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src/poolwhatprovides.c
1 091 строка
29 KB
Michael Schroeder
Rename poolid_private.h to pool_private.h
05 май 2026, 14:21
Не верифицирован
05 май 2026, 14:21
45a9ef5
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/* * Copyright (c) 2025, SUSE LLC * * This program is licensed under the BSD license, read LICENSE.BSD * for further information */ /* * poolwhatprovides.c * * dependency provider lookup functions */ #include <stdio.h> #include <stdlib.h> #include <stdarg.h> #include <unistd.h> #include <string.h> #include <sys/types.h> #include "pool.h" #include "pool_private.h" #include "repo.h" #include "util.h" #include "evr.h" #ifdef ENABLE_CONDA #include "conda.h" #endif static int pool_shrink_whatprovides_sortcmp(const void *ap, const void *bp, void *dp) { int r; Pool *pool = dp; Id oa, ob, *da, *db; oa = pool->whatprovides[*(Id *)ap]; ob = pool->whatprovides[*(Id *)bp]; if (oa == ob) return *(Id *)ap - *(Id *)bp; da = pool->whatprovidesdata + oa; db = pool->whatprovidesdata + ob; while (*db) if ((r = (*da++ - *db++)) != 0) return r; if (*da) return *da; return *(Id *)ap - *(Id *)bp; } /* * pool_shrink_whatprovides - unify whatprovides data * * whatprovides_rel must be empty for this to work! * */ static void pool_shrink_whatprovides(Pool *pool) { Id i, n, id; Id *sorted; Id lastid, *last, *dp, *lp; Offset o; int r; if (pool->ss.nstrings < 3) return; sorted = solv_malloc2(pool->ss.nstrings, sizeof(Id)); for (i = id = 0; id < pool->ss.nstrings; id++) if (pool->whatprovides[id] >= 4) sorted[i++] = id; n = i; solv_sort(sorted, n, sizeof(Id), pool_shrink_whatprovides_sortcmp, pool); last = 0; lastid = 0; for (i = 0; i < n; i++) { id = sorted[i]; o = pool->whatprovides[id]; dp = pool->whatprovidesdata + o; if (last) { lp = last; while (*dp) if (*dp++ != *lp++) { last = 0; break; } if (last && *lp) last = 0; if (last) { pool->whatprovides[id] = -lastid; continue; } } last = pool->whatprovidesdata + o; lastid = id; } solv_free(sorted); dp = pool->whatprovidesdata + 4; for (id = 1; id < pool->ss.nstrings; id++) { o = pool->whatprovides[id]; if (!o) continue; if ((Id)o < 0) { i = -(Id)o; if (i >= id) abort(); pool->whatprovides[id] = pool->whatprovides[i]; continue; } if (o < 4) continue; lp = pool->whatprovidesdata + o; if (lp < dp) abort(); pool->whatprovides[id] = dp - pool->whatprovidesdata; while ((*dp++ = *lp++) != 0) ; } o = dp - pool->whatprovidesdata; POOL_DEBUG(SOLV_DEBUG_STATS, "shrunk whatprovidesdata from %d to %d\n", pool->whatprovidesdataoff, o); if (pool->whatprovidesdataoff == o) return; r = pool->whatprovidesdataoff - o; pool->whatprovidesdataoff = o; pool->whatprovidesdata = solv_realloc2(pool->whatprovidesdata, o + pool->whatprovidesdataleft, sizeof(Id)); if (r > pool->whatprovidesdataleft) r = pool->whatprovidesdataleft; memset(pool->whatprovidesdata + o, 0, r * sizeof(Id)); } /* this gets rid of all the zeros in the aux */ static void pool_shrink_whatprovidesaux(Pool *pool) { int num = pool->whatprovidesauxoff; Id id; Offset newoff; Id *op, *wp = pool->whatprovidesauxdata + 1; int i; for (i = 0; i < num; i++) { Offset o = pool->whatprovidesaux[i]; if (o < 2) continue; op = pool->whatprovidesauxdata + o; pool->whatprovidesaux[i] = wp - pool->whatprovidesauxdata; if (op < wp) abort(); while ((id = *op++) != 0) *wp++ = id; } newoff = wp - pool->whatprovidesauxdata; pool->whatprovidesauxdata = solv_realloc2(pool->whatprovidesauxdata, newoff, sizeof(Id)); POOL_DEBUG(SOLV_DEBUG_STATS, "shrunk whatprovidesauxdata from %d to %d\n", pool->whatprovidesauxdataoff, newoff); pool->whatprovidesauxdataoff = newoff; } /* * pool_createwhatprovides() * * create hashes over pool of solvables to ease provide lookups * */ void pool_createwhatprovides(Pool *pool) { int i, num, np, extra; Offset off; Solvable *s; Id id; Offset *idp, n; Offset *whatprovides; Id *whatprovidesdata, *dp, *whatprovidesauxdata; Offset *whatprovidesaux; unsigned int now; now = solv_timems(0); POOL_DEBUG(SOLV_DEBUG_STATS, "number of solvables: %d, memory used: %d K\n", pool->nsolvables, pool->nsolvables * (int)sizeof(Solvable) / 1024); POOL_DEBUG(SOLV_DEBUG_STATS, "number of ids: %d + %d\n", pool->ss.nstrings, pool->nrels); POOL_DEBUG(SOLV_DEBUG_STATS, "string memory used: %d K array + %d K data, rel memory used: %d K array\n", pool->ss.nstrings / (1024 / (int)sizeof(Id)), pool->ss.sstrings / 1024, pool->nrels * (int)sizeof(Reldep) / 1024); if (pool->ss.stringhashmask || pool->relhashmask) POOL_DEBUG(SOLV_DEBUG_STATS, "string hash memory: %d K, rel hash memory : %d K\n", (pool->ss.stringhashmask + 1) / (int)(1024/sizeof(Id)), (pool->relhashmask + 1) / (int)(1024/sizeof(Id))); pool_freeidhashes(pool); /* XXX: should not be here! */ pool_freewhatprovides(pool); num = pool->ss.nstrings; pool->whatprovides = whatprovides = solv_calloc_block(num, sizeof(Offset), WHATPROVIDES_BLOCK); pool->whatprovides_rel = solv_calloc_block(pool->nrels, sizeof(Offset), WHATPROVIDES_BLOCK); /* count providers for each name */ for (i = pool->nsolvables - 1; i > 0; i--) { Id *pp; s = pool->solvables + i; if (!s->provides || !s->repo || s->repo->disabled) continue; if (!pool_installable_whatprovides(pool, s)) continue; pp = s->repo->idarraydata + s->provides; while ((id = *pp++) != 0) { while (ISRELDEP(id)) { Reldep *rd = GETRELDEP(pool, id); id = rd->name; } whatprovides[id]++; /* inc count of providers */ } } off = 4; /* first entry is undef, second is empty list, third is system solvable */ np = 0; /* number of names provided */ for (i = 0, idp = whatprovides; i < num; i++, idp++) { n = *idp; if (!n) /* no providers */ { *idp = 1; /* offset for empty list */ continue; } if (n >= 0xffff0000U - off) solv_ovfl("pool whatprovides overflow"); off += n; /* make space for all providers */ *idp = off++; /* now idp points to terminating zero */ np++; /* inc # of provider 'slots' for stats */ } POOL_DEBUG(SOLV_DEBUG_STATS, "provide ids: %d\n", np); /* reserve some space for relation data */ extra = 2 * pool->nrels; if (extra < 256) extra = 256; if (extra > 0x10000000) extra = 0x10000000; if (off > 0xffff0000U - extra) solv_ovfl("pool whatprovides overflow"); POOL_DEBUG(SOLV_DEBUG_STATS, "provide space needed: %u + %d\n", off, extra); /* alloc space for all providers + extra */ whatprovidesdata = solv_calloc(off + extra, sizeof(Id)); whatprovidesdata[2] = SYSTEMSOLVABLE; /* alloc aux vector */ whatprovidesauxdata = 0; if (!pool->nowhatprovidesaux) { pool->whatprovidesaux = whatprovidesaux = solv_calloc(num, sizeof(Offset)); pool->whatprovidesauxoff = num; pool->whatprovidesauxdataoff = off; pool->whatprovidesauxdata = whatprovidesauxdata = solv_calloc(pool->whatprovidesauxdataoff, sizeof(Id)); } /* now fill data for all provides */ for (i = pool->nsolvables - 1; i > 0; i--) { Id *pp; s = pool->solvables + i; if (!s->provides || !s->repo || s->repo->disabled) continue; if (!pool_installable_whatprovides(pool, s)) continue; /* for all provides of this solvable */ pp = s->repo->idarraydata + s->provides; while ((id = *pp++) != 0) { Id auxid = id; while (ISRELDEP(id)) { Reldep *rd = GETRELDEP(pool, id); id = rd->name; } dp = whatprovidesdata + whatprovides[id]; /* offset into whatprovidesdata */ if (*dp != i) /* don't add same solvable twice */ { dp[-1] = i; whatprovides[id]--; } else auxid = 1; /* we have multiple provides for this name */ if (whatprovidesauxdata) whatprovidesauxdata[whatprovides[id]] = auxid; } } if (pool->whatprovidesaux) memcpy(pool->whatprovidesaux, pool->whatprovides, num * sizeof(Id)); pool->whatprovidesdata = whatprovidesdata; pool->whatprovidesdataoff = off; pool->whatprovidesdataleft = extra; pool_shrink_whatprovides(pool); if (pool->whatprovidesdataoff >= SOLV_MAX_INDEX || pool->whatprovidesdataoff + pool->whatprovidesdataleft >= SOLV_MAX_INDEX) solv_ovfl("pool whatprovides overflow"); if (pool->whatprovidesaux) pool_shrink_whatprovidesaux(pool); POOL_DEBUG(SOLV_DEBUG_STATS, "whatprovides memory used: %d K id array, %d K data\n", (pool->ss.nstrings + pool->nrels + WHATPROVIDES_BLOCK) / (int)(1024/sizeof(Id)), (pool->whatprovidesdataoff + pool->whatprovidesdataleft) / (int)(1024/sizeof(Id))); if (pool->whatprovidesaux) POOL_DEBUG(SOLV_DEBUG_STATS, "whatprovidesaux memory used: %d K id array, %d K data\n", pool->whatprovidesauxoff / (int)(1024/sizeof(Id)), pool->whatprovidesauxdataoff / (int)(1024/sizeof(Id))); queue_empty(&pool->lazywhatprovidesq); if (pool->addedfileprovides == 1) { /* lazyly add file provides for nonstd */ for (i = 0; i < pool->nonstd_nids; i++) { Id id = pool->nonstd_ids[i]; const char *str = pool->ss.stringspace + pool->ss.strings[id]; if (str[0] != '/') /* just in case, all entries should start with '/' */ continue; /* setup lazy adding, but remember old value */ if (pool->whatprovides[id] > 1) queue_push2(&pool->lazywhatprovidesq, id, pool->whatprovides[id]); pool->whatprovides[id] = 0; if (pool->whatprovidesaux) pool->whatprovidesaux[id] = 0; /* sorry */ } } else if (!pool->addedfileprovides && pool->disttype == DISTTYPE_RPM) { POOL_DEBUG(SOLV_DEBUG_STATS, "WARNING: pool_addfileprovides was not called, this may result in slow operation\n"); /* lazyly add file provides */ for (i = 1; i < num; i++) { const char *str = pool->ss.stringspace + pool->ss.strings[i]; if (str[0] != '/') continue; if (pool->addedfileprovides == 1 && repodata_filelistfilter_matches(0, str)) continue; /* setup lazy adding, but remember old value */ if (pool->whatprovides[i] > 1) queue_push2(&pool->lazywhatprovidesq, i, pool->whatprovides[i]); pool->whatprovides[i] = 0; if (pool->whatprovidesaux) pool->whatprovidesaux[i] = 0; /* sorry */ } } if (pool->lazywhatprovidesq.count) POOL_DEBUG(SOLV_DEBUG_STATS, "lazywhatprovidesq size: %d entries\n", pool->lazywhatprovidesq.count / 2); POOL_DEBUG(SOLV_DEBUG_STATS, "createwhatprovides took %d ms\n", solv_timems(now)); } /* * free all of our whatprovides data * be careful, everything internalized with pool_queuetowhatprovides is * gone, too */ void pool_freewhatprovides(Pool *pool) { pool->whatprovides = solv_free(pool->whatprovides); pool->whatprovides_rel = solv_free(pool->whatprovides_rel); pool->whatprovidesdata = solv_free(pool->whatprovidesdata); pool->whatprovidesdataoff = 0; pool->whatprovidesdataleft = 0; pool->whatprovidesaux = solv_free(pool->whatprovidesaux); pool->whatprovidesauxdata = solv_free(pool->whatprovidesauxdata); pool->whatprovidesauxoff = 0; pool->whatprovidesauxdataoff = 0; } /******************************************************************************/ /* * pool_queuetowhatprovides - add queue contents to whatprovidesdata * * used for whatprovides, jobs, learnt rules, selections * input: q: queue of Ids * returns: Offset into whatprovidesdata * */ Id pool_ids2whatprovides(Pool *pool, Id *ids, int count) { Offset off; if (count <= 0) /* queue empty -> 1 */ return 1; if (count == 1 && *ids == SYSTEMSOLVABLE) return 2; if (count >= SOLV_MAX_INDEX) solv_ovfl("pool whatprovides data overflow"); /* extend whatprovidesdata if needed, +1 for 0-termination */ if (pool->whatprovidesdataleft < count + 1) { POOL_DEBUG(SOLV_DEBUG_STATS, "growing provides hash data...\n"); if ((unsigned int)(SOLV_MAX_INDEX - pool->whatprovidesdataoff) < (unsigned int)count + 4096) solv_ovfl("pool whatprovides data overflow"); pool->whatprovidesdata = solv_realloc2(pool->whatprovidesdata, pool->whatprovidesdataoff + count + 4096, sizeof(Id)); pool->whatprovidesdataleft = count + 4096; } /* copy queue to next free slot */ off = pool->whatprovidesdataoff; memcpy(pool->whatprovidesdata + pool->whatprovidesdataoff, ids, count * sizeof(Id)); /* adapt count and 0-terminate */ pool->whatprovidesdataoff += count; pool->whatprovidesdata[pool->whatprovidesdataoff++] = 0; pool->whatprovidesdataleft -= count + 1; return (Id)off; } Id pool_queuetowhatprovides(Pool *pool, Queue *q) { int count = q->count; if (count == 0) /* queue empty -> 1 */ return 1; if (count == 1 && q->elements[0] == SYSTEMSOLVABLE) return 2; return pool_ids2whatprovides(pool, q->elements, count); } Id pool_searchlazywhatprovidesq(Pool *pool, Id d) { int start = 0; int end = pool->lazywhatprovidesq.count; Id *elements; if (!end) return 0; elements = pool->lazywhatprovidesq.elements; while (end - start > 16) { int mid = (start + end) / 2 & ~1; if (elements[mid] == d) return elements[mid + 1]; if (elements[mid] < d) start = mid + 2; else end = mid; } for (; start < end; start += 2) if (elements[start] == d) return elements[start + 1]; return 0; } /* * addstdproviders * * lazy populating of the whatprovides array, non relation case */ static Id pool_addstdproviders(Pool *pool, Id d) { const char *str; Queue q; Id qbuf[16]; Dataiterator di; Id oldoffset; if (pool->addedfileprovides == 2) { pool->whatprovides[d] = 1; return 1; } str = pool->ss.stringspace + pool->ss.strings[d]; if (*str != '/') { pool->whatprovides[d] = 1; return 1; } queue_init_buffer(&q, qbuf, sizeof(qbuf)/sizeof(*qbuf)); dataiterator_init(&di, pool, 0, 0, SOLVABLE_FILELIST, str, SEARCH_STRING|SEARCH_FILES); for (; dataiterator_step(&di); dataiterator_skip_solvable(&di)) { Solvable *s = pool->solvables + di.solvid; /* XXX: maybe should add a provides dependency to the solvables * OTOH this is only needed for rel deps that filter the provides, * and those should not use filelist entries */ if (s->repo->disabled) continue; if (!pool_installable_whatprovides(pool, s)) continue; queue_push(&q, di.solvid); } dataiterator_free(&di); oldoffset = pool_searchlazywhatprovidesq(pool, d); if (!q.count) pool->whatprovides[d] = oldoffset ? oldoffset : 1; else { if (oldoffset) { Id *oo = pool->whatprovidesdata + oldoffset; int i; /* unify both queues. easy, as we know both are sorted */ for (i = 0; i < q.count; i++) { if (*oo > q.elements[i]) continue; if (*oo < q.elements[i]) queue_insert(&q, i, *oo); oo++; if (!*oo) break; } while (*oo) queue_push(&q, *oo++); if (q.count == oo - (pool->whatprovidesdata + oldoffset)) { /* end result has same size as oldoffset -> no new entries */ queue_free(&q); pool->whatprovides[d] = oldoffset; return oldoffset; } } pool->whatprovides[d] = pool_queuetowhatprovides(pool, &q); } queue_free(&q); return pool->whatprovides[d]; } static int pool_is_kind(Pool *pool, Id name, Id kind) { const char *n; if (!kind) return 1; n = pool_id2str(pool, name); if (kind != 1) { const char *kn = pool_id2str(pool, kind); int knl = strlen(kn); return !strncmp(n, kn, knl) && n[knl] == ':' ? 1 : 0; } else { if (*n == ':') return 1; while(*n >= 'a' && *n <= 'z') n++; return *n == ':' ? 0 : 1; } } /* * rpm eq magic: * * some dependencies are of the from "foo = md5sum", like the * buildid provides. There's not much we can do to speed up * getting the providers, because rpm's complex evr comparison * rules get in the way. But we can use the first character(s) * of the md5sum to do a simple pre-check. */ static inline int rpmeqmagic(Pool *pool, Id evr) { const char *s = pool_id2str(pool, evr); if (*s == '0') { while (*s == '0' && s[1] >= '0' && s[1] <= '9') s++; /* ignore epoch 0 */ if (*s == '0' && s[1] == ':') { s += 2; while (*s == '0' && s[1] >= '0' && s[1] <= '9') s++; } } if (*s >= '0' && *s <= '9') { if (s[1] >= '0' && s[1] <= '9') return *s + (s[1] << 8); return *s; } if ((*s >= 'a' && *s <= 'z') || (*s >= 'A' && *s <= 'Z')) { if ((s[1] >= 'a' && s[1] <= 'z') || (s[1] >= 'A' && s[1] <= 'Z')) return *s + (s[1] << 8); return *s; } return -1; } static inline int rpmeqmagic_init(Pool *pool, int flags, Id evr) { if (flags != REL_EQ || pool->disttype != DISTTYPE_RPM || pool->promoteepoch || ISRELDEP(evr)) return -1; else return rpmeqmagic(pool, evr); } static inline int rpmeqmagic_cantmatch(Pool *pool, int flags, Id evr, int eqmagic) { int peqmagic = rpmeqmagic(pool, evr); if (peqmagic > 0 && peqmagic != eqmagic) return 1; return 0; } #if defined(MULTI_SEMANTICS) # define EVRCMP_DEPCMP (pool->disttype == DISTTYPE_DEB ? EVRCMP_COMPARE : EVRCMP_MATCH_RELEASE) #elif defined(DEBIAN) # define EVRCMP_DEPCMP EVRCMP_COMPARE #else # define EVRCMP_DEPCMP EVRCMP_MATCH_RELEASE #endif /* match (flags, evr) against provider (pflags, pevr) */ /* this copies parts of pool_intersect_evrs for speed */ static inline int pool_match_flags_evr(Pool *pool, int pflags, Id pevr, int flags, int evr) { if (!pflags || !flags || pflags >= 8 || flags >= 8) return 0; if (flags == 7 || pflags == 7) return 1; /* rel provides every version */ if ((pflags & flags & (REL_LT | REL_GT)) != 0) return 1; /* both rels show in the same direction */ if (pevr == evr) return (flags & pflags & REL_EQ) ? 1 : 0; #if defined(HAIKU) || defined(MULTI_SEMANTICS) if (ISRELDEP(pevr)) return pool_intersect_evrs(pool, pflags, pevr, flags, evr); /* too complex */ #endif switch (pool_evrcmp(pool, pevr, evr, EVRCMP_DEPCMP)) { case -2: return (pflags & REL_EQ) ? 1 : 0; case -1: return (flags & REL_LT) || (pflags & REL_GT) ? 1 : 0; case 0: return (flags & pflags & REL_EQ) ? 1 : 0; case 1: return (flags & REL_GT) || (pflags & REL_LT) ? 1 : 0; case 2: return (flags & REL_EQ) ? 1 : 0; default: break; } return 0; } /* * addrelproviders * * add packages fulfilling the relation to whatprovides array * * some words about REL_AND and REL_IF: we assume the best case * here, so that you get a "potential" result if you ask for a match. * E.g. if you ask for "whatrequires A" and package X contains * "Requires: A & B", you'll get "X" as an answer. */ Id pool_addrelproviders(Pool *pool, Id d) { Reldep *rd; Reldep *prd; Queue plist; Id buf[16]; Id name, evr, flags; Id pid, *pidp; Id p, *pp; if (!ISRELDEP(d)) return pool_addstdproviders(pool, d); rd = GETRELDEP(pool, d); name = rd->name; evr = rd->evr; flags = rd->flags; d = GETRELID(d); queue_init_buffer(&plist, buf, sizeof(buf)/sizeof(*buf)); if (flags >= 8) { /* special relation */ Id wp = 0; Id *pp2, *pp3; switch (flags) { case REL_WITH: wp = pool_whatprovides(pool, name); pp2 = pool_whatprovides_ptr(pool, evr); pp = pool->whatprovidesdata + wp; while ((p = *pp++) != 0) { for (pp3 = pp2; *pp3; pp3++) if (*pp3 == p) break; if (*pp3) queue_push(&plist, p); /* found it */ else wp = 0; } break; case REL_WITHOUT: wp = pool_whatprovides(pool, name); pp2 = pool_whatprovides_ptr(pool, evr); pp = pool->whatprovidesdata + wp; while ((p = *pp++) != 0) { for (pp3 = pp2; *pp3; pp3++) if (*pp3 == p) break; if (!*pp3) queue_push(&plist, p); /* use it */ else wp = 0; } break; case REL_AND: case REL_OR: case REL_COND: case REL_UNLESS: if (flags == REL_COND || flags == REL_UNLESS) { if (ISRELDEP(evr)) { Reldep *rd2 = GETRELDEP(pool, evr); evr = rd2->flags == REL_ELSE ? rd2->evr : 0; } else evr = 0; /* assume cond is true */ } wp = pool_whatprovides(pool, name); if (!pool->whatprovidesdata[wp]) wp = evr ? pool_whatprovides(pool, evr) : 1; else if (evr) { /* sorted merge */ pp2 = pool_whatprovides_ptr(pool, evr); pp = pool->whatprovidesdata + wp; while (*pp && *pp2) { if (*pp < *pp2) queue_push(&plist, *pp++); else { if (*pp == *pp2) pp++; queue_push(&plist, *pp2++); } } while (*pp) queue_push(&plist, *pp++); while (*pp2) queue_push(&plist, *pp2++); /* if the number of elements did not change, we can reuse wp */ if (pp - (pool->whatprovidesdata + wp) != plist.count) wp = 0; } break; case REL_NAMESPACE: if (name == NAMESPACE_OTHERPROVIDERS) { wp = pool_whatprovides(pool, evr); break; } if (pool->nscallback) { /* ask callback which packages provide the dependency * 0: none * 1: the system (aka SYSTEMSOLVABLE) * >1: set of packages, stored as offset on whatprovidesdata */ p = pool->nscallback(pool, pool->nscallbackdata, name, evr); if (p > 1) wp = p; if (p == 1) queue_push(&plist, SYSTEMSOLVABLE); } break; case REL_ARCH: /* small hack: make it possible to match <pkg>.src * we have to iterate over the solvables as src packages do not * provide anything, thus they are not indexed in our * whatprovides hash */ if (evr == ARCH_SRC || evr == ARCH_NOSRC) { Solvable *s; for (p = 1, s = pool->solvables + p; p < pool->nsolvables; p++, s++) { if (!s->repo) continue; if (s->arch != evr && s->arch != ARCH_NOSRC) continue; if (pool_disabled_solvable(pool, s)) continue; if (!name || pool_match_nevr(pool, s, name)) queue_push(&plist, p); } break; } if (!name) { FOR_POOL_SOLVABLES(p) { Solvable *s = pool->solvables + p; if (!pool_installable_whatprovides(pool, s)) continue; if (s->arch == evr) queue_push(&plist, p); } break; } wp = pool_whatprovides(pool, name); pp = pool->whatprovidesdata + wp; while ((p = *pp++) != 0) { Solvable *s = pool->solvables + p; if (s->arch == evr) queue_push(&plist, p); else wp = 0; } break; case REL_MULTIARCH: if (evr != ARCH_ANY) break; /* XXX : need to check for Multi-Arch: allowed! */ wp = pool_whatprovides(pool, name); break; case REL_KIND: /* package kind filtering */ if (!name) { FOR_POOL_SOLVABLES(p) { Solvable *s = pool->solvables + p; if (s->repo != pool->installed && !pool_installable(pool, s)) continue; if (pool_is_kind(pool, s->name, evr)) queue_push(&plist, p); } break; } wp = pool_whatprovides(pool, name); pp = pool->whatprovidesdata + wp; while ((p = *pp++) != 0) { Solvable *s = pool->solvables + p; if (pool_is_kind(pool, s->name, evr)) queue_push(&plist, p); else wp = 0; } break; case REL_FILECONFLICT: pp = pool_whatprovides_ptr(pool, name); while ((p = *pp++) != 0) { Id origd = MAKERELDEP(d); Solvable *s = pool->solvables + p; if (!s->provides) continue; pidp = s->repo->idarraydata + s->provides; while ((pid = *pidp++) != 0) if (pid == origd) break; if (pid) queue_push(&plist, p); } break; #ifdef ENABLE_CONDA case REL_CONDA: wp = pool_addrelproviders_conda(pool, name, evr, &plist); break; #endif default: break; } if (wp) { /* we can reuse an existing entry */ queue_free(&plist); pool->whatprovides_rel[d] = wp; return wp; } } else if (flags) { Id *ppaux = 0; int eqmagic = 0; /* simple version comparison relation */ #if 0 POOL_DEBUG(SOLV_DEBUG_STATS, "addrelproviders: what provides %s?\n", pool_dep2str(pool, name)); #endif pp = pool_whatprovides_ptr(pool, name); if (!ISRELDEP(name) && (Offset)name < pool->whatprovidesauxoff) ppaux = pool->whatprovidesaux[name] ? pool->whatprovidesauxdata + pool->whatprovidesaux[name] : 0; while (ISRELDEP(name)) { rd = GETRELDEP(pool, name); name = rd->name; } while ((p = *pp++) != 0) { Solvable *s = pool->solvables + p; if (ppaux) { pid = *ppaux++; /* the id that provided the name, 1 if there are multiple providers */ if (pid && pid != 1) { #if 0 POOL_DEBUG(SOLV_DEBUG_STATS, "addrelproviders: aux hit %d %s\n", p, pool_dep2str(pool, pid)); #endif if (!ISRELDEP(pid)) { if (pid != name) continue; /* wrong provides name (should not happen) */ if (pool->disttype == DISTTYPE_DEB) continue; /* unversioned provides can never match versioned deps */ } else { prd = GETRELDEP(pool, pid); if (prd->name != name) continue; /* wrong provides name */ if (!eqmagic) eqmagic = rpmeqmagic_init(pool, flags, evr); if (eqmagic > 0 && prd->flags == REL_EQ && !ISRELDEP(prd->evr) && rpmeqmagic_cantmatch(pool, prd->flags, prd->evr, eqmagic)) continue; /* right package, both deps are rels. check flags/evr */ if (!pool_match_flags_evr(pool, prd->flags, prd->evr, flags, evr)) continue; } queue_push(&plist, p); continue; } } if (!s->provides || s->arch == ARCH_SRC || s->arch == ARCH_NOSRC) { /* no provides or src rpm - check nevr */ if (pool_match_nevr_rel(pool, s, MAKERELDEP(d))) queue_push(&plist, p); continue; } /* solvable p provides name in some rels */ if (!eqmagic) eqmagic = rpmeqmagic_init(pool, flags, evr); pidp = s->repo->idarraydata + s->provides; while ((pid = *pidp++) != 0) { if (!ISRELDEP(pid)) { if (pid != name) continue; /* wrong provides name */ if (pool->disttype == DISTTYPE_DEB) continue; /* unversioned provides can never match versioned deps */ break; } prd = GETRELDEP(pool, pid); if (prd->name != name) continue; /* wrong provides name */ /* right package, both deps are rels. check flags/evr */ if (eqmagic > 0 && prd->flags == REL_EQ && !ISRELDEP(prd->evr) && rpmeqmagic_cantmatch(pool, prd->flags, prd->evr, eqmagic)) continue; if (pool_match_flags_evr(pool, prd->flags, prd->evr, flags, evr)) break; /* matches */ } if (!pid) continue; /* none of the providers matched */ queue_push(&plist, p); } /* make our system solvable provide all unknown rpmlib() stuff */ if (plist.count == 0 && !strncmp(pool_id2str(pool, name), "rpmlib(", 7)) queue_push(&plist, SYSTEMSOLVABLE); } /* add providers to whatprovides */ #if 0 POOL_DEBUG(SOLV_DEBUG_STATS, "addrelproviders: adding %d packages to %d\n", plist.count, d); #endif pool->whatprovides_rel[d] = pool_queuetowhatprovides(pool, &plist); queue_free(&plist); return pool->whatprovides_rel[d]; } void pool_flush_namespaceproviders(Pool *pool, Id ns, Id evr) { int nrels = pool->nrels; Id d; Reldep *rd; if (!pool->whatprovides_rel) return; for (d = 1, rd = pool->rels + d; d < nrels; d++, rd++) { if (rd->flags != REL_NAMESPACE || rd->name == NAMESPACE_OTHERPROVIDERS) continue; if (ns && rd->name != ns) continue; if (evr && rd->evr != evr) continue; if (pool->whatprovides_rel[d]) pool_set_whatprovides(pool, MAKERELDEP(d), 0); } } void pool_set_whatprovides(Pool *pool, Id id, Id providers) { int d, nrels = pool->nrels; Reldep *rd; Map m; /* set new entry */ if (ISRELDEP(id)) { d = GETRELID(id); pool->whatprovides_rel[d] = providers; d++; } else { pool->whatprovides[id] = providers; if ((Offset)id < pool->whatprovidesauxoff) pool->whatprovidesaux[id] = 0; /* sorry */ d = 1; } if (!pool->whatprovides_rel) return; /* clear cache of all rels that use it */ map_init(&m, 0); for (rd = pool->rels + d; d < nrels; d++, rd++) { if (rd->name == id || rd->evr == id || (m.size && ISRELDEP(rd->name) && MAPTST(&m, GETRELID(rd->name))) || (m.size && ISRELDEP(rd->evr) && MAPTST(&m, GETRELID(rd->evr)))) { pool->whatprovides_rel[d] = 0; /* clear cache */ if (!m.size) map_init(&m, nrels); MAPSET(&m, d); } } map_free(&m); } void pool_add_new_provider(Pool *pool, Id id, Id p) { Queue q; Id *pp; /* find whatprovides entry */ while (ISRELDEP(id)) { Reldep *rd = GETRELDEP(pool, id); id = rd->name; } /* add new provider to existing list keeping it sorted */ queue_init(&q); for (pp = pool->whatprovidesdata + pool->whatprovides[id]; *pp; pp++) { if (*pp == p) { queue_free(&q); /* already have it */ return; } if (*pp > p) { queue_push(&q, p); p = 0; } queue_push(&q, *pp); } if (p) queue_push(&q, p); pool_set_whatprovides(pool, id, pool_queuetowhatprovides(pool, &q)); queue_free(&q); } /* EOF */