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This page was generated on 2023-04-12 11:06:30 -0400 (Wed, 12 Apr 2023).

HostnameOSArch (*)R versionInstalled pkgs
nebbiolo2Linux (Ubuntu 20.04.5 LTS)x86_644.2.3 (2023-03-15) -- "Shortstop Beagle" 4502
palomino4Windows Server 2022 Datacenterx644.2.3 (2023-03-15 ucrt) -- "Shortstop Beagle" 4282
lconwaymacOS 12.5.1 Montereyx86_644.2.3 (2023-03-15) -- "Shortstop Beagle" 4310
Click on any hostname to see more info about the system (e.g. compilers)      (*) as reported by 'uname -p', except on Windows and Mac OS X

CHECK results for trena on lconway


To the developers/maintainers of the trena package:
- Please allow up to 24 hours (and sometimes 48 hours) for your latest push to git@git.bioconductor.org:packages/trena.git to
reflect on this report. See How and When does the builder pull? When will my changes propagate? for more information.
- Make sure to use the following settings in order to reproduce any error or warning you see on this page.

raw results

Package 2092/2183HostnameOS / ArchINSTALLBUILDCHECKBUILD BIN
trena 1.20.0  (landing page)
Paul Shannon
Snapshot Date: 2023-04-10 14:00:05 -0400 (Mon, 10 Apr 2023)
git_url: https://git.bioconductor.org/packages/trena
git_branch: RELEASE_3_16
git_last_commit: 0b1d1b9
git_last_commit_date: 2022-11-01 11:15:44 -0400 (Tue, 01 Nov 2022)
nebbiolo2Linux (Ubuntu 20.04.5 LTS) / x86_64  OK    OK    WARNINGS  UNNEEDED, same version is already published
palomino4Windows Server 2022 Datacenter / x64  OK    OK    WARNINGS    OK  UNNEEDED, same version is already published
lconwaymacOS 12.5.1 Monterey / x86_64  OK    OK    WARNINGS    OK  UNNEEDED, same version is already published

Summary

Package: trena
Version: 1.20.0
Command: /Library/Frameworks/R.framework/Resources/bin/R CMD check --install=check:trena.install-out.txt --library=/Library/Frameworks/R.framework/Resources/library --no-vignettes --timings trena_1.20.0.tar.gz
StartedAt: 2023-04-10 23:10:47 -0400 (Mon, 10 Apr 2023)
EndedAt: 2023-04-10 23:20:39 -0400 (Mon, 10 Apr 2023)
EllapsedTime: 591.6 seconds
RetCode: 0
Status:   WARNINGS  
CheckDir: trena.Rcheck
Warnings: 3

Command output

##############################################################################
##############################################################################
###
### Running command:
###
###   /Library/Frameworks/R.framework/Resources/bin/R CMD check --install=check:trena.install-out.txt --library=/Library/Frameworks/R.framework/Resources/library --no-vignettes --timings trena_1.20.0.tar.gz
###
##############################################################################
##############################################################################


* using log directory ‘/Users/biocbuild/bbs-3.16-bioc/meat/trena.Rcheck’
* using R version 4.2.3 (2023-03-15)
* using platform: x86_64-apple-darwin17.0 (64-bit)
* using session charset: UTF-8
* using option ‘--no-vignettes’
* checking for file ‘trena/DESCRIPTION’ ... OK
* checking extension type ... Package
* this is package ‘trena’ version ‘1.20.0’
* package encoding: UTF-8
* checking package namespace information ... OK
* checking package dependencies ... OK
* checking if this is a source package ... OK
* checking if there is a namespace ... OK
* checking for hidden files and directories ... OK
* checking for portable file names ... OK
* checking for sufficient/correct file permissions ... OK
* checking whether package ‘trena’ can be installed ... OK
* checking installed package size ... OK
* checking package directory ... OK
* checking ‘build’ directory ... OK
* checking DESCRIPTION meta-information ... OK
* checking top-level files ... OK
* checking for left-over files ... OK
* checking index information ... OK
* checking package subdirectories ... OK
* checking R files for non-ASCII characters ... OK
* checking R files for syntax errors ... OK
* checking whether the package can be loaded ... OK
* checking whether the package can be loaded with stated dependencies ... OK
* checking whether the package can be unloaded cleanly ... OK
* checking whether the namespace can be loaded with stated dependencies ... OK
* checking whether the namespace can be unloaded cleanly ... OK
* checking dependencies in R code ... OK
* checking S3 generic/method consistency ... OK
* checking replacement functions ... OK
* checking foreign function calls ... OK
* checking R code for possible problems ... OK
* checking Rd files ... OK
* checking Rd metadata ... OK
* checking Rd cross-references ... WARNING
Missing link or links in documentation object 'trena-package.Rd':
  ‘BayesSpikeSolver’

See section 'Cross-references' in the 'Writing R Extensions' manual.
* checking for missing documentation entries ... OK
* checking for code/documentation mismatches ... OK
* checking Rd \usage sections ... WARNING
Undocumented arguments in documentation object 'EnsembleSolver'
  ‘nOrderings.bayes’

Functions with \usage entries need to have the appropriate \alias
entries, and all their arguments documented.
The \usage entries must correspond to syntactically valid R code.
See chapter ‘Writing R documentation files’ in the ‘Writing R
Extensions’ manual.
* checking Rd contents ... OK
* checking for unstated dependencies in examples ... OK
* checking include directives in Makefiles ... OK
* checking files in ‘vignettes’ ... OK
* checking examples ... OK
* checking for unstated dependencies in ‘tests’ ... OK
* checking tests ...
  Running ‘runTests.R’
 OK
* checking for unstated dependencies in vignettes ... OK
* checking package vignettes in ‘inst/doc’ ... WARNING
  Found ‘inst/doc/makefile’: should be ‘Makefile’ and will be ignored
* checking running R code from vignettes ... SKIPPED
* checking re-building of vignette outputs ... SKIPPED
* checking PDF version of manual ... OK
* DONE

Status: 3 WARNINGs
See
  ‘/Users/biocbuild/bbs-3.16-bioc/meat/trena.Rcheck/00check.log’
for details.



Installation output

trena.Rcheck/00install.out

##############################################################################
##############################################################################
###
### Running command:
###
###   /Library/Frameworks/R.framework/Resources/bin/R CMD INSTALL trena
###
##############################################################################
##############################################################################


* installing to library ‘/Library/Frameworks/R.framework/Versions/4.2/Resources/library’
* installing *source* package ‘trena’ ...
** using staged installation
** R
** inst
** byte-compile and prepare package for lazy loading
See system.file("LICENSE", package="MotifDb") for use restrictions.
** help
*** installing help indices
** building package indices
** installing vignettes
** testing if installed package can be loaded from temporary location
See system.file("LICENSE", package="MotifDb") for use restrictions.
** testing if installed package can be loaded from final location
See system.file("LICENSE", package="MotifDb") for use restrictions.
** testing if installed package keeps a record of temporary installation path
* DONE (trena)

Tests output

trena.Rcheck/tests/runTests.Rout


R version 4.2.3 (2023-03-15) -- "Shortstop Beagle"
Copyright (C) 2023 The R Foundation for Statistical Computing
Platform: x86_64-apple-darwin17.0 (64-bit)

R is free software and comes with ABSOLUTELY NO WARRANTY.
You are welcome to redistribute it under certain conditions.
Type 'license()' or 'licence()' for distribution details.

R is a collaborative project with many contributors.
Type 'contributors()' for more information and
'citation()' on how to cite R or R packages in publications.

Type 'demo()' for some demos, 'help()' for on-line help, or
'help.start()' for an HTML browser interface to help.
Type 'q()' to quit R.

> require(trena) || stop("unable to load trena Package")
Loading required package: trena
Loading required package: glmnet
Loading required package: Matrix
Loaded glmnet 4.1-7
Loading required package: MotifDb
Loading required package: BiocGenerics

Attaching package: 'BiocGenerics'

The following objects are masked from 'package:stats':

    IQR, mad, sd, var, xtabs

The following objects are masked from 'package:base':

    Filter, Find, Map, Position, Reduce, anyDuplicated, aperm, append,
    as.data.frame, basename, cbind, colnames, dirname, do.call,
    duplicated, eval, evalq, get, grep, grepl, intersect, is.unsorted,
    lapply, mapply, match, mget, order, paste, pmax, pmax.int, pmin,
    pmin.int, rank, rbind, rownames, sapply, setdiff, sort, table,
    tapply, union, unique, unsplit, which.max, which.min

Loading required package: S4Vectors
Loading required package: stats4

Attaching package: 'S4Vectors'

The following objects are masked from 'package:Matrix':

    expand, unname

The following objects are masked from 'package:base':

    I, expand.grid, unname

Loading required package: IRanges
Loading required package: GenomicRanges
Loading required package: GenomeInfoDb
Loading required package: Biostrings
Loading required package: XVector

Attaching package: 'Biostrings'

The following object is masked from 'package:base':

    strsplit

See system.file("LICENSE", package="MotifDb") for use restrictions.


[1] TRUE
> BiocGenerics:::testPackage('trena')
[1] --- test_BayesSpikeSolverConstructor
[1] --- test_ampAD.mef2c.154tfs.278samples.bayesSpike
[1] --- test_nOrderings
[1] --- test_BayesSpikeSolverConstructor
[1] --- test_ampAD.mef2c.154tfs.278samples.bayesSpike
[1] --- test_nOrderings
[1] --- test_BicorSolverConstructor
[1] --- test_ampAD.mef2c.154tfs.278samples.bicor
[1] --- test_BicorSolverConstructor
[1] --- test_ampAD.mef2c.154tfs.278samples.bicor
[1] --- test_CandidateFilter
[1] --- test_CandidateFilter
[1] --- test_EnsembleSolverConstructor
[1] --- test_getSolverNames
[1] --- test_ampAD.mef2c.154tfs.278samples.ensemble
[1] --- test_ampAD.mef2c.154tfs.278samples.randomForestAndXGBoost
[1] --- test_selectedSolversOnly
[1] --- test_oneSolver
[1] --- test_invalidSolvers
[1] --- test_EnsembleSolverConstructor
[1] --- test_ampAD.mef2c.154tfs.278samples.ensemble
Warning in WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
[1] --- test_ampAD.mef2c.154tfs.278samples.randomForestAndXGBoost
[1] --- test_getSolverNames
[1] --- test_invalidSolvers
[1] --- test_oneSolver
[1] --- test_selectedSolversOnly
Warning in WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
[1] --- test_FootprintFilter.byRegion
[1] --- test_FootprintFilter.byTwoRegions
[1] --- test_FootprintFilter.byRegion
[1] --- test_FootprintFilter.byTwoRegions
Loading required package: DBI
[1] --- test_parseDatabaseUri
[1] --- test_constructor
[1] --- test_getGtfGeneBioTypes
[1] --- test_getGtfMoleculeTypes
[1] --- test_getChromLoc
[1] --- test_getGenePromoterRegion
[1] --- test_getFootprintsInRegion
[1] --- test_getFootprintsInRegionWithVariants
[1] --- test_getFootprintsForGene
[1] --- test_constructor
[1] --- test_getChromLoc
[1] --- test_getFootprintsForGene
[1] --- test_getFootprintsInRegion
[1] --- test_getFootprintsInRegionWithVariants
Warning: call dbDisconnect() when finished working with a connection
[1] --- test_getGenePromoterRegion
[1] --- test_getGtfGeneBioTypes
[1] --- test_getGtfMoleculeTypes
[1] --- test_parseDatabaseUri
[1] --- test_directMode
Loading required package: org.Hs.eg.db
Loading required package: AnnotationDbi
Loading required package: Biobase
Welcome to Bioconductor

    Vignettes contain introductory material; view with
    'browseVignettes()'. To cite Bioconductor, see
    'citation("Biobase")', and for packages 'citation("pkgname")'.

[1] --- test_directMode
[1] --- test_getOpenChromatinFastAndSimple
[1] --- test_getOpenChromatinFastAndSimple
[1] --- test_LassoPvSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.lassopv
[1] --- test_LassoPvSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.lassopv
[1] --- test_LassoSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_developAndFitDummyTestData
[1] --- test_fitDummyData
[1] --- test_ampAD.mef2c.154tfs.278samples.lasso
[1] --- test_alpha.lasso
[1] --- test_lambda.lasso
[1] --- test_keep.metrics.lasso
[1] --- test_scalePredictorPenalties.lasso
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_LassoSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_alpha.lasso
[1] --- test_ampAD.mef2c.154tfs.278samples.lasso
[1] --- test_developAndFitDummyTestData
[1] --- test_fitDummyData
[1] --- test_keep.metrics.lasso
[1] --- test_lambda.lasso
[1] --- test_scalePredictorPenalties.lasso
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_getSequence
[1] --- test_bugInStartEndOfMinusStrandHits
[1] --- test_.injectSnp
[1] --- test_.getScoredMotifs
[1] --- test_noMatch
[1] --- test_findMatchesByChromosomalRegion
[1] --- test_findMatchesByChromosomalRegion.twoAlternateAlleles
[1] --- test_findMatchesByChromosomalRegion.yeast
[1] --- test_findMatchesByChromosomalRegion.athaliana
[1] --- test_.getScoredMotifs
[1] --- test_.injectSnp
[1] --- test_basicConstructor
[1] --- test_bugInStartEndOfMinusStrandHits
[1] --- test_findMatchesByChromosomalRegion
[1] --- test_findMatchesByChromosomalRegion.athaliana
[1] --- test_findMatchesByChromosomalRegion.twoAlternateAlleles
[1] --- test_findMatchesByChromosomalRegion.yeast
[1] --- test_findMatchesByMultipleChromosomalRegions
[1] --- test_getSequence
[1] --- test_noMatch
[1] --- test_PearsonSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.pearson
[1] --- test_PearsonSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.pearson
[1] --- test_RandomForestSolverConstructor
[1] --- test_RandomForestSolverFewCandidates
[1] --- test_ampAD.mef2c.154tfs.278samples.randomForest
[1] --- test_RandomForestSolverConstructor
[1] --- test_RandomForestSolverFewCandidates
[1] --- test_ampAD.mef2c.154tfs.278samples.randomForest
[1] --- test_RidgeSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.ridge
[1] --- test_alpha.ridge
[1] --- test_lambda.ridge
[1] --- test_keep.metrics.ridge
[1] --- test_RidgeSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_alpha.ridge
[1] --- test_ampAD.mef2c.154tfs.278samples.ridge
[1] --- test_keep.metrics.ridge
[1] --- test_lambda.ridge
[1] --- test_getAssayData
[1] --- test_getTarget
Warning in Solver(mtx, "gene1", c("gene2", "gene3")) :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_getRegulators
[1] --- test_eliminateSelfTFs
[1] --- test_MatrixWarnings
[1] --- test_TargetAndRegulatorWarnings
[1] --- test_MatrixWarnings
[1] --- test_TargetAndRegulatorWarnings
[1] --- test_eliminateSelfTFs
[1] --- test_getAssayData
Warning in Solver(mtx, "gene1", c("gene2", "gene3")) :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_getRegulators
[1] --- test_getTarget
[1] --- test_SpearmanSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.spearman
[1] --- test_SpearmanSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
[1] --- test_ampAD.mef2c.154tfs.278samples.spearman
[1] --- test_VarianceFilter
[1] --- test_VarianceFilter
--- test_XGBoostSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
--- test_ampAD.mef2c.154tfs.278samples.XGBoost
--- test_XGBoostSolverConstructor
Warning in Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
--- test_ampAD.mef2c.154tfs.278samples.XGBoost


RUNIT TEST PROTOCOL -- Mon Apr 10 23:20:28 2023 
*********************************************** 
Number of test functions: 79 
Number of errors: 0 
Number of failures: 0 

 
1 Test Suite : 
trena RUnit Tests - 79 test functions, 0 errors, 0 failures
Number of test functions: 79 
Number of errors: 0 
Number of failures: 0 
Warning messages:
1: In Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
2: In WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
3: In Solver(mtx.assay = mtx.assay, quiet = quiet, targetGene = targetGene,  :
  Target gene mean expression is in the bottom 10% of all genes in the assay matrix
4: In WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
5: In WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
6: In WGCNA::bicor(x = x, y = y, use = "pairwise.complete.obs") :
  bicor: zero MAD in variable 'x'. Pearson correlation was used for individual columns with zero (or missing) MAD.
> 
> proc.time()
   user  system elapsed 
239.328  10.844 252.625 

Example timings

trena.Rcheck/trena-Ex.timings

nameusersystemelapsed
BicorSolver0.0130.0010.016
CandidateFilter-class0.0000.0000.001
EnsembleSolver0.010.000.01
FootprintFilter-class000
GeneOntologyFilter-class0.0650.0040.069
HumanDHSFilter-class0.0000.0000.001
LassoPVSolver0.0100.0010.011
LassoSolver0.0100.0010.012
MotifMatcher-class0.2330.0090.245
PearsonSolver0.0090.0010.011
RandomForestSolver0.0090.0010.010
RidgeSolver0.0000.0000.001
Solver-class0.0080.0010.009
SpearmanSolver0.0080.0010.009
Trena-class0.0010.0000.001
VarianceFilter-class0.0040.0000.005
XGBoostSolver0.0120.0010.013
assessSnp0.0010.0010.001
createGeneModelFromRegulatoryRegions0.0020.0010.002
createGeneModelFromTfList0.0010.0000.001
findMatchesByChromosomalRegion0.0000.0000.001
getAssayData0.0080.0000.010
getAvailableSolvers000
getCandidates-FootprintFilter-method0.0000.0010.001
getCandidates-GeneOntologyFilter-method0.6600.1120.794
getCandidates-HumanDHSFilter-method0.0000.0010.000
getCandidates-VarianceFilter-method0.0070.0010.008
getChromLoc0.0130.0010.016
getEncodeRegulatoryTableNames-HumanDHSFilter000
getFootprintsForGene0.0100.0010.013
getFootprintsInRegion0.0150.0010.017
getGeneModelTableColumnNames000
getGenePromoterRegion0.0110.0010.012
getGtfGeneBioTypes0.0120.0010.013
getGtfMoleculeTypes0.0110.0020.012
getPfms0.0950.0010.096
getPromoterRegionsAllGenes0.0400.0020.041
getProximalPromoter000
getRegulators0.0070.0010.008
getRegulatoryChromosomalRegions0.0010.0000.003
getRegulatoryRegions000
getRegulatoryTableColumnNames000
getSequence0.0000.0010.001
getSolverNames0.0130.0010.015
getTarget0.0510.0050.057
parseChromLocString0.0000.0000.001
parseDatabaseUri0.0010.0010.002
rescalePredictorWeights0.0120.0010.012
show-HumanDHSFilter-method000
show.BicorSolver0.0100.0000.011
show.EnsembleSolver0.0100.0010.010
show.LassoPVSolver0.0130.0010.013
show.LassoSolver0.0100.0010.012
show.MotifMatcher0.0100.0020.013
show.PearsonSolver0.0140.0010.014
show.RandomForestSolver0.0140.0010.016
show.RidgeSolver0.0130.0020.014
show.SpearmanSolver0.0160.0020.018
show.XGBoostSolver0.0150.0020.017
solve.Bicor0.0170.0030.019
solve.Ensemble000
solve.Lasso3.0310.1803.219
solve.LassoPV0.1320.0150.149
solve.Pearson0.0110.0000.012
solve.RandomForest2.6740.0222.703
solve.Ridge2.5540.2342.807
solve.Spearman0.0380.0090.047
solve.XGBoost0.7570.0030.762