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-rw-r--r--db2/include/lock.h22
1 files changed, 21 insertions, 1 deletions
diff --git a/db2/include/lock.h b/db2/include/lock.h
index 47a38b8783..13364ca7a5 100644
--- a/db2/include/lock.h
+++ b/db2/include/lock.h
@@ -4,7 +4,7 @@
* Copyright (c) 1996, 1997, 1998
* Sleepycat Software. All rights reserved.
*
- * @(#)lock.h 10.15 (Sleepycat) 5/10/98
+ * @(#)lock.h 10.17 (Sleepycat) 1/3/99
*/
typedef struct __db_lockobj DB_LOCKOBJ;
@@ -22,6 +22,12 @@ typedef struct __db_lockobj DB_LOCKOBJ;
*/
#define DB_LOCK_MAXID 0x7fffffff
+/* Check for region catastrophic shutdown. */
+#define LOCK_PANIC_CHECK(lt) { \
+ if ((lt)->region->hdr.panic) \
+ return (DB_RUNRECOVERY); \
+}
+
/*
* The lock region consists of:
* The DB_LOCKREGION structure (sizeof(DB_LOCKREGION)).
@@ -135,10 +141,24 @@ struct __db_lock {
u_int32_t refcount; /* Reference count the lock. */
db_lockmode_t mode; /* What sort of lock. */
ssize_t obj; /* Relative offset of object struct. */
+ size_t txnoff; /* Offset of holding transaction. */
db_status_t status; /* Status of this lock. */
};
/*
+ * This is a serious layering violation. To support nested transactions, we
+ * need to be able to tell that a lock is held by a transaction (as opposed to
+ * some other locker) and to be able to traverse the parent/descendent chain.
+ * In order to do this, each lock held by a transaction maintains a reference
+ * to the shared memory transaction structure so it can be accessed during lock
+ * promotion. As the structure is in shared memory, we cannot store a pointer
+ * to it, so we use the offset within the region. As nothing lives at region
+ * offset 0, we use that to indicate that there is no transaction associated
+ * with the current lock.
+ */
+#define TXN_IS_HOLDING(L) ((L)->txnoff != 0 /* INVALID_REG_OFFSET */)
+
+/*
* We cannot return pointers to the user (else we cannot easily grow regions),
* so we return offsets in the region. These must be converted to and from
* regular pointers. Always use the macros below.