465 строки
10 KiB
C
465 строки
10 KiB
C
#include "cmGlobal.h"
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#include "cmFloatTypes.h"
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#include "cmRpt.h"
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#include "cmErr.h"
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#include "cmCtx.h"
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#include "cmMem.h"
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#include "cmLinkedHeap.h"
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#include "cmMallocDebug.h"
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#include "cmMath.h"
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#include "cmHashTbl.h"
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#include "cmText.h"
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enum
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{
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kFreeHtFl = 0x01,
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};
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typedef struct cmHtValue_str
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{
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unsigned flags; // See kXXXHtFl above.
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unsigned id; // unique id associated with this value
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void* value; // value blob
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unsigned byteCnt; // size of value blob in bytes
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struct cmHtValue_str* link; // cmHtBucket_t.list link
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} cmHtValue_t;
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typedef struct
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{
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cmHtValue_t* list; // value list
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cmHtValue_t* avail; // available value slots - formed from cmHashTblRemoved() values.
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unsigned nextIdx; // next unused index for this bucket
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} cmHtBucket_t;
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typedef struct
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{
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cmErr_t err;
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cmLHeapH_t lhH; // memory for hash table buckets, values, value blobs.
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unsigned bucketCnt; // hash table bucket cnt
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unsigned linkCnt; // max length of collision list for each bucket
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unsigned mask; // hash id bucket index mask (masks the MSB's of the hash-id)
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unsigned maskShift; // shift required to move the lowest 'mask' bit to the LSB.
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cmHtBucket_t* b; // b[bucketCnt] bucket array
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} cmHt_t;
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cmHashTblH_t cmHashTblNullHandle = cmSTATIC_NULL_HANDLE;
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#define _cmHtBucketIndex( p, id ) (((id) & (p)->mask) >> (p)->maskShift)
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cmHt_t* _cmHtHandleToPtr( cmHashTblH_t h )
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{
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cmHt_t* p = (cmHt_t*)h.h;
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assert(p!=NULL);
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return p;
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}
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// Return the bucket index portion of the hash id.
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unsigned _cmHtGenId( cmHt_t* p, const void* v, unsigned byteCnt )
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{
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unsigned i,j;
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const char* cv = v;
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unsigned h = 0;
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for(i=0,j=3; i<byteCnt; ++i,++j)
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h += ((unsigned)cv[i]) << ((j&0x3)*8);
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return h & p->mask;
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}
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// Given an id find the value.
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cmHtValue_t* _cmHtIdToValue( cmHt_t* p, unsigned id )
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{
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if( id == cmInvalidId )
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return NULL;
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unsigned bi = _cmHtBucketIndex(p,id);
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assert(bi < p->bucketCnt);
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cmHtValue_t* v = p->b[bi].list;
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for(; v!=NULL; v=v->link)
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if( v->id == id )
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return v;
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return NULL;
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}
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// Given a value find the id
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cmHtValue_t* _cmHtValueToId( cmHt_t* p, const void* value, unsigned byteCnt, unsigned id )
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{
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if( id == cmInvalidId )
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id = _cmHtGenId(p,value,byteCnt);
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unsigned bi = _cmHtBucketIndex(p,id);
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assert(bi < p->bucketCnt);
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cmHtValue_t* v = p->b[bi].list;
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for(; v!=NULL; v=v->link)
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if( v->byteCnt==byteCnt && memcmp(value,v->value,byteCnt)==0 )
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return v;
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return NULL;
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}
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cmHtRC_t _cmHtDestroy( cmHt_t* p )
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{
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cmHtRC_t rc = kOkHtRC;
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cmLHeapDestroy(&p->lhH);
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cmMemFree(p->b);
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cmMemFree(p);
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return rc;
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}
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cmHtRC_t cmHashTblCreate( cmCtx_t* ctx, cmHashTblH_t* hp, unsigned bucketCnt )
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{
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cmHtRC_t rc;
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if((rc = cmHashTblDestroy(hp)) != kOkHtRC )
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return rc;
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cmHt_t* p = cmMemAllocZ(cmHt_t,1);
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cmErrSetup(&p->err,&ctx->rpt,"hash table");
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if(cmLHeapIsValid(p->lhH = cmLHeapCreate(8192,ctx)) == false )
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{
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cmErrMsg(&p->err,kLHeapFailHtRC,"Internal linked heap mgr. create failed.");
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goto errLabel;
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}
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// force the bucket count to be a power of two
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p->bucketCnt = cmNextPowerOfTwo(bucketCnt);
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p->mask = p->bucketCnt - 1;
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// calcluate the hash-id bucket mask
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for(p->maskShift=0; (0x80000000 & p->mask) == 0; ++p->maskShift )
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p->mask <<= 1;
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// calculate the maximum collisions per bucket mask
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p->linkCnt = ~p->mask;
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// allocate the bucket array
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p->b = cmMemAllocZ(cmHtBucket_t,p->bucketCnt);
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hp->h = p;
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errLabel:
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if( rc != kOkHtRC )
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_cmHtDestroy(p);
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return rc;
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}
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cmHtRC_t cmHashTblDestroy( cmHashTblH_t* hp )
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{
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cmHtRC_t rc = kOkHtRC;
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if(hp==NULL || cmHashTblIsValid(*hp)==false )
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return rc;
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cmHt_t* p = _cmHtHandleToPtr(*hp);
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if((rc = _cmHtDestroy(p)) != kOkHtRC )
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return rc;
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hp->h = NULL;
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return rc;
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}
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bool cmHashTblIsValid( cmHashTblH_t h )
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{ return h.h!=NULL; }
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unsigned cmHashTblStoreBase( cmHashTblH_t h, void* v, unsigned byteCnt, bool staticFl )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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cmHtValue_t* vp = NULL;
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unsigned id = _cmHtGenId(p, v, byteCnt );
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// if the value is already stored then there is nothing else to do
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if((vp = _cmHtValueToId(p,v,byteCnt,id)) != NULL )
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return vp->id;
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unsigned bi = _cmHtBucketIndex(p,id);
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assert(bi < p->bucketCnt );
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cmHtBucket_t* b = p->b + bi;
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if( b->avail != NULL )
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{
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vp = b->avail;
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b->avail = b->avail->link;
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}
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else
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{
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if( b->nextIdx == p->linkCnt || (id + b->nextIdx) == cmInvalidId )
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{
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cmErrMsg(&p->err,kHashFaultHtRC,"The hash table bucket at index %i is exhaused.",bi);
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return cmInvalidId;
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}
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vp = cmLhAllocZ(p->lhH,cmHtValue_t,1);
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vp->id = id + b->nextIdx++;
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}
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assert( vp->id != cmInvalidId );
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vp->link = b->list;
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b->list = vp;
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vp->byteCnt = byteCnt;
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if( staticFl )
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vp->value = v;
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else
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{
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vp->value = cmLhAlloc(p->lhH,char,byteCnt);
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memcpy(vp->value,v,byteCnt);
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vp->flags = cmSetFlag(vp->flags,kFreeHtFl);
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}
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return vp->id;
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}
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unsigned cmHashTblStore( cmHashTblH_t h, void* v, unsigned byteCnt )
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{ return cmHashTblStoreBase(h,v,byteCnt,false); }
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unsigned cmHashTblStoreStatic( cmHashTblH_t h, void* v, unsigned byteCnt )
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{ return cmHashTblStoreBase(h,v,byteCnt,true); }
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unsigned _cmHashTblStoreStr( cmHashTblH_t h, const cmChar_t* s, bool staticFl )
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{
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unsigned n = cmTextLength(s);
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if( n == 0 )
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{
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s = "";
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n = 1;
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}
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return cmHashTblStoreBase(h,(void*)s,n+1,staticFl);
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}
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unsigned cmHashTblStoreStr( cmHashTblH_t h, const cmChar_t* s )
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{ return _cmHashTblStoreStr(h,s,false); }
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unsigned cmhashTblStoreStaticStr( cmHashTblH_t h, const cmChar_t* s )
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{ return _cmHashTblStoreStr(h,s,true); }
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unsigned cmHashTblStoreV( cmHashTblH_t h, const cmChar_t* fmt, va_list vl )
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{
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cmChar_t* s = NULL;
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s = cmTsVPrintfP(s,fmt,vl);
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unsigned id = _cmHashTblStoreStr(h,s,false);
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cmMemFree(s);
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return id;
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}
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unsigned cmHashTblStoreF( cmHashTblH_t h, const cmChar_t* fmt, ... )
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{
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va_list vl;
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va_start(vl,fmt);
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unsigned id = cmHashTblStoreV(h,fmt,vl);
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va_end(vl);
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return id;
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}
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unsigned cmHashTblId( cmHashTblH_t h, const void* value, unsigned byteCnt )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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cmHtValue_t* vp;
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if((vp = _cmHtValueToId(p,value,byteCnt,cmInvalidId)) == NULL )
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return cmInvalidId;
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return vp->id;
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}
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unsigned cmHashTblStrToId( cmHashTblH_t h, const cmChar_t* str )
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{
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if( str == NULL )
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return cmInvalidId;
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return cmHashTblId(h,str,cmTextLength(str)+1);
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}
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const void* cmHashTblValue( cmHashTblH_t h, unsigned id, unsigned* byteCntRef )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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cmHtValue_t* vp;
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if((vp = _cmHtIdToValue(p, id)) != NULL )
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{
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if( byteCntRef != NULL )
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*byteCntRef = vp->byteCnt;
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return vp->value;
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}
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return NULL;
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}
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const cmChar_t* cmHashTblStr( cmHashTblH_t h, unsigned id )
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{ return (const cmChar_t*)cmHashTblValue(h,id,NULL); }
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cmHtRC_t cmHashTblRemove( cmHashTblH_t h, unsigned id )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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unsigned bi = _cmHtBucketIndex(p,id);
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assert(bi < p->bucketCnt);
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cmHtBucket_t* b = p->b + bi;
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cmHtValue_t* vp = b->list;
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cmHtValue_t* pp = NULL;
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for(; vp!=NULL; vp=vp->link)
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{
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if( vp->id == id )
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{
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if( pp == NULL )
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b->list = vp->link;
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else
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pp->link = vp->link;
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break;
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}
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pp = vp;
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}
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if( vp == NULL )
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return cmErrMsg(&p->err,kInvalidIdHtRC,"A value could not be found for the hash id 0x%x.",id);
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if( cmIsFlag(vp->flags,kFreeHtFl ) )
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cmLhFree(p->lhH,vp->value);
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vp->flags = 0;
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vp->value = NULL;
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vp->byteCnt = 0;
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// Note: Do not set the id to zero since we want to consert id's
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// and this recd will be reused by the next call to cmHashTblStoreBase().
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return kOkHtRC;
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}
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cmHtRC_t cmHashTblLastRC( cmHashTblH_t h )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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return cmErrLastRC(&p->err);
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}
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void _cmHashTblBucketReport( cmHtBucket_t* b, cmRpt_t* rpt )
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{
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cmHtValue_t* vp = b->list;
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unsigned i;
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for(i=0; vp!=NULL && i<10; vp=vp->link,++i)
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cmRptPrintf(rpt,"0x%x : %s\n",vp->id,((const cmChar_t*)vp->value));
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cmRptPrintf(rpt,"\n");
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}
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void cmHashTblReport( cmHashTblH_t h, cmRpt_t* rpt )
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{
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cmHt_t* p = _cmHtHandleToPtr(h);
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unsigned i;
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for(i=0; i<p->bucketCnt; ++i)
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{
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//if( p->b[i].nextIdx > 0 )
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// cmRptPrintf(rpt,"%i,%i\n",i,p->b[i].nextIdx);
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if( p->b[i].nextIdx > 100 )
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_cmHashTblBucketReport(p->b + i,rpt);
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}
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}
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cmHtRC_t cmHashTblTest( cmCtx_t* ctx )
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{
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cmHtRC_t rc = kOkHtRC;
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cmHashTblH_t h = cmHashTblNullHandle;
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cmErr_t err;
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cmErrSetup(&err,&ctx->rpt,"hash table test");
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if((rc = cmHashTblCreate(ctx,&h,8192)) != kOkHtRC )
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return cmErrMsg(&err,rc,"Hash table create failed.");
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const cmChar_t* arr[] =
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{
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"1",
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"12",
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"123",
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"1234",
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"12345",
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"123456",
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"123456",
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"123456",
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NULL
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};
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unsigned n = sizeof(arr)/sizeof(arr[0]);
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unsigned ids[ n ];
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int i = 0;
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// store the values from arr[]
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for(; arr[i]!=NULL; ++i)
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if((ids[i] = cmHashTblStoreStr(h,arr[i])) == cmInvalidId )
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{
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rc = cmErrMsg(&err,cmHashTblLastRC(h),"Hash store failed on: '%s.",cmStringNullGuard(arr[i]));
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goto errLabel;
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}
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/*
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// remove a value
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unsigned rem_idx = 3;
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if((rc = cmHashTblRemove(h, ids[rem_idx] )) != kOkHtRC )
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{
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rc = cmErrMsg(&err,rc,"Hash removed failed.");
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goto errLabel;
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}
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// insert the same value - which should restore the removed value
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if((ids[rem_idx] = cmHashTblStoreStr(h,arr[rem_idx])) == cmInvalidId )
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{
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rc = cmErrMsg(&err,cmHashTblLastRC(h),"Hash store failed on: '%s.",cmStringNullGuard(arr[rem_idx]));
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goto errLabel;
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}
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*/
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// lookup all the stored values by id
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for(--i; i>=0; --i)
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{
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const cmChar_t* s;
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if((s = cmHashTblStr(h,ids[i])) == NULL )
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rc = cmErrMsg(&err,kInvalidIdHtRC,"The value associated with hash-id:0x%x could not be found.",ids[i]);
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else
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printf("%i : %s\n",i,cmStringNullGuard(s));
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}
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for(i=0; arr[i]!=NULL; ++i)
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{
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unsigned id = cmHashTblStrToId(h, arr[i]);
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printf("%i : 0x%x : %s\n",i, id, cmStringNullGuard(cmHashTblStr(h, id)));
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}
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cmHashTblReport(h, &ctx->rpt );
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errLabel:
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cmHashTblDestroy(&h);
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return rc;
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}
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