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psci_fdt.c revision 1.3.4.2
      1  1.3.4.2  pgoyette /* $NetBSD: psci_fdt.c,v 1.3.4.2 2018/07/28 04:37:28 pgoyette Exp $ */
      2      1.1  jmcneill 
      3      1.1  jmcneill /*-
      4      1.1  jmcneill  * Copyright (c) 2017 Jared McNeill <jmcneill (at) invisible.ca>
      5      1.1  jmcneill  * All rights reserved.
      6      1.1  jmcneill  *
      7      1.1  jmcneill  * Redistribution and use in source and binary forms, with or without
      8      1.1  jmcneill  * modification, are permitted provided that the following conditions
      9      1.1  jmcneill  * are met:
     10      1.1  jmcneill  * 1. Redistributions of source code must retain the above copyright
     11      1.1  jmcneill  *    notice, this list of conditions and the following disclaimer.
     12      1.1  jmcneill  * 2. Redistributions in binary form must reproduce the above copyright
     13      1.1  jmcneill  *    notice, this list of conditions and the following disclaimer in the
     14      1.1  jmcneill  *    documentation and/or other materials provided with the distribution.
     15      1.1  jmcneill  *
     16      1.1  jmcneill  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17      1.1  jmcneill  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18      1.1  jmcneill  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19      1.1  jmcneill  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20      1.1  jmcneill  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     21      1.1  jmcneill  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     22      1.1  jmcneill  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     23      1.1  jmcneill  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     24      1.1  jmcneill  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25      1.1  jmcneill  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26      1.1  jmcneill  * SUCH DAMAGE.
     27      1.1  jmcneill  */
     28      1.1  jmcneill 
     29      1.2  jmcneill #include "opt_multiprocessor.h"
     30      1.2  jmcneill 
     31      1.1  jmcneill #include <sys/cdefs.h>
     32  1.3.4.2  pgoyette __KERNEL_RCSID(0, "$NetBSD: psci_fdt.c,v 1.3.4.2 2018/07/28 04:37:28 pgoyette Exp $");
     33      1.1  jmcneill 
     34      1.1  jmcneill #include <sys/param.h>
     35      1.1  jmcneill #include <sys/bus.h>
     36      1.1  jmcneill #include <sys/device.h>
     37      1.1  jmcneill #include <sys/systm.h>
     38      1.1  jmcneill #include <sys/kernel.h>
     39  1.3.4.2  pgoyette #include <sys/atomic.h>
     40      1.1  jmcneill 
     41      1.1  jmcneill #include <dev/fdt/fdtvar.h>
     42      1.1  jmcneill 
     43      1.1  jmcneill #include <arm/locore.h>
     44      1.1  jmcneill #include <arm/armreg.h>
     45      1.1  jmcneill 
     46      1.1  jmcneill #include <arm/arm/psci.h>
     47      1.1  jmcneill #include <arm/fdt/psci_fdt.h>
     48      1.1  jmcneill 
     49      1.1  jmcneill static int	psci_fdt_match(device_t, cfdata_t, void *);
     50      1.1  jmcneill static void	psci_fdt_attach(device_t, device_t, void *);
     51      1.1  jmcneill 
     52      1.1  jmcneill static int	psci_fdt_init(const int);
     53      1.1  jmcneill 
     54      1.1  jmcneill static const char * const compatible[] = {
     55      1.1  jmcneill 	"arm,psci",
     56      1.1  jmcneill 	"arm,psci-0.2",
     57      1.1  jmcneill 	"arm,psci-1.0",
     58      1.1  jmcneill 	NULL
     59      1.1  jmcneill };
     60      1.1  jmcneill 
     61      1.1  jmcneill CFATTACH_DECL_NEW(psci_fdt, 0, psci_fdt_match, psci_fdt_attach, NULL, NULL);
     62      1.1  jmcneill 
     63      1.3  jmcneill static void
     64  1.3.4.1  pgoyette psci_fdt_power_reset(device_t dev)
     65      1.3  jmcneill {
     66      1.3  jmcneill 	delay(500000);
     67      1.3  jmcneill 	psci_system_reset();
     68      1.3  jmcneill }
     69      1.3  jmcneill 
     70      1.3  jmcneill static void
     71  1.3.4.1  pgoyette psci_fdt_power_poweroff(device_t dev)
     72      1.3  jmcneill {
     73      1.3  jmcneill 	delay(500000);
     74      1.3  jmcneill 	psci_system_off();
     75      1.3  jmcneill }
     76      1.3  jmcneill 
     77      1.3  jmcneill static const struct fdtbus_power_controller_func psci_power_funcs = {
     78  1.3.4.1  pgoyette 	.reset = psci_fdt_power_reset,
     79  1.3.4.1  pgoyette 	.poweroff = psci_fdt_power_poweroff,
     80      1.3  jmcneill };
     81      1.3  jmcneill 
     82      1.1  jmcneill static int
     83      1.1  jmcneill psci_fdt_match(device_t parent, cfdata_t cf, void *aux)
     84      1.1  jmcneill {
     85      1.1  jmcneill 	struct fdt_attach_args * const faa = aux;
     86      1.1  jmcneill 
     87      1.1  jmcneill 	return of_match_compatible(faa->faa_phandle, compatible);
     88      1.1  jmcneill }
     89      1.1  jmcneill 
     90      1.1  jmcneill static void
     91      1.1  jmcneill psci_fdt_attach(device_t parent, device_t self, void *aux)
     92      1.1  jmcneill {
     93      1.1  jmcneill 	struct fdt_attach_args * const faa = aux;
     94      1.1  jmcneill 	const int phandle = faa->faa_phandle;
     95      1.1  jmcneill 
     96      1.1  jmcneill 	psci_fdt_init(phandle);
     97      1.1  jmcneill 
     98      1.1  jmcneill 	const uint32_t ver = psci_version();
     99      1.1  jmcneill 	const u_int ver_maj = __SHIFTOUT(ver, PSCI_VERSION_MAJOR);
    100      1.1  jmcneill 	const u_int ver_min = __SHIFTOUT(ver, PSCI_VERSION_MINOR);
    101      1.1  jmcneill 
    102      1.1  jmcneill 	aprint_naive("\n");
    103      1.1  jmcneill 	aprint_normal(": PSCI %u.%u\n", ver_maj, ver_min);
    104      1.3  jmcneill 
    105      1.3  jmcneill 	fdtbus_register_power_controller(self, phandle,
    106      1.3  jmcneill 	    &psci_power_funcs);
    107      1.1  jmcneill }
    108      1.1  jmcneill 
    109      1.1  jmcneill static int
    110      1.1  jmcneill psci_fdt_init(const int phandle)
    111      1.1  jmcneill {
    112  1.3.4.2  pgoyette 	const char *method, *psciver;
    113      1.1  jmcneill 	uint32_t val;
    114      1.1  jmcneill 
    115  1.3.4.2  pgoyette 	method = fdtbus_get_string(phandle, "method");
    116  1.3.4.2  pgoyette 	psciver = fdtbus_get_string(phandle, "compatible");
    117  1.3.4.2  pgoyette 	if (method == NULL || psciver == NULL) {
    118  1.3.4.2  pgoyette 		aprint_error("PSCI: missing required property on /psci\n");
    119      1.1  jmcneill 		return EINVAL;
    120      1.1  jmcneill 	}
    121      1.1  jmcneill 
    122      1.1  jmcneill 	if (strcmp(method, "smc") == 0)
    123      1.1  jmcneill 		psci_init(psci_call_smc);
    124      1.1  jmcneill 	else if (strcmp(method, "hvc") == 0)
    125      1.1  jmcneill 		psci_init(psci_call_hvc);
    126      1.1  jmcneill 	else {
    127      1.1  jmcneill 		aprint_error("PSCI: unsupported method '%s'\n", method);
    128      1.1  jmcneill 		return EINVAL;
    129      1.1  jmcneill 	}
    130      1.1  jmcneill 
    131  1.3.4.2  pgoyette 	/*
    132  1.3.4.2  pgoyette 	 * If the first compatible string is "arm,psci" then we
    133  1.3.4.2  pgoyette 	 * are dealing with PSCI 0.1
    134  1.3.4.2  pgoyette 	 */
    135  1.3.4.2  pgoyette 	if (strcmp(psciver, "arm,psci") == 0) {
    136      1.1  jmcneill 		psci_clearfunc();
    137      1.1  jmcneill 		if (of_getprop_uint32(phandle, "cpu_on", &val) == 0)
    138      1.1  jmcneill 			psci_setfunc(PSCI_FUNC_CPU_ON, val);
    139      1.1  jmcneill 	}
    140      1.1  jmcneill 
    141      1.1  jmcneill 	return 0;
    142      1.1  jmcneill }
    143      1.1  jmcneill 
    144  1.3.4.1  pgoyette static int
    145  1.3.4.1  pgoyette psci_fdt_preinit(void)
    146  1.3.4.1  pgoyette {
    147  1.3.4.1  pgoyette 	const int phandle = OF_finddevice("/psci");
    148  1.3.4.1  pgoyette 	if (phandle == -1) {
    149  1.3.4.1  pgoyette 		aprint_error("PSCI: no /psci node found\n");
    150  1.3.4.1  pgoyette 		return ENODEV;
    151  1.3.4.1  pgoyette 	}
    152  1.3.4.1  pgoyette 
    153  1.3.4.1  pgoyette 	return psci_fdt_init(phandle);
    154  1.3.4.1  pgoyette }
    155  1.3.4.1  pgoyette 
    156  1.3.4.2  pgoyette #ifdef MULTIPROCESSOR
    157  1.3.4.2  pgoyette static bus_addr_t psci_fdt_read_mpidr_aff(void)
    158  1.3.4.2  pgoyette {
    159  1.3.4.2  pgoyette #ifdef __aarch64__
    160  1.3.4.2  pgoyette 	return reg_mpidr_el1_read() & (MPIDR_AFF3|MPIDR_AFF2|MPIDR_AFF1|MPIDR_AFF0);
    161  1.3.4.2  pgoyette #else
    162  1.3.4.2  pgoyette 	return armreg_mpidr_read() & (MPIDR_AFF2|MPIDR_AFF1|MPIDR_AFF0);
    163  1.3.4.2  pgoyette #endif
    164  1.3.4.2  pgoyette }
    165  1.3.4.2  pgoyette 
    166  1.3.4.2  pgoyette static register_t
    167  1.3.4.2  pgoyette psci_fdt_mpstart_pa(void)
    168  1.3.4.2  pgoyette {
    169  1.3.4.2  pgoyette #ifdef __aarch64__
    170  1.3.4.2  pgoyette 	extern void aarch64_mpstart(void);
    171  1.3.4.2  pgoyette 	return (register_t)aarch64_kern_vtophys((vaddr_t)aarch64_mpstart);
    172  1.3.4.2  pgoyette #else
    173  1.3.4.2  pgoyette 	extern void cortex_mpstart(void);
    174  1.3.4.2  pgoyette 	return (register_t)cortex_mpstart;
    175  1.3.4.2  pgoyette #endif
    176  1.3.4.2  pgoyette }
    177  1.3.4.2  pgoyette #endif
    178  1.3.4.2  pgoyette 
    179      1.1  jmcneill void
    180      1.1  jmcneill psci_fdt_bootstrap(void)
    181      1.1  jmcneill {
    182      1.2  jmcneill #ifdef MULTIPROCESSOR
    183      1.1  jmcneill 	extern void cortex_mpstart(void);
    184  1.3.4.2  pgoyette 	bus_addr_t mpidr, bp_mpidr;
    185      1.1  jmcneill 	int child;
    186      1.1  jmcneill 
    187      1.1  jmcneill 	const int cpus = OF_finddevice("/cpus");
    188      1.1  jmcneill 	if (cpus == -1) {
    189      1.1  jmcneill 		aprint_error("PSCI: no /cpus node found\n");
    190      1.1  jmcneill 		arm_cpu_max = 1;
    191      1.1  jmcneill 		return;
    192      1.1  jmcneill 	}
    193      1.1  jmcneill 
    194      1.1  jmcneill 	/* Count CPUs */
    195      1.1  jmcneill 	arm_cpu_max = 0;
    196      1.1  jmcneill 	for (child = OF_child(cpus); child; child = OF_peer(child))
    197      1.1  jmcneill 		if (fdtbus_status_okay(child))
    198      1.1  jmcneill 			arm_cpu_max++;
    199      1.1  jmcneill 
    200  1.3.4.1  pgoyette 	if (psci_fdt_preinit() != 0)
    201      1.1  jmcneill 		return;
    202      1.1  jmcneill 
    203      1.1  jmcneill 	/* MPIDR affinity levels of boot processor. */
    204  1.3.4.2  pgoyette 	bp_mpidr = psci_fdt_read_mpidr_aff();
    205      1.1  jmcneill 
    206      1.1  jmcneill 	/* Boot APs */
    207      1.1  jmcneill 	uint32_t started = 0;
    208      1.1  jmcneill 	for (child = OF_child(cpus); child; child = OF_peer(child)) {
    209      1.1  jmcneill 		if (!fdtbus_status_okay(child))
    210      1.1  jmcneill 			continue;
    211      1.1  jmcneill 		if (fdtbus_get_reg(child, 0, &mpidr, NULL) != 0)
    212      1.1  jmcneill 			continue;
    213      1.1  jmcneill 		if (mpidr == bp_mpidr)
    214      1.1  jmcneill 			continue; 	/* BP already started */
    215      1.1  jmcneill 
    216      1.1  jmcneill 		/* XXX NetBSD requires all CPUs to be in the same cluster */
    217  1.3.4.2  pgoyette 		if ((mpidr & ~MPIDR_AFF0) != (bp_mpidr & ~MPIDR_AFF0))
    218      1.1  jmcneill 			continue;
    219      1.1  jmcneill 
    220  1.3.4.2  pgoyette 		const u_int cpuid = __SHIFTOUT(mpidr, MPIDR_AFF0);
    221  1.3.4.2  pgoyette 		int ret = psci_cpu_on(cpuid, psci_fdt_mpstart_pa(), 0);
    222      1.1  jmcneill 		if (ret == PSCI_SUCCESS)
    223      1.1  jmcneill 			started |= __BIT(cpuid);
    224      1.1  jmcneill 	}
    225      1.1  jmcneill 
    226      1.1  jmcneill 	/* Wait for APs to start */
    227      1.1  jmcneill 	for (u_int i = 0x10000000; i > 0; i--) {
    228  1.3.4.2  pgoyette 		membar_consumer();
    229      1.1  jmcneill 		if (arm_cpu_hatched == started)
    230      1.1  jmcneill 			break;
    231      1.1  jmcneill 	}
    232      1.2  jmcneill #endif
    233      1.1  jmcneill }
    234  1.3.4.1  pgoyette 
    235  1.3.4.1  pgoyette void
    236  1.3.4.1  pgoyette psci_fdt_reset(void)
    237  1.3.4.1  pgoyette {
    238  1.3.4.1  pgoyette 	if (psci_fdt_preinit() != 0) {
    239  1.3.4.1  pgoyette 		aprint_error("PSCI: reset failed\n");
    240  1.3.4.1  pgoyette 		return;
    241  1.3.4.1  pgoyette 	}
    242  1.3.4.1  pgoyette 
    243  1.3.4.1  pgoyette 	psci_system_reset();
    244  1.3.4.1  pgoyette }
    245