Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/teigland/dlm
[pandora-kernel.git] / arch / blackfin / kernel / ipipe.c
1 /* -*- linux-c -*-
2  * linux/arch/blackfin/kernel/ipipe.c
3  *
4  * Copyright (C) 2005-2007 Philippe Gerum.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation, Inc., 675 Mass Ave, Cambridge MA 02139,
9  * USA; either version 2 of the License, or (at your option) any later
10  * version.
11  *
12  * This program is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15  * GNU General Public License for more details.
16  *
17  * You should have received a copy of the GNU General Public License
18  * along with this program; if not, write to the Free Software
19  * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
20  *
21  * Architecture-dependent I-pipe support for the Blackfin.
22  */
23
24 #include <linux/kernel.h>
25 #include <linux/sched.h>
26 #include <linux/module.h>
27 #include <linux/interrupt.h>
28 #include <linux/percpu.h>
29 #include <linux/bitops.h>
30 #include <linux/slab.h>
31 #include <linux/errno.h>
32 #include <linux/kthread.h>
33 #include <linux/unistd.h>
34 #include <linux/io.h>
35 #include <asm/system.h>
36 #include <asm/atomic.h>
37
38 DEFINE_PER_CPU(struct pt_regs, __ipipe_tick_regs);
39
40 asmlinkage void asm_do_IRQ(unsigned int irq, struct pt_regs *regs);
41
42 static void __ipipe_no_irqtail(void);
43
44 unsigned long __ipipe_irq_tail_hook = (unsigned long)&__ipipe_no_irqtail;
45 EXPORT_SYMBOL(__ipipe_irq_tail_hook);
46
47 unsigned long __ipipe_core_clock;
48 EXPORT_SYMBOL(__ipipe_core_clock);
49
50 unsigned long __ipipe_freq_scale;
51 EXPORT_SYMBOL(__ipipe_freq_scale);
52
53 atomic_t __ipipe_irq_lvdepth[IVG15 + 1];
54
55 unsigned long __ipipe_irq_lvmask = bfin_no_irqs;
56 EXPORT_SYMBOL(__ipipe_irq_lvmask);
57
58 static void __ipipe_ack_irq(unsigned irq, struct irq_desc *desc)
59 {
60         desc->ipipe_ack(irq, desc);
61 }
62
63 /*
64  * __ipipe_enable_pipeline() -- We are running on the boot CPU, hw
65  * interrupts are off, and secondary CPUs are still lost in space.
66  */
67 void __ipipe_enable_pipeline(void)
68 {
69         unsigned irq;
70
71         __ipipe_core_clock = get_cclk(); /* Fetch this once. */
72         __ipipe_freq_scale = 1000000000UL / __ipipe_core_clock;
73
74         for (irq = 0; irq < NR_IRQS; ++irq)
75                 ipipe_virtualize_irq(ipipe_root_domain,
76                                      irq,
77                                      (ipipe_irq_handler_t)&asm_do_IRQ,
78                                      NULL,
79                                      &__ipipe_ack_irq,
80                                      IPIPE_HANDLE_MASK | IPIPE_PASS_MASK);
81 }
82
83 /*
84  * __ipipe_handle_irq() -- IPIPE's generic IRQ handler. An optimistic
85  * interrupt protection log is maintained here for each domain. Hw
86  * interrupts are masked on entry.
87  */
88 void __ipipe_handle_irq(unsigned irq, struct pt_regs *regs)
89 {
90         struct ipipe_percpu_domain_data *p = ipipe_root_cpudom_ptr();
91         struct ipipe_domain *this_domain, *next_domain;
92         struct list_head *head, *pos;
93         struct ipipe_irqdesc *idesc;
94         int m_ack, s = -1;
95
96         /*
97          * Software-triggered IRQs do not need any ack.  The contents
98          * of the register frame should only be used when processing
99          * the timer interrupt, but not for handling any other
100          * interrupt.
101          */
102         m_ack = (regs == NULL || irq == IRQ_SYSTMR || irq == IRQ_CORETMR);
103         this_domain = __ipipe_current_domain;
104         idesc = &this_domain->irqs[irq];
105
106         if (unlikely(test_bit(IPIPE_STICKY_FLAG, &idesc->control)))
107                 head = &this_domain->p_link;
108         else {
109                 head = __ipipe_pipeline.next;
110                 next_domain = list_entry(head, struct ipipe_domain, p_link);
111                 idesc = &next_domain->irqs[irq];
112                 if (likely(test_bit(IPIPE_WIRED_FLAG, &idesc->control))) {
113                         if (!m_ack && idesc->acknowledge != NULL)
114                                 idesc->acknowledge(irq, irq_to_desc(irq));
115                         if (test_bit(IPIPE_SYNCDEFER_FLAG, &p->status))
116                                 s = __test_and_set_bit(IPIPE_STALL_FLAG,
117                                                        &p->status);
118                         __ipipe_dispatch_wired(next_domain, irq);
119                         goto out;
120                 }
121         }
122
123         /* Ack the interrupt. */
124
125         pos = head;
126         while (pos != &__ipipe_pipeline) {
127                 next_domain = list_entry(pos, struct ipipe_domain, p_link);
128                 idesc = &next_domain->irqs[irq];
129                 if (test_bit(IPIPE_HANDLE_FLAG, &idesc->control)) {
130                         __ipipe_set_irq_pending(next_domain, irq);
131                         if (!m_ack && idesc->acknowledge != NULL) {
132                                 idesc->acknowledge(irq, irq_to_desc(irq));
133                                 m_ack = 1;
134                         }
135                 }
136                 if (!test_bit(IPIPE_PASS_FLAG, &idesc->control))
137                         break;
138                 pos = next_domain->p_link.next;
139         }
140
141         /*
142          * Now walk the pipeline, yielding control to the highest
143          * priority domain that has pending interrupt(s) or
144          * immediately to the current domain if the interrupt has been
145          * marked as 'sticky'. This search does not go beyond the
146          * current domain in the pipeline. We also enforce the
147          * additional root stage lock (blackfin-specific).
148          */
149         if (test_bit(IPIPE_SYNCDEFER_FLAG, &p->status))
150                 s = __test_and_set_bit(IPIPE_STALL_FLAG, &p->status);
151
152         /*
153          * If the interrupt preempted the head domain, then do not
154          * even try to walk the pipeline, unless an interrupt is
155          * pending for it.
156          */
157         if (test_bit(IPIPE_AHEAD_FLAG, &this_domain->flags) &&
158             ipipe_head_cpudom_var(irqpend_himask) == 0)
159                 goto out;
160
161         __ipipe_walk_pipeline(head);
162 out:
163         if (!s)
164                 __clear_bit(IPIPE_STALL_FLAG, &p->status);
165 }
166
167 void __ipipe_enable_irqdesc(struct ipipe_domain *ipd, unsigned irq)
168 {
169         struct irq_desc *desc = irq_to_desc(irq);
170         int prio = __ipipe_get_irq_priority(irq);
171
172         desc->depth = 0;
173         if (ipd != &ipipe_root &&
174             atomic_inc_return(&__ipipe_irq_lvdepth[prio]) == 1)
175                 __set_bit(prio, &__ipipe_irq_lvmask);
176 }
177 EXPORT_SYMBOL(__ipipe_enable_irqdesc);
178
179 void __ipipe_disable_irqdesc(struct ipipe_domain *ipd, unsigned irq)
180 {
181         int prio = __ipipe_get_irq_priority(irq);
182
183         if (ipd != &ipipe_root &&
184             atomic_dec_and_test(&__ipipe_irq_lvdepth[prio]))
185                 __clear_bit(prio, &__ipipe_irq_lvmask);
186 }
187 EXPORT_SYMBOL(__ipipe_disable_irqdesc);
188
189 int __ipipe_syscall_root(struct pt_regs *regs)
190 {
191         struct ipipe_percpu_domain_data *p;
192         unsigned long flags;
193         int ret;
194
195         /*
196          * We need to run the IRQ tail hook whenever we don't
197          * propagate a syscall to higher domains, because we know that
198          * important operations might be pending there (e.g. Xenomai
199          * deferred rescheduling).
200          */
201
202         if (regs->orig_p0 < NR_syscalls) {
203                 void (*hook)(void) = (void (*)(void))__ipipe_irq_tail_hook;
204                 hook();
205                 if ((current->flags & PF_EVNOTIFY) == 0)
206                         return 0;
207         }
208
209         /*
210          * This routine either returns:
211          * 0 -- if the syscall is to be passed to Linux;
212          * >0 -- if the syscall should not be passed to Linux, and no
213          * tail work should be performed;
214          * <0 -- if the syscall should not be passed to Linux but the
215          * tail work has to be performed (for handling signals etc).
216          */
217
218         if (!__ipipe_event_monitored_p(IPIPE_EVENT_SYSCALL))
219                 return 0;
220
221         ret = __ipipe_dispatch_event(IPIPE_EVENT_SYSCALL, regs);
222
223         local_irq_save_hw(flags);
224
225         if (!__ipipe_root_domain_p) {
226                 local_irq_restore_hw(flags);
227                 return 1;
228         }
229
230         p = ipipe_root_cpudom_ptr();
231         if ((p->irqpend_himask & IPIPE_IRQMASK_VIRT) != 0)
232                 __ipipe_sync_pipeline(IPIPE_IRQMASK_VIRT);
233
234         local_irq_restore_hw(flags);
235
236         return -ret;
237 }
238
239 unsigned long ipipe_critical_enter(void (*syncfn) (void))
240 {
241         unsigned long flags;
242
243         local_irq_save_hw(flags);
244
245         return flags;
246 }
247
248 void ipipe_critical_exit(unsigned long flags)
249 {
250         local_irq_restore_hw(flags);
251 }
252
253 static void __ipipe_no_irqtail(void)
254 {
255 }
256
257 int ipipe_get_sysinfo(struct ipipe_sysinfo *info)
258 {
259         info->ncpus = num_online_cpus();
260         info->cpufreq = ipipe_cpu_freq();
261         info->archdep.tmirq = IPIPE_TIMER_IRQ;
262         info->archdep.tmfreq = info->cpufreq;
263
264         return 0;
265 }
266
267 /*
268  * ipipe_trigger_irq() -- Push the interrupt at front of the pipeline
269  * just like if it has been actually received from a hw source. Also
270  * works for virtual interrupts.
271  */
272 int ipipe_trigger_irq(unsigned irq)
273 {
274         unsigned long flags;
275
276 #ifdef CONFIG_IPIPE_DEBUG
277         if (irq >= IPIPE_NR_IRQS ||
278             (ipipe_virtual_irq_p(irq)
279              && !test_bit(irq - IPIPE_VIRQ_BASE, &__ipipe_virtual_irq_map)))
280                 return -EINVAL;
281 #endif
282
283         local_irq_save_hw(flags);
284         __ipipe_handle_irq(irq, NULL);
285         local_irq_restore_hw(flags);
286
287         return 1;
288 }
289
290 asmlinkage void __ipipe_sync_root(void)
291 {
292         void (*irq_tail_hook)(void) = (void (*)(void))__ipipe_irq_tail_hook;
293         unsigned long flags;
294
295         BUG_ON(irqs_disabled());
296
297         local_irq_save_hw(flags);
298
299         if (irq_tail_hook)
300                 irq_tail_hook();
301
302         clear_thread_flag(TIF_IRQ_SYNC);
303
304         if (ipipe_root_cpudom_var(irqpend_himask) != 0)
305                 __ipipe_sync_pipeline(IPIPE_IRQMASK_ANY);
306
307         local_irq_restore_hw(flags);
308 }
309
310 void ___ipipe_sync_pipeline(unsigned long syncmask)
311 {
312         if (__ipipe_root_domain_p &&
313             test_bit(IPIPE_SYNCDEFER_FLAG, &ipipe_root_cpudom_var(status)))
314                 return;
315
316         __ipipe_sync_stage(syncmask);
317 }
318
319 void __ipipe_disable_root_irqs_hw(void)
320 {
321         /*
322          * This code is called by the ins{bwl} routines (see
323          * arch/blackfin/lib/ins.S), which are heavily used by the
324          * network stack. It masks all interrupts but those handled by
325          * non-root domains, so that we keep decent network transfer
326          * rates for Linux without inducing pathological jitter for
327          * the real-time domain.
328          */
329         bfin_sti(__ipipe_irq_lvmask);
330         __set_bit(IPIPE_STALL_FLAG, &ipipe_root_cpudom_var(status));
331 }
332
333 void __ipipe_enable_root_irqs_hw(void)
334 {
335         __clear_bit(IPIPE_STALL_FLAG, &ipipe_root_cpudom_var(status));
336         bfin_sti(bfin_irq_flags);
337 }