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@@ -0,0 +1,3 @@
|
|||||||
|
[submodule "lib/simde"]
|
||||||
|
path = lib/simde
|
||||||
|
url = https://github.com/nemequ/simde.git
|
||||||
+5
-1
@@ -6,6 +6,10 @@ matrix:
|
|||||||
- language: c
|
- language: c
|
||||||
compiler: clang
|
compiler: clang
|
||||||
script: make
|
script: make
|
||||||
|
- arch: arm64
|
||||||
|
language: c
|
||||||
|
compiler: gcc
|
||||||
|
script: make arm_neon=1 aarch64=1
|
||||||
- language: python
|
- language: python
|
||||||
python: "2.7"
|
python: "2.7"
|
||||||
before_install: pip install cython
|
before_install: pip install cython
|
||||||
@@ -15,6 +19,6 @@ matrix:
|
|||||||
before_install: pip install cython
|
before_install: pip install cython
|
||||||
script: python setup.py build_ext
|
script: python setup.py build_ext
|
||||||
- language: python
|
- language: python
|
||||||
python: "3.6"
|
python: "3.9"
|
||||||
before_install: pip install cython
|
before_install: pip install cython
|
||||||
script: python setup.py build_ext
|
script: python setup.py build_ext
|
||||||
|
|||||||
@@ -0,0 +1,46 @@
|
|||||||
|
#### 1. Alignment different with option `-a` or `-c`?
|
||||||
|
|
||||||
|
Without `-a`, `-c` or `--cs`, minimap2 only finds *approximate* mapping
|
||||||
|
locations without detailed base alignment. In particular, the start and end
|
||||||
|
positions of the alignment are impricise. With one of those options, minimap2
|
||||||
|
will perform base alignment, which is generally more accurate but is much
|
||||||
|
slower.
|
||||||
|
|
||||||
|
#### 2. How to map Illumina short reads to noisy long reads?
|
||||||
|
|
||||||
|
No good solutions. The better approach is to assemble short reads into contigs
|
||||||
|
and then map noisy reads to contigs.
|
||||||
|
|
||||||
|
#### 3. The output SAM doesn't have a header.
|
||||||
|
|
||||||
|
By default, minimap2 indexes 4 billion reference bases (4Gb) in a batch and map
|
||||||
|
all reads against each reference batch. Given a reference longer than 4Gb,
|
||||||
|
minimap2 is unable to see all the sequences and thus can't produce a correct
|
||||||
|
SAM header. In this case, minimap2 doesn't output any SAM header. There are two
|
||||||
|
solutions to this issue. First, you may increase option `-I` to, for example,
|
||||||
|
`-I8g` to index more reference bases in a batch. This is preferred if your
|
||||||
|
machine has enough memory. Second, if your machines doesn't have enough memory
|
||||||
|
to hold the reference index, you can use the `--split-prefix` option in a
|
||||||
|
command line like:
|
||||||
|
```sh
|
||||||
|
minimap2 -ax map-ont --split-prefix=tmp ref.fa reads.fq
|
||||||
|
```
|
||||||
|
This second approach uses less memory, but it is slower and requires temporary
|
||||||
|
disk space.
|
||||||
|
|
||||||
|
#### 4. The output SAM is malformatted.
|
||||||
|
|
||||||
|
This typically happens when you use nohup to wrap a minimap2 command line.
|
||||||
|
Nohup is discouraged as it breaks piping. If you have to use nohup, please
|
||||||
|
specify an output file with option `-o`.
|
||||||
|
|
||||||
|
#### 5. How to output one alignment per read?
|
||||||
|
|
||||||
|
You can use `--secondary=no` to suppress secondary alignments (aka multiple
|
||||||
|
mappings), but you can't suppress supplementary alignment (aka split or
|
||||||
|
chimeric alignment) this way. You can use samtools to filter out these
|
||||||
|
alignments:
|
||||||
|
```sh
|
||||||
|
minimap2 -ax map-out ref.fa reads.fq | samtools view -F0x900
|
||||||
|
```
|
||||||
|
However, this is discouraged as supplementary alignment is informative.
|
||||||
+2
-1
@@ -1,6 +1,7 @@
|
|||||||
The MIT License
|
The MIT License
|
||||||
|
|
||||||
Copyright (c) 2017 Broad Institute, Inc.
|
Copyright (c) 2018- Dana-Farber Cancer Institute
|
||||||
|
2017-2018 Broad Institute, Inc.
|
||||||
|
|
||||||
Permission is hereby granted, free of charge, to any person obtaining
|
Permission is hereby granted, free of charge, to any person obtaining
|
||||||
a copy of this software and associated documentation files (the
|
a copy of this software and associated documentation files (the
|
||||||
|
|||||||
@@ -22,6 +22,16 @@ else #if aarch64 is defined
|
|||||||
endif
|
endif
|
||||||
endif
|
endif
|
||||||
|
|
||||||
|
ifneq ($(asan),)
|
||||||
|
CFLAGS+=-fsanitize=address
|
||||||
|
LIBS+=-fsanitize=address
|
||||||
|
endif
|
||||||
|
|
||||||
|
ifneq ($(tsan),)
|
||||||
|
CFLAGS+=-fsanitize=thread
|
||||||
|
LIBS+=-fsanitize=thread
|
||||||
|
endif
|
||||||
|
|
||||||
.PHONY:all extra clean depend
|
.PHONY:all extra clean depend
|
||||||
.SUFFIXES:.c .o
|
.SUFFIXES:.c .o
|
||||||
|
|
||||||
|
|||||||
@@ -0,0 +1,97 @@
|
|||||||
|
CFLAGS= -g -Wall -O2 -Wc++-compat #-Wextra
|
||||||
|
CPPFLAGS= -DHAVE_KALLOC -DUSE_SIMDE -DSIMDE_ENABLE_NATIVE_ALIASES
|
||||||
|
INCLUDES= -Ilib/simde
|
||||||
|
OBJS= kthread.o kalloc.o misc.o bseq.o sketch.o sdust.o options.o index.o chain.o align.o hit.o map.o format.o pe.o esterr.o splitidx.o \
|
||||||
|
ksw2_extz2_simde.o ksw2_extd2_simde.o ksw2_exts2_simde.o ksw2_ll_simde.o
|
||||||
|
PROG= minimap2
|
||||||
|
PROG_EXTRA= sdust minimap2-lite
|
||||||
|
LIBS= -lm -lz -lpthread
|
||||||
|
|
||||||
|
|
||||||
|
ifneq ($(arm_neon),) # if arm_neon is defined
|
||||||
|
ifeq ($(aarch64),) #if aarch64 is not defined
|
||||||
|
CFLAGS+=-D_FILE_OFFSET_BITS=64 -mfpu=neon -fsigned-char
|
||||||
|
else #if aarch64 is defined
|
||||||
|
CFLAGS+=-D_FILE_OFFSET_BITS=64 -fsigned-char
|
||||||
|
endif
|
||||||
|
endif
|
||||||
|
|
||||||
|
ifneq ($(asan),)
|
||||||
|
CFLAGS+=-fsanitize=address
|
||||||
|
LIBS+=-fsanitize=address
|
||||||
|
endif
|
||||||
|
|
||||||
|
ifneq ($(tsan),)
|
||||||
|
CFLAGS+=-fsanitize=thread
|
||||||
|
LIBS+=-fsanitize=thread
|
||||||
|
endif
|
||||||
|
|
||||||
|
.PHONY:all extra clean depend
|
||||||
|
.SUFFIXES:.c .o
|
||||||
|
|
||||||
|
.c.o:
|
||||||
|
$(CC) -c $(CFLAGS) $(CPPFLAGS) $(INCLUDES) $< -o $@
|
||||||
|
|
||||||
|
all:$(PROG)
|
||||||
|
|
||||||
|
extra:all $(PROG_EXTRA)
|
||||||
|
|
||||||
|
minimap2:main.o libminimap2.a
|
||||||
|
$(CC) $(CFLAGS) main.o -o $@ -L. -lminimap2 $(LIBS)
|
||||||
|
|
||||||
|
minimap2-lite:example.o libminimap2.a
|
||||||
|
$(CC) $(CFLAGS) $< -o $@ -L. -lminimap2 $(LIBS)
|
||||||
|
|
||||||
|
libminimap2.a:$(OBJS)
|
||||||
|
$(AR) -csru $@ $(OBJS)
|
||||||
|
|
||||||
|
sdust:sdust.c kalloc.o kalloc.h kdq.h kvec.h kseq.h ketopt.h sdust.h
|
||||||
|
$(CC) -D_SDUST_MAIN $(CFLAGS) $< kalloc.o -o $@ -lz
|
||||||
|
|
||||||
|
ksw2_ll_simde.o:ksw2_ll_sse.c ksw2.h kalloc.h
|
||||||
|
$(CC) -c $(CFLAGS) -msse2 $(CPPFLAGS) $(INCLUDES) $< -o $@
|
||||||
|
|
||||||
|
ksw2_extz2_simde.o:ksw2_extz2_sse.c ksw2.h kalloc.h
|
||||||
|
$(CC) -c $(CFLAGS) -msse4.1 $(CPPFLAGS) $(INCLUDES) $< -o $@
|
||||||
|
|
||||||
|
ksw2_extd2_simde.o:ksw2_extd2_sse.c ksw2.h kalloc.h
|
||||||
|
$(CC) -c $(CFLAGS) -msse4.1 $(CPPFLAGS) $(INCLUDES) $< -o $@
|
||||||
|
|
||||||
|
ksw2_exts2_simde.o:ksw2_exts2_sse.c ksw2.h kalloc.h
|
||||||
|
$(CC) -c $(CFLAGS) -msse4.1 $(CPPFLAGS) $(INCLUDES) $< -o $@
|
||||||
|
|
||||||
|
# other non-file targets
|
||||||
|
|
||||||
|
clean:
|
||||||
|
rm -fr gmon.out *.o a.out $(PROG) $(PROG_EXTRA) *~ *.a *.dSYM build dist mappy*.so mappy.c python/mappy.c mappy.egg*
|
||||||
|
|
||||||
|
depend:
|
||||||
|
(LC_ALL=C; export LC_ALL; makedepend -Y -- $(CFLAGS) $(CPPFLAGS) -- *.c)
|
||||||
|
|
||||||
|
# DO NOT DELETE
|
||||||
|
|
||||||
|
align.o: minimap.h mmpriv.h bseq.h kseq.h ksw2.h kalloc.h
|
||||||
|
bseq.o: bseq.h kvec.h kalloc.h kseq.h
|
||||||
|
chain.o: minimap.h mmpriv.h bseq.h kseq.h kalloc.h
|
||||||
|
esterr.o: mmpriv.h minimap.h bseq.h kseq.h
|
||||||
|
example.o: minimap.h kseq.h
|
||||||
|
format.o: kalloc.h mmpriv.h minimap.h bseq.h kseq.h
|
||||||
|
hit.o: mmpriv.h minimap.h bseq.h kseq.h kalloc.h khash.h
|
||||||
|
index.o: kthread.h bseq.h minimap.h mmpriv.h kseq.h kvec.h kalloc.h khash.h
|
||||||
|
index.o: ksort.h
|
||||||
|
kalloc.o: kalloc.h
|
||||||
|
ksw2_extd2_sse.o: ksw2.h kalloc.h
|
||||||
|
ksw2_exts2_sse.o: ksw2.h kalloc.h
|
||||||
|
ksw2_extz2_sse.o: ksw2.h kalloc.h
|
||||||
|
ksw2_ll_sse.o: ksw2.h kalloc.h
|
||||||
|
kthread.o: kthread.h
|
||||||
|
main.o: bseq.h minimap.h mmpriv.h kseq.h ketopt.h
|
||||||
|
map.o: kthread.h kvec.h kalloc.h sdust.h mmpriv.h minimap.h bseq.h kseq.h
|
||||||
|
map.o: khash.h ksort.h
|
||||||
|
misc.o: mmpriv.h minimap.h bseq.h kseq.h ksort.h
|
||||||
|
options.o: mmpriv.h minimap.h bseq.h kseq.h
|
||||||
|
pe.o: mmpriv.h minimap.h bseq.h kseq.h kvec.h kalloc.h ksort.h
|
||||||
|
sdust.o: kalloc.h kdq.h kvec.h sdust.h
|
||||||
|
self-chain.o: minimap.h kseq.h
|
||||||
|
sketch.o: kvec.h kalloc.h mmpriv.h minimap.h bseq.h kseq.h
|
||||||
|
splitidx.o: mmpriv.h minimap.h bseq.h kseq.h
|
||||||
@@ -1,3 +1,228 @@
|
|||||||
|
Release 2.18-r1015 (9 April 2021)
|
||||||
|
---------------------------------
|
||||||
|
|
||||||
|
This release fixes multiple rare bugs in minimap2 and adds additional
|
||||||
|
functionality to paftools.js.
|
||||||
|
|
||||||
|
Changes to minimap2:
|
||||||
|
|
||||||
|
* Bugfix: a rare segfault caused by an off-by-one error (#489)
|
||||||
|
|
||||||
|
* Bugfix: minimap2 segfaulted due to an uninitilized variable (#622 and #625).
|
||||||
|
|
||||||
|
* Bugfix: minimap2 parsed spaces as field separators in BED (#721). This led
|
||||||
|
to issues when the BED name column contains spaces.
|
||||||
|
|
||||||
|
* Bugfix: minimap2 `--split-prefix` did not work with long reference names
|
||||||
|
(#394).
|
||||||
|
|
||||||
|
* Bugfix: option `--junc-bonus` didn't work (#513)
|
||||||
|
|
||||||
|
* Bugfix: minimap2 didn't return 1 on I/O errors (#532)
|
||||||
|
|
||||||
|
* Bugfix: the `de:f` tag (sequence divergence) could be negative if there were
|
||||||
|
ambiguous bases
|
||||||
|
|
||||||
|
* Bugfix: fixed two undefined behaviors caused by calling memcpy() on
|
||||||
|
zero-length blocks (#443)
|
||||||
|
|
||||||
|
* Bugfix: there were duplicated SAM @SQ lines if option `--split-prefix` is in
|
||||||
|
use (#400 and #527)
|
||||||
|
|
||||||
|
* Bugfix: option -K had to be smaller than 2 billion (#491). This was caused
|
||||||
|
by a 32-bit integer overflow.
|
||||||
|
|
||||||
|
* Improvement: optionally compile against SIMDe (#597). Minimap2 should work
|
||||||
|
with IBM POWER CPUs, though this has not been tested. To compile with SIMDe,
|
||||||
|
please use `make -f Makefile.simde`.
|
||||||
|
|
||||||
|
* Improvement: more informative error message for I/O errors (#454) and for
|
||||||
|
FASTQ parsing errors (#510)
|
||||||
|
|
||||||
|
* Improvement: abort given malformatted RG line (#541)
|
||||||
|
|
||||||
|
* Improvement: better formula to estimate the `dv:f` tag (approximate sequence
|
||||||
|
divergence). See DOI:10.1101/2021.01.15.426881.
|
||||||
|
|
||||||
|
* New feature: added the `--mask-len` option to fine control the removal of
|
||||||
|
redundant hits (#659). The default behavior is unchanged.
|
||||||
|
|
||||||
|
Changes to mappy:
|
||||||
|
|
||||||
|
* Bugfix: mappy caused segmentation fault if the reference index is not
|
||||||
|
present (#413).
|
||||||
|
|
||||||
|
* Bugfix: fixed a memory leak via 238b6bb3
|
||||||
|
|
||||||
|
* Change: always require Cython to compile the mappy module (#723). Older
|
||||||
|
mappy packages at PyPI bundled the C source code generated by Cython such
|
||||||
|
that end users did not need to install Cython to compile mappy. However, as
|
||||||
|
Python 3.9 is breaking backward compatibility, older mappy does not work
|
||||||
|
with Python 3.9 anymore. We have to add this Cython dependency as a
|
||||||
|
workaround.
|
||||||
|
|
||||||
|
Changes to paftools.js:
|
||||||
|
|
||||||
|
* Bugfix: the "part10-" line from asmgene was wrong (#581)
|
||||||
|
|
||||||
|
* Improvement: compatibility with GTF files from GenBank (#422)
|
||||||
|
|
||||||
|
* New feature: asmgene also checks missing multi-copy genes
|
||||||
|
|
||||||
|
* New feature: added the misjoin command to evaluate large-scale misjoins and
|
||||||
|
megabase-long inversions.
|
||||||
|
|
||||||
|
Although given the many bug fixes and minor improvements, the core algorithm
|
||||||
|
stays the same. This version of minimap2 produces nearly identical alignments
|
||||||
|
to v2.17 except very rare corner cases.
|
||||||
|
|
||||||
|
Now unimap is recommended over minimap2 for aligning long contigs against a
|
||||||
|
reference genome. It often takes less wall-clock time and is much more
|
||||||
|
sensitive to long insertions and deletions.
|
||||||
|
|
||||||
|
(2.18: 9 April 2021, r1015)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
Release 2.17-r941 (4 May 2019)
|
||||||
|
------------------------------
|
||||||
|
|
||||||
|
Changes since the last release:
|
||||||
|
|
||||||
|
* Fixed flawed CIGARs like `5I6D7I` (#392).
|
||||||
|
|
||||||
|
* Bugfix: TLEN should be 0 when either end is unmapped (#373 and #365).
|
||||||
|
|
||||||
|
* Bugfix: mappy is unable to write index (#372).
|
||||||
|
|
||||||
|
* Added option `--junc-bed` to load known gene annotations in the BED12
|
||||||
|
format. Minimap2 prefers annotated junctions over novel junctions (#197 and
|
||||||
|
#348). GTF can be converted to BED12 with `paftools.js gff2bed`.
|
||||||
|
|
||||||
|
* Added option `--sam-hit-only` to suppress unmapped hits in SAM (#377).
|
||||||
|
|
||||||
|
* Added preset `splice:hq` for high-quality CCS or mRNA sequences. It applies
|
||||||
|
better scoring and improves the sensitivity to small exons. This preset may
|
||||||
|
introduce false small introns, but the overall accuracy should be higher.
|
||||||
|
|
||||||
|
This version produces nearly identical alignments to v2.16, except for CIGARs
|
||||||
|
affected by the bug mentioned above.
|
||||||
|
|
||||||
|
(2.17: 5 May 2019, r941)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
Release 2.16-r922 (28 February 2019)
|
||||||
|
------------------------------------
|
||||||
|
|
||||||
|
This release is 50% faster for mapping ultra-long nanopore reads at comparable
|
||||||
|
accuracy. For short-read mapping, long-read overlapping and ordinary long-read
|
||||||
|
mapping, the performance and accuracy remain similar. This speedup is achieved
|
||||||
|
with a new heuristic to limit the number of chaining iterations (#324). Users
|
||||||
|
can disable the heuristic by increasing a new option `--max-chain-iter` to a
|
||||||
|
huge number.
|
||||||
|
|
||||||
|
Other changes to minimap2:
|
||||||
|
|
||||||
|
* Implemented option `--paf-no-hit` to output unmapped query sequences in PAF.
|
||||||
|
The strand and reference name columns are both `*` at an unmapped line. The
|
||||||
|
hidden option is available in earlier minimap2 but had a different 2-column
|
||||||
|
output format instead of PAF.
|
||||||
|
|
||||||
|
* Fixed a bug that leads to wrongly calculated `de` tags when ambiguous bases
|
||||||
|
are involved (#309). This bug only affects v2.15.
|
||||||
|
|
||||||
|
* Fixed a bug when parsing command-line option `--splice` (#344). This bug was
|
||||||
|
introduced in v2.13.
|
||||||
|
|
||||||
|
* Fixed two division-by-zero cases (#326). They don't affect final alignments
|
||||||
|
because the results of the divisions are not used in both case.
|
||||||
|
|
||||||
|
* Added an option `-o` to output alignments to a specified file. It is still
|
||||||
|
recommended to use UNIX pipes for on-the-fly conversion or compression.
|
||||||
|
|
||||||
|
* Output a new `rl` tag to give the length of query regions harboring
|
||||||
|
repetitive seeds.
|
||||||
|
|
||||||
|
Changes to paftool.js:
|
||||||
|
|
||||||
|
* Added a new option to convert the MD tag to the long form of the cs tag.
|
||||||
|
|
||||||
|
Changes to mappy:
|
||||||
|
|
||||||
|
* Added the `mappy.Aligner.seq_names` method to return sequence names (#312).
|
||||||
|
|
||||||
|
For NA12878 ultra-long reads, this release changes the alignments of <0.1% of
|
||||||
|
reads in comparison to v2.15. All these reads have highly fragmented alignments
|
||||||
|
and are likely to be problematic anyway. For shorter or well aligned reads,
|
||||||
|
this release should produce mostly identical alignments to v2.15.
|
||||||
|
|
||||||
|
(2.16: 28 February 2019, r922)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
Release 2.15-r905 (10 January 2019)
|
||||||
|
-----------------------------------
|
||||||
|
|
||||||
|
Changes to minimap2:
|
||||||
|
|
||||||
|
* Fixed a rare segmentation fault when option -H is in use (#307). This may
|
||||||
|
happen when there are very long homopolymers towards the 5'-end of a read.
|
||||||
|
|
||||||
|
* Fixed wrong CIGARs when option --eqx is used (#266).
|
||||||
|
|
||||||
|
* Fixed a typo in the base encoding table (#264). This should have no
|
||||||
|
practical effect.
|
||||||
|
|
||||||
|
* Fixed a typo in the example code (#265).
|
||||||
|
|
||||||
|
* Improved the C++ compatibility by removing "register" (#261). However,
|
||||||
|
minimap2 still can't be compiled in the pedantic C++ mode (#306).
|
||||||
|
|
||||||
|
* Output a new "de" tag for gap-compressed sequence divergence.
|
||||||
|
|
||||||
|
Changes to paftools.js:
|
||||||
|
|
||||||
|
* Added "asmgene" to evaluate the completeness of an assembly by measuring the
|
||||||
|
uniquely mapped single-copy genes. This command learns the idea of BUSCO.
|
||||||
|
|
||||||
|
* Added "vcfpair" to call a phased VCF from phased whole-genome assemblies. An
|
||||||
|
earlier version of this script is used to produce the ground truth for the
|
||||||
|
syndip benchmark [PMID:30013044].
|
||||||
|
|
||||||
|
This release produces identical alignment coordinates and CIGARs in comparison
|
||||||
|
to v2.14. Users are advised to upgrade due to the several bug fixes.
|
||||||
|
|
||||||
|
(2.15: 10 Janurary 2019, r905)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
Release 2.14-r883 (5 November 2018)
|
||||||
|
-----------------------------------
|
||||||
|
|
||||||
|
Notable changes:
|
||||||
|
|
||||||
|
* Fixed two minor bugs caused by typos (#254 and #266).
|
||||||
|
|
||||||
|
* Fixed a bug that made minimap2 abort when --eqx was used together with --MD
|
||||||
|
or --cs (#257).
|
||||||
|
|
||||||
|
* Added --cap-sw-mem to cap the size of DP matrices (#259). Base alignment may
|
||||||
|
take a lot of memory in the splicing mode. This may lead to issues when we
|
||||||
|
run minimap2 on a cluster with a hard memory limit. The new option avoids
|
||||||
|
unlimited memory usage at the cost of missing a few long introns.
|
||||||
|
|
||||||
|
* Conforming to C99 and C11 when possible (#261).
|
||||||
|
|
||||||
|
* Warn about malformatted FASTA or FASTQ (#252 and #255).
|
||||||
|
|
||||||
|
This release occasionally produces base alignments different from v2.13. The
|
||||||
|
overall alignment accuracy remain similar.
|
||||||
|
|
||||||
|
(2.14: 5 November 2018, r883)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
Release 2.13-r850 (11 October 2018)
|
Release 2.13-r850 (11 October 2018)
|
||||||
-----------------------------------
|
-----------------------------------
|
||||||
|
|
||||||
|
|||||||
@@ -9,8 +9,8 @@ cd minimap2 && make
|
|||||||
# long sequences against a reference genome
|
# long sequences against a reference genome
|
||||||
./minimap2 -a test/MT-human.fa test/MT-orang.fa > test.sam
|
./minimap2 -a test/MT-human.fa test/MT-orang.fa > test.sam
|
||||||
# create an index first and then map
|
# create an index first and then map
|
||||||
./minimap2 -d MT-human.mmi test/MT-human.fa
|
./minimap2 -x map-ont -d MT-human-ont.mmi test/MT-human.fa
|
||||||
./minimap2 -a MT-human.mmi test/MT-orang.fa > test.sam
|
./minimap2 -a MT-human-ont.mmi test/MT-orang.fa > test.sam
|
||||||
# use presets (no test data)
|
# use presets (no test data)
|
||||||
./minimap2 -ax map-pb ref.fa pacbio.fq.gz > aln.sam # PacBio genomic reads
|
./minimap2 -ax map-pb ref.fa pacbio.fq.gz > aln.sam # PacBio genomic reads
|
||||||
./minimap2 -ax map-ont ref.fa ont.fq.gz > aln.sam # Oxford Nanopore genomic reads
|
./minimap2 -ax map-ont ref.fa ont.fq.gz > aln.sam # Oxford Nanopore genomic reads
|
||||||
@@ -18,13 +18,18 @@ cd minimap2 && make
|
|||||||
./minimap2 -ax sr ref.fa read1.fa read2.fa > aln.sam # short genomic paired-end reads
|
./minimap2 -ax sr ref.fa read1.fa read2.fa > aln.sam # short genomic paired-end reads
|
||||||
./minimap2 -ax splice ref.fa rna-reads.fa > aln.sam # spliced long reads (strand unknown)
|
./minimap2 -ax splice ref.fa rna-reads.fa > aln.sam # spliced long reads (strand unknown)
|
||||||
./minimap2 -ax splice -uf -k14 ref.fa reads.fa > aln.sam # noisy Nanopore Direct RNA-seq
|
./minimap2 -ax splice -uf -k14 ref.fa reads.fa > aln.sam # noisy Nanopore Direct RNA-seq
|
||||||
./minimap2 -ax splice -uf -C5 ref.fa query.fa > aln.sam # Final PacBio Iso-seq or traditional cDNA
|
./minimap2 -ax splice:hq -uf ref.fa query.fa > aln.sam # Final PacBio Iso-seq or traditional cDNA
|
||||||
|
./minimap2 -ax splice --junc-bed anno.bed12 ref.fa query.fa > aln.sam # prioritize on annotated junctions
|
||||||
./minimap2 -cx asm5 asm1.fa asm2.fa > aln.paf # intra-species asm-to-asm alignment
|
./minimap2 -cx asm5 asm1.fa asm2.fa > aln.paf # intra-species asm-to-asm alignment
|
||||||
./minimap2 -x ava-pb reads.fa reads.fa > overlaps.paf # PacBio read overlap
|
./minimap2 -x ava-pb reads.fa reads.fa > overlaps.paf # PacBio read overlap
|
||||||
./minimap2 -x ava-ont reads.fa reads.fa > overlaps.paf # Nanopore read overlap
|
./minimap2 -x ava-ont reads.fa reads.fa > overlaps.paf # Nanopore read overlap
|
||||||
# man page for detailed command line options
|
# man page for detailed command line options
|
||||||
man ./minimap2.1
|
man ./minimap2.1
|
||||||
```
|
```
|
||||||
|
[Unimap][unimap] is recommended for aligning long contigs against a reference
|
||||||
|
genome. It often takes less wall-clock time and is much more sensitive to long
|
||||||
|
insertions and deletions.
|
||||||
|
|
||||||
## Table of Contents
|
## Table of Contents
|
||||||
|
|
||||||
- [Getting Started](#started)
|
- [Getting Started](#started)
|
||||||
@@ -71,8 +76,8 @@ Detailed evaluations are available from the [minimap2 paper][doi] or the
|
|||||||
Minimap2 is optimized for x86-64 CPUs. You can acquire precompiled binaries from
|
Minimap2 is optimized for x86-64 CPUs. You can acquire precompiled binaries from
|
||||||
the [release page][release] with:
|
the [release page][release] with:
|
||||||
```sh
|
```sh
|
||||||
curl -L https://github.com/lh3/minimap2/releases/download/v2.13/minimap2-2.13_x64-linux.tar.bz2 | tar -jxvf -
|
curl -L https://github.com/lh3/minimap2/releases/download/v2.18/minimap2-2.18_x64-linux.tar.bz2 | tar -jxvf -
|
||||||
./minimap2-2.13_x64-linux/minimap2
|
./minimap2-2.18_x64-linux/minimap2
|
||||||
```
|
```
|
||||||
If you want to compile from the source, you need to have a C compiler, GNU make
|
If you want to compile from the source, you need to have a C compiler, GNU make
|
||||||
and zlib development files installed. Then type `make` in the source code
|
and zlib development files installed. Then type `make` in the source code
|
||||||
@@ -80,7 +85,14 @@ directory to compile. If you see compilation errors, try `make sse2only=1`
|
|||||||
to disable SSE4 code, which will make minimap2 slightly slower.
|
to disable SSE4 code, which will make minimap2 slightly slower.
|
||||||
|
|
||||||
Minimap2 also works with ARM CPUs supporting the NEON instruction sets. To
|
Minimap2 also works with ARM CPUs supporting the NEON instruction sets. To
|
||||||
compile for 32 bit ARM architectures (such as ARMv7), use `make arm_neon=1`. To compile for for 64 bit ARM architectures (such as ARMv8), use `make arm_neon=1 aarch64=1`.
|
compile for 32 bit ARM architectures (such as ARMv7), use `make arm_neon=1`. To
|
||||||
|
compile for for 64 bit ARM architectures (such as ARMv8), use `make arm_neon=1
|
||||||
|
aarch64=1`.
|
||||||
|
|
||||||
|
Minimap2 can use [SIMD Everywhere (SIMDe)][simde] library for porting
|
||||||
|
implementation to the different SIMD instruction sets. To compile using SIMDe,
|
||||||
|
use `make -f Makefile.simde`. To compile for ARM CPUs, use `Makefile.simde`
|
||||||
|
with the ARM related command lines given above.
|
||||||
|
|
||||||
### <a name="general"></a>General usage
|
### <a name="general"></a>General usage
|
||||||
|
|
||||||
@@ -139,7 +151,7 @@ Nanopore reads.
|
|||||||
#### <a name="map-long-splice"></a>Map long mRNA/cDNA reads
|
#### <a name="map-long-splice"></a>Map long mRNA/cDNA reads
|
||||||
|
|
||||||
```sh
|
```sh
|
||||||
minimap2 -ax splice -uf -C5 ref.fa iso-seq.fq > aln.sam # PacBio Iso-seq/traditional cDNA
|
minimap2 -ax splice:hq -uf ref.fa iso-seq.fq > aln.sam # PacBio Iso-seq/traditional cDNA
|
||||||
minimap2 -ax splice ref.fa nanopore-cdna.fa > aln.sam # Nanopore 2D cDNA-seq
|
minimap2 -ax splice ref.fa nanopore-cdna.fa > aln.sam # Nanopore 2D cDNA-seq
|
||||||
minimap2 -ax splice -uf -k14 ref.fa direct-rna.fq > aln.sam # Nanopore Direct RNA-seq
|
minimap2 -ax splice -uf -k14 ref.fa direct-rna.fq > aln.sam # Nanopore Direct RNA-seq
|
||||||
minimap2 -ax splice --splice-flank=no SIRV.fa SIRV-seq.fa # mapping against SIRV control
|
minimap2 -ax splice --splice-flank=no SIRV.fa SIRV-seq.fa # mapping against SIRV control
|
||||||
@@ -178,6 +190,19 @@ This is because SIRV does not honor the evolutionarily conservative splicing
|
|||||||
signal. If you are studying SIRV, you may apply `--splice-flank=no` to let
|
signal. If you are studying SIRV, you may apply `--splice-flank=no` to let
|
||||||
minimap2 only model GT..AG, ignoring the additional base.
|
minimap2 only model GT..AG, ignoring the additional base.
|
||||||
|
|
||||||
|
Since v2.17, minimap2 can optionally take annotated genes as input and
|
||||||
|
prioritize on annotated splice junctions. To use this feature, you can
|
||||||
|
```sh
|
||||||
|
paftools.js gff2bed anno.gff > anno.bed
|
||||||
|
minimap2 -ax splice --junc-bed anno.bed ref.fa query.fa > aln.sam
|
||||||
|
```
|
||||||
|
Here, `anno.gff` is the gene annotation in the GTF or GFF3 format (`gff2bed`
|
||||||
|
automatically tests the format). The output of `gff2bed` is in the 12-column
|
||||||
|
BED format, or the BED12 format. With the `--junc-bed` option, minimap2 adds a
|
||||||
|
bonus score (tuned by `--junc-bonus`) if an aligned junction matches a junction
|
||||||
|
in the annotation. Option `--junc-bed` also takes 5-column BED, including the
|
||||||
|
strand field. In this case, each line indicates an oriented junction.
|
||||||
|
|
||||||
#### <a name="long-overlap"></a>Find overlaps between long reads
|
#### <a name="long-overlap"></a>Find overlaps between long reads
|
||||||
|
|
||||||
```sh
|
```sh
|
||||||
@@ -315,16 +340,17 @@ highlighted in bold. The description may help to tune minimap2 parameters.
|
|||||||
### <a name="help"></a>Getting help
|
### <a name="help"></a>Getting help
|
||||||
|
|
||||||
Manpage [minimap2.1][manpage] provides detailed description of minimap2
|
Manpage [minimap2.1][manpage] provides detailed description of minimap2
|
||||||
command line options and optional tags. If you encounter bugs or have further
|
command line options and optional tags. The [FAQ](FAQ.md) page answers several
|
||||||
questions or requests, you can raise an issue at the [issue page][issue].
|
frequently asked questions. If you encounter bugs or have further questions or
|
||||||
There is not a specific mailing list for the time being.
|
requests, you can raise an issue at the [issue page][issue]. There is not a
|
||||||
|
specific mailing list for the time being.
|
||||||
|
|
||||||
### <a name="cite"></a>Citing minimap2
|
### <a name="cite"></a>Citing minimap2
|
||||||
|
|
||||||
If you use minimap2 in your work, please cite:
|
If you use minimap2 in your work, please cite:
|
||||||
|
|
||||||
> Li, H. (2018). Minimap2: pairwise alignment for nucleotide sequences.
|
> Li, H. (2018). Minimap2: pairwise alignment for nucleotide sequences.
|
||||||
> Bioinformatics. [doi:10.1093/bioinformatics/bty191][doi]
|
> *Bioinformatics*, **34**:3094-3100. [doi:10.1093/bioinformatics/bty191][doi]
|
||||||
|
|
||||||
## <a name="dguide"></a>Developers' Guide
|
## <a name="dguide"></a>Developers' Guide
|
||||||
|
|
||||||
@@ -355,6 +381,8 @@ mappy` or [from BioConda][mappyconda] via `conda install -c bioconda mappy`.
|
|||||||
billion bases or longer (2,147,483,647 to be exact). The total length of all
|
billion bases or longer (2,147,483,647 to be exact). The total length of all
|
||||||
sequences can well exceed this threshold.
|
sequences can well exceed this threshold.
|
||||||
|
|
||||||
|
* Minimap2 often misses small exons.
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
[paf]: https://github.com/lh3/miniasm/blob/master/PAF.md
|
[paf]: https://github.com/lh3/miniasm/blob/master/PAF.md
|
||||||
@@ -373,3 +401,5 @@ mappy` or [from BioConda][mappyconda] via `conda install -c bioconda mappy`.
|
|||||||
[manpage]: https://lh3.github.io/minimap2/minimap2.html
|
[manpage]: https://lh3.github.io/minimap2/minimap2.html
|
||||||
[manpage-cs]: https://lh3.github.io/minimap2/minimap2.html#10
|
[manpage-cs]: https://lh3.github.io/minimap2/minimap2.html#10
|
||||||
[doi]: https://doi.org/10.1093/bioinformatics/bty191
|
[doi]: https://doi.org/10.1093/bioinformatics/bty191
|
||||||
|
[smide]: https://github.com/nemequ/simde
|
||||||
|
[unimap]: https://github.com/lh3/unimap
|
||||||
|
|||||||
@@ -38,8 +38,8 @@ static inline void update_max_zdrop(int32_t score, int i, int j, int32_t *max, i
|
|||||||
int z = *max - score - diff * e;
|
int z = *max - score - diff * e;
|
||||||
if (z > *max_zdrop) {
|
if (z > *max_zdrop) {
|
||||||
*max_zdrop = z;
|
*max_zdrop = z;
|
||||||
pos[0][0] = *max_i, pos[0][1] = i + 1;
|
pos[0][0] = *max_i, pos[0][1] = i;
|
||||||
pos[1][0] = *max_j, pos[1][1] = j + 1;
|
pos[1][0] = *max_j, pos[1][1] = j;
|
||||||
}
|
}
|
||||||
} else *max = score, *max_i = i, *max_j = j;
|
} else *max = score, *max_i = i, *max_j = j;
|
||||||
}
|
}
|
||||||
@@ -123,6 +123,25 @@ static void mm_fix_cigar(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq,
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
assert(qoff == r->qe - r->qs && toff == r->re - r->rs);
|
assert(qoff == r->qe - r->qs && toff == r->re - r->rs);
|
||||||
|
for (k = 0; k < p->n_cigar - 2; ++k) { // fix CIGAR like 5I6D7I
|
||||||
|
if ((p->cigar[k]&0xf) > 0 && (p->cigar[k]&0xf) + (p->cigar[k+1]&0xf) == 3) {
|
||||||
|
uint32_t l, s[3] = {0,0,0};
|
||||||
|
for (l = k; l < p->n_cigar; ++l) { // count number of adjacent I and D
|
||||||
|
uint32_t op = p->cigar[l]&0xf;
|
||||||
|
if (op == 1 || op == 2 || p->cigar[l]>>4 == 0)
|
||||||
|
s[op] += p->cigar[l] >> 4;
|
||||||
|
else break;
|
||||||
|
}
|
||||||
|
if (s[1] > 0 && s[2] > 0 && l - k > 2) { // turn to a single I and a single D
|
||||||
|
p->cigar[k] = s[1]<<4|1;
|
||||||
|
p->cigar[k+1] = s[2]<<4|2;
|
||||||
|
for (k += 2; k < l; ++k)
|
||||||
|
p->cigar[k] &= 0xf;
|
||||||
|
to_shrink = 1;
|
||||||
|
}
|
||||||
|
k = l;
|
||||||
|
}
|
||||||
|
}
|
||||||
if (to_shrink) { // squeeze out zero-length operations
|
if (to_shrink) { // squeeze out zero-length operations
|
||||||
int32_t l = 0;
|
int32_t l = 0;
|
||||||
for (k = 0; k < p->n_cigar; ++k) // squeeze out zero-length operations
|
for (k = 0; k < p->n_cigar; ++k) // squeeze out zero-length operations
|
||||||
@@ -147,78 +166,6 @@ static void mm_fix_cigar(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq,
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
static void mm_update_extra(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq, const int8_t *mat, int8_t q, int8_t e)
|
|
||||||
{
|
|
||||||
uint32_t k, l;
|
|
||||||
int32_t s = 0, max = 0, qshift, tshift, toff = 0, qoff = 0;
|
|
||||||
mm_extra_t *p = r->p;
|
|
||||||
if (p == 0) return;
|
|
||||||
mm_fix_cigar(r, qseq, tseq, &qshift, &tshift);
|
|
||||||
qseq += qshift, tseq += tshift; // qseq and tseq may be shifted due to the removal of leading I/D
|
|
||||||
r->blen = r->mlen = 0;
|
|
||||||
for (k = 0; k < p->n_cigar; ++k) {
|
|
||||||
uint32_t op = p->cigar[k]&0xf, len = p->cigar[k]>>4;
|
|
||||||
if (op == 0) { // match/mismatch
|
|
||||||
int n_ambi = 0, n_diff = 0;
|
|
||||||
for (l = 0; l < len; ++l) {
|
|
||||||
int cq = qseq[qoff + l], ct = tseq[toff + l];
|
|
||||||
if (ct > 3 || cq > 3) ++n_ambi;
|
|
||||||
else if (ct != cq) ++n_diff;
|
|
||||||
s += mat[ct * 5 + cq];
|
|
||||||
if (s < 0) s = 0;
|
|
||||||
else max = max > s? max : s;
|
|
||||||
}
|
|
||||||
r->blen += len - n_ambi, r->mlen += len - (n_ambi + n_diff), p->n_ambi += n_ambi;
|
|
||||||
toff += len, qoff += len;
|
|
||||||
} else if (op == 1) { // insertion
|
|
||||||
int n_ambi = 0;
|
|
||||||
for (l = 0; l < len; ++l)
|
|
||||||
if (qseq[qoff + l] > 3) ++n_ambi;
|
|
||||||
r->blen += len - n_ambi, p->n_ambi += n_ambi;
|
|
||||||
s -= q + e * len;
|
|
||||||
if (s < 0) s = 0;
|
|
||||||
qoff += len;
|
|
||||||
} else if (op == 2) { // deletion
|
|
||||||
int n_ambi = 0;
|
|
||||||
for (l = 0; l < len; ++l)
|
|
||||||
if (tseq[toff + l] > 3) ++n_ambi;
|
|
||||||
r->blen += len - n_ambi, p->n_ambi += n_ambi;
|
|
||||||
s -= q + e * len;
|
|
||||||
if (s < 0) s = 0;
|
|
||||||
toff += len;
|
|
||||||
} else if (op == 3) { // intron
|
|
||||||
toff += len;
|
|
||||||
}
|
|
||||||
}
|
|
||||||
p->dp_max = max;
|
|
||||||
assert(qoff == r->qe - r->qs && toff == r->re - r->rs);
|
|
||||||
}
|
|
||||||
|
|
||||||
static void mm_append_cigar(mm_reg1_t *r, uint32_t n_cigar, uint32_t *cigar) // TODO: this calls the libc realloc()
|
|
||||||
{
|
|
||||||
mm_extra_t *p;
|
|
||||||
if (n_cigar == 0) return;
|
|
||||||
if (r->p == 0) {
|
|
||||||
uint32_t capacity = n_cigar + sizeof(mm_extra_t)/4;
|
|
||||||
kroundup32(capacity);
|
|
||||||
r->p = (mm_extra_t*)calloc(capacity, 4);
|
|
||||||
r->p->capacity = capacity;
|
|
||||||
} else if (r->p->n_cigar + n_cigar + sizeof(mm_extra_t)/4 > r->p->capacity) {
|
|
||||||
r->p->capacity = r->p->n_cigar + n_cigar + sizeof(mm_extra_t)/4;
|
|
||||||
kroundup32(r->p->capacity);
|
|
||||||
r->p = (mm_extra_t*)realloc(r->p, r->p->capacity * 4);
|
|
||||||
}
|
|
||||||
p = r->p;
|
|
||||||
if (p->n_cigar > 0 && (p->cigar[p->n_cigar-1]&0xf) == (cigar[0]&0xf)) { // same CIGAR op at the boundary
|
|
||||||
p->cigar[p->n_cigar-1] += cigar[0]>>4<<4;
|
|
||||||
if (n_cigar > 1) memcpy(p->cigar + p->n_cigar, cigar + 1, (n_cigar - 1) * 4);
|
|
||||||
p->n_cigar += n_cigar - 1;
|
|
||||||
} else {
|
|
||||||
memcpy(p->cigar + p->n_cigar, cigar, n_cigar * 4);
|
|
||||||
p->n_cigar += n_cigar;
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
static void mm_update_cigar_eqx(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq) // written by @armintoepfer
|
static void mm_update_cigar_eqx(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq) // written by @armintoepfer
|
||||||
{
|
{
|
||||||
uint32_t n_EQX = 0;
|
uint32_t n_EQX = 0;
|
||||||
@@ -290,7 +237,80 @@ static void mm_update_cigar_eqx(mm_reg1_t *r, const uint8_t *qseq, const uint8_t
|
|||||||
r->p = p;
|
r->p = p;
|
||||||
}
|
}
|
||||||
|
|
||||||
static void mm_align_pair(void *km, const mm_mapopt_t *opt, int qlen, const uint8_t *qseq, int tlen, const uint8_t *tseq, const int8_t *mat, int w, int end_bonus, int zdrop, int flag, ksw_extz_t *ez)
|
static void mm_update_extra(mm_reg1_t *r, const uint8_t *qseq, const uint8_t *tseq, const int8_t *mat, int8_t q, int8_t e, int is_eqx)
|
||||||
|
{
|
||||||
|
uint32_t k, l;
|
||||||
|
int32_t s = 0, max = 0, qshift, tshift, toff = 0, qoff = 0;
|
||||||
|
mm_extra_t *p = r->p;
|
||||||
|
if (p == 0) return;
|
||||||
|
mm_fix_cigar(r, qseq, tseq, &qshift, &tshift);
|
||||||
|
qseq += qshift, tseq += tshift; // qseq and tseq may be shifted due to the removal of leading I/D
|
||||||
|
r->blen = r->mlen = 0;
|
||||||
|
for (k = 0; k < p->n_cigar; ++k) {
|
||||||
|
uint32_t op = p->cigar[k]&0xf, len = p->cigar[k]>>4;
|
||||||
|
if (op == 0) { // match/mismatch
|
||||||
|
int n_ambi = 0, n_diff = 0;
|
||||||
|
for (l = 0; l < len; ++l) {
|
||||||
|
int cq = qseq[qoff + l], ct = tseq[toff + l];
|
||||||
|
if (ct > 3 || cq > 3) ++n_ambi;
|
||||||
|
else if (ct != cq) ++n_diff;
|
||||||
|
s += mat[ct * 5 + cq];
|
||||||
|
if (s < 0) s = 0;
|
||||||
|
else max = max > s? max : s;
|
||||||
|
}
|
||||||
|
r->blen += len - n_ambi, r->mlen += len - (n_ambi + n_diff), p->n_ambi += n_ambi;
|
||||||
|
toff += len, qoff += len;
|
||||||
|
} else if (op == 1) { // insertion
|
||||||
|
int n_ambi = 0;
|
||||||
|
for (l = 0; l < len; ++l)
|
||||||
|
if (qseq[qoff + l] > 3) ++n_ambi;
|
||||||
|
r->blen += len - n_ambi, p->n_ambi += n_ambi;
|
||||||
|
s -= q + e * len;
|
||||||
|
if (s < 0) s = 0;
|
||||||
|
qoff += len;
|
||||||
|
} else if (op == 2) { // deletion
|
||||||
|
int n_ambi = 0;
|
||||||
|
for (l = 0; l < len; ++l)
|
||||||
|
if (tseq[toff + l] > 3) ++n_ambi;
|
||||||
|
r->blen += len - n_ambi, p->n_ambi += n_ambi;
|
||||||
|
s -= q + e * len;
|
||||||
|
if (s < 0) s = 0;
|
||||||
|
toff += len;
|
||||||
|
} else if (op == 3) { // intron
|
||||||
|
toff += len;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
p->dp_max = max;
|
||||||
|
assert(qoff == r->qe - r->qs && toff == r->re - r->rs);
|
||||||
|
if (is_eqx) mm_update_cigar_eqx(r, qseq, tseq); // NB: it has to be called here as changes to qseq and tseq are not returned
|
||||||
|
}
|
||||||
|
|
||||||
|
static void mm_append_cigar(mm_reg1_t *r, uint32_t n_cigar, uint32_t *cigar) // TODO: this calls the libc realloc()
|
||||||
|
{
|
||||||
|
mm_extra_t *p;
|
||||||
|
if (n_cigar == 0) return;
|
||||||
|
if (r->p == 0) {
|
||||||
|
uint32_t capacity = n_cigar + sizeof(mm_extra_t)/4;
|
||||||
|
kroundup32(capacity);
|
||||||
|
r->p = (mm_extra_t*)calloc(capacity, 4);
|
||||||
|
r->p->capacity = capacity;
|
||||||
|
} else if (r->p->n_cigar + n_cigar + sizeof(mm_extra_t)/4 > r->p->capacity) {
|
||||||
|
r->p->capacity = r->p->n_cigar + n_cigar + sizeof(mm_extra_t)/4;
|
||||||
|
kroundup32(r->p->capacity);
|
||||||
|
r->p = (mm_extra_t*)realloc(r->p, r->p->capacity * 4);
|
||||||
|
}
|
||||||
|
p = r->p;
|
||||||
|
if (p->n_cigar > 0 && (p->cigar[p->n_cigar-1]&0xf) == (cigar[0]&0xf)) { // same CIGAR op at the boundary
|
||||||
|
p->cigar[p->n_cigar-1] += cigar[0]>>4<<4;
|
||||||
|
if (n_cigar > 1) memcpy(p->cigar + p->n_cigar, cigar + 1, (n_cigar - 1) * 4);
|
||||||
|
p->n_cigar += n_cigar - 1;
|
||||||
|
} else {
|
||||||
|
memcpy(p->cigar + p->n_cigar, cigar, n_cigar * 4);
|
||||||
|
p->n_cigar += n_cigar;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
static void mm_align_pair(void *km, const mm_mapopt_t *opt, int qlen, const uint8_t *qseq, int tlen, const uint8_t *tseq, const uint8_t *junc, const int8_t *mat, int w, int end_bonus, int zdrop, int flag, ksw_extz_t *ez)
|
||||||
{
|
{
|
||||||
if (mm_dbg_flag & MM_DBG_PRINT_ALN_SEQ) {
|
if (mm_dbg_flag & MM_DBG_PRINT_ALN_SEQ) {
|
||||||
int i;
|
int i;
|
||||||
@@ -300,8 +320,11 @@ static void mm_align_pair(void *km, const mm_mapopt_t *opt, int qlen, const uint
|
|||||||
for (i = 0; i < qlen; ++i) fputc("ACGTN"[qseq[i]], stderr);
|
for (i = 0; i < qlen; ++i) fputc("ACGTN"[qseq[i]], stderr);
|
||||||
fputc('\n', stderr);
|
fputc('\n', stderr);
|
||||||
}
|
}
|
||||||
if (opt->flag & MM_F_SPLICE)
|
if (opt->max_sw_mat > 0 && (int64_t)tlen * qlen > opt->max_sw_mat) {
|
||||||
ksw_exts2_sse(km, qlen, qseq, tlen, tseq, 5, mat, opt->q, opt->e, opt->q2, opt->noncan, zdrop, flag, ez);
|
ksw_reset_extz(ez);
|
||||||
|
ez->zdropped = 1;
|
||||||
|
} else if (opt->flag & MM_F_SPLICE)
|
||||||
|
ksw_exts2_sse(km, qlen, qseq, tlen, tseq, 5, mat, opt->q, opt->e, opt->q2, opt->noncan, zdrop, opt->junc_bonus, flag, junc, ez);
|
||||||
else if (opt->q == opt->q2 && opt->e == opt->e2)
|
else if (opt->q == opt->q2 && opt->e == opt->e2)
|
||||||
ksw_extz2_sse(km, qlen, qseq, tlen, tseq, 5, mat, opt->q, opt->e, w, zdrop, end_bonus, flag, ez);
|
ksw_extz2_sse(km, qlen, qseq, tlen, tseq, 5, mat, opt->q, opt->e, w, zdrop, end_bonus, flag, ez);
|
||||||
else
|
else
|
||||||
@@ -414,7 +437,7 @@ static void mm_filter_bad_seeds_alt(void *km, int as1, int cnt1, mm128_t *a, int
|
|||||||
gap2 = ((int32_t)a[as1 + j].y - (int32_t)a[as1 + j - 1].y) - (int32_t)(a[as1 + j].x - a[as1 + j - 1].x);
|
gap2 = ((int32_t)a[as1 + j].y - (int32_t)a[as1 + j - 1].y) - (int32_t)(a[as1 + j].x - a[as1 + j - 1].x);
|
||||||
q_span_pre = a[as1 + j - 1].y >> 32 & 0xff;
|
q_span_pre = a[as1 + j - 1].y >> 32 & 0xff;
|
||||||
rs2 = (int32_t)a[as1 + j - 1].x + q_span_pre;
|
rs2 = (int32_t)a[as1 + j - 1].x + q_span_pre;
|
||||||
qs2 = (int32_t)a[as1 + j - 1].x + q_span_pre;
|
qs2 = (int32_t)a[as1 + j - 1].y + q_span_pre;
|
||||||
m = rs2 - re1 < qs2 - qe1? rs2 - re1 : qs2 - qe1;
|
m = rs2 - re1 < qs2 - qe1? rs2 - re1 : qs2 - qe1;
|
||||||
gap2 = gap2 > 0? gap2 : -gap2;
|
gap2 = gap2 > 0? gap2 : -gap2;
|
||||||
if (m > gap1 + gap2) break;
|
if (m > gap1 + gap2) break;
|
||||||
@@ -543,7 +566,7 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
{
|
{
|
||||||
int is_sr = !!(opt->flag & MM_F_SR), is_splice = !!(opt->flag & MM_F_SPLICE);
|
int is_sr = !!(opt->flag & MM_F_SR), is_splice = !!(opt->flag & MM_F_SPLICE);
|
||||||
int32_t rid = a[r->as].x<<1>>33, rev = a[r->as].x>>63, as1, cnt1;
|
int32_t rid = a[r->as].x<<1>>33, rev = a[r->as].x>>63, as1, cnt1;
|
||||||
uint8_t *tseq, *qseq;
|
uint8_t *tseq, *qseq, *junc;
|
||||||
int32_t i, l, bw, dropped = 0, extra_flag = 0, rs0, re0, qs0, qe0;
|
int32_t i, l, bw, dropped = 0, extra_flag = 0, rs0, re0, qs0, qe0;
|
||||||
int32_t rs, re, qs, qe;
|
int32_t rs, re, qs, qe;
|
||||||
int32_t rs1, qs1, re1, qe1;
|
int32_t rs1, qs1, re1, qe1;
|
||||||
@@ -609,6 +632,7 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
if (++l > opt->min_cnt) {
|
if (++l > opt->min_cnt) {
|
||||||
l = rs0 - x > qs0 - y? rs0 - x : qs0 - y;
|
l = rs0 - x > qs0 - y? rs0 - x : qs0 - y;
|
||||||
rs1 = rs0 - l, qs1 = qs0 - l;
|
rs1 = rs0 - l, qs1 = qs0 - l;
|
||||||
|
if (rs1 < 0) rs1 = 0; // not strictly necessary; better have this guard for explicit
|
||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -622,6 +646,7 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
l = l < rs? l : rs;
|
l = l < rs? l : rs;
|
||||||
rs1 = rs1 > rs - l? rs1 : rs - l;
|
rs1 = rs1 > rs - l? rs1 : rs - l;
|
||||||
rs0 = rs0 < rs1? rs0 : rs1;
|
rs0 = rs0 < rs1? rs0 : rs1;
|
||||||
|
rs0 = rs0 < rs? rs0 : rs;
|
||||||
} else rs0 = rs, qs0 = qs;
|
} else rs0 = rs, qs0 = qs;
|
||||||
// compute re0 and qe0
|
// compute re0 and qe0
|
||||||
re0 = (int32_t)a[r->as + r->cnt - 1].x + 1;
|
re0 = (int32_t)a[r->as + r->cnt - 1].x + 1;
|
||||||
@@ -660,13 +685,16 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
|
|
||||||
assert(re0 > rs0);
|
assert(re0 > rs0);
|
||||||
tseq = (uint8_t*)kmalloc(km, re0 - rs0);
|
tseq = (uint8_t*)kmalloc(km, re0 - rs0);
|
||||||
|
junc = (uint8_t*)kmalloc(km, re0 - rs0);
|
||||||
|
|
||||||
if (qs > 0 && rs > 0) { // left extension
|
if (qs > 0 && rs > 0) { // left extension; probably the condition can be changed to "qs > qs0 && rs > rs0"
|
||||||
qseq = &qseq0[rev][qs0];
|
qseq = &qseq0[rev][qs0];
|
||||||
mm_idx_getseq(mi, rid, rs0, rs, tseq);
|
mm_idx_getseq(mi, rid, rs0, rs, tseq);
|
||||||
|
mm_idx_bed_junc(mi, rid, rs0, rs, junc);
|
||||||
mm_seq_rev(qs - qs0, qseq);
|
mm_seq_rev(qs - qs0, qseq);
|
||||||
mm_seq_rev(rs - rs0, tseq);
|
mm_seq_rev(rs - rs0, tseq);
|
||||||
mm_align_pair(km, opt, qs - qs0, qseq, rs - rs0, tseq, mat, bw, opt->end_bonus, r->split_inv? opt->zdrop_inv : opt->zdrop, extra_flag|KSW_EZ_EXTZ_ONLY|KSW_EZ_RIGHT|KSW_EZ_REV_CIGAR, ez);
|
mm_seq_rev(rs - rs0, junc);
|
||||||
|
mm_align_pair(km, opt, qs - qs0, qseq, rs - rs0, tseq, junc, mat, bw, opt->end_bonus, r->split_inv? opt->zdrop_inv : opt->zdrop, extra_flag|KSW_EZ_EXTZ_ONLY|KSW_EZ_RIGHT|KSW_EZ_REV_CIGAR, ez);
|
||||||
if (ez->n_cigar > 0) {
|
if (ez->n_cigar > 0) {
|
||||||
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
||||||
r->p->dp_score += ez->max;
|
r->p->dp_score += ez->max;
|
||||||
@@ -692,6 +720,7 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
// perform alignment
|
// perform alignment
|
||||||
qseq = &qseq0[rev][qs];
|
qseq = &qseq0[rev][qs];
|
||||||
mm_idx_getseq(mi, rid, rs, re, tseq);
|
mm_idx_getseq(mi, rid, rs, re, tseq);
|
||||||
|
mm_idx_bed_junc(mi, rid, rs, re, junc);
|
||||||
if (is_sr) { // perform ungapped alignment
|
if (is_sr) { // perform ungapped alignment
|
||||||
assert(qe - qs == re - rs);
|
assert(qe - qs == re - rs);
|
||||||
ksw_reset_extz(ez);
|
ksw_reset_extz(ez);
|
||||||
@@ -701,15 +730,22 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
}
|
}
|
||||||
ez->cigar = ksw_push_cigar(km, &ez->n_cigar, &ez->m_cigar, ez->cigar, 0, qe - qs);
|
ez->cigar = ksw_push_cigar(km, &ez->n_cigar, &ez->m_cigar, ez->cigar, 0, qe - qs);
|
||||||
} else { // perform normal gapped alignment
|
} else { // perform normal gapped alignment
|
||||||
mm_align_pair(km, opt, qe - qs, qseq, re - rs, tseq, mat, bw1, -1, opt->zdrop, extra_flag|KSW_EZ_APPROX_MAX, ez); // first pass: with approximate Z-drop
|
mm_align_pair(km, opt, qe - qs, qseq, re - rs, tseq, junc, mat, bw1, -1, opt->zdrop, extra_flag|KSW_EZ_APPROX_MAX, ez); // first pass: with approximate Z-drop
|
||||||
}
|
}
|
||||||
// test Z-drop and inversion Z-drop
|
// test Z-drop and inversion Z-drop
|
||||||
if ((zdrop_code = mm_test_zdrop(km, opt, qseq, tseq, ez->n_cigar, ez->cigar, mat)) != 0)
|
if ((zdrop_code = mm_test_zdrop(km, opt, qseq, tseq, ez->n_cigar, ez->cigar, mat)) != 0)
|
||||||
mm_align_pair(km, opt, qe - qs, qseq, re - rs, tseq, mat, bw1, -1, zdrop_code == 2? opt->zdrop_inv : opt->zdrop, extra_flag, ez); // second pass: lift approximate
|
mm_align_pair(km, opt, qe - qs, qseq, re - rs, tseq, junc, mat, bw1, -1, zdrop_code == 2? opt->zdrop_inv : opt->zdrop, extra_flag, ez); // second pass: lift approximate
|
||||||
// update CIGAR
|
// update CIGAR
|
||||||
if (ez->n_cigar > 0)
|
if (ez->n_cigar > 0)
|
||||||
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
||||||
if (ez->zdropped) { // truncated by Z-drop; TODO: sometimes Z-drop kicks in because the next seed placement is wrong. This can be fixed in principle.
|
if (ez->zdropped) { // truncated by Z-drop; TODO: sometimes Z-drop kicks in because the next seed placement is wrong. This can be fixed in principle.
|
||||||
|
if (!r->p) {
|
||||||
|
assert(ez->n_cigar == 0);
|
||||||
|
uint32_t capacity = sizeof(mm_extra_t)/4;
|
||||||
|
kroundup32(capacity);
|
||||||
|
r->p = (mm_extra_t*)calloc(capacity, 4);
|
||||||
|
r->p->capacity = capacity;
|
||||||
|
}
|
||||||
for (j = i - 1; j >= 0; --j)
|
for (j = i - 1; j >= 0; --j)
|
||||||
if ((int32_t)a[as1 + j].x <= rs + ez->max_t)
|
if ((int32_t)a[as1 + j].x <= rs + ez->max_t)
|
||||||
break;
|
break;
|
||||||
@@ -731,7 +767,8 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
if (!dropped && qe < qe0 && re < re0) { // right extension
|
if (!dropped && qe < qe0 && re < re0) { // right extension
|
||||||
qseq = &qseq0[rev][qe];
|
qseq = &qseq0[rev][qe];
|
||||||
mm_idx_getseq(mi, rid, re, re0, tseq);
|
mm_idx_getseq(mi, rid, re, re0, tseq);
|
||||||
mm_align_pair(km, opt, qe0 - qe, qseq, re0 - re, tseq, mat, bw, opt->end_bonus, opt->zdrop, extra_flag|KSW_EZ_EXTZ_ONLY, ez);
|
mm_idx_bed_junc(mi, rid, re, re0, junc);
|
||||||
|
mm_align_pair(km, opt, qe0 - qe, qseq, re0 - re, tseq, junc, mat, bw, opt->end_bonus, opt->zdrop, extra_flag|KSW_EZ_EXTZ_ONLY, ez);
|
||||||
if (ez->n_cigar > 0) {
|
if (ez->n_cigar > 0) {
|
||||||
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
mm_append_cigar(r, ez->n_cigar, ez->cigar);
|
||||||
r->p->dp_score += ez->max;
|
r->p->dp_score += ez->max;
|
||||||
@@ -748,13 +785,13 @@ static void mm_align1(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int
|
|||||||
assert(re1 - rs1 <= re0 - rs0);
|
assert(re1 - rs1 <= re0 - rs0);
|
||||||
if (r->p) {
|
if (r->p) {
|
||||||
mm_idx_getseq(mi, rid, rs1, re1, tseq);
|
mm_idx_getseq(mi, rid, rs1, re1, tseq);
|
||||||
mm_update_extra(r, &qseq0[r->rev][qs1], tseq, mat, opt->q, opt->e);
|
mm_update_extra(r, &qseq0[r->rev][qs1], tseq, mat, opt->q, opt->e, opt->flag & MM_F_EQX);
|
||||||
if (opt->flag & MM_F_EQX) mm_update_cigar_eqx(r, &qseq0[r->rev][qs1], tseq);
|
|
||||||
if (rev && r->p->trans_strand)
|
if (rev && r->p->trans_strand)
|
||||||
r->p->trans_strand ^= 3; // flip to the read strand
|
r->p->trans_strand ^= 3; // flip to the read strand
|
||||||
}
|
}
|
||||||
|
|
||||||
kfree(km, tseq);
|
kfree(km, tseq);
|
||||||
|
kfree(km, junc);
|
||||||
}
|
}
|
||||||
|
|
||||||
static int mm_align1_inv(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int qlen, uint8_t *qseq0[2], const mm_reg1_t *r1, const mm_reg1_t *r2, mm_reg1_t *r_inv, ksw_extz_t *ez)
|
static int mm_align1_inv(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int qlen, uint8_t *qseq0[2], const mm_reg1_t *r1, const mm_reg1_t *r2, mm_reg1_t *r_inv, ksw_extz_t *ez)
|
||||||
@@ -788,7 +825,7 @@ static int mm_align1_inv(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, i
|
|||||||
mm_seq_rev(tl, tseq);
|
mm_seq_rev(tl, tseq);
|
||||||
if (score < opt->min_dp_max) goto end_align1_inv;
|
if (score < opt->min_dp_max) goto end_align1_inv;
|
||||||
q_off = ql - (q_off + 1), t_off = tl - (t_off + 1);
|
q_off = ql - (q_off + 1), t_off = tl - (t_off + 1);
|
||||||
mm_align_pair(km, opt, ql - q_off, qseq + q_off, tl - t_off, tseq + t_off, mat, (int)(opt->bw * 1.5), -1, opt->zdrop, KSW_EZ_EXTZ_ONLY, ez);
|
mm_align_pair(km, opt, ql - q_off, qseq + q_off, tl - t_off, tseq + t_off, 0, mat, (int)(opt->bw * 1.5), -1, opt->zdrop, KSW_EZ_EXTZ_ONLY, ez);
|
||||||
if (ez->n_cigar == 0) goto end_align1_inv; // should never be here
|
if (ez->n_cigar == 0) goto end_align1_inv; // should never be here
|
||||||
mm_append_cigar(r_inv, ez->n_cigar, ez->cigar);
|
mm_append_cigar(r_inv, ez->n_cigar, ez->cigar);
|
||||||
r_inv->p->dp_score = ez->max;
|
r_inv->p->dp_score = ez->max;
|
||||||
@@ -807,8 +844,7 @@ static int mm_align1_inv(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, i
|
|||||||
}
|
}
|
||||||
r_inv->rs = r1->re + t_off;
|
r_inv->rs = r1->re + t_off;
|
||||||
r_inv->re = r_inv->rs + ez->max_t + 1;
|
r_inv->re = r_inv->rs + ez->max_t + 1;
|
||||||
mm_update_extra(r_inv, &qseq[q_off], &tseq[t_off], mat, opt->q, opt->e);
|
mm_update_extra(r_inv, &qseq[q_off], &tseq[t_off], mat, opt->q, opt->e, opt->flag & MM_F_EQX);
|
||||||
if (opt->flag & MM_F_EQX) mm_update_cigar_eqx(r_inv, &qseq[q_off], &tseq[t_off]);
|
|
||||||
ret = 1;
|
ret = 1;
|
||||||
end_align1_inv:
|
end_align1_inv:
|
||||||
kfree(km, tseq);
|
kfree(km, tseq);
|
||||||
@@ -879,6 +915,6 @@ mm_reg1_t *mm_align_skeleton(void *km, const mm_mapopt_t *opt, const mm_idx_t *m
|
|||||||
kfree(km, qseq0[0]);
|
kfree(km, qseq0[0]);
|
||||||
kfree(km, ez.cigar);
|
kfree(km, ez.cigar);
|
||||||
mm_filter_regs(opt, qlen, n_regs_, regs);
|
mm_filter_regs(opt, qlen, n_regs_, regs);
|
||||||
mm_hit_sort(km, n_regs_, regs);
|
mm_hit_sort(km, n_regs_, regs, opt->alt_drop);
|
||||||
return regs;
|
return regs;
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -15,7 +15,7 @@ unsigned char seq_comp_table[256] = {
|
|||||||
48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63,
|
48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63,
|
||||||
64, 'T', 'V', 'G', 'H', 'E', 'F', 'C', 'D', 'I', 'J', 'M', 'L', 'K', 'N', 'O',
|
64, 'T', 'V', 'G', 'H', 'E', 'F', 'C', 'D', 'I', 'J', 'M', 'L', 'K', 'N', 'O',
|
||||||
'P', 'Q', 'Y', 'S', 'A', 'A', 'B', 'W', 'X', 'R', 'Z', 91, 92, 93, 94, 95,
|
'P', 'Q', 'Y', 'S', 'A', 'A', 'B', 'W', 'X', 'R', 'Z', 91, 92, 93, 94, 95,
|
||||||
64, 't', 'v', 'g', 'h', 'e', 'f', 'c', 'd', 'i', 'j', 'm', 'l', 'k', 'n', 'o',
|
96, 't', 'v', 'g', 'h', 'e', 'f', 'c', 'd', 'i', 'j', 'm', 'l', 'k', 'n', 'o',
|
||||||
'p', 'q', 'y', 's', 'a', 'a', 'b', 'w', 'x', 'r', 'z', 123, 124, 125, 126, 127,
|
'p', 'q', 'y', 's', 'a', 'a', 'b', 'w', 'x', 'r', 'z', 123, 124, 125, 126, 127,
|
||||||
128, 129, 130, 131, 132, 133, 134, 135, 136, 137, 138, 139, 140, 141, 142, 143,
|
128, 129, 130, 131, 132, 133, 134, 135, 136, 137, 138, 139, 140, 141, 142, 143,
|
||||||
144, 145, 146, 147, 148, 149, 150, 151, 152, 153, 154, 155, 156, 157, 158, 159,
|
144, 145, 146, 147, 148, 149, 150, 151, 152, 153, 154, 155, 156, 157, 158, 159,
|
||||||
@@ -39,7 +39,7 @@ mm_bseq_file_t *mm_bseq_open(const char *fn)
|
|||||||
{
|
{
|
||||||
mm_bseq_file_t *fp;
|
mm_bseq_file_t *fp;
|
||||||
gzFile f;
|
gzFile f;
|
||||||
f = fn && strcmp(fn, "-")? gzopen(fn, "r") : gzdopen(fileno(stdin), "r");
|
f = fn && strcmp(fn, "-")? gzopen(fn, "r") : gzdopen(0, "r");
|
||||||
if (f == 0) return 0;
|
if (f == 0) return 0;
|
||||||
fp = (mm_bseq_file_t*)calloc(1, sizeof(mm_bseq_file_t));
|
fp = (mm_bseq_file_t*)calloc(1, sizeof(mm_bseq_file_t));
|
||||||
fp->fp = f;
|
fp->fp = f;
|
||||||
@@ -65,6 +65,8 @@ static inline char *kstrdup(const kstring_t *s)
|
|||||||
static inline void kseq2bseq(kseq_t *ks, mm_bseq1_t *s, int with_qual, int with_comment)
|
static inline void kseq2bseq(kseq_t *ks, mm_bseq1_t *s, int with_qual, int with_comment)
|
||||||
{
|
{
|
||||||
int i;
|
int i;
|
||||||
|
if (ks->name.l == 0)
|
||||||
|
fprintf(stderr, "[WARNING]\033[1;31m empty sequence name in the input.\033[0m\n");
|
||||||
s->name = kstrdup(&ks->name);
|
s->name = kstrdup(&ks->name);
|
||||||
s->seq = kstrdup(&ks->seq);
|
s->seq = kstrdup(&ks->seq);
|
||||||
for (i = 0; i < (int)ks->seq.l; ++i) // convert U to T
|
for (i = 0; i < (int)ks->seq.l; ++i) // convert U to T
|
||||||
@@ -75,9 +77,10 @@ static inline void kseq2bseq(kseq_t *ks, mm_bseq1_t *s, int with_qual, int with_
|
|||||||
s->l_seq = ks->seq.l;
|
s->l_seq = ks->seq.l;
|
||||||
}
|
}
|
||||||
|
|
||||||
mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int chunk_size, int with_qual, int with_comment, int frag_mode, int *n_)
|
mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int with_comment, int frag_mode, int *n_)
|
||||||
{
|
{
|
||||||
int64_t size = 0;
|
int64_t size = 0;
|
||||||
|
int ret;
|
||||||
kvec_t(mm_bseq1_t) a = {0,0,0};
|
kvec_t(mm_bseq1_t) a = {0,0,0};
|
||||||
kseq_t *ks = fp->ks;
|
kseq_t *ks = fp->ks;
|
||||||
*n_ = 0;
|
*n_ = 0;
|
||||||
@@ -87,7 +90,7 @@ mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int chunk_size, int with_qual, int
|
|||||||
size = fp->s.l_seq;
|
size = fp->s.l_seq;
|
||||||
memset(&fp->s, 0, sizeof(mm_bseq1_t));
|
memset(&fp->s, 0, sizeof(mm_bseq1_t));
|
||||||
}
|
}
|
||||||
while (kseq_read(ks) >= 0) {
|
while ((ret = kseq_read(ks)) >= 0) {
|
||||||
mm_bseq1_t *s;
|
mm_bseq1_t *s;
|
||||||
assert(ks->seq.l <= INT32_MAX);
|
assert(ks->seq.l <= INT32_MAX);
|
||||||
if (a.m == 0) kv_resize(mm_bseq1_t, 0, a, 256);
|
if (a.m == 0) kv_resize(mm_bseq1_t, 0, a, 256);
|
||||||
@@ -96,7 +99,7 @@ mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int chunk_size, int with_qual, int
|
|||||||
size += s->l_seq;
|
size += s->l_seq;
|
||||||
if (size >= chunk_size) {
|
if (size >= chunk_size) {
|
||||||
if (frag_mode && a.a[a.n-1].l_seq < CHECK_PAIR_THRES) {
|
if (frag_mode && a.a[a.n-1].l_seq < CHECK_PAIR_THRES) {
|
||||||
while (kseq_read(ks) >= 0) {
|
while ((ret = kseq_read(ks)) >= 0) {
|
||||||
kseq2bseq(ks, &fp->s, with_qual, with_comment);
|
kseq2bseq(ks, &fp->s, with_qual, with_comment);
|
||||||
if (mm_qname_same(fp->s.name, a.a[a.n-1].name)) {
|
if (mm_qname_same(fp->s.name, a.a[a.n-1].name)) {
|
||||||
kv_push(mm_bseq1_t, 0, a, fp->s);
|
kv_push(mm_bseq1_t, 0, a, fp->s);
|
||||||
@@ -107,21 +110,25 @@ mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int chunk_size, int with_qual, int
|
|||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
if (ret < -1) {
|
||||||
|
if (a.n) fprintf(stderr, "[WARNING]\033[1;31m failed to parse the FASTA/FASTQ record next to '%s'. Continue anyway.\033[0m\n", a.a[a.n-1].name);
|
||||||
|
else fprintf(stderr, "[WARNING]\033[1;31m failed to parse the first FASTA/FASTQ record. Continue anyway.\033[0m\n");
|
||||||
|
}
|
||||||
*n_ = a.n;
|
*n_ = a.n;
|
||||||
return a.a;
|
return a.a;
|
||||||
}
|
}
|
||||||
|
|
||||||
mm_bseq1_t *mm_bseq_read2(mm_bseq_file_t *fp, int chunk_size, int with_qual, int frag_mode, int *n_)
|
mm_bseq1_t *mm_bseq_read2(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int frag_mode, int *n_)
|
||||||
{
|
{
|
||||||
return mm_bseq_read3(fp, chunk_size, with_qual, 0, frag_mode, n_);
|
return mm_bseq_read3(fp, chunk_size, with_qual, 0, frag_mode, n_);
|
||||||
}
|
}
|
||||||
|
|
||||||
mm_bseq1_t *mm_bseq_read(mm_bseq_file_t *fp, int chunk_size, int with_qual, int *n_)
|
mm_bseq1_t *mm_bseq_read(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int *n_)
|
||||||
{
|
{
|
||||||
return mm_bseq_read2(fp, chunk_size, with_qual, 0, n_);
|
return mm_bseq_read2(fp, chunk_size, with_qual, 0, n_);
|
||||||
}
|
}
|
||||||
|
|
||||||
mm_bseq1_t *mm_bseq_read_frag2(int n_fp, mm_bseq_file_t **fp, int chunk_size, int with_qual, int with_comment, int *n_)
|
mm_bseq1_t *mm_bseq_read_frag2(int n_fp, mm_bseq_file_t **fp, int64_t chunk_size, int with_qual, int with_comment, int *n_)
|
||||||
{
|
{
|
||||||
int i;
|
int i;
|
||||||
int64_t size = 0;
|
int64_t size = 0;
|
||||||
@@ -151,7 +158,7 @@ mm_bseq1_t *mm_bseq_read_frag2(int n_fp, mm_bseq_file_t **fp, int chunk_size, in
|
|||||||
return a.a;
|
return a.a;
|
||||||
}
|
}
|
||||||
|
|
||||||
mm_bseq1_t *mm_bseq_read_frag(int n_fp, mm_bseq_file_t **fp, int chunk_size, int with_qual, int *n_)
|
mm_bseq1_t *mm_bseq_read_frag(int n_fp, mm_bseq_file_t **fp, int64_t chunk_size, int with_qual, int *n_)
|
||||||
{
|
{
|
||||||
return mm_bseq_read_frag2(n_fp, fp, chunk_size, with_qual, 0, n_);
|
return mm_bseq_read_frag2(n_fp, fp, chunk_size, with_qual, 0, n_);
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -18,11 +18,11 @@ typedef struct {
|
|||||||
|
|
||||||
mm_bseq_file_t *mm_bseq_open(const char *fn);
|
mm_bseq_file_t *mm_bseq_open(const char *fn);
|
||||||
void mm_bseq_close(mm_bseq_file_t *fp);
|
void mm_bseq_close(mm_bseq_file_t *fp);
|
||||||
mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int chunk_size, int with_qual, int with_comment, int frag_mode, int *n_);
|
mm_bseq1_t *mm_bseq_read3(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int with_comment, int frag_mode, int *n_);
|
||||||
mm_bseq1_t *mm_bseq_read2(mm_bseq_file_t *fp, int chunk_size, int with_qual, int frag_mode, int *n_);
|
mm_bseq1_t *mm_bseq_read2(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int frag_mode, int *n_);
|
||||||
mm_bseq1_t *mm_bseq_read(mm_bseq_file_t *fp, int chunk_size, int with_qual, int *n_);
|
mm_bseq1_t *mm_bseq_read(mm_bseq_file_t *fp, int64_t chunk_size, int with_qual, int *n_);
|
||||||
mm_bseq1_t *mm_bseq_read_frag2(int n_fp, mm_bseq_file_t **fp, int chunk_size, int with_qual, int with_comment, int *n_);
|
mm_bseq1_t *mm_bseq_read_frag2(int n_fp, mm_bseq_file_t **fp, int64_t chunk_size, int with_qual, int with_comment, int *n_);
|
||||||
mm_bseq1_t *mm_bseq_read_frag(int n_fp, mm_bseq_file_t **fp, int chunk_size, int with_qual, int *n_);
|
mm_bseq1_t *mm_bseq_read_frag(int n_fp, mm_bseq_file_t **fp, int64_t chunk_size, int with_qual, int *n_);
|
||||||
int mm_bseq_eof(mm_bseq_file_t *fp);
|
int mm_bseq_eof(mm_bseq_file_t *fp);
|
||||||
|
|
||||||
extern unsigned char seq_nt4_table[256];
|
extern unsigned char seq_nt4_table[256];
|
||||||
|
|||||||
@@ -14,12 +14,12 @@ static const char LogTable256[256] = {
|
|||||||
|
|
||||||
static inline int ilog2_32(uint32_t v)
|
static inline int ilog2_32(uint32_t v)
|
||||||
{
|
{
|
||||||
register uint32_t t, tt;
|
uint32_t t, tt;
|
||||||
if ((tt = v>>16)) return (t = tt>>8) ? 24 + LogTable256[t] : 16 + LogTable256[tt];
|
if ((tt = v>>16)) return (t = tt>>8) ? 24 + LogTable256[t] : 16 + LogTable256[tt];
|
||||||
return (t = v>>8) ? 8 + LogTable256[t] : LogTable256[v];
|
return (t = v>>8) ? 8 + LogTable256[t] : LogTable256[v];
|
||||||
}
|
}
|
||||||
|
|
||||||
mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int min_cnt, int min_sc, int is_cdna, int n_segs, int64_t n, mm128_t *a, int *n_u_, uint64_t **_u, void *km)
|
mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int max_iter, int min_cnt, int min_sc, float gap_scale, int is_cdna, int n_segs, int64_t n, mm128_t *a, int *n_u_, uint64_t **_u, void *km)
|
||||||
{ // TODO: make sure this works when n has more than 32 bits
|
{ // TODO: make sure this works when n has more than 32 bits
|
||||||
int32_t k, *f, *p, *t, *v, n_u, n_v;
|
int32_t k, *f, *p, *t, *v, n_u, n_v;
|
||||||
int64_t i, j, st = 0;
|
int64_t i, j, st = 0;
|
||||||
@@ -28,6 +28,10 @@ mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int m
|
|||||||
mm128_t *b, *w;
|
mm128_t *b, *w;
|
||||||
|
|
||||||
if (_u) *_u = 0, *n_u_ = 0;
|
if (_u) *_u = 0, *n_u_ = 0;
|
||||||
|
if (n == 0 || a == 0) {
|
||||||
|
kfree(km, a);
|
||||||
|
return 0;
|
||||||
|
}
|
||||||
f = (int32_t*)kmalloc(km, n * 4);
|
f = (int32_t*)kmalloc(km, n * 4);
|
||||||
p = (int32_t*)kmalloc(km, n * 4);
|
p = (int32_t*)kmalloc(km, n * 4);
|
||||||
t = (int32_t*)kmalloc(km, n * 4);
|
t = (int32_t*)kmalloc(km, n * 4);
|
||||||
@@ -45,9 +49,10 @@ mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int m
|
|||||||
int32_t max_f = q_span, n_skip = 0, min_d;
|
int32_t max_f = q_span, n_skip = 0, min_d;
|
||||||
int32_t sidi = (a[i].y & MM_SEED_SEG_MASK) >> MM_SEED_SEG_SHIFT;
|
int32_t sidi = (a[i].y & MM_SEED_SEG_MASK) >> MM_SEED_SEG_SHIFT;
|
||||||
while (st < i && ri > a[st].x + max_dist_x) ++st;
|
while (st < i && ri > a[st].x + max_dist_x) ++st;
|
||||||
|
if (i - st > max_iter) st = i - max_iter;
|
||||||
for (j = i - 1; j >= st; --j) {
|
for (j = i - 1; j >= st; --j) {
|
||||||
int64_t dr = ri - a[j].x;
|
int64_t dr = ri - a[j].x;
|
||||||
int32_t dq = qi - (int32_t)a[j].y, dd, sc, log_dd;
|
int32_t dq = qi - (int32_t)a[j].y, dd, sc, log_dd, gap_cost;
|
||||||
int32_t sidj = (a[j].y & MM_SEED_SEG_MASK) >> MM_SEED_SEG_SHIFT;
|
int32_t sidj = (a[j].y & MM_SEED_SEG_MASK) >> MM_SEED_SEG_SHIFT;
|
||||||
if ((sidi == sidj && dr == 0) || dq <= 0) continue; // don't skip if an anchor is used by multiple segments; see below
|
if ((sidi == sidj && dr == 0) || dq <= 0) continue; // don't skip if an anchor is used by multiple segments; see below
|
||||||
if ((sidi == sidj && dq > max_dist_y) || dq > max_dist_x) continue;
|
if ((sidi == sidj && dq > max_dist_y) || dq > max_dist_x) continue;
|
||||||
@@ -57,14 +62,16 @@ mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int m
|
|||||||
min_d = dq < dr? dq : dr;
|
min_d = dq < dr? dq : dr;
|
||||||
sc = min_d > q_span? q_span : dq < dr? dq : dr;
|
sc = min_d > q_span? q_span : dq < dr? dq : dr;
|
||||||
log_dd = dd? ilog2_32(dd) : 0;
|
log_dd = dd? ilog2_32(dd) : 0;
|
||||||
|
gap_cost = 0;
|
||||||
if (is_cdna || sidi != sidj) {
|
if (is_cdna || sidi != sidj) {
|
||||||
int c_log, c_lin;
|
int c_log, c_lin;
|
||||||
c_lin = (int)(dd * .01 * avg_qspan);
|
c_lin = (int)(dd * .01 * avg_qspan);
|
||||||
c_log = log_dd;
|
c_log = log_dd;
|
||||||
if (sidi != sidj && dr == 0) ++sc; // possibly due to overlapping paired ends; give a minor bonus
|
if (sidi != sidj && dr == 0) ++sc; // possibly due to overlapping paired ends; give a minor bonus
|
||||||
else if (dr > dq || sidi != sidj) sc -= c_lin < c_log? c_lin : c_log;
|
else if (dr > dq || sidi != sidj) gap_cost = c_lin < c_log? c_lin : c_log;
|
||||||
else sc -= c_lin + (c_log>>1);
|
else gap_cost = c_lin + (c_log>>1);
|
||||||
} else sc -= (int)(dd * .01 * avg_qspan) + (log_dd>>1);
|
} else gap_cost = (int)(dd * .01 * avg_qspan) + (log_dd>>1);
|
||||||
|
sc -= (int)((double)gap_cost * gap_scale + .499);
|
||||||
sc += f[j];
|
sc += f[j];
|
||||||
if (sc > max_f) {
|
if (sc > max_f) {
|
||||||
max_f = sc, max_j = j;
|
max_f = sc, max_j = j;
|
||||||
@@ -150,8 +157,8 @@ mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int m
|
|||||||
memcpy(&a[k], &b[w[i].y>>32], n * sizeof(mm128_t));
|
memcpy(&a[k], &b[w[i].y>>32], n * sizeof(mm128_t));
|
||||||
k += n;
|
k += n;
|
||||||
}
|
}
|
||||||
memcpy(u, u2, n_u * 8);
|
if (n_u) memcpy(u, u2, n_u * 8);
|
||||||
memcpy(b, a, k * sizeof(mm128_t)); // write _a_ to _b_ and deallocate _a_ because _a_ is oversized, sometimes a lot
|
if (k) memcpy(b, a, k * sizeof(mm128_t)); // write _a_ to _b_ and deallocate _a_ because _a_ is oversized, sometimes a lot
|
||||||
kfree(km, a); kfree(km, w); kfree(km, u2);
|
kfree(km, a); kfree(km, w); kfree(km, u2);
|
||||||
return b;
|
return b;
|
||||||
}
|
}
|
||||||
|
|||||||
+2
-2
@@ -31,8 +31,8 @@ To acquire the data used in this cookbook and to install minimap2 and paftools,
|
|||||||
please follow the command lines below:
|
please follow the command lines below:
|
||||||
```sh
|
```sh
|
||||||
# install minimap2 executables
|
# install minimap2 executables
|
||||||
curl -L https://github.com/lh3/minimap2/releases/download/v2.13/minimap2-2.13_x64-linux.tar.bz2 | tar jxf -
|
curl -L https://github.com/lh3/minimap2/releases/download/v2.18/minimap2-2.18_x64-linux.tar.bz2 | tar jxf -
|
||||||
cp minimap2-2.13_x64-linux/{minimap2,k8,paftools.js} . # copy executables
|
cp minimap2-2.18_x64-linux/{minimap2,k8,paftools.js} . # copy executables
|
||||||
export PATH="$PATH:"`pwd` # put the current directory on PATH
|
export PATH="$PATH:"`pwd` # put the current directory on PATH
|
||||||
# download example datasets
|
# download example datasets
|
||||||
curl -L https://github.com/lh3/minimap2/releases/download/v2.10/cookbook-data.tgz | tar zxf -
|
curl -L https://github.com/lh3/minimap2/releases/download/v2.10/cookbook-data.tgz | tar zxf -
|
||||||
|
|||||||
@@ -59,6 +59,6 @@ void mm_est_err(const mm_idx_t *mi, int qlen, int n_regs, mm_reg1_t *regs, const
|
|||||||
n_tot = en - st + 1;
|
n_tot = en - st + 1;
|
||||||
if (r->qs > avg_k && r->rs > avg_k) ++n_tot;
|
if (r->qs > avg_k && r->rs > avg_k) ++n_tot;
|
||||||
if (qlen - r->qs > avg_k && l_ref - r->re > avg_k) ++n_tot;
|
if (qlen - r->qs > avg_k && l_ref - r->re > avg_k) ++n_tot;
|
||||||
r->div = logf((float)n_tot / n_match) / avg_k;
|
r->div = n_match >= n_tot? 0.0f : (float)(1.0 - pow((double)n_match / n_tot, 1.0 / avg_k));
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -35,6 +35,8 @@ int main(int argc, char *argv[])
|
|||||||
while ((mi = mm_idx_reader_read(r, n_threads)) != 0) { // traverse each part of the index
|
while ((mi = mm_idx_reader_read(r, n_threads)) != 0) { // traverse each part of the index
|
||||||
mm_mapopt_update(&mopt, mi); // this sets the maximum minimizer occurrence; TODO: set a better default in mm_mapopt_init()!
|
mm_mapopt_update(&mopt, mi); // this sets the maximum minimizer occurrence; TODO: set a better default in mm_mapopt_init()!
|
||||||
mm_tbuf_t *tbuf = mm_tbuf_init(); // thread buffer; for multi-threading, allocate one tbuf for each thread
|
mm_tbuf_t *tbuf = mm_tbuf_init(); // thread buffer; for multi-threading, allocate one tbuf for each thread
|
||||||
|
gzrewind(f);
|
||||||
|
kseq_rewind(ks);
|
||||||
while (kseq_read(ks) >= 0) { // each kseq_read() call reads one query sequence
|
while (kseq_read(ks) >= 0) { // each kseq_read() call reads one query sequence
|
||||||
mm_reg1_t *reg;
|
mm_reg1_t *reg;
|
||||||
int j, i, n_reg;
|
int j, i, n_reg;
|
||||||
@@ -45,7 +47,7 @@ int main(int argc, char *argv[])
|
|||||||
printf("%s\t%d\t%d\t%d\t%c\t", ks->name.s, ks->seq.l, r->qs, r->qe, "+-"[r->rev]);
|
printf("%s\t%d\t%d\t%d\t%c\t", ks->name.s, ks->seq.l, r->qs, r->qe, "+-"[r->rev]);
|
||||||
printf("%s\t%d\t%d\t%d\t%d\t%d\t%d\tcg:Z:", mi->seq[r->rid].name, mi->seq[r->rid].len, r->rs, r->re, r->mlen, r->blen, r->mapq);
|
printf("%s\t%d\t%d\t%d\t%d\t%d\t%d\tcg:Z:", mi->seq[r->rid].name, mi->seq[r->rid].len, r->rs, r->re, r->mlen, r->blen, r->mapq);
|
||||||
for (i = 0; i < r->p->n_cigar; ++i) // IMPORTANT: this gives the CIGAR in the aligned regions. NO soft/hard clippings!
|
for (i = 0; i < r->p->n_cigar; ++i) // IMPORTANT: this gives the CIGAR in the aligned regions. NO soft/hard clippings!
|
||||||
printf("%d%c", r->p->cigar[i]>>4, "MIDSHN"[r->p->cigar[i]&0xf]);
|
printf("%d%c", r->p->cigar[i]>>4, "MIDNSH"[r->p->cigar[i]&0xf]);
|
||||||
putchar('\n');
|
putchar('\n');
|
||||||
free(r->p);
|
free(r->p);
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -79,11 +79,11 @@ static char *mm_escape(char *s)
|
|||||||
return s;
|
return s;
|
||||||
}
|
}
|
||||||
|
|
||||||
static void sam_write_rg_line(kstring_t *str, const char *s)
|
static int sam_write_rg_line(kstring_t *str, const char *s)
|
||||||
{
|
{
|
||||||
char *p, *q, *r, *rg_line = 0;
|
char *p, *q, *r, *rg_line = 0;
|
||||||
memset(mm_rg_id, 0, 256);
|
memset(mm_rg_id, 0, 256);
|
||||||
if (s == 0) return;
|
if (s == 0) return 0;
|
||||||
if (strstr(s, "@RG") != s) {
|
if (strstr(s, "@RG") != s) {
|
||||||
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] the read group line is not started with @RG\n");
|
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] the read group line is not started with @RG\n");
|
||||||
goto err_set_rg;
|
goto err_set_rg;
|
||||||
@@ -92,7 +92,8 @@ static void sam_write_rg_line(kstring_t *str, const char *s)
|
|||||||
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] the read group line contained literal <tab> characters -- replace with escaped tabs: \\t\n");
|
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] the read group line contained literal <tab> characters -- replace with escaped tabs: \\t\n");
|
||||||
goto err_set_rg;
|
goto err_set_rg;
|
||||||
}
|
}
|
||||||
rg_line = strdup(s);
|
rg_line = (char*)malloc(strlen(s) + 1);
|
||||||
|
strcpy(rg_line, s);
|
||||||
mm_escape(rg_line);
|
mm_escape(rg_line);
|
||||||
if ((p = strstr(rg_line, "\tID:")) == 0) {
|
if ((p = strstr(rg_line, "\tID:")) == 0) {
|
||||||
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] no ID within the read group line\n");
|
if (mm_verbose >= 1) fprintf(stderr, "[ERROR] no ID within the read group line\n");
|
||||||
@@ -107,20 +108,23 @@ static void sam_write_rg_line(kstring_t *str, const char *s)
|
|||||||
for (q = p, r = mm_rg_id; *q && *q != '\t' && *q != '\n'; ++q)
|
for (q = p, r = mm_rg_id; *q && *q != '\t' && *q != '\n'; ++q)
|
||||||
*r++ = *q;
|
*r++ = *q;
|
||||||
mm_sprintf_lite(str, "%s\n", rg_line);
|
mm_sprintf_lite(str, "%s\n", rg_line);
|
||||||
|
return 0;
|
||||||
|
|
||||||
err_set_rg:
|
err_set_rg:
|
||||||
free(rg_line);
|
free(rg_line);
|
||||||
|
return -1;
|
||||||
}
|
}
|
||||||
|
|
||||||
void mm_write_sam_hdr(const mm_idx_t *idx, const char *rg, const char *ver, int argc, char *argv[])
|
int mm_write_sam_hdr(const mm_idx_t *idx, const char *rg, const char *ver, int argc, char *argv[])
|
||||||
{
|
{
|
||||||
kstring_t str = {0,0,0};
|
kstring_t str = {0,0,0};
|
||||||
|
int ret = 0;
|
||||||
if (idx) {
|
if (idx) {
|
||||||
uint32_t i;
|
uint32_t i;
|
||||||
for (i = 0; i < idx->n_seq; ++i)
|
for (i = 0; i < idx->n_seq; ++i)
|
||||||
mm_sprintf_lite(&str, "@SQ\tSN:%s\tLN:%d\n", idx->seq[i].name, idx->seq[i].len);
|
mm_sprintf_lite(&str, "@SQ\tSN:%s\tLN:%d\n", idx->seq[i].name, idx->seq[i].len);
|
||||||
}
|
}
|
||||||
if (rg) sam_write_rg_line(&str, rg);
|
if (rg) ret = sam_write_rg_line(&str, rg);
|
||||||
mm_sprintf_lite(&str, "@PG\tID:minimap2\tPN:minimap2");
|
mm_sprintf_lite(&str, "@PG\tID:minimap2\tPN:minimap2");
|
||||||
if (ver) mm_sprintf_lite(&str, "\tVN:%s", ver);
|
if (ver) mm_sprintf_lite(&str, "\tVN:%s", ver);
|
||||||
if (argc > 1) {
|
if (argc > 1) {
|
||||||
@@ -131,6 +135,7 @@ void mm_write_sam_hdr(const mm_idx_t *idx, const char *rg, const char *ver, int
|
|||||||
}
|
}
|
||||||
mm_err_puts(str.s);
|
mm_err_puts(str.s);
|
||||||
free(str.s);
|
free(str.s);
|
||||||
|
return ret;
|
||||||
}
|
}
|
||||||
|
|
||||||
static void write_cs_core(kstring_t *s, const uint8_t *tseq, const uint8_t *qseq, const mm_reg1_t *r, char *tmp, int no_iden, int write_tag)
|
static void write_cs_core(kstring_t *s, const uint8_t *tseq, const uint8_t *qseq, const mm_reg1_t *r, char *tmp, int no_iden, int write_tag)
|
||||||
@@ -139,8 +144,8 @@ static void write_cs_core(kstring_t *s, const uint8_t *tseq, const uint8_t *qseq
|
|||||||
if (write_tag) mm_sprintf_lite(s, "\tcs:Z:");
|
if (write_tag) mm_sprintf_lite(s, "\tcs:Z:");
|
||||||
for (i = q_off = t_off = 0; i < (int)r->p->n_cigar; ++i) {
|
for (i = q_off = t_off = 0; i < (int)r->p->n_cigar; ++i) {
|
||||||
int j, op = r->p->cigar[i]&0xf, len = r->p->cigar[i]>>4;
|
int j, op = r->p->cigar[i]&0xf, len = r->p->cigar[i]>>4;
|
||||||
assert(op >= 0 && op <= 3);
|
assert((op >= 0 && op <= 3) || op == 7 || op == 8);
|
||||||
if (op == 0) { // match
|
if (op == 0 || op == 7 || op == 8) { // match
|
||||||
int l_tmp = 0;
|
int l_tmp = 0;
|
||||||
for (j = 0; j < len; ++j) {
|
for (j = 0; j < len; ++j) {
|
||||||
if (qseq[q_off + j] != tseq[t_off + j]) {
|
if (qseq[q_off + j] != tseq[t_off + j]) {
|
||||||
@@ -187,8 +192,8 @@ static void write_MD_core(kstring_t *s, const uint8_t *tseq, const uint8_t *qseq
|
|||||||
if (write_tag) mm_sprintf_lite(s, "\tMD:Z:");
|
if (write_tag) mm_sprintf_lite(s, "\tMD:Z:");
|
||||||
for (i = q_off = t_off = 0; i < (int)r->p->n_cigar; ++i) {
|
for (i = q_off = t_off = 0; i < (int)r->p->n_cigar; ++i) {
|
||||||
int j, op = r->p->cigar[i]&0xf, len = r->p->cigar[i]>>4;
|
int j, op = r->p->cigar[i]&0xf, len = r->p->cigar[i]>>4;
|
||||||
assert(op >= 0 && op <= 3);
|
assert((op >= 0 && op <= 3) || op == 7 || op == 8);
|
||||||
if (op == 0) { // match
|
if (op == 0 || op == 7 || op == 8) { // match
|
||||||
for (j = 0; j < len; ++j) {
|
for (j = 0; j < len; ++j) {
|
||||||
if (qseq[q_off + j] != tseq[t_off + j]) {
|
if (qseq[q_off + j] != tseq[t_off + j]) {
|
||||||
mm_sprintf_lite(s, "%d%c", l_MD, "ACGTN"[tseq[t_off + j]]);
|
mm_sprintf_lite(s, "%d%c", l_MD, "ACGTN"[tseq[t_off + j]]);
|
||||||
@@ -260,6 +265,18 @@ int mm_gen_MD(void *km, char **buf, int *max_len, const mm_idx_t *mi, const mm_r
|
|||||||
return mm_gen_cs_or_MD(km, buf, max_len, mi, r, seq, 1, 0);
|
return mm_gen_cs_or_MD(km, buf, max_len, mi, r, seq, 1, 0);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
double mm_event_identity(const mm_reg1_t *r)
|
||||||
|
{
|
||||||
|
int32_t i, n_gapo = 0, n_gap = 0;
|
||||||
|
if (r->p == 0) return -1.0f;
|
||||||
|
for (i = 0; i < r->p->n_cigar; ++i) {
|
||||||
|
int32_t op = r->p->cigar[i] & 0xf, len = r->p->cigar[i] >> 4;
|
||||||
|
if (op == 1 || op == 2)
|
||||||
|
++n_gapo, n_gap += len;
|
||||||
|
}
|
||||||
|
return (double)r->mlen / (r->blen + r->p->n_ambi - n_gap + n_gapo);
|
||||||
|
}
|
||||||
|
|
||||||
static inline void write_tags(kstring_t *s, const mm_reg1_t *r)
|
static inline void write_tags(kstring_t *s, const mm_reg1_t *r)
|
||||||
{
|
{
|
||||||
int type;
|
int type;
|
||||||
@@ -272,20 +289,28 @@ static inline void write_tags(kstring_t *s, const mm_reg1_t *r)
|
|||||||
}
|
}
|
||||||
mm_sprintf_lite(s, "\ttp:A:%c\tcm:i:%d\ts1:i:%d", type, r->cnt, r->score);
|
mm_sprintf_lite(s, "\ttp:A:%c\tcm:i:%d\ts1:i:%d", type, r->cnt, r->score);
|
||||||
if (r->parent == r->id) mm_sprintf_lite(s, "\ts2:i:%d", r->subsc);
|
if (r->parent == r->id) mm_sprintf_lite(s, "\ts2:i:%d", r->subsc);
|
||||||
if (r->div >= 0.0f && r->div <= 1.0f) {
|
if (r->p) {
|
||||||
char buf[8];
|
char buf[16];
|
||||||
|
double div;
|
||||||
|
div = 1.0 - mm_event_identity(r);
|
||||||
|
if (div == 0.0) buf[0] = '0', buf[1] = 0;
|
||||||
|
else snprintf(buf, 16, "%.4f", 1.0 - mm_event_identity(r));
|
||||||
|
mm_sprintf_lite(s, "\tde:f:%s", buf);
|
||||||
|
} else if (r->div >= 0.0f && r->div <= 1.0f) {
|
||||||
|
char buf[16];
|
||||||
if (r->div == 0.0f) buf[0] = '0', buf[1] = 0;
|
if (r->div == 0.0f) buf[0] = '0', buf[1] = 0;
|
||||||
else sprintf(buf, "%.4f", r->div);
|
else snprintf(buf, 16, "%.4f", r->div);
|
||||||
mm_sprintf_lite(s, "\tdv:f:%s", buf);
|
mm_sprintf_lite(s, "\tdv:f:%s", buf);
|
||||||
}
|
}
|
||||||
if (r->split) mm_sprintf_lite(s, "\tzd:i:%d", r->split);
|
if (r->split) mm_sprintf_lite(s, "\tzd:i:%d", r->split);
|
||||||
}
|
}
|
||||||
|
|
||||||
void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag)
|
void mm_write_paf3(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag, int rep_len)
|
||||||
{
|
{
|
||||||
s->l = 0;
|
s->l = 0;
|
||||||
if (r == 0) {
|
if (r == 0) {
|
||||||
mm_sprintf_lite(s, "%s\t%d", t->name, t->l_seq);
|
mm_sprintf_lite(s, "%s\t%d\t0\t0\t*\t*\t0\t0\t0\t0\t0\t0", t->name, t->l_seq);
|
||||||
|
if (rep_len >= 0) mm_sprintf_lite(s, "\trl:i:%d", rep_len);
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
mm_sprintf_lite(s, "%s\t%d\t%d\t%d\t%c\t", t->name, t->l_seq, r->qs, r->qe, "+-"[r->rev]);
|
mm_sprintf_lite(s, "%s\t%d\t%d\t%d\t%c\t", t->name, t->l_seq, r->qs, r->qe, "+-"[r->rev]);
|
||||||
@@ -295,6 +320,7 @@ void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const m
|
|||||||
mm_sprintf_lite(s, "\t%d\t%d", r->mlen, r->blen);
|
mm_sprintf_lite(s, "\t%d\t%d", r->mlen, r->blen);
|
||||||
mm_sprintf_lite(s, "\t%d", r->mapq);
|
mm_sprintf_lite(s, "\t%d", r->mapq);
|
||||||
write_tags(s, r);
|
write_tags(s, r);
|
||||||
|
if (rep_len >= 0) mm_sprintf_lite(s, "\trl:i:%d", rep_len);
|
||||||
if (r->p && (opt_flag & MM_F_OUT_CG)) {
|
if (r->p && (opt_flag & MM_F_OUT_CG)) {
|
||||||
uint32_t k;
|
uint32_t k;
|
||||||
mm_sprintf_lite(s, "\tcg:Z:");
|
mm_sprintf_lite(s, "\tcg:Z:");
|
||||||
@@ -307,6 +333,11 @@ void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const m
|
|||||||
mm_sprintf_lite(s, "\t%s", t->comment);
|
mm_sprintf_lite(s, "\t%s", t->comment);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag)
|
||||||
|
{
|
||||||
|
mm_write_paf3(s, mi, t, r, km, opt_flag, -1);
|
||||||
|
}
|
||||||
|
|
||||||
static void sam_write_sq(kstring_t *s, char *seq, int l, int rev, int comp)
|
static void sam_write_sq(kstring_t *s, char *seq, int l, int rev, int comp)
|
||||||
{
|
{
|
||||||
extern unsigned char seq_comp_table[256];
|
extern unsigned char seq_comp_table[256];
|
||||||
@@ -348,6 +379,7 @@ static void write_sam_cigar(kstring_t *s, int sam_flag, int in_tag, int qlen, co
|
|||||||
if (clip_len[1]) mm_sprintf_lite(s, ",%u", clip_len[1]<<4|clip_char);
|
if (clip_len[1]) mm_sprintf_lite(s, ",%u", clip_len[1]<<4|clip_char);
|
||||||
} else {
|
} else {
|
||||||
int clip_char = (sam_flag&0x800) && !(opt_flag&MM_F_SOFTCLIP)? 'H' : 'S';
|
int clip_char = (sam_flag&0x800) && !(opt_flag&MM_F_SOFTCLIP)? 'H' : 'S';
|
||||||
|
assert(clip_len[0] < qlen && clip_len[1] < qlen);
|
||||||
if (clip_len[0]) mm_sprintf_lite(s, "%d%c", clip_len[0], clip_char);
|
if (clip_len[0]) mm_sprintf_lite(s, "%d%c", clip_len[0], clip_char);
|
||||||
for (k = 0; k < r->p->n_cigar; ++k)
|
for (k = 0; k < r->p->n_cigar; ++k)
|
||||||
mm_sprintf_lite(s, "%d%c", r->p->cigar[k]>>4, "MIDNSHP=XB"[r->p->cigar[k]&0xf]);
|
mm_sprintf_lite(s, "%d%c", r->p->cigar[k]>>4, "MIDNSHP=XB"[r->p->cigar[k]&0xf]);
|
||||||
@@ -356,11 +388,11 @@ static void write_sam_cigar(kstring_t *s, int sam_flag, int in_tag, int qlen, co
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regss, const mm_reg1_t *const* regss, void *km, int opt_flag)
|
void mm_write_sam3(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regss, const mm_reg1_t *const* regss, void *km, int opt_flag, int rep_len)
|
||||||
{
|
{
|
||||||
const int max_bam_cigar_op = 65535;
|
const int max_bam_cigar_op = 65535;
|
||||||
int flag, n_regs = n_regss[seg_idx], cigar_in_tag = 0;
|
int flag, n_regs = n_regss[seg_idx], cigar_in_tag = 0;
|
||||||
int this_rid = -1, this_pos = -1, this_rev = 0;
|
int this_rid = -1, this_pos = -1;
|
||||||
const mm_reg1_t *regs = regss[seg_idx], *r_prev = NULL, *r_next;
|
const mm_reg1_t *regs = regss[seg_idx], *r_prev = NULL, *r_next;
|
||||||
const mm_reg1_t *r = n_regs > 0 && reg_idx < n_regs && reg_idx >= 0? ®s[reg_idx] : NULL;
|
const mm_reg1_t *r = n_regs > 0 && reg_idx < n_regs && reg_idx >= 0? ®s[reg_idx] : NULL;
|
||||||
|
|
||||||
@@ -409,7 +441,7 @@ void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int se
|
|||||||
mm_sprintf_lite(s, "\t%s\t%d\t0\t*", mi->seq[this_rid].name, this_pos+1);
|
mm_sprintf_lite(s, "\t%s\t%d\t0\t*", mi->seq[this_rid].name, this_pos+1);
|
||||||
} else mm_sprintf_lite(s, "\t*\t0\t0\t*");
|
} else mm_sprintf_lite(s, "\t*\t0\t0\t*");
|
||||||
} else {
|
} else {
|
||||||
this_rid = r->rid, this_pos = r->rs, this_rev = r->rev;
|
this_rid = r->rid, this_pos = r->rs;
|
||||||
mm_sprintf_lite(s, "\t%s\t%d\t%d\t", mi->seq[r->rid].name, r->rs+1, r->mapq);
|
mm_sprintf_lite(s, "\t%s\t%d\t%d\t", mi->seq[r->rid].name, r->rs+1, r->mapq);
|
||||||
if ((opt_flag & MM_F_LONG_CIGAR) && r->p && r->p->n_cigar > max_bam_cigar_op - 2) {
|
if ((opt_flag & MM_F_LONG_CIGAR) && r->p && r->p->n_cigar > max_bam_cigar_op - 2) {
|
||||||
int n_cigar = r->p->n_cigar;
|
int n_cigar = r->p->n_cigar;
|
||||||
@@ -432,17 +464,17 @@ void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int se
|
|||||||
int tlen = 0;
|
int tlen = 0;
|
||||||
if (this_rid >= 0 && r_next) {
|
if (this_rid >= 0 && r_next) {
|
||||||
if (this_rid == r_next->rid) {
|
if (this_rid == r_next->rid) {
|
||||||
int this_pos5 = r && r->rev? r->re - 1 : this_pos;
|
if (r) {
|
||||||
int next_pos5 = r_next->rev? r_next->re - 1 : r_next->rs;
|
int this_pos5 = r->rev? r->re - 1 : this_pos;
|
||||||
tlen = next_pos5 - this_pos5;
|
int next_pos5 = r_next->rev? r_next->re - 1 : r_next->rs;
|
||||||
|
tlen = next_pos5 - this_pos5;
|
||||||
|
}
|
||||||
mm_sprintf_lite(s, "\t=\t");
|
mm_sprintf_lite(s, "\t=\t");
|
||||||
} else mm_sprintf_lite(s, "\t%s\t", mi->seq[r_next->rid].name);
|
} else mm_sprintf_lite(s, "\t%s\t", mi->seq[r_next->rid].name);
|
||||||
mm_sprintf_lite(s, "%d\t", r_next->rs + 1);
|
mm_sprintf_lite(s, "%d\t", r_next->rs + 1);
|
||||||
} else if (r_next) { // && this_rid < 0
|
} else if (r_next) { // && this_rid < 0
|
||||||
mm_sprintf_lite(s, "\t%s\t%d\t", mi->seq[r_next->rid].name, r_next->rs + 1);
|
mm_sprintf_lite(s, "\t%s\t%d\t", mi->seq[r_next->rid].name, r_next->rs + 1);
|
||||||
} else if (this_rid >= 0) { // && r_next == NULL
|
} else if (this_rid >= 0) { // && r_next == NULL
|
||||||
int this_pos5 = this_rev? r->re - 1 : this_pos; // this_rev is only true when r != NULL
|
|
||||||
tlen = this_pos - this_pos5; // next_pos5 will be this_pos
|
|
||||||
mm_sprintf_lite(s, "\t=\t%d\t", this_pos + 1); // next segment will take r's coordinate
|
mm_sprintf_lite(s, "\t=\t%d\t", this_pos + 1); // next segment will take r's coordinate
|
||||||
} else mm_sprintf_lite(s, "\t*\t0\t"); // neither has coordinates
|
} else mm_sprintf_lite(s, "\t*\t0\t"); // neither has coordinates
|
||||||
if (tlen > 0) ++tlen;
|
if (tlen > 0) ++tlen;
|
||||||
@@ -507,6 +539,7 @@ void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int se
|
|||||||
if (cigar_in_tag)
|
if (cigar_in_tag)
|
||||||
write_sam_cigar(s, flag, 1, t->l_seq, r, opt_flag);
|
write_sam_cigar(s, flag, 1, t->l_seq, r, opt_flag);
|
||||||
}
|
}
|
||||||
|
if (rep_len >= 0) mm_sprintf_lite(s, "\trl:i:%d", rep_len);
|
||||||
|
|
||||||
if ((opt_flag & MM_F_COPY_COMMENT) && t->comment)
|
if ((opt_flag & MM_F_COPY_COMMENT) && t->comment)
|
||||||
mm_sprintf_lite(s, "\t%s", t->comment);
|
mm_sprintf_lite(s, "\t%s", t->comment);
|
||||||
@@ -514,6 +547,11 @@ void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int se
|
|||||||
s->s[s->l] = 0; // we always have room for an extra byte (see str_enlarge)
|
s->s[s->l] = 0; // we always have room for an extra byte (see str_enlarge)
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regss, const mm_reg1_t *const* regss, void *km, int opt_flag)
|
||||||
|
{
|
||||||
|
mm_write_sam3(s, mi, t, seg_idx, reg_idx, n_seg, n_regss, regss, km, opt_flag, -1);
|
||||||
|
}
|
||||||
|
|
||||||
void mm_write_sam(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, int n_regs, const mm_reg1_t *regs)
|
void mm_write_sam(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, int n_regs, const mm_reg1_t *regs)
|
||||||
{
|
{
|
||||||
int i;
|
int i;
|
||||||
|
|||||||
@@ -87,6 +87,22 @@ mm_reg1_t *mm_gen_regs(void *km, uint32_t hash, int qlen, int n_u, uint64_t *u,
|
|||||||
return r;
|
return r;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void mm_mark_alt(const mm_idx_t *mi, int n, mm_reg1_t *r)
|
||||||
|
{
|
||||||
|
int i;
|
||||||
|
if (mi->n_alt == 0) return;
|
||||||
|
for (i = 0; i < n; ++i)
|
||||||
|
if (mi->seq[r[i].rid].is_alt)
|
||||||
|
r[i].is_alt = 1;
|
||||||
|
}
|
||||||
|
|
||||||
|
static inline int mm_alt_score(int score, float alt_diff_frac)
|
||||||
|
{
|
||||||
|
if (score < 0) return score;
|
||||||
|
score = (int)(score * (1.0 - alt_diff_frac) + .499);
|
||||||
|
return score > 0? score : 1;
|
||||||
|
}
|
||||||
|
|
||||||
void mm_split_reg(mm_reg1_t *r, mm_reg1_t *r2, int n, int qlen, mm128_t *a)
|
void mm_split_reg(mm_reg1_t *r, mm_reg1_t *r2, int n, int qlen, mm128_t *a)
|
||||||
{
|
{
|
||||||
if (n <= 0 || n >= r->cnt) return;
|
if (n <= 0 || n >= r->cnt) return;
|
||||||
@@ -106,7 +122,7 @@ void mm_split_reg(mm_reg1_t *r, mm_reg1_t *r2, int n, int qlen, mm128_t *a)
|
|||||||
r->split |= 1, r2->split |= 2;
|
r->split |= 1, r2->split |= 2;
|
||||||
}
|
}
|
||||||
|
|
||||||
void mm_set_parent(void *km, float mask_level, int n, mm_reg1_t *r, int sub_diff, int hard_mask_level) // and compute mm_reg1_t::subsc
|
void mm_set_parent(void *km, float mask_level, int mask_len, int n, mm_reg1_t *r, int sub_diff, int hard_mask_level, float alt_diff_frac) // and compute mm_reg1_t::subsc
|
||||||
{
|
{
|
||||||
int i, j, k, *w;
|
int i, j, k, *w;
|
||||||
uint64_t *cov;
|
uint64_t *cov;
|
||||||
@@ -146,13 +162,16 @@ skip_uncov:
|
|||||||
min = ej - sj < ei - si? ej - sj : ei - si;
|
min = ej - sj < ei - si? ej - sj : ei - si;
|
||||||
max = ej - sj > ei - si? ej - sj : ei - si;
|
max = ej - sj > ei - si? ej - sj : ei - si;
|
||||||
ol = si < sj? (ei < sj? 0 : ei < ej? ei - sj : ej - sj) : (ej < si? 0 : ej < ei? ej - si : ei - si); // overlap length; TODO: this can be simplified
|
ol = si < sj? (ei < sj? 0 : ei < ej? ei - sj : ej - sj) : (ej < si? 0 : ej < ei? ej - si : ei - si); // overlap length; TODO: this can be simplified
|
||||||
if ((float)ol / min - (float)uncov_len / max > mask_level) {
|
if ((float)ol / min - (float)uncov_len / max > mask_level && uncov_len <= mask_len) { // then this is a secondary hit
|
||||||
int cnt_sub = 0;
|
int cnt_sub = 0, sci = ri->score;
|
||||||
ri->parent = rp->parent;
|
ri->parent = rp->parent;
|
||||||
rp->subsc = rp->subsc > ri->score? rp->subsc : ri->score;
|
if (!rp->is_alt && ri->is_alt) sci = mm_alt_score(sci, alt_diff_frac);
|
||||||
|
rp->subsc = rp->subsc > sci? rp->subsc : sci;
|
||||||
if (ri->cnt >= rp->cnt) cnt_sub = 1;
|
if (ri->cnt >= rp->cnt) cnt_sub = 1;
|
||||||
if (rp->p && ri->p && (rp->rid != ri->rid || rp->rs != ri->rs || rp->re != ri->re || ol != min)) { // the last condition excludes identical hits after DP
|
if (rp->p && ri->p && (rp->rid != ri->rid || rp->rs != ri->rs || rp->re != ri->re || ol != min)) { // the last condition excludes identical hits after DP
|
||||||
rp->p->dp_max2 = rp->p->dp_max2 > ri->p->dp_max? rp->p->dp_max2 : ri->p->dp_max;
|
sci = ri->p->dp_max;
|
||||||
|
if (!rp->is_alt && ri->is_alt) sci = mm_alt_score(sci, alt_diff_frac);
|
||||||
|
rp->p->dp_max2 = rp->p->dp_max2 > sci? rp->p->dp_max2 : sci;
|
||||||
if (rp->p->dp_max - ri->p->dp_max <= sub_diff) cnt_sub = 1;
|
if (rp->p->dp_max - ri->p->dp_max <= sub_diff) cnt_sub = 1;
|
||||||
}
|
}
|
||||||
if (cnt_sub) ++rp->n_sub;
|
if (cnt_sub) ++rp->n_sub;
|
||||||
@@ -166,7 +185,7 @@ set_parent_test:
|
|||||||
kfree(km, w);
|
kfree(km, w);
|
||||||
}
|
}
|
||||||
|
|
||||||
void mm_hit_sort(void *km, int *n_regs, mm_reg1_t *r)
|
void mm_hit_sort(void *km, int *n_regs, mm_reg1_t *r, float alt_diff_frac)
|
||||||
{
|
{
|
||||||
int32_t i, n_aux, n = *n_regs, has_cigar = 0, no_cigar = 0;
|
int32_t i, n_aux, n = *n_regs, has_cigar = 0, no_cigar = 0;
|
||||||
mm128_t *aux;
|
mm128_t *aux;
|
||||||
@@ -177,13 +196,11 @@ void mm_hit_sort(void *km, int *n_regs, mm_reg1_t *r)
|
|||||||
t = (mm_reg1_t*)kmalloc(km, n * sizeof(mm_reg1_t));
|
t = (mm_reg1_t*)kmalloc(km, n * sizeof(mm_reg1_t));
|
||||||
for (i = n_aux = 0; i < n; ++i) {
|
for (i = n_aux = 0; i < n; ++i) {
|
||||||
if (r[i].inv || r[i].cnt > 0) { // squeeze out elements with cnt==0 (soft deleted)
|
if (r[i].inv || r[i].cnt > 0) { // squeeze out elements with cnt==0 (soft deleted)
|
||||||
if (r[i].p) {
|
int score;
|
||||||
aux[n_aux].x = (uint64_t)r[i].p->dp_max << 32 | r[i].hash;
|
if (r[i].p) score = r[i].p->dp_max, has_cigar = 1;
|
||||||
has_cigar = 1;
|
else score = r[i].score, no_cigar = 1;
|
||||||
} else {
|
if (r[i].is_alt) score = mm_alt_score(score, alt_diff_frac);
|
||||||
aux[n_aux].x = (uint64_t)r[i].score << 32 | r[i].hash;
|
aux[n_aux].x = (uint64_t)score << 32 | r[i].hash;
|
||||||
no_cigar = 1;
|
|
||||||
}
|
|
||||||
aux[n_aux++].y = i;
|
aux[n_aux++].y = i;
|
||||||
} else if (r[i].p) {
|
} else if (r[i].p) {
|
||||||
free(r[i].p);
|
free(r[i].p);
|
||||||
@@ -449,6 +466,7 @@ void mm_set_mapq(void *km, int n_regs, mm_reg1_t *regs, int min_chain_sc, int ma
|
|||||||
int64_t sum_sc = 0;
|
int64_t sum_sc = 0;
|
||||||
float uniq_ratio;
|
float uniq_ratio;
|
||||||
int i;
|
int i;
|
||||||
|
if (n_regs == 0) return;
|
||||||
for (i = 0; i < n_regs; ++i)
|
for (i = 0; i < n_regs; ++i)
|
||||||
if (regs[i].parent == regs[i].id)
|
if (regs[i].parent == regs[i].id)
|
||||||
sum_sc += regs[i].score;
|
sum_sc += regs[i].score;
|
||||||
|
|||||||
@@ -31,6 +31,16 @@ typedef struct mm_idx_bucket_s {
|
|||||||
void *h; // hash table indexing _p_ and minimizers appearing once
|
void *h; // hash table indexing _p_ and minimizers appearing once
|
||||||
} mm_idx_bucket_t;
|
} mm_idx_bucket_t;
|
||||||
|
|
||||||
|
typedef struct {
|
||||||
|
int32_t st, en, max; // max is not used for now
|
||||||
|
int32_t score:30, strand:2;
|
||||||
|
} mm_idx_intv1_t;
|
||||||
|
|
||||||
|
typedef struct mm_idx_intv_s {
|
||||||
|
int32_t n, m;
|
||||||
|
mm_idx_intv1_t *a;
|
||||||
|
} mm_idx_intv_t;
|
||||||
|
|
||||||
mm_idx_t *mm_idx_init(int w, int k, int b, int flag)
|
mm_idx_t *mm_idx_init(int w, int k, int b, int flag)
|
||||||
{
|
{
|
||||||
mm_idx_t *mi;
|
mm_idx_t *mi;
|
||||||
@@ -55,6 +65,11 @@ void mm_idx_destroy(mm_idx_t *mi)
|
|||||||
kh_destroy(idx, (idxhash_t*)mi->B[i].h);
|
kh_destroy(idx, (idxhash_t*)mi->B[i].h);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
if (mi->I) {
|
||||||
|
for (i = 0; i < mi->n_seq; ++i)
|
||||||
|
free(mi->I[i].a);
|
||||||
|
free(mi->I);
|
||||||
|
}
|
||||||
if (!mi->km) {
|
if (!mi->km) {
|
||||||
for (i = 0; i < mi->n_seq; ++i)
|
for (i = 0; i < mi->n_seq; ++i)
|
||||||
free(mi->seq[i].name);
|
free(mi->seq[i].name);
|
||||||
@@ -102,8 +117,8 @@ void mm_idx_stat(const mm_idx_t *mi)
|
|||||||
if (kh_key(h, k)&1) ++n1;
|
if (kh_key(h, k)&1) ++n1;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
fprintf(stderr, "[M::%s::%.3f*%.2f] distinct minimizers: %d (%.2f%% are singletons); average occurrences: %.3lf; average spacing: %.3lf\n",
|
fprintf(stderr, "[M::%s::%.3f*%.2f] distinct minimizers: %d (%.2f%% are singletons); average occurrences: %.3lf; average spacing: %.3lf; total length: %ld\n",
|
||||||
__func__, realtime() - mm_realtime0, cputime() / (realtime() - mm_realtime0), n, 100.0*n1/n, (double)sum / n, (double)len / sum);
|
__func__, realtime() - mm_realtime0, cputime() / (realtime() - mm_realtime0), n, 100.0*n1/n, (double)sum / n, (double)len / sum, (long)len);
|
||||||
}
|
}
|
||||||
|
|
||||||
int mm_idx_index_name(mm_idx_t *mi)
|
int mm_idx_index_name(mm_idx_t *mi)
|
||||||
@@ -301,6 +316,7 @@ static void *worker_pipeline(void *shared, int step, void *in)
|
|||||||
} else seq->name = 0;
|
} else seq->name = 0;
|
||||||
seq->len = s->seq[i].l_seq;
|
seq->len = s->seq[i].l_seq;
|
||||||
seq->offset = p->sum_len;
|
seq->offset = p->sum_len;
|
||||||
|
seq->is_alt = 0;
|
||||||
// copy the sequence
|
// copy the sequence
|
||||||
if (!(p->mi->flag & MM_I_NO_SEQ)) {
|
if (!(p->mi->flag & MM_I_NO_SEQ)) {
|
||||||
for (j = 0; j < seq->len; ++j) { // TODO: this is not the fastest way, but let's first see if speed matters here
|
for (j = 0; j < seq->len; ++j) { // TODO: this is not the fastest way, but let's first see if speed matters here
|
||||||
@@ -399,6 +415,7 @@ mm_idx_t *mm_idx_str(int w, int k, int is_hpc, int bucket_bits, int n, const cha
|
|||||||
}
|
}
|
||||||
p->offset = sum_len;
|
p->offset = sum_len;
|
||||||
p->len = strlen(s);
|
p->len = strlen(s);
|
||||||
|
p->is_alt = 0;
|
||||||
for (j = 0; j < p->len; ++j) {
|
for (j = 0; j < p->len; ++j) {
|
||||||
int c = seq_nt4_table[(uint8_t)s[j]];
|
int c = seq_nt4_table[(uint8_t)s[j]];
|
||||||
uint64_t o = sum_len + j;
|
uint64_t o = sum_len + j;
|
||||||
@@ -485,6 +502,7 @@ mm_idx_t *mm_idx_load(FILE *fp)
|
|||||||
}
|
}
|
||||||
fread(&s->len, 4, 1, fp);
|
fread(&s->len, 4, 1, fp);
|
||||||
s->offset = sum_len;
|
s->offset = sum_len;
|
||||||
|
s->is_alt = 0;
|
||||||
sum_len += s->len;
|
sum_len += s->len;
|
||||||
}
|
}
|
||||||
for (i = 0; i < 1<<mi->b; ++i) {
|
for (i = 0; i < 1<<mi->b; ++i) {
|
||||||
@@ -585,3 +603,151 @@ int mm_idx_reader_eof(const mm_idx_reader_t *r) // TODO: in extremely rare cases
|
|||||||
{
|
{
|
||||||
return r->is_idx? (feof(r->fp.idx) || ftell(r->fp.idx) == r->idx_size) : mm_bseq_eof(r->fp.seq);
|
return r->is_idx? (feof(r->fp.idx) || ftell(r->fp.idx) == r->idx_size) : mm_bseq_eof(r->fp.seq);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
#include <ctype.h>
|
||||||
|
#include <zlib.h>
|
||||||
|
#include "ksort.h"
|
||||||
|
#include "kseq.h"
|
||||||
|
KSTREAM_DECLARE(gzFile, gzread)
|
||||||
|
|
||||||
|
int mm_idx_alt_read(mm_idx_t *mi, const char *fn)
|
||||||
|
{
|
||||||
|
int n_alt = 0;
|
||||||
|
gzFile fp;
|
||||||
|
kstream_t *ks;
|
||||||
|
kstring_t str = {0,0,0};
|
||||||
|
fp = fn && strcmp(fn, "-")? gzopen(fn, "r") : gzdopen(fileno(stdin), "r");
|
||||||
|
if (fp == 0) return -1;
|
||||||
|
ks = ks_init(fp);
|
||||||
|
if (mi->h == 0) mm_idx_index_name(mi);
|
||||||
|
while (ks_getuntil(ks, KS_SEP_LINE, &str, 0) >= 0) {
|
||||||
|
char *p;
|
||||||
|
int id;
|
||||||
|
for (p = str.s; *p && !isspace(*p); ++p) { }
|
||||||
|
*p = 0;
|
||||||
|
id = mm_idx_name2id(mi, str.s);
|
||||||
|
if (id >= 0) mi->seq[id].is_alt = 1, ++n_alt;
|
||||||
|
}
|
||||||
|
mi->n_alt = n_alt;
|
||||||
|
if (mm_verbose >= 3)
|
||||||
|
fprintf(stderr, "[M::%s] found %d ALT contigs\n", __func__, n_alt);
|
||||||
|
return n_alt;
|
||||||
|
}
|
||||||
|
|
||||||
|
#define sort_key_bed(a) ((a).st)
|
||||||
|
KRADIX_SORT_INIT(bed, mm_idx_intv1_t, sort_key_bed, 4)
|
||||||
|
|
||||||
|
mm_idx_intv_t *mm_idx_read_bed(const mm_idx_t *mi, const char *fn, int read_junc)
|
||||||
|
{
|
||||||
|
gzFile fp;
|
||||||
|
kstream_t *ks;
|
||||||
|
kstring_t str = {0,0,0};
|
||||||
|
mm_idx_intv_t *I;
|
||||||
|
|
||||||
|
fp = fn && strcmp(fn, "-")? gzopen(fn, "r") : gzdopen(fileno(stdin), "r");
|
||||||
|
if (fp == 0) return 0;
|
||||||
|
I = (mm_idx_intv_t*)calloc(mi->n_seq, sizeof(*I));
|
||||||
|
ks = ks_init(fp);
|
||||||
|
while (ks_getuntil(ks, KS_SEP_LINE, &str, 0) >= 0) {
|
||||||
|
mm_idx_intv_t *r;
|
||||||
|
mm_idx_intv1_t t = {-1,-1,-1,-1,0};
|
||||||
|
char *p, *q, *bl, *bs;
|
||||||
|
int32_t i, id = -1, n_blk = 0;
|
||||||
|
for (p = q = str.s, i = 0;; ++p) {
|
||||||
|
if (*p == 0 || *p == '\t') {
|
||||||
|
int32_t c = *p;
|
||||||
|
*p = 0;
|
||||||
|
if (i == 0) { // chr
|
||||||
|
id = mm_idx_name2id(mi, q);
|
||||||
|
if (id < 0) break; // unknown name; TODO: throw a warning
|
||||||
|
} else if (i == 1) { // start
|
||||||
|
t.st = atol(q); // TODO: watch out integer overflow!
|
||||||
|
if (t.st < 0) break;
|
||||||
|
} else if (i == 2) { // end
|
||||||
|
t.en = atol(q);
|
||||||
|
if (t.en < 0) break;
|
||||||
|
} else if (i == 4) { // BED score
|
||||||
|
t.score = atol(q);
|
||||||
|
} else if (i == 5) { // strand
|
||||||
|
t.strand = *q == '+'? 1 : *q == '-'? -1 : 0;
|
||||||
|
} else if (i == 9) {
|
||||||
|
if (!isdigit(*q)) break;
|
||||||
|
n_blk = atol(q);
|
||||||
|
} else if (i == 10) {
|
||||||
|
bl = q;
|
||||||
|
} else if (i == 11) {
|
||||||
|
bs = q;
|
||||||
|
break;
|
||||||
|
}
|
||||||
|
if (c == 0) break;
|
||||||
|
++i, q = p + 1;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
if (id < 0 || t.st < 0 || t.st >= t.en) continue;
|
||||||
|
r = &I[id];
|
||||||
|
if (i >= 11 && read_junc) { // BED12
|
||||||
|
int32_t st, sz, en;
|
||||||
|
st = strtol(bs, &bs, 10); ++bs;
|
||||||
|
sz = strtol(bl, &bl, 10); ++bl;
|
||||||
|
en = t.st + st + sz;
|
||||||
|
for (i = 1; i < n_blk; ++i) {
|
||||||
|
mm_idx_intv1_t s = t;
|
||||||
|
if (r->n == r->m) {
|
||||||
|
r->m = r->m? r->m + (r->m>>1) : 16;
|
||||||
|
r->a = (mm_idx_intv1_t*)realloc(r->a, sizeof(*r->a) * r->m);
|
||||||
|
}
|
||||||
|
st = strtol(bs, &bs, 10); ++bs;
|
||||||
|
sz = strtol(bl, &bl, 10); ++bl;
|
||||||
|
s.st = en, s.en = t.st + st;
|
||||||
|
en = t.st + st + sz;
|
||||||
|
if (s.en > s.st) r->a[r->n++] = s;
|
||||||
|
}
|
||||||
|
} else {
|
||||||
|
if (r->n == r->m) {
|
||||||
|
r->m = r->m? r->m + (r->m>>1) : 16;
|
||||||
|
r->a = (mm_idx_intv1_t*)realloc(r->a, sizeof(*r->a) * r->m);
|
||||||
|
}
|
||||||
|
r->a[r->n++] = t;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
free(str.s);
|
||||||
|
ks_destroy(ks);
|
||||||
|
gzclose(fp);
|
||||||
|
return I;
|
||||||
|
}
|
||||||
|
|
||||||
|
int mm_idx_bed_read(mm_idx_t *mi, const char *fn, int read_junc)
|
||||||
|
{
|
||||||
|
int32_t i;
|
||||||
|
if (mi->h == 0) mm_idx_index_name(mi);
|
||||||
|
mi->I = mm_idx_read_bed(mi, fn, read_junc);
|
||||||
|
if (mi->I == 0) return -1;
|
||||||
|
for (i = 0; i < mi->n_seq; ++i) // TODO: eliminate redundant intervals
|
||||||
|
radix_sort_bed(mi->I[i].a, mi->I[i].a + mi->I[i].n);
|
||||||
|
return 0;
|
||||||
|
}
|
||||||
|
|
||||||
|
int mm_idx_bed_junc(const mm_idx_t *mi, int32_t ctg, int32_t st, int32_t en, uint8_t *s)
|
||||||
|
{
|
||||||
|
int32_t i, left, right;
|
||||||
|
mm_idx_intv_t *r;
|
||||||
|
memset(s, 0, en - st);
|
||||||
|
if (mi->I == 0 || ctg < 0 || ctg >= mi->n_seq) return -1;
|
||||||
|
r = &mi->I[ctg];
|
||||||
|
left = 0, right = r->n;
|
||||||
|
while (right > left) {
|
||||||
|
int32_t mid = left + ((right - left) >> 1);
|
||||||
|
if (r->a[mid].st >= st) right = mid;
|
||||||
|
else left = mid + 1;
|
||||||
|
}
|
||||||
|
for (i = left; i < r->n; ++i) {
|
||||||
|
if (st <= r->a[i].st && en >= r->a[i].en && r->a[i].strand != 0) {
|
||||||
|
if (r->a[i].strand > 0) {
|
||||||
|
s[r->a[i].st - st] |= 1, s[r->a[i].en - 1 - st] |= 2;
|
||||||
|
} else {
|
||||||
|
s[r->a[i].st - st] |= 8, s[r->a[i].en - 1 - st] |= 4;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return left;
|
||||||
|
}
|
||||||
|
|||||||
@@ -18,15 +18,14 @@
|
|||||||
* | | | |
|
* | | | |
|
||||||
* p=p->ptr->ptr->ptr->ptr p->ptr p->ptr->ptr p->ptr->ptr->ptr
|
* p=p->ptr->ptr->ptr->ptr p->ptr p->ptr->ptr p->ptr->ptr->ptr
|
||||||
*/
|
*/
|
||||||
|
|
||||||
#define MIN_CORE_SIZE 0x80000
|
|
||||||
|
|
||||||
typedef struct header_t {
|
typedef struct header_t {
|
||||||
size_t size;
|
size_t size;
|
||||||
struct header_t *ptr;
|
struct header_t *ptr;
|
||||||
} header_t;
|
} header_t;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
|
void *par;
|
||||||
|
size_t min_core_size;
|
||||||
header_t base, *loop_head, *core_head; /* base is a zero-sized block always kept in the loop */
|
header_t base, *loop_head, *core_head; /* base is a zero-sized block always kept in the loop */
|
||||||
} kmem_t;
|
} kmem_t;
|
||||||
|
|
||||||
@@ -36,31 +35,39 @@ static void panic(const char *s)
|
|||||||
abort();
|
abort();
|
||||||
}
|
}
|
||||||
|
|
||||||
void *km_init(void)
|
void *km_init2(void *km_par, size_t min_core_size)
|
||||||
{
|
{
|
||||||
return calloc(1, sizeof(kmem_t));
|
kmem_t *km;
|
||||||
|
km = (kmem_t*)kcalloc(km_par, 1, sizeof(kmem_t));
|
||||||
|
km->par = km_par;
|
||||||
|
km->min_core_size = min_core_size > 0? min_core_size : 0x80000;
|
||||||
|
return (void*)km;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void *km_init(void) { return km_init2(0, 0); }
|
||||||
|
|
||||||
void km_destroy(void *_km)
|
void km_destroy(void *_km)
|
||||||
{
|
{
|
||||||
kmem_t *km = (kmem_t*)_km;
|
kmem_t *km = (kmem_t*)_km;
|
||||||
|
void *km_par;
|
||||||
header_t *p, *q;
|
header_t *p, *q;
|
||||||
if (km == NULL) return;
|
if (km == NULL) return;
|
||||||
|
km_par = km->par;
|
||||||
for (p = km->core_head; p != NULL;) {
|
for (p = km->core_head; p != NULL;) {
|
||||||
q = p->ptr;
|
q = p->ptr;
|
||||||
free(p);
|
kfree(km_par, p);
|
||||||
p = q;
|
p = q;
|
||||||
}
|
}
|
||||||
free(km);
|
kfree(km_par, km);
|
||||||
}
|
}
|
||||||
|
|
||||||
static header_t *morecore(kmem_t *km, size_t nu)
|
static header_t *morecore(kmem_t *km, size_t nu)
|
||||||
{
|
{
|
||||||
header_t *q;
|
header_t *q;
|
||||||
size_t bytes, *p;
|
size_t bytes, *p;
|
||||||
nu = (nu + 1 + (MIN_CORE_SIZE - 1)) / MIN_CORE_SIZE * MIN_CORE_SIZE; /* the first +1 for core header */
|
nu = (nu + 1 + (km->min_core_size - 1)) / km->min_core_size * km->min_core_size; /* the first +1 for core header */
|
||||||
bytes = nu * sizeof(header_t);
|
bytes = nu * sizeof(header_t);
|
||||||
q = (header_t*)malloc(bytes);
|
q = (header_t*)kmalloc(km->par, bytes);
|
||||||
if (!q) panic("[morecore] insufficient memory");
|
if (!q) panic("[morecore] insufficient memory");
|
||||||
q->ptr = km->core_head, q->size = nu, km->core_head = q;
|
q->ptr = km->core_head, q->size = nu, km->core_head = q;
|
||||||
p = (size_t*)(q + 1);
|
p = (size_t*)(q + 1);
|
||||||
@@ -125,7 +132,7 @@ void *kmalloc(void *_km, size_t n_bytes)
|
|||||||
|
|
||||||
if (n_bytes == 0) return 0;
|
if (n_bytes == 0) return 0;
|
||||||
if (km == NULL) return malloc(n_bytes);
|
if (km == NULL) return malloc(n_bytes);
|
||||||
n_units = (n_bytes + sizeof(size_t) + sizeof(header_t) - 1) / sizeof(header_t) + 1;
|
n_units = (n_bytes + sizeof(size_t) + sizeof(header_t) - 1) / sizeof(header_t); /* header+n_bytes requires at least this number of units */
|
||||||
|
|
||||||
if (!(q = km->loop_head)) /* the first time when kmalloc() is called, intialize it */
|
if (!(q = km->loop_head)) /* the first time when kmalloc() is called, intialize it */
|
||||||
q = km->loop_head = km->base.ptr = &km->base;
|
q = km->loop_head = km->base.ptr = &km->base;
|
||||||
@@ -160,18 +167,18 @@ void *kcalloc(void *_km, size_t count, size_t size)
|
|||||||
void *krealloc(void *_km, void *ap, size_t n_bytes) // TODO: this can be made more efficient in principle
|
void *krealloc(void *_km, void *ap, size_t n_bytes) // TODO: this can be made more efficient in principle
|
||||||
{
|
{
|
||||||
kmem_t *km = (kmem_t*)_km;
|
kmem_t *km = (kmem_t*)_km;
|
||||||
size_t n_units, *p, *q;
|
size_t cap, *p, *q;
|
||||||
|
|
||||||
if (n_bytes == 0) {
|
if (n_bytes == 0) {
|
||||||
kfree(km, ap); return 0;
|
kfree(km, ap); return 0;
|
||||||
}
|
}
|
||||||
if (km == NULL) return realloc(ap, n_bytes);
|
if (km == NULL) return realloc(ap, n_bytes);
|
||||||
if (ap == NULL) return kmalloc(km, n_bytes);
|
if (ap == NULL) return kmalloc(km, n_bytes);
|
||||||
n_units = (n_bytes + sizeof(size_t) + sizeof(header_t) - 1) / sizeof(header_t);
|
|
||||||
p = (size_t*)ap - 1;
|
p = (size_t*)ap - 1;
|
||||||
if (*p >= n_units) return ap; /* TODO: this prevents shrinking */
|
cap = (*p) * sizeof(header_t) - sizeof(size_t);
|
||||||
|
if (cap >= n_bytes) return ap; /* TODO: this prevents shrinking */
|
||||||
q = (size_t*)kmalloc(km, n_bytes);
|
q = (size_t*)kmalloc(km, n_bytes);
|
||||||
memcpy(q, ap, (*p - 1) * sizeof(header_t));
|
memcpy(q, ap, cap);
|
||||||
kfree(km, ap);
|
kfree(km, ap);
|
||||||
return q;
|
return q;
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -17,6 +17,7 @@ void *kcalloc(void *km, size_t count, size_t size);
|
|||||||
void kfree(void *km, void *ptr);
|
void kfree(void *km, void *ptr);
|
||||||
|
|
||||||
void *km_init(void);
|
void *km_init(void);
|
||||||
|
void *km_init2(void *km_par, size_t min_core_size);
|
||||||
void km_destroy(void *km);
|
void km_destroy(void *km);
|
||||||
void km_stat(const void *_km, km_stat_t *s);
|
void km_stat(const void *_km, km_stat_t *s);
|
||||||
|
|
||||||
@@ -24,4 +25,13 @@ void km_stat(const void *_km, km_stat_t *s);
|
|||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
#define KMALLOC(km, ptr, len) ((ptr) = (__typeof__(ptr))kmalloc((km), (len) * sizeof(*(ptr))))
|
||||||
|
#define KCALLOC(km, ptr, len) ((ptr) = (__typeof__(ptr))kcalloc((km), (len), sizeof(*(ptr))))
|
||||||
|
#define KREALLOC(km, ptr, len) ((ptr) = (__typeof__(ptr))krealloc((km), (ptr), (len) * sizeof(*(ptr))))
|
||||||
|
|
||||||
|
#define KEXPAND(km, a, m) do { \
|
||||||
|
(m) = (m) >= 4? (m) + ((m)>>1) : 16; \
|
||||||
|
KREALLOC((km), (a), (m)); \
|
||||||
|
} while (0)
|
||||||
|
|
||||||
#endif
|
#endif
|
||||||
|
|||||||
@@ -73,13 +73,17 @@ static int ketopt(ketopt_t *s, int argc, char *argv[], int permute, const char *
|
|||||||
}
|
}
|
||||||
s->opt = 0, opt = '?', s->pos = -1;
|
s->opt = 0, opt = '?', s->pos = -1;
|
||||||
if (longopts) { /* parse long options */
|
if (longopts) { /* parse long options */
|
||||||
int k, n_matches = 0;
|
int k, n_exact = 0, n_partial = 0;
|
||||||
const ko_longopt_t *o = 0;
|
const ko_longopt_t *o = 0, *o_exact = 0, *o_partial = 0;
|
||||||
for (j = 2; argv[s->i][j] != '\0' && argv[s->i][j] != '='; ++j) {} /* find the end of the option name */
|
for (j = 2; argv[s->i][j] != '\0' && argv[s->i][j] != '='; ++j) {} /* find the end of the option name */
|
||||||
for (k = 0; longopts[k].name != 0; ++k)
|
for (k = 0; longopts[k].name != 0; ++k)
|
||||||
if (strncmp(&argv[s->i][2], longopts[k].name, j - 2) == 0)
|
if (strncmp(&argv[s->i][2], longopts[k].name, j - 2) == 0) {
|
||||||
++n_matches, o = &longopts[k];
|
if (longopts[k].name[j - 2] == 0) ++n_exact, o_exact = &longopts[k];
|
||||||
if (n_matches == 1) {
|
else ++n_partial, o_partial = &longopts[k];
|
||||||
|
}
|
||||||
|
if (n_exact > 1 || (n_exact == 0 && n_partial > 1)) return '?';
|
||||||
|
o = n_exact == 1? o_exact : n_partial == 1? o_partial : 0;
|
||||||
|
if (o) {
|
||||||
s->opt = opt = o->val, s->longidx = o - longopts;
|
s->opt = opt = o->val, s->longidx = o - longopts;
|
||||||
if (argv[s->i][j] == '=') s->arg = &argv[s->i][j + 1];
|
if (argv[s->i][j] == '=') s->arg = &argv[s->i][j + 1];
|
||||||
if (o->has_arg == 1 && argv[s->i][j] == '\0') {
|
if (o->has_arg == 1 && argv[s->i][j] == '\0') {
|
||||||
@@ -92,7 +96,7 @@ static int ketopt(ketopt_t *s, int argc, char *argv[], int permute, const char *
|
|||||||
char *p;
|
char *p;
|
||||||
if (s->pos == 0) s->pos = 1;
|
if (s->pos == 0) s->pos = 1;
|
||||||
opt = s->opt = argv[s->i][s->pos++];
|
opt = s->opt = argv[s->i][s->pos++];
|
||||||
p = strchr(ostr, opt);
|
p = strchr((char*)ostr, opt);
|
||||||
if (p == 0) {
|
if (p == 0) {
|
||||||
opt = '?'; /* unknown option */
|
opt = '?'; /* unknown option */
|
||||||
} else if (p[1] == ':') {
|
} else if (p[1] == ':') {
|
||||||
|
|||||||
@@ -37,6 +37,14 @@
|
|||||||
#define KS_SEP_LINE 2 // line separator: "\n" (Unix) or "\r\n" (Windows)
|
#define KS_SEP_LINE 2 // line separator: "\n" (Unix) or "\r\n" (Windows)
|
||||||
#define KS_SEP_MAX 2
|
#define KS_SEP_MAX 2
|
||||||
|
|
||||||
|
#ifndef klib_unused
|
||||||
|
#if (defined __clang__ && __clang_major__ >= 3) || (defined __GNUC__ && __GNUC__ >= 3)
|
||||||
|
#define klib_unused __attribute__ ((__unused__))
|
||||||
|
#else
|
||||||
|
#define klib_unused
|
||||||
|
#endif
|
||||||
|
#endif /* klib_unused */
|
||||||
|
|
||||||
#define __KS_TYPE(type_t) \
|
#define __KS_TYPE(type_t) \
|
||||||
typedef struct __kstream_t { \
|
typedef struct __kstream_t { \
|
||||||
int begin, end; \
|
int begin, end; \
|
||||||
@@ -64,7 +72,7 @@
|
|||||||
}
|
}
|
||||||
|
|
||||||
#define __KS_INLINED(__read) \
|
#define __KS_INLINED(__read) \
|
||||||
static inline int ks_getc(kstream_t *ks) \
|
static inline klib_unused int ks_getc(kstream_t *ks) \
|
||||||
{ \
|
{ \
|
||||||
if (ks->is_eof && ks->begin >= ks->end) return -1; \
|
if (ks->is_eof && ks->begin >= ks->end) return -1; \
|
||||||
if (ks->begin >= ks->end) { \
|
if (ks->begin >= ks->end) { \
|
||||||
@@ -81,7 +89,7 @@
|
|||||||
#ifndef KSTRING_T
|
#ifndef KSTRING_T
|
||||||
#define KSTRING_T kstring_t
|
#define KSTRING_T kstring_t
|
||||||
typedef struct __kstring_t {
|
typedef struct __kstring_t {
|
||||||
unsigned l, m;
|
size_t l, m;
|
||||||
char *s;
|
char *s;
|
||||||
} kstring_t;
|
} kstring_t;
|
||||||
#endif
|
#endif
|
||||||
|
|||||||
@@ -37,7 +37,7 @@ typedef struct {
|
|||||||
int depth;
|
int depth;
|
||||||
} ks_isort_stack_t;
|
} ks_isort_stack_t;
|
||||||
|
|
||||||
#define KSORT_SWAP(type_t, a, b) { register type_t t=(a); (a)=(b); (b)=t; }
|
#define KSORT_SWAP(type_t, a, b) { type_t t=(a); (a)=(b); (b)=t; }
|
||||||
|
|
||||||
#define KSORT_INIT(name, type_t, __sort_lt) \
|
#define KSORT_INIT(name, type_t, __sort_lt) \
|
||||||
void ks_heapdown_##name(size_t i, size_t n, type_t l[]) \
|
void ks_heapdown_##name(size_t i, size_t n, type_t l[]) \
|
||||||
|
|||||||
@@ -61,7 +61,7 @@ void ksw_extd2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uin
|
|||||||
int8_t gapo, int8_t gape, int8_t gapo2, int8_t gape2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
int8_t gapo, int8_t gape, int8_t gapo2, int8_t gape2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
||||||
|
|
||||||
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t gapo, int8_t gape, int8_t gapo2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez);
|
int8_t gapo, int8_t gape, int8_t gapo2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez);
|
||||||
|
|
||||||
void ksw_extf2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t mch, int8_t mis, int8_t e, int w, int xdrop, ksw_extz_t *ez);
|
void ksw_extf2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t mch, int8_t mis, int8_t e, int w, int xdrop, ksw_extz_t *ez);
|
||||||
|
|
||||||
|
|||||||
+19
-20
@@ -17,18 +17,20 @@
|
|||||||
void __cpuidex(int cpuid[4], int func_id, int subfunc_id)
|
void __cpuidex(int cpuid[4], int func_id, int subfunc_id)
|
||||||
{
|
{
|
||||||
#if defined(__x86_64__)
|
#if defined(__x86_64__)
|
||||||
asm volatile ("cpuid"
|
__asm__ volatile ("cpuid"
|
||||||
: "=a" (cpuid[0]), "=b" (cpuid[1]), "=c" (cpuid[2]), "=d" (cpuid[3])
|
: "=a" (cpuid[0]), "=b" (cpuid[1]), "=c" (cpuid[2]), "=d" (cpuid[3])
|
||||||
: "0" (func_id), "2" (subfunc_id));
|
: "0" (func_id), "2" (subfunc_id));
|
||||||
#else // on 32bit, ebx can NOT be used as PIC code
|
#else // on 32bit, ebx can NOT be used as PIC code
|
||||||
asm volatile ("xchgl %%ebx, %1; cpuid; xchgl %%ebx, %1"
|
__asm__ volatile ("xchgl %%ebx, %1; cpuid; xchgl %%ebx, %1"
|
||||||
: "=a" (cpuid[0]), "=r" (cpuid[1]), "=c" (cpuid[2]), "=d" (cpuid[3])
|
: "=a" (cpuid[0]), "=r" (cpuid[1]), "=c" (cpuid[2]), "=d" (cpuid[3])
|
||||||
: "0" (func_id), "2" (subfunc_id));
|
: "0" (func_id), "2" (subfunc_id));
|
||||||
#endif
|
#endif
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
int x86_simd(void)
|
static int ksw_simd = -1;
|
||||||
|
|
||||||
|
static int x86_simd(void)
|
||||||
{
|
{
|
||||||
int flag = 0, cpuid[4], max_id;
|
int flag = 0, cpuid[4], max_id;
|
||||||
__cpuidex(cpuid, 0, 0);
|
__cpuidex(cpuid, 0, 0);
|
||||||
@@ -54,11 +56,10 @@ void ksw_extz2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uin
|
|||||||
{
|
{
|
||||||
extern void ksw_extz2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
extern void ksw_extz2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
||||||
extern void ksw_extz2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
extern void ksw_extz2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
||||||
unsigned simd;
|
if (ksw_simd < 0) ksw_simd = x86_simd();
|
||||||
simd = x86_simd();
|
if (ksw_simd & SIMD_SSE4_1)
|
||||||
if (simd & SIMD_SSE4_1)
|
|
||||||
ksw_extz2_sse41(km, qlen, query, tlen, target, m, mat, q, e, w, zdrop, end_bonus, flag, ez);
|
ksw_extz2_sse41(km, qlen, query, tlen, target, m, mat, q, e, w, zdrop, end_bonus, flag, ez);
|
||||||
else if (simd & SIMD_SSE2)
|
else if (ksw_simd & SIMD_SSE2)
|
||||||
ksw_extz2_sse2(km, qlen, query, tlen, target, m, mat, q, e, w, zdrop, end_bonus, flag, ez);
|
ksw_extz2_sse2(km, qlen, query, tlen, target, m, mat, q, e, w, zdrop, end_bonus, flag, ez);
|
||||||
else abort();
|
else abort();
|
||||||
}
|
}
|
||||||
@@ -70,28 +71,26 @@ void ksw_extd2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uin
|
|||||||
int8_t q, int8_t e, int8_t q2, int8_t e2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
int8_t q, int8_t e, int8_t q2, int8_t e2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
||||||
extern void ksw_extd2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
extern void ksw_extd2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t e2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
int8_t q, int8_t e, int8_t q2, int8_t e2, int w, int zdrop, int end_bonus, int flag, ksw_extz_t *ez);
|
||||||
unsigned simd;
|
if (ksw_simd < 0) ksw_simd = x86_simd();
|
||||||
simd = x86_simd();
|
if (ksw_simd & SIMD_SSE4_1)
|
||||||
if (simd & SIMD_SSE4_1)
|
|
||||||
ksw_extd2_sse41(km, qlen, query, tlen, target, m, mat, q, e, q2, e2, w, zdrop, end_bonus, flag, ez);
|
ksw_extd2_sse41(km, qlen, query, tlen, target, m, mat, q, e, q2, e2, w, zdrop, end_bonus, flag, ez);
|
||||||
else if (simd & SIMD_SSE2)
|
else if (ksw_simd & SIMD_SSE2)
|
||||||
ksw_extd2_sse2(km, qlen, query, tlen, target, m, mat, q, e, q2, e2, w, zdrop, end_bonus, flag, ez);
|
ksw_extd2_sse2(km, qlen, query, tlen, target, m, mat, q, e, q2, e2, w, zdrop, end_bonus, flag, ez);
|
||||||
else abort();
|
else abort();
|
||||||
}
|
}
|
||||||
|
|
||||||
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez)
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez)
|
||||||
{
|
{
|
||||||
extern void ksw_exts2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
extern void ksw_exts2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez);
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez);
|
||||||
extern void ksw_exts2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
extern void ksw_exts2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez);
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez);
|
||||||
unsigned simd;
|
if (ksw_simd < 0) ksw_simd = x86_simd();
|
||||||
simd = x86_simd();
|
if (ksw_simd & SIMD_SSE4_1)
|
||||||
if (simd & SIMD_SSE4_1)
|
ksw_exts2_sse41(km, qlen, query, tlen, target, m, mat, q, e, q2, noncan, zdrop, junc_bonus, flag, junc, ez);
|
||||||
ksw_exts2_sse41(km, qlen, query, tlen, target, m, mat, q, e, q2, noncan, zdrop, flag, ez);
|
else if (ksw_simd & SIMD_SSE2)
|
||||||
else if (simd & SIMD_SSE2)
|
ksw_exts2_sse2(km, qlen, query, tlen, target, m, mat, q, e, q2, noncan, zdrop, junc_bonus, flag, junc, ez);
|
||||||
ksw_exts2_sse2(km, qlen, query, tlen, target, m, mat, q, e, q2, noncan, zdrop, flag, ez);
|
|
||||||
else abort();
|
else abort();
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
|
|||||||
@@ -4,15 +4,23 @@
|
|||||||
#include "ksw2.h"
|
#include "ksw2.h"
|
||||||
|
|
||||||
#ifdef __SSE2__
|
#ifdef __SSE2__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse2.h>
|
||||||
|
#else
|
||||||
#include <emmintrin.h>
|
#include <emmintrin.h>
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef KSW_SSE2_ONLY
|
#ifdef KSW_SSE2_ONLY
|
||||||
#undef __SSE4_1__
|
#undef __SSE4_1__
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse4.1.h>
|
||||||
|
#else
|
||||||
#include <smmintrin.h>
|
#include <smmintrin.h>
|
||||||
#endif
|
#endif
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef KSW_CPU_DISPATCH
|
#ifdef KSW_CPU_DISPATCH
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
|
|||||||
+57
-17
@@ -4,27 +4,34 @@
|
|||||||
#include "ksw2.h"
|
#include "ksw2.h"
|
||||||
|
|
||||||
#ifdef __SSE2__
|
#ifdef __SSE2__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse2.h>
|
||||||
|
#else
|
||||||
#include <emmintrin.h>
|
#include <emmintrin.h>
|
||||||
|
#endif
|
||||||
#ifdef KSW_SSE2_ONLY
|
#ifdef KSW_SSE2_ONLY
|
||||||
#undef __SSE4_1__
|
#undef __SSE4_1__
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse4.1.h>
|
||||||
|
#else
|
||||||
#include <smmintrin.h>
|
#include <smmintrin.h>
|
||||||
#endif
|
#endif
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef KSW_CPU_DISPATCH
|
#ifdef KSW_CPU_DISPATCH
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
void ksw_exts2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
void ksw_exts2_sse41(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez)
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez)
|
||||||
#else
|
#else
|
||||||
void ksw_exts2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
void ksw_exts2_sse2(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez)
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez)
|
||||||
#endif
|
#endif
|
||||||
#else
|
#else
|
||||||
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
|
||||||
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int flag, ksw_extz_t *ez)
|
int8_t q, int8_t e, int8_t q2, int8_t noncan, int zdrop, int8_t junc_bonus, int flag, const uint8_t *junc, ksw_extz_t *ez)
|
||||||
#endif // ~KSW_CPU_DISPATCH
|
#endif // ~KSW_CPU_DISPATCH
|
||||||
{
|
{
|
||||||
#define __dp_code_block1 \
|
#define __dp_code_block1 \
|
||||||
@@ -113,20 +120,53 @@ void ksw_exts2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uin
|
|||||||
if (flag & (KSW_EZ_SPLICE_FOR|KSW_EZ_SPLICE_REV)) {
|
if (flag & (KSW_EZ_SPLICE_FOR|KSW_EZ_SPLICE_REV)) {
|
||||||
int semi_cost = flag&KSW_EZ_SPLICE_FLANK? -noncan/2 : 0; // GTr or yAG is worth 0.5 bit; see PMID:18688272
|
int semi_cost = flag&KSW_EZ_SPLICE_FLANK? -noncan/2 : 0; // GTr or yAG is worth 0.5 bit; see PMID:18688272
|
||||||
memset(donor, -noncan, tlen_ * 16);
|
memset(donor, -noncan, tlen_ * 16);
|
||||||
for (t = 0; t < tlen - 4; ++t) {
|
|
||||||
int can_type = 0; // type of canonical site: 0=none, 1=GT/AG only, 2=GTr/yAG
|
|
||||||
if ((flag & KSW_EZ_SPLICE_FOR) && target[t+1] == 2 && target[t+2] == 3) can_type = 1; // GTr...
|
|
||||||
if ((flag & KSW_EZ_SPLICE_REV) && target[t+1] == 1 && target[t+2] == 3) can_type = 1; // CTr...
|
|
||||||
if (can_type && (target[t+3] == 0 || target[t+3] == 2)) can_type = 2;
|
|
||||||
if (can_type) ((int8_t*)donor)[t] = can_type == 2? 0 : semi_cost;
|
|
||||||
}
|
|
||||||
memset(acceptor, -noncan, tlen_ * 16);
|
memset(acceptor, -noncan, tlen_ * 16);
|
||||||
for (t = 2; t < tlen; ++t) {
|
if (!(flag & KSW_EZ_REV_CIGAR)) {
|
||||||
int can_type = 0;
|
for (t = 0; t < tlen - 4; ++t) {
|
||||||
if ((flag & KSW_EZ_SPLICE_FOR) && target[t-1] == 0 && target[t] == 2) can_type = 1; // ...yAG
|
int can_type = 0; // type of canonical site: 0=none, 1=GT/AG only, 2=GTr/yAG
|
||||||
if ((flag & KSW_EZ_SPLICE_REV) && target[t-1] == 0 && target[t] == 1) can_type = 1; // ...yAC
|
if ((flag & KSW_EZ_SPLICE_FOR) && target[t+1] == 2 && target[t+2] == 3) can_type = 1; // GTr...
|
||||||
if (can_type && (target[t-2] == 1 || target[t-2] == 3)) can_type = 2;
|
if ((flag & KSW_EZ_SPLICE_REV) && target[t+1] == 1 && target[t+2] == 3) can_type = 1; // CTr...
|
||||||
if (can_type) ((int8_t*)acceptor)[t] = can_type == 2? 0 : semi_cost;
|
if (can_type && (target[t+3] == 0 || target[t+3] == 2)) can_type = 2;
|
||||||
|
if (can_type) ((int8_t*)donor)[t] = can_type == 2? 0 : semi_cost;
|
||||||
|
}
|
||||||
|
if (junc)
|
||||||
|
for (t = 0; t < tlen - 1; ++t)
|
||||||
|
if (((flag & KSW_EZ_SPLICE_FOR) && (junc[t+1]&1)) || ((flag & KSW_EZ_SPLICE_REV) && (junc[t+1]&8)))
|
||||||
|
((int8_t*)donor)[t] += junc_bonus;
|
||||||
|
for (t = 2; t < tlen; ++t) {
|
||||||
|
int can_type = 0;
|
||||||
|
if ((flag & KSW_EZ_SPLICE_FOR) && target[t-1] == 0 && target[t] == 2) can_type = 1; // ...yAG
|
||||||
|
if ((flag & KSW_EZ_SPLICE_REV) && target[t-1] == 0 && target[t] == 1) can_type = 1; // ...yAC
|
||||||
|
if (can_type && (target[t-2] == 1 || target[t-2] == 3)) can_type = 2;
|
||||||
|
if (can_type) ((int8_t*)acceptor)[t] = can_type == 2? 0 : semi_cost;
|
||||||
|
}
|
||||||
|
if (junc)
|
||||||
|
for (t = 0; t < tlen; ++t)
|
||||||
|
if (((flag & KSW_EZ_SPLICE_FOR) && (junc[t]&2)) || ((flag & KSW_EZ_SPLICE_REV) && (junc[t]&4)))
|
||||||
|
((int8_t*)acceptor)[t] += junc_bonus;
|
||||||
|
} else {
|
||||||
|
for (t = 0; t < tlen - 4; ++t) {
|
||||||
|
int can_type = 0; // type of canonical site: 0=none, 1=GT/AG only, 2=GTr/yAG
|
||||||
|
if ((flag & KSW_EZ_SPLICE_FOR) && target[t+1] == 2 && target[t+2] == 0) can_type = 1; // GAy...
|
||||||
|
if ((flag & KSW_EZ_SPLICE_REV) && target[t+1] == 1 && target[t+2] == 0) can_type = 1; // CAy...
|
||||||
|
if (can_type && (target[t+3] == 1 || target[t+3] == 3)) can_type = 2;
|
||||||
|
if (can_type) ((int8_t*)donor)[t] = can_type == 2? 0 : semi_cost;
|
||||||
|
}
|
||||||
|
if (junc)
|
||||||
|
for (t = 0; t < tlen - 1; ++t)
|
||||||
|
if (((flag & KSW_EZ_SPLICE_FOR) && (junc[t+1]&2)) || ((flag & KSW_EZ_SPLICE_REV) && (junc[t+1]&4)))
|
||||||
|
((int8_t*)donor)[t] += junc_bonus;
|
||||||
|
for (t = 2; t < tlen; ++t) {
|
||||||
|
int can_type = 0;
|
||||||
|
if ((flag & KSW_EZ_SPLICE_FOR) && target[t-1] == 3 && target[t] == 2) can_type = 1; // ...rTG
|
||||||
|
if ((flag & KSW_EZ_SPLICE_REV) && target[t-1] == 3 && target[t] == 1) can_type = 1; // ...rTC
|
||||||
|
if (can_type && (target[t-2] == 0 || target[t-2] == 2)) can_type = 2;
|
||||||
|
if (can_type) ((int8_t*)acceptor)[t] = can_type == 2? 0 : semi_cost;
|
||||||
|
}
|
||||||
|
if (junc)
|
||||||
|
for (t = 0; t < tlen; ++t)
|
||||||
|
if (((flag & KSW_EZ_SPLICE_FOR) && (junc[t]&1)) || ((flag & KSW_EZ_SPLICE_REV) && (junc[t]&8)))
|
||||||
|
((int8_t*)acceptor)[t] += junc_bonus;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
@@ -3,15 +3,23 @@
|
|||||||
#include "ksw2.h"
|
#include "ksw2.h"
|
||||||
|
|
||||||
#ifdef __SSE2__
|
#ifdef __SSE2__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse2.h>
|
||||||
|
#else
|
||||||
#include <emmintrin.h>
|
#include <emmintrin.h>
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef KSW_SSE2_ONLY
|
#ifdef KSW_SSE2_ONLY
|
||||||
#undef __SSE4_1__
|
#undef __SSE4_1__
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse4.1.h>
|
||||||
|
#else
|
||||||
#include <smmintrin.h>
|
#include <smmintrin.h>
|
||||||
#endif
|
#endif
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef KSW_CPU_DISPATCH
|
#ifdef KSW_CPU_DISPATCH
|
||||||
#ifdef __SSE4_1__
|
#ifdef __SSE4_1__
|
||||||
|
|||||||
+6
-1
@@ -1,9 +1,14 @@
|
|||||||
#include <stdlib.h>
|
#include <stdlib.h>
|
||||||
#include <stdint.h>
|
#include <stdint.h>
|
||||||
#include <string.h>
|
#include <string.h>
|
||||||
#include <emmintrin.h>
|
|
||||||
#include "ksw2.h"
|
#include "ksw2.h"
|
||||||
|
|
||||||
|
#ifdef USE_SIMDE
|
||||||
|
#include <simde/x86/sse2.h>
|
||||||
|
#else
|
||||||
|
#include <emmintrin.h>
|
||||||
|
#endif
|
||||||
|
|
||||||
#ifdef __GNUC__
|
#ifdef __GNUC__
|
||||||
#define LIKELY(x) __builtin_expect((x),1)
|
#define LIKELY(x) __builtin_expect((x),1)
|
||||||
#define UNLIKELY(x) __builtin_expect((x),0)
|
#define UNLIKELY(x) __builtin_expect((x),0)
|
||||||
|
|||||||
Submodule
+1
Submodule lib/simde added at b30129b3b4
@@ -1,12 +1,13 @@
|
|||||||
#include <stdlib.h>
|
#include <stdlib.h>
|
||||||
#include <stdio.h>
|
#include <stdio.h>
|
||||||
#include <string.h>
|
#include <string.h>
|
||||||
|
#include <errno.h>
|
||||||
#include "bseq.h"
|
#include "bseq.h"
|
||||||
#include "minimap.h"
|
#include "minimap.h"
|
||||||
#include "mmpriv.h"
|
#include "mmpriv.h"
|
||||||
#include "ketopt.h"
|
#include "ketopt.h"
|
||||||
|
|
||||||
#define MM_VERSION "2.13-r850"
|
#define MM_VERSION "2.18-r1015"
|
||||||
|
|
||||||
#ifdef __linux__
|
#ifdef __linux__
|
||||||
#include <sys/resource.h>
|
#include <sys/resource.h>
|
||||||
@@ -60,6 +61,16 @@ static ko_longopt_t long_options[] = {
|
|||||||
{ "split-prefix", ko_required_argument, 334 },
|
{ "split-prefix", ko_required_argument, 334 },
|
||||||
{ "no-end-flt", ko_no_argument, 335 },
|
{ "no-end-flt", ko_no_argument, 335 },
|
||||||
{ "hard-mask-level",ko_no_argument, 336 },
|
{ "hard-mask-level",ko_no_argument, 336 },
|
||||||
|
{ "cap-sw-mem", ko_required_argument, 337 },
|
||||||
|
{ "max-qlen", ko_required_argument, 338 },
|
||||||
|
{ "max-chain-iter", ko_required_argument, 339 },
|
||||||
|
{ "junc-bed", ko_required_argument, 340 },
|
||||||
|
{ "junc-bonus", ko_required_argument, 341 },
|
||||||
|
{ "sam-hit-only", ko_no_argument, 342 },
|
||||||
|
{ "chain-gap-scale",ko_required_argument, 343 },
|
||||||
|
{ "alt", ko_required_argument, 344 },
|
||||||
|
{ "alt-drop", ko_required_argument, 345 },
|
||||||
|
{ "mask-len", ko_required_argument, 346 },
|
||||||
{ "help", ko_no_argument, 'h' },
|
{ "help", ko_no_argument, 'h' },
|
||||||
{ "max-intron-len", ko_required_argument, 'G' },
|
{ "max-intron-len", ko_required_argument, 'G' },
|
||||||
{ "version", ko_no_argument, 'V' },
|
{ "version", ko_no_argument, 'V' },
|
||||||
@@ -97,12 +108,12 @@ static inline void yes_or_no(mm_mapopt_t *opt, int flag, int long_idx, const cha
|
|||||||
|
|
||||||
int main(int argc, char *argv[])
|
int main(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
const char *opt_str = "2aSDw:k:K:t:r:f:Vv:g:G:I:d:XT:s:x:Hcp:M:n:z:A:B:O:E:m:N:Qu:R:hF:LC:yYP";
|
const char *opt_str = "2aSDw:k:K:t:r:f:Vv:g:G:I:d:XT:s:x:Hcp:M:n:z:A:B:O:E:m:N:Qu:R:hF:LC:yYPo:";
|
||||||
ketopt_t o = KETOPT_INIT;
|
ketopt_t o = KETOPT_INIT;
|
||||||
mm_mapopt_t opt;
|
mm_mapopt_t opt;
|
||||||
mm_idxopt_t ipt;
|
mm_idxopt_t ipt;
|
||||||
int i, c, n_threads = 3, n_parts, old_best_n = -1;
|
int i, c, n_threads = 3, n_parts, old_best_n = -1;
|
||||||
char *fnw = 0, *rg = 0, *s;
|
char *fnw = 0, *rg = 0, *junc_bed = 0, *s, *alt_list = 0;
|
||||||
FILE *fp_help = stderr;
|
FILE *fp_help = stderr;
|
||||||
mm_idx_reader_t *idx_rdr;
|
mm_idx_reader_t *idx_rdr;
|
||||||
mm_idx_t *mi;
|
mm_idx_t *mi;
|
||||||
@@ -122,7 +133,7 @@ int main(int argc, char *argv[])
|
|||||||
fprintf(stderr, "[ERROR] missing option argument\n");
|
fprintf(stderr, "[ERROR] missing option argument\n");
|
||||||
return 1;
|
return 1;
|
||||||
} else if (c == '?') {
|
} else if (c == '?') {
|
||||||
fprintf(stderr, "[ERROR] unknown option in \"%s\"\n", argv[o.i]);
|
fprintf(stderr, "[ERROR] unknown option in \"%s\"\n", argv[o.i - 1]);
|
||||||
return 1;
|
return 1;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -159,16 +170,25 @@ int main(int argc, char *argv[])
|
|||||||
else if (c == 's') opt.min_dp_max = atoi(o.arg);
|
else if (c == 's') opt.min_dp_max = atoi(o.arg);
|
||||||
else if (c == 'C') opt.noncan = atoi(o.arg);
|
else if (c == 'C') opt.noncan = atoi(o.arg);
|
||||||
else if (c == 'I') ipt.batch_size = mm_parse_num(o.arg);
|
else if (c == 'I') ipt.batch_size = mm_parse_num(o.arg);
|
||||||
else if (c == 'K') opt.mini_batch_size = (int)mm_parse_num(o.arg);
|
else if (c == 'K') opt.mini_batch_size = mm_parse_num(o.arg);
|
||||||
else if (c == 'R') rg = o.arg;
|
else if (c == 'R') rg = o.arg;
|
||||||
else if (c == 'h') fp_help = stdout;
|
else if (c == 'h') fp_help = stdout;
|
||||||
else if (c == '2') opt.flag |= MM_F_2_IO_THREADS;
|
else if (c == '2') opt.flag |= MM_F_2_IO_THREADS;
|
||||||
|
else if (c == 'o') {
|
||||||
|
if (strcmp(o.arg, "-") != 0) {
|
||||||
|
if (freopen(o.arg, "wb", stdout) == NULL) {
|
||||||
|
fprintf(stderr, "[ERROR]\033[1;31m failed to write the output to file '%s'\033[0m: %s\n", o.arg, strerror(errno));
|
||||||
|
exit(1);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
else if (c == 300) ipt.bucket_bits = atoi(o.arg); // --bucket-bits
|
else if (c == 300) ipt.bucket_bits = atoi(o.arg); // --bucket-bits
|
||||||
else if (c == 302) opt.seed = atoi(o.arg); // --seed
|
else if (c == 302) opt.seed = atoi(o.arg); // --seed
|
||||||
else if (c == 303) mm_dbg_flag |= MM_DBG_NO_KALLOC; // --no-kalloc
|
else if (c == 303) mm_dbg_flag |= MM_DBG_NO_KALLOC; // --no-kalloc
|
||||||
else if (c == 304) mm_dbg_flag |= MM_DBG_PRINT_QNAME; // --print-qname
|
else if (c == 304) mm_dbg_flag |= MM_DBG_PRINT_QNAME; // --print-qname
|
||||||
else if (c == 306) mm_dbg_flag |= MM_DBG_PRINT_QNAME | MM_DBG_PRINT_SEED, n_threads = 1; // --print-seed
|
else if (c == 306) mm_dbg_flag |= MM_DBG_PRINT_QNAME | MM_DBG_PRINT_SEED, n_threads = 1; // --print-seed
|
||||||
else if (c == 307) opt.max_chain_skip = atoi(o.arg); // --max-chain-skip
|
else if (c == 307) opt.max_chain_skip = atoi(o.arg); // --max-chain-skip
|
||||||
|
else if (c == 339) opt.max_chain_iter = atoi(o.arg); // --max-chain-iter
|
||||||
else if (c == 308) opt.min_ksw_len = atoi(o.arg); // --min-dp-len
|
else if (c == 308) opt.min_ksw_len = atoi(o.arg); // --min-dp-len
|
||||||
else if (c == 309) mm_dbg_flag |= MM_DBG_PRINT_QNAME | MM_DBG_PRINT_ALN_SEQ, n_threads = 1; // --print-aln-seq
|
else if (c == 309) mm_dbg_flag |= MM_DBG_PRINT_QNAME | MM_DBG_PRINT_ALN_SEQ, n_threads = 1; // --print-aln-seq
|
||||||
else if (c == 310) opt.flag |= MM_F_SPLICE; // --splice
|
else if (c == 310) opt.flag |= MM_F_SPLICE; // --splice
|
||||||
@@ -190,6 +210,15 @@ int main(int argc, char *argv[])
|
|||||||
else if (c == 334) opt.split_prefix = o.arg; // --split-prefix
|
else if (c == 334) opt.split_prefix = o.arg; // --split-prefix
|
||||||
else if (c == 335) opt.flag |= MM_F_NO_END_FLT; // --no-end-flt
|
else if (c == 335) opt.flag |= MM_F_NO_END_FLT; // --no-end-flt
|
||||||
else if (c == 336) opt.flag |= MM_F_HARD_MLEVEL; // --hard-mask-level
|
else if (c == 336) opt.flag |= MM_F_HARD_MLEVEL; // --hard-mask-level
|
||||||
|
else if (c == 337) opt.max_sw_mat = mm_parse_num(o.arg); // --cap-sw-mat
|
||||||
|
else if (c == 338) opt.max_qlen = mm_parse_num(o.arg); // --max-qlen
|
||||||
|
else if (c == 340) junc_bed = o.arg; // --junc-bed
|
||||||
|
else if (c == 341) opt.junc_bonus = atoi(o.arg); // --junc-bonus
|
||||||
|
else if (c == 342) opt.flag |= MM_F_SAM_HIT_ONLY; // --sam-hit-only
|
||||||
|
else if (c == 343) opt.chain_gap_scale = atof(o.arg); // --chain-gap-scale
|
||||||
|
else if (c == 344) alt_list = o.arg; // --alt
|
||||||
|
else if (c == 345) opt.alt_drop = atof(o.arg); // --alt-drop
|
||||||
|
else if (c == 346) opt.mask_len = mm_parse_num(o.arg); // --mask-len
|
||||||
else if (c == 314) { // --frag
|
else if (c == 314) { // --frag
|
||||||
yes_or_no(&opt, MM_F_FRAG_MODE, o.longidx, o.arg, 1);
|
yes_or_no(&opt, MM_F_FRAG_MODE, o.longidx, o.arg, 1);
|
||||||
} else if (c == 315) { // --secondary
|
} else if (c == 315) { // --secondary
|
||||||
@@ -264,7 +293,7 @@ int main(int argc, char *argv[])
|
|||||||
fprintf(fp_help, " Indexing:\n");
|
fprintf(fp_help, " Indexing:\n");
|
||||||
fprintf(fp_help, " -H use homopolymer-compressed k-mer (preferrable for PacBio)\n");
|
fprintf(fp_help, " -H use homopolymer-compressed k-mer (preferrable for PacBio)\n");
|
||||||
fprintf(fp_help, " -k INT k-mer size (no larger than 28) [%d]\n", ipt.k);
|
fprintf(fp_help, " -k INT k-mer size (no larger than 28) [%d]\n", ipt.k);
|
||||||
fprintf(fp_help, " -w INT minizer window size [%d]\n", ipt.w);
|
fprintf(fp_help, " -w INT minimizer window size [%d]\n", ipt.w);
|
||||||
fprintf(fp_help, " -I NUM split index for every ~NUM input bases [4G]\n");
|
fprintf(fp_help, " -I NUM split index for every ~NUM input bases [4G]\n");
|
||||||
fprintf(fp_help, " -d FILE dump index to FILE []\n");
|
fprintf(fp_help, " -d FILE dump index to FILE []\n");
|
||||||
fprintf(fp_help, " Mapping:\n");
|
fprintf(fp_help, " Mapping:\n");
|
||||||
@@ -289,7 +318,7 @@ int main(int argc, char *argv[])
|
|||||||
fprintf(fp_help, " -u CHAR how to find GT-AG. f:transcript strand, b:both strands, n:don't match GT-AG [n]\n");
|
fprintf(fp_help, " -u CHAR how to find GT-AG. f:transcript strand, b:both strands, n:don't match GT-AG [n]\n");
|
||||||
fprintf(fp_help, " Input/Output:\n");
|
fprintf(fp_help, " Input/Output:\n");
|
||||||
fprintf(fp_help, " -a output in the SAM format (PAF by default)\n");
|
fprintf(fp_help, " -a output in the SAM format (PAF by default)\n");
|
||||||
fprintf(fp_help, " -Q don't output base quality in SAM\n");
|
fprintf(fp_help, " -o FILE output alignments to FILE [stdout]\n");
|
||||||
fprintf(fp_help, " -L write CIGAR with >65535 ops at the CG tag\n");
|
fprintf(fp_help, " -L write CIGAR with >65535 ops at the CG tag\n");
|
||||||
fprintf(fp_help, " -R STR SAM read group line in a format like '@RG\\tID:foo\\tSM:bar' []\n");
|
fprintf(fp_help, " -R STR SAM read group line in a format like '@RG\\tID:foo\\tSM:bar' []\n");
|
||||||
fprintf(fp_help, " -c output CIGAR in PAF\n");
|
fprintf(fp_help, " -c output CIGAR in PAF\n");
|
||||||
@@ -303,11 +332,11 @@ int main(int argc, char *argv[])
|
|||||||
fprintf(fp_help, " --version show version number\n");
|
fprintf(fp_help, " --version show version number\n");
|
||||||
fprintf(fp_help, " Preset:\n");
|
fprintf(fp_help, " Preset:\n");
|
||||||
fprintf(fp_help, " -x STR preset (always applied before other options; see minimap2.1 for details) []\n");
|
fprintf(fp_help, " -x STR preset (always applied before other options; see minimap2.1 for details) []\n");
|
||||||
fprintf(fp_help, " - map-pb/map-ont: PacBio/Nanopore vs reference mapping\n");
|
fprintf(fp_help, " - map-pb/map-ont - PacBio/Nanopore vs reference mapping\n");
|
||||||
fprintf(fp_help, " - ava-pb/ava-ont: PacBio/Nanopore read overlap\n");
|
fprintf(fp_help, " - ava-pb/ava-ont - PacBio/Nanopore read overlap\n");
|
||||||
fprintf(fp_help, " - asm5/asm10/asm20: asm-to-ref mapping, for ~0.1/1/5%% sequence divergence\n");
|
fprintf(fp_help, " - asm5/asm10/asm20 - asm-to-ref mapping, for ~0.1/1/5%% sequence divergence\n");
|
||||||
fprintf(fp_help, " - splice: long-read spliced alignment\n");
|
fprintf(fp_help, " - splice/splice:hq - long-read/Pacbio-CCS spliced alignment\n");
|
||||||
fprintf(fp_help, " - sr: genomic short-read mapping\n");
|
fprintf(fp_help, " - sr - genomic short-read mapping\n");
|
||||||
fprintf(fp_help, "\nSee `man ./minimap2.1' for detailed description of these and other advanced command-line options.\n");
|
fprintf(fp_help, "\nSee `man ./minimap2.1' for detailed description of these and other advanced command-line options.\n");
|
||||||
return fp_help == stdout? 0 : 1;
|
return fp_help == stdout? 0 : 1;
|
||||||
}
|
}
|
||||||
@@ -318,7 +347,7 @@ int main(int argc, char *argv[])
|
|||||||
}
|
}
|
||||||
idx_rdr = mm_idx_reader_open(argv[o.ind], &ipt, fnw);
|
idx_rdr = mm_idx_reader_open(argv[o.ind], &ipt, fnw);
|
||||||
if (idx_rdr == 0) {
|
if (idx_rdr == 0) {
|
||||||
fprintf(stderr, "[ERROR] failed to open file '%s'\n", argv[o.ind]);
|
fprintf(stderr, "[ERROR] failed to open file '%s': %s\n", argv[o.ind], strerror(errno));
|
||||||
return 1;
|
return 1;
|
||||||
}
|
}
|
||||||
if (!idx_rdr->is_idx && fnw == 0 && argc - o.ind < 2) {
|
if (!idx_rdr->is_idx && fnw == 0 && argc - o.ind < 2) {
|
||||||
@@ -329,6 +358,7 @@ int main(int argc, char *argv[])
|
|||||||
if (opt.best_n == 0 && (opt.flag&MM_F_CIGAR) && mm_verbose >= 2)
|
if (opt.best_n == 0 && (opt.flag&MM_F_CIGAR) && mm_verbose >= 2)
|
||||||
fprintf(stderr, "[WARNING]\033[1;31m `-N 0' reduces alignment accuracy. Please use --secondary=no to suppress secondary alignments.\033[0m\n");
|
fprintf(stderr, "[WARNING]\033[1;31m `-N 0' reduces alignment accuracy. Please use --secondary=no to suppress secondary alignments.\033[0m\n");
|
||||||
while ((mi = mm_idx_reader_read(idx_rdr, n_threads)) != 0) {
|
while ((mi = mm_idx_reader_read(idx_rdr, n_threads)) != 0) {
|
||||||
|
int ret;
|
||||||
if ((opt.flag & MM_F_CIGAR) && (mi->flag & MM_I_NO_SEQ)) {
|
if ((opt.flag & MM_F_CIGAR) && (mi->flag & MM_I_NO_SEQ)) {
|
||||||
fprintf(stderr, "[ERROR] the prebuilt index doesn't contain sequences.\n");
|
fprintf(stderr, "[ERROR] the prebuilt index doesn't contain sequences.\n");
|
||||||
mm_idx_destroy(mi);
|
mm_idx_destroy(mi);
|
||||||
@@ -337,25 +367,42 @@ int main(int argc, char *argv[])
|
|||||||
}
|
}
|
||||||
if ((opt.flag & MM_F_OUT_SAM) && idx_rdr->n_parts == 1) {
|
if ((opt.flag & MM_F_OUT_SAM) && idx_rdr->n_parts == 1) {
|
||||||
if (mm_idx_reader_eof(idx_rdr)) {
|
if (mm_idx_reader_eof(idx_rdr)) {
|
||||||
mm_write_sam_hdr(mi, rg, MM_VERSION, argc, argv);
|
if (opt.split_prefix == 0)
|
||||||
|
ret = mm_write_sam_hdr(mi, rg, MM_VERSION, argc, argv);
|
||||||
|
else
|
||||||
|
ret = mm_write_sam_hdr(0, rg, MM_VERSION, argc, argv);
|
||||||
} else {
|
} else {
|
||||||
mm_write_sam_hdr(0, rg, MM_VERSION, argc, argv);
|
ret = mm_write_sam_hdr(0, rg, MM_VERSION, argc, argv);
|
||||||
if (opt.split_prefix == 0 && mm_verbose >= 2)
|
if (opt.split_prefix == 0 && mm_verbose >= 2)
|
||||||
fprintf(stderr, "[WARNING]\033[1;31m For a multi-part index, no @SQ lines will be outputted. Please use --split-prefix.\033[0m\n");
|
fprintf(stderr, "[WARNING]\033[1;31m For a multi-part index, no @SQ lines will be outputted. Please use --split-prefix.\033[0m\n");
|
||||||
}
|
}
|
||||||
|
if (ret != 0) {
|
||||||
|
mm_idx_destroy(mi);
|
||||||
|
mm_idx_reader_close(idx_rdr);
|
||||||
|
return 1;
|
||||||
|
}
|
||||||
}
|
}
|
||||||
if (mm_verbose >= 3)
|
if (mm_verbose >= 3)
|
||||||
fprintf(stderr, "[M::%s::%.3f*%.2f] loaded/built the index for %d target sequence(s)\n",
|
fprintf(stderr, "[M::%s::%.3f*%.2f] loaded/built the index for %d target sequence(s)\n",
|
||||||
__func__, realtime() - mm_realtime0, cputime() / (realtime() - mm_realtime0), mi->n_seq);
|
__func__, realtime() - mm_realtime0, cputime() / (realtime() - mm_realtime0), mi->n_seq);
|
||||||
if (argc != o.ind + 1) mm_mapopt_update(&opt, mi);
|
if (argc != o.ind + 1) mm_mapopt_update(&opt, mi);
|
||||||
if (mm_verbose >= 3) mm_idx_stat(mi);
|
if (mm_verbose >= 3) mm_idx_stat(mi);
|
||||||
|
if (junc_bed) mm_idx_bed_read(mi, junc_bed, 1);
|
||||||
|
if (alt_list) mm_idx_alt_read(mi, alt_list);
|
||||||
|
ret = 0;
|
||||||
if (!(opt.flag & MM_F_FRAG_MODE)) {
|
if (!(opt.flag & MM_F_FRAG_MODE)) {
|
||||||
for (i = o.ind + 1; i < argc; ++i)
|
for (i = o.ind + 1; i < argc; ++i) {
|
||||||
mm_map_file(mi, argv[i], &opt, n_threads);
|
ret = mm_map_file(mi, argv[i], &opt, n_threads);
|
||||||
|
if (ret < 0) break;
|
||||||
|
}
|
||||||
} else {
|
} else {
|
||||||
mm_map_file_frag(mi, argc - (o.ind + 1), (const char**)&argv[o.ind + 1], &opt, n_threads);
|
ret = mm_map_file_frag(mi, argc - (o.ind + 1), (const char**)&argv[o.ind + 1], &opt, n_threads);
|
||||||
}
|
}
|
||||||
mm_idx_destroy(mi);
|
mm_idx_destroy(mi);
|
||||||
|
if (ret < 0) {
|
||||||
|
fprintf(stderr, "ERROR: failed to map the query file\n");
|
||||||
|
exit(EXIT_FAILURE);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
n_parts = idx_rdr->n_parts;
|
n_parts = idx_rdr->n_parts;
|
||||||
mm_idx_reader_close(idx_rdr);
|
mm_idx_reader_close(idx_rdr);
|
||||||
@@ -364,7 +411,7 @@ int main(int argc, char *argv[])
|
|||||||
mm_split_merge(argc - (o.ind + 1), (const char**)&argv[o.ind + 1], &opt, n_parts);
|
mm_split_merge(argc - (o.ind + 1), (const char**)&argv[o.ind + 1], &opt, n_parts);
|
||||||
|
|
||||||
if (fflush(stdout) == EOF) {
|
if (fflush(stdout) == EOF) {
|
||||||
fprintf(stderr, "[ERROR] failed to write the results\n");
|
perror("[ERROR] failed to write the results");
|
||||||
exit(EXIT_FAILURE);
|
exit(EXIT_FAILURE);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
@@ -1,6 +1,7 @@
|
|||||||
#include <stdlib.h>
|
#include <stdlib.h>
|
||||||
#include <string.h>
|
#include <string.h>
|
||||||
#include <assert.h>
|
#include <assert.h>
|
||||||
|
#include <errno.h>
|
||||||
#include "kthread.h"
|
#include "kthread.h"
|
||||||
#include "kvec.h"
|
#include "kvec.h"
|
||||||
#include "kalloc.h"
|
#include "kalloc.h"
|
||||||
@@ -248,7 +249,7 @@ static mm128_t *collect_seed_hits(void *km, const mm_mapopt_t *opt, int max_occ,
|
|||||||
static void chain_post(const mm_mapopt_t *opt, int max_chain_gap_ref, const mm_idx_t *mi, void *km, int qlen, int n_segs, const int *qlens, int *n_regs, mm_reg1_t *regs, mm128_t *a)
|
static void chain_post(const mm_mapopt_t *opt, int max_chain_gap_ref, const mm_idx_t *mi, void *km, int qlen, int n_segs, const int *qlens, int *n_regs, mm_reg1_t *regs, mm128_t *a)
|
||||||
{
|
{
|
||||||
if (!(opt->flag & MM_F_ALL_CHAINS)) { // don't choose primary mapping(s)
|
if (!(opt->flag & MM_F_ALL_CHAINS)) { // don't choose primary mapping(s)
|
||||||
mm_set_parent(km, opt->mask_level, *n_regs, regs, opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL);
|
mm_set_parent(km, opt->mask_level, opt->mask_len, *n_regs, regs, opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL, opt->alt_drop);
|
||||||
if (n_segs <= 1) mm_select_sub(km, opt->pri_ratio, mi->k*2, opt->best_n, n_regs, regs);
|
if (n_segs <= 1) mm_select_sub(km, opt->pri_ratio, mi->k*2, opt->best_n, n_regs, regs);
|
||||||
else mm_select_sub_multi(km, opt->pri_ratio, 0.2f, 0.7f, max_chain_gap_ref, mi->k*2, opt->best_n, n_segs, qlens, n_regs, regs);
|
else mm_select_sub_multi(km, opt->pri_ratio, 0.2f, 0.7f, max_chain_gap_ref, mi->k*2, opt->best_n, n_segs, qlens, n_regs, regs);
|
||||||
if (!(opt->flag & (MM_F_SPLICE|MM_F_SR|MM_F_NO_LJOIN))) // long join not working well without primary chains
|
if (!(opt->flag & (MM_F_SPLICE|MM_F_SR|MM_F_NO_LJOIN))) // long join not working well without primary chains
|
||||||
@@ -261,7 +262,7 @@ static mm_reg1_t *align_regs(const mm_mapopt_t *opt, const mm_idx_t *mi, void *k
|
|||||||
if (!(opt->flag & MM_F_CIGAR)) return regs;
|
if (!(opt->flag & MM_F_CIGAR)) return regs;
|
||||||
regs = mm_align_skeleton(km, opt, mi, qlen, seq, n_regs, regs, a); // this calls mm_filter_regs()
|
regs = mm_align_skeleton(km, opt, mi, qlen, seq, n_regs, regs, a); // this calls mm_filter_regs()
|
||||||
if (!(opt->flag & MM_F_ALL_CHAINS)) { // don't choose primary mapping(s)
|
if (!(opt->flag & MM_F_ALL_CHAINS)) { // don't choose primary mapping(s)
|
||||||
mm_set_parent(km, opt->mask_level, *n_regs, regs, opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL);
|
mm_set_parent(km, opt->mask_level, opt->mask_len, *n_regs, regs, opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL, opt->alt_drop);
|
||||||
mm_select_sub(km, opt->pri_ratio, mi->k*2, opt->best_n, n_regs, regs);
|
mm_select_sub(km, opt->pri_ratio, mi->k*2, opt->best_n, n_regs, regs);
|
||||||
mm_set_sam_pri(*n_regs, regs);
|
mm_set_sam_pri(*n_regs, regs);
|
||||||
}
|
}
|
||||||
@@ -284,6 +285,7 @@ void mm_map_frag(const mm_idx_t *mi, int n_segs, const int *qlens, const char **
|
|||||||
qlen_sum += qlens[i], n_regs[i] = 0, regs[i] = 0;
|
qlen_sum += qlens[i], n_regs[i] = 0, regs[i] = 0;
|
||||||
|
|
||||||
if (qlen_sum == 0 || n_segs <= 0 || n_segs > MM_MAX_SEG) return;
|
if (qlen_sum == 0 || n_segs <= 0 || n_segs > MM_MAX_SEG) return;
|
||||||
|
if (opt->max_qlen > 0 && qlen_sum > opt->max_qlen) return;
|
||||||
|
|
||||||
hash = qname? __ac_X31_hash_string(qname) : 0;
|
hash = qname? __ac_X31_hash_string(qname) : 0;
|
||||||
hash ^= __ac_Wang_hash(qlen_sum) + __ac_Wang_hash(opt->seed);
|
hash ^= __ac_Wang_hash(qlen_sum) + __ac_Wang_hash(opt->seed);
|
||||||
@@ -311,7 +313,7 @@ void mm_map_frag(const mm_idx_t *mi, int n_segs, const int *qlens, const char **
|
|||||||
if (max_chain_gap_ref < opt->max_gap) max_chain_gap_ref = opt->max_gap;
|
if (max_chain_gap_ref < opt->max_gap) max_chain_gap_ref = opt->max_gap;
|
||||||
} else max_chain_gap_ref = opt->max_gap;
|
} else max_chain_gap_ref = opt->max_gap;
|
||||||
|
|
||||||
a = mm_chain_dp(max_chain_gap_ref, max_chain_gap_qry, opt->bw, opt->max_chain_skip, opt->min_cnt, opt->min_chain_score, is_splice, n_segs, n_a, a, &n_regs0, &u, b->km);
|
a = mm_chain_dp(max_chain_gap_ref, max_chain_gap_qry, opt->bw, opt->max_chain_skip, opt->max_chain_iter, opt->min_cnt, opt->min_chain_score, opt->chain_gap_scale, is_splice, n_segs, n_a, a, &n_regs0, &u, b->km);
|
||||||
|
|
||||||
if (opt->max_occ > opt->mid_occ && rep_len > 0) {
|
if (opt->max_occ > opt->mid_occ && rep_len > 0) {
|
||||||
int rechain = 0;
|
int rechain = 0;
|
||||||
@@ -333,13 +335,17 @@ void mm_map_frag(const mm_idx_t *mi, int n_segs, const int *qlens, const char **
|
|||||||
kfree(b->km, mini_pos);
|
kfree(b->km, mini_pos);
|
||||||
if (opt->flag & MM_F_HEAP_SORT) a = collect_seed_hits_heap(b->km, opt, opt->max_occ, mi, qname, &mv, qlen_sum, &n_a, &rep_len, &n_mini_pos, &mini_pos);
|
if (opt->flag & MM_F_HEAP_SORT) a = collect_seed_hits_heap(b->km, opt, opt->max_occ, mi, qname, &mv, qlen_sum, &n_a, &rep_len, &n_mini_pos, &mini_pos);
|
||||||
else a = collect_seed_hits(b->km, opt, opt->max_occ, mi, qname, &mv, qlen_sum, &n_a, &rep_len, &n_mini_pos, &mini_pos);
|
else a = collect_seed_hits(b->km, opt, opt->max_occ, mi, qname, &mv, qlen_sum, &n_a, &rep_len, &n_mini_pos, &mini_pos);
|
||||||
a = mm_chain_dp(max_chain_gap_ref, max_chain_gap_qry, opt->bw, opt->max_chain_skip, opt->min_cnt, opt->min_chain_score, is_splice, n_segs, n_a, a, &n_regs0, &u, b->km);
|
a = mm_chain_dp(max_chain_gap_ref, max_chain_gap_qry, opt->bw, opt->max_chain_skip, opt->max_chain_iter, opt->min_cnt, opt->min_chain_score, opt->chain_gap_scale, is_splice, n_segs, n_a, a, &n_regs0, &u, b->km);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
b->frag_gap = max_chain_gap_ref;
|
b->frag_gap = max_chain_gap_ref;
|
||||||
b->rep_len = rep_len;
|
b->rep_len = rep_len;
|
||||||
|
|
||||||
regs0 = mm_gen_regs(b->km, hash, qlen_sum, n_regs0, u, a);
|
regs0 = mm_gen_regs(b->km, hash, qlen_sum, n_regs0, u, a);
|
||||||
|
if (mi->n_alt) {
|
||||||
|
mm_mark_alt(mi, n_regs0, regs0);
|
||||||
|
mm_hit_sort(b->km, &n_regs0, regs0, opt->alt_drop); // this step can be merged into mm_gen_regs(); will do if this shows up in profile
|
||||||
|
}
|
||||||
|
|
||||||
if (mm_dbg_flag & MM_DBG_PRINT_SEED)
|
if (mm_dbg_flag & MM_DBG_PRINT_SEED)
|
||||||
for (j = 0; j < n_regs0; ++j)
|
for (j = 0; j < n_regs0; ++j)
|
||||||
@@ -359,7 +365,7 @@ void mm_map_frag(const mm_idx_t *mi, int n_segs, const int *qlens, const char **
|
|||||||
seg = mm_seg_gen(b->km, hash, n_segs, qlens, n_regs0, regs0, n_regs, regs, a); // split fragment chain to separate segment chains
|
seg = mm_seg_gen(b->km, hash, n_segs, qlens, n_regs0, regs0, n_regs, regs, a); // split fragment chain to separate segment chains
|
||||||
free(regs0);
|
free(regs0);
|
||||||
for (i = 0; i < n_segs; ++i) {
|
for (i = 0; i < n_segs; ++i) {
|
||||||
mm_set_parent(b->km, opt->mask_level, n_regs[i], regs[i], opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL); // update mm_reg1_t::parent
|
mm_set_parent(b->km, opt->mask_level, opt->mask_len, n_regs[i], regs[i], opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL, opt->alt_drop); // update mm_reg1_t::parent
|
||||||
regs[i] = align_regs(opt, mi, b->km, qlens[i], seqs[i], &n_regs[i], regs[i], seg[i].a);
|
regs[i] = align_regs(opt, mi, b->km, qlens[i], seqs[i], &n_regs[i], regs[i], seg[i].a);
|
||||||
mm_set_mapq(b->km, n_regs[i], regs[i], opt->min_chain_score, opt->a, rep_len, is_sr);
|
mm_set_mapq(b->km, n_regs[i], regs[i], opt->min_chain_score, opt->a, rep_len, is_sr);
|
||||||
}
|
}
|
||||||
@@ -397,7 +403,8 @@ mm_reg1_t *mm_map(const mm_idx_t *mi, int qlen, const char *seq, int *n_regs, mm
|
|||||||
**************************/
|
**************************/
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
int mini_batch_size, n_processed, n_threads, n_fp;
|
int n_processed, n_threads, n_fp;
|
||||||
|
int64_t mini_batch_size;
|
||||||
const mm_mapopt_t *opt;
|
const mm_mapopt_t *opt;
|
||||||
mm_bseq_file_t **fp;
|
mm_bseq_file_t **fp;
|
||||||
const mm_idx_t *mi;
|
const mm_idx_t *mi;
|
||||||
@@ -501,8 +508,8 @@ static void merge_hits(step_t *s)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
mm_hit_sort(km, &s->n_reg[k], s->reg[k]);
|
mm_hit_sort(km, &s->n_reg[k], s->reg[k], opt->alt_drop);
|
||||||
mm_set_parent(km, opt->mask_level, s->n_reg[k], s->reg[k], opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL);
|
mm_set_parent(km, opt->mask_level, opt->mask_len, s->n_reg[k], s->reg[k], opt->a * 2 + opt->b, opt->flag&MM_F_HARD_MLEVEL, opt->alt_drop);
|
||||||
if (!(opt->flag & MM_F_ALL_CHAINS)) {
|
if (!(opt->flag & MM_F_ALL_CHAINS)) {
|
||||||
mm_select_sub(km, opt->pri_ratio, s->p->mi->k*2, opt->best_n, &s->n_reg[k], s->reg[k]);
|
mm_select_sub(km, opt->pri_ratio, s->p->mi->k*2, opt->best_n, &s->n_reg[k], s->reg[k]);
|
||||||
mm_set_sam_pri(s->n_reg[k], s->reg[k]);
|
mm_set_sam_pri(s->n_reg[k], s->reg[k]);
|
||||||
@@ -583,16 +590,16 @@ static void *worker_pipeline(void *shared, int step, void *in)
|
|||||||
if ((p->opt->flag & MM_F_NO_PRINT_2ND) && r->id != r->parent)
|
if ((p->opt->flag & MM_F_NO_PRINT_2ND) && r->id != r->parent)
|
||||||
continue;
|
continue;
|
||||||
if (p->opt->flag & MM_F_OUT_SAM)
|
if (p->opt->flag & MM_F_OUT_SAM)
|
||||||
mm_write_sam2(&p->str, mi, t, i - seg_st, j, s->n_seg[k], &s->n_reg[seg_st], (const mm_reg1_t*const*)&s->reg[seg_st], km, p->opt->flag);
|
mm_write_sam3(&p->str, mi, t, i - seg_st, j, s->n_seg[k], &s->n_reg[seg_st], (const mm_reg1_t*const*)&s->reg[seg_st], km, p->opt->flag, s->rep_len[i]);
|
||||||
else
|
else
|
||||||
mm_write_paf(&p->str, mi, t, r, km, p->opt->flag);
|
mm_write_paf3(&p->str, mi, t, r, km, p->opt->flag, s->rep_len[i]);
|
||||||
mm_err_puts(p->str.s);
|
mm_err_puts(p->str.s);
|
||||||
}
|
}
|
||||||
} else if (p->opt->flag & (MM_F_OUT_SAM|MM_F_PAF_NO_HIT)) { // output an empty hit, if requested
|
} else if ((p->opt->flag & MM_F_PAF_NO_HIT) || ((p->opt->flag & MM_F_OUT_SAM) && !(p->opt->flag & MM_F_SAM_HIT_ONLY))) { // output an empty hit, if requested
|
||||||
if (p->opt->flag & MM_F_OUT_SAM)
|
if (p->opt->flag & MM_F_OUT_SAM)
|
||||||
mm_write_sam2(&p->str, mi, t, i - seg_st, -1, s->n_seg[k], &s->n_reg[seg_st], (const mm_reg1_t*const*)&s->reg[seg_st], km, p->opt->flag);
|
mm_write_sam3(&p->str, mi, t, i - seg_st, -1, s->n_seg[k], &s->n_reg[seg_st], (const mm_reg1_t*const*)&s->reg[seg_st], km, p->opt->flag, s->rep_len[i]);
|
||||||
else
|
else
|
||||||
mm_write_paf(&p->str, mi, t, 0, 0, p->opt->flag);
|
mm_write_paf3(&p->str, mi, t, 0, 0, p->opt->flag, s->rep_len[i]);
|
||||||
mm_err_puts(p->str.s);
|
mm_err_puts(p->str.s);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -621,7 +628,7 @@ static mm_bseq_file_t **open_bseqs(int n, const char **fn)
|
|||||||
for (i = 0; i < n; ++i) {
|
for (i = 0; i < n; ++i) {
|
||||||
if ((fp[i] = mm_bseq_open(fn[i])) == 0) {
|
if ((fp[i] = mm_bseq_open(fn[i])) == 0) {
|
||||||
if (mm_verbose >= 1)
|
if (mm_verbose >= 1)
|
||||||
fprintf(stderr, "ERROR: failed to open file '%s'\n", fn[i]);
|
fprintf(stderr, "ERROR: failed to open file '%s': %s\n", fn[i], strerror(errno));
|
||||||
for (j = 0; j < i; ++j)
|
for (j = 0; j < i; ++j)
|
||||||
mm_bseq_close(fp[j]);
|
mm_bseq_close(fp[j]);
|
||||||
free(fp);
|
free(fp);
|
||||||
|
|||||||
@@ -35,6 +35,7 @@
|
|||||||
#define MM_F_PAF_NO_HIT 0x8000000 // output unmapped reads to PAF
|
#define MM_F_PAF_NO_HIT 0x8000000 // output unmapped reads to PAF
|
||||||
#define MM_F_NO_END_FLT 0x10000000
|
#define MM_F_NO_END_FLT 0x10000000
|
||||||
#define MM_F_HARD_MLEVEL 0x20000000
|
#define MM_F_HARD_MLEVEL 0x20000000
|
||||||
|
#define MM_F_SAM_HIT_ONLY 0x40000000
|
||||||
|
|
||||||
#define MM_I_HPC 0x1
|
#define MM_I_HPC 0x1
|
||||||
#define MM_I_NO_SEQ 0x2
|
#define MM_I_NO_SEQ 0x2
|
||||||
@@ -57,15 +58,18 @@ typedef struct {
|
|||||||
char *name; // name of the db sequence
|
char *name; // name of the db sequence
|
||||||
uint64_t offset; // offset in mm_idx_t::S
|
uint64_t offset; // offset in mm_idx_t::S
|
||||||
uint32_t len; // length
|
uint32_t len; // length
|
||||||
|
uint32_t is_alt;
|
||||||
} mm_idx_seq_t;
|
} mm_idx_seq_t;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
int32_t b, w, k, flag;
|
int32_t b, w, k, flag;
|
||||||
uint32_t n_seq; // number of reference sequences
|
uint32_t n_seq; // number of reference sequences
|
||||||
int32_t index;
|
int32_t index;
|
||||||
|
int32_t n_alt;
|
||||||
mm_idx_seq_t *seq; // sequence name, length and offset
|
mm_idx_seq_t *seq; // sequence name, length and offset
|
||||||
uint32_t *S; // 4-bit packed sequence
|
uint32_t *S; // 4-bit packed sequence
|
||||||
struct mm_idx_bucket_s *B; // index (hidden)
|
struct mm_idx_bucket_s *B; // index (hidden)
|
||||||
|
struct mm_idx_intv_s *I; // intervals (hidden)
|
||||||
void *km, *h;
|
void *km, *h;
|
||||||
} mm_idx_t;
|
} mm_idx_t;
|
||||||
|
|
||||||
@@ -89,7 +93,7 @@ typedef struct {
|
|||||||
int32_t mlen, blen; // seeded exact match length; seeded alignment block length
|
int32_t mlen, blen; // seeded exact match length; seeded alignment block length
|
||||||
int32_t n_sub; // number of suboptimal mappings
|
int32_t n_sub; // number of suboptimal mappings
|
||||||
int32_t score0; // initial chaining score (before chain merging/spliting)
|
int32_t score0; // initial chaining score (before chain merging/spliting)
|
||||||
uint32_t mapq:8, split:2, rev:1, inv:1, sam_pri:1, proper_frag:1, pe_thru:1, seg_split:1, seg_id:8, split_inv:1, dummy:7;
|
uint32_t mapq:8, split:2, rev:1, inv:1, sam_pri:1, proper_frag:1, pe_thru:1, seg_split:1, seg_id:8, split_inv:1, is_alt:1, dummy:6;
|
||||||
uint32_t hash;
|
uint32_t hash;
|
||||||
float div;
|
float div;
|
||||||
mm_extra_t *p;
|
mm_extra_t *p;
|
||||||
@@ -98,23 +102,27 @@ typedef struct {
|
|||||||
// indexing and mapping options
|
// indexing and mapping options
|
||||||
typedef struct {
|
typedef struct {
|
||||||
short k, w, flag, bucket_bits;
|
short k, w, flag, bucket_bits;
|
||||||
int mini_batch_size;
|
int64_t mini_batch_size;
|
||||||
uint64_t batch_size;
|
uint64_t batch_size;
|
||||||
} mm_idxopt_t;
|
} mm_idxopt_t;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
|
int64_t flag; // see MM_F_* macros
|
||||||
int seed;
|
int seed;
|
||||||
int sdust_thres; // score threshold for SDUST; 0 to disable
|
int sdust_thres; // score threshold for SDUST; 0 to disable
|
||||||
int flag; // see MM_F_* macros
|
|
||||||
|
int max_qlen; // max query length
|
||||||
|
|
||||||
int bw; // bandwidth
|
int bw; // bandwidth
|
||||||
int max_gap, max_gap_ref; // break a chain if there are no minimizers in a max_gap window
|
int max_gap, max_gap_ref; // break a chain if there are no minimizers in a max_gap window
|
||||||
int max_frag_len;
|
int max_frag_len;
|
||||||
int max_chain_skip;
|
int max_chain_skip, max_chain_iter;
|
||||||
int min_cnt; // min number of minimizers on each chain
|
int min_cnt; // min number of minimizers on each chain
|
||||||
int min_chain_score; // min chaining score
|
int min_chain_score; // min chaining score
|
||||||
|
float chain_gap_scale;
|
||||||
|
|
||||||
float mask_level;
|
float mask_level;
|
||||||
|
int mask_len;
|
||||||
float pri_ratio;
|
float pri_ratio;
|
||||||
int best_n; // top best_n chains are subjected to DP alignment
|
int best_n; // top best_n chains are subjected to DP alignment
|
||||||
|
|
||||||
@@ -122,9 +130,12 @@ typedef struct {
|
|||||||
int min_join_flank_sc;
|
int min_join_flank_sc;
|
||||||
float min_join_flank_ratio;
|
float min_join_flank_ratio;
|
||||||
|
|
||||||
|
float alt_drop;
|
||||||
|
|
||||||
int a, b, q, e, q2, e2; // matching score, mismatch, gap-open and gap-ext penalties
|
int a, b, q, e, q2, e2; // matching score, mismatch, gap-open and gap-ext penalties
|
||||||
int sc_ambi; // score when one or both bases are "N"
|
int sc_ambi; // score when one or both bases are "N"
|
||||||
int noncan; // cost of non-canonical splicing sites
|
int noncan; // cost of non-canonical splicing sites
|
||||||
|
int junc_bonus;
|
||||||
int zdrop, zdrop_inv; // break alignment if alignment score drops too fast along the diagonal
|
int zdrop, zdrop_inv; // break alignment if alignment score drops too fast along the diagonal
|
||||||
int end_bonus;
|
int end_bonus;
|
||||||
int min_dp_max; // drop an alignment if the score of the max scoring segment is below this threshold
|
int min_dp_max; // drop an alignment if the score of the max scoring segment is below this threshold
|
||||||
@@ -138,7 +149,8 @@ typedef struct {
|
|||||||
int32_t min_mid_occ;
|
int32_t min_mid_occ;
|
||||||
int32_t mid_occ; // ignore seeds with occurrences above this threshold
|
int32_t mid_occ; // ignore seeds with occurrences above this threshold
|
||||||
int32_t max_occ;
|
int32_t max_occ;
|
||||||
int mini_batch_size; // size of a batch of query bases to process in parallel
|
int64_t mini_batch_size; // size of a batch of query bases to process in parallel
|
||||||
|
int64_t max_sw_mat;
|
||||||
|
|
||||||
const char *split_prefix;
|
const char *split_prefix;
|
||||||
} mm_mapopt_t;
|
} mm_mapopt_t;
|
||||||
@@ -362,6 +374,10 @@ int mm_idx_index_name(mm_idx_t *mi);
|
|||||||
int mm_idx_name2id(const mm_idx_t *mi, const char *name);
|
int mm_idx_name2id(const mm_idx_t *mi, const char *name);
|
||||||
int mm_idx_getseq(const mm_idx_t *mi, uint32_t rid, uint32_t st, uint32_t en, uint8_t *seq);
|
int mm_idx_getseq(const mm_idx_t *mi, uint32_t rid, uint32_t st, uint32_t en, uint8_t *seq);
|
||||||
|
|
||||||
|
int mm_idx_alt_read(mm_idx_t *mi, const char *fn);
|
||||||
|
int mm_idx_bed_read(mm_idx_t *mi, const char *fn, int read_junc);
|
||||||
|
int mm_idx_bed_junc(const mm_idx_t *mi, int32_t ctg, int32_t st, int32_t en, uint8_t *s);
|
||||||
|
|
||||||
// deprecated APIs for backward compatibility
|
// deprecated APIs for backward compatibility
|
||||||
void mm_mapopt_init(mm_mapopt_t *opt);
|
void mm_mapopt_init(mm_mapopt_t *opt);
|
||||||
mm_idx_t *mm_idx_build(const char *fn, int w, int k, int flag, int n_threads);
|
mm_idx_t *mm_idx_build(const char *fn, int w, int k, int flag, int n_threads);
|
||||||
|
|||||||
+77
-7
@@ -1,4 +1,4 @@
|
|||||||
.TH minimap2 1 "11 October 2018" "minimap2-2.13 (r850)" "Bioinformatics tools"
|
.TH minimap2 1 "9 April 2021" "minimap2-2.18 (r1015)" "Bioinformatics tools"
|
||||||
.SH NAME
|
.SH NAME
|
||||||
.PP
|
.PP
|
||||||
minimap2 - mapping and alignment between collections of DNA sequences
|
minimap2 - mapping and alignment between collections of DNA sequences
|
||||||
@@ -121,6 +121,14 @@ provided as the target sequences, options
|
|||||||
.BR -w ,
|
.BR -w ,
|
||||||
.B -I
|
.B -I
|
||||||
will be effectively overridden by the options stored in the index file.
|
will be effectively overridden by the options stored in the index file.
|
||||||
|
.TP
|
||||||
|
.BI --alt \ FILE
|
||||||
|
List of ALT contigs [null]
|
||||||
|
.TP
|
||||||
|
.BI --alt-drop \ FLOAT
|
||||||
|
Drop ALT hits by
|
||||||
|
.I FLOAT
|
||||||
|
fraction when ranking and computing mapping quality [0.15]
|
||||||
.SS Mapping options
|
.SS Mapping options
|
||||||
.TP 10
|
.TP 10
|
||||||
.BI -f \ FLOAT | INT1 [, INT2 ]
|
.BI -f \ FLOAT | INT1 [, INT2 ]
|
||||||
@@ -229,16 +237,32 @@ or more of the shorter chain [0.5]
|
|||||||
.B --hard-mask-level
|
.B --hard-mask-level
|
||||||
Honor option
|
Honor option
|
||||||
.B -M
|
.B -M
|
||||||
and disable a heurstic to save unmapped subsequences.
|
and disable a heurstic to save unmapped subsequences and disables
|
||||||
|
.BR --mask-len .
|
||||||
|
.TP
|
||||||
|
.BI --mask-len \ NUM
|
||||||
|
Keep an alignment if dropping it leaves an unaligned region on query longer than
|
||||||
|
.IR INT
|
||||||
|
[inf]. Effective without
|
||||||
|
.BR --hard-mask-level .
|
||||||
.TP
|
.TP
|
||||||
.BI --max-chain-skip \ INT
|
.BI --max-chain-skip \ INT
|
||||||
A heuristics that stops chaining early [50]. Minimap2 uses dynamic programming
|
A heuristics that stops chaining early [25]. Minimap2 uses dynamic programming
|
||||||
for chaining. The time complexity is quadratic in the number of seeds. This
|
for chaining. The time complexity is quadratic in the number of seeds. This
|
||||||
option makes minimap2 exits the inner loop if it repeatedly sees seeds already
|
option makes minimap2 exits the inner loop if it repeatedly sees seeds already
|
||||||
on chains. Set
|
on chains. Set
|
||||||
.I INT
|
.I INT
|
||||||
to a large number to switch off this heurstics.
|
to a large number to switch off this heurstics.
|
||||||
.TP
|
.TP
|
||||||
|
.BI --max-chain-iter \ INT
|
||||||
|
Check up to
|
||||||
|
.I INT
|
||||||
|
partial chains during chaining [5000]. This is a heuristic to avoid quadratic
|
||||||
|
time complexity in the worst case.
|
||||||
|
.TP
|
||||||
|
.BI --chain-gap-scale \ FLOAT
|
||||||
|
Scale of gap cost during chaining [1.0]
|
||||||
|
.TP
|
||||||
.B --no-long-join
|
.B --no-long-join
|
||||||
Disable the long gap patching heuristic. When this option is applied, the
|
Disable the long gap patching heuristic. When this option is applied, the
|
||||||
maximum alignment gap is mostly controlled by
|
maximum alignment gap is mostly controlled by
|
||||||
@@ -274,6 +298,10 @@ Only map to the reverse complement strand of the reference sequences.
|
|||||||
.BR --heap-sort = no | yes
|
.BR --heap-sort = no | yes
|
||||||
If yes, sort anchors with heap merge, instead of radix sort. Heap merge is
|
If yes, sort anchors with heap merge, instead of radix sort. Heap merge is
|
||||||
faster for short reads, but slower for long reads. [no]
|
faster for short reads, but slower for long reads. [no]
|
||||||
|
.TP
|
||||||
|
.B --no-pairing
|
||||||
|
Treat two reads in a pair as independent reads. The mate related fields in SAM
|
||||||
|
are still properly populated.
|
||||||
.SS Alignment options
|
.SS Alignment options
|
||||||
.TP 10
|
.TP 10
|
||||||
.BI -A \ INT
|
.BI -A \ INT
|
||||||
@@ -354,6 +382,17 @@ on SIRV data, please add
|
|||||||
.B --splice-flank=no
|
.B --splice-flank=no
|
||||||
to the command line.
|
to the command line.
|
||||||
.TP
|
.TP
|
||||||
|
.BR --junc-bed \ FILE
|
||||||
|
Gene annotations in the BED12 format (aka 12-column BED), or intron positions
|
||||||
|
in 5-column BED. With this option, minimap2 prefers splicing in annotations.
|
||||||
|
BED12 file can be converted from GTF/GFF3 with `paftools.js gff2bed anno.gtf'
|
||||||
|
[].
|
||||||
|
.TP
|
||||||
|
.BR --junc-bonus \ INT
|
||||||
|
Score bonus for a splice donor or acceptor found in annotation (effective with
|
||||||
|
.BR --junc-bed )
|
||||||
|
[9].
|
||||||
|
.TP
|
||||||
.BI --end-seed-pen \ INT
|
.BI --end-seed-pen \ INT
|
||||||
Drop a terminal anchor if
|
Drop a terminal anchor if
|
||||||
.IR s <log( g )+ INT ,
|
.IR s <log( g )+ INT ,
|
||||||
@@ -369,12 +408,22 @@ It helps to avoid tiny terminal exons. [6]
|
|||||||
.B --no-end-flt
|
.B --no-end-flt
|
||||||
Don't filter seeds towards the ends of chains before performing base-level
|
Don't filter seeds towards the ends of chains before performing base-level
|
||||||
alignment.
|
alignment.
|
||||||
|
.TP
|
||||||
|
.BI --cap-sw-mem \ NUM
|
||||||
|
Skip alignment if the DP matrix size is above
|
||||||
|
.IR NUM .
|
||||||
|
Set 0 to disable [0].
|
||||||
.SS Input/output options
|
.SS Input/output options
|
||||||
.TP 10
|
.TP 10
|
||||||
.B -a
|
.B -a
|
||||||
Generate CIGAR and output alignments in the SAM format. Minimap2 outputs in PAF
|
Generate CIGAR and output alignments in the SAM format. Minimap2 outputs in PAF
|
||||||
by default.
|
by default.
|
||||||
.TP
|
.TP
|
||||||
|
.BI -o \ FILE
|
||||||
|
Output alignments to
|
||||||
|
.I FILE
|
||||||
|
[stdout].
|
||||||
|
.TP
|
||||||
.B -Q
|
.B -Q
|
||||||
Ignore base quality in the input file.
|
Ignore base quality in the input file.
|
||||||
.TP
|
.TP
|
||||||
@@ -449,6 +498,18 @@ memory.
|
|||||||
.BR --secondary = yes | no
|
.BR --secondary = yes | no
|
||||||
Whether to output secondary alignments [yes]
|
Whether to output secondary alignments [yes]
|
||||||
.TP
|
.TP
|
||||||
|
.BI --max-qlen \ NUM
|
||||||
|
Filter out query sequences longer than
|
||||||
|
.IR NUM .
|
||||||
|
.TP
|
||||||
|
.B --paf-no-hit
|
||||||
|
In PAF, output unmapped queries; the strand and the reference name fields are
|
||||||
|
set to `*'. Warning: some paftools.js commands may not work with such output
|
||||||
|
for the moment.
|
||||||
|
.TP
|
||||||
|
.B --sam-hit-only
|
||||||
|
In SAM, don't output unmapped reads.
|
||||||
|
.TP
|
||||||
.B --version
|
.B --version
|
||||||
Print version number to stdout
|
Print version number to stdout
|
||||||
.SS Preset options
|
.SS Preset options
|
||||||
@@ -478,7 +539,7 @@ is determined by the sequencing error mode.
|
|||||||
.B asm5
|
.B asm5
|
||||||
Long assembly to reference mapping
|
Long assembly to reference mapping
|
||||||
.RB ( -k19
|
.RB ( -k19
|
||||||
.B -w19 -A1 -B19 -O39,81 -E3,1 -s200 -z200
|
.B -w19 -A1 -B19 -O39,81 -E3,1 -s200 -z200 -N50
|
||||||
.BR --min-occ-floor=100 ).
|
.BR --min-occ-floor=100 ).
|
||||||
Typically, the alignment will not extend to regions with 5% or higher sequence
|
Typically, the alignment will not extend to regions with 5% or higher sequence
|
||||||
divergence. Only use this preset if the average divergence is far below 5%.
|
divergence. Only use this preset if the average divergence is far below 5%.
|
||||||
@@ -486,14 +547,14 @@ divergence. Only use this preset if the average divergence is far below 5%.
|
|||||||
.B asm10
|
.B asm10
|
||||||
Long assembly to reference mapping
|
Long assembly to reference mapping
|
||||||
.RB ( -k19
|
.RB ( -k19
|
||||||
.B -w19 -A1 -B9 -O16,41 -E2,1 -s200 -z200
|
.B -w19 -A1 -B9 -O16,41 -E2,1 -s200 -z200 -N50
|
||||||
.BR --min-occ-floor=100 ).
|
.BR --min-occ-floor=100 ).
|
||||||
Up to 10% sequence divergence.
|
Up to 10% sequence divergence.
|
||||||
.TP
|
.TP
|
||||||
.B asm20
|
.B asm20
|
||||||
Long assembly to reference mapping
|
Long assembly to reference mapping
|
||||||
.RB ( -k19
|
.RB ( -k19
|
||||||
.B -w10 -A1 -B6 -O6,26 -E2,1 -s200 -z200
|
.B -w10 -A1 -B4 -O6,26 -E2,1 -s200 -z200 -N50
|
||||||
.BR --min-occ-floor=100 ).
|
.BR --min-occ-floor=100 ).
|
||||||
Up to 20% sequence divergence.
|
Up to 20% sequence divergence.
|
||||||
.TP
|
.TP
|
||||||
@@ -515,7 +576,7 @@ is that this preset is not using HPC minimizers.
|
|||||||
.B splice
|
.B splice
|
||||||
Long-read spliced alignment
|
Long-read spliced alignment
|
||||||
.RB ( -k15
|
.RB ( -k15
|
||||||
.B -w5 --splice -g2000 -G200k -A1 -B2 -O2,32 -E1,0 -C9 -z200 -ub
|
.B -w5 --splice -g2000 -G200k -A1 -B2 -O2,32 -E1,0 -C9 -z200 -ub --junc-bonus=9
|
||||||
.BR --splice-flank=yes ).
|
.BR --splice-flank=yes ).
|
||||||
In the splice mode, 1) long deletions are taken as introns and represented as
|
In the splice mode, 1) long deletions are taken as introns and represented as
|
||||||
the
|
the
|
||||||
@@ -525,6 +586,12 @@ costs are different during chaining; 4) the computation of the
|
|||||||
.RB ` ms '
|
.RB ` ms '
|
||||||
tag ignores introns to demote hits to pseudogenes.
|
tag ignores introns to demote hits to pseudogenes.
|
||||||
.TP
|
.TP
|
||||||
|
.B splice:hq
|
||||||
|
Long-read splice alignment for PacBio CCS reads
|
||||||
|
.RB ( -xsplice
|
||||||
|
.B -C5 -O6,24
|
||||||
|
.BR -B4 ).
|
||||||
|
.TP
|
||||||
.B sr
|
.B sr
|
||||||
Short single-end reads without splicing
|
Short single-end reads without splicing
|
||||||
.RB ( -k21
|
.RB ( -k21
|
||||||
@@ -589,12 +656,15 @@ s2 i Chaining score of the best secondary chain
|
|||||||
NM i Total number of mismatches and gaps in the alignment
|
NM i Total number of mismatches and gaps in the alignment
|
||||||
MD Z To generate the ref sequence in the alignment
|
MD Z To generate the ref sequence in the alignment
|
||||||
AS i DP alignment score
|
AS i DP alignment score
|
||||||
|
SA Z List of other supplementary alignments
|
||||||
ms i DP score of the max scoring segment in the alignment
|
ms i DP score of the max scoring segment in the alignment
|
||||||
nn i Number of ambiguous bases in the alignment
|
nn i Number of ambiguous bases in the alignment
|
||||||
ts A Transcript strand (splice mode only)
|
ts A Transcript strand (splice mode only)
|
||||||
cg Z CIGAR string (only in PAF)
|
cg Z CIGAR string (only in PAF)
|
||||||
cs Z Difference string
|
cs Z Difference string
|
||||||
dv f Approximate per-base sequence divergence
|
dv f Approximate per-base sequence divergence
|
||||||
|
de f Gap-compressed per-base sequence divergence
|
||||||
|
rl i Length of query regions harboring repetitive seeds
|
||||||
.TE
|
.TE
|
||||||
|
|
||||||
.PP
|
.PP
|
||||||
|
|||||||
@@ -116,8 +116,7 @@ long peakrss(void)
|
|||||||
double realtime(void)
|
double realtime(void)
|
||||||
{
|
{
|
||||||
struct timeval tp;
|
struct timeval tp;
|
||||||
struct timezone tzp;
|
gettimeofday(&tp, NULL);
|
||||||
gettimeofday(&tp, &tzp);
|
|
||||||
return tp.tv_sec + tp.tv_usec * 1e-6;
|
return tp.tv_sec + tp.tv_usec * 1e-6;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -126,7 +125,7 @@ void mm_err_puts(const char *str)
|
|||||||
int ret;
|
int ret;
|
||||||
ret = puts(str);
|
ret = puts(str);
|
||||||
if (ret == EOF) {
|
if (ret == EOF) {
|
||||||
fprintf(stderr, "[ERROR] failed to write the results\n");
|
perror("[ERROR] failed to write the results");
|
||||||
exit(EXIT_FAILURE);
|
exit(EXIT_FAILURE);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -136,7 +135,7 @@ void mm_err_fwrite(const void *p, size_t size, size_t nitems, FILE *fp)
|
|||||||
int ret;
|
int ret;
|
||||||
ret = fwrite(p, size, nitems, fp);
|
ret = fwrite(p, size, nitems, fp);
|
||||||
if (ret == EOF) {
|
if (ret == EOF) {
|
||||||
fprintf(stderr, "[ERROR] failed to write data\n");
|
perror("[ERROR] failed to write data");
|
||||||
exit(EXIT_FAILURE);
|
exit(EXIT_FAILURE);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -146,7 +145,7 @@ void mm_err_fread(void *p, size_t size, size_t nitems, FILE *fp)
|
|||||||
int ret;
|
int ret;
|
||||||
ret = fread(p, size, nitems, fp);
|
ret = fread(p, size, nitems, fp);
|
||||||
if (ret == EOF) {
|
if (ret == EOF) {
|
||||||
fprintf(stderr, "[ERROR] failed to read data\n");
|
perror("[ERROR] failed to read data");
|
||||||
exit(EXIT_FAILURE);
|
exit(EXIT_FAILURE);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|||||||
+720
-53
File diff suppressed because it is too large
Load Diff
@@ -4,6 +4,7 @@
|
|||||||
#include <assert.h>
|
#include <assert.h>
|
||||||
#include "minimap.h"
|
#include "minimap.h"
|
||||||
#include "bseq.h"
|
#include "bseq.h"
|
||||||
|
#include "kseq.h"
|
||||||
|
|
||||||
#define MM_PARENT_UNSET (-1)
|
#define MM_PARENT_UNSET (-1)
|
||||||
#define MM_PARENT_TMP_PRI (-2)
|
#define MM_PARENT_TMP_PRI (-2)
|
||||||
@@ -35,14 +36,6 @@
|
|||||||
extern "C" {
|
extern "C" {
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#ifndef KSTRING_T
|
|
||||||
#define KSTRING_T kstring_t
|
|
||||||
typedef struct __kstring_t {
|
|
||||||
unsigned l, m;
|
|
||||||
char *s;
|
|
||||||
} kstring_t;
|
|
||||||
#endif
|
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
int n_u, n_a;
|
int n_u, n_a;
|
||||||
uint64_t *u;
|
uint64_t *u;
|
||||||
@@ -59,28 +52,31 @@ uint32_t ks_ksmall_uint32_t(size_t n, uint32_t arr[], size_t kk);
|
|||||||
|
|
||||||
void mm_sketch(void *km, const char *str, int len, int w, int k, uint32_t rid, int is_hpc, mm128_v *p);
|
void mm_sketch(void *km, const char *str, int len, int w, int k, uint32_t rid, int is_hpc, mm128_v *p);
|
||||||
|
|
||||||
void mm_write_sam_hdr(const mm_idx_t *mi, const char *rg, const char *ver, int argc, char *argv[]);
|
int mm_write_sam_hdr(const mm_idx_t *mi, const char *rg, const char *ver, int argc, char *argv[]);
|
||||||
void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag);
|
void mm_write_paf(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag);
|
||||||
|
void mm_write_paf3(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, void *km, int opt_flag, int rep_len);
|
||||||
void mm_write_sam(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, int n_regs, const mm_reg1_t *regs);
|
void mm_write_sam(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, const mm_reg1_t *r, int n_regs, const mm_reg1_t *regs);
|
||||||
void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regs, const mm_reg1_t *const* regs, void *km, int opt_flag);
|
void mm_write_sam2(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regs, const mm_reg1_t *const* regs, void *km, int opt_flag);
|
||||||
|
void mm_write_sam3(kstring_t *s, const mm_idx_t *mi, const mm_bseq1_t *t, int seg_idx, int reg_idx, int n_seg, const int *n_regss, const mm_reg1_t *const* regss, void *km, int opt_flag, int rep_len);
|
||||||
|
|
||||||
void mm_idxopt_init(mm_idxopt_t *opt);
|
void mm_idxopt_init(mm_idxopt_t *opt);
|
||||||
const uint64_t *mm_idx_get(const mm_idx_t *mi, uint64_t minier, int *n);
|
const uint64_t *mm_idx_get(const mm_idx_t *mi, uint64_t minier, int *n);
|
||||||
int32_t mm_idx_cal_max_occ(const mm_idx_t *mi, float f);
|
int32_t mm_idx_cal_max_occ(const mm_idx_t *mi, float f);
|
||||||
mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int min_cnt, int min_sc, int is_cdna, int n_segs, int64_t n, mm128_t *a, int *n_u_, uint64_t **_u, void *km);
|
mm128_t *mm_chain_dp(int max_dist_x, int max_dist_y, int bw, int max_skip, int max_iter, int min_cnt, int min_sc, float gap_scale, int is_cdna, int n_segs, int64_t n, mm128_t *a, int *n_u_, uint64_t **_u, void *km);
|
||||||
mm_reg1_t *mm_align_skeleton(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int qlen, const char *qstr, int *n_regs_, mm_reg1_t *regs, mm128_t *a);
|
mm_reg1_t *mm_align_skeleton(void *km, const mm_mapopt_t *opt, const mm_idx_t *mi, int qlen, const char *qstr, int *n_regs_, mm_reg1_t *regs, mm128_t *a);
|
||||||
|
|
||||||
mm_reg1_t *mm_gen_regs(void *km, uint32_t hash, int qlen, int n_u, uint64_t *u, mm128_t *a);
|
mm_reg1_t *mm_gen_regs(void *km, uint32_t hash, int qlen, int n_u, uint64_t *u, mm128_t *a);
|
||||||
|
void mm_mark_alt(const mm_idx_t *mi, int n, mm_reg1_t *r);
|
||||||
void mm_split_reg(mm_reg1_t *r, mm_reg1_t *r2, int n, int qlen, mm128_t *a);
|
void mm_split_reg(mm_reg1_t *r, mm_reg1_t *r2, int n, int qlen, mm128_t *a);
|
||||||
void mm_sync_regs(void *km, int n_regs, mm_reg1_t *regs);
|
void mm_sync_regs(void *km, int n_regs, mm_reg1_t *regs);
|
||||||
int mm_squeeze_a(void *km, int n_regs, mm_reg1_t *regs, mm128_t *a);
|
int mm_squeeze_a(void *km, int n_regs, mm_reg1_t *regs, mm128_t *a);
|
||||||
int mm_set_sam_pri(int n, mm_reg1_t *r);
|
int mm_set_sam_pri(int n, mm_reg1_t *r);
|
||||||
void mm_set_parent(void *km, float mask_level, int n, mm_reg1_t *r, int sub_diff, int hard_mask_level);
|
void mm_set_parent(void *km, float mask_level, int mask_len, int n, mm_reg1_t *r, int sub_diff, int hard_mask_level, float alt_diff_frac);
|
||||||
void mm_select_sub(void *km, float pri_ratio, int min_diff, int best_n, int *n_, mm_reg1_t *r);
|
void mm_select_sub(void *km, float pri_ratio, int min_diff, int best_n, int *n_, mm_reg1_t *r);
|
||||||
void mm_select_sub_multi(void *km, float pri_ratio, float pri1, float pri2, int max_gap_ref, int min_diff, int best_n, int n_segs, const int *qlens, int *n_, mm_reg1_t *r);
|
void mm_select_sub_multi(void *km, float pri_ratio, float pri1, float pri2, int max_gap_ref, int min_diff, int best_n, int n_segs, const int *qlens, int *n_, mm_reg1_t *r);
|
||||||
void mm_filter_regs(const mm_mapopt_t *opt, int qlen, int *n_regs, mm_reg1_t *regs);
|
void mm_filter_regs(const mm_mapopt_t *opt, int qlen, int *n_regs, mm_reg1_t *regs);
|
||||||
void mm_join_long(void *km, const mm_mapopt_t *opt, int qlen, int *n_regs, mm_reg1_t *regs, mm128_t *a);
|
void mm_join_long(void *km, const mm_mapopt_t *opt, int qlen, int *n_regs, mm_reg1_t *regs, mm128_t *a);
|
||||||
void mm_hit_sort(void *km, int *n_regs, mm_reg1_t *r);
|
void mm_hit_sort(void *km, int *n_regs, mm_reg1_t *r, float alt_diff_frac);
|
||||||
void mm_set_mapq(void *km, int n_regs, mm_reg1_t *regs, int min_chain_sc, int match_sc, int rep_len, int is_sr);
|
void mm_set_mapq(void *km, int n_regs, mm_reg1_t *regs, int min_chain_sc, int match_sc, int rep_len, int is_sr);
|
||||||
|
|
||||||
void mm_est_err(const mm_idx_t *mi, int qlen, int n_regs, mm_reg1_t *regs, const mm128_t *a, int32_t n, const uint64_t *mini_pos);
|
void mm_est_err(const mm_idx_t *mi, int qlen, int n_regs, mm_reg1_t *regs, const mm128_t *a, int32_t n, const uint64_t *mini_pos);
|
||||||
|
|||||||
@@ -1,4 +1,5 @@
|
|||||||
#include <stdio.h>
|
#include <stdio.h>
|
||||||
|
#include <limits.h>
|
||||||
#include "mmpriv.h"
|
#include "mmpriv.h"
|
||||||
|
|
||||||
void mm_idxopt_init(mm_idxopt_t *opt)
|
void mm_idxopt_init(mm_idxopt_t *opt)
|
||||||
@@ -23,8 +24,11 @@ void mm_mapopt_init(mm_mapopt_t *opt)
|
|||||||
opt->max_gap = 5000;
|
opt->max_gap = 5000;
|
||||||
opt->max_gap_ref = -1;
|
opt->max_gap_ref = -1;
|
||||||
opt->max_chain_skip = 25;
|
opt->max_chain_skip = 25;
|
||||||
|
opt->max_chain_iter = 5000;
|
||||||
|
opt->chain_gap_scale = 1.0f;
|
||||||
|
|
||||||
opt->mask_level = 0.5f;
|
opt->mask_level = 0.5f;
|
||||||
|
opt->mask_len = INT_MAX;
|
||||||
opt->pri_ratio = 0.8f;
|
opt->pri_ratio = 0.8f;
|
||||||
opt->best_n = 5;
|
opt->best_n = 5;
|
||||||
|
|
||||||
@@ -33,6 +37,8 @@ void mm_mapopt_init(mm_mapopt_t *opt)
|
|||||||
opt->min_join_flank_sc = 1000;
|
opt->min_join_flank_sc = 1000;
|
||||||
opt->min_join_flank_ratio = 0.5f;
|
opt->min_join_flank_ratio = 0.5f;
|
||||||
|
|
||||||
|
opt->alt_drop = 0.15f;
|
||||||
|
|
||||||
opt->a = 2, opt->b = 4, opt->q = 4, opt->e = 2, opt->q2 = 24, opt->e2 = 1;
|
opt->a = 2, opt->b = 4, opt->q = 4, opt->e = 2, opt->q2 = 24, opt->e2 = 1;
|
||||||
opt->sc_ambi = 1;
|
opt->sc_ambi = 1;
|
||||||
opt->zdrop = 400, opt->zdrop_inv = 200;
|
opt->zdrop = 400, opt->zdrop_inv = 200;
|
||||||
@@ -119,13 +125,16 @@ int mm_set_opt(const char *preset, mm_idxopt_t *io, mm_mapopt_t *mo)
|
|||||||
mo->mid_occ = 1000;
|
mo->mid_occ = 1000;
|
||||||
mo->max_occ = 5000;
|
mo->max_occ = 5000;
|
||||||
mo->mini_batch_size = 50000000;
|
mo->mini_batch_size = 50000000;
|
||||||
} else if (strcmp(preset, "splice") == 0 || strcmp(preset, "cdna") == 0) {
|
} else if (strncmp(preset, "splice", 6) == 0 || strcmp(preset, "cdna") == 0) {
|
||||||
io->flag = 0, io->k = 15, io->w = 5;
|
io->flag = 0, io->k = 15, io->w = 5;
|
||||||
mo->flag |= MM_F_SPLICE | MM_F_SPLICE_FOR | MM_F_SPLICE_REV | MM_F_SPLICE_FLANK;
|
mo->flag |= MM_F_SPLICE | MM_F_SPLICE_FOR | MM_F_SPLICE_REV | MM_F_SPLICE_FLANK;
|
||||||
mo->max_gap = 2000, mo->max_gap_ref = mo->bw = 200000;
|
mo->max_gap = 2000, mo->max_gap_ref = mo->bw = 200000;
|
||||||
mo->a = 1, mo->b = 2, mo->q = 2, mo->e = 1, mo->q2 = 32, mo->e2 = 0;
|
mo->a = 1, mo->b = 2, mo->q = 2, mo->e = 1, mo->q2 = 32, mo->e2 = 0;
|
||||||
mo->noncan = 9;
|
mo->noncan = 9;
|
||||||
|
mo->junc_bonus = 9;
|
||||||
mo->zdrop = 200, mo->zdrop_inv = 100; // because mo->a is halved
|
mo->zdrop = 200, mo->zdrop_inv = 100; // because mo->a is halved
|
||||||
|
if (strcmp(preset, "splice:hq") == 0)
|
||||||
|
mo->junc_bonus = 5, mo->b = 4, mo->q = 6, mo->q2 = 24;
|
||||||
} else return -1;
|
} else return -1;
|
||||||
return 0;
|
return 0;
|
||||||
}
|
}
|
||||||
@@ -159,6 +168,11 @@ int mm_check_opt(const mm_idxopt_t *io, const mm_mapopt_t *mo)
|
|||||||
fprintf(stderr, "[ERROR]\033[1;31m --for-only and --rev-only can't be applied at the same time\033[0m\n");
|
fprintf(stderr, "[ERROR]\033[1;31m --for-only and --rev-only can't be applied at the same time\033[0m\n");
|
||||||
return -3;
|
return -3;
|
||||||
}
|
}
|
||||||
|
if (mo->e <= 0 || mo->q <= 0) {
|
||||||
|
if (mm_verbose >= 1)
|
||||||
|
fprintf(stderr, "[ERROR]\033[1;31m -O and -E must be positive\033[0m\n");
|
||||||
|
return -1;
|
||||||
|
}
|
||||||
if ((mo->q != mo->q2 || mo->e != mo->e2) && !(mo->e > mo->e2 && mo->q + mo->e < mo->q2 + mo->e2)) {
|
if ((mo->q != mo->q2 || mo->e != mo->e2) && !(mo->e > mo->e2 && mo->q + mo->e < mo->q2 + mo->e2)) {
|
||||||
if (mm_verbose >= 1)
|
if (mm_verbose >= 1)
|
||||||
fprintf(stderr, "[ERROR]\033[1;31m dual gap penalties violating E1>E2 and O1+E1<O2+E2\033[0m\n");
|
fprintf(stderr, "[ERROR]\033[1;31m dual gap penalties violating E1>E2 and O1+E1<O2+E2\033[0m\n");
|
||||||
|
|||||||
@@ -54,7 +54,7 @@ void mm_set_pe_thru(const int *qlens, int *n_regs, mm_reg1_t **regs)
|
|||||||
if (n_pri[0] == 1 && n_pri[1] == 1) {
|
if (n_pri[0] == 1 && n_pri[1] == 1) {
|
||||||
mm_reg1_t *p = ®s[0][pri[0]];
|
mm_reg1_t *p = ®s[0][pri[0]];
|
||||||
mm_reg1_t *q = ®s[1][pri[1]];
|
mm_reg1_t *q = ®s[1][pri[1]];
|
||||||
if (p->rid == q->rid && p->rev == q->rev && abs(p->rs - q->rs) < 3 && abs(p->re - p->re) < 3
|
if (p->rid == q->rid && p->rev == q->rev && abs(p->rs - q->rs) < 3 && abs(p->re - q->re) < 3
|
||||||
&& ((p->qs == 0 && qlens[1] - q->qe == 0) || (q->qs == 0 && qlens[0] - p->qe == 0)))
|
&& ((p->qs == 0 && qlens[1] - q->qe == 0) || (q->qs == 0 && qlens[0] - p->qe == 0)))
|
||||||
{
|
{
|
||||||
p->pe_thru = q->pe_thru = 1;
|
p->pe_thru = q->pe_thru = 1;
|
||||||
|
|||||||
@@ -114,6 +114,12 @@ This method retrieves a (sub)sequence from the index and returns it as a Python
|
|||||||
string. :code:`None` is returned if :code:`name` is not present in the index or
|
string. :code:`None` is returned if :code:`name` is not present in the index or
|
||||||
the start/end coordinates are invalid.
|
the start/end coordinates are invalid.
|
||||||
|
|
||||||
|
.. code:: python
|
||||||
|
|
||||||
|
mappy.Aligner.seq_names
|
||||||
|
|
||||||
|
This property gives the array of sequence names in the index.
|
||||||
|
|
||||||
Class mappy.Alignment
|
Class mappy.Alignment
|
||||||
~~~~~~~~~~~~~~~~~~~~~
|
~~~~~~~~~~~~~~~~~~~~~
|
||||||
|
|
||||||
|
|||||||
+11
-5
@@ -6,28 +6,33 @@ cdef extern from "minimap.h":
|
|||||||
#
|
#
|
||||||
ctypedef struct mm_idxopt_t:
|
ctypedef struct mm_idxopt_t:
|
||||||
short k, w, flag, bucket_bits
|
short k, w, flag, bucket_bits
|
||||||
int mini_batch_size
|
int64_t mini_batch_size
|
||||||
uint64_t batch_size
|
uint64_t batch_size
|
||||||
|
|
||||||
ctypedef struct mm_mapopt_t:
|
ctypedef struct mm_mapopt_t:
|
||||||
|
int64_t flag
|
||||||
int seed
|
int seed
|
||||||
int sdust_thres
|
int sdust_thres
|
||||||
int flag
|
int max_qlen
|
||||||
int bw
|
int bw
|
||||||
int max_gap, max_gap_ref
|
int max_gap, max_gap_ref
|
||||||
int max_frag_len
|
int max_frag_len
|
||||||
int max_chain_skip
|
int max_chain_skip, max_chain_iter
|
||||||
int min_cnt
|
int min_cnt
|
||||||
int min_chain_score
|
int min_chain_score
|
||||||
|
float chain_gap_scale
|
||||||
float mask_level
|
float mask_level
|
||||||
|
int mask_len
|
||||||
float pri_ratio
|
float pri_ratio
|
||||||
int best_n
|
int best_n
|
||||||
int max_join_long, max_join_short
|
int max_join_long, max_join_short
|
||||||
int min_join_flank_sc
|
int min_join_flank_sc
|
||||||
float min_join_flank_ratio;
|
float min_join_flank_ratio
|
||||||
|
float alt_drop
|
||||||
int a, b, q, e, q2, e2
|
int a, b, q, e, q2, e2
|
||||||
int sc_ambi
|
int sc_ambi
|
||||||
int noncan
|
int noncan
|
||||||
|
int junc_bonus
|
||||||
int zdrop, zdrop_inv
|
int zdrop, zdrop_inv
|
||||||
int end_bonus
|
int end_bonus
|
||||||
int min_dp_max
|
int min_dp_max
|
||||||
@@ -39,7 +44,8 @@ cdef extern from "minimap.h":
|
|||||||
int32_t min_mid_occ
|
int32_t min_mid_occ
|
||||||
int32_t mid_occ
|
int32_t mid_occ
|
||||||
int32_t max_occ
|
int32_t max_occ
|
||||||
int mini_batch_size
|
int64_t mini_batch_size
|
||||||
|
int64_t max_sw_mat
|
||||||
const char *split_prefix
|
const char *split_prefix
|
||||||
|
|
||||||
int mm_set_opt(char *preset, mm_idxopt_t *io, mm_mapopt_t *mo)
|
int mm_set_opt(char *preset, mm_idxopt_t *io, mm_mapopt_t *mo)
|
||||||
|
|||||||
+42
-20
@@ -3,7 +3,7 @@ from libc.stdlib cimport free
|
|||||||
cimport cmappy
|
cimport cmappy
|
||||||
import sys
|
import sys
|
||||||
|
|
||||||
__version__ = '2.13'
|
__version__ = '2.18'
|
||||||
|
|
||||||
cmappy.mm_reset_timer()
|
cmappy.mm_reset_timer()
|
||||||
|
|
||||||
@@ -113,6 +113,7 @@ cdef class Aligner:
|
|||||||
cdef cmappy.mm_mapopt_t map_opt
|
cdef cmappy.mm_mapopt_t map_opt
|
||||||
|
|
||||||
def __cinit__(self, fn_idx_in=None, preset=None, k=None, w=None, min_cnt=None, min_chain_score=None, min_dp_score=None, bw=None, best_n=None, n_threads=3, fn_idx_out=None, max_frag_len=None, extra_flags=None, seq=None, scoring=None):
|
def __cinit__(self, fn_idx_in=None, preset=None, k=None, w=None, min_cnt=None, min_chain_score=None, min_dp_score=None, bw=None, best_n=None, n_threads=3, fn_idx_out=None, max_frag_len=None, extra_flags=None, seq=None, scoring=None):
|
||||||
|
self._idx = NULL
|
||||||
cmappy.mm_set_opt(NULL, &self.idx_opt, &self.map_opt) # set the default options
|
cmappy.mm_set_opt(NULL, &self.idx_opt, &self.map_opt) # set the default options
|
||||||
if preset is not None:
|
if preset is not None:
|
||||||
cmappy.mm_set_opt(str.encode(preset), &self.idx_opt, &self.map_opt) # apply preset
|
cmappy.mm_set_opt(str.encode(preset), &self.idx_opt, &self.map_opt) # apply preset
|
||||||
@@ -142,7 +143,7 @@ cdef class Aligner:
|
|||||||
if fn_idx_out is None:
|
if fn_idx_out is None:
|
||||||
r = cmappy.mm_idx_reader_open(str.encode(fn_idx_in), &self.idx_opt, NULL)
|
r = cmappy.mm_idx_reader_open(str.encode(fn_idx_in), &self.idx_opt, NULL)
|
||||||
else:
|
else:
|
||||||
r = cmappy.mm_idx_reader_open(str.encode(fn_idx_in), &self.idx_opt, fn_idx_out)
|
r = cmappy.mm_idx_reader_open(str.encode(fn_idx_in), &self.idx_opt, str.encode(fn_idx_out))
|
||||||
if r is not NULL:
|
if r is not NULL:
|
||||||
self._idx = cmappy.mm_idx_reader_read(r, n_threads) # NB: ONLY read the first part
|
self._idx = cmappy.mm_idx_reader_read(r, n_threads) # NB: ONLY read the first part
|
||||||
cmappy.mm_idx_reader_close(r)
|
cmappy.mm_idx_reader_close(r)
|
||||||
@@ -170,6 +171,7 @@ cdef class Aligner:
|
|||||||
cdef void *km
|
cdef void *km
|
||||||
cdef cmappy.mm_mapopt_t map_opt
|
cdef cmappy.mm_mapopt_t map_opt
|
||||||
|
|
||||||
|
if self._idx == NULL: return
|
||||||
map_opt = self.map_opt
|
map_opt = self.map_opt
|
||||||
if max_frag_len is not None: map_opt.max_frag_len = max_frag_len
|
if max_frag_len is not None: map_opt.max_frag_len = max_frag_len
|
||||||
if extra_flags is not None: map_opt.flag |= extra_flags
|
if extra_flags is not None: map_opt.flag |= extra_flags
|
||||||
@@ -186,27 +188,36 @@ cdef class Aligner:
|
|||||||
_seq2 = seq2 if isinstance(seq2, bytes) else seq2.encode()
|
_seq2 = seq2 if isinstance(seq2, bytes) else seq2.encode()
|
||||||
regs = cmappy.mm_map_aux(self._idx, _seq, _seq2, &n_regs, b._b, &map_opt)
|
regs = cmappy.mm_map_aux(self._idx, _seq, _seq2, &n_regs, b._b, &map_opt)
|
||||||
|
|
||||||
for i in range(n_regs):
|
try:
|
||||||
cmappy.mm_reg2hitpy(self._idx, ®s[i], &h)
|
i = 0
|
||||||
cigar, _cs, _MD = [], '', ''
|
while i < n_regs:
|
||||||
for k in range(h.n_cigar32): # convert the 32-bit CIGAR encoding to Python array
|
cmappy.mm_reg2hitpy(self._idx, ®s[i], &h)
|
||||||
c = h.cigar32[k]
|
cigar, _cs, _MD = [], '', ''
|
||||||
cigar.append([c>>4, c&0xf])
|
for k in range(h.n_cigar32): # convert the 32-bit CIGAR encoding to Python array
|
||||||
if cs or MD: # generate the cs and/or the MD tag, if requested
|
c = h.cigar32[k]
|
||||||
if cs:
|
cigar.append([c>>4, c&0xf])
|
||||||
l_cs_str = cmappy.mm_gen_cs(km, &cs_str, &m_cs_str, self._idx, ®s[i], _seq, 1)
|
if cs or MD: # generate the cs and/or the MD tag, if requested
|
||||||
_cs = cs_str[:l_cs_str] if isinstance(cs_str, str) else cs_str[:l_cs_str].decode()
|
if cs:
|
||||||
if MD:
|
l_cs_str = cmappy.mm_gen_cs(km, &cs_str, &m_cs_str, self._idx, ®s[i], _seq, 1)
|
||||||
l_cs_str = cmappy.mm_gen_MD(km, &cs_str, &m_cs_str, self._idx, ®s[i], _seq)
|
_cs = cs_str[:l_cs_str] if isinstance(cs_str, str) else cs_str[:l_cs_str].decode()
|
||||||
_MD = cs_str[:l_cs_str] if isinstance(cs_str, str) else cs_str[:l_cs_str].decode()
|
if MD:
|
||||||
yield Alignment(h.ctg, h.ctg_len, h.ctg_start, h.ctg_end, h.strand, h.qry_start, h.qry_end, h.mapq, cigar, h.is_primary, h.mlen, h.blen, h.NM, h.trans_strand, h.seg_id, _cs, _MD)
|
l_cs_str = cmappy.mm_gen_MD(km, &cs_str, &m_cs_str, self._idx, ®s[i], _seq)
|
||||||
cmappy.mm_free_reg1(®s[i])
|
_MD = cs_str[:l_cs_str] if isinstance(cs_str, str) else cs_str[:l_cs_str].decode()
|
||||||
free(regs)
|
yield Alignment(h.ctg, h.ctg_len, h.ctg_start, h.ctg_end, h.strand, h.qry_start, h.qry_end, h.mapq, cigar, h.is_primary, h.mlen, h.blen, h.NM, h.trans_strand, h.seg_id, _cs, _MD)
|
||||||
free(cs_str)
|
cmappy.mm_free_reg1(®s[i])
|
||||||
|
i += 1
|
||||||
|
finally:
|
||||||
|
while i < n_regs:
|
||||||
|
cmappy.mm_free_reg1(®s[i])
|
||||||
|
i += 1
|
||||||
|
free(regs)
|
||||||
|
free(cs_str)
|
||||||
|
|
||||||
def seq(self, str name, int start=0, int end=0x7fffffff):
|
def seq(self, str name, int start=0, int end=0x7fffffff):
|
||||||
cdef int l
|
cdef int l
|
||||||
cdef char *s = cmappy.mappy_fetch_seq(self._idx, name.encode(), start, end, &l)
|
cdef char *s
|
||||||
|
if self._idx == NULL: return
|
||||||
|
s = cmappy.mappy_fetch_seq(self._idx, name.encode(), start, end, &l)
|
||||||
if l == 0: return None
|
if l == 0: return None
|
||||||
r = s[:l] if isinstance(s, str) else s[:l].decode()
|
r = s[:l] if isinstance(s, str) else s[:l].decode()
|
||||||
free(s)
|
free(s)
|
||||||
@@ -221,6 +232,17 @@ cdef class Aligner:
|
|||||||
@property
|
@property
|
||||||
def n_seq(self): return self._idx.n_seq
|
def n_seq(self): return self._idx.n_seq
|
||||||
|
|
||||||
|
@property
|
||||||
|
def seq_names(self):
|
||||||
|
cdef char *p
|
||||||
|
if self._idx == NULL: return
|
||||||
|
sn = []
|
||||||
|
for i in range(self._idx.n_seq):
|
||||||
|
p = self._idx.seq[i].name
|
||||||
|
s = p if isinstance(p, str) else p.decode()
|
||||||
|
sn.append(s)
|
||||||
|
return sn
|
||||||
|
|
||||||
def fastx_read(fn, read_comment=False):
|
def fastx_read(fn, read_comment=False):
|
||||||
cdef cmappy.kseq_t *ks
|
cdef cmappy.kseq_t *ks
|
||||||
ks = cmappy.mm_fastx_open(str.encode(fn))
|
ks = cmappy.mm_fastx_open(str.encode(fn))
|
||||||
|
|||||||
@@ -4,16 +4,6 @@ except ImportError:
|
|||||||
from distutils.core import setup
|
from distutils.core import setup
|
||||||
from distutils.extension import Extension
|
from distutils.extension import Extension
|
||||||
|
|
||||||
cmdclass = {}
|
|
||||||
|
|
||||||
try:
|
|
||||||
from Cython.Build import build_ext
|
|
||||||
except ImportError: # without Cython
|
|
||||||
module_src = 'python/mappy.c'
|
|
||||||
else: # with Cython
|
|
||||||
module_src = 'python/mappy.pyx'
|
|
||||||
cmdclass['build_ext'] = build_ext
|
|
||||||
|
|
||||||
import sys, platform
|
import sys, platform
|
||||||
|
|
||||||
sys.path.append('python')
|
sys.path.append('python')
|
||||||
@@ -33,7 +23,7 @@ def readme():
|
|||||||
|
|
||||||
setup(
|
setup(
|
||||||
name = 'mappy',
|
name = 'mappy',
|
||||||
version = '2.13',
|
version = '2.18',
|
||||||
url = 'https://github.com/lh3/minimap2',
|
url = 'https://github.com/lh3/minimap2',
|
||||||
description = 'Minimap2 python binding',
|
description = 'Minimap2 python binding',
|
||||||
long_description = readme(),
|
long_description = readme(),
|
||||||
@@ -42,8 +32,8 @@ setup(
|
|||||||
license = 'MIT',
|
license = 'MIT',
|
||||||
keywords = 'sequence-alignment',
|
keywords = 'sequence-alignment',
|
||||||
scripts = ['python/minimap2.py'],
|
scripts = ['python/minimap2.py'],
|
||||||
ext_modules = [Extension('mappy',
|
ext_modules = [Extension('mappy',
|
||||||
sources = [module_src, 'align.c', 'bseq.c', 'chain.c', 'format.c', 'hit.c', 'index.c', 'pe.c', 'options.c',
|
sources = ['python/mappy.pyx', 'align.c', 'bseq.c', 'chain.c', 'format.c', 'hit.c', 'index.c', 'pe.c', 'options.c',
|
||||||
'ksw2_extd2_sse.c', 'ksw2_exts2_sse.c', 'ksw2_extz2_sse.c', 'ksw2_ll_sse.c',
|
'ksw2_extd2_sse.c', 'ksw2_exts2_sse.c', 'ksw2_extz2_sse.c', 'ksw2_ll_sse.c',
|
||||||
'kalloc.c', 'kthread.c', 'map.c', 'misc.c', 'sdust.c', 'sketch.c', 'esterr.c', 'splitidx.c'],
|
'kalloc.c', 'kthread.c', 'map.c', 'misc.c', 'sdust.c', 'sketch.c', 'esterr.c', 'splitidx.c'],
|
||||||
depends = ['minimap.h', 'bseq.h', 'kalloc.h', 'kdq.h', 'khash.h', 'kseq.h', 'ksort.h',
|
depends = ['minimap.h', 'bseq.h', 'kalloc.h', 'kdq.h', 'khash.h', 'kseq.h', 'ksort.h',
|
||||||
@@ -62,4 +52,4 @@ setup(
|
|||||||
'Programming Language :: Python :: 3',
|
'Programming Language :: Python :: 3',
|
||||||
'Intended Audience :: Science/Research',
|
'Intended Audience :: Science/Research',
|
||||||
'Topic :: Scientific/Engineering :: Bio-Informatics'],
|
'Topic :: Scientific/Engineering :: Bio-Informatics'],
|
||||||
cmdclass = cmdclass)
|
setup_requires=["cython"])
|
||||||
|
|||||||
+11
-7
@@ -2,6 +2,7 @@
|
|||||||
#include <assert.h>
|
#include <assert.h>
|
||||||
#include <stdlib.h>
|
#include <stdlib.h>
|
||||||
#include <stdio.h>
|
#include <stdio.h>
|
||||||
|
#include <errno.h>
|
||||||
#include "mmpriv.h"
|
#include "mmpriv.h"
|
||||||
|
|
||||||
FILE *mm_split_init(const char *prefix, const mm_idx_t *mi)
|
FILE *mm_split_init(const char *prefix, const mm_idx_t *mi)
|
||||||
@@ -11,14 +12,17 @@ FILE *mm_split_init(const char *prefix, const mm_idx_t *mi)
|
|||||||
uint32_t i, k = mi->k;
|
uint32_t i, k = mi->k;
|
||||||
fn = (char*)calloc(strlen(prefix) + 10, 1);
|
fn = (char*)calloc(strlen(prefix) + 10, 1);
|
||||||
sprintf(fn, "%s.%.4d.tmp", prefix, mi->index);
|
sprintf(fn, "%s.%.4d.tmp", prefix, mi->index);
|
||||||
fp = fopen(fn, "wb");
|
if ((fp = fopen(fn, "wb")) == NULL) {
|
||||||
assert(fp);
|
if (mm_verbose >= 1)
|
||||||
|
fprintf(stderr, "[ERROR]\033[1;31m failed to write to temporary file '%s'\033[0m: %s\n", fn, strerror(errno));
|
||||||
|
exit(1);
|
||||||
|
}
|
||||||
mm_err_fwrite(&k, 4, 1, fp);
|
mm_err_fwrite(&k, 4, 1, fp);
|
||||||
mm_err_fwrite(&mi->n_seq, 4, 1, fp);
|
mm_err_fwrite(&mi->n_seq, 4, 1, fp);
|
||||||
for (i = 0; i < mi->n_seq; ++i) {
|
for (i = 0; i < mi->n_seq; ++i) {
|
||||||
uint8_t l;
|
uint32_t l;
|
||||||
l = strlen(mi->seq[i].name);
|
l = strlen(mi->seq[i].name);
|
||||||
mm_err_fwrite(&l, 1, 1, fp);
|
mm_err_fwrite(&l, 1, 4, fp);
|
||||||
mm_err_fwrite(mi->seq[i].name, 1, l, fp);
|
mm_err_fwrite(mi->seq[i].name, 1, l, fp);
|
||||||
mm_err_fwrite(&mi->seq[i].len, 4, 1, fp);
|
mm_err_fwrite(&mi->seq[i].len, 4, 1, fp);
|
||||||
}
|
}
|
||||||
@@ -38,7 +42,7 @@ mm_idx_t *mm_split_merge_prep(const char *prefix, int n_splits, FILE **fp, uint3
|
|||||||
sprintf(fn, "%s.%.4d.tmp", prefix, i);
|
sprintf(fn, "%s.%.4d.tmp", prefix, i);
|
||||||
if ((fp[i] = fopen(fn, "rb")) == 0) {
|
if ((fp[i] = fopen(fn, "rb")) == 0) {
|
||||||
if (mm_verbose >= 1)
|
if (mm_verbose >= 1)
|
||||||
fprintf(stderr, "ERROR: failed to open temporary file '%s'\n", fn);
|
fprintf(stderr, "ERROR: failed to open temporary file '%s': %s\n", fn, strerror(errno));
|
||||||
for (j = 0; j < i; ++j)
|
for (j = 0; j < i; ++j)
|
||||||
fclose(fp[j]);
|
fclose(fp[j]);
|
||||||
free(fn);
|
free(fn);
|
||||||
@@ -57,8 +61,8 @@ mm_idx_t *mm_split_merge_prep(const char *prefix, int n_splits, FILE **fp, uint3
|
|||||||
for (i = j = 0; i < n_splits; ++i) {
|
for (i = j = 0; i < n_splits; ++i) {
|
||||||
uint32_t k;
|
uint32_t k;
|
||||||
for (k = 0; k < n_seq_part[i]; ++k, ++j) {
|
for (k = 0; k < n_seq_part[i]; ++k, ++j) {
|
||||||
uint8_t l;
|
uint32_t l;
|
||||||
mm_err_fread(&l, 1, 1, fp[i]);
|
mm_err_fread(&l, 1, 4, fp[i]);
|
||||||
mi->seq[j].name = (char*)calloc(l + 1, 1);
|
mi->seq[j].name = (char*)calloc(l + 1, 1);
|
||||||
mm_err_fread(mi->seq[j].name, 1, l, fp[i]);
|
mm_err_fread(mi->seq[j].name, 1, l, fp[i]);
|
||||||
mm_err_fread(&mi->seq[j].len, 4, 1, fp[i]);
|
mm_err_fread(&mi->seq[j].len, 4, 1, fp[i]);
|
||||||
|
|||||||
Reference in New Issue
Block a user