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Reading the SCMI mailbox status in polling mode causes a burst of bus accesses. On certain platforms, this would not be ideal as the shared bus on the CPU subsystem might cause contentions across all the CPUs. So allow platforms to specify a delay to be introduced while polling. Change-Id: Ib90ad7b5954854071cfd543f4a27a178dde3d5c6 Signed-off-by: Pranav Madhu <pranav.madhu@arm.com>
213 lines
5.3 KiB
C
213 lines
5.3 KiB
C
/*
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* Copyright (c) 2017-2024, Arm Limited and Contributors. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <assert.h>
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#include <arch_helpers.h>
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#include <common/debug.h>
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#include <drivers/arm/css/scmi.h>
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#include <drivers/delay_timer.h>
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#include "scmi_private.h"
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#if HW_ASSISTED_COHERENCY
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#define scmi_lock_init(lock)
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#define scmi_lock_get(lock) spin_lock(lock)
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#define scmi_lock_release(lock) spin_unlock(lock)
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#else
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#define scmi_lock_init(lock) bakery_lock_init(lock)
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#define scmi_lock_get(lock) bakery_lock_get(lock)
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#define scmi_lock_release(lock) bakery_lock_release(lock)
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#endif
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/*
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* Private helper function to get exclusive access to SCMI channel.
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*/
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void scmi_get_channel(scmi_channel_t *ch)
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{
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assert(ch->lock);
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scmi_lock_get(ch->lock);
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/* Make sure any previous command has finished */
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assert(SCMI_IS_CHANNEL_FREE(
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((mailbox_mem_t *)(ch->info->scmi_mbx_mem))->status));
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}
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/*
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* Private helper function to transfer ownership of channel from AP to SCP.
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*/
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void scmi_send_sync_command(scmi_channel_t *ch)
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{
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mailbox_mem_t *mbx_mem = (mailbox_mem_t *)(ch->info->scmi_mbx_mem);
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SCMI_MARK_CHANNEL_BUSY(mbx_mem->status);
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/*
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* Ensure that any write to the SCMI payload area is seen by SCP before
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* we write to the doorbell register. If these 2 writes were reordered
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* by the CPU then SCP would read stale payload data
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*/
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dmbst();
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ch->info->ring_doorbell(ch->info);
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/*
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* Ensure that the write to the doorbell register is ordered prior to
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* checking whether the channel is free.
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*/
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dmbsy();
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/* Wait for channel to be free */
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while (!SCMI_IS_CHANNEL_FREE(mbx_mem->status)) {
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if (ch->info->delay != 0)
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udelay(ch->info->delay);
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}
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/*
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* Ensure that any read to the SCMI payload area is done after reading
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* mailbox status. If these 2 reads were reordered then the CPU would
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* read invalid payload data
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*/
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dmbld();
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}
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/*
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* Private helper function to release exclusive access to SCMI channel.
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*/
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void scmi_put_channel(scmi_channel_t *ch)
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{
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/* Make sure any previous command has finished */
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assert(SCMI_IS_CHANNEL_FREE(
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((mailbox_mem_t *)(ch->info->scmi_mbx_mem))->status));
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assert(ch->lock);
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scmi_lock_release(ch->lock);
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}
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/*
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* API to query the SCMI protocol version.
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*/
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int scmi_proto_version(void *p, uint32_t proto_id, uint32_t *version)
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{
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mailbox_mem_t *mbx_mem;
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unsigned int token = 0;
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int ret;
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scmi_channel_t *ch = (scmi_channel_t *)p;
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validate_scmi_channel(ch);
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scmi_get_channel(ch);
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mbx_mem = (mailbox_mem_t *)(ch->info->scmi_mbx_mem);
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mbx_mem->msg_header = SCMI_MSG_CREATE(proto_id, SCMI_PROTO_VERSION_MSG,
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token);
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mbx_mem->len = SCMI_PROTO_VERSION_MSG_LEN;
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mbx_mem->flags = SCMI_FLAG_RESP_POLL;
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scmi_send_sync_command(ch);
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/* Get the return values */
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SCMI_PAYLOAD_RET_VAL2(mbx_mem->payload, ret, *version);
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assert(mbx_mem->len == SCMI_PROTO_VERSION_RESP_LEN);
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assert(token == SCMI_MSG_GET_TOKEN(mbx_mem->msg_header));
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scmi_put_channel(ch);
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return ret;
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}
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/*
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* API to query the protocol message attributes for a SCMI protocol.
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*/
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int scmi_proto_msg_attr(void *p, uint32_t proto_id,
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uint32_t command_id, uint32_t *attr)
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{
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mailbox_mem_t *mbx_mem;
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unsigned int token = 0;
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int ret;
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scmi_channel_t *ch = (scmi_channel_t *)p;
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validate_scmi_channel(ch);
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scmi_get_channel(ch);
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mbx_mem = (mailbox_mem_t *)(ch->info->scmi_mbx_mem);
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mbx_mem->msg_header = SCMI_MSG_CREATE(proto_id,
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SCMI_PROTO_MSG_ATTR_MSG, token);
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mbx_mem->len = SCMI_PROTO_MSG_ATTR_MSG_LEN;
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mbx_mem->flags = SCMI_FLAG_RESP_POLL;
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SCMI_PAYLOAD_ARG1(mbx_mem->payload, command_id);
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scmi_send_sync_command(ch);
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/* Get the return values */
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SCMI_PAYLOAD_RET_VAL2(mbx_mem->payload, ret, *attr);
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assert(mbx_mem->len == SCMI_PROTO_MSG_ATTR_RESP_LEN);
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assert(token == SCMI_MSG_GET_TOKEN(mbx_mem->msg_header));
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scmi_put_channel(ch);
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return ret;
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}
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/*
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* SCMI Driver initialization API. Returns initialized channel on success
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* or NULL on error. The return type is an opaque void pointer.
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*/
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void *scmi_init(scmi_channel_t *ch)
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{
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uint32_t version;
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int ret;
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assert(ch && ch->info);
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assert(ch->info->db_reg_addr);
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assert(ch->info->db_modify_mask);
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assert(ch->info->db_preserve_mask);
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assert(ch->info->ring_doorbell != NULL);
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assert(ch->lock);
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scmi_lock_init(ch->lock);
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ch->is_initialized = 1;
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ret = scmi_proto_version(ch, SCMI_PWR_DMN_PROTO_ID, &version);
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if (ret != SCMI_E_SUCCESS) {
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WARN("SCMI power domain protocol version message failed\n");
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goto error;
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}
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if (!is_scmi_version_compatible(SCMI_PWR_DMN_PROTO_VER, version)) {
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WARN("SCMI power domain protocol version 0x%x incompatible with driver version 0x%x\n",
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version, SCMI_PWR_DMN_PROTO_VER);
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goto error;
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}
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VERBOSE("SCMI power domain protocol version 0x%x detected\n", version);
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ret = scmi_proto_version(ch, SCMI_SYS_PWR_PROTO_ID, &version);
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if ((ret != SCMI_E_SUCCESS)) {
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WARN("SCMI system power protocol version message failed\n");
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goto error;
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}
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if (!is_scmi_version_compatible(SCMI_SYS_PWR_PROTO_VER, version)) {
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WARN("SCMI system power management protocol version 0x%x incompatible with driver version 0x%x\n",
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version, SCMI_SYS_PWR_PROTO_VER);
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goto error;
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}
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VERBOSE("SCMI system power management protocol version 0x%x detected\n",
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version);
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INFO("SCMI driver initialized\n");
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return (void *)ch;
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error:
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ch->is_initialized = 0;
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return NULL;
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}
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