/* * CDDL HEADER START * * The contents of this file are subject to the terms of the * Common Development and Distribution License, Version 1.0 only * (the "License"). You may not use this file except in compliance * with the License. * * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE * or http://www.opensolaris.org/os/licensing. * See the License for the specific language governing permissions * and limitations under the License. * * When distributing Covered Code, include this CDDL HEADER in each * file and include the License file at usr/src/OPENSOLARIS.LICENSE. * If applicable, add the following below this CDDL HEADER, with the * fields enclosed by brackets "[]" replaced with your own identifying * information: Portions Copyright [yyyy] [name of copyright owner] * * CDDL HEADER END */ /* * Copyright 2005 Sun Microsystems, Inc. All rights reserved. * Use is subject to license terms. */ #ifndef _SYS_MULTIDATA_H #define _SYS_MULTIDATA_H #pragma ident "%Z%%M% %I% %E% SMI" #ifdef __cplusplus extern "C" { #endif /* * Multidata interface declarations. * These interfaces are still evolving; do not use them in unbundled drivers. */ /* * Multidata packet attribute information. */ typedef struct pattrinfo_s { uint_t type; /* attribute type value */ uint_t len; /* attribute length */ void *buf; /* pointer to user data area */ } pattrinfo_t; /* * Maximum number of payload areas for a single packet descriptor. */ #define MULTIDATA_MAX_PBUFS 16 /* * Multidata buffer information. */ typedef struct mbufinfo_s { uchar_t *hbuf_rptr; /* start address of header buffer */ uchar_t *hbuf_wptr; /* end address of header buffer */ uint_t pbuf_cnt; /* number of payload buffer */ struct pbuf_ary_s { uchar_t *pbuf_rptr; /* start address of payload buffer */ uchar_t *pbuf_wptr; /* end address of payload buffer */ } pbuf_ary[MULTIDATA_MAX_PBUFS]; } mbufinfo_t; /* * Multidata packet descriptor information. */ struct pld_ary_s { int pld_pbuf_idx; /* payload buffer index */ uchar_t *pld_rptr; /* start address of payload data */ uchar_t *pld_wptr; /* pointer to end of payload data */ }; #define PDESCINFO_STRUCT(elems) \ { \ uint_t flags; /* misc. flags */ \ uchar_t *hdr_base; /* start address of header area */ \ uchar_t *hdr_rptr; /* start address of header data */ \ uchar_t *hdr_wptr; /* end address of header data */ \ uchar_t *hdr_lim; /* end address of header area */ \ uint_t pld_cnt; /* number of payload area */ \ struct pld_ary_s pld_ary[(elems)]; \ } typedef struct pdescinfo_s PDESCINFO_STRUCT(MULTIDATA_MAX_PBUFS) pdescinfo_t; /* * Possible values for flags */ #define PDESC_HBUF_REF 0x1 /* descriptor uses header buffer */ #define PDESC_PBUF_REF 0x2 /* descriptor uses payload buffer(s) */ #define PDESC_HDRSIZE(p) ((p)->hdr_lim - (p)->hdr_base) #define PDESC_HDRL(p) ((p)->hdr_wptr - (p)->hdr_rptr) #define PDESC_HDRHEAD(p) ((p)->hdr_rptr - (p)->hdr_base) #define PDESC_HDRTAIL(p) ((p)->hdr_lim - (p)->hdr_wptr) #define PDESC_HDR_ADD(p, base, head, len, tail) { \ (p)->hdr_base = (base); \ (p)->hdr_rptr = (base) + (head); \ (p)->hdr_wptr = (p)->hdr_rptr + (len); \ (p)->hdr_lim = (p)->hdr_wptr + (tail); \ } #define PDESC_PLD_INIT(p) ((p)->pld_cnt = 0) #define PDESC_PLD_SPAN_SIZE(p, n) \ ((p)->pld_ary[(n)].pld_wptr - (p)->pld_ary[(n)].pld_rptr) #define PDESC_PLDL(p, n) PDESC_PLD_SPAN_SIZE(p, n) #define PDESC_PLD_SPAN_TRIM(p, n, b) { \ ((p)->pld_ary[(n)].pld_wptr -= (b)); \ ASSERT((p)->pld_ary[(n)].pld_wptr >= (p)->pld_ary[(n)].pld_rptr); \ } #define PDESC_PLD_SPAN_CLEAR(p, n) \ PDESC_PLD_SPAN_TRIM(p, n, PDESC_PLD_SPAN_SIZE(p, n)) #define PDESC_PLD_SPAN_ADD(p, pbuf_idx, rptr, len) { \ ASSERT((p)->pld_cnt < MULTIDATA_MAX_PBUFS); \ (p)->pld_ary[(p)->pld_cnt].pld_pbuf_idx = (pbuf_idx); \ (p)->pld_ary[(p)->pld_cnt].pld_rptr = (rptr); \ (p)->pld_ary[(p)->pld_cnt].pld_wptr = (rptr) + (len); \ (p)->pld_cnt++; \ } /* * These structures are opaque to multidata clients. */ struct pdesc_s; typedef struct pdesc_s pdesc_t; struct pattr_s; typedef struct pattr_s pattr_t; struct multidata_s; typedef struct multidata_s multidata_t; #ifdef _KERNEL extern multidata_t *mmd_alloc(mblk_t *, mblk_t **, int); extern int mmd_addpldbuf(multidata_t *, mblk_t *); extern multidata_t *mmd_getmultidata(mblk_t *); extern void mmd_getregions(multidata_t *, mbufinfo_t *); extern uint_t mmd_getcnt(multidata_t *, uint_t *, uint_t *); extern pdesc_t *mmd_addpdesc(multidata_t *, pdescinfo_t *, int *, int); extern void mmd_rempdesc(pdesc_t *); extern pdesc_t *mmd_getfirstpdesc(multidata_t *, pdescinfo_t *); extern pdesc_t *mmd_getlastpdesc(multidata_t *, pdescinfo_t *); extern pdesc_t *mmd_getnextpdesc(pdesc_t *, pdescinfo_t *); extern pdesc_t *mmd_getprevpdesc(pdesc_t *, pdescinfo_t *); extern pdesc_t *mmd_adjpdesc(pdesc_t *, pdescinfo_t *); extern mblk_t *mmd_transform(pdesc_t *); extern mblk_t *mmd_transform_link(pdesc_t *); extern int mmd_dupbufs(multidata_t *, mblk_t **, mblk_t **); extern int mmd_getpdescinfo(pdesc_t *, pdescinfo_t *); extern pattr_t *mmd_addpattr(multidata_t *, pdesc_t *, pattrinfo_t *, boolean_t, int); extern void mmd_rempattr(pattr_t *); extern pattr_t *mmd_getpattr(multidata_t *, pdesc_t *, pattrinfo_t *); extern void mmd_getsize(multidata_t *, uint_t *, uint_t *); #endif /* _KERNEL */ #ifdef __cplusplus } #endif #endif /* _SYS_MULTIDATA_H */