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Tejas Patel354fe572018-12-14 00:55:37 -08001/*
Tanmay Shahff34daa2021-08-09 11:00:41 -07002 * Copyright (c) 2019-2022, Xilinx, Inc. All rights reserved.
Tejas Patel354fe572018-12-14 00:55:37 -08003 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
7/*
8 * Top-level SMC handler for Versal power management calls and
9 * IPI setup functions for communication with PMC.
10 */
11
12#include <errno.h>
13#include <plat_private.h>
Tejas Patel59c608a2019-01-09 04:10:29 -080014#include <stdbool.h>
15#include <common/runtime_svc.h>
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +053016#include <plat/common/platform.h>
Tejas Patel59c608a2019-01-09 04:10:29 -080017#include "pm_api_sys.h"
Tejas Patel354fe572018-12-14 00:55:37 -080018#include "pm_client.h"
19#include "pm_ipi.h"
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060020#include <drivers/arm/gicv3.h>
21
22#define XSCUGIC_SGIR_EL1_INITID_SHIFT 24U
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070023#define INVALID_SGI 0xFFU
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060024DEFINE_RENAME_SYSREG_RW_FUNCS(icc_asgi1r_el1, S3_0_C12_C11_6)
Tejas Patel354fe572018-12-14 00:55:37 -080025
Tejas Patel59c608a2019-01-09 04:10:29 -080026/* pm_up = true - UP, pm_up = false - DOWN */
27static bool pm_up;
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070028static unsigned int sgi = (unsigned int)INVALID_SGI;
Tejas Patel59c608a2019-01-09 04:10:29 -080029
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +053030static uint64_t ipi_fiq_handler(uint32_t id, uint32_t flags, void *handle,
31 void *cookie)
32{
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070033 unsigned int cpu;
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060034 unsigned int reg;
35
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +053036 (void)plat_ic_acknowledge_interrupt();
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070037 cpu = plat_my_core_pos() + 1U;
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060038
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070039 if ((unsigned int)sgi != (unsigned int)INVALID_SGI) {
40 reg = (cpu | ((unsigned int)sgi << (unsigned int)XSCUGIC_SGIR_EL1_INITID_SHIFT));
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060041 write_icc_asgi1r_el1(reg);
42 }
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +053043
44 /* Clear FIQ */
45 plat_ic_end_of_interrupt(id);
46
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060047 return 0;
48}
49
50/**
51 * pm_register_sgi() - PM register the IPI interrupt
52 *
53 * @sgi - SGI number to be used for communication.
54 * @return On success, the initialization function must return 0.
55 * Any other return value will cause the framework to ignore
56 * the service
57 *
58 * Update the SGI number to be used.
59 *
60 */
61int pm_register_sgi(unsigned int sgi_num)
62{
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070063 if ((unsigned int)sgi != (unsigned int)INVALID_SGI) {
Venkatesh Yadav Abbarapuaa4898a2021-03-31 03:07:40 -060064 return -EBUSY;
65 }
66
67 if (sgi_num >= GICV3_MAX_SGI_TARGETS) {
68 return -EINVAL;
69 }
70
Abhyuday Godhasaraedc38ae2021-08-04 23:58:46 -070071 sgi = (unsigned int)sgi_num;
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +053072 return 0;
73}
74
Tejas Patel354fe572018-12-14 00:55:37 -080075/**
76 * pm_setup() - PM service setup
77 *
78 * @return On success, the initialization function must return 0.
79 * Any other return value will cause the framework to ignore
80 * the service
81 *
82 * Initialization functions for Versal power management for
83 * communicaton with PMC.
84 *
85 * Called from sip_svc_setup initialization function with the
86 * rt_svc_init signature.
87 */
88int pm_setup(void)
89{
90 int status, ret = 0;
91
92 status = pm_ipi_init(primary_proc);
93
94 if (status < 0) {
95 INFO("BL31: PM Service Init Failed, Error Code %d!\n", status);
96 ret = status;
Tejas Patel59c608a2019-01-09 04:10:29 -080097 } else {
98 pm_up = true;
Tejas Patel354fe572018-12-14 00:55:37 -080099 }
100
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +0530101 /*
102 * Enable IPI IRQ
103 * assume the rich OS is OK to handle callback IRQs now.
104 * Even if we were wrong, it would not enable the IRQ in
105 * the GIC.
106 */
107 pm_ipi_irq_enable(primary_proc);
108
109 ret = request_intr_type_el3(PLAT_VERSAL_IPI_IRQ, ipi_fiq_handler);
Abhyuday Godhasara44877942021-08-05 02:59:26 -0700110 if (ret != 0) {
Shubhrajyoti Dattaabf61222021-03-17 23:01:17 +0530111 WARN("BL31: registering IPI interrupt failed\n");
112 }
Tejas Patel354fe572018-12-14 00:55:37 -0800113 return ret;
114}
Tejas Patel59c608a2019-01-09 04:10:29 -0800115
116/**
Tanmay Shahff34daa2021-08-09 11:00:41 -0700117 * eemi_for_compatibility() - EEMI calls handler for deprecated calls
Tejas Patel59c608a2019-01-09 04:10:29 -0800118 *
Tanmay Shahff34daa2021-08-09 11:00:41 -0700119 * @return - If EEMI API found then, uintptr_t type address, else 0
Tejas Patel59c608a2019-01-09 04:10:29 -0800120 *
Tanmay Shahff34daa2021-08-09 11:00:41 -0700121 * Some EEMI API's use case needs to be changed in Linux driver, so they
122 * can take advantage of common EEMI handler in TF-A. As of now the old
123 * implementation of these APIs are required to maintain backward compatibility
124 * until their use case in linux driver changes.
Tejas Patel59c608a2019-01-09 04:10:29 -0800125 */
Tanmay Shahff34daa2021-08-09 11:00:41 -0700126static uintptr_t eemi_for_compatibility(uint32_t api_id, uint32_t *pm_arg,
127 void *handle, uint32_t security_flag)
Tejas Patel59c608a2019-01-09 04:10:29 -0800128{
129 enum pm_ret_status ret;
130
Tanmay Shahff34daa2021-08-09 11:00:41 -0700131 switch (api_id) {
Tejas Patel59c608a2019-01-09 04:10:29 -0800132
Tejas Patel9141f442019-01-10 03:03:48 -0800133 case PM_IOCTL:
134 {
135 uint32_t value;
136
137 ret = pm_api_ioctl(pm_arg[0], pm_arg[1], pm_arg[2],
Venkatesh Yadav Abbarapu4b233392021-10-20 22:11:53 -0600138 pm_arg[3], pm_arg[4],
139 &value, security_flag);
Tanmay Shahff34daa2021-08-09 11:00:41 -0700140 if (ret == PM_RET_ERROR_NOTSUPPORTED)
141 return (uintptr_t)0;
142
143 SMC_RET1(handle, (uint64_t)ret | ((uint64_t)value) << 32);
Tejas Patel9141f442019-01-10 03:03:48 -0800144 }
145
Tejas Patela3e34ad2019-02-01 17:25:19 +0530146 case PM_QUERY_DATA:
147 {
Tanmay Shahff34daa2021-08-09 11:00:41 -0700148 uint32_t data[PAYLOAD_ARG_CNT] = { 0 };
Tejas Patela3e34ad2019-02-01 17:25:19 +0530149
150 ret = pm_query_data(pm_arg[0], pm_arg[1], pm_arg[2],
Tejas Patel18072da2021-02-25 20:16:56 -0800151 pm_arg[3], data, security_flag);
Rajan Vaja030620d2020-11-23 04:13:54 -0800152
Tanmay Shahff34daa2021-08-09 11:00:41 -0700153 SMC_RET2(handle, (uint64_t)ret | ((uint64_t)data[0] << 32),
154 (uint64_t)data[1] | ((uint64_t)data[2] << 32));
Rajan Vaja030620d2020-11-23 04:13:54 -0800155 }
Tejas Patel59c608a2019-01-09 04:10:29 -0800156
Tanmay Shahff34daa2021-08-09 11:00:41 -0700157 case PM_FEATURE_CHECK:
Tejas Patel59c608a2019-01-09 04:10:29 -0800158 {
Ronak Jain70d1c582022-02-04 00:42:55 -0800159 uint32_t result[PAYLOAD_ARG_CNT] = {0U};
Tejas Patel59c608a2019-01-09 04:10:29 -0800160
Ronak Jain70d1c582022-02-04 00:42:55 -0800161 ret = pm_feature_check(pm_arg[0], result, security_flag);
162 SMC_RET2(handle, (uint64_t)ret | ((uint64_t)result[0] << 32),
163 (uint64_t)result[1] | ((uint64_t)result[2] << 32));
Tejas Patel59c608a2019-01-09 04:10:29 -0800164 }
165
Tanmay Shahff34daa2021-08-09 11:00:41 -0700166 case PM_LOAD_PDI:
Tejas Patel59c608a2019-01-09 04:10:29 -0800167 {
Tanmay Shahff34daa2021-08-09 11:00:41 -0700168 ret = pm_load_pdi(pm_arg[0], pm_arg[1], pm_arg[2],
169 security_flag);
170 SMC_RET1(handle, (uint64_t)ret);
171 }
Tejas Patel59c608a2019-01-09 04:10:29 -0800172
Tanmay Shahff34daa2021-08-09 11:00:41 -0700173 default:
174 return (uintptr_t)0;
Tejas Patel59c608a2019-01-09 04:10:29 -0800175 }
Tanmay Shahff34daa2021-08-09 11:00:41 -0700176}
Tejas Patel59c608a2019-01-09 04:10:29 -0800177
Tanmay Shahff34daa2021-08-09 11:00:41 -0700178/**
179 * eemi_psci_debugfs_handler() - EEMI API invoked from PSCI
180 *
181 * These EEMI APIs performs CPU specific power management tasks.
182 * These EEMI APIs are invoked either from PSCI or from debugfs in kernel.
183 * These calls require CPU specific processing before sending IPI request to
184 * Platform Management Controller. For example enable/disable CPU specific
185 * interrupts. This requires separate handler for these calls and may not be
186 * handled using common eemi handler
187 */
188static uintptr_t eemi_psci_debugfs_handler(uint32_t api_id, uint32_t *pm_arg,
189 void *handle, uint32_t security_flag)
190{
191 enum pm_ret_status ret;
Tejas Patel59c608a2019-01-09 04:10:29 -0800192
Tanmay Shahff34daa2021-08-09 11:00:41 -0700193 switch (api_id) {
Tejas Patel59c608a2019-01-09 04:10:29 -0800194
Tanmay Shahff34daa2021-08-09 11:00:41 -0700195 case PM_SELF_SUSPEND:
196 ret = pm_self_suspend(pm_arg[0], pm_arg[1], pm_arg[2],
197 pm_arg[3], security_flag);
198 SMC_RET1(handle, (uint64_t)ret);
Tejas Patel59c608a2019-01-09 04:10:29 -0800199
Tanmay Shahff34daa2021-08-09 11:00:41 -0700200 case PM_FORCE_POWERDOWN:
201 ret = pm_force_powerdown(pm_arg[0], pm_arg[1], security_flag);
202 SMC_RET1(handle, (uint64_t)ret);
Tejas Patel84275bf2020-09-01 04:43:53 -0700203
Tanmay Shahff34daa2021-08-09 11:00:41 -0700204 case PM_REQ_SUSPEND:
205 ret = pm_req_suspend(pm_arg[0], pm_arg[1], pm_arg[2],
206 pm_arg[3], security_flag);
207 SMC_RET1(handle, (uint64_t)ret);
Tejas Patel84275bf2020-09-01 04:43:53 -0700208
Tanmay Shahff34daa2021-08-09 11:00:41 -0700209 case PM_ABORT_SUSPEND:
210 ret = pm_abort_suspend(pm_arg[0], security_flag);
Tejas Patel59c608a2019-01-09 04:10:29 -0800211 SMC_RET1(handle, (uint64_t)ret);
212
Tanmay Shahff34daa2021-08-09 11:00:41 -0700213 case PM_SYSTEM_SHUTDOWN:
214 ret = pm_system_shutdown(pm_arg[0], pm_arg[1], security_flag);
215 SMC_RET1(handle, (uint64_t)ret);
Tejas Patel59c608a2019-01-09 04:10:29 -0800216
Tanmay Shahff34daa2021-08-09 11:00:41 -0700217 default:
218 return (uintptr_t)0;
Tejas Patel59c608a2019-01-09 04:10:29 -0800219 }
Tanmay Shahff34daa2021-08-09 11:00:41 -0700220}
Tejas Patel59c608a2019-01-09 04:10:29 -0800221
Tanmay Shahff34daa2021-08-09 11:00:41 -0700222/**
223 * TF_A_specific_handler() - SMC handler for TF-A specific functionality
224 *
225 * These EEMI calls performs functionality that does not require
226 * IPI transaction. The handler ends in TF-A and returns requested data to
227 * kernel from TF-A
228 */
229static uintptr_t TF_A_specific_handler(uint32_t api_id, uint32_t *pm_arg,
230 void *handle, uint32_t security_flag)
231{
232 switch (api_id) {
Tejas Patel59c608a2019-01-09 04:10:29 -0800233
Tanmay Shahff34daa2021-08-09 11:00:41 -0700234 case PM_GET_CALLBACK_DATA:
Tejas Patel59c608a2019-01-09 04:10:29 -0800235 {
Tanmay Shahff34daa2021-08-09 11:00:41 -0700236 uint32_t result[4] = {0};
Tejas Patel59c608a2019-01-09 04:10:29 -0800237
Tanmay Shahff34daa2021-08-09 11:00:41 -0700238 pm_get_callbackdata(result, ARRAY_SIZE(result), security_flag);
239 SMC_RET2(handle,
240 (uint64_t)result[0] | ((uint64_t)result[1] << 32),
241 (uint64_t)result[2] | ((uint64_t)result[3] << 32));
Tejas Patel59c608a2019-01-09 04:10:29 -0800242 }
243
Tejas Patel044001d2019-01-21 17:56:48 +0530244 case PM_GET_TRUSTZONE_VERSION:
245 SMC_RET1(handle, (uint64_t)PM_RET_SUCCESS |
246 ((uint64_t)VERSAL_TZ_VERSION << 32));
247
Tanmay Shahff34daa2021-08-09 11:00:41 -0700248 default:
249 return (uintptr_t)0;
Ravi Patelbd4aa5a2019-08-12 03:17:54 -0700250 }
Tanmay Shahff34daa2021-08-09 11:00:41 -0700251}
Ravi Patelbd4aa5a2019-08-12 03:17:54 -0700252
Tanmay Shahff34daa2021-08-09 11:00:41 -0700253/**
254 * eemi_handler() - Prepare EEMI payload and perform IPI transaction
255 *
256 * EEMI - Embedded Energy Management Interface is Xilinx proprietary protocol
257 * to allow communication between power management controller and different
258 * processing clusters.
259 *
260 * This handler prepares EEMI protocol payload received from kernel and performs
261 * IPI transaction.
262 */
263static uintptr_t eemi_handler(uint32_t api_id, uint32_t *pm_arg,
264 void *handle, uint32_t security_flag)
265{
266 enum pm_ret_status ret;
267 uint32_t buf[PAYLOAD_ARG_CNT] = {0};
Ravi Patel22b0b492019-03-06 12:34:46 +0530268
Tanmay Shahff34daa2021-08-09 11:00:41 -0700269 ret = pm_handle_eemi_call(security_flag, api_id, pm_arg[0], pm_arg[1],
270 pm_arg[2], pm_arg[3], pm_arg[4],
271 (uint64_t *)buf);
272 /*
273 * Two IOCTLs, to get clock name and pinctrl name of pm_query_data API
274 * receives 5 words of respoonse from firmware. Currently linux driver can
275 * receive only 4 words from TF-A. So, this needs to be handled separately
276 * than other eemi calls.
277 */
278 if (api_id == PM_QUERY_DATA) {
279 if ((pm_arg[0] == XPM_QID_CLOCK_GET_NAME ||
280 pm_arg[0] == XPM_QID_PINCTRL_GET_FUNCTION_NAME) &&
281 ret == PM_RET_SUCCESS) {
282 SMC_RET2(handle, (uint64_t)buf[0] | ((uint64_t)buf[1] << 32),
283 (uint64_t)buf[2] | ((uint64_t)buf[3] << 32));
284 }
Ravi Patel22b0b492019-03-06 12:34:46 +0530285 }
286
Tanmay Shahff34daa2021-08-09 11:00:41 -0700287 SMC_RET2(handle, (uint64_t)ret | ((uint64_t)buf[0] << 32),
288 (uint64_t)buf[1] | ((uint64_t)buf[2] << 32));
289}
Jolly Shahed05a712019-03-22 05:33:39 +0530290
Tanmay Shahff34daa2021-08-09 11:00:41 -0700291/**
292 * pm_smc_handler() - SMC handler for PM-API calls coming from EL1/EL2.
293 * @smc_fid - Function Identifier
294 * @x1 - x4 - SMC64 Arguments from kernel
Venkatesh Yadav Abbarapu4b233392021-10-20 22:11:53 -0600295 * x3 (upper 32-bits) and x4 are Unused
Tanmay Shahff34daa2021-08-09 11:00:41 -0700296 * @cookie - Unused
297 * @handler - Pointer to caller's context structure
298 *
299 * @return - Unused
300 *
301 * Determines that smc_fid is valid and supported PM SMC Function ID from the
302 * list of pm_api_ids, otherwise completes the request with
303 * the unknown SMC Function ID
304 *
305 * The SMC calls for PM service are forwarded from SIP Service SMC handler
306 * function with rt_svc_handle signature
307 */
308uint64_t pm_smc_handler(uint32_t smc_fid, uint64_t x1, uint64_t x2, uint64_t x3,
309 uint64_t x4, void *cookie, void *handle, uint64_t flags)
310{
311 uintptr_t ret;
312 uint32_t pm_arg[PAYLOAD_ARG_CNT] = {0};
313 uint32_t security_flag = SECURE_FLAG;
314 uint32_t api_id;
Saeed Nowshadi2294b422019-06-03 10:22:35 -0700315
Tanmay Shahff34daa2021-08-09 11:00:41 -0700316 /* Handle case where PM wasn't initialized properly */
317 if (!pm_up)
318 SMC_RET1(handle, SMC_UNK);
Saeed Nowshadi2294b422019-06-03 10:22:35 -0700319
Tanmay Shahff34daa2021-08-09 11:00:41 -0700320 /*
321 * Mark BIT24 payload (i.e 1st bit of pm_arg[3] ) as non-secure (1)
322 * if smc called is non secure
323 */
324 if (is_caller_non_secure(flags)) {
325 security_flag = NON_SECURE_FLAG;
Tejas Patel5c154e12020-11-25 01:53:12 -0800326 }
327
Tanmay Shahff34daa2021-08-09 11:00:41 -0700328 pm_arg[0] = (uint32_t)x1;
329 pm_arg[1] = (uint32_t)(x1 >> 32);
330 pm_arg[2] = (uint32_t)x2;
331 pm_arg[3] = (uint32_t)(x2 >> 32);
Venkatesh Yadav Abbarapu4b233392021-10-20 22:11:53 -0600332 pm_arg[4] = (uint32_t)x3;
Tanmay Shahff34daa2021-08-09 11:00:41 -0700333 (void)(x4);
334 api_id = smc_fid & FUNCID_NUM_MASK;
Tejas Patel42015552020-11-25 01:56:57 -0800335
Tanmay Shahff34daa2021-08-09 11:00:41 -0700336 ret = eemi_for_compatibility(api_id, pm_arg, handle, security_flag);
337 if (ret != (uintptr_t)0)
338 return ret;
339
340 ret = eemi_psci_debugfs_handler(api_id, pm_arg, handle, flags);
341 if (ret != (uintptr_t)0)
342 return ret;
343
344 ret = TF_A_specific_handler(api_id, pm_arg, handle, security_flag);
345 if (ret != (uintptr_t)0)
346 return ret;
347
348 ret = eemi_handler(api_id, pm_arg, handle, security_flag);
349
350 return ret;
Tejas Patel59c608a2019-01-09 04:10:29 -0800351}