Settings: Output files: "/scratch/8793060.1.linga/tophat2/tmp/segment_juncs.*.bt2" Line rate: 6 (line is 64 bytes) Lines per side: 1 (side is 64 bytes) Offset rate: 4 (one in 16) FTable chars: 10 Strings: unpacked Max bucket size: default Max bucket size, sqrt multiplier: default Max bucket size, len divisor: 4 Difference-cover sample period: 1024 Endianness: little Actual local endianness: little Sanity checking: disabled Assertions: disabled Random seed: 0 Sizeofs: void*:8, int:4, long:8, size_t:8 Input files DNA, FASTA: /scratch/8793060.1.linga/tophat2/tmp/segment_juncs.fa Reading reference sizes Time reading reference sizes: 00:00:00 Calculating joined length Writing header Reserving space for joined string Joining reference sequences Time to join reference sequences: 00:00:01 bmax according to bmaxDivN setting: 2765187 Using parameters --bmax 2073891 --dcv 1024 Doing ahead-of-time memory usage test Passed! Constructing with these parameters: --bmax 2073891 --dcv 1024 Constructing suffix-array element generator Building DifferenceCoverSample Building sPrime Building sPrimeOrder V-Sorting samples V-Sorting samples time: 00:00:00 Allocating rank array Ranking v-sort output Ranking v-sort output time: 00:00:00 Invoking Larsson-Sadakane on ranks Invoking Larsson-Sadakane on ranks time: 00:00:00 Sanity-checking and returning Building samples Reserving space for 12 sample suffixes Generating random suffixes QSorting 12 sample offsets, eliminating duplicates QSorting sample offsets, eliminating duplicates time: 00:00:00 Multikey QSorting 12 samples (Using difference cover) Multikey QSorting samples time: 00:00:00 Calculating bucket sizes Binary sorting into buckets 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Binary sorting into buckets time: 00:00:01 Splitting and merging Splitting and merging time: 00:00:00 Avg bucket size: 1.58011e+06 (target: 2073890) Converting suffix-array elements to index image Allocating ftab, absorbFtab Entering Ebwt loop Getting block 1 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 1607050 (Using difference cover) Sorting block time: 00:00:01 Returning block of 1607051 Getting block 2 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 1292746 (Using difference cover) Sorting block time: 00:00:01 Returning block of 1292747 Getting block 3 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 2056017 (Using difference cover) Sorting block time: 00:00:01 Returning block of 2056018 Getting block 4 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:01 Sorting block of length 1400270 (Using difference cover) Sorting block time: 00:00:00 Returning block of 1400271 Getting block 5 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:01 Sorting block of length 1650887 (Using difference cover) Sorting block time: 00:00:00 Returning block of 1650888 Getting block 6 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 2003627 (Using difference cover) Sorting block time: 00:00:01 Returning block of 2003628 Getting block 7 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 1050147 (Using difference cover) Sorting block time: 00:00:01 Returning block of 1050148 Exited Ebwt loop fchr[A]: 0 fchr[C]: 2764803 fchr[G]: 5524013 fchr[T]: 8274513 fchr[$]: 11060750 Exiting Ebwt::buildToDisk() Returning from initFromVector Wrote 22796434 bytes to primary EBWT file: /scratch/8793060.1.linga/tophat2/tmp/segment_juncs.1.bt2 Wrote 2765192 bytes to secondary EBWT file: /scratch/8793060.1.linga/tophat2/tmp/segment_juncs.2.bt2 Re-opening _in1 and _in2 as input streams Returning from Ebwt constructor Headers: len: 11060750 bwtLen: 11060751 sz: 2765188 bwtSz: 2765188 lineRate: 6 offRate: 4 offMask: 0xfffffff0 ftabChars: 10 eftabLen: 20 eftabSz: 80 ftabLen: 1048577 ftabSz: 4194308 offsLen: 691297 offsSz: 2765188 lineSz: 64 sideSz: 64 sideBwtSz: 48 sideBwtLen: 192 numSides: 57609 numLines: 57609 ebwtTotLen: 3686976 ebwtTotSz: 3686976 color: 0 reverse: 0 Total time for call to driver() for forward index: 00:00:11 Reading reference sizes Time reading reference sizes: 00:00:00 Calculating joined length Writing header Reserving space for joined string Joining reference sequences Time to join reference sequences: 00:00:00 Time to reverse reference sequence: 00:00:00 bmax according to bmaxDivN setting: 2765187 Using parameters --bmax 2073891 --dcv 1024 Doing ahead-of-time memory usage test Passed! Constructing with these parameters: --bmax 2073891 --dcv 1024 Constructing suffix-array element generator Building DifferenceCoverSample Building sPrime Building sPrimeOrder V-Sorting samples V-Sorting samples time: 00:00:01 Allocating rank array Ranking v-sort output Ranking v-sort output time: 00:00:00 Invoking Larsson-Sadakane on ranks Invoking Larsson-Sadakane on ranks time: 00:00:00 Sanity-checking and returning Building samples Reserving space for 12 sample suffixes Generating random suffixes QSorting 12 sample offsets, eliminating duplicates QSorting sample offsets, eliminating duplicates time: 00:00:00 Multikey QSorting 12 samples (Using difference cover) Multikey QSorting samples time: 00:00:00 Calculating bucket sizes Binary sorting into buckets 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Binary sorting into buckets time: 00:00:01 Splitting and merging Splitting and merging time: 00:00:00 Split 1, merged 7; iterating... Binary sorting into buckets 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Binary sorting into buckets time: 00:00:00 Splitting and merging Splitting and merging time: 00:00:00 Split 1, merged 0; iterating... Binary sorting into buckets 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Binary sorting into buckets time: 00:00:01 Splitting and merging Splitting and merging time: 00:00:00 Avg bucket size: 1.58011e+06 (target: 2073890) Converting suffix-array elements to index image Allocating ftab, absorbFtab Entering Ebwt loop Getting block 1 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 801046 (Using difference cover) Sorting block time: 00:00:00 Returning block of 801047 Getting block 2 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 1409302 (Using difference cover) Sorting block time: 00:00:00 Returning block of 1409303 Getting block 3 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:01 Sorting block of length 2025465 (Using difference cover) Sorting block time: 00:00:01 Returning block of 2025466 Getting block 4 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 1992223 (Using difference cover) Sorting block time: 00:00:01 Returning block of 1992224 Getting block 5 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 2014195 (Using difference cover) Sorting block time: 00:00:01 Returning block of 2014196 Getting block 6 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:01 Sorting block of length 1942024 (Using difference cover) Sorting block time: 00:00:01 Returning block of 1942025 Getting block 7 of 7 Reserving size (2073891) for bucket Calculating Z arrays Calculating Z arrays time: 00:00:00 Entering block accumulator loop: 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Block accumulator loop time: 00:00:00 Sorting block of length 876489 (Using difference cover) Sorting block time: 00:00:00 Returning block of 876490 Exited Ebwt loop fchr[A]: 0 fchr[C]: 2764803 fchr[G]: 5524013 fchr[T]: 8274513 fchr[$]: 11060750 Exiting Ebwt::buildToDisk() Returning from initFromVector Wrote 22796434 bytes to primary EBWT file: /scratch/8793060.1.linga/tophat2/tmp/segment_juncs.rev.1.bt2 Wrote 2765192 bytes to secondary EBWT file: /scratch/8793060.1.linga/tophat2/tmp/segment_juncs.rev.2.bt2 Re-opening _in1 and _in2 as input streams Returning from Ebwt constructor Headers: len: 11060750 bwtLen: 11060751 sz: 2765188 bwtSz: 2765188 lineRate: 6 offRate: 4 offMask: 0xfffffff0 ftabChars: 10 eftabLen: 20 eftabSz: 80 ftabLen: 1048577 ftabSz: 4194308 offsLen: 691297 offsSz: 2765188 lineSz: 64 sideSz: 64 sideBwtSz: 48 sideBwtLen: 192 numSides: 57609 numLines: 57609 ebwtTotLen: 3686976 ebwtTotSz: 3686976 color: 0 reverse: 1 Total time for backward call to driver() for mirror index: 00:00:11