xref: /rk3399_ARM-atf/services/spd/opteed/opteed_main.c (revision 8d7c80fa4c5ab17e25d6d82ff0b1e67795e903fb)
1aa5da461SJens Wiklander /*
205c69cf7SJeffrey Kardatzke  * Copyright (c) 2013-2023, ARM Limited and Contributors. All rights reserved.
3aa5da461SJens Wiklander  *
482cb2c1aSdp-arm  * SPDX-License-Identifier: BSD-3-Clause
5aa5da461SJens Wiklander  */
6aa5da461SJens Wiklander 
7aa5da461SJens Wiklander 
8aa5da461SJens Wiklander /*******************************************************************************
9aa5da461SJens Wiklander  * This is the Secure Payload Dispatcher (SPD). The dispatcher is meant to be a
10aa5da461SJens Wiklander  * plug-in component to the Secure Monitor, registered as a runtime service. The
11aa5da461SJens Wiklander  * SPD is expected to be a functional extension of the Secure Payload (SP) that
12aa5da461SJens Wiklander  * executes in Secure EL1. The Secure Monitor will delegate all SMCs targeting
13aa5da461SJens Wiklander  * the Trusted OS/Applications range to the dispatcher. The SPD will either
14aa5da461SJens Wiklander  * handle the request locally or delegate it to the Secure Payload. It is also
15aa5da461SJens Wiklander  * responsible for initialising and maintaining communication with the SP.
16aa5da461SJens Wiklander  ******************************************************************************/
17aa5da461SJens Wiklander #include <assert.h>
18aa5da461SJens Wiklander #include <errno.h>
1905c69cf7SJeffrey Kardatzke #include <inttypes.h>
20aa5da461SJens Wiklander #include <stddef.h>
2109d40e0eSAntonio Nino Diaz 
2209d40e0eSAntonio Nino Diaz #include <arch_helpers.h>
2309d40e0eSAntonio Nino Diaz #include <bl31/bl31.h>
2409d40e0eSAntonio Nino Diaz #include <common/bl_common.h>
2509d40e0eSAntonio Nino Diaz #include <common/debug.h>
2609d40e0eSAntonio Nino Diaz #include <common/runtime_svc.h>
2709d40e0eSAntonio Nino Diaz #include <lib/el3_runtime/context_mgmt.h>
2805c69cf7SJeffrey Kardatzke #include <lib/optee_utils.h>
2905c69cf7SJeffrey Kardatzke #include <lib/xlat_tables/xlat_tables_v2.h>
3009d40e0eSAntonio Nino Diaz #include <plat/common/platform.h>
3109d40e0eSAntonio Nino Diaz #include <tools_share/uuid.h>
3209d40e0eSAntonio Nino Diaz 
33aa5da461SJens Wiklander #include "opteed_private.h"
34aa5da461SJens Wiklander #include "teesmc_opteed.h"
352a4b4b71SIsla Mitchell 
36aa5da461SJens Wiklander /*******************************************************************************
37aa5da461SJens Wiklander  * Address of the entrypoint vector table in OPTEE. It is
38aa5da461SJens Wiklander  * initialised once on the primary core after a cold boot.
39aa5da461SJens Wiklander  ******************************************************************************/
406c77e749SSandrine Bailleux struct optee_vectors *optee_vector_table;
41aa5da461SJens Wiklander 
42aa5da461SJens Wiklander /*******************************************************************************
43aa5da461SJens Wiklander  * Array to keep track of per-cpu OPTEE state
44aa5da461SJens Wiklander  ******************************************************************************/
45aa5da461SJens Wiklander optee_context_t opteed_sp_context[OPTEED_CORE_COUNT];
46aa5da461SJens Wiklander uint32_t opteed_rw;
47aa5da461SJens Wiklander 
4805c69cf7SJeffrey Kardatzke #if OPTEE_ALLOW_SMC_LOAD
4905c69cf7SJeffrey Kardatzke static bool opteed_allow_load;
5005c69cf7SJeffrey Kardatzke #else
51aa5da461SJens Wiklander static int32_t opteed_init(void);
5205c69cf7SJeffrey Kardatzke #endif
5305c69cf7SJeffrey Kardatzke 
5405c69cf7SJeffrey Kardatzke uint64_t dual32to64(uint32_t high, uint32_t low)
5505c69cf7SJeffrey Kardatzke {
5605c69cf7SJeffrey Kardatzke 	return ((uint64_t)high << 32) | low;
5705c69cf7SJeffrey Kardatzke }
58aa5da461SJens Wiklander 
59aa5da461SJens Wiklander /*******************************************************************************
60aa5da461SJens Wiklander  * This function is the handler registered for S-EL1 interrupts by the
61aa5da461SJens Wiklander  * OPTEED. It validates the interrupt and upon success arranges entry into
62aa5da461SJens Wiklander  * the OPTEE at 'optee_fiq_entry()' for handling the interrupt.
63aa5da461SJens Wiklander  ******************************************************************************/
64aa5da461SJens Wiklander static uint64_t opteed_sel1_interrupt_handler(uint32_t id,
65aa5da461SJens Wiklander 					    uint32_t flags,
66aa5da461SJens Wiklander 					    void *handle,
67aa5da461SJens Wiklander 					    void *cookie)
68aa5da461SJens Wiklander {
69aa5da461SJens Wiklander 	uint32_t linear_id;
70aa5da461SJens Wiklander 	optee_context_t *optee_ctx;
71aa5da461SJens Wiklander 
72aa5da461SJens Wiklander 	/* Check the security state when the exception was generated */
73aa5da461SJens Wiklander 	assert(get_interrupt_src_ss(flags) == NON_SECURE);
74aa5da461SJens Wiklander 
75aa5da461SJens Wiklander 	/* Sanity check the pointer to this cpu's context */
76aa5da461SJens Wiklander 	assert(handle == cm_get_context(NON_SECURE));
77aa5da461SJens Wiklander 
78aa5da461SJens Wiklander 	/* Save the non-secure context before entering the OPTEE */
79aa5da461SJens Wiklander 	cm_el1_sysregs_context_save(NON_SECURE);
80aa5da461SJens Wiklander 
81aa5da461SJens Wiklander 	/* Get a reference to this cpu's OPTEE context */
82fd650ff6SSoby Mathew 	linear_id = plat_my_core_pos();
83aa5da461SJens Wiklander 	optee_ctx = &opteed_sp_context[linear_id];
84aa5da461SJens Wiklander 	assert(&optee_ctx->cpu_ctx == cm_get_context(SECURE));
85aa5da461SJens Wiklander 
86776ff52aSDaniel Boulby 	cm_set_elr_el3(SECURE, (uint64_t)&optee_vector_table->fiq_entry);
87aa5da461SJens Wiklander 	cm_el1_sysregs_context_restore(SECURE);
88aa5da461SJens Wiklander 	cm_set_next_eret_context(SECURE);
89aa5da461SJens Wiklander 
90aa5da461SJens Wiklander 	/*
91aa5da461SJens Wiklander 	 * Tell the OPTEE that it has to handle an FIQ (synchronously).
92aa5da461SJens Wiklander 	 * Also the instruction in normal world where the interrupt was
93aa5da461SJens Wiklander 	 * generated is passed for debugging purposes. It is safe to
94aa5da461SJens Wiklander 	 * retrieve this address from ELR_EL3 as the secure context will
95aa5da461SJens Wiklander 	 * not take effect until el3_exit().
96aa5da461SJens Wiklander 	 */
97aa5da461SJens Wiklander 	SMC_RET1(&optee_ctx->cpu_ctx, read_elr_el3());
98aa5da461SJens Wiklander }
99aa5da461SJens Wiklander 
100aa5da461SJens Wiklander /*******************************************************************************
101aa5da461SJens Wiklander  * OPTEE Dispatcher setup. The OPTEED finds out the OPTEE entrypoint and type
102aa5da461SJens Wiklander  * (aarch32/aarch64) if not already known and initialises the context for entry
103aa5da461SJens Wiklander  * into OPTEE for its initialization.
104aa5da461SJens Wiklander  ******************************************************************************/
105724fd958SMasahiro Yamada static int32_t opteed_setup(void)
106aa5da461SJens Wiklander {
10705c69cf7SJeffrey Kardatzke #if OPTEE_ALLOW_SMC_LOAD
10805c69cf7SJeffrey Kardatzke 	opteed_allow_load = true;
10905c69cf7SJeffrey Kardatzke 	INFO("Delaying OP-TEE setup until we receive an SMC call to load it\n");
11005c69cf7SJeffrey Kardatzke 	return 0;
11105c69cf7SJeffrey Kardatzke #else
112aa5da461SJens Wiklander 	entry_point_info_t *optee_ep_info;
113aa5da461SJens Wiklander 	uint32_t linear_id;
114d59a6accSEdison Ai 	uint64_t opteed_pageable_part;
115d59a6accSEdison Ai 	uint64_t opteed_mem_limit;
11619911aa6SJens Wiklander 	uint64_t dt_addr;
117aa5da461SJens Wiklander 
118fd650ff6SSoby Mathew 	linear_id = plat_my_core_pos();
119aa5da461SJens Wiklander 
120aa5da461SJens Wiklander 	/*
121aa5da461SJens Wiklander 	 * Get information about the Secure Payload (BL32) image. Its
122aa5da461SJens Wiklander 	 * absence is a critical failure.  TODO: Add support to
123aa5da461SJens Wiklander 	 * conditionally include the SPD service
124aa5da461SJens Wiklander 	 */
125aa5da461SJens Wiklander 	optee_ep_info = bl31_plat_get_next_image_ep_info(SECURE);
126aa5da461SJens Wiklander 	if (!optee_ep_info) {
127aa5da461SJens Wiklander 		WARN("No OPTEE provided by BL2 boot loader, Booting device"
128aa5da461SJens Wiklander 			" without OPTEE initialization. SMC`s destined for OPTEE"
129aa5da461SJens Wiklander 			" will return SMC_UNK\n");
130aa5da461SJens Wiklander 		return 1;
131aa5da461SJens Wiklander 	}
132aa5da461SJens Wiklander 
133aa5da461SJens Wiklander 	/*
134aa5da461SJens Wiklander 	 * If there's no valid entry point for SP, we return a non-zero value
135aa5da461SJens Wiklander 	 * signalling failure initializing the service. We bail out without
136aa5da461SJens Wiklander 	 * registering any handlers
137aa5da461SJens Wiklander 	 */
138aa5da461SJens Wiklander 	if (!optee_ep_info->pc)
139aa5da461SJens Wiklander 		return 1;
140aa5da461SJens Wiklander 
141d59a6accSEdison Ai 	opteed_rw = optee_ep_info->args.arg0;
142d59a6accSEdison Ai 	opteed_pageable_part = optee_ep_info->args.arg1;
143d59a6accSEdison Ai 	opteed_mem_limit = optee_ep_info->args.arg2;
14419911aa6SJens Wiklander 	dt_addr = optee_ep_info->args.arg3;
145d59a6accSEdison Ai 
146aa5da461SJens Wiklander 	opteed_init_optee_ep_state(optee_ep_info,
147aa5da461SJens Wiklander 				opteed_rw,
148aa5da461SJens Wiklander 				optee_ep_info->pc,
149d59a6accSEdison Ai 				opteed_pageable_part,
150d59a6accSEdison Ai 				opteed_mem_limit,
15119911aa6SJens Wiklander 				dt_addr,
152aa5da461SJens Wiklander 				&opteed_sp_context[linear_id]);
153aa5da461SJens Wiklander 
154aa5da461SJens Wiklander 	/*
155aa5da461SJens Wiklander 	 * All OPTEED initialization done. Now register our init function with
156aa5da461SJens Wiklander 	 * BL31 for deferred invocation
157aa5da461SJens Wiklander 	 */
158aa5da461SJens Wiklander 	bl31_register_bl32_init(&opteed_init);
159aa5da461SJens Wiklander 
160aa5da461SJens Wiklander 	return 0;
16105c69cf7SJeffrey Kardatzke #endif  /* OPTEE_ALLOW_SMC_LOAD */
162aa5da461SJens Wiklander }
163aa5da461SJens Wiklander 
164aa5da461SJens Wiklander /*******************************************************************************
165aa5da461SJens Wiklander  * This function passes control to the OPTEE image (BL32) for the first time
166aa5da461SJens Wiklander  * on the primary cpu after a cold boot. It assumes that a valid secure
167aa5da461SJens Wiklander  * context has already been created by opteed_setup() which can be directly
168aa5da461SJens Wiklander  * used.  It also assumes that a valid non-secure context has been
169aa5da461SJens Wiklander  * initialised by PSCI so it does not need to save and restore any
170aa5da461SJens Wiklander  * non-secure state. This function performs a synchronous entry into
171*8d7c80faSJeffrey Kardatzke  * OPTEE. OPTEE passes control back to this routine through a SMC. This returns
172*8d7c80faSJeffrey Kardatzke  * a non-zero value on success and zero on failure.
173aa5da461SJens Wiklander  ******************************************************************************/
17405c69cf7SJeffrey Kardatzke static int32_t
17505c69cf7SJeffrey Kardatzke opteed_init_with_entry_point(entry_point_info_t *optee_entry_point)
176aa5da461SJens Wiklander {
177fd650ff6SSoby Mathew 	uint32_t linear_id = plat_my_core_pos();
178aa5da461SJens Wiklander 	optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
179aa5da461SJens Wiklander 	uint64_t rc;
180aa5da461SJens Wiklander 	assert(optee_entry_point);
181aa5da461SJens Wiklander 
182fd650ff6SSoby Mathew 	cm_init_my_context(optee_entry_point);
183aa5da461SJens Wiklander 
184aa5da461SJens Wiklander 	/*
185aa5da461SJens Wiklander 	 * Arrange for an entry into OPTEE. It will be returned via
186aa5da461SJens Wiklander 	 * OPTEE_ENTRY_DONE case
187aa5da461SJens Wiklander 	 */
188aa5da461SJens Wiklander 	rc = opteed_synchronous_sp_entry(optee_ctx);
189aa5da461SJens Wiklander 	assert(rc != 0);
190aa5da461SJens Wiklander 
191aa5da461SJens Wiklander 	return rc;
192aa5da461SJens Wiklander }
193aa5da461SJens Wiklander 
19405c69cf7SJeffrey Kardatzke #if !OPTEE_ALLOW_SMC_LOAD
19505c69cf7SJeffrey Kardatzke static int32_t opteed_init(void)
19605c69cf7SJeffrey Kardatzke {
19705c69cf7SJeffrey Kardatzke 	entry_point_info_t *optee_entry_point;
19805c69cf7SJeffrey Kardatzke 	/*
19905c69cf7SJeffrey Kardatzke 	 * Get information about the OP-TEE (BL32) image. Its
20005c69cf7SJeffrey Kardatzke 	 * absence is a critical failure.
20105c69cf7SJeffrey Kardatzke 	 */
20205c69cf7SJeffrey Kardatzke 	optee_entry_point = bl31_plat_get_next_image_ep_info(SECURE);
20305c69cf7SJeffrey Kardatzke 	return opteed_init_with_entry_point(optee_entry_point);
20405c69cf7SJeffrey Kardatzke }
20505c69cf7SJeffrey Kardatzke #endif  /* !OPTEE_ALLOW_SMC_LOAD */
20605c69cf7SJeffrey Kardatzke 
20705c69cf7SJeffrey Kardatzke #if OPTEE_ALLOW_SMC_LOAD
20805c69cf7SJeffrey Kardatzke /*******************************************************************************
20905c69cf7SJeffrey Kardatzke  * This function is responsible for handling the SMC that loads the OP-TEE
21005c69cf7SJeffrey Kardatzke  * binary image via a non-secure SMC call. It takes the size and physical
21105c69cf7SJeffrey Kardatzke  * address of the payload as parameters.
21205c69cf7SJeffrey Kardatzke  ******************************************************************************/
21305c69cf7SJeffrey Kardatzke static int32_t opteed_handle_smc_load(uint64_t data_size, uint32_t data_pa)
21405c69cf7SJeffrey Kardatzke {
21505c69cf7SJeffrey Kardatzke 	uintptr_t data_va = data_pa;
21605c69cf7SJeffrey Kardatzke 	uint64_t mapped_data_pa;
21705c69cf7SJeffrey Kardatzke 	uintptr_t mapped_data_va;
21805c69cf7SJeffrey Kardatzke 	uint64_t data_map_size;
21905c69cf7SJeffrey Kardatzke 	int32_t rc;
22005c69cf7SJeffrey Kardatzke 	optee_header_t *image_header;
22105c69cf7SJeffrey Kardatzke 	uint8_t *image_ptr;
22205c69cf7SJeffrey Kardatzke 	uint64_t target_pa;
22305c69cf7SJeffrey Kardatzke 	uint64_t target_end_pa;
22405c69cf7SJeffrey Kardatzke 	uint64_t image_pa;
22505c69cf7SJeffrey Kardatzke 	uintptr_t image_va;
22605c69cf7SJeffrey Kardatzke 	optee_image_t *curr_image;
22705c69cf7SJeffrey Kardatzke 	uintptr_t target_va;
22805c69cf7SJeffrey Kardatzke 	uint64_t target_size;
22905c69cf7SJeffrey Kardatzke 	entry_point_info_t optee_ep_info;
23005c69cf7SJeffrey Kardatzke 	uint32_t linear_id = plat_my_core_pos();
23105c69cf7SJeffrey Kardatzke 
23205c69cf7SJeffrey Kardatzke 	mapped_data_pa = page_align(data_pa, DOWN);
23305c69cf7SJeffrey Kardatzke 	mapped_data_va = mapped_data_pa;
23405c69cf7SJeffrey Kardatzke 	data_map_size = page_align(data_size + (mapped_data_pa - data_pa), UP);
23505c69cf7SJeffrey Kardatzke 
236*8d7c80faSJeffrey Kardatzke 	/*
237*8d7c80faSJeffrey Kardatzke 	 * We do not validate the passed in address because we are trusting the
238*8d7c80faSJeffrey Kardatzke 	 * non-secure world at this point still.
239*8d7c80faSJeffrey Kardatzke 	 */
24005c69cf7SJeffrey Kardatzke 	rc = mmap_add_dynamic_region(mapped_data_pa, mapped_data_va,
24105c69cf7SJeffrey Kardatzke 				     data_map_size, MT_MEMORY | MT_RO | MT_NS);
24205c69cf7SJeffrey Kardatzke 	if (rc != 0) {
24305c69cf7SJeffrey Kardatzke 		return rc;
24405c69cf7SJeffrey Kardatzke 	}
24505c69cf7SJeffrey Kardatzke 
24605c69cf7SJeffrey Kardatzke 	image_header = (optee_header_t *)data_va;
24705c69cf7SJeffrey Kardatzke 	if (image_header->magic != TEE_MAGIC_NUM_OPTEE ||
24805c69cf7SJeffrey Kardatzke 	    image_header->version != 2 || image_header->nb_images != 1) {
24905c69cf7SJeffrey Kardatzke 		mmap_remove_dynamic_region(mapped_data_va, data_map_size);
25005c69cf7SJeffrey Kardatzke 		return -EINVAL;
25105c69cf7SJeffrey Kardatzke 	}
25205c69cf7SJeffrey Kardatzke 
25305c69cf7SJeffrey Kardatzke 	image_ptr = (uint8_t *)data_va + sizeof(optee_header_t) +
25405c69cf7SJeffrey Kardatzke 			sizeof(optee_image_t);
25505c69cf7SJeffrey Kardatzke 	if (image_header->arch == 1) {
25605c69cf7SJeffrey Kardatzke 		opteed_rw = OPTEE_AARCH64;
25705c69cf7SJeffrey Kardatzke 	} else {
25805c69cf7SJeffrey Kardatzke 		opteed_rw = OPTEE_AARCH32;
25905c69cf7SJeffrey Kardatzke 	}
26005c69cf7SJeffrey Kardatzke 
26105c69cf7SJeffrey Kardatzke 	curr_image = &image_header->optee_image_list[0];
26205c69cf7SJeffrey Kardatzke 	image_pa = dual32to64(curr_image->load_addr_hi,
26305c69cf7SJeffrey Kardatzke 			      curr_image->load_addr_lo);
26405c69cf7SJeffrey Kardatzke 	image_va = image_pa;
26505c69cf7SJeffrey Kardatzke 	target_end_pa = image_pa + curr_image->size;
26605c69cf7SJeffrey Kardatzke 
26705c69cf7SJeffrey Kardatzke 	/* Now also map the memory we want to copy it to. */
26805c69cf7SJeffrey Kardatzke 	target_pa = page_align(image_pa, DOWN);
26905c69cf7SJeffrey Kardatzke 	target_va = target_pa;
27005c69cf7SJeffrey Kardatzke 	target_size = page_align(target_end_pa, UP) - target_pa;
27105c69cf7SJeffrey Kardatzke 
27205c69cf7SJeffrey Kardatzke 	rc = mmap_add_dynamic_region(target_pa, target_va, target_size,
27305c69cf7SJeffrey Kardatzke 				     MT_MEMORY | MT_RW | MT_SECURE);
27405c69cf7SJeffrey Kardatzke 	if (rc != 0) {
27505c69cf7SJeffrey Kardatzke 		mmap_remove_dynamic_region(mapped_data_va, data_map_size);
27605c69cf7SJeffrey Kardatzke 		return rc;
27705c69cf7SJeffrey Kardatzke 	}
27805c69cf7SJeffrey Kardatzke 
27905c69cf7SJeffrey Kardatzke 	INFO("Loaded OP-TEE via SMC: size %d addr 0x%" PRIx64 "\n",
28005c69cf7SJeffrey Kardatzke 	     curr_image->size, image_va);
28105c69cf7SJeffrey Kardatzke 
28205c69cf7SJeffrey Kardatzke 	memcpy((void *)image_va, image_ptr, curr_image->size);
28305c69cf7SJeffrey Kardatzke 	flush_dcache_range(target_pa, target_size);
28405c69cf7SJeffrey Kardatzke 
28505c69cf7SJeffrey Kardatzke 	mmap_remove_dynamic_region(mapped_data_va, data_map_size);
28605c69cf7SJeffrey Kardatzke 	mmap_remove_dynamic_region(target_va, target_size);
28705c69cf7SJeffrey Kardatzke 
28805c69cf7SJeffrey Kardatzke 	/* Save the non-secure state */
28905c69cf7SJeffrey Kardatzke 	cm_el1_sysregs_context_save(NON_SECURE);
29005c69cf7SJeffrey Kardatzke 
29105c69cf7SJeffrey Kardatzke 	opteed_init_optee_ep_state(&optee_ep_info,
29205c69cf7SJeffrey Kardatzke 				   opteed_rw,
29305c69cf7SJeffrey Kardatzke 				   image_pa,
29405c69cf7SJeffrey Kardatzke 				   0,
29505c69cf7SJeffrey Kardatzke 				   0,
29605c69cf7SJeffrey Kardatzke 				   0,
29705c69cf7SJeffrey Kardatzke 				   &opteed_sp_context[linear_id]);
298*8d7c80faSJeffrey Kardatzke 	if (opteed_init_with_entry_point(&optee_ep_info) == 0) {
299*8d7c80faSJeffrey Kardatzke 		rc = -EFAULT;
300*8d7c80faSJeffrey Kardatzke 	}
30105c69cf7SJeffrey Kardatzke 
30205c69cf7SJeffrey Kardatzke 	/* Restore non-secure state */
30305c69cf7SJeffrey Kardatzke 	cm_el1_sysregs_context_restore(NON_SECURE);
30405c69cf7SJeffrey Kardatzke 	cm_set_next_eret_context(NON_SECURE);
30505c69cf7SJeffrey Kardatzke 
30605c69cf7SJeffrey Kardatzke 	return rc;
30705c69cf7SJeffrey Kardatzke }
30805c69cf7SJeffrey Kardatzke #endif  /* OPTEE_ALLOW_SMC_LOAD */
309aa5da461SJens Wiklander 
310aa5da461SJens Wiklander /*******************************************************************************
311aa5da461SJens Wiklander  * This function is responsible for handling all SMCs in the Trusted OS/App
312aa5da461SJens Wiklander  * range from the non-secure state as defined in the SMC Calling Convention
313aa5da461SJens Wiklander  * Document. It is also responsible for communicating with the Secure
314aa5da461SJens Wiklander  * payload to delegate work and return results back to the non-secure
315aa5da461SJens Wiklander  * state. Lastly it will also return any information that OPTEE needs to do
316aa5da461SJens Wiklander  * the work assigned to it.
317aa5da461SJens Wiklander  ******************************************************************************/
31857d1e5faSMasahiro Yamada static uintptr_t opteed_smc_handler(uint32_t smc_fid,
31957d1e5faSMasahiro Yamada 			 u_register_t x1,
32057d1e5faSMasahiro Yamada 			 u_register_t x2,
32157d1e5faSMasahiro Yamada 			 u_register_t x3,
32257d1e5faSMasahiro Yamada 			 u_register_t x4,
323aa5da461SJens Wiklander 			 void *cookie,
324aa5da461SJens Wiklander 			 void *handle,
32557d1e5faSMasahiro Yamada 			 u_register_t flags)
326aa5da461SJens Wiklander {
327aa5da461SJens Wiklander 	cpu_context_t *ns_cpu_context;
328fd650ff6SSoby Mathew 	uint32_t linear_id = plat_my_core_pos();
329aa5da461SJens Wiklander 	optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
330aa5da461SJens Wiklander 	uint64_t rc;
331aa5da461SJens Wiklander 
332aa5da461SJens Wiklander 	/*
333aa5da461SJens Wiklander 	 * Determine which security state this SMC originated from
334aa5da461SJens Wiklander 	 */
335aa5da461SJens Wiklander 
336aa5da461SJens Wiklander 	if (is_caller_non_secure(flags)) {
33705c69cf7SJeffrey Kardatzke #if OPTEE_ALLOW_SMC_LOAD
33805c69cf7SJeffrey Kardatzke 		if (smc_fid == NSSMC_OPTEED_CALL_LOAD_IMAGE) {
33905c69cf7SJeffrey Kardatzke 			/*
34005c69cf7SJeffrey Kardatzke 			 * TODO: Consider wiping the code for SMC loading from
34105c69cf7SJeffrey Kardatzke 			 * memory after it has been invoked similar to what is
34205c69cf7SJeffrey Kardatzke 			 * done under RECLAIM_INIT, but extended to happen
34305c69cf7SJeffrey Kardatzke 			 * later.
34405c69cf7SJeffrey Kardatzke 			 */
34505c69cf7SJeffrey Kardatzke 			if (!opteed_allow_load) {
34605c69cf7SJeffrey Kardatzke 				SMC_RET1(handle, -EPERM);
34705c69cf7SJeffrey Kardatzke 			}
34805c69cf7SJeffrey Kardatzke 
34905c69cf7SJeffrey Kardatzke 			opteed_allow_load = false;
35005c69cf7SJeffrey Kardatzke 			uint64_t data_size = dual32to64(x1, x2);
35105c69cf7SJeffrey Kardatzke 			uint64_t data_pa = dual32to64(x3, x4);
35205c69cf7SJeffrey Kardatzke 			if (!data_size || !data_pa) {
35305c69cf7SJeffrey Kardatzke 				/*
35405c69cf7SJeffrey Kardatzke 				 * This is invoked when the OP-TEE image didn't
35505c69cf7SJeffrey Kardatzke 				 * load correctly in the kernel but we want to
35605c69cf7SJeffrey Kardatzke 				 * block off loading of it later for security
35705c69cf7SJeffrey Kardatzke 				 * reasons.
35805c69cf7SJeffrey Kardatzke 				 */
35905c69cf7SJeffrey Kardatzke 				SMC_RET1(handle, -EINVAL);
36005c69cf7SJeffrey Kardatzke 			}
36105c69cf7SJeffrey Kardatzke 			SMC_RET1(handle, opteed_handle_smc_load(
36205c69cf7SJeffrey Kardatzke 					data_size, data_pa));
36305c69cf7SJeffrey Kardatzke 		}
36405c69cf7SJeffrey Kardatzke #endif  /* OPTEE_ALLOW_SMC_LOAD */
365aa5da461SJens Wiklander 		/*
366aa5da461SJens Wiklander 		 * This is a fresh request from the non-secure client.
367aa5da461SJens Wiklander 		 * The parameters are in x1 and x2. Figure out which
368aa5da461SJens Wiklander 		 * registers need to be preserved, save the non-secure
369aa5da461SJens Wiklander 		 * state and send the request to the secure payload.
370aa5da461SJens Wiklander 		 */
371aa5da461SJens Wiklander 		assert(handle == cm_get_context(NON_SECURE));
372aa5da461SJens Wiklander 
373aa5da461SJens Wiklander 		cm_el1_sysregs_context_save(NON_SECURE);
374aa5da461SJens Wiklander 
375aa5da461SJens Wiklander 		/*
376aa5da461SJens Wiklander 		 * We are done stashing the non-secure context. Ask the
37705c69cf7SJeffrey Kardatzke 		 * OP-TEE to do the work now. If we are loading vi an SMC,
37805c69cf7SJeffrey Kardatzke 		 * then we also need to init this CPU context if not done
37905c69cf7SJeffrey Kardatzke 		 * already.
380aa5da461SJens Wiklander 		 */
38105c69cf7SJeffrey Kardatzke 		if (optee_vector_table == NULL) {
38205c69cf7SJeffrey Kardatzke 			SMC_RET1(handle, -EINVAL);
38305c69cf7SJeffrey Kardatzke 		}
38405c69cf7SJeffrey Kardatzke 
38505c69cf7SJeffrey Kardatzke 		if (get_optee_pstate(optee_ctx->state) ==
38605c69cf7SJeffrey Kardatzke 		    OPTEE_PSTATE_UNKNOWN) {
38705c69cf7SJeffrey Kardatzke 			opteed_cpu_on_finish_handler(0);
38805c69cf7SJeffrey Kardatzke 		}
389aa5da461SJens Wiklander 
390aa5da461SJens Wiklander 		/*
391aa5da461SJens Wiklander 		 * Verify if there is a valid context to use, copy the
392aa5da461SJens Wiklander 		 * operation type and parameters to the secure context
393aa5da461SJens Wiklander 		 * and jump to the fast smc entry point in the secure
394aa5da461SJens Wiklander 		 * payload. Entry into S-EL1 will take place upon exit
395aa5da461SJens Wiklander 		 * from this function.
396aa5da461SJens Wiklander 		 */
397aa5da461SJens Wiklander 		assert(&optee_ctx->cpu_ctx == cm_get_context(SECURE));
398aa5da461SJens Wiklander 
399aa5da461SJens Wiklander 		/* Set appropriate entry for SMC.
400aa5da461SJens Wiklander 		 * We expect OPTEE to manage the PSTATE.I and PSTATE.F
401aa5da461SJens Wiklander 		 * flags as appropriate.
402aa5da461SJens Wiklander 		 */
403aa5da461SJens Wiklander 		if (GET_SMC_TYPE(smc_fid) == SMC_TYPE_FAST) {
404aa5da461SJens Wiklander 			cm_set_elr_el3(SECURE, (uint64_t)
405776ff52aSDaniel Boulby 					&optee_vector_table->fast_smc_entry);
406aa5da461SJens Wiklander 		} else {
407aa5da461SJens Wiklander 			cm_set_elr_el3(SECURE, (uint64_t)
408776ff52aSDaniel Boulby 					&optee_vector_table->yield_smc_entry);
409aa5da461SJens Wiklander 		}
410aa5da461SJens Wiklander 
411aa5da461SJens Wiklander 		cm_el1_sysregs_context_restore(SECURE);
412aa5da461SJens Wiklander 		cm_set_next_eret_context(SECURE);
413aa5da461SJens Wiklander 
41456a6412dSAshutosh Singh 		write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx),
41556a6412dSAshutosh Singh 			      CTX_GPREG_X4,
41656a6412dSAshutosh Singh 			      read_ctx_reg(get_gpregs_ctx(handle),
41756a6412dSAshutosh Singh 					   CTX_GPREG_X4));
41856a6412dSAshutosh Singh 		write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx),
41956a6412dSAshutosh Singh 			      CTX_GPREG_X5,
42056a6412dSAshutosh Singh 			      read_ctx_reg(get_gpregs_ctx(handle),
42156a6412dSAshutosh Singh 					   CTX_GPREG_X5));
42256a6412dSAshutosh Singh 		write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx),
42356a6412dSAshutosh Singh 			      CTX_GPREG_X6,
42456a6412dSAshutosh Singh 			      read_ctx_reg(get_gpregs_ctx(handle),
42556a6412dSAshutosh Singh 					   CTX_GPREG_X6));
426aa5da461SJens Wiklander 		/* Propagate hypervisor client ID */
427aa5da461SJens Wiklander 		write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx),
428aa5da461SJens Wiklander 			      CTX_GPREG_X7,
429aa5da461SJens Wiklander 			      read_ctx_reg(get_gpregs_ctx(handle),
430aa5da461SJens Wiklander 					   CTX_GPREG_X7));
431aa5da461SJens Wiklander 
432aa5da461SJens Wiklander 		SMC_RET4(&optee_ctx->cpu_ctx, smc_fid, x1, x2, x3);
433aa5da461SJens Wiklander 	}
434aa5da461SJens Wiklander 
435aa5da461SJens Wiklander 	/*
436aa5da461SJens Wiklander 	 * Returning from OPTEE
437aa5da461SJens Wiklander 	 */
438aa5da461SJens Wiklander 
439aa5da461SJens Wiklander 	switch (smc_fid) {
440aa5da461SJens Wiklander 	/*
441aa5da461SJens Wiklander 	 * OPTEE has finished initialising itself after a cold boot
442aa5da461SJens Wiklander 	 */
443aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_ENTRY_DONE:
444aa5da461SJens Wiklander 		/*
445aa5da461SJens Wiklander 		 * Stash the OPTEE entry points information. This is done
446aa5da461SJens Wiklander 		 * only once on the primary cpu
447aa5da461SJens Wiklander 		 */
448776ff52aSDaniel Boulby 		assert(optee_vector_table == NULL);
449776ff52aSDaniel Boulby 		optee_vector_table = (optee_vectors_t *) x1;
450aa5da461SJens Wiklander 
451776ff52aSDaniel Boulby 		if (optee_vector_table) {
452aa5da461SJens Wiklander 			set_optee_pstate(optee_ctx->state, OPTEE_PSTATE_ON);
453aa5da461SJens Wiklander 
454aa5da461SJens Wiklander 			/*
455aa5da461SJens Wiklander 			 * OPTEE has been successfully initialized.
456aa5da461SJens Wiklander 			 * Register power management hooks with PSCI
457aa5da461SJens Wiklander 			 */
458aa5da461SJens Wiklander 			psci_register_spd_pm_hook(&opteed_pm);
459aa5da461SJens Wiklander 
460aa5da461SJens Wiklander 			/*
461aa5da461SJens Wiklander 			 * Register an interrupt handler for S-EL1 interrupts
462aa5da461SJens Wiklander 			 * when generated during code executing in the
463aa5da461SJens Wiklander 			 * non-secure state.
464aa5da461SJens Wiklander 			 */
465aa5da461SJens Wiklander 			flags = 0;
466aa5da461SJens Wiklander 			set_interrupt_rm_flag(flags, NON_SECURE);
467aa5da461SJens Wiklander 			rc = register_interrupt_type_handler(INTR_TYPE_S_EL1,
468aa5da461SJens Wiklander 						opteed_sel1_interrupt_handler,
469aa5da461SJens Wiklander 						flags);
470aa5da461SJens Wiklander 			if (rc)
471aa5da461SJens Wiklander 				panic();
472aa5da461SJens Wiklander 		}
473aa5da461SJens Wiklander 
474aa5da461SJens Wiklander 		/*
475aa5da461SJens Wiklander 		 * OPTEE reports completion. The OPTEED must have initiated
476aa5da461SJens Wiklander 		 * the original request through a synchronous entry into
477aa5da461SJens Wiklander 		 * OPTEE. Jump back to the original C runtime context.
478aa5da461SJens Wiklander 		 */
479aa5da461SJens Wiklander 		opteed_synchronous_sp_exit(optee_ctx, x1);
480185a23ffSJonathan Wright 		break;
481aa5da461SJens Wiklander 
482aa5da461SJens Wiklander 
483aa5da461SJens Wiklander 	/*
484aa5da461SJens Wiklander 	 * These function IDs is used only by OP-TEE to indicate it has
485aa5da461SJens Wiklander 	 * finished:
486aa5da461SJens Wiklander 	 * 1. turning itself on in response to an earlier psci
487aa5da461SJens Wiklander 	 *    cpu_on request
488aa5da461SJens Wiklander 	 * 2. resuming itself after an earlier psci cpu_suspend
489aa5da461SJens Wiklander 	 *    request.
490aa5da461SJens Wiklander 	 */
491aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_ON_DONE:
492aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_RESUME_DONE:
493aa5da461SJens Wiklander 
494aa5da461SJens Wiklander 
495aa5da461SJens Wiklander 	/*
496aa5da461SJens Wiklander 	 * These function IDs is used only by the SP to indicate it has
497aa5da461SJens Wiklander 	 * finished:
498aa5da461SJens Wiklander 	 * 1. suspending itself after an earlier psci cpu_suspend
499aa5da461SJens Wiklander 	 *    request.
500aa5da461SJens Wiklander 	 * 2. turning itself off in response to an earlier psci
501aa5da461SJens Wiklander 	 *    cpu_off request.
502aa5da461SJens Wiklander 	 */
503aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_OFF_DONE:
504aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_SUSPEND_DONE:
505aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_SYSTEM_OFF_DONE:
506aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_SYSTEM_RESET_DONE:
507aa5da461SJens Wiklander 
508aa5da461SJens Wiklander 		/*
509aa5da461SJens Wiklander 		 * OPTEE reports completion. The OPTEED must have initiated the
510aa5da461SJens Wiklander 		 * original request through a synchronous entry into OPTEE.
511aa5da461SJens Wiklander 		 * Jump back to the original C runtime context, and pass x1 as
512aa5da461SJens Wiklander 		 * return value to the caller
513aa5da461SJens Wiklander 		 */
514aa5da461SJens Wiklander 		opteed_synchronous_sp_exit(optee_ctx, x1);
515185a23ffSJonathan Wright 		break;
516aa5da461SJens Wiklander 
517aa5da461SJens Wiklander 	/*
518aa5da461SJens Wiklander 	 * OPTEE is returning from a call or being preempted from a call, in
519aa5da461SJens Wiklander 	 * either case execution should resume in the normal world.
520aa5da461SJens Wiklander 	 */
521aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_CALL_DONE:
522aa5da461SJens Wiklander 		/*
523aa5da461SJens Wiklander 		 * This is the result from the secure client of an
524aa5da461SJens Wiklander 		 * earlier request. The results are in x0-x3. Copy it
525aa5da461SJens Wiklander 		 * into the non-secure context, save the secure state
526aa5da461SJens Wiklander 		 * and return to the non-secure state.
527aa5da461SJens Wiklander 		 */
528aa5da461SJens Wiklander 		assert(handle == cm_get_context(SECURE));
529aa5da461SJens Wiklander 		cm_el1_sysregs_context_save(SECURE);
530aa5da461SJens Wiklander 
531aa5da461SJens Wiklander 		/* Get a reference to the non-secure context */
532aa5da461SJens Wiklander 		ns_cpu_context = cm_get_context(NON_SECURE);
533aa5da461SJens Wiklander 		assert(ns_cpu_context);
534aa5da461SJens Wiklander 
535aa5da461SJens Wiklander 		/* Restore non-secure state */
536aa5da461SJens Wiklander 		cm_el1_sysregs_context_restore(NON_SECURE);
537aa5da461SJens Wiklander 		cm_set_next_eret_context(NON_SECURE);
538aa5da461SJens Wiklander 
539aa5da461SJens Wiklander 		SMC_RET4(ns_cpu_context, x1, x2, x3, x4);
540aa5da461SJens Wiklander 
541aa5da461SJens Wiklander 	/*
542aa5da461SJens Wiklander 	 * OPTEE has finished handling a S-EL1 FIQ interrupt. Execution
543aa5da461SJens Wiklander 	 * should resume in the normal world.
544aa5da461SJens Wiklander 	 */
545aa5da461SJens Wiklander 	case TEESMC_OPTEED_RETURN_FIQ_DONE:
546aa5da461SJens Wiklander 		/* Get a reference to the non-secure context */
547aa5da461SJens Wiklander 		ns_cpu_context = cm_get_context(NON_SECURE);
548aa5da461SJens Wiklander 		assert(ns_cpu_context);
549aa5da461SJens Wiklander 
550aa5da461SJens Wiklander 		/*
551aa5da461SJens Wiklander 		 * Restore non-secure state. There is no need to save the
552aa5da461SJens Wiklander 		 * secure system register context since OPTEE was supposed
553aa5da461SJens Wiklander 		 * to preserve it during S-EL1 interrupt handling.
554aa5da461SJens Wiklander 		 */
555aa5da461SJens Wiklander 		cm_el1_sysregs_context_restore(NON_SECURE);
556aa5da461SJens Wiklander 		cm_set_next_eret_context(NON_SECURE);
557aa5da461SJens Wiklander 
558aa5da461SJens Wiklander 		SMC_RET0((uint64_t) ns_cpu_context);
559aa5da461SJens Wiklander 
560aa5da461SJens Wiklander 	default:
561aa5da461SJens Wiklander 		panic();
562aa5da461SJens Wiklander 	}
563aa5da461SJens Wiklander }
564aa5da461SJens Wiklander 
565aa5da461SJens Wiklander /* Define an OPTEED runtime service descriptor for fast SMC calls */
566aa5da461SJens Wiklander DECLARE_RT_SVC(
567aa5da461SJens Wiklander 	opteed_fast,
568aa5da461SJens Wiklander 
569aa5da461SJens Wiklander 	OEN_TOS_START,
570aa5da461SJens Wiklander 	OEN_TOS_END,
571aa5da461SJens Wiklander 	SMC_TYPE_FAST,
572aa5da461SJens Wiklander 	opteed_setup,
573aa5da461SJens Wiklander 	opteed_smc_handler
574aa5da461SJens Wiklander );
575aa5da461SJens Wiklander 
576bbbbcdaeSDavid Cunado /* Define an OPTEED runtime service descriptor for yielding SMC calls */
577aa5da461SJens Wiklander DECLARE_RT_SVC(
578aa5da461SJens Wiklander 	opteed_std,
579aa5da461SJens Wiklander 
580aa5da461SJens Wiklander 	OEN_TOS_START,
581aa5da461SJens Wiklander 	OEN_TOS_END,
582bbbbcdaeSDavid Cunado 	SMC_TYPE_YIELD,
583aa5da461SJens Wiklander 	NULL,
584aa5da461SJens Wiklander 	opteed_smc_handler
585aa5da461SJens Wiklander );
586