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381 lines
10 KiB
381 lines
10 KiB
// SPDX-License-Identifier: BSD-3-Clause
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/*
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* Copyright (c) 2015-2020, Arm Limited and Contributors. All rights reserved.
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* Copyright (c) 2019-2020, Linaro Limited
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*/
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#include <cdefs.h>
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#include <string.h>
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#include <drivers/scmi-msg.h>
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#include <drivers/scmi.h>
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#include <lib/utils_def.h>
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#include "common.h"
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#pragma weak plat_scmi_clock_count
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#pragma weak plat_scmi_clock_get_name
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#pragma weak plat_scmi_clock_rates_array
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#pragma weak plat_scmi_clock_rates_by_step
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#pragma weak plat_scmi_clock_get_rate
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#pragma weak plat_scmi_clock_set_rate
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#pragma weak plat_scmi_clock_get_state
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#pragma weak plat_scmi_clock_set_state
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static bool message_id_is_supported(unsigned int message_id);
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size_t plat_scmi_clock_count(unsigned int agent_id __unused)
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{
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return 0U;
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}
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const char *plat_scmi_clock_get_name(unsigned int agent_id __unused,
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unsigned int scmi_id __unused)
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{
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return NULL;
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}
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int32_t plat_scmi_clock_rates_array(unsigned int agent_id __unused,
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unsigned int scmi_id __unused,
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unsigned long *rates __unused,
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size_t *nb_elts __unused)
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{
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return SCMI_NOT_SUPPORTED;
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}
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int32_t plat_scmi_clock_rates_by_step(unsigned int agent_id __unused,
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unsigned int scmi_id __unused,
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unsigned long *steps __unused)
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{
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return SCMI_NOT_SUPPORTED;
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}
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unsigned long plat_scmi_clock_get_rate(unsigned int agent_id __unused,
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unsigned int scmi_id __unused)
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{
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return 0U;
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}
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int32_t plat_scmi_clock_set_rate(unsigned int agent_id __unused,
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unsigned int scmi_id __unused,
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unsigned long rate __unused)
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{
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return SCMI_NOT_SUPPORTED;
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}
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int32_t plat_scmi_clock_get_state(unsigned int agent_id __unused,
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unsigned int scmi_id __unused)
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{
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return SCMI_NOT_SUPPORTED;
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}
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int32_t plat_scmi_clock_set_state(unsigned int agent_id __unused,
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unsigned int scmi_id __unused,
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bool enable_not_disable __unused)
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{
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return SCMI_NOT_SUPPORTED;
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}
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static void report_version(struct scmi_msg *msg)
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{
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struct scmi_protocol_version_p2a return_values = {
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.status = SCMI_SUCCESS,
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.version = SCMI_PROTOCOL_VERSION_CLOCK,
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};
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if (msg->in_size != 0) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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scmi_write_response(msg, &return_values, sizeof(return_values));
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}
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static void report_attributes(struct scmi_msg *msg)
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{
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size_t agent_count = plat_scmi_clock_count(msg->agent_id);
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struct scmi_protocol_attributes_p2a return_values = {
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.status = SCMI_SUCCESS,
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.attributes = SCMI_CLOCK_PROTOCOL_ATTRIBUTES(1U, agent_count),
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};
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if (msg->in_size != 0) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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scmi_write_response(msg, &return_values, sizeof(return_values));
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}
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static void report_message_attributes(struct scmi_msg *msg)
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{
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struct scmi_protocol_message_attributes_a2p *in_args = (void *)msg->in;
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struct scmi_protocol_message_attributes_p2a return_values = {
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.status = SCMI_SUCCESS,
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/* For this protocol, attributes shall be zero */
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.attributes = 0U,
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};
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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if (!message_id_is_supported(in_args->message_id)) {
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scmi_status_response(msg, SCMI_NOT_FOUND);
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return;
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}
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scmi_write_response(msg, &return_values, sizeof(return_values));
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}
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static void scmi_clock_attributes(struct scmi_msg *msg)
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{
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const struct scmi_clock_attributes_a2p *in_args = (void *)msg->in;
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struct scmi_clock_attributes_p2a return_values = {
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.status = SCMI_SUCCESS,
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};
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const char *name = NULL;
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unsigned int clock_id = 0U;
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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clock_id = SPECULATION_SAFE_VALUE(in_args->clock_id);
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if (clock_id >= plat_scmi_clock_count(msg->agent_id)) {
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scmi_status_response(msg, SCMI_INVALID_PARAMETERS);
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return;
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}
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name = plat_scmi_clock_get_name(msg->agent_id, clock_id);
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if (name == NULL) {
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scmi_status_response(msg, SCMI_NOT_FOUND);
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return;
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}
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COPY_NAME_IDENTIFIER(return_values.clock_name, name);
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return_values.attributes = plat_scmi_clock_get_state(msg->agent_id,
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clock_id);
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scmi_write_response(msg, &return_values, sizeof(return_values));
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}
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static void scmi_clock_rate_get(struct scmi_msg *msg)
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{
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const struct scmi_clock_rate_get_a2p *in_args = (void *)msg->in;
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unsigned long rate = 0U;
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struct scmi_clock_rate_get_p2a return_values = {
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.status = SCMI_SUCCESS,
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};
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unsigned int clock_id = 0U;
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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clock_id = SPECULATION_SAFE_VALUE(in_args->clock_id);
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if (clock_id >= plat_scmi_clock_count(msg->agent_id)) {
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scmi_status_response(msg, SCMI_INVALID_PARAMETERS);
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return;
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}
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rate = plat_scmi_clock_get_rate(msg->agent_id, clock_id);
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return_values.rate[0] = (uint32_t)rate;
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return_values.rate[1] = (uint32_t)((uint64_t)rate >> 32);
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scmi_write_response(msg, &return_values, sizeof(return_values));
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}
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static void scmi_clock_rate_set(struct scmi_msg *msg)
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{
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const struct scmi_clock_rate_set_a2p *in_args = (void *)msg->in;
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unsigned long rate = 0U;
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int32_t status = 0;
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unsigned int clock_id = 0U;
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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clock_id = SPECULATION_SAFE_VALUE(in_args->clock_id);
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if (clock_id >= plat_scmi_clock_count(msg->agent_id)) {
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scmi_status_response(msg, SCMI_INVALID_PARAMETERS);
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return;
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}
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rate = (unsigned long)(((uint64_t)in_args->rate[1] << 32) |
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in_args->rate[0]);
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status = plat_scmi_clock_set_rate(msg->agent_id, clock_id, rate);
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scmi_status_response(msg, status);
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}
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static void scmi_clock_config_set(struct scmi_msg *msg)
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{
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const struct scmi_clock_config_set_a2p *in_args = (void *)msg->in;
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int32_t status = SCMI_GENERIC_ERROR;
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bool enable = false;
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unsigned int clock_id = 0U;
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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clock_id = SPECULATION_SAFE_VALUE(in_args->clock_id);
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if (clock_id >= plat_scmi_clock_count(msg->agent_id)) {
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scmi_status_response(msg, SCMI_INVALID_PARAMETERS);
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return;
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}
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enable = in_args->attributes & SCMI_CLOCK_CONFIG_SET_ENABLE_MASK;
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status = plat_scmi_clock_set_state(msg->agent_id, clock_id, enable);
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scmi_status_response(msg, status);
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}
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#define RATES_ARRAY_SIZE_MAX (SCMI_PLAYLOAD_MAX - \
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sizeof(struct scmi_clock_describe_rates_p2a))
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#define SCMI_RATES_BY_ARRAY(_nb_rates, _rem_rates) \
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SCMI_CLOCK_DESCRIBE_RATES_NUM_RATES_FLAGS((_nb_rates), \
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SCMI_CLOCK_RATE_FORMAT_LIST, \
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(_rem_rates))
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#define SCMI_RATES_BY_STEP \
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SCMI_CLOCK_DESCRIBE_RATES_NUM_RATES_FLAGS(3U, \
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SCMI_CLOCK_RATE_FORMAT_RANGE, \
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0U)
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#define RATE_DESC_SIZE sizeof(struct scmi_clock_rate)
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static void write_rate_desc_array_in_buffer(char *dest, unsigned long *rates,
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size_t nb_elt)
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{
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uint32_t *out = (uint32_t *)(uintptr_t)dest;
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size_t n;
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ASSERT_SYM_PTR_ALIGN(out);
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for (n = 0U; n < nb_elt; n++) {
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out[2 * n] = (uint32_t)rates[n];
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out[2 * n + 1] = (uint32_t)((uint64_t)rates[n] >> 32);
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}
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}
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static void scmi_clock_describe_rates(struct scmi_msg *msg)
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{
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const struct scmi_clock_describe_rates_a2p *in_args = (void *)msg->in;
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struct scmi_clock_describe_rates_p2a p2a = {
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.status = SCMI_SUCCESS,
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};
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size_t nb_rates;
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int32_t status;
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unsigned int clock_id;
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if (msg->in_size != sizeof(*in_args)) {
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scmi_status_response(msg, SCMI_PROTOCOL_ERROR);
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return;
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}
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clock_id = SPECULATION_SAFE_VALUE(in_args->clock_id);
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if (clock_id >= plat_scmi_clock_count(msg->agent_id)) {
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scmi_status_response(msg, SCMI_INVALID_PARAMETERS);
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return;
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}
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/* Platform may support array rate description */
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status = plat_scmi_clock_rates_array(msg->agent_id, clock_id, NULL,
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&nb_rates);
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if (status == SCMI_SUCCESS) {
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/* Currently 12 cells mex, so it's affordable for the stack */
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unsigned long plat_rates[RATES_ARRAY_SIZE_MAX / RATE_DESC_SIZE];
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size_t max_nb = RATES_ARRAY_SIZE_MAX / RATE_DESC_SIZE;
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size_t ret_nb = MIN(nb_rates - in_args->rate_index, max_nb);
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size_t rem_nb = nb_rates - in_args->rate_index - ret_nb;
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status = plat_scmi_clock_rates_array(msg->agent_id, clock_id,
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plat_rates, &ret_nb);
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if (status == SCMI_SUCCESS) {
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write_rate_desc_array_in_buffer(msg->out + sizeof(p2a),
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plat_rates, ret_nb);
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p2a.num_rates_flags = SCMI_RATES_BY_ARRAY(ret_nb,
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rem_nb);
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p2a.status = SCMI_SUCCESS;
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memcpy(msg->out, &p2a, sizeof(p2a));
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msg->out_size_out = sizeof(p2a) +
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ret_nb * RATE_DESC_SIZE;
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}
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} else if (status == SCMI_NOT_SUPPORTED) {
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unsigned long triplet[3] = { 0U, 0U, 0U };
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/* Platform may support min§max/step triplet description */
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status = plat_scmi_clock_rates_by_step(msg->agent_id, clock_id,
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triplet);
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if (status == SCMI_SUCCESS) {
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write_rate_desc_array_in_buffer(msg->out + sizeof(p2a),
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triplet, 3U);
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p2a.num_rates_flags = SCMI_RATES_BY_STEP;
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p2a.status = SCMI_SUCCESS;
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memcpy(msg->out, &p2a, sizeof(p2a));
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msg->out_size_out = sizeof(p2a) + (3U * RATE_DESC_SIZE);
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}
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} else {
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/* Fallthrough generic exit sequence below with error status */
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}
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if (status != SCMI_SUCCESS) {
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scmi_status_response(msg, status);
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} else {
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/*
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* Message payload is already writen to msg->out, and
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* msg->out_size_out updated.
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*/
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}
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}
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static const scmi_msg_handler_t scmi_clock_handler_table[] = {
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[SCMI_PROTOCOL_VERSION] = report_version,
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[SCMI_PROTOCOL_ATTRIBUTES] = report_attributes,
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[SCMI_PROTOCOL_MESSAGE_ATTRIBUTES] = report_message_attributes,
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[SCMI_CLOCK_ATTRIBUTES] = scmi_clock_attributes,
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[SCMI_CLOCK_DESCRIBE_RATES] = scmi_clock_describe_rates,
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[SCMI_CLOCK_RATE_SET] = scmi_clock_rate_set,
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[SCMI_CLOCK_RATE_GET] = scmi_clock_rate_get,
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[SCMI_CLOCK_CONFIG_SET] = scmi_clock_config_set,
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};
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static bool message_id_is_supported(unsigned int message_id)
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{
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return (message_id < ARRAY_SIZE(scmi_clock_handler_table)) &&
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(scmi_clock_handler_table[message_id] != NULL);
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}
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scmi_msg_handler_t scmi_msg_get_clock_handler(struct scmi_msg *msg)
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{
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const size_t array_size = ARRAY_SIZE(scmi_clock_handler_table);
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unsigned int message_id = SPECULATION_SAFE_VALUE(msg->message_id);
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if (message_id >= array_size) {
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VERBOSE("Clock handle not found %u", msg->message_id);
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return NULL;
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}
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return scmi_clock_handler_table[message_id];
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}
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