view tests/0044/run-test.sh @ 400:8c7453fb5bd9 api-inversion

Invert audioDB::power_flag / audiodb_power() Here the exciting discovery is that the mmap(), memcpy(), munmap() sequence is in fact not safe. In principle an msync() call should be inserted before unmapping for in-core changes to mmap()ed files to be flushed to disk. In this case we work around the problem entirely, by not mmap()ing anything and doing everything with file descriptors. Amusingly, that's probably not desperately safe either, this time because we have to move the file descriptor position (which is also a shared resource). dup() doesn't save us, as the duplicate file descriptor shares a file position. This applies also to the filling of data_buffer in the query loop, and in fact basically any call to lseek(), which is why I'm not fixing it now. Solution: if you have multiple threads all acting at once on a single database, do one audiodb_open() per thread, for now at least.
author mas01cr
date Thu, 27 Nov 2008 16:22:52 +0000
parents a6edbe97fddf
children
line wrap: on
line source
#! /bin/bash

. ../test-utils.sh

if [ -f testdb ]; then rm -f testdb; fi

${AUDIODB} -d testdb -N

intstring 2 > testfeature
floatstring 0 1 >> testfeature
floatstring 1 0 >> testfeature
floatstring 1 0 >> testfeature
floatstring 0 1 >> testfeature

intstring 1 > testpower
floatstring -0.5 >> testpower
floatstring -1 >> testpower
floatstring -1 >> testpower
floatstring -0.5 >> testpower

expect_clean_error_exit ${AUDIODB} -d testdb -I -f testfeature -w testpower
${AUDIODB} -d testdb -P
expect_clean_error_exit ${AUDIODB} -d testdb -I -f testfeature
${AUDIODB} -d testdb -I -f testfeature -w testpower -k testfeature1

# sequence queries require L2NORM
${AUDIODB} -d testdb -L

echo "query points (0.0,0.5),(0.0,0.5),(0.5,0.0)"
intstring 2 > testquery
floatstring 0 0.5 >> testquery
floatstring 0 0.5 >> testquery
floatstring 0.5 0 >> testquery

# LSH Indexing tests

# Indexing requires a radius (-R)
expect_clean_error_exit ${AUDIODB} -d testdb -X -l 1

# Merged index
${AUDIODB} -d testdb -I -f testfeature -w testpower -k testfeature2

if [ -f testdb.lsh* ]; then
    rm testdb.lsh*
fi

${AUDIODB} -d testdb -X -l 1 -R 1 --lsh_b 1

# Query using the index

${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -w testpower -R 1 > testoutput
echo testfeature1 1 > test-expected-output
echo testfeature2 1 >> test-expected-output
cmp testoutput test-expected-output

${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -w testpower -p 0 -R 1 > testoutput
echo testfeature1 1 > test-expected-output
echo testfeature2 1 >> test-expected-output
cmp testoutput test-expected-output

${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -w testpower -p 1 -R 1 > testoutput
echo testfeature1 1 > test-expected-output
echo testfeature2 1 >> test-expected-output
cmp testoutput test-expected-output

${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -w testpower -e -R 1 > testoutput
echo testfeature1 3 > test-expected-output
echo testfeature2 3 >> test-expected-output
cmp testoutput test-expected-output

${AUDIODB} -d testdb -Q sequence -l 1 -f testquery -w testpower -e -R 1 --lsh_exact > testoutput
echo testfeature1 3 > test-expected-output
echo testfeature2 3 >> test-expected-output
cmp testoutput test-expected-output

exit 104