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Taniya Das137dc8e2011-12-02 14:50:00 +05301/* Copyright (c) 2012, Code Aurora Forum. All rights reserved.
2 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 */
12
13#include <linux/init.h>
14#include <linux/errno.h>
15#include <linux/delay.h>
16#include <linux/device.h>
17#include <linux/jiffies.h>
18#include <linux/smp.h>
19#include <linux/io.h>
Taniya Dase30a6b22012-03-20 11:37:45 +053020#include <linux/interrupt.h>
Taniya Das137dc8e2011-12-02 14:50:00 +053021
22#include <asm/cacheflush.h>
23#include <asm/hardware/gic.h>
24#include <asm/hardware/cache-l2x0.h>
25#include <asm/smp_scu.h>
26#include <asm/unified.h>
27#include <mach/msm_iomap.h>
28#include <mach/smp.h>
29#include "pm.h"
30
31#define MSM_CORE1_RESET 0xA8600590
Taniya Das63da6462012-02-27 17:22:11 +053032#define MSM_CORE1_STATUS_MSK 0x02800000
33
Taniya Das137dc8e2011-12-02 14:50:00 +053034/*
35 * control for which core is the next to come out of the secondary
36 * boot "holding pen"
37 */
38int pen_release = -1;
39
40static bool cold_boot_done;
41
42static uint32_t *msm8625_boot_vector;
Taniya Das94b8ecb2012-05-17 18:14:37 +053043static void __iomem *reset_core1_base;
Taniya Das137dc8e2011-12-02 14:50:00 +053044
45/*
46 * Write pen_release in a way that is guaranteed to be visible to all
47 * observers, irrespective of whether they're taking part in coherency
48 * or not. This is necessary for the hotplug code to work reliably.
49 */
50static void __cpuinit write_pen_release(int val)
51{
52 pen_release = val;
53 smp_wmb();
54 __cpuc_flush_dcache_area((void *)&pen_release, sizeof(pen_release));
55 outer_clean_range(__pa(&pen_release), __pa(&pen_release + 1));
56}
57
58static void __iomem *scu_base_addr(void)
59{
60 return MSM_SCU_BASE;
61}
62
63static DEFINE_SPINLOCK(boot_lock);
Taniya Dase30a6b22012-03-20 11:37:45 +053064
65/*
66 * MP_CORE_IPC will be used to generate interrupt and can be used by either
67 * of core.
68 * To bring core1 out of GDFS we need to raise the SPI using the MP_CORE_IPC.
69 */
70static void raise_clear_spi(unsigned int cpu, bool set)
71{
72 int value;
73
74 value = __raw_readl(MSM_CSR_BASE + 0x54);
75 if (set)
76 __raw_writel(value | BIT(cpu), MSM_CSR_BASE + 0x54);
77 else
78 __raw_writel(value & ~BIT(cpu), MSM_CSR_BASE + 0x54);
79 mb();
80}
81
Murali Nalajalaa30aad02012-04-17 16:20:14 +053082static void clear_pending_spi(unsigned int irq)
Taniya Dase30a6b22012-03-20 11:37:45 +053083{
Taniya Das1816eb42012-05-01 19:13:11 +053084 struct irq_data *d = irq_get_irq_data(irq);
85 struct irq_chip *c = irq_data_get_irq_chip(d);
86
87 c->irq_mask(d);
Taniya Dase30a6b22012-03-20 11:37:45 +053088 local_irq_disable();
Taniya Das1816eb42012-05-01 19:13:11 +053089 /* Clear the IRQ from the ENABLE_SET */
Taniya Dase30a6b22012-03-20 11:37:45 +053090 gic_clear_spi_pending(irq);
Taniya Dase30a6b22012-03-20 11:37:45 +053091 local_irq_enable();
92}
Taniya Das137dc8e2011-12-02 14:50:00 +053093
94void __cpuinit platform_secondary_init(unsigned int cpu)
95{
Murali Nalajalaa7efba12012-02-23 18:13:52 +053096 pr_debug("CPU%u: Booted secondary processor\n", cpu);
97
98 WARN_ON(msm_platform_secondary_init(cpu));
99
Taniya Das137dc8e2011-12-02 14:50:00 +0530100 /*
101 * if any interrupts are already enabled for the primary
102 * core (e.g. timer irq), then they will not have been enabled
103 * for us: do so
104 */
105 gic_secondary_init(0);
106
107 /*
108 * let the primary processor know we're out of the
109 * pen, then head off into the C entry point
110 */
111 write_pen_release(-1);
112
Murali Nalajalaa30aad02012-04-17 16:20:14 +0530113 /* clear the IPC1(SPI-8) pending SPI */
114 if (power_collapsed) {
115 raise_clear_spi(1, false);
116 clear_pending_spi(MSM8625_INT_ACSR_MP_CORE_IPC1);
117 power_collapsed = 0;
118 }
119
Taniya Das137dc8e2011-12-02 14:50:00 +0530120 /*
121 * Synchronise with the boot thread.
122 */
123 spin_lock(&boot_lock);
124 spin_unlock(&boot_lock);
125}
126
Taniya Das63da6462012-02-27 17:22:11 +0530127static int __cpuinit msm8625_release_secondary(void)
128{
129 void __iomem *base_ptr;
130 int value = 0;
131 unsigned long timeout;
132
133 /*
134 * loop to ensure that the GHS_STATUS_CORE1 bit in the
135 * MPA5_STATUS_REG(0x3c) is set. The timeout for the while
136 * loop can be set as 20us as of now
137 */
138 timeout = jiffies + usecs_to_jiffies(20);
139 while (time_before(jiffies, timeout)) {
140 value = __raw_readl(MSM_CFG_CTL_BASE + 0x3c);
141 if ((value & MSM_CORE1_STATUS_MSK) ==
142 MSM_CORE1_STATUS_MSK)
143 break;
144 udelay(1);
145 }
146
147 if (!value) {
148 pr_err("Core 1 cannot be brought out of Reset!!!\n");
149 return -ENODEV;
150 }
151
152 base_ptr = ioremap_nocache(MSM_CORE1_RESET, SZ_4);
153 if (!base_ptr)
154 return -ENODEV;
155 /* Reset core 1 out of reset */
156 __raw_writel(0x0, base_ptr);
157 mb();
158
Taniya Das94b8ecb2012-05-17 18:14:37 +0530159 reset_core1_base = base_ptr;
Taniya Das63da6462012-02-27 17:22:11 +0530160
161 return 0;
162}
163
Taniya Das94b8ecb2012-05-17 18:14:37 +0530164void __iomem *core1_reset_base(void)
165{
166 return reset_core1_base;
167}
168
Taniya Das137dc8e2011-12-02 14:50:00 +0530169int __cpuinit boot_secondary(unsigned int cpu, struct task_struct *idle)
170{
171 unsigned long timeout;
Taniya Das137dc8e2011-12-02 14:50:00 +0530172
173 if (cold_boot_done == false) {
Taniya Das63da6462012-02-27 17:22:11 +0530174 if (msm8625_release_secondary()) {
175 pr_err("Failed to release secondary core\n");
Taniya Das137dc8e2011-12-02 14:50:00 +0530176 return -ENODEV;
Taniya Das63da6462012-02-27 17:22:11 +0530177 }
Taniya Das137dc8e2011-12-02 14:50:00 +0530178 cold_boot_done = true;
Taniya Das137dc8e2011-12-02 14:50:00 +0530179 }
180
181 /*
182 * Set synchronisation state between this boot processor
183 * and the secondary one
184 */
185 spin_lock(&boot_lock);
186
187 /*
188 * This is really belt and braces; we hold unintended secondary
189 * CPUs in the holding pen until we're ready for them. However,
190 * since we haven't sent them a soft interrupt, they shouldn't
191 * be there.
192 */
193 write_pen_release(cpu);
194
195 /*
196 * Send the secondary CPU a soft interrupt, thereby causing
197 * the boot monitor to read the system wide flags register,
198 * and branch to the address found there.
Taniya Dase30a6b22012-03-20 11:37:45 +0530199 *
200 * power_collapsed is the flag which will be updated for Powercollapse.
201 * Once we are out of PC, as Core1 will be in the state of GDFS which
202 * needs to be brought out by raising an SPI.
Taniya Das137dc8e2011-12-02 14:50:00 +0530203 */
Taniya Dase30a6b22012-03-20 11:37:45 +0530204
Taniya Dasbc9248a2012-04-30 19:59:11 +0530205 if (power_collapsed) {
Taniya Dase30a6b22012-03-20 11:37:45 +0530206 core1_gic_configure_and_raise();
Taniya Dasbc9248a2012-04-30 19:59:11 +0530207 raise_clear_spi(1, true);
208 } else {
Taniya Dase30a6b22012-03-20 11:37:45 +0530209 gic_raise_softirq(cpumask_of(cpu), 1);
Taniya Dasbc9248a2012-04-30 19:59:11 +0530210 }
Taniya Das137dc8e2011-12-02 14:50:00 +0530211
212 timeout = jiffies + (1 * HZ);
213 while (time_before(jiffies, timeout)) {
214 smp_rmb();
215 if (pen_release == -1)
216 break;
217
218 udelay(10);
219 }
220
221 /*
222 * now the secondary core is starting up let it run its
223 * calibrations, then wait for it to finish
224 */
225 spin_unlock(&boot_lock);
226
227 return 0;
228}
229
230/*
231 * Initialise the CPU possible map early - this describes the CPUs
232 * which may be present or become present in the system.
233 */
234void __init smp_init_cpus(void)
235{
236 void __iomem *scu_base = scu_base_addr();
237
238 unsigned int i, ncores;
239
240 ncores = scu_base ? scu_get_core_count(scu_base) : 1;
241
242 for (i = 0; i < ncores; i++)
243 set_cpu_possible(i, true);
244
245 set_smp_cross_call(gic_raise_softirq);
246}
247
248static void __init msm8625_boot_vector_init(uint32_t *boot_vector,
249 unsigned long entry)
250{
251 if (!boot_vector)
252 return;
253 msm8625_boot_vector = boot_vector;
254
255 msm8625_boot_vector[0] = 0xE51FF004; /* ldr pc, 4 */
256 msm8625_boot_vector[1] = entry;
257}
258
259void __init platform_smp_prepare_cpus(unsigned int max_cpus)
260{
261 int i, value;
Taniya Dasfe04d4f2012-03-14 11:13:21 +0530262 void __iomem *second_ptr;
Taniya Das137dc8e2011-12-02 14:50:00 +0530263
264 /*
265 * Initialise the present map, which describes the set of CPUs
266 * actually populated at the present time.
267 */
268 for (i = 0; i < max_cpus; i++)
269 set_cpu_present(i, true);
270
271 scu_enable(scu_base_addr());
272
273 /*
274 * Write the address of secondary startup into the
275 * boot remapper register. The secondary CPU branches to this address.
276 */
Taniya Dasfe04d4f2012-03-14 11:13:21 +0530277 __raw_writel(MSM8625_SECONDARY_PHYS, (MSM_CFG_CTL_BASE + 0x34));
Taniya Das137dc8e2011-12-02 14:50:00 +0530278 mb();
279
Taniya Dasfe04d4f2012-03-14 11:13:21 +0530280 second_ptr = ioremap_nocache(MSM8625_SECONDARY_PHYS, SZ_8);
281 if (!second_ptr) {
282 pr_err("failed to ioremap for secondary core\n");
283 return;
284 }
Taniya Das137dc8e2011-12-02 14:50:00 +0530285
Taniya Dasfe04d4f2012-03-14 11:13:21 +0530286 msm8625_boot_vector_init(second_ptr,
287 virt_to_phys(msm_secondary_startup));
288 iounmap(second_ptr);
Taniya Das137dc8e2011-12-02 14:50:00 +0530289
290 /* Enable boot remapper address: bit 26 for core1 */
291 value = __raw_readl(MSM_CFG_CTL_BASE + 0x30);
292 __raw_writel(value | (0x4 << 24), MSM_CFG_CTL_BASE + 0x30) ;
293 mb();
294}