1b4734308SPeng Fan // SPDX-License-Identifier: BSD-3-Clause 2b4734308SPeng Fan /* 3b4734308SPeng Fan * Copyright (c) 2015-2019, Arm Limited and Contributors. All rights reserved. 4b4734308SPeng Fan * Copyright (c) 2019-2020, Linaro Limited 5b4734308SPeng Fan */ 6b4734308SPeng Fan #include <assert.h> 7b4734308SPeng Fan #include <stdbool.h> 8b4734308SPeng Fan #include <stdint.h> 9b4734308SPeng Fan #include <string.h> 10b4734308SPeng Fan 11b4734308SPeng Fan #include <drivers/scmi-msg.h> 12b4734308SPeng Fan #include <drivers/scmi.h> 13b4734308SPeng Fan #include <lib/cassert.h> 14b4734308SPeng Fan #include <lib/mmio.h> 15b4734308SPeng Fan #include <lib/spinlock.h> 16b4734308SPeng Fan #include <lib/utils.h> 17b4734308SPeng Fan #include <plat/common/platform.h> 18b4734308SPeng Fan 19b4734308SPeng Fan #include "common.h" 20b4734308SPeng Fan 21b4734308SPeng Fan /* Legacy SMT/SCMI messages are 128 bytes at most including SMT header */ 22b4734308SPeng Fan #define SCMI_PLAYLOAD_MAX 92U 23b4734308SPeng Fan #define SCMI_PLAYLOAD_U32_MAX (SCMI_PLAYLOAD_MAX / sizeof(uint32_t)) 24b4734308SPeng Fan 25b4734308SPeng Fan /** 26b4734308SPeng Fan * struct smt_header - SMT formatted header for SMT base shared memory transfer 27b4734308SPeng Fan * 28b4734308SPeng Fan * @status: Bit flags, see SMT_STATUS_* 29b4734308SPeng Fan * @flags: Bit flags, see SMT_FLAG_* 30b4734308SPeng Fan * @length: Byte size of message payload (variable) + ::message_header (32bit) 31b4734308SPeng Fan * payload: SCMI message payload data 32b4734308SPeng Fan */ 33b4734308SPeng Fan struct smt_header { 34b4734308SPeng Fan uint32_t reserved0; 35b4734308SPeng Fan uint32_t status; 36b4734308SPeng Fan uint64_t reserved1; 37b4734308SPeng Fan uint32_t flags; 38b4734308SPeng Fan uint32_t length; /* message_header + payload */ 39b4734308SPeng Fan uint32_t message_header; 40b4734308SPeng Fan uint32_t payload[]; 41b4734308SPeng Fan }; 42b4734308SPeng Fan 43b4734308SPeng Fan CASSERT(SCMI_PLAYLOAD_MAX + sizeof(struct smt_header) <= SMT_BUF_SLOT_SIZE, 44b4734308SPeng Fan assert_scmi_message_max_length_fits_in_smt_buffer_slot); 45b4734308SPeng Fan 46b4734308SPeng Fan /* Flag set in smt_header::status when SMT does not contain pending message */ 47*0e223c6aSPeng Fan #define SMT_STATUS_FREE BIT_32(0) 48b4734308SPeng Fan /* Flag set in smt_header::status when SMT reports an error */ 49*0e223c6aSPeng Fan #define SMT_STATUS_ERROR BIT_32(1) 50b4734308SPeng Fan 51b4734308SPeng Fan /* Flag set in smt_header::flags when SMT uses interrupts */ 52*0e223c6aSPeng Fan #define SMT_FLAG_INTR_ENABLED BIT_32(1) 53b4734308SPeng Fan 54b4734308SPeng Fan /* Bit fields packed in smt_header::message_header */ 55b4734308SPeng Fan #define SMT_MSG_ID_MASK GENMASK_32(7, 0) 56b4734308SPeng Fan #define SMT_HDR_MSG_ID(_hdr) ((_hdr) & SMT_MSG_ID_MASK) 57b4734308SPeng Fan 58b4734308SPeng Fan #define SMT_MSG_TYPE_MASK GENMASK_32(9, 8) 59b4734308SPeng Fan #define SMT_HDR_TYPE_ID(_hdr) (((_hdr) & SMT_MSG_TYPE_MASK) >> 8) 60b4734308SPeng Fan 61b4734308SPeng Fan #define SMT_MSG_PROT_ID_MASK GENMASK_32(17, 10) 62b4734308SPeng Fan #define SMT_HDR_PROT_ID(_hdr) (((_hdr) & SMT_MSG_PROT_ID_MASK) >> 10) 63b4734308SPeng Fan 64b4734308SPeng Fan /* 65b4734308SPeng Fan * Provision input message payload buffers for fastcall SMC context entries 66b4734308SPeng Fan * and for interrupt context execution entries. 67b4734308SPeng Fan */ 68b4734308SPeng Fan static uint32_t fast_smc_payload[PLATFORM_CORE_COUNT][SCMI_PLAYLOAD_U32_MAX]; 69b4734308SPeng Fan static uint32_t interrupt_payload[PLATFORM_CORE_COUNT][SCMI_PLAYLOAD_U32_MAX]; 70b4734308SPeng Fan 71b4734308SPeng Fan /* SMP protection on channel access */ 72b4734308SPeng Fan static struct spinlock smt_channels_lock; 73b4734308SPeng Fan 74b4734308SPeng Fan /* If channel is not busy, set busy and return true, otherwise return false */ 75b4734308SPeng Fan static bool channel_set_busy(struct scmi_msg_channel *chan) 76b4734308SPeng Fan { 77b4734308SPeng Fan bool channel_is_busy; 78b4734308SPeng Fan 79b4734308SPeng Fan spin_lock(&smt_channels_lock); 80b4734308SPeng Fan 81b4734308SPeng Fan channel_is_busy = chan->busy; 82b4734308SPeng Fan 83b4734308SPeng Fan if (!channel_is_busy) { 84b4734308SPeng Fan chan->busy = true; 85b4734308SPeng Fan } 86b4734308SPeng Fan 87b4734308SPeng Fan spin_unlock(&smt_channels_lock); 88b4734308SPeng Fan 89b4734308SPeng Fan return !channel_is_busy; 90b4734308SPeng Fan } 91b4734308SPeng Fan 92b4734308SPeng Fan static void channel_release_busy(struct scmi_msg_channel *chan) 93b4734308SPeng Fan { 94b4734308SPeng Fan chan->busy = false; 95b4734308SPeng Fan } 96b4734308SPeng Fan 97b4734308SPeng Fan static struct smt_header *channel_to_smt_hdr(struct scmi_msg_channel *chan) 98b4734308SPeng Fan { 99b4734308SPeng Fan return (struct smt_header *)chan->shm_addr; 100b4734308SPeng Fan } 101b4734308SPeng Fan 102b4734308SPeng Fan /* 103b4734308SPeng Fan * Creates a SCMI message instance in secure memory and pushes it in the SCMI 104b4734308SPeng Fan * message drivers. Message structure contains SCMI protocol meta-data and 105b4734308SPeng Fan * references to input payload in secure memory and output message buffer 106b4734308SPeng Fan * in shared memory. 107b4734308SPeng Fan */ 108b4734308SPeng Fan static void scmi_proccess_smt(unsigned int agent_id, uint32_t *payload_buf) 109b4734308SPeng Fan { 110b4734308SPeng Fan struct scmi_msg_channel *chan; 111b4734308SPeng Fan struct smt_header *smt_hdr; 112b4734308SPeng Fan size_t in_payload_size; 113b4734308SPeng Fan uint32_t smt_status; 114b4734308SPeng Fan struct scmi_msg msg; 115b4734308SPeng Fan bool error = true; 116b4734308SPeng Fan 117b4734308SPeng Fan chan = plat_scmi_get_channel(agent_id); 118b4734308SPeng Fan if (chan == NULL) { 119b4734308SPeng Fan return; 120b4734308SPeng Fan } 121b4734308SPeng Fan 122b4734308SPeng Fan smt_hdr = channel_to_smt_hdr(chan); 123b4734308SPeng Fan assert(smt_hdr); 124b4734308SPeng Fan 125b4734308SPeng Fan smt_status = __atomic_load_n(&smt_hdr->status, __ATOMIC_RELAXED); 126b4734308SPeng Fan 127b4734308SPeng Fan if (!channel_set_busy(chan)) { 128b4734308SPeng Fan VERBOSE("SCMI channel %u busy", agent_id); 129b4734308SPeng Fan goto out; 130b4734308SPeng Fan } 131b4734308SPeng Fan 132b4734308SPeng Fan in_payload_size = __atomic_load_n(&smt_hdr->length, __ATOMIC_RELAXED) - 133b4734308SPeng Fan sizeof(smt_hdr->message_header); 134b4734308SPeng Fan 135b4734308SPeng Fan if (in_payload_size > SCMI_PLAYLOAD_MAX) { 136*0e223c6aSPeng Fan VERBOSE("SCMI payload too big %zu", in_payload_size); 137b4734308SPeng Fan goto out; 138b4734308SPeng Fan } 139b4734308SPeng Fan 140b4734308SPeng Fan if ((smt_status & (SMT_STATUS_ERROR | SMT_STATUS_FREE)) != 0U) { 141b4734308SPeng Fan VERBOSE("SCMI channel bad status 0x%x", 142b4734308SPeng Fan smt_hdr->status & (SMT_STATUS_ERROR | SMT_STATUS_FREE)); 143b4734308SPeng Fan goto out; 144b4734308SPeng Fan } 145b4734308SPeng Fan 146b4734308SPeng Fan /* Fill message */ 147b4734308SPeng Fan zeromem(&msg, sizeof(msg)); 148b4734308SPeng Fan msg.in = (char *)payload_buf; 149b4734308SPeng Fan msg.in_size = in_payload_size; 150b4734308SPeng Fan msg.out = (char *)smt_hdr->payload; 151b4734308SPeng Fan msg.out_size = chan->shm_size - sizeof(*smt_hdr); 152b4734308SPeng Fan 153b4734308SPeng Fan assert((msg.out != NULL) && (msg.out_size >= sizeof(int32_t))); 154b4734308SPeng Fan 155b4734308SPeng Fan /* Here the payload is copied in secure memory */ 156b4734308SPeng Fan memcpy(msg.in, smt_hdr->payload, in_payload_size); 157b4734308SPeng Fan 158b4734308SPeng Fan msg.protocol_id = SMT_HDR_PROT_ID(smt_hdr->message_header); 159b4734308SPeng Fan msg.message_id = SMT_HDR_MSG_ID(smt_hdr->message_header); 160b4734308SPeng Fan msg.agent_id = agent_id; 161b4734308SPeng Fan 162b4734308SPeng Fan scmi_process_message(&msg); 163b4734308SPeng Fan 164b4734308SPeng Fan /* Update message length with the length of the response message */ 165b4734308SPeng Fan smt_hdr->length = msg.out_size_out + sizeof(smt_hdr->message_header); 166b4734308SPeng Fan 167b4734308SPeng Fan channel_release_busy(chan); 168b4734308SPeng Fan error = false; 169b4734308SPeng Fan 170b4734308SPeng Fan out: 171b4734308SPeng Fan if (error) { 172b4734308SPeng Fan VERBOSE("SCMI error"); 173b4734308SPeng Fan smt_hdr->status |= SMT_STATUS_ERROR | SMT_STATUS_FREE; 174b4734308SPeng Fan } else { 175b4734308SPeng Fan smt_hdr->status |= SMT_STATUS_FREE; 176b4734308SPeng Fan } 177b4734308SPeng Fan } 178b4734308SPeng Fan 179b4734308SPeng Fan void scmi_smt_fastcall_smc_entry(unsigned int agent_id) 180b4734308SPeng Fan { 181b4734308SPeng Fan scmi_proccess_smt(agent_id, 182b4734308SPeng Fan fast_smc_payload[plat_my_core_pos()]); 183b4734308SPeng Fan } 184b4734308SPeng Fan 185b4734308SPeng Fan void scmi_smt_interrupt_entry(unsigned int agent_id) 186b4734308SPeng Fan { 187b4734308SPeng Fan scmi_proccess_smt(agent_id, 188b4734308SPeng Fan interrupt_payload[plat_my_core_pos()]); 189b4734308SPeng Fan } 190b4734308SPeng Fan 191b4734308SPeng Fan /* Init a SMT header for a shared memory buffer: state it a free/no-error */ 192b4734308SPeng Fan void scmi_smt_init_agent_channel(struct scmi_msg_channel *chan) 193b4734308SPeng Fan { 194b4734308SPeng Fan if (chan != NULL) { 195b4734308SPeng Fan struct smt_header *smt_header = channel_to_smt_hdr(chan); 196b4734308SPeng Fan 197b4734308SPeng Fan if (smt_header != NULL) { 198b4734308SPeng Fan memset(smt_header, 0, sizeof(*smt_header)); 199b4734308SPeng Fan smt_header->status = SMT_STATUS_FREE; 200b4734308SPeng Fan 201b4734308SPeng Fan return; 202b4734308SPeng Fan } 203b4734308SPeng Fan } 204b4734308SPeng Fan 205b4734308SPeng Fan panic(); 206b4734308SPeng Fan } 207