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188 lines
4.0 KiB
C
188 lines
4.0 KiB
C
/*
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* ===================================
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* HARP | Host ATM Research Platform
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* ===================================
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*
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*
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* This Host ATM Research Platform ("HARP") file (the "Software") is
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* made available by Network Computing Services, Inc. ("NetworkCS")
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* "AS IS". NetworkCS does not provide maintenance, improvements or
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* support of any kind.
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*
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* NETWORKCS MAKES NO WARRANTIES OR REPRESENTATIONS, EXPRESS OR IMPLIED,
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* INCLUDING, BUT NOT LIMITED TO, IMPLIED WARRANTIES OF MERCHANTABILITY
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* AND FITNESS FOR A PARTICULAR PURPOSE, AS TO ANY ELEMENT OF THE
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* SOFTWARE OR ANY SUPPORT PROVIDED IN CONNECTION WITH THIS SOFTWARE.
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* In no event shall NetworkCS be responsible for any damages, including
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* but not limited to consequential damages, arising from or relating to
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* any use of the Software or related support.
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*
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* Copyright 1994-1998 Network Computing Services, Inc.
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*
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* Copies of this Software may be made, however, the above copyright
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* notice must be reproduced on all copies.
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*/
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/*
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* PVC-only Signalling Manager
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* ---------------------------
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*
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* Subroutines
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*/
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#include <sys/cdefs.h>
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__FBSDID("$FreeBSD$");
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#include <sys/param.h>
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#include <sys/systm.h>
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#include <sys/socket.h>
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#include <net/if.h>
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#include <netatm/port.h>
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#include <netatm/queue.h>
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#include <netatm/atm.h>
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#include <netatm/atm_sys.h>
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#include <netatm/atm_cm.h>
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#include <netatm/atm_if.h>
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#include <netatm/atm_vc.h>
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#include <netatm/atm_sigmgr.h>
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#include <netatm/sigpvc/sigpvc_var.h>
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#include <vm/uma.h>
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extern uma_zone_t sigpvc_vc_zone;
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/*
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* Create a SigPVC Permanent Virtual Channel
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*
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* This function will construct a vccb for a "sigpvc-controlled" PVC
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* and create the service stack requested by the user.
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*
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* Must be called at splnet.
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*
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* Arguments:
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* pvp pointer to sigpvc protocol instance
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* cvp pointer to CM's connection VCC
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* errp location to store an error code if CALL_FAILED is returned
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*
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* Returns:
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* CALL_FAILED - pvc creation failed
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* CALL_CONNECTED - pvc has been successfully created
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*
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*/
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int
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sigpvc_create_pvc(pvp, cvp, errp)
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struct sigpvc *pvp;
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Atm_connvc *cvp;
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int *errp;
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{
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Atm_addr_pvc *pp;
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struct vccb *vcp;
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u_int vpi, vci;
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pp = (Atm_addr_pvc *)cvp->cvc_attr.called.addr.address;
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vpi = ATM_PVC_GET_VPI(pp);
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vci = ATM_PVC_GET_VCI(pp);
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/*
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* Verify requested VPI,VCI
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*/
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if ((vpi > pvp->pv_pif->pif_maxvpi) ||
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(vci == 0) || (vci > pvp->pv_pif->pif_maxvci)) {
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*errp = ERANGE;
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return (CALL_FAILED);
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}
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for (vcp = Q_HEAD(pvp->pv_vccq, struct vccb); vcp;
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vcp = Q_NEXT(vcp, struct vccb, vc_sigelem)) {
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if ((vcp->vc_vpi == vpi) &&
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(vcp->vc_vci == vci)) {
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*errp = EADDRINUSE;
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return (CALL_FAILED);
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}
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}
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/*
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* Verify network interface
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*/
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if (cvp->cvc_attr.nif) {
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if (cvp->cvc_attr.nif->nif_pif != pvp->pv_pif) {
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*errp = EINVAL;
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return (CALL_FAILED);
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}
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}
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/*
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* Allocate control block for PVC
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*/
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vcp = uma_zalloc(sigpvc_vc_zone, M_WAITOK | M_ZERO);
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if (vcp == NULL) {
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*errp = ENOMEM;
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return (CALL_FAILED);
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}
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/*
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* Fill in VCCB
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*/
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vcp->vc_type = VCC_PVC | VCC_IN | VCC_OUT;
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vcp->vc_proto = ATM_SIG_PVC;
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vcp->vc_sstate = VCCS_ACTIVE;
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vcp->vc_ustate = VCCU_OPEN;
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vcp->vc_pif = pvp->pv_pif;
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vcp->vc_nif = cvp->cvc_attr.nif;
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vcp->vc_vpi = vpi;
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vcp->vc_vci = vci;
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vcp->vc_connvc = cvp;
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/*
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* Put VCCB on sigpvc queue
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*/
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ENQUEUE(vcp, struct vccb, vc_sigelem, pvp->pv_vccq);
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/*
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* Pass back VCCB to connection manager
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*/
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cvp->cvc_vcc = vcp;
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/*
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* PVC is ready to go!
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*/
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return (CALL_CONNECTED);
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}
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/*
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* Close a SigPVC VCC
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*
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* Clean up vccb, note that it's closing and wait for its freeing.
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*
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* Arguments:
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* vcp pointer to connection's VCC control block
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*
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* Returns:
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* none
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*
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*/
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void
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sigpvc_close_vcc(vcp)
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struct vccb *vcp;
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{
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/*
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* Sanity check (actually design-flaw check)
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*/
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if (vcp->vc_connvc->cvc_upcnt || vcp->vc_connvc->cvc_downcnt)
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panic("sigpvc_close_vcc: stack call");
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/*
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* Set state variables
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*/
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vcp->vc_ustate = VCCU_CLOSED;
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vcp->vc_sstate = VCCS_FREE;
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/*
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* Wait for user to free resources
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*/
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}
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