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Kukjin Kim7d30e8b2011-02-14 16:33:10 +09001/* linux/arch/arm/mach-exynos4/platsmp.c
Changhwan Youn2b12b5c2010-07-26 21:08:52 +09002 *
Kukjin Kim7d30e8b2011-02-14 16:33:10 +09003 * Copyright (c) 2010-2011 Samsung Electronics Co., Ltd.
4 * http://www.samsung.com
Changhwan Youn2b12b5c2010-07-26 21:08:52 +09005 *
6 * Cloned from linux/arch/arm/mach-vexpress/platsmp.c
7 *
8 * Copyright (C) 2002 ARM Ltd.
9 * All Rights Reserved
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License version 2 as
13 * published by the Free Software Foundation.
14*/
15
16#include <linux/init.h>
17#include <linux/errno.h>
18#include <linux/delay.h>
19#include <linux/device.h>
20#include <linux/jiffies.h>
21#include <linux/smp.h>
22#include <linux/io.h>
23
24#include <asm/cacheflush.h>
Will Deaconeb504392012-01-20 12:01:12 +010025#include <asm/smp_plat.h>
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090026#include <asm/smp_scu.h>
Tomasz Figabeddf632012-12-11 13:58:43 +090027#include <asm/firmware.h>
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090028
29#include <mach/hardware.h>
30#include <mach/regs-clock.h>
JungHi Min911c29b2011-07-16 13:39:09 +090031#include <mach/regs-pmu.h>
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090032
Kukjin Kim56b20922011-08-20 13:41:21 +090033#include <plat/cpu.h>
34
Marc Zyngier06853ae2011-09-08 13:15:22 +010035#include "common.h"
36
Kukjin Kim7d30e8b2011-02-14 16:33:10 +090037extern void exynos4_secondary_startup(void);
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090038
Tomasz Figa1f054f52012-11-24 11:13:48 +090039static inline void __iomem *cpu_boot_reg_base(void)
40{
41 if (soc_is_exynos4210() && samsung_rev() == EXYNOS4210_REV_1_1)
42 return S5P_INFORM5;
43 return S5P_VA_SYSRAM;
44}
45
46static inline void __iomem *cpu_boot_reg(int cpu)
47{
48 void __iomem *boot_reg;
49
50 boot_reg = cpu_boot_reg_base();
51 if (soc_is_exynos4412())
52 boot_reg += 4*cpu;
53 return boot_reg;
54}
JungHi Min911c29b2011-07-16 13:39:09 +090055
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090056/*
Russell King3705ff62010-12-18 10:53:12 +000057 * Write pen_release in a way that is guaranteed to be visible to all
58 * observers, irrespective of whether they're taking part in coherency
59 * or not. This is necessary for the hotplug code to work reliably.
60 */
61static void write_pen_release(int val)
62{
63 pen_release = val;
64 smp_wmb();
65 __cpuc_flush_dcache_area((void *)&pen_release, sizeof(pen_release));
66 outer_clean_range(__pa(&pen_release), __pa(&pen_release + 1));
67}
68
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090069static void __iomem *scu_base_addr(void)
70{
71 return (void __iomem *)(S5P_VA_SCU);
72}
73
74static DEFINE_SPINLOCK(boot_lock);
75
Marc Zyngier06853ae2011-09-08 13:15:22 +010076static void __cpuinit exynos_secondary_init(unsigned int cpu)
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090077{
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090078 /*
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090079 * let the primary processor know we're out of the
80 * pen, then head off into the C entry point
81 */
Russell King3705ff62010-12-18 10:53:12 +000082 write_pen_release(-1);
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090083
84 /*
85 * Synchronise with the boot thread.
86 */
87 spin_lock(&boot_lock);
88 spin_unlock(&boot_lock);
89}
90
Marc Zyngier06853ae2011-09-08 13:15:22 +010091static int __cpuinit exynos_boot_secondary(unsigned int cpu, struct task_struct *idle)
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090092{
93 unsigned long timeout;
Tomasz Figa1f054f52012-11-24 11:13:48 +090094 unsigned long phys_cpu = cpu_logical_map(cpu);
Changhwan Youn2b12b5c2010-07-26 21:08:52 +090095
96 /*
97 * Set synchronisation state between this boot processor
98 * and the secondary one
99 */
100 spin_lock(&boot_lock);
101
102 /*
103 * The secondary processor is waiting to be released from
104 * the holding pen - release it, then wait for it to flag
105 * that it has been released by resetting pen_release.
106 *
107 * Note that "pen_release" is the hardware CPU ID, whereas
108 * "cpu" is Linux's internal ID.
109 */
Tomasz Figa1f054f52012-11-24 11:13:48 +0900110 write_pen_release(phys_cpu);
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900111
JungHi Min911c29b2011-07-16 13:39:09 +0900112 if (!(__raw_readl(S5P_ARM_CORE1_STATUS) & S5P_CORE_LOCAL_PWR_EN)) {
113 __raw_writel(S5P_CORE_LOCAL_PWR_EN,
114 S5P_ARM_CORE1_CONFIGURATION);
115
116 timeout = 10;
117
118 /* wait max 10 ms until cpu1 is on */
119 while ((__raw_readl(S5P_ARM_CORE1_STATUS)
120 & S5P_CORE_LOCAL_PWR_EN) != S5P_CORE_LOCAL_PWR_EN) {
121 if (timeout-- == 0)
122 break;
123
124 mdelay(1);
125 }
126
127 if (timeout == 0) {
128 printk(KERN_ERR "cpu1 power enable failed");
129 spin_unlock(&boot_lock);
130 return -ETIMEDOUT;
131 }
132 }
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900133 /*
134 * Send the secondary CPU a soft interrupt, thereby causing
135 * the boot monitor to read the system wide flags register,
136 * and branch to the address found there.
137 */
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900138
139 timeout = jiffies + (1 * HZ);
140 while (time_before(jiffies, timeout)) {
Tomasz Figabeddf632012-12-11 13:58:43 +0900141 unsigned long boot_addr;
142
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900143 smp_rmb();
JungHi Min911c29b2011-07-16 13:39:09 +0900144
Tomasz Figabeddf632012-12-11 13:58:43 +0900145 boot_addr = virt_to_phys(exynos4_secondary_startup);
146
147 /*
148 * Try to set boot address using firmware first
149 * and fall back to boot register if it fails.
150 */
151 if (call_firmware_op(set_cpu_boot_addr, phys_cpu, boot_addr))
152 __raw_writel(boot_addr, cpu_boot_reg(phys_cpu));
153
154 call_firmware_op(cpu_boot, phys_cpu);
155
Rob Herringb1cffeb2012-11-26 15:05:48 -0600156 arch_send_wakeup_ipi_mask(cpumask_of(cpu));
JungHi Min911c29b2011-07-16 13:39:09 +0900157
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900158 if (pen_release == -1)
159 break;
160
161 udelay(10);
162 }
163
164 /*
165 * now the secondary core is starting up let it run its
166 * calibrations, then wait for it to finish
167 */
168 spin_unlock(&boot_lock);
169
170 return pen_release != -1 ? -ENOSYS : 0;
171}
172
173/*
174 * Initialise the CPU possible map early - this describes the CPUs
175 * which may be present or become present in the system.
176 */
177
Marc Zyngier06853ae2011-09-08 13:15:22 +0100178static void __init exynos_smp_init_cpus(void)
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900179{
180 void __iomem *scu_base = scu_base_addr();
181 unsigned int i, ncores;
182
Chander Kashyap1897d2f2013-06-19 00:29:34 +0900183 if (read_cpuid_part_number() == ARM_CPU_PART_CORTEX_A9)
Kukjin Kime9bba612012-01-25 15:35:57 +0900184 ncores = scu_base ? scu_get_core_count(scu_base) : 1;
Chander Kashyap1897d2f2013-06-19 00:29:34 +0900185 else
186 /*
187 * CPU Nodes are passed thru DT and set_cpu_possible
188 * is set by "arm_dt_init_cpu_maps".
189 */
190 return;
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900191
192 /* sanity check */
Russell Kinga06f9162011-10-20 22:04:18 +0100193 if (ncores > nr_cpu_ids) {
194 pr_warn("SMP: %u cores greater than maximum (%u), clipping\n",
195 ncores, nr_cpu_ids);
196 ncores = nr_cpu_ids;
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900197 }
198
199 for (i = 0; i < ncores; i++)
200 set_cpu_possible(i, true);
201}
202
Marc Zyngier06853ae2011-09-08 13:15:22 +0100203static void __init exynos_smp_prepare_cpus(unsigned int max_cpus)
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900204{
Tomasz Figa1f054f52012-11-24 11:13:48 +0900205 int i;
206
Kukjin Kim83e877a2012-12-06 15:32:14 +0900207 if (!(soc_is_exynos5250() || soc_is_exynos5440()))
Kukjin Kime9bba612012-01-25 15:35:57 +0900208 scu_enable(scu_base_addr());
Russell King05c74a62010-12-03 11:09:48 +0000209
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900210 /*
Russell King05c74a62010-12-03 11:09:48 +0000211 * Write the address of secondary startup into the
212 * system-wide flags register. The boot monitor waits
213 * until it receives a soft interrupt, and then the
214 * secondary CPU branches to this address.
Tomasz Figabeddf632012-12-11 13:58:43 +0900215 *
216 * Try using firmware operation first and fall back to
217 * boot register if it fails.
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900218 */
Tomasz Figabeddf632012-12-11 13:58:43 +0900219 for (i = 1; i < max_cpus; ++i) {
220 unsigned long phys_cpu;
221 unsigned long boot_addr;
222
223 phys_cpu = cpu_logical_map(i);
224 boot_addr = virt_to_phys(exynos4_secondary_startup);
225
226 if (call_firmware_op(set_cpu_boot_addr, phys_cpu, boot_addr))
227 __raw_writel(boot_addr, cpu_boot_reg(phys_cpu));
228 }
Changhwan Youn2b12b5c2010-07-26 21:08:52 +0900229}
Marc Zyngier06853ae2011-09-08 13:15:22 +0100230
231struct smp_operations exynos_smp_ops __initdata = {
232 .smp_init_cpus = exynos_smp_init_cpus,
233 .smp_prepare_cpus = exynos_smp_prepare_cpus,
234 .smp_secondary_init = exynos_secondary_init,
235 .smp_boot_secondary = exynos_boot_secondary,
236#ifdef CONFIG_HOTPLUG_CPU
237 .cpu_die = exynos_cpu_die,
238#endif
239};