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Thomas Gleixner2874c5f2019-05-27 08:55:01 +02001// SPDX-License-Identifier: GPL-2.0-or-later
Linus Torvalds1da177e2005-04-16 15:20:36 -07002/*
3 * SMP support for ppc.
4 *
5 * Written by Cort Dougan (cort@cs.nmt.edu) borrowing a great
6 * deal of code from the sparc and intel versions.
7 *
8 * Copyright (C) 1999 Cort Dougan <cort@cs.nmt.edu>
9 *
10 * PowerPC-64 Support added by Dave Engebretsen, Peter Bergner, and
11 * Mike Corrigan {engebret|bergner|mikec}@us.ibm.com
Linus Torvalds1da177e2005-04-16 15:20:36 -070012 */
13
14#undef DEBUG
15
Linus Torvalds1da177e2005-04-16 15:20:36 -070016#include <linux/kernel.h>
Paul Gortmaker4b16f8e2011-07-22 18:24:23 -040017#include <linux/export.h>
Ingo Molnar68e21be2017-02-01 19:08:20 +010018#include <linux/sched/mm.h>
Christophe Leroy678c6682019-01-17 23:26:56 +110019#include <linux/sched/task_stack.h>
Ingo Molnar105ab3d2017-02-01 16:36:40 +010020#include <linux/sched/topology.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070021#include <linux/smp.h>
22#include <linux/interrupt.h>
23#include <linux/delay.h>
24#include <linux/init.h>
25#include <linux/spinlock.h>
26#include <linux/cache.h>
27#include <linux/err.h>
Kay Sievers8a25a2f2011-12-21 14:29:42 -080028#include <linux/device.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070029#include <linux/cpu.h>
30#include <linux/notifier.h>
Anton Blanchard4b703a22005-12-13 06:56:47 +110031#include <linux/topology.h>
Daniel Axtens665e87f2016-05-18 11:16:51 +100032#include <linux/profile.h>
Nicholas Piggin4e287e62017-06-06 23:08:32 +100033#include <linux/processor.h>
Christophe Leroy7241d262018-10-13 09:45:12 +000034#include <linux/random.h>
Michael Ellermanb6aedde2018-10-19 16:19:10 +110035#include <linux/stackprotector.h>
Mike Rapoport65fddcf2020-06-08 21:32:42 -070036#include <linux/pgtable.h>
Cédric Le Goatercd7aa5d2021-01-04 15:31:51 +010037#include <linux/clockchips.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070038
39#include <asm/ptrace.h>
Arun Sharma600634972011-07-26 16:09:06 -070040#include <linux/atomic.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070041#include <asm/irq.h>
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +053042#include <asm/hw_irq.h>
Michael Ellerman441c19c2014-05-23 18:15:25 +100043#include <asm/kvm_ppc.h>
Nicholas Pigginb866cc22017-04-13 20:16:21 +100044#include <asm/dbell.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070045#include <asm/page.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070046#include <asm/prom.h>
47#include <asm/smp.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070048#include <asm/time.h>
49#include <asm/machdep.h>
Nathan Lynche2075f72008-07-27 15:24:52 +100050#include <asm/cputhreads.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070051#include <asm/cputable.h>
Stephen Rothwellbbeb3f42005-09-27 13:51:59 +100052#include <asm/mpic.h>
Benjamin Herrenschmidta7f290d2005-11-11 21:15:21 +110053#include <asm/vdso_datapage.h>
Paul Mackerras5ad57072005-11-05 10:33:55 +110054#ifdef CONFIG_PPC64
55#include <asm/paca.h>
56#endif
Anton Blanchard18ad51d2012-07-04 20:37:11 +000057#include <asm/vdso.h>
David Howellsae3a1972012-03-28 18:30:02 +010058#include <asm/debug.h>
Anton Blanchard1217d342014-08-20 08:55:19 +100059#include <asm/kexec.h>
Daniel Axtens42f5b4c2016-05-18 11:16:50 +100060#include <asm/asm-prototypes.h>
Kevin Haob92a2262016-07-23 14:42:40 +053061#include <asm/cpu_has_feature.h>
Naveen N. Raod1039782018-04-19 12:34:03 +053062#include <asm/ftrace.h>
Aneesh Kumar K.Ve0d8e992020-07-09 08:59:42 +053063#include <asm/kup.h>
Paul Mackerras5ad57072005-11-05 10:33:55 +110064
Linus Torvalds1da177e2005-04-16 15:20:36 -070065#ifdef DEBUG
Michael Ellermanf9e4ec52005-11-15 15:16:38 +110066#include <asm/udbg.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070067#define DBG(fmt...) udbg_printf(fmt)
68#else
69#define DBG(fmt...)
70#endif
71
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +110072#ifdef CONFIG_HOTPLUG_CPU
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +000073/* State of each CPU during hotplug phases */
74static DEFINE_PER_CPU(int, cpu_state) = { 0 };
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +110075#endif
76
Christophe Leroy7c19c2e2019-01-31 10:09:02 +000077struct task_struct *secondary_current;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +053078bool has_big_cores;
Srikar Dronamrajuf9f130f2020-08-10 12:48:31 +053079bool coregroup_enabled;
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +053080bool thread_group_shares_l2;
Michael Ellermanf9e4ec52005-11-15 15:16:38 +110081
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +000082DEFINE_PER_CPU(cpumask_var_t, cpu_sibling_map);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +053083DEFINE_PER_CPU(cpumask_var_t, cpu_smallcore_map);
Oliver O'Halloran2a636a52017-06-29 17:12:55 +100084DEFINE_PER_CPU(cpumask_var_t, cpu_l2_cache_map);
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +000085DEFINE_PER_CPU(cpumask_var_t, cpu_core_map);
Srikar Dronamraju72730bf2020-08-10 12:48:33 +053086DEFINE_PER_CPU(cpumask_var_t, cpu_coregroup_map);
Linus Torvalds1da177e2005-04-16 15:20:36 -070087
Mike Travisd5a74302007-10-16 01:24:05 -070088EXPORT_PER_CPU_SYMBOL(cpu_sibling_map);
Oliver O'Halloran2a636a52017-06-29 17:12:55 +100089EXPORT_PER_CPU_SYMBOL(cpu_l2_cache_map);
Nathan Lynch440a0852008-07-27 15:24:53 +100090EXPORT_PER_CPU_SYMBOL(cpu_core_map);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +053091EXPORT_SYMBOL_GPL(has_big_cores);
92
Srikar Dronamraju72730bf2020-08-10 12:48:33 +053093enum {
94#ifdef CONFIG_SCHED_SMT
95 smt_idx,
96#endif
97 cache_idx,
98 mc_idx,
99 die_idx,
100};
101
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530102#define MAX_THREAD_LIST_SIZE 8
103#define THREAD_GROUP_SHARE_L1 1
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530104#define THREAD_GROUP_SHARE_L2 2
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530105struct thread_groups {
106 unsigned int property;
107 unsigned int nr_groups;
108 unsigned int threads_per_group;
109 unsigned int thread_list[MAX_THREAD_LIST_SIZE];
110};
111
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530112/* Maximum number of properties that groups of threads within a core can share */
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530113#define MAX_THREAD_GROUP_PROPERTIES 2
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530114
115struct thread_groups_list {
116 unsigned int nr_properties;
117 struct thread_groups property_tgs[MAX_THREAD_GROUP_PROPERTIES];
118};
119
120static struct thread_groups_list tgl[NR_CPUS] __initdata;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530121/*
Gautham R. Shenoy1fdc1d62020-12-10 16:08:56 +0530122 * On big-cores system, thread_group_l1_cache_map for each CPU corresponds to
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530123 * the set its siblings that share the L1-cache.
124 */
Gautham R. Shenoy1fdc1d62020-12-10 16:08:56 +0530125DEFINE_PER_CPU(cpumask_var_t, thread_group_l1_cache_map);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700126
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530127/*
128 * On some big-cores system, thread_group_l2_cache_map for each CPU
129 * corresponds to the set its siblings within the core that share the
130 * L2-cache.
131 */
132DEFINE_PER_CPU(cpumask_var_t, thread_group_l2_cache_map);
133
Paul Mackerras5ad57072005-11-05 10:33:55 +1100134/* SMP operations for this machine */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700135struct smp_ops_t *smp_ops;
136
Benjamin Herrenschmidt7ccbe502009-06-18 23:30:07 +0000137/* Can't be static due to PowerMac hackery */
138volatile unsigned int cpu_callin_map[NR_CPUS];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700139
Linus Torvalds1da177e2005-04-16 15:20:36 -0700140int smt_enabled_at_boot = 1;
141
Andy Fleming3cd85252013-08-05 14:58:34 -0500142/*
143 * Returns 1 if the specified cpu should be brought up during boot.
144 * Used to inhibit booting threads if they've been disabled or
145 * limited on the command line
146 */
147int smp_generic_cpu_bootable(unsigned int nr)
148{
149 /* Special case - we inhibit secondary thread startup
150 * during boot if the user requests it.
151 */
Thomas Gleixnera8fcfc12017-05-16 20:42:37 +0200152 if (system_state < SYSTEM_RUNNING && cpu_has_feature(CPU_FTR_SMT)) {
Andy Fleming3cd85252013-08-05 14:58:34 -0500153 if (!smt_enabled_at_boot && cpu_thread_in_core(nr) != 0)
154 return 0;
155 if (smt_enabled_at_boot
156 && cpu_thread_in_core(nr) >= smt_enabled_at_boot)
157 return 0;
158 }
159
160 return 1;
161}
162
163
Paul Mackerras5ad57072005-11-05 10:33:55 +1100164#ifdef CONFIG_PPC64
Greg Kroah-Hartmancad5cef2012-12-21 14:04:10 -0800165int smp_generic_kick_cpu(int nr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700166{
Santosh Sivarajc642af92017-06-27 12:30:06 +0530167 if (nr < 0 || nr >= nr_cpu_ids)
Santosh Sivarajf8d0d5d2017-06-27 12:30:05 +0530168 return -EINVAL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700169
170 /*
171 * The processor is currently spinning, waiting for the
172 * cpu_start field to become non-zero After we set cpu_start,
173 * the processor will continue on to secondary_start
174 */
Nicholas Piggind2e60072018-02-14 01:08:12 +1000175 if (!paca_ptrs[nr]->cpu_start) {
176 paca_ptrs[nr]->cpu_start = 1;
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +0000177 smp_mb();
178 return 0;
179 }
180
181#ifdef CONFIG_HOTPLUG_CPU
182 /*
183 * Ok it's not there, so it might be soft-unplugged, let's
184 * try to bring it back
185 */
Zhao Chenhuiae5cab42012-07-20 20:42:34 +0800186 generic_set_cpu_up(nr);
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +0000187 smp_wmb();
188 smp_send_reschedule(nr);
189#endif /* CONFIG_HOTPLUG_CPU */
Michael Ellermande300972011-04-11 21:46:19 +0000190
191 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700192}
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +0000193#endif /* CONFIG_PPC64 */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700194
Milton Miller25ddd732008-11-14 20:11:49 +0000195static irqreturn_t call_function_action(int irq, void *data)
196{
197 generic_smp_call_function_interrupt();
198 return IRQ_HANDLED;
199}
200
201static irqreturn_t reschedule_action(int irq, void *data)
202{
Peter Zijlstra184748c2011-04-05 17:23:39 +0200203 scheduler_ipi();
Milton Miller25ddd732008-11-14 20:11:49 +0000204 return IRQ_HANDLED;
205}
206
Nicholas Pigginbc907112018-05-05 03:19:33 +1000207#ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +0530208static irqreturn_t tick_broadcast_ipi_action(int irq, void *data)
Milton Miller25ddd732008-11-14 20:11:49 +0000209{
Nicholas Piggin3f984622018-05-05 03:19:31 +1000210 timer_broadcast_interrupt();
Milton Miller25ddd732008-11-14 20:11:49 +0000211 return IRQ_HANDLED;
212}
Nicholas Pigginbc907112018-05-05 03:19:33 +1000213#endif
Milton Miller25ddd732008-11-14 20:11:49 +0000214
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000215#ifdef CONFIG_NMI_IPI
216static irqreturn_t nmi_ipi_action(int irq, void *data)
Milton Miller25ddd732008-11-14 20:11:49 +0000217{
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000218 smp_handle_nmi_ipi(get_irq_regs());
Milton Miller25ddd732008-11-14 20:11:49 +0000219 return IRQ_HANDLED;
220}
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000221#endif
Milton Miller25ddd732008-11-14 20:11:49 +0000222
223static irq_handler_t smp_ipi_action[] = {
224 [PPC_MSG_CALL_FUNCTION] = call_function_action,
225 [PPC_MSG_RESCHEDULE] = reschedule_action,
Nicholas Pigginbc907112018-05-05 03:19:33 +1000226#ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +0530227 [PPC_MSG_TICK_BROADCAST] = tick_broadcast_ipi_action,
Nicholas Pigginbc907112018-05-05 03:19:33 +1000228#endif
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000229#ifdef CONFIG_NMI_IPI
230 [PPC_MSG_NMI_IPI] = nmi_ipi_action,
231#endif
Milton Miller25ddd732008-11-14 20:11:49 +0000232};
233
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000234/*
235 * The NMI IPI is a fallback and not truly non-maskable. It is simpler
236 * than going through the call function infrastructure, and strongly
237 * serialized, so it is more appropriate for debugging.
238 */
Milton Miller25ddd732008-11-14 20:11:49 +0000239const char *smp_ipi_name[] = {
240 [PPC_MSG_CALL_FUNCTION] = "ipi call function",
241 [PPC_MSG_RESCHEDULE] = "ipi reschedule",
Nicholas Pigginbc907112018-05-05 03:19:33 +1000242#ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +0530243 [PPC_MSG_TICK_BROADCAST] = "ipi tick-broadcast",
Nicholas Pigginbc907112018-05-05 03:19:33 +1000244#endif
Nicholas Piggin21bfd6a2018-05-05 03:19:34 +1000245#ifdef CONFIG_NMI_IPI
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000246 [PPC_MSG_NMI_IPI] = "nmi ipi",
Nicholas Piggin21bfd6a2018-05-05 03:19:34 +1000247#endif
Milton Miller25ddd732008-11-14 20:11:49 +0000248};
249
250/* optional function to request ipi, for controllers with >= 4 ipis */
251int smp_request_message_ipi(int virq, int msg)
252{
253 int err;
254
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000255 if (msg < 0 || msg > PPC_MSG_NMI_IPI)
Milton Miller25ddd732008-11-14 20:11:49 +0000256 return -EINVAL;
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000257#ifndef CONFIG_NMI_IPI
258 if (msg == PPC_MSG_NMI_IPI)
Milton Miller25ddd732008-11-14 20:11:49 +0000259 return 1;
Milton Miller25ddd732008-11-14 20:11:49 +0000260#endif
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000261
Thomas Gleixner3b5e16d2011-10-05 02:30:50 +0000262 err = request_irq(virq, smp_ipi_action[msg],
Zhao Chenhuie6651de2012-07-20 20:47:01 +0800263 IRQF_PERCPU | IRQF_NO_THREAD | IRQF_NO_SUSPEND,
Anton Blanchardb0d436c2013-08-07 02:01:24 +1000264 smp_ipi_name[msg], NULL);
Milton Miller25ddd732008-11-14 20:11:49 +0000265 WARN(err < 0, "unable to request_irq %d for %s (rc %d)\n",
266 virq, smp_ipi_name[msg], err);
267
268 return err;
269}
270
Milton Miller1ece3552011-05-10 19:29:42 +0000271#ifdef CONFIG_PPC_SMP_MUXED_IPI
Milton Miller23d72bf2011-05-10 19:29:39 +0000272struct cpu_messages {
Suresh Warrierbd7f5612015-12-17 14:59:03 -0600273 long messages; /* current messages */
Milton Miller23d72bf2011-05-10 19:29:39 +0000274};
275static DEFINE_PER_CPU_SHARED_ALIGNED(struct cpu_messages, ipi_message);
276
Suresh Warrier31639c772015-12-17 14:59:04 -0600277void smp_muxed_ipi_set_message(int cpu, int msg)
Milton Miller23d72bf2011-05-10 19:29:39 +0000278{
279 struct cpu_messages *info = &per_cpu(ipi_message, cpu);
Milton Miller71454272011-05-10 19:29:46 +0000280 char *message = (char *)&info->messages;
Milton Miller23d72bf2011-05-10 19:29:39 +0000281
Paul Mackerras9fb1b362012-09-04 18:33:08 +0000282 /*
283 * Order previous accesses before accesses in the IPI handler.
284 */
285 smp_mb();
Milton Miller71454272011-05-10 19:29:46 +0000286 message[msg] = 1;
Suresh Warrier31639c772015-12-17 14:59:04 -0600287}
288
289void smp_muxed_ipi_message_pass(int cpu, int msg)
290{
Suresh Warrier31639c772015-12-17 14:59:04 -0600291 smp_muxed_ipi_set_message(cpu, msg);
Nicholas Pigginb866cc22017-04-13 20:16:21 +1000292
Paul Mackerras9fb1b362012-09-04 18:33:08 +0000293 /*
294 * cause_ipi functions are required to include a full barrier
295 * before doing whatever causes the IPI.
296 */
Nicholas Pigginb866cc22017-04-13 20:16:21 +1000297 smp_ops->cause_ipi(cpu);
Milton Miller23d72bf2011-05-10 19:29:39 +0000298}
299
Anton Blanchard0654de12013-08-07 02:01:48 +1000300#ifdef __BIG_ENDIAN__
Suresh Warrierbd7f5612015-12-17 14:59:03 -0600301#define IPI_MESSAGE(A) (1uL << ((BITS_PER_LONG - 8) - 8 * (A)))
Anton Blanchard0654de12013-08-07 02:01:48 +1000302#else
Suresh Warrierbd7f5612015-12-17 14:59:03 -0600303#define IPI_MESSAGE(A) (1uL << (8 * (A)))
Anton Blanchard0654de12013-08-07 02:01:48 +1000304#endif
305
Milton Miller23d72bf2011-05-10 19:29:39 +0000306irqreturn_t smp_ipi_demux(void)
307{
Milton Miller23d72bf2011-05-10 19:29:39 +0000308 mb(); /* order any irq clear */
Milton Miller71454272011-05-10 19:29:46 +0000309
Nicholas Pigginb87ac022017-04-13 20:16:22 +1000310 return smp_ipi_demux_relaxed();
311}
312
313/* sync-free variant. Callers should ensure synchronization */
314irqreturn_t smp_ipi_demux_relaxed(void)
315{
Nicholas Pigginb866cc22017-04-13 20:16:21 +1000316 struct cpu_messages *info;
Milton Miller23d72bf2011-05-10 19:29:39 +0000317 unsigned long all;
318
Nicholas Pigginb866cc22017-04-13 20:16:21 +1000319 info = this_cpu_ptr(&ipi_message);
Milton Miller71454272011-05-10 19:29:46 +0000320 do {
Paul Mackerras9fb1b362012-09-04 18:33:08 +0000321 all = xchg(&info->messages, 0);
Suresh E. Warriere17769e2015-12-21 16:22:51 -0600322#if defined(CONFIG_KVM_XICS) && defined(CONFIG_KVM_BOOK3S_HV_POSSIBLE)
323 /*
324 * Must check for PPC_MSG_RM_HOST_ACTION messages
325 * before PPC_MSG_CALL_FUNCTION messages because when
326 * a VM is destroyed, we call kick_all_cpus_sync()
327 * to ensure that any pending PPC_MSG_RM_HOST_ACTION
328 * messages have completed before we free any VCPUs.
329 */
330 if (all & IPI_MESSAGE(PPC_MSG_RM_HOST_ACTION))
331 kvmppc_xics_ipi_action();
332#endif
Anton Blanchard0654de12013-08-07 02:01:48 +1000333 if (all & IPI_MESSAGE(PPC_MSG_CALL_FUNCTION))
Milton Miller23d72bf2011-05-10 19:29:39 +0000334 generic_smp_call_function_interrupt();
Anton Blanchard0654de12013-08-07 02:01:48 +1000335 if (all & IPI_MESSAGE(PPC_MSG_RESCHEDULE))
Benjamin Herrenschmidt880102e2011-05-20 15:36:52 +1000336 scheduler_ipi();
Nicholas Pigginbc907112018-05-05 03:19:33 +1000337#ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +0530338 if (all & IPI_MESSAGE(PPC_MSG_TICK_BROADCAST))
Nicholas Piggin3f984622018-05-05 03:19:31 +1000339 timer_broadcast_interrupt();
Nicholas Pigginbc907112018-05-05 03:19:33 +1000340#endif
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000341#ifdef CONFIG_NMI_IPI
342 if (all & IPI_MESSAGE(PPC_MSG_NMI_IPI))
343 nmi_ipi_action(0, NULL);
344#endif
Milton Miller71454272011-05-10 19:29:46 +0000345 } while (info->messages);
346
Milton Miller23d72bf2011-05-10 19:29:39 +0000347 return IRQ_HANDLED;
348}
Milton Miller1ece3552011-05-10 19:29:42 +0000349#endif /* CONFIG_PPC_SMP_MUXED_IPI */
Milton Miller23d72bf2011-05-10 19:29:39 +0000350
Paul Mackerras9ca980d2011-05-25 23:34:12 +0000351static inline void do_message_pass(int cpu, int msg)
352{
353 if (smp_ops->message_pass)
354 smp_ops->message_pass(cpu, msg);
355#ifdef CONFIG_PPC_SMP_MUXED_IPI
356 else
357 smp_muxed_ipi_message_pass(cpu, msg);
358#endif
359}
360
Linus Torvalds1da177e2005-04-16 15:20:36 -0700361void smp_send_reschedule(int cpu)
362{
Benjamin Herrenschmidt8cffc6a2006-07-04 14:09:36 +1000363 if (likely(smp_ops))
Paul Mackerras9ca980d2011-05-25 23:34:12 +0000364 do_message_pass(cpu, PPC_MSG_RESCHEDULE);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700365}
Paul Mackerrasde56a942011-06-29 00:21:34 +0000366EXPORT_SYMBOL_GPL(smp_send_reschedule);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700367
Jens Axboeb7d7a242008-06-26 11:22:13 +0200368void arch_send_call_function_single_ipi(int cpu)
369{
Srivatsa S. Bhat402d9a12014-02-26 05:37:29 +0530370 do_message_pass(cpu, PPC_MSG_CALL_FUNCTION);
Jens Axboeb7d7a242008-06-26 11:22:13 +0200371}
372
Rusty Russellf063ea02009-09-24 09:34:45 -0600373void arch_send_call_function_ipi_mask(const struct cpumask *mask)
Jens Axboeb7d7a242008-06-26 11:22:13 +0200374{
375 unsigned int cpu;
376
Rusty Russellf063ea02009-09-24 09:34:45 -0600377 for_each_cpu(cpu, mask)
Paul Mackerras9ca980d2011-05-25 23:34:12 +0000378 do_message_pass(cpu, PPC_MSG_CALL_FUNCTION);
Jens Axboeb7d7a242008-06-26 11:22:13 +0200379}
380
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000381#ifdef CONFIG_NMI_IPI
382
383/*
384 * "NMI IPI" system.
385 *
386 * NMI IPIs may not be recoverable, so should not be used as ongoing part of
387 * a running system. They can be used for crash, debug, halt/reboot, etc.
388 *
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000389 * The IPI call waits with interrupts disabled until all targets enter the
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000390 * NMI handler, then returns. Subsequent IPIs can be issued before targets
391 * have returned from their handlers, so there is no guarantee about
392 * concurrency or re-entrancy.
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000393 *
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000394 * A new NMI can be issued before all targets exit the handler.
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000395 *
396 * The IPI call may time out without all targets entering the NMI handler.
397 * In that case, there is some logic to recover (and ignore subsequent
398 * NMI interrupts that may eventually be raised), but the platform interrupt
399 * handler may not be able to distinguish this from other exception causes,
400 * which may cause a crash.
401 */
402
403static atomic_t __nmi_ipi_lock = ATOMIC_INIT(0);
404static struct cpumask nmi_ipi_pending_mask;
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000405static bool nmi_ipi_busy = false;
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000406static void (*nmi_ipi_function)(struct pt_regs *) = NULL;
407
408static void nmi_ipi_lock_start(unsigned long *flags)
409{
410 raw_local_irq_save(*flags);
411 hard_irq_disable();
412 while (atomic_cmpxchg(&__nmi_ipi_lock, 0, 1) == 1) {
413 raw_local_irq_restore(*flags);
Nicholas Piggin0459ddf2017-08-09 22:41:21 +1000414 spin_until_cond(atomic_read(&__nmi_ipi_lock) == 0);
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000415 raw_local_irq_save(*flags);
416 hard_irq_disable();
417 }
418}
419
420static void nmi_ipi_lock(void)
421{
422 while (atomic_cmpxchg(&__nmi_ipi_lock, 0, 1) == 1)
Nicholas Piggin0459ddf2017-08-09 22:41:21 +1000423 spin_until_cond(atomic_read(&__nmi_ipi_lock) == 0);
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000424}
425
426static void nmi_ipi_unlock(void)
427{
428 smp_mb();
429 WARN_ON(atomic_read(&__nmi_ipi_lock) != 1);
430 atomic_set(&__nmi_ipi_lock, 0);
431}
432
433static void nmi_ipi_unlock_end(unsigned long *flags)
434{
435 nmi_ipi_unlock();
436 raw_local_irq_restore(*flags);
437}
438
439/*
440 * Platform NMI handler calls this to ack
441 */
442int smp_handle_nmi_ipi(struct pt_regs *regs)
443{
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000444 void (*fn)(struct pt_regs *) = NULL;
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000445 unsigned long flags;
446 int me = raw_smp_processor_id();
447 int ret = 0;
448
449 /*
450 * Unexpected NMIs are possible here because the interrupt may not
451 * be able to distinguish NMI IPIs from other types of NMIs, or
452 * because the caller may have timed out.
453 */
454 nmi_ipi_lock_start(&flags);
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000455 if (cpumask_test_cpu(me, &nmi_ipi_pending_mask)) {
456 cpumask_clear_cpu(me, &nmi_ipi_pending_mask);
457 fn = READ_ONCE(nmi_ipi_function);
458 WARN_ON_ONCE(!fn);
459 ret = 1;
460 }
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000461 nmi_ipi_unlock_end(&flags);
462
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000463 if (fn)
464 fn(regs);
465
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000466 return ret;
467}
468
Michael Ellerman6ba55712018-05-02 23:07:27 +1000469static void do_smp_send_nmi_ipi(int cpu, bool safe)
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000470{
Michael Ellerman6ba55712018-05-02 23:07:27 +1000471 if (!safe && smp_ops->cause_nmi_ipi && smp_ops->cause_nmi_ipi(cpu))
Nicholas Pigginc64af642016-12-20 04:30:09 +1000472 return;
473
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000474 if (cpu >= 0) {
475 do_message_pass(cpu, PPC_MSG_NMI_IPI);
476 } else {
477 int c;
478
479 for_each_online_cpu(c) {
480 if (c == raw_smp_processor_id())
481 continue;
482 do_message_pass(c, PPC_MSG_NMI_IPI);
483 }
484 }
485}
486
487/*
488 * - cpu is the target CPU (must not be this CPU), or NMI_IPI_ALL_OTHERS.
489 * - fn is the target callback function.
490 * - delay_us > 0 is the delay before giving up waiting for targets to
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000491 * begin executing the handler, == 0 specifies indefinite delay.
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000492 */
Nicholas Piggin6fe243f2018-11-26 12:01:07 +1000493static int __smp_send_nmi_ipi(int cpu, void (*fn)(struct pt_regs *),
494 u64 delay_us, bool safe)
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000495{
496 unsigned long flags;
497 int me = raw_smp_processor_id();
498 int ret = 1;
499
500 BUG_ON(cpu == me);
501 BUG_ON(cpu < 0 && cpu != NMI_IPI_ALL_OTHERS);
502
503 if (unlikely(!smp_ops))
504 return 0;
505
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000506 nmi_ipi_lock_start(&flags);
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000507 while (nmi_ipi_busy) {
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000508 nmi_ipi_unlock_end(&flags);
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000509 spin_until_cond(!nmi_ipi_busy);
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000510 nmi_ipi_lock_start(&flags);
511 }
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000512 nmi_ipi_busy = true;
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000513 nmi_ipi_function = fn;
514
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000515 WARN_ON_ONCE(!cpumask_empty(&nmi_ipi_pending_mask));
516
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000517 if (cpu < 0) {
518 /* ALL_OTHERS */
519 cpumask_copy(&nmi_ipi_pending_mask, cpu_online_mask);
520 cpumask_clear_cpu(me, &nmi_ipi_pending_mask);
521 } else {
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000522 cpumask_set_cpu(cpu, &nmi_ipi_pending_mask);
523 }
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000524
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000525 nmi_ipi_unlock();
526
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000527 /* Interrupts remain hard disabled */
528
Michael Ellerman6ba55712018-05-02 23:07:27 +1000529 do_smp_send_nmi_ipi(cpu, safe);
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000530
Nicholas Piggin5b731512018-04-25 15:17:59 +1000531 nmi_ipi_lock();
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000532 /* nmi_ipi_busy is set here, so unlock/lock is okay */
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000533 while (!cpumask_empty(&nmi_ipi_pending_mask)) {
Nicholas Piggin5b731512018-04-25 15:17:59 +1000534 nmi_ipi_unlock();
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000535 udelay(1);
Nicholas Piggin5b731512018-04-25 15:17:59 +1000536 nmi_ipi_lock();
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000537 if (delay_us) {
538 delay_us--;
539 if (!delay_us)
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000540 break;
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000541 }
542 }
543
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000544 if (!cpumask_empty(&nmi_ipi_pending_mask)) {
Nicholas Piggin5b731512018-04-25 15:17:59 +1000545 /* Timeout waiting for CPUs to call smp_handle_nmi_ipi */
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000546 ret = 0;
547 cpumask_clear(&nmi_ipi_pending_mask);
548 }
Nicholas Piggin5b731512018-04-25 15:17:59 +1000549
Nicholas Piggin88b9a3d2018-11-26 12:01:06 +1000550 nmi_ipi_function = NULL;
551 nmi_ipi_busy = false;
552
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000553 nmi_ipi_unlock_end(&flags);
554
555 return ret;
556}
Michael Ellerman6ba55712018-05-02 23:07:27 +1000557
558int smp_send_nmi_ipi(int cpu, void (*fn)(struct pt_regs *), u64 delay_us)
559{
560 return __smp_send_nmi_ipi(cpu, fn, delay_us, false);
561}
562
563int smp_send_safe_nmi_ipi(int cpu, void (*fn)(struct pt_regs *), u64 delay_us)
564{
565 return __smp_send_nmi_ipi(cpu, fn, delay_us, true);
566}
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000567#endif /* CONFIG_NMI_IPI */
568
Srivatsa S. Bhat1b67bee2014-02-26 05:37:43 +0530569#ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
570void tick_broadcast(const struct cpumask *mask)
571{
572 unsigned int cpu;
573
574 for_each_cpu(cpu, mask)
575 do_message_pass(cpu, PPC_MSG_TICK_BROADCAST);
576}
577#endif
578
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000579#ifdef CONFIG_DEBUGGER
580void debugger_ipi_callback(struct pt_regs *regs)
581{
582 debugger_ipi(regs);
583}
584
Milton Millere0476372011-05-10 19:29:06 +0000585void smp_send_debugger_break(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700586{
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000587 smp_send_nmi_ipi(NMI_IPI_ALL_OTHERS, debugger_ipi_callback, 1000000);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700588}
589#endif
590
Thiago Jung Bauermannda665882016-11-29 23:45:50 +1100591#ifdef CONFIG_KEXEC_CORE
Michael Ellermancc532912005-12-04 18:39:43 +1100592void crash_send_ipi(void (*crash_ipi_callback)(struct pt_regs *))
593{
Balbir Singh4145f352017-12-15 19:14:55 +1100594 int cpu;
595
Nicholas Pigginddd703c2016-12-20 04:30:08 +1000596 smp_send_nmi_ipi(NMI_IPI_ALL_OTHERS, crash_ipi_callback, 1000000);
Balbir Singh4145f352017-12-15 19:14:55 +1100597 if (kdump_in_progress() && crash_wake_offline) {
598 for_each_present_cpu(cpu) {
599 if (cpu_online(cpu))
600 continue;
601 /*
602 * crash_ipi_callback will wait for
603 * all cpus, including offline CPUs.
604 * We don't care about nmi_ipi_function.
605 * Offline cpus will jump straight into
606 * crash_ipi_callback, we can skip the
607 * entire NMI dance and waiting for
608 * cpus to clear pending mask, etc.
609 */
Michael Ellerman6ba55712018-05-02 23:07:27 +1000610 do_smp_send_nmi_ipi(cpu, false);
Balbir Singh4145f352017-12-15 19:14:55 +1100611 }
612 }
Michael Ellermancc532912005-12-04 18:39:43 +1100613}
614#endif
615
Nicholas Piggin60297552018-04-27 11:51:59 +1000616#ifdef CONFIG_NMI_IPI
617static void nmi_stop_this_cpu(struct pt_regs *regs)
618{
619 /*
Nicholas Piggin60297552018-04-27 11:51:59 +1000620 * IRQs are already hard disabled by the smp_handle_nmi_ipi.
621 */
Nicholas Piggin60297552018-04-27 11:51:59 +1000622 spin_begin();
623 while (1)
624 spin_cpu_relax();
625}
626
627void smp_send_stop(void)
628{
629 smp_send_nmi_ipi(NMI_IPI_ALL_OTHERS, nmi_stop_this_cpu, 1000000);
630}
631
632#else /* CONFIG_NMI_IPI */
633
Linus Torvalds1da177e2005-04-16 15:20:36 -0700634static void stop_this_cpu(void *dummy)
635{
Nicholas Piggin855bfe02018-04-01 20:36:14 +1000636 hard_irq_disable();
637 spin_begin();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700638 while (1)
Nicholas Piggin855bfe02018-04-01 20:36:14 +1000639 spin_cpu_relax();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700640}
641
Satyam Sharma8fd7675c2007-09-18 09:43:40 +1000642void smp_send_stop(void)
643{
Nicholas Piggin60297552018-04-27 11:51:59 +1000644 static bool stopped = false;
645
646 /*
647 * Prevent waiting on csd lock from a previous smp_send_stop.
648 * This is racy, but in general callers try to do the right
649 * thing and only fire off one smp_send_stop (e.g., see
650 * kernel/panic.c)
651 */
652 if (stopped)
653 return;
654
655 stopped = true;
656
Jens Axboe8691e5a2008-06-06 11:18:06 +0200657 smp_call_function(stop_this_cpu, NULL, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700658}
Nicholas Piggin60297552018-04-27 11:51:59 +1000659#endif /* CONFIG_NMI_IPI */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700660
Christophe Leroy7c19c2e2019-01-31 10:09:02 +0000661struct task_struct *current_set[NR_CPUS];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700662
Greg Kroah-Hartmancad5cef2012-12-21 14:04:10 -0800663static void smp_store_cpu_info(int id)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700664{
Tejun Heo6b7487f2009-10-29 22:34:14 +0900665 per_cpu(cpu_pvr, id) = mfspr(SPRN_PVR);
Becky Bruce3160b092011-06-28 14:54:47 -0500666#ifdef CONFIG_PPC_FSL_BOOK3E
667 per_cpu(next_tlbcam_idx, id)
668 = (mfspr(SPRN_TLB1CFG) & TLBnCFG_N_ENTRY) - 1;
669#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700670}
671
Oliver O'Hallorandf52f672017-06-29 17:12:54 +1000672/*
673 * Relationships between CPUs are maintained in a set of per-cpu cpumasks so
674 * rather than just passing around the cpumask we pass around a function that
675 * returns the that cpumask for the given CPU.
676 */
677static void set_cpus_related(int i, int j, struct cpumask *(*get_cpumask)(int))
678{
679 cpumask_set_cpu(i, get_cpumask(j));
680 cpumask_set_cpu(j, get_cpumask(i));
681}
682
683#ifdef CONFIG_HOTPLUG_CPU
684static void set_cpus_unrelated(int i, int j,
685 struct cpumask *(*get_cpumask)(int))
686{
687 cpumask_clear_cpu(i, get_cpumask(j));
688 cpumask_clear_cpu(j, get_cpumask(i));
689}
690#endif
691
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530692/*
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +0530693 * Extends set_cpus_related. Instead of setting one CPU at a time in
694 * dstmask, set srcmask at oneshot. dstmask should be super set of srcmask.
695 */
696static void or_cpumasks_related(int i, int j, struct cpumask *(*srcmask)(int),
697 struct cpumask *(*dstmask)(int))
698{
699 struct cpumask *mask;
700 int k;
701
702 mask = srcmask(j);
703 for_each_cpu(k, srcmask(i))
704 cpumask_or(dstmask(k), dstmask(k), mask);
705
706 if (i == j)
707 return;
708
709 mask = srcmask(i);
710 for_each_cpu(k, srcmask(j))
711 cpumask_or(dstmask(k), dstmask(k), mask);
712}
713
714/*
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530715 * parse_thread_groups: Parses the "ibm,thread-groups" device tree
716 * property for the CPU device node @dn and stores
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530717 * the parsed output in the thread_groups_list
718 * structure @tglp.
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530719 *
720 * @dn: The device node of the CPU device.
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530721 * @tglp: Pointer to a thread group list structure into which the parsed
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530722 * output of "ibm,thread-groups" is stored.
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530723 *
724 * ibm,thread-groups[0..N-1] array defines which group of threads in
725 * the CPU-device node can be grouped together based on the property.
726 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530727 * This array can represent thread groupings for multiple properties.
728 *
729 * ibm,thread-groups[i + 0] tells us the property based on which the
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530730 * threads are being grouped together. If this value is 1, it implies
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530731 * that the threads in the same group share L1, translation cache. If
732 * the value is 2, it implies that the threads in the same group share
733 * the same L2 cache.
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530734 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530735 * ibm,thread-groups[i+1] tells us how many such thread groups exist for the
736 * property ibm,thread-groups[i]
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530737 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530738 * ibm,thread-groups[i+2] tells us the number of threads in each such
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530739 * group.
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530740 * Suppose k = (ibm,thread-groups[i+1] * ibm,thread-groups[i+2]), then,
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530741 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530742 * ibm,thread-groups[i+3..i+k+2] (is the list of threads identified by
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530743 * "ibm,ppc-interrupt-server#s" arranged as per their membership in
744 * the grouping.
745 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530746 * Example:
747 * If "ibm,thread-groups" = [1,2,4,8,10,12,14,9,11,13,15,2,2,4,8,10,12,14,9,11,13,15]
748 * This can be decomposed up into two consecutive arrays:
749 * a) [1,2,4,8,10,12,14,9,11,13,15]
750 * b) [2,2,4,8,10,12,14,9,11,13,15]
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530751 *
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530752 * where in,
753 *
754 * a) provides information of Property "1" being shared by "2" groups,
755 * each with "4" threads each. The "ibm,ppc-interrupt-server#s" of
756 * the first group is {8,10,12,14} and the
757 * "ibm,ppc-interrupt-server#s" of the second group is
758 * {9,11,13,15}. Property "1" is indicative of the thread in the
759 * group sharing L1 cache, translation cache and Instruction Data
760 * flow.
761 *
762 * b) provides information of Property "2" being shared by "2" groups,
763 * each group with "4" threads. The "ibm,ppc-interrupt-server#s" of
764 * the first group is {8,10,12,14} and the
765 * "ibm,ppc-interrupt-server#s" of the second group is
766 * {9,11,13,15}. Property "2" indicates that the threads in each
767 * group share the L2-cache.
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530768 *
769 * Returns 0 on success, -EINVAL if the property does not exist,
770 * -ENODATA if property does not have a value, and -EOVERFLOW if the
771 * property data isn't large enough.
772 */
773static int parse_thread_groups(struct device_node *dn,
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530774 struct thread_groups_list *tglp)
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530775{
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530776 unsigned int property_idx = 0;
777 u32 *thread_group_array;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530778 size_t total_threads;
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530779 int ret = 0, count;
780 u32 *thread_list;
781 int i = 0;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530782
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530783 count = of_property_count_u32_elems(dn, "ibm,thread-groups");
784 thread_group_array = kcalloc(count, sizeof(u32), GFP_KERNEL);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530785 ret = of_property_read_u32_array(dn, "ibm,thread-groups",
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530786 thread_group_array, count);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530787 if (ret)
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530788 goto out_free;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530789
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530790 while (i < count && property_idx < MAX_THREAD_GROUP_PROPERTIES) {
791 int j;
792 struct thread_groups *tg = &tglp->property_tgs[property_idx++];
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530793
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530794 tg->property = thread_group_array[i];
795 tg->nr_groups = thread_group_array[i + 1];
796 tg->threads_per_group = thread_group_array[i + 2];
797 total_threads = tg->nr_groups * tg->threads_per_group;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530798
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530799 thread_list = &thread_group_array[i + 3];
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530800
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530801 for (j = 0; j < total_threads; j++)
802 tg->thread_list[j] = thread_list[j];
803 i = i + 3 + total_threads;
804 }
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530805
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530806 tglp->nr_properties = property_idx;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530807
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530808out_free:
809 kfree(thread_group_array);
810 return ret;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530811}
812
813/*
814 * get_cpu_thread_group_start : Searches the thread group in tg->thread_list
815 * that @cpu belongs to.
816 *
817 * @cpu : The logical CPU whose thread group is being searched.
818 * @tg : The thread-group structure of the CPU node which @cpu belongs
819 * to.
820 *
821 * Returns the index to tg->thread_list that points to the the start
822 * of the thread_group that @cpu belongs to.
823 *
824 * Returns -1 if cpu doesn't belong to any of the groups pointed to by
825 * tg->thread_list.
826 */
827static int get_cpu_thread_group_start(int cpu, struct thread_groups *tg)
828{
829 int hw_cpu_id = get_hard_smp_processor_id(cpu);
830 int i, j;
831
832 for (i = 0; i < tg->nr_groups; i++) {
833 int group_start = i * tg->threads_per_group;
834
835 for (j = 0; j < tg->threads_per_group; j++) {
836 int idx = group_start + j;
837
838 if (tg->thread_list[idx] == hw_cpu_id)
839 return group_start;
840 }
841 }
842
843 return -1;
844}
845
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530846static struct thread_groups *__init get_thread_groups(int cpu,
847 int group_property,
848 int *err)
849{
850 struct device_node *dn = of_get_cpu_node(cpu, NULL);
851 struct thread_groups_list *cpu_tgl = &tgl[cpu];
852 struct thread_groups *tg = NULL;
853 int i;
854 *err = 0;
855
856 if (!dn) {
857 *err = -ENODATA;
858 return NULL;
859 }
860
861 if (!cpu_tgl->nr_properties) {
862 *err = parse_thread_groups(dn, cpu_tgl);
863 if (*err)
864 goto out;
865 }
866
867 for (i = 0; i < cpu_tgl->nr_properties; i++) {
868 if (cpu_tgl->property_tgs[i].property == group_property) {
869 tg = &cpu_tgl->property_tgs[i];
870 break;
871 }
872 }
873
874 if (!tg)
875 *err = -EINVAL;
876out:
877 of_node_put(dn);
878 return tg;
879}
880
Gautham R. Shenoyfbd2b672020-12-10 16:08:57 +0530881static int __init init_thread_group_cache_map(int cpu, int cache_property)
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530882
883{
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530884 int first_thread = cpu_first_thread_sibling(cpu);
885 int i, cpu_group_start = -1, err = 0;
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530886 struct thread_groups *tg = NULL;
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530887 cpumask_var_t *mask = NULL;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530888
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530889 if (cache_property != THREAD_GROUP_SHARE_L1 &&
890 cache_property != THREAD_GROUP_SHARE_L2)
Gautham R. Shenoyfbd2b672020-12-10 16:08:57 +0530891 return -EINVAL;
892
893 tg = get_thread_groups(cpu, cache_property, &err);
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530894 if (!tg)
895 return err;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530896
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530897 cpu_group_start = get_cpu_thread_group_start(cpu, tg);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530898
899 if (unlikely(cpu_group_start == -1)) {
900 WARN_ON_ONCE(1);
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530901 return -ENODATA;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530902 }
903
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +0530904 if (cache_property == THREAD_GROUP_SHARE_L1)
905 mask = &per_cpu(thread_group_l1_cache_map, cpu);
906 else if (cache_property == THREAD_GROUP_SHARE_L2)
907 mask = &per_cpu(thread_group_l2_cache_map, cpu);
908
Gautham R. Shenoyfbd2b672020-12-10 16:08:57 +0530909 zalloc_cpumask_var_node(mask, GFP_KERNEL, cpu_to_node(cpu));
Srikar Dronamraju6e086302020-08-10 12:48:32 +0530910
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530911 for (i = first_thread; i < first_thread + threads_per_core; i++) {
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530912 int i_group_start = get_cpu_thread_group_start(i, tg);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530913
914 if (unlikely(i_group_start == -1)) {
915 WARN_ON_ONCE(1);
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530916 return -ENODATA;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530917 }
918
919 if (i_group_start == cpu_group_start)
Gautham R. Shenoyfbd2b672020-12-10 16:08:57 +0530920 cpumask_set_cpu(i, *mask);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530921 }
922
Gautham R. Shenoy790a1662020-12-10 16:08:55 +0530923 return 0;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530924}
925
Srikar Dronamraju5e93f162020-08-10 12:48:27 +0530926static bool shared_caches;
927
928#ifdef CONFIG_SCHED_SMT
929/* cpumask of CPUs with asymmetric SMT dependency */
930static int powerpc_smt_flags(void)
931{
932 int flags = SD_SHARE_CPUCAPACITY | SD_SHARE_PKG_RESOURCES;
933
934 if (cpu_has_feature(CPU_FTR_ASYM_SMT)) {
935 printk_once(KERN_INFO "Enabling Asymmetric SMT scheduling\n");
936 flags |= SD_ASYM_PACKING;
937 }
938 return flags;
939}
940#endif
941
942/*
943 * P9 has a slightly odd architecture where pairs of cores share an L2 cache.
944 * This topology makes it *much* cheaper to migrate tasks between adjacent cores
945 * since the migrated task remains cache hot. We want to take advantage of this
946 * at the scheduler level so an extra topology level is required.
947 */
948static int powerpc_shared_cache_flags(void)
949{
950 return SD_SHARE_PKG_RESOURCES;
951}
952
953/*
954 * We can't just pass cpu_l2_cache_mask() directly because
955 * returns a non-const pointer and the compiler barfs on that.
956 */
957static const struct cpumask *shared_cache_mask(int cpu)
958{
Srikar Dronamrajucaa8e292020-08-10 12:48:30 +0530959 return per_cpu(cpu_l2_cache_map, cpu);
Srikar Dronamraju5e93f162020-08-10 12:48:27 +0530960}
961
962#ifdef CONFIG_SCHED_SMT
963static const struct cpumask *smallcore_smt_mask(int cpu)
964{
965 return cpu_smallcore_mask(cpu);
966}
967#endif
968
Srikar Dronamraju72730bf2020-08-10 12:48:33 +0530969static struct cpumask *cpu_coregroup_mask(int cpu)
970{
971 return per_cpu(cpu_coregroup_map, cpu);
972}
973
974static bool has_coregroup_support(void)
975{
976 return coregroup_enabled;
977}
978
979static const struct cpumask *cpu_mc_mask(int cpu)
980{
981 return cpu_coregroup_mask(cpu);
982}
983
Srikar Dronamraju5e93f162020-08-10 12:48:27 +0530984static struct sched_domain_topology_level powerpc_topology[] = {
985#ifdef CONFIG_SCHED_SMT
986 { cpu_smt_mask, powerpc_smt_flags, SD_INIT_NAME(SMT) },
987#endif
988 { shared_cache_mask, powerpc_shared_cache_flags, SD_INIT_NAME(CACHE) },
Srikar Dronamraju72730bf2020-08-10 12:48:33 +0530989 { cpu_mc_mask, SD_INIT_NAME(MC) },
Srikar Dronamraju5e93f162020-08-10 12:48:27 +0530990 { cpu_cpu_mask, SD_INIT_NAME(DIE) },
991 { NULL, },
992};
993
Cédric Le Goater9014eab2020-12-21 08:41:54 +0100994static int __init init_big_cores(void)
Gautham R. Shenoy425752c2018-10-11 11:03:01 +0530995{
996 int cpu;
997
998 for_each_possible_cpu(cpu) {
Gautham R. Shenoyfbd2b672020-12-10 16:08:57 +0530999 int err = init_thread_group_cache_map(cpu, THREAD_GROUP_SHARE_L1);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301000
1001 if (err)
1002 return err;
1003
1004 zalloc_cpumask_var_node(&per_cpu(cpu_smallcore_map, cpu),
1005 GFP_KERNEL,
1006 cpu_to_node(cpu));
1007 }
1008
1009 has_big_cores = true;
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +05301010
1011 for_each_possible_cpu(cpu) {
1012 int err = init_thread_group_cache_map(cpu, THREAD_GROUP_SHARE_L2);
1013
1014 if (err)
1015 return err;
1016 }
1017
1018 thread_group_shares_l2 = true;
1019 pr_debug("L2 cache only shared by the threads in the small core\n");
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301020 return 0;
1021}
1022
Linus Torvalds1da177e2005-04-16 15:20:36 -07001023void __init smp_prepare_cpus(unsigned int max_cpus)
1024{
1025 unsigned int cpu;
1026
1027 DBG("smp_prepare_cpus\n");
1028
1029 /*
1030 * setup_cpu may need to be called on the boot cpu. We havent
1031 * spun any cpus up but lets be paranoid.
1032 */
1033 BUG_ON(boot_cpuid != smp_processor_id());
1034
1035 /* Fixup boot cpu */
1036 smp_store_cpu_info(boot_cpuid);
1037 cpu_callin_map[boot_cpuid] = 1;
1038
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +00001039 for_each_possible_cpu(cpu) {
1040 zalloc_cpumask_var_node(&per_cpu(cpu_sibling_map, cpu),
1041 GFP_KERNEL, cpu_to_node(cpu));
Oliver O'Halloran2a636a52017-06-29 17:12:55 +10001042 zalloc_cpumask_var_node(&per_cpu(cpu_l2_cache_map, cpu),
1043 GFP_KERNEL, cpu_to_node(cpu));
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +00001044 zalloc_cpumask_var_node(&per_cpu(cpu_core_map, cpu),
1045 GFP_KERNEL, cpu_to_node(cpu));
Srikar Dronamraju72730bf2020-08-10 12:48:33 +05301046 if (has_coregroup_support())
1047 zalloc_cpumask_var_node(&per_cpu(cpu_coregroup_map, cpu),
1048 GFP_KERNEL, cpu_to_node(cpu));
1049
Srikar Dronamrajud0fd24b2020-08-10 12:48:25 +05301050#ifdef CONFIG_NEED_MULTIPLE_NODES
Nishanth Aravamudan2fabf082014-07-17 16:15:12 -07001051 /*
1052 * numa_node_id() works after this.
1053 */
Li Zhongbc3c4322014-08-27 17:34:00 +08001054 if (cpu_present(cpu)) {
1055 set_cpu_numa_node(cpu, numa_cpu_lookup_table[cpu]);
1056 set_cpu_numa_mem(cpu,
1057 local_memory_node(numa_cpu_lookup_table[cpu]));
1058 }
Srikar Dronamrajud0fd24b2020-08-10 12:48:25 +05301059#endif
Srikar Dronamraju4ca234a2020-09-21 15:26:44 +05301060 /*
1061 * cpu_core_map is now more updated and exists only since
1062 * its been exported for long. It only will have a snapshot
1063 * of cpu_cpu_mask.
1064 */
1065 cpumask_copy(per_cpu(cpu_core_map, cpu), cpu_cpu_mask(cpu));
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +00001066 }
1067
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001068 /* Init the cpumasks so the boot CPU is related to itself */
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +00001069 cpumask_set_cpu(boot_cpuid, cpu_sibling_mask(boot_cpuid));
Oliver O'Halloran2a636a52017-06-29 17:12:55 +10001070 cpumask_set_cpu(boot_cpuid, cpu_l2_cache_mask(boot_cpuid));
Anton Blanchardcc1ba8e2010-04-26 15:32:41 +00001071
Srikar Dronamraju72730bf2020-08-10 12:48:33 +05301072 if (has_coregroup_support())
1073 cpumask_set_cpu(boot_cpuid, cpu_coregroup_mask(boot_cpuid));
1074
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301075 init_big_cores();
1076 if (has_big_cores) {
1077 cpumask_set_cpu(boot_cpuid,
1078 cpu_smallcore_mask(boot_cpuid));
1079 }
1080
Chen Gangdfee0ef2013-07-22 14:40:20 +08001081 if (smp_ops && smp_ops->probe)
1082 smp_ops->probe();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001083}
1084
Greg Kroah-Hartmancad5cef2012-12-21 14:04:10 -08001085void smp_prepare_boot_cpu(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001086{
1087 BUG_ON(smp_processor_id() != boot_cpuid);
Paul Mackerras5ad57072005-11-05 10:33:55 +11001088#ifdef CONFIG_PPC64
Nicholas Piggind2e60072018-02-14 01:08:12 +10001089 paca_ptrs[boot_cpuid]->__current = current;
Paul Mackerras5ad57072005-11-05 10:33:55 +11001090#endif
Nishanth Aravamudan8c272262014-05-19 11:14:23 -07001091 set_numa_node(numa_cpu_lookup_table[boot_cpuid]);
Christophe Leroy7c19c2e2019-01-31 10:09:02 +00001092 current_set[boot_cpuid] = current;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001093}
1094
1095#ifdef CONFIG_HOTPLUG_CPU
Linus Torvalds1da177e2005-04-16 15:20:36 -07001096
1097int generic_cpu_disable(void)
1098{
1099 unsigned int cpu = smp_processor_id();
1100
1101 if (cpu == boot_cpuid)
1102 return -EBUSY;
1103
Rusty Russellea0f1ca2009-09-24 09:34:48 -06001104 set_cpu_online(cpu, false);
Paul Mackerras799d6042005-11-10 13:37:51 +11001105#ifdef CONFIG_PPC64
Benjamin Herrenschmidta7f290d2005-11-11 21:15:21 +11001106 vdso_data->processorCount--;
Paul Mackerras094fe2e2005-11-10 14:26:12 +11001107#endif
Benjamin Herrenschmidta978e132017-04-05 17:54:49 +10001108 /* Update affinity of all IRQs previously aimed at this CPU */
1109 irq_migrate_all_off_this_cpu();
1110
Michael Ellerman687b8f22017-02-15 20:49:54 +11001111 /*
1112 * Depending on the details of the interrupt controller, it's possible
1113 * that one of the interrupts we just migrated away from this CPU is
1114 * actually already pending on this CPU. If we leave it in that state
1115 * the interrupt will never be EOI'ed, and will never fire again. So
1116 * temporarily enable interrupts here, to allow any pending interrupt to
1117 * be received (and EOI'ed), before we take this CPU offline.
1118 */
Benjamin Herrenschmidta978e132017-04-05 17:54:49 +10001119 local_irq_enable();
1120 mdelay(1);
1121 local_irq_disable();
1122
Linus Torvalds1da177e2005-04-16 15:20:36 -07001123 return 0;
1124}
1125
Linus Torvalds1da177e2005-04-16 15:20:36 -07001126void generic_cpu_die(unsigned int cpu)
1127{
1128 int i;
1129
1130 for (i = 0; i < 100; i++) {
Anton Blanchard0d8d4d42005-05-01 08:58:47 -07001131 smp_rmb();
chenhui zhao2f4f1f82015-11-20 17:14:01 +08001132 if (is_cpu_dead(cpu))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001133 return;
1134 msleep(100);
1135 }
1136 printk(KERN_ERR "CPU%d didn't die...\n", cpu);
1137}
1138
Benjamin Herrenschmidt105765f2011-04-01 09:23:37 +11001139void generic_set_cpu_dead(unsigned int cpu)
1140{
1141 per_cpu(cpu_state, cpu) = CPU_DEAD;
1142}
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +00001143
Zhao Chenhuiae5cab42012-07-20 20:42:34 +08001144/*
1145 * The cpu_state should be set to CPU_UP_PREPARE in kick_cpu(), otherwise
1146 * the cpu_state is always CPU_DEAD after calling generic_set_cpu_dead(),
1147 * which makes the delay in generic_cpu_die() not happen.
1148 */
1149void generic_set_cpu_up(unsigned int cpu)
1150{
1151 per_cpu(cpu_state, cpu) = CPU_UP_PREPARE;
1152}
1153
Benjamin Herrenschmidtfb82b832011-09-19 17:44:49 +00001154int generic_check_cpu_restart(unsigned int cpu)
1155{
1156 return per_cpu(cpu_state, cpu) == CPU_UP_PREPARE;
1157}
Paul Mackerras512691d2012-10-15 01:15:41 +00001158
chenhui zhao2f4f1f82015-11-20 17:14:01 +08001159int is_cpu_dead(unsigned int cpu)
1160{
1161 return per_cpu(cpu_state, cpu) == CPU_DEAD;
1162}
1163
Michael Ellerman441c19c2014-05-23 18:15:25 +10001164static bool secondaries_inhibited(void)
Paul Mackerras512691d2012-10-15 01:15:41 +00001165{
Michael Ellerman441c19c2014-05-23 18:15:25 +10001166 return kvm_hv_mode_active();
Paul Mackerras512691d2012-10-15 01:15:41 +00001167}
1168
1169#else /* HOTPLUG_CPU */
1170
1171#define secondaries_inhibited() 0
1172
Linus Torvalds1da177e2005-04-16 15:20:36 -07001173#endif
1174
Thomas Gleixner17e32ea2012-04-20 13:05:48 +00001175static void cpu_idle_thread_init(unsigned int cpu, struct task_struct *idle)
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +11001176{
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +11001177#ifdef CONFIG_PPC64
Nicholas Piggind2e60072018-02-14 01:08:12 +10001178 paca_ptrs[cpu]->__current = idle;
Christophe Leroy678c6682019-01-17 23:26:56 +11001179 paca_ptrs[cpu]->kstack = (unsigned long)task_stack_page(idle) +
1180 THREAD_SIZE - STACK_FRAME_OVERHEAD;
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +11001181#endif
Christophe Leroyed1cd6d2019-01-31 10:08:58 +00001182 idle->cpu = cpu;
Christophe Leroy7c19c2e2019-01-31 10:09:02 +00001183 secondary_current = current_set[cpu] = idle;
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +11001184}
1185
Paul Gortmaker061d19f2013-06-24 15:30:09 -04001186int __cpu_up(unsigned int cpu, struct task_struct *tidle)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001187{
Benjamin Herrenschmidtc56e5852011-03-08 14:40:04 +11001188 int rc, c;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001189
Paul Mackerras512691d2012-10-15 01:15:41 +00001190 /*
1191 * Don't allow secondary threads to come online if inhibited
1192 */
1193 if (threads_per_core > 1 && secondaries_inhibited() &&
Michael Ellerman6f5e40a2014-05-23 18:15:28 +10001194 cpu_thread_in_subcore(cpu))
Paul Mackerras512691d2012-10-15 01:15:41 +00001195 return -EBUSY;
1196
Benjamin Herrenschmidt8cffc6a2006-07-04 14:09:36 +10001197 if (smp_ops == NULL ||
1198 (smp_ops->cpu_bootable && !smp_ops->cpu_bootable(cpu)))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001199 return -EINVAL;
1200
Thomas Gleixner17e32ea2012-04-20 13:05:48 +00001201 cpu_idle_thread_init(cpu, tidle);
kerstin jonssonc560bbc2011-05-17 23:57:11 +00001202
Benjamin Herrenschmidt14d4ae52017-04-05 17:54:48 +10001203 /*
1204 * The platform might need to allocate resources prior to bringing
1205 * up the CPU
1206 */
1207 if (smp_ops->prepare_cpu) {
1208 rc = smp_ops->prepare_cpu(cpu);
1209 if (rc)
1210 return rc;
1211 }
1212
Linus Torvalds1da177e2005-04-16 15:20:36 -07001213 /* Make sure callin-map entry is 0 (can be leftover a CPU
1214 * hotplug
1215 */
1216 cpu_callin_map[cpu] = 0;
1217
1218 /* The information for processor bringup must
1219 * be written out to main store before we release
1220 * the processor.
1221 */
Anton Blanchard0d8d4d42005-05-01 08:58:47 -07001222 smp_mb();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001223
1224 /* wake up cpus */
1225 DBG("smp: kicking cpu %d\n", cpu);
Michael Ellermande300972011-04-11 21:46:19 +00001226 rc = smp_ops->kick_cpu(cpu);
1227 if (rc) {
1228 pr_err("smp: failed starting cpu %d (rc %d)\n", cpu, rc);
1229 return rc;
1230 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001231
1232 /*
1233 * wait to see if the cpu made a callin (is actually up).
1234 * use this value that I found through experimentation.
1235 * -- Cort
1236 */
1237 if (system_state < SYSTEM_RUNNING)
Jon Loeligeree0339f2006-06-17 17:52:44 -05001238 for (c = 50000; c && !cpu_callin_map[cpu]; c--)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001239 udelay(100);
1240#ifdef CONFIG_HOTPLUG_CPU
1241 else
1242 /*
1243 * CPUs can take much longer to come up in the
1244 * hotplug case. Wait five seconds.
1245 */
Gautham R Shenoy67764262009-06-23 23:26:37 +00001246 for (c = 5000; c && !cpu_callin_map[cpu]; c--)
1247 msleep(1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001248#endif
1249
1250 if (!cpu_callin_map[cpu]) {
Signed-off-by: Darren Hart6685a472010-08-04 18:28:34 +00001251 printk(KERN_ERR "Processor %u is stuck.\n", cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001252 return -ENOENT;
1253 }
1254
Signed-off-by: Darren Hart6685a472010-08-04 18:28:34 +00001255 DBG("Processor %u found.\n", cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001256
1257 if (smp_ops->give_timebase)
1258 smp_ops->give_timebase();
1259
Michael Ellerman875ebe942015-02-24 17:58:02 +11001260 /* Wait until cpu puts itself in the online & active maps */
Nicholas Piggin4e287e62017-06-06 23:08:32 +10001261 spin_until_cond(cpu_online(cpu));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001262
1263 return 0;
1264}
1265
Nathan Lynche9efed32008-07-27 15:24:54 +10001266/* Return the value of the reg property corresponding to the given
1267 * logical cpu.
1268 */
1269int cpu_to_core_id(int cpu)
1270{
1271 struct device_node *np;
Anton Blanchardf8a18832013-12-12 15:59:36 +11001272 const __be32 *reg;
Nathan Lynche9efed32008-07-27 15:24:54 +10001273 int id = -1;
1274
1275 np = of_get_cpu_node(cpu, NULL);
1276 if (!np)
1277 goto out;
1278
1279 reg = of_get_property(np, "reg", NULL);
1280 if (!reg)
1281 goto out;
1282
Anton Blanchardf8a18832013-12-12 15:59:36 +11001283 id = be32_to_cpup(reg);
Nathan Lynche9efed32008-07-27 15:24:54 +10001284out:
1285 of_node_put(np);
1286 return id;
1287}
Mauricio Faria de Oliveiraf8ab4812016-06-02 08:45:14 -03001288EXPORT_SYMBOL_GPL(cpu_to_core_id);
Nathan Lynche9efed32008-07-27 15:24:54 +10001289
Vaidyanathan Srinivasan99d86702010-10-06 08:36:59 +00001290/* Helper routines for cpu to core mapping */
1291int cpu_core_index_of_thread(int cpu)
1292{
1293 return cpu >> threads_shift;
1294}
1295EXPORT_SYMBOL_GPL(cpu_core_index_of_thread);
1296
1297int cpu_first_thread_of_core(int core)
1298{
1299 return core << threads_shift;
1300}
1301EXPORT_SYMBOL_GPL(cpu_first_thread_of_core);
1302
KOSAKI Motohiro104699c2011-04-28 05:07:23 +00001303/* Must be called when no change can occur to cpu_present_mask,
Nathan Lynch440a0852008-07-27 15:24:53 +10001304 * i.e. during cpu online or offline.
1305 */
1306static struct device_node *cpu_to_l2cache(int cpu)
1307{
1308 struct device_node *np;
Nathan Lynchb2ea25b2008-12-10 20:16:07 +00001309 struct device_node *cache;
Nathan Lynch440a0852008-07-27 15:24:53 +10001310
1311 if (!cpu_present(cpu))
1312 return NULL;
1313
1314 np = of_get_cpu_node(cpu, NULL);
1315 if (np == NULL)
1316 return NULL;
1317
Nathan Lynchb2ea25b2008-12-10 20:16:07 +00001318 cache = of_find_next_cache_node(np);
1319
Nathan Lynch440a0852008-07-27 15:24:53 +10001320 of_node_put(np);
1321
Nathan Lynchb2ea25b2008-12-10 20:16:07 +00001322 return cache;
Nathan Lynch440a0852008-07-27 15:24:53 +10001323}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001324
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301325static bool update_mask_by_l2(int cpu, cpumask_var_t *mask)
Paul Mackerrasa8a53562013-08-12 16:28:47 +10001326{
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301327 struct cpumask *(*submask_fn)(int) = cpu_sibling_mask;
Paul Mackerras256f2d42013-08-12 16:29:33 +10001328 struct device_node *l2_cache, *np;
Oliver O'Hallorane3d8b672017-06-29 17:12:53 +10001329 int i;
Paul Mackerras256f2d42013-08-12 16:29:33 +10001330
Srikar Dronamraju966730a2020-10-19 09:57:15 +05301331 if (has_big_cores)
1332 submask_fn = cpu_smallcore_mask;
1333
Gautham R. Shenoy9538abe2020-12-10 16:08:58 +05301334 /*
1335 * If the threads in a thread-group share L2 cache, then the
1336 * L2-mask can be obtained from thread_group_l2_cache_map.
1337 */
1338 if (thread_group_shares_l2) {
1339 cpumask_set_cpu(cpu, cpu_l2_cache_mask(cpu));
1340
1341 for_each_cpu(i, per_cpu(thread_group_l2_cache_map, cpu)) {
1342 if (cpu_online(i))
1343 set_cpus_related(i, cpu, cpu_l2_cache_mask);
1344 }
1345
1346 /* Verify that L1-cache siblings are a subset of L2 cache-siblings */
1347 if (!cpumask_equal(submask_fn(cpu), cpu_l2_cache_mask(cpu)) &&
1348 !cpumask_subset(submask_fn(cpu), cpu_l2_cache_mask(cpu))) {
1349 pr_warn_once("CPU %d : Inconsistent L1 and L2 cache siblings\n",
1350 cpu);
1351 }
1352
1353 return true;
1354 }
1355
Paul Mackerrasa8a53562013-08-12 16:28:47 +10001356 l2_cache = cpu_to_l2cache(cpu);
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301357 if (!l2_cache || !*mask) {
1358 /* Assume only core siblings share cache with this CPU */
Srikar Dronamraju966730a2020-10-19 09:57:15 +05301359 for_each_cpu(i, submask_fn(cpu))
Srikar Dronamrajuf6606cf2020-09-13 22:40:38 +05301360 set_cpus_related(cpu, i, cpu_l2_cache_mask);
1361
1362 return false;
1363 }
1364
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301365 cpumask_and(*mask, cpu_online_mask, cpu_cpu_mask(cpu));
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301366
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301367 /* Update l2-cache mask with all the CPUs that are part of submask */
1368 or_cpumasks_related(cpu, cpu, submask_fn, cpu_l2_cache_mask);
1369
1370 /* Skip all CPUs already part of current CPU l2-cache mask */
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301371 cpumask_andnot(*mask, *mask, cpu_l2_cache_mask(cpu));
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301372
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301373 for_each_cpu(i, *mask) {
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001374 /*
1375 * when updating the marks the current CPU has not been marked
1376 * online, but we need to update the cache masks
1377 */
Paul Mackerras256f2d42013-08-12 16:29:33 +10001378 np = cpu_to_l2cache(i);
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001379
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301380 /* Skip all CPUs already part of current CPU l2-cache */
1381 if (np == l2_cache) {
1382 or_cpumasks_related(cpu, i, submask_fn, cpu_l2_cache_mask);
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301383 cpumask_andnot(*mask, *mask, submask_fn(i));
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301384 } else {
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301385 cpumask_andnot(*mask, *mask, cpu_l2_cache_mask(i));
Srikar Dronamraju3ab33d62020-09-21 15:26:51 +05301386 }
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001387
Paul Mackerrasa8a53562013-08-12 16:28:47 +10001388 of_node_put(np);
1389 }
1390 of_node_put(l2_cache);
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001391
1392 return true;
1393}
1394
1395#ifdef CONFIG_HOTPLUG_CPU
1396static void remove_cpu_from_masks(int cpu)
1397{
Srikar Dronamraju70edd4a2020-09-21 15:26:46 +05301398 struct cpumask *(*mask_fn)(int) = cpu_sibling_mask;
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001399 int i;
1400
Srikar Dronamraju70edd4a2020-09-21 15:26:46 +05301401 if (shared_caches)
1402 mask_fn = cpu_l2_cache_mask;
1403
1404 for_each_cpu(i, mask_fn(cpu)) {
Oliver O'Halloran2a636a52017-06-29 17:12:55 +10001405 set_cpus_unrelated(cpu, i, cpu_l2_cache_mask);
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001406 set_cpus_unrelated(cpu, i, cpu_sibling_mask);
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301407 if (has_big_cores)
1408 set_cpus_unrelated(cpu, i, cpu_smallcore_mask);
Srikar Dronamraju70edd4a2020-09-21 15:26:46 +05301409 }
1410
1411 if (has_coregroup_support()) {
1412 for_each_cpu(i, cpu_coregroup_mask(cpu))
Srikar Dronamraju72730bf2020-08-10 12:48:33 +05301413 set_cpus_unrelated(cpu, i, cpu_coregroup_mask);
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001414 }
1415}
1416#endif
1417
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301418static inline void add_cpu_to_smallcore_masks(int cpu)
1419{
Srikar Dronamraju661e3d42020-09-21 15:26:49 +05301420 int i;
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301421
1422 if (!has_big_cores)
1423 return;
1424
1425 cpumask_set_cpu(cpu, cpu_smallcore_mask(cpu));
1426
Gautham R. Shenoy1fdc1d62020-12-10 16:08:56 +05301427 for_each_cpu(i, per_cpu(thread_group_l1_cache_map, cpu)) {
Srikar Dronamraju661e3d42020-09-21 15:26:49 +05301428 if (cpu_online(i))
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301429 set_cpus_related(i, cpu, cpu_smallcore_mask);
1430 }
1431}
1432
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301433static void update_coregroup_mask(int cpu, cpumask_var_t *mask)
Srikar Dronamrajub8a97cb2020-09-21 15:26:52 +05301434{
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301435 struct cpumask *(*submask_fn)(int) = cpu_sibling_mask;
Srikar Dronamrajub8a97cb2020-09-21 15:26:52 +05301436 int coregroup_id = cpu_to_coregroup_id(cpu);
1437 int i;
1438
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301439 if (shared_caches)
1440 submask_fn = cpu_l2_cache_mask;
1441
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301442 if (!*mask) {
1443 /* Assume only siblings are part of this CPU's coregroup */
1444 for_each_cpu(i, submask_fn(cpu))
1445 set_cpus_related(cpu, i, cpu_coregroup_mask);
1446
1447 return;
1448 }
1449
1450 cpumask_and(*mask, cpu_online_mask, cpu_cpu_mask(cpu));
1451
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301452 /* Update coregroup mask with all the CPUs that are part of submask */
1453 or_cpumasks_related(cpu, cpu, submask_fn, cpu_coregroup_mask);
1454
1455 /* Skip all CPUs already part of coregroup mask */
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301456 cpumask_andnot(*mask, *mask, cpu_coregroup_mask(cpu));
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301457
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301458 for_each_cpu(i, *mask) {
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301459 /* Skip all CPUs not part of this coregroup */
1460 if (coregroup_id == cpu_to_coregroup_id(i)) {
1461 or_cpumasks_related(cpu, i, submask_fn, cpu_coregroup_mask);
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301462 cpumask_andnot(*mask, *mask, submask_fn(i));
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301463 } else {
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301464 cpumask_andnot(*mask, *mask, cpu_coregroup_mask(i));
Srikar Dronamraju70a94082020-09-21 15:26:53 +05301465 }
Srikar Dronamrajub8a97cb2020-09-21 15:26:52 +05301466 }
1467}
1468
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001469static void add_cpu_to_masks(int cpu)
1470{
1471 int first_thread = cpu_first_thread_sibling(cpu);
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301472 cpumask_var_t mask;
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001473 int i;
1474
1475 /*
1476 * This CPU will not be in the online mask yet so we need to manually
1477 * add it to it's own thread sibling mask.
1478 */
1479 cpumask_set_cpu(cpu, cpu_sibling_mask(cpu));
1480
1481 for (i = first_thread; i < first_thread + threads_per_core; i++)
1482 if (cpu_online(i))
1483 set_cpus_related(i, cpu, cpu_sibling_mask);
1484
Gautham R. Shenoy425752c2018-10-11 11:03:01 +05301485 add_cpu_to_smallcore_masks(cpu);
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301486
1487 /* In CPU-hotplug path, hence use GFP_ATOMIC */
1488 alloc_cpumask_var_node(&mask, GFP_ATOMIC, cpu_to_node(cpu));
1489 update_mask_by_l2(cpu, &mask);
Oliver O'Halloran2a636a52017-06-29 17:12:55 +10001490
Srikar Dronamrajub8a97cb2020-09-21 15:26:52 +05301491 if (has_coregroup_support())
Srikar Dronamraju84dbf662020-10-19 09:57:16 +05301492 update_coregroup_mask(cpu, &mask);
1493
1494 free_cpumask_var(mask);
Paul Mackerrasa8a53562013-08-12 16:28:47 +10001495}
1496
Linus Torvalds1da177e2005-04-16 15:20:36 -07001497/* Activate a secondary processor. */
Paul Gortmaker061d19f2013-06-24 15:30:09 -04001498void start_secondary(void *unused)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001499{
Qian Cai99f070b2020-10-28 14:23:34 -04001500 unsigned int cpu = raw_smp_processor_id();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001501
Vegard Nossumf1f10072017-02-27 14:30:07 -08001502 mmgrab(&init_mm);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001503 current->active_mm = &init_mm;
1504
1505 smp_store_cpu_info(cpu);
Paul Mackerras5ad57072005-11-05 10:33:55 +11001506 set_dec(tb_ticks_per_jiffy);
Qian Cai99f070b2020-10-28 14:23:34 -04001507 rcu_cpu_starting(cpu);
Andrew Mortone4d76e12005-11-09 15:45:30 -08001508 preempt_disable();
Michael Ellerman1be6f102014-12-29 15:47:05 +11001509 cpu_callin_map[cpu] = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001510
Kumar Gala757cbd42009-09-08 17:38:52 +00001511 if (smp_ops->setup_cpu)
1512 smp_ops->setup_cpu(cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001513 if (smp_ops->take_timebase)
1514 smp_ops->take_timebase();
1515
Tony Breedsd831d0b2007-09-21 13:26:03 +10001516 secondary_cpu_time_init();
1517
Benjamin Herrenschmidtaeeafbf2011-03-08 14:49:33 +11001518#ifdef CONFIG_PPC64
1519 if (system_state == SYSTEM_RUNNING)
1520 vdso_data->processorCount++;
Anton Blanchard18ad51d2012-07-04 20:37:11 +00001521
1522 vdso_getcpu_init();
Benjamin Herrenschmidtaeeafbf2011-03-08 14:49:33 +11001523#endif
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001524 /* Update topology CPU masks */
1525 add_cpu_to_masks(cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001526
Oliver O'Halloran96d91432017-06-29 17:12:56 +10001527 /*
1528 * Check for any shared caches. Note that this must be done on a
1529 * per-core basis because one core in the pair might be disabled.
1530 */
Srikar Dronamrajucaa8e292020-08-10 12:48:30 +05301531 if (!shared_caches) {
1532 struct cpumask *(*sibling_mask)(int) = cpu_sibling_mask;
1533 struct cpumask *mask = cpu_l2_cache_mask(cpu);
1534
1535 if (has_big_cores)
1536 sibling_mask = cpu_smallcore_mask;
1537
1538 if (cpumask_weight(mask) > cpumask_weight(sibling_mask(cpu)))
1539 shared_caches = true;
1540 }
Oliver O'Halloran96d91432017-06-29 17:12:56 +10001541
Li Zhongbc3c4322014-08-27 17:34:00 +08001542 set_numa_node(numa_cpu_lookup_table[cpu]);
1543 set_numa_mem(local_memory_node(numa_cpu_lookup_table[cpu]));
1544
Li Zhongcce606f2013-05-16 18:20:26 +08001545 smp_wmb();
1546 notify_cpu_starting(cpu);
1547 set_cpu_online(cpu, true);
1548
Michael Ellermanb6aedde2018-10-19 16:19:10 +11001549 boot_init_stack_canary();
1550
Linus Torvalds1da177e2005-04-16 15:20:36 -07001551 local_irq_enable();
1552
Naveen N. Raod1039782018-04-19 12:34:03 +05301553 /* We can enable ftrace for secondary cpus now */
1554 this_cpu_enable_ftrace();
1555
Thomas Gleixnerfc6d73d2016-02-26 18:43:40 +00001556 cpu_startup_entry(CPUHP_AP_ONLINE_IDLE);
Benjamin Herrenschmidtfa3f82c2011-02-10 18:45:24 +11001557
1558 BUG();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001559}
1560
1561int setup_profiling_timer(unsigned int multiplier)
1562{
1563 return 0;
1564}
1565
Srikar Dronamraju3c6032a2020-08-10 12:48:28 +05301566static void fixup_topology(void)
1567{
Srikar Dronamraju375370a2020-09-21 15:26:50 +05301568 int i;
1569
Srikar Dronamraju3c6032a2020-08-10 12:48:28 +05301570#ifdef CONFIG_SCHED_SMT
1571 if (has_big_cores) {
1572 pr_info("Big cores detected but using small core scheduling\n");
Srikar Dronamraju72730bf2020-08-10 12:48:33 +05301573 powerpc_topology[smt_idx].mask = smallcore_smt_mask;
Srikar Dronamraju3c6032a2020-08-10 12:48:28 +05301574 }
1575#endif
Srikar Dronamraju72730bf2020-08-10 12:48:33 +05301576
1577 if (!has_coregroup_support())
1578 powerpc_topology[mc_idx].mask = powerpc_topology[cache_idx].mask;
Srikar Dronamraju375370a2020-09-21 15:26:50 +05301579
1580 /*
1581 * Try to consolidate topology levels here instead of
1582 * allowing scheduler to degenerate.
1583 * - Dont consolidate if masks are different.
1584 * - Dont consolidate if sd_flags exists and are different.
1585 */
1586 for (i = 1; i <= die_idx; i++) {
1587 if (powerpc_topology[i].mask != powerpc_topology[i - 1].mask)
1588 continue;
1589
1590 if (powerpc_topology[i].sd_flags && powerpc_topology[i - 1].sd_flags &&
1591 powerpc_topology[i].sd_flags != powerpc_topology[i - 1].sd_flags)
1592 continue;
1593
1594 if (!powerpc_topology[i - 1].sd_flags)
1595 powerpc_topology[i - 1].sd_flags = powerpc_topology[i].sd_flags;
1596
1597 powerpc_topology[i].mask = powerpc_topology[i + 1].mask;
1598 powerpc_topology[i].sd_flags = powerpc_topology[i + 1].sd_flags;
1599#ifdef CONFIG_SCHED_DEBUG
1600 powerpc_topology[i].name = powerpc_topology[i + 1].name;
1601#endif
1602 }
Srikar Dronamraju3c6032a2020-08-10 12:48:28 +05301603}
1604
Linus Torvalds1da177e2005-04-16 15:20:36 -07001605void __init smp_cpus_done(unsigned int max_cpus)
1606{
Thomas Gleixner6d11b872017-04-12 22:07:31 +02001607 /*
Michael Ellerman7b7622b2017-07-27 23:23:37 +10001608 * We are running pinned to the boot CPU, see rest_init().
Linus Torvalds1da177e2005-04-16 15:20:36 -07001609 */
Kumar Gala757cbd42009-09-08 17:38:52 +00001610 if (smp_ops && smp_ops->setup_cpu)
Michael Ellerman7b7622b2017-07-27 23:23:37 +10001611 smp_ops->setup_cpu(boot_cpuid);
Anton Blanchard4b703a22005-12-13 06:56:47 +11001612
Benjamin Herrenschmidtd7294442011-03-08 13:50:37 +11001613 if (smp_ops && smp_ops->bringup_done)
1614 smp_ops->bringup_done();
1615
Anton Blanchard4b703a22005-12-13 06:56:47 +11001616 dump_numa_cpu_topology();
Benjamin Herrenschmidtd7294442011-03-08 13:50:37 +11001617
Srikar Dronamraju3c6032a2020-08-10 12:48:28 +05301618 fixup_topology();
Srikar Dronamraju2ef0ca52020-08-10 12:48:26 +05301619 set_sched_topology(powerpc_topology);
Michael Neulinge1f0ece2010-08-10 20:02:05 +00001620}
1621
Linus Torvalds1da177e2005-04-16 15:20:36 -07001622#ifdef CONFIG_HOTPLUG_CPU
1623int __cpu_disable(void)
1624{
Nathan Lynche2075f72008-07-27 15:24:52 +10001625 int cpu = smp_processor_id();
Nathan Lynche2075f72008-07-27 15:24:52 +10001626 int err;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001627
Nathan Lynche2075f72008-07-27 15:24:52 +10001628 if (!smp_ops->cpu_disable)
1629 return -ENOSYS;
1630
Naveen N. Rao424ef012018-04-19 12:34:04 +05301631 this_cpu_disable_ftrace();
1632
Nathan Lynche2075f72008-07-27 15:24:52 +10001633 err = smp_ops->cpu_disable();
1634 if (err)
1635 return err;
1636
1637 /* Update sibling maps */
Oliver O'Hallorandf52f672017-06-29 17:12:54 +10001638 remove_cpu_from_masks(cpu);
Nathan Lynch440a0852008-07-27 15:24:53 +10001639
Nathan Lynche2075f72008-07-27 15:24:52 +10001640 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001641}
1642
1643void __cpu_die(unsigned int cpu)
1644{
1645 if (smp_ops->cpu_die)
1646 smp_ops->cpu_die(cpu);
1647}
Nathan Fontenotd0174c72010-01-14 09:52:44 +00001648
Michael Ellerman1ea21ba2020-08-19 11:56:32 +10001649void arch_cpu_idle_dead(void)
1650{
1651 sched_preempt_enable_no_resched();
Michael Ellerman1ea21ba2020-08-19 11:56:32 +10001652
Naveen N. Rao424ef012018-04-19 12:34:04 +05301653 /*
1654 * Disable on the down path. This will be re-enabled by
1655 * start_secondary() via start_secondary_resume() below
1656 */
1657 this_cpu_disable_ftrace();
1658
Michael Ellerman39f87562020-08-19 11:56:34 +10001659 if (smp_ops->cpu_offline_self)
1660 smp_ops->cpu_offline_self();
Benjamin Herrenschmidtfa3f82c2011-02-10 18:45:24 +11001661
1662 /* If we return, we re-enter start_secondary */
1663 start_secondary_resume();
Milton Millerabb17f92010-05-19 02:56:29 +00001664}
Benjamin Herrenschmidtfa3f82c2011-02-10 18:45:24 +11001665
Linus Torvalds1da177e2005-04-16 15:20:36 -07001666#endif