122038315SVarun Wadekar /*
2d205cda6SVarun Wadekar * Copyright (c) 2015-2020, ARM Limited and Contributors. All rights reserved.
30600cf63SVarun Wadekar * Copyright (c) 2020, NVIDIA Corporation. All rights reserved.
422038315SVarun Wadekar *
582cb2c1aSdp-arm * SPDX-License-Identifier: BSD-3-Clause
622038315SVarun Wadekar */
722038315SVarun Wadekar
822038315SVarun Wadekar /*******************************************************************************
922038315SVarun Wadekar * This is the Secure Payload Dispatcher (SPD). The dispatcher is meant to be a
1022038315SVarun Wadekar * plug-in component to the Secure Monitor, registered as a runtime service. The
1122038315SVarun Wadekar * SPD is expected to be a functional extension of the Secure Payload (SP) that
1222038315SVarun Wadekar * executes in Secure EL1. The Secure Monitor will delegate all SMCs targeting
1322038315SVarun Wadekar * the Trusted OS/Applications range to the dispatcher. The SPD will either
1422038315SVarun Wadekar * handle the request locally or delegate it to the Secure Payload. It is also
1522038315SVarun Wadekar * responsible for initialising and maintaining communication with the SP.
1622038315SVarun Wadekar ******************************************************************************/
1722038315SVarun Wadekar #include <assert.h>
18d205cda6SVarun Wadekar #include <bl31/interrupt_mgmt.h>
1922038315SVarun Wadekar #include <errno.h>
2022038315SVarun Wadekar #include <stddef.h>
2109d40e0eSAntonio Nino Diaz
22b29c1b00SAntonio Nino Diaz #include <arch_helpers.h>
2309d40e0eSAntonio Nino Diaz #include <bl31/bl31.h>
24b29c1b00SAntonio Nino Diaz #include <bl32/payloads/tlk.h>
2509d40e0eSAntonio Nino Diaz #include <common/bl_common.h>
2609d40e0eSAntonio Nino Diaz #include <common/debug.h>
2709d40e0eSAntonio Nino Diaz #include <common/runtime_svc.h>
2809d40e0eSAntonio Nino Diaz #include <lib/el3_runtime/context_mgmt.h>
2909d40e0eSAntonio Nino Diaz #include <plat/common/platform.h>
3009d40e0eSAntonio Nino Diaz #include <tools_share/uuid.h>
3109d40e0eSAntonio Nino Diaz
3222038315SVarun Wadekar #include "tlkd_private.h"
3322038315SVarun Wadekar
3422038315SVarun Wadekar extern const spd_pm_ops_t tlkd_pm_ops;
3522038315SVarun Wadekar
3622038315SVarun Wadekar /*******************************************************************************
37cb790c5eSVarun Wadekar * Per-cpu Secure Payload state
3822038315SVarun Wadekar ******************************************************************************/
39cb790c5eSVarun Wadekar tlk_context_t tlk_ctx;
4022038315SVarun Wadekar
4126670c82SVarun Wadekar /*******************************************************************************
4226670c82SVarun Wadekar * CPU number on which TLK booted up
4326670c82SVarun Wadekar ******************************************************************************/
446311f63dSVarun Wadekar static uint32_t boot_cpu;
4526670c82SVarun Wadekar
4622038315SVarun Wadekar /* TLK UID: RFC-4122 compliant UUID (version-5, sha-1) */
4703364865SRoberto Vargas DEFINE_SVC_UUID2(tlk_uuid,
4803364865SRoberto Vargas 0xc9e911bd, 0xba2b, 0xee52, 0xb1, 0x72,
4922038315SVarun Wadekar 0x46, 0x1f, 0xba, 0x97, 0x7f, 0x63);
5022038315SVarun Wadekar
51724fd958SMasahiro Yamada static int32_t tlkd_init(void);
5222038315SVarun Wadekar
5322038315SVarun Wadekar /*******************************************************************************
54d205cda6SVarun Wadekar * Secure Payload Dispatcher's timer interrupt handler
55d205cda6SVarun Wadekar ******************************************************************************/
tlkd_interrupt_handler(uint32_t id,uint32_t flags,void * handle,void * cookie)56d205cda6SVarun Wadekar static uint64_t tlkd_interrupt_handler(uint32_t id,
57d205cda6SVarun Wadekar uint32_t flags,
58d205cda6SVarun Wadekar void *handle,
59d205cda6SVarun Wadekar void *cookie)
60d205cda6SVarun Wadekar {
61d205cda6SVarun Wadekar cpu_context_t *s_cpu_context;
62d205cda6SVarun Wadekar int irq = plat_ic_get_pending_interrupt_id();
63d205cda6SVarun Wadekar
64d205cda6SVarun Wadekar /* acknowledge the interrupt and mark it complete */
65d205cda6SVarun Wadekar (void)plat_ic_acknowledge_interrupt();
66d205cda6SVarun Wadekar plat_ic_end_of_interrupt(irq);
67d205cda6SVarun Wadekar
68d205cda6SVarun Wadekar /*
69d205cda6SVarun Wadekar * Disable the routing of NS interrupts from secure world to
70d205cda6SVarun Wadekar * EL3 while interrupted on this core.
71d205cda6SVarun Wadekar */
72d205cda6SVarun Wadekar disable_intr_rm_local(INTR_TYPE_S_EL1, SECURE);
73d205cda6SVarun Wadekar
74d205cda6SVarun Wadekar /* Check the security state when the exception was generated */
75d205cda6SVarun Wadekar assert(get_interrupt_src_ss(flags) == NON_SECURE);
76d205cda6SVarun Wadekar assert(handle == cm_get_context(NON_SECURE));
77d205cda6SVarun Wadekar
78d205cda6SVarun Wadekar /* Save non-secure state */
79d205cda6SVarun Wadekar cm_el1_sysregs_context_save(NON_SECURE);
80d205cda6SVarun Wadekar
81d205cda6SVarun Wadekar /* Get a reference to the secure context */
82d205cda6SVarun Wadekar s_cpu_context = cm_get_context(SECURE);
83d205cda6SVarun Wadekar assert(s_cpu_context);
84d205cda6SVarun Wadekar
85d205cda6SVarun Wadekar /*
86d205cda6SVarun Wadekar * Restore non-secure state. There is no need to save the
87d205cda6SVarun Wadekar * secure system register context since the SP was supposed
88d205cda6SVarun Wadekar * to preserve it during S-EL1 interrupt handling.
89d205cda6SVarun Wadekar */
90d205cda6SVarun Wadekar cm_el1_sysregs_context_restore(SECURE);
91d205cda6SVarun Wadekar cm_set_next_eret_context(SECURE);
92d205cda6SVarun Wadekar
93d205cda6SVarun Wadekar /* Provide the IRQ number to the SPD */
94d205cda6SVarun Wadekar SMC_RET4(s_cpu_context, (uint32_t)TLK_IRQ_FIRED, 0, (uint32_t)irq, 0);
95d205cda6SVarun Wadekar }
96d205cda6SVarun Wadekar
97d205cda6SVarun Wadekar /*******************************************************************************
9822038315SVarun Wadekar * Secure Payload Dispatcher setup. The SPD finds out the SP entrypoint and type
9922038315SVarun Wadekar * (aarch32/aarch64) if not already known and initialises the context for entry
10022038315SVarun Wadekar * into the SP for its initialisation.
10122038315SVarun Wadekar ******************************************************************************/
tlkd_setup(void)102724fd958SMasahiro Yamada static int32_t tlkd_setup(void)
10322038315SVarun Wadekar {
10422038315SVarun Wadekar entry_point_info_t *tlk_ep_info;
105d205cda6SVarun Wadekar uint32_t flags;
106d205cda6SVarun Wadekar int32_t ret;
10722038315SVarun Wadekar
10822038315SVarun Wadekar /*
10922038315SVarun Wadekar * Get information about the Secure Payload (BL32) image. Its
11022038315SVarun Wadekar * absence is a critical failure.
11122038315SVarun Wadekar */
11222038315SVarun Wadekar tlk_ep_info = bl31_plat_get_next_image_ep_info(SECURE);
11322038315SVarun Wadekar if (!tlk_ep_info) {
11422038315SVarun Wadekar WARN("No SP provided. Booting device without SP"
11522038315SVarun Wadekar " initialization. SMC`s destined for SP"
11622038315SVarun Wadekar " will return SMC_UNK\n");
11722038315SVarun Wadekar return 1;
11822038315SVarun Wadekar }
11922038315SVarun Wadekar
12022038315SVarun Wadekar /*
12122038315SVarun Wadekar * If there's no valid entry point for SP, we return a non-zero value
12222038315SVarun Wadekar * signalling failure initializing the service. We bail out without
12322038315SVarun Wadekar * registering any handlers
12422038315SVarun Wadekar */
12522038315SVarun Wadekar if (!tlk_ep_info->pc)
12622038315SVarun Wadekar return 1;
12722038315SVarun Wadekar
12822038315SVarun Wadekar /*
12922038315SVarun Wadekar * Inspect the SP image's SPSR and determine it's execution state
13022038315SVarun Wadekar * i.e whether AArch32 or AArch64.
13122038315SVarun Wadekar */
13222038315SVarun Wadekar tlkd_init_tlk_ep_state(tlk_ep_info,
13322038315SVarun Wadekar (tlk_ep_info->spsr >> MODE_RW_SHIFT) & MODE_RW_MASK,
13422038315SVarun Wadekar tlk_ep_info->pc,
13522038315SVarun Wadekar &tlk_ctx);
13622038315SVarun Wadekar
137d205cda6SVarun Wadekar /* get a list of all S-EL1 IRQs from the platform */
138d205cda6SVarun Wadekar
139d205cda6SVarun Wadekar /* register interrupt handler */
140d205cda6SVarun Wadekar flags = 0;
141d205cda6SVarun Wadekar set_interrupt_rm_flag(flags, NON_SECURE);
142d205cda6SVarun Wadekar ret = register_interrupt_type_handler(INTR_TYPE_S_EL1,
143d205cda6SVarun Wadekar tlkd_interrupt_handler,
144d205cda6SVarun Wadekar flags);
145d205cda6SVarun Wadekar if (ret != 0) {
146d205cda6SVarun Wadekar ERROR("failed to register tlkd interrupt handler (%d)\n", ret);
147d205cda6SVarun Wadekar }
148d205cda6SVarun Wadekar
14922038315SVarun Wadekar /*
15022038315SVarun Wadekar * All TLK SPD initialization done. Now register our init function
15122038315SVarun Wadekar * with BL31 for deferred invocation
15222038315SVarun Wadekar */
15322038315SVarun Wadekar bl31_register_bl32_init(&tlkd_init);
15422038315SVarun Wadekar
15522038315SVarun Wadekar return 0;
15622038315SVarun Wadekar }
15722038315SVarun Wadekar
15822038315SVarun Wadekar /*******************************************************************************
15922038315SVarun Wadekar * This function passes control to the Secure Payload image (BL32) for the first
16022038315SVarun Wadekar * time on the primary cpu after a cold boot. It assumes that a valid secure
16122038315SVarun Wadekar * context has already been created by tlkd_setup() which can be directly
16222038315SVarun Wadekar * used. This function performs a synchronous entry into the Secure payload.
16322038315SVarun Wadekar * The SP passes control back to this routine through a SMC.
16422038315SVarun Wadekar ******************************************************************************/
tlkd_init(void)165724fd958SMasahiro Yamada static int32_t tlkd_init(void)
16622038315SVarun Wadekar {
16722038315SVarun Wadekar entry_point_info_t *tlk_entry_point;
16822038315SVarun Wadekar
16922038315SVarun Wadekar /*
17022038315SVarun Wadekar * Get information about the Secure Payload (BL32) image. Its
17122038315SVarun Wadekar * absence is a critical failure.
17222038315SVarun Wadekar */
17322038315SVarun Wadekar tlk_entry_point = bl31_plat_get_next_image_ep_info(SECURE);
17422038315SVarun Wadekar assert(tlk_entry_point);
17522038315SVarun Wadekar
176fd650ff6SSoby Mathew cm_init_my_context(tlk_entry_point);
17722038315SVarun Wadekar
17822038315SVarun Wadekar /*
17926670c82SVarun Wadekar * TLK runs only on a single CPU. Store the value of the boot
18026670c82SVarun Wadekar * CPU for sanity checking later.
18126670c82SVarun Wadekar */
18226670c82SVarun Wadekar boot_cpu = plat_my_core_pos();
18326670c82SVarun Wadekar
18426670c82SVarun Wadekar /*
18522038315SVarun Wadekar * Arrange for an entry into the test secure payload.
18622038315SVarun Wadekar */
18722038315SVarun Wadekar return tlkd_synchronous_sp_entry(&tlk_ctx);
18822038315SVarun Wadekar }
18922038315SVarun Wadekar
19022038315SVarun Wadekar /*******************************************************************************
19122038315SVarun Wadekar * This function is responsible for handling all SMCs in the Trusted OS/App
19222038315SVarun Wadekar * range from the non-secure state as defined in the SMC Calling Convention
19322038315SVarun Wadekar * Document. It is also responsible for communicating with the Secure payload
19422038315SVarun Wadekar * to delegate work and return results back to the non-secure state. Lastly it
19522038315SVarun Wadekar * will also return any information that the secure payload needs to do the
19622038315SVarun Wadekar * work assigned to it.
19722038315SVarun Wadekar ******************************************************************************/
tlkd_smc_handler(uint32_t smc_fid,u_register_t x1,u_register_t x2,u_register_t x3,u_register_t x4,void * cookie,void * handle,u_register_t flags)19857d1e5faSMasahiro Yamada static uintptr_t tlkd_smc_handler(uint32_t smc_fid,
19957d1e5faSMasahiro Yamada u_register_t x1,
20057d1e5faSMasahiro Yamada u_register_t x2,
20157d1e5faSMasahiro Yamada u_register_t x3,
20257d1e5faSMasahiro Yamada u_register_t x4,
20322038315SVarun Wadekar void *cookie,
20422038315SVarun Wadekar void *handle,
20557d1e5faSMasahiro Yamada u_register_t flags)
20622038315SVarun Wadekar {
20777199df7SVarun Wadekar cpu_context_t *ns_cpu_context;
208709a3c47SVarun Wadekar gp_regs_t *gp_regs;
20922038315SVarun Wadekar uint32_t ns;
210709a3c47SVarun Wadekar uint64_t par;
21122038315SVarun Wadekar
21222038315SVarun Wadekar /* Passing a NULL context is a critical programming error */
21322038315SVarun Wadekar assert(handle);
21422038315SVarun Wadekar
21526670c82SVarun Wadekar /* These SMCs are only supported by a single CPU */
21626670c82SVarun Wadekar if (boot_cpu != plat_my_core_pos())
2176693962cSVarun Wadekar SMC_RET1(handle, SMC_UNK);
2186693962cSVarun Wadekar
21922038315SVarun Wadekar /* Determine which security state this SMC originated from */
22022038315SVarun Wadekar ns = is_caller_non_secure(flags);
22122038315SVarun Wadekar
22222038315SVarun Wadekar switch (smc_fid) {
22322038315SVarun Wadekar
22422038315SVarun Wadekar /*
225f9d25054SVarun Wadekar * This function ID is used by SP to indicate that it was
226f9d25054SVarun Wadekar * preempted by a non-secure world IRQ.
227f9d25054SVarun Wadekar */
228f9d25054SVarun Wadekar case TLK_PREEMPTED:
229f9d25054SVarun Wadekar
230f9d25054SVarun Wadekar if (ns)
231f9d25054SVarun Wadekar SMC_RET1(handle, SMC_UNK);
232f9d25054SVarun Wadekar
233f9d25054SVarun Wadekar assert(handle == cm_get_context(SECURE));
234f9d25054SVarun Wadekar cm_el1_sysregs_context_save(SECURE);
235f9d25054SVarun Wadekar
236f9d25054SVarun Wadekar /* Get a reference to the non-secure context */
237f9d25054SVarun Wadekar ns_cpu_context = cm_get_context(NON_SECURE);
238f9d25054SVarun Wadekar assert(ns_cpu_context);
239f9d25054SVarun Wadekar
240f9d25054SVarun Wadekar /*
241f9d25054SVarun Wadekar * Restore non-secure state. There is no need to save the
242f9d25054SVarun Wadekar * secure system register context since the SP was supposed
243f9d25054SVarun Wadekar * to preserve it during S-EL1 interrupt handling.
244f9d25054SVarun Wadekar */
245f9d25054SVarun Wadekar cm_el1_sysregs_context_restore(NON_SECURE);
246f9d25054SVarun Wadekar cm_set_next_eret_context(NON_SECURE);
247f9d25054SVarun Wadekar
248709a3c47SVarun Wadekar SMC_RET1(ns_cpu_context, x1);
249f9d25054SVarun Wadekar
250f9d25054SVarun Wadekar /*
25177199df7SVarun Wadekar * This is a request from the non-secure context to:
25277199df7SVarun Wadekar *
25377199df7SVarun Wadekar * a. register shared memory with the SP for storing it's
25477199df7SVarun Wadekar * activity logs.
25577199df7SVarun Wadekar * b. register shared memory with the SP for passing args
25677199df7SVarun Wadekar * required for maintaining sessions with the Trusted
25777199df7SVarun Wadekar * Applications.
2587bc05f52SMihir Joshi * c. register shared persistent buffers for secure storage
2597bc05f52SMihir Joshi * d. register NS DRAM ranges passed by Cboot
2607bc05f52SMihir Joshi * e. register Root of Trust parameters from Cboot for Verified Boot
2617bc05f52SMihir Joshi * f. open/close sessions
2627bc05f52SMihir Joshi * g. issue commands to the Trusted Apps
2637bc05f52SMihir Joshi * h. resume the preempted yielding SMC call.
26477199df7SVarun Wadekar */
26577199df7SVarun Wadekar case TLK_REGISTER_LOGBUF:
26677199df7SVarun Wadekar case TLK_REGISTER_REQBUF:
2677bc05f52SMihir Joshi case TLK_SS_REGISTER_HANDLER:
2687bc05f52SMihir Joshi case TLK_REGISTER_NS_DRAM_RANGES:
2697bc05f52SMihir Joshi case TLK_SET_ROOT_OF_TRUST:
2706693962cSVarun Wadekar case TLK_OPEN_TA_SESSION:
2716693962cSVarun Wadekar case TLK_CLOSE_TA_SESSION:
2726693962cSVarun Wadekar case TLK_TA_LAUNCH_OP:
2736693962cSVarun Wadekar case TLK_TA_SEND_EVENT:
274ca15d9bcSVarun Wadekar case TLK_RESUME_FID:
275*bd0c2f8dSMustafa Yigit Bilgen case TLK_SET_BL_VERSION:
276*bd0c2f8dSMustafa Yigit Bilgen case TLK_LOCK_BL_INTERFACE:
277*bd0c2f8dSMustafa Yigit Bilgen case TLK_BL_RPMB_SERVICE:
2786693962cSVarun Wadekar
279709a3c47SVarun Wadekar if (!ns)
28077199df7SVarun Wadekar SMC_RET1(handle, SMC_UNK);
28177199df7SVarun Wadekar
28277199df7SVarun Wadekar /*
28377199df7SVarun Wadekar * This is a fresh request from the non-secure client.
28477199df7SVarun Wadekar * The parameters are in x1 and x2. Figure out which
28577199df7SVarun Wadekar * registers need to be preserved, save the non-secure
28677199df7SVarun Wadekar * state and send the request to the secure payload.
28777199df7SVarun Wadekar */
28877199df7SVarun Wadekar assert(handle == cm_get_context(NON_SECURE));
28977199df7SVarun Wadekar
290ca15d9bcSVarun Wadekar /*
291bbbbcdaeSDavid Cunado * Check if we are already processing a yielding SMC
292ca15d9bcSVarun Wadekar * call. Of all the supported fids, only the "resume"
293ca15d9bcSVarun Wadekar * fid expects the flag to be set.
294ca15d9bcSVarun Wadekar */
295ca15d9bcSVarun Wadekar if (smc_fid == TLK_RESUME_FID) {
296bbbbcdaeSDavid Cunado if (!get_yield_smc_active_flag(tlk_ctx.state))
297ca15d9bcSVarun Wadekar SMC_RET1(handle, SMC_UNK);
298ca15d9bcSVarun Wadekar } else {
299bbbbcdaeSDavid Cunado if (get_yield_smc_active_flag(tlk_ctx.state))
30077199df7SVarun Wadekar SMC_RET1(handle, SMC_UNK);
301ca15d9bcSVarun Wadekar }
30277199df7SVarun Wadekar
30377199df7SVarun Wadekar cm_el1_sysregs_context_save(NON_SECURE);
30477199df7SVarun Wadekar
30577199df7SVarun Wadekar /*
30677199df7SVarun Wadekar * Verify if there is a valid context to use.
30777199df7SVarun Wadekar */
30877199df7SVarun Wadekar assert(&tlk_ctx.cpu_ctx == cm_get_context(SECURE));
30977199df7SVarun Wadekar
31077199df7SVarun Wadekar /*
31177199df7SVarun Wadekar * Mark the SP state as active.
31277199df7SVarun Wadekar */
313bbbbcdaeSDavid Cunado set_yield_smc_active_flag(tlk_ctx.state);
31477199df7SVarun Wadekar
31577199df7SVarun Wadekar /*
31677199df7SVarun Wadekar * We are done stashing the non-secure context. Ask the
31777199df7SVarun Wadekar * secure payload to do the work now.
31877199df7SVarun Wadekar */
31977199df7SVarun Wadekar cm_el1_sysregs_context_restore(SECURE);
32077199df7SVarun Wadekar cm_set_next_eret_context(SECURE);
32177199df7SVarun Wadekar
32277199df7SVarun Wadekar /*
323709a3c47SVarun Wadekar * TLK is a 32-bit Trusted OS and so expects the SMC
324709a3c47SVarun Wadekar * arguments via r0-r7. TLK expects the monitor frame
325709a3c47SVarun Wadekar * registers to be 64-bits long. Hence, we pass x0 in
326709a3c47SVarun Wadekar * r0-r1, x1 in r2-r3, x3 in r4-r5 and x4 in r6-r7.
327709a3c47SVarun Wadekar *
328709a3c47SVarun Wadekar * As smc_fid is a uint32 value, r1 contains 0.
329709a3c47SVarun Wadekar */
330709a3c47SVarun Wadekar gp_regs = get_gpregs_ctx(&tlk_ctx.cpu_ctx);
331709a3c47SVarun Wadekar write_ctx_reg(gp_regs, CTX_GPREG_X4, (uint32_t)x2);
332709a3c47SVarun Wadekar write_ctx_reg(gp_regs, CTX_GPREG_X5, (uint32_t)(x2 >> 32));
333709a3c47SVarun Wadekar write_ctx_reg(gp_regs, CTX_GPREG_X6, (uint32_t)x3);
334709a3c47SVarun Wadekar write_ctx_reg(gp_regs, CTX_GPREG_X7, (uint32_t)(x3 >> 32));
335709a3c47SVarun Wadekar SMC_RET4(&tlk_ctx.cpu_ctx, smc_fid, 0, (uint32_t)x1,
336709a3c47SVarun Wadekar (uint32_t)(x1 >> 32));
337709a3c47SVarun Wadekar
338709a3c47SVarun Wadekar /*
339709a3c47SVarun Wadekar * Translate NS/EL1-S virtual addresses.
340709a3c47SVarun Wadekar *
341709a3c47SVarun Wadekar * x1 = virtual address
342709a3c47SVarun Wadekar * x3 = type (NS/S)
343709a3c47SVarun Wadekar *
344709a3c47SVarun Wadekar * Returns PA:lo in r0, PA:hi in r1.
3456e159e7aSVarun Wadekar */
3466e159e7aSVarun Wadekar case TLK_VA_TRANSLATE:
347709a3c47SVarun Wadekar
348709a3c47SVarun Wadekar /* Should be invoked only by secure world */
349709a3c47SVarun Wadekar if (ns)
3506e159e7aSVarun Wadekar SMC_RET1(handle, SMC_UNK);
3516e159e7aSVarun Wadekar
352709a3c47SVarun Wadekar /* NS virtual addresses are 64-bit long */
353709a3c47SVarun Wadekar if (x3 & TLK_TRANSLATE_NS_VADDR)
354709a3c47SVarun Wadekar x1 = (uint32_t)x1 | (x2 << 32);
355709a3c47SVarun Wadekar
356709a3c47SVarun Wadekar if (!x1)
357709a3c47SVarun Wadekar SMC_RET1(handle, SMC_UNK);
358709a3c47SVarun Wadekar
359709a3c47SVarun Wadekar /*
360709a3c47SVarun Wadekar * TODO: Sanity check x1. This would require platform
361709a3c47SVarun Wadekar * support.
362709a3c47SVarun Wadekar */
363709a3c47SVarun Wadekar
3646e159e7aSVarun Wadekar /* virtual address and type: ns/s */
365709a3c47SVarun Wadekar par = tlkd_va_translate(x1, x3);
3666e159e7aSVarun Wadekar
367709a3c47SVarun Wadekar /* return physical address in r0-r1 */
368709a3c47SVarun Wadekar SMC_RET4(handle, (uint32_t)par, (uint32_t)(par >> 32), 0, 0);
3696e159e7aSVarun Wadekar
3706e159e7aSVarun Wadekar /*
37177199df7SVarun Wadekar * This is a request from the SP to mark completion of
372bbbbcdaeSDavid Cunado * a yielding function ID.
37377199df7SVarun Wadekar */
37477199df7SVarun Wadekar case TLK_REQUEST_DONE:
375709a3c47SVarun Wadekar if (ns)
37677199df7SVarun Wadekar SMC_RET1(handle, SMC_UNK);
37777199df7SVarun Wadekar
37877199df7SVarun Wadekar /*
37977199df7SVarun Wadekar * Mark the SP state as inactive.
38077199df7SVarun Wadekar */
381bbbbcdaeSDavid Cunado clr_yield_smc_active_flag(tlk_ctx.state);
38277199df7SVarun Wadekar
38377199df7SVarun Wadekar /* Get a reference to the non-secure context */
38477199df7SVarun Wadekar ns_cpu_context = cm_get_context(NON_SECURE);
38577199df7SVarun Wadekar assert(ns_cpu_context);
38677199df7SVarun Wadekar
38777199df7SVarun Wadekar /*
38877199df7SVarun Wadekar * This is a request completion SMC and we must switch to
38977199df7SVarun Wadekar * the non-secure world to pass the result.
39077199df7SVarun Wadekar */
39177199df7SVarun Wadekar cm_el1_sysregs_context_save(SECURE);
39277199df7SVarun Wadekar
39377199df7SVarun Wadekar /*
39477199df7SVarun Wadekar * We are done stashing the secure context. Switch to the
39577199df7SVarun Wadekar * non-secure context and return the result.
39677199df7SVarun Wadekar */
39777199df7SVarun Wadekar cm_el1_sysregs_context_restore(NON_SECURE);
39877199df7SVarun Wadekar cm_set_next_eret_context(NON_SECURE);
399709a3c47SVarun Wadekar SMC_RET1(ns_cpu_context, x1);
40077199df7SVarun Wadekar
40177199df7SVarun Wadekar /*
40222038315SVarun Wadekar * This function ID is used only by the SP to indicate it has
40322038315SVarun Wadekar * finished initialising itself after a cold boot
40422038315SVarun Wadekar */
40522038315SVarun Wadekar case TLK_ENTRY_DONE:
406709a3c47SVarun Wadekar if (ns)
40722038315SVarun Wadekar SMC_RET1(handle, SMC_UNK);
40822038315SVarun Wadekar
40922038315SVarun Wadekar /*
41022038315SVarun Wadekar * SP has been successfully initialized. Register power
4118aabea33SPaul Beesley * management hooks with PSCI
41222038315SVarun Wadekar */
41322038315SVarun Wadekar psci_register_spd_pm_hook(&tlkd_pm_ops);
41422038315SVarun Wadekar
41522038315SVarun Wadekar /*
41622038315SVarun Wadekar * TLK reports completion. The SPD must have initiated
41722038315SVarun Wadekar * the original request through a synchronous entry
41822038315SVarun Wadekar * into the SP. Jump back to the original C runtime
41922038315SVarun Wadekar * context.
42022038315SVarun Wadekar */
421709a3c47SVarun Wadekar tlkd_synchronous_sp_exit(&tlk_ctx, x1);
422185a23ffSJonathan Wright break;
42322038315SVarun Wadekar
42422038315SVarun Wadekar /*
425cb790c5eSVarun Wadekar * These function IDs are used only by TLK to indicate it has
426cb790c5eSVarun Wadekar * finished:
427cb790c5eSVarun Wadekar * 1. suspending itself after an earlier psci cpu_suspend
428cb790c5eSVarun Wadekar * request.
429cb790c5eSVarun Wadekar * 2. resuming itself after an earlier psci cpu_suspend
430cb790c5eSVarun Wadekar * request.
431cb790c5eSVarun Wadekar * 3. powering down after an earlier psci system_off/system_reset
432cb790c5eSVarun Wadekar * request.
433cb790c5eSVarun Wadekar */
434cb790c5eSVarun Wadekar case TLK_SUSPEND_DONE:
435cb790c5eSVarun Wadekar case TLK_RESUME_DONE:
436cb790c5eSVarun Wadekar
437cb790c5eSVarun Wadekar if (ns)
438cb790c5eSVarun Wadekar SMC_RET1(handle, SMC_UNK);
439cb790c5eSVarun Wadekar
440cb790c5eSVarun Wadekar /*
441cb790c5eSVarun Wadekar * TLK reports completion. TLKD must have initiated the
442cb790c5eSVarun Wadekar * original request through a synchronous entry into the SP.
443cb790c5eSVarun Wadekar * Jump back to the original C runtime context, and pass x1 as
444cb790c5eSVarun Wadekar * return value to the caller
445cb790c5eSVarun Wadekar */
446cb790c5eSVarun Wadekar tlkd_synchronous_sp_exit(&tlk_ctx, x1);
447185a23ffSJonathan Wright break;
448cb790c5eSVarun Wadekar
449cb790c5eSVarun Wadekar /*
450d205cda6SVarun Wadekar * This function ID is used by SP to indicate that it has completed
451d205cda6SVarun Wadekar * handling the secure interrupt.
452d205cda6SVarun Wadekar */
453d205cda6SVarun Wadekar case TLK_IRQ_DONE:
454d205cda6SVarun Wadekar
455d205cda6SVarun Wadekar if (ns)
456d205cda6SVarun Wadekar SMC_RET1(handle, SMC_UNK);
457d205cda6SVarun Wadekar
458d205cda6SVarun Wadekar assert(handle == cm_get_context(SECURE));
459d205cda6SVarun Wadekar
460d205cda6SVarun Wadekar /* save secure world context */
461d205cda6SVarun Wadekar cm_el1_sysregs_context_save(SECURE);
462d205cda6SVarun Wadekar
463d205cda6SVarun Wadekar /* Get a reference to the non-secure context */
464d205cda6SVarun Wadekar ns_cpu_context = cm_get_context(NON_SECURE);
465d205cda6SVarun Wadekar assert(ns_cpu_context);
466d205cda6SVarun Wadekar
467d205cda6SVarun Wadekar /*
468d205cda6SVarun Wadekar * Restore non-secure state. There is no need to save the
469d205cda6SVarun Wadekar * secure system register context since the SP was supposed
470d205cda6SVarun Wadekar * to preserve it during S-EL1 interrupt handling.
471d205cda6SVarun Wadekar */
472d205cda6SVarun Wadekar cm_el1_sysregs_context_restore(NON_SECURE);
473d205cda6SVarun Wadekar cm_set_next_eret_context(NON_SECURE);
474d205cda6SVarun Wadekar
475d205cda6SVarun Wadekar SMC_RET0(ns_cpu_context);
476d205cda6SVarun Wadekar
477d205cda6SVarun Wadekar /*
47822038315SVarun Wadekar * Return the number of service function IDs implemented to
47922038315SVarun Wadekar * provide service to non-secure
48022038315SVarun Wadekar */
48122038315SVarun Wadekar case TOS_CALL_COUNT:
48222038315SVarun Wadekar SMC_RET1(handle, TLK_NUM_FID);
48322038315SVarun Wadekar
48422038315SVarun Wadekar /*
48522038315SVarun Wadekar * Return TLK's UID to the caller
48622038315SVarun Wadekar */
48722038315SVarun Wadekar case TOS_UID:
48822038315SVarun Wadekar SMC_UUID_RET(handle, tlk_uuid);
48922038315SVarun Wadekar
49022038315SVarun Wadekar /*
49122038315SVarun Wadekar * Return the version of current implementation
49222038315SVarun Wadekar */
49322038315SVarun Wadekar case TOS_CALL_VERSION:
49422038315SVarun Wadekar SMC_RET2(handle, TLK_VERSION_MAJOR, TLK_VERSION_MINOR);
49522038315SVarun Wadekar
49622038315SVarun Wadekar default:
4977bc05f52SMihir Joshi WARN("%s: Unhandled SMC: 0x%x\n", __func__, smc_fid);
49822038315SVarun Wadekar break;
49922038315SVarun Wadekar }
50022038315SVarun Wadekar
50122038315SVarun Wadekar SMC_RET1(handle, SMC_UNK);
50222038315SVarun Wadekar }
50322038315SVarun Wadekar
50422038315SVarun Wadekar /* Define a SPD runtime service descriptor for fast SMC calls */
50522038315SVarun Wadekar DECLARE_RT_SVC(
50622038315SVarun Wadekar tlkd_tos_fast,
50722038315SVarun Wadekar
50822038315SVarun Wadekar OEN_TOS_START,
50922038315SVarun Wadekar OEN_TOS_END,
51022038315SVarun Wadekar SMC_TYPE_FAST,
51122038315SVarun Wadekar tlkd_setup,
51222038315SVarun Wadekar tlkd_smc_handler
51322038315SVarun Wadekar );
51422038315SVarun Wadekar
515bbbbcdaeSDavid Cunado /* Define a SPD runtime service descriptor for yielding SMC calls */
51622038315SVarun Wadekar DECLARE_RT_SVC(
51722038315SVarun Wadekar tlkd_tos_std,
51822038315SVarun Wadekar
51922038315SVarun Wadekar OEN_TOS_START,
52022038315SVarun Wadekar OEN_TOS_END,
521bbbbcdaeSDavid Cunado SMC_TYPE_YIELD,
52222038315SVarun Wadekar NULL,
52322038315SVarun Wadekar tlkd_smc_handler
52422038315SVarun Wadekar );
5256693962cSVarun Wadekar
5266693962cSVarun Wadekar /* Define a SPD runtime service descriptor for fast SMC calls */
5276693962cSVarun Wadekar DECLARE_RT_SVC(
5286693962cSVarun Wadekar tlkd_tap_fast,
5296693962cSVarun Wadekar
5306693962cSVarun Wadekar OEN_TAP_START,
5316693962cSVarun Wadekar OEN_TAP_END,
5326693962cSVarun Wadekar SMC_TYPE_FAST,
5336693962cSVarun Wadekar NULL,
5346693962cSVarun Wadekar tlkd_smc_handler
5356693962cSVarun Wadekar );
5366693962cSVarun Wadekar
537bbbbcdaeSDavid Cunado /* Define a SPD runtime service descriptor for yielding SMC calls */
5386693962cSVarun Wadekar DECLARE_RT_SVC(
5396693962cSVarun Wadekar tlkd_tap_std,
5406693962cSVarun Wadekar
5416693962cSVarun Wadekar OEN_TAP_START,
5426693962cSVarun Wadekar OEN_TAP_END,
543bbbbcdaeSDavid Cunado SMC_TYPE_YIELD,
5446693962cSVarun Wadekar NULL,
5456693962cSVarun Wadekar tlkd_smc_handler
5466693962cSVarun Wadekar );
547