blob: b5e7bdee1bc29cab2e50b4bc5765e1be67448371 [file] [log] [blame]
arnd@arndb.de0afacde2006-10-24 18:31:18 +02001#define DEBUG
2
Arnd Bergmannce8ab852006-01-04 20:31:29 +01003#include <linux/wait.h>
4#include <linux/ptrace.h>
5
6#include <asm/spu.h>
Jeremy Kerrc6730ed2006-11-20 18:45:10 +01007#include <asm/spu_priv1.h>
8#include <asm/io.h>
Dave Jonescfff5b22006-03-31 23:53:09 -05009#include <asm/unistd.h>
Arnd Bergmannce8ab852006-01-04 20:31:29 +010010
11#include "spufs.h"
12
13/* interrupt-level stop callback function. */
14void spufs_stop_callback(struct spu *spu)
15{
16 struct spu_context *ctx = spu->ctx;
17
18 wake_up_all(&ctx->stop_wq);
19}
20
21static inline int spu_stopped(struct spu_context *ctx, u32 * stat)
22{
23 struct spu *spu;
24 u64 pte_fault;
25
26 *stat = ctx->ops->status_read(ctx);
27 if (ctx->state != SPU_STATE_RUNNABLE)
28 return 1;
29 spu = ctx->spu;
30 pte_fault = spu->dsisr &
31 (MFC_DSISR_PTE_NOT_FOUND | MFC_DSISR_ACCESS_DENIED);
32 return (!(*stat & 0x1) || pte_fault || spu->class_0_pending) ? 1 : 0;
33}
34
Jeremy Kerrc6730ed2006-11-20 18:45:10 +010035static int spu_setup_isolated(struct spu_context *ctx)
36{
37 int ret;
38 u64 __iomem *mfc_cntl;
39 u64 sr1;
40 u32 status;
41 unsigned long timeout;
42 const u32 status_loading = SPU_STATUS_RUNNING
43 | SPU_STATUS_ISOLATED_STATE | SPU_STATUS_ISOLATED_LOAD_STATUS;
44
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +020045 ret = -ENODEV;
Jeremy Kerrc6730ed2006-11-20 18:45:10 +010046 if (!isolated_loader)
Jeremy Kerrc6730ed2006-11-20 18:45:10 +010047 goto out;
48
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +020049 /*
50 * We need to exclude userspace access to the context.
51 *
52 * To protect against memory access we invalidate all ptes
53 * and make sure the pagefault handlers block on the mutex.
54 */
55 spu_unmap_mappings(ctx);
56
Jeremy Kerrc6730ed2006-11-20 18:45:10 +010057 mfc_cntl = &ctx->spu->priv2->mfc_control_RW;
58
59 /* purge the MFC DMA queue to ensure no spurious accesses before we
60 * enter kernel mode */
61 timeout = jiffies + HZ;
62 out_be64(mfc_cntl, MFC_CNTL_PURGE_DMA_REQUEST);
63 while ((in_be64(mfc_cntl) & MFC_CNTL_PURGE_DMA_STATUS_MASK)
64 != MFC_CNTL_PURGE_DMA_COMPLETE) {
65 if (time_after(jiffies, timeout)) {
66 printk(KERN_ERR "%s: timeout flushing MFC DMA queue\n",
67 __FUNCTION__);
68 ret = -EIO;
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +020069 goto out;
Jeremy Kerrc6730ed2006-11-20 18:45:10 +010070 }
71 cond_resched();
72 }
73
74 /* put the SPE in kernel mode to allow access to the loader */
75 sr1 = spu_mfc_sr1_get(ctx->spu);
76 sr1 &= ~MFC_STATE1_PROBLEM_STATE_MASK;
77 spu_mfc_sr1_set(ctx->spu, sr1);
78
79 /* start the loader */
80 ctx->ops->signal1_write(ctx, (unsigned long)isolated_loader >> 32);
81 ctx->ops->signal2_write(ctx,
82 (unsigned long)isolated_loader & 0xffffffff);
83
84 ctx->ops->runcntl_write(ctx,
85 SPU_RUNCNTL_RUNNABLE | SPU_RUNCNTL_ISOLATE);
86
87 ret = 0;
88 timeout = jiffies + HZ;
89 while (((status = ctx->ops->status_read(ctx)) & status_loading) ==
90 status_loading) {
91 if (time_after(jiffies, timeout)) {
92 printk(KERN_ERR "%s: timeout waiting for loader\n",
93 __FUNCTION__);
94 ret = -EIO;
95 goto out_drop_priv;
96 }
97 cond_resched();
98 }
99
100 if (!(status & SPU_STATUS_RUNNING)) {
101 /* If isolated LOAD has failed: run SPU, we will get a stop-and
102 * signal later. */
103 pr_debug("%s: isolated LOAD failed\n", __FUNCTION__);
104 ctx->ops->runcntl_write(ctx, SPU_RUNCNTL_RUNNABLE);
105 ret = -EACCES;
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +0200106 goto out_drop_priv;
107 }
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100108
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +0200109 if (!(status & SPU_STATUS_ISOLATED_STATE)) {
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100110 /* This isn't allowed by the CBEA, but check anyway */
111 pr_debug("%s: SPU fell out of isolated mode?\n", __FUNCTION__);
112 ctx->ops->runcntl_write(ctx, SPU_RUNCNTL_STOP);
113 ret = -EINVAL;
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +0200114 goto out_drop_priv;
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100115 }
116
117out_drop_priv:
118 /* Finished accessing the loader. Drop kernel mode */
119 sr1 |= MFC_STATE1_PROBLEM_STATE_MASK;
120 spu_mfc_sr1_set(ctx->spu, sr1);
121
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100122out:
123 return ret;
124}
125
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200126static inline int spu_run_init(struct spu_context *ctx, u32 * npc)
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100127{
128 int ret;
Mark Nutter5737edd2006-10-24 18:31:16 +0200129 unsigned long runcntl = SPU_RUNCNTL_RUNNABLE;
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100130
Christoph Hellwig50b520d2007-03-10 00:05:36 +0100131 ret = spu_acquire_runnable(ctx, 0);
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100132 if (ret)
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100133 return ret;
Mark Nutter5737edd2006-10-24 18:31:16 +0200134
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100135 if (ctx->flags & SPU_CREATE_ISOLATE) {
136 if (!(ctx->ops->status_read(ctx) & SPU_STATUS_ISOLATED_STATE)) {
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100137 ret = spu_setup_isolated(ctx);
Christoph Hellwig7ec18ab2007-04-23 21:08:12 +0200138 if (ret)
139 spu_release(ctx);
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100140 }
141
142 /* if userspace has set the runcntrl register (eg, to issue an
143 * isolated exit), we need to re-set it here */
144 runcntl = ctx->ops->runcntl_read(ctx) &
145 (SPU_RUNCNTL_RUNNABLE | SPU_RUNCNTL_ISOLATE);
146 if (runcntl == 0)
147 runcntl = SPU_RUNCNTL_RUNNABLE;
Christoph Hellwig2eb1b122007-02-13 21:54:29 +0100148 } else {
149 spu_start_tick(ctx);
Mark Nutter5737edd2006-10-24 18:31:16 +0200150 ctx->ops->npc_write(ctx, *npc);
Christoph Hellwig2eb1b122007-02-13 21:54:29 +0100151 }
Jeremy Kerrc6730ed2006-11-20 18:45:10 +0100152
153 ctx->ops->runcntl_write(ctx, runcntl);
154 return ret;
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100155}
156
157static inline int spu_run_fini(struct spu_context *ctx, u32 * npc,
158 u32 * status)
159{
160 int ret = 0;
161
Christoph Hellwig2eb1b122007-02-13 21:54:29 +0100162 spu_stop_tick(ctx);
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100163 *status = ctx->ops->status_read(ctx);
164 *npc = ctx->ops->npc_read(ctx);
165 spu_release(ctx);
166
167 if (signal_pending(current))
168 ret = -ERESTARTSYS;
Masato Noguchi2ebb2472006-11-20 18:45:04 +0100169
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100170 return ret;
171}
172
173static inline int spu_reacquire_runnable(struct spu_context *ctx, u32 *npc,
174 u32 *status)
175{
176 int ret;
177
178 if ((ret = spu_run_fini(ctx, npc, status)) != 0)
179 return ret;
180 if (*status & (SPU_STATUS_STOPPED_BY_STOP |
181 SPU_STATUS_STOPPED_BY_HALT)) {
182 return *status;
183 }
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200184 if ((ret = spu_run_init(ctx, npc)) != 0)
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100185 return ret;
186 return 0;
187}
188
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100189/*
190 * SPU syscall restarting is tricky because we violate the basic
191 * assumption that the signal handler is running on the interrupted
192 * thread. Here instead, the handler runs on PowerPC user space code,
193 * while the syscall was called from the SPU.
194 * This means we can only do a very rough approximation of POSIX
195 * signal semantics.
196 */
197int spu_handle_restartsys(struct spu_context *ctx, long *spu_ret,
198 unsigned int *npc)
199{
200 int ret;
201
202 switch (*spu_ret) {
203 case -ERESTARTSYS:
204 case -ERESTARTNOINTR:
205 /*
206 * Enter the regular syscall restarting for
207 * sys_spu_run, then restart the SPU syscall
208 * callback.
209 */
210 *npc -= 8;
211 ret = -ERESTARTSYS;
212 break;
213 case -ERESTARTNOHAND:
214 case -ERESTART_RESTARTBLOCK:
215 /*
216 * Restart block is too hard for now, just return -EINTR
217 * to the SPU.
218 * ERESTARTNOHAND comes from sys_pause, we also return
219 * -EINTR from there.
220 * Assume that we need to be restarted ourselves though.
221 */
222 *spu_ret = -EINTR;
223 ret = -ERESTARTSYS;
224 break;
225 default:
226 printk(KERN_WARNING "%s: unexpected return code %ld\n",
227 __FUNCTION__, *spu_ret);
228 ret = 0;
229 }
230 return ret;
231}
232
233int spu_process_callback(struct spu_context *ctx)
234{
235 struct spu_syscall_block s;
236 u32 ls_pointer, npc;
Akinobu Mita9e2fe2c2007-04-23 21:08:22 +0200237 void __iomem *ls;
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100238 long spu_ret;
239 int ret;
240
241 /* get syscall block from local store */
Akinobu Mita9e2fe2c2007-04-23 21:08:22 +0200242 npc = ctx->ops->npc_read(ctx) & ~3;
243 ls = (void __iomem *)ctx->ops->get_ls(ctx);
244 ls_pointer = in_be32(ls + npc);
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100245 if (ls_pointer > (LS_SIZE - sizeof(s)))
246 return -EFAULT;
Akinobu Mita9e2fe2c2007-04-23 21:08:22 +0200247 memcpy_fromio(&s, ls + ls_pointer, sizeof(s));
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100248
249 /* do actual syscall without pinning the spu */
250 ret = 0;
251 spu_ret = -ENOSYS;
252 npc += 4;
253
254 if (s.nr_ret < __NR_syscalls) {
255 spu_release(ctx);
256 /* do actual system call from here */
257 spu_ret = spu_sys_callback(&s);
258 if (spu_ret <= -ERESTARTSYS) {
259 ret = spu_handle_restartsys(ctx, &spu_ret, &npc);
260 }
261 spu_acquire(ctx);
262 if (ret == -ERESTARTSYS)
263 return ret;
264 }
265
266 /* write result, jump over indirect pointer */
Akinobu Mita9e2fe2c2007-04-23 21:08:22 +0200267 memcpy_toio(ls + ls_pointer, &spu_ret, sizeof(spu_ret));
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100268 ctx->ops->npc_write(ctx, npc);
269 ctx->ops->runcntl_write(ctx, SPU_RUNCNTL_RUNNABLE);
270 return ret;
271}
272
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100273static inline int spu_process_events(struct spu_context *ctx)
274{
275 struct spu *spu = ctx->spu;
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100276 int ret = 0;
277
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100278 if (spu->class_0_pending)
279 ret = spu_irq_class_0_bottom(spu);
280 if (!ret && signal_pending(current))
281 ret = -ERESTARTSYS;
282 return ret;
283}
284
285long spufs_run_spu(struct file *file, struct spu_context *ctx,
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200286 u32 *npc, u32 *event)
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100287{
288 int ret;
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200289 u32 status;
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100290
Christoph Hellwige45d48a32007-04-23 21:08:17 +0200291 if (mutex_lock_interruptible(&ctx->run_mutex))
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100292 return -ERESTARTSYS;
293
Arnd Bergmannee2d7342006-11-20 18:45:08 +0100294 ctx->ops->master_start(ctx);
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200295 ctx->event_return = 0;
296 ret = spu_run_init(ctx, npc);
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100297 if (ret)
298 goto out;
299
300 do {
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200301 ret = spufs_wait(ctx->stop_wq, spu_stopped(ctx, &status));
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100302 if (unlikely(ret))
303 break;
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200304 if ((status & SPU_STATUS_STOPPED_BY_STOP) &&
305 (status >> SPU_STOP_STATUS_SHIFT == 0x2104)) {
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100306 ret = spu_process_callback(ctx);
307 if (ret)
308 break;
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200309 status &= ~SPU_STATUS_STOPPED_BY_STOP;
Arnd Bergmann2dd14932006-03-23 00:00:09 +0100310 }
Arnd Bergmann57dace22007-04-23 21:08:15 +0200311 ret = spufs_handle_class1(ctx);
312 if (ret)
313 break;
314
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100315 if (unlikely(ctx->state != SPU_STATE_RUNNABLE)) {
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200316 ret = spu_reacquire_runnable(ctx, npc, &status);
Christoph Hellwig2eb1b122007-02-13 21:54:29 +0100317 if (ret) {
318 spu_stop_tick(ctx);
Masato Noguchi2ebb2472006-11-20 18:45:04 +0100319 goto out2;
Christoph Hellwig2eb1b122007-02-13 21:54:29 +0100320 }
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100321 continue;
322 }
323 ret = spu_process_events(ctx);
324
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200325 } while (!ret && !(status & (SPU_STATUS_STOPPED_BY_STOP |
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100326 SPU_STATUS_STOPPED_BY_HALT)));
327
Arnd Bergmannee2d7342006-11-20 18:45:08 +0100328 ctx->ops->master_stop(ctx);
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200329 ret = spu_run_fini(ctx, npc, &status);
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100330 spu_yield(ctx);
331
Masato Noguchi2ebb2472006-11-20 18:45:04 +0100332out2:
333 if ((ret == 0) ||
334 ((ret == -ERESTARTSYS) &&
335 ((status & SPU_STATUS_STOPPED_BY_HALT) ||
336 ((status & SPU_STATUS_STOPPED_BY_STOP) &&
337 (status >> SPU_STOP_STATUS_SHIFT != 0x2104)))))
338 ret = status;
339
Arnd Bergmannc2b22262006-11-27 19:18:53 +0100340 if ((status & SPU_STATUS_STOPPED_BY_STOP)
341 && (status >> SPU_STOP_STATUS_SHIFT) == 0x3fff) {
342 force_sig(SIGTRAP, current);
343 ret = -ERESTARTSYS;
Masato Noguchi2ebb2472006-11-20 18:45:04 +0100344 }
345
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100346out:
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200347 *event = ctx->event_return;
Christoph Hellwige45d48a32007-04-23 21:08:17 +0200348 mutex_unlock(&ctx->run_mutex);
Arnd Bergmannce8ab852006-01-04 20:31:29 +0100349 return ret;
350}