blob: 858748eaa144f91c7f9b4c88fbc8bb83a8d419d7 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * linux/arch/arm/vfp/vfpmodule.c
3 *
4 * Copyright (C) 2004 ARM Limited.
5 * Written by Deep Blue Solutions Limited.
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
Linus Torvalds1da177e2005-04-16 15:20:36 -070011#include <linux/types.h>
Russell King90b44192010-12-18 10:59:49 +000012#include <linux/cpu.h>
Colin Cross746a9d12011-02-10 02:08:32 -080013#include <linux/cpu_pm.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070014#include <linux/kernel.h>
Russell King90b44192010-12-18 10:59:49 +000015#include <linux/notifier.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070016#include <linux/signal.h>
17#include <linux/sched.h>
Russell King90b44192010-12-18 10:59:49 +000018#include <linux/smp.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070019#include <linux/init.h>
Russell Kingd6551e82006-06-21 13:31:52 +010020
Russell King15d07dc2012-03-28 18:30:01 +010021#include <asm/cp15.h>
Tony Lindgren5aaf2542010-07-01 13:41:05 +010022#include <asm/cputype.h>
David Howells9f97da72012-03-28 18:30:01 +010023#include <asm/system_info.h>
Russell Kingd6551e82006-06-21 13:31:52 +010024#include <asm/thread_notify.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070025#include <asm/vfp.h>
26
27#include "vfpinstr.h"
28#include "vfp.h"
29
30/*
31 * Our undef handlers (in entry.S)
32 */
33void vfp_testing_entry(void);
34void vfp_support_entry(void);
Russell King5d4cae52007-06-10 12:22:20 +010035void vfp_null_entry(void);
Linus Torvalds1da177e2005-04-16 15:20:36 -070036
Russell King5d4cae52007-06-10 12:22:20 +010037void (*vfp_vector)(void) = vfp_null_entry;
Russell Kingaf61bdf2011-07-09 13:44:04 +010038
39/*
Linus Torvalds1da177e2005-04-16 15:20:36 -070040 * Dual-use variable.
41 * Used in startup: set to non-zero if VFP checks fail
42 * After startup, holds VFP architecture
43 */
44unsigned int VFP_arch;
45
Russell King0d782dc2009-12-12 14:47:40 +000046/*
Russell Kingf8f2a852011-07-09 16:09:43 +010047 * The pointer to the vfpstate structure of the thread which currently
48 * owns the context held in the VFP hardware, or NULL if the hardware
49 * context is invalid.
50 *
51 * For UP, this is sufficient to tell which thread owns the VFP context.
52 * However, for SMP, we also need to check the CPU number stored in the
53 * saved state too to catch migrations.
54 */
55union vfp_state *vfp_current_hw_state[NR_CPUS];
56
57/*
58 * Is 'thread's most up to date state stored in this CPUs hardware?
59 * Must be called from non-preemptible context.
60 */
61static bool vfp_state_in_hw(unsigned int cpu, struct thread_info *thread)
62{
63#ifdef CONFIG_SMP
64 if (thread->vfpstate.hard.cpu != cpu)
65 return false;
66#endif
67 return vfp_current_hw_state[cpu] == &thread->vfpstate;
68}
69
70/*
71 * Force a reload of the VFP context from the thread structure. We do
72 * this by ensuring that access to the VFP hardware is disabled, and
Santosh Shilimkar48af9fe2011-09-02 21:12:36 +053073 * clear vfp_current_hw_state. Must be called from non-preemptible context.
Russell Kingf8f2a852011-07-09 16:09:43 +010074 */
75static void vfp_force_reload(unsigned int cpu, struct thread_info *thread)
76{
77 if (vfp_state_in_hw(cpu, thread)) {
78 fmxr(FPEXC, fmrx(FPEXC) & ~FPEXC_EN);
79 vfp_current_hw_state[cpu] = NULL;
80 }
81#ifdef CONFIG_SMP
82 thread->vfpstate.hard.cpu = NR_CPUS;
83#endif
84}
85
86/*
Russell King0d782dc2009-12-12 14:47:40 +000087 * Per-thread VFP initialization.
88 */
89static void vfp_thread_flush(struct thread_info *thread)
90{
91 union vfp_state *vfp = &thread->vfpstate;
92 unsigned int cpu;
93
Russell King19dad352011-07-09 17:41:33 +010094 /*
95 * Disable VFP to ensure we initialize it first. We must ensure
96 * that the modification of vfp_current_hw_state[] and hardware
97 * disable are done for the same CPU and without preemption.
98 *
99 * Do this first to ensure that preemption won't overwrite our
100 * state saving should access to the VFP be enabled at this point.
101 */
102 cpu = get_cpu();
103 if (vfp_current_hw_state[cpu] == vfp)
104 vfp_current_hw_state[cpu] = NULL;
105 fmxr(FPEXC, fmrx(FPEXC) & ~FPEXC_EN);
106 put_cpu();
107
Russell King0d782dc2009-12-12 14:47:40 +0000108 memset(vfp, 0, sizeof(union vfp_state));
109
110 vfp->hard.fpexc = FPEXC_EN;
111 vfp->hard.fpscr = FPSCR_ROUND_NEAREST;
Russell Kingf8f2a852011-07-09 16:09:43 +0100112#ifdef CONFIG_SMP
113 vfp->hard.cpu = NR_CPUS;
114#endif
Russell King0d782dc2009-12-12 14:47:40 +0000115}
116
Russell King797245f2009-12-18 14:34:43 +0000117static void vfp_thread_exit(struct thread_info *thread)
Russell King0d782dc2009-12-12 14:47:40 +0000118{
119 /* release case: Per-thread VFP cleanup. */
120 union vfp_state *vfp = &thread->vfpstate;
Russell King797245f2009-12-18 14:34:43 +0000121 unsigned int cpu = get_cpu();
Russell King0d782dc2009-12-12 14:47:40 +0000122
Russell Kingaf61bdf2011-07-09 13:44:04 +0100123 if (vfp_current_hw_state[cpu] == vfp)
124 vfp_current_hw_state[cpu] = NULL;
Russell King797245f2009-12-18 14:34:43 +0000125 put_cpu();
Russell King0d782dc2009-12-12 14:47:40 +0000126}
127
Catalin Marinasc98c0972011-04-06 16:17:17 +0100128static void vfp_thread_copy(struct thread_info *thread)
129{
130 struct thread_info *parent = current_thread_info();
131
132 vfp_sync_hwstate(parent);
133 thread->vfpstate = parent->vfpstate;
Russell Kingf8f2a852011-07-09 16:09:43 +0100134#ifdef CONFIG_SMP
135 thread->vfpstate.hard.cpu = NR_CPUS;
136#endif
Catalin Marinasc98c0972011-04-06 16:17:17 +0100137}
138
Russell King0d782dc2009-12-12 14:47:40 +0000139/*
140 * When this function is called with the following 'cmd's, the following
141 * is true while this function is being run:
142 * THREAD_NOFTIFY_SWTICH:
143 * - the previously running thread will not be scheduled onto another CPU.
144 * - the next thread to be run (v) will not be running on another CPU.
145 * - thread->cpu is the local CPU number
146 * - not preemptible as we're called in the middle of a thread switch
147 * THREAD_NOTIFY_FLUSH:
148 * - the thread (v) will be running on the local CPU, so
149 * v === current_thread_info()
150 * - thread->cpu is the local CPU number at the time it is accessed,
151 * but may change at any time.
152 * - we could be preempted if tree preempt rcu is enabled, so
153 * it is unsafe to use thread->cpu.
Russell King797245f2009-12-18 14:34:43 +0000154 * THREAD_NOTIFY_EXIT
155 * - the thread (v) will be running on the local CPU, so
156 * v === current_thread_info()
157 * - thread->cpu is the local CPU number at the time it is accessed,
158 * but may change at any time.
159 * - we could be preempted if tree preempt rcu is enabled, so
160 * it is unsafe to use thread->cpu.
Russell King0d782dc2009-12-12 14:47:40 +0000161 */
Russell Kingd6551e82006-06-21 13:31:52 +0100162static int vfp_notifier(struct notifier_block *self, unsigned long cmd, void *v)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700163{
Russell Kingd6551e82006-06-21 13:31:52 +0100164 struct thread_info *thread = v;
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100165 u32 fpexc;
166#ifdef CONFIG_SMP
167 unsigned int cpu;
168#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700169
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100170 switch (cmd) {
171 case THREAD_NOTIFY_SWITCH:
172 fpexc = fmrx(FPEXC);
Catalin Marinasc6428462007-01-24 18:47:08 +0100173
174#ifdef CONFIG_SMP
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100175 cpu = thread->cpu;
Russell King0d782dc2009-12-12 14:47:40 +0000176
Catalin Marinasc6428462007-01-24 18:47:08 +0100177 /*
178 * On SMP, if VFP is enabled, save the old state in
179 * case the thread migrates to a different CPU. The
180 * restoring is done lazily.
181 */
Russell Kingf8f2a852011-07-09 16:09:43 +0100182 if ((fpexc & FPEXC_EN) && vfp_current_hw_state[cpu])
Russell Kingaf61bdf2011-07-09 13:44:04 +0100183 vfp_save_state(vfp_current_hw_state[cpu], fpexc);
Catalin Marinasc6428462007-01-24 18:47:08 +0100184#endif
185
Russell King681a4992006-08-27 12:38:34 +0100186 /*
187 * Always disable VFP so we can lazily save/restore the
188 * old state.
189 */
Russell King228adef2007-07-18 09:37:10 +0100190 fmxr(FPEXC, fpexc & ~FPEXC_EN);
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100191 break;
Russell King681a4992006-08-27 12:38:34 +0100192
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100193 case THREAD_NOTIFY_FLUSH:
Russell King0d782dc2009-12-12 14:47:40 +0000194 vfp_thread_flush(thread);
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100195 break;
196
197 case THREAD_NOTIFY_EXIT:
Russell King797245f2009-12-18 14:34:43 +0000198 vfp_thread_exit(thread);
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100199 break;
Catalin Marinasc98c0972011-04-06 16:17:17 +0100200
201 case THREAD_NOTIFY_COPY:
202 vfp_thread_copy(thread);
203 break;
Catalin Marinas2e82669a2011-04-06 16:16:29 +0100204 }
Russell King681a4992006-08-27 12:38:34 +0100205
Russell Kingd6551e82006-06-21 13:31:52 +0100206 return NOTIFY_DONE;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700207}
208
Russell Kingd6551e82006-06-21 13:31:52 +0100209static struct notifier_block vfp_notifier_block = {
210 .notifier_call = vfp_notifier,
211};
Linus Torvalds1da177e2005-04-16 15:20:36 -0700212
213/*
214 * Raise a SIGFPE for the current process.
215 * sicode describes the signal being raised.
216 */
Russell King2bbd7e92011-01-08 12:05:09 +0000217static void vfp_raise_sigfpe(unsigned int sicode, struct pt_regs *regs)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700218{
219 siginfo_t info;
220
221 memset(&info, 0, sizeof(info));
222
223 info.si_signo = SIGFPE;
224 info.si_code = sicode;
Al Viro35d59fc2006-10-11 17:22:44 +0100225 info.si_addr = (void __user *)(instruction_pointer(regs) - 4);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700226
227 /*
228 * This is the same as NWFPE, because it's not clear what
229 * this is used for
230 */
231 current->thread.error_code = 0;
232 current->thread.trap_no = 6;
233
Russell Kingda411192005-06-29 23:02:02 +0100234 send_sig_info(SIGFPE, &info, current);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700235}
236
Catalin Marinasc98929c2007-11-22 18:32:01 +0100237static void vfp_panic(char *reason, u32 inst)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700238{
239 int i;
240
241 printk(KERN_ERR "VFP: Error: %s\n", reason);
242 printk(KERN_ERR "VFP: EXC 0x%08x SCR 0x%08x INST 0x%08x\n",
Catalin Marinasc98929c2007-11-22 18:32:01 +0100243 fmrx(FPEXC), fmrx(FPSCR), inst);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700244 for (i = 0; i < 32; i += 2)
245 printk(KERN_ERR "VFP: s%2u: 0x%08x s%2u: 0x%08x\n",
246 i, vfp_get_float(i), i+1, vfp_get_float(i+1));
247}
248
249/*
250 * Process bitmask of exception conditions.
251 */
252static void vfp_raise_exceptions(u32 exceptions, u32 inst, u32 fpscr, struct pt_regs *regs)
253{
254 int si_code = 0;
255
256 pr_debug("VFP: raising exceptions %08x\n", exceptions);
257
Daniel Jacobowitz7c6f2512006-08-27 12:42:08 +0100258 if (exceptions == VFP_EXCEPTION_ERROR) {
Catalin Marinasc98929c2007-11-22 18:32:01 +0100259 vfp_panic("unhandled bounce", inst);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700260 vfp_raise_sigfpe(0, regs);
261 return;
262 }
263
264 /*
Catalin Marinasdbead402010-02-01 18:50:40 +0100265 * If any of the status flags are set, update the FPSCR.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700266 * Comparison instructions always return at least one of
267 * these flags set.
268 */
Catalin Marinasdbead402010-02-01 18:50:40 +0100269 if (exceptions & (FPSCR_N|FPSCR_Z|FPSCR_C|FPSCR_V))
270 fpscr &= ~(FPSCR_N|FPSCR_Z|FPSCR_C|FPSCR_V);
271
Linus Torvalds1da177e2005-04-16 15:20:36 -0700272 fpscr |= exceptions;
273
274 fmxr(FPSCR, fpscr);
275
276#define RAISE(stat,en,sig) \
277 if (exceptions & stat && fpscr & en) \
278 si_code = sig;
279
280 /*
281 * These are arranged in priority order, least to highest.
282 */
Takashi Ohmasae0f205d2006-10-23 11:19:40 +0100283 RAISE(FPSCR_DZC, FPSCR_DZE, FPE_FLTDIV);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700284 RAISE(FPSCR_IXC, FPSCR_IXE, FPE_FLTRES);
285 RAISE(FPSCR_UFC, FPSCR_UFE, FPE_FLTUND);
286 RAISE(FPSCR_OFC, FPSCR_OFE, FPE_FLTOVF);
287 RAISE(FPSCR_IOC, FPSCR_IOE, FPE_FLTINV);
288
289 if (si_code)
290 vfp_raise_sigfpe(si_code, regs);
291}
292
293/*
294 * Emulate a VFP instruction.
295 */
296static u32 vfp_emulate_instruction(u32 inst, u32 fpscr, struct pt_regs *regs)
297{
Daniel Jacobowitz7c6f2512006-08-27 12:42:08 +0100298 u32 exceptions = VFP_EXCEPTION_ERROR;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700299
300 pr_debug("VFP: emulate: INST=0x%08x SCR=0x%08x\n", inst, fpscr);
301
302 if (INST_CPRTDO(inst)) {
303 if (!INST_CPRT(inst)) {
304 /*
305 * CPDO
306 */
307 if (vfp_single(inst)) {
308 exceptions = vfp_single_cpdo(inst, fpscr);
309 } else {
310 exceptions = vfp_double_cpdo(inst, fpscr);
311 }
312 } else {
313 /*
314 * A CPRT instruction can not appear in FPINST2, nor
315 * can it cause an exception. Therefore, we do not
316 * have to emulate it.
317 */
318 }
319 } else {
320 /*
321 * A CPDT instruction can not appear in FPINST2, nor can
322 * it cause an exception. Therefore, we do not have to
323 * emulate it.
324 */
325 }
Russell King928bd1b2006-04-25 20:41:27 +0100326 return exceptions & ~VFP_NAN_FLAG;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700327}
328
329/*
330 * Package up a bounce condition.
331 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100332void VFP_bounce(u32 trigger, u32 fpexc, struct pt_regs *regs)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700333{
Catalin Marinasc98929c2007-11-22 18:32:01 +0100334 u32 fpscr, orig_fpscr, fpsid, exceptions;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700335
336 pr_debug("VFP: bounce: trigger %08x fpexc %08x\n", trigger, fpexc);
337
338 /*
Catalin Marinasc98929c2007-11-22 18:32:01 +0100339 * At this point, FPEXC can have the following configuration:
340 *
341 * EX DEX IXE
342 * 0 1 x - synchronous exception
343 * 1 x 0 - asynchronous exception
344 * 1 x 1 - sychronous on VFP subarch 1 and asynchronous on later
345 * 0 0 1 - synchronous on VFP9 (non-standard subarch 1
346 * implementation), undefined otherwise
347 *
348 * Clear various bits and enable access to the VFP so we can
349 * handle the bounce.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700350 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100351 fmxr(FPEXC, fpexc & ~(FPEXC_EX|FPEXC_DEX|FPEXC_FP2V|FPEXC_VV|FPEXC_TRAP_MASK));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700352
Catalin Marinasc98929c2007-11-22 18:32:01 +0100353 fpsid = fmrx(FPSID);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700354 orig_fpscr = fpscr = fmrx(FPSCR);
355
356 /*
Catalin Marinasc98929c2007-11-22 18:32:01 +0100357 * Check for the special VFP subarch 1 and FPSCR.IXE bit case
Linus Torvalds1da177e2005-04-16 15:20:36 -0700358 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100359 if ((fpsid & FPSID_ARCH_MASK) == (1 << FPSID_ARCH_BIT)
360 && (fpscr & FPSCR_IXE)) {
361 /*
362 * Synchronous exception, emulate the trigger instruction
363 */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700364 goto emulate;
365 }
366
Catalin Marinasc98929c2007-11-22 18:32:01 +0100367 if (fpexc & FPEXC_EX) {
Catalin Marinas85d69432009-05-30 14:00:18 +0100368#ifndef CONFIG_CPU_FEROCEON
Catalin Marinasc98929c2007-11-22 18:32:01 +0100369 /*
370 * Asynchronous exception. The instruction is read from FPINST
371 * and the interrupted instruction has to be restarted.
372 */
373 trigger = fmrx(FPINST);
374 regs->ARM_pc -= 4;
Catalin Marinas85d69432009-05-30 14:00:18 +0100375#endif
Catalin Marinasc98929c2007-11-22 18:32:01 +0100376 } else if (!(fpexc & FPEXC_DEX)) {
377 /*
378 * Illegal combination of bits. It can be caused by an
379 * unallocated VFP instruction but with FPSCR.IXE set and not
380 * on VFP subarch 1.
381 */
382 vfp_raise_exceptions(VFP_EXCEPTION_ERROR, trigger, fpscr, regs);
George G. Davisf2255be2009-04-01 20:27:18 +0100383 goto exit;
Catalin Marinasc98929c2007-11-22 18:32:01 +0100384 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700385
386 /*
Catalin Marinasc98929c2007-11-22 18:32:01 +0100387 * Modify fpscr to indicate the number of iterations remaining.
388 * If FPEXC.EX is 0, FPEXC.DEX is 1 and the FPEXC.VV bit indicates
389 * whether FPEXC.VECITR or FPSCR.LEN is used.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700390 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100391 if (fpexc & (FPEXC_EX | FPEXC_VV)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700392 u32 len;
393
394 len = fpexc + (1 << FPEXC_LENGTH_BIT);
395
396 fpscr &= ~FPSCR_LENGTH_MASK;
397 fpscr |= (len & FPEXC_LENGTH_MASK) << (FPSCR_LENGTH_BIT - FPEXC_LENGTH_BIT);
398 }
399
400 /*
401 * Handle the first FP instruction. We used to take note of the
402 * FPEXC bounce reason, but this appears to be unreliable.
403 * Emulate the bounced instruction instead.
404 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100405 exceptions = vfp_emulate_instruction(trigger, fpscr, regs);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700406 if (exceptions)
Catalin Marinasc98929c2007-11-22 18:32:01 +0100407 vfp_raise_exceptions(exceptions, trigger, orig_fpscr, regs);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700408
409 /*
Catalin Marinasc98929c2007-11-22 18:32:01 +0100410 * If there isn't a second FP instruction, exit now. Note that
411 * the FPEXC.FP2V bit is valid only if FPEXC.EX is 1.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700412 */
Catalin Marinasc98929c2007-11-22 18:32:01 +0100413 if (fpexc ^ (FPEXC_EX | FPEXC_FP2V))
George G. Davisf2255be2009-04-01 20:27:18 +0100414 goto exit;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700415
416 /*
417 * The barrier() here prevents fpinst2 being read
418 * before the condition above.
419 */
420 barrier();
421 trigger = fmrx(FPINST2);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700422
423 emulate:
Catalin Marinasc98929c2007-11-22 18:32:01 +0100424 exceptions = vfp_emulate_instruction(trigger, orig_fpscr, regs);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700425 if (exceptions)
426 vfp_raise_exceptions(exceptions, trigger, orig_fpscr, regs);
George G. Davisf2255be2009-04-01 20:27:18 +0100427 exit:
428 preempt_enable();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700429}
Russell Kingefe90d22006-12-08 15:22:20 +0000430
Russell King8e140362007-01-02 23:40:30 +0000431static void vfp_enable(void *unused)
432{
433 u32 access = get_copro_access();
434
435 /*
436 * Enable full access to VFP (cp10 and cp11)
437 */
438 set_copro_access(access | CPACC_FULL(10) | CPACC_FULL(11));
439}
440
Colin Cross746a9d12011-02-10 02:08:32 -0800441#ifdef CONFIG_CPU_PM
Rafael J. Wysocki328f5cc2011-04-22 22:02:33 +0200442static int vfp_pm_suspend(void)
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100443{
444 struct thread_info *ti = current_thread_info();
445 u32 fpexc = fmrx(FPEXC);
446
447 /* if vfp is on, then save state for resumption */
448 if (fpexc & FPEXC_EN) {
449 printk(KERN_DEBUG "%s: saving vfp state\n", __func__);
450 vfp_save_state(&ti->vfpstate, fpexc);
451
452 /* disable, just in case */
453 fmxr(FPEXC, fmrx(FPEXC) & ~FPEXC_EN);
454 }
455
456 /* clear any information we had about last context state */
Russell Kingaf61bdf2011-07-09 13:44:04 +0100457 memset(vfp_current_hw_state, 0, sizeof(vfp_current_hw_state));
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100458
459 return 0;
460}
461
Rafael J. Wysocki328f5cc2011-04-22 22:02:33 +0200462static void vfp_pm_resume(void)
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100463{
464 /* ensure we have access to the vfp */
465 vfp_enable(NULL);
466
467 /* and disable it to ensure the next usage restores the state */
468 fmxr(FPEXC, fmrx(FPEXC) & ~FPEXC_EN);
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100469}
470
Colin Cross746a9d12011-02-10 02:08:32 -0800471static int vfp_cpu_pm_notifier(struct notifier_block *self, unsigned long cmd,
472 void *v)
473{
474 switch (cmd) {
475 case CPU_PM_ENTER:
476 vfp_pm_suspend();
477 break;
478 case CPU_PM_ENTER_FAILED:
479 case CPU_PM_EXIT:
480 vfp_pm_resume();
481 break;
482 }
483 return NOTIFY_OK;
484}
485
486static struct notifier_block vfp_cpu_pm_notifier_block = {
487 .notifier_call = vfp_cpu_pm_notifier,
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100488};
489
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100490static void vfp_pm_init(void)
491{
Colin Cross746a9d12011-02-10 02:08:32 -0800492 cpu_pm_register_notifier(&vfp_cpu_pm_notifier_block);
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100493}
494
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100495#else
496static inline void vfp_pm_init(void) { }
Colin Cross746a9d12011-02-10 02:08:32 -0800497#endif /* CONFIG_CPU_PM */
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100498
Russell Kingf8f2a852011-07-09 16:09:43 +0100499/*
500 * Ensure that the VFP state stored in 'thread->vfpstate' is up to date
501 * with the hardware state.
502 */
Russell Kingad187f92010-02-06 11:36:23 +0000503void vfp_sync_hwstate(struct thread_info *thread)
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100504{
505 unsigned int cpu = get_cpu();
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100506
Russell Kingf8f2a852011-07-09 16:09:43 +0100507 if (vfp_state_in_hw(cpu, thread)) {
Russell King54cb3db2010-02-06 11:27:45 +0000508 u32 fpexc = fmrx(FPEXC);
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100509
Russell King54cb3db2010-02-06 11:27:45 +0000510 /*
511 * Save the last VFP state on this CPU.
512 */
513 fmxr(FPEXC, fpexc | FPEXC_EN);
514 vfp_save_state(&thread->vfpstate, fpexc | FPEXC_EN);
Russell Kingad187f92010-02-06 11:36:23 +0000515 fmxr(FPEXC, fpexc);
516 }
517
518 put_cpu();
519}
520
Russell Kingf8f2a852011-07-09 16:09:43 +0100521/* Ensure that the thread reloads the hardware VFP state on the next use. */
Russell Kingad187f92010-02-06 11:36:23 +0000522void vfp_flush_hwstate(struct thread_info *thread)
523{
524 unsigned int cpu = get_cpu();
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100525
Russell Kingf8f2a852011-07-09 16:09:43 +0100526 vfp_force_reload(cpu, thread);
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100527
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100528 put_cpu();
529}
Catalin Marinas3d1228e2009-02-11 13:12:56 +0100530
Russell King90b44192010-12-18 10:59:49 +0000531/*
532 * VFP hardware can lose all context when a CPU goes offline.
Russell King74c25be2011-01-31 14:43:25 +0000533 * As we will be running in SMP mode with CPU hotplug, we will save the
534 * hardware state at every thread switch. We clear our held state when
535 * a CPU has been killed, indicating that the VFP hardware doesn't contain
536 * a threads VFP state. When a CPU starts up, we re-enable access to the
537 * VFP hardware.
Russell King90b44192010-12-18 10:59:49 +0000538 *
539 * Both CPU_DYING and CPU_STARTING are called on the CPU which
540 * is being offlined/onlined.
541 */
542static int vfp_hotplug(struct notifier_block *b, unsigned long action,
543 void *hcpu)
544{
545 if (action == CPU_DYING || action == CPU_DYING_FROZEN) {
Russell Kingf8f2a852011-07-09 16:09:43 +0100546 vfp_force_reload((long)hcpu, current_thread_info());
Russell King90b44192010-12-18 10:59:49 +0000547 } else if (action == CPU_STARTING || action == CPU_STARTING_FROZEN)
548 vfp_enable(NULL);
549 return NOTIFY_OK;
550}
Russell King8e140362007-01-02 23:40:30 +0000551
Linus Torvalds1da177e2005-04-16 15:20:36 -0700552/*
553 * VFP support code initialisation.
554 */
555static int __init vfp_init(void)
556{
557 unsigned int vfpsid;
Russell Kingefe90d22006-12-08 15:22:20 +0000558 unsigned int cpu_arch = cpu_architecture();
Russell Kingefe90d22006-12-08 15:22:20 +0000559
Catalin Marinasc98929c2007-11-22 18:32:01 +0100560 if (cpu_arch >= CPU_ARCH_ARMv6)
561 vfp_enable(NULL);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700562
563 /*
564 * First check that there is a VFP that we can use.
565 * The handler is already setup to just log calls, so
566 * we just need to read the VFPSID register.
567 */
Russell King5d4cae52007-06-10 12:22:20 +0100568 vfp_vector = vfp_testing_entry;
Tzachi Perelsteinb9338a72007-09-09 14:24:59 +0100569 barrier();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700570 vfpsid = fmrx(FPSID);
Russell King8e140362007-01-02 23:40:30 +0000571 barrier();
Russell King5d4cae52007-06-10 12:22:20 +0100572 vfp_vector = vfp_null_entry;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700573
574 printk(KERN_INFO "VFP support v0.3: ");
Catalin Marinasc98929c2007-11-22 18:32:01 +0100575 if (VFP_arch)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700576 printk("not present\n");
Catalin Marinasc98929c2007-11-22 18:32:01 +0100577 else if (vfpsid & FPSID_NODOUBLE) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700578 printk("no double precision support\n");
579 } else {
Russell King90b44192010-12-18 10:59:49 +0000580 hotcpu_notifier(vfp_hotplug, 0);
581
Jens Axboe8691e5a2008-06-06 11:18:06 +0200582 smp_call_function(vfp_enable, NULL, 1);
Russell King8e140362007-01-02 23:40:30 +0000583
Linus Torvalds1da177e2005-04-16 15:20:36 -0700584 VFP_arch = (vfpsid & FPSID_ARCH_MASK) >> FPSID_ARCH_BIT; /* Extract the architecture version */
585 printk("implementor %02x architecture %d part %02x variant %x rev %x\n",
586 (vfpsid & FPSID_IMPLEMENTER_MASK) >> FPSID_IMPLEMENTER_BIT,
587 (vfpsid & FPSID_ARCH_MASK) >> FPSID_ARCH_BIT,
588 (vfpsid & FPSID_PART_MASK) >> FPSID_PART_BIT,
589 (vfpsid & FPSID_VARIANT_MASK) >> FPSID_VARIANT_BIT,
590 (vfpsid & FPSID_REV_MASK) >> FPSID_REV_BIT);
Russell Kingefe90d22006-12-08 15:22:20 +0000591
Linus Torvalds1da177e2005-04-16 15:20:36 -0700592 vfp_vector = vfp_support_entry;
Russell Kingd6551e82006-06-21 13:31:52 +0100593
594 thread_register_notifier(&vfp_notifier_block);
Ben Dooksfc0b7a22008-12-18 12:26:54 +0100595 vfp_pm_init();
Russell Kingefe90d22006-12-08 15:22:20 +0000596
597 /*
598 * We detected VFP, and the support code is
599 * in place; report VFP support to userspace.
600 */
601 elf_hwcap |= HWCAP_VFP;
Catalin Marinas7279dc32009-02-11 13:13:56 +0100602#ifdef CONFIG_VFPv3
Catalin Marinas325ffc32010-03-26 15:44:57 +0100603 if (VFP_arch >= 2) {
Catalin Marinas7279dc32009-02-11 13:13:56 +0100604 elf_hwcap |= HWCAP_VFPv3;
605
606 /*
607 * Check for VFPv3 D16. CPUs in this configuration
608 * only have 16 x 64bit registers.
609 */
610 if (((fmrx(MVFR0) & MVFR0_A_SIMD_MASK)) == 1)
611 elf_hwcap |= HWCAP_VFPv3D16;
612 }
613#endif
Catalin Marinas2bedbdf2008-11-06 13:23:07 +0000614 /*
615 * Check for the presence of the Advanced SIMD
616 * load/store instructions, integer and single
Tony Lindgren5aaf2542010-07-01 13:41:05 +0100617 * precision floating point operations. Only check
618 * for NEON if the hardware has the MVFR registers.
Catalin Marinas2bedbdf2008-11-06 13:23:07 +0000619 */
Tony Lindgren5aaf2542010-07-01 13:41:05 +0100620 if ((read_cpuid_id() & 0x000f0000) == 0x000f0000) {
Will Deacon18b9dc12011-06-08 11:42:43 +0100621#ifdef CONFIG_NEON
Tony Lindgren5aaf2542010-07-01 13:41:05 +0100622 if ((fmrx(MVFR1) & 0x000fff00) == 0x00011100)
623 elf_hwcap |= HWCAP_NEON;
Catalin Marinas2bedbdf2008-11-06 13:23:07 +0000624#endif
Will Deacon18b9dc12011-06-08 11:42:43 +0100625 if ((fmrx(MVFR1) & 0xf0000000) == 0x10000000)
626 elf_hwcap |= HWCAP_VFPv4;
627 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700628 }
629 return 0;
630}
631
632late_initcall(vfp_init);