2 * Linux/Meta general interrupt handling code
6 #include <linux/kernel.h>
7 #include <linux/interrupt.h>
8 #include <linux/init.h>
9 #include <linux/irqchip/metag-ext.h>
10 #include <linux/irqchip/metag.h>
11 #include <linux/irqdomain.h>
12 #include <linux/ratelimit.h>
14 #include <asm/core_reg.h>
15 #include <asm/mach/arch.h>
16 #include <asm/uaccess.h>
18 #ifdef CONFIG_4KSTACKS
20 struct thread_info tinfo
;
21 u32 stack
[THREAD_SIZE
/sizeof(u32
)];
24 static union irq_ctx
*hardirq_ctx
[NR_CPUS
] __read_mostly
;
25 static union irq_ctx
*softirq_ctx
[NR_CPUS
] __read_mostly
;
28 static struct irq_domain
*root_domain
;
30 static unsigned int startup_meta_irq(struct irq_data
*data
)
32 tbi_startup_interrupt(data
->hwirq
);
36 static void shutdown_meta_irq(struct irq_data
*data
)
38 tbi_shutdown_interrupt(data
->hwirq
);
41 void do_IRQ(int irq
, struct pt_regs
*regs
)
43 struct pt_regs
*old_regs
= set_irq_regs(regs
);
44 #ifdef CONFIG_4KSTACKS
45 struct irq_desc
*desc
;
46 union irq_ctx
*curctx
, *irqctx
;
52 irq
= irq_linear_revmap(root_domain
, irq
);
54 #ifdef CONFIG_DEBUG_STACKOVERFLOW
55 /* Debugging check for stack overflow: is there less than 1KB free? */
59 sp
= __core_reg_get(A0StP
);
60 sp
&= THREAD_SIZE
- 1;
62 if (unlikely(sp
> (THREAD_SIZE
- 1024)))
63 pr_err("Stack overflow in do_IRQ: %ld\n", sp
);
68 #ifdef CONFIG_4KSTACKS
69 curctx
= (union irq_ctx
*) current_thread_info();
70 irqctx
= hardirq_ctx
[smp_processor_id()];
73 * this is where we switch to the IRQ stack. However, if we are
74 * already using the IRQ stack (because we interrupted a hardirq
75 * handler) we can't do that and just have to keep using the
76 * current stack (which is the irq stack already after all)
78 if (curctx
!= irqctx
) {
79 /* build the stack frame on the IRQ stack */
80 isp
= (u32
*) ((char *)irqctx
+ sizeof(struct thread_info
));
81 irqctx
->tinfo
.task
= curctx
->tinfo
.task
;
84 * Copy the softirq bits in preempt_count so that the
85 * softirq checks work in the hardirq context.
87 irqctx
->tinfo
.preempt_count
=
88 (irqctx
->tinfo
.preempt_count
& ~SOFTIRQ_MASK
) |
89 (curctx
->tinfo
.preempt_count
& SOFTIRQ_MASK
);
91 desc
= irq_to_desc(irq
);
102 : "r" (isp
), "r" (irq
), "r" (desc
->handle_irq
),
104 : "memory", "cc", "D1Ar1", "D0Ar2", "D1Ar3", "D0Ar4",
105 "D1Ar5", "D0Ar6", "D0Re0", "D1Re0", "D0.4", "D1RtP",
110 generic_handle_irq(irq
);
114 set_irq_regs(old_regs
);
117 #ifdef CONFIG_4KSTACKS
119 static char softirq_stack
[NR_CPUS
* THREAD_SIZE
] __page_aligned_bss
;
121 static char hardirq_stack
[NR_CPUS
* THREAD_SIZE
] __page_aligned_bss
;
124 * allocate per-cpu stacks for hardirq and for softirq processing
126 void irq_ctx_init(int cpu
)
128 union irq_ctx
*irqctx
;
130 if (hardirq_ctx
[cpu
])
133 irqctx
= (union irq_ctx
*) &hardirq_stack
[cpu
* THREAD_SIZE
];
134 irqctx
->tinfo
.task
= NULL
;
135 irqctx
->tinfo
.exec_domain
= NULL
;
136 irqctx
->tinfo
.cpu
= cpu
;
137 irqctx
->tinfo
.preempt_count
= HARDIRQ_OFFSET
;
138 irqctx
->tinfo
.addr_limit
= MAKE_MM_SEG(0);
140 hardirq_ctx
[cpu
] = irqctx
;
142 irqctx
= (union irq_ctx
*) &softirq_stack
[cpu
* THREAD_SIZE
];
143 irqctx
->tinfo
.task
= NULL
;
144 irqctx
->tinfo
.exec_domain
= NULL
;
145 irqctx
->tinfo
.cpu
= cpu
;
146 irqctx
->tinfo
.preempt_count
= 0;
147 irqctx
->tinfo
.addr_limit
= MAKE_MM_SEG(0);
149 softirq_ctx
[cpu
] = irqctx
;
151 pr_info("CPU %u irqstacks, hard=%p soft=%p\n",
152 cpu
, hardirq_ctx
[cpu
], softirq_ctx
[cpu
]);
155 void irq_ctx_exit(int cpu
)
157 hardirq_ctx
[smp_processor_id()] = NULL
;
160 extern asmlinkage
void __do_softirq(void);
162 void do_softirq_own_stack(void)
164 struct thread_info
*curctx
;
165 union irq_ctx
*irqctx
;
168 curctx
= current_thread_info();
169 irqctx
= softirq_ctx
[smp_processor_id()];
170 irqctx
->tinfo
.task
= curctx
->task
;
172 /* build the stack frame on the softirq stack */
173 isp
= (u32
*) ((char *)irqctx
+ sizeof(struct thread_info
));
178 "CALLR D1RtP,___do_softirq\n"
182 : "memory", "cc", "D1Ar1", "D0Ar2", "D1Ar3", "D0Ar4",
183 "D1Ar5", "D0Ar6", "D0Re0", "D1Re0", "D0.4", "D1RtP",
189 static struct irq_chip meta_irq_type
= {
191 .irq_startup
= startup_meta_irq
,
192 .irq_shutdown
= shutdown_meta_irq
,
196 * tbisig_map() - Map a TBI signal number to a virtual IRQ number.
197 * @hw: Number of the TBI signal. Must be in range.
199 * Returns: The virtual IRQ number of the TBI signal number IRQ specified by
202 int tbisig_map(unsigned int hw
)
204 return irq_create_mapping(root_domain
, hw
);
208 * metag_tbisig_map() - map a tbi signal to a Linux virtual IRQ number
209 * @d: root irq domain
210 * @irq: virtual irq number
211 * @hw: hardware irq number (TBI signal number)
213 * This sets up a virtual irq for a specified TBI signal number.
215 static int metag_tbisig_map(struct irq_domain
*d
, unsigned int irq
,
219 irq_set_chip_and_handler(irq
, &meta_irq_type
, handle_percpu_irq
);
221 irq_set_chip_and_handler(irq
, &meta_irq_type
, handle_simple_irq
);
226 static const struct irq_domain_ops metag_tbisig_domain_ops
= {
227 .map
= metag_tbisig_map
,
231 * void init_IRQ(void)
237 * This function should be called during kernel startup to initialize
238 * the IRQ handling routines.
240 void __init
init_IRQ(void)
242 root_domain
= irq_domain_add_linear(NULL
, 32,
243 &metag_tbisig_domain_ops
, NULL
);
244 if (unlikely(!root_domain
))
245 panic("init_IRQ: cannot add root IRQ domain");
247 irq_ctx_init(smp_processor_id());
252 if (machine_desc
->init_irq
)
253 machine_desc
->init_irq();
256 int __init
arch_probe_nr_irqs(void)
258 if (machine_desc
->nr_irqs
)
259 nr_irqs
= machine_desc
->nr_irqs
;
263 #ifdef CONFIG_HOTPLUG_CPU
264 static void route_irq(struct irq_data
*data
, unsigned int irq
, unsigned int cpu
)
266 struct irq_desc
*desc
= irq_to_desc(irq
);
267 struct irq_chip
*chip
= irq_data_get_irq_chip(data
);
270 raw_spin_lock_irqsave(&desc
->lock
, flags
);
271 if (chip
->irq_set_affinity
)
272 chip
->irq_set_affinity(data
, cpumask_of(cpu
), false);
273 raw_spin_unlock_irqrestore(&desc
->lock
, flags
);
277 * The CPU has been marked offline. Migrate IRQs off this CPU. If
278 * the affinity settings do not allow other CPUs, force them onto any
281 void migrate_irqs(void)
283 unsigned int i
, cpu
= smp_processor_id();
284 struct irq_desc
*desc
;
286 for_each_irq_desc(i
, desc
) {
287 struct irq_data
*data
= irq_desc_get_irq_data(desc
);
290 if (irqd_is_per_cpu(data
))
293 if (!cpumask_test_cpu(cpu
, data
->affinity
))
296 newcpu
= cpumask_any_and(data
->affinity
, cpu_online_mask
);
298 if (newcpu
>= nr_cpu_ids
) {
299 pr_info_ratelimited("IRQ%u no longer affine to CPU%u\n",
302 cpumask_setall(data
->affinity
);
303 newcpu
= cpumask_any_and(data
->affinity
,
307 route_irq(data
, i
, newcpu
);
310 #endif /* CONFIG_HOTPLUG_CPU */