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David Daney5b3b1682009-01-08 16:46:40 -08001/*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
David Daneyedfcbb82010-07-23 10:57:49 -07006 * Copyright (C) 2004-2008, 2009, 2010 Cavium Networks
David Daney5b3b1682009-01-08 16:46:40 -08007 */
Ralf Baechle773cb772009-06-23 10:36:38 +01008#include <linux/cpu.h>
David Daney5b3b1682009-01-08 16:46:40 -08009#include <linux/init.h>
10#include <linux/delay.h>
11#include <linux/smp.h>
12#include <linux/interrupt.h>
13#include <linux/kernel_stat.h>
14#include <linux/sched.h>
15#include <linux/module.h>
16
17#include <asm/mmu_context.h>
18#include <asm/system.h>
19#include <asm/time.h>
20
21#include <asm/octeon/octeon.h>
22
Ralf Baechle773cb772009-06-23 10:36:38 +010023#include "octeon_boot.h"
24
David Daney5b3b1682009-01-08 16:46:40 -080025volatile unsigned long octeon_processor_boot = 0xff;
26volatile unsigned long octeon_processor_sp;
27volatile unsigned long octeon_processor_gp;
28
Ralf Baechle773cb772009-06-23 10:36:38 +010029#ifdef CONFIG_HOTPLUG_CPU
David Daneybabba4f2010-07-23 10:57:51 -070030uint64_t octeon_bootloader_entry_addr;
31EXPORT_SYMBOL(octeon_bootloader_entry_addr);
Ralf Baechle773cb772009-06-23 10:36:38 +010032#endif
33
David Daney5b3b1682009-01-08 16:46:40 -080034static irqreturn_t mailbox_interrupt(int irq, void *dev_id)
35{
36 const int coreid = cvmx_get_core_num();
37 uint64_t action;
38
39 /* Load the mailbox register to figure out what we're supposed to do */
40 action = cvmx_read_csr(CVMX_CIU_MBOX_CLRX(coreid));
41
42 /* Clear the mailbox to clear the interrupt */
43 cvmx_write_csr(CVMX_CIU_MBOX_CLRX(coreid), action);
44
45 if (action & SMP_CALL_FUNCTION)
46 smp_call_function_interrupt();
47
48 /* Check if we've been told to flush the icache */
49 if (action & SMP_ICACHE_FLUSH)
50 asm volatile ("synci 0($0)\n");
51 return IRQ_HANDLED;
52}
53
54/**
55 * Cause the function described by call_data to be executed on the passed
56 * cpu. When the function has finished, increment the finished field of
57 * call_data.
58 */
59void octeon_send_ipi_single(int cpu, unsigned int action)
60{
61 int coreid = cpu_logical_map(cpu);
62 /*
63 pr_info("SMP: Mailbox send cpu=%d, coreid=%d, action=%u\n", cpu,
64 coreid, action);
65 */
66 cvmx_write_csr(CVMX_CIU_MBOX_SETX(coreid), action);
67}
68
David Daney067f3292009-10-01 16:47:38 -070069static inline void octeon_send_ipi_mask(const struct cpumask *mask,
70 unsigned int action)
David Daney5b3b1682009-01-08 16:46:40 -080071{
72 unsigned int i;
73
David Daney067f3292009-10-01 16:47:38 -070074 for_each_cpu_mask(i, *mask)
David Daney5b3b1682009-01-08 16:46:40 -080075 octeon_send_ipi_single(i, action);
76}
77
78/**
Ralf Baechle773cb772009-06-23 10:36:38 +010079 * Detect available CPUs, populate cpu_possible_map
David Daney5b3b1682009-01-08 16:46:40 -080080 */
Ralf Baechle773cb772009-06-23 10:36:38 +010081static void octeon_smp_hotplug_setup(void)
82{
83#ifdef CONFIG_HOTPLUG_CPU
David Daneybabba4f2010-07-23 10:57:51 -070084 struct linux_app_boot_info *labi;
Ralf Baechle773cb772009-06-23 10:36:38 +010085
David Daneybabba4f2010-07-23 10:57:51 -070086 labi = (struct linux_app_boot_info *)PHYS_TO_XKSEG_CACHED(LABI_ADDR_IN_BOOTLOADER);
87 if (labi->labi_signature != LABI_SIGNATURE)
88 panic("The bootloader version on this board is incorrect.");
89
90 octeon_bootloader_entry_addr = labi->InitTLBStart_addr;
Ralf Baechle773cb772009-06-23 10:36:38 +010091#endif
92}
93
David Daney5b3b1682009-01-08 16:46:40 -080094static void octeon_smp_setup(void)
95{
96 const int coreid = cvmx_get_core_num();
97 int cpus;
98 int id;
David Daney5b3b1682009-01-08 16:46:40 -080099 int core_mask = octeon_get_boot_coremask();
David Daneyedfcbb82010-07-23 10:57:49 -0700100#ifdef CONFIG_HOTPLUG_CPU
101 unsigned int num_cores = cvmx_octeon_num_cores();
102#endif
David Daney5b3b1682009-01-08 16:46:40 -0800103
David Daneyedfcbb82010-07-23 10:57:49 -0700104 /* The present CPUs are initially just the boot cpu (CPU 0). */
105 for (id = 0; id < NR_CPUS; id++) {
106 set_cpu_possible(id, id == 0);
107 set_cpu_present(id, id == 0);
108 }
109
David Daney5b3b1682009-01-08 16:46:40 -0800110 __cpu_number_map[coreid] = 0;
111 __cpu_logical_map[0] = coreid;
David Daney5b3b1682009-01-08 16:46:40 -0800112
David Daneyedfcbb82010-07-23 10:57:49 -0700113 /* The present CPUs get the lowest CPU numbers. */
David Daney5b3b1682009-01-08 16:46:40 -0800114 cpus = 1;
David Daneyedfcbb82010-07-23 10:57:49 -0700115 for (id = 0; id < NR_CPUS; id++) {
David Daney5b3b1682009-01-08 16:46:40 -0800116 if ((id != coreid) && (core_mask & (1 << id))) {
David Daneyedfcbb82010-07-23 10:57:49 -0700117 set_cpu_possible(cpus, true);
118 set_cpu_present(cpus, true);
David Daney5b3b1682009-01-08 16:46:40 -0800119 __cpu_number_map[id] = cpus;
120 __cpu_logical_map[cpus] = id;
121 cpus++;
122 }
123 }
David Daneyedfcbb82010-07-23 10:57:49 -0700124
125#ifdef CONFIG_HOTPLUG_CPU
126 /*
127 * The possible CPUs are all those present on the chip. We
128 * will assign CPU numbers for possible cores as well. Cores
129 * are always consecutively numberd from 0.
130 */
131 for (id = 0; id < num_cores && id < NR_CPUS; id++) {
132 if (!(core_mask & (1 << id))) {
133 set_cpu_possible(cpus, true);
134 __cpu_number_map[id] = cpus;
135 __cpu_logical_map[cpus] = id;
136 cpus++;
137 }
138 }
139#endif
Ralf Baechle773cb772009-06-23 10:36:38 +0100140
141 octeon_smp_hotplug_setup();
David Daney5b3b1682009-01-08 16:46:40 -0800142}
143
144/**
145 * Firmware CPU startup hook
146 *
147 */
148static void octeon_boot_secondary(int cpu, struct task_struct *idle)
149{
150 int count;
151
152 pr_info("SMP: Booting CPU%02d (CoreId %2d)...\n", cpu,
153 cpu_logical_map(cpu));
154
155 octeon_processor_sp = __KSTK_TOS(idle);
156 octeon_processor_gp = (unsigned long)(task_thread_info(idle));
157 octeon_processor_boot = cpu_logical_map(cpu);
158 mb();
159
160 count = 10000;
161 while (octeon_processor_sp && count) {
162 /* Waiting for processor to get the SP and GP */
163 udelay(1);
164 count--;
165 }
166 if (count == 0)
167 pr_err("Secondary boot timeout\n");
168}
169
170/**
171 * After we've done initial boot, this function is called to allow the
172 * board code to clean up state, if needed
173 */
David Daney0c326382011-03-25 12:38:51 -0700174static void __cpuinit octeon_init_secondary(void)
David Daney5b3b1682009-01-08 16:46:40 -0800175{
David Daneybabba4f2010-07-23 10:57:51 -0700176 unsigned int sr;
David Daney5b3b1682009-01-08 16:46:40 -0800177
David Daney0c326382011-03-25 12:38:51 -0700178 sr = set_c0_status(ST0_BEV);
179 write_c0_ebase((u32)ebase);
180 write_c0_status(sr);
181
182 octeon_check_cpu_bist();
183 octeon_init_cvmcount();
184
185 octeon_irq_setup_secondary();
186 raw_local_irq_enable();
187}
188
189/**
190 * Callout to firmware before smp_init
191 *
192 */
193void octeon_prepare_cpus(unsigned int max_cpus)
194{
Ralf Baechle773cb772009-06-23 10:36:38 +0100195#ifdef CONFIG_HOTPLUG_CPU
David Daneybabba4f2010-07-23 10:57:51 -0700196 struct linux_app_boot_info *labi;
Ralf Baechle773cb772009-06-23 10:36:38 +0100197
David Daneybabba4f2010-07-23 10:57:51 -0700198 labi = (struct linux_app_boot_info *)PHYS_TO_XKSEG_CACHED(LABI_ADDR_IN_BOOTLOADER);
199
200 if (labi->labi_signature != LABI_SIGNATURE)
201 panic("The bootloader version on this board is incorrect.");
Ralf Baechle773cb772009-06-23 10:36:38 +0100202#endif
David Daneybabba4f2010-07-23 10:57:51 -0700203
David Daney5b3b1682009-01-08 16:46:40 -0800204 cvmx_write_csr(CVMX_CIU_MBOX_CLRX(cvmx_get_core_num()), 0xffffffff);
David Daney39b3d442009-07-31 14:30:07 -0700205 if (request_irq(OCTEON_IRQ_MBOX0, mailbox_interrupt, IRQF_DISABLED,
David Daney5b3b1682009-01-08 16:46:40 -0800206 "mailbox0", mailbox_interrupt)) {
207 panic("Cannot request_irq(OCTEON_IRQ_MBOX0)\n");
208 }
David Daney39b3d442009-07-31 14:30:07 -0700209 if (request_irq(OCTEON_IRQ_MBOX1, mailbox_interrupt, IRQF_DISABLED,
David Daney5b3b1682009-01-08 16:46:40 -0800210 "mailbox1", mailbox_interrupt)) {
211 panic("Cannot request_irq(OCTEON_IRQ_MBOX1)\n");
212 }
213}
214
215/**
216 * Last chance for the board code to finish SMP initialization before
217 * the CPU is "online".
218 */
219static void octeon_smp_finish(void)
220{
221#ifdef CONFIG_CAVIUM_GDB
222 unsigned long tmp;
223 /* Pulse MCD0 signal on Ctrl-C to stop all the cores. Also set the MCD0
224 to be not masked by this core so we know the signal is received by
225 someone */
226 asm volatile ("dmfc0 %0, $22\n"
227 "ori %0, %0, 0x9100\n" "dmtc0 %0, $22\n" : "=r" (tmp));
228#endif
229
230 octeon_user_io_init();
231
232 /* to generate the first CPU timer interrupt */
233 write_c0_compare(read_c0_count() + mips_hpt_frequency / HZ);
234}
235
236/**
237 * Hook for after all CPUs are online
238 */
239static void octeon_cpus_done(void)
240{
241#ifdef CONFIG_CAVIUM_GDB
242 unsigned long tmp;
243 /* Pulse MCD0 signal on Ctrl-C to stop all the cores. Also set the MCD0
244 to be not masked by this core so we know the signal is received by
245 someone */
246 asm volatile ("dmfc0 %0, $22\n"
247 "ori %0, %0, 0x9100\n" "dmtc0 %0, $22\n" : "=r" (tmp));
248#endif
249}
250
Ralf Baechle773cb772009-06-23 10:36:38 +0100251#ifdef CONFIG_HOTPLUG_CPU
252
253/* State of each CPU. */
254DEFINE_PER_CPU(int, cpu_state);
255
256extern void fixup_irqs(void);
257
258static DEFINE_SPINLOCK(smp_reserve_lock);
259
260static int octeon_cpu_disable(void)
261{
262 unsigned int cpu = smp_processor_id();
263
264 if (cpu == 0)
265 return -EBUSY;
266
267 spin_lock(&smp_reserve_lock);
268
269 cpu_clear(cpu, cpu_online_map);
270 cpu_clear(cpu, cpu_callin_map);
271 local_irq_disable();
272 fixup_irqs();
273 local_irq_enable();
274
275 flush_cache_all();
276 local_flush_tlb_all();
277
278 spin_unlock(&smp_reserve_lock);
279
280 return 0;
281}
282
283static void octeon_cpu_die(unsigned int cpu)
284{
285 int coreid = cpu_logical_map(cpu);
David Daneybabba4f2010-07-23 10:57:51 -0700286 uint32_t mask, new_mask;
287 const struct cvmx_bootmem_named_block_desc *block_desc;
Ralf Baechle773cb772009-06-23 10:36:38 +0100288
Ralf Baechle773cb772009-06-23 10:36:38 +0100289 while (per_cpu(cpu_state, cpu) != CPU_DEAD)
290 cpu_relax();
291
292 /*
293 * This is a bit complicated strategics of getting/settig available
294 * cores mask, copied from bootloader
295 */
David Daneybabba4f2010-07-23 10:57:51 -0700296
297 mask = 1 << coreid;
Ralf Baechle773cb772009-06-23 10:36:38 +0100298 /* LINUX_APP_BOOT_BLOCK is initialized in bootoct binary */
299 block_desc = cvmx_bootmem_find_named_block(LINUX_APP_BOOT_BLOCK_NAME);
300
301 if (!block_desc) {
David Daneybabba4f2010-07-23 10:57:51 -0700302 struct linux_app_boot_info *labi;
303
304 labi = (struct linux_app_boot_info *)PHYS_TO_XKSEG_CACHED(LABI_ADDR_IN_BOOTLOADER);
305
306 labi->avail_coremask |= mask;
307 new_mask = labi->avail_coremask;
Ralf Baechle773cb772009-06-23 10:36:38 +0100308 } else { /* alternative, already initialized */
David Daneybabba4f2010-07-23 10:57:51 -0700309 uint32_t *p = (uint32_t *)PHYS_TO_XKSEG_CACHED(block_desc->base_addr +
310 AVAIL_COREMASK_OFFSET_IN_LINUX_APP_BOOT_BLOCK);
311 *p |= mask;
312 new_mask = *p;
Ralf Baechle773cb772009-06-23 10:36:38 +0100313 }
314
David Daneybabba4f2010-07-23 10:57:51 -0700315 pr_info("Reset core %d. Available Coremask = 0x%x \n", coreid, new_mask);
316 mb();
Ralf Baechle773cb772009-06-23 10:36:38 +0100317 cvmx_write_csr(CVMX_CIU_PP_RST, 1 << coreid);
318 cvmx_write_csr(CVMX_CIU_PP_RST, 0);
319}
320
321void play_dead(void)
322{
David Daneybabba4f2010-07-23 10:57:51 -0700323 int cpu = cpu_number_map(cvmx_get_core_num());
Ralf Baechle773cb772009-06-23 10:36:38 +0100324
325 idle_task_exit();
326 octeon_processor_boot = 0xff;
David Daneybabba4f2010-07-23 10:57:51 -0700327 per_cpu(cpu_state, cpu) = CPU_DEAD;
328
329 mb();
Ralf Baechle773cb772009-06-23 10:36:38 +0100330
331 while (1) /* core will be reset here */
332 ;
333}
334
335extern void kernel_entry(unsigned long arg1, ...);
336
337static void start_after_reset(void)
338{
339 kernel_entry(0, 0, 0); /* set a2 = 0 for secondary core */
340}
341
David Daneybabba4f2010-07-23 10:57:51 -0700342static int octeon_update_boot_vector(unsigned int cpu)
Ralf Baechle773cb772009-06-23 10:36:38 +0100343{
344
345 int coreid = cpu_logical_map(cpu);
David Daneybabba4f2010-07-23 10:57:51 -0700346 uint32_t avail_coremask;
347 const struct cvmx_bootmem_named_block_desc *block_desc;
Ralf Baechle773cb772009-06-23 10:36:38 +0100348 struct boot_init_vector *boot_vect =
David Daneybabba4f2010-07-23 10:57:51 -0700349 (struct boot_init_vector *)PHYS_TO_XKSEG_CACHED(BOOTLOADER_BOOT_VECTOR);
Ralf Baechle773cb772009-06-23 10:36:38 +0100350
351 block_desc = cvmx_bootmem_find_named_block(LINUX_APP_BOOT_BLOCK_NAME);
352
353 if (!block_desc) {
David Daneybabba4f2010-07-23 10:57:51 -0700354 struct linux_app_boot_info *labi;
355
356 labi = (struct linux_app_boot_info *)PHYS_TO_XKSEG_CACHED(LABI_ADDR_IN_BOOTLOADER);
357
358 avail_coremask = labi->avail_coremask;
359 labi->avail_coremask &= ~(1 << coreid);
Ralf Baechle773cb772009-06-23 10:36:38 +0100360 } else { /* alternative, already initialized */
David Daneybabba4f2010-07-23 10:57:51 -0700361 avail_coremask = *(uint32_t *)PHYS_TO_XKSEG_CACHED(
362 block_desc->base_addr + AVAIL_COREMASK_OFFSET_IN_LINUX_APP_BOOT_BLOCK);
Ralf Baechle773cb772009-06-23 10:36:38 +0100363 }
364
365 if (!(avail_coremask & (1 << coreid))) {
366 /* core not available, assume, that catched by simple-executive */
367 cvmx_write_csr(CVMX_CIU_PP_RST, 1 << coreid);
368 cvmx_write_csr(CVMX_CIU_PP_RST, 0);
369 }
370
371 boot_vect[coreid].app_start_func_addr =
372 (uint32_t) (unsigned long) start_after_reset;
David Daneybabba4f2010-07-23 10:57:51 -0700373 boot_vect[coreid].code_addr = octeon_bootloader_entry_addr;
Ralf Baechle773cb772009-06-23 10:36:38 +0100374
David Daneybabba4f2010-07-23 10:57:51 -0700375 mb();
Ralf Baechle773cb772009-06-23 10:36:38 +0100376
377 cvmx_write_csr(CVMX_CIU_NMI, (1 << coreid) & avail_coremask);
378
379 return 0;
380}
381
382static int __cpuinit octeon_cpu_callback(struct notifier_block *nfb,
383 unsigned long action, void *hcpu)
384{
385 unsigned int cpu = (unsigned long)hcpu;
386
387 switch (action) {
388 case CPU_UP_PREPARE:
389 octeon_update_boot_vector(cpu);
390 break;
391 case CPU_ONLINE:
392 pr_info("Cpu %d online\n", cpu);
393 break;
394 case CPU_DEAD:
395 break;
396 }
397
398 return NOTIFY_OK;
399}
400
Ralf Baechle773cb772009-06-23 10:36:38 +0100401static int __cpuinit register_cavium_notifier(void)
402{
David Daney442f2012010-07-23 10:57:50 -0700403 hotcpu_notifier(octeon_cpu_callback, 0);
Ralf Baechle773cb772009-06-23 10:36:38 +0100404 return 0;
405}
Ralf Baechle773cb772009-06-23 10:36:38 +0100406late_initcall(register_cavium_notifier);
407
408#endif /* CONFIG_HOTPLUG_CPU */
409
David Daney5b3b1682009-01-08 16:46:40 -0800410struct plat_smp_ops octeon_smp_ops = {
411 .send_ipi_single = octeon_send_ipi_single,
412 .send_ipi_mask = octeon_send_ipi_mask,
413 .init_secondary = octeon_init_secondary,
414 .smp_finish = octeon_smp_finish,
415 .cpus_done = octeon_cpus_done,
416 .boot_secondary = octeon_boot_secondary,
417 .smp_setup = octeon_smp_setup,
418 .prepare_cpus = octeon_prepare_cpus,
Ralf Baechle773cb772009-06-23 10:36:38 +0100419#ifdef CONFIG_HOTPLUG_CPU
420 .cpu_disable = octeon_cpu_disable,
421 .cpu_die = octeon_cpu_die,
422#endif
David Daney5b3b1682009-01-08 16:46:40 -0800423};