# include "rx.h"
#endif /* KERNEL */
-#ifndef INIT
-#define INIT(x)
+#ifndef GLOBALSINIT
+#define GLOBALSINIT(x)
#if defined(AFS_NT40_ENV)
#if defined(AFS_PTHREAD_ENV)
#define EXT __declspec(dllimport) extern
#define EXT2 extern
#define EXT extern
#endif
-#endif /* !INIT */
+#endif /* !GLOBALSINIT */
/* Basic socket for client requests; other sockets (for receiving server requests) are in the service structures */
EXT osi_socket rx_socket;
/* Variable to allow introduction of network unreliability */
#ifdef RXDEBUG
-EXT int rx_intentionallyDroppedPacketsPer100 INIT(0); /* Dropped on Send */
-EXT int rx_intentionallyDroppedOnReadPer100 INIT(0); /* Dropped on Read */
+EXT int rx_intentionallyDroppedPacketsPer100 GLOBALSINIT(0); /* Dropped on Send */
+EXT int rx_intentionallyDroppedOnReadPer100 GLOBALSINIT(0); /* Dropped on Read */
#endif
/* extra packets to add to the quota */
-EXT int rx_extraQuota INIT(0);
+EXT int rx_extraQuota GLOBALSINIT(0);
/* extra packets to alloc (2 windows by deflt) */
-EXT int rx_extraPackets INIT(32);
+EXT int rx_extraPackets GLOBALSINIT(32);
-EXT int rx_stackSize INIT(RX_DEFAULT_STACK_SIZE);
+EXT int rx_stackSize GLOBALSINIT(RX_DEFAULT_STACK_SIZE);
/* Time until an unresponsive connection is declared dead */
-EXT int rx_connDeadTime INIT(12);
+EXT int rx_connDeadTime GLOBALSINIT(12);
/* Set rx default connection dead time; set on both services and connections at creation time */
#define rx_SetRxDeadTime(seconds) (rx_connDeadTime = (seconds))
/* Time until we toss an idle connection */
-EXT int rx_idleConnectionTime INIT(700);
+EXT int rx_idleConnectionTime GLOBALSINIT(700);
/* Time until we toss a peer structure, after all connections using are gone */
-EXT int rx_idlePeerTime INIT(60);
+EXT int rx_idlePeerTime GLOBALSINIT(60);
/* The file server is temporarily salvaging */
-EXT int rx_tranquil INIT(0);
+EXT int rx_tranquil GLOBALSINIT(0);
/* UDP rcv buffer size */
-EXT int rx_UdpBufSize INIT(64 * 1024);
+EXT int rx_UdpBufSize GLOBALSINIT(64 * 1024);
#define rx_GetMinUdpBufSize() (64*1024)
#define rx_SetUdpBufSize(x) (((x)>rx_GetMinUdpBufSize()) ? (rx_UdpBufSize = (x)):0)
* waiting for a thread exceed the threshold, new calls are aborted
* with the busy error.
*/
-EXT int rx_BusyThreshold INIT(-1); /* default is disabled */
-EXT int rx_BusyError INIT(-1);
+EXT int rx_BusyThreshold GLOBALSINIT(-1); /* default is disabled */
+EXT int rx_BusyError GLOBALSINIT(-1);
/* These definitions should be in one place */
#ifdef AFS_SUN5_ENV
#define RX_FAST_ACK_RATE 1 /* as of 3.4, ask for an ack every
* other packet. */
-EXT int rx_minWindow INIT(1);
-EXT int rx_initReceiveWindow INIT(16); /* how much to accept */
-EXT int rx_maxReceiveWindow INIT(32); /* how much to accept */
-EXT int rx_initSendWindow INIT(8);
-EXT int rx_maxSendWindow INIT(32);
-EXT int rx_nackThreshold INIT(3); /* Number NACKS to trigger congestion recovery */
-EXT int rx_nDgramThreshold INIT(4); /* Number of packets before increasing
+EXT int rx_minWindow GLOBALSINIT(1);
+EXT int rx_initReceiveWindow GLOBALSINIT(16); /* how much to accept */
+EXT int rx_maxReceiveWindow GLOBALSINIT(32); /* how much to accept */
+EXT int rx_initSendWindow GLOBALSINIT(8);
+EXT int rx_maxSendWindow GLOBALSINIT(32);
+EXT int rx_nackThreshold GLOBALSINIT(3); /* Number NACKS to trigger congestion recovery */
+EXT int rx_nDgramThreshold GLOBALSINIT(4); /* Number of packets before increasing
* packets per datagram */
#define RX_MAX_FRAGS 4
-EXT int rxi_nSendFrags INIT(RX_MAX_FRAGS); /* max fragments in a datagram */
-EXT int rxi_nRecvFrags INIT(RX_MAX_FRAGS);
-EXT int rxi_OrphanFragSize INIT(512);
+EXT int rxi_nSendFrags GLOBALSINIT(RX_MAX_FRAGS); /* max fragments in a datagram */
+EXT int rxi_nRecvFrags GLOBALSINIT(RX_MAX_FRAGS);
+EXT int rxi_OrphanFragSize GLOBALSINIT(512);
#define RX_MAX_DGRAM_PACKETS 6 /* max packets per jumbogram */
-EXT int rxi_nDgramPackets INIT(RX_MAX_DGRAM_PACKETS);
+EXT int rxi_nDgramPackets GLOBALSINIT(RX_MAX_DGRAM_PACKETS);
/* allow n packets between soft acks - must be power of 2 -1, else change
* macro below */
-EXT int rxi_SoftAckRate INIT(RX_FAST_ACK_RATE);
+EXT int rxi_SoftAckRate GLOBALSINIT(RX_FAST_ACK_RATE);
/* consume n packets before sending hard ack, should be larger than above,
but not absolutely necessary. If it's smaller, than fast receivers will
send a soft ack, immediately followed by a hard ack. */
-EXT int rxi_HardAckRate INIT(RX_FAST_ACK_RATE + 1);
+EXT int rxi_HardAckRate GLOBALSINIT(RX_FAST_ACK_RATE + 1);
-/* EXT int rx_maxWindow INIT(15); Temporary HACK: transmit/receive window */
+/* EXT int rx_maxWindow GLOBALSINIT(15); Temporary HACK: transmit/receive window */
/* If window sizes become very variable (in terms of #packets), be
* sure that the sender can get back a hard acks without having to wait for
#define ACKHACK(p,r) { if (((p)->header.seq & (rxi_SoftAckRate))==0) (p)->header.flags |= RX_REQUEST_ACK; }
-EXT int rx_nPackets INIT(100); /* obsolete; use rx_extraPackets now */
+EXT int rx_nPackets GLOBALSINIT(100); /* obsolete; use rx_extraPackets now */
/*
* pthreads thread-specific rx info support
#if defined(AFS_PTHREAD_ENV)
#define RX_ENABLE_TSFPQ
-EXT int rx_TSFPQGlobSize INIT(3); /* number of packets to transfer between global and local queues in one op */
-EXT int rx_TSFPQLocalMax INIT(15); /* max number of packets on local FPQ before returning a glob to the global pool */
-EXT int rx_TSFPQMaxProcs INIT(0); /* max number of threads expected */
+EXT int rx_TSFPQGlobSize GLOBALSINIT(3); /* number of packets to transfer between global and local queues in one op */
+EXT int rx_TSFPQLocalMax GLOBALSINIT(15); /* max number of packets on local FPQ before returning a glob to the global pool */
+EXT int rx_TSFPQMaxProcs GLOBALSINIT(0); /* max number of threads expected */
EXT void rxi_MorePacketsTSFPQ(int apackets, int flush_global, int num_keep_local); /* more flexible packet alloc function */
EXT void rxi_AdjustLocalPacketsTSFPQ(int num_keep_local, int allow_overcommit); /* adjust thread-local queue length, for places where we know how many packets we will need a priori */
EXT void rxi_FlushLocalPacketsTSFPQ(void); /* flush all thread-local packets to global queue */
#endif /* AFS_PTHREAD_ENV */
/* Number of free packets */
-EXT int rx_nFreePackets INIT(0);
-EXT int rxi_NeedMorePackets INIT(0);
-EXT int rx_nWaiting INIT(0);
-EXT int rx_nWaited INIT(0);
-EXT int rx_packetReclaims INIT(0);
+EXT int rx_nFreePackets GLOBALSINIT(0);
+EXT int rxi_NeedMorePackets GLOBALSINIT(0);
+EXT int rx_nWaiting GLOBALSINIT(0);
+EXT int rx_nWaited GLOBALSINIT(0);
+EXT int rx_packetReclaims GLOBALSINIT(0);
/* largest packet which we can safely receive, initialized to AFS 3.2 value
* This is provided for backward compatibility with peers which may be unable
* to swallow anything larger. THIS MUST NEVER DECREASE WHILE AN APPLICATION
* IS RUNNING! */
-EXT afs_uint32 rx_maxReceiveSize INIT(OLD_MAX_PACKET_SIZE * RX_MAX_FRAGS +
+EXT afs_uint32 rx_maxReceiveSize GLOBALSINIT(OLD_MAX_PACKET_SIZE * RX_MAX_FRAGS +
UDP_HDR_SIZE * (RX_MAX_FRAGS - 1));
/* this is the maximum packet size that the user wants us to receive */
/* this is set by rxTune if required */
-EXT afs_uint32 rx_maxReceiveSizeUser INIT(0xffffffff);
+EXT afs_uint32 rx_maxReceiveSizeUser GLOBALSINIT(0xffffffff);
/* rx_MyMaxSendSize is the size of the largest packet we will send,
* including the RX header. Just as rx_maxReceiveSize is the
* max we will receive, including the rx header.
*/
-EXT afs_uint32 rx_MyMaxSendSize INIT(8588);
+EXT afs_uint32 rx_MyMaxSendSize GLOBALSINIT(8588);
/* Maximum size of a jumbo datagram we can receive */
-EXT afs_uint32 rx_maxJumboRecvSize INIT(RX_MAX_PACKET_SIZE);
+EXT afs_uint32 rx_maxJumboRecvSize GLOBALSINIT(RX_MAX_PACKET_SIZE);
/* need this to permit progs to run on AIX systems */
-EXT int (*rxi_syscallp) (afs_uint32 a3, afs_uint32 a4, void *a5)INIT(0);
+EXT int (*rxi_syscallp) (afs_uint32 a3, afs_uint32 a4, void *a5)GLOBALSINIT(0);
/* List of free queue entries */
-EXT struct rx_serverQueueEntry *rx_FreeSQEList INIT(0);
+EXT struct rx_serverQueueEntry *rx_FreeSQEList GLOBALSINIT(0);
#ifdef RX_ENABLE_LOCKS
EXT afs_kmutex_t freeSQEList_lock;
#endif
#ifdef RX_ENABLE_LOCKS
EXT afs_kmutex_t rx_freeCallQueue_lock;
#endif
-EXT afs_int32 rxi_nCalls INIT(0);
+EXT afs_int32 rxi_nCalls GLOBALSINIT(0);
/* Port requested at rx_Init. If this is zero, the actual port used will be different--but it will only be used for client operations. If non-zero, server provided services may use the same port. */
EXT u_short rx_port;
EXT fd_set rx_selectMask;
EXT osi_socket rx_maxSocketNumber; /* Maximum socket number in the select mask. */
/* Minumum socket number in the select mask. */
-EXT osi_socket rx_minSocketNumber INIT(0x7fffffff);
+EXT osi_socket rx_minSocketNumber GLOBALSINIT(0x7fffffff);
#endif
/* This is actually the minimum number of packets that must remain free,
/* value large enough to guarantee that no allocation fails due to RX_PACKET_QUOTAS.
Make it a little bigger, just for fun */
#define RX_MAX_QUOTA 15 /* part of min packet computation */
-EXT int rx_packetQuota[RX_N_PACKET_CLASSES] INIT(RX_PACKET_QUOTAS);
-EXT int meltdown_1pkt INIT(1); /* prefer to schedule single-packet calls */
-EXT int rxi_doreclaim INIT(1); /* if discard one packet, discard all */
-EXT int rxi_md2cnt INIT(0); /* counter of skipped calls */
-EXT int rxi_2dchoice INIT(1); /* keep track of another call to schedule */
+EXT int rx_packetQuota[RX_N_PACKET_CLASSES] GLOBALSINIT(RX_PACKET_QUOTAS);
+EXT int meltdown_1pkt GLOBALSINIT(1); /* prefer to schedule single-packet calls */
+EXT int rxi_doreclaim GLOBALSINIT(1); /* if discard one packet, discard all */
+EXT int rxi_md2cnt GLOBALSINIT(0); /* counter of skipped calls */
+EXT int rxi_2dchoice GLOBALSINIT(1); /* keep track of another call to schedule */
/* quota system: each attached server process must be able to make
progress to avoid system deadlock, so we ensure that we can always
quota to send any packets) */
/* # to reserve so that thread with input can still make calls (send packets)
without blocking */
-EXT int rxi_dataQuota INIT(RX_MAX_QUOTA); /* packets to reserve for active threads */
+EXT int rxi_dataQuota GLOBALSINIT(RX_MAX_QUOTA); /* packets to reserve for active threads */
-EXT afs_int32 rxi_availProcs INIT(0); /* number of threads in the pool */
-EXT afs_int32 rxi_totalMin INIT(0); /* Sum(minProcs) forall services */
-EXT afs_int32 rxi_minDeficit INIT(0); /* number of procs needed to handle all minProcs */
+EXT afs_int32 rxi_availProcs GLOBALSINIT(0); /* number of threads in the pool */
+EXT afs_int32 rxi_totalMin GLOBALSINIT(0); /* Sum(minProcs) forall services */
+EXT afs_int32 rxi_minDeficit GLOBALSINIT(0); /* number of procs needed to handle all minProcs */
EXT int rx_nextCid; /* Next connection call id */
EXT int rx_epoch; /* Initialization time of rx */
EXT struct rx_peer **rx_peerHashTable;
EXT struct rx_connection **rx_connHashTable;
-EXT struct rx_connection *rx_connCleanup_list INIT(0);
-EXT afs_uint32 rx_hashTableSize INIT(257); /* Prime number */
+EXT struct rx_connection *rx_connCleanup_list GLOBALSINIT(0);
+EXT afs_uint32 rx_hashTableSize GLOBALSINIT(257); /* Prime number */
#ifdef RX_ENABLE_LOCKS
EXT afs_kmutex_t rx_peerHashTable_lock;
EXT afs_kmutex_t rx_connHashTable_lock;
#endif
#define rx_Log_event rxevent_debugFile
-EXT char *rx_packetTypes[RX_N_PACKET_TYPES] INIT(RX_PACKET_TYPES); /* Strings defined in rx.h */
+EXT char *rx_packetTypes[RX_N_PACKET_TYPES] GLOBALSINIT(RX_PACKET_TYPES); /* Strings defined in rx.h */
#ifndef KERNEL
/*
* Counter used to implement connection specific data
*/
-EXT int rxi_keyCreate_counter INIT(0);
+EXT int rxi_keyCreate_counter GLOBALSINIT(0);
/*
* Array of function pointers used to destory connection specific data
*/
-EXT rx_destructor_t *rxi_keyCreate_destructor INIT(NULL);
+EXT rx_destructor_t *rxi_keyCreate_destructor GLOBALSINIT(NULL);
#ifdef RX_ENABLE_LOCKS
EXT afs_kmutex_t rxi_keyCreate_lock;
#endif /* RX_ENABLE_LOCKS */
* server throttles the client by waiting before sending error messages.
* Disabled if abort thresholds are zero.
*/
-EXT int rxi_connAbortThreshhold INIT(0);
-EXT int rxi_connAbortDelay INIT(3000);
-EXT int rxi_callAbortThreshhold INIT(0);
-EXT int rxi_callAbortDelay INIT(3000);
+EXT int rxi_connAbortThreshhold GLOBALSINIT(0);
+EXT int rxi_connAbortDelay GLOBALSINIT(3000);
+EXT int rxi_callAbortThreshhold GLOBALSINIT(0);
+EXT int rxi_callAbortDelay GLOBALSINIT(3000);
/*
* Thread specific thread ID used to implement LWP_Index().
*/
#if defined(AFS_PTHREAD_ENV)
-EXT int rxi_fcfs_thread_num INIT(0);
+EXT int rxi_fcfs_thread_num GLOBALSINIT(0);
EXT pthread_key_t rx_thread_id_key;
/* keep track of pthread numbers - protected by rx_stats_mutex,
except in rx_Init() before mutex exists! */
-EXT int rxi_pthread_hinum INIT(0);
+EXT int rxi_pthread_hinum GLOBALSINIT(0);
#else
#define rxi_fcfs_thread_num (0)
#endif
EXT afs_kmutex_t rx_stats_mutex; /* used to activate stats gathering */
#endif
-EXT2 int rx_enable_stats INIT(0);
+EXT2 int rx_enable_stats GLOBALSINIT(0);
/*
* Set this flag to enable the listener thread to trade places with an idle
* worker thread to move the context switch from listener to worker out of
* the request path.
*/
-EXT int rx_enable_hot_thread INIT(0);
+EXT int rx_enable_hot_thread GLOBALSINIT(0);
#endif /* AFS_RX_GLOBALS_H */