xref: /rk3399_ARM-atf/plat/arm/board/fvp/fvp_topology.c (revision 1af540ef2a09797c3a22c40c340facd4b2f47c2f)
13fc4124cSDan Handley /*
2*1af540efSRoberto Vargas  * Copyright (c) 2013-2018, ARM Limited and Contributors. All rights reserved.
33fc4124cSDan Handley  *
482cb2c1aSdp-arm  * SPDX-License-Identifier: BSD-3-Clause
53fc4124cSDan Handley  */
63fc4124cSDan Handley 
73fc4124cSDan Handley #include <arch.h>
811ad8f20SJeenu Viswambharan #include <arm_config.h>
90108047aSSoby Mathew #include <cassert.h>
1038dce70fSSoby Mathew #include <plat_arm.h>
11*1af540efSRoberto Vargas #include <platform.h>
123fc4124cSDan Handley #include <platform_def.h>
133fc4124cSDan Handley #include "drivers/pwrc/fvp_pwrc.h"
143fc4124cSDan Handley 
150108047aSSoby Mathew /* The FVP power domain tree descriptor */
16*1af540efSRoberto Vargas static unsigned char fvp_power_domain_tree_desc[FVP_CLUSTER_COUNT + 2];
170108047aSSoby Mathew 
180108047aSSoby Mathew 
190108047aSSoby Mathew CASSERT(FVP_CLUSTER_COUNT && FVP_CLUSTER_COUNT <= 256, assert_invalid_fvp_cluster_count);
200108047aSSoby Mathew 
210108047aSSoby Mathew /*******************************************************************************
220108047aSSoby Mathew  * This function dynamically constructs the topology according to
230108047aSSoby Mathew  * FVP_CLUSTER_COUNT and returns it.
240108047aSSoby Mathew  ******************************************************************************/
250108047aSSoby Mathew const unsigned char *plat_get_power_domain_tree_desc(void)
260108047aSSoby Mathew {
27e35a3fb5SSoby Mathew 	unsigned int i;
280108047aSSoby Mathew 
2938dce70fSSoby Mathew 	/*
30e35a3fb5SSoby Mathew 	 * The highest level is the system level. The next level is constituted
31e35a3fb5SSoby Mathew 	 * by clusters and then cores in clusters.
3238dce70fSSoby Mathew 	 */
33e35a3fb5SSoby Mathew 	fvp_power_domain_tree_desc[0] = 1;
34e35a3fb5SSoby Mathew 	fvp_power_domain_tree_desc[1] = FVP_CLUSTER_COUNT;
353fc4124cSDan Handley 
360108047aSSoby Mathew 	for (i = 0; i < FVP_CLUSTER_COUNT; i++)
37e35a3fb5SSoby Mathew 		fvp_power_domain_tree_desc[i + 2] = FVP_MAX_CPUS_PER_CLUSTER;
38e35a3fb5SSoby Mathew 
390108047aSSoby Mathew 
400108047aSSoby Mathew 	return fvp_power_domain_tree_desc;
410108047aSSoby Mathew }
420108047aSSoby Mathew 
430108047aSSoby Mathew /*******************************************************************************
440108047aSSoby Mathew  * This function returns the core count within the cluster corresponding to
450108047aSSoby Mathew  * `mpidr`.
460108047aSSoby Mathew  ******************************************************************************/
470108047aSSoby Mathew unsigned int plat_arm_get_cluster_core_count(u_register_t mpidr)
480108047aSSoby Mathew {
490108047aSSoby Mathew 	return FVP_MAX_CPUS_PER_CLUSTER;
500108047aSSoby Mathew }
513fc4124cSDan Handley 
523fc4124cSDan Handley /*******************************************************************************
533fc4124cSDan Handley  * This function implements a part of the critical interface between the psci
5438dce70fSSoby Mathew  * generic layer and the platform that allows the former to query the platform
5538dce70fSSoby Mathew  * to convert an MPIDR to a unique linear index. An error code (-1) is returned
5638dce70fSSoby Mathew  * in case the MPIDR is invalid.
573fc4124cSDan Handley  ******************************************************************************/
5838dce70fSSoby Mathew int plat_core_pos_by_mpidr(u_register_t mpidr)
593fc4124cSDan Handley {
60955242d8SJeenu Viswambharan 	unsigned int clus_id, cpu_id, thread_id;
61955242d8SJeenu Viswambharan 
62955242d8SJeenu Viswambharan 	/* Validate affinity fields */
63955242d8SJeenu Viswambharan 	if (arm_config.flags & ARM_CONFIG_FVP_SHIFTED_AFF) {
64955242d8SJeenu Viswambharan 		thread_id = MPIDR_AFFLVL0_VAL(mpidr);
65955242d8SJeenu Viswambharan 		cpu_id = MPIDR_AFFLVL1_VAL(mpidr);
66955242d8SJeenu Viswambharan 		clus_id = MPIDR_AFFLVL2_VAL(mpidr);
67955242d8SJeenu Viswambharan 	} else {
68955242d8SJeenu Viswambharan 		thread_id = 0;
69955242d8SJeenu Viswambharan 		cpu_id = MPIDR_AFFLVL0_VAL(mpidr);
70955242d8SJeenu Viswambharan 		clus_id = MPIDR_AFFLVL1_VAL(mpidr);
71955242d8SJeenu Viswambharan 	}
72955242d8SJeenu Viswambharan 
73955242d8SJeenu Viswambharan 	if (clus_id >= FVP_CLUSTER_COUNT)
74955242d8SJeenu Viswambharan 		return -1;
75955242d8SJeenu Viswambharan 	if (cpu_id >= FVP_MAX_CPUS_PER_CLUSTER)
76955242d8SJeenu Viswambharan 		return -1;
77955242d8SJeenu Viswambharan 	if (thread_id >= FVP_MAX_PE_PER_CPU)
78955242d8SJeenu Viswambharan 		return -1;
79955242d8SJeenu Viswambharan 
8038dce70fSSoby Mathew 	if (fvp_pwrc_read_psysr(mpidr) == PSYSR_INVALID)
8138dce70fSSoby Mathew 		return -1;
823fc4124cSDan Handley 
8311ad8f20SJeenu Viswambharan 	/*
8411ad8f20SJeenu Viswambharan 	 * Core position calculation for FVP platform depends on the MT bit in
8511ad8f20SJeenu Viswambharan 	 * MPIDR. This function cannot assume that the supplied MPIDR has the MT
8611ad8f20SJeenu Viswambharan 	 * bit set even if the implementation has. For example, PSCI clients
8711ad8f20SJeenu Viswambharan 	 * might supply MPIDR values without the MT bit set. Therefore, we
8811ad8f20SJeenu Viswambharan 	 * inject the current PE's MT bit so as to get the calculation correct.
8911ad8f20SJeenu Viswambharan 	 * This of course assumes that none or all CPUs on the platform has MT
9011ad8f20SJeenu Viswambharan 	 * bit set.
9111ad8f20SJeenu Viswambharan 	 */
9211ad8f20SJeenu Viswambharan 	mpidr |= (read_mpidr_el1() & MPIDR_MT_MASK);
9338dce70fSSoby Mathew 	return plat_arm_calc_core_pos(mpidr);
943fc4124cSDan Handley }
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