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Andrew Scull18834872018-10-12 11:48:09 +01001/*
J-Alves13318e32021-02-22 17:21:00 +00002 * Copyright 2021 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"
Daniel Boulbyb2fb80e2021-02-03 15:09:23 +000012#include "hf/arch/ffa.h"
Olivier Deprez96a2a262020-06-11 17:21:38 +020013#include "hf/arch/mm.h"
Olivier Deprez112d2b52020-09-30 07:39:23 +020014#include "hf/arch/other_world.h"
Olivier Deprez55a189e2021-06-09 15:45:27 +020015#include "hf/arch/plat/ffa.h"
Andrew Walbran508e63c2018-12-20 17:02:37 +000016#include "hf/arch/timer.h"
Olivier Deprez764fd2e2020-07-29 15:14:09 +020017#include "hf/arch/vm.h"
Andrew Walbran318f5732018-11-20 16:23:42 +000018
Andrew Scull877ae4b2019-07-02 12:52:33 +010019#include "hf/check.h"
Andrew Walbran318f5732018-11-20 16:23:42 +000020#include "hf/dlog.h"
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010021#include "hf/ffa_internal.h"
22#include "hf/ffa_memory.h"
Andrew Scull6386f252018-12-06 13:29:10 +000023#include "hf/mm.h"
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +010024#include "hf/plat/console.h"
Manish Pandeya5f39fb2020-09-11 09:47:11 +010025#include "hf/plat/interrupts.h"
Andrew Scull6386f252018-12-06 13:29:10 +000026#include "hf/spinlock.h"
Andrew Scull877ae4b2019-07-02 12:52:33 +010027#include "hf/static_assert.h"
Andrew Scull8d9e1212019-04-05 13:52:55 +010028#include "hf/std.h"
Andrew Scull18c78fc2018-08-20 12:57:41 +010029#include "hf/vm.h"
30
Andrew Scullf35a5c92018-08-07 18:09:46 +010031#include "vmapi/hf/call.h"
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010032#include "vmapi/hf/ffa.h"
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010033
Daniel Boulby1ddb3d72021-12-16 18:16:50 +000034static_assert(sizeof(struct ffa_partition_info_v1_0) == 8,
Fuad Tabbae4efcc32020-07-16 15:37:27 +010035 "Partition information descriptor size doesn't match the one in "
36 "the FF-A 1.0 EAC specification, Table 82.");
Daniel Boulby1ddb3d72021-12-16 18:16:50 +000037static_assert(sizeof(struct ffa_partition_info) == 24,
38 "Partition information descriptor size doesn't match the one in "
39 "the FF-A 1.1 BETA0 EAC specification, Table 13.34.");
Fuad Tabbae4efcc32020-07-16 15:37:27 +010040
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +000041/*
42 * To eliminate the risk of deadlocks, we define a partial order for the
43 * acquisition of locks held concurrently by the same physical CPU. Our current
44 * ordering requirements are as follows:
45 *
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +010046 * vm::lock -> vcpu::lock -> mm_stage1_lock -> dlog sl
Andrew Scull6386f252018-12-06 13:29:10 +000047 *
Andrew Scull4caadaf2019-07-03 13:13:47 +010048 * Locks of the same kind require the lock of lowest address to be locked first,
49 * see `sl_lock_both()`.
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +000050 */
51
Andrew Scullaa039b32018-10-04 15:02:26 +010052static_assert(HF_MAILBOX_SIZE == PAGE_SIZE,
Andrew Scull13652af2018-09-17 14:49:08 +010053 "Currently, a page is mapped for the send and receive buffers so "
54 "the maximum request is the size of a page.");
55
Andrew Walbran5de9c3d2020-02-10 13:35:29 +000056static_assert(MM_PPOOL_ENTRY_SIZE >= HF_MAILBOX_SIZE,
57 "The page pool entry size must be at least as big as the mailbox "
58 "size, so that memory region descriptors can be copied from the "
59 "mailbox for memory sharing.");
60
Wedson Almeida Filho9ed8da52018-12-17 16:09:11 +000061static struct mpool api_page_pool;
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000062
63/**
Wedson Almeida Filho81568c42019-01-04 13:33:02 +000064 * Initialises the API page pool by taking ownership of the contents of the
65 * given page pool.
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000066 */
67void api_init(struct mpool *ppool)
68{
Wedson Almeida Filho9ed8da52018-12-17 16:09:11 +000069 mpool_init_from(&api_page_pool, ppool);
Wedson Almeida Filho22d5eaa2018-12-16 00:38:49 +000070}
71
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +010072/**
J-Alvesad6a0432021-04-09 16:06:21 +010073 * Get target VM vCPU:
74 * If VM is UP then return first vCPU.
75 * If VM is MP then return vCPU whose index matches current CPU index.
76 */
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -050077struct vcpu *api_ffa_get_vm_vcpu(struct vm *vm, struct vcpu *current)
J-Alvesad6a0432021-04-09 16:06:21 +010078{
79 ffa_vcpu_index_t current_cpu_index = cpu_index(current->cpu);
80 struct vcpu *vcpu = NULL;
81
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -050082 CHECK((vm != NULL) && (current != NULL));
83
J-Alvesad6a0432021-04-09 16:06:21 +010084 if (vm->vcpu_count == 1) {
85 vcpu = vm_get_vcpu(vm, 0);
86 } else if (current_cpu_index < vm->vcpu_count) {
87 vcpu = vm_get_vcpu(vm, current_cpu_index);
88 }
89
90 return vcpu;
91}
92
93/**
J-Alvesfe7f7372020-11-09 11:32:12 +000094 * Switches the physical CPU back to the corresponding vCPU of the VM whose ID
95 * is given as argument of the function.
96 *
97 * Called to change the context between SPs for direct messaging (when Hafnium
98 * is SPMC), and on the context of the remaining 'api_switch_to_*' functions.
99 *
100 * This function works for partitions that are:
J-Alvesad6a0432021-04-09 16:06:21 +0100101 * - UP migratable.
J-Alvesfe7f7372020-11-09 11:32:12 +0000102 * - MP with pinned Execution Contexts.
103 */
104static struct vcpu *api_switch_to_vm(struct vcpu *current,
105 struct ffa_value to_ret,
106 enum vcpu_state vcpu_state,
107 ffa_vm_id_t to_id)
108{
109 struct vm *to_vm = vm_find(to_id);
J-Alvesad6a0432021-04-09 16:06:21 +0100110 struct vcpu *next = api_ffa_get_vm_vcpu(to_vm, current);
J-Alvesfe7f7372020-11-09 11:32:12 +0000111
112 CHECK(next != NULL);
113
114 /* Set the return value for the target VM. */
115 arch_regs_set_retval(&next->regs, to_ret);
116
117 /* Set the current vCPU state. */
118 sl_lock(&current->lock);
119 current->state = vcpu_state;
120 sl_unlock(&current->lock);
121
122 return next;
123}
124
125/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000126 * Switches the physical CPU back to the corresponding vCPU of the primary VM.
Andrew Scullaa039b32018-10-04 15:02:26 +0100127 *
128 * This triggers the scheduling logic to run. Run in the context of secondary VM
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100129 * to cause FFA_RUN to return and the primary VM to regain control of the CPU.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100130 */
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500131struct vcpu *api_switch_to_primary(struct vcpu *current,
132 struct ffa_value primary_ret,
133 enum vcpu_state secondary_state)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100134{
Andrew Walbran508e63c2018-12-20 17:02:37 +0000135 /*
136 * If the secondary is blocked but has a timer running, sleep until the
137 * timer fires rather than indefinitely.
138 */
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100139 switch (primary_ret.func) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100140 case HF_FFA_RUN_WAIT_FOR_INTERRUPT:
141 case FFA_MSG_WAIT_32: {
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100142 if (arch_timer_enabled_current()) {
143 uint64_t remaining_ns =
144 arch_timer_remaining_ns_current();
145
146 if (remaining_ns == 0) {
147 /*
148 * Timer is pending, so the current vCPU should
149 * be run again right away.
150 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100151 primary_ret.func = FFA_INTERRUPT_32;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100152 /*
153 * primary_ret.arg1 should already be set to the
154 * current VM ID and vCPU ID.
155 */
156 primary_ret.arg2 = 0;
157 } else {
158 primary_ret.arg2 = remaining_ns;
159 }
160 } else {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100161 primary_ret.arg2 = FFA_SLEEP_INDEFINITE;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100162 }
Andrew Scullb06d1752019-02-04 10:15:48 +0000163 break;
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100164 }
Andrew Scullb06d1752019-02-04 10:15:48 +0000165
166 default:
167 /* Do nothing. */
168 break;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000169 }
170
J-Alvesfe7f7372020-11-09 11:32:12 +0000171 return api_switch_to_vm(current, primary_ret, secondary_state,
172 HF_PRIMARY_VM_ID);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100173}
174
175/**
Olivier Deprez2ebae3a2020-06-11 16:34:30 +0200176 * Choose next vCPU to run to be the counterpart vCPU in the other
177 * world (run the normal world if currently running in the secure
178 * world). Set current vCPU state to the given vcpu_state parameter.
179 * Set FF-A return values to the target vCPU in the other world.
180 *
181 * Called in context of a direct message response from a secure
182 * partition to a VM.
183 */
Manish Pandeya5f39fb2020-09-11 09:47:11 +0100184struct vcpu *api_switch_to_other_world(struct vcpu *current,
185 struct ffa_value other_world_ret,
186 enum vcpu_state vcpu_state)
Olivier Deprez2ebae3a2020-06-11 16:34:30 +0200187{
J-Alvesfe7f7372020-11-09 11:32:12 +0000188 return api_switch_to_vm(current, other_world_ret, vcpu_state,
189 HF_OTHER_WORLD_ID);
Olivier Deprez2ebae3a2020-06-11 16:34:30 +0200190}
191
192/**
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100193 * Checks whether the given `to` VM's mailbox is currently busy, and optionally
194 * registers the `from` VM to be notified when it becomes available.
195 */
196static bool msg_receiver_busy(struct vm_locked to, struct vm *from, bool notify)
197{
198 if (to.vm->mailbox.state != MAILBOX_STATE_EMPTY ||
199 to.vm->mailbox.recv == NULL) {
200 /*
201 * Fail if the receiver isn't currently ready to receive data,
202 * setting up for notification if requested.
203 */
204 if (notify) {
205 struct wait_entry *entry =
206 vm_get_wait_entry(from, to.vm->id);
207
208 /* Append waiter only if it's not there yet. */
209 if (list_empty(&entry->wait_links)) {
210 list_append(&to.vm->mailbox.waiter_list,
211 &entry->wait_links);
212 }
213 }
214
215 return true;
216 }
217
218 return false;
219}
220
221/**
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000222 * Returns true if the given vCPU is executing in context of an
223 * FFA_MSG_SEND_DIRECT_REQ invocation.
224 */
225static bool is_ffa_direct_msg_request_ongoing(struct vcpu_locked locked)
226{
227 return locked.vcpu->direct_request_origin_vm_id != HF_INVALID_VM_ID;
228}
229
230/**
Manish Pandeya5f39fb2020-09-11 09:47:11 +0100231 * Returns true if the VM owning the given vCPU is supporting managed exit and
232 * the vCPU is currently processing a managed exit.
233 */
234static bool api_ffa_is_managed_exit_ongoing(struct vcpu_locked vcpu_locked)
235{
Maksims Svecovs9ddf86a2021-05-06 17:17:21 +0100236 return (plat_ffa_vm_managed_exit_supported(vcpu_locked.vcpu->vm) &&
Manish Pandeya5f39fb2020-09-11 09:47:11 +0100237 vcpu_locked.vcpu->processing_managed_exit);
238}
239
240/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000241 * Returns to the primary VM and signals that the vCPU still has work to do so.
Andrew Scull33fecd32019-01-08 14:48:27 +0000242 */
243struct vcpu *api_preempt(struct vcpu *current)
244{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100245 struct ffa_value ret = {
246 .func = FFA_INTERRUPT_32,
247 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Scull33fecd32019-01-08 14:48:27 +0000248 };
249
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500250 return api_switch_to_primary(current, ret, VCPU_STATE_PREEMPTED);
Andrew Scull33fecd32019-01-08 14:48:27 +0000251}
252
253/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000254 * Puts the current vCPU in wait for interrupt mode, and returns to the primary
Fuad Tabbaed294af2019-12-20 10:43:01 +0000255 * VM.
Andrew Scullaa039b32018-10-04 15:02:26 +0100256 */
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +0100257struct vcpu *api_wait_for_interrupt(struct vcpu *current)
Andrew Scullaa039b32018-10-04 15:02:26 +0100258{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100259 struct ffa_value ret = {
260 .func = HF_FFA_RUN_WAIT_FOR_INTERRUPT,
261 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Scull6d2db332018-10-10 15:28:17 +0100262 };
Wedson Almeida Filho81568c42019-01-04 13:33:02 +0000263
Wedson Almeida Filhoba641ef2018-12-03 04:19:44 +0000264 return api_switch_to_primary(current, ret,
Andrew Sculld6ee1102019-04-05 22:12:42 +0100265 VCPU_STATE_BLOCKED_INTERRUPT);
Andrew Scullaa039b32018-10-04 15:02:26 +0100266}
267
268/**
Andrew Walbran33645652019-04-15 12:29:31 +0100269 * Puts the current vCPU in off mode, and returns to the primary VM.
270 */
271struct vcpu *api_vcpu_off(struct vcpu *current)
272{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100273 struct ffa_value ret = {
274 .func = HF_FFA_RUN_WAIT_FOR_INTERRUPT,
275 .arg1 = ffa_vm_vcpu(current->vm->id, vcpu_index(current)),
Andrew Walbran33645652019-04-15 12:29:31 +0100276 };
277
278 /*
279 * Disable the timer, so the scheduler doesn't get told to call back
280 * based on it.
281 */
282 arch_timer_disable_current();
283
284 return api_switch_to_primary(current, ret, VCPU_STATE_OFF);
285}
286
287/**
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500288 * The current vCPU is blocked on some resource and needs to relinquish
289 * control back to the execution context of the endpoint that originally
290 * allocated cycles to it.
Andrew Scull66d62bf2019-02-01 13:54:10 +0000291 */
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000292struct ffa_value api_yield(struct vcpu *current, struct vcpu **next)
Andrew Scull66d62bf2019-02-01 13:54:10 +0000293{
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000294 struct ffa_value ret = (struct ffa_value){.func = FFA_SUCCESS_32};
295 struct vcpu_locked current_locked;
296 bool is_direct_request_ongoing;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000297
298 if (current->vm->id == HF_PRIMARY_VM_ID) {
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000299 /* NOOP on the primary as it makes the scheduling decisions. */
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000300 return ret;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000301 }
302
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000303 current_locked = vcpu_lock(current);
304 is_direct_request_ongoing =
305 is_ffa_direct_msg_request_ongoing(current_locked);
306 vcpu_unlock(&current_locked);
307
308 if (is_direct_request_ongoing) {
309 return ffa_error(FFA_DENIED);
310 }
311
312 *next = api_switch_to_primary(
313 current,
314 (struct ffa_value){.func = FFA_YIELD_32,
315 .arg1 = ffa_vm_vcpu(current->vm->id,
316 vcpu_index(current))},
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500317 VCPU_STATE_BLOCKED);
Olivier Deprezee9d6a92019-11-26 09:14:11 +0000318
319 return ret;
Andrew Scull66d62bf2019-02-01 13:54:10 +0000320}
321
322/**
Andrew Walbran33645652019-04-15 12:29:31 +0100323 * Switches to the primary so that it can switch to the target, or kick it if it
324 * is already running on a different physical CPU.
325 */
326struct vcpu *api_wake_up(struct vcpu *current, struct vcpu *target_vcpu)
327{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100328 struct ffa_value ret = {
329 .func = HF_FFA_RUN_WAKE_UP,
330 .arg1 = ffa_vm_vcpu(target_vcpu->vm->id,
331 vcpu_index(target_vcpu)),
Andrew Walbran33645652019-04-15 12:29:31 +0100332 };
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500333 return api_switch_to_primary(current, ret, VCPU_STATE_BLOCKED);
Andrew Walbran33645652019-04-15 12:29:31 +0100334}
335
336/**
Andrew Scull38772ab2019-01-24 15:16:50 +0000337 * Aborts the vCPU and triggers its VM to abort fully.
Andrew Scull9726c252019-01-23 13:44:19 +0000338 */
339struct vcpu *api_abort(struct vcpu *current)
340{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100341 struct ffa_value ret = ffa_error(FFA_ABORTED);
Andrew Scull9726c252019-01-23 13:44:19 +0000342
Olivier Deprezf92e5d42020-11-13 16:00:54 +0100343 dlog_notice("Aborting VM %#x vCPU %u\n", current->vm->id,
Andrew Walbran17eebf92020-02-05 16:35:49 +0000344 vcpu_index(current));
Andrew Scull9726c252019-01-23 13:44:19 +0000345
346 if (current->vm->id == HF_PRIMARY_VM_ID) {
347 /* TODO: what to do when the primary aborts? */
348 for (;;) {
349 /* Do nothing. */
350 }
351 }
352
353 atomic_store_explicit(&current->vm->aborting, true,
354 memory_order_relaxed);
355
356 /* TODO: free resources once all vCPUs abort. */
357
Andrew Sculld6ee1102019-04-05 22:12:42 +0100358 return api_switch_to_primary(current, ret, VCPU_STATE_ABORTED);
Andrew Scull9726c252019-01-23 13:44:19 +0000359}
360
Daniel Boulby1ddb3d72021-12-16 18:16:50 +0000361/*
362 * Format the partition info descriptors according to the version supported
363 * by the endpoint and return the size of the array created.
364 */
365static struct ffa_value send_versioned_partition_info_descriptors(
366 struct vm *current_vm, struct ffa_partition_info *partitions,
367 uint32_t vm_count)
368{
369 struct vm_locked current_vm_locked;
370 uint32_t version = current_vm->ffa_version;
371 void *versioned_partition_info;
372 uint32_t size;
373 struct ffa_value ret;
374
375 if (version == MAKE_FFA_VERSION(1, 0)) {
376 struct ffa_partition_info_v1_0 v1_0_partitions[2 * MAX_VMS];
377
378 for (uint32_t i = 0; i < vm_count; i++) {
379 v1_0_partitions[i].vm_id = partitions[i].vm_id;
380 v1_0_partitions[i].vcpu_count =
381 partitions[i].vcpu_count;
382 v1_0_partitions[i].properties =
383 partitions[i].properties;
384 }
385 versioned_partition_info = v1_0_partitions;
386 size = sizeof(v1_0_partitions[0]) * vm_count;
387 } else {
388 versioned_partition_info = partitions;
389 size = sizeof(partitions[0]) * vm_count;
390 }
391
392 if (size > FFA_MSG_PAYLOAD_MAX) {
393 dlog_error(
394 "Partition information does not fit in the VM's RX "
395 "buffer.\n");
396 return ffa_error(FFA_NO_MEMORY);
397 }
398
399 /*
400 * Partition information is returned in the VM's RX buffer, which is why
401 * the lock is needed.
402 */
403 current_vm_locked = vm_lock(current_vm);
404
405 if (msg_receiver_busy(current_vm_locked, NULL, false)) {
406 /*
407 * Can't retrieve memory information if the mailbox is not
408 * available.
409 */
410 dlog_verbose("RX buffer not ready.\n");
411 ret = ffa_error(FFA_BUSY);
412 goto out_unlock;
413 }
414
415 /* Populate the VM's RX buffer with the partition information. */
416 memcpy_s(current_vm->mailbox.recv, FFA_MSG_PAYLOAD_MAX,
417 versioned_partition_info, size);
418 current_vm->mailbox.recv_size = size;
419
420 /* Sender is Hypervisor in the normal world (TEE in secure world). */
421 current_vm->mailbox.recv_sender = HF_VM_ID_BASE;
422 current_vm->mailbox.recv_func = FFA_PARTITION_INFO_GET_32;
423 current_vm->mailbox.state = MAILBOX_STATE_READ;
424
425 /* Return the count of partition information descriptors in w2. */
426 ret = (struct ffa_value){.func = FFA_SUCCESS_32, .arg2 = vm_count};
427
428out_unlock:
429 vm_unlock(&current_vm_locked);
430
431 return ret;
432}
433
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100434struct ffa_value api_ffa_partition_info_get(struct vcpu *current,
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000435 const struct ffa_uuid *uuid,
436 const uint32_t flags)
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100437{
438 struct vm *current_vm = current->vm;
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100439 ffa_vm_count_t vm_count = 0;
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000440 bool count_flag = (flags && FFA_PARTITION_COUNT_FLAG_MASK) ==
441 FFA_PARTITION_COUNT_FLAG;
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100442 bool uuid_is_null = ffa_uuid_is_null(uuid);
Olivier Depreze562e542020-06-11 17:31:54 +0200443 struct ffa_partition_info partitions[2 * MAX_VMS];
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100444
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000445 /* Bits 31:1 Must Be Zero */
446 if ((flags & ~FFA_PARTITION_COUNT_FLAG) != 0) {
447 return ffa_error(FFA_INVALID_PARAMETERS);
448 }
449
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100450 /*
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000451 * No need to count if we are returning the number of paritions as we
452 * already know this.
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100453 */
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000454 if (uuid_is_null && count_flag) {
455 vm_count = vm_get_count();
456 } else {
457 /*
458 * Iterate through the VMs to find the ones with a matching
459 * UUID. A Null UUID retrieves information for all VMs.
460 */
461 for (uint16_t index = 0; index < vm_get_count(); ++index) {
462 struct vm *vm = vm_find_index(index);
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100463
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000464 if (uuid_is_null || ffa_uuid_equal(uuid, &vm->uuid)) {
465 uint16_t array_index = vm_count;
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100466
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000467 ++vm_count;
468 if (count_flag) {
469 continue;
470 }
471
472 partitions[array_index].vm_id = vm->id;
473 partitions[array_index].vcpu_count =
474 vm->vcpu_count;
475 partitions[array_index].properties =
476 plat_ffa_partition_properties(
477 current_vm->id, vm);
478 partitions[array_index].properties |=
479 vm_are_notifications_enabled(vm)
480 ? FFA_PARTITION_NOTIFICATION
481 : 0;
Daniel Boulby1ddb3d72021-12-16 18:16:50 +0000482 partitions[array_index].uuid = vm->uuid;
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000483 }
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100484 }
485 }
486
Olivier Depreze562e542020-06-11 17:31:54 +0200487 /* If UUID is Null vm_count must not be zero at this stage. */
488 CHECK(!uuid_is_null || vm_count != 0);
489
490 /*
491 * When running the Hypervisor:
492 * - If UUID is Null the Hypervisor forwards the query to the SPMC for
493 * it to fill with secure partitions information.
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000494 * - If UUID is non-Null vm_count may be zero because the UUID matches
Olivier Depreze562e542020-06-11 17:31:54 +0200495 * a secure partition and the query is forwarded to the SPMC.
496 * When running the SPMC:
497 * - If UUID is non-Null and vm_count is zero it means there is no such
498 * partition identified in the system.
499 */
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000500 plat_ffa_partition_info_get_forward(uuid, flags, partitions, &vm_count);
Olivier Depreze562e542020-06-11 17:31:54 +0200501
502 /*
503 * Unrecognized UUID: does not match any of the VMs (or SPs)
504 * and is not Null.
505 */
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100506 if (vm_count == 0) {
507 return ffa_error(FFA_INVALID_PARAMETERS);
508 }
509
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000510 /*
511 * If the count flag is set we don't need to return the partition info
512 * descriptors.
513 */
514 if (count_flag) {
515 return (struct ffa_value){.func = FFA_SUCCESS_32,
516 .arg2 = vm_count};
517 }
518
Daniel Boulby1ddb3d72021-12-16 18:16:50 +0000519 return send_versioned_partition_info_descriptors(current_vm, partitions,
520 vm_count);
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100521}
522
Andrew Scull9726c252019-01-23 13:44:19 +0000523/**
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000524 * Returns the ID of the VM.
525 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100526struct ffa_value api_ffa_id_get(const struct vcpu *current)
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000527{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100528 return (struct ffa_value){.func = FFA_SUCCESS_32,
529 .arg2 = current->vm->id};
Andrew Scull55c4d8b2018-12-18 18:50:18 +0000530}
531
532/**
Olivier Deprez421677d2021-06-18 12:18:53 +0200533 * Returns the SPMC FF-A ID at NS virtual/physical and secure virtual
534 * FF-A instances.
535 * DEN0077A FF-A v1.1 Beta0 section 13.9 FFA_SPM_ID_GET.
Daniel Boulbyb2fb80e2021-02-03 15:09:23 +0000536 */
537struct ffa_value api_ffa_spm_id_get(void)
538{
J-Alves3829fc02021-03-18 12:49:18 +0000539#if (MAKE_FFA_VERSION(1, 1) <= FFA_VERSION_COMPILED)
540 /*
541 * Return the SPMC ID that was fetched during FF-A
542 * initialization.
543 */
544 return (struct ffa_value){.func = FFA_SUCCESS_32,
545 .arg2 = arch_ffa_spmc_id_get()};
546#else
547 return ffa_error(FFA_NOT_SUPPORTED);
548#endif
Daniel Boulbyb2fb80e2021-02-03 15:09:23 +0000549}
550
551/**
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000552 * This function is called by the architecture-specific context switching
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000553 * function to indicate that register state for the given vCPU has been saved
554 * and can therefore be used by other pCPUs.
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000555 */
556void api_regs_state_saved(struct vcpu *vcpu)
557{
558 sl_lock(&vcpu->lock);
559 vcpu->regs_available = true;
560 sl_unlock(&vcpu->lock);
561}
562
563/**
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000564 * Retrieves the next waiter and removes it from the wait list if the VM's
565 * mailbox is in a writable state.
566 */
567static struct wait_entry *api_fetch_waiter(struct vm_locked locked_vm)
568{
569 struct wait_entry *entry;
570 struct vm *vm = locked_vm.vm;
571
Andrew Sculld6ee1102019-04-05 22:12:42 +0100572 if (vm->mailbox.state != MAILBOX_STATE_EMPTY ||
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000573 vm->mailbox.recv == NULL || list_empty(&vm->mailbox.waiter_list)) {
574 /* The mailbox is not writable or there are no waiters. */
575 return NULL;
576 }
577
578 /* Remove waiter from the wait list. */
579 entry = CONTAINER_OF(vm->mailbox.waiter_list.next, struct wait_entry,
580 wait_links);
581 list_remove(&entry->wait_links);
582 return entry;
583}
584
585/**
Andrew Walbran508e63c2018-12-20 17:02:37 +0000586 * Assuming that the arguments have already been checked by the caller, injects
587 * a virtual interrupt of the given ID into the given target vCPU. This doesn't
588 * cause the vCPU to actually be run immediately; it will be taken when the vCPU
589 * is next run, which is up to the scheduler.
590 *
591 * Returns:
592 * - 0 on success if no further action is needed.
593 * - 1 if it was called by the primary VM and the primary VM now needs to wake
594 * up or kick the target vCPU.
595 */
Manish Pandeya5f39fb2020-09-11 09:47:11 +0100596int64_t api_interrupt_inject_locked(struct vcpu_locked target_locked,
597 uint32_t intid, struct vcpu *current,
598 struct vcpu **next)
Andrew Walbran508e63c2018-12-20 17:02:37 +0000599{
Manish Pandey35e452f2021-02-18 21:36:34 +0000600 struct vcpu *target_vcpu = target_locked.vcpu;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000601 uint32_t intid_index = intid / INTERRUPT_REGISTER_BITS;
Manish Pandey35e452f2021-02-18 21:36:34 +0000602 uint32_t intid_shift = intid % INTERRUPT_REGISTER_BITS;
603 uint32_t intid_mask = 1U << intid_shift;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000604 int64_t ret = 0;
605
Andrew Walbran508e63c2018-12-20 17:02:37 +0000606 /*
Manish Pandey35e452f2021-02-18 21:36:34 +0000607 * We only need to change state and (maybe) trigger a virtual interrupt
608 * if it is enabled and was not previously pending. Otherwise we can
609 * skip everything except setting the pending bit.
Andrew Walbran508e63c2018-12-20 17:02:37 +0000610 */
Manish Pandey35e452f2021-02-18 21:36:34 +0000611 if (!(target_vcpu->interrupts.interrupt_enabled[intid_index] &
612 ~target_vcpu->interrupts.interrupt_pending[intid_index] &
Andrew Walbran508e63c2018-12-20 17:02:37 +0000613 intid_mask)) {
614 goto out;
615 }
616
617 /* Increment the count. */
Manish Pandey35e452f2021-02-18 21:36:34 +0000618 if ((target_vcpu->interrupts.interrupt_type[intid_index] &
619 intid_mask) == (INTERRUPT_TYPE_IRQ << intid_shift)) {
620 vcpu_irq_count_increment(target_locked);
621 } else {
622 vcpu_fiq_count_increment(target_locked);
623 }
Andrew Walbran508e63c2018-12-20 17:02:37 +0000624
625 /*
626 * Only need to update state if there was not already an
627 * interrupt enabled and pending.
628 */
Manish Pandey35e452f2021-02-18 21:36:34 +0000629 if (vcpu_interrupt_count_get(target_locked) != 1) {
Andrew Walbran508e63c2018-12-20 17:02:37 +0000630 goto out;
631 }
632
Andrew Walbran508e63c2018-12-20 17:02:37 +0000633 if (current->vm->id == HF_PRIMARY_VM_ID) {
634 /*
635 * If the call came from the primary VM, let it know that it
636 * should run or kick the target vCPU.
637 */
638 ret = 1;
Manish Pandey35e452f2021-02-18 21:36:34 +0000639 } else if (current != target_vcpu && next != NULL) {
640 *next = api_wake_up(current, target_vcpu);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000641 }
642
643out:
644 /* Either way, make it pending. */
Manish Pandey35e452f2021-02-18 21:36:34 +0000645 target_vcpu->interrupts.interrupt_pending[intid_index] |= intid_mask;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000646
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200647 return ret;
648}
649
650/* Wrapper to internal_interrupt_inject with locking of target vCPU */
651static int64_t internal_interrupt_inject(struct vcpu *target_vcpu,
652 uint32_t intid, struct vcpu *current,
653 struct vcpu **next)
654{
655 int64_t ret;
656 struct vcpu_locked target_locked;
657
658 target_locked = vcpu_lock(target_vcpu);
Manish Pandeya5f39fb2020-09-11 09:47:11 +0100659 ret = api_interrupt_inject_locked(target_locked, intid, current, next);
Olivier Deprezc19a6ea2020-08-06 11:16:07 +0200660 vcpu_unlock(&target_locked);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000661
662 return ret;
663}
664
665/**
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100666 * Constructs an FFA_MSG_SEND value to return from a successful FFA_MSG_POLL
667 * or FFA_MSG_WAIT call.
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100668 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100669static struct ffa_value ffa_msg_recv_return(const struct vm *receiver)
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100670{
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000671 switch (receiver->mailbox.recv_func) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100672 case FFA_MSG_SEND_32:
673 return (struct ffa_value){
674 .func = FFA_MSG_SEND_32,
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000675 .arg1 = (receiver->mailbox.recv_sender << 16) |
676 receiver->id,
677 .arg3 = receiver->mailbox.recv_size};
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000678 default:
679 /* This should never be reached, but return an error in case. */
Andrew Walbran17eebf92020-02-05 16:35:49 +0000680 dlog_error("Tried to return an invalid message function %#x\n",
681 receiver->mailbox.recv_func);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100682 return ffa_error(FFA_DENIED);
Andrew Walbrane7ad3c02019-12-24 17:03:04 +0000683 }
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100684}
685
686/**
Fuad Tabbab0ef2a42019-12-19 11:19:25 +0000687 * Prepares the vCPU to run by updating its state and fetching whether a return
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000688 * value needs to be forced onto the vCPU.
689 */
Andrew Scull38772ab2019-01-24 15:16:50 +0000690static bool api_vcpu_prepare_run(const struct vcpu *current, struct vcpu *vcpu,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100691 struct ffa_value *run_ret)
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000692{
Max Shvetsov40108e72020-08-27 12:39:50 +0100693 struct vcpu_locked vcpu_locked;
694 struct vm_locked vm_locked;
Andrew Scullb06d1752019-02-04 10:15:48 +0000695 bool need_vm_lock;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000696 bool ret;
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500697 uint64_t timer_remaining_ns = FFA_SLEEP_INDEFINITE;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000698
Andrew Scullb06d1752019-02-04 10:15:48 +0000699 /*
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000700 * Check that the registers are available so that the vCPU can be run.
Andrew Scullb06d1752019-02-04 10:15:48 +0000701 *
Andrew Scull4caadaf2019-07-03 13:13:47 +0100702 * The VM lock is not needed in the common case so it must only be taken
703 * when it is going to be needed. This ensures there are no inter-vCPU
704 * dependencies in the common run case meaning the sensitive context
705 * switch performance is consistent.
Andrew Scullb06d1752019-02-04 10:15:48 +0000706 */
Max Shvetsov40108e72020-08-27 12:39:50 +0100707 vcpu_locked = vcpu_lock(vcpu);
708
709#if SECURE_WORLD == 1
710
711 if (vcpu_secondary_reset_and_start(vcpu_locked, vcpu->vm->secondary_ep,
712 0)) {
713 dlog_verbose("%s secondary cold boot vmid %#x vcpu id %#x\n",
714 __func__, vcpu->vm->id, current->cpu->id);
715 }
716
717#endif
Andrew Scullb06d1752019-02-04 10:15:48 +0000718
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000719 /* The VM needs to be locked to deliver mailbox messages. */
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500720 need_vm_lock = vcpu->state == VCPU_STATE_WAITING;
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000721 if (need_vm_lock) {
Max Shvetsov40108e72020-08-27 12:39:50 +0100722 vcpu_unlock(&vcpu_locked);
723 vm_locked = vm_lock(vcpu->vm);
724 vcpu_locked = vcpu_lock(vcpu);
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000725 }
726
727 /*
728 * If the vCPU is already running somewhere then we can't run it here
729 * simultaneously. While it is actually running then the state should be
730 * `VCPU_STATE_RUNNING` and `regs_available` should be false. Once it
731 * stops running but while Hafnium is in the process of switching back
732 * to the primary there will be a brief period while the state has been
733 * updated but `regs_available` is still false (until
734 * `api_regs_state_saved` is called). We can't start running it again
735 * until this has finished, so count this state as still running for the
736 * purposes of this check.
737 */
738 if (vcpu->state == VCPU_STATE_RUNNING || !vcpu->regs_available) {
739 /*
740 * vCPU is running on another pCPU.
741 *
742 * It's okay not to return the sleep duration here because the
743 * other physical CPU that is currently running this vCPU will
744 * return the sleep duration if needed.
745 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100746 *run_ret = ffa_error(FFA_BUSY);
Andrew Walbrand81c7d82019-11-27 18:34:46 +0000747 ret = false;
748 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000749 }
Andrew Scull9726c252019-01-23 13:44:19 +0000750
751 if (atomic_load_explicit(&vcpu->vm->aborting, memory_order_relaxed)) {
Andrew Sculld6ee1102019-04-05 22:12:42 +0100752 if (vcpu->state != VCPU_STATE_ABORTED) {
Olivier Deprezf92e5d42020-11-13 16:00:54 +0100753 dlog_notice("Aborting VM %#x vCPU %u\n", vcpu->vm->id,
Andrew Walbran17eebf92020-02-05 16:35:49 +0000754 vcpu_index(vcpu));
Andrew Sculld6ee1102019-04-05 22:12:42 +0100755 vcpu->state = VCPU_STATE_ABORTED;
Andrew Scull9726c252019-01-23 13:44:19 +0000756 }
757 ret = false;
758 goto out;
759 }
760
Andrew Walbran508e63c2018-12-20 17:02:37 +0000761 switch (vcpu->state) {
Andrew Sculld6ee1102019-04-05 22:12:42 +0100762 case VCPU_STATE_RUNNING:
763 case VCPU_STATE_OFF:
764 case VCPU_STATE_ABORTED:
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000765 ret = false;
766 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000767
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500768 case VCPU_STATE_WAITING:
769 /*
770 * An initial FFA_RUN is necessary for secondary VM/SP to reach
771 * the message wait loop.
772 */
773 if (!vcpu->is_bootstrapped) {
774 vcpu->is_bootstrapped = true;
775 break;
776 }
777
Andrew Scullb06d1752019-02-04 10:15:48 +0000778 /*
779 * A pending message allows the vCPU to run so the message can
780 * be delivered directly.
781 */
Andrew Sculld6ee1102019-04-05 22:12:42 +0100782 if (vcpu->vm->mailbox.state == MAILBOX_STATE_RECEIVED) {
Andrew Walbrand4d2fa12019-10-01 16:47:25 +0100783 arch_regs_set_retval(&vcpu->regs,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100784 ffa_msg_recv_return(vcpu->vm));
Andrew Sculld6ee1102019-04-05 22:12:42 +0100785 vcpu->vm->mailbox.state = MAILBOX_STATE_READ;
Andrew Scullb06d1752019-02-04 10:15:48 +0000786 break;
787 }
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500788
789 if (vcpu_interrupt_count_get(vcpu_locked) > 0) {
790 break;
791 }
792
793 if (arch_timer_enabled(&vcpu->regs)) {
794 timer_remaining_ns =
795 arch_timer_remaining_ns(&vcpu->regs);
796 if (timer_remaining_ns == 0) {
797 break;
798 }
799 } else {
800 dlog_verbose("Timer disabled\n");
801 }
802 run_ret->func = FFA_MSG_WAIT_32;
803 run_ret->arg1 = ffa_vm_vcpu(vcpu->vm->id, vcpu_index(vcpu));
804 run_ret->arg2 = timer_remaining_ns;
805 ret = false;
806 goto out;
Andrew Sculld6ee1102019-04-05 22:12:42 +0100807 case VCPU_STATE_BLOCKED_INTERRUPT:
Andrew Scullb06d1752019-02-04 10:15:48 +0000808 /* Allow virtual interrupts to be delivered. */
Manish Pandey35e452f2021-02-18 21:36:34 +0000809 if (vcpu_interrupt_count_get(vcpu_locked) > 0) {
Andrew Scullb06d1752019-02-04 10:15:48 +0000810 break;
811 }
812
Andrew Walbran508e63c2018-12-20 17:02:37 +0000813 if (arch_timer_enabled(&vcpu->regs)) {
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100814 timer_remaining_ns =
Andrew Walbran2fc856a2019-11-04 15:17:24 +0000815 arch_timer_remaining_ns(&vcpu->regs);
816
817 /*
818 * The timer expired so allow the interrupt to be
819 * delivered.
820 */
821 if (timer_remaining_ns == 0) {
822 break;
823 }
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100824 }
Andrew Walbran2fc856a2019-11-04 15:17:24 +0000825
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100826 /*
827 * The vCPU is not ready to run, return the appropriate code to
828 * the primary which called vcpu_run.
829 */
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500830 run_ret->func = HF_FFA_RUN_WAIT_FOR_INTERRUPT;
Andrew Walbran4692a3a2020-08-07 12:42:01 +0100831 run_ret->arg1 = ffa_vm_vcpu(vcpu->vm->id, vcpu_index(vcpu));
832 run_ret->arg2 = timer_remaining_ns;
Andrew Walbran508e63c2018-12-20 17:02:37 +0000833
834 ret = false;
835 goto out;
Andrew Scullb06d1752019-02-04 10:15:48 +0000836
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500837 case VCPU_STATE_BLOCKED:
838 /* A blocked vCPU is run unconditionally. Fall through. */
839 case VCPU_STATE_PREEMPTED:
Andrew Walbran508e63c2018-12-20 17:02:37 +0000840 break;
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500841 default:
842 /*
843 * Execution not expected to reach here. Deny the request
844 * gracefully.
845 */
846 *run_ret = ffa_error(FFA_DENIED);
847 ret = false;
848 goto out;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000849 }
850
Andrew Scullb06d1752019-02-04 10:15:48 +0000851 /* It has been decided that the vCPU should be run. */
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000852 vcpu->cpu = current->cpu;
Andrew Sculld6ee1102019-04-05 22:12:42 +0100853 vcpu->state = VCPU_STATE_RUNNING;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000854
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000855 /*
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000856 * Mark the registers as unavailable now that we're about to reflect
857 * them onto the real registers. This will also prevent another physical
858 * CPU from trying to read these registers.
859 */
860 vcpu->regs_available = false;
861
862 ret = true;
863
864out:
Max Shvetsov40108e72020-08-27 12:39:50 +0100865 vcpu_unlock(&vcpu_locked);
Andrew Scullb06d1752019-02-04 10:15:48 +0000866 if (need_vm_lock) {
Max Shvetsov40108e72020-08-27 12:39:50 +0100867 vm_unlock(&vm_locked);
Andrew Scullb06d1752019-02-04 10:15:48 +0000868 }
869
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000870 return ret;
871}
872
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100873struct ffa_value api_ffa_run(ffa_vm_id_t vm_id, ffa_vcpu_index_t vcpu_idx,
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500874 struct vcpu *current, struct vcpu **next)
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100875{
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100876 struct vm *vm;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100877 struct vcpu *vcpu;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100878 struct ffa_value ret = ffa_error(FFA_INVALID_PARAMETERS);
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100879
Raghu Krishnamurthy048d63f2021-12-11 12:45:41 -0800880 if (!plat_ffa_run_checks(current, vm_id, vcpu_idx, &ret, next)) {
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500881 return ret;
Andrew Scull7364a8e2018-07-19 15:39:29 +0100882 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100883
Raghu Krishnamurthy62f97a72021-07-27 02:14:59 -0700884 if (plat_ffa_run_forward(vm_id, vcpu_idx, &ret)) {
885 return ret;
886 }
887
Andrew Scull19503262018-09-20 14:48:39 +0100888 /* The requested VM must exist. */
Andrew Walbran42347a92019-05-09 13:59:03 +0100889 vm = vm_find(vm_id);
Andrew Scull19503262018-09-20 14:48:39 +0100890 if (vm == NULL) {
Andrew Scull6d2db332018-10-10 15:28:17 +0100891 goto out;
Andrew Scull19503262018-09-20 14:48:39 +0100892 }
893
Fuad Tabbaed294af2019-12-20 10:43:01 +0000894 /* The requested vCPU must exist. */
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100895 if (vcpu_idx >= vm->vcpu_count) {
Andrew Scull6d2db332018-10-10 15:28:17 +0100896 goto out;
Andrew Scull7364a8e2018-07-19 15:39:29 +0100897 }
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100898
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000899 /* Update state if allowed. */
Andrew Walbrane1310df2019-04-29 17:28:28 +0100900 vcpu = vm_get_vcpu(vm, vcpu_idx);
Andrew Scullb06d1752019-02-04 10:15:48 +0000901 if (!api_vcpu_prepare_run(current, vcpu, &ret)) {
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000902 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100903 }
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000904
Andrew Walbran508e63c2018-12-20 17:02:37 +0000905 /*
906 * Inject timer interrupt if timer has expired. It's safe to access
907 * vcpu->regs here because api_vcpu_prepare_run already made sure that
908 * regs_available was true (and then set it to false) before returning
909 * true.
910 */
911 if (arch_timer_pending(&vcpu->regs)) {
912 /* Make virtual timer interrupt pending. */
Andrew Walbranfc9d4382019-05-10 18:07:21 +0100913 internal_interrupt_inject(vcpu, HF_VIRTUAL_TIMER_INTID, vcpu,
914 NULL);
Andrew Walbran508e63c2018-12-20 17:02:37 +0000915
916 /*
917 * Set the mask bit so the hardware interrupt doesn't fire
918 * again. Ideally we wouldn't do this because it affects what
919 * the secondary vCPU sees, but if we don't then we end up with
920 * a loop of the interrupt firing each time we try to return to
921 * the secondary vCPU.
922 */
923 arch_timer_mask(&vcpu->regs);
924 }
925
Fuad Tabbaed294af2019-12-20 10:43:01 +0000926 /* Switch to the vCPU. */
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000927 *next = vcpu;
Wedson Almeida Filho03306112018-11-26 00:08:03 +0000928
Andrew Scull33fecd32019-01-08 14:48:27 +0000929 /*
930 * Set a placeholder return code to the scheduler. This will be
931 * overwritten when the switch back to the primary occurs.
932 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100933 ret.func = FFA_INTERRUPT_32;
934 ret.arg1 = ffa_vm_vcpu(vm_id, vcpu_idx);
Andrew Walbran7a1ea0b2019-10-02 18:18:44 +0100935 ret.arg2 = 0;
Andrew Scull33fecd32019-01-08 14:48:27 +0000936
Andrew Scull6d2db332018-10-10 15:28:17 +0100937out:
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +0100938 return ret;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +0100939}
940
941/**
Andrew Scull81e85092018-12-12 12:56:20 +0000942 * Check that the mode indicates memory that is valid, owned and exclusive.
943 */
Andrew Walbran1281ed42019-10-22 17:23:40 +0100944static bool api_mode_valid_owned_and_exclusive(uint32_t mode)
Andrew Scull81e85092018-12-12 12:56:20 +0000945{
Andrew Scullb5f49e02019-10-02 13:20:47 +0100946 return (mode & (MM_MODE_D | MM_MODE_INVALID | MM_MODE_UNOWNED |
947 MM_MODE_SHARED)) == 0;
Andrew Scull81e85092018-12-12 12:56:20 +0000948}
949
950/**
Andrew Walbranc8a01972020-09-22 11:23:30 +0100951 * Determines the value to be returned by api_ffa_rxtx_map and
952 * api_ffa_rx_release after they've succeeded. If a secondary VM is running and
953 * there are waiters, it also switches back to the primary VM for it to wake
954 * waiters up.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000955 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100956static struct ffa_value api_waiter_result(struct vm_locked locked_vm,
957 struct vcpu *current,
958 struct vcpu **next)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000959{
960 struct vm *vm = locked_vm.vm;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000961
962 if (list_empty(&vm->mailbox.waiter_list)) {
963 /* No waiters, nothing else to do. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100964 return (struct ffa_value){.func = FFA_SUCCESS_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000965 }
966
967 if (vm->id == HF_PRIMARY_VM_ID) {
968 /* The caller is the primary VM. Tell it to wake up waiters. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100969 return (struct ffa_value){.func = FFA_RX_RELEASE_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000970 }
971
972 /*
973 * Switch back to the primary VM, informing it that there are waiters
974 * that need to be notified.
975 */
Andrew Walbranbfffb0f2019-11-05 14:02:34 +0000976 *next = api_switch_to_primary(
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100977 current, (struct ffa_value){.func = FFA_RX_RELEASE_32},
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -0500978 VCPU_STATE_WAITING);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000979
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100980 return (struct ffa_value){.func = FFA_SUCCESS_32};
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +0000981}
982
983/**
Manish Pandeyd34f8892020-06-19 17:41:07 +0100984 * Configures the hypervisor's stage-1 view of the send and receive pages.
Andrew Sculle1322792019-07-01 17:46:10 +0100985 */
Manish Pandeyd34f8892020-06-19 17:41:07 +0100986static bool api_vm_configure_stage1(struct mm_stage1_locked mm_stage1_locked,
987 struct vm_locked vm_locked,
Andrew Sculle1322792019-07-01 17:46:10 +0100988 paddr_t pa_send_begin, paddr_t pa_send_end,
989 paddr_t pa_recv_begin, paddr_t pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200990 uint32_t extra_attributes,
Andrew Sculle1322792019-07-01 17:46:10 +0100991 struct mpool *local_page_pool)
992{
993 bool ret;
Andrew Sculle1322792019-07-01 17:46:10 +0100994
995 /* Map the send page as read-only in the hypervisor address space. */
996 vm_locked.vm->mailbox.send =
997 mm_identity_map(mm_stage1_locked, pa_send_begin, pa_send_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +0200998 MM_MODE_R | extra_attributes, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +0100999 if (!vm_locked.vm->mailbox.send) {
1000 /* TODO: partial defrag of failed range. */
1001 /* Recover any memory consumed in failed mapping. */
1002 mm_defrag(mm_stage1_locked, local_page_pool);
1003 goto fail;
1004 }
1005
1006 /*
1007 * Map the receive page as writable in the hypervisor address space. On
1008 * failure, unmap the send page before returning.
1009 */
1010 vm_locked.vm->mailbox.recv =
1011 mm_identity_map(mm_stage1_locked, pa_recv_begin, pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +02001012 MM_MODE_W | extra_attributes, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +01001013 if (!vm_locked.vm->mailbox.recv) {
1014 /* TODO: partial defrag of failed range. */
1015 /* Recover any memory consumed in failed mapping. */
1016 mm_defrag(mm_stage1_locked, local_page_pool);
1017 goto fail_undo_send;
1018 }
1019
1020 ret = true;
1021 goto out;
1022
1023 /*
1024 * The following mappings will not require more memory than is available
1025 * in the local pool.
1026 */
1027fail_undo_send:
1028 vm_locked.vm->mailbox.send = NULL;
Andrew Scull7e8de322019-07-02 13:00:56 +01001029 CHECK(mm_unmap(mm_stage1_locked, pa_send_begin, pa_send_end,
1030 local_page_pool));
Andrew Sculle1322792019-07-01 17:46:10 +01001031
1032fail:
1033 ret = false;
1034
1035out:
Andrew Sculle1322792019-07-01 17:46:10 +01001036 return ret;
1037}
1038
1039/**
Manish Pandeyd34f8892020-06-19 17:41:07 +01001040 * Sanity checks and configures the send and receive pages in the VM stage-2
1041 * and hypervisor stage-1 page tables.
1042 *
1043 * Returns:
1044 * - FFA_ERROR FFA_INVALID_PARAMETERS if the given addresses are not properly
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001045 * aligned, are the same or have invalid attributes.
Manish Pandeyd34f8892020-06-19 17:41:07 +01001046 * - FFA_ERROR FFA_NO_MEMORY if the hypervisor was unable to map the buffers
1047 * due to insuffient page table memory.
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001048 * - FFA_ERROR FFA_DENIED if the pages are already mapped.
Manish Pandeyd34f8892020-06-19 17:41:07 +01001049 * - FFA_SUCCESS on success if no further action is needed.
Andrew Sculle1322792019-07-01 17:46:10 +01001050 */
Manish Pandeyd34f8892020-06-19 17:41:07 +01001051
1052struct ffa_value api_vm_configure_pages(
1053 struct mm_stage1_locked mm_stage1_locked, struct vm_locked vm_locked,
1054 ipaddr_t send, ipaddr_t recv, uint32_t page_count,
1055 struct mpool *local_page_pool)
Andrew Sculle1322792019-07-01 17:46:10 +01001056{
Manish Pandeyd34f8892020-06-19 17:41:07 +01001057 struct ffa_value ret;
1058 paddr_t pa_send_begin;
1059 paddr_t pa_send_end;
1060 paddr_t pa_recv_begin;
1061 paddr_t pa_recv_end;
1062 uint32_t orig_send_mode;
1063 uint32_t orig_recv_mode;
Olivier Deprez96a2a262020-06-11 17:21:38 +02001064 uint32_t extra_attributes;
Manish Pandeyd34f8892020-06-19 17:41:07 +01001065
1066 /* We only allow these to be setup once. */
1067 if (vm_locked.vm->mailbox.send || vm_locked.vm->mailbox.recv) {
1068 ret = ffa_error(FFA_DENIED);
1069 goto out;
1070 }
1071
1072 /* Hafnium only supports a fixed size of RX/TX buffers. */
1073 if (page_count != HF_MAILBOX_SIZE / FFA_PAGE_SIZE) {
1074 ret = ffa_error(FFA_INVALID_PARAMETERS);
1075 goto out;
1076 }
1077
1078 /* Fail if addresses are not page-aligned. */
1079 if (!is_aligned(ipa_addr(send), PAGE_SIZE) ||
1080 !is_aligned(ipa_addr(recv), PAGE_SIZE)) {
1081 ret = ffa_error(FFA_INVALID_PARAMETERS);
1082 goto out;
1083 }
1084
1085 /* Convert to physical addresses. */
1086 pa_send_begin = pa_from_ipa(send);
1087 pa_send_end = pa_add(pa_send_begin, HF_MAILBOX_SIZE);
1088 pa_recv_begin = pa_from_ipa(recv);
1089 pa_recv_end = pa_add(pa_recv_begin, HF_MAILBOX_SIZE);
1090
1091 /* Fail if the same page is used for the send and receive pages. */
1092 if (pa_addr(pa_send_begin) == pa_addr(pa_recv_begin)) {
1093 ret = ffa_error(FFA_INVALID_PARAMETERS);
1094 goto out;
1095 }
Andrew Sculle1322792019-07-01 17:46:10 +01001096
1097 /*
Manish Pandeyd34f8892020-06-19 17:41:07 +01001098 * Ensure the pages are valid, owned and exclusive to the VM and that
1099 * the VM has the required access to the memory.
Andrew Sculle1322792019-07-01 17:46:10 +01001100 */
Raghu Krishnamurthy785d52f2021-02-13 00:02:40 -08001101 if (!vm_mem_get_mode(vm_locked, send, ipa_add(send, PAGE_SIZE),
1102 &orig_send_mode) ||
Manish Pandeyd34f8892020-06-19 17:41:07 +01001103 !api_mode_valid_owned_and_exclusive(orig_send_mode) ||
1104 (orig_send_mode & MM_MODE_R) == 0 ||
1105 (orig_send_mode & MM_MODE_W) == 0) {
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001106 ret = ffa_error(FFA_INVALID_PARAMETERS);
Manish Pandeyd34f8892020-06-19 17:41:07 +01001107 goto out;
1108 }
1109
Raghu Krishnamurthy785d52f2021-02-13 00:02:40 -08001110 if (!vm_mem_get_mode(vm_locked, recv, ipa_add(recv, PAGE_SIZE),
1111 &orig_recv_mode) ||
Manish Pandeyd34f8892020-06-19 17:41:07 +01001112 !api_mode_valid_owned_and_exclusive(orig_recv_mode) ||
1113 (orig_recv_mode & MM_MODE_R) == 0) {
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001114 ret = ffa_error(FFA_INVALID_PARAMETERS);
Manish Pandeyd34f8892020-06-19 17:41:07 +01001115 goto out;
1116 }
Andrew Sculle1322792019-07-01 17:46:10 +01001117
1118 /* Take memory ownership away from the VM and mark as shared. */
Raghu Krishnamurthy95c3a272021-02-26 18:09:41 -08001119 uint32_t mode =
1120 MM_MODE_UNOWNED | MM_MODE_SHARED | MM_MODE_R | MM_MODE_W;
1121 if (vm_locked.vm->el0_partition) {
1122 mode |= MM_MODE_USER | MM_MODE_NG;
1123 }
1124
1125 if (!vm_identity_map(vm_locked, pa_send_begin, pa_send_end, mode,
1126 local_page_pool, NULL)) {
Manish Pandeyd34f8892020-06-19 17:41:07 +01001127 ret = ffa_error(FFA_NO_MEMORY);
1128 goto out;
Andrew Sculle1322792019-07-01 17:46:10 +01001129 }
1130
Raghu Krishnamurthy95c3a272021-02-26 18:09:41 -08001131 mode = MM_MODE_UNOWNED | MM_MODE_SHARED | MM_MODE_R;
1132 if (vm_locked.vm->el0_partition) {
1133 mode |= MM_MODE_USER | MM_MODE_NG;
1134 }
1135
1136 if (!vm_identity_map(vm_locked, pa_recv_begin, pa_recv_end, mode,
Manish Pandeyd34f8892020-06-19 17:41:07 +01001137 local_page_pool, NULL)) {
Andrew Sculle1322792019-07-01 17:46:10 +01001138 /* TODO: partial defrag of failed range. */
1139 /* Recover any memory consumed in failed mapping. */
Raghu Krishnamurthy7ad3d142021-03-28 00:47:35 -07001140 vm_ptable_defrag(vm_locked, local_page_pool);
Andrew Sculle1322792019-07-01 17:46:10 +01001141 goto fail_undo_send;
1142 }
1143
Olivier Deprez96a2a262020-06-11 17:21:38 +02001144 /* Get extra send/recv pages mapping attributes for the given VM ID. */
1145 extra_attributes = arch_mm_extra_attributes_from_vm(vm_locked.vm->id);
1146
Raghu Krishnamurthy95c3a272021-02-26 18:09:41 -08001147 /*
1148 * For EL0 partitions, since both the partition and the hypervisor code
1149 * use the EL2&0 translation regime, it is critical to mark the mappings
1150 * of the send and recv buffers as non-global in the TLB. For one, if we
1151 * dont mark it as non-global, it would cause TLB conflicts since there
1152 * would be an identity mapping with non-global attribute in the
1153 * partitions page tables, but another identity mapping in the
1154 * hypervisor page tables with the global attribute. The other issue is
1155 * one of security, we dont want other partitions to be able to access
1156 * other partitions buffers through cached translations.
1157 */
1158 if (vm_locked.vm->el0_partition) {
1159 extra_attributes |= MM_MODE_NG;
1160 }
1161
Manish Pandeyd34f8892020-06-19 17:41:07 +01001162 if (!api_vm_configure_stage1(mm_stage1_locked, vm_locked, pa_send_begin,
1163 pa_send_end, pa_recv_begin, pa_recv_end,
Olivier Deprez96a2a262020-06-11 17:21:38 +02001164 extra_attributes, local_page_pool)) {
Andrew Sculle1322792019-07-01 17:46:10 +01001165 goto fail_undo_send_and_recv;
1166 }
1167
Manish Pandeyd34f8892020-06-19 17:41:07 +01001168 ret = (struct ffa_value){.func = FFA_SUCCESS_32};
Andrew Sculle1322792019-07-01 17:46:10 +01001169 goto out;
1170
Andrew Sculle1322792019-07-01 17:46:10 +01001171fail_undo_send_and_recv:
Andrew Scull3c257452019-11-26 13:32:50 +00001172 CHECK(vm_identity_map(vm_locked, pa_recv_begin, pa_recv_end,
Manish Pandeyd34f8892020-06-19 17:41:07 +01001173 orig_send_mode, local_page_pool, NULL));
Andrew Sculle1322792019-07-01 17:46:10 +01001174
1175fail_undo_send:
Andrew Scull3c257452019-11-26 13:32:50 +00001176 CHECK(vm_identity_map(vm_locked, pa_send_begin, pa_send_end,
Manish Pandeyd34f8892020-06-19 17:41:07 +01001177 orig_send_mode, local_page_pool, NULL));
1178 ret = ffa_error(FFA_NO_MEMORY);
Andrew Sculle1322792019-07-01 17:46:10 +01001179
1180out:
Andrew Sculle1322792019-07-01 17:46:10 +01001181 return ret;
1182}
1183
1184/**
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001185 * Configures the VM to send/receive data through the specified pages. The pages
Manish Pandeyd34f8892020-06-19 17:41:07 +01001186 * must not be shared. Locking of the page tables combined with a local memory
1187 * pool ensures there will always be enough memory to recover from any errors
1188 * that arise. The stage-1 page tables must be locked so memory cannot be taken
1189 * by another core which could result in this transaction being unable to roll
1190 * back in the case of an error.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001191 *
1192 * Returns:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001193 * - FFA_ERROR FFA_INVALID_PARAMETERS if the given addresses are not properly
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001194 * aligned, are the same or have invalid attributes.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001195 * - FFA_ERROR FFA_NO_MEMORY if the hypervisor was unable to map the buffers
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001196 * due to insuffient page table memory.
Daniel Boulby6f8941e2021-06-14 18:27:18 +01001197 * - FFA_ERROR FFA_DENIED if the pages are already mapped.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001198 * - FFA_SUCCESS on success if no further action is needed.
1199 * - FFA_RX_RELEASE if it was called by the primary VM and the primary VM now
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001200 * needs to wake up or kick waiters.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001201 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001202struct ffa_value api_ffa_rxtx_map(ipaddr_t send, ipaddr_t recv,
1203 uint32_t page_count, struct vcpu *current,
1204 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001205{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001206 struct vm *vm = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001207 struct ffa_value ret;
Manish Pandeyd34f8892020-06-19 17:41:07 +01001208 struct vm_locked vm_locked;
1209 struct mm_stage1_locked mm_stage1_locked;
1210 struct mpool local_page_pool;
Andrew Scull220e6212018-12-21 18:09:00 +00001211
Andrew Scull3c0a90a2019-07-01 11:55:53 +01001212 /*
Manish Pandeyd34f8892020-06-19 17:41:07 +01001213 * Create a local pool so any freed memory can't be used by another
1214 * thread. This is to ensure the original mapping can be restored if any
1215 * stage of the process fails.
Andrew Scull3c0a90a2019-07-01 11:55:53 +01001216 */
Manish Pandeyd34f8892020-06-19 17:41:07 +01001217 mpool_init_with_fallback(&local_page_pool, &api_page_pool);
1218
Andrew Sculle1322792019-07-01 17:46:10 +01001219 vm_locked = vm_lock(vm);
Manish Pandeyd34f8892020-06-19 17:41:07 +01001220 mm_stage1_locked = mm_lock_stage1();
Andrew Scull220e6212018-12-21 18:09:00 +00001221
Manish Pandeyd34f8892020-06-19 17:41:07 +01001222 ret = api_vm_configure_pages(mm_stage1_locked, vm_locked, send, recv,
1223 page_count, &local_page_pool);
1224 if (ret.func != FFA_SUCCESS_32) {
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001225 goto exit;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001226 }
1227
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001228 /* Tell caller about waiters, if any. */
Andrew Sculle1322792019-07-01 17:46:10 +01001229 ret = api_waiter_result(vm_locked, current, next);
Andrew Scull220e6212018-12-21 18:09:00 +00001230
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001231exit:
Manish Pandeyd34f8892020-06-19 17:41:07 +01001232 mpool_fini(&local_page_pool);
1233
1234 mm_unlock_stage1(&mm_stage1_locked);
Andrew Sculle1322792019-07-01 17:46:10 +01001235 vm_unlock(&vm_locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001236
1237 return ret;
1238}
1239
1240/**
Daniel Boulby9e420ca2021-07-07 15:03:49 +01001241 * Unmaps the RX/TX buffer pair with a partition or partition manager from the
1242 * translation regime of the caller. Unmap the region for the hypervisor and
1243 * set the memory region to owned and exclusive for the component. Since the
1244 * memory region mapped in the page table, when the buffers were originally
1245 * created we can safely remap it.
1246 *
1247 * Returns:
1248 * - FFA_ERROR FFA_INVALID_PARAMETERS if there is no buffer pair registered on
1249 * behalf of the caller.
1250 * - FFA_SUCCESS on success if no further action is needed.
1251 */
1252struct ffa_value api_ffa_rxtx_unmap(ffa_vm_id_t allocator_id,
1253 struct vcpu *current)
1254{
1255 struct vm *vm = current->vm;
1256 struct vm_locked vm_locked;
1257 struct mm_stage1_locked mm_stage1_locked;
1258 paddr_t send_pa_begin;
1259 paddr_t send_pa_end;
1260 paddr_t recv_pa_begin;
1261 paddr_t recv_pa_end;
1262
1263 /*
1264 * Check there is a buffer pair registered on behalf of the caller.
1265 * Since forwarding is not yet supported the allocator ID MBZ.
1266 */
1267 if (allocator_id != 0) {
1268 dlog_error(
1269 "Forwarding MAP/UNMAP from the hypervisor is not yet "
1270 "supported so vm id must be zero.\n");
1271 return ffa_error(FFA_INVALID_PARAMETERS);
1272 }
1273
1274 /* Get send and receive buffers. */
1275 if (vm->mailbox.send == NULL || vm->mailbox.recv == NULL) {
Olivier Deprez86d87ae2021-08-19 14:27:46 +02001276 dlog_verbose(
Daniel Boulby9e420ca2021-07-07 15:03:49 +01001277 "No buffer pair registered on behalf of the caller.\n");
1278 return ffa_error(FFA_INVALID_PARAMETERS);
1279 }
1280
1281 /* Currently a mailbox size of 1 page is assumed. */
1282 send_pa_begin = pa_from_va(va_from_ptr(vm->mailbox.send));
1283 send_pa_end = pa_add(send_pa_begin, HF_MAILBOX_SIZE);
1284 recv_pa_begin = pa_from_va(va_from_ptr(vm->mailbox.recv));
1285 recv_pa_end = pa_add(recv_pa_begin, HF_MAILBOX_SIZE);
1286
1287 vm_locked = vm_lock(vm);
1288 mm_stage1_locked = mm_lock_stage1();
1289
1290 /*
1291 * Set the memory region of the buffers back to the default mode
1292 * for the VM. Since this memory region was already mapped for the
1293 * RXTX buffers we can safely remap them.
1294 */
1295 CHECK(vm_identity_map(vm_locked, send_pa_begin, send_pa_end,
1296 MM_MODE_R | MM_MODE_W | MM_MODE_X, &api_page_pool,
1297 NULL));
1298
1299 CHECK(vm_identity_map(vm_locked, recv_pa_begin, recv_pa_end,
1300 MM_MODE_R | MM_MODE_W | MM_MODE_X, &api_page_pool,
1301 NULL));
1302
1303 /* Unmap the buffers in the partition manager. */
1304 CHECK(mm_unmap(mm_stage1_locked, send_pa_begin, send_pa_end,
1305 &api_page_pool));
1306 CHECK(mm_unmap(mm_stage1_locked, recv_pa_begin, recv_pa_end,
1307 &api_page_pool));
1308
1309 vm->mailbox.send = NULL;
1310 vm->mailbox.recv = NULL;
1311
1312 mm_unlock_stage1(&mm_stage1_locked);
1313 vm_unlock(&vm_locked);
1314
1315 return (struct ffa_value){.func = FFA_SUCCESS_32};
1316}
1317
1318/**
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001319 * Notifies the `to` VM about the message currently in its mailbox, possibly
1320 * with the help of the primary VM.
1321 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001322static struct ffa_value deliver_msg(struct vm_locked to, ffa_vm_id_t from_id,
1323 struct vcpu *current, struct vcpu **next)
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001324{
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001325 struct ffa_value ret = (struct ffa_value){.func = FFA_SUCCESS_32};
1326 struct ffa_value primary_ret = {
1327 .func = FFA_MSG_SEND_32,
Andrew Walbranf76f5752019-12-03 18:33:08 +00001328 .arg1 = ((uint32_t)from_id << 16) | to.vm->id,
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001329 };
1330
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001331 /* Messages for the primary VM are delivered directly. */
1332 if (to.vm->id == HF_PRIMARY_VM_ID) {
1333 /*
Andrew Walbrane7ad3c02019-12-24 17:03:04 +00001334 * Only tell the primary VM the size and other details if the
1335 * message is for it, to avoid leaking data about messages for
1336 * other VMs.
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001337 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001338 primary_ret = ffa_msg_recv_return(to.vm);
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001339
1340 to.vm->mailbox.state = MAILBOX_STATE_READ;
1341 *next = api_switch_to_primary(current, primary_ret,
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05001342 VCPU_STATE_BLOCKED);
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001343 return ret;
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001344 }
1345
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001346 to.vm->mailbox.state = MAILBOX_STATE_RECEIVED;
1347
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001348 /* Messages for the TEE are sent on via the dispatcher. */
1349 if (to.vm->id == HF_TEE_VM_ID) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001350 struct ffa_value call = ffa_msg_recv_return(to.vm);
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001351
Olivier Deprez112d2b52020-09-30 07:39:23 +02001352 ret = arch_other_world_call(call);
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001353 /*
1354 * After the call to the TEE completes it must have finished
1355 * reading its RX buffer, so it is ready for another message.
1356 */
1357 to.vm->mailbox.state = MAILBOX_STATE_EMPTY;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001358 /*
1359 * Don't return to the primary VM in this case, as the TEE is
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001360 * not (yet) scheduled via FF-A.
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001361 */
Andrew Walbran11cff3a2020-02-28 11:33:17 +00001362 return ret;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001363 }
1364
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001365 /* Return to the primary VM directly or with a switch. */
Andrew Walbranf76f5752019-12-03 18:33:08 +00001366 if (from_id != HF_PRIMARY_VM_ID) {
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001367 *next = api_switch_to_primary(current, primary_ret,
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05001368 VCPU_STATE_BLOCKED);
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001369 }
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001370
1371 return ret;
Andrew Walbrane0f575f2019-10-16 16:00:12 +01001372}
1373
1374/**
Andrew Scullaa039b32018-10-04 15:02:26 +01001375 * Copies data from the sender's send buffer to the recipient's receive buffer
1376 * and notifies the recipient.
Wedson Almeida Filho17c997f2019-01-09 18:50:09 +00001377 *
1378 * If the recipient's receive buffer is busy, it can optionally register the
1379 * caller to be notified when the recipient's receive buffer becomes available.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001380 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001381struct ffa_value api_ffa_msg_send(ffa_vm_id_t sender_vm_id,
1382 ffa_vm_id_t receiver_vm_id, uint32_t size,
1383 uint32_t attributes, struct vcpu *current,
1384 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001385{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001386 struct vm *from = current->vm;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001387 struct vm *to;
Andrew Walbran82d6d152019-12-24 15:02:06 +00001388 struct vm_locked to_locked;
Andrew Walbran70bc8622019-10-07 14:15:58 +01001389 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001390 struct ffa_value ret;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001391 struct vcpu_locked current_locked;
1392 bool is_direct_request_ongoing;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001393 bool notify =
1394 (attributes & FFA_MSG_SEND_NOTIFY_MASK) == FFA_MSG_SEND_NOTIFY;
Andrew Scull19503262018-09-20 14:48:39 +01001395
Andrew Walbran70bc8622019-10-07 14:15:58 +01001396 /* Ensure sender VM ID corresponds to the current VM. */
1397 if (sender_vm_id != from->id) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001398 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001399 }
1400
1401 /* Disallow reflexive requests as this suggests an error in the VM. */
1402 if (receiver_vm_id == from->id) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001403 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001404 }
1405
1406 /* Limit the size of transfer. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001407 if (size > FFA_MSG_PAYLOAD_MAX) {
1408 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran70bc8622019-10-07 14:15:58 +01001409 }
1410
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001411 /*
1412 * Deny if vCPU is executing in context of an FFA_MSG_SEND_DIRECT_REQ
1413 * invocation.
1414 */
1415 current_locked = vcpu_lock(current);
1416 is_direct_request_ongoing =
1417 is_ffa_direct_msg_request_ongoing(current_locked);
1418 vcpu_unlock(&current_locked);
1419
1420 if (is_direct_request_ongoing) {
1421 return ffa_error(FFA_DENIED);
1422 }
1423
Andrew Walbran0b60c4f2019-12-10 17:05:29 +00001424 /* Ensure the receiver VM exists. */
1425 to = vm_find(receiver_vm_id);
1426 if (to == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001427 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran0b60c4f2019-12-10 17:05:29 +00001428 }
1429
Jose Marinhoa1dfeda2019-02-27 16:46:03 +00001430 /*
Andrew Walbran70bc8622019-10-07 14:15:58 +01001431 * Check that the sender has configured its send buffer. If the tx
1432 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
1433 * be safely accessed after releasing the lock since the tx mailbox
1434 * address can only be configured once.
Jose Marinhoa1dfeda2019-02-27 16:46:03 +00001435 */
1436 sl_lock(&from->lock);
1437 from_msg = from->mailbox.send;
1438 sl_unlock(&from->lock);
1439
1440 if (from_msg == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001441 return ffa_error(FFA_INVALID_PARAMETERS);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001442 }
1443
Andrew Walbran82d6d152019-12-24 15:02:06 +00001444 to_locked = vm_lock(to);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001445
Andrew Walbran82d6d152019-12-24 15:02:06 +00001446 if (msg_receiver_busy(to_locked, from, notify)) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001447 ret = ffa_error(FFA_BUSY);
Andrew Scullaa039b32018-10-04 15:02:26 +01001448 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001449 }
1450
Andrew Walbran82d6d152019-12-24 15:02:06 +00001451 /* Copy data. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001452 memcpy_s(to->mailbox.recv, FFA_MSG_PAYLOAD_MAX, from_msg, size);
Andrew Walbran82d6d152019-12-24 15:02:06 +00001453 to->mailbox.recv_size = size;
1454 to->mailbox.recv_sender = sender_vm_id;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001455 to->mailbox.recv_func = FFA_MSG_SEND_32;
Andrew Walbran2619e0a2020-01-10 16:37:50 +00001456 ret = deliver_msg(to_locked, sender_vm_id, current, next);
Andrew Scullaa039b32018-10-04 15:02:26 +01001457
1458out:
Andrew Walbran82d6d152019-12-24 15:02:06 +00001459 vm_unlock(&to_locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001460
Wedson Almeida Filho80eb4a32018-11-30 17:11:15 +00001461 return ret;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001462}
1463
1464/**
Andrew Scullec52ddf2019-08-20 10:41:01 +01001465 * Checks whether the vCPU's attempt to block for a message has already been
1466 * interrupted or whether it is allowed to block.
1467 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001468bool api_ffa_msg_recv_block_interrupted(struct vcpu *current)
Andrew Scullec52ddf2019-08-20 10:41:01 +01001469{
Manish Pandey35e452f2021-02-18 21:36:34 +00001470 struct vcpu_locked current_locked;
Andrew Scullec52ddf2019-08-20 10:41:01 +01001471 bool interrupted;
1472
Manish Pandey35e452f2021-02-18 21:36:34 +00001473 current_locked = vcpu_lock(current);
Andrew Scullec52ddf2019-08-20 10:41:01 +01001474
1475 /*
1476 * Don't block if there are enabled and pending interrupts, to match
1477 * behaviour of wait_for_interrupt.
1478 */
Manish Pandey35e452f2021-02-18 21:36:34 +00001479 interrupted = (vcpu_interrupt_count_get(current_locked) > 0);
Andrew Scullec52ddf2019-08-20 10:41:01 +01001480
Manish Pandey35e452f2021-02-18 21:36:34 +00001481 vcpu_unlock(&current_locked);
Andrew Scullec52ddf2019-08-20 10:41:01 +01001482
1483 return interrupted;
1484}
1485
1486/**
Andrew Scullaa039b32018-10-04 15:02:26 +01001487 * Receives a message from the mailbox. If one isn't available, this function
1488 * can optionally block the caller until one becomes available.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001489 *
Andrew Scullaa039b32018-10-04 15:02:26 +01001490 * No new messages can be received until the mailbox has been cleared.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001491 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001492struct ffa_value api_ffa_msg_recv(bool block, struct vcpu *current,
1493 struct vcpu **next)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001494{
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001495 bool is_direct_request_ongoing;
1496 struct vcpu_locked current_locked;
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001497 struct vm *vm = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001498 struct ffa_value return_code;
J-Alvesb37fd082020-10-22 12:29:21 +01001499 bool is_from_secure_world =
1500 (current->vm->id & HF_VM_ID_WORLD_MASK) != 0;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001501
Andrew Scullaa039b32018-10-04 15:02:26 +01001502 /*
1503 * The primary VM will receive messages as a status code from running
Fuad Tabbab0ef2a42019-12-19 11:19:25 +00001504 * vCPUs and must not call this function.
Andrew Scullaa039b32018-10-04 15:02:26 +01001505 */
J-Alvesb37fd082020-10-22 12:29:21 +01001506 if (!is_from_secure_world && vm->id == HF_PRIMARY_VM_ID) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001507 return ffa_error(FFA_NOT_SUPPORTED);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001508 }
1509
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001510 /*
1511 * Deny if vCPU is executing in context of an FFA_MSG_SEND_DIRECT_REQ
1512 * invocation.
1513 */
1514 current_locked = vcpu_lock(current);
1515 is_direct_request_ongoing =
1516 is_ffa_direct_msg_request_ongoing(current_locked);
1517 vcpu_unlock(&current_locked);
1518
1519 if (is_direct_request_ongoing) {
1520 return ffa_error(FFA_DENIED);
1521 }
1522
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001523 sl_lock(&vm->lock);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001524
Andrew Scullaa039b32018-10-04 15:02:26 +01001525 /* Return pending messages without blocking. */
Andrew Sculld6ee1102019-04-05 22:12:42 +01001526 if (vm->mailbox.state == MAILBOX_STATE_RECEIVED) {
1527 vm->mailbox.state = MAILBOX_STATE_READ;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001528 return_code = ffa_msg_recv_return(vm);
Jose Marinho3e2442f2019-03-12 13:30:37 +00001529 goto out;
1530 }
1531
1532 /* No pending message so fail if not allowed to block. */
1533 if (!block) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001534 return_code = ffa_error(FFA_RETRY);
Andrew Scullaa039b32018-10-04 15:02:26 +01001535 goto out;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001536 }
Andrew Scullaa039b32018-10-04 15:02:26 +01001537
Andrew Walbran9311c9a2019-03-12 16:59:04 +00001538 /*
Jose Marinho3e2442f2019-03-12 13:30:37 +00001539 * From this point onward this call can only be interrupted or a message
1540 * received. If a message is received the return value will be set at
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001541 * that time to FFA_SUCCESS.
Andrew Walbran9311c9a2019-03-12 16:59:04 +00001542 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001543 return_code = ffa_error(FFA_INTERRUPTED);
1544 if (api_ffa_msg_recv_block_interrupted(current)) {
Andrew Scullaa039b32018-10-04 15:02:26 +01001545 goto out;
1546 }
1547
J-Alvesb37fd082020-10-22 12:29:21 +01001548 if (is_from_secure_world) {
1549 /* Return to other world if caller is a SP. */
1550 *next = api_switch_to_other_world(
1551 current, (struct ffa_value){.func = FFA_MSG_WAIT_32},
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05001552 VCPU_STATE_WAITING);
J-Alvesb37fd082020-10-22 12:29:21 +01001553 } else {
1554 /* Switch back to primary VM to block. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001555 struct ffa_value run_return = {
1556 .func = FFA_MSG_WAIT_32,
1557 .arg1 = ffa_vm_vcpu(vm->id, vcpu_index(current)),
Andrew Walbranb4816552018-12-05 17:35:42 +00001558 };
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001559
Andrew Walbranb4816552018-12-05 17:35:42 +00001560 *next = api_switch_to_primary(current, run_return,
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05001561 VCPU_STATE_WAITING);
Andrew Walbranb4816552018-12-05 17:35:42 +00001562 }
Andrew Scullaa039b32018-10-04 15:02:26 +01001563out:
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001564 sl_unlock(&vm->lock);
1565
Jose Marinho3e2442f2019-03-12 13:30:37 +00001566 return return_code;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001567}
1568
1569/**
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001570 * Retrieves the next VM whose mailbox became writable. For a VM to be notified
1571 * by this function, the caller must have called api_mailbox_send before with
1572 * the notify argument set to true, and this call must have failed because the
1573 * mailbox was not available.
1574 *
1575 * It should be called repeatedly to retrieve a list of VMs.
1576 *
1577 * Returns -1 if no VM became writable, or the id of the VM whose mailbox
1578 * became writable.
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001579 */
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001580int64_t api_mailbox_writable_get(const struct vcpu *current)
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001581{
Wedson Almeida Filho00df6c72018-10-18 11:19:24 +01001582 struct vm *vm = current->vm;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001583 struct wait_entry *entry;
Andrew Scullc0e569a2018-10-02 18:05:21 +01001584 int64_t ret;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001585
1586 sl_lock(&vm->lock);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001587 if (list_empty(&vm->mailbox.ready_list)) {
1588 ret = -1;
1589 goto exit;
1590 }
1591
1592 entry = CONTAINER_OF(vm->mailbox.ready_list.next, struct wait_entry,
1593 ready_links);
1594 list_remove(&entry->ready_links);
Andrew Walbranaad8f982019-12-04 10:56:39 +00001595 ret = vm_id_for_wait_entry(vm, entry);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001596
1597exit:
1598 sl_unlock(&vm->lock);
1599 return ret;
1600}
1601
1602/**
1603 * Retrieves the next VM waiting to be notified that the mailbox of the
1604 * specified VM became writable. Only primary VMs are allowed to call this.
1605 *
Wedson Almeida Filhob790f652019-01-22 23:41:56 +00001606 * Returns -1 on failure or if there are no waiters; the VM id of the next
1607 * waiter otherwise.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001608 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001609int64_t api_mailbox_waiter_get(ffa_vm_id_t vm_id, const struct vcpu *current)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001610{
1611 struct vm *vm;
1612 struct vm_locked locked;
1613 struct wait_entry *entry;
1614 struct vm *waiting_vm;
1615
1616 /* Only primary VMs are allowed to call this function. */
1617 if (current->vm->id != HF_PRIMARY_VM_ID) {
1618 return -1;
1619 }
1620
Andrew Walbran42347a92019-05-09 13:59:03 +01001621 vm = vm_find(vm_id);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001622 if (vm == NULL) {
1623 return -1;
1624 }
1625
Fuad Tabbaed294af2019-12-20 10:43:01 +00001626 /* Check if there are outstanding notifications from given VM. */
Andrew Walbran7e932bd2019-04-29 16:47:06 +01001627 locked = vm_lock(vm);
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001628 entry = api_fetch_waiter(locked);
1629 vm_unlock(&locked);
1630
1631 if (entry == NULL) {
1632 return -1;
1633 }
1634
1635 /* Enqueue notification to waiting VM. */
1636 waiting_vm = entry->waiting_vm;
1637
1638 sl_lock(&waiting_vm->lock);
1639 if (list_empty(&entry->ready_links)) {
1640 list_append(&waiting_vm->mailbox.ready_list,
1641 &entry->ready_links);
1642 }
1643 sl_unlock(&waiting_vm->lock);
1644
1645 return waiting_vm->id;
1646}
1647
1648/**
Andrew Walbran8a0f5ca2019-11-05 13:12:23 +00001649 * Releases the caller's mailbox so that a new message can be received. The
1650 * caller must have copied out all data they wish to preserve as new messages
1651 * will overwrite the old and will arrive asynchronously.
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001652 *
1653 * Returns:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001654 * - FFA_ERROR FFA_DENIED on failure, if the mailbox hasn't been read.
1655 * - FFA_SUCCESS on success if no further action is needed.
1656 * - FFA_RX_RELEASE if it was called by the primary VM and the primary VM now
Andrew Walbran8a0f5ca2019-11-05 13:12:23 +00001657 * needs to wake up or kick waiters. Waiters should be retrieved by calling
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001658 * hf_mailbox_waiter_get.
1659 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001660struct ffa_value api_ffa_rx_release(struct vcpu *current, struct vcpu **next)
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001661{
1662 struct vm *vm = current->vm;
1663 struct vm_locked locked;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001664 struct ffa_value ret;
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001665
Andrew Walbran7e932bd2019-04-29 16:47:06 +01001666 locked = vm_lock(vm);
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001667 switch (vm->mailbox.state) {
Andrew Sculld6ee1102019-04-05 22:12:42 +01001668 case MAILBOX_STATE_EMPTY:
Andrew Sculld6ee1102019-04-05 22:12:42 +01001669 case MAILBOX_STATE_RECEIVED:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001670 ret = ffa_error(FFA_DENIED);
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001671 break;
1672
Andrew Sculld6ee1102019-04-05 22:12:42 +01001673 case MAILBOX_STATE_READ:
Andrew Walbranbfffb0f2019-11-05 14:02:34 +00001674 ret = api_waiter_result(locked, current, next);
Andrew Sculld6ee1102019-04-05 22:12:42 +01001675 vm->mailbox.state = MAILBOX_STATE_EMPTY;
Andrew Scullaa7db8e2019-02-01 14:12:19 +00001676 break;
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001677 }
Wedson Almeida Filhoea62e2e2019-01-09 19:14:59 +00001678 vm_unlock(&locked);
Wedson Almeida Filho2f94ec12018-07-26 16:00:48 +01001679
1680 return ret;
Wedson Almeida Filho3fcbcff2018-07-10 23:53:39 +01001681}
Andrew Walbran318f5732018-11-20 16:23:42 +00001682
1683/**
1684 * Enables or disables a given interrupt ID for the calling vCPU.
1685 *
1686 * Returns 0 on success, or -1 if the intid is invalid.
1687 */
Manish Pandey35e452f2021-02-18 21:36:34 +00001688int64_t api_interrupt_enable(uint32_t intid, bool enable,
1689 enum interrupt_type type, struct vcpu *current)
Andrew Walbran318f5732018-11-20 16:23:42 +00001690{
Manish Pandey35e452f2021-02-18 21:36:34 +00001691 struct vcpu_locked current_locked;
Andrew Walbran318f5732018-11-20 16:23:42 +00001692 uint32_t intid_index = intid / INTERRUPT_REGISTER_BITS;
Manish Pandey35e452f2021-02-18 21:36:34 +00001693 uint32_t intid_shift = intid % INTERRUPT_REGISTER_BITS;
1694 uint32_t intid_mask = 1U << intid_shift;
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001695
Andrew Walbran318f5732018-11-20 16:23:42 +00001696 if (intid >= HF_NUM_INTIDS) {
1697 return -1;
1698 }
1699
Manish Pandey35e452f2021-02-18 21:36:34 +00001700 current_locked = vcpu_lock(current);
Andrew Walbran318f5732018-11-20 16:23:42 +00001701 if (enable) {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001702 /*
1703 * If it is pending and was not enabled before, increment the
1704 * count.
1705 */
1706 if (current->interrupts.interrupt_pending[intid_index] &
1707 ~current->interrupts.interrupt_enabled[intid_index] &
1708 intid_mask) {
Manish Pandey35e452f2021-02-18 21:36:34 +00001709 if ((current->interrupts.interrupt_type[intid_index] &
1710 intid_mask) ==
1711 (INTERRUPT_TYPE_IRQ << intid_shift)) {
1712 vcpu_irq_count_increment(current_locked);
1713 } else {
1714 vcpu_fiq_count_increment(current_locked);
1715 }
Andrew Walbran3d84a262018-12-13 14:41:19 +00001716 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001717 current->interrupts.interrupt_enabled[intid_index] |=
1718 intid_mask;
Manish Pandey35e452f2021-02-18 21:36:34 +00001719
1720 if (type == INTERRUPT_TYPE_IRQ) {
1721 current->interrupts.interrupt_type[intid_index] &=
1722 ~intid_mask;
1723 } else if (type == INTERRUPT_TYPE_FIQ) {
1724 current->interrupts.interrupt_type[intid_index] |=
1725 intid_mask;
1726 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001727 } else {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001728 /*
1729 * If it is pending and was enabled before, decrement the count.
1730 */
1731 if (current->interrupts.interrupt_pending[intid_index] &
1732 current->interrupts.interrupt_enabled[intid_index] &
1733 intid_mask) {
Manish Pandey35e452f2021-02-18 21:36:34 +00001734 if ((current->interrupts.interrupt_type[intid_index] &
1735 intid_mask) ==
1736 (INTERRUPT_TYPE_IRQ << intid_shift)) {
1737 vcpu_irq_count_decrement(current_locked);
1738 } else {
1739 vcpu_fiq_count_decrement(current_locked);
1740 }
Andrew Walbran3d84a262018-12-13 14:41:19 +00001741 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001742 current->interrupts.interrupt_enabled[intid_index] &=
1743 ~intid_mask;
Manish Pandey35e452f2021-02-18 21:36:34 +00001744 current->interrupts.interrupt_type[intid_index] &= ~intid_mask;
Andrew Walbran318f5732018-11-20 16:23:42 +00001745 }
1746
Manish Pandey35e452f2021-02-18 21:36:34 +00001747 vcpu_unlock(&current_locked);
Andrew Walbran318f5732018-11-20 16:23:42 +00001748 return 0;
1749}
1750
1751/**
1752 * Returns the ID of the next pending interrupt for the calling vCPU, and
1753 * acknowledges it (i.e. marks it as no longer pending). Returns
1754 * HF_INVALID_INTID if there are no pending interrupts.
1755 */
Wedson Almeida Filhoc559d132019-01-09 19:33:40 +00001756uint32_t api_interrupt_get(struct vcpu *current)
Andrew Walbran318f5732018-11-20 16:23:42 +00001757{
1758 uint8_t i;
1759 uint32_t first_interrupt = HF_INVALID_INTID;
Manish Pandey35e452f2021-02-18 21:36:34 +00001760 struct vcpu_locked current_locked;
Andrew Walbran318f5732018-11-20 16:23:42 +00001761
1762 /*
1763 * Find the first enabled and pending interrupt ID, return it, and
1764 * deactivate it.
1765 */
Manish Pandey35e452f2021-02-18 21:36:34 +00001766 current_locked = vcpu_lock(current);
Andrew Walbran318f5732018-11-20 16:23:42 +00001767 for (i = 0; i < HF_NUM_INTIDS / INTERRUPT_REGISTER_BITS; ++i) {
1768 uint32_t enabled_and_pending =
1769 current->interrupts.interrupt_enabled[i] &
1770 current->interrupts.interrupt_pending[i];
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001771
Andrew Walbran318f5732018-11-20 16:23:42 +00001772 if (enabled_and_pending != 0) {
Andrew Walbran3d84a262018-12-13 14:41:19 +00001773 uint8_t bit_index = ctz(enabled_and_pending);
Manish Pandey35e452f2021-02-18 21:36:34 +00001774 uint32_t intid_mask = 1U << bit_index;
1775
Andrew Walbran3d84a262018-12-13 14:41:19 +00001776 /*
1777 * Mark it as no longer pending and decrement the count.
1778 */
Manish Pandey35e452f2021-02-18 21:36:34 +00001779 current->interrupts.interrupt_pending[i] &= ~intid_mask;
1780
1781 if ((current->interrupts.interrupt_type[i] &
1782 intid_mask) == (INTERRUPT_TYPE_IRQ << bit_index)) {
1783 vcpu_irq_count_decrement(current_locked);
1784 } else {
1785 vcpu_fiq_count_decrement(current_locked);
1786 }
1787
Andrew Walbran3d84a262018-12-13 14:41:19 +00001788 first_interrupt =
1789 i * INTERRUPT_REGISTER_BITS + bit_index;
Andrew Walbran318f5732018-11-20 16:23:42 +00001790 break;
1791 }
1792 }
Andrew Walbran318f5732018-11-20 16:23:42 +00001793
Manish Pandey35e452f2021-02-18 21:36:34 +00001794 vcpu_unlock(&current_locked);
Andrew Walbran318f5732018-11-20 16:23:42 +00001795 return first_interrupt;
1796}
1797
1798/**
Andrew Walbran4cf217a2018-12-14 15:24:50 +00001799 * Returns whether the current vCPU is allowed to inject an interrupt into the
Andrew Walbran318f5732018-11-20 16:23:42 +00001800 * given VM and vCPU.
1801 */
1802static inline bool is_injection_allowed(uint32_t target_vm_id,
1803 struct vcpu *current)
1804{
1805 uint32_t current_vm_id = current->vm->id;
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001806
Andrew Walbran318f5732018-11-20 16:23:42 +00001807 /*
1808 * The primary VM is allowed to inject interrupts into any VM. Secondary
1809 * VMs are only allowed to inject interrupts into their own vCPUs.
1810 */
1811 return current_vm_id == HF_PRIMARY_VM_ID ||
1812 current_vm_id == target_vm_id;
1813}
1814
1815/**
1816 * Injects a virtual interrupt of the given ID into the given target vCPU.
1817 * This doesn't cause the vCPU to actually be run immediately; it will be taken
1818 * when the vCPU is next run, which is up to the scheduler.
1819 *
Andrew Walbran3d84a262018-12-13 14:41:19 +00001820 * Returns:
1821 * - -1 on failure because the target VM or vCPU doesn't exist, the interrupt
1822 * ID is invalid, or the current VM is not allowed to inject interrupts to
1823 * the target VM.
1824 * - 0 on success if no further action is needed.
1825 * - 1 if it was called by the primary VM and the primary VM now needs to wake
1826 * up or kick the target vCPU.
Andrew Walbran318f5732018-11-20 16:23:42 +00001827 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001828int64_t api_interrupt_inject(ffa_vm_id_t target_vm_id,
1829 ffa_vcpu_index_t target_vcpu_idx, uint32_t intid,
Andrew Walbran42347a92019-05-09 13:59:03 +01001830 struct vcpu *current, struct vcpu **next)
Andrew Walbran318f5732018-11-20 16:23:42 +00001831{
Andrew Walbran318f5732018-11-20 16:23:42 +00001832 struct vcpu *target_vcpu;
Andrew Walbran42347a92019-05-09 13:59:03 +01001833 struct vm *target_vm = vm_find(target_vm_id);
Andrew Walbran318f5732018-11-20 16:23:42 +00001834
1835 if (intid >= HF_NUM_INTIDS) {
1836 return -1;
1837 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001838
Andrew Walbran318f5732018-11-20 16:23:42 +00001839 if (target_vm == NULL) {
1840 return -1;
1841 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001842
Andrew Walbran318f5732018-11-20 16:23:42 +00001843 if (target_vcpu_idx >= target_vm->vcpu_count) {
Fuad Tabbab0ef2a42019-12-19 11:19:25 +00001844 /* The requested vCPU must exist. */
Andrew Walbran318f5732018-11-20 16:23:42 +00001845 return -1;
1846 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001847
Andrew Walbran318f5732018-11-20 16:23:42 +00001848 if (!is_injection_allowed(target_vm_id, current)) {
1849 return -1;
1850 }
Wedson Almeida Filho81568c42019-01-04 13:33:02 +00001851
Andrew Walbrane1310df2019-04-29 17:28:28 +01001852 target_vcpu = vm_get_vcpu(target_vm, target_vcpu_idx);
Andrew Walbran318f5732018-11-20 16:23:42 +00001853
Manish Pandey35e452f2021-02-18 21:36:34 +00001854 dlog_verbose(
1855 "Injecting interrupt %u for VM %#x vCPU %u from VM %#x vCPU "
1856 "%u\n",
1857 intid, target_vm_id, target_vcpu_idx, current->vm->id,
1858 vcpu_index(current));
Andrew Walbranfc9d4382019-05-10 18:07:21 +01001859 return internal_interrupt_inject(target_vcpu, intid, current, next);
Andrew Walbran318f5732018-11-20 16:23:42 +00001860}
Andrew Scull6386f252018-12-06 13:29:10 +00001861
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001862/** Returns the version of the implemented FF-A specification. */
Daniel Boulbybaeaf2e2021-12-09 11:42:36 +00001863struct ffa_value api_ffa_version(struct vcpu *current,
1864 uint32_t requested_version)
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001865{
Daniel Boulbybaeaf2e2021-12-09 11:42:36 +00001866 struct vm_locked current_vm_locked;
1867
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001868 /*
1869 * Ensure that both major and minor revision representation occupies at
1870 * most 15 bits.
1871 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001872 static_assert(0x8000 > FFA_VERSION_MAJOR,
Andrew Walbran9fd29072020-04-22 12:12:14 +01001873 "Major revision representation takes more than 15 bits.");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001874 static_assert(0x10000 > FFA_VERSION_MINOR,
Andrew Walbran9fd29072020-04-22 12:12:14 +01001875 "Minor revision representation takes more than 16 bits.");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001876 if (requested_version & FFA_VERSION_RESERVED_BIT) {
Andrew Walbran9fd29072020-04-22 12:12:14 +01001877 /* Invalid encoding, return an error. */
J-Alves13318e32021-02-22 17:21:00 +00001878 return (struct ffa_value){.func = (uint32_t)FFA_NOT_SUPPORTED};
Andrew Walbran9fd29072020-04-22 12:12:14 +01001879 }
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001880
Daniel Boulbybaeaf2e2021-12-09 11:42:36 +00001881 current_vm_locked = vm_lock(current->vm);
1882 current_vm_locked.vm->ffa_version = requested_version;
1883 vm_unlock(&current_vm_locked);
1884
Daniel Boulby6e32c612021-02-17 15:09:41 +00001885 return ((struct ffa_value){.func = FFA_VERSION_COMPILED});
Jose Marinhofc0b2b62019-06-06 11:18:45 +01001886}
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001887
1888int64_t api_debug_log(char c, struct vcpu *current)
1889{
Andrew Sculld54e1be2019-08-20 11:09:42 +01001890 bool flush;
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001891 struct vm *vm = current->vm;
1892 struct vm_locked vm_locked = vm_lock(vm);
1893
Andrew Sculld54e1be2019-08-20 11:09:42 +01001894 if (c == '\n' || c == '\0') {
1895 flush = true;
1896 } else {
1897 vm->log_buffer[vm->log_buffer_length++] = c;
1898 flush = (vm->log_buffer_length == sizeof(vm->log_buffer));
1899 }
1900
1901 if (flush) {
Andrew Walbran7f904bf2019-07-12 16:38:38 +01001902 dlog_flush_vm_buffer(vm->id, vm->log_buffer,
1903 vm->log_buffer_length);
1904 vm->log_buffer_length = 0;
Andrew Walbranc1ad4ce2019-05-09 11:41:39 +01001905 }
1906
1907 vm_unlock(&vm_locked);
1908
1909 return 0;
1910}
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001911
1912/**
J-Alves6f72ca82021-11-01 12:34:58 +00001913 * Helper for success return of FFA_FEATURES, for when it is used to query
1914 * an interrupt ID.
1915 */
1916struct ffa_value api_ffa_feature_success(uint32_t arg2)
1917{
1918 return (struct ffa_value){
1919 .func = FFA_SUCCESS_32, .arg1 = 0U, .arg2 = arg2};
1920}
1921
1922/**
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001923 * Discovery function returning information about the implementation of optional
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001924 * FF-A interfaces.
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001925 */
J-Alves6f72ca82021-11-01 12:34:58 +00001926struct ffa_value api_ffa_features(uint32_t feature_function_id)
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001927{
J-Alves6f72ca82021-11-01 12:34:58 +00001928 /*
1929 * According to table 13.8 of FF-A v1.1 Beta 0 spec, bits [30:8] MBZ
1930 * if using a feature ID.
1931 */
1932 if ((feature_function_id & FFA_FEATURES_FUNC_ID_MASK) == 0U &&
1933 (feature_function_id & ~FFA_FEATURES_FEATURE_ID_MASK) != 0) {
1934 return ffa_error(FFA_NOT_SUPPORTED);
1935 }
1936
1937 switch (feature_function_id) {
1938 /* Check support of the given Function ID. */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001939 case FFA_ERROR_32:
1940 case FFA_SUCCESS_32:
1941 case FFA_INTERRUPT_32:
1942 case FFA_VERSION_32:
1943 case FFA_FEATURES_32:
1944 case FFA_RX_RELEASE_32:
1945 case FFA_RXTX_MAP_64:
Daniel Boulby9e420ca2021-07-07 15:03:49 +01001946 case FFA_RXTX_UNMAP_32:
Fuad Tabbae4efcc32020-07-16 15:37:27 +01001947 case FFA_PARTITION_INFO_GET_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001948 case FFA_ID_GET_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001949 case FFA_MSG_WAIT_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001950 case FFA_RUN_32:
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001951 case FFA_MEM_DONATE_32:
1952 case FFA_MEM_LEND_32:
1953 case FFA_MEM_SHARE_32:
1954 case FFA_MEM_RETRIEVE_REQ_32:
1955 case FFA_MEM_RETRIEVE_RESP_32:
1956 case FFA_MEM_RELINQUISH_32:
1957 case FFA_MEM_RECLAIM_32:
J-Alvesbc3de8b2020-12-07 14:32:04 +00001958 case FFA_MSG_SEND_DIRECT_RESP_64:
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001959 case FFA_MSG_SEND_DIRECT_RESP_32:
J-Alvesbc3de8b2020-12-07 14:32:04 +00001960 case FFA_MSG_SEND_DIRECT_REQ_64:
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001961 case FFA_MSG_SEND_DIRECT_REQ_32:
J-Alves3829fc02021-03-18 12:49:18 +00001962#if (MAKE_FFA_VERSION(1, 1) <= FFA_VERSION_COMPILED)
Daniel Boulbyb2fb80e2021-02-03 15:09:23 +00001963 /* FF-A v1.1 features. */
1964 case FFA_SPM_ID_GET_32:
J-Alves6f72ca82021-11-01 12:34:58 +00001965 case FFA_NOTIFICATION_BITMAP_CREATE_32:
1966 case FFA_NOTIFICATION_BITMAP_DESTROY_32:
1967 case FFA_NOTIFICATION_BIND_32:
1968 case FFA_NOTIFICATION_UNBIND_32:
1969 case FFA_NOTIFICATION_SET_32:
1970 case FFA_NOTIFICATION_GET_32:
1971 case FFA_NOTIFICATION_INFO_GET_64:
Raghu Krishnamurthy6764b072021-10-18 12:54:24 -07001972 case FFA_MEM_PERM_GET_32:
1973 case FFA_MEM_PERM_SET_32:
1974 case FFA_MEM_PERM_GET_64:
1975 case FFA_MEM_PERM_SET_64:
J-Alves3829fc02021-03-18 12:49:18 +00001976#endif
1977 return (struct ffa_value){.func = FFA_SUCCESS_32};
J-Alves6f72ca82021-11-01 12:34:58 +00001978
1979#if (MAKE_FFA_VERSION(1, 1) <= FFA_VERSION_COMPILED)
1980 /* Check support of a feature provided respective feature ID. */
1981 case FFA_FEATURE_NPI:
1982 return api_ffa_feature_success(HF_NOTIFICATION_PENDING_INTID);
1983 case FFA_FEATURE_SRI:
1984 return api_ffa_feature_success(HF_SCHEDULE_RECEIVER_INTID);
1985#endif
1986 /* Platform specific feature support. */
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001987 default:
J-Alves6f72ca82021-11-01 12:34:58 +00001988 return arch_ffa_features(feature_function_id);
Jose Marinhoc0f4ff22019-10-09 10:37:42 +01001989 }
1990}
Andrew Walbrane908c4a2019-12-02 17:13:47 +00001991
Olivier Deprezee9d6a92019-11-26 09:14:11 +00001992/**
J-Alves645eabe2021-02-22 16:08:27 +00001993 * FF-A specification states that x2/w2 Must Be Zero for direct messaging
1994 * interfaces.
1995 */
1996static inline bool api_ffa_dir_msg_is_arg2_zero(struct ffa_value args)
1997{
1998 return args.arg2 == 0U;
1999}
2000
2001/**
J-Alves76d99af2021-03-10 17:42:11 +00002002 * Limits size of arguments in ffa_value structure to 32-bit.
2003 */
2004static struct ffa_value api_ffa_value_copy32(struct ffa_value args)
2005{
2006 return (struct ffa_value){
2007 .func = (uint32_t)args.func,
2008 .arg1 = (uint32_t)args.arg1,
2009 .arg2 = (uint32_t)0,
2010 .arg3 = (uint32_t)args.arg3,
2011 .arg4 = (uint32_t)args.arg4,
2012 .arg5 = (uint32_t)args.arg5,
2013 .arg6 = (uint32_t)args.arg6,
2014 .arg7 = (uint32_t)args.arg7,
2015 };
2016}
2017
2018/**
2019 * Helper to copy direct message payload, depending on SMC used and expected
2020 * registers size.
2021 */
2022static struct ffa_value api_ffa_dir_msg_value(struct ffa_value args)
2023{
2024 if (args.func == FFA_MSG_SEND_DIRECT_REQ_32 ||
2025 args.func == FFA_MSG_SEND_DIRECT_RESP_32) {
2026 return api_ffa_value_copy32(args);
2027 }
2028
2029 return (struct ffa_value){
2030 .func = args.func,
2031 .arg1 = args.arg1,
2032 .arg2 = 0,
2033 .arg3 = args.arg3,
2034 .arg4 = args.arg4,
2035 .arg5 = args.arg5,
2036 .arg6 = args.arg6,
2037 .arg7 = args.arg7,
2038 };
2039}
2040
2041/**
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002042 * Send an FF-A direct message request.
2043 */
2044struct ffa_value api_ffa_msg_send_direct_req(ffa_vm_id_t sender_vm_id,
2045 ffa_vm_id_t receiver_vm_id,
2046 struct ffa_value args,
2047 struct vcpu *current,
2048 struct vcpu **next)
2049{
J-Alves17228f72021-04-20 17:13:19 +01002050 struct ffa_value ret;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002051 struct vm *receiver_vm;
2052 struct vcpu *receiver_vcpu;
2053 struct two_vcpu_locked vcpus_locked;
2054
J-Alves645eabe2021-02-22 16:08:27 +00002055 if (!api_ffa_dir_msg_is_arg2_zero(args)) {
2056 return ffa_error(FFA_INVALID_PARAMETERS);
2057 }
2058
Olivier Deprez55a189e2021-06-09 15:45:27 +02002059 if (!plat_ffa_is_direct_request_valid(current, sender_vm_id,
2060 receiver_vm_id)) {
J-Alvesaa336102021-03-01 13:02:45 +00002061 return ffa_error(FFA_INVALID_PARAMETERS);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002062 }
2063
Olivier Deprez55a189e2021-06-09 15:45:27 +02002064 if (plat_ffa_direct_request_forward(receiver_vm_id, args, &ret)) {
J-Alves17228f72021-04-20 17:13:19 +01002065 return ret;
2066 }
2067
2068 ret = (struct ffa_value){.func = FFA_INTERRUPT_32};
2069
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002070 receiver_vm = vm_find(receiver_vm_id);
2071 if (receiver_vm == NULL) {
J-Alves88a13542021-12-14 15:39:52 +00002072 dlog_verbose("Invalid Receiver!\n");
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002073 return ffa_error(FFA_INVALID_PARAMETERS);
2074 }
2075
2076 /*
J-Alves439ac972021-11-18 17:32:03 +00002077 * Check if sender supports sending direct message req, and if
2078 * receiver supports receipt of direct message requests.
2079 */
2080 if (!plat_ffa_is_direct_request_supported(current->vm, receiver_vm)) {
2081 return ffa_error(FFA_DENIED);
2082 }
2083
2084 /*
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002085 * Per PSA FF-A EAC spec section 4.4.1 the firmware framework supports
2086 * UP (migratable) or MP partitions with a number of vCPUs matching the
2087 * number of PEs in the system. It further states that MP partitions
2088 * accepting direct request messages cannot migrate.
2089 */
J-Alvesad6a0432021-04-09 16:06:21 +01002090 receiver_vcpu = api_ffa_get_vm_vcpu(receiver_vm, current);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002091 if (receiver_vcpu == NULL) {
J-Alves88a13542021-12-14 15:39:52 +00002092 dlog_verbose("Invalid vCPU!\n");
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002093 return ffa_error(FFA_INVALID_PARAMETERS);
2094 }
2095
2096 vcpus_locked = vcpu_lock_both(receiver_vcpu, current);
2097
2098 /*
2099 * If destination vCPU is executing or already received an
2100 * FFA_MSG_SEND_DIRECT_REQ then return to caller hinting recipient is
2101 * busy. There is a brief period of time where the vCPU state has
2102 * changed but regs_available is still false thus consider this case as
2103 * the vCPU not yet ready to receive a direct message request.
2104 */
2105 if (is_ffa_direct_msg_request_ongoing(vcpus_locked.vcpu1) ||
2106 receiver_vcpu->state == VCPU_STATE_RUNNING ||
2107 !receiver_vcpu->regs_available) {
J-Alves88a13542021-12-14 15:39:52 +00002108 dlog_verbose("Receiver is busy with another request.\n");
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002109 ret = ffa_error(FFA_BUSY);
2110 goto out;
2111 }
2112
2113 if (atomic_load_explicit(&receiver_vcpu->vm->aborting,
2114 memory_order_relaxed)) {
2115 if (receiver_vcpu->state != VCPU_STATE_ABORTED) {
Olivier Deprezf92e5d42020-11-13 16:00:54 +01002116 dlog_notice("Aborting VM %#x vCPU %u\n",
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002117 receiver_vcpu->vm->id,
2118 vcpu_index(receiver_vcpu));
2119 receiver_vcpu->state = VCPU_STATE_ABORTED;
2120 }
2121
2122 ret = ffa_error(FFA_ABORTED);
2123 goto out;
2124 }
2125
2126 switch (receiver_vcpu->state) {
2127 case VCPU_STATE_OFF:
2128 case VCPU_STATE_RUNNING:
2129 case VCPU_STATE_ABORTED:
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002130 case VCPU_STATE_BLOCKED_INTERRUPT:
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002131 case VCPU_STATE_BLOCKED:
2132 case VCPU_STATE_PREEMPTED:
J-Alves88a13542021-12-14 15:39:52 +00002133 dlog_verbose("Receiver's vCPU can't receive request (%u)!\n",
2134 vcpu_index(receiver_vcpu));
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002135 ret = ffa_error(FFA_BUSY);
2136 goto out;
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002137 case VCPU_STATE_WAITING:
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002138 /*
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002139 * We expect target vCPU to be in WAITING state after either
2140 * having called ffa_msg_wait or sent a direct message response.
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002141 */
2142 break;
2143 }
2144
2145 /* Inject timer interrupt if any pending */
2146 if (arch_timer_pending(&receiver_vcpu->regs)) {
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002147 api_interrupt_inject_locked(vcpus_locked.vcpu1,
2148 HF_VIRTUAL_TIMER_INTID, current,
2149 NULL);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002150
2151 arch_timer_mask(&receiver_vcpu->regs);
2152 }
2153
2154 /* The receiver vCPU runs upon direct message invocation */
2155 receiver_vcpu->cpu = current->cpu;
2156 receiver_vcpu->state = VCPU_STATE_RUNNING;
2157 receiver_vcpu->regs_available = false;
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002158 receiver_vcpu->direct_request_origin_vm_id = sender_vm_id;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002159
J-Alves76d99af2021-03-10 17:42:11 +00002160 arch_regs_set_retval(&receiver_vcpu->regs, api_ffa_dir_msg_value(args));
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002161
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002162 current->state = VCPU_STATE_BLOCKED;
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002163
2164 /* Switch to receiver vCPU targeted to by direct msg request */
2165 *next = receiver_vcpu;
2166
2167 /*
2168 * Since this flow will lead to a VM switch, the return value will not
2169 * be applied to current vCPU.
2170 */
2171
2172out:
2173 sl_unlock(&receiver_vcpu->lock);
2174 sl_unlock(&current->lock);
2175
2176 return ret;
2177}
2178
2179/**
2180 * Send an FF-A direct message response.
2181 */
2182struct ffa_value api_ffa_msg_send_direct_resp(ffa_vm_id_t sender_vm_id,
2183 ffa_vm_id_t receiver_vm_id,
2184 struct ffa_value args,
2185 struct vcpu *current,
2186 struct vcpu **next)
2187{
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002188 struct vcpu_locked current_locked;
J-Alves645eabe2021-02-22 16:08:27 +00002189
2190 if (!api_ffa_dir_msg_is_arg2_zero(args)) {
2191 return ffa_error(FFA_INVALID_PARAMETERS);
2192 }
2193
J-Alves76d99af2021-03-10 17:42:11 +00002194 struct ffa_value to_ret = api_ffa_dir_msg_value(args);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002195
Olivier Deprez55a189e2021-06-09 15:45:27 +02002196 if (!plat_ffa_is_direct_response_valid(current, sender_vm_id,
2197 receiver_vm_id)) {
J-Alvesaa336102021-03-01 13:02:45 +00002198 return ffa_error(FFA_INVALID_PARAMETERS);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002199 }
2200
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002201 current_locked = vcpu_lock(current);
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002202 if (api_ffa_is_managed_exit_ongoing(current_locked)) {
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002203 /*
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002204 * No need for REQ/RESP state management as managed exit does
2205 * not have corresponding REQ pair.
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002206 */
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002207 if (receiver_vm_id != HF_PRIMARY_VM_ID) {
2208 vcpu_unlock(&current_locked);
2209 return ffa_error(FFA_DENIED);
2210 }
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002211
Madhukar Pappireddyed4ab942021-08-03 14:22:53 -05002212 /*
2213 * Per FF-A v1.1 Beta section 8.4.1.2 bullet 6, SPMC can signal
2214 * a secure interrupt to a SP that is performing managed exit.
2215 * We have taken a implementation defined choice to not allow
2216 * Managed exit while a SP is processing a secure interrupt.
2217 */
2218 CHECK(!current->processing_secure_interrupt);
2219
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002220 plat_interrupts_set_priority_mask(0xff);
2221 current->processing_managed_exit = false;
2222 } else {
2223 /*
2224 * Ensure the terminating FFA_MSG_SEND_DIRECT_REQ had a
2225 * defined originator.
2226 */
2227 if (!is_ffa_direct_msg_request_ongoing(current_locked)) {
2228 /*
2229 * Sending direct response but direct request origin
2230 * vCPU is not set.
2231 */
2232 vcpu_unlock(&current_locked);
2233 return ffa_error(FFA_DENIED);
2234 }
2235
Madhukar Pappireddyed4ab942021-08-03 14:22:53 -05002236 /* Refer to FF-A v1.1 Beta0 section 7.3 bulet 3. */
Manish Pandeya5f39fb2020-09-11 09:47:11 +01002237 if (current->direct_request_origin_vm_id != receiver_vm_id) {
2238 vcpu_unlock(&current_locked);
2239 return ffa_error(FFA_DENIED);
2240 }
Madhukar Pappireddyed4ab942021-08-03 14:22:53 -05002241
2242 /*
2243 * Per FF-A v1.1 Beta0 section 7.4, if a secure interrupt is
2244 * handled by an SP in RUNNING state the existing runtime model
2245 * is preserved. Hence, per section 7.3 bullet 3, SP can use
2246 * FFA_MSG_SEND_DIRECT_RESP to return a response after
2247 * interrupt completion.
2248 */
2249 if (current->processing_secure_interrupt) {
2250 /* There is no preempted vCPU to resume. */
2251 CHECK(current->preempted_vcpu == NULL);
2252
2253 /* Unmask interrupts. */
2254 plat_interrupts_set_priority_mask(0xff);
2255
2256 /*
2257 * Clear fields corresponding to secure interrupt
2258 * handling.
2259 */
2260 current->processing_secure_interrupt = false;
2261 current->secure_interrupt_deactivated = false;
2262 current->current_sec_interrupt_id = 0;
2263 }
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002264 }
2265
2266 /* Clear direct request origin for the caller. */
2267 current->direct_request_origin_vm_id = HF_INVALID_VM_ID;
2268
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002269 vcpu_unlock(&current_locked);
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002270
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002271 if (!vm_id_is_current_world(receiver_vm_id)) {
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002272 *next = api_switch_to_other_world(
2273 current, to_ret,
2274 /*
2275 * Current vcpu sent a direct response. It moves to
2276 * waiting state.
2277 */
2278 VCPU_STATE_WAITING);
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002279 } else if (receiver_vm_id == HF_PRIMARY_VM_ID) {
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002280 *next = api_switch_to_primary(
2281 current, to_ret,
2282 /*
2283 * Current vcpu sent a direct response. It moves to
2284 * waiting state.
2285 */
2286 VCPU_STATE_WAITING);
J-Alvesfe7f7372020-11-09 11:32:12 +00002287 } else if (vm_id_is_current_world(receiver_vm_id)) {
2288 /*
2289 * It is expected the receiver_vm_id to be from an SP, otherwise
J-Alvesaa79c012021-07-09 14:29:45 +01002290 * 'plat_ffa_is_direct_response_valid' should have
J-Alvesfe7f7372020-11-09 11:32:12 +00002291 * made function return error before getting to this point.
2292 */
2293 *next = api_switch_to_vm(current, to_ret,
Madhukar Pappireddyb11e0d12021-08-02 19:44:35 -05002294 /*
2295 * current vcpu sent a direct response.
2296 * It moves to waiting state.
2297 */
2298 VCPU_STATE_WAITING, receiver_vm_id);
Olivier Deprez2ebae3a2020-06-11 16:34:30 +02002299 } else {
2300 panic("Invalid direct message response invocation");
2301 }
Olivier Deprezee9d6a92019-11-26 09:14:11 +00002302
2303 return (struct ffa_value){.func = FFA_INTERRUPT_32};
2304}
2305
J-Alves84658fc2021-06-17 14:37:32 +01002306static bool api_memory_region_check_flags(
2307 struct ffa_memory_region *memory_region, uint32_t share_func)
2308{
2309 switch (share_func) {
2310 case FFA_MEM_SHARE_32:
2311 if ((memory_region->flags & FFA_MEMORY_REGION_FLAG_CLEAR) !=
2312 0U) {
2313 return false;
2314 }
2315 /* Intentional fall-through */
2316 case FFA_MEM_LEND_32:
2317 case FFA_MEM_DONATE_32: {
2318 /* Bits 31:2 Must Be Zero. */
2319 ffa_memory_receiver_flags_t to_mask =
2320 ~(FFA_MEMORY_REGION_FLAG_CLEAR |
2321 FFA_MEMORY_REGION_FLAG_TIME_SLICE);
2322
2323 if ((memory_region->flags & to_mask) != 0U) {
2324 return false;
2325 }
2326 break;
2327 }
2328 default:
2329 panic("Check for mem send calls only.\n");
2330 }
2331
2332 /* Last check reserved values are 0 */
2333 return true;
2334}
2335
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002336struct ffa_value api_ffa_mem_send(uint32_t share_func, uint32_t length,
2337 uint32_t fragment_length, ipaddr_t address,
Andrew Walbran1a86aa92020-05-15 17:22:28 +01002338 uint32_t page_count, struct vcpu *current)
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002339{
2340 struct vm *from = current->vm;
2341 struct vm *to;
2342 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002343 struct ffa_memory_region *memory_region;
2344 struct ffa_value ret;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002345
2346 if (ipa_addr(address) != 0 || page_count != 0) {
2347 /*
2348 * Hafnium only supports passing the descriptor in the TX
2349 * mailbox.
2350 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002351 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002352 }
2353
Andrew Walbranca808b12020-05-15 17:22:28 +01002354 if (fragment_length > length) {
2355 dlog_verbose(
2356 "Fragment length %d greater than total length %d.\n",
2357 fragment_length, length);
2358 return ffa_error(FFA_INVALID_PARAMETERS);
2359 }
2360 if (fragment_length < sizeof(struct ffa_memory_region) +
2361 sizeof(struct ffa_memory_access)) {
2362 dlog_verbose(
2363 "Initial fragment length %d smaller than header size "
2364 "%d.\n",
2365 fragment_length,
2366 sizeof(struct ffa_memory_region) +
2367 sizeof(struct ffa_memory_access));
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002368 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002369 }
2370
2371 /*
2372 * Check that the sender has configured its send buffer. If the TX
2373 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
2374 * be safely accessed after releasing the lock since the TX mailbox
2375 * address can only be configured once.
2376 */
2377 sl_lock(&from->lock);
2378 from_msg = from->mailbox.send;
2379 sl_unlock(&from->lock);
2380
2381 if (from_msg == NULL) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002382 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002383 }
2384
2385 /*
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002386 * Copy the memory region descriptor to a fresh page from the memory
2387 * pool. This prevents the sender from changing it underneath us, and
2388 * also lets us keep it around in the share state table if needed.
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002389 */
Andrew Walbran1a86aa92020-05-15 17:22:28 +01002390 if (fragment_length > HF_MAILBOX_SIZE ||
2391 fragment_length > MM_PPOOL_ENTRY_SIZE) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002392 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002393 }
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002394 memory_region = (struct ffa_memory_region *)mpool_alloc(&api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002395 if (memory_region == NULL) {
2396 dlog_verbose("Failed to allocate memory region copy.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002397 return ffa_error(FFA_NO_MEMORY);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002398 }
Andrew Walbran1a86aa92020-05-15 17:22:28 +01002399 memcpy_s(memory_region, MM_PPOOL_ENTRY_SIZE, from_msg, fragment_length);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002400
2401 /* The sender must match the caller. */
2402 if (memory_region->sender != from->id) {
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002403 dlog_verbose("Memory region sender doesn't match caller.\n");
J-Alves99948662021-07-28 18:07:04 +01002404 ret = ffa_error(FFA_DENIED);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002405 goto out;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002406 }
2407
J-Alves84658fc2021-06-17 14:37:32 +01002408 if (!api_memory_region_check_flags(memory_region, share_func)) {
2409 dlog_verbose(
2410 "Memory region reserved arguments must be zero.\n");
2411 ret = ffa_error(FFA_INVALID_PARAMETERS);
2412 goto out;
2413 }
2414
Andrew Walbrana65a1322020-04-06 19:32:32 +01002415 if (memory_region->receiver_count != 1) {
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002416 /* Hafnium doesn't support multi-way memory sharing for now. */
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002417 dlog_verbose(
2418 "Multi-way memory sharing not supported (got %d "
Andrew Walbrana65a1322020-04-06 19:32:32 +01002419 "endpoint memory access descriptors, expected 1).\n",
2420 memory_region->receiver_count);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002421 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002422 goto out;
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002423 }
2424
2425 /*
2426 * Ensure that the receiver VM exists and isn't the same as the sender.
2427 */
Andrew Walbrana65a1322020-04-06 19:32:32 +01002428 to = vm_find(memory_region->receivers[0].receiver_permissions.receiver);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002429 if (to == NULL || to == from) {
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002430 dlog_verbose("Invalid receiver.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002431 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002432 goto out;
2433 }
2434
2435 if (to->id == HF_TEE_VM_ID) {
2436 /*
2437 * The 'to' VM lock is only needed in the case that it is the
2438 * TEE VM.
2439 */
2440 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
2441
2442 if (msg_receiver_busy(vm_to_from_lock.vm1, from, false)) {
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002443 ret = ffa_error(FFA_BUSY);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002444 goto out_unlock;
2445 }
2446
Andrew Walbran1a86aa92020-05-15 17:22:28 +01002447 ret = ffa_memory_tee_send(
2448 vm_to_from_lock.vm2, vm_to_from_lock.vm1, memory_region,
2449 length, fragment_length, share_func, &api_page_pool);
2450 /*
2451 * ffa_tee_memory_send takes ownership of the memory_region, so
2452 * make sure we don't free it.
2453 */
2454 memory_region = NULL;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002455
2456 out_unlock:
2457 vm_unlock(&vm_to_from_lock.vm1);
2458 vm_unlock(&vm_to_from_lock.vm2);
2459 } else {
2460 struct vm_locked from_locked = vm_lock(from);
2461
Andrew Walbran1a86aa92020-05-15 17:22:28 +01002462 ret = ffa_memory_send(from_locked, memory_region, length,
2463 fragment_length, share_func,
2464 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002465 /*
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002466 * ffa_memory_send takes ownership of the memory_region, so
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002467 * make sure we don't free it.
2468 */
2469 memory_region = NULL;
2470
2471 vm_unlock(&from_locked);
2472 }
2473
2474out:
2475 if (memory_region != NULL) {
2476 mpool_free(&api_page_pool, memory_region);
2477 }
2478
2479 return ret;
2480}
2481
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002482struct ffa_value api_ffa_mem_retrieve_req(uint32_t length,
2483 uint32_t fragment_length,
2484 ipaddr_t address, uint32_t page_count,
2485 struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002486{
2487 struct vm *to = current->vm;
2488 struct vm_locked to_locked;
2489 const void *to_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002490 struct ffa_memory_region *retrieve_request;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002491 uint32_t message_buffer_size;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002492 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002493
2494 if (ipa_addr(address) != 0 || page_count != 0) {
2495 /*
2496 * Hafnium only supports passing the descriptor in the TX
2497 * mailbox.
2498 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002499 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002500 }
2501
Andrew Walbrana65a1322020-04-06 19:32:32 +01002502 if (fragment_length != length) {
2503 dlog_verbose("Fragmentation not yet supported.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002504 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002505 }
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002506
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002507 retrieve_request =
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002508 (struct ffa_memory_region *)cpu_get_buffer(current->cpu);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002509 message_buffer_size = cpu_get_buffer_size(current->cpu);
2510 if (length > HF_MAILBOX_SIZE || length > message_buffer_size) {
2511 dlog_verbose("Retrieve request too long.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002512 return ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002513 }
2514
2515 to_locked = vm_lock(to);
2516 to_msg = to->mailbox.send;
2517
2518 if (to_msg == NULL) {
2519 dlog_verbose("TX buffer not setup.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002520 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002521 goto out;
2522 }
2523
2524 /*
2525 * Copy the retrieve request descriptor to an internal buffer, so that
2526 * the caller can't change it underneath us.
2527 */
2528 memcpy_s(retrieve_request, message_buffer_size, to_msg, length);
2529
2530 if (msg_receiver_busy(to_locked, NULL, false)) {
2531 /*
2532 * Can't retrieve memory information if the mailbox is not
2533 * available.
2534 */
2535 dlog_verbose("RX buffer not ready.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002536 ret = ffa_error(FFA_BUSY);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002537 goto out;
2538 }
2539
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002540 ret = ffa_memory_retrieve(to_locked, retrieve_request, length,
2541 &api_page_pool);
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002542
2543out:
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002544 vm_unlock(&to_locked);
2545 return ret;
2546}
2547
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002548struct ffa_value api_ffa_mem_relinquish(struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002549{
2550 struct vm *from = current->vm;
2551 struct vm_locked from_locked;
2552 const void *from_msg;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002553 struct ffa_mem_relinquish *relinquish_request;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002554 uint32_t message_buffer_size;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002555 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002556 uint32_t length;
2557
2558 from_locked = vm_lock(from);
2559 from_msg = from->mailbox.send;
2560
2561 if (from_msg == NULL) {
2562 dlog_verbose("TX buffer not setup.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002563 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002564 goto out;
2565 }
2566
2567 /*
2568 * Calculate length from relinquish descriptor before copying. We will
2569 * check again later to make sure it hasn't changed.
2570 */
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002571 length = sizeof(struct ffa_mem_relinquish) +
2572 ((struct ffa_mem_relinquish *)from_msg)->endpoint_count *
2573 sizeof(ffa_vm_id_t);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002574 /*
2575 * Copy the relinquish descriptor to an internal buffer, so that the
2576 * caller can't change it underneath us.
2577 */
2578 relinquish_request =
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002579 (struct ffa_mem_relinquish *)cpu_get_buffer(current->cpu);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002580 message_buffer_size = cpu_get_buffer_size(current->cpu);
2581 if (length > HF_MAILBOX_SIZE || length > message_buffer_size) {
2582 dlog_verbose("Relinquish message too long.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002583 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002584 goto out;
2585 }
2586 memcpy_s(relinquish_request, message_buffer_size, from_msg, length);
2587
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002588 if (sizeof(struct ffa_mem_relinquish) +
2589 relinquish_request->endpoint_count * sizeof(ffa_vm_id_t) !=
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002590 length) {
2591 dlog_verbose(
2592 "Endpoint count changed while copying to internal "
2593 "buffer.\n");
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002594 ret = ffa_error(FFA_INVALID_PARAMETERS);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002595 goto out;
2596 }
2597
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002598 ret = ffa_memory_relinquish(from_locked, relinquish_request,
2599 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002600
2601out:
2602 vm_unlock(&from_locked);
2603 return ret;
2604}
2605
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002606struct ffa_value api_ffa_mem_reclaim(ffa_memory_handle_t handle,
2607 ffa_memory_region_flags_t flags,
2608 struct vcpu *current)
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002609{
2610 struct vm *to = current->vm;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002611 struct ffa_value ret;
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002612
Olivier Deprez55a189e2021-06-09 15:45:27 +02002613 if (plat_ffa_memory_handle_allocated_by_current_world(handle)) {
Andrew Walbran290b0c92020-02-03 16:37:14 +00002614 struct vm_locked to_locked = vm_lock(to);
2615
Andrew Walbranca808b12020-05-15 17:22:28 +01002616 ret = ffa_memory_reclaim(to_locked, handle, flags,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01002617 &api_page_pool);
Andrew Walbran5de9c3d2020-02-10 13:35:29 +00002618
Andrew Walbran290b0c92020-02-03 16:37:14 +00002619 vm_unlock(&to_locked);
2620 } else {
2621 struct vm *from = vm_find(HF_TEE_VM_ID);
2622 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
2623
Andrew Walbranca808b12020-05-15 17:22:28 +01002624 ret = ffa_memory_tee_reclaim(vm_to_from_lock.vm1,
2625 vm_to_from_lock.vm2, handle, flags,
2626 &api_page_pool);
2627
2628 vm_unlock(&vm_to_from_lock.vm1);
2629 vm_unlock(&vm_to_from_lock.vm2);
2630 }
2631
2632 return ret;
2633}
2634
2635struct ffa_value api_ffa_mem_frag_rx(ffa_memory_handle_t handle,
2636 uint32_t fragment_offset,
2637 ffa_vm_id_t sender_vm_id,
2638 struct vcpu *current)
2639{
2640 struct vm *to = current->vm;
2641 struct vm_locked to_locked;
2642 struct ffa_value ret;
2643
2644 /* Sender ID MBZ at virtual instance. */
2645 if (sender_vm_id != 0) {
2646 return ffa_error(FFA_INVALID_PARAMETERS);
2647 }
2648
2649 to_locked = vm_lock(to);
2650
2651 if (msg_receiver_busy(to_locked, NULL, false)) {
2652 /*
2653 * Can't retrieve memory information if the mailbox is not
2654 * available.
2655 */
2656 dlog_verbose("RX buffer not ready.\n");
2657 ret = ffa_error(FFA_BUSY);
2658 goto out;
2659 }
2660
2661 ret = ffa_memory_retrieve_continue(to_locked, handle, fragment_offset,
2662 &api_page_pool);
2663
2664out:
2665 vm_unlock(&to_locked);
2666 return ret;
2667}
2668
2669struct ffa_value api_ffa_mem_frag_tx(ffa_memory_handle_t handle,
2670 uint32_t fragment_length,
2671 ffa_vm_id_t sender_vm_id,
2672 struct vcpu *current)
2673{
2674 struct vm *from = current->vm;
2675 const void *from_msg;
2676 void *fragment_copy;
2677 struct ffa_value ret;
2678
2679 /* Sender ID MBZ at virtual instance. */
2680 if (sender_vm_id != 0) {
2681 return ffa_error(FFA_INVALID_PARAMETERS);
2682 }
2683
2684 /*
2685 * Check that the sender has configured its send buffer. If the TX
2686 * mailbox at from_msg is configured (i.e. from_msg != NULL) then it can
2687 * be safely accessed after releasing the lock since the TX mailbox
2688 * address can only be configured once.
2689 */
2690 sl_lock(&from->lock);
2691 from_msg = from->mailbox.send;
2692 sl_unlock(&from->lock);
2693
2694 if (from_msg == NULL) {
2695 return ffa_error(FFA_INVALID_PARAMETERS);
2696 }
2697
2698 /*
2699 * Copy the fragment to a fresh page from the memory pool. This prevents
2700 * the sender from changing it underneath us, and also lets us keep it
2701 * around in the share state table if needed.
2702 */
2703 if (fragment_length > HF_MAILBOX_SIZE ||
2704 fragment_length > MM_PPOOL_ENTRY_SIZE) {
2705 dlog_verbose(
2706 "Fragment length %d larger than mailbox size %d.\n",
2707 fragment_length, HF_MAILBOX_SIZE);
2708 return ffa_error(FFA_INVALID_PARAMETERS);
2709 }
2710 if (fragment_length < sizeof(struct ffa_memory_region_constituent) ||
2711 fragment_length % sizeof(struct ffa_memory_region_constituent) !=
2712 0) {
2713 dlog_verbose("Invalid fragment length %d.\n", fragment_length);
2714 return ffa_error(FFA_INVALID_PARAMETERS);
2715 }
2716 fragment_copy = mpool_alloc(&api_page_pool);
2717 if (fragment_copy == NULL) {
2718 dlog_verbose("Failed to allocate fragment copy.\n");
2719 return ffa_error(FFA_NO_MEMORY);
2720 }
2721 memcpy_s(fragment_copy, MM_PPOOL_ENTRY_SIZE, from_msg, fragment_length);
2722
2723 /*
2724 * Hafnium doesn't support fragmentation of memory retrieve requests
2725 * (because it doesn't support caller-specified mappings, so a request
2726 * will never be larger than a single page), so this must be part of a
2727 * memory send (i.e. donate, lend or share) request.
2728 *
2729 * We can tell from the handle whether the memory transaction is for the
2730 * TEE or not.
2731 */
2732 if ((handle & FFA_MEMORY_HANDLE_ALLOCATOR_MASK) ==
2733 FFA_MEMORY_HANDLE_ALLOCATOR_HYPERVISOR) {
2734 struct vm_locked from_locked = vm_lock(from);
2735
2736 ret = ffa_memory_send_continue(from_locked, fragment_copy,
2737 fragment_length, handle,
2738 &api_page_pool);
2739 /*
2740 * `ffa_memory_send_continue` takes ownership of the
2741 * fragment_copy, so we don't need to free it here.
2742 */
2743 vm_unlock(&from_locked);
2744 } else {
2745 struct vm *to = vm_find(HF_TEE_VM_ID);
2746 struct two_vm_locked vm_to_from_lock = vm_lock_both(to, from);
2747
2748 /*
2749 * The TEE RX buffer state is checked in
2750 * `ffa_memory_tee_send_continue` rather than here, as we need
2751 * to return `FFA_MEM_FRAG_RX` with the current offset rather
2752 * than FFA_ERROR FFA_BUSY in case it is busy.
2753 */
2754
2755 ret = ffa_memory_tee_send_continue(
2756 vm_to_from_lock.vm2, vm_to_from_lock.vm1, fragment_copy,
2757 fragment_length, handle, &api_page_pool);
2758 /*
2759 * `ffa_memory_tee_send_continue` takes ownership of the
2760 * fragment_copy, so we don't need to free it here.
2761 */
Andrew Walbran290b0c92020-02-03 16:37:14 +00002762
2763 vm_unlock(&vm_to_from_lock.vm1);
2764 vm_unlock(&vm_to_from_lock.vm2);
2765 }
Andrew Walbrane908c4a2019-12-02 17:13:47 +00002766
2767 return ret;
2768}
Max Shvetsov40108e72020-08-27 12:39:50 +01002769
2770struct ffa_value api_ffa_secondary_ep_register(ipaddr_t entry_point,
2771 struct vcpu *current)
2772{
2773 struct vm_locked vm_locked;
2774
2775 vm_locked = vm_lock(current->vm);
2776 vm_locked.vm->secondary_ep = entry_point;
2777 vm_unlock(&vm_locked);
2778
2779 return (struct ffa_value){.func = FFA_SUCCESS_32};
2780}
J-Alvesa0f317d2021-06-09 13:31:59 +01002781
2782struct ffa_value api_ffa_notification_bitmap_create(ffa_vm_id_t vm_id,
2783 ffa_vcpu_count_t vcpu_count,
2784 struct vcpu *current)
2785{
2786 if (!plat_ffa_is_notifications_create_valid(current, vm_id)) {
2787 dlog_verbose("Bitmap create for NWd VM IDs only (%x).\n",
2788 vm_id);
2789 return ffa_error(FFA_NOT_SUPPORTED);
2790 }
2791
2792 return plat_ffa_notifications_bitmap_create(vm_id, vcpu_count);
2793}
2794
2795struct ffa_value api_ffa_notification_bitmap_destroy(ffa_vm_id_t vm_id,
2796 struct vcpu *current)
2797{
2798 /*
2799 * Validity of use of this interface is the same as for bitmap create.
2800 */
2801 if (!plat_ffa_is_notifications_create_valid(current, vm_id)) {
2802 dlog_verbose("Bitmap destroy for NWd VM IDs only (%x).\n",
2803 vm_id);
2804 return ffa_error(FFA_NOT_SUPPORTED);
2805 }
2806
2807 return plat_ffa_notifications_bitmap_destroy(vm_id);
2808}
J-Alvesc003a7a2021-03-18 13:06:53 +00002809
2810struct ffa_value api_ffa_notification_update_bindings(
2811 ffa_vm_id_t sender_vm_id, ffa_vm_id_t receiver_vm_id, uint32_t flags,
2812 ffa_notifications_bitmap_t notifications, bool is_bind,
2813 struct vcpu *current)
2814{
2815 struct ffa_value ret = {.func = FFA_SUCCESS_32};
2816 struct vm_locked receiver_locked;
2817 const bool is_per_vcpu = (flags & FFA_NOTIFICATION_FLAG_PER_VCPU) != 0U;
2818 const ffa_vm_id_t id_to_update =
2819 is_bind ? sender_vm_id : HF_INVALID_VM_ID;
2820 const ffa_vm_id_t id_to_validate =
2821 is_bind ? HF_INVALID_VM_ID : sender_vm_id;
2822
2823 if (!plat_ffa_is_notifications_bind_valid(current, sender_vm_id,
2824 receiver_vm_id)) {
2825 dlog_verbose("Invalid use of notifications bind interface.\n");
2826 return ffa_error(FFA_INVALID_PARAMETERS);
2827 }
2828
J-Alvesb15e9402021-09-08 11:44:42 +01002829 if (plat_ffa_notifications_update_bindings_forward(
2830 receiver_vm_id, sender_vm_id, flags, notifications, is_bind,
2831 &ret)) {
J-Alvesb15e9402021-09-08 11:44:42 +01002832 return ret;
2833 }
2834
J-Alvesc003a7a2021-03-18 13:06:53 +00002835 if (notifications == 0U) {
2836 dlog_verbose("No notifications have been specified.\n");
2837 return ffa_error(FFA_INVALID_PARAMETERS);
2838 }
2839
2840 /**
2841 * This check assumes receiver is the current VM, and has been enforced
2842 * by 'plat_ffa_is_notifications_bind_valid'.
2843 */
2844 receiver_locked = plat_ffa_vm_find_locked(receiver_vm_id);
2845
2846 if (receiver_locked.vm == NULL) {
2847 dlog_verbose("Receiver doesn't exist!\n");
2848 return ffa_error(FFA_DENIED);
2849 }
2850
J-Alves09ff9d82021-11-02 11:55:20 +00002851 if (!vm_locked_are_notifications_enabled(receiver_locked)) {
J-Alvesc003a7a2021-03-18 13:06:53 +00002852 dlog_verbose("Notifications are not enabled.\n");
2853 ret = ffa_error(FFA_NOT_SUPPORTED);
2854 goto out;
2855 }
2856
2857 if (is_bind && vm_id_is_current_world(sender_vm_id) &&
2858 vm_find(sender_vm_id) == NULL) {
2859 dlog_verbose("Sender VM does not exist!\n");
2860 ret = ffa_error(FFA_INVALID_PARAMETERS);
2861 goto out;
2862 }
2863
2864 /*
2865 * Can't bind/unbind notifications if at least one is bound to a
2866 * different sender.
2867 */
2868 if (!vm_notifications_validate_bound_sender(
2869 receiver_locked, plat_ffa_is_vm_id(sender_vm_id),
2870 id_to_validate, notifications)) {
2871 dlog_verbose("Notifications are bound to other sender.\n");
2872 ret = ffa_error(FFA_DENIED);
2873 goto out;
2874 }
2875
2876 /**
2877 * Check if there is a pending notification within those specified in
2878 * the bitmap.
2879 */
2880 if (vm_are_notifications_pending(receiver_locked,
2881 plat_ffa_is_vm_id(sender_vm_id),
2882 notifications)) {
2883 dlog_verbose("Notifications within '%x' pending.\n",
2884 notifications);
2885 ret = ffa_error(FFA_DENIED);
2886 goto out;
2887 }
2888
2889 vm_notifications_update_bindings(
2890 receiver_locked, plat_ffa_is_vm_id(sender_vm_id), id_to_update,
2891 notifications, is_per_vcpu && is_bind);
2892
2893out:
2894 vm_unlock(&receiver_locked);
2895 return ret;
2896}
J-Alvesaa79c012021-07-09 14:29:45 +01002897
2898struct ffa_value api_ffa_notification_set(
2899 ffa_vm_id_t sender_vm_id, ffa_vm_id_t receiver_vm_id, uint32_t flags,
2900 ffa_notifications_bitmap_t notifications, struct vcpu *current)
2901{
2902 struct ffa_value ret;
2903 struct vm_locked receiver_locked;
2904
2905 /*
2906 * Check if is per-vCPU or global, and extracting vCPU ID according
2907 * to table 17.19 of the FF-A v1.1 Beta 0 spec.
2908 */
2909 bool is_per_vcpu = (flags & FFA_NOTIFICATION_FLAG_PER_VCPU) != 0U;
2910 ffa_vcpu_index_t vcpu_id = (uint16_t)(flags >> 16);
2911
J-Alvesaa79c012021-07-09 14:29:45 +01002912 if (!plat_ffa_is_notification_set_valid(current, sender_vm_id,
2913 receiver_vm_id)) {
2914 dlog_verbose("Invalid use of notifications set interface.\n");
2915 return ffa_error(FFA_INVALID_PARAMETERS);
2916 }
2917
2918 if (notifications == 0U) {
2919 dlog_verbose("No notifications have been specified.\n");
2920 return ffa_error(FFA_INVALID_PARAMETERS);
2921 }
2922
J-Alvesde7bd2f2021-09-09 19:54:35 +01002923 if (plat_ffa_notification_set_forward(sender_vm_id, receiver_vm_id,
2924 flags, notifications, &ret)) {
2925 return ret;
2926 }
2927
J-Alvesaa79c012021-07-09 14:29:45 +01002928 /*
2929 * This check assumes receiver is the current VM, and has been enforced
2930 * by 'plat_ffa_is_notification_set_valid'.
2931 */
2932 receiver_locked = plat_ffa_vm_find_locked(receiver_vm_id);
2933
2934 if (receiver_locked.vm == NULL) {
2935 dlog_verbose("Receiver ID is not valid.\n");
2936 return ffa_error(FFA_INVALID_PARAMETERS);
2937 }
2938
J-Alves09ff9d82021-11-02 11:55:20 +00002939 if (!vm_locked_are_notifications_enabled(receiver_locked)) {
J-Alvesaa79c012021-07-09 14:29:45 +01002940 dlog_verbose("Receiver's notifications not enabled.\n");
2941 ret = ffa_error(FFA_DENIED);
2942 goto out;
2943 }
2944
2945 /*
2946 * If notifications are not bound to the sender, they wouldn't be
2947 * enabled either for the receiver.
2948 */
2949 if (!vm_notifications_validate_binding(
2950 receiver_locked, plat_ffa_is_vm_id(sender_vm_id),
2951 sender_vm_id, notifications, is_per_vcpu)) {
2952 dlog_verbose("Notifications bindings not valid.\n");
2953 ret = ffa_error(FFA_DENIED);
2954 goto out;
2955 }
2956
2957 if (is_per_vcpu && vcpu_id >= receiver_locked.vm->vcpu_count) {
2958 dlog_verbose("Invalid VCPU ID!\n");
2959 ret = ffa_error(FFA_INVALID_PARAMETERS);
2960 goto out;
2961 }
2962
J-Alves7461ef22021-10-18 17:21:33 +01002963 /* Set notifications pending. */
J-Alvesaa79c012021-07-09 14:29:45 +01002964 vm_notifications_set(receiver_locked, plat_ffa_is_vm_id(sender_vm_id),
2965 notifications, vcpu_id, is_per_vcpu);
2966 dlog_verbose("Set the notifications: %x.\n", notifications);
2967
J-Alves13394022021-06-30 13:48:49 +01002968 if ((FFA_NOTIFICATIONS_FLAG_DELAY_SRI & flags) == 0) {
2969 dlog_verbose("SRI was NOT delayed. vcpu: %u!\n",
2970 vcpu_index(current));
2971 plat_ffa_sri_trigger_not_delayed(current->cpu);
2972 } else {
2973 plat_ffa_sri_state_set(DELAYED);
2974 }
J-Alvesaa79c012021-07-09 14:29:45 +01002975
J-Alves7461ef22021-10-18 17:21:33 +01002976 /*
2977 * If notifications set are per-vCPU and the receiver is SP, the
2978 * Notifications Pending Interrupt can be injected now.
2979 * If not, it should be injected when the scheduler gives it CPU cycles
2980 * in a specific vCPU.
2981 */
2982 if (is_per_vcpu && vm_id_is_current_world(receiver_vm_id)) {
2983 struct vcpu *target_vcpu =
2984 vm_get_vcpu(receiver_locked.vm, vcpu_id);
2985
2986 dlog_verbose("Per-vCPU notification, pending NPI.\n");
J-Alves6f72ca82021-11-01 12:34:58 +00002987 internal_interrupt_inject(target_vcpu,
2988 HF_NOTIFICATION_PENDING_INTID,
2989 current, NULL);
J-Alves7461ef22021-10-18 17:21:33 +01002990 }
2991
J-Alves13394022021-06-30 13:48:49 +01002992 ret = (struct ffa_value){.func = FFA_SUCCESS_32};
J-Alvesaa79c012021-07-09 14:29:45 +01002993out:
2994 vm_unlock(&receiver_locked);
2995
2996 return ret;
2997}
2998
2999static struct ffa_value api_ffa_notification_get_success_return(
3000 ffa_notifications_bitmap_t from_sp, ffa_notifications_bitmap_t from_vm,
3001 ffa_notifications_bitmap_t from_framework)
3002{
3003 return (struct ffa_value){
3004 .func = FFA_SUCCESS_32,
3005 .arg1 = 0U,
3006 .arg2 = (uint32_t)from_sp,
3007 .arg3 = (uint32_t)(from_sp >> 32),
3008 .arg4 = (uint32_t)from_vm,
3009 .arg5 = (uint32_t)(from_vm >> 32),
3010 .arg6 = (uint32_t)from_framework,
3011 .arg7 = (uint32_t)(from_framework >> 32),
3012 };
3013}
3014
3015struct ffa_value api_ffa_notification_get(ffa_vm_id_t receiver_vm_id,
3016 ffa_vcpu_index_t vcpu_id,
3017 uint32_t flags, struct vcpu *current)
3018{
3019 /* TODO: get framework notifications, when these are supported. */
3020 ffa_notifications_bitmap_t sp_notifications = 0;
3021 ffa_notifications_bitmap_t vm_notifications = 0;
3022 struct vm_locked receiver_locked;
3023 struct ffa_value ret;
3024
3025 /*
3026 * Following check should capture wrong uses of the interface, depending
3027 * on whether Hafnium is SPMC or hypervisor.
3028 * On the rest of the function it is assumed this condition is met.
3029 */
3030 if (!plat_ffa_is_notification_get_valid(current, receiver_vm_id)) {
3031 dlog_verbose("Invalid use of notifications get interface.\n");
3032 return ffa_error(FFA_INVALID_PARAMETERS);
3033 }
3034
3035 /*
3036 * This check assumes receiver is the current VM, and has been enforced
3037 * by `plat_ffa_is_notifications_get_valid`.
3038 */
3039 receiver_locked = plat_ffa_vm_find_locked(receiver_vm_id);
3040
3041 /*
3042 * `plat_ffa_is_notifications_get_valid` ensures following is never
3043 * true.
3044 */
3045 CHECK(receiver_locked.vm != NULL);
3046
3047 if (receiver_locked.vm->vcpu_count <= vcpu_id ||
3048 (receiver_locked.vm->vcpu_count != 1 &&
3049 cpu_index(current->cpu) != vcpu_id)) {
3050 dlog_verbose("Invalid VCPU ID!\n");
3051 ret = ffa_error(FFA_INVALID_PARAMETERS);
3052 goto out;
3053 }
3054
3055 if ((flags & FFA_NOTIFICATION_FLAG_BITMAP_SP) != 0U) {
J-Alves98ff9562021-09-09 14:39:41 +01003056 if (!plat_ffa_notifications_get_from_sp(
3057 receiver_locked, vcpu_id, &sp_notifications,
3058 &ret)) {
3059 dlog_verbose("Failed to get notifications from sps.");
3060 goto out;
3061 }
J-Alvesaa79c012021-07-09 14:29:45 +01003062 }
3063
3064 if ((flags & FFA_NOTIFICATION_FLAG_BITMAP_VM) != 0U) {
3065 vm_notifications = vm_notifications_get_pending_and_clear(
3066 receiver_locked, true, vcpu_id);
3067 }
3068
3069 ret = api_ffa_notification_get_success_return(sp_notifications,
3070 vm_notifications, 0);
3071
J-Alvesfe23ebe2021-10-13 16:07:07 +01003072 /*
3073 * If there are no more pending notifications, change `sri_state` to
3074 * handled.
3075 */
3076 if (vm_is_notifications_pending_count_zero()) {
3077 plat_ffa_sri_state_set(HANDLED);
3078 }
3079
J-Alvesaa79c012021-07-09 14:29:45 +01003080out:
3081 vm_unlock(&receiver_locked);
3082
3083 return ret;
3084}
J-Alvesc8e8a222021-06-08 17:33:52 +01003085
3086/**
3087 * Prepares successful return for FFA_NOTIFICATION_INFO_GET, as described by
3088 * the section 17.7.1 of the FF-A v1.1 Beta0 specification.
3089 */
3090static struct ffa_value api_ffa_notification_info_get_success_return(
3091 const uint16_t *ids, uint32_t ids_count, const uint32_t *lists_sizes,
J-Alvesfe23ebe2021-10-13 16:07:07 +01003092 uint32_t lists_count)
J-Alvesc8e8a222021-06-08 17:33:52 +01003093{
3094 struct ffa_value ret = (struct ffa_value){.func = FFA_SUCCESS_64};
3095
3096 /*
3097 * Copying content of ids into ret structure. Use 5 registers (x3-x7) to
3098 * hold the list of ids.
3099 */
3100 memcpy_s(&ret.arg3,
3101 sizeof(ret.arg3) * FFA_NOTIFICATIONS_INFO_GET_REGS_RET, ids,
3102 sizeof(ids[0]) * ids_count);
3103
3104 /*
3105 * According to the spec x2 should have:
3106 * - Bit flagging if there are more notifications pending;
3107 * - The total number of elements (i.e. total list size);
3108 * - The number of VCPU IDs within each VM specific list.
3109 */
J-Alvesfe23ebe2021-10-13 16:07:07 +01003110 ret.arg2 = vm_notifications_pending_not_retrieved_by_scheduler()
3111 ? FFA_NOTIFICATIONS_INFO_GET_FLAG_MORE_PENDING
3112 : 0;
J-Alvesc8e8a222021-06-08 17:33:52 +01003113
3114 ret.arg2 |= (lists_count & FFA_NOTIFICATIONS_LISTS_COUNT_MASK)
3115 << FFA_NOTIFICATIONS_LISTS_COUNT_SHIFT;
3116
3117 for (unsigned int i = 0; i < lists_count; i++) {
3118 ret.arg2 |= (lists_sizes[i] & FFA_NOTIFICATIONS_LIST_SIZE_MASK)
3119 << FFA_NOTIFICATIONS_LIST_SHIFT(i + 1);
3120 }
3121
3122 return ret;
3123}
3124
3125struct ffa_value api_ffa_notification_info_get(struct vcpu *current)
3126{
3127 /*
3128 * Following set of variables should be populated with the return info.
3129 * At a successfull handling of this interface, they should be used
3130 * to populate the 'ret' structure in accordance to the table 17.29
3131 * of the FF-A v1.1 Beta0 specification.
3132 */
3133 uint16_t ids[FFA_NOTIFICATIONS_INFO_GET_MAX_IDS];
3134 uint32_t lists_sizes[FFA_NOTIFICATIONS_INFO_GET_MAX_IDS] = {0};
3135 uint32_t lists_count = 0;
3136 uint32_t ids_count = 0;
3137 bool list_is_full = false;
J-Alves13394022021-06-30 13:48:49 +01003138 struct ffa_value result;
J-Alvesc8e8a222021-06-08 17:33:52 +01003139
3140 /*
3141 * This interface can only be called at NS virtual/physical FF-A
3142 * instance by the endpoint implementing the primary scheduler and the
3143 * Hypervisor/OS kernel.
3144 * In the SPM, following check passes if call has been forwarded from
3145 * the hypervisor.
3146 */
3147 if (current->vm->id != HF_PRIMARY_VM_ID) {
3148 dlog_verbose(
3149 "Only the receiver's scheduler can use this "
3150 "interface\n");
3151 return ffa_error(FFA_NOT_SUPPORTED);
3152 }
3153
J-Alvesca058c22021-09-10 14:02:07 +01003154 /*
3155 * Forward call to the other world, and fill the arrays used to assemble
3156 * return.
3157 */
3158 plat_ffa_notification_info_get_forward(
3159 ids, &ids_count, lists_sizes, &lists_count,
3160 FFA_NOTIFICATIONS_INFO_GET_MAX_IDS);
3161
3162 list_is_full = ids_count == FFA_NOTIFICATIONS_INFO_GET_MAX_IDS;
3163
J-Alvesc8e8a222021-06-08 17:33:52 +01003164 /* Get notifications' info from this world */
3165 for (ffa_vm_count_t index = 0; index < vm_get_count() && !list_is_full;
3166 ++index) {
3167 struct vm_locked vm_locked = vm_lock(vm_find_index(index));
3168
3169 list_is_full = vm_notifications_info_get(
3170 vm_locked, ids, &ids_count, lists_sizes, &lists_count,
3171 FFA_NOTIFICATIONS_INFO_GET_MAX_IDS);
3172
3173 vm_unlock(&vm_locked);
3174 }
3175
3176 if (!list_is_full) {
3177 /* Grab notifications info from other world */
J-Alvesfe23ebe2021-10-13 16:07:07 +01003178 plat_ffa_vm_notifications_info_get(
J-Alvesc8e8a222021-06-08 17:33:52 +01003179 ids, &ids_count, lists_sizes, &lists_count,
3180 FFA_NOTIFICATIONS_INFO_GET_MAX_IDS);
3181 }
3182
3183 if (ids_count == 0) {
J-Alvesca058c22021-09-10 14:02:07 +01003184 dlog_verbose(
3185 "Notification info get has no data to retrieve.\n");
J-Alves13394022021-06-30 13:48:49 +01003186 result = ffa_error(FFA_NO_DATA);
3187 } else {
3188 result = api_ffa_notification_info_get_success_return(
J-Alvesfe23ebe2021-10-13 16:07:07 +01003189 ids, ids_count, lists_sizes, lists_count);
J-Alvesc8e8a222021-06-08 17:33:52 +01003190 }
3191
J-Alvesfe23ebe2021-10-13 16:07:07 +01003192 plat_ffa_sri_state_set(HANDLED);
3193
J-Alves13394022021-06-30 13:48:49 +01003194 return result;
J-Alvesc8e8a222021-06-08 17:33:52 +01003195}
Raghu Krishnamurthyea6d25f2021-09-14 15:27:06 -07003196
3197struct ffa_value api_ffa_mem_perm_get(vaddr_t base_addr, struct vcpu *current)
3198{
3199 struct vm_locked vm_locked;
3200 struct ffa_value ret = ffa_error(FFA_INVALID_PARAMETERS);
3201 bool mode_ret = false;
3202 uint32_t mode = 0;
3203
3204 if (!plat_ffa_is_mem_perm_get_valid(current)) {
3205 return ffa_error(FFA_NOT_SUPPORTED);
3206 }
3207
3208 if (!(current->vm->el0_partition)) {
3209 return ffa_error(FFA_DENIED);
3210 }
3211
3212 vm_locked = vm_lock(current->vm);
3213
3214 /*
3215 * mm_get_mode is used to check if the given base_addr page is already
3216 * mapped. If the page is unmapped, return error. If the page is mapped
3217 * appropriate attributes are returned to the caller. Note that
3218 * mm_get_mode returns true if the address is in the valid VA range as
3219 * supported by the architecture and MMU configurations, as opposed to
3220 * whether a page is mapped or not. For a page to be known as mapped,
3221 * the API must return true AND the returned mode must not have
3222 * MM_MODE_INVALID set.
3223 */
3224 mode_ret = mm_get_mode(&vm_locked.vm->ptable, base_addr,
3225 va_add(base_addr, PAGE_SIZE), &mode);
3226 if (!mode_ret || (mode & MM_MODE_INVALID)) {
3227 ret = ffa_error(FFA_INVALID_PARAMETERS);
3228 goto out;
3229 }
3230
3231 /* No memory should be marked RWX */
3232 CHECK((mode & (MM_MODE_R | MM_MODE_W | MM_MODE_X)) !=
3233 (MM_MODE_R | MM_MODE_W | MM_MODE_X));
3234
3235 /*
3236 * S-EL0 partitions are expected to have all their pages marked as
3237 * non-global.
3238 */
3239 CHECK((mode & (MM_MODE_NG | MM_MODE_USER)) ==
3240 (MM_MODE_NG | MM_MODE_USER));
3241
3242 if (mode & MM_MODE_W) {
3243 /* No memory should be writeable but not readable. */
3244 CHECK(mode & MM_MODE_R);
3245 ret = (struct ffa_value){.func = FFA_SUCCESS_32,
3246 .arg2 = (uint32_t)(FFA_MEM_PERM_RW)};
3247 } else if (mode & MM_MODE_R) {
3248 ret = (struct ffa_value){.func = FFA_SUCCESS_32,
3249 .arg2 = (uint32_t)(FFA_MEM_PERM_RX)};
3250 if (!(mode & MM_MODE_X)) {
3251 ret.arg2 = (uint32_t)(FFA_MEM_PERM_RO);
3252 }
3253 }
3254out:
3255 vm_unlock(&vm_locked);
3256 return ret;
3257}
3258
3259struct ffa_value api_ffa_mem_perm_set(vaddr_t base_addr, uint32_t page_count,
3260 uint32_t mem_perm, struct vcpu *current)
3261{
3262 struct vm_locked vm_locked;
3263 struct ffa_value ret;
3264 bool mode_ret = false;
3265 uint32_t original_mode;
3266 uint32_t new_mode;
3267 struct mpool local_page_pool;
3268
3269 if (!plat_ffa_is_mem_perm_set_valid(current)) {
3270 return ffa_error(FFA_NOT_SUPPORTED);
3271 }
3272
3273 if (!(current->vm->el0_partition)) {
3274 return ffa_error(FFA_DENIED);
3275 }
3276
3277 if (!is_aligned(va_addr(base_addr), PAGE_SIZE)) {
3278 return ffa_error(FFA_INVALID_PARAMETERS);
3279 }
3280
3281 if ((mem_perm != FFA_MEM_PERM_RW) && (mem_perm != FFA_MEM_PERM_RO) &&
3282 (mem_perm != FFA_MEM_PERM_RX)) {
3283 return ffa_error(FFA_INVALID_PARAMETERS);
3284 }
3285
3286 /*
3287 * Create a local pool so any freed memory can't be used by another
3288 * thread. This is to ensure the original mapping can be restored if any
3289 * stage of the process fails.
3290 */
3291 mpool_init_with_fallback(&local_page_pool, &api_page_pool);
3292
3293 vm_locked = vm_lock(current->vm);
3294
3295 /*
3296 * All regions accessible by the partition are mapped during boot. If we
3297 * cannot get a successful translation for the page range, the request
3298 * to change permissions is rejected.
3299 * mm_get_mode is used to check if the given address range is already
3300 * mapped. If the range is unmapped, return error. If the range is
3301 * mapped appropriate attributes are returned to the caller. Note that
3302 * mm_get_mode returns true if the address is in the valid VA range as
3303 * supported by the architecture and MMU configurations, as opposed to
3304 * whether a page is mapped or not. For a page to be known as mapped,
3305 * the API must return true AND the returned mode must not have
3306 * MM_MODE_INVALID set.
3307 */
3308
3309 mode_ret = mm_get_mode(&vm_locked.vm->ptable, base_addr,
3310 va_add(base_addr, page_count * PAGE_SIZE),
3311 &original_mode);
3312 if (!mode_ret || (original_mode & MM_MODE_INVALID)) {
3313 ret = ffa_error(FFA_INVALID_PARAMETERS);
3314 goto out;
3315 }
3316
3317 /* Device memory cannot be marked as executable */
3318 if ((original_mode & MM_MODE_D) && (mem_perm == FFA_MEM_PERM_RX)) {
3319 ret = ffa_error(FFA_INVALID_PARAMETERS);
3320 goto out;
3321 }
3322
3323 new_mode = MM_MODE_USER | MM_MODE_NG;
3324
3325 if (mem_perm == FFA_MEM_PERM_RW) {
3326 new_mode |= MM_MODE_R | MM_MODE_W;
3327 } else if (mem_perm == FFA_MEM_PERM_RX) {
3328 new_mode |= MM_MODE_R | MM_MODE_X;
3329 } else if (mem_perm == FFA_MEM_PERM_RO) {
3330 new_mode |= MM_MODE_R;
3331 }
3332
3333 /*
3334 * Safe to re-map memory, since we know the requested permissions are
3335 * valid, and the memory requested to be re-mapped is also valid.
3336 */
3337 if (!mm_identity_prepare(
3338 &vm_locked.vm->ptable, pa_from_va(base_addr),
3339 pa_from_va(va_add(base_addr, page_count * PAGE_SIZE)),
3340 new_mode, &local_page_pool)) {
3341 /*
3342 * Defrag the table into the local page pool.
3343 * mm_identity_prepare could have allocated or freed pages to
3344 * split blocks or tables etc.
3345 */
3346 mm_stage1_defrag(&vm_locked.vm->ptable, &local_page_pool);
3347
3348 /*
3349 * Guaranteed to succeed mapping with old mode since the mapping
3350 * with old mode already existed and we have a local page pool
3351 * that should have sufficient memory to go back to the original
3352 * state.
3353 */
3354 CHECK(mm_identity_prepare(
3355 &vm_locked.vm->ptable, pa_from_va(base_addr),
3356 pa_from_va(va_add(base_addr, page_count * PAGE_SIZE)),
3357 original_mode, &local_page_pool));
3358 mm_identity_commit(
3359 &vm_locked.vm->ptable, pa_from_va(base_addr),
3360 pa_from_va(va_add(base_addr, page_count * PAGE_SIZE)),
3361 original_mode, &local_page_pool);
3362
3363 mm_stage1_defrag(&vm_locked.vm->ptable, &api_page_pool);
3364 ret = ffa_error(FFA_NO_MEMORY);
3365 goto out;
3366 }
3367
3368 mm_identity_commit(
3369 &vm_locked.vm->ptable, pa_from_va(base_addr),
3370 pa_from_va(va_add(base_addr, page_count * PAGE_SIZE)), new_mode,
3371 &local_page_pool);
3372
3373 ret = (struct ffa_value){.func = FFA_SUCCESS_32};
3374
3375out:
3376 mpool_fini(&local_page_pool);
3377 vm_unlock(&vm_locked);
3378
3379 return ret;
3380}