld6ee1102019-04-05 22:12:42 +0100202 return api_switch_to_primary(current, ret, VCPU_STATE_READY);
Andrew Scull33fecd32019-01-08 14:48:27 +0000203}
204
205/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000206 * Puts the current vCPU in wait for interrupt mode, and returns to the primary
Fuad Tabbaed294af2019-12-20 10:43:01 +0000207 * VM.
Andrew Scullaa039b32018-10-04 15:02:26 +0100208 */
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +0100209struct vcpu *api_wait_for_interrupt(struct vcpu *current)
Andrew Scullaa039b32018-10-04 15:02:26 +0100210{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100211 struct ffa_value ret = {
212 .func = HF_FFA_RUN_WAIT_FOR_INTERRUPT,
213 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Scull6d2db332018-10-10 15:28:17 +0100214 };
Wedson Almeida Filho81568c42019-01-04 13:33:02 +0000215
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +0000216 return api_switch_to_primary(current, ret,
Andrew Sculld6ee1102019-04-05 22:12:42 +0100217 VCPU_STATE_BLOCKED_INTERRUPT);
Andrew Scullaa039b32018-10-04 15:02:26 +0100218}
219
220/**
Andrew Walbran33645652019-04-15 12:29:31 +0100221 * Puts the current vCPU in off mode, and returns to the primary VM.
222 */
223struct vcpu *api_vcpu_off(struct vcpu *current)
224{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100225 struct ffa_value ret = {
226 .func = HF_FFA_RUN_WAIT_FOR_INTERRUPT,
227 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Walbran33645652019-04-15 12:29:31 +0100228 };
229
230 /*
231 * Disable the timer, so the scheduler doesn't get told to call back
232 * based on it.
233 */
234 arch_timer_disable_current();
235
236 return api_switch_to_primary(current, ret, VCPU_STATE_OFF);
237}
238
239/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000240 * Returns to the primary VM to allow this CPU to be used for other tasks as the
241 * vCPU does not have work to do at this moment. The current vCPU is marked as
Andrew Walbran16075b62019-09-03 17:11:07 +0100242 * ready to be scheduled again.
Andrew Scull66d62bf2019-02-01 13:54:10 +0000243 */
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000244struct ffa_value api_yield(struct vcpu *current, struct vcpu **next)
Andrew Scull66d62bf2019-02-01 13:54:10 +0000245{
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000246 struct ffa_value ret = (struct ffa_value){.func = FFA_SUCCESS_32};
247 struct vcpu_locked current_locked;
248 bool is_direct_request_ongoing;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000249
250 if (current->vm->id == HF_PRIMARY_VM_ID) {
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000251 /* NOOP on the primary as it makes the scheduling decisions. */
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000252 return ret;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000253 }
254
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000255 current_locked = vcpu_lock(current);
256 is_direct_request_ongoing =
257 is_ffa_direct_msg_request_ongoing(current_locked);
258 vcpu_unlock(&current_locked);
259
260 if (is_direct_request_ongoing) {
261 return ffa_error(FFA_DENIED);
262 }
263
264 *next = api_switch_to_primary(
265 current,
266 (struct ffa_value){.func = FFA_YIELD_32,
267 .arg1 = ffa_vm_vcpu(current->vm->id,
268 vcpu_index(current))},
269 VCPU_STATE_READY);
270
271 return ret;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000272}
273
274/**
Andrew Walbran33645652019-04-15 12:29:31 +0100275 * Switches to the primary so that it can switch to the target, or kick it if it
276 * is already running on a different physical CPU.
277 */
278struct vcpu *api_wake_up(struct vcpu *current, struct vcpu *target_vcpu)
279{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100280 struct ffa_value ret = {
281 .func = HF_FFA_RUN_WAKE_UP,
282 .arg1 = ffa_vm_vcpu(target_vcpu->vm->id,
283 vcpu_index(target_vcpu)),
Andrew Walbran33645652019-04-15 12:29:31 +0100284 };
285 return api_switch_to_primary(current, ret, VCPU_STATE_READY);
286}
287
288/**
Andrew Scull38772ab2019-01-24 15:16:50 +0000289 * Aborts the vCPU and triggers its VM to abort fully.
Andrew Scull9726c252019-01-23 13:44:19 +0000290 */
291struct vcpu *api_abort(struct vcpu *current)
292{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100293 struct ffa_value ret = ffa_error(FFA_ABORTED);
Andrew Scull9726c252019-01-23 13:44:19 +0000294
Andrew Walbran17eebf92020-02-05 16:35:49 +0000295 dlog_notice("Aborting VM %u vCPU %u\n", current->vm->id,
296 vcpu_index(current));
Andrew Scull9726c252019-01-23 13:44:19 +0000297
298 if (current->vm->id == HF_PRIMARY_VM_ID) {
299 /* TODO: what to do when the primary aborts? */
300 for (;;) {
301 /* Do nothing. */
302 }
303 }
304
305 atomic_store_explicit(&current->vm->aborting, true,
306 memory_order_relaxed);
307
308 /* TODO: free resources once all vCPUs abort. */
309
Andrew Sculld6ee1102019-04-05 22:12:42 +0100310 return api_switch_to_primary(current, ret, VCPU_STATE_ABORTED);
Andrew Scull9726c252019-01-23 13:44:19 +0000311}
312
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100313struct ffa_value api_ffa_partition_info_get(struct vcpu *current,
314 const struct ffa_uuid *uuid)
315{
316 struct vm *current_vm = current->vm;
317 struct vm_locked current_vm_locked;
318 ffa_vm_count_t vm_count = 0;
319 bool uuid_is_null = ffa_uuid_is_null(uuid);
320 struct ffa_value ret;
321 uint32_t size;
322 struct ffa_partition_info partitions[MAX_VMS];
323
324 /*
325 * Iterate through the VMs to find the ones with a matching UUID.
326 * A Null UUID retrieves information for all VMs.
327 */
328 for (uint16_t index = 0; index < vm_get_count(); ++index) {
329 const struct vm *vm = vm_find_index(index);
330
331 if (uuid_is_null || ffa_uuid_equal(uuid, &vm->uuid)) {
332 partitions[vm_count].vm_id = vm->id;
333 partitions[vm_count].vcpu_count = vm->vcpu_count;
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100334 partitions[vm_count].properties =
Olivier Deprez764fd2e2020-07-29 15:14:09 +0200335 arch_vm_partition_properties(vm->id);
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100336
337 ++vm_count;
338 }
339 }
340
341 /* Unrecognized UUID: does not match any of the VMs and is not Null. */
342 if (vm_count == 0) {
343 return ffa_error(FFA_INVALID_PARAMETERS);
344 }
345
346 size = vm_count * sizeof(partitions[0]);
347 if (size > FFA_MSG_PAYLOAD_MAX) {
348 dlog_error(
349 "Partition information does not fit in the VM's RX "
350 "buffer.\n");
351 return ffa_error(FFA_NO_MEMORY);
352 }
353
354 /*
355 * Partition information is returned in the VM's RX buffer, which is why
356 * the lock is needed.
357 */
358 current_vm_locked = vm_lock(current_vm);
359
360 if (msg_receiver_busy(current_vm_locked, NULL, false)) {
361 /*
362 * Can't retrieve memory information if the mailbox is not
363 * available.
364 */
365 dlog_verbose("RX buffer not ready.\n");
366 ret = ffa_error(FFA_BUSY);
367 goto out_unlock;
368 }
369
370 /* Populate the VM's RX buffer with the partition information. */
371 memcpy_s(current_vm->mailbox.recv, FFA_MSG_PAYLOAD_MAX, partitions,
372 size);
373 current_vm->mailbox.recv_size = size;
374 current_vm->mailbox.recv_sender = HF_HYPERVISOR_VM_ID;
375 current_vm->mailbox.recv_func = FFA_PARTITION_INFO_GET_32;
376 current_vm->mailbox.state = MAILBOX_STATE_READ;
377
378 /* Return the count of partition information descriptors in w2. */
379 ret = (struct ffa_value){.func = FFA_SUCCESS_32, .arg2 = vm_count};
380
381out_unlock:
382 vm_unlock(&current_vm_locked);
383
384 return ret;
385}
386
Andrew Scull9726c252019-01-23 13:44:19 +0000387/**
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000388 * Returns the ID of the VM.
389 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100390struct ffa_value api_ffa_id_get(const struct vcpu *current)
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000391{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100392 return (struct ffa_value){.func = FFA_SUCCESS_32,
393 .arg2 = current->vm->id};
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000394}
395
396/**
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000397 * This function is called by the architecture-specific context switching
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000398 * function to indicate that register state for the given vCPU has been saved
399 * and can therefore be used by other pCPUs.
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000400 */
401void api_regs_state_saved(struct vcpu *vcpu)
402{
403 sl_lock(&vcpu->lock);
404 vcpu->regs_available = true;
405 sl_unlock(&vcpu->lock);
406}
407
408/**
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000409 * Retrieves the next waiter and removes it from the wait list if the VM's
410 * mailbox is in a writable state.
411 */
412static struct wait_entry *api_fetch_waiter(struct vm_locked locked_vm)
413{
414 struct wait_entry *entry;
415 struct vm *vm = locked_vm.vm;
416
Andrew Sculld6ee1102019-04-05 22:12:42 +0100417 if (vm->mailbox.state != MAILBOX_STATE_EMPTY ||
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000418 vm->mailbox.recv == NULL || list_empty(&vm->mailbox.waiter_list)) {
419 /* The mailbox is not writable or there are no waiters. */
420 return NULL;
421 }
422
423 /* Remove waiter from the wait list. */
424 entry = CONTAINER_OF(vm->mailbox.waiter_list.next, struct wait_entry,
425 wait_links);
426 list_remove(&entry->wait_links);
427 return entry;
428}
429
430/**
Andrew Walbran508e63c2018-12-20 17:02:37 +0000431 * Assuming that the arguments have already been checked by the caller, injects
432 * a virtual interrupt of the given ID into the given target vCPU. This doesn't
433 * cause the vCPU to actually be run immediately; it will be taken when the vCPU
434 * is next run, which is up to the scheduler.
435 *
436 * Returns:
437 * - 0 on success if no further action is needed.
438 * - 1 if it was called by the primary VM and the primary VM now needs to wake
439 * up or kick the target vCPU.
440 */
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200441static int64_t internal_interrupt_inject_locked(
442 struct vcpu_locked target_locked, uint32_t intid, struct vcpu *current,
443 struct vcpu **next)
Andrew Walbran508e63c2018-12-20 17:02:37 +0000444{
445 uint32_t intid_index = intid / INTERRUPT_REGISTER_BITS;
Andrew Walbrane52006c2019-10-22 18:01:28 +0100446 uint32_t intid_mask = 1U << (intid % INTERRUPT_REGISTER_BITS);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000447 int64_t ret = 0;
448
Andrew Walbran508e63c2018-12-20 17:02:37 +0000449 /*
450 * We only need to change state and (maybe) trigger a virtual IRQ if it
451 * is enabled and was not previously pending. Otherwise we can skip
452 * everything except setting the pending bit.
453 *
454 * If you change this logic make sure to update the need_vm_lock logic
455 * above to match.
456 */
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200457 if (!(target_locked.vcpu->interrupts.interrupt_enabled[intid_index] &
458 ~target_locked.vcpu->interrupts.interrupt_pending[intid_index] &
Andrew Walbran508e63c2018-12-20 17:02:37 +0000459 intid_mask)) {
460 goto out;
461 }
462
463 /* Increment the count. */
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200464 target_locked.vcpu->interrupts.enabled_and_pending_count++;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000465
466 /*
467 * Only need to update state if there was not already an
468 * interrupt enabled and pending.
469 */
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200470 if (target_locked.vcpu->interrupts.enabled_and_pending_count != 1) {
Andrew Walbran508e63c2018-12-20 17:02:37 +0000471 goto out;
472 }
473
Andrew Walbran508e63c2018-12-20 17:02:37 +0000474 if (current->vm->id == HF_PRIMARY_VM_ID) {
475 /*
476 * If the call came from the primary VM, let it know that it
477 * should run or kick the target vCPU.
478 */
479 ret = 1;
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200480 } else if (current != target_locked.vcpu && next != NULL) {
481 *next = api_wake_up(current, target_locked.vcpu);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000482 }
483
484out:
485 /* Either way, make it pending. */
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200486 target_locked.vcpu->interrupts.interrupt_pending[intid_index] |=
487 intid_mask;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000488
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200489 return ret;
490}
491
492/* Wrapper to internal_interrupt_inject with locking of target vCPU */
493static int64_t internal_interrupt_inject(struct vcpu *target_vcpu,
494 uint32_t intid, struct vcpu *current,
495 struct vcpu **next)
496{
497 int64_t ret;
498 struct vcpu_locked target_locked;
499
500 target_locked = vcpu_lock(target_vcpu);
501 ret = internal_interrupt_inject_locked(target_locked, intid, current,
502 next);
503 vcpu_unlock(&target_locked);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000504
505 return ret;
506}
507
508/**
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100509 * Constructs an FFA_MSG_SEND value to return from a successful FFA_MSG_POLL
510 * or FFA_MSG_WAIT call.
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100511 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100512static struct ffa_value ffa_msg_recv_return(const struct vm *receiver)
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100513{
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000514 switch (receiver->mailbox.recv_func) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100515 case FFA_MSG_SEND_32:
516 return (struct ffa_value){
517 .func = FFA_MSG_SEND_32,
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000518 .arg1 = (receiver->mailbox.recv_sender << 16) |
519 receiver->id,
520 .arg3 = receiver->mailbox.recv_size};
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000521 default:
522 /* This should never be reached, but return an error in case. */
Andrew Walbran17eebf92020-02-05 16:35:49 +0000523 dlog_error("Tried to return an invalid message function %#x\n",
524 receiver->mailbox.recv_func);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100525 return ffa_error(FFA_DENIED);
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000526 }
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100527}
528
529/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000530 * Prepares the vCPU to run by updating its state and fetching whether a return
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000531 * value needs to be forced onto the vCPU.
532 */
Andrew Scull38772ab2019-01-24 15:16:50 +0000533static bool api_vcpu_prepare_run(const struct vcpu *current, struct vcpu *vcpu,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100534 struct ffa_value *run_ret)
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000535{
Andrew Scullb06d1752019-02-04 10:15:48 +0000536 bool need_vm_lock;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000537 bool ret;
538
Andrew Scullb06d1752019-02-04 10:15:48 +0000539 /*
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000540 * Check that the registers are available so that the vCPU can be run.
Andrew Scullb06d1752019-02-04 10:15:48 +0000541 *
Andrew Scull4caadaf2019-07-03 13:13:47 +0100542 * The VM lock is not needed in the common case so it must only be taken
543 * when it is going to be needed. This ensures there are no inter-vCPU
544 * dependencies in the common run case meaning the sensitive context
545 * switch performance is consistent.
Andrew Scullb06d1752019-02-04 10:15:48 +0000546 */
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000547 sl_lock(&vcpu->lock);
Andrew Scullb06d1752019-02-04 10:15:48 +0000548
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000549 /* The VM needs to be locked to deliver mailbox messages. */
550 need_vm_lock = vcpu->state == VCPU_STATE_BLOCKED_MAILBOX;
551 if (need_vm_lock) {
Andrew Scullb06d1752019-02-04 10:15:48 +0000552 sl_unlock(&vcpu->lock);
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000553 sl_lock(&vcpu->vm->lock);
554 sl_lock(&vcpu->lock);
555 }
556
557 /*
558 * If the vCPU is already running somewhere then we can't run it here
559 * simultaneously. While it is actually running then the state should be
560 * `VCPU_STATE_RUNNING` and `regs_available` should be false. Once it
561 * stops running but while Hafnium is in the process of switching back
562 * to the primary there will be a brief period while the state has been
563 * updated but `regs_available` is still false (until
564 * `api_regs_state_saved` is called). We can't start running it again
565 * until this has finished, so count this state as still running for the
566 * purposes of this check.
567 */
568 if (vcpu->state == VCPU_STATE_RUNNING || !vcpu->regs_available) {
569 /*
570 * vCPU is running on another pCPU.
571 *
572 * It's okay not to return the sleep duration here because the
573 * other physical CPU that is currently running this vCPU will
574 * return the sleep duration if needed.
575 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100576 *run_ret = ffa_error(FFA_BUSY);
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000577 ret = false;
578 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000579 }
Andrew Scull9726c252019-01-23 13:44:19 +0000580
581 if (atomic_load_explicit(&vcpu->vm->aborting, memory_order_relaxed)) {
Andrew Sculld6ee1102019-04-05 22:12:42 +0100582 if (vcpu->state != VCPU_STATE_ABORTED) {
Andrew Walbran17eebf92020-02-05 16:35:49 +0000583 dlog_notice("Aborting VM %u vCPU %u\n", vcpu->vm->id,
584 vcpu_index(vcpu));
Andrew Sculld6ee1102019-04-05 22:12:42 +0100585 vcpu->state = VCPU_STATE_ABORTED;
Andrew Scull9726c252019-01-23 13:44:19 +0000586 }
587 ret = false;
588 goto out;
589 }
590
Andrew Walbran508e63c2018-12-20 17:02:37 +0000591 switch (vcpu->state) {
Andrew Sculld6ee1102019-04-05 22:12:42 +0100592 case VCPU_STATE_RUNNING:
593 case VCPU_STATE_OFF:
594 case VCPU_STATE_ABORTED:
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000595 ret = false;
596 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000597
Andrew Sculld6ee1102019-04-05 22:12:42 +0100598 case VCPU_STATE_BLOCKED_MAILBOX:
Andrew Scullb06d1752019-02-04 10:15:48 +0000599 /*
600 * A pending message allows the vCPU to run so the message can
601 * be delivered directly.
602 */
Andrew Sculld6ee1102019-04-05 22:12:42 +0100603 if (vcpu->vm->mailbox.state == MAILBOX_STATE_RECEIVED) {
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100604 arch_regs_set_retval(&vcpu->regs,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100605 ffa_msg_recv_return(vcpu->vm));
Andrew Sculld6ee1102019-04-05 22:12:42 +0100606 vcpu->vm->mailbox.state = MAILBOX_STATE_READ;
Andrew Scullb06d1752019-02-04 10:15:48 +0000607 break;
608 }
609 /* Fall through. */
Andrew Sculld6ee1102019-04-05 22:12:42 +0100610 case VCPU_STATE_BLOCKED_INTERRUPT:
Andrew Scullb06d1752019-02-04 10:15:48 +0000611 /* Allow virtual interrupts to be delivered. */
612 if (vcpu->interrupts.enabled_and_pending_count > 0) {
613 break;
614 }
615
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100616 uint64_t timer_remaining_ns = FFA_SLEEP_INDEFINITE;
617
Andrew Walbran508e63c2018-12-20 17:02:37 +0000618 if (arch_timer_enabled(&vcpu->regs)) {
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100619 timer_remaining_ns =
Andrew Walbran2fc856a2019-11-04 15:17:24 +0000620 arch_timer_remaining_ns(&vcpu->regs);
621
622 /*
623 * The timer expired so allow the interrupt to be
624 * delivered.
625 */
626 if (timer_remaining_ns == 0) {
627 break;
628 }
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100629 }
Andrew Walbran2fc856a2019-11-04 15:17:24 +0000630
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100631 /*
632 * The vCPU is not ready to run, return the appropriate code to
633 * the primary which called vcpu_run.
634 */
635 run_ret->func = vcpu->state == VCPU_STATE_BLOCKED_MAILBOX
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100636 ? FFA_MSG_WAIT_32
637 : HF_FFA_RUN_WAIT_FOR_INTERRUPT;
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100638 run_ret->arg1 = ffa_vm_vcpu(vcpu->vm->id, vcpu_index(vcpu));
639 run_ret->arg2 = timer_remaining_ns;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000640
641 ret = false;
642 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000643
Andrew Sculld6ee1102019-04-05 22:12:42 +0100644 case VCPU_STATE_READY:
Andrew Walbran508e63c2018-12-20 17:02:37 +0000645 break;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000646 }
647
Andrew Scullb06d1752019-02-04 10:15:48 +0000648 /* It has been decided that the vCPU should be run. */
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000649 vcpu->cpu = current->cpu;
Andrew Sculld6ee1102019-04-05 22:12:42 +0100650 vcpu->state = VCPU_STATE_RUNNING;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000651
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000652 /*
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000653 * Mark the registers as unavailable now that we're about to reflect
654 * them onto the real registers. This will also prevent another physical
655 * CPU from trying to read these registers.
656 */
657 vcpu->regs_available = false;
658
659 ret = true;
660
661out:
662 sl_unlock(&vcpu->lock);
Andrew Scullb06d1752019-02-04 10:15:48 +0000663 if (need_vm_lock) {
664 sl_unlock(&vcpu->vm->lock);
665 }
666
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000667 return ret;
668}
669
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100670struct ffa_value api_ffa_run(ffa_vm_id_t vm_id, ffa_vcpu_index_t vcpu_idx,
671 const struct vcpu *current, struct vcpu **next)
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100672{
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100673 struct vm *vm;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100674 struct vcpu *vcpu;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100675 struct ffa_value ret = ffa_error(FFA_INVALID_PARAMETERS);
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100676
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000677 /* Only the primary VM can switch vCPUs. */
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +0100678 if (current->vm->id != HF_PRIMARY_VM_ID) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100679 ret.arg2 = FFA_DENIED;
Andrew Scull6d2db332018-10-10 15:28:17 +0100680 goto out;
Andrew Scull7364a8e2018-07-19 15:39:29 +0100681 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100682
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000683 /* Only secondary VM vCPUs can be run. */
Andrew Scull19503262018-09-20 14:48:39 +0100684 if (vm_id == HF_PRIMARY_VM_ID) {
Andrew Scull6d2db332018-10-10 15:28:17 +0100685 goto out;
Andrew Scull7364a8e2018-07-19 15:39:29 +0100686 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100687
Andrew Scull19503262018-09-20 14:48:39 +0100688 /* The requested VM must exist. */
Andrew Walbran42347a92019-05-09 13:59:03 +0100689 vm = vm_find(vm_id);
Andrew Scull19503262018-09-20 14:48:39 +0100690 if (vm == NULL) {
Andrew Scull6d2db332018-10-10 15:28:17 +0100691 goto out;
Andrew Scull19503262018-09-20 14:48:39 +0100692 }
693
Fuad Tabbaed294af2019-12-20 10:43:01 +0000694 /* The requested vCPU must exist. */
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100695 if (vcpu_idx >= vm->vcpu_count) {
Andrew Scull6d2db332018-10-10 15:28:17 +0100696 goto out;
Andrew Scull7364a8e2018-07-19 15:39:29 +0100697 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100698
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000699 /* Update state if allowed. */
Andrew Walbrane1310df2019-04-29 17:28:28 +0100700 vcpu = vm_get_vcpu(vm, vcpu_idx);
Andrew Scullb06d1752019-02-04 10:15:48 +0000701 if (!api_vcpu_prepare_run(current, vcpu, &ret)) {
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000702 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100703 }
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000704
Andrew Walbran508e63c2018-12-20 17:02:37 +0000705 /*
706 * Inject timer interrupt if timer has expired. It's safe to access
707 * vcpu->regs here because api_vcpu_prepare_run already made sure that
708 * regs_available was true (and then set it to false) before returning
709 * true.
710 */
711 if (arch_timer_pending(&vcpu->regs)) {
712 /* Make virtual timer interrupt pending. */
Andrew Walbranfc9d4382019-05-10 18:07:21 +0100713 internal_interrupt_inject(vcpu, HF_VIRTUAL_TIMER_INTID, vcpu,
714 NULL);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000715
716 /*
717 * Set the mask bit so the hardware interrupt doesn't fire
718 * again. Ideally we wouldn't do this because it affects what
719 * the secondary vCPU sees, but if we don't then we end up with
720 * a loop of the interrupt firing each time we try to return to
721 * the secondary vCPU.
722 */
723 arch_timer_mask(&vcpu->regs);
724 }
725
Fuad Tabbaed294af2019-12-20 10:43:01 +0000726 /* Switch to the vCPU. */
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000727 *next = vcpu;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000728
Andrew Scull33fecd32019-01-08 14:48:27 +0000729 /*
730 * Set a placeholder return code to the scheduler. This will be
731 * overwritten when the switch back to the primary occurs.
732 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100733 ret.func = FFA_INTERRUPT_32;
734 ret.arg1 = ffa_vm_vcpu(vm_id, vcpu_idx);
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100735 ret.arg2 = 0;
Andrew Scull33fecd32019-01-08 14:48:27 +0000736
Andrew Scull6d2db332018-10-10 15:28:17 +0100737out:
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100738 return ret;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100739}
740
741/**
Andrew Scull81e85092018-12-12 12:56:20 +0000742 * Check that the mode indicates memory that is valid, owned and exclusive.
743 */
Andrew Walbran1281ed42019-10-22 17:23:40 +0100744static bool api_mode_valid_owned_and_exclusive(uint32_t mode)
Andrew Scull81e85092018-12-12 12:56:20 +0000745{
Andrew Scullb5f49e02019-10-02 13:20:47 +0100746 return (mode & (MM_MODE_D | MM_MODE_INVALID | MM_MODE_UNOWNED |
747 MM_MODE_SHARED)) == 0;
Andrew Scull81e85092018-12-12 12:56:20 +0000748}
749
750/**
Andrew Walbranc8a01972020-09-22 11:23:30 +0100751 * Determines the value to be returned by api_ffa_rxtx_map and
752 * api_ffa_rx_release after they've succeeded. If a secondary VM is running and
753 * there are waiters, it also switches back to the primary VM for it to wake
754 * waiters up.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000755 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100756static struct ffa_value api_waiter_result(struct vm_locked locked_vm,
757 struct vcpu *current,
758 struct vcpu **next)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000759{
760 struct vm *vm = locked_vm.vm;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000761
762 if (list_empty(&vm->mailbox.waiter_list)) {
763 /* No waiters, nothing else to do. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100764 return (struct ffa_value){.func = FFA_SUCCESS_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000765 }
766
767 if (vm->id == HF_PRIMARY_VM_ID) {
768 /* The caller is the primary VM. Tell it to wake up waiters. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100769 return (struct ffa_value){.func = FFA_RX_RELEASE_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000770 }
771
772 /*
773 * Switch back to the primary VM, informing it that there are waiters
774 * that need to be notified.
775 */
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000776 *next = api_switch_to_primary(
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100777 current, (struct ffa_value){.func = FFA_RX_RELEASE_32},
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000778 VCPU_STATE_READY);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000779
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100780 return (struct ffa_value){.func = FFA_SUCCESS_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000781}
782
783/**
Manish Pandeyd34f8892020-06-19 17:41:07 +0100784 * Configures the hypervisor's stage-1 view of the send and receive pages.
Andrew Sculle1322792019-07-01 17:46:10 +0100785 */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100786static bool api_vm_configure_stage1(struct mm_stage1_locked mm_stage1_locked,
787 struct vm_locked vm_locked,
Andrew Sculle1322792019-07-01 17:46:10 +0100788 paddr_t pa_send_begin, paddr_t pa_send_end,
789 paddr_t pa_recv_begin, paddr_t pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200790 uint32_t extra_attributes,
Andrew Sculle1322792019-07-01 17:46:10 +0100791 struct mpool *local_page_pool)
792{
793 bool ret;
Andrew Sculle1322792019-07-01 17:46:10 +0100794
795 /* Map the send page as read-only in the hypervisor address space. */
796 vm_locked.vm->mailbox.send =
797 mm_identity_map(mm_stage1_locked, pa_send_begin, pa_send_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200798 MM_MODE_R | extra_attributes, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +0100799 if (!vm_locked.vm->mailbox.send) {
800 /* TODO: partial defrag of failed range. */
801 /* Recover any memory consumed in failed mapping. */
802 mm_defrag(mm_stage1_locked, local_page_pool);
803 goto fail;
804 }
805
806 /*
807 * Map the receive page as writable in the hypervisor address space. On
808 * failure, unmap the send page before returning.
809 */
810 vm_locked.vm->mailbox.recv =
811 mm_identity_map(mm_stage1_locked, pa_recv_begin, pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200812 MM_MODE_W | extra_attributes, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +0100813 if (!vm_locked.vm->mailbox.recv) {
814 /* TODO: partial defrag of failed range. */
815 /* Recover any memory consumed in failed mapping. */
816 mm_defrag(mm_stage1_locked, local_page_pool);
817 goto fail_undo_send;
818 }
819
820 ret = true;
821 goto out;
822
823 /*
824 * The following mappings will not require more memory than is available
825 * in the local pool.
826 */
827fail_undo_send:
828 vm_locked.vm->mailbox.send = NULL;
Andrew Scull7e8de322019-07-02 13:00:56 +0100829 CHECK(mm_unmap(mm_stage1_locked, pa_send_begin, pa_send_end,
830 local_page_pool));
Andrew Sculle1322792019-07-01 17:46:10 +0100831
832fail:
833 ret = false;
834
835out:
Andrew Sculle1322792019-07-01 17:46:10 +0100836 return ret;
837}
838
839/**
Manish Pandeyd34f8892020-06-19 17:41:07 +0100840 * Sanity checks and configures the send and receive pages in the VM stage-2
841 * and hypervisor stage-1 page tables.
842 *
843 * Returns:
844 * - FFA_ERROR FFA_INVALID_PARAMETERS if the given addresses are not properly
845 * aligned or are the same.
846 * - FFA_ERROR FFA_NO_MEMORY if the hypervisor was unable to map the buffers
847 * due to insuffient page table memory.
848 * - FFA_ERROR FFA_DENIED if the pages are already mapped or are not owned by
849 * the caller.
850 * - FFA_SUCCESS on success if no further action is needed.
Andrew Sculle1322792019-07-01 17:46:10 +0100851 */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100852
853struct ffa_value api_vm_configure_pages(
854 struct mm_stage1_locked mm_stage1_locked, struct vm_locked vm_locked,
855 ipaddr_t send, ipaddr_t recv, uint32_t page_count,
856 struct mpool *local_page_pool)
Andrew Sculle1322792019-07-01 17:46:10 +0100857{
Manish Pandeyd34f8892020-06-19 17:41:07 +0100858 struct ffa_value ret;
859 paddr_t pa_send_begin;
860 paddr_t pa_send_end;
861 paddr_t pa_recv_begin;
862 paddr_t pa_recv_end;
863 uint32_t orig_send_mode;
864 uint32_t orig_recv_mode;
Olivier Deprez96a2a262020-06-11 17:21:38 +0200865 uint32_t extra_attributes;
Manish Pandeyd34f8892020-06-19 17:41:07 +0100866
867 /* We only allow these to be setup once. */
868 if (vm_locked.vm->mailbox.send || vm_locked.vm->mailbox.recv) {
869 ret = ffa_error(FFA_DENIED);
870 goto out;
871 }
872
873 /* Hafnium only supports a fixed size of RX/TX buffers. */
874 if (page_count != HF_MAILBOX_SIZE / FFA_PAGE_SIZE) {
875 ret = ffa_error(FFA_INVALID_PARAMETERS);
876 goto out;
877 }
878
879 /* Fail if addresses are not page-aligned. */
880 if (!is_aligned(ipa_addr(send), PAGE_SIZE) ||
881 !is_aligned(ipa_addr(recv), PAGE_SIZE)) {
882 ret = ffa_error(FFA_INVALID_PARAMETERS);
883 goto out;
884 }
885
886 /* Convert to physical addresses. */
887 pa_send_begin = pa_from_ipa(send);
888 pa_send_end = pa_add(pa_send_begin, HF_MAILBOX_SIZE);
889 pa_recv_begin = pa_from_ipa(recv);
890 pa_recv_end = pa_add(pa_recv_begin, HF_MAILBOX_SIZE);
891
892 /* Fail if the same page is used for the send and receive pages. */
893 if (pa_addr(pa_send_begin) == pa_addr(pa_recv_begin)) {
894 ret = ffa_error(FFA_INVALID_PARAMETERS);
895 goto out;
896 }
Andrew Sculle1322792019-07-01 17:46:10 +0100897
898 /*
Manish Pandeyd34f8892020-06-19 17:41:07 +0100899 * Ensure the pages are valid, owned and exclusive to the VM and that
900 * the VM has the required access to the memory.
Andrew Sculle1322792019-07-01 17:46:10 +0100901 */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100902 if (!mm_vm_get_mode(&vm_locked.vm->ptable, send,
903 ipa_add(send, PAGE_SIZE), &orig_send_mode) ||
904 !api_mode_valid_owned_and_exclusive(orig_send_mode) ||
905 (orig_send_mode & MM_MODE_R) == 0 ||
906 (orig_send_mode & MM_MODE_W) == 0) {
907 ret = ffa_error(FFA_DENIED);
908 goto out;
909 }
910
911 if (!mm_vm_get_mode(&vm_locked.vm->ptable, recv,
912 ipa_add(recv, PAGE_SIZE), &orig_recv_mode) ||
913 !api_mode_valid_owned_and_exclusive(orig_recv_mode) ||
914 (orig_recv_mode & MM_MODE_R) == 0) {
915 ret = ffa_error(FFA_DENIED);
916 goto out;
917 }
Andrew Sculle1322792019-07-01 17:46:10 +0100918
919 /* Take memory ownership away from the VM and mark as shared. */
Andrew Scull3c257452019-11-26 13:32:50 +0000920 if (!vm_identity_map(
921 vm_locked, pa_send_begin, pa_send_end,
Andrew Sculle1322792019-07-01 17:46:10 +0100922 MM_MODE_UNOWNED | MM_MODE_SHARED | MM_MODE_R | MM_MODE_W,
Manish Pandeyd34f8892020-06-19 17:41:07 +0100923 local_page_pool, NULL)) {
924 ret = ffa_error(FFA_NO_MEMORY);
925 goto out;
Andrew Sculle1322792019-07-01 17:46:10 +0100926 }
927
Andrew Scull3c257452019-11-26 13:32:50 +0000928 if (!vm_identity_map(vm_locked, pa_recv_begin, pa_recv_end,
929 MM_MODE_UNOWNED | MM_MODE_SHARED | MM_MODE_R,
Manish Pandeyd34f8892020-06-19 17:41:07 +0100930 local_page_pool, NULL)) {
Andrew Sculle1322792019-07-01 17:46:10 +0100931 /* TODO: partial defrag of failed range. */
932 /* Recover any memory consumed in failed mapping. */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100933 mm_vm_defrag(&vm_locked.vm->ptable, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +0100934 goto fail_undo_send;
935 }
936
Olivier Deprez96a2a262020-06-11 17:21:38 +0200937 /* Get extra send/recv pages mapping attributes for the given VM ID. */
938 extra_attributes = arch_mm_extra_attributes_from_vm(vm_locked.vm->id);
939
Manish Pandeyd34f8892020-06-19 17:41:07 +0100940 if (!api_vm_configure_stage1(mm_stage1_locked, vm_locked, pa_send_begin,
941 pa_send_end, pa_recv_begin, pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200942 extra_attributes, local_page_pool)) {
Andrew Sculle1322792019-07-01 17:46:10 +0100943 goto fail_undo_send_and_recv;
944 }
945
Manish Pandeyd34f8892020-06-19 17:41:07 +0100946 ret = (struct ffa_value){.func = FFA_SUCCESS_32};
Andrew Sculle1322792019-07-01 17:46:10 +0100947 goto out;
948
Andrew Sculle1322792019-07-01 17:46:10 +0100949fail_undo_send_and_recv:
Andrew Scull3c257452019-11-26 13:32:50 +0000950 CHECK(vm_identity_map(vm_locked, pa_recv_begin, pa_recv_end,
Manish Pandeyd34f8892020-06-19 17:41:07 +0100951 orig_send_mode, local_page_pool, NULL));
Andrew Sculle1322792019-07-01 17:46:10 +0100952
953fail_undo_send:
Andrew Scull3c257452019-11-26 13:32:50 +0000954 CHECK(vm_identity_map(vm_locked, pa_send_begin, pa_send_end,
Manish Pandeyd34f8892020-06-19 17:41:07 +0100955 orig_send_mode, local_page_pool, NULL));
956 ret = ffa_error(FFA_NO_MEMORY);
Andrew Sculle1322792019-07-01 17:46:10 +0100957
958out:
Andrew Sculle1322792019-07-01 17:46:10 +0100959 return ret;
960}
961
962/**
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100963 * Configures the VM to send/receive data through the specified pages. The pages
Manish Pandeyd34f8892020-06-19 17:41:07 +0100964 * must not be shared. Locking of the page tables combined with a local memory
965 * pool ensures there will always be enough memory to recover from any errors
966 * that arise. The stage-1 page tables must be locked so memory cannot be taken
967 * by another core which could result in this transaction being unable to roll
968 * back in the case of an error.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000969 *
970 * Returns:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100971 * - FFA_ERROR FFA_INVALID_PARAMETERS if the given addresses are not properly
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000972 * aligned or are the same.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100973 * - FFA_ERROR FFA_NO_MEMORY if the hypervisor was unable to map the buffers
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000974 * due to insuffient page table memory.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100975 * - FFA_ERROR FFA_DENIED if the pages are already mapped or are not owned by
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000976 * the caller.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100977 * - FFA_SUCCESS on success if no further action is needed.
978 * - FFA_RX_RELEASE if it was called by the primary VM and the primary VM now
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000979 * needs to wake up or kick waiters.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100980 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100981struct ffa_value api_ffa_rxtx_map(ipaddr_t send, ipaddr_t recv,
982 uint32_t page_count, struct vcpu *current,
983 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100984{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +0100985 struct vm *vm = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100986 struct ffa_value ret;
Manish Pandeyd34f8892020-06-19 17:41:07 +0100987 struct vm_locked vm_locked;
988 struct mm_stage1_locked mm_stage1_locked;
989 struct mpool local_page_pool;
Andrew Scull220e6212018-12-21 18:09:00 +0000990
Andrew Scull3c0a90a2019-07-01 11:55:53 +0100991 /*
Manish Pandeyd34f8892020-06-19 17:41:07 +0100992 * Create a local pool so any freed memory can't be used by another
993 * thread. This is to ensure the original mapping can be restored if any
994 * stage of the process fails.
Andrew Scull3c0a90a2019-07-01 11:55:53 +0100995 */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100996 mpool_init_with_fallback(&local_page_pool, &api_page_pool);
997
Andrew Sculle1322792019-07-01 17:46:10 +0100998 vm_locked = vm_lock(vm);
Manish Pandeyd34f8892020-06-19 17:41:07 +0100999 mm_stage1_locked = mm_lock_stage1();
Andrew Scull220e6212018-12-21 18:09:00 +00001000
Manish Pandeyd34f8892020-06-19 17:41:07 +01001001 ret = api_vm_configure_pages(mm_stage1_locked, vm_locked, send, recv,
1002 page_count, &local_page_pool);
1003 if (ret.func != FFA_SUCCESS_32) {
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001004 goto exit;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001005 }
1006
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001007 /* Tell caller about waiters, if any. */
Andrew Sculle1322792019-07-01 17:46:10 +01001008 ret = api_waiter_result(vm_locked, current, next);
Andrew Scull220e6212018-12-21 18:09:00 +00001009
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001010exit:
Manish Pandeyd34f8892020-06-19 17:41:07 +01001011 mpool_fini(&local_page_pool);
1012
1013 mm_unlock_stage1(&mm_stage1_locked);
Andrew Sculle1322792019-07-01 17:46:10 +01001014 vm_unlock(&vm_locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001015
1016 return ret;
1017}
1018
1019/**
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001020 * Notifies the `to` VM about the message currently in its mailbox, possibly
1021 * with the help of the primary VM.
1022 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001023static struct ffa_value deliver_msg(struct vm_locked to, ffa_vm_id_t from_id,
1024 struct vcpu *current, struct vcpu **next)
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001025{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001026 struct ffa_value ret = (struct ffa_value){.func = FFA_SUCCESS_32};
1027 struct ffa_value primary_ret = {
1028 .func = FFA_MSG_SEND_32,
Andrew Walbranf76f5752019-12-03 18:33:08 +00001029 .arg1 = ((uint32_t)from_id << 16) | to.vm->id,
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001030 };
1031
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001032 /* Messages for the primary VM are delivered directly. */
1033 if (to.vm->id == HF_PRIMARY_VM_ID) {
1034 /*
Andrew Walbrane7ad3c02019-12-24 17:03:04 +00001035 * Only tell the primary VM the size and other details if the
1036 * message is for it, to avoid leaking data about messages for
1037 * other VMs.
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001038 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001039 primary_ret = ffa_msg_recv_return(to.vm);
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001040
1041 to.vm->mailbox.state = MAILBOX_STATE_READ;
1042 *next = api_switch_to_primary(current, primary_ret,
1043 VCPU_STATE_READY);
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001044 return ret;
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001045 }
1046
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001047 to.vm->mailbox.state = MAILBOX_STATE_RECEIVED;
1048
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001049 /* Messages for the TEE are sent on via the dispatcher. */
1050 if (to.vm->id == HF_TEE_VM_ID) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001051 struct ffa_value call = ffa_msg_recv_return(to.vm);
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001052
Olivier Deprez112d2b52020-09-30 07:39:23 +02001053 ret = arch_other_world_call(call);
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001054 /*
1055 * After the call to the TEE completes it must have finished
1056 * reading its RX buffer, so it is ready for another message.
1057 */
1058 to.vm->mailbox.state = MAILBOX_STATE_EMPTY;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001059 /*
1060 * Don't return to the primary VM in this case, as the TEE is
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001061 * not (yet) scheduled via FF-A.
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001062 */
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001063 return ret;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001064 }
1065
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001066 /* Return to the primary VM directly or with a switch. */
Andrew Walbranf76f5752019-12-03 18:33:08 +00001067 if (from_id != HF_PRIMARY_VM_ID) {
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001068 *next = api_switch_to_primary(current, primary_ret,
1069 VCPU_STATE_READY);
1070 }
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001071
1072 return ret;
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001073}
1074
1075/**
Andrew Scullaa039b32018-10-04 15:02:26 +01001076 * Copies data from the sender's send buffer to the recipient's receive buffer
1077 * and notifies the recipient.
Wedson Almeida Filho17c997f2019-01-09 18:50:09 +00001078 *
1079 * If the recipient's receive buffer is busy, it can optionally register the
1080 * caller to be notified when the recipient's receive buffer becomes available.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001081 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001082struct ffa_value api_ffa_msg_send(ffa_vm_id_t sender_vm_id,
1083 ffa_vm_id_t receiver_vm_id, uint32_t size,
1084 uint32_t attributes, struct vcpu *current,
1085 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001086{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001087 struct vm *from = current->vm;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001088 struct vm *to;
Andrew Walbran82d6d152019-12-24 15:02:06 +00001089 struct vm_locked to_locked;
Andrew Walbran70bc8622019-10-07 14:15:58 +01001090 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001091 struct ffa_value ret;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001092 struct vcpu_locked current_locked;
1093 bool is_direct_request_ongoing;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001094 bool notify =
1095 (attributes & FFA_MSG_SEND_NOTIFY_MASK) == FFA_MSG_SEND_NOTIFY;
Andrew Scull19503262018-09-20 14:48:39 +01001096
Andrew Walbran70bc8622019-10-07 14:15:58 +01001097 /* Ensure sender VM ID corresponds to the current VM. */
1098 if (sender_vm_id != from->id) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001099 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001100 }
1101
1102 /* Disallow reflexive requests as this suggests an error in the VM. */
1103 if (receiver_vm_id == from->id) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001104 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001105 }
1106
1107 /* Limit the size of transfer. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001108 if (size > FFA_MSG_PAYLOAD_MAX) {
1109 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001110 }
1111
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001112 /*
1113 * Deny if vCPU is executing in context of an FFA_MSG_SEND_DIRECT_REQ
1114 * invocation.
1115 */
1116 current_locked = vcpu_lock(current);
1117 is_direct_request_ongoing =
1118 is_ffa_direct_msg_request_ongoing(current_locked);
1119 vcpu_unlock(&current_locked);
1120
1121 if (is_direct_request_ongoing) {
1122 return ffa_error(FFA_DENIED);
1123 }
1124
Andrew Walbran0b60c4f2019-12-10 17:05:29 +00001125 /* Ensure the receiver VM exists. */
1126 to = vm_find(receiver_vm_id);
1127 if (to == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001128 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran0b60c4f2019-12-10 17:05:29 +00001129 }
1130
Jose Marinhoa1dfeda2019-02-27 16:46:03 +00001131 /*
Andrew Walbran70bc8622019-10-07 14:15:58 +01001132 * Check that the sender has configured its send buffer. If the tx
1133 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
1134 * be safely accessed after releasing the lock since the tx mailbox
1135 * address can only be configured once.
Jose Marinhoa1dfeda2019-02-27 16:46:03 +00001136 */
1137 sl_lock(&from->lock);
1138 from_msg = from->mailbox.send;
1139 sl_unlock(&from->lock);
1140
1141 if (from_msg == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001142 return ffa_error(FFA_INVALID_PARAMETERS);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001143 }
1144
Andrew Walbran82d6d152019-12-24 15:02:06 +00001145 to_locked = vm_lock(to);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001146
Andrew Walbran82d6d152019-12-24 15:02:06 +00001147 if (msg_receiver_busy(to_locked, from, notify)) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001148 ret = ffa_error(FFA_BUSY);
Andrew Scullaa039b32018-10-04 15:02:26 +01001149 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001150 }
1151
Andrew Walbran82d6d152019-12-24 15:02:06 +00001152 /* Copy data. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001153 memcpy_s(to->mailbox.recv, FFA_MSG_PAYLOAD_MAX, from_msg, size);
Andrew Walbran82d6d152019-12-24 15:02:06 +00001154 to->mailbox.recv_size = size;
1155 to->mailbox.recv_sender = sender_vm_id;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001156 to->mailbox.recv_func = FFA_MSG_SEND_32;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001157 ret = deliver_msg(to_locked, sender_vm_id, current, next);
Andrew Scullaa039b32018-10-04 15:02:26 +01001158
1159out:
Andrew Walbran82d6d152019-12-24 15:02:06 +00001160 vm_unlock(&to_locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001161
Wedson Almeida Filho80eb4a32018-11-30 17:11:15 +00001162 return ret;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001163}
1164
1165/**
Andrew Scullec52ddf2019-08-20 10:41:01 +01001166 * Checks whether the vCPU's attempt to block for a message has already been
1167 * interrupted or whether it is allowed to block.
1168 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001169bool api_ffa_msg_recv_block_interrupted(struct vcpu *current)
Andrew Scullec52ddf2019-08-20 10:41:01 +01001170{
1171 bool interrupted;
1172
1173 sl_lock(&current->lock);
1174
1175 /*
1176 * Don't block if there are enabled and pending interrupts, to match
1177 * behaviour of wait_for_interrupt.
1178 */
1179 interrupted = (current->interrupts.enabled_and_pending_count > 0);
1180
1181 sl_unlock(&current->lock);
1182
1183 return interrupted;
1184}
1185
1186/**
Andrew Scullaa039b32018-10-04 15:02:26 +01001187 * Receives a message from the mailbox. If one isn't available, this function
1188 * can optionally block the caller until one becomes available.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001189 *
Andrew Scullaa039b32018-10-04 15:02:26 +01001190 * No new messages can be received until the mailbox has been cleared.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001191 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001192struct ffa_value api_ffa_msg_recv(bool block, struct vcpu *current,
1193 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001194{
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001195 bool is_direct_request_ongoing;
1196 struct vcpu_locked current_locked;
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001197 struct vm *vm = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001198 struct ffa_value return_code;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001199
Andrew Scullaa039b32018-10-04 15:02:26 +01001200 /*
1201 * The primary VM will receive messages as a status code from running
Fuad Tabbab0ef2a42019-12-19 11:19:25 +00001202 * vCPUs and must not call this function.
Andrew Scullaa039b32018-10-04 15:02:26 +01001203 */
Andrew Scull19503262018-09-20 14:48:39 +01001204 if (vm->id == HF_PRIMARY_VM_ID) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001205 return ffa_error(FFA_NOT_SUPPORTED);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001206 }
1207
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001208 /*
1209 * Deny if vCPU is executing in context of an FFA_MSG_SEND_DIRECT_REQ
1210 * invocation.
1211 */
1212 current_locked = vcpu_lock(current);
1213 is_direct_request_ongoing =
1214 is_ffa_direct_msg_request_ongoing(current_locked);
1215 vcpu_unlock(&current_locked);
1216
1217 if (is_direct_request_ongoing) {
1218 return ffa_error(FFA_DENIED);
1219 }
1220
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001221 sl_lock(&vm->lock);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001222
Andrew Scullaa039b32018-10-04 15:02:26 +01001223 /* Return pending messages without blocking. */
Andrew Sculld6ee1102019-04-05 22:12:42 +01001224 if (vm->mailbox.state == MAILBOX_STATE_RECEIVED) {
1225 vm->mailbox.state = MAILBOX_STATE_READ;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001226 return_code = ffa_msg_recv_return(vm);
Jose Marinho3e2442f2019-03-12 13:30:37 +00001227 goto out;
1228 }
1229
1230 /* No pending message so fail if not allowed to block. */
1231 if (!block) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001232 return_code = ffa_error(FFA_RETRY);
Andrew Scullaa039b32018-10-04 15:02:26 +01001233 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001234 }
Andrew Scullaa039b32018-10-04 15:02:26 +01001235
Andrew Walbran9311c9a2019-03-12 16:59:04 +00001236 /*
Jose Marinho3e2442f2019-03-12 13:30:37 +00001237 * From this point onward this call can only be interrupted or a message
1238 * received. If a message is received the return value will be set at
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001239 * that time to FFA_SUCCESS.
Andrew Walbran9311c9a2019-03-12 16:59:04 +00001240 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001241 return_code = ffa_error(FFA_INTERRUPTED);
1242 if (api_ffa_msg_recv_block_interrupted(current)) {
Andrew Scullaa039b32018-10-04 15:02:26 +01001243 goto out;
1244 }
1245
Fuad Tabbaed294af2019-12-20 10:43:01 +00001246 /* Switch back to primary VM to block. */
Andrew Walbranb4816552018-12-05 17:35:42 +00001247 {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001248 struct ffa_value run_return = {
1249 .func = FFA_MSG_WAIT_32,
1250 .arg1 = ffa_vm_vcpu(vm->id, vcpu_index(current)),
Andrew Walbranb4816552018-12-05 17:35:42 +00001251 };
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001252
Andrew Walbranb4816552018-12-05 17:35:42 +00001253 *next = api_switch_to_primary(current, run_return,
Andrew Sculld6ee1102019-04-05 22:12:42 +01001254 VCPU_STATE_BLOCKED_MAILBOX);
Andrew Walbranb4816552018-12-05 17:35:42 +00001255 }
Andrew Scullaa039b32018-10-04 15:02:26 +01001256out:
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001257 sl_unlock(&vm->lock);
1258
Jose Marinho3e2442f2019-03-12 13:30:37 +00001259 return return_code;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001260}
1261
1262/**
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001263 * Retrieves the next VM whose mailbox became writable. For a VM to be notified
1264 * by this function, the caller must have called api_mailbox_send before with
1265 * the notify argument set to true, and this call must have failed because the
1266 * mailbox was not available.
1267 *
1268 * It should be called repeatedly to retrieve a list of VMs.
1269 *
1270 * Returns -1 if no VM became writable, or the id of the VM whose mailbox
1271 * became writable.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001272 */
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001273int64_t api_mailbox_writable_get(const struct vcpu *current)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001274{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001275 struct vm *vm = current->vm;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001276 struct wait_entry *entry;
Andrew Scullc0e569a2018-10-02 18:05:21 +01001277 int64_t ret;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001278
1279 sl_lock(&vm->lock);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001280 if (list_empty(&vm->mailbox.ready_list)) {
1281 ret = -1;
1282 goto exit;
1283 }
1284
1285 entry = CONTAINER_OF(vm->mailbox.ready_list.next, struct wait_entry,
1286 ready_links);
1287 list_remove(&entry->ready_links);
Andrew Walbranaad8f982019-12-04 10:56:39 +00001288 ret = vm_id_for_wait_entry(vm, entry);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001289
1290exit:
1291 sl_unlock(&vm->lock);
1292 return ret;
1293}
1294
1295/**
1296 * Retrieves the next VM waiting to be notified that the mailbox of the
1297 * specified VM became writable. Only primary VMs are allowed to call this.
1298 *
Wedson Almeida Filhob790f652019-01-22 23:41:56 +00001299 * Returns -1 on failure or if there are no waiters; the VM id of the next
1300 * waiter otherwise.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001301 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001302int64_t api_mailbox_waiter_get(ffa_vm_id_t vm_id, const struct vcpu *current)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001303{
1304 struct vm *vm;
1305 struct vm_locked locked;
1306 struct wait_entry *entry;
1307 struct vm *waiting_vm;
1308
1309 /* Only primary VMs are allowed to call this function. */
1310 if (current->vm->id != HF_PRIMARY_VM_ID) {
1311 return -1;
1312 }
1313
Andrew Walbran42347a92019-05-09 13:59:03 +01001314 vm = vm_find(vm_id);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001315 if (vm == NULL) {
1316 return -1;
1317 }
1318
Fuad Tabbaed294af2019-12-20 10:43:01 +00001319 /* Check if there are outstanding notifications from given VM. */
Andrew Walbran7e932bd2019-04-29 16:47:06 +01001320 locked = vm_lock(vm);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001321 entry = api_fetch_waiter(locked);
1322 vm_unlock(&locked);
1323
1324 if (entry == NULL) {
1325 return -1;
1326 }
1327
1328 /* Enqueue notification to waiting VM. */
1329 waiting_vm = entry->waiting_vm;
1330
1331 sl_lock(&waiting_vm->lock);
1332 if (list_empty(&entry->ready_links)) {
1333 list_append(&waiting_vm->mailbox.ready_list,
1334 &entry->ready_links);
1335 }
1336 sl_unlock(&waiting_vm->lock);
1337
1338 return waiting_vm->id;
1339}
1340
1341/**
Andrew Walbran8a0f5ca2019-11-05 13:12:23 +00001342 * Releases the caller's mailbox so that a new message can be received. The
1343 * caller must have copied out all data they wish to preserve as new messages
1344 * will overwrite the old and will arrive asynchronously.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001345 *
1346 * Returns:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001347 * - FFA_ERROR FFA_DENIED on failure, if the mailbox hasn't been read.
1348 * - FFA_SUCCESS on success if no further action is needed.
1349 * - FFA_RX_RELEASE if it was called by the primary VM and the primary VM now
Andrew Walbran8a0f5ca2019-11-05 13:12:23 +00001350 * needs to wake up or kick waiters. Waiters should be retrieved by calling
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001351 * hf_mailbox_waiter_get.
1352 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001353struct ffa_value api_ffa_rx_release(struct vcpu *current, struct vcpu **next)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001354{
1355 struct vm *vm = current->vm;
1356 struct vm_locked locked;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001357 struct ffa_value ret;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001358
Andrew Walbran7e932bd2019-04-29 16:47:06 +01001359 locked = vm_lock(vm);
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001360 switch (vm->mailbox.state) {
Andrew Sculld6ee1102019-04-05 22:12:42 +01001361 case MAILBOX_STATE_EMPTY:
Andrew Sculld6ee1102019-04-05 22:12:42 +01001362 case MAILBOX_STATE_RECEIVED:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001363 ret = ffa_error(FFA_DENIED);
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001364 break;
1365
Andrew Sculld6ee1102019-04-05 22:12:42 +01001366 case MAILBOX_STATE_READ:
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001367 ret = api_waiter_result(locked, current, next);
Andrew Sculld6ee1102019-04-05 22:12:42 +01001368 vm->mailbox.state = MAILBOX_STATE_EMPTY;
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001369 break;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001370 }
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001371 vm_unlock(&locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001372
1373 return ret;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +01001374}
Andrew Walbran318f5732018-11-20 16:23:42 +00001375
1376/**
1377 * Enables or disables a given interrupt ID for the calling vCPU.
1378 *
1379 * Returns 0 on success, or -1 if the intid is invalid.
1380 */
Wedson Almeida Filhoc559d132019-01-09 19:33:40 +00001381int64_t api_interrupt_enable(uint32_t intid, bool enable, struct vcpu *current)
Andrew Walbran318f5732018-11-20 16:23:42 +00001382{
1383 uint32_t intid_index = intid / INTERRUPT_REGISTER_BITS;
Andrew Walbrane52006c2019-10-22 18:01:28 +01001384 uint32_t intid_mask = 1U << (intid % INTERRUPT_REGISTER_BITS);
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001385
Andrew Walbran318f5732018-11-20 16:23:42 +00001386 if (intid >= HF_NUM_INTIDS) {
1387 return -1;
1388 }
1389
1390 sl_lock(&current->lock);
1391 if (enable) {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001392 /*
1393 * If it is pending and was not enabled before, increment the
1394 * count.
1395 */
1396 if (current->interrupts.interrupt_pending[intid_index] &
1397 ~current->interrupts.interrupt_enabled[intid_index] &
1398 intid_mask) {
1399 current->interrupts.enabled_and_pending_count++;
1400 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001401 current->interrupts.interrupt_enabled[intid_index] |=
1402 intid_mask;
Andrew Walbran318f5732018-11-20 16:23:42 +00001403 } else {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001404 /*
1405 * If it is pending and was enabled before, decrement the count.
1406 */
1407 if (current->interrupts.interrupt_pending[intid_index] &
1408 current->interrupts.interrupt_enabled[intid_index] &
1409 intid_mask) {
1410 current->interrupts.enabled_and_pending_count--;
1411 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001412 current->interrupts.interrupt_enabled[intid_index] &=
1413 ~intid_mask;
1414 }
1415
1416 sl_unlock(&current->lock);
1417 return 0;
1418}
1419
1420/**
1421 * Returns the ID of the next pending interrupt for the calling vCPU, and
1422 * acknowledges it (i.e. marks it as no longer pending). Returns
1423 * HF_INVALID_INTID if there are no pending interrupts.
1424 */
Wedson Almeida Filhoc559d132019-01-09 19:33:40 +00001425uint32_t api_interrupt_get(struct vcpu *current)
Andrew Walbran318f5732018-11-20 16:23:42 +00001426{
1427 uint8_t i;
1428 uint32_t first_interrupt = HF_INVALID_INTID;
Andrew Walbran318f5732018-11-20 16:23:42 +00001429
1430 /*
1431 * Find the first enabled and pending interrupt ID, return it, and
1432 * deactivate it.
1433 */
1434 sl_lock(&current->lock);
1435 for (i = 0; i < HF_NUM_INTIDS / INTERRUPT_REGISTER_BITS; ++i) {
1436 uint32_t enabled_and_pending =
1437 current->interrupts.interrupt_enabled[i] &
1438 current->interrupts.interrupt_pending[i];
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001439
Andrew Walbran318f5732018-11-20 16:23:42 +00001440 if (enabled_and_pending != 0) {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001441 uint8_t bit_index = ctz(enabled_and_pending);
1442 /*
1443 * Mark it as no longer pending and decrement the count.
1444 */
1445 current->interrupts.interrupt_pending[i] &=
Andrew Walbrane52006c2019-10-22 18:01:28 +01001446 ~(1U << bit_index);
Andrew Walbran3d84a262018-12-13 14:41:19 +00001447 current->interrupts.enabled_and_pending_count--;
1448 first_interrupt =
1449 i * INTERRUPT_REGISTER_BITS + bit_index;
Andrew Walbran318f5732018-11-20 16:23:42 +00001450 break;
1451 }
1452 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001453
1454 sl_unlock(&current->lock);
1455 return first_interrupt;
1456}
1457
1458/**
Andrew Walbran4cf217a2018-12-14 15:24:50 +00001459 * Returns whether the current vCPU is allowed to inject an interrupt into the
Andrew Walbran318f5732018-11-20 16:23:42 +00001460 * given VM and vCPU.
1461 */
1462static inline bool is_injection_allowed(uint32_t target_vm_id,
1463 struct vcpu *current)
1464{
1465 uint32_t current_vm_id = current->vm->id;
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001466
Andrew Walbran318f5732018-11-20 16:23:42 +00001467 /*
1468 * The primary VM is allowed to inject interrupts into any VM. Secondary
1469 * VMs are only allowed to inject interrupts into their own vCPUs.
1470 */
1471 return current_vm_id == HF_PRIMARY_VM_ID ||
1472 current_vm_id == target_vm_id;
1473}
1474
1475/**
1476 * Injects a virtual interrupt of the given ID into the given target vCPU.
1477 * This doesn't cause the vCPU to actually be run immediately; it will be taken
1478 * when the vCPU is next run, which is up to the scheduler.
1479 *
Andrew Walbran3d84a262018-12-13 14:41:19 +00001480 * Returns:
1481 * - -1 on failure because the target VM or vCPU doesn't exist, the interrupt
1482 * ID is invalid, or the current VM is not allowed to inject interrupts to
1483 * the target VM.
1484 * - 0 on success if no further action is needed.
1485 * - 1 if it was called by the primary VM and the primary VM now needs to wake
1486 * up or kick the target vCPU.
Andrew Walbran318f5732018-11-20 16:23:42 +00001487 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001488int64_t api_interrupt_inject(ffa_vm_id_t target_vm_id,
1489 ffa_vcpu_index_t target_vcpu_idx, uint32_t intid,
Andrew Walbran42347a92019-05-09 13:59:03 +01001490 struct vcpu *current, struct vcpu **next)
Andrew Walbran318f5732018-11-20 16:23:42 +00001491{
Andrew Walbran318f5732018-11-20 16:23:42 +00001492 struct vcpu *target_vcpu;
Andrew Walbran42347a92019-05-09 13:59:03 +01001493 struct vm *target_vm = vm_find(target_vm_id);
Andrew Walbran318f5732018-11-20 16:23:42 +00001494
1495 if (intid >= HF_NUM_INTIDS) {
1496 return -1;
1497 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001498
Andrew Walbran318f5732018-11-20 16:23:42 +00001499 if (target_vm == NULL) {
1500 return -1;
1501 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001502
Andrew Walbran318f5732018-11-20 16:23:42 +00001503 if (target_vcpu_idx >= target_vm->vcpu_count) {
Fuad Tabbab0ef2a42019-12-19 11:19:25 +00001504 /* The requested vCPU must exist. */
Andrew Walbran318f5732018-11-20 16:23:42 +00001505 return -1;
1506 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001507
Andrew Walbran318f5732018-11-20 16:23:42 +00001508 if (!is_injection_allowed(target_vm_id, current)) {
1509 return -1;
1510 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001511
Andrew Walbrane1310df2019-04-29 17:28:28 +01001512 target_vcpu = vm_get_vcpu(target_vm, target_vcpu_idx);
Andrew Walbran318f5732018-11-20 16:23:42 +00001513
Andrew Walbran17eebf92020-02-05 16:35:49 +00001514 dlog_info("Injecting IRQ %d for VM %d vCPU %d from VM %d vCPU %d\n",
1515 intid, target_vm_id, target_vcpu_idx, current->vm->id,
1516 current->cpu->id);
Andrew Walbranfc9d4382019-05-10 18:07:21 +01001517 return internal_interrupt_inject(target_vcpu, intid, current, next);
Andrew Walbran318f5732018-11-20 16:23:42 +00001518}
Andrew Scull6386f252018-12-06 13:29:10 +00001519
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001520/** Returns the version of the implemented FF-A specification. */
1521struct ffa_value api_ffa_version(uint32_t requested_version)
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001522{
1523 /*
1524 * Ensure that both major and minor revision representation occupies at
1525 * most 15 bits.
1526 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001527 static_assert(0x8000 > FFA_VERSION_MAJOR,
Andrew Walbran9fd29072020-04-22 12:12:14 +01001528 "Major revision representation takes more than 15 bits.");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001529 static_assert(0x10000 > FFA_VERSION_MINOR,
Andrew Walbran9fd29072020-04-22 12:12:14 +01001530 "Minor revision representation takes more than 16 bits.");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001531 if (requested_version & FFA_VERSION_RESERVED_BIT) {
Andrew Walbran9fd29072020-04-22 12:12:14 +01001532 /* Invalid encoding, return an error. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001533 return (struct ffa_value){.func = FFA_NOT_SUPPORTED};
Andrew Walbran9fd29072020-04-22 12:12:14 +01001534 }
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001535
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001536 return (struct ffa_value){
1537 .func = (FFA_VERSION_MAJOR << FFA_VERSION_MAJOR_OFFSET) |
1538 FFA_VERSION_MINOR};
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001539}
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001540
1541int64_t api_debug_log(char c, struct vcpu *current)
1542{
Andrew Sculld54e1be2019-08-20 11:09:42 +01001543 bool flush;
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001544 struct vm *vm = current->vm;
1545 struct vm_locked vm_locked = vm_lock(vm);
1546
Andrew Sculld54e1be2019-08-20 11:09:42 +01001547 if (c == '\n' || c == '\0') {
1548 flush = true;
1549 } else {
1550 vm->log_buffer[vm->log_buffer_length++] = c;
1551 flush = (vm->log_buffer_length == sizeof(vm->log_buffer));
1552 }
1553
1554 if (flush) {
Andrew Walbran7f904bf2019-07-12 16:38:38 +01001555 dlog_flush_vm_buffer(vm->id, vm->log_buffer,
1556 vm->log_buffer_length);
1557 vm->log_buffer_length = 0;
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001558 }
1559
1560 vm_unlock(&vm_locked);
1561
1562 return 0;
1563}
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001564
1565/**
1566 * Discovery function returning information about the implementation of optional
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001567 * FF-A interfaces.
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001568 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001569struct ffa_value api_ffa_features(uint32_t function_id)
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001570{
1571 switch (function_id) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001572 case FFA_ERROR_32:
1573 case FFA_SUCCESS_32:
1574 case FFA_INTERRUPT_32:
1575 case FFA_VERSION_32:
1576 case FFA_FEATURES_32:
1577 case FFA_RX_RELEASE_32:
1578 case FFA_RXTX_MAP_64:
Fuad Tabbae4efcc32020-07-16 15:37:27 +01001579 case FFA_PARTITION_INFO_GET_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001580 case FFA_ID_GET_32:
1581 case FFA_MSG_POLL_32:
1582 case FFA_MSG_WAIT_32:
1583 case FFA_YIELD_32:
1584 case FFA_RUN_32:
1585 case FFA_MSG_SEND_32:
1586 case FFA_MEM_DONATE_32:
1587 case FFA_MEM_LEND_32:
1588 case FFA_MEM_SHARE_32:
1589 case FFA_MEM_RETRIEVE_REQ_32:
1590 case FFA_MEM_RETRIEVE_RESP_32:
1591 case FFA_MEM_RELINQUISH_32:
1592 case FFA_MEM_RECLAIM_32:
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001593 case FFA_MSG_SEND_DIRECT_RESP_32:
1594 case FFA_MSG_SEND_DIRECT_REQ_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001595 return (struct ffa_value){.func = FFA_SUCCESS_32};
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001596 default:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001597 return ffa_error(FFA_NOT_SUPPORTED);
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001598 }
1599}
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001600
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001601/**
1602 * Get target VM vCPU for direct messaging request.
1603 * If VM is UP then return first vCPU.
1604 * If VM is MP then return vCPU whose index matches current CPU index.
1605 */
1606static struct vcpu *api_ffa_msg_send_direct_get_receiver_vcpu(
1607 struct vm *vm, struct vcpu *current)
1608{
1609 ffa_vcpu_index_t current_cpu_index = cpu_index(current->cpu);
1610 struct vcpu *vcpu = NULL;
1611
1612 if (vm->vcpu_count == 1) {
1613 vcpu = vm_get_vcpu(vm, 0);
1614 } else if (current_cpu_index < vm->vcpu_count) {
1615 vcpu = vm_get_vcpu(vm, current_cpu_index);
1616 }
1617
1618 return vcpu;
1619}
1620
1621/**
1622 * Send an FF-A direct message request.
1623 */
1624struct ffa_value api_ffa_msg_send_direct_req(ffa_vm_id_t sender_vm_id,
1625 ffa_vm_id_t receiver_vm_id,
1626 struct ffa_value args,
1627 struct vcpu *current,
1628 struct vcpu **next)
1629{
1630 struct ffa_value ret = (struct ffa_value){.func = FFA_INTERRUPT_32};
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001631 struct vm *receiver_vm;
1632 struct vcpu *receiver_vcpu;
1633 struct two_vcpu_locked vcpus_locked;
1634
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001635 if (!arch_other_world_is_direct_request_valid(current, sender_vm_id,
1636 receiver_vm_id)) {
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001637 return ffa_error(FFA_NOT_SUPPORTED);
1638 }
1639
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001640 receiver_vm = vm_find(receiver_vm_id);
1641 if (receiver_vm == NULL) {
1642 return ffa_error(FFA_INVALID_PARAMETERS);
1643 }
1644
1645 /*
1646 * Per PSA FF-A EAC spec section 4.4.1 the firmware framework supports
1647 * UP (migratable) or MP partitions with a number of vCPUs matching the
1648 * number of PEs in the system. It further states that MP partitions
1649 * accepting direct request messages cannot migrate.
1650 */
1651 receiver_vcpu =
1652 api_ffa_msg_send_direct_get_receiver_vcpu(receiver_vm, current);
1653 if (receiver_vcpu == NULL) {
1654 return ffa_error(FFA_INVALID_PARAMETERS);
1655 }
1656
1657 vcpus_locked = vcpu_lock_both(receiver_vcpu, current);
1658
1659 /*
1660 * If destination vCPU is executing or already received an
1661 * FFA_MSG_SEND_DIRECT_REQ then return to caller hinting recipient is
1662 * busy. There is a brief period of time where the vCPU state has
1663 * changed but regs_available is still false thus consider this case as
1664 * the vCPU not yet ready to receive a direct message request.
1665 */
1666 if (is_ffa_direct_msg_request_ongoing(vcpus_locked.vcpu1) ||
1667 receiver_vcpu->state == VCPU_STATE_RUNNING ||
1668 !receiver_vcpu->regs_available) {
1669 ret = ffa_error(FFA_BUSY);
1670 goto out;
1671 }
1672
1673 if (atomic_load_explicit(&receiver_vcpu->vm->aborting,
1674 memory_order_relaxed)) {
1675 if (receiver_vcpu->state != VCPU_STATE_ABORTED) {
1676 dlog_notice("Aborting VM %u vCPU %u\n",
1677 receiver_vcpu->vm->id,
1678 vcpu_index(receiver_vcpu));
1679 receiver_vcpu->state = VCPU_STATE_ABORTED;
1680 }
1681
1682 ret = ffa_error(FFA_ABORTED);
1683 goto out;
1684 }
1685
1686 switch (receiver_vcpu->state) {
1687 case VCPU_STATE_OFF:
1688 case VCPU_STATE_RUNNING:
1689 case VCPU_STATE_ABORTED:
1690 case VCPU_STATE_READY:
1691 case VCPU_STATE_BLOCKED_INTERRUPT:
1692 ret = ffa_error(FFA_BUSY);
1693 goto out;
1694 case VCPU_STATE_BLOCKED_MAILBOX:
1695 /*
1696 * Expect target vCPU to be blocked after having called
1697 * ffa_msg_wait or sent a direct message response.
1698 */
1699 break;
1700 }
1701
1702 /* Inject timer interrupt if any pending */
1703 if (arch_timer_pending(&receiver_vcpu->regs)) {
1704 internal_interrupt_inject_locked(vcpus_locked.vcpu1,
1705 HF_VIRTUAL_TIMER_INTID,
1706 current, NULL);
1707
1708 arch_timer_mask(&receiver_vcpu->regs);
1709 }
1710
1711 /* The receiver vCPU runs upon direct message invocation */
1712 receiver_vcpu->cpu = current->cpu;
1713 receiver_vcpu->state = VCPU_STATE_RUNNING;
1714 receiver_vcpu->regs_available = false;
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001715 receiver_vcpu->direct_request_origin_vm_id = sender_vm_id;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001716
1717 arch_regs_set_retval(&receiver_vcpu->regs, (struct ffa_value){
1718 .func = args.func,
1719 .arg1 = args.arg1,
1720 .arg2 = 0,
1721 .arg3 = args.arg3,
1722 .arg4 = args.arg4,
1723 .arg5 = args.arg5,
1724 .arg6 = args.arg6,
1725 .arg7 = args.arg7,
1726 });
1727
1728 current->state = VCPU_STATE_BLOCKED_MAILBOX;
1729
1730 /* Switch to receiver vCPU targeted to by direct msg request */
1731 *next = receiver_vcpu;
1732
1733 /*
1734 * Since this flow will lead to a VM switch, the return value will not
1735 * be applied to current vCPU.
1736 */
1737
1738out:
1739 sl_unlock(&receiver_vcpu->lock);
1740 sl_unlock(&current->lock);
1741
1742 return ret;
1743}
1744
1745/**
1746 * Send an FF-A direct message response.
1747 */
1748struct ffa_value api_ffa_msg_send_direct_resp(ffa_vm_id_t sender_vm_id,
1749 ffa_vm_id_t receiver_vm_id,
1750 struct ffa_value args,
1751 struct vcpu *current,
1752 struct vcpu **next)
1753{
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001754 struct vcpu_locked current_locked;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001755
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001756 if (!arch_other_world_is_direct_response_valid(current, sender_vm_id,
1757 receiver_vm_id)) {
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001758 return ffa_error(FFA_NOT_SUPPORTED);
1759 }
1760
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001761 current_locked = vcpu_lock(current);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001762
1763 /*
1764 * Ensure the terminating FFA_MSG_SEND_DIRECT_REQ had a
1765 * defined originator.
1766 */
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001767 if (!is_ffa_direct_msg_request_ongoing(current_locked)) {
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001768 /*
1769 * Sending direct response but direct request origin vCPU is
1770 * not set.
1771 */
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001772 vcpu_unlock(&current_locked);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001773 return ffa_error(FFA_DENIED);
1774 }
1775
1776 if (current->direct_request_origin_vm_id != receiver_vm_id) {
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001777 vcpu_unlock(&current_locked);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001778 return ffa_error(FFA_DENIED);
1779 }
1780
1781 /* Clear direct request origin for the caller. */
1782 current->direct_request_origin_vm_id = HF_INVALID_VM_ID;
1783
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001784 vcpu_unlock(&current_locked);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001785
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02001786 if (!vm_id_is_current_world(receiver_vm_id)) {
1787 *next = api_switch_to_other_world(current,
1788 (struct ffa_value){
1789 .func = args.func,
1790 .arg1 = args.arg1,
1791 .arg2 = 0,
1792 .arg3 = args.arg3,
1793 .arg4 = args.arg4,
1794 .arg5 = args.arg5,
1795 .arg6 = args.arg6,
1796 .arg7 = args.arg7,
1797 },
1798 VCPU_STATE_BLOCKED_MAILBOX);
1799 } else if (receiver_vm_id == HF_PRIMARY_VM_ID) {
1800 *next = api_switch_to_primary(current,
1801 (struct ffa_value){
1802 .func = args.func,
1803 .arg1 = args.arg1,
1804 .arg2 = 0,
1805 .arg3 = args.arg3,
1806 .arg4 = args.arg4,
1807 .arg5 = args.arg5,
1808 .arg6 = args.arg6,
1809 .arg7 = args.arg7,
1810 },
1811 VCPU_STATE_BLOCKED_MAILBOX);
1812 } else {
1813 panic("Invalid direct message response invocation");
1814 }
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001815
1816 return (struct ffa_value){.func = FFA_INTERRUPT_32};
1817}
1818
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001819struct ffa_value api_ffa_mem_send(uint32_t share_func, uint32_t length,
1820 uint32_t fragment_length, ipaddr_t address,
Andrew Walbran1a86aa92020-05-15 17:22:28 +01001821 uint32_t page_count, struct vcpu *current)
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001822{
1823 struct vm *from = current->vm;
1824 struct vm *to;
1825 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001826 struct ffa_memory_region *memory_region;
1827 struct ffa_value ret;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001828
1829 if (ipa_addr(address) != 0 || page_count != 0) {
1830 /*
1831 * Hafnium only supports passing the descriptor in the TX
1832 * mailbox.
1833 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001834 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001835 }
1836
Andrew Walbranca808b12020-05-15 17:22:28 +01001837 if (fragment_length > length) {
1838 dlog_verbose(
1839 "Fragment length %d greater than total length %d.\n",
1840 fragment_length, length);
1841 return ffa_error(FFA_INVALID_PARAMETERS);
1842 }
1843 if (fragment_length < sizeof(struct ffa_memory_region) +
1844 sizeof(struct ffa_memory_access)) {
1845 dlog_verbose(
1846 "Initial fragment length %d smaller than header size "
1847 "%d.\n",
1848 fragment_length,
1849 sizeof(struct ffa_memory_region) +
1850 sizeof(struct ffa_memory_access));
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001851 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001852 }
1853
1854 /*
1855 * Check that the sender has configured its send buffer. If the TX
1856 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
1857 * be safely accessed after releasing the lock since the TX mailbox
1858 * address can only be configured once.
1859 */
1860 sl_lock(&from->lock);
1861 from_msg = from->mailbox.send;
1862 sl_unlock(&from->lock);
1863
1864 if (from_msg == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001865 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001866 }
1867
1868 /*
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001869 * Copy the memory region descriptor to a fresh page from the memory
1870 * pool. This prevents the sender from changing it underneath us, and
1871 * also lets us keep it around in the share state table if needed.
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001872 */
Andrew Walbran1a86aa92020-05-15 17:22:28 +01001873 if (fragment_length > HF_MAILBOX_SIZE ||
1874 fragment_length > MM_PPOOL_ENTRY_SIZE) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001875 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001876 }
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001877 memory_region = (struct ffa_memory_region *)mpool_alloc(&api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001878 if (memory_region == NULL) {
1879 dlog_verbose("Failed to allocate memory region copy.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001880 return ffa_error(FFA_NO_MEMORY);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001881 }
Andrew Walbran1a86aa92020-05-15 17:22:28 +01001882 memcpy_s(memory_region, MM_PPOOL_ENTRY_SIZE, from_msg, fragment_length);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001883
1884 /* The sender must match the caller. */
1885 if (memory_region->sender != from->id) {
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001886 dlog_verbose("Memory region sender doesn't match caller.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001887 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001888 goto out;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001889 }
1890
Andrew Walbrana65a1322020-04-06 19:32:32 +01001891 if (memory_region->receiver_count != 1) {
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001892 /* Hafnium doesn't support multi-way memory sharing for now. */
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001893 dlog_verbose(
1894 "Multi-way memory sharing not supported (got %d "
Andrew Walbrana65a1322020-04-06 19:32:32 +01001895 "endpoint memory access descriptors, expected 1).\n",
1896 memory_region->receiver_count);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001897 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001898 goto out;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001899 }
1900
1901 /*
1902 * Ensure that the receiver VM exists and isn't the same as the sender.
1903 */
Andrew Walbrana65a1322020-04-06 19:32:32 +01001904 to = vm_find(memory_region->receivers[0].receiver_permissions.receiver);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001905 if (to == NULL || to == from) {
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001906 dlog_verbose("Invalid receiver.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001907 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001908 goto out;
1909 }
1910
1911 if (to->id == HF_TEE_VM_ID) {
1912 /*
1913 * The 'to' VM lock is only needed in the case that it is the
1914 * TEE VM.
1915 */
1916 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
1917
1918 if (msg_receiver_busy(vm_to_from_lock.vm1, from, false)) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001919 ret = ffa_error(FFA_BUSY);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001920 goto out_unlock;
1921 }
1922
Andrew Walbran1a86aa92020-05-15 17:22:28 +01001923 ret = ffa_memory_tee_send(
1924 vm_to_from_lock.vm2, vm_to_from_lock.vm1, memory_region,
1925 length, fragment_length, share_func, &api_page_pool);
1926 /*
1927 * ffa_tee_memory_send takes ownership of the memory_region, so
1928 * make sure we don't free it.
1929 */
1930 memory_region = NULL;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001931
1932 out_unlock:
1933 vm_unlock(&vm_to_from_lock.vm1);
1934 vm_unlock(&vm_to_from_lock.vm2);
1935 } else {
1936 struct vm_locked from_locked = vm_lock(from);
1937
Andrew Walbran1a86aa92020-05-15 17:22:28 +01001938 ret = ffa_memory_send(from_locked, memory_region, length,
1939 fragment_length, share_func,
1940 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001941 /*
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001942 * ffa_memory_send takes ownership of the memory_region, so
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001943 * make sure we don't free it.
1944 */
1945 memory_region = NULL;
1946
1947 vm_unlock(&from_locked);
1948 }
1949
1950out:
1951 if (memory_region != NULL) {
1952 mpool_free(&api_page_pool, memory_region);
1953 }
1954
1955 return ret;
1956}
1957
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001958struct ffa_value api_ffa_mem_retrieve_req(uint32_t length,
1959 uint32_t fragment_length,
1960 ipaddr_t address, uint32_t page_count,
1961 struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001962{
1963 struct vm *to = current->vm;
1964 struct vm_locked to_locked;
1965 const void *to_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001966 struct ffa_memory_region *retrieve_request;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001967 uint32_t message_buffer_size;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001968 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001969
1970 if (ipa_addr(address) != 0 || page_count != 0) {
1971 /*
1972 * Hafnium only supports passing the descriptor in the TX
1973 * mailbox.
1974 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001975 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001976 }
1977
Andrew Walbrana65a1322020-04-06 19:32:32 +01001978 if (fragment_length != length) {
1979 dlog_verbose("Fragmentation not yet supported.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001980 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001981 }
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001982
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001983 retrieve_request =
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001984 (struct ffa_memory_region *)cpu_get_buffer(current->cpu);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001985 message_buffer_size = cpu_get_buffer_size(current->cpu);
1986 if (length > HF_MAILBOX_SIZE || length > message_buffer_size) {
1987 dlog_verbose("Retrieve request too long.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001988 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001989 }
1990
1991 to_locked = vm_lock(to);
1992 to_msg = to->mailbox.send;
1993
1994 if (to_msg == NULL) {
1995 dlog_verbose("TX buffer not setup.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001996 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00001997 goto out;
1998 }
1999
2000 /*
2001 * Copy the retrieve request descriptor to an internal buffer, so that
2002 * the caller can't change it underneath us.
2003 */
2004 memcpy_s(retrieve_request, message_buffer_size, to_msg, length);
2005
2006 if (msg_receiver_busy(to_locked, NULL, false)) {
2007 /*
2008 * Can't retrieve memory information if the mailbox is not
2009 * available.
2010 */
2011 dlog_verbose("RX buffer not ready.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002012 ret = ffa_error(FFA_BUSY);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002013 goto out;
2014 }
2015
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002016 ret = ffa_memory_retrieve(to_locked, retrieve_request, length,
2017 &api_page_pool);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002018
2019out:
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002020 vm_unlock(&to_locked);
2021 return ret;
2022}
2023
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002024struct ffa_value api_ffa_mem_relinquish(struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002025{
2026 struct vm *from = current->vm;
2027 struct vm_locked from_locked;
2028 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002029 struct ffa_mem_relinquish *relinquish_request;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002030 uint32_t message_buffer_size;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002031 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002032 uint32_t length;
2033
2034 from_locked = vm_lock(from);
2035 from_msg = from->mailbox.send;
2036
2037 if (from_msg == NULL) {
2038 dlog_verbose("TX buffer not setup.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002039 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002040 goto out;
2041 }
2042
2043 /*
2044 * Calculate length from relinquish descriptor before copying. We will
2045 * check again later to make sure it hasn't changed.
2046 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002047 length = sizeof(struct ffa_mem_relinquish) +
2048 ((struct ffa_mem_relinquish *)from_msg)->endpoint_count *
2049 sizeof(ffa_vm_id_t);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002050 /*
2051 * Copy the relinquish descriptor to an internal buffer, so that the
2052 * caller can't change it underneath us.
2053 */
2054 relinquish_request =
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002055 (struct ffa_mem_relinquish *)cpu_get_buffer(current->cpu);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002056 message_buffer_size = cpu_get_buffer_size(current->cpu);
2057 if (length > HF_MAILBOX_SIZE || length > message_buffer_size) {
2058 dlog_verbose("Relinquish message too long.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002059 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002060 goto out;
2061 }
2062 memcpy_s(relinquish_request, message_buffer_size, from_msg, length);
2063
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002064 if (sizeof(struct ffa_mem_relinquish) +
2065 relinquish_request->endpoint_count * sizeof(ffa_vm_id_t) !=
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002066 length) {
2067 dlog_verbose(
2068 "Endpoint count changed while copying to internal "
2069 "buffer.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002070 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002071 goto out;
2072 }
2073
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002074 ret = ffa_memory_relinquish(from_locked, relinquish_request,
2075 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002076
2077out:
2078 vm_unlock(&from_locked);
2079 return ret;
2080}
2081
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002082struct ffa_value api_ffa_mem_reclaim(ffa_memory_handle_t handle,
2083 ffa_memory_region_flags_t flags,
2084 struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002085{
2086 struct vm *to = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002087 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002088
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002089 if ((handle & FFA_MEMORY_HANDLE_ALLOCATOR_MASK) ==
2090 FFA_MEMORY_HANDLE_ALLOCATOR_HYPERVISOR) {
Andrew Walbran290b0c92020-02-03 16:37:14 +00002091 struct vm_locked to_locked = vm_lock(to);
2092
Andrew Walbranca808b12020-05-15 17:22:28 +01002093 ret = ffa_memory_reclaim(to_locked, handle, flags,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002094 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002095
Andrew Walbran290b0c92020-02-03 16:37:14 +00002096 vm_unlock(&to_locked);
2097 } else {
2098 struct vm *from = vm_find(HF_TEE_VM_ID);
2099 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
2100
Andrew Walbranca808b12020-05-15 17:22:28 +01002101 ret = ffa_memory_tee_reclaim(vm_to_from_lock.vm1,
2102 vm_to_from_lock.vm2, handle, flags,
2103 &api_page_pool);
2104
2105 vm_unlock(&vm_to_from_lock.vm1);
2106 vm_unlock(&vm_to_from_lock.vm2);
2107 }
2108
2109 return ret;
2110}
2111
2112struct ffa_value api_ffa_mem_frag_rx(ffa_memory_handle_t handle,
2113 uint32_t fragment_offset,
2114 ffa_vm_id_t sender_vm_id,
2115 struct vcpu *current)
2116{
2117 struct vm *to = current->vm;
2118 struct vm_locked to_locked;
2119 struct ffa_value ret;
2120
2121 /* Sender ID MBZ at virtual instance. */
2122 if (sender_vm_id != 0) {
2123 return ffa_error(FFA_INVALID_PARAMETERS);
2124 }
2125
2126 to_locked = vm_lock(to);
2127
2128 if (msg_receiver_busy(to_locked, NULL, false)) {
2129 /*
2130 * Can't retrieve memory information if the mailbox is not
2131 * available.
2132 */
2133 dlog_verbose("RX buffer not ready.\n");
2134 ret = ffa_error(FFA_BUSY);
2135 goto out;
2136 }
2137
2138 ret = ffa_memory_retrieve_continue(to_locked, handle, fragment_offset,
2139 &api_page_pool);
2140
2141out:
2142 vm_unlock(&to_locked);
2143 return ret;
2144}
2145
2146struct ffa_value api_ffa_mem_frag_tx(ffa_memory_handle_t handle,
2147 uint32_t fragment_length,
2148 ffa_vm_id_t sender_vm_id,
2149 struct vcpu *current)
2150{
2151 struct vm *from = current->vm;
2152 const void *from_msg;
2153 void *fragment_copy;
2154 struct ffa_value ret;
2155
2156 /* Sender ID MBZ at virtual instance. */
2157 if (sender_vm_id != 0) {
2158 return ffa_error(FFA_INVALID_PARAMETERS);
2159 }
2160
2161 /*
2162 * Check that the sender has configured its send buffer. If the TX
2163 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
2164 * be safely accessed after releasing the lock since the TX mailbox
2165 * address can only be configured once.
2166 */
2167 sl_lock(&from->lock);
2168 from_msg = from->mailbox.send;
2169 sl_unlock(&from->lock);
2170
2171 if (from_msg == NULL) {
2172 return ffa_error(FFA_INVALID_PARAMETERS);
2173 }
2174
2175 /*
2176 * Copy the fragment to a fresh page from the memory pool. This prevents
2177 * the sender from changing it underneath us, and also lets us keep it
2178 * around in the share state table if needed.
2179 */
2180 if (fragment_length > HF_MAILBOX_SIZE ||
2181 fragment_length > MM_PPOOL_ENTRY_SIZE) {
2182 dlog_verbose(
2183 "Fragment length %d larger than mailbox size %d.\n",
2184 fragment_length, HF_MAILBOX_SIZE);
2185 return ffa_error(FFA_INVALID_PARAMETERS);
2186 }
2187 if (fragment_length < sizeof(struct ffa_memory_region_constituent) ||
2188 fragment_length % sizeof(struct ffa_memory_region_constituent) !=
2189 0) {
2190 dlog_verbose("Invalid fragment length %d.\n", fragment_length);
2191 return ffa_error(FFA_INVALID_PARAMETERS);
2192 }
2193 fragment_copy = mpool_alloc(&api_page_pool);
2194 if (fragment_copy == NULL) {
2195 dlog_verbose("Failed to allocate fragment copy.\n");
2196 return ffa_error(FFA_NO_MEMORY);
2197 }
2198 memcpy_s(fragment_copy, MM_PPOOL_ENTRY_SIZE, from_msg, fragment_length);
2199
2200 /*
2201 * Hafnium doesn't support fragmentation of memory retrieve requests
2202 * (because it doesn't support caller-specified mappings, so a request
2203 * will never be larger than a single page), so this must be part of a
2204 * memory send (i.e. donate, lend or share) request.
2205 *
2206 * We can tell from the handle whether the memory transaction is for the
2207 * TEE or not.
2208 */
2209 if ((handle & FFA_MEMORY_HANDLE_ALLOCATOR_MASK) ==
2210 FFA_MEMORY_HANDLE_ALLOCATOR_HYPERVISOR) {
2211 struct vm_locked from_locked = vm_lock(from);
2212
2213 ret = ffa_memory_send_continue(from_locked, fragment_copy,
2214 fragment_length, handle,
2215 &api_page_pool);
2216 /*
2217 * `ffa_memory_send_continue` takes ownership of the
2218 * fragment_copy, so we don't need to free it here.
2219 */
2220 vm_unlock(&from_locked);
2221 } else {
2222 struct vm *to = vm_find(HF_TEE_VM_ID);
2223 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
2224
2225 /*
2226 * The TEE RX buffer state is checked in
2227 * `ffa_memory_tee_send_continue` rather than here, as we need
2228 * to return `FFA_MEM_FRAG_RX` with the current offset rather
2229 * than FFA_ERROR FFA_BUSY in case it is busy.
2230 */
2231
2232 ret = ffa_memory_tee_send_continue(
2233 vm_to_from_lock.vm2, vm_to_from_lock.vm1, fragment_copy,
2234 fragment_length, handle, &api_page_pool);
2235 /*
2236 * `ffa_memory_tee_send_continue` takes ownership of the
2237 * fragment_copy, so we don't need to free it here.
2238 */
Andrew Walbran290b0c92020-02-03 16:37:14 +00002239
2240 vm_unlock(&vm_to_from_lock.vm1);
2241 vm_unlock(&vm_to_from_lock.vm2);
2242 }
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002243
2244 return ret;
2245}