add -l option
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@ -11,6 +11,7 @@ overwriteRange='null'
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overwrite=0
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overwrite=0
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labels=("longitude (degree)" "latitude (degree)")
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labels=("longitude (degree)" "latitude (degree)")
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plotgrad=0
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plotgrad=0
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clon=0
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# 从命令行获取参数
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# 从命令行获取参数
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while getopts "hi:r:u:c:a:g" arg
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while getopts "hi:r:u:c:a:g" arg
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do
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do
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@ -18,9 +19,10 @@ do
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h)
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h)
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printf "simple global wide data mapping using GMT script. The template accepts a grid (.nc .grid) file as input and outputs a .png and a .eps file. \
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printf "simple global wide data mapping using GMT script. The template accepts a grid (.nc .grid) file as input and outputs a .png and a .eps file. \
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For futher explanations, please look for GMT's manuscripts.\nAuthor: Yi Zhang (zhangyi.cugwuhan@gmail.com)\n"
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For futher explanations, please look for GMT's manuscripts.\nAuthor: Yi Zhang (zhangyi.cugwuhan@gmail.com)\n"
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printf "usage: ${0##*/} -i<grid-data> [-r<xmin>/<xmax>/<ymin>/<ymax>] [-u<unit>] [-c<cpt-file>] [-a<x-label>,<y-label>] [-g]\n"
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printf "usage: ${0##*/} -i<grid-data> [-r<xmin>/<xmax>/<ymin>/<ymax>] [-l<lon>] [-u<unit>] [-c<cpt-file>] [-a<x-label>,<y-label>] [-g]\n"
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printf "%s\t%s\n" "-i" "input grid file"
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printf "%s\t%s\n" "-i" "input grid file"
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printf "%s\t%s\n" "-r" "data range. The template will ditect the input data range automaticly, the use of this option will overwrite the range."
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printf "%s\t%s\n" "-r" "data range. The template will ditect the input data range automaticly, the use of this option will overwrite the range."
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printf "%s\t%s\n" "-l" "central longitude value of the plot, the default value is 0"
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printf "%s\t%s\n" "-u" "data unit. The default is meter."
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printf "%s\t%s\n" "-u" "data unit. The default is meter."
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printf "%s\t%s\n" "-c" "color cpt. The default is rainbow."
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printf "%s\t%s\n" "-c" "color cpt. The default is rainbow."
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printf "%s\t%s\n" "-a" "axis labels. The deafults are x (m) and y (m)."
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printf "%s\t%s\n" "-a" "axis labels. The deafults are x (m) and y (m)."
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@ -35,6 +37,8 @@ For futher explanations, please look for GMT's manuscripts.\nAuthor: Yi Zhang (z
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r)
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r)
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overwrite=1
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overwrite=1
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overwriteRange=$OPTARG;;
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overwriteRange=$OPTARG;;
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l)
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clon=$OPTARG;;
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a)
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a)
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labels=(${OPTARG//,/ });;
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labels=(${OPTARG//,/ });;
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g)
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g)
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@ -75,9 +79,9 @@ else
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if [[ $plotgrad == 1 ]]; then
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if [[ $plotgrad == 1 ]]; then
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gradfile=usergradient.nc
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gradfile=usergradient.nc
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gmt grdgradient ${data} -G${gradfile} -Nt -A0/45
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gmt grdgradient ${data} -G${gradfile} -Nt -A0/45
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gmt grdimage ${data} -R${range} -C${cptfile} -I${gradfile} -Bxag+l"${labels[0]}" -Bpya40g40+l"${labels[1]}" -JN180/3i -K -P > $psfile
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gmt grdimage ${data} -R${range} -C${cptfile} -I${gradfile} -Bxag+l"${labels[0]}" -Bpya40g40+l"${labels[1]}" -JN${clon}/3i -K -P > $psfile
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else
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else
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gmt grdimage ${data} -R${range} -C${cptfile} -Bxag+l"${labels[0]}" -Bpya40g40+l"${labels[1]}" -JN180/3i -K -P > $psfile
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gmt grdimage ${data} -R${range} -C${cptfile} -Bxag+l"${labels[0]}" -Bpya40g40+l"${labels[1]}" -JN${clon}/3i -K -P > $psfile
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fi
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fi
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#-C${cptfile}+Uk 使用km(色标单位除1000)
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#-C${cptfile}+Uk 使用km(色标单位除1000)
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gmt psscale -Dx0.5i/-0.3i+w2i/0.07i+h -C${cptfile} -Bxa -By+l${unit} -O >> $psfile
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gmt psscale -Dx0.5i/-0.3i+w2i/0.07i+h -C${cptfile} -Bxa -By+l${unit} -O >> $psfile
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