Last updated on 2026-08-04 02:50:23 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 | 38.90 | 169.06 | 207.96 | 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 | 77.00 | 253.00 | 330.00 | 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/Rtmp0aEIKy’ ‘~/tmp/scratch/Rtmp1Vzy3M’
‘~/tmp/scratch/Rtmp1iJkCX’ ‘~/tmp/scratch/Rtmp2nTL07’
‘~/tmp/scratch/Rtmp2pdadc’ ‘~/tmp/scratch/Rtmp3vwTTC’
‘~/tmp/scratch/Rtmp49MAJl’ ‘~/tmp/scratch/Rtmp4bIO1k’
‘~/tmp/scratch/Rtmp4jUHv4’ ‘~/tmp/scratch/Rtmp4reMyG’
‘~/tmp/scratch/Rtmp5LuPgK’ ‘~/tmp/scratch/Rtmp5TSzjv’
‘~/tmp/scratch/Rtmp5lhTdR’ ‘~/tmp/scratch/Rtmp5qcCVI’
‘~/tmp/scratch/Rtmp6l6Xtl’ ‘~/tmp/scratch/Rtmp71IhnV’
‘~/tmp/scratch/Rtmp7KLeNS’ ‘~/tmp/scratch/Rtmp7RYISS’
‘~/tmp/scratch/Rtmp9V3P92’ ‘~/tmp/scratch/Rtmp9vv0l3’
‘~/tmp/scratch/RtmpAEhP6W’ ‘~/tmp/scratch/RtmpAG9FkE’
‘~/tmp/scratch/RtmpB4QwEY’ ‘~/tmp/scratch/RtmpC7ciK2’
‘~/tmp/scratch/RtmpCpXmCm’ ‘~/tmp/scratch/RtmpDEk1kb’
‘~/tmp/scratch/RtmpDdiA2r’ ‘~/tmp/scratch/RtmpDfJewH’
‘~/tmp/scratch/RtmpE2Nb6q’ ‘~/tmp/scratch/RtmpE3Gxws’
‘~/tmp/scratch/RtmpFAZmwk’ ‘~/tmp/scratch/RtmpG18llr’
‘~/tmp/scratch/RtmpG6Qfcc’ ‘~/tmp/scratch/RtmpGIoanH’
‘~/tmp/scratch/RtmpGP6kKp’ ‘~/tmp/scratch/RtmpGwxjst’
‘~/tmp/scratch/RtmpI5ygtz’ ‘~/tmp/scratch/RtmpIcSz5t’
‘~/tmp/scratch/RtmpJ03pR3’ ‘~/tmp/scratch/RtmpJaJIM4’
‘~/tmp/scratch/RtmpJffM7K’ ‘~/tmp/scratch/RtmpK0W6PI’
‘~/tmp/scratch/RtmpKNqDNg’ ‘~/tmp/scratch/RtmpKYgKjK’
‘~/tmp/scratch/RtmpKyROeU’ ‘~/tmp/scratch/RtmpL3Uqwa’
‘~/tmp/scratch/RtmpL8V2ZJ’ ‘~/tmp/scratch/RtmpLilobZ’
‘~/tmp/scratch/RtmpM8Tinw’ ‘~/tmp/scratch/RtmpMB7WbA’
‘~/tmp/scratch/RtmpMBcPtv’ ‘~/tmp/scratch/RtmpNGjdTG’
‘~/tmp/scratch/RtmpOJClcD’ ‘~/tmp/scratch/RtmpOcRjbz’
‘~/tmp/scratch/RtmpPdXDvQ’ ‘~/tmp/scratch/RtmpQ42Uay’
‘~/tmp/scratch/RtmpQ7DnFk’ ‘~/tmp/scratch/RtmpQLqpCY’
‘~/tmp/scratch/RtmpQiAqfa’ ‘~/tmp/scratch/RtmpQxieB2’
‘~/tmp/scratch/RtmpRCsILO’ ‘~/tmp/scratch/RtmpRiKfoR’
‘~/tmp/scratch/RtmpRu61wq’ ‘~/tmp/scratch/RtmpRx8O0P’
‘~/tmp/scratch/RtmpSAwBUr’ ‘~/tmp/scratch/RtmpSR8hOU’
‘~/tmp/scratch/RtmpSUlzpd’ ‘~/tmp/scratch/RtmpSxCf7f’
‘~/tmp/scratch/RtmpTXNqjR’ ‘~/tmp/scratch/RtmpTmaqzX’
‘~/tmp/scratch/RtmpTonBC0’ ‘~/tmp/scratch/RtmpTyj6iL’
‘~/tmp/scratch/RtmpUWaba5’ ‘~/tmp/scratch/RtmpUYmna4’
‘~/tmp/scratch/RtmpUplXpv’ ‘~/tmp/scratch/RtmpVPJ5HU’
‘~/tmp/scratch/RtmpVgmL0I’ ‘~/tmp/scratch/RtmpVhIIwX’
‘~/tmp/scratch/RtmpVmwUAe’ ‘~/tmp/scratch/RtmpVzi3lr’
‘~/tmp/scratch/RtmpW8ZNw1’ ‘~/tmp/scratch/RtmpWEocXB’
‘~/tmp/scratch/RtmpWJMzXZ’ ‘~/tmp/scratch/RtmpWUROe2’
‘~/tmp/scratch/RtmpWXiPXI’ ‘~/tmp/scratch/RtmpX6IaqD’
‘~/tmp/scratch/RtmpX94AL0’ ‘~/tmp/scratch/RtmpXLWlkI’
‘~/tmp/scratch/RtmpXofHW7’ ‘~/tmp/scratch/RtmpXpfau9’
‘~/tmp/scratch/RtmpY7eyKv’ ‘~/tmp/scratch/RtmpY7p71H’
‘~/tmp/scratch/RtmpYQ6nVU’ ‘~/tmp/scratch/RtmpYSSiyp’
‘~/tmp/scratch/RtmpZ3GsK8’ ‘~/tmp/scratch/RtmpZ66SDU’
‘~/tmp/scratch/RtmpZVezJ0’ ‘~/tmp/scratch/RtmpbiC22A’
‘~/tmp/scratch/Rtmpbrhve7’ ‘~/tmp/scratch/RtmpcBN59d’
‘~/tmp/scratch/RtmpcVXUSR’ ‘~/tmp/scratch/Rtmpcbfpxh’
‘~/tmp/scratch/RtmpccHG1c’ ‘~/tmp/scratch/Rtmpco5W3k’
‘~/tmp/scratch/Rtmpdhy0CD’ ‘~/tmp/scratch/RtmpdjErve’
‘~/tmp/scratch/RtmpeEWImE’ ‘~/tmp/scratch/Rtmpf8P1HL’
‘~/tmp/scratch/RtmpfQmIlP’ ‘~/tmp/scratch/RtmpfRB2cX’
‘~/tmp/scratch/RtmpfdQ9FK’ ‘~/tmp/scratch/RtmpgRyHo0’
‘~/tmp/scratch/RtmpgeIlVt’ ‘~/tmp/scratch/RtmphBFYIv’
‘~/tmp/scratch/RtmphCGUt1’ ‘~/tmp/scratch/RtmphXgReM’
‘~/tmp/scratch/Rtmphodlt1’ ‘~/tmp/scratch/RtmpiTyX7X’
‘~/tmp/scratch/RtmpifdkVn’ ‘~/tmp/scratch/Rtmpj6slda’
‘~/tmp/scratch/Rtmpj71DAL’ ‘~/tmp/scratch/Rtmpj8Js7h’
‘~/tmp/scratch/RtmpjGmYG1’ ‘~/tmp/scratch/RtmpjHTJYp’
‘~/tmp/scratch/RtmpjP87rO’ ‘~/tmp/scratch/RtmpjgrqBk’
‘~/tmp/scratch/RtmpjzgKeI’ ‘~/tmp/scratch/Rtmpk2gfrd’
‘~/tmp/scratch/RtmpkTxiL3’ ‘~/tmp/scratch/RtmplFjYII’
‘~/tmp/scratch/RtmpmCCUyH’ ‘~/tmp/scratch/RtmpnkGjAO’
‘~/tmp/scratch/RtmpnwqVLg’ ‘~/tmp/scratch/RtmpnyNBg6’
‘~/tmp/scratch/RtmpoTetOg’ ‘~/tmp/scratch/Rtmpobn3Ic’
‘~/tmp/scratch/Rtmppdgnwi’ ‘~/tmp/scratch/RtmppqroOn’
‘~/tmp/scratch/RtmpqKXvAk’ ‘~/tmp/scratch/RtmpqS4oem’
‘~/tmp/scratch/RtmpqvqI25’ ‘~/tmp/scratch/RtmprDIZEe’
‘~/tmp/scratch/RtmprggUcf’ ‘~/tmp/scratch/RtmpsP5fpW’
‘~/tmp/scratch/Rtmpt3k6hg’ ‘~/tmp/scratch/RtmptkKuak’
‘~/tmp/scratch/RtmpvfCKs2’ ‘~/tmp/scratch/RtmpvzWCS9’
‘~/tmp/scratch/RtmpwxpOlJ’ ‘~/tmp/scratch/RtmpxEFolF’
‘~/tmp/scratch/RtmpxF9QNG’ ‘~/tmp/scratch/RtmpxqaBxO’
‘~/tmp/scratch/RtmpyohvmC’ ‘~/tmp/scratch/RtmpzH1Byl’
‘~/tmp/scratch/RtmpzKJ0PS’ ‘~/tmp/scratch/RtmpzKoCQR’
‘~/tmp/scratch/Rtmpzsg1Ya’ ‘~/tmp/scratch/RtmpzthcgS’
‘~/tmp/scratch/xvfb-run.02vxCj’ ‘~/tmp/scratch/xvfb-run.0WfxIr’
‘~/tmp/scratch/xvfb-run.2ocHqS’ ‘~/tmp/scratch/xvfb-run.3LSEZs’
‘~/tmp/scratch/xvfb-run.3NrmHr’ ‘~/tmp/scratch/xvfb-run.5F7SWB’
‘~/tmp/scratch/xvfb-run.6UL1XW’ ‘~/tmp/scratch/xvfb-run.6crVpw’
‘~/tmp/scratch/xvfb-run.6lBpTV’ ‘~/tmp/scratch/xvfb-run.7ZeJcZ’
‘~/tmp/scratch/xvfb-run.8DsM0Z’ ‘~/tmp/scratch/xvfb-run.8KrDO9’
‘~/tmp/scratch/xvfb-run.8ONDxP’ ‘~/tmp/scratch/xvfb-run.8y3GCb’
‘~/tmp/scratch/xvfb-run.9j3lpQ’ ‘~/tmp/scratch/xvfb-run.A7xOiS’
‘~/tmp/scratch/xvfb-run.AyQP0L’ ‘~/tmp/scratch/xvfb-run.C2FWYT’
‘~/tmp/scratch/xvfb-run.C3gbjx’ ‘~/tmp/scratch/xvfb-run.DQbn9r’
‘~/tmp/scratch/xvfb-run.EHWBny’ ‘~/tmp/scratch/xvfb-run.EibPy8’
‘~/tmp/scratch/xvfb-run.F39KnD’ ‘~/tmp/scratch/xvfb-run.G2DDyn’
‘~/tmp/scratch/xvfb-run.GjrtXr’ ‘~/tmp/scratch/xvfb-run.HUtsbc’
‘~/tmp/scratch/xvfb-run.HiNXI5’ ‘~/tmp/scratch/xvfb-run.IvevvL’
‘~/tmp/scratch/xvfb-run.Jl6p5X’ ‘~/tmp/scratch/xvfb-run.KSm3Kr’
‘~/tmp/scratch/xvfb-run.Kks7nu’ ‘~/tmp/scratch/xvfb-run.LB10fV’
‘~/tmp/scratch/xvfb-run.LaqbVr’ ‘~/tmp/scratch/xvfb-run.Llhx6q’
‘~/tmp/scratch/xvfb-run.LvdHzH’ ‘~/tmp/scratch/xvfb-run.MBTe8W’
‘~/tmp/scratch/xvfb-run.MLwsgN’ ‘~/tmp/scratch/xvfb-run.MxFeGs’
‘~/tmp/scratch/xvfb-run.NGsZ5W’ ‘~/tmp/scratch/xvfb-run.NK0Xnh’
‘~/tmp/scratch/xvfb-run.Nb5IT6’ ‘~/tmp/scratch/xvfb-run.QY4xxP’
‘~/tmp/scratch/xvfb-run.QlimLT’ ‘~/tmp/scratch/xvfb-run.Qt5FyH’
‘~/tmp/scratch/xvfb-run.QuC2La’ ‘~/tmp/scratch/xvfb-run.R91YqY’
‘~/tmp/scratch/xvfb-run.SlcshC’ ‘~/tmp/scratch/xvfb-run.SndxCr’
‘~/tmp/scratch/xvfb-run.T6eL8t’ ‘~/tmp/scratch/xvfb-run.VAdwoI’
‘~/tmp/scratch/xvfb-run.VoSSp7’ ‘~/tmp/scratch/xvfb-run.XmHsE4’
‘~/tmp/scratch/xvfb-run.aO8Ghm’ ‘~/tmp/scratch/xvfb-run.cLBwM6’
‘~/tmp/scratch/xvfb-run.cMGNJu’ ‘~/tmp/scratch/xvfb-run.dJ63qQ’
‘~/tmp/scratch/xvfb-run.e1iMSY’ ‘~/tmp/scratch/xvfb-run.erIP3S’
‘~/tmp/scratch/xvfb-run.fWr8aL’ ‘~/tmp/scratch/xvfb-run.hMtwvc’
‘~/tmp/scratch/xvfb-run.jTgZRb’ ‘~/tmp/scratch/xvfb-run.jyTLCq’
‘~/tmp/scratch/xvfb-run.kOHrH8’ ‘~/tmp/scratch/xvfb-run.kzTOTI’
‘~/tmp/scratch/xvfb-run.l0kwLH’ ‘~/tmp/scratch/xvfb-run.lnjcjh’
‘~/tmp/scratch/xvfb-run.mJYNOq’ ‘~/tmp/scratch/xvfb-run.o5ywAR’
‘~/tmp/scratch/xvfb-run.rDJJel’ ‘~/tmp/scratch/xvfb-run.rR6oLg’
‘~/tmp/scratch/xvfb-run.teZIAx’ ‘~/tmp/scratch/xvfb-run.vH8HNr’
‘~/tmp/scratch/xvfb-run.vUrljS’ ‘~/tmp/scratch/xvfb-run.wfNGp4’
‘~/tmp/scratch/xvfb-run.wx3oRC’ ‘~/tmp/scratch/xvfb-run.xU3Eep’
‘~/tmp/scratch/xvfb-run.z9kQM2’ ‘~/tmp/scratch/xvfb-run.zcBcEq’
Flavor: r-devel-linux-x86_64-debian-gcc