Last updated on 2026-08-01 12:50:16 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 | 44.23 | 167.45 | 211.68 | 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 | 47.82 | 197.20 | 245.02 | 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 | 59.00 | 194.00 | 253.00 | 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/Rtmp0A9l57’ ‘~/tmp/scratch/Rtmp0yACzm’
‘~/tmp/scratch/Rtmp1pTtLE’ ‘~/tmp/scratch/Rtmp2R7iXe’
‘~/tmp/scratch/Rtmp3Co59h’ ‘~/tmp/scratch/Rtmp44ZGM8’
‘~/tmp/scratch/Rtmp4K8233’ ‘~/tmp/scratch/Rtmp4af4Wd’
‘~/tmp/scratch/Rtmp5Npr9L’ ‘~/tmp/scratch/Rtmp5QmvSq’
‘~/tmp/scratch/Rtmp5ZMSfB’ ‘~/tmp/scratch/Rtmp6GOyo9’
‘~/tmp/scratch/Rtmp6X6FGA’ ‘~/tmp/scratch/Rtmp7N2bhP’
‘~/tmp/scratch/Rtmp8ND5jL’ ‘~/tmp/scratch/Rtmp9bpnWV’
‘~/tmp/scratch/Rtmp9z9Rz7’ ‘~/tmp/scratch/RtmpA2QpnO’
‘~/tmp/scratch/RtmpAScNp4’ ‘~/tmp/scratch/RtmpAf7G2e’
‘~/tmp/scratch/RtmpB7UanX’ ‘~/tmp/scratch/RtmpBQ0Ipr’
‘~/tmp/scratch/RtmpBXj2eP’ ‘~/tmp/scratch/RtmpBlBheM’
‘~/tmp/scratch/RtmpCe0vFX’ ‘~/tmp/scratch/RtmpD2R85j’
‘~/tmp/scratch/RtmpDUryeK’ ‘~/tmp/scratch/RtmpECcJwX’
‘~/tmp/scratch/RtmpEHtSZH’ ‘~/tmp/scratch/RtmpEe3kkX’
‘~/tmp/scratch/RtmpEoOYM7’ ‘~/tmp/scratch/RtmpF5t0DG’
‘~/tmp/scratch/RtmpFKc8KL’ ‘~/tmp/scratch/RtmpHNWPFu’
‘~/tmp/scratch/RtmpISZ2i4’ ‘~/tmp/scratch/RtmpIhoW5V’
‘~/tmp/scratch/RtmpIjTzdm’ ‘~/tmp/scratch/RtmpIn723T’
‘~/tmp/scratch/RtmpIqf0TY’ ‘~/tmp/scratch/RtmpJLUQSX’
‘~/tmp/scratch/RtmpK9P19O’ ‘~/tmp/scratch/RtmpLIDamD’
‘~/tmp/scratch/RtmpLM0QG8’ ‘~/tmp/scratch/RtmpM194lE’
‘~/tmp/scratch/RtmpMLxu4T’ ‘~/tmp/scratch/RtmpMZLhno’
‘~/tmp/scratch/RtmpN3uOJ7’ ‘~/tmp/scratch/RtmpNw0oBT’
‘~/tmp/scratch/RtmpO6YF8J’ ‘~/tmp/scratch/RtmpOGjp9z’
‘~/tmp/scratch/RtmpOIMsnm’ ‘~/tmp/scratch/RtmpPAuBm4’
‘~/tmp/scratch/RtmpPp7LyQ’ ‘~/tmp/scratch/RtmpQEA845’
‘~/tmp/scratch/RtmpQEr8FB’ ‘~/tmp/scratch/RtmpQRxB4K’
‘~/tmp/scratch/RtmpQUPGL2’ ‘~/tmp/scratch/RtmpQai9Bt’
‘~/tmp/scratch/RtmpR2Oj8F’ ‘~/tmp/scratch/RtmpRd31oR’
‘~/tmp/scratch/RtmpRdA9PU’ ‘~/tmp/scratch/RtmpRrGKMh’
‘~/tmp/scratch/RtmpRyMkwF’ ‘~/tmp/scratch/RtmpS1zY05’
‘~/tmp/scratch/RtmpSICVKH’ ‘~/tmp/scratch/RtmpSP9bO2’
‘~/tmp/scratch/RtmpSnXkVK’ ‘~/tmp/scratch/RtmpU2HM6h’
‘~/tmp/scratch/RtmpURegay’ ‘~/tmp/scratch/RtmpUZapsI’
‘~/tmp/scratch/RtmpUthNPL’ ‘~/tmp/scratch/RtmpVRnNrx’
‘~/tmp/scratch/RtmpVrvje0’ ‘~/tmp/scratch/RtmpVt34fU’
‘~/tmp/scratch/RtmpWElHCH’ ‘~/tmp/scratch/RtmpWNvutY’
‘~/tmp/scratch/RtmpWOW836’ ‘~/tmp/scratch/RtmpWREVDO’
‘~/tmp/scratch/RtmpXMGkws’ ‘~/tmp/scratch/RtmpXmM5xC’
‘~/tmp/scratch/RtmpYI6JQx’ ‘~/tmp/scratch/RtmpYvY3iY’
‘~/tmp/scratch/RtmpZKoVBt’ ‘~/tmp/scratch/RtmpZlrxy2’
‘~/tmp/scratch/RtmpZnJVlI’ ‘~/tmp/scratch/RtmpaVxHWC’
‘~/tmp/scratch/Rtmpaecswm’ ‘~/tmp/scratch/RtmpbQ5JCe’
‘~/tmp/scratch/RtmpbZepmC’ ‘~/tmp/scratch/Rtmpbnwlp3’
‘~/tmp/scratch/Rtmpbp7qLD’ ‘~/tmp/scratch/RtmpcEZE2b’
‘~/tmp/scratch/RtmpcMoFQF’ ‘~/tmp/scratch/RtmpcQvZwt’
‘~/tmp/scratch/Rtmpcedlst’ ‘~/tmp/scratch/RtmpciHYhp’
‘~/tmp/scratch/RtmpdDrLuA’ ‘~/tmp/scratch/RtmpdJgmQl’
‘~/tmp/scratch/RtmpeIJ0rL’ ‘~/tmp/scratch/Rtmpea6dAe’
‘~/tmp/scratch/RtmpegBQFY’ ‘~/tmp/scratch/Rtmpenxhq4’
‘~/tmp/scratch/RtmpfP9wPK’ ‘~/tmp/scratch/Rtmpfv5UbC’
‘~/tmp/scratch/RtmpgTNAxs’ ‘~/tmp/scratch/Rtmpgdo1GE’
‘~/tmp/scratch/Rtmpgxzwsn’ ‘~/tmp/scratch/RtmphAsbAF’
‘~/tmp/scratch/RtmphHk1am’ ‘~/tmp/scratch/RtmphmzWrZ’
‘~/tmp/scratch/RtmpiODJkk’ ‘~/tmp/scratch/RtmpiQF0wL’
‘~/tmp/scratch/Rtmpiy2IFq’ ‘~/tmp/scratch/RtmpjI4sqw’
‘~/tmp/scratch/Rtmpjpycsk’ ‘~/tmp/scratch/RtmpkbY2xR’
‘~/tmp/scratch/RtmpkzfOZj’ ‘~/tmp/scratch/RtmplkLRqk’
‘~/tmp/scratch/Rtmplreta0’ ‘~/tmp/scratch/Rtmpm7cngU’
‘~/tmp/scratch/RtmpmNZiWJ’ ‘~/tmp/scratch/Rtmpmjxnco’
‘~/tmp/scratch/RtmpnAAq3a’ ‘~/tmp/scratch/RtmpnpdS1E’
‘~/tmp/scratch/RtmpobXfqV’ ‘~/tmp/scratch/RtmpofFofH’
‘~/tmp/scratch/Rtmpoj3ooZ’ ‘~/tmp/scratch/RtmporgFdN’
‘~/tmp/scratch/RtmpqQEj13’ ‘~/tmp/scratch/RtmpqW4fUq’
‘~/tmp/scratch/Rtmpqr6Ma3’ ‘~/tmp/scratch/RtmpqywjGk’
‘~/tmp/scratch/Rtmpr5utS4’ ‘~/tmp/scratch/Rtmpr7DyIg’
‘~/tmp/scratch/RtmprSX64z’ ‘~/tmp/scratch/RtmpraoAt3’
‘~/tmp/scratch/RtmprjfNIh’ ‘~/tmp/scratch/Rtmps2Jnpv’
‘~/tmp/scratch/RtmpsVgGQh’ ‘~/tmp/scratch/RtmpsuJBDh’
‘~/tmp/scratch/RtmpswhIux’ ‘~/tmp/scratch/RtmptJA5tt’
‘~/tmp/scratch/RtmptLoVaQ’ ‘~/tmp/scratch/RtmptQE1hy’
‘~/tmp/scratch/RtmpuB2UbP’ ‘~/tmp/scratch/RtmpusWZFS’
‘~/tmp/scratch/RtmpvGdIO3’ ‘~/tmp/scratch/RtmpvqV7Fo’
‘~/tmp/scratch/RtmpvxyHcj’ ‘~/tmp/scratch/Rtmpvz6cEW’
‘~/tmp/scratch/Rtmpx9sFGm’ ‘~/tmp/scratch/Rtmpy47jEO’
‘~/tmp/scratch/RtmpyP2jKl’ ‘~/tmp/scratch/RtmpySPcmk’
‘~/tmp/scratch/RtmpyZ4SGz’ ‘~/tmp/scratch/RtmpytH5pV’
‘~/tmp/scratch/Rtmpz33Y3z’ ‘~/tmp/scratch/RtmpzNE0Jx’
‘~/tmp/scratch/xvfb-run.2e3GU9’ ‘~/tmp/scratch/xvfb-run.2eeF7O’
‘~/tmp/scratch/xvfb-run.3I9NHb’ ‘~/tmp/scratch/xvfb-run.3Jx6u4’
‘~/tmp/scratch/xvfb-run.3lJ7L7’ ‘~/tmp/scratch/xvfb-run.4Pvk3Y’
‘~/tmp/scratch/xvfb-run.4xRYby’ ‘~/tmp/scratch/xvfb-run.7eOYVs’
‘~/tmp/scratch/xvfb-run.8O8HJY’ ‘~/tmp/scratch/xvfb-run.8PKCgd’
‘~/tmp/scratch/xvfb-run.9ijMFa’ ‘~/tmp/scratch/xvfb-run.ERnCC2’
‘~/tmp/scratch/xvfb-run.FeEFsn’ ‘~/tmp/scratch/xvfb-run.GKRiag’
‘~/tmp/scratch/xvfb-run.JZ2Bui’ ‘~/tmp/scratch/xvfb-run.JvfwUm’
‘~/tmp/scratch/xvfb-run.K3iuvP’ ‘~/tmp/scratch/xvfb-run.LCPURR’
‘~/tmp/scratch/xvfb-run.LIo5Y6’ ‘~/tmp/scratch/xvfb-run.LJit4H’
‘~/tmp/scratch/xvfb-run.LrlhqB’ ‘~/tmp/scratch/xvfb-run.Mh0Lxt’
‘~/tmp/scratch/xvfb-run.O2kS9e’ ‘~/tmp/scratch/xvfb-run.OuO55f’
‘~/tmp/scratch/xvfb-run.Owc1Jf’ ‘~/tmp/scratch/xvfb-run.QEprxc’
‘~/tmp/scratch/xvfb-run.QTjwdf’ ‘~/tmp/scratch/xvfb-run.QwT0ic’
‘~/tmp/scratch/xvfb-run.RkJ2Pz’ ‘~/tmp/scratch/xvfb-run.S5UbWs’
‘~/tmp/scratch/xvfb-run.SfC0gn’ ‘~/tmp/scratch/xvfb-run.TXUffR’
‘~/tmp/scratch/xvfb-run.TpE8mM’ ‘~/tmp/scratch/xvfb-run.U8RwXk’
‘~/tmp/scratch/xvfb-run.V8pwhs’ ‘~/tmp/scratch/xvfb-run.W7dEfU’
‘~/tmp/scratch/xvfb-run.WB5u6G’ ‘~/tmp/scratch/xvfb-run.XYR2dh’
‘~/tmp/scratch/xvfb-run.Y1Adpb’ ‘~/tmp/scratch/xvfb-run.Y2dF2D’
‘~/tmp/scratch/xvfb-run.YB8NGC’ ‘~/tmp/scratch/xvfb-run.YVfbbj’
‘~/tmp/scratch/xvfb-run.Z4bSnd’ ‘~/tmp/scratch/xvfb-run.bqDlBY’
‘~/tmp/scratch/xvfb-run.cxn7UV’ ‘~/tmp/scratch/xvfb-run.cydQFu’
‘~/tmp/scratch/xvfb-run.e2tU9b’ ‘~/tmp/scratch/xvfb-run.eOxNBO’
‘~/tmp/scratch/xvfb-run.eunW9N’ ‘~/tmp/scratch/xvfb-run.fOHqms’
‘~/tmp/scratch/xvfb-run.fQKN4B’ ‘~/tmp/scratch/xvfb-run.g9Rb7x’
‘~/tmp/scratch/xvfb-run.gByHrK’ ‘~/tmp/scratch/xvfb-run.gEegRJ’
‘~/tmp/scratch/xvfb-run.h2e9fe’ ‘~/tmp/scratch/xvfb-run.hyWJoV’
‘~/tmp/scratch/xvfb-run.inLwaF’ ‘~/tmp/scratch/xvfb-run.ktZyes’
‘~/tmp/scratch/xvfb-run.ldC2ec’ ‘~/tmp/scratch/xvfb-run.lsor2Z’
‘~/tmp/scratch/xvfb-run.nTdc94’ ‘~/tmp/scratch/xvfb-run.pQzDeK’
‘~/tmp/scratch/xvfb-run.qfMbZ6’ ‘~/tmp/scratch/xvfb-run.rMtjQz’
‘~/tmp/scratch/xvfb-run.rXBsPT’ ‘~/tmp/scratch/xvfb-run.roIltj’
‘~/tmp/scratch/xvfb-run.thFDCp’ ‘~/tmp/scratch/xvfb-run.u0yzmF’
‘~/tmp/scratch/xvfb-run.unI9wi’ ‘~/tmp/scratch/xvfb-run.vNHJ6v’
‘~/tmp/scratch/xvfb-run.vQdjPq’ ‘~/tmp/scratch/xvfb-run.w0la9Y’
‘~/tmp/scratch/xvfb-run.xHW7bR’ ‘~/tmp/scratch/xvfb-run.xnEeYE’
‘~/tmp/scratch/xvfb-run.yNlXEn’ ‘~/tmp/scratch/xvfb-run.yl3gqa’
‘~/tmp/scratch/xvfb-run.z2aVTL’ ‘~/tmp/scratch/xvfb-run.zBC9v2’
Flavor: r-devel-linux-x86_64-debian-gcc