提交 4aeefdc6 编写于 作者: J Jens Axboe

coda: fixup clash with block layer REQ_* defines

CODA should not be using defines in the global name space of
that nature, prefix them with CODA_.
Signed-off-by: NJens Axboe <jaxboe@fusionio.com>
上级 7cc01581
......@@ -177,7 +177,7 @@ static ssize_t coda_psdev_write(struct file *file, const char __user *buf,
nbytes = req->uc_outSize; /* don't have more space! */
}
if (copy_from_user(req->uc_data, buf, nbytes)) {
req->uc_flags |= REQ_ABORT;
req->uc_flags |= CODA_REQ_ABORT;
wake_up(&req->uc_sleep);
retval = -EFAULT;
goto out;
......@@ -254,8 +254,8 @@ static ssize_t coda_psdev_read(struct file * file, char __user * buf,
retval = -EFAULT;
/* If request was not a signal, enqueue and don't free */
if (!(req->uc_flags & REQ_ASYNC)) {
req->uc_flags |= REQ_READ;
if (!(req->uc_flags & CODA_REQ_ASYNC)) {
req->uc_flags |= CODA_REQ_READ;
list_add_tail(&(req->uc_chain), &vcp->vc_processing);
goto out;
}
......@@ -315,19 +315,19 @@ static int coda_psdev_release(struct inode * inode, struct file * file)
list_del(&req->uc_chain);
/* Async requests need to be freed here */
if (req->uc_flags & REQ_ASYNC) {
if (req->uc_flags & CODA_REQ_ASYNC) {
CODA_FREE(req->uc_data, sizeof(struct coda_in_hdr));
kfree(req);
continue;
}
req->uc_flags |= REQ_ABORT;
req->uc_flags |= CODA_REQ_ABORT;
wake_up(&req->uc_sleep);
}
list_for_each_entry_safe(req, tmp, &vcp->vc_processing, uc_chain) {
list_del(&req->uc_chain);
req->uc_flags |= REQ_ABORT;
req->uc_flags |= CODA_REQ_ABORT;
wake_up(&req->uc_sleep);
}
......
......@@ -604,7 +604,7 @@ static void coda_unblock_signals(sigset_t *old)
(((r)->uc_opcode != CODA_CLOSE && \
(r)->uc_opcode != CODA_STORE && \
(r)->uc_opcode != CODA_RELEASE) || \
(r)->uc_flags & REQ_READ))
(r)->uc_flags & CODA_REQ_READ))
static inline void coda_waitfor_upcall(struct upc_req *req)
{
......@@ -624,7 +624,7 @@ static inline void coda_waitfor_upcall(struct upc_req *req)
set_current_state(TASK_UNINTERRUPTIBLE);
/* got a reply */
if (req->uc_flags & (REQ_WRITE | REQ_ABORT))
if (req->uc_flags & (CODA_REQ_WRITE | CODA_REQ_ABORT))
break;
if (blocked && time_after(jiffies, timeout) &&
......@@ -708,7 +708,7 @@ static int coda_upcall(struct venus_comm *vcp,
coda_waitfor_upcall(req);
/* Op went through, interrupt or not... */
if (req->uc_flags & REQ_WRITE) {
if (req->uc_flags & CODA_REQ_WRITE) {
out = (union outputArgs *)req->uc_data;
/* here we map positive Venus errors to kernel errors */
error = -out->oh.result;
......@@ -717,13 +717,13 @@ static int coda_upcall(struct venus_comm *vcp,
}
error = -EINTR;
if ((req->uc_flags & REQ_ABORT) || !signal_pending(current)) {
if ((req->uc_flags & CODA_REQ_ABORT) || !signal_pending(current)) {
printk(KERN_WARNING "coda: Unexpected interruption.\n");
goto exit;
}
/* Interrupted before venus read it. */
if (!(req->uc_flags & REQ_READ))
if (!(req->uc_flags & CODA_REQ_READ))
goto exit;
/* Venus saw the upcall, make sure we can send interrupt signal */
......@@ -747,7 +747,7 @@ static int coda_upcall(struct venus_comm *vcp,
sig_inputArgs->ih.opcode = CODA_SIGNAL;
sig_inputArgs->ih.unique = req->uc_unique;
sig_req->uc_flags = REQ_ASYNC;
sig_req->uc_flags = CODA_REQ_ASYNC;
sig_req->uc_opcode = sig_inputArgs->ih.opcode;
sig_req->uc_unique = sig_inputArgs->ih.unique;
sig_req->uc_inSize = sizeof(struct coda_in_hdr);
......
......@@ -86,9 +86,9 @@ struct upc_req {
wait_queue_head_t uc_sleep; /* process' wait queue */
};
#define REQ_ASYNC 0x1
#define REQ_READ 0x2
#define REQ_WRITE 0x4
#define REQ_ABORT 0x8
#define CODA_REQ_ASYNC 0x1
#define CODA_REQ_READ 0x2
#define CODA_REQ_WRITE 0x4
#define CODA_REQ_ABORT 0x8
#endif
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