blob: 1061bd2e7e9cac4b5875206a1ea7eb1df9421132 [file] [log] [blame]
Paul Burton0ee958e2014-01-15 10:31:53 +00001/*
2 * Copyright (C) 2013 Imagination Technologies
3 * Author: Paul Burton <paul.burton@imgtec.com>
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License as published by the
7 * Free Software Foundation; either version 2 of the License, or (at your
8 * option) any later version.
9 */
10
Paul Burtona8c20612015-09-22 11:12:14 -070011#include <linux/delay.h>
Paul Burton0ee958e2014-01-15 10:31:53 +000012#include <linux/io.h>
Andrew Bresticker4060bbe2014-10-20 12:03:53 -070013#include <linux/irqchip/mips-gic.h>
Paul Burton0ee958e2014-01-15 10:31:53 +000014#include <linux/sched.h>
15#include <linux/slab.h>
16#include <linux/smp.h>
17#include <linux/types.h>
18
Paul Burton0fc07082014-07-09 12:51:05 +010019#include <asm/bcache.h>
Paul Burton0ee958e2014-01-15 10:31:53 +000020#include <asm/mips-cm.h>
21#include <asm/mips-cpc.h>
22#include <asm/mips_mt.h>
23#include <asm/mipsregs.h>
Paul Burton1d8f1f52014-04-14 14:13:57 +010024#include <asm/pm-cps.h>
Paul Burton0fc07082014-07-09 12:51:05 +010025#include <asm/r4kcache.h>
Paul Burton0ee958e2014-01-15 10:31:53 +000026#include <asm/smp-cps.h>
27#include <asm/time.h>
28#include <asm/uasm.h>
29
Paul Burton6422a912016-02-03 03:15:34 +000030static bool threads_disabled;
Paul Burton0ee958e2014-01-15 10:31:53 +000031static DECLARE_BITMAP(core_power, NR_CPUS);
32
Paul Burton245a7862014-04-14 12:04:27 +010033struct core_boot_config *mips_cps_core_bootcfg;
Paul Burton0ee958e2014-01-15 10:31:53 +000034
Paul Burton6422a912016-02-03 03:15:34 +000035static int __init setup_nothreads(char *s)
36{
37 threads_disabled = true;
38 return 0;
39}
40early_param("nothreads", setup_nothreads);
41
Paul Burton245a7862014-04-14 12:04:27 +010042static unsigned core_vpe_count(unsigned core)
Paul Burton0ee958e2014-01-15 10:31:53 +000043{
Paul Burton245a7862014-04-14 12:04:27 +010044 unsigned cfg;
Paul Burton0ee958e2014-01-15 10:31:53 +000045
Paul Burton6422a912016-02-03 03:15:34 +000046 if (threads_disabled)
47 return 1;
48
Paul Burton5a3e7c02016-02-03 03:15:33 +000049 if ((!config_enabled(CONFIG_MIPS_MT_SMP) || !cpu_has_mipsmt)
50 && (!config_enabled(CONFIG_CPU_MIPSR6) || !cpu_has_vp))
Paul Burton245a7862014-04-14 12:04:27 +010051 return 1;
Paul Burton0ee958e2014-01-15 10:31:53 +000052
Paul Burton4ede3162015-09-22 11:12:17 -070053 mips_cm_lock_other(core, 0);
Paul Burton245a7862014-04-14 12:04:27 +010054 cfg = read_gcr_co_config() & CM_GCR_Cx_CONFIG_PVPE_MSK;
Paul Burton4ede3162015-09-22 11:12:17 -070055 mips_cm_unlock_other();
Paul Burton245a7862014-04-14 12:04:27 +010056 return (cfg >> CM_GCR_Cx_CONFIG_PVPE_SHF) + 1;
Paul Burton0ee958e2014-01-15 10:31:53 +000057}
58
59static void __init cps_smp_setup(void)
60{
61 unsigned int ncores, nvpes, core_vpes;
Paul Burton5a3e7c02016-02-03 03:15:33 +000062 unsigned long core_entry;
Paul Burton0ee958e2014-01-15 10:31:53 +000063 int c, v;
Paul Burton0ee958e2014-01-15 10:31:53 +000064
65 /* Detect & record VPE topology */
66 ncores = mips_cm_numcores();
Paul Burton5a3e7c02016-02-03 03:15:33 +000067 pr_info("%s topology ", cpu_has_mips_r6 ? "VP" : "VPE");
Paul Burton0ee958e2014-01-15 10:31:53 +000068 for (c = nvpes = 0; c < ncores; c++) {
Paul Burton245a7862014-04-14 12:04:27 +010069 core_vpes = core_vpe_count(c);
Paul Burton0ee958e2014-01-15 10:31:53 +000070 pr_cont("%c%u", c ? ',' : '{', core_vpes);
71
Paul Burton245a7862014-04-14 12:04:27 +010072 /* Use the number of VPEs in core 0 for smp_num_siblings */
73 if (!c)
74 smp_num_siblings = core_vpes;
75
Paul Burton0ee958e2014-01-15 10:31:53 +000076 for (v = 0; v < min_t(int, core_vpes, NR_CPUS - nvpes); v++) {
77 cpu_data[nvpes + v].core = c;
Paul Burton5a3e7c02016-02-03 03:15:33 +000078#if defined(CONFIG_MIPS_MT_SMP) || defined(CONFIG_CPU_MIPSR6)
Paul Burton0ee958e2014-01-15 10:31:53 +000079 cpu_data[nvpes + v].vpe_id = v;
80#endif
81 }
82
83 nvpes += core_vpes;
84 }
85 pr_cont("} total %u\n", nvpes);
86
87 /* Indicate present CPUs (CPU being synonymous with VPE) */
88 for (v = 0; v < min_t(unsigned, nvpes, NR_CPUS); v++) {
89 set_cpu_possible(v, true);
90 set_cpu_present(v, true);
91 __cpu_number_map[v] = v;
92 __cpu_logical_map[v] = v;
93 }
94
Paul Burton33b68662014-04-14 15:58:45 +010095 /* Set a coherent default CCA (CWB) */
96 change_c0_config(CONF_CM_CMASK, 0x5);
97
Paul Burton0ee958e2014-01-15 10:31:53 +000098 /* Core 0 is powered up (we're running on it) */
99 bitmap_set(core_power, 0, 1);
100
Paul Burton0ee958e2014-01-15 10:31:53 +0000101 /* Initialise core 0 */
Paul Burton245a7862014-04-14 12:04:27 +0100102 mips_cps_core_init();
Paul Burton0ee958e2014-01-15 10:31:53 +0000103
104 /* Make core 0 coherent with everything */
105 write_gcr_cl_coherence(0xff);
Niklas Cassel90db0242015-01-15 16:41:13 +0100106
Paul Burton5a3e7c02016-02-03 03:15:33 +0000107 if (mips_cm_revision() >= CM_REV_CM3) {
108 core_entry = CKSEG1ADDR((unsigned long)mips_cps_core_entry);
109 write_gcr_bev_base(core_entry);
110 }
111
Niklas Cassel90db0242015-01-15 16:41:13 +0100112#ifdef CONFIG_MIPS_MT_FPAFF
113 /* If we have an FPU, enroll ourselves in the FPU-full mask */
114 if (cpu_has_fpu)
Ezequiel Garcia7363cb72015-04-28 18:34:23 -0300115 cpumask_set_cpu(0, &mt_fpu_cpumask);
Niklas Cassel90db0242015-01-15 16:41:13 +0100116#endif /* CONFIG_MIPS_MT_FPAFF */
Paul Burton0ee958e2014-01-15 10:31:53 +0000117}
118
119static void __init cps_prepare_cpus(unsigned int max_cpus)
120{
Paul Burton5c399f62014-04-14 15:21:25 +0100121 unsigned ncores, core_vpes, c, cca;
122 bool cca_unsuitable;
Paul Burton0f4d3d12014-04-14 12:21:49 +0100123 u32 *entry_code;
Paul Burton245a7862014-04-14 12:04:27 +0100124
Paul Burton0ee958e2014-01-15 10:31:53 +0000125 mips_mt_set_cpuoptions();
Paul Burton245a7862014-04-14 12:04:27 +0100126
Paul Burton5c399f62014-04-14 15:21:25 +0100127 /* Detect whether the CCA is unsuited to multi-core SMP */
128 cca = read_c0_config() & CONF_CM_CMASK;
129 switch (cca) {
130 case 0x4: /* CWBE */
131 case 0x5: /* CWB */
132 /* The CCA is coherent, multi-core is fine */
133 cca_unsuitable = false;
134 break;
135
136 default:
137 /* CCA is not coherent, multi-core is not usable */
138 cca_unsuitable = true;
139 }
140
141 /* Warn the user if the CCA prevents multi-core */
142 ncores = mips_cm_numcores();
143 if (cca_unsuitable && ncores > 1) {
144 pr_warn("Using only one core due to unsuitable CCA 0x%x\n",
145 cca);
146
147 for_each_present_cpu(c) {
148 if (cpu_data[c].core)
149 set_cpu_present(c, false);
150 }
151 }
152
Paul Burton0155a062014-04-16 11:10:57 +0100153 /*
154 * Patch the start of mips_cps_core_entry to provide:
155 *
Paul Burton0155a062014-04-16 11:10:57 +0100156 * s0 = kseg0 CCA
157 */
Paul Burton0f4d3d12014-04-14 12:21:49 +0100158 entry_code = (u32 *)&mips_cps_core_entry;
Paul Burton0155a062014-04-16 11:10:57 +0100159 uasm_i_addiu(&entry_code, 16, 0, cca);
Paul Burton0fc07082014-07-09 12:51:05 +0100160 blast_dcache_range((unsigned long)&mips_cps_core_entry,
161 (unsigned long)entry_code);
162 bc_wback_inv((unsigned long)&mips_cps_core_entry,
163 (void *)entry_code - (void *)&mips_cps_core_entry);
164 __sync();
Paul Burton0f4d3d12014-04-14 12:21:49 +0100165
Paul Burton245a7862014-04-14 12:04:27 +0100166 /* Allocate core boot configuration structs */
Paul Burton245a7862014-04-14 12:04:27 +0100167 mips_cps_core_bootcfg = kcalloc(ncores, sizeof(*mips_cps_core_bootcfg),
168 GFP_KERNEL);
169 if (!mips_cps_core_bootcfg) {
170 pr_err("Failed to allocate boot config for %u cores\n", ncores);
171 goto err_out;
172 }
173
174 /* Allocate VPE boot configuration structs */
175 for (c = 0; c < ncores; c++) {
176 core_vpes = core_vpe_count(c);
177 mips_cps_core_bootcfg[c].vpe_config = kcalloc(core_vpes,
178 sizeof(*mips_cps_core_bootcfg[c].vpe_config),
179 GFP_KERNEL);
180 if (!mips_cps_core_bootcfg[c].vpe_config) {
181 pr_err("Failed to allocate %u VPE boot configs\n",
182 core_vpes);
183 goto err_out;
184 }
185 }
186
187 /* Mark this CPU as booted */
188 atomic_set(&mips_cps_core_bootcfg[current_cpu_data.core].vpe_mask,
189 1 << cpu_vpe_id(&current_cpu_data));
190
191 return;
192err_out:
193 /* Clean up allocations */
194 if (mips_cps_core_bootcfg) {
195 for (c = 0; c < ncores; c++)
196 kfree(mips_cps_core_bootcfg[c].vpe_config);
197 kfree(mips_cps_core_bootcfg);
198 mips_cps_core_bootcfg = NULL;
199 }
200
201 /* Effectively disable SMP by declaring CPUs not present */
202 for_each_possible_cpu(c) {
203 if (c == 0)
204 continue;
205 set_cpu_present(c, false);
206 }
Paul Burton0ee958e2014-01-15 10:31:53 +0000207}
208
Paul Burton245a7862014-04-14 12:04:27 +0100209static void boot_core(unsigned core)
Paul Burton0ee958e2014-01-15 10:31:53 +0000210{
Paul Burtona8c20612015-09-22 11:12:14 -0700211 u32 access, stat, seq_state;
212 unsigned timeout;
Paul Burton0ee958e2014-01-15 10:31:53 +0000213
214 /* Select the appropriate core */
Paul Burton4ede3162015-09-22 11:12:17 -0700215 mips_cm_lock_other(core, 0);
Paul Burton0ee958e2014-01-15 10:31:53 +0000216
217 /* Set its reset vector */
218 write_gcr_co_reset_base(CKSEG1ADDR((unsigned long)mips_cps_core_entry));
219
220 /* Ensure its coherency is disabled */
221 write_gcr_co_coherence(0);
222
Matt Redfearn497e803e2015-12-18 12:47:00 +0000223 /* Start it with the legacy memory map and exception base */
224 write_gcr_co_reset_ext_base(CM_GCR_RESET_EXT_BASE_UEB);
225
Paul Burton0ee958e2014-01-15 10:31:53 +0000226 /* Ensure the core can access the GCRs */
227 access = read_gcr_access();
Paul Burton245a7862014-04-14 12:04:27 +0100228 access |= 1 << (CM_GCR_ACCESS_ACCESSEN_SHF + core);
Paul Burton0ee958e2014-01-15 10:31:53 +0000229 write_gcr_access(access);
230
Paul Burton0ee958e2014-01-15 10:31:53 +0000231 if (mips_cpc_present()) {
Paul Burton0ee958e2014-01-15 10:31:53 +0000232 /* Reset the core */
Paul Burtondd9233d2014-03-07 10:42:52 +0000233 mips_cpc_lock_other(core);
Paul Burton5a3e7c02016-02-03 03:15:33 +0000234
235 if (mips_cm_revision() >= CM_REV_CM3) {
236 /* Run VP0 following the reset */
237 write_cpc_co_vp_run(0x1);
238
239 /*
240 * Ensure that the VP_RUN register is written before the
241 * core leaves reset.
242 */
243 wmb();
244 }
245
Paul Burton0ee958e2014-01-15 10:31:53 +0000246 write_cpc_co_cmd(CPC_Cx_CMD_RESET);
Paul Burtona8c20612015-09-22 11:12:14 -0700247
248 timeout = 100;
249 while (true) {
250 stat = read_cpc_co_stat_conf();
251 seq_state = stat & CPC_Cx_STAT_CONF_SEQSTATE_MSK;
252
253 /* U6 == coherent execution, ie. the core is up */
254 if (seq_state == CPC_Cx_STAT_CONF_SEQSTATE_U6)
255 break;
256
257 /* Delay a little while before we start warning */
258 if (timeout) {
259 timeout--;
260 mdelay(10);
261 continue;
262 }
263
264 pr_warn("Waiting for core %u to start... STAT_CONF=0x%x\n",
265 core, stat);
266 mdelay(1000);
267 }
268
Paul Burtondd9233d2014-03-07 10:42:52 +0000269 mips_cpc_unlock_other();
Paul Burton0ee958e2014-01-15 10:31:53 +0000270 } else {
271 /* Take the core out of reset */
272 write_gcr_co_reset_release(0);
273 }
274
Paul Burton4ede3162015-09-22 11:12:17 -0700275 mips_cm_unlock_other();
276
Paul Burton0ee958e2014-01-15 10:31:53 +0000277 /* The core is now powered up */
Paul Burton245a7862014-04-14 12:04:27 +0100278 bitmap_set(core_power, core, 1);
Paul Burton0ee958e2014-01-15 10:31:53 +0000279}
280
Paul Burton245a7862014-04-14 12:04:27 +0100281static void remote_vpe_boot(void *dummy)
Paul Burton0ee958e2014-01-15 10:31:53 +0000282{
Paul Burtonf12401d2016-02-03 03:15:31 +0000283 unsigned core = current_cpu_data.core;
284 struct core_boot_config *core_cfg = &mips_cps_core_bootcfg[core];
285
286 mips_cps_boot_vpes(core_cfg, cpu_vpe_id(&current_cpu_data));
Paul Burton0ee958e2014-01-15 10:31:53 +0000287}
288
289static void cps_boot_secondary(int cpu, struct task_struct *idle)
290{
Paul Burton245a7862014-04-14 12:04:27 +0100291 unsigned core = cpu_data[cpu].core;
292 unsigned vpe_id = cpu_vpe_id(&cpu_data[cpu]);
293 struct core_boot_config *core_cfg = &mips_cps_core_bootcfg[core];
294 struct vpe_boot_config *vpe_cfg = &core_cfg->vpe_config[vpe_id];
Paul Burton5a3e7c02016-02-03 03:15:33 +0000295 unsigned long core_entry;
Paul Burton0ee958e2014-01-15 10:31:53 +0000296 unsigned int remote;
297 int err;
298
Paul Burton245a7862014-04-14 12:04:27 +0100299 vpe_cfg->pc = (unsigned long)&smp_bootstrap;
300 vpe_cfg->sp = __KSTK_TOS(idle);
301 vpe_cfg->gp = (unsigned long)task_thread_info(idle);
Paul Burton0ee958e2014-01-15 10:31:53 +0000302
Paul Burton245a7862014-04-14 12:04:27 +0100303 atomic_or(1 << cpu_vpe_id(&cpu_data[cpu]), &core_cfg->vpe_mask);
304
Paul Burton1d8f1f52014-04-14 14:13:57 +0100305 preempt_disable();
306
Paul Burton245a7862014-04-14 12:04:27 +0100307 if (!test_bit(core, core_power)) {
Paul Burton0ee958e2014-01-15 10:31:53 +0000308 /* Boot a VPE on a powered down core */
Paul Burton245a7862014-04-14 12:04:27 +0100309 boot_core(core);
Paul Burton1d8f1f52014-04-14 14:13:57 +0100310 goto out;
Paul Burton0ee958e2014-01-15 10:31:53 +0000311 }
312
Paul Burton5a3e7c02016-02-03 03:15:33 +0000313 if (cpu_has_vp) {
314 mips_cm_lock_other(core, vpe_id);
315 core_entry = CKSEG1ADDR((unsigned long)mips_cps_core_entry);
316 write_gcr_co_reset_base(core_entry);
317 mips_cm_unlock_other();
318 }
319
Paul Burton245a7862014-04-14 12:04:27 +0100320 if (core != current_cpu_data.core) {
Paul Burton0ee958e2014-01-15 10:31:53 +0000321 /* Boot a VPE on another powered up core */
322 for (remote = 0; remote < NR_CPUS; remote++) {
Paul Burton245a7862014-04-14 12:04:27 +0100323 if (cpu_data[remote].core != core)
Paul Burton0ee958e2014-01-15 10:31:53 +0000324 continue;
325 if (cpu_online(remote))
326 break;
327 }
328 BUG_ON(remote >= NR_CPUS);
329
Paul Burton245a7862014-04-14 12:04:27 +0100330 err = smp_call_function_single(remote, remote_vpe_boot,
331 NULL, 1);
Paul Burton0ee958e2014-01-15 10:31:53 +0000332 if (err)
333 panic("Failed to call remote CPU\n");
Paul Burton1d8f1f52014-04-14 14:13:57 +0100334 goto out;
Paul Burton0ee958e2014-01-15 10:31:53 +0000335 }
336
Paul Burton5a3e7c02016-02-03 03:15:33 +0000337 BUG_ON(!cpu_has_mipsmt && !cpu_has_vp);
Paul Burton0ee958e2014-01-15 10:31:53 +0000338
339 /* Boot a VPE on this core */
Paul Burtonf12401d2016-02-03 03:15:31 +0000340 mips_cps_boot_vpes(core_cfg, vpe_id);
Paul Burton1d8f1f52014-04-14 14:13:57 +0100341out:
342 preempt_enable();
Paul Burton0ee958e2014-01-15 10:31:53 +0000343}
344
345static void cps_init_secondary(void)
346{
347 /* Disable MT - we only want to run 1 TC per VPE */
348 if (cpu_has_mipsmt)
349 dmt();
350
Paul Burtonba1c0a42016-02-03 03:15:29 +0000351 if (mips_cm_revision() >= CM_REV_CM3) {
352 unsigned ident = gic_read_local_vp_id();
353
354 /*
355 * Ensure that our calculation of the VP ID matches up with
356 * what the GIC reports, otherwise we'll have configured
357 * interrupts incorrectly.
358 */
359 BUG_ON(ident != mips_cm_vp_id(smp_processor_id()));
360 }
361
Andrew Brestickerff1e29a2014-09-18 14:47:13 -0700362 change_c0_status(ST0_IM, STATUSF_IP2 | STATUSF_IP3 | STATUSF_IP4 |
363 STATUSF_IP5 | STATUSF_IP6 | STATUSF_IP7);
Paul Burton0ee958e2014-01-15 10:31:53 +0000364}
365
366static void cps_smp_finish(void)
367{
368 write_c0_compare(read_c0_count() + (8 * mips_hpt_frequency / HZ));
369
370#ifdef CONFIG_MIPS_MT_FPAFF
371 /* If we have an FPU, enroll ourselves in the FPU-full mask */
372 if (cpu_has_fpu)
Rusty Russell8dd92892015-03-05 10:49:17 +1030373 cpumask_set_cpu(smp_processor_id(), &mt_fpu_cpumask);
Paul Burton0ee958e2014-01-15 10:31:53 +0000374#endif /* CONFIG_MIPS_MT_FPAFF */
375
376 local_irq_enable();
377}
378
Paul Burton1d8f1f52014-04-14 14:13:57 +0100379#ifdef CONFIG_HOTPLUG_CPU
380
381static int cps_cpu_disable(void)
382{
383 unsigned cpu = smp_processor_id();
384 struct core_boot_config *core_cfg;
385
386 if (!cpu)
387 return -EBUSY;
388
389 if (!cps_pm_support_state(CPS_PM_POWER_GATED))
390 return -EINVAL;
391
392 core_cfg = &mips_cps_core_bootcfg[current_cpu_data.core];
393 atomic_sub(1 << cpu_vpe_id(&current_cpu_data), &core_cfg->vpe_mask);
Paul Burtone114ba22014-06-11 11:00:56 +0100394 smp_mb__after_atomic();
Paul Burton1d8f1f52014-04-14 14:13:57 +0100395 set_cpu_online(cpu, false);
Rusty Russell8dd92892015-03-05 10:49:17 +1030396 cpumask_clear_cpu(cpu, &cpu_callin_map);
Paul Burton1d8f1f52014-04-14 14:13:57 +0100397
398 return 0;
399}
400
401static DECLARE_COMPLETION(cpu_death_chosen);
402static unsigned cpu_death_sibling;
403static enum {
404 CPU_DEATH_HALT,
405 CPU_DEATH_POWER,
406} cpu_death;
407
408void play_dead(void)
409{
410 unsigned cpu, core;
411
412 local_irq_disable();
413 idle_task_exit();
414 cpu = smp_processor_id();
415 cpu_death = CPU_DEATH_POWER;
416
417 if (cpu_has_mipsmt) {
418 core = cpu_data[cpu].core;
419
420 /* Look for another online VPE within the core */
421 for_each_online_cpu(cpu_death_sibling) {
422 if (cpu_data[cpu_death_sibling].core != core)
423 continue;
424
425 /*
426 * There is an online VPE within the core. Just halt
427 * this TC and leave the core alone.
428 */
429 cpu_death = CPU_DEATH_HALT;
430 break;
431 }
432 }
433
434 /* This CPU has chosen its way out */
435 complete(&cpu_death_chosen);
436
437 if (cpu_death == CPU_DEATH_HALT) {
438 /* Halt this TC */
439 write_c0_tchalt(TCHALT_H);
440 instruction_hazard();
441 } else {
442 /* Power down the core */
443 cps_pm_enter_state(CPS_PM_POWER_GATED);
444 }
445
446 /* This should never be reached */
447 panic("Failed to offline CPU %u", cpu);
448}
449
450static void wait_for_sibling_halt(void *ptr_cpu)
451{
Markos Chandrasfd5ed302015-07-01 09:13:28 +0100452 unsigned cpu = (unsigned long)ptr_cpu;
Paul Burtonc90e49f2014-07-09 12:48:21 +0100453 unsigned vpe_id = cpu_vpe_id(&cpu_data[cpu]);
Paul Burton1d8f1f52014-04-14 14:13:57 +0100454 unsigned halted;
455 unsigned long flags;
456
457 do {
458 local_irq_save(flags);
459 settc(vpe_id);
460 halted = read_tc_c0_tchalt();
461 local_irq_restore(flags);
462 } while (!(halted & TCHALT_H));
463}
464
465static void cps_cpu_die(unsigned int cpu)
466{
467 unsigned core = cpu_data[cpu].core;
468 unsigned stat;
469 int err;
470
471 /* Wait for the cpu to choose its way out */
472 if (!wait_for_completion_timeout(&cpu_death_chosen,
473 msecs_to_jiffies(5000))) {
474 pr_err("CPU%u: didn't offline\n", cpu);
475 return;
476 }
477
478 /*
479 * Now wait for the CPU to actually offline. Without doing this that
480 * offlining may race with one or more of:
481 *
482 * - Onlining the CPU again.
483 * - Powering down the core if another VPE within it is offlined.
484 * - A sibling VPE entering a non-coherent state.
485 *
486 * In the non-MT halt case (ie. infinite loop) the CPU is doing nothing
487 * with which we could race, so do nothing.
488 */
489 if (cpu_death == CPU_DEATH_POWER) {
490 /*
491 * Wait for the core to enter a powered down or clock gated
492 * state, the latter happening when a JTAG probe is connected
493 * in which case the CPC will refuse to power down the core.
494 */
495 do {
496 mips_cpc_lock_other(core);
497 stat = read_cpc_co_stat_conf();
498 stat &= CPC_Cx_STAT_CONF_SEQSTATE_MSK;
499 mips_cpc_unlock_other();
500 } while (stat != CPC_Cx_STAT_CONF_SEQSTATE_D0 &&
501 stat != CPC_Cx_STAT_CONF_SEQSTATE_D2 &&
502 stat != CPC_Cx_STAT_CONF_SEQSTATE_U2);
503
504 /* Indicate the core is powered off */
505 bitmap_clear(core_power, core, 1);
506 } else if (cpu_has_mipsmt) {
507 /*
508 * Have a CPU with access to the offlined CPUs registers wait
509 * for its TC to halt.
510 */
511 err = smp_call_function_single(cpu_death_sibling,
512 wait_for_sibling_halt,
Markos Chandrasfd5ed302015-07-01 09:13:28 +0100513 (void *)(unsigned long)cpu, 1);
Paul Burton1d8f1f52014-04-14 14:13:57 +0100514 if (err)
515 panic("Failed to call remote sibling CPU\n");
516 }
517}
518
519#endif /* CONFIG_HOTPLUG_CPU */
520
Paul Burton0ee958e2014-01-15 10:31:53 +0000521static struct plat_smp_ops cps_smp_ops = {
522 .smp_setup = cps_smp_setup,
523 .prepare_cpus = cps_prepare_cpus,
524 .boot_secondary = cps_boot_secondary,
525 .init_secondary = cps_init_secondary,
526 .smp_finish = cps_smp_finish,
Qais Yousefbb11cff2015-12-08 13:20:28 +0000527 .send_ipi_single = mips_smp_send_ipi_single,
528 .send_ipi_mask = mips_smp_send_ipi_mask,
Paul Burton1d8f1f52014-04-14 14:13:57 +0100529#ifdef CONFIG_HOTPLUG_CPU
530 .cpu_disable = cps_cpu_disable,
531 .cpu_die = cps_cpu_die,
532#endif
Paul Burton0ee958e2014-01-15 10:31:53 +0000533};
534
Paul Burton68c12322014-03-14 16:06:16 +0000535bool mips_cps_smp_in_use(void)
536{
537 extern struct plat_smp_ops *mp_ops;
538 return mp_ops == &cps_smp_ops;
539}
540
Paul Burton0ee958e2014-01-15 10:31:53 +0000541int register_cps_smp_ops(void)
542{
543 if (!mips_cm_present()) {
544 pr_warn("MIPS CPS SMP unable to proceed without a CM\n");
545 return -ENODEV;
546 }
547
548 /* check we have a GIC - we need one for IPIs */
549 if (!(read_gcr_gic_status() & CM_GCR_GIC_STATUS_EX_MSK)) {
550 pr_warn("MIPS CPS SMP unable to proceed without a GIC\n");
551 return -ENODEV;
552 }
553
554 register_smp_ops(&cps_smp_ops);
555 return 0;
556}