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# AW: create fork Geo::METAR as Geo::ModMETAR
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# AW: create fork Geo::METAR as Geo::ModMETAR
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#
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#
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# KH: fix the parser
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# KH: fix the parser
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# should be a finite state machine
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# should be a finite state machine
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# - metar has rules what comes after what. but codes can be missing.
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# - metar has rules what comes after what. but codes can be missing.
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# (measurement not done) or //// (measurement broken at the moment)
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# (measurement not done) or //// (measurement broken at the moment)
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# so given a state counter, it can stay the same or go up one or more states,
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# so given a state counter, it can stay the same or go up one or more states,
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# but it can never go down
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# but it can never go down
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#
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#
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# info on the last bit which is actually a forecast: (German)
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# info on the last bit which is actually a forecast: (German)
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# http://www.wetterklima.de/flug/metar/Metarvorhersage.htm
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# http://www.wetterklima.de/flug/metar/Metarvorhersage.htm
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#
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#
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# more info here (dutch, and txt 707 is not standard metar)
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# more info here (dutch, and txt 707 is not standard metar)
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# http://www.vwkweb.nl/index.html?http://www.vwkweb.nl/weerinfo/weerinfo_teletekst707.html
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# http://www.vwkweb.nl/index.html?http://www.vwkweb.nl/weerinfo/weerinfo_teletekst707.html
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# and also (dutch)
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# and also (dutch)
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# http://www.gids.nl/weather/eheh/metari.html
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# http://www.gids.nl/weather/eheh/metari.html
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#
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#
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# 'METAR decoding in Europe'
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# 'METAR decoding in Europe'
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# http://users.hol.gr/~chatos/VATSIM/TM/metar.html
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# http://users.hol.gr/~chatos/VATSIM/TM/metar.html
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#
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#
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# english explanation
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# english explanation
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# http://booty.org.uk/booty.weather/metinfo/codes/METAR_decode.htm
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# http://booty.org.uk/booty.weather/metinfo/codes/METAR_decode.htm
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#
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#
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# canadian explanation
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# canadian explanation
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# http://meteocentre.com/doc/metar.html
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# http://meteocentre.com/doc/metar.html
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#
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#
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# 'METAR decoding, TAF decoding'
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# 'METAR decoding, TAF decoding'
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# http://stoivane.kapsi.fi/metar/
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# http://stoivane.kapsi.fi/metar/
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#
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#
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# This module is used for decoding NWS METAR code.
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# This module is used for decoding NWS METAR code.
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# Example METARs
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# Example METARs
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#
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#
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# Findlay, Ohio
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# Findlay, Ohio
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# KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK SLP201 57014
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# KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK SLP201 57014
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#
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#
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# Toledo, Ohio
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# Toledo, Ohio
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# KTOL 251451Z 23016G22KT 8SM CLR 04/00 A3006 RMK AO2 SLP185 T00440000 56016 
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# KTOL 251451Z 23016G22KT 8SM CLR 04/00 A3006 RMK AO2 SLP185 T00440000 56016 
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#
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#
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# Cleveland, Ohio
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# Cleveland, Ohio
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# KCLE 251554Z 20015KT 10SM FEW055 OVC070 03/M02 A3011 RMK AO2 SLP205 T00331017
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# KCLE 251554Z 20015KT 10SM FEW055 OVC070 03/M02 A3011 RMK AO2 SLP205 T00331017
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#
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#
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# Houston, Texas
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# Houston, Texas
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# KHST 251455Z 06017G22KT 7SM FEW040 BKN330 25/18 A3016 RMK SLP213 8/508
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# KHST 251455Z 06017G22KT 7SM FEW040 BKN330 25/18 A3016 RMK SLP213 8/508
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# 9/205 51007
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# 9/205 51007
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#
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#
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# LA
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# LA
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#
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#
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# KLAX 251450Z 07004KT 7SM SCT100 BKN200 14/11 A3005 RMK AO2 SLP173
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# KLAX 251450Z 07004KT 7SM SCT100 BKN200 14/11 A3005 RMK AO2 SLP173
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# T01390111 56005
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# T01390111 56005
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#
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#
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# Soesterberg
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# Soesterberg
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#
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#
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# EHSB 181325Z 24009KT 8000 -RA BR FEW011 SCT022 OVC030 07/06 Q1011 WHT WHT TEMPO GRN
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# EHSB 181325Z 24009KT 8000 -RA BR FEW011 SCT022 OVC030 07/06 Q1011 WHT WHT TEMPO GRN
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# For METAR info, please see
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# For METAR info, please see
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# http://tgsv5.nws.noaa.gov/oso/oso1/oso12/metar.htm
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# http://tgsv5.nws.noaa.gov/oso/oso1/oso12/metar.htm
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# moved
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# moved
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# http://metar.noaa.gov/
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# http://metar.noaa.gov/
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#
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#
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# in scary detail (metar coding)
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# in scary detail (metar coding)
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#
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#
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# http://metar.noaa.gov/table_master.jsp?sub_menu=yes&show=fmh1ch12.htm&dir=./handbook/&title=title_handbook
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# http://metar.noaa.gov/table_master.jsp?sub_menu=yes&show=fmh1ch12.htm&dir=./handbook/&title=title_handbook
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#
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#
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# The METAR specification is dictated in the Federal Meteorological Handbook
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# The METAR specification is dictated in the Federal Meteorological Handbook
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# which is available on-line at:
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# which is available on-line at:
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# http://tgsv5.nws.noaa.gov/oso/oso1/oso12/fmh1.htm
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# http://tgsv5.nws.noaa.gov/oso/oso1/oso12/fmh1.htm
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# General Structure is:
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# General Structure is:
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# TYPE, SITE, DATE/TIME, WIND, VISIBILITY, CLOUDS, TEMPERATURE, PRESSURE, REMARKS
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# TYPE, SITE, DATE/TIME, WIND, VISIBILITY, CLOUDS, TEMPERATURE, PRESSURE, REMARKS
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# Specifically:
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# Specifically:
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# TYPE (optional)
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# TYPE (optional)
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# METAR or SPECI
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# METAR or SPECI
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# METAR: regular report
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# METAR: regular report
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# SPECI: special report
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# SPECI: special report
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# SITE (required, only once)
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# SITE (required, only once)
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#
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#
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# 4-Char site identifier (KLAX for LA, KHST for Houston)
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# 4-Char site identifier (KLAX for LA, KHST for Houston)
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# DATE/TIME (required, only once)
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# DATE/TIME (required, only once)
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#
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#
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# 6-digit time followed by "Z", indicating UTC
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# 6-digit time followed by "Z", indicating UTC
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# REPORT MODIFIER (optional)
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# REPORT MODIFIER (optional)
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# AUTO or COR
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# AUTO or COR
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# AUTO = Automatic report (no human intervention)
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# AUTO = Automatic report (no human intervention)
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# COR = Corrected METAR or SPECI
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# COR = Corrected METAR or SPECI
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# WIND (group)
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# WIND (group)
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#
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#
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# Wind direction (\d\d\d) and speed (\d?\d\d) and optionaling gusting
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# Wind direction (\d\d\d) and speed (\d?\d\d) and optionaling gusting
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# information denoted by "G" and speed (\d?\d\d) followed by "KT", for knots.
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# information denoted by "G" and speed (\d?\d\d) followed by "KT", for knots.
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#
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#
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# Wind direction MAY be "VRB" (variable) instead of a compass direction.
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# Wind direction MAY be "VRB" (variable) instead of a compass direction.
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#
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#
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# Variable Wind Direction (Speeds greater than 6 knots).  Variable wind
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# Variable Wind Direction (Speeds greater than 6 knots).  Variable wind
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# direction with wind speed greater than 6 knots shall be coded in the
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# direction with wind speed greater than 6 knots shall be coded in the
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# format, dndndnVdxdxdx
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# format, dndndnVdxdxdx
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#
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#
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# Calm wind is recorded as 00000KT.
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# Calm wind is recorded as 00000KT.
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# VISIBILITY (group)
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# VISIBILITY (group)
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#
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#
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# Visibility (\d+) followed by "SM" for statute miles or no 'SM' for meters
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# Visibility (\d+) followed by "SM" for statute miles or no 'SM' for meters
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# (european)
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# (european)
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#
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#
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# May be 1/(\d)SM for a fraction.
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# May be 1/(\d)SM for a fraction.
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#
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#
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# May be M1/\d)SM for less than a given fraction. (M="-")
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# May be M1/\d)SM for less than a given fraction. (M="-")
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#
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#
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# \d\d\d\d according to KNMI
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# \d\d\d\d according to KNMI
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# lowest horizontal visibility (looking around)
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# lowest horizontal visibility (looking around)
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# round down
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# round down
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# 0000 - 0500m in steps of 0050m
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# 0000 - 0500m in steps of 0050m
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# 0500 - 5000m in steps of 0100m
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# 0500 - 5000m in steps of 0100m
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# 5000 - 9999m in steps of 1000m
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# 5000 - 9999m in steps of 1000m
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# 10km or more is 9999
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# 10km or more is 9999
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# RUNWAY Visual Range (Group)
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# RUNWAY Visual Range (Group)
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#
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#
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# R(\d\d\d)(L|C|R)?/((M|P)?\d\d\d\d){1,2}FT
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# R(\d\d\d)(L|C|R)?/((M|P)?\d\d\d\d){1,2}FT
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#
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#
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# Where:
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# Where:
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#  $1 is the runway number.
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#  $1 is the runway number.
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#  $2 is the runway (Left/Center/Right) for parallel runways.
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#  $2 is the runway (Left/Center/Right) for parallel runways.
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#  $3 is the reported visibility in feet.
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#  $3 is the reported visibility in feet.
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#  $4 is the MAXIMUM reported visibility, making $3 the MINIMUM.
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#  $4 is the MAXIMUM reported visibility, making $3 the MINIMUM.
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#
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#
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#  "M" beginning a value means less than the reportable value of \d\d\d\d.
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#  "M" beginning a value means less than the reportable value of \d\d\d\d.
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#  "P" beginning a value means more than the reportable value of \d\d\d\d.
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#  "P" beginning a value means more than the reportable value of \d\d\d\d.
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#
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#
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#  new
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#  new
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#
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#
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#  R(\d\d\d[LCR]?)/([MP]?\d\d\d\d)(V[MP]?\d\d\d\d)?FT
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#  R(\d\d\d[LCR]?)/([MP]?\d\d\d\d)(V[MP]?\d\d\d\d)?FT
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#
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#
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# $1 runway number + Left/Center/Right
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# $1 runway number + Left/Center/Right
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# $2 visibility feet
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# $2 visibility feet
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# $3 Varying feet
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# $3 Varying feet
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# M = less than
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# M = less than
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# P = more than
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# P = more than
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# WEATHER (Present Weather Group)
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# WEATHER (Present Weather Group)
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#
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#
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# See table in Chapter 12 of FMH-1.
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# See table in Chapter 12 of FMH-1.
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# CLOUDS (Sky Condition Group)
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# CLOUDS (Sky Condition Group)
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#
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#
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# A space-separated grouping of cloud conditions which will contain at least
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# A space-separated grouping of cloud conditions which will contain at least
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# one cloud report. Examples: "CLR", "BKN330", "SCT100", "FEW055", "OVC070"
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# one cloud report. Examples: "CLR", "BKN330", "SCT100", "FEW055", "OVC070"
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# The three-letter codes represent the condition (Clear, Broken, Scattered,
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# The three-letter codes represent the condition (Clear, Broken, Scattered,
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# Few, Overcast) and the numbers (\d\d\d) represent altitlude/100.
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# Few, Overcast) and the numbers (\d\d\d) represent altitlude/100.
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#
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#
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# The report may have a trailing CB (cumulonimbus) or TCU (towering
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# The report may have a trailing CB (cumulonimbus) or TCU (towering
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# cumulus) appended. ([A-Z]{2,3})?(\d\d\d)(CB|TCU)?
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# cumulus) appended. ([A-Z]{2,3})?(\d\d\d)(CB|TCU)?
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# Vertical visibility (VV)
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# Vertical visibility (VV)
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#
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#
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# VV
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# VV
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# This group is reported when the sky is obscured. VV is the group indicator,
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# This group is reported when the sky is obscured. VV is the group indicator,
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# and hshshs is the vertical visibility in units of 30 metres
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# and hshshs is the vertical visibility in units of 30 metres
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# (hundreds of feet).
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# (hundreds of feet).
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#  
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#  
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#  hshshs - Examples of Encoding
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#  hshshs - Examples of Encoding
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#  HEIGHT               METAR CODE
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#  HEIGHT               METAR CODE
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#  100 ft       (30 metres)     001
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#  100 ft       (30 metres)     001
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#  450 ft       (135 metres)    004
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#  450 ft       (135 metres)    004
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#  2,700 ft     (810 metres)    027
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#  2,700 ft     (810 metres)    027
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#  12,600 ft    (3,780 metres)  1300
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#  12,600 ft    (3,780 metres)  1300
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#
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#
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# source http://meteocentre.com/doc/metar.html
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# source http://meteocentre.com/doc/metar.html
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# 
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# 
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# TEMPERATURE and DEW POINT
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# TEMPERATURE and DEW POINT
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#
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#
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# (M?\d\d)/(M?\d\d) where $1 is the current temperature in degrees celcius,
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# (M?\d\d)/(M?\d\d) where $1 is the current temperature in degrees celcius,
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# and $2 is the current dewpoint in degrees celcius.
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# and $2 is the current dewpoint in degrees celcius.
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#
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#
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# The "M" signifies a negative temperature, so converting the "M" to a
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# The "M" signifies a negative temperature, so converting the "M" to a
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# "-" ought to suffice.
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# "-" ought to suffice.
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# PRESSURE
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# PRESSURE
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#
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#
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# The pressure, or altimeter setting, at the reporting site recorded in whole
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# The pressure, or altimeter setting, at the reporting site recorded in whole
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# hectopascals (starts with a Q) or inches of mercury (Hg) minus the decimal
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# hectopascals (starts with a Q) or inches of mercury (Hg) minus the decimal
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# point (starts with an A). It should always look like ([AQ]\d\d\d\d).
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# point (starts with an A). It should always look like ([AQ]\d\d\d\d).
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#
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#
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# KNMI: Q\d\d\d\d pressure in hPa calculated for sea level
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# KNMI: Q\d\d\d\d pressure in hPa calculated for sea level
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# REMARKS
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# REMARKS
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#
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#
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# Remarks contain additional information. They are optional but often
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# Remarks contain additional information. They are optional but often
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# informative of special conditions.
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# informative of special conditions.
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#
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#
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# Remarks begin with the "RMK" keyword and continue to the end of the line.
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# Remarks begin with the "RMK" keyword and continue to the end of the line.
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#
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#
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# trend group
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# trend group
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#
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#
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# color codes BLU WHT GRN YLO AMB RED
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# color codes BLU WHT GRN YLO AMB RED
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# BLACK: vliegveld dicht
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# BLACK: vliegveld dicht
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# future trend 
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# future trend 
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# NOSIG no significant change
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# NOSIG no significant change
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# TEMPO temporary change
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# TEMPO temporary change
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# WHT WHT TEMPO GRN = current white, prediction white temporary green
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# WHT WHT TEMPO GRN = current white, prediction white temporary green
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# NSW no significant weather
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# NSW no significant weather
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# AT at a given time
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# AT at a given time
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# PROB30 probability 30%
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# PROB30 probability 30%
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# BECMG becoming
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# BECMG becoming
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# BECMG (weather) FM \d\d\d\d TL \d\d\d\d = from until utc times
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# BECMG (weather) FM \d\d\d\d TL \d\d\d\d = from until utc times
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# BECMG (weather) AT \d\d\d\d = at utc time
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# BECMG (weather) AT \d\d\d\d = at utc time
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# BECMG (weather) TL \d\d\d\d = change until utc time
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# BECMG (weather) TL \d\d\d\d = change until utc time
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# BECMG 2000 visibility
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# BECMG 2000 visibility
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# BECMG NSW weather type
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# BECMG NSW weather type
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# etc etc
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# etc etc
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# FCST CANCEL (2 tokens!) Forecast cancel: no further forecasts for a while
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# FCST CANCEL (2 tokens!) Forecast cancel: no further forecasts for a while
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### Package Definition
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### Package Definition
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package Geo::ModMETAR; # Package based on Debian Geo::METAR
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package Geo::ModMETAR; # Package based on Debian Geo::METAR
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## Required Modules
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## Required Modules
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use 5.005;
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use 5.005;
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use strict;
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use strict;
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use vars qw($AUTOLOAD $VERSION);
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use vars qw($AUTOLOAD $VERSION);
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use Carp 'cluck';
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use Carp 'cluck';
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$VERSION = '1.1'; # Based on Debian Geo::METAR 1.15
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$VERSION = '1.1'; # Based on Debian Geo::METAR 1.15
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##
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##
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## Lookup tables
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## Lookup tables
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##
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##
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my %_weather_types = (
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my %_weather_types = (
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    MI => 'shallow',
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    MI => 'shallow',
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    PI => 'partial',
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    PI => 'partial',
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    BC => 'patches',
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    BC => 'patches',
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    DR => 'drizzle',
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    DR => 'drizzle',
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    BL => 'blowing',
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    BL => 'blowing',
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    SH => 'shower(s)',
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    SH => 'shower(s)',
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    TS => 'thunderstorm',
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    TS => 'thunderstorm',
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    FZ => 'freezing',
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    FZ => 'freezing',
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    DZ => 'drizzle',
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    DZ => 'drizzle',
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    RA => 'rain',
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    RA => 'rain',
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    SN => 'snow',
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    SN => 'snow',
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    SG => 'snow grains',
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    SG => 'snow grains',
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    IC => 'ice crystals',
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    IC => 'ice crystals',
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    PE => 'ice pellets',
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    PE => 'ice pellets',
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    GR => 'hail',
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    GR => 'hail',
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    GS => 'small hail/snow pellets',
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    GS => 'small hail/snow pellets',
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    UP => 'unknown precip',
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    UP => 'unknown precip',
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    BR => 'mist',
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    BR => 'mist',
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    FG => 'fog',
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    FG => 'fog',
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    PRFG => 'fog banks',  # officially PR is a modifier of FG
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    PRFG => 'fog banks',  # officially PR is a modifier of FG
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    FU => 'smoke',
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    FU => 'smoke',
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    VA => 'volcanic ash',
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    VA => 'volcanic ash',
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    DU => 'dust',
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    DU => 'dust',
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    SA => 'sand',
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    SA => 'sand',
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    HZ => 'haze',
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    HZ => 'haze',
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    PY => 'spray',
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    PY => 'spray',
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    PO => 'dust/sand whirls',
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    PO => 'dust/sand whirls',
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    SQ => 'squalls',
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    SQ => 'squalls',
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    FC => 'funnel cloud(tornado/waterspout)',
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    FC => 'funnel cloud(tornado/waterspout)',
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    SS => 'sand storm',
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    SS => 'sand storm',
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    DS => 'dust storm',
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    DS => 'dust storm',
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);
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);
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my $_weather_types_pat = join("|", keys(%_weather_types));
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my $_weather_types_pat = join("|", keys(%_weather_types));
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my %_weather_types_ru = (
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my %_weather_types_ru = (
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    MI => 'мелкий',
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    MI => 'мелкий',
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    PI => 'частный',
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    PI => 'частный',
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    BC => 'местами',
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    BC => 'местами',
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    DR => 'мелкий дождь',
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    DR => 'мелкий дождь',
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    BL => 'порывистый ветер',
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    BL => 'порывистый ветер',
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    SH => 'ливневый дождь',
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    SH => 'ливневый дождь',
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    TS => 'гроза',
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    TS => 'гроза',
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    FZ => 'заморозки',
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    FZ => 'заморозки',
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    DZ => 'мелкий дождь',
287
    DZ => 'мелкий дождь',
288
    RA => 'дождь',
288
    RA => 'дождь',
289
    SN => 'снег',
289
    SN => 'снег',
290
    SG => 'снег гранулами',
290
    SG => 'снег гранулами',
291
    IC => 'ледяные кристаллы',
291
    IC => 'ледяные кристаллы',
292
    PE => 'ледяные шарики',
292
    PE => 'ледяные шарики',
293
    GR => 'град',
293
    GR => 'град',
294
    GS => 'небольшой град',
294
    GS => 'небольшой град',
295
    UP => 'осадки',
295
    UP => 'осадки',
296
296
297
    BR => 'легкий туман',
297
    BR => 'легкий туман',
298
    FG => 'туман',
298
    FG => 'туман',
299
    PRFG => 'образование тумана',
299
    PRFG => 'образование тумана',
300
    FU => 'дым',
300
    FU => 'дым',
301
    VA => 'вулканический пепел',
301
    VA => 'вулканический пепел',
302
    DU => 'пыль',
302
    DU => 'пыль',
303
    SA => 'песок',
303
    SA => 'песок',
304
    HZ => 'дымка',
304
    HZ => 'дымка',
305
    PY => 'водяная пыль',
305
    PY => 'водяная пыль',
306
    PO => 'песчаные или пылевые вихри',
306
    PO => 'песчаные или пылевые вихри',
307
    SQ => 'шквалистый ветер',
307
    SQ => 'шквалистый ветер',
308
    FC => 'торнадо',
308
    FC => 'торнадо',
309
    SS => 'песчанная буря',
309
    SS => 'песчанная буря',
310
    DS => 'пылевая буря',
310
    DS => 'пылевая буря',
311
);
311
);
312
312
313
my $_weather_types_ru_pat = join("|", keys(%_weather_types_ru));
313
my $_weather_types_ru_pat = join("|", keys(%_weather_types_ru));
314
314
315
my %_sky_types = (
315
my %_sky_types = (
316
    SKC => "Sky Clear",
316
    SKC => "Sky Clear",
317
    CLR => "Sky Clear",
317
    CLR => "Sky Clear",
318
    SCT => "Scattered",
318
    SCT => "Scattered",
319
    BKN => "Broken",
319
    BKN => "Broken",
320
    FEW => "Few",
320
    FEW => "Few",
321
    OVC => "Solid Overcast",
321
    OVC => "Solid Overcast",
322
    NSC => "No significant clouds",
322
    NSC => "No significant clouds",
323
    NCD => "No cloud detected",
323
    NCD => "No cloud detected",
324
);
324
);
325
325
326
my %_sky_types_ru = (
326
my %_sky_types_ru = (
327
    SKC => "ясно",
327
    SKC => "ясно",
328
    CLR => "ясно",
328
    CLR => "ясно",
329
    SCT => "рассеянные облака",
329
    SCT => "рассеянные облака",
330
    BKN => "облачно с прояснениями",
330
    BKN => "облачно с прояснениями",
331
    FEW => "слабая облачность",
331
    FEW => "слабая облачность",
332
    OVC => "сплошная облачность",
332
    OVC => "сплошная облачность",
333
    NSC => "нет существенной облачности",
333
    NSC => "нет существенной облачности",
334
    NCD => "безоблачно",
334
    NCD => "безоблачно",
335
);
335
);
336
336
337
my %_trend_types = (
337
my %_trend_types = (
338
    BLU => "8 km view",
338
    BLU => "8 km view",
339
    WHT => "5 km view",
339
    WHT => "5 km view",
340
    GRN => "3.7 km view",
340
    GRN => "3.7 km view",
341
    YLO => "1.6 km view",
341
    YLO => "1.6 km view",
342
    AMB => "0.8 km view",
342
    AMB => "0.8 km view",
343
    RED => "< 0.8 km view",
343
    RED => "< 0.8 km view",
344
    BLACK => "airport closed",
344
    BLACK => "airport closed",
345
    NOSIG => "No significant change",
345
    NOSIG => "No significant change",
346
    TEMPO => "Temporary change",
346
    TEMPO => "Temporary change",
347
    NSW => "No significant weather",
347
    NSW => "No significant weather",
348
    PROB => "Probability",
348
    PROB => "Probability",
349
    BECMG => "Becoming",
349
    BECMG => "Becoming",
350
    LAST => "Last",
350
    LAST => "Last",
351
);
351
);
352
352
353
my $_trend_types_pat = join("|", keys(%_trend_types));
353
my $_trend_types_pat = join("|", keys(%_trend_types));
354
354
355
my %_trend_types_ru = (
355
my %_trend_types_ru = (
356
    BLU => "видимость 8 км",
356
    BLU => "видимость 8 км",
357
    WHT => "видимость 5 км",
357
    WHT => "видимость 5 км",
358
    GRN => "видимость 3.7 км",
358
    GRN => "видимость 3.7 км",
359
    YLO => "видимость 1.6 км",
359
    YLO => "видимость 1.6 км",
360
    AMB => "видимость 800 м",
360
    AMB => "видимость 800 м",
361
    RED => "видимость менее 800 м",
361
    RED => "видимость менее 800 м",
362
    BLACK => "аэропорт закрыт",
362
    BLACK => "аэропорт закрыт",
363
    NOSIG => "без существенных изменений",
363
    NOSIG => "без существенных изменений",
364
    TEMPO => "временные изменения",
364
    TEMPO => "временные изменения",
365
    NSW => "без существенной погоды",
365
    NSW => "без существенной погоды",
366
    PROB => "вероятен",
366
    PROB => "вероятен",
367
    BECMG => "становление",
367
    BECMG => "становление",
368
    LAST => "продолжается",
368
    LAST => "продолжается",
369
);
369
);
370
370
371
my $_trend_types_ru_pat = join("|", keys(%_trend_types_ru));
371
my $_trend_types_ru_pat = join("|", keys(%_trend_types_ru));
372
372
373
##
373
##
374
## Constructor.
374
## Constructor.
375
##
375
##
376
376
377
sub new
377
sub new
378
{
378
{
379
    my $this = shift;
379
    my $this = shift;
380
    my $class = ref($this) || $this;
380
    my $class = ref($this) || $this;
381
    my $self = {};
381
    my $self = {};
382
382
383
    ##
383
    ##
384
    ## UPPERCASE items have documented accssor functions (methods) or
384
    ## UPPERCASE items have documented accssor functions (methods) or
385
    ## use AUTOLOAD, while lowercase items are reserved for internal
385
    ## use AUTOLOAD, while lowercase items are reserved for internal
386
    ## use.
386
    ## use.
387
    ##
387
    ##
388
388
389
    $self->{VERSION}       = $VERSION;          # version number
389
    $self->{VERSION}       = $VERSION;          # version number
390
    $self->{METAR}         = undef;             # the actual, raw METAR
390
    $self->{METAR}         = undef;             # the actual, raw METAR
391
    $self->{TYPE}          = undef;             # the type of report
391
    $self->{TYPE}          = undef;             # the type of report
392
    $self->{SITE}          = undef;             # site code
392
    $self->{SITE}          = undef;             # site code
393
    $self->{DATE}          = undef;             # when it was issued
393
    $self->{DATE}          = undef;             # when it was issued
394
    $self->{TIME}          = undef;             # time it was issued
394
    $self->{TIME}          = undef;             # time it was issued
395
    $self->{MOD}           = undef;             # modifier (AUTO/COR)
395
    $self->{MOD}           = undef;             # modifier (AUTO/COR)
396
    $self->{WIND_DIR_DEG}  = undef;             # wind dir in degrees
396
    $self->{WIND_DIR_DEG}  = undef;             # wind dir in degrees
397
    $self->{WIND_DIR_ENG}  = undef;             # wind dir in english (Northwest/Southeast)
397
    $self->{WIND_DIR_ENG}  = undef;             # wind dir in english (Northwest/Southeast)
398
    $self->{WIND_DIR_RUS}  = undef;             # wind dir in russian (Северо-западный/Юго-восточный)
398
    $self->{WIND_DIR_RUS}  = undef;             # wind dir in russian (Северо-западный/Юго-восточный)
399
    $self->{WIND_DIR_ABB}  = undef;             # wind dir in abbreviated english (NW/SE)
399
    $self->{WIND_DIR_ABB}  = undef;             # wind dir in abbreviated english (NW/SE)
400
    $self->{WIND_KTS}      = undef;             # wind speed (knots)
400
    $self->{WIND_KTS}      = undef;             # wind speed (knots)
401
    $self->{WIND_GUST_KTS} = undef;             # wind gusts (knots)
401
    $self->{WIND_GUST_KTS} = undef;             # wind gusts (knots)
402
    $self->{WIND_MPH}      = undef;             # wind speed (MPH)
402
    $self->{WIND_MPH}      = undef;             # wind speed (MPH)
403
    $self->{WIND_GUST_MPH} = undef;             # wind gusts (MPH)
403
    $self->{WIND_GUST_MPH} = undef;             # wind gusts (MPH)
404
    $self->{WIND_MS}       = undef;             # wind speed (m/s)
404
    $self->{WIND_MS}       = undef;             # wind speed (m/s)
405
    $self->{WIND_GUST_MS}  = undef;             # wind gusts (m/s)
405
    $self->{WIND_GUST_MS}  = undef;             # wind gusts (m/s)
406
    $self->{WIND_VAR}      = undef;             # wind variation (text)
406
    $self->{WIND_VAR}      = undef;             # wind variation (text)
407
    $self->{WIND_VAR_1}    = undef;             # wind variation (direction 1)
407
    $self->{WIND_VAR_1}    = undef;             # wind variation (direction 1)
408
    $self->{WIND_VAR_2}    = undef;             # wind variation (direction 2)
408
    $self->{WIND_VAR_2}    = undef;             # wind variation (direction 2)
409
    $self->{WIND_VAR_ENG_1}= undef;             # wind variation (text, direction 1)
409
    $self->{WIND_VAR_ENG_1}= undef;             # wind variation (text, direction 1)
410
    $self->{WIND_VAR_ENG_2}= undef;             # wind variation (text, direction 2)
410
    $self->{WIND_VAR_ENG_2}= undef;             # wind variation (text, direction 2)
411
    $self->{VISIBILITY}    = undef;             # visibility info
411
    $self->{VISIBILITY}    = undef;             # visibility info
412
    $self->{RUNWAY}        = [ ];               # runway vis.
412
    $self->{RUNWAY}        = [ ];               # runway vis.
413
    $self->{RH}            = undef;             # relative humidity
413
    $self->{RH}            = undef;             # relative humidity
414
    $self->{WEATHER}       = [ ];               # current weather
414
    $self->{WEATHER}       = [ ];               # current weather
415
    $self->{WEATHER_LOG}   = [ ];               # weather log
415
    $self->{WEATHER_LOG}   = [ ];               # weather log
416
    $self->{SKY}           = [ ];               # current sky (cloudcover)
416
    $self->{SKY}           = [ ];               # current sky (cloudcover)
417
    $self->{TEMP_F}        = undef;             # current temp, celsius
417
    $self->{TEMP_F}        = undef;             # current temp, celsius
418
    $self->{TEMP_C}        = undef;             # converted to fahrenheit
418
    $self->{TEMP_C}        = undef;             # converted to fahrenheit
419
    $self->{TEMP_WC}       = undef;             # current windchill temp, celsius
419
    $self->{TEMP_WC}       = undef;             # current windchill temp, celsius
420
    $self->{DEW_F}         = undef;             # dew point, celcius
420
    $self->{DEW_F}         = undef;             # dew point, celcius
421
    $self->{DEW_C}         = undef;             # dew point, fahrenheit
421
    $self->{DEW_C}         = undef;             # dew point, fahrenheit
422
    $self->{HOURLY_TEMP_F} = undef;             # hourly current temp, celcius
422
    $self->{HOURLY_TEMP_F} = undef;             # hourly current temp, celcius
423
    $self->{HOURLY_TEMP_C} = undef;             # hourly converted to fahrenheit
423
    $self->{HOURLY_TEMP_C} = undef;             # hourly converted to fahrenheit
424
    $self->{HOURLY_DEW_F}  = undef;             # hourly dew point, celcius
424
    $self->{HOURLY_DEW_F}  = undef;             # hourly dew point, celcius
425
    $self->{HOURLY_DEW_C}  = undef;             # hourly dew point, fahrenheit
425
    $self->{HOURLY_DEW_C}  = undef;             # hourly dew point, fahrenheit
426
    $self->{HOURLY_PRECIP} = undef;             # hourly precipitation
426
    $self->{HOURLY_PRECIP} = undef;             # hourly precipitation
427
    $self->{ALT}           = undef;             # altimeter setting (Hg)
427
    $self->{ALT}           = undef;             # altimeter setting (Hg)
428
    $self->{ALT_HP}        = undef;             # altimeter setting (hPa)
428
    $self->{ALT_HP}        = undef;             # altimeter setting (hPa)
429
    $self->{ALT_PL}        = undef;             # pressure (Hg)
429
    $self->{ALT_PL}        = undef;             # pressure (Hg)
430
    $self->{SLP}           = undef;             # sea level pressure
430
    $self->{SLP}           = undef;             # sea level pressure
431
    $self->{REMARKS}       = undef;             # remarks
431
    $self->{REMARKS}       = undef;             # remarks
432
    $self->{WEATHER_RAW}   = [ ];               # RAW data for weather
432
    $self->{WEATHER_RAW}   = [ ];               # RAW data for weather
433
    $self->{WEATHER_RUS}   = [ ];               # current weather in Russian
433
    $self->{WEATHER_RUS}   = [ ];               # current weather in Russian
434
    $self->{SKY_RAW}       = [ ];               # RAW data for sky
434
    $self->{SKY_RAW}       = [ ];               # RAW data for sky
435
    $self->{SKY_RUS}       = [ ];               # current sky in Russian
435
    $self->{SKY_RUS}       = [ ];               # current sky in Russian
436
    $self->{VISIBILITY_RUS}= undef;             # visibility info    
436
    $self->{VISIBILITY_RUS}= undef;             # visibility info    
437
    $self->{SLP_RUS}       = undef;             # sea level pressure in Russian
437
    $self->{SLP_RUS}       = undef;             # sea level pressure in Russian
438
438
439
    $self->{tokens}        = [ ];               # the "token" list
439
    $self->{tokens}        = [ ];               # the "token" list
440
    $self->{type}          = "METAR";           # the report type (METAR/SPECI)
440
    $self->{type}          = "METAR";           # the report type (METAR/SPECI)
441
                                                # default=METAR
441
                                                # default=METAR
442
    $self->{site}          = undef;             # the site code (4 chars)
442
    $self->{site}          = undef;             # the site code (4 chars)
443
    $self->{date_time}     = undef;             # date/time
443
    $self->{date_time}     = undef;             # date/time
444
    $self->{modifier}      = undef;             # the AUTO/COR modifier
444
    $self->{modifier}      = undef;             # the AUTO/COR modifier
445
    $self->{wind}          = undef;             # the wind information
445
    $self->{wind}          = undef;             # the wind information
446
    $self->{windtype}      = undef;             # the wind speed type (knots/meterpersecond/kilometersperhour)
446
    $self->{windtype}      = undef;             # the wind speed type (knots/meterpersecond/kilometersperhour)
447
    $self->{windvar}       = undef;             # the wind variation
447
    $self->{windvar}       = undef;             # the wind variation
448
    $self->{visibility}    = undef;             # visibility information
448
    $self->{visibility}    = undef;             # visibility information
449
    $self->{runway}        = undef;             # runway visibility
449
    $self->{runway}        = undef;             # runway visibility
450
    $self->{weather}       = [ ];               # current weather conditions
450
    $self->{weather}       = [ ];               # current weather conditions
451
    $self->{sky}           = [ ];               # sky conditions (cloud cover)
451
    $self->{sky}           = [ ];               # sky conditions (cloud cover)
452
    $self->{temp_dew}      = undef;             # temp and dew pt.
452
    $self->{temp_dew}      = undef;             # temp and dew pt.
453
    $self->{alt}           = undef;             # altimeter setting
453
    $self->{alt}           = undef;             # altimeter setting
454
    $self->{pressure}      = undef;             # pressure (HPa)
454
    $self->{pressure}      = undef;             # pressure (HPa)
455
    $self->{slp}           = undef;             # sea level pressure
455
    $self->{slp}           = undef;             # sea level pressure
456
    $self->{remarks}       = [ ];               # remarks
456
    $self->{remarks}       = [ ];               # remarks
457
457
458
    $self->{debug}         = undef;             # enable debug trace
458
    $self->{debug}         = undef;             # enable debug trace
459
459
460
    bless $self, $class;
460
    bless $self, $class;
461
    return $self;
461
    return $self;
462
}
462
}
463
463
464
##
464
##
465
## Autoload for access methods to stuff in %fields hash. We should
465
## Autoload for access methods to stuff in %fields hash. We should
466
## probably disallow access to the lower-case items as stated above,
466
## probably disallow access to the lower-case items as stated above,
467
## but I don't feel like being a Nazi about it. Besides, I haven't
467
## but I don't feel like being a Nazi about it. Besides, I haven't
468
## checked to see what that might break.
468
## checked to see what that might break.
469
##
469
##
470
470
471
sub AUTOLOAD
471
sub AUTOLOAD
472
{
472
{
473
    my $self = shift;
473
    my $self = shift;
474
474
475
    if (not ref $self)
475
    if (not ref $self)
476
    {
476
    {
477
        cluck "bad AUTOLOAD for obj [$self]";
477
        cluck "bad AUTOLOAD for obj [$self]";
478
    }
478
    }
479
479
480
    if ($AUTOLOAD =~ /.*::(.*)/)
480
    if ($AUTOLOAD =~ /.*::(.*)/)
481
    {
481
    {
482
        my $key = $1;
482
        my $key = $1;
483
483
484
484
485
        ## Backward compatible temps...
485
        ## Backward compatible temps...
486
486
487
        my %compat = (
487
        my %compat = (
488
                      F_TEMP    =>  'TEMP_F',
488
                      F_TEMP    =>  'TEMP_F',
489
                      C_TEMP    =>  'TEMP_C',
489
                      C_TEMP    =>  'TEMP_C',
490
                      F_DEW     =>  'DEW_F',
490
                      F_DEW     =>  'DEW_F',
491
                      C_DEW     =>  'DEW_C',
491
                      C_DEW     =>  'DEW_C',
492
                     );
492
                     );
493
493
494
        if ($compat{$key})
494
        if ($compat{$key})
495
        {
495
        {
496
            $key = $compat{$key};
496
            $key = $compat{$key};
497
        }
497
        }
498
498
499
        ## Check for the items...
499
        ## Check for the items...
500
500
501
        if (exists $self->{$key})
501
        if (exists $self->{$key})
502
        {
502
        {
503
            return $self->{$key};
503
            return $self->{$key};
504
        }
504
        }
505
        else
505
        else
506
        {
506
        {
507
            return undef;
507
            return undef;
508
        }
508
        }
509
    }
509
    }
510
    else
510
    else
511
    {
511
    {
512
        warn "strange AUTOLOAD problem!";
512
        warn "strange AUTOLOAD problem!";
513
        return undef;
513
        return undef;
514
    }
514
    }
515
}
515
}
516
516
517
##
517
##
518
## Get current version number.
518
## Get current version number.
519
##
519
##
520
520
521
sub version
521
sub version
522
{
522
{
523
    my $self = shift;
523
    my $self = shift;
524
    print "version() called.\n" if $self->{debug};
524
    print "version() called.\n" if $self->{debug};
525
    return $self->{VERSION};
525
    return $self->{VERSION};
526
}
526
}
527
527
528
##
528
##
529
## Take a METAR, tokenize, and process it.
529
## Take a METAR, tokenize, and process it.
530
##
530
##
531
531
532
sub metar
532
sub metar
533
{
533
{
534
    my $self = shift;
534
    my $self = shift;
535
535
536
    if (@_)
536
    if (@_)
537
    {
537
    {
538
        $self->{METAR} = shift;
538
        $self->{METAR} = shift;
539
        $self->{METAR} =~ s/\n//g;    ## nuke any newlines
539
        $self->{METAR} =~ s/\n//g;    ## nuke any newlines
540
        _tokenize($self);
540
        _tokenize($self);
541
        _process($self);
541
        _process($self);
542
    }
542
    }
543
    return $self->{METAR};
543
    return $self->{METAR};
544
}
544
}
545
545
546
##
546
##
547
## Break {METAR} into parts. Stuff into @tokens.
547
## Break {METAR} into parts. Stuff into @tokens.
548
##
548
##
549
549
550
sub _tokenize
550
sub _tokenize
551
{
551
{
552
    my $self = shift;
552
    my $self = shift;
553
    my $tok;
553
    my $tok;
554
    my @toks;
554
    my @toks;
555
555
556
    # Split tokens on whitespace.
556
    # Split tokens on whitespace.
557
    @toks = split(/\s+/, $self->{METAR});
557
    @toks = split(/\s+/, $self->{METAR});
558
    $self->{tokens} = \@toks;
558
    $self->{tokens} = \@toks;
559
}
559
}
560
560
561
## Process @tokens to populate METAR values.
561
## Process @tokens to populate METAR values.
562
##
562
##
563
## This is a long and involved subroutine. It basically copies the
563
## This is a long and involved subroutine. It basically copies the
564
## @tokens array and treats it as a stack, popping off items,
564
## @tokens array and treats it as a stack, popping off items,
565
## examining them, and see what they look like.  Based on their
565
## examining them, and see what they look like.  Based on their
566
## "apppearance" it takes care populating the proper fields
566
## "apppearance" it takes care populating the proper fields
567
## internally.
567
## internally.
568
568
569
sub _process
569
sub _process
570
{
570
{
571
    my $self = shift;
571
    my $self = shift;
572
572
573
    my @toks = @{$self->{tokens}};      # copy tokens array...
573
    my @toks = @{$self->{tokens}};      # copy tokens array...
574
574
575
    my $tok;
575
    my $tok;
576
576
577
    ## This is a semi-brute-force way of doing things, but the amount
577
    ## This is a semi-brute-force way of doing things, but the amount
578
    ## of data is relatively small, so it shouldn't be a big deal.
578
    ## of data is relatively small, so it shouldn't be a big deal.
579
    ##
579
    ##
580
    ## Ideally, I'd have it skip checks for items which have been
580
    ## Ideally, I'd have it skip checks for items which have been
581
    ## found, but that would make this more "linear" and I'd remove
581
    ## found, but that would make this more "linear" and I'd remove
582
    ## the pretty while loop.
582
    ## the pretty while loop.
583
        #
583
        #
584
        # KH: modified to maintain state to not get lost in remarks and stuff
584
        # KH: modified to maintain state to not get lost in remarks and stuff
585
        # and be a lot better at parsing
585
        # and be a lot better at parsing
586
       
586
       
587
        # states
587
        # states
588
588
589
        my $expect_type = 0;
589
        my $expect_type = 0;
590
        my $expect_site = 1;
590
        my $expect_site = 1;
591
        my $expect_datetime = 2;
591
        my $expect_datetime = 2;
592
        my $expect_modifier = 3;
592
        my $expect_modifier = 3;
593
        my $expect_wind = 4;
593
        my $expect_wind = 4;
594
        my $expect_visibility = 5;
594
        my $expect_visibility = 5;
595
        my $expect_runwayvisual = 6;
595
        my $expect_runwayvisual = 6;
596
        my $expect_presentweather = 7;
596
        my $expect_presentweather = 7;
597
        my $expect_clouds = 8;
597
        my $expect_clouds = 8;
598
        my $expect_temperature = 9;
598
        my $expect_temperature = 9;
599
        my $expect_pressure = 10;
599
        my $expect_pressure = 10;
600
        my $expect_recentweather = 11;
600
        my $expect_recentweather = 11;
601
        my $expect_remarks = 12;
601
        my $expect_remarks = 12;
602
        my $expect_usremarks = 13;
602
        my $expect_usremarks = 13;
603
603
604
        my $parsestate = $expect_type;
604
        my $parsestate = $expect_type;
605
605
606
        # windtypes
606
        # windtypes
607
       
607
       
608
        my $wt_knots = 1;
608
        my $wt_knots = 1;
609
        my $wt_mps = 2;
609
        my $wt_mps = 2;
610
        my $wt_kph = 3;
610
        my $wt_kph = 3;
611
611
612
    ## Assume standard report by default
612
    ## Assume standard report by default
613
613
614
    $self->{type} = "METAR";
614
    $self->{type} = "METAR";
615
    $self->{TYPE} = "Routine Weather Report";
615
    $self->{TYPE} = "Routine Weather Report";
616
616
617
    while (defined($tok = shift(@toks))) ## as long as there are tokens
617
    while (defined($tok = shift(@toks))) ## as long as there are tokens
618
    {
618
    {
619
        print "trying to match [$tok] state is $parsestate\n" if $self->{debug};
619
        print "trying to match [$tok] state is $parsestate\n" if $self->{debug};
620
620
621
        ##
621
        ##
622
        ## is it a report type?
622
        ## is it a report type?
623
        ##
623
        ##
624
624
625
        if (($parsestate == $expect_type) and ($tok =~ /(METAR|SPECI)/i))
625
        if (($parsestate == $expect_type) and ($tok =~ /(METAR|SPECI)/i))
626
        {
626
        {
627
            $self->{type} = $tok;
627
            $self->{type} = $tok;
628
628
629
            if ($self->{type} eq "METAR")
629
            if ($self->{type} eq "METAR")
630
            {
630
            {
631
                $self->{TYPE} = "Routine Weather Report";
631
                $self->{TYPE} = "Routine Weather Report";
632
            }
632
            }
633
            elsif ($self->{type} eq "SPECI")
633
            elsif ($self->{type} eq "SPECI")
634
            {
634
            {
635
                $self->{TYPE} = "Special Weather Report";
635
                $self->{TYPE} = "Special Weather Report";
636
            }
636
            }
637
            print "[$tok] is a report type.\n" if $self->{debug};
637
            print "[$tok] is a report type.\n" if $self->{debug};
638
                        $parsestate = $expect_site;
638
                        $parsestate = $expect_site;
639
            next;
639
            next;
640
        }
640
        }
641
641
642
        ##
642
        ##
643
        ## is is a site ID?
643
        ## is is a site ID?
644
        ##
644
        ##
645
645
646
        elsif (($parsestate <= $expect_site) and ($tok =~ /([A-Z]{4}|K[A-Z0-9]{3})/))
646
        elsif (($parsestate <= $expect_site) and ($tok =~ /([A-Z]{4}|K[A-Z0-9]{3})/))
647
        {
647
        {
648
            $self->{site} = $tok;
648
            $self->{site} = $tok;
649
            print "[$tok] is a site ID.\n" if $self->{debug};
649
            print "[$tok] is a site ID.\n" if $self->{debug};
650
                        $parsestate = $expect_datetime;
650
                        $parsestate = $expect_datetime;
651
            next;
651
            next;
652
        }
652
        }
653
653
654
        ##
654
        ##
655
        ## is it a date/time?
655
        ## is it a date/time?
656
        ##
656
        ##
657
657
658
        elsif (($parsestate == $expect_datetime) and ($tok =~ /\d{6,6}Z/i))
658
        elsif (($parsestate == $expect_datetime) and ($tok =~ /\d{6,6}Z/i))
659
        {
659
        {
660
            $self->{date_time} = $tok;
660
            $self->{date_time} = $tok;
661
            print "[$tok] is a date/time.\n" if $self->{debug};
661
            print "[$tok] is a date/time.\n" if $self->{debug};
662
                        $parsestate = $expect_modifier;
662
                        $parsestate = $expect_modifier;
663
            next;
663
            next;
664
664
665
665
666
        }
666
        }
667
667
668
        ##
668
        ##
669
        ## is it a report modifier?
669
        ## is it a report modifier?
670
        ##
670
        ##
671
671
672
        elsif (($parsestate == $expect_modifier) and ($tok =~ /AUTO|COR|CC[A-Z]/i))
672
        elsif (($parsestate == $expect_modifier) and ($tok =~ /AUTO|COR|CC[A-Z]/i))
673
        {
673
        {
674
            $self->{modifier} = $tok;
674
            $self->{modifier} = $tok;
675
            print "[$tok] is a report modifier.\n" if $self->{debug};
675
            print "[$tok] is a report modifier.\n" if $self->{debug};
676
                        $parsestate = $expect_wind;
676
                        $parsestate = $expect_wind;
677
            next;
677
            next;
678
        }
678
        }
679
679
680
        ##
680
        ##
681
        ## is it wind information in knots?
681
        ## is it wind information in knots?
682
        #
682
        #
683
                # eew: KT seems to be optional
683
                # eew: KT seems to be optional
684
                # but making it optional fails on other stuff
684
                # but making it optional fails on other stuff
685
                # sortafix: wind needs to be \d\d\d\d\d or VRB\d\d
685
                # sortafix: wind needs to be \d\d\d\d\d or VRB\d\d
686
                #      optional \d\d\d\d\dG\d\d\d (gust direction)
686
                #      optional \d\d\d\d\dG\d\d\d (gust direction)
687
687
688
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_visibility) and ($tok =~ /(\d{3}|VRB)\d{2}(G\d{1,3})?(KT)?$/i))
688
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_visibility) and ($tok =~ /(\d{3}|VRB)\d{2}(G\d{1,3})?(KT)?$/i))
689
        {
689
        {
690
            $self->{wind} = $tok;
690
            $self->{wind} = $tok;
691
                        $self->{windtype} = $wt_knots;
691
                        $self->{windtype} = $wt_knots;
692
            print "[$tok] is wind information in knots.\n" if $self->{debug};
692
            print "[$tok] is wind information in knots.\n" if $self->{debug};
693
                        $parsestate = $expect_wind; # stay in wind, it can have variation
693
                        $parsestate = $expect_wind; # stay in wind, it can have variation
694
            next;
694
            next;
695
        }
695
        }
696
696
697
                ##
697
                ##
698
                ## is it wind information in meters per second?
698
                ## is it wind information in meters per second?
699
                ##
699
                ##
700
                ## can be variable too
700
                ## can be variable too
701
701
702
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_visibility) and ($tok =~ /^(\d{3}|VRB)\d{2}(G\d{2,3})?MPS$/))
702
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_visibility) and ($tok =~ /^(\d{3}|VRB)\d{2}(G\d{2,3})?MPS$/))
703
        {
703
        {
704
            $self->{wind} = $tok;
704
            $self->{wind} = $tok;
705
            print "[$tok] is wind information.\n" if $self->{debug};
705
            print "[$tok] is wind information.\n" if $self->{debug};
706
                        $self->{windtype} = $wt_mps;
706
                        $self->{windtype} = $wt_mps;
707
                        $parsestate = $expect_wind; # stay in wind, it can have variation
707
                        $parsestate = $expect_wind; # stay in wind, it can have variation
708
            next;
708
            next;
709
        }
709
        }
710
710
711
                ##
711
                ##
712
                ## is it wind variation information?
712
                ## is it wind variation information?
713
                ##
713
                ##
714
714
715
                elsif (($parsestate >= $expect_wind) and ($parsestate < $expect_visibility) and ($tok =~ /^\d{3}V\d{3}$/))
715
                elsif (($parsestate >= $expect_wind) and ($parsestate < $expect_visibility) and ($tok =~ /^\d{3}V\d{3}$/))
716
                {
716
                {
717
                        $self->{windvar} = $tok;
717
                        $self->{windvar} = $tok;
718
                        print "[$tok] is wind variation information.\n" if $self->{debug};
718
                        print "[$tok] is wind variation information.\n" if $self->{debug};
719
                        $parsestate = $expect_visibility;
719
                        $parsestate = $expect_visibility;
720
                        next;
720
                        next;
721
                }
721
                }
722
722
723
                ##
723
                ##
724
                ## wind information missing at the moment?
724
                ## wind information missing at the moment?
725
                ##
725
                ##
726
726
727
                elsif (($parsestate >= $expect_wind) and ($parsestate < $expect_visibility) and ($tok =~ /^\/\/\/\/\/(KT|MPS)$/)){
727
                elsif (($parsestate >= $expect_wind) and ($parsestate < $expect_visibility) and ($tok =~ /^\/\/\/\/\/(KT|MPS)$/)){
728
                        print "[$tok] is missing wind information.\n" if $self->{debug};
728
                        print "[$tok] is missing wind information.\n" if $self->{debug};
729
                        $parsestate = $expect_visibility;
729
                        $parsestate = $expect_visibility;
730
                        next;
730
                        next;
731
                }
731
                }
732
732
733
                ##
733
                ##
734
                ## is it visibility information in meters?
734
                ## is it visibility information in meters?
735
                ##
735
                ##
736
       
736
       
737
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /^\d{4}$/))
737
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /^\d{4}$/))
738
                {
738
                {
739
                        $self->{visibility} = $tok;
739
                        $self->{visibility} = $tok;
740
            print "[$tok] is numerical visibility information.\n" if $self->{debug};
740
            print "[$tok] is numerical visibility information.\n" if $self->{debug};
741
                        $parsestate = $expect_visibility;
741
                        $parsestate = $expect_visibility;
742
            next;
742
            next;
743
        }
743
        }
744
744
745
                ## auto visibility information in meters?
745
                ## auto visibility information in meters?
746
746
747
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /^\d{4}NDV$/))
747
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /^\d{4}NDV$/))
748
                {
748
                {
749
                        $self->{visibility} = $tok;
749
                        $self->{visibility} = $tok;
750
            print "[$tok] is automatic numerical visibility information.\n" if $self->{debug};
750
            print "[$tok] is automatic numerical visibility information.\n" if $self->{debug};
751
                        $parsestate = $expect_visibility;
751
                        $parsestate = $expect_visibility;
752
            next;
752
            next;
753
        }
753
        }
754
754
755
        ##
755
        ##
756
        ## is it visibility information in statute miles?
756
        ## is it visibility information in statute miles?
757
        ##
757
        ##
758
758
759
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /.*?SM$/i))
759
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and ($tok =~ /.*?SM$/i))
760
        {
760
        {
761
            $self->{visibility} = $tok;
761
            $self->{visibility} = $tok;
762
            print "[$tok] is statute miles visibility information.\n" if $self->{debug};
762
            print "[$tok] is statute miles visibility information.\n" if $self->{debug};
763
                        $parsestate = $expect_visibility;
763
                        $parsestate = $expect_visibility;
764
            next;
764
            next;
765
        }
765
        }
766
766
767
        ##
767
        ##
768
        ## is it visibility information with a leading digit?
768
        ## is it visibility information with a leading digit?
769
                ##
769
                ##
770
                ## sample:
770
                ## sample:
771
                ## KERV 132345Z AUTO 07008KT 1 1/4SM HZ 34/11 A3000 RMK AO2
771
                ## KERV 132345Z AUTO 07008KT 1 1/4SM HZ 34/11 A3000 RMK AO2
772
                ##                           ^^^^^^^
772
                ##                           ^^^^^^^
773
        ##
773
        ##
774
774
775
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and  ($tok =~ /^\d$/))
775
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_runwayvisual) and  ($tok =~ /^\d$/))
776
        {
776
        {
777
            $tok .= " " . shift(@toks);
777
            $tok .= " " . shift(@toks);
778
            $self->{visibility} = $tok;
778
            $self->{visibility} = $tok;
779
            print "[$tok] is multi-part visibility information.\n" if $self->{debug};
779
            print "[$tok] is multi-part visibility information.\n" if $self->{debug};
780
                        $parsestate = $expect_visibility;
780
                        $parsestate = $expect_visibility;
781
            next;
781
            next;
782
        }
782
        }
783
783
784
                ## visibility modifier
784
                ## visibility modifier
785
785
786
                elsif (($parsestate == $expect_visibility) and ($tok =~ /^\d{4}(N|S|E|W|NE|NW|SE|SW)$/))
786
                elsif (($parsestate == $expect_visibility) and ($tok =~ /^\d{4}(N|S|E|W|NE|NW|SE|SW)$/))
787
                {
787
                {
788
            print "[$tok] is a visibility modifier.\n" if $self->{debug};
788
            print "[$tok] is a visibility modifier.\n" if $self->{debug};
789
            next;
789
            next;
790
                }
790
                }
791
791
792
        ##
792
        ##
793
        ## is it runway visibility info?
793
        ## is it runway visibility info?
794
        ##
794
        ##
795
                # KH: I've seen runway visibility with 'U' units
795
                # KH: I've seen runway visibility with 'U' units
796
                # EHSB 121425Z 22010KT 1200 R27/1600U -DZ BKN003 OVC007 07/07 Q1016 AMB FCST CANCEL
796
                # EHSB 121425Z 22010KT 1200 R27/1600U -DZ BKN003 OVC007 07/07 Q1016 AMB FCST CANCEL
797
                # U= going up, D= going down, N= no change
797
                # U= going up, D= going down, N= no change
798
                # tendency of visual range, http://stoivane.kapsi.fi/metar/
798
                # tendency of visual range, http://stoivane.kapsi.fi/metar/
799
799
800
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_presentweather) and ($tok =~ /R\d+(L|R|C)?\/P?\d+(VP?\d+)?(FT|D|U|N|\/)?$/i))
800
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_presentweather) and ($tok =~ /R\d+(L|R|C)?\/P?\d+(VP?\d+)?(FT|D|U|N|\/)?$/i))
801
        {
801
        {
802
            push (@{$self->{RUNWAY}},$tok);
802
            push (@{$self->{RUNWAY}},$tok);
803
            print "[$tok] is runway visual information.\n" if $self->{debug};
803
            print "[$tok] is runway visual information.\n" if $self->{debug};
804
                        $parsestate = $expect_runwayvisual;
804
                        $parsestate = $expect_runwayvisual;
805
                        # there can be multiple runways, so stay at this state
805
                        # there can be multiple runways, so stay at this state
806
            next;
806
            next;
807
        }
807
        }
808
808
809
        ##
809
        ##
810
        ## is it current weather info?
810
        ## is it current weather info?
811
        ##
811
        ##
812
812
813
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_clouds) and ($tok =~ /^(-|\+)?(VC)?($_weather_types_pat)+/i))
813
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_clouds) and ($tok =~ /^(-|\+)?(VC)?($_weather_types_pat)+/i))
814
        {
814
        {
815
            my $engl = "";
815
            my $engl = "";
816
            my $rusl = "";
816
            my $rusl = "";
817
            my $rawl = "";
817
            my $rawl = "";
818
            my $qual = $1;
818
            my $qual = $1;
819
            my $addlqual = $2;
819
            my $addlqual = $2;
820
820
821
            ## qualifier
821
            ## qualifier
822
822
823
            if (defined $qual)
823
            if (defined $qual)
824
            {
824
            {
825
                if ( $qual eq "-" ) {
825
                if ( $qual eq "-" ) {
826
                    $engl = "light";
826
                    $engl = "light";
827
                    $rusl = "легкий";
827
                    $rusl = "легкий";
828
                } elsif ( $qual eq "+" ) {
828
                } elsif ( $qual eq "+" ) {
829
                    $engl = "heavy";
829
                    $engl = "heavy";
830
                    $rusl = "сильный";
830
                    $rusl = "сильный";
831
                } else {
831
                } else {
832
                    $engl = ""; ## moderate
832
                    $engl = ""; ## moderate
833
                    $rusl = "";
833
                    $rusl = "";
834
                }
834
                }
835
                $rawl = $qual;
835
                $rawl = $qual;
836
            }
836
            }
837
            else
837
            else
838
            {
838
            {
839
                $engl = ""; ## moderate
839
                $engl = ""; ## moderate
840
                $rusl = "";
840
                $rusl = "";
841
                $rawl = "";
841
                $rawl = "";
842
            }
842
            }
843
843
844
            while ( $tok =~ /($_weather_types_pat)/gi )
844
            while ( $tok =~ /($_weather_types_pat)/gi )
845
            {
845
            {
846
                $engl .= " " . $_weather_types{$1}; ## figure out weather                
846
                $engl .= " " . $_weather_types{$1}; ## figure out weather                
847
                $rusl .= " " . $_weather_types_ru{$1} . ", ";
847
                $rusl .= " " . $_weather_types_ru{$1} . ", ";
848
                $rawl .= " " . $1;
848
                $rawl .= " " . $1;
849
            }
849
            }
850
            $rusl = substr($rusl, 0, length($rusl)-2);
850
            $rusl = substr($rusl, 0, length($rusl)-2);
851
           
851
           
852
852
853
            ## addl qualifier
853
            ## addl qualifier
854
854
855
            if (defined $addlqual)
855
            if (defined $addlqual)
856
            {
856
            {
857
                if ( $addlqual eq "VC" )
857
                if ( $addlqual eq "VC" )
858
                {
858
                {
859
                    $engl .= " in vicinity";
859
                    $engl .= " in vicinity";
860
                    $rusl .= " в окрестностях";
860
                    $rusl .= " в окрестностях";
861
                }
861
                }
862
            }
862
            }
863
863
864
            $engl =~ s/^\s//gio;
864
            $engl =~ s/^\s//gio;
865
            $engl =~ s/\s\s/ /gio;
865
            $engl =~ s/\s\s/ /gio;
866
            $rusl =~ s/^\s//gio;
866
            $rusl =~ s/^\s//gio;
867
            $rusl =~ s/\s\s/ /gio;
867
            $rusl =~ s/\s\s/ /gio;
868
            $rawl =~ s/^\s//gio;
868
            $rawl =~ s/^\s//gio;
869
            $rawl =~ s/\s\s/ /gio;
869
            $rawl =~ s/\s\s/ /gio;
870
870
871
            push(@{$self->{WEATHER}},$engl);
871
            push(@{$self->{WEATHER}},$engl);
872
            push(@{$self->{WEATHER_RUS}},$rusl);
872
            push(@{$self->{WEATHER_RUS}},$rusl);
873
            push(@{$self->{WEATHER_RAW}},$rawl);
873
            push(@{$self->{WEATHER_RAW}},$rawl);
874
            push(@{$self->{weather}},$tok);
874
            push(@{$self->{weather}},$tok);
875
            print "[$tok] is current weather.\n" if $self->{debug};
875
            print "[$tok] is current weather.\n" if $self->{debug};
876
                        $parsestate = $expect_presentweather;
876
                        $parsestate = $expect_presentweather;
877
                        # there can be multiple current weather types, so stay at this state
877
                        # there can be multiple current weather types, so stay at this state
878
            next;
878
            next;
879
        }
879
        }
880
880
881
                ##
881
                ##
882
                ## special case: CAVOK
882
                ## special case: CAVOK
883
                ##
883
                ##
884
               
884
               
885
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok eq 'CAVOK' ))
885
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok eq 'CAVOK' ))
886
                {
886
                {
887
            push(@{$self->{sky}},$tok);
887
            push(@{$self->{sky}},$tok);
888
            push(@{$self->{SKY}}, "Sky Clear");
888
            push(@{$self->{SKY}}, "Sky Clear");
889
            push(@{$self->{SKY_RUS}}, "Ясно");
889
            push(@{$self->{SKY_RUS}}, "ясно");
890
            push(@{$self->{SKY_RAW}},$tok);
890
            push(@{$self->{SKY_RAW}},$tok);
891
            push(@{$self->{weather}},$tok);
891
            push(@{$self->{weather}},$tok);
892
            push(@{$self->{WEATHER}},"No significant weather");
892
            push(@{$self->{WEATHER}},"No significant weather");
-
 
893
            push(@{$self->{WEATHER_RUS}},"без существенных изменений");
893
                        $self->{visibility} = '9999';
894
                        $self->{visibility} = '9999';
894
                        $parsestate = $expect_temperature;
895
                        $parsestate = $expect_temperature;
895
                        next;
896
                        next;
896
                }
897
                }
897
898
898
        ##
899
        ##
899
        ## is it sky conditions (clear)?
900
        ## is it sky conditions (clear)?
900
        ##
901
        ##
901
902
902
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /SKC|CLR/ ))
903
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /SKC|CLR/ ))
903
        {
904
        {
904
            push(@{$self->{sky}},$tok);
905
            push(@{$self->{sky}},$tok);
905
            push(@{$self->{SKY}}, "Sky Clear");
906
            push(@{$self->{SKY}}, "Sky Clear");
906
            push(@{$self->{SKY_RUS}}, "Ясно");
907
            push(@{$self->{SKY_RUS}}, "ясно");
907
            push(@{$self->{SKY_RAW}},$tok);
908
            push(@{$self->{SKY_RAW}},$tok);
908
            print "[$tok] is a sky condition.\n" if $self->{debug};
909
            print "[$tok] is a sky condition.\n" if $self->{debug};
909
                        $parsestate = $expect_clouds;
910
                        $parsestate = $expect_clouds;
910
                        next;
911
                        next;
911
        }
912
        }
912
913
913
        ##
914
        ##
914
        ## is it sky conditions (clouds)?
915
        ## is it sky conditions (clouds)?
915
        ##
916
        ##
916
                ## sky conditions can end with ///
917
                ## sky conditions can end with ///
917
918
918
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^(FEW|SCT|BKN|OVC)(\d\d\d)?(CB|TCU)?\/*$/i))
919
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^(FEW|SCT|BKN|OVC)(\d\d\d)?(CB|TCU)?\/*$/i))
919
        {
920
        {
920
            push(@{$self->{sky}},$tok);
921
            push(@{$self->{sky}},$tok);
921
            my $engl = "";
922
            my $engl = "";
922
            my $rusl = "";
923
            my $rusl = "";
923
            my $rawl = "";
924
            my $rawl = "";
924
925
925
            $engl = $_sky_types{$1};
926
            $engl = $_sky_types{$1};
926
            $rusl = $_sky_types_ru{$1};
927
            $rusl = $_sky_types_ru{$1};
927
            $rawl = $1;
928
            $rawl = $1;
928
929
929
            if (defined $3)
930
            if (defined $3)
930
            {
931
            {
931
                if ($3 eq "TCU")
932
                if ($3 eq "TCU")
932
                {
933
                {
933
                    $engl .= " Towering Cumulus";
934
                    $engl .= " Towering Cumulus";
934
                    $rusl .= ", кучевые облака";                    
935
                    $rusl .= ", кучевые облака";                    
935
                }
936
                }
936
                elsif ($3 eq "CB")
937
                elsif ($3 eq "CB")
937
                {
938
                {
938
                    $engl .= " Cumulonimbus";
939
                    $engl .= " Cumulonimbus";
939
                    $rusl .= ", кучево-дождевые облака";
940
                    $rusl .= ", кучево-дождевые облака";
940
                }
941
                }
941
                $rawl = $3;
942
                $rawl = $3;
942
            }
943
            }
943
944
944
            if ($2 ne "")
945
            if ($2 ne "")
945
            {
946
            {
946
                my $agl = int($2)*100;
947
                my $agl = int($2)*100;
947
                $engl .= " at $agl" . "ft";
948
                $engl .= " at $agl" . "ft";
948
                $rusl .= " на высоте " . int(($agl*0.3048)/10)*10 . " м";
949
                $rusl .= " на высоте " . int(($agl*0.3048)/10)*10 . " м";
949
            }
950
            }
950
951
951
            push(@{$self->{SKY}}, $engl);
952
            push(@{$self->{SKY}}, $engl);
952
            push(@{$self->{SKY_RUS}}, $rusl);
953
            push(@{$self->{SKY_RUS}}, $rusl);
953
            push(@{$self->{SKY_RAW}}, $rawl);
954
            push(@{$self->{SKY_RAW}}, $rawl);
954
            print "[$tok] is a sky condition.\n" if $self->{debug};
955
            print "[$tok] is a sky condition.\n" if $self->{debug};
955
                        $parsestate = $expect_clouds;
956
                        $parsestate = $expect_clouds;
956
                        # clouds DO repeat. a lot ;)
957
                        # clouds DO repeat. a lot ;)
957
            next;
958
            next;
958
        }
959
        }
959
960
960
                ##
961
                ##
961
                ## auto detected cloud conditions
962
                ## auto detected cloud conditions
962
                ##
963
                ##
963
964
964
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^(NSC|NCD)$/ )){
965
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^(NSC|NCD)$/ )){
965
            my $engl = "";
966
            my $engl = "";
966
            my $rusl = "";
967
            my $rusl = "";
967
968
968
            $engl = $_sky_types{$tok};
969
            $engl = $_sky_types{$tok};
969
            $rusl = $_sky_types_ru{$tok};
970
            $rusl = $_sky_types_ru{$tok};
970
            push(@{$self->{SKY}}, $engl);
971
            push(@{$self->{SKY}}, $engl);
971
            push(@{$self->{SKY_RUS}}, $rusl);
972
            push(@{$self->{SKY_RUS}}, $rusl);
972
            push(@{$self->{SKY_RAW}}, $tok);
973
            push(@{$self->{SKY_RAW}}, $tok);
973
                        print "[$tok] is an automatic sky condition.\n" if $self->{debug};
974
                        print "[$tok] is an automatic sky condition.\n" if $self->{debug};
974
                        $parsestate = $expect_temperature;
975
                        $parsestate = $expect_temperature;
975
                        next;
976
                        next;
976
                }
977
                }
977
978
978
                ##
979
                ##
979
                ## Vertical visibility
980
                ## Vertical visibility
980
                ##
981
                ##
981
982
982
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^VV\d+$/ )){
983
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_temperature) and ( $tok =~ /^VV\d+$/ )){
983
                        print "[$tok] is vertical visibility.\n" if $self->{debug};
984
                        print "[$tok] is vertical visibility.\n" if $self->{debug};
984
                        $parsestate = $expect_temperature;
985
                        $parsestate = $expect_temperature;
985
                        next;
986
                        next;
986
                }
987
                }
987
988
988
        ##
989
        ##
989
        ## is it temperature and dew point info?
990
        ## is it temperature and dew point info?
990
        ##
991
        ##
991
992
992
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_pressure) and ($tok =~ /^(M?\d\d)\/(M?\d{0,2})/i))
993
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_pressure) and ($tok =~ /^(M?\d\d)\/(M?\d{0,2})/i))
993
        {
994
        {
994
            next if $self->{temp_dew};
995
            next if $self->{temp_dew};
995
            $self->{temp_dew} = $tok;
996
            $self->{temp_dew} = $tok;
996
997
997
            $self->{TEMP_C} = $1;
998
            $self->{TEMP_C} = $1;
998
            $self->{DEW_C} = $2;
999
            $self->{DEW_C} = $2;
999
            $self->{TEMP_C} =~ s/^M/-/;
1000
            $self->{TEMP_C} =~ s/^M/-/;
1000
            $self->{DEW_C} =~ s/^M/-/;
1001
            $self->{DEW_C} =~ s/^M/-/;
1001
1002
1002
            print "[$tok] is temperature/dew point information.\n" if $self->{debug};
1003
            print "[$tok] is temperature/dew point information.\n" if $self->{debug};
1003
                        $parsestate = $expect_pressure;
1004
                        $parsestate = $expect_pressure;
1004
            next;
1005
            next;
1005
        }
1006
        }
1006
1007
1007
        ##
1008
        ##
1008
        ## is it an altimeter setting? (in.Hg)
1009
        ## is it an altimeter setting? (in.Hg)
1009
        ##
1010
        ##
1010
1011
1011
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^A(\d\d)(\d\d)$/i))
1012
        elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^A(\d\d)(\d\d)$/i))
1012
        {
1013
        {
1013
            $self->{alt} = $tok;
1014
            $self->{alt} = $tok;
1014
            $self->{ALT} = "$1.$2"+0;
1015
            $self->{ALT} = "$1.$2"+0;
1015
            $self->{ALT_HP} = "$1.$2" * 33.863886;
1016
            $self->{ALT_HP} = "$1.$2" * 33.863886;
1016
1017
1017
            print "[$tok] is an altimeter setting.\n" if $self->{debug};
1018
            print "[$tok] is an altimeter setting.\n" if $self->{debug};
1018
                        $parsestate = $expect_recentweather;
1019
                        $parsestate = $expect_recentweather;
1019
            next;
1020
            next;
1020
        }
1021
        }
1021
1022
1022
                ##
1023
                ##
1023
                ## is it a pressure? (hPa)
1024
                ## is it a pressure? (hPa)
1024
                ##
1025
                ##
1025
1026
1026
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^Q(\d\d\d\d)$/i))
1027
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^Q(\d\d\d\d)$/i))
1027
                {
1028
                {
1028
                        $self->{pressure} = $1;
1029
                        $self->{pressure} = $1;
1029
            $self->{ALT_HP} = $1;
1030
            $self->{ALT_HP} = $1;
1030
                        $self->{ALT} = 0.029529983 * $self->{pressure};
1031
                        $self->{ALT} = 0.029529983 * $self->{pressure};
1031
                        print "[$tok] is an air pressure.\n" if $self->{debug};
1032
                        print "[$tok] is an air pressure.\n" if $self->{debug};
1032
                        $parsestate = $expect_recentweather;
1033
                        $parsestate = $expect_recentweather;
1033
                        next;
1034
                        next;
1034
                }
1035
                }
1035
1036
1036
                ##
1037
                ##
1037
                ## recent weather?
1038
                ## recent weather?
1038
                ##
1039
                ##
1039
1040
1040
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^RE($_weather_types_pat)$/)){
1041
                elsif (($parsestate >= $expect_modifier) and ($parsestate < $expect_remarks) and ($tok =~ /^RE($_weather_types_pat)$/)){
1041
                        print "[$tok] is recent significant weather.\n" if $self->{debug};
1042
                        print "[$tok] is recent significant weather.\n" if $self->{debug};
1042
                        $parsestate = $expect_remarks;
1043
                        $parsestate = $expect_remarks;
1043
                        next;
1044
                        next;
1044
                }
1045
                }
1045
1046
1046
                ##
1047
                ##
1047
                ## euro type trend?
1048
                ## euro type trend?
1048
                ##
1049
                ##
1049
1050
1050
                elsif (($parsestate >= $expect_modifier) and ($tok =~ /^$_trend_types_pat/) and ($tok =~ /^$_trend_types_ru_pat/)){
1051
                elsif (($parsestate >= $expect_modifier) and ($tok =~ /^$_trend_types_pat/) and ($tok =~ /^$_trend_types_ru_pat/)){
1051
                        print "[$tok] is a trend.\n" if $self->{debug};
1052
                        print "[$tok] is a trend.\n" if $self->{debug};
1052
                        $parsestate = $expect_remarks;
1053
                        $parsestate = $expect_remarks;
1053
                        next;
1054
                        next;
1054
                }
1055
                }
1055
1056
1056
        ##
1057
        ##
1057
        ## us type remarks? .. can happen quite early in the process already
1058
        ## us type remarks? .. can happen quite early in the process already
1058
        ##
1059
        ##
1059
1060
1060
        elsif (($parsestate >= $expect_modifier) and ($tok =~ /^RMK$/i))
1061
        elsif (($parsestate >= $expect_modifier) and ($tok =~ /^RMK$/i))
1061
        {
1062
        {
1062
            push(@{$self->{remarks}},$tok);
1063
            push(@{$self->{remarks}},$tok);
1063
            print "[$tok] is a (US type) remark.\n" if $self->{debug};
1064
            print "[$tok] is a (US type) remark.\n" if $self->{debug};
1064
                        $parsestate  = $expect_usremarks;
1065
                        $parsestate  = $expect_usremarks;
1065
            next;
1066
            next;
1066
        }
1067
        }
1067
1068
1068
        ##
1069
        ##
1069
        ## automatic station type?
1070
        ## automatic station type?
1070
        ##
1071
        ##
1071
1072
1072
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^A(O\d)$/i))
1073
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^A(O\d)$/i))
1073
        {
1074
        {
1074
            $self->{autostationtype} = $tok;
1075
            $self->{autostationtype} = $tok;
1075
            $self->{AUTO_STATIONTYPE} = $1;
1076
            $self->{AUTO_STATIONTYPE} = $1;
1076
            print "[$tok] is an automatic station type remark.\n" if $self->{debug};
1077
            print "[$tok] is an automatic station type remark.\n" if $self->{debug};
1077
            next;
1078
            next;
1078
        }
1079
        }
1079
1080
1080
        ##
1081
        ##
1081
        ## sea level pressure
1082
        ## sea level pressure
1082
        ##
1083
        ##
1083
1084
1084
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^SLP(\d+)/i))
1085
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^SLP(\d+)/i))
1085
        {
1086
        {
1086
            $self->{slp} = $tok;
1087
            $self->{slp} = $tok;
1087
            $self->{SLP} = "$1 mb";
1088
            $self->{SLP} = "$1 mb";
1088
            $self->{SLP_RUS} = "$1 мбар";
1089
            $self->{SLP_RUS} = "$1 мбар";
1089
            print "[$tok] is a sea level pressure.\n" if $self->{debug};
1090
            print "[$tok] is a sea level pressure.\n" if $self->{debug};
1090
            next;
1091
            next;
1091
        }
1092
        }
1092
1093
1093
        ##
1094
        ##
1094
        ## sea level pressure not available
1095
        ## sea level pressure not available
1095
        ##
1096
        ##
1096
1097
1097
        elsif (($parsestate == $expect_usremarks) and ($tok eq "SLPNO"))
1098
        elsif (($parsestate == $expect_usremarks) and ($tok eq "SLPNO"))
1098
        {
1099
        {
1099
            $self->{slp} = "SLPNO";
1100
            $self->{slp} = "SLPNO";
1100
            $self->{SLP} = "not available";
1101
            $self->{SLP} = "not available";
1101
            $self->{SLP_RUS} = "нет данных";
1102
            $self->{SLP_RUS} = "нет данных";
1102
            print "[$tok] is a sea level pressure.\n" if $self->{debug};
1103
            print "[$tok] is a sea level pressure.\n" if $self->{debug};
1103
            next;
1104
            next;
1104
        }
1105
        }
1105
1106
1106
        ##
1107
        ##
1107
        ## hourly precipitation
1108
        ## hourly precipitation
1108
        ##
1109
        ##
1109
1110
1110
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^P(\d\d\d\d)$/i))
1111
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^P(\d\d\d\d)$/i))
1111
        {
1112
        {
1112
            $self->{hourlyprecip} = $tok;
1113
            $self->{hourlyprecip} = $tok;
1113
1114
1114
            if ( $1 eq "0000" ) {
1115
            if ( $1 eq "0000" ) {
1115
                $self->{HOURLY_PRECIP} = "Trace";
1116
                $self->{HOURLY_PRECIP} = "Trace";
1116
            } else {
1117
            } else {
1117
                $self->{HOURLY_PRECIP} = $1;
1118
                $self->{HOURLY_PRECIP} = $1;
1118
            }
1119
            }
1119
        }
1120
        }
1120
1121
1121
        ##
1122
        ##
1122
        ## weather begin/end times
1123
        ## weather begin/end times
1123
        ##
1124
        ##
1124
1125
1125
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^($_weather_types_pat)([BE\d]+)$/i))
1126
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^($_weather_types_pat)([BE\d]+)$/i))
1126
        {
1127
        {
1127
            my $engl = "";
1128
            my $engl = "";
1128
            my $times = $2;
1129
            my $times = $2;
1129
1130
1130
            $self->{weatherlog} = $tok;
1131
            $self->{weatherlog} = $tok;
1131
1132
1132
            $engl = $_weather_types{$1};
1133
            $engl = $_weather_types{$1};
1133
1134
1134
            while ( $times =~ /(B|E)(\d\d)/g )
1135
            while ( $times =~ /(B|E)(\d\d)/g )
1135
            {
1136
            {
1136
                if ( $1 eq "B" ) {
1137
                if ( $1 eq "B" ) {
1137
                    $engl .= " began :$2";
1138
                    $engl .= " began :$2";
1138
                } else {
1139
                } else {
1139
                    $engl .= " ended :$2";
1140
                    $engl .= " ended :$2";
1140
                }
1141
                }
1141
            }
1142
            }
1142
1143
1143
            push(@{$self->{WEATHER_LOG}}, $engl);
1144
            push(@{$self->{WEATHER_LOG}}, $engl);
1144
            print "[$tok] is a weather log.\n" if $self->{debug};
1145
            print "[$tok] is a weather log.\n" if $self->{debug};
1145
            next;
1146
            next;
1146
        }
1147
        }
1147
1148
1148
        ##
1149
        ##
1149
        ## remarks for significant cloud types
1150
        ## remarks for significant cloud types
1150
        ##
1151
        ##
1151
1152
1152
        elsif (($parsestate >= $expect_recentweather) and ($tok eq "CB" || $tok eq "TCU"))
1153
        elsif (($parsestate >= $expect_recentweather) and ($tok eq "CB" || $tok eq "TCU"))
1153
        {
1154
        {
1154
            push(@{$self->{sigclouds}}, $tok);
1155
            push(@{$self->{sigclouds}}, $tok);
1155
1156
1156
            if ( $tok eq "CB" ) {
1157
            if ( $tok eq "CB" ) {
1157
                push(@{$self->{SIGCLOUDS}}, "Cumulonimbus");
1158
                push(@{$self->{SIGCLOUDS}}, "Cumulonimbus");
1158
            } elsif ( $tok eq "TCU" ) {
1159
            } elsif ( $tok eq "TCU" ) {
1159
                push(@{$self->{SIGCLOUDS}}, "Towering Cumulus");
1160
                push(@{$self->{SIGCLOUDS}}, "Towering Cumulus");
1160
            }
1161
            }
1161
                        $parsestate = $expect_usremarks;
1162
                        $parsestate = $expect_usremarks;
1162
        }
1163
        }
1163
1164
1164
        ##
1165
        ##
1165
        ## hourly temp/dewpoint
1166
        ## hourly temp/dewpoint
1166
        ##
1167
        ##
1167
1168
1168
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^T(\d)(\d\d)(\d)(\d)(\d\d)(\d)$/i))
1169
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^T(\d)(\d\d)(\d)(\d)(\d\d)(\d)$/i))
1169
        {
1170
        {
1170
            $self->{hourlytempdew} = $tok;
1171
            $self->{hourlytempdew} = $tok;
1171
            if ( $1 == 1 ) {
1172
            if ( $1 == 1 ) {
1172
                $self->{HOURLY_TEMP_C} = "-";
1173
                $self->{HOURLY_TEMP_C} = "-";
1173
            }
1174
            }
1174
            $self->{HOURLY_TEMP_C} .= "$2.$3";
1175
            $self->{HOURLY_TEMP_C} .= "$2.$3";
1175
1176
1176
            $self->{HOURLY_DEW_C} = "";
1177
            $self->{HOURLY_DEW_C} = "";
1177
            if ( $4 == 1 ) {
1178
            if ( $4 == 1 ) {
1178
                $self->{HOURLY_DEW_C} = "-";
1179
                $self->{HOURLY_DEW_C} = "-";
1179
            }
1180
            }
1180
            $self->{HOURLY_DEW_C} .= "$5.$6";
1181
            $self->{HOURLY_DEW_C} .= "$5.$6";
1181
1182
1182
            print "[$tok] is a hourly temp and dewpoint.\n" if $self->{debug};
1183
            print "[$tok] is a hourly temp and dewpoint.\n" if $self->{debug};
1183
            next;
1184
            next;
1184
        }
1185
        }
1185
1186
1186
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^QFE(\d\d\d)/i))
1187
        elsif (($parsestate == $expect_usremarks) and ($tok =~ /^QFE(\d\d\d)/i))
1187
        {
1188
        {
1188
            $self->{ALT_PL} = $1;
1189
            $self->{ALT_PL} = $1;
1189
1190
1190
            print "[$tok] is a pressure\n" if $self->{debug};
1191
            print "[$tok] is a pressure\n" if $self->{debug};
1191
            next;
1192
            next;
1192
        }
1193
        }
1193
1194
1194
        ##
1195
        ##
1195
        ## unknown, not in remarks yet
1196
        ## unknown, not in remarks yet
1196
        ##
1197
        ##
1197
1198
1198
        elsif ($parsestate < $expect_remarks)
1199
        elsif ($parsestate < $expect_remarks)
1199
        {
1200
        {
1200
            push(@{$self->{unknown}},$tok);
1201
            push(@{$self->{unknown}},$tok);
1201
            push(@{$self->{UNKNOWN}},$tok);
1202
            push(@{$self->{UNKNOWN}},$tok);
1202
            print "[$tok] is unexpected at this state.\n" if $self->{debug};
1203
            print "[$tok] is unexpected at this state.\n" if $self->{debug};
1203
            next;
1204
            next;
1204
        }
1205
        }
1205
1206
1206
        ##
1207
        ##
1207
        ## unknown. assume remarks
1208
        ## unknown. assume remarks
1208
        ##
1209
        ##
1209
1210
1210
        else
1211
        else
1211
        {
1212
        {
1212
            push(@{$self->{remarks}},$tok);
1213
            push(@{$self->{remarks}},$tok);
1213
            push(@{$self->{REMARKS}},$tok);
1214
            push(@{$self->{REMARKS}},$tok);
1214
            print "[$tok] is unknown remark.\n" if $self->{debug};
1215
            print "[$tok] is unknown remark.\n" if $self->{debug};
1215
            next;
1216
            next;
1216
        }
1217
        }
1217
1218
1218
    }
1219
    }
1219
1220
1220
    ##
1221
    ##
1221
    ## Now that the internal stuff is set, let's do the external
1222
    ## Now that the internal stuff is set, let's do the external
1222
    ## stuff.
1223
    ## stuff.
1223
    ##
1224
    ##
1224
1225
1225
    $self->{SITE} = $self->{site};
1226
    $self->{SITE} = $self->{site};
1226
    $self->{DATE} = substr($self->{date_time},0,2);
1227
    $self->{DATE} = substr($self->{date_time},0,2);
1227
    $self->{TIME} = substr($self->{date_time},2,4) . " UTC";
1228
    $self->{TIME} = substr($self->{date_time},2,4) . " UTC";
1228
    $self->{TIME} =~ s/(\d\d)(\d\d)/$1:$2/o;
1229
    $self->{TIME} =~ s/(\d\d)(\d\d)/$1:$2/o;
1229
    $self->{MOD}  = $self->{modifier};
1230
    $self->{MOD}  = $self->{modifier};
1230
1231
1231
    ##
1232
    ##
1232
    ## Okay, wind finally gets interesting.
1233
    ## Okay, wind finally gets interesting.
1233
    ##
1234
    ##
1234
1235
1235
    if ( defined $self->{wind} )
1236
    if ( defined $self->{wind} )
1236
        {
1237
        {
1237
        my $wind = $self->{wind};
1238
        my $wind = $self->{wind};
1238
        my $dir_deg  = substr($wind,0,3);
1239
        my $dir_deg  = substr($wind,0,3);
1239
        my $wind_speed;
1240
        my $wind_speed;
1240
        my $dir_eng = "";
1241
        my $dir_eng = "";
1241
        my $dir_rus = "";
1242
        my $dir_rus = "";
1242
                my $dir_abb = "";
1243
                my $dir_abb = "";
1243
1244
1244
        $wind_speed = $1 if($wind =~ /...(\d{2,3})/o);
1245
        $wind_speed = $1 if($wind =~ /...(\d{2,3})/o);
1245
        # Check for wind direction
1246
        # Check for wind direction
1246
        if ($dir_deg =~ /VRB/i) {
1247
        if ($dir_deg =~ /VRB/i) {
1247
            $dir_deg = $dir_eng = "Variable";
1248
            $dir_deg = $dir_eng = "Variable";
1248
            $dir_rus = "переменный";
1249
            $dir_rus = "переменный";
1249
        } else {
1250
        } else {
1250
            if ($wind_speed == 0 and $dir_deg == 0) {
1251
            if ($wind_speed == 0 and $dir_deg == 0) {
1251
                # Calm wind (00000KT in METAR)
1252
                # Calm wind (00000KT in METAR)
1252
                $dir_eng = "Calm";
1253
                $dir_eng = "Calm";
1253
                $dir_rus = "штиль";
1254
                $dir_rus = "штиль";
1254
                print "wind is calm\n" if $self->{debug};
1255
                print "wind is calm\n" if $self->{debug};
1255
            } elsif ($dir_deg < 15) {
1256
            } elsif ($dir_deg < 15) {
1256
                $dir_eng = "North";
1257
                $dir_eng = "North";
1257
                                $dir_abb = "N";
1258
                                $dir_abb = "N";
1258
                $dir_rus = "северный";
1259
                $dir_rus = "северный";
1259
            } elsif ($dir_deg < 30) {
1260
            } elsif ($dir_deg < 30) {
1260
                $dir_eng = "North/Northeast";
1261
                $dir_eng = "North/Northeast";
1261
                                $dir_abb = "NNE";
1262
                                $dir_abb = "NNE";
1262
                $dir_rus = "северо-северо-восточный";
1263
                $dir_rus = "северо-северо-восточный";
1263
            } elsif ($dir_deg < 60) {
1264
            } elsif ($dir_deg < 60) {
1264
                $dir_eng = "Northeast";
1265
                $dir_eng = "Northeast";
1265
                                $dir_abb = "NE";
1266
                                $dir_abb = "NE";
1266
                $dir_rus = "северо-восточный";
1267
                $dir_rus = "северо-восточный";
1267
            } elsif ($dir_deg < 75) {
1268
            } elsif ($dir_deg < 75) {
1268
                $dir_eng = "East/Northeast";
1269
                $dir_eng = "East/Northeast";
1269
                                $dir_abb = "ENE";
1270
                                $dir_abb = "ENE";
1270
                $dir_rus = "восточный-северо-восточный";
1271
                $dir_rus = "восточный-северо-восточный";
1271
            } elsif ($dir_deg < 105) {
1272
            } elsif ($dir_deg < 105) {
1272
                $dir_eng = "East";
1273
                $dir_eng = "East";
1273
                                $dir_abb = "E";
1274
                                $dir_abb = "E";
1274
                $dir_rus = "восточный";
1275
                $dir_rus = "восточный";
1275
            } elsif ($dir_deg < 120) {
1276
            } elsif ($dir_deg < 120) {
1276
                $dir_eng = "East/Southeast";
1277
                $dir_eng = "East/Southeast";
1277
                                $dir_abb = "ESE";
1278
                                $dir_abb = "ESE";
1278
                $dir_rus = "восточный-юго-восточный";
1279
                $dir_rus = "восточный-юго-восточный";
1279
            } elsif ($dir_deg < 150) {
1280
            } elsif ($dir_deg < 150) {
1280
                $dir_eng = "Southeast";
1281
                $dir_eng = "Southeast";
1281
                                $dir_abb = "SE";
1282
                                $dir_abb = "SE";
1282
                $dir_rus = "юго-восточный";
1283
                $dir_rus = "юго-восточный";
1283
            } elsif ($dir_deg < 165) {
1284
            } elsif ($dir_deg < 165) {
1284
                $dir_eng = "South/Southeast";
1285
                $dir_eng = "South/Southeast";
1285
                                $dir_abb = "SSE";
1286
                                $dir_abb = "SSE";
1286
                $dir_rus = "юго-юго-восточный";
1287
                $dir_rus = "юго-юго-восточный";
1287
            } elsif ($dir_deg < 195) {
1288
            } elsif ($dir_deg < 195) {
1288
                $dir_eng = "South";
1289
                $dir_eng = "South";
1289
                                $dir_abb = "S";
1290
                                $dir_abb = "S";
1290
                $dir_rus = "южный";
1291
                $dir_rus = "южный";
1291
            } elsif ($dir_deg < 210) {
1292
            } elsif ($dir_deg < 210) {
1292
                $dir_eng = "South/Southwest";
1293
                $dir_eng = "South/Southwest";
1293
                                $dir_abb = "SSW";
1294
                                $dir_abb = "SSW";
1294
                $dir_rus = "юго-юго-западный"
1295
                $dir_rus = "юго-юго-западный"
1295
            } elsif ($dir_deg < 240) {
1296
            } elsif ($dir_deg < 240) {
1296
                $dir_eng = "Southwest";
1297
                $dir_eng = "Southwest";
1297
                                $dir_abb = "SW";
1298
                                $dir_abb = "SW";
1298
                $dir_rus = "юго-западный";
1299
                $dir_rus = "юго-западный";
1299
            } elsif ($dir_deg < 265) {
1300
            } elsif ($dir_deg < 265) {
1300
                $dir_eng = "West/Southwest";
1301
                $dir_eng = "West/Southwest";
1301
                                $dir_abb = "WSW";
1302
                                $dir_abb = "WSW";
1302
                $dir_rus = "западно-юго-западный";
1303
                $dir_rus = "западно-юго-западный";
1303
            } elsif ($dir_deg < 285) {
1304
            } elsif ($dir_deg < 285) {
1304
                $dir_eng = "West";
1305
                $dir_eng = "West";
1305
                                $dir_abb = "W";
1306
                                $dir_abb = "W";
1306
                $dir_rus = "западный";
1307
                $dir_rus = "западный";
1307
            } elsif ($dir_deg < 300) {
1308
            } elsif ($dir_deg < 300) {
1308
                $dir_eng = "West/Northwest";
1309
                $dir_eng = "West/Northwest";
1309
                                $dir_abb = "WNW";
1310
                                $dir_abb = "WNW";
1310
                $dir_rus = "западно-северо-западный";
1311
                $dir_rus = "западно-северо-западный";
1311
            } elsif ($dir_deg < 330) {
1312
            } elsif ($dir_deg < 330) {
1312
                $dir_eng = "Northwest";
1313
                $dir_eng = "Northwest";
1313
                                $dir_abb = "NW";
1314
                                $dir_abb = "NW";
1314
                $dir_rus = "северо-западный";
1315
                $dir_rus = "северо-западный";
1315
            } elsif ($dir_deg < 345) {
1316
            } elsif ($dir_deg < 345) {
1316
                $dir_eng = "North/Northwest";
1317
                $dir_eng = "North/Northwest";
1317
                                $dir_abb = "NNW";
1318
                                $dir_abb = "NNW";
1318
                $dir_rus = "северо-северо-западный";
1319
                $dir_rus = "северо-северо-западный";
1319
            } elsif ($dir_deg < 360) {
1320
            } elsif ($dir_deg < 360) {
1320
                $dir_eng = "North";
1321
                $dir_eng = "North";
1321
                                $dir_abb = "N";
1322
                                $dir_abb = "N";
1322
                $dir_rus = "северный";
1323
                $dir_rus = "северный";
1323
            } else {
1324
            } else {
1324
                # Shouldn't happen, but if for some reason the METAR
1325
                # Shouldn't happen, but if for some reason the METAR
1325
                # information doesn't contain a reasonable direction...
1326
                # information doesn't contain a reasonable direction...
1326
                $dir_eng = "undeterminable";
1327
                $dir_eng = "undeterminable";
1327
                $dir_rus = "неопределенный";
1328
                $dir_rus = "неопределенный";
1328
            }
1329
            }
1329
        }
1330
        }
1330
1331
1331
                my $kts_speed = undef;
1332
                my $kts_speed = undef;
1332
                my $mph_speed = undef;
1333
                my $mph_speed = undef;
1333
                my $mps_speed = undef;
1334
                my $mps_speed = undef;
1334
1335
1335
                my $kts_gust = "";
1336
                my $kts_gust = "";
1336
                my $mph_gust = "";
1337
                my $mph_gust = "";
1337
                my $mps_gust = "";
1338
                my $mps_gust = "";
1338
1339
1339
                # parse knots
1340
                # parse knots
1340
1341
1341
                if ($self->{windtype} == $wt_knots){
1342
                if ($self->{windtype} == $wt_knots){
1342
                        $wind =~ /...(\d\d\d?)/o;
1343
                        $wind =~ /...(\d\d\d?)/o;
1343
                        $kts_speed = $1;
1344
                        $kts_speed = $1;
1344
                        $mph_speed = $kts_speed * 1.15077945;
1345
                        $mph_speed = $kts_speed * 1.15077945;
1345
                        $mps_speed = $kts_speed * 0.514444444;
1346
                        $mps_speed = $kts_speed * 0.514444444;
1346
1347
1347
                        if ($wind =~ /.{5,6}G(\d\d\d?)/o) {
1348
                        if ($wind =~ /.{5,6}G(\d\d\d?)/o) {
1348
                                $kts_gust = $1;
1349
                                $kts_gust = $1;
1349
                                $mph_gust = $kts_gust * 1.15077945;
1350
                                $mph_gust = $kts_gust * 1.15077945;
1350
                                $mps_gust = $kts_gust * 0.514444444;
1351
                                $mps_gust = $kts_gust * 0.514444444;
1351
                        }
1352
                        }
1352
                # else: parse meters/second
1353
                # else: parse meters/second
1353
                } elsif ($self->{windtype} == $wt_mps){
1354
                } elsif ($self->{windtype} == $wt_mps){
1354
                        $wind=~ /...(\d\d\d?)/o;
1355
                        $wind=~ /...(\d\d\d?)/o;
1355
                        $mps_speed = $1;
1356
                        $mps_speed = $1;
1356
                        $kts_speed = $mps_speed * 1.9438445; # units
1357
                        $kts_speed = $mps_speed * 1.9438445; # units
1357
                        $mph_speed = $mps_speed * 2.2369363;
1358
                        $mph_speed = $mps_speed * 2.2369363;
1358
                        if ($wind =~ /\d{5,6}G(\d\d\d?)/o) {
1359
                        if ($wind =~ /\d{5,6}G(\d\d\d?)/o) {
1359
                                $mps_gust = $1;
1360
                                $mps_gust = $1;
1360
                                $kts_gust = $mps_gust * 1.9438445;
1361
                                $kts_gust = $mps_gust * 1.9438445;
1361
                                $mph_gust = $mps_gust * 2.2369363;
1362
                                $mph_gust = $mps_gust * 2.2369363;
1362
                        }
1363
                        }
1363
                } else {
1364
                } else {
1364
                        warn "Geo::ModMETAR Parser error: unknown windtype\n";
1365
                        warn "Geo::ModMETAR Parser error: unknown windtype\n";
1365
                }
1366
                }
1366
1367
1367
        $self->{WIND_KTS} = $kts_speed;
1368
        $self->{WIND_KTS} = $kts_speed;
1368
        $self->{WIND_MPH} = $mph_speed;
1369
        $self->{WIND_MPH} = $mph_speed;
1369
        $self->{WIND_MS}  = $mps_speed;
1370
        $self->{WIND_MS}  = $mps_speed;
1370
1371
1371
        $self->{WIND_GUST_KTS} = $kts_gust;
1372
        $self->{WIND_GUST_KTS} = $kts_gust;
1372
        $self->{WIND_GUST_MPH} = $mph_gust;
1373
        $self->{WIND_GUST_MPH} = $mph_gust;
1373
        $self->{WIND_GUST_MS}  = $mps_gust;
1374
        $self->{WIND_GUST_MS}  = $mps_gust;
1374
1375
1375
        $self->{WIND_DIR_DEG} = $dir_deg;
1376
        $self->{WIND_DIR_DEG} = $dir_deg;
1376
        $self->{WIND_DIR_ENG} = $dir_eng;
1377
        $self->{WIND_DIR_ENG} = $dir_eng;
1377
        $self->{WIND_DIR_ABB} = $dir_abb;
1378
        $self->{WIND_DIR_ABB} = $dir_abb;
1378
        $self->{WIND_DIR_RUS} = $dir_rus;
1379
        $self->{WIND_DIR_RUS} = $dir_rus;
1379
1380
1380
    }
1381
    }
1381
1382
1382
        ##
1383
        ##
1383
        ## wind variation
1384
        ## wind variation
1384
        ##
1385
        ##
1385
1386
1386
        if (defined $self->{windvar})
1387
        if (defined $self->{windvar})
1387
        {
1388
        {
1388
                if ($self->{windvar} =~ /^(\d\d\d)V(\d\d\d)$/){
1389
                if ($self->{windvar} =~ /^(\d\d\d)V(\d\d\d)$/){
1389
                        $self->{WIND_VAR} = "Varying between $1 and $2";
1390
                        $self->{WIND_VAR} = "Varying between $1 and $2";
1390
            $self->{WIND_VAR_1} = $1;
1391
            $self->{WIND_VAR_1} = $1;
1391
            $self->{WIND_VAR_2} = $2;
1392
            $self->{WIND_VAR_2} = $2;
1392
            my @direction = (
1393
            my @direction = (
1393
                15 => "North",
1394
                15 => "North",
1394
                30 => "North/Northeast",
1395
                30 => "North/Northeast",
1395
                60 => "Northeast",
1396
                60 => "Northeast",
1396
                75 => "East/Northeast",
1397
                75 => "East/Northeast",
1397
                105 => "East",
1398
                105 => "East",
1398
                120 => "East/Southeast",
1399
                120 => "East/Southeast",
1399
                150 => "Southeast",
1400
                150 => "Southeast",
1400
                165 => "South/Southeast",
1401
                165 => "South/Southeast",
1401
                195 => "South",
1402
                195 => "South",
1402
                210 => "South/Southwest",
1403
                210 => "South/Southwest",
1403
                240 => "Southwest",
1404
                240 => "Southwest",
1404
                265 => "West/Southwest",
1405
                265 => "West/Southwest",
1405
                285 => "West",
1406
                285 => "West",
1406
                300 => "West/Northwest",
1407
                300 => "West/Northwest",
1407
                330 => "Northwest",
1408
                330 => "Northwest",
1408
                345 => "North/Northwest",
1409
                345 => "North/Northwest",
1409
                360 => "North",
1410
                360 => "North",
1410
                1000 => "undeterminable");
1411
                1000 => "undeterminable");
1411
            for(my $x = 0; $x < $#direction; $x += 2) {
1412
            for(my $x = 0; $x < $#direction; $x += 2) {
1412
                if($self->{WIND_VAR_1} < $direction[$x]) {
1413
                if($self->{WIND_VAR_1} < $direction[$x]) {
1413
                    $self->{WIND_VAR_ENG_1} = $direction[$x+1];
1414
                    $self->{WIND_VAR_ENG_1} = $direction[$x+1];
1414
                    last;
1415
                    last;
1415
                }
1416
                }
1416
            }
1417
            }
1417
            for(my $x = 0; $x < $#direction; $x += 2) {
1418
            for(my $x = 0; $x < $#direction; $x += 2) {
1418
                if($self->{WIND_VAR_2} < $direction[$x]) {
1419
                if($self->{WIND_VAR_2} < $direction[$x]) {
1419
                    $self->{WIND_VAR_ENG_2} = $direction[$x+1];
1420
                    $self->{WIND_VAR_ENG_2} = $direction[$x+1];
1420
                    last;
1421
                    last;
1421
                }
1422
                }
1422
            }
1423
            }
1423
                }
1424
                }
1424
        }
1425
        }
1425
1426
1426
    ##   
1427
    ##   
1427
    ## Calculate relative humidity
1428
    ## Calculate relative humidity
1428
    ##
1429
    ##
1429
1430
1430
    {
1431
    {
1431
        my $esat  = 6.11*(10**((7.5*$self->{TEMP_C})/(237.7+$self->{TEMP_C})));
1432
        my $esat  = 6.11*(10**((7.5*$self->{TEMP_C})/(237.7+$self->{TEMP_C})));
1432
        my $esurf = 6.11*(10**((7.5*$self->{DEW_C})/(237.7+$self->{DEW_C})));
1433
        my $esurf = 6.11*(10**((7.5*$self->{DEW_C})/(237.7+$self->{DEW_C})));
1433
1434
1434
        $self->{RH} = 100.0 * ($esurf/$esat);
1435
        $self->{RH} = 100.0 * ($esurf/$esat);
1435
    }
1436
    }
1436
   
1437
   
1437
    ##
1438
    ##
1438
    ## Calculate windchill temperature
1439
    ## Calculate windchill temperature
1439
    ##
1440
    ##
1440
   
1441
   
1441
    {
1442
    {
1442
        my $windspeed = $self->{WIND_MS}*3.6;
1443
        my $windspeed = $self->{WIND_MS}*3.6;
1443
        $self->{TEMP_WC} = 13.12 + 0.6215*$self->{TEMP_C} - 11.37*($windspeed**0.16) + 0.3965*$self->{TEMP_C}*($windspeed**0.16);
1444
        $self->{TEMP_WC} = 13.12 + 0.6215*$self->{TEMP_C} - 11.37*($windspeed**0.16) + 0.3965*$self->{TEMP_C}*($windspeed**0.16);
1444
    }
1445
    }
1445
1446
1446
    ##
1447
    ##
1447
    ## Visibility.
1448
    ## Visibility.
1448
    ##
1449
    ##
1449
1450
1450
    if($self->{visibility}) {
1451
    if($self->{visibility}) {
1451
        my $vis = $self->{visibility};
1452
        my $vis = $self->{visibility};
1452
                # test for statute miles
1453
                # test for statute miles
1453
                if ($vis =~ /SM$/){
1454
                if ($vis =~ /SM$/){
1454
                        $vis =~ s/SM$//oi;                              # nuke the "SM"
1455
                        $vis =~ s/SM$//oi;                              # nuke the "SM"
1455
                        if ($vis =~ /M(\d\/\d)/o) {
1456
                        if ($vis =~ /M(\d\/\d)/o) {
1456
                                $self->{VISIBILITY} = "Less than $1 statute miles";
1457
                                $self->{VISIBILITY} = "Less than $1 statute miles";
1457
                                $self->{VISIBILITY_RUS} = "Менее чем $1 статутных миль";
1458
                                $self->{VISIBILITY_RUS} = "Менее чем $1 статутных миль";
1458
                        } else {
1459
                        } else {
1459
                                $self->{VISIBILITY} = $vis . " statute miles";
1460
                                $self->{VISIBILITY} = $vis . " statute miles";
1460
                                $self->{VISIBILITY} = $vis . " статутных миль";
1461
                                $self->{VISIBILITY} = $vis . " статутных миль";
1461
                        } # end if
1462
                        } # end if
1462
                # auto metars can have non-directional visibility reports
1463
                # auto metars can have non-directional visibility reports
1463
                } elsif (($self->{MOD} eq 'AUTO') and ($vis =~ /(\d+)NDV$/)){
1464
                } elsif (($self->{MOD} eq 'AUTO') and ($vis =~ /(\d+)NDV$/)){
1464
                        $self->{VISIBILITY} = "$1 meters non-directional visibility";
1465
                        $self->{VISIBILITY} = "$1 meters non-directional visibility";
1465
                        $self->{VISIBILITY_RUS} = "$1 м непрямой видимости";
1466
                        $self->{VISIBILITY_RUS} = "$1 м непрямой видимости";
1466
                } else {
1467
                } else {
1467
                        $self->{VISIBILITY} = $vis . " meters";
1468
                        $self->{VISIBILITY} = $vis . " meters";
1468
            if ($vis<1000) {
1469
            if ($vis<1000) {
1469
                            $self->{VISIBILITY_RUS} = $vis . " м";
1470
                            $self->{VISIBILITY_RUS} = $vis . " м";
1470
            } else {
1471
            } else {
1471
                $vis = $vis/1000;
1472
                $vis = $vis/1000;
1472
                if (abs($vis-int($vis))>=0.5) {
1473
                if (abs($vis-int($vis))>=0.5) {
1473
                    $vis = int($vis)+1;
1474
                    $vis = int($vis)+1;
1474
                } else {
1475
                } else {
1475
                    $vis = int($vis);
1476
                    $vis = int($vis);
1476
                }
1477
                }
1477
                $self->{VISIBILITY_RUS} = $vis . " км";
1478
                $self->{VISIBILITY_RUS} = $vis . " км";
1478
            }
1479
            }
1479
                }
1480
                }
1480
    }
1481
    }
1481
1482
1482
    ##
1483
    ##
1483
    ## Calculate F temps for all C temps
1484
    ## Calculate F temps for all C temps
1484
    ##
1485
    ##
1485
1486
1486
    foreach my $key ( keys(%$self) )
1487
    foreach my $key ( keys(%$self) )
1487
    {
1488
    {
1488
        if ( uc($key) eq $key && $key =~ /^(.*)_C$/ )
1489
        if ( uc($key) eq $key && $key =~ /^(.*)_C$/ )
1489
        {
1490
        {
1490
            my $fkey = $1 . "_F";
1491
            my $fkey = $1 . "_F";
1491
1492
1492
            next unless defined $self->{$key} && $self->{$key};
1493
            next unless defined $self->{$key} && $self->{$key};
1493
1494
1494
            $self->{$fkey} = sprintf("%.1f", (($self->{$key} * (9/5)) + 32));
1495
            $self->{$fkey} = sprintf("%.1f", (($self->{$key} * (9/5)) + 32));
1495
        }
1496
        }
1496
    }
1497
    }
1497
1498
1498
        # join the runway group
1499
        # join the runway group
1499
       
1500
       
1500
        $self->{runway} = join(', ' , @{$self->{RUNWAY}});
1501
        $self->{runway} = join(', ' , @{$self->{RUNWAY}});
1501
       
1502
       
1502
}
1503
}
1503
1504
1504
##
1505
##
1505
## Print the tokens--usually when debugging.
1506
## Print the tokens--usually when debugging.
1506
##
1507
##
1507
1508
1508
sub print_tokens
1509
sub print_tokens
1509
{
1510
{
1510
    my $self = shift;
1511
    my $self = shift;
1511
    my $tok;
1512
    my $tok;
1512
    foreach $tok (@{$self->{tokens}}) {
1513
    foreach $tok (@{$self->{tokens}}) {
1513
        print "> $tok\n";
1514
        print "> $tok\n";
1514
    }
1515
    }
1515
}
1516
}
1516
1517
1517
##
1518
##
1518
## Turn debugging on/off.
1519
## Turn debugging on/off.
1519
##
1520
##
1520
1521
1521
sub debug
1522
sub debug
1522
{
1523
{
1523
    my $self = shift;
1524
    my $self = shift;
1524
    my $flag = shift;
1525
    my $flag = shift;
1525
    return $self->{debug} unless defined $flag;
1526
    return $self->{debug} unless defined $flag;
1526
1527
1527
    if (($flag eq "Y") or ($flag eq "y") or ($flag == 1)) {
1528
    if (($flag eq "Y") or ($flag eq "y") or ($flag == 1)) {
1528
        $self->{debug} = 1;
1529
        $self->{debug} = 1;
1529
    } elsif (($flag eq "N") or ($flag eq "n") or ($flag == 0)) {
1530
    } elsif (($flag eq "N") or ($flag eq "n") or ($flag == 0)) {
1530
        $self->{debug} = 0;
1531
        $self->{debug} = 0;
1531
    }
1532
    }
1532
1533
1533
    return $self->{debug};
1534
    return $self->{debug};
1534
}
1535
}
1535
1536
1536
##
1537
##
1537
## Dump internal data structure. Useful for debugging and such.
1538
## Dump internal data structure. Useful for debugging and such.
1538
##
1539
##
1539
1540
1540
sub dump
1541
sub dump
1541
{
1542
{
1542
    my $self = shift;
1543
    my $self = shift;
1543
1544
1544
    print "Modified METAR dump follows.\n\n";
1545
    print "Modified METAR dump follows.\n\n";
1545
1546
1546
    print "type: $self->{type}\n";
1547
    print "type: $self->{type}\n";
1547
    print "site: $self->{site}\n";
1548
    print "site: $self->{site}\n";
1548
    print "date_time: $self->{date_time}\n";
1549
    print "date_time: $self->{date_time}\n";
1549
    print "modifier: $self->{modifier}\n";
1550
    print "modifier: $self->{modifier}\n";
1550
    print "wind: $self->{wind}\n";
1551
    print "wind: $self->{wind}\n";
1551
    print "variable wind: $self->{vrbwind}\n";
1552
    print "variable wind: $self->{vrbwind}\n";
1552
    print "visibility: $self->{visibility}\n";
1553
    print "visibility: $self->{visibility}\n";
1553
    print "runway: $self->{runway}\n";
1554
    print "runway: $self->{runway}\n";
1554
    print "weather: " . join(', ', @{$self->{weather}}) . "\n";
1555
    print "weather: " . join(', ', @{$self->{weather}}) . "\n";
1555
    print "sky: " . join(', ', @{$self->{sky}}) . "\n";
1556
    print "sky: " . join(', ', @{$self->{sky}}) . "\n";
1556
    print "temp_dew: $self->{temp_dew}\n";
1557
    print "temp_dew: $self->{temp_dew}\n";
1557
    print "alt: $self->{alt}\n";
1558
    print "alt: $self->{alt}\n";
1558
    print "pressure: $self->{pressure}\n";
1559
    print "pressure: $self->{pressure}\n";
1559
    print "slp: $self->{slp}\n";
1560
    print "slp: $self->{slp}\n";
1560
    print "remarks: " . join (', ', @{$self->{remarks}}) . "\n";
1561
    print "remarks: " . join (', ', @{$self->{remarks}}) . "\n";
1561
    print "\n";
1562
    print "\n";
1562
1563
1563
    foreach my $var ( sort(keys(%$self)) )
1564
    foreach my $var ( sort(keys(%$self)) )
1564
    {
1565
    {
1565
        next if ( uc($var) ne $var );
1566
        next if ( uc($var) ne $var );
1566
1567
1567
        if ( ref($self->{$var}) eq "ARRAY" )
1568
        if ( ref($self->{$var}) eq "ARRAY" )
1568
        {
1569
        {
1569
            print "$var: ", join(", ", @{$self->{$var}}), "\n";
1570
            print "$var: ", join(", ", @{$self->{$var}}), "\n";
1570
        }
1571
        }
1571
        else
1572
        else
1572
        {
1573
        {
1573
            print "$var: ", $self->{$var}, "\n";
1574
            print "$var: ", $self->{$var}, "\n";
1574
        }
1575
        }
1575
    }
1576
    }
1576
}
1577
}
1577
1578
1578
1;
1579
1;
1579
1580
1580
__END__
1581
__END__
1581
1582
1582
=head1 NAME
1583
=head1 NAME
1583

1584

1584
Geo::ModMETAR - Process aviation weather reports in the METAR format.
1585
Geo::ModMETAR - Process aviation weather reports in the METAR format.
1585

1586

1586
=head1 SYNOPSIS
1587
=head1 SYNOPSIS
1587

1588

1588
  use Geo::ModMETAR;
1589
  use Geo::ModMETAR;
1589
  use strict;
1590
  use strict;
1590

1591

1591
  my $m = new Geo::ModMETAR;
1592
  my $m = new Geo::ModMETAR;
1592
  $m->metar("KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK 57014");
1593
  $m->metar("KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK 57014");
1593
  print $m->dump;
1594
  print $m->dump;
1594

1595

1595
  exit;
1596
  exit;
1596

1597

1597
=head1 DESCRIPTION
1598
=head1 DESCRIPTION
1598

1599

1599
METAR reports are available on-line, thanks to the National Weather Service.
1600
METAR reports are available on-line, thanks to the National Weather Service.
1600
Since reading the METAR format isn't easy for non-pilots, these reports are
1601
Since reading the METAR format isn't easy for non-pilots, these reports are
1601
relatively useles to the common man who just wants a quick glace at the
1602
relatively useles to the common man who just wants a quick glace at the
1602
weather. This module tries to parse the METAR reports so the data can be
1603
weather. This module tries to parse the METAR reports so the data can be
1603
used to create readable weather reports and/or process the data in
1604
used to create readable weather reports and/or process the data in
1604
applications.
1605
applications.
1605

1606

1606
=head1 USAGE
1607
=head1 USAGE
1607

1608

1608
=head2 How you might use this
1609
=head2 How you might use this
1609

1610

1610
Here is how you I<might> use the Geo::ModMETAR module.
1611
Here is how you I<might> use the Geo::ModMETAR module.
1611

1612

1612
One use that I have had for this module is to query the NWS METAR page
1613
One use that I have had for this module is to query the NWS METAR page
1613
(using the LWP modules) at:
1614
(using the LWP modules) at:
1614

1615

1615
I<http://weather.noaa.gov/cgi-bin/mgetmetar.pl?cccc=EHSB>
1616
I<http://weather.noaa.gov/cgi-bin/mgetmetar.pl?cccc=EHSB>
1616

1617

1617
to get an
1618
to get an
1618
up-to-date METAR. Then, I scan thru the output, looking for what looks
1619
up-to-date METAR. Then, I scan thru the output, looking for what looks
1619
like a METAR string (that's not hard in Perl). Oh, EHSB can be any site
1620
like a METAR string (that's not hard in Perl). Oh, EHSB can be any site
1620
location code where there is a reporting station.
1621
location code where there is a reporting station.
1621

1622

1622
I then pass the METAR into this module and get the info I want. I can
1623
I then pass the METAR into this module and get the info I want. I can
1623
then update my webcam page with the current temperature, sky conditions, or
1624
then update my webcam page with the current temperature, sky conditions, or
1624
whatnot. See for yourself at http://webcam.idefix.net/
1625
whatnot. See for yourself at http://webcam.idefix.net/
1625

1626

1626
See the BUGS section for a remark about multiple passes with the same
1627
See the BUGS section for a remark about multiple passes with the same
1627
Geo::ModMETAR object.
1628
Geo::ModMETAR object.
1628

1629

1629
=head2 Functions
1630
=head2 Functions
1630

1631

1631
The following functions are defined in the METAR module. Most of
1632
The following functions are defined in the METAR module. Most of
1632
them are I<public>, meaning that you're supposed to use
1633
them are I<public>, meaning that you're supposed to use
1633
them. Some are I<private>, meaning that you're not supposed to use
1634
them. Some are I<private>, meaning that you're not supposed to use
1634
them -- but I won't stop you. Assume that functions are I<public>
1635
them -- but I won't stop you. Assume that functions are I<public>
1635
unless otherwise documented.
1636
unless otherwise documented.
1636

1637

1637
=over
1638
=over
1638

1639

1639
=item metar()
1640
=item metar()
1640

1641

1641
metar() is the function to whwich you should pass a METAR string.  It
1642
metar() is the function to whwich you should pass a METAR string.  It
1642
will take care of decomposing it into its component parts converting
1643
will take care of decomposing it into its component parts converting
1643
the units and so on.
1644
the units and so on.
1644

1645

1645
Example: C<$m-E<gt>metar("KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK 57014");>
1646
Example: C<$m-E<gt>metar("KFDY 251450Z 21012G21KT 8SM OVC065 04/M01 A3010 RMK 57014");>
1646

1647

1647
=item debug()
1648
=item debug()
1648

1649

1649
debug() toggles debugging messages. By default, debugging is turned
1650
debug() toggles debugging messages. By default, debugging is turned
1650
B<off>. Turn it on if you are developing METAR or having trouble with
1651
B<off>. Turn it on if you are developing METAR or having trouble with
1651
it.
1652
it.
1652

1653

1653
debug() understands all of the folloing:
1654
debug() understands all of the folloing:
1654

1655

1655
        Enable       Disable
1656
        Enable       Disable
1656
        ------       -------
1657
        ------       -------
1657
          1             0
1658
          1             0
1658
        'yes'         'no'
1659
        'yes'         'no'
1659
        'on'          'off'
1660
        'on'          'off'
1660

1661

1661
If you contact me for help, I'll likely ask you for some debugging
1662
If you contact me for help, I'll likely ask you for some debugging
1662
output.
1663
output.
1663

1664

1664
Example: C<$m-E<gt>debug(1);>
1665
Example: C<$m-E<gt>debug(1);>
1665

1666

1666
=item dump()
1667
=item dump()
1667

1668

1668
dump() will dump the internal data structure for the METAR in a
1669
dump() will dump the internal data structure for the METAR in a
1669
semi-human readable format.
1670
semi-human readable format.
1670

1671

1671
Example: C<$m-E<gt>dump;>
1672
Example: C<$m-E<gt>dump;>
1672

1673

1673
=item version()
1674
=item version()
1674

1675

1675
version() will print out the current version.
1676
version() will print out the current version.
1676

1677

1677
Example: C<print $m-E<gt>version;>
1678
Example: C<print $m-E<gt>version;>
1678

1679

1679
=item _tokenize()
1680
=item _tokenize()
1680

1681

1681
B<PRIVATE>
1682
B<PRIVATE>
1682

1683

1683
Called internally to break the METAR into its component tokens.
1684
Called internally to break the METAR into its component tokens.
1684

1685

1685
=item _process()
1686
=item _process()
1686

1687

1687
B<PRIVATE>
1688
B<PRIVATE>
1688

1689

1689
Used to make sense of the tokens found in B<_tokenize()>.
1690
Used to make sense of the tokens found in B<_tokenize()>.
1690

1691

1691
=back
1692
=back
1692

1693

1693
=head2 Variables
1694
=head2 Variables
1694

1695

1695
After you've called B<metar()>, you'd probably like to get at
1696
After you've called B<metar()>, you'd probably like to get at
1696
the individual values for things like temperature, dew point,
1697
the individual values for things like temperature, dew point,
1697
and so on. You do that by accessing individual variables via
1698
and so on. You do that by accessing individual variables via
1698
the METAR object.
1699
the METAR object.
1699

1700

1700
This section lists those variables and what they represent.
1701
This section lists those variables and what they represent.
1701

1702

1702
If you call B<dump()>, you'll find that it spits all of these
1703
If you call B<dump()>, you'll find that it spits all of these
1703
out.
1704
out.
1704

1705

1705
=over
1706
=over
1706

1707

1707
=item VERSION
1708
=item VERSION
1708

1709

1709
The version of METAR.pm that you're using.
1710
The version of METAR.pm that you're using.
1710

1711

1711
=item METAR
1712
=item METAR
1712

1713

1713
The actual, raw METAR.
1714
The actual, raw METAR.
1714

1715

1715
=item TYPE
1716
=item TYPE
1716

1717

1717
Report type in English ("Routine Weather Report" or "Special Weather Report")
1718
Report type in English ("Routine Weather Report" or "Special Weather Report")
1718

1719

1719
=item SITE
1720
=item SITE
1720

1721

1721
4-letter site code.
1722
4-letter site code.
1722

1723

1723
=item DATE
1724
=item DATE
1724

1725

1725
The date (just the day of the month) on which the report was issued.
1726
The date (just the day of the month) on which the report was issued.
1726

1727

1727
=item TIME
1728
=item TIME
1728

1729

1729
The time at which the report was issued.
1730
The time at which the report was issued.
1730

1731

1731
=item MOD
1732
=item MOD
1732

1733

1733
Modifier (AUTO/COR) if any.
1734
Modifier (AUTO/COR) if any.
1734

1735

1735
=item WIND_DIR_ENG
1736
=item WIND_DIR_ENG
1736

1737

1737
The current wind direction in English (Southwest, East, North, etc.)
1738
The current wind direction in English (Southwest, East, North, etc.)
1738

1739

1739
=item WIND_DIR_RUS
1740
=item WIND_DIR_RUS
1740

1741

1741
The current wind direction in Russian
1742
The current wind direction in Russian
1742

1743

1743
=item WIND_DIR_ABB
1744
=item WIND_DIR_ABB
1744

1745

1745
The current wind direction in abbreviated English (S, E, N, etc.)
1746
The current wind direction in abbreviated English (S, E, N, etc.)
1746

1747

1747
=item WIND_DIR_DEG
1748
=item WIND_DIR_DEG
1748

1749

1749
The current wind direction in degrees.
1750
The current wind direction in degrees.
1750

1751

1751
=item WIND_KTS
1752
=item WIND_KTS
1752

1753

1753
The current wind speed in Knots.
1754
The current wind speed in Knots.
1754

1755

1755
=item WIND_MPH
1756
=item WIND_MPH
1756

1757

1757
The current wind speed in Miles Per Hour.
1758
The current wind speed in Miles Per Hour.
1758

1759

1759
=item WIND_MS
1760
=item WIND_MS
1760

1761

1761
The current wind speed in Metres Per Second.
1762
The current wind speed in Metres Per Second.
1762

1763

1763
=item WIND_GUST_KTS
1764
=item WIND_GUST_KTS
1764

1765

1765
The current wind gusting speed in Knots.
1766
The current wind gusting speed in Knots.
1766

1767

1767
=item WIND_GUST_MPH
1768
=item WIND_GUST_MPH
1768

1769

1769
The current wind gusting speed in Miles Per Hour.
1770
The current wind gusting speed in Miles Per Hour.
1770

1771

1771
=item WIND_GUST_MS
1772
=item WIND_GUST_MS
1772

1773

1773
The current wind gusting speed in Metres Per Second.
1774
The current wind gusting speed in Metres Per Second.
1774

1775

1775
=item WIND_VAR
1776
=item WIND_VAR
1776

1777

1777
The wind variation in English
1778
The wind variation in English
1778

1779

1779
=item WIND_VAR_1
1780
=item WIND_VAR_1
1780

1781

1781
The first wind variation direction
1782
The first wind variation direction
1782

1783

1783
=item WIND_VAR_ENG_1
1784
=item WIND_VAR_ENG_1
1784

1785

1785
The first wind variation direction in English
1786
The first wind variation direction in English
1786

1787

1787
=item WIND_VAR_2
1788
=item WIND_VAR_2
1788

1789

1789
The second wind variation direction
1790
The second wind variation direction
1790

1791

1791
=item WIND_VAR_ENG_2
1792
=item WIND_VAR_ENG_2
1792

1793

1793
The second wind variation direction in English
1794
The second wind variation direction in English
1794

1795

1795
=item VISIBILITY
1796
=item VISIBILITY
1796

1797

1797
Visibility information.
1798
Visibility information.
1798

1799

1799
=item VISIBILITY_RUS
1800
=item VISIBILITY_RUS
1800

1801

1801
Visibility information in Russian.
1802
Visibility information in Russian.
1802

1803

1803
=item WIND
1804
=item WIND
1804

1805

1805
Wind information.
1806
Wind information.
1806

1807

1807
=item RUNWAY
1808
=item RUNWAY
1808

1809

1809
Runway information.
1810
Runway information.
1810

1811

1811
=item WEATHER
1812
=item WEATHER
1812

1813

1813
Current weather (array)
1814
Current weather (array)
1814

1815

1815
==item WEATHER_RUS
1816
==item WEATHER_RUS
1816

1817

1817
Current weather in Russian (array)
1818
Current weather in Russian (array)
1818

1819

1819
==item WEATHER_RAW
1820
==item WEATHER_RAW
1820

1821

1821
Current weather in RAW-data (array)
1822
Current weather in RAW-data (array)
1822

1823

1823
=item WEATHER_LOG
1824
=item WEATHER_LOG
1824

1825

1825
Current weather log (array)
1826
Current weather log (array)
1826

1827

1827
=item SKY
1828
=item SKY
1828

1829

1829
Current cloud cover (array)
1830
Current cloud cover (array)
1830

1831

1831
=item SKY_RUS
1832
=item SKY_RUS
1832

1833

1833
Current cloud cover in Russian (array)
1834
Current cloud cover in Russian (array)
1834

1835

1835
=item SKY_RAW
1836
=item SKY_RAW
1836

1837

1837
Current cloud cover in RAW-data (array)
1838
Current cloud cover in RAW-data (array)
1838

1839

1839
=item TEMP_C
1840
=item TEMP_C
1840

1841

1841
Temperature in Celsius.
1842
Temperature in Celsius.
1842

1843

1843
=item TEMP_F
1844
=item TEMP_F
1844

1845

1845
Temperature in Fahrenheit.
1846
Temperature in Fahrenheit.
1846

1847

1847
=item TEMP_WC
1848
=item TEMP_WC
1848

1849

1849
Windchill Temperature in Celsius.
1850
Windchill Temperature in Celsius.
1850

1851

1851
=item DEW_C
1852
=item DEW_C
1852

1853

1853
Dew point in Celsius.
1854
Dew point in Celsius.
1854

1855

1855
=item DEW_F
1856
=item DEW_F
1856

1857

1857
Dew point in Fahrenheit.
1858
Dew point in Fahrenheit.
1858

1859

1859
=item HOURLY_TEMP_F
1860
=item HOURLY_TEMP_F
1860

1861

1861
Hourly current temperature, fahrenheit
1862
Hourly current temperature, fahrenheit
1862

1863

1863
=item HOURLY_TEMP_C
1864
=item HOURLY_TEMP_C
1864

1865

1865
Hourly current temperature, celcius
1866
Hourly current temperature, celcius
1866

1867

1867
=item HOURLY_DEW_F
1868
=item HOURLY_DEW_F
1868

1869

1869
Hourly dewpoint, fahrenheit
1870
Hourly dewpoint, fahrenheit
1870

1871

1871
=item HOURLY_DEW_C
1872
=item HOURLY_DEW_C
1872

1873

1873
Hourly dewpoint, celcius
1874
Hourly dewpoint, celcius
1874

1875

1875
=item ALT
1876
=item ALT
1876

1877

1877
Altimeter setting (barometric pressure).
1878
Altimeter setting (barometric pressure).
1878

1879

1879
=item ALT_HP
1880
=item ALT_HP
1880

1881

1881
Altimeter setting in hectopascals.
1882
Altimeter setting in hectopascals.
1882

1883

1883
=item ALT_PL
1884
=item ALT_PL
1884

1885

1885
QFE pressure in mmHg.
1886
QFE pressure in mmHg.
1886

1887

1887
=item REMARKS
1888
=item REMARKS
1888

1889

1889
Any remarks in the report.
1890
Any remarks in the report.
1890

1891

1891
=back
1892
=back
1892

1893

1893
=head1 NOTES
1894
=head1 NOTES
1894

1895

1895
Test suite is small and incomplete. Needs work yet.
1896
Test suite is small and incomplete. Needs work yet.
1896

1897

1897
Older versions of this module were installed as "METAR" instaed of
1898
Older versions of original module were installed as "METAR" instaed of
1898
"Geo::METAR"
1899
"Geo::METAR"
1899

1900

1900
=head1 BUGS
1901
=head1 BUGS
1901

1902

1902
The Geo::ModMETAR is only initialized once, which means you'll get left-over
1903
The Geo::ModMETAR is only initialized once, which means you'll get left-over
1903
crud in variables when you call the metar() function twice.
1904
crud in variables when you call the metar() function twice.
1904

1905

1905
What is an invalid METAR in one country is a standard one in the next.
1906
What is an invalid METAR in one country is a standard one in the next.
1906
The standard is interpreted and used by meteorologists all over the world,
1907
The standard is interpreted and used by meteorologists all over the world,
1907
with local variations. This means there will always be METARs that will
1908
with local variations. This means there will always be METARs that will
1908
trip the parser.
1909
trip the parser.
1909

1910

1910
=head1 TODO
1911
=head1 TODO
1911

1912

1912
There is a TODO file included in the Geo::ModMETAR distribution listing
1913
There is a TODO file included in the Geo::ModMETAR distribution listing
1913
the outstanding tasks that I or others have devised. Please check that
1914
the outstanding tasks that I or others have devised. Please check that
1914
list before you submit a bug report or request a new feture. It might
1915
list before you submit a bug report or request a new feture. It might
1915
already be on the TODO list.
1916
already be on the TODO list.
1916

1917

1917
=head1 AUTHORS AND COPYRIGHT
1918
=head1 AUTHORS AND COPYRIGHT
1918

1919

1919
Copyright 1997-2000, Jeremy D. Zawodny <Jeremy [at] Zawodny.com>
1920
Copyright 1997-2000, Jeremy D. Zawodny <Jeremy [at] Zawodny.com>
1920

1921

1921
Copyright 2007, Koos van den Hout <koos@kzdoos.xs4all.nl>
1922
Copyright 2007, Koos van den Hout <koos@kzdoos.xs4all.nl>
1922

1923

1923
Copyright 2010, Alexander Wolf <alex.v.wolf@gmail.com>
1924
Copyright 2010, Alexander Wolf <alex.v.wolf@gmail.com>
1924

1925

1925
Geo::ModMETAR is covered under the GNU Public License (GPL) version 2 or
1926
Geo::ModMETAR is covered under the GNU Public License (GPL) version 2 or
1926
later.
1927
later.
1927

1928

1928
The Geo::ModMETAR Web site is located at:
1929
The Geo::ModMETAR Web site is located at:
1929

1930

1930
  http://astro.uni-altai.ru/~aw/perl/Geo-ModMETAR/
1931
  http://astro.uni-altai.ru/~aw/perl/Geo-ModMETAR/
1931

1932

1932
=head1 CREDITS
1933
=head1 CREDITS
1933

1934

1934
In addition to our work on Geo::METAR, We've received ideas, help, and
1935
In addition to our work on Geo::METAR, We've received ideas, help, and
1935
patches from the following folks:
1936
patches from the following folks:
1936

1937

1937
  * Ethan Dicks <ethan.dicks [at] gmail.com>
1938
  * Ethan Dicks <ethan.dicks [at] gmail.com>
1938

1939

1939
    Testing of Geo::METAR at the South Pole. Corrections and pointers
1940
    Testing of Geo::METAR at the South Pole. Corrections and pointers
1940
to interesting cases to test.
1941
to interesting cases to test.
1941

1942

1942
  * Otterboy <jong [at] watchguard.com>
1943
  * Otterboy <jong [at] watchguard.com>
1943

1944

1944
    Random script fixes and initial debugging help
1945
    Random script fixes and initial debugging help
1945

1946

1946
  * Remi Lefebvre <remi [at] solaria.dhis.org>
1947
  * Remi Lefebvre <remi [at] solaria.dhis.org>
1947

1948

1948
    Debian packaging as libgeo-metar-perl.deb.
1949
    Debian packaging as libgeo-metar-perl.deb.
1949

1950

1950
  * Mike Engelhart <mengelhart [at] earthtrip.com>
1951
  * Mike Engelhart <mengelhart [at] earthtrip.com>
1951

1952

1952
    Wind direction naming corrections.
1953
    Wind direction naming corrections.
1953

1954

1954
  * Michael Starling <mstarling [at] logic.bm>
1955
  * Michael Starling <mstarling [at] logic.bm>
1955

1956

1956
    Wind direction naming corrections.
1957
    Wind direction naming corrections.
1957

1958

1958
  * Hans Einar Nielssen <hans.einar [at] nielssen.com>
1959
  * Hans Einar Nielssen <hans.einar [at] nielssen.com>
1959

1960

1960
    Wind direction naming corrections.
1961
    Wind direction naming corrections.
1961

1962

1962
  * Nathan Neulinger <nneul [at] umr.edu>
1963
  * Nathan Neulinger <nneul [at] umr.edu>
1963

1964

1964
    Lots of enhancements and corrections. Too many to list here.
1965
    Lots of enhancements and corrections. Too many to list here.
1965

1966

1966
=head1 RELATED PROJECTS
1967
=head1 RELATED PROJECTS
1967

1968

1968
B<lcdproc> at http://www.lcdproc.org/ uses Geo::METAR in lcdmetar.pl to
1969
B<lcdproc> at http://www.lcdproc.org/ uses Geo::METAR in lcdmetar.pl to
1969
display weather data on an lcd.
1970
display weather data on an lcd.
1970

1971

1971
=cut
1972
=cut
1972
1973
1973
1974
1974
# vim:expandtab:sw=4 ts=4
1975
# vim:expandtab:sw=4 ts=4
1975
 
1976