Mercurial > hg > audiodb
view libtests/0024/prog1.c @ 457:823bca1e10f5 api-inversion
Sketch out a "query state" structure.
As yet it's completely unused, but the intention is that accumulated
state will be collected into one of these structures for each query, and
then passed around, to help reduce the need for silly arglists. It's
possible that this structure will also grow a pointer to the adb itself,
and be the thing passed to the LSH callback; we'll see how that
develops.
author | mas01cr |
---|---|
date | Wed, 24 Dec 2008 10:57:30 +0000 |
parents | 94c18f128ce8 |
children | e072aa1611f5 342822c2d49a |
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#include <stdio.h> #include <stdlib.h> #include <string.h> #include <sysexits.h> #include <fcntl.h> #include <dirent.h> #include <unistd.h> #include <sys/stat.h> /* * * #define NDEBUG * * */ #include <assert.h> #include "../../audioDB_API.h" #include "../test_utils_lib.h" int main(int argc, char **argv){ int returnval=0; adb_ptr mydbp={0}; int ivals[10]; double dvals[10]; adb_insert_t myinsert={0}; unsigned int myerr=0; char * databasename="testdb"; adb_query_t myadbquery={0}; adb_queryresult_t myadbqueryresult={0}; adb_query_t myadbquery2={0}; adb_queryresult_t myadbqueryresult2={0}; int size=0; adb_insert_t ins1[2]={0}; /* remove old directory */ //if [ -f testdb ]; then rm -f testdb; fi clean_remove_db(databasename); /* create new db */ //${AUDIODB} -d testdb -N mydbp=audiodb_create(databasename,0,0,0); //intstring 2 > testfeature01 //floatstring 0 1 >> testfeature01 //intstring 2 > testfeature10 //floatstring 1 0 >> testfeature10 ivals[0]=2; dvals[0]=0; dvals[1]=1; maketestfile("testfeature01",ivals,dvals,2); ivals[0]=2; dvals[0]=1; dvals[1]=0; maketestfile("testfeature10",ivals,dvals,2); //cat > testfeaturefiles <<EOF //testfeature01 //testfeature10 //EOF ins1[0].features="testfeature01"; ins1[1].features="testfeature10"; //${AUDIODB} -d testdb -B -F testfeaturefiles returnval=audiodb_batchinsert(mydbp,ins1,2); //# sequence queries require L2NORM //${AUDIODB} -d testdb -L audiodb_l2norm(mydbp); //echo "exhaustive search" //intstring 2 > testquery //floatstring 0 0.5 >> testquery //floatstring 0.5 0 >> testquery ivals[0]=2; dvals[0]=0; dvals[1]=0.5; dvals[2]=0.5; dvals[3]=0; maketestfile("testquery",ivals,dvals,4); //${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -e > testoutput //echo testfeature01 1 0 0 > test-expected-output //echo testfeature10 1 1 0 >> test-expected-output //cmp testoutput test-expected-output myadbquery.querytype="sequence"; myadbquery.feature="testquery"; myadbquery.sequencelength="1"; myadbquery.exhaustive=1; audiodb_query(mydbp,&myadbquery,&myadbqueryresult); size=myadbqueryresult.sizeRlist; //printf("size:%d\n",size); //dump_query(&myadbquery,&myadbqueryresult); ///* check the test values */ if (size != 2) {returnval = -1;}; if (testoneresult(&myadbqueryresult,0,"testfeature01",1,0,0)) {returnval = -1;}; if (testoneresult(&myadbqueryresult,1,"testfeature10",1,1,0)) {returnval = -1;}; //${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -n 1 -e > testoutput //echo testfeature01 0 0 0 > test-expected-output //echo testfeature10 0 1 0 >> test-expected-output //cmp testoutput test-expected-output myadbquery.querytype="sequence"; myadbquery.feature="testquery"; myadbquery.sequencelength="1"; myadbquery.exhaustive=1; myadbquery.numpoints="1"; audiodb_query(mydbp,&myadbquery,&myadbqueryresult); size=myadbqueryresult.sizeRlist; //printf("size:%d\n",size); //dump_query(&myadbquery,&myadbqueryresult); ///* check the test values */ if (size != 2) {returnval = -1;}; if (testoneresult(&myadbqueryresult,0,"testfeature01",0,0,0)) {returnval = -1;}; if (testoneresult(&myadbqueryresult,1,"testfeature10",0,1,0)) {returnval = -1;}; printf("returnval:%d\n",returnval); return(returnval); }