136210Ssklower /* 237472Ssklower * Copyright (c) 1988, 1989 Regents of the University of California. 336210Ssklower * All rights reserved. 436210Ssklower * 544465Sbostic * %sccs.include.redist.c% 636210Ssklower * 7*53649Ssklower * @(#)radix.c 7.14 (Berkeley) 05/21/92 836210Ssklower */ 936210Ssklower 1036210Ssklower /* 1136210Ssklower * Routines to build and maintain radix trees for routing lookups. 1236210Ssklower */ 1336210Ssklower #ifndef RNF_NORMAL 1436354Ssklower #include "param.h" 1536210Ssklower #include "radix.h" 1640784Ssklower #include "malloc.h" 1740784Ssklower #define M_DONTWAIT M_NOWAIT 1836210Ssklower #endif 1950689Ssklower struct radix_mask *rn_mkfreelist; 2038846Ssklower struct radix_node_head *mask_rnhead; 2150689Ssklower #define rn_maskhead (mask_rnhead->rnh_treetop) 2238846Ssklower #undef Bcmp 2338846Ssklower #define Bcmp(a, b, l) (l == 0 ? 0 : bcmp((caddr_t)(a), (caddr_t)(b), (u_long)l)) 2436210Ssklower /* 2536210Ssklower * The data structure for the keys is a radix tree with one way 2636210Ssklower * branching removed. The index rn_b at an internal node n represents a bit 2736210Ssklower * position to be tested. The tree is arranged so that all descendants 2836210Ssklower * of a node n have keys whose bits all agree up to position rn_b - 1. 2936210Ssklower * (We say the index of n is rn_b.) 3036210Ssklower * 3136210Ssklower * There is at least one descendant which has a one bit at position rn_b, 3236210Ssklower * and at least one with a zero there. 3336210Ssklower * 3436210Ssklower * A route is determined by a pair of key and mask. We require that the 3536210Ssklower * bit-wise logical and of the key and mask to be the key. 3636210Ssklower * We define the index of a route to associated with the mask to be 3736210Ssklower * the first bit number in the mask where 0 occurs (with bit number 0 3836210Ssklower * representing the highest order bit). 3936210Ssklower * 4036210Ssklower * We say a mask is normal if every bit is 0, past the index of the mask. 4136210Ssklower * If a node n has a descendant (k, m) with index(m) == index(n) == rn_b, 4236210Ssklower * and m is a normal mask, then the route applies to every descendant of n. 4336210Ssklower * If the index(m) < rn_b, this implies the trailing last few bits of k 4436210Ssklower * before bit b are all 0, (and hence consequently true of every descendant 4536210Ssklower * of n), so the route applies to all descendants of the node as well. 4636210Ssklower * 4736210Ssklower * The present version of the code makes no use of normal routes, 4836210Ssklower * but similar logic shows that a non-normal mask m such that 4936210Ssklower * index(m) <= index(n) could potentially apply to many children of n. 5036210Ssklower * Thus, for each non-host route, we attach its mask to a list at an internal 5136210Ssklower * node as high in the tree as we can go. 5236210Ssklower */ 5336210Ssklower 5436210Ssklower struct radix_node * 5536210Ssklower rn_search(v, head) 5636210Ssklower struct radix_node *head; 5736354Ssklower register caddr_t v; 5836210Ssklower { 5936210Ssklower register struct radix_node *x; 6036210Ssklower 6136210Ssklower for (x = head; x->rn_b >= 0;) { 6236210Ssklower if (x->rn_bmask & v[x->rn_off]) 6336210Ssklower x = x->rn_r; 6436210Ssklower else 6536210Ssklower x = x->rn_l; 6636210Ssklower } 6736210Ssklower return x; 6836210Ssklower }; 6936210Ssklower 7037472Ssklower struct radix_node * 7137472Ssklower rn_search_m(v, head, m) 7237472Ssklower struct radix_node *head; 7337472Ssklower register caddr_t v, m; 7437472Ssklower { 7537472Ssklower register struct radix_node *x; 7636210Ssklower 7737472Ssklower for (x = head; x->rn_b >= 0;) { 7837472Ssklower if ((x->rn_bmask & m[x->rn_off]) && 7937472Ssklower (x->rn_bmask & v[x->rn_off])) 8037472Ssklower x = x->rn_r; 8137472Ssklower else 8237472Ssklower x = x->rn_l; 8337472Ssklower } 8437472Ssklower return x; 8537472Ssklower }; 8637472Ssklower 8750724Ssklower rn_refines(m, n) 8850724Ssklower register caddr_t m, n; 8950724Ssklower { 9050724Ssklower register caddr_t lim, lim2 = lim = n + *(u_char *)n; 9150724Ssklower int longer = (*(u_char *)n++) - (int)(*(u_char *)m++); 92*53649Ssklower int masks_are_equal = 1; 9337472Ssklower 9450724Ssklower if (longer > 0) 9550724Ssklower lim -= longer; 96*53649Ssklower while (n < lim) { 97*53649Ssklower if (*n & ~(*m)) 9850724Ssklower return 0; 99*53649Ssklower if (*n++ != *m++) 100*53649Ssklower masks_are_equal = 0; 101*53649Ssklower 102*53649Ssklower } 10350724Ssklower while (n < lim2) 10450724Ssklower if (*n++) 10550724Ssklower return 0; 106*53649Ssklower if (masks_are_equal && (longer < 0)) 107*53649Ssklower for (lim2 = m - longer; m < lim2; ) 108*53649Ssklower if (*m++) 109*53649Ssklower return 1; 110*53649Ssklower return (!masks_are_equal); 11150724Ssklower } 11250724Ssklower 11350724Ssklower 11450689Ssklower #define MAXKEYLEN 52 11536210Ssklower static int gotOddMasks; 11636210Ssklower static char maskedKey[MAXKEYLEN]; 11736210Ssklower 11836210Ssklower struct radix_node * 11936210Ssklower rn_match(v, head) 12036210Ssklower struct radix_node *head; 12136354Ssklower caddr_t v; 12236210Ssklower { 12336210Ssklower register struct radix_node *t = head, *x; 12436354Ssklower register caddr_t cp = v, cp2, cp3; 12536354Ssklower caddr_t cplim, mstart; 12636210Ssklower struct radix_node *saved_t; 12736354Ssklower int off = t->rn_off, vlen = *(u_char *)cp, matched_off; 12836210Ssklower 12936210Ssklower /* 13036210Ssklower * Open code rn_search(v, head) to avoid overhead of extra 13136210Ssklower * subroutine call. 13236210Ssklower */ 13336210Ssklower for (; t->rn_b >= 0; ) { 13436210Ssklower if (t->rn_bmask & cp[t->rn_off]) 13536210Ssklower t = t->rn_r; 13636210Ssklower else 13736210Ssklower t = t->rn_l; 13836210Ssklower } 13936210Ssklower /* 14036210Ssklower * See if we match exactly as a host destination 14136210Ssklower */ 14236210Ssklower cp += off; cp2 = t->rn_key + off; cplim = v + vlen; 14336210Ssklower for (; cp < cplim; cp++, cp2++) 14436210Ssklower if (*cp != *cp2) 14536210Ssklower goto on1; 14637472Ssklower /* 14737472Ssklower * This extra grot is in case we are explicitly asked 14837472Ssklower * to look up the default. Ugh! 14937472Ssklower */ 15037472Ssklower if ((t->rn_flags & RNF_ROOT) && t->rn_dupedkey) 15137472Ssklower t = t->rn_dupedkey; 15236210Ssklower return t; 15336210Ssklower on1: 15436210Ssklower matched_off = cp - v; 15536210Ssklower saved_t = t; 15636210Ssklower do { 15736210Ssklower if (t->rn_mask) { 15836210Ssklower /* 15936210Ssklower * Even if we don't match exactly as a hosts; 16036210Ssklower * we may match if the leaf we wound up at is 16136210Ssklower * a route to a net. 16236210Ssklower */ 16336210Ssklower cp3 = matched_off + t->rn_mask; 16438846Ssklower cp2 = matched_off + t->rn_key; 16536210Ssklower for (; cp < cplim; cp++) 16636210Ssklower if ((*cp2++ ^ *cp) & *cp3++) 16736210Ssklower break; 16836210Ssklower if (cp == cplim) 16936210Ssklower return t; 17038846Ssklower cp = matched_off + v; 17136210Ssklower } 17236210Ssklower } while (t = t->rn_dupedkey); 17336210Ssklower t = saved_t; 17436210Ssklower /* start searching up the tree */ 17536210Ssklower do { 17636210Ssklower register struct radix_mask *m; 17736210Ssklower t = t->rn_p; 17836210Ssklower if (m = t->rn_mklist) { 17937472Ssklower /* 18037472Ssklower * After doing measurements here, it may 18137472Ssklower * turn out to be faster to open code 18237472Ssklower * rn_search_m here instead of always 18337472Ssklower * copying and masking. 18437472Ssklower */ 18536210Ssklower off = min(t->rn_off, matched_off); 18636210Ssklower mstart = maskedKey + off; 18736210Ssklower do { 18836210Ssklower cp2 = mstart; 18936210Ssklower cp3 = m->rm_mask + off; 19036210Ssklower for (cp = v + off; cp < cplim;) 19136210Ssklower *cp2++ = *cp++ & *cp3++; 19236210Ssklower x = rn_search(maskedKey, t); 19336210Ssklower while (x && x->rn_mask != m->rm_mask) 19436210Ssklower x = x->rn_dupedkey; 19536210Ssklower if (x && 19636210Ssklower (Bcmp(mstart, x->rn_key + off, 19736210Ssklower vlen - off) == 0)) 19836210Ssklower return x; 19936210Ssklower } while (m = m->rm_mklist); 20036210Ssklower } 20136210Ssklower } while (t != head); 20236210Ssklower return 0; 20336210Ssklower }; 20436210Ssklower 20536210Ssklower #ifdef RN_DEBUG 20636210Ssklower int rn_nodenum; 20736210Ssklower struct radix_node *rn_clist; 20836210Ssklower int rn_saveinfo; 20936210Ssklower #endif 21036210Ssklower 21136210Ssklower struct radix_node * 21236210Ssklower rn_newpair(v, b, nodes) 21336354Ssklower caddr_t v; 21452264Storek int b; 21536210Ssklower struct radix_node nodes[2]; 21636210Ssklower { 21736210Ssklower register struct radix_node *tt = nodes, *t = tt + 1; 21836210Ssklower t->rn_b = b; t->rn_bmask = 0x80 >> (b & 7); 21936210Ssklower t->rn_l = tt; t->rn_off = b >> 3; 22036210Ssklower tt->rn_b = -1; tt->rn_key = v; tt->rn_p = t; 22136210Ssklower tt->rn_flags = t->rn_flags = RNF_ACTIVE; 22236210Ssklower #ifdef RN_DEBUG 22336210Ssklower tt->rn_info = rn_nodenum++; t->rn_info = rn_nodenum++; 22436210Ssklower tt->rn_twin = t; tt->rn_ybro = rn_clist; rn_clist = tt; 22536210Ssklower #endif 22636210Ssklower return t; 22736210Ssklower } 22836210Ssklower 22936210Ssklower int rn_debug = 1; 23036210Ssklower struct radix_node * 23136210Ssklower rn_insert(v, head, dupentry, nodes) 23236354Ssklower caddr_t v; 23336210Ssklower struct radix_node *head; 23436210Ssklower int *dupentry; 23536210Ssklower struct radix_node nodes[2]; 23636210Ssklower { 23736210Ssklower int head_off = head->rn_off, vlen = (int)*((u_char *)v); 23836210Ssklower register struct radix_node *t = rn_search(v, head); 23936354Ssklower register caddr_t cp = v + head_off; 24036210Ssklower register int b; 24136210Ssklower struct radix_node *tt; 24236210Ssklower /* 24336210Ssklower *find first bit at which v and t->rn_key differ 24436210Ssklower */ 24536210Ssklower { 24636354Ssklower register caddr_t cp2 = t->rn_key + head_off; 24736210Ssklower register int cmp_res; 24836354Ssklower caddr_t cplim = v + vlen; 24936210Ssklower 25036210Ssklower while (cp < cplim) 25136210Ssklower if (*cp2++ != *cp++) 25236210Ssklower goto on1; 25336210Ssklower *dupentry = 1; 25436210Ssklower return t; 25536210Ssklower on1: 25636210Ssklower *dupentry = 0; 25736210Ssklower cmp_res = (cp[-1] ^ cp2[-1]) & 0xff; 25836210Ssklower for (b = (cp - v) << 3; cmp_res; b--) 25936210Ssklower cmp_res >>= 1; 26036210Ssklower } 26136210Ssklower { 26236210Ssklower register struct radix_node *p, *x = head; 26336210Ssklower cp = v; 26436210Ssklower do { 26536210Ssklower p = x; 26636210Ssklower if (cp[x->rn_off] & x->rn_bmask) 26736210Ssklower x = x->rn_r; 26836210Ssklower else x = x->rn_l; 26936210Ssklower } while (b > (unsigned) x->rn_b); /* x->rn_b < b && x->rn_b >= 0 */ 27036210Ssklower #ifdef RN_DEBUG 27136210Ssklower if (rn_debug) 27236210Ssklower printf("Going In:\n"), traverse(p); 27336210Ssklower #endif 27436210Ssklower t = rn_newpair(v, b, nodes); tt = t->rn_l; 27536210Ssklower if ((cp[p->rn_off] & p->rn_bmask) == 0) 27636210Ssklower p->rn_l = t; 27736210Ssklower else 27836210Ssklower p->rn_r = t; 27936210Ssklower x->rn_p = t; t->rn_p = p; /* frees x, p as temp vars below */ 28036210Ssklower if ((cp[t->rn_off] & t->rn_bmask) == 0) { 28136210Ssklower t->rn_r = x; 28236210Ssklower } else { 28336210Ssklower t->rn_r = tt; t->rn_l = x; 28436210Ssklower } 28536210Ssklower #ifdef RN_DEBUG 28636210Ssklower if (rn_debug) 28736210Ssklower printf("Coming out:\n"), traverse(p); 28836210Ssklower #endif 28936210Ssklower } 29036210Ssklower return (tt); 29136210Ssklower } 29236210Ssklower 29336210Ssklower struct radix_node * 29443336Ssklower rn_addmask(netmask, search, skip) 29552264Storek caddr_t netmask; 29652264Storek int search, skip; 29743336Ssklower { 29843336Ssklower register struct radix_node *x; 29943336Ssklower register caddr_t cp, cplim; 30043336Ssklower register int b, mlen, j; 30143336Ssklower int maskduplicated; 30243336Ssklower 30343336Ssklower mlen = *(u_char *)netmask; 30443336Ssklower if (search) { 30543336Ssklower x = rn_search(netmask, rn_maskhead); 30643336Ssklower mlen = *(u_char *)netmask; 30743336Ssklower if (Bcmp(netmask, x->rn_key, mlen) == 0) 30843336Ssklower return (x); 30943336Ssklower } 31043336Ssklower R_Malloc(x, struct radix_node *, MAXKEYLEN + 2 * sizeof (*x)); 31143336Ssklower if (x == 0) 31243336Ssklower return (0); 31343336Ssklower Bzero(x, MAXKEYLEN + 2 * sizeof (*x)); 31443336Ssklower cp = (caddr_t)(x + 2); 31543336Ssklower Bcopy(netmask, cp, mlen); 31643336Ssklower netmask = cp; 31743336Ssklower x = rn_insert(netmask, rn_maskhead, &maskduplicated, x); 31843336Ssklower /* 31943336Ssklower * Calculate index of mask. 32043336Ssklower */ 32143336Ssklower cplim = netmask + mlen; 32243336Ssklower for (cp = netmask + skip; cp < cplim; cp++) 32343336Ssklower if (*(u_char *)cp != 0xff) 32443336Ssklower break; 32543336Ssklower b = (cp - netmask) << 3; 32643336Ssklower if (cp != cplim) { 32743336Ssklower if (*cp != 0) { 32843336Ssklower gotOddMasks = 1; 32943336Ssklower for (j = 0x80; j; b++, j >>= 1) 33043336Ssklower if ((j & *cp) == 0) 33143336Ssklower break; 33243336Ssklower } 33343336Ssklower } 33443336Ssklower x->rn_b = -1 - b; 33543336Ssklower return (x); 33643336Ssklower } 33743336Ssklower 33843336Ssklower struct radix_node * 33936210Ssklower rn_addroute(v, netmask, head, treenodes) 34052264Storek caddr_t v, netmask; 34152264Storek struct radix_node *head; 34236210Ssklower struct radix_node treenodes[2]; 34336210Ssklower { 34436210Ssklower register int j; 34536354Ssklower register caddr_t cp; 34636210Ssklower register struct radix_node *t, *x, *tt; 34736210Ssklower short b = 0, b_leaf; 34843336Ssklower int vlen = *(u_char *)v, mlen, keyduplicated; 34936354Ssklower caddr_t cplim; unsigned char *maskp; 35036210Ssklower struct radix_mask *m, **mp; 35136210Ssklower struct radix_node *saved_tt; 35236210Ssklower 35336210Ssklower /* 35436210Ssklower * In dealing with non-contiguous masks, there may be 35536210Ssklower * many different routes which have the same mask. 35636210Ssklower * We will find it useful to have a unique pointer to 35736210Ssklower * the mask to speed avoiding duplicate references at 35836210Ssklower * nodes and possibly save time in calculating indices. 35936210Ssklower */ 36036210Ssklower if (netmask) { 36136210Ssklower x = rn_search(netmask, rn_maskhead); 36236210Ssklower mlen = *(u_char *)netmask; 36343336Ssklower if (Bcmp(netmask, x->rn_key, mlen) != 0) { 36443336Ssklower x = rn_addmask(netmask, 0, head->rn_off); 36538846Ssklower if (x == 0) 36638846Ssklower return (0); 36736210Ssklower } 36843336Ssklower netmask = x->rn_key; 36943336Ssklower b = -1 - x->rn_b; 37036210Ssklower } 37136210Ssklower /* 37236210Ssklower * Deal with duplicated keys: attach node to previous instance 37336210Ssklower */ 37436210Ssklower saved_tt = tt = rn_insert(v, head, &keyduplicated, treenodes); 37536210Ssklower if (keyduplicated) { 37638846Ssklower do { 37736210Ssklower if (tt->rn_mask == netmask) 37836210Ssklower return (0); 37938846Ssklower t = tt; 38050724Ssklower if (netmask == 0 || 38150724Ssklower (tt->rn_mask && rn_refines(netmask, tt->rn_mask))) 38250724Ssklower break; 38338846Ssklower } while (tt = tt->rn_dupedkey); 38436210Ssklower /* 38536210Ssklower * If the mask is not duplicated, we wouldn't 38636210Ssklower * find it among possible duplicate key entries 38736210Ssklower * anyway, so the above test doesn't hurt. 38836210Ssklower * 389*53649Ssklower * We sort the masks for a duplicated key the same way as 390*53649Ssklower * in a masklist -- most specific to least specific. 391*53649Ssklower * This may require the unfortunate nuisance of relocating 39236210Ssklower * the head of the list. 39336210Ssklower */ 39450724Ssklower if (tt && t == saved_tt) { 39550724Ssklower struct radix_node *xx = x; 39650724Ssklower /* link in at head of list */ 39750724Ssklower (tt = treenodes)->rn_dupedkey = t; 39850724Ssklower tt->rn_flags = t->rn_flags; 39950724Ssklower tt->rn_p = x = t->rn_p; 40050724Ssklower if (x->rn_l == t) x->rn_l = tt; else x->rn_r = tt; 40150724Ssklower saved_tt = tt; x = xx; 40250724Ssklower } else { 40350724Ssklower (tt = treenodes)->rn_dupedkey = t->rn_dupedkey; 40450724Ssklower t->rn_dupedkey = tt; 40550724Ssklower } 40636210Ssklower #ifdef RN_DEBUG 40736210Ssklower t=tt+1; tt->rn_info = rn_nodenum++; t->rn_info = rn_nodenum++; 40836210Ssklower tt->rn_twin = t; tt->rn_ybro = rn_clist; rn_clist = tt; 40936210Ssklower #endif 41036210Ssklower t = saved_tt; 41138846Ssklower tt->rn_key = (caddr_t) v; 41238846Ssklower tt->rn_b = -1; 41336210Ssklower tt->rn_flags = t->rn_flags & ~RNF_ROOT; 41436210Ssklower } 41536210Ssklower /* 41636210Ssklower * Put mask in tree. 41736210Ssklower */ 41838846Ssklower if (netmask) { 41938846Ssklower tt->rn_mask = netmask; 42038846Ssklower tt->rn_b = x->rn_b; 42136210Ssklower } 42236210Ssklower t = saved_tt->rn_p; 42336210Ssklower b_leaf = -1 - t->rn_b; 42436210Ssklower if (t->rn_r == saved_tt) x = t->rn_l; else x = t->rn_r; 42536210Ssklower /* Promote general routes from below */ 42636210Ssklower if (x->rn_b < 0) { 42745620Ssklower if (x->rn_mask && (x->rn_b >= b_leaf) && x->rn_mklist == 0) { 42836210Ssklower MKGet(m); 42936210Ssklower if (m) { 43036210Ssklower Bzero(m, sizeof *m); 43136210Ssklower m->rm_b = x->rn_b; 43236210Ssklower m->rm_mask = x->rn_mask; 43338846Ssklower x->rn_mklist = t->rn_mklist = m; 43436210Ssklower } 43536210Ssklower } 43636210Ssklower } else if (x->rn_mklist) { 43736210Ssklower /* 43836210Ssklower * Skip over masks whose index is > that of new node 43936210Ssklower */ 44036210Ssklower for (mp = &x->rn_mklist; m = *mp; mp = &m->rm_mklist) 44136210Ssklower if (m->rm_b >= b_leaf) 44236210Ssklower break; 44336210Ssklower t->rn_mklist = m; *mp = 0; 44436210Ssklower } 44536210Ssklower /* Add new route to highest possible ancestor's list */ 44636210Ssklower if ((netmask == 0) || (b > t->rn_b )) 44736210Ssklower return tt; /* can't lift at all */ 44836210Ssklower b_leaf = tt->rn_b; 44936210Ssklower do { 45036210Ssklower x = t; 45136210Ssklower t = t->rn_p; 45236210Ssklower } while (b <= t->rn_b && x != head); 45336210Ssklower /* 45436210Ssklower * Search through routes associated with node to 45536210Ssklower * insert new route according to index. 45636210Ssklower * For nodes of equal index, place more specific 45736210Ssklower * masks first. 45836210Ssklower */ 45936210Ssklower cplim = netmask + mlen; 46036210Ssklower for (mp = &x->rn_mklist; m = *mp; mp = &m->rm_mklist) { 46136210Ssklower if (m->rm_b < b_leaf) 46236210Ssklower continue; 46336210Ssklower if (m->rm_b > b_leaf) 46436210Ssklower break; 46536210Ssklower if (m->rm_mask == netmask) { 46636210Ssklower m->rm_refs++; 46736210Ssklower tt->rn_mklist = m; 46836210Ssklower return tt; 46936210Ssklower } 47050724Ssklower if (rn_refines(netmask, m->rm_mask)) 47150724Ssklower break; 47236210Ssklower } 47336210Ssklower MKGet(m); 47436210Ssklower if (m == 0) { 47536210Ssklower printf("Mask for route not entered\n"); 47636210Ssklower return (tt); 47736210Ssklower } 47836210Ssklower Bzero(m, sizeof *m); 47936210Ssklower m->rm_b = b_leaf; 48036210Ssklower m->rm_mask = netmask; 48136210Ssklower m->rm_mklist = *mp; 48236210Ssklower *mp = m; 48336210Ssklower tt->rn_mklist = m; 48436210Ssklower return tt; 48536210Ssklower } 48636210Ssklower 48736210Ssklower struct radix_node * 48836210Ssklower rn_delete(v, netmask, head) 48936354Ssklower caddr_t v, netmask; 49036210Ssklower struct radix_node *head; 49136210Ssklower { 49236210Ssklower register struct radix_node *t, *p, *x = head; 49336210Ssklower register struct radix_node *tt = rn_search(v, x); 49436210Ssklower int b, head_off = x->rn_off, vlen = * (u_char *) v; 49538846Ssklower struct radix_mask *m, *saved_m, **mp; 49636210Ssklower struct radix_node *dupedkey, *saved_tt = tt; 49736210Ssklower 49836210Ssklower if (tt == 0 || 49936210Ssklower Bcmp(v + head_off, tt->rn_key + head_off, vlen - head_off)) 50036210Ssklower return (0); 50136210Ssklower /* 50236210Ssklower * Delete our route from mask lists. 50336210Ssklower */ 50436210Ssklower if (dupedkey = tt->rn_dupedkey) { 50536210Ssklower if (netmask) 50636210Ssklower netmask = rn_search(netmask, rn_maskhead)->rn_key; 50746255Ssklower while (tt->rn_mask != netmask) 50846255Ssklower if ((tt = tt->rn_dupedkey) == 0) 50936210Ssklower return (0); 51036210Ssklower } 51138846Ssklower if (tt->rn_mask == 0 || (saved_m = m = tt->rn_mklist) == 0) 51236210Ssklower goto on1; 51338846Ssklower if (m->rm_mask != tt->rn_mask) { 51438846Ssklower printf("rn_delete: inconsistent annotation\n"); 51536210Ssklower goto on1; 51638846Ssklower } 51738846Ssklower if (--m->rm_refs >= 0) 51838846Ssklower goto on1; 51936210Ssklower b = -1 - tt->rn_b; 52036210Ssklower t = saved_tt->rn_p; 52136210Ssklower if (b > t->rn_b) 52236210Ssklower goto on1; /* Wasn't lifted at all */ 52336210Ssklower do { 52436210Ssklower x = t; 52536210Ssklower t = t->rn_p; 52636210Ssklower } while (b <= t->rn_b && x != head); 52736210Ssklower for (mp = &x->rn_mklist; m = *mp; mp = &m->rm_mklist) 52838846Ssklower if (m == saved_m) { 52936210Ssklower *mp = m->rm_mklist; 53036210Ssklower MKFree(m); 53138846Ssklower break; 53236210Ssklower } 53338846Ssklower if (m == 0) 53438846Ssklower printf("rn_delete: couldn't find our annotation\n"); 53536210Ssklower on1: 53636210Ssklower /* 53736210Ssklower * Eliminate us from tree 53836210Ssklower */ 53936210Ssklower if (tt->rn_flags & RNF_ROOT) 54036210Ssklower return (0); 54136210Ssklower #ifdef RN_DEBUG 54236210Ssklower /* Get us out of the creation list */ 54336210Ssklower for (t = rn_clist; t && t->rn_ybro != tt; t = t->rn_ybro) {} 54436210Ssklower if (t) t->rn_ybro = tt->rn_ybro; 54536210Ssklower #endif RN_DEBUG 54636210Ssklower t = tt->rn_p; 54736210Ssklower if (dupedkey) { 54836210Ssklower if (tt == saved_tt) { 54936210Ssklower x = dupedkey; x->rn_p = t; 55036210Ssklower if (t->rn_l == tt) t->rn_l = x; else t->rn_r = x; 55150724Ssklower } else { 55250724Ssklower for (x = p = saved_tt; p && p->rn_dupedkey != tt;) 55350724Ssklower p = p->rn_dupedkey; 55450724Ssklower if (p) p->rn_dupedkey = tt->rn_dupedkey; 55550724Ssklower else printf("rn_delete: couldn't find us\n"); 55650724Ssklower } 55750724Ssklower t = tt + 1; 55850724Ssklower if (t->rn_flags & RNF_ACTIVE) { 55936210Ssklower #ifndef RN_DEBUG 56050724Ssklower *++x = *t; p = t->rn_p; 56136210Ssklower #else 56250724Ssklower b = t->rn_info; *++x = *t; t->rn_info = b; p = t->rn_p; 56336210Ssklower #endif 56436210Ssklower if (p->rn_l == t) p->rn_l = x; else p->rn_r = x; 56536210Ssklower x->rn_l->rn_p = x; x->rn_r->rn_p = x; 56636210Ssklower } 56736210Ssklower goto out; 56836210Ssklower } 56936210Ssklower if (t->rn_l == tt) x = t->rn_r; else x = t->rn_l; 57036210Ssklower p = t->rn_p; 57136210Ssklower if (p->rn_r == t) p->rn_r = x; else p->rn_l = x; 57236210Ssklower x->rn_p = p; 57336210Ssklower /* 57436210Ssklower * Demote routes attached to us. 57536210Ssklower */ 57636210Ssklower if (t->rn_mklist) { 57736210Ssklower if (x->rn_b >= 0) { 57845620Ssklower for (mp = &x->rn_mklist; m = *mp;) 57945620Ssklower mp = &m->rm_mklist; 58045620Ssklower *mp = t->rn_mklist; 58136210Ssklower } else { 58236210Ssklower for (m = t->rn_mklist; m;) { 58336210Ssklower struct radix_mask *mm = m->rm_mklist; 58438846Ssklower if (m == x->rn_mklist && (--(m->rm_refs) < 0)) { 58538846Ssklower x->rn_mklist = 0; 58638846Ssklower MKFree(m); 58745620Ssklower } else 58845620Ssklower printf("%s %x at %x\n", 58945620Ssklower "rn_delete: Orphaned Mask", m, x); 59036210Ssklower m = mm; 59136210Ssklower } 59236210Ssklower } 59336210Ssklower } 59436210Ssklower /* 59536210Ssklower * We may be holding an active internal node in the tree. 59636210Ssklower */ 59736210Ssklower x = tt + 1; 59836210Ssklower if (t != x) { 59936210Ssklower #ifndef RN_DEBUG 60036210Ssklower *t = *x; 60136210Ssklower #else 60236210Ssklower b = t->rn_info; *t = *x; t->rn_info = b; 60336210Ssklower #endif 60436210Ssklower t->rn_l->rn_p = t; t->rn_r->rn_p = t; 60536210Ssklower p = x->rn_p; 60636210Ssklower if (p->rn_l == x) p->rn_l = t; else p->rn_r = t; 60736210Ssklower } 60836210Ssklower out: 60936210Ssklower tt->rn_flags &= ~RNF_ACTIVE; 61036210Ssklower tt[1].rn_flags &= ~RNF_ACTIVE; 61136210Ssklower return (tt); 61236210Ssklower } 61350689Ssklower 61450689Ssklower rn_walk(rn, f, w) 61550689Ssklower register struct radix_node *rn; 61650689Ssklower register int (*f)(); 61750689Ssklower caddr_t w; 61850689Ssklower { 61950689Ssklower int error; 62050812Ssklower struct radix_node *orn; 62150689Ssklower for (;;) { 62250689Ssklower while (rn->rn_b >= 0) 62350689Ssklower rn = rn->rn_l; /* First time through node, go left */ 62450812Ssklower for (orn = rn; rn; rn = rn->rn_dupedkey) /* Process Leaves */ 62550812Ssklower if (!(rn->rn_flags & RNF_ROOT) && (error = (*f)(rn, w))) 62650812Ssklower return (error); 62750812Ssklower for (rn = orn; rn->rn_p->rn_r == rn; ) { /* If at right child */ 62850689Ssklower rn = rn->rn_p; /* go back up */ 62950689Ssklower if (rn->rn_flags & RNF_ROOT) 63050689Ssklower return 0; 63150689Ssklower } 63250812Ssklower rn = rn->rn_p->rn_r; /* otherwhise, go right*/ 63350689Ssklower } 63450689Ssklower } 63536210Ssklower char rn_zeros[MAXKEYLEN], rn_ones[MAXKEYLEN]; 63636210Ssklower 63750689Ssklower rn_inithead(head, off) 63852264Storek struct radix_node_head **head; 63952264Storek int off; 64036210Ssklower { 64136354Ssklower register struct radix_node_head *rnh; 64236210Ssklower register struct radix_node *t, *tt, *ttt; 64336210Ssklower if (*head) 64436210Ssklower return (1); 64536354Ssklower R_Malloc(rnh, struct radix_node_head *, sizeof (*rnh)); 64636354Ssklower if (rnh == 0) 64736210Ssklower return (0); 64836354Ssklower Bzero(rnh, sizeof (*rnh)); 64936354Ssklower *head = rnh; 65036354Ssklower t = rn_newpair(rn_zeros, off, rnh->rnh_nodes); 65136354Ssklower ttt = rnh->rnh_nodes + 2; 65236210Ssklower t->rn_r = ttt; 65336210Ssklower t->rn_p = t; 65436210Ssklower tt = t->rn_l; 65536210Ssklower tt->rn_flags = t->rn_flags = RNF_ROOT | RNF_ACTIVE; 65636210Ssklower tt->rn_b = -1 - off; 65736210Ssklower *ttt = *tt; 65836210Ssklower ttt->rn_key = rn_ones; 65950689Ssklower rnh->rnh_add = rn_addroute; 66050689Ssklower rnh->rnh_delete = rn_delete; 66150689Ssklower rnh->rnh_match = rn_match; 66250689Ssklower rnh->rnh_walk = rn_walk; 66336354Ssklower rnh->rnh_treetop = t; 66450689Ssklower if (mask_rnhead == 0) { 66536354Ssklower caddr_t cp = rn_ones, cplim = rn_ones + MAXKEYLEN; 66636210Ssklower while (cp < cplim) 66736210Ssklower *cp++ = -1; 66850689Ssklower if (rn_inithead(&mask_rnhead, 0) == 0) { 66936354Ssklower Free(rnh); 67036210Ssklower *head = 0; 67136210Ssklower return (0); 67236210Ssklower } 67336210Ssklower } 67436210Ssklower return (1); 67536210Ssklower } 676