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/*
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* $Id: servrpc.h,v 1.2 2001-09-27 12:02:01 chris Exp $
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*/
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#ifndef SERVRPC_H
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#define SERVRPC_H
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#include <rtems/system.h>
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#include <rtems/score/cpu.h>
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#include <signal.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <rpc/types.h>
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#include <rdbg/remdeb.h>
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#include <rpc/rpc.h>
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#include <rpc/svc.h>
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extern int CONN_LIST_INC;
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extern int PID_LIST_INC;
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extern int TSP_RETRIES;
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extern int BackPort;
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extern char ActName[];
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extern int getId();
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#ifdef DDEBUG
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int rdb_debug; /* True if env var RDB_DEBUG defined */
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extern const char* PtraceNames[]; /* list of ptrace requests for debug out */
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extern const char* BmsgNames[]; /* list of BMSG_xxx names */
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extern const char* PtraceName(int req);
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#ifdef i386 /* low-high machine such as 386 */
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#define HL_W(w) (((UINT16)(w)>>8)+((((w)&0xFF)<<8)))
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#define HL_D(d) (((UINT32)(d)>>24)+(((d)&0x00FF0000)>>8) \
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+(((d)&0xFF00)<<8)+(((d)&0xFF)<<24))
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#else
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#define HL_W(w) w
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#define HL_D(d) d
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#endif
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# define DPRINTF(a) (rdb_debug ? printk ("%d >>> ", getId()), printk a : 0)
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#else
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# define DPRINTF(a) /* suppress */
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#endif
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/* Macros for analyzing/creating process status values. Presently do
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not need to be separated per target. Could even use WIF... */
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#define STS_SIGNALLED(status) (((status) & 0xFF) == 0x7F)
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#define STS_TERMONSIG(status) (((status) & 0xFF) && !STS_SIGNALLED(status))
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#define STS_TERMGETSIG(status) ((status) & 0x7F)
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#define STS_MAKESIG(sig) (((sig) << 8) | 0x7f)
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#define STS_GETSIG(status) ((status) >> 8)
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#define STS_GETCODE(status) ((status) >> 8)
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/* now define base types */
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#ifndef UCHAR_DEFINED
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#define UCHAR_DEFINED /* to handle duplicate typedes */
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typedef unsigned char UCHAR;
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typedef unsigned char UINT8;
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typedef char INT8;
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typedef unsigned short UINT16;
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typedef short INT16;
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typedef unsigned long UINT32;
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typedef long INT32;
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#endif /* UCHAR_DEFINED */
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typedef long PID; /* generalized process id */
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#ifndef True
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# define True 1
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# define False 0
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typedef char Boolean;
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#endif
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#define MAX_FILENAME 1024 /* largest filename with path */
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#define MAX_SEND 5 /* up to 5 pended outbound messages */
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#define SERVER_VERS 1
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typedef enum
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{ /* message types */
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BMSG_WARM=1, /* warm test for network connection */
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BMSG_WAIT, /* wait change (stopped/started) */
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BMSG_BREAK, /* breakpoint changed */
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BMSG_EXEC_FAIL, /* exec failed from spawn */
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BMSG_DETACH, /* process detached from server */
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BMSG_KILLED, /* killed by server */
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BMSG_NOT_PRIM, /* no longer the primary owner */
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BMSG_NEW_PID /* the process was restart with new pid (in
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context). Same ownership rules. */
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} BACK_MSG;
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typedef struct
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{ /* this is the break_list[0] entry of pid */
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UCHAR clr_step; /* true if step off break in last_break */
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UCHAR pad1; /* Set if STEPEMUL breakpoints exist */
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UINT16 last_break; /* last breakpoint we stopped on (if break) */
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UINT32 range_start; /* start address of range */
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UINT32 range_end; /* end address inclusive */
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} BASE_BREAK;
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enum
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{ /* last start values */
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LAST_NONE, /* stopped already */
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LAST_STEP, /* did a step last - do not send to prim */
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LAST_CONT, /* did a continue last */
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LAST_RANGE, /* in the middle of step-in-range */
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LAST_STEPOFF, /* stepped off break, now need to cont */
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LAST_KILLED, /* was killed by ptrace */
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LAST_DETACHED /* was detached by ptrace */
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};
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#define LAST_START 0x80 /* first execed. This is to handle MiX
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bug where we need to start again */
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typedef struct
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{ /* one per open process */
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PID pid; /* process id (or 0 if free) */
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int state; /* status from last wait if stopped */
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UCHAR running; /* True if running, else stopped/term */
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/* now connection control over process */
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UCHAR owners; /* count of owners for notify and term release */
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UCHAR primary_conn; /* primary owner connection or 255=none */
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UCHAR filler; /* Preserve alignment */
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/* now break control and support */
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UINT8 last_start; /* LAST_xx start info for wait() */
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UINT8 flags; /* PIDFLG_xxx flags */
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UINT16 break_alloc; /* number of entries in break_list */
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xdr_break *break_list; /* list of breakpoints ([0] is BASE_BREAK) */
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/* now registers and other save information */
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xdr_regs regs; /* saved registers when stopped */
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int is_step; /* Was break or step (regs ambiguous often) */
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int stop_wanted; /* Don't ignore next stop */
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UINT32 thread; /* current stopped thread or -1 if none */
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char *name; /* full pathname or NULL if not known */
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INT32 child; /* child pid that manages the pid */
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UINT32 textStart; /* for relocating breakpoints at restart */
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} PID_LIST;
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PID_LIST *pid_list; /* array of processes being managed */
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int pid_list_cnt; /* number of entries allocated */
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UINT16 last_break; /* unique handle generator for breaks */
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#define NO_PRIMARY ((UCHAR)-1)
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typedef union
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{ /* an opaque net address */
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unsigned long l[4];
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unsigned char c[16]; /* corresponds to IP, enough for ChIPC */
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} NET_OPAQUE;
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typedef struct
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{ /* one per connection */
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UCHAR in_use; /* True if in use */
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UCHAR debug_type; /* type of connection */
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UINT16 flags; /* flags for connection (CFLG_xxx) */
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NET_OPAQUE sender; /* opaque address for transport compare */
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NET_OPAQUE back_port; /* opaque address for transport event msgs */
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NET_OPAQUE route; /* optional route address */
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UINT32 pid_map[10]; /* map of pids owned relative to pid list */
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/* this allows up to 320 pids to be managed */
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UCHAR last_msg_num; /* msg number used last to handle multi-send */
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/* next field associated with UDP send messages */
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UCHAR retry; /* count of retries. If 0, ok. If not 0, we
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are in active wait for reply to an event */
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UCHAR send_idx; /* current number of send's pended */
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struct SEND_LIST
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{ /* holds pending msgs */
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UCHAR send_type; /* BMSG_xxx type of message */
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UCHAR retry; /* number of times to retry */
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UINT16 spec; /* spec field */
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PID pid; /* pid if applies */
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UINT32 context; /* additional context if needed */
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} send_list[MAX_SEND]; /* pended list of messages being sent */
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char user_name[NAMEMAX]; /* name of user connecting in */
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/* next fields are managed at runtime to handle lists, command upload, and
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command download. */
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enum {LST_NONE, LST_SPAWN, LST_INFO, LST_CMD_DOWN} list_type;
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char *list; /* curr list we are sending/getting (malloced) */
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UINT16 list_sz; /* size of current list (string len) */
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UINT16 list_num; /* number of current list or position */
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UINT16 list_alloc; /* amount allocated so far */
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UINT16 list_save; /* used internally */
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} CONN_LIST;
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CONN_LIST *conn_list; /* an array of connections */
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int conn_list_cnt; /* number allocated */
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/* Operations over the PID map. Each indexes into long and then bit */
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/* 5 is log2 of 32, the number of bits in an int */
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#define PIDMAP_TEST(conn,idx) \
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(conn_list [conn].pid_map [(idx) >> 5] & (1 << ((idx) & 31)))
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#define PIDMAP_SET(conn,idx) \
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(conn_list [conn].pid_map [(idx) >> 5] |= 1 << ((idx) & 31))
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#define PIDMAP_CLEAR(conn,idx) \
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(conn_list [conn].pid_map [(idx) >> 5] &= ~(1 << ((idx) &31)))
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#define PROC_TERMINATED(plst) \
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(!(plst)->running && !STS_SIGNALLED ((plst)->state))
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/* first define the Connection routines exported from servcon.c */
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int ConnCreate (struct svc_req *rqstp, open_in *in);
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void ConnDelete (int conn_idx, struct svc_req *rqstp, close_control control);
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void TspInit (int rpc_io_channel);
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Boolean TspTranslateRpcAddr (struct svc_req *rqstp, NET_OPAQUE *opaque);
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Boolean TspValidateAddr (NET_OPAQUE *opaque, NET_OPAQUE *sender);
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int TspConnGetIndex (struct svc_req *rqstp);
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void TspSendWaitChange (int conn_idx, BACK_MSG msg, UINT16 spec, PID pid,
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UINT32 context, Boolean force);
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void TspSendMessage (int conn_idx, Boolean resend);
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void TspMessageReceive (int conn_idx, PID pid);
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char* TspGetHostName (int conn_idx);
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void TgtCreateNew (PID pid, int conn_idx, INT32 child,
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char *name, Boolean spawn);
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Boolean TgtAttach (int conn_idx, PID pid);
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void TgtNotifyWaitChange(PID pid, int status, Boolean exclude);
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void TgtNotifyAll (int pid_idx, BACK_MSG msg, UINT16 spec,
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UINT32 context, int exclude_conn, Boolean force);
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void TgtDelete (PID_LIST*, int conn_idx, BACK_MSG notify);
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int TgtKillAndDelete (PID_LIST *plst, struct svc_req *rqstp, Boolean term);
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void TgtDetachCon (int conn_idx, int pid_idx, Boolean delete);
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int TgtThreadList (PID_LIST*, unsigned* buf, unsigned int size);
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int TgtGetThreadName (PID_LIST*, unsigned thLi, char* name);
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int TgtPtrace (int req, PID pid, char *addr, int data, void *addr2);
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int TgtRealPtrace (int req, PID pid, char *addr, int data, void *addr2);
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Boolean TgtHandleChildChange(PID pid, int* status, int* unexp,
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CPU_Exception_frame *ctx);
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#ifdef DDEBUG
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/* TgtDbgPtrace is a wrapper for RealPtrace() doing traces */
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int TgtDbgPtrace (int req, PID pid, char *addr, int data, void *addr2);
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#endif
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/* Information stored in "handle" */
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#define BKPT_INACTIVE 1 /* bkpt inactive for this execution */
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#define BKPT_ACTIVE 0 /* bkpt active for this execution */
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int BreakOverwrite (const PID_LIST* plst,const char* addr,
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unsigned int size);
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int BreakSet (PID_LIST*, int conn_idx, xdr_break*);
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int BreakSetAt (PID_LIST*, int conn_idx, unsigned long addr,break_type);
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int BreakClear (PID_LIST*, int conn_idx, int handle);
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int BreakGetIndex (PID_LIST*, void* addr);
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int BreakGet (const PID_LIST*, int data, xdr_break*);
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void BreakHide (const PID_LIST*, void*, int, void*);
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int BreakStepOff (const PID_LIST*, void** paddr2);
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void BreakSteppedOff (PID_LIST*);
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int BreakRespawn (PID_LIST*);
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int BreakIdentify (PID_LIST*, int adjust, int thread);
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void BreakPcChanged (PID_LIST*);
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int BreakStepRange (PID_LIST*, void* addr, int len);
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void BreaksDisable (int pid);
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void BreaksEnable (int pid);
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int TgtBreakRestoreOrig (int pid, void* addr, void* addr2);
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void TgtBreakCancelStep (PID_LIST* plst);
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Boolean ListAlloc (char *buff, CONN_LIST *clst);
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int FindPidEntry (int pid);
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open_out* RPCGENSRVNAME(open_connex_2_svc) (open_in *in,
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struct svc_req *rqstp);
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signal_out* RPCGENSRVNAME(send_signal_2_svc) (signal_in *in,
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struct svc_req *rqstp);
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ptrace_out* RPCGENSRVNAME(ptrace_2_svc) (ptrace_in *in,
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struct svc_req *rqstp);
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wait_out* RPCGENSRVNAME(wait_info_2_svc) (wait_in *in,
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struct svc_req *rqstp);
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#endif /* !SERVRPC_H */
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