Last updated on 2026-08-03 17:50:15 CEST.
| Flavor | Version | Tinstall | Tcheck | Ttotal | Status | Flags |
|---|---|---|---|---|---|---|
| r-devel-linux-x86_64-debian-clang | 1.2 | 47.85 | 228.56 | 276.41 | NOTE | |
| r-devel-linux-x86_64-debian-gcc | 1.2 | 40.07 | 172.78 | 212.85 | NOTE | |
| r-devel-linux-x86_64-fedora-clang | 1.2 | 84.00 | 367.79 | 451.79 | NOTE | |
| r-devel-linux-x86_64-fedora-gcc | 1.2 | 41.00 | 175.15 | 216.15 | NOTE | |
| r-devel-windows-x86_64 | 1.2 | 63.00 | 207.00 | 270.00 | NOTE | |
| r-patched-linux-x86_64 | 1.2 | 49.24 | 197.81 | 247.05 | NOTE | |
| r-release-linux-x86_64 | 1.2 | 46.48 | 197.85 | 244.33 | NOTE | |
| r-release-macos-arm64 | 1.2 | 16.00 | 50.00 | 66.00 | NOTE | |
| r-release-macos-x86_64 | 1.2 | 38.00 | 198.00 | 236.00 | NOTE | |
| r-release-windows-x86_64 | 1.2 | 64.00 | 196.00 | 260.00 | NOTE | |
| r-oldrel-macos-arm64 | 1.2 | NOTE | ||||
| r-oldrel-macos-x86_64 | 1.2 | 35.00 | 219.00 | 254.00 | NOTE | |
| r-oldrel-windows-x86_64 | 1.2 | 79.00 | 255.00 | 334.00 | NOTE |
Version: 1.2
Check: CRAN incoming feasibility
Result: NOTE
Maintainer: ‘Javad Zahiri <zahiri@modares.ac.ir>’
No Authors@R field in DESCRIPTION.
Please add one, modifying
Authors@R: c(person(given = "Babak",
family = "Khorsand",
role = "aut",
email = "khorsand@yahoo.com"),
person(given = "Javad",
family = "Zahiri",
role = "cre",
email = "zahiri@modares.ac.ir"))
as necessary.
Flavors: r-devel-linux-x86_64-debian-clang, r-devel-linux-x86_64-debian-gcc
Version: 1.2
Check: Rd files
Result: NOTE
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
checkRd: (-1) AntAngioCOOL.Rd:33: Lost braces; missing escapes or markup?
33 | 2- K-mer composition that shows the fraction of all possible subsequences with length k in the given peptide. To compute k-mer composition features, reduced amino acid alphabet that proposed by Zahiri et al (Zahiri et al., 2014) has been exploited: the 20 alphabet of amino acids have been reduced to a new alphabet with size 8 according to 544 physicochemical and biochemical indices that extracted from AAIndex database (Kawashima et al., 2008) (C1={A, E}, C2={I, L, F, M, V}, C3={N, D, T, S}, C4={G}, C5={P}, C6={R, K, Q, H}, C7={Y, W}, C8={C}). We have computed k-mer composition for k=2,3,4 for each peptide.
| ^
Flavors: r-devel-linux-x86_64-debian-clang, r-devel-linux-x86_64-debian-gcc, r-devel-linux-x86_64-fedora-clang, r-devel-linux-x86_64-fedora-gcc, r-devel-windows-x86_64, r-patched-linux-x86_64, r-release-linux-x86_64, r-release-macos-arm64, r-release-macos-x86_64, r-release-windows-x86_64, r-oldrel-macos-arm64, r-oldrel-macos-x86_64, r-oldrel-windows-x86_64
Version: 1.2
Check: for new files in some other directories
Result: NOTE
Found the following files/directories:
‘~/tmp/scratch/Rtmp0Q5KQp’ ‘~/tmp/scratch/Rtmp0jO2mg’
‘~/tmp/scratch/Rtmp1KFlHK’ ‘~/tmp/scratch/Rtmp1r2EMm’
‘~/tmp/scratch/Rtmp1rs4A7’ ‘~/tmp/scratch/Rtmp2vwF5j’
‘~/tmp/scratch/Rtmp3vlyo7’ ‘~/tmp/scratch/Rtmp4HdAG1’
‘~/tmp/scratch/Rtmp4NcsrC’ ‘~/tmp/scratch/Rtmp4NhOJZ’
‘~/tmp/scratch/Rtmp4gfrPk’ ‘~/tmp/scratch/Rtmp4i03j7’
‘~/tmp/scratch/Rtmp586qVZ’ ‘~/tmp/scratch/Rtmp5lEZDR’
‘~/tmp/scratch/Rtmp5qCkGy’ ‘~/tmp/scratch/Rtmp65BuRu’
‘~/tmp/scratch/Rtmp6MoAlk’ ‘~/tmp/scratch/Rtmp6XvbzK’
‘~/tmp/scratch/Rtmp6lb0Hn’ ‘~/tmp/scratch/Rtmp75MBgB’
‘~/tmp/scratch/Rtmp7O2r0Q’ ‘~/tmp/scratch/Rtmp7b2qfo’
‘~/tmp/scratch/Rtmp7bi4gb’ ‘~/tmp/scratch/Rtmp7mBYik’
‘~/tmp/scratch/Rtmp7q8Q52’ ‘~/tmp/scratch/Rtmp7uzxDx’
‘~/tmp/scratch/Rtmp8O97K6’ ‘~/tmp/scratch/Rtmp9BJAJB’
‘~/tmp/scratch/RtmpAVKmzm’ ‘~/tmp/scratch/RtmpAclYnP’
‘~/tmp/scratch/RtmpBFJPGA’ ‘~/tmp/scratch/RtmpC18fd8’
‘~/tmp/scratch/RtmpCFgp3V’ ‘~/tmp/scratch/RtmpCieVFU’
‘~/tmp/scratch/RtmpCjirrO’ ‘~/tmp/scratch/RtmpD0WELH’
‘~/tmp/scratch/RtmpD5hJcg’ ‘~/tmp/scratch/RtmpDd1u7h’
‘~/tmp/scratch/RtmpDk9Hsx’ ‘~/tmp/scratch/RtmpEiBHYu’
‘~/tmp/scratch/RtmpEj1zl8’ ‘~/tmp/scratch/RtmpFv5L7j’
‘~/tmp/scratch/RtmpHDiXJ7’ ‘~/tmp/scratch/RtmpHN3dvm’
‘~/tmp/scratch/RtmpHe9PsV’ ‘~/tmp/scratch/RtmpI3bF9Q’
‘~/tmp/scratch/RtmpIUrnJ2’ ‘~/tmp/scratch/RtmpIbTZ8X’
‘~/tmp/scratch/RtmpIhXEfu’ ‘~/tmp/scratch/RtmpIhi7Ru’
‘~/tmp/scratch/RtmpJFuEcg’ ‘~/tmp/scratch/RtmpKFACLq’
‘~/tmp/scratch/RtmpKRDfaT’ ‘~/tmp/scratch/RtmpKYEciN’
‘~/tmp/scratch/RtmpLHWDg9’ ‘~/tmp/scratch/RtmpLQjLFw’
‘~/tmp/scratch/RtmpLYMx5e’ ‘~/tmp/scratch/RtmpLx2U0v’
‘~/tmp/scratch/RtmpMAGR3L’ ‘~/tmp/scratch/RtmpMGysMu’
‘~/tmp/scratch/RtmpMbdw32’ ‘~/tmp/scratch/RtmpMsO8Zo’
‘~/tmp/scratch/RtmpN35cPr’ ‘~/tmp/scratch/RtmpN4bHHB’
‘~/tmp/scratch/RtmpO3YXIA’ ‘~/tmp/scratch/RtmpO47MxT’
‘~/tmp/scratch/RtmpOHKC4Q’ ‘~/tmp/scratch/RtmpOgy0eF’
‘~/tmp/scratch/RtmpPZnf17’ ‘~/tmp/scratch/RtmpPen4mH’
‘~/tmp/scratch/RtmpQGFVJM’ ‘~/tmp/scratch/RtmpQX1ViH’
‘~/tmp/scratch/RtmpRhqXbQ’ ‘~/tmp/scratch/RtmpRt5tfy’
‘~/tmp/scratch/RtmpUMTVbV’ ‘~/tmp/scratch/RtmpURZn9l’
‘~/tmp/scratch/RtmpVkoSzt’ ‘~/tmp/scratch/RtmpWG4dqo’
‘~/tmp/scratch/RtmpWYBQuj’ ‘~/tmp/scratch/RtmpWxOWls’
‘~/tmp/scratch/RtmpXY17E2’ ‘~/tmp/scratch/RtmpY574YS’
‘~/tmp/scratch/RtmpYRxgQk’ ‘~/tmp/scratch/RtmpYpBwfF’
‘~/tmp/scratch/RtmpYuZ7js’ ‘~/tmp/scratch/RtmpZIUCFE’
‘~/tmp/scratch/RtmpZW44bd’ ‘~/tmp/scratch/RtmpaJm4vV’
‘~/tmp/scratch/RtmpaVOiGi’ ‘~/tmp/scratch/RtmpafvXuJ’
‘~/tmp/scratch/RtmpbBGMF8’ ‘~/tmp/scratch/RtmpbDHUGC’
‘~/tmp/scratch/RtmpbaeKMq’ ‘~/tmp/scratch/RtmpbizT55’
‘~/tmp/scratch/RtmpbrTlo9’ ‘~/tmp/scratch/RtmpcrqRAV’
‘~/tmp/scratch/RtmpdIs6Bw’ ‘~/tmp/scratch/RtmpdMCff4’
‘~/tmp/scratch/RtmpdP1vva’ ‘~/tmp/scratch/RtmpeCr1D4’
‘~/tmp/scratch/Rtmpewthvt’ ‘~/tmp/scratch/Rtmpf6cuv7’
‘~/tmp/scratch/Rtmpfq47dG’ ‘~/tmp/scratch/Rtmph5mpvb’
‘~/tmp/scratch/RtmphWVIhM’ ‘~/tmp/scratch/RtmphkwBne’
‘~/tmp/scratch/RtmpiDaivs’ ‘~/tmp/scratch/RtmpiXmR5X’
‘~/tmp/scratch/RtmpiwEybE’ ‘~/tmp/scratch/RtmpiwX3X6’
‘~/tmp/scratch/Rtmpiz2ag4’ ‘~/tmp/scratch/RtmpjJ3JnY’
‘~/tmp/scratch/RtmpjJyXRA’ ‘~/tmp/scratch/Rtmpk1bFIK’
‘~/tmp/scratch/RtmpkITTbe’ ‘~/tmp/scratch/RtmpkQoziX’
‘~/tmp/scratch/Rtmpl0hB15’ ‘~/tmp/scratch/RtmplurAOD’
‘~/tmp/scratch/Rtmpm9BM02’ ‘~/tmp/scratch/RtmpmIlCJx’
‘~/tmp/scratch/RtmpmopOD6’ ‘~/tmp/scratch/RtmpnD7eI4’
‘~/tmp/scratch/RtmpnQYvMV’ ‘~/tmp/scratch/RtmpoBlXO4’
‘~/tmp/scratch/RtmpopPaFN’ ‘~/tmp/scratch/RtmpopTyR6’
‘~/tmp/scratch/Rtmpoww2BE’ ‘~/tmp/scratch/RtmpoxUAIj’
‘~/tmp/scratch/RtmppBIfRI’ ‘~/tmp/scratch/RtmppGRkhy’
‘~/tmp/scratch/RtmppP4pod’ ‘~/tmp/scratch/Rtmppg7Trw’
‘~/tmp/scratch/Rtmppv1Leh’ ‘~/tmp/scratch/RtmpqHA5GM’
‘~/tmp/scratch/RtmpqaUSiC’ ‘~/tmp/scratch/Rtmprl6aDL’
‘~/tmp/scratch/RtmprsvTrL’ ‘~/tmp/scratch/RtmpsJb31p’
‘~/tmp/scratch/RtmptJYr95’ ‘~/tmp/scratch/RtmptPpVO9’
‘~/tmp/scratch/RtmptfWxLw’ ‘~/tmp/scratch/RtmpthdJTl’
‘~/tmp/scratch/RtmptigEPh’ ‘~/tmp/scratch/Rtmpv2svps’
‘~/tmp/scratch/RtmpvJWq2V’ ‘~/tmp/scratch/RtmpvlHg3B’
‘~/tmp/scratch/RtmpvsTMHR’ ‘~/tmp/scratch/RtmpwC4alU’
‘~/tmp/scratch/RtmpwGjnb8’ ‘~/tmp/scratch/RtmpwUjTZD’
‘~/tmp/scratch/RtmpwUv98P’ ‘~/tmp/scratch/Rtmpx0vefx’
‘~/tmp/scratch/RtmpxE8io4’ ‘~/tmp/scratch/RtmpxHXeyx’
‘~/tmp/scratch/RtmpxOBH8z’ ‘~/tmp/scratch/RtmpxaB3U0’
‘~/tmp/scratch/Rtmpy1gocg’ ‘~/tmp/scratch/Rtmpzx53g9’
‘~/tmp/scratch/xvfb-run.1NA9xI’ ‘~/tmp/scratch/xvfb-run.26Qpkp’
‘~/tmp/scratch/xvfb-run.2d778V’ ‘~/tmp/scratch/xvfb-run.3VhpYW’
‘~/tmp/scratch/xvfb-run.42fIbn’ ‘~/tmp/scratch/xvfb-run.4EybFs’
‘~/tmp/scratch/xvfb-run.4MhD6q’ ‘~/tmp/scratch/xvfb-run.5yId20’
‘~/tmp/scratch/xvfb-run.6odkCz’ ‘~/tmp/scratch/xvfb-run.6tWHFr’
‘~/tmp/scratch/xvfb-run.7Q8HF7’ ‘~/tmp/scratch/xvfb-run.8CKrzg’
‘~/tmp/scratch/xvfb-run.8kaq0C’ ‘~/tmp/scratch/xvfb-run.8mCmms’
‘~/tmp/scratch/xvfb-run.9AAlMQ’ ‘~/tmp/scratch/xvfb-run.9Xpgwm’
‘~/tmp/scratch/xvfb-run.ANAIZF’ ‘~/tmp/scratch/xvfb-run.BMhupe’
‘~/tmp/scratch/xvfb-run.BOEKbA’ ‘~/tmp/scratch/xvfb-run.C2o77p’
‘~/tmp/scratch/xvfb-run.C3rUFs’ ‘~/tmp/scratch/xvfb-run.CbjDtU’
‘~/tmp/scratch/xvfb-run.Cokttx’ ‘~/tmp/scratch/xvfb-run.ER9VM8’
‘~/tmp/scratch/xvfb-run.FQcDL5’ ‘~/tmp/scratch/xvfb-run.GpRDl2’
‘~/tmp/scratch/xvfb-run.H4wGkw’ ‘~/tmp/scratch/xvfb-run.H5J5Ww’
‘~/tmp/scratch/xvfb-run.ILzknz’ ‘~/tmp/scratch/xvfb-run.IXyiOh’
‘~/tmp/scratch/xvfb-run.IgP9yN’ ‘~/tmp/scratch/xvfb-run.JEybxe’
‘~/tmp/scratch/xvfb-run.JKmm78’ ‘~/tmp/scratch/xvfb-run.KlABmC’
‘~/tmp/scratch/xvfb-run.LjGnPF’ ‘~/tmp/scratch/xvfb-run.NT2MIo’
‘~/tmp/scratch/xvfb-run.ODZxii’ ‘~/tmp/scratch/xvfb-run.Op2BZr’
‘~/tmp/scratch/xvfb-run.PqCspF’ ‘~/tmp/scratch/xvfb-run.RTHPkG’
‘~/tmp/scratch/xvfb-run.RV6O8F’ ‘~/tmp/scratch/xvfb-run.ReatBo’
‘~/tmp/scratch/xvfb-run.TgbEtk’ ‘~/tmp/scratch/xvfb-run.UEP9Wm’
‘~/tmp/scratch/xvfb-run.V68KuZ’ ‘~/tmp/scratch/xvfb-run.YjNk5z’
‘~/tmp/scratch/xvfb-run.YmSzP3’ ‘~/tmp/scratch/xvfb-run.a4cBrf’
‘~/tmp/scratch/xvfb-run.asBi4V’ ‘~/tmp/scratch/xvfb-run.b7jtdS’
‘~/tmp/scratch/xvfb-run.dKbf9b’ ‘~/tmp/scratch/xvfb-run.dYFViP’
‘~/tmp/scratch/xvfb-run.e2Mwhp’ ‘~/tmp/scratch/xvfb-run.eJyH1m’
‘~/tmp/scratch/xvfb-run.eLdFiJ’ ‘~/tmp/scratch/xvfb-run.eZL4Gb’
‘~/tmp/scratch/xvfb-run.ekdT8x’ ‘~/tmp/scratch/xvfb-run.fG7YB0’
‘~/tmp/scratch/xvfb-run.mQCAMU’ ‘~/tmp/scratch/xvfb-run.nLJAOt’
‘~/tmp/scratch/xvfb-run.nXm9r3’ ‘~/tmp/scratch/xvfb-run.ny8Mzt’
‘~/tmp/scratch/xvfb-run.oDKFnz’ ‘~/tmp/scratch/xvfb-run.oGCzgh’
‘~/tmp/scratch/xvfb-run.qem5d8’ ‘~/tmp/scratch/xvfb-run.rBLtBT’
‘~/tmp/scratch/xvfb-run.rIDbW5’ ‘~/tmp/scratch/xvfb-run.rPov1q’
‘~/tmp/scratch/xvfb-run.sMdovk’ ‘~/tmp/scratch/xvfb-run.t5fsCX’
‘~/tmp/scratch/xvfb-run.uQXdid’ ‘~/tmp/scratch/xvfb-run.vtXtuY’
‘~/tmp/scratch/xvfb-run.w5K3XA’ ‘~/tmp/scratch/xvfb-run.waSjxu’
‘~/tmp/scratch/xvfb-run.wkbjel’ ‘~/tmp/scratch/xvfb-run.yRiSW1’
‘~/tmp/scratch/xvfb-run.zNdo96’
Flavor: r-devel-linux-x86_64-debian-gcc