1 /*
2  * Copyright 2010 Tilera Corporation. All Rights Reserved.
3  *
4  *   This program is free software; you can redistribute it and/or
5  *   modify it under the terms of the GNU General Public License
6  *   as published by the Free Software Foundation, version 2.
7  *
8  *   This program is distributed in the hope that it will be useful, but
9  *   WITHOUT ANY WARRANTY; without even the implied warranty of
10  *   MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
11  *   NON INFRINGEMENT.  See the GNU General Public License for
12  *   more details.
13  *
14  * TILE SMP support routines.
15  */
16 
17 #include <linux/smp.h>
18 #include <linux/interrupt.h>
19 #include <linux/io.h>
20 #include <linux/irq.h>
21 #include <linux/module.h>
22 #include <asm/cacheflush.h>
23 
24 HV_Topology smp_topology __write_once;
25 EXPORT_SYMBOL(smp_topology);
26 
27 #if CHIP_HAS_IPI()
28 static unsigned long __iomem *ipi_mappings[NR_CPUS];
29 #endif
30 
31 
32 /*
33  * Top-level send_IPI*() functions to send messages to other cpus.
34  */
35 
36 /* Set by smp_send_stop() to avoid recursive panics. */
37 static int stopping_cpus;
38 
__send_IPI_many(HV_Recipient * recip,int nrecip,int tag)39 static void __send_IPI_many(HV_Recipient *recip, int nrecip, int tag)
40 {
41 	int sent = 0;
42 	while (sent < nrecip) {
43 		int rc = hv_send_message(recip, nrecip,
44 					 (HV_VirtAddr)&tag, sizeof(tag));
45 		if (rc < 0) {
46 			if (!stopping_cpus)  /* avoid recursive panic */
47 				panic("hv_send_message returned %d", rc);
48 			break;
49 		}
50 		WARN_ONCE(rc == 0, "hv_send_message() returned zero\n");
51 		sent += rc;
52 	}
53 }
54 
send_IPI_single(int cpu,int tag)55 void send_IPI_single(int cpu, int tag)
56 {
57 	HV_Recipient recip = {
58 		.y = cpu / smp_width,
59 		.x = cpu % smp_width,
60 		.state = HV_TO_BE_SENT
61 	};
62 	__send_IPI_many(&recip, 1, tag);
63 }
64 
send_IPI_many(const struct cpumask * mask,int tag)65 void send_IPI_many(const struct cpumask *mask, int tag)
66 {
67 	HV_Recipient recip[NR_CPUS];
68 	int cpu;
69 	int nrecip = 0;
70 	int my_cpu = smp_processor_id();
71 	for_each_cpu(cpu, mask) {
72 		HV_Recipient *r;
73 		BUG_ON(cpu == my_cpu);
74 		r = &recip[nrecip++];
75 		r->y = cpu / smp_width;
76 		r->x = cpu % smp_width;
77 		r->state = HV_TO_BE_SENT;
78 	}
79 	__send_IPI_many(recip, nrecip, tag);
80 }
81 
send_IPI_allbutself(int tag)82 void send_IPI_allbutself(int tag)
83 {
84 	struct cpumask mask;
85 	cpumask_copy(&mask, cpu_online_mask);
86 	cpumask_clear_cpu(smp_processor_id(), &mask);
87 	send_IPI_many(&mask, tag);
88 }
89 
90 
91 /*
92  * Provide smp_call_function_mask, but also run function locally
93  * if specified in the mask.
94  */
on_each_cpu_mask(const struct cpumask * mask,void (* func)(void *),void * info,bool wait)95 void on_each_cpu_mask(const struct cpumask *mask, void (*func)(void *),
96 		      void *info, bool wait)
97 {
98 	int cpu = get_cpu();
99 	smp_call_function_many(mask, func, info, wait);
100 	if (cpumask_test_cpu(cpu, mask)) {
101 		local_irq_disable();
102 		func(info);
103 		local_irq_enable();
104 	}
105 	put_cpu();
106 }
107 
108 
109 /*
110  * Functions related to starting/stopping cpus.
111  */
112 
113 /* Handler to start the current cpu. */
smp_start_cpu_interrupt(void)114 static void smp_start_cpu_interrupt(void)
115 {
116 	get_irq_regs()->pc = start_cpu_function_addr;
117 }
118 
119 /* Handler to stop the current cpu. */
smp_stop_cpu_interrupt(void)120 static void smp_stop_cpu_interrupt(void)
121 {
122 	set_cpu_online(smp_processor_id(), 0);
123 	arch_local_irq_disable_all();
124 	for (;;)
125 		asm("nap");
126 }
127 
128 /* This function calls the 'stop' function on all other CPUs in the system. */
smp_send_stop(void)129 void smp_send_stop(void)
130 {
131 	stopping_cpus = 1;
132 	send_IPI_allbutself(MSG_TAG_STOP_CPU);
133 }
134 
135 
136 /*
137  * Dispatch code called from hv_message_intr() for HV_MSG_TILE hv messages.
138  */
evaluate_message(int tag)139 void evaluate_message(int tag)
140 {
141 	switch (tag) {
142 	case MSG_TAG_START_CPU: /* Start up a cpu */
143 		smp_start_cpu_interrupt();
144 		break;
145 
146 	case MSG_TAG_STOP_CPU: /* Sent to shut down slave CPU's */
147 		smp_stop_cpu_interrupt();
148 		break;
149 
150 	case MSG_TAG_CALL_FUNCTION_MANY: /* Call function on cpumask */
151 		generic_smp_call_function_interrupt();
152 		break;
153 
154 	case MSG_TAG_CALL_FUNCTION_SINGLE: /* Call function on one other CPU */
155 		generic_smp_call_function_single_interrupt();
156 		break;
157 
158 	default:
159 		panic("Unknown IPI message tag %d", tag);
160 		break;
161 	}
162 }
163 
164 
165 /*
166  * flush_icache_range() code uses smp_call_function().
167  */
168 
169 struct ipi_flush {
170 	unsigned long start;
171 	unsigned long end;
172 };
173 
ipi_flush_icache_range(void * info)174 static void ipi_flush_icache_range(void *info)
175 {
176 	struct ipi_flush *flush = (struct ipi_flush *) info;
177 	__flush_icache_range(flush->start, flush->end);
178 }
179 
flush_icache_range(unsigned long start,unsigned long end)180 void flush_icache_range(unsigned long start, unsigned long end)
181 {
182 	struct ipi_flush flush = { start, end };
183 	preempt_disable();
184 	on_each_cpu(ipi_flush_icache_range, &flush, 1);
185 	preempt_enable();
186 }
187 
188 
189 /* Called when smp_send_reschedule() triggers IRQ_RESCHEDULE. */
handle_reschedule_ipi(int irq,void * token)190 static irqreturn_t handle_reschedule_ipi(int irq, void *token)
191 {
192 	/*
193 	 * Nothing to do here; when we return from interrupt, the
194 	 * rescheduling will occur there. But do bump the interrupt
195 	 * profiler count in the meantime.
196 	 */
197 	__get_cpu_var(irq_stat).irq_resched_count++;
198 
199 	return IRQ_HANDLED;
200 }
201 
202 static struct irqaction resched_action = {
203 	.handler = handle_reschedule_ipi,
204 	.name = "resched",
205 	.dev_id = handle_reschedule_ipi /* unique token */,
206 };
207 
ipi_init(void)208 void __init ipi_init(void)
209 {
210 #if CHIP_HAS_IPI()
211 	int cpu;
212 	/* Map IPI trigger MMIO addresses. */
213 	for_each_possible_cpu(cpu) {
214 		HV_Coord tile;
215 		HV_PTE pte;
216 		unsigned long offset;
217 
218 		tile.x = cpu_x(cpu);
219 		tile.y = cpu_y(cpu);
220 		if (hv_get_ipi_pte(tile, KERNEL_PL, &pte) != 0)
221 			panic("Failed to initialize IPI for cpu %d\n", cpu);
222 
223 		offset = hv_pte_get_pfn(pte) << PAGE_SHIFT;
224 		ipi_mappings[cpu] = ioremap_prot(offset, PAGE_SIZE, pte);
225 	}
226 #endif
227 
228 	/* Bind handle_reschedule_ipi() to IRQ_RESCHEDULE. */
229 	tile_irq_activate(IRQ_RESCHEDULE, TILE_IRQ_PERCPU);
230 	BUG_ON(setup_irq(IRQ_RESCHEDULE, &resched_action));
231 }
232 
233 #if CHIP_HAS_IPI()
234 
smp_send_reschedule(int cpu)235 void smp_send_reschedule(int cpu)
236 {
237 	WARN_ON(cpu_is_offline(cpu));
238 
239 	/*
240 	 * We just want to do an MMIO store.  The traditional writeq()
241 	 * functions aren't really correct here, since they're always
242 	 * directed at the PCI shim.  For now, just do a raw store,
243 	 * casting away the __iomem attribute.
244 	 */
245 	((unsigned long __force *)ipi_mappings[cpu])[IRQ_RESCHEDULE] = 0;
246 }
247 
248 #else
249 
smp_send_reschedule(int cpu)250 void smp_send_reschedule(int cpu)
251 {
252 	HV_Coord coord;
253 
254 	WARN_ON(cpu_is_offline(cpu));
255 
256 	coord.y = cpu_y(cpu);
257 	coord.x = cpu_x(cpu);
258 	hv_trigger_ipi(coord, IRQ_RESCHEDULE);
259 }
260 
261 #endif /* CHIP_HAS_IPI() */
262