[CELL] spufs: make sure context are scheduled again after spu_acquire_saved
Currently a process is removed from the physical spu when spu_acquire_saved is saved but never put back. This patch adds a new spu_release_saved that is to be paired with spu_acquire_saved and put the process back if it has been in RUNNABLE state before. Niether Jeremy not be are entirely happy about this exact patch because it adds another spu_activate call outside of the owner thread, but I feel this is the best short-term fix we can come up with. Signed-off-by: Christoph Hellwig <hch@lst.de> Signed-off-by: Jeremy Kerr <jk@ozlabs.org> Signed-off-by: Arnd Bergmann <arnd.bergmann@de.ibm.com>
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@ -165,6 +165,22 @@ int spu_acquire_runnable(struct spu_context *ctx, unsigned long flags)
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void spu_acquire_saved(struct spu_context *ctx)
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{
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spu_acquire(ctx);
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if (ctx->state != SPU_STATE_SAVED)
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if (ctx->state != SPU_STATE_SAVED) {
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set_bit(SPU_SCHED_WAS_ACTIVE, &ctx->sched_flags);
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spu_deactivate(ctx);
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}
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}
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/**
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* spu_release_saved - unlock spu context and return it to the runqueue
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* @ctx: context to unlock
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*/
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void spu_release_saved(struct spu_context *ctx)
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{
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BUG_ON(ctx->state != SPU_STATE_SAVED);
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if (test_and_clear_bit(SPU_SCHED_WAS_ACTIVE, &ctx->sched_flags))
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spu_activate(ctx, 0);
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spu_release(ctx);
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}
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@ -226,7 +226,7 @@ static void spufs_arch_write_notes(struct file *file)
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spu_acquire_saved(ctx_info->ctx);
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for (j = 0; j < spufs_coredump_num_notes; j++)
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spufs_arch_write_note(ctx_info, j, file);
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spu_release(ctx_info->ctx);
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spu_release_saved(ctx_info->ctx);
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list_del(&ctx_info->list);
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kfree(ctx_info);
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}
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@ -370,7 +370,7 @@ spufs_regs_read(struct file *file, char __user *buffer,
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spu_acquire_saved(ctx);
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ret = __spufs_regs_read(ctx, buffer, size, pos);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -392,7 +392,7 @@ spufs_regs_write(struct file *file, const char __user *buffer,
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ret = copy_from_user(lscsa->gprs + *pos - size,
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buffer, size) ? -EFAULT : size;
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -421,7 +421,7 @@ spufs_fpcr_read(struct file *file, char __user * buffer,
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spu_acquire_saved(ctx);
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ret = __spufs_fpcr_read(ctx, buffer, size, pos);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -443,7 +443,7 @@ spufs_fpcr_write(struct file *file, const char __user * buffer,
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ret = copy_from_user((char *)&lscsa->fpcr + *pos - size,
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buffer, size) ? -EFAULT : size;
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -868,7 +868,7 @@ static ssize_t spufs_signal1_read(struct file *file, char __user *buf,
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spu_acquire_saved(ctx);
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ret = __spufs_signal1_read(ctx, buf, len, pos);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -999,7 +999,7 @@ static ssize_t spufs_signal2_read(struct file *file, char __user *buf,
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spu_acquire_saved(ctx);
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ret = __spufs_signal2_read(ctx, buf, len, pos);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -1626,7 +1626,7 @@ static void spufs_decr_set(void *data, u64 val)
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struct spu_lscsa *lscsa = ctx->csa.lscsa;
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spu_acquire_saved(ctx);
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lscsa->decr.slot[0] = (u32) val;
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spu_release(ctx);
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spu_release_saved(ctx);
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}
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static u64 __spufs_decr_get(void *data)
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@ -1642,7 +1642,7 @@ static u64 spufs_decr_get(void *data)
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u64 ret;
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spu_acquire_saved(ctx);
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ret = __spufs_decr_get(data);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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DEFINE_SIMPLE_ATTRIBUTE(spufs_decr_ops, spufs_decr_get, spufs_decr_set,
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@ -1654,7 +1654,7 @@ static void spufs_decr_status_set(void *data, u64 val)
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struct spu_lscsa *lscsa = ctx->csa.lscsa;
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spu_acquire_saved(ctx);
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lscsa->decr_status.slot[0] = (u32) val;
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spu_release(ctx);
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spu_release_saved(ctx);
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}
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static u64 __spufs_decr_status_get(void *data)
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@ -1670,7 +1670,7 @@ static u64 spufs_decr_status_get(void *data)
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u64 ret;
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spu_acquire_saved(ctx);
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ret = __spufs_decr_status_get(data);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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DEFINE_SIMPLE_ATTRIBUTE(spufs_decr_status_ops, spufs_decr_status_get,
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@ -1682,7 +1682,7 @@ static void spufs_event_mask_set(void *data, u64 val)
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struct spu_lscsa *lscsa = ctx->csa.lscsa;
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spu_acquire_saved(ctx);
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lscsa->event_mask.slot[0] = (u32) val;
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spu_release(ctx);
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spu_release_saved(ctx);
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}
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static u64 __spufs_event_mask_get(void *data)
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@ -1698,7 +1698,7 @@ static u64 spufs_event_mask_get(void *data)
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u64 ret;
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spu_acquire_saved(ctx);
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ret = __spufs_event_mask_get(data);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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DEFINE_SIMPLE_ATTRIBUTE(spufs_event_mask_ops, spufs_event_mask_get,
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@ -1722,7 +1722,7 @@ static u64 spufs_event_status_get(void *data)
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spu_acquire_saved(ctx);
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ret = __spufs_event_status_get(data);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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DEFINE_SIMPLE_ATTRIBUTE(spufs_event_status_ops, spufs_event_status_get,
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@ -1734,7 +1734,7 @@ static void spufs_srr0_set(void *data, u64 val)
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struct spu_lscsa *lscsa = ctx->csa.lscsa;
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spu_acquire_saved(ctx);
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lscsa->srr0.slot[0] = (u32) val;
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spu_release(ctx);
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spu_release_saved(ctx);
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}
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static u64 spufs_srr0_get(void *data)
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@ -1744,7 +1744,7 @@ static u64 spufs_srr0_get(void *data)
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u64 ret;
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spu_acquire_saved(ctx);
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ret = lscsa->srr0.slot[0];
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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DEFINE_SIMPLE_ATTRIBUTE(spufs_srr0_ops, spufs_srr0_get, spufs_srr0_set,
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@ -1800,7 +1800,7 @@ static u64 spufs_lslr_get(void *data)
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spu_acquire_saved(ctx);
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ret = __spufs_lslr_get(data);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -1864,7 +1864,7 @@ static ssize_t spufs_mbox_info_read(struct file *file, char __user *buf,
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spin_lock(&ctx->csa.register_lock);
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ret = __spufs_mbox_info_read(ctx, buf, len, pos);
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spin_unlock(&ctx->csa.register_lock);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -1902,7 +1902,7 @@ static ssize_t spufs_ibox_info_read(struct file *file, char __user *buf,
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spin_lock(&ctx->csa.register_lock);
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ret = __spufs_ibox_info_read(ctx, buf, len, pos);
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spin_unlock(&ctx->csa.register_lock);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -1943,7 +1943,7 @@ static ssize_t spufs_wbox_info_read(struct file *file, char __user *buf,
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spin_lock(&ctx->csa.register_lock);
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ret = __spufs_wbox_info_read(ctx, buf, len, pos);
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spin_unlock(&ctx->csa.register_lock);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -1993,7 +1993,7 @@ static ssize_t spufs_dma_info_read(struct file *file, char __user *buf,
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spin_lock(&ctx->csa.register_lock);
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ret = __spufs_dma_info_read(ctx, buf, len, pos);
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spin_unlock(&ctx->csa.register_lock);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -2044,7 +2044,7 @@ static ssize_t spufs_proxydma_info_read(struct file *file, char __user *buf,
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spin_lock(&ctx->csa.register_lock);
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ret = __spufs_proxydma_info_read(ctx, buf, len, pos);
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spin_unlock(&ctx->csa.register_lock);
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spu_release(ctx);
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spu_release_saved(ctx);
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return ret;
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}
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@ -40,6 +40,10 @@ enum {
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struct spu_context_ops;
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struct spu_gang;
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enum {
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SPU_SCHED_WAS_ACTIVE, /* was active upon spu_acquire_saved() */
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};
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struct spu_context {
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struct spu *spu; /* pointer to a physical SPU */
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struct spu_state csa; /* SPU context save area. */
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@ -214,6 +218,7 @@ void spu_unmap_mappings(struct spu_context *ctx);
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void spu_forget(struct spu_context *ctx);
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int spu_acquire_runnable(struct spu_context *ctx, unsigned long flags);
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void spu_acquire_saved(struct spu_context *ctx);
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void spu_release_saved(struct spu_context *ctx);
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int spu_activate(struct spu_context *ctx, unsigned long flags);
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void spu_deactivate(struct spu_context *ctx);
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