day5: problem 1 solution
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5/Cargo.lock
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5/Cargo.lock
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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version = 3
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[[package]]
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name = "day5"
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version = "0.1.0"
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8
5/Cargo.toml
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8
5/Cargo.toml
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[package]
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name = "day5"
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version = "0.1.0"
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edition = "2021"
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[dependencies]
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188
5/input
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188
5/input
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seeds: 2494933545 159314859 4045092792 172620202 928898138 554061882 2740120981 81327018 2031777983 63513119 2871914181 270575980 2200250633 216481794 3289604059 25147787 3472625834 10030240 260990830 232636388
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seed-to-soil map:
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3272284283 2724782980 1022683013
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138187491 4195038636 99928660
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2359623759 797621236 127984779
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662451929 2224466386 266466256
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928918185 714355413 83265823
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1012184008 3891516474 303522162
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3063776460 1098322140 208507823
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2194238166 1306829963 50525692
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357106588 2091837170 132629216
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2244763858 2490932642 114859901
|
||||
2050187685 3747465993 144050481
|
||||
489735804 925606015 172716125
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||||
2487608538 138187491 576167922
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238116151 2605792543 118990437
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1315706170 1357355655 734481515
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soil-to-fertilizer map:
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4265669768 2142212766 29297528
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2030756625 2171510294 69737894
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3038084234 3411621093 262803613
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||||
2410534622 3266307064 145314029
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||||
2667304792 2241248188 370779442
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||||
2100494519 3921619167 310040103
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3611390334 2612027630 654279434
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2555848651 2030756625 111456141
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||||
733063720 869238953 195075492
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3300887847 4231659270 63308026
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3364195873 3674424706 247194461
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928139212 733063720 136175233
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fertilizer-to-water map:
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0 772139976 154052576
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909628165 428370542 51644443
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3172969725 4109584032 185383264
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||||
1116931128 1046566515 14194115
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223777814 10055892 255169216
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2512535520 1229983026 60386000
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3109777744 3899207072 16374329
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||||
4030761870 3829858282 12540292
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828135093 718323602 53816374
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||||
2358450176 2554590817 154085344
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3126152073 3152512175 46817652
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||||
4043302162 3842398574 56808498
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3694349069 3493296400 336412801
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770911368 661099877 57223725
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3574254366 3032417472 120094703
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2689829955 2124052738 139986329
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3358352989 1925653441 3542661
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154052576 1060760630 69725238
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3460616091 3829709201 149081
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||||
881951467 480014985 9494517
|
||||
1777535488 3915581401 135358522
|
||||
2829816284 1290369026 84715328
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||||
478947030 489509502 171590375
|
||||
2686813330 1226966401 3016625
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||||
3361895650 3199329827 98720441
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||||
1226966401 1375084354 550569087
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3515610257 4050939923 58644109
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650537405 926192552 120373963
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4100110660 1929196102 194856636
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1912894010 2708676161 323741311
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3460765172 2264039067 54845085
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898932898 0 10055892
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891445984 265225108 7486914
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2914531612 3298050268 195246132
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2572921520 2318884152 113891810
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961272608 272712022 155658520
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908988790 1130485868 639375
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2236635321 2432775962 121814855
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water-to-light map:
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2821176146 2286693663 106119314
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3822234587 2463633329 180779736
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1725724347 2842879211 104224606
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3308097155 4172728180 122239116
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3299768179 2834550235 8328976
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525232540 357109336 38255672
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751267412 803626289 867213460
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2181067610 2392812977 70820352
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2251887962 2644413065 134698828
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3430336271 3994876090 163182805
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357109336 395365008 62712446
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3646455511 2158365540 128328123
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3084834769 2947103817 214933410
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1618480872 3954660777 40215313
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1673365470 751267412 52358877
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2927295460 3797121468 157539309
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2386586790 1723776184 434589356
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3774783634 2779111893 47450953
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4003014323 3162037227 291952973
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419821782 458077454 105410758
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3593519076 1670839749 52936435
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1658696185 4158058895 14669285
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2173080221 2826562846 7987389
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1829948953 3453990200 343131268
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light-to-temperature map:
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457330729 4090205185 204762111
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2982196520 3401667644 30193953
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2238727594 3778270640 263367024
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2540710222 1921368253 380651678
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2224576409 4041637664 14151185
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1803946096 1170025919 125923944
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947791690 3069412788 65888847
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3354708582 3597834895 180435745
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1173448701 516297801 630497395
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4079424710 2899828022 88028778
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1929870040 1295949863 294706369
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928458849 495946333 19332841
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3145865299 515279174 1018627
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3071616223 2825578946 74249076
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3012390473 3431861597 52676537
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0 156654134 174053721
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1013680537 1590656232 159768164
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2502094618 457330729 38615604
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4167453488 3484538134 113296761
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4058703342 3048691420 20721368
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3146883926 1750424396 164394644
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662092840 3135301635 266366009
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174053721 0 156654134
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4280750249 4055788849 14217047
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3311278570 1146795196 23230723
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3334509293 4070005896 20199289
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3535144327 2302019931 523559015
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3065067010 1914819040 6549213
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2921361900 2987856800 60834620
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temperature-to-humidity map:
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19014508 1616728169 261978440
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479364011 879054632 183139707
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3422279791 4197415651 97551645
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2947838505 2859883311 474441286
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3922771609 3441941550 130194267
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1538347549 1285663854 77335299
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4074125861 3334324597 17231539
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2692139672 3923798143 165313419
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3867887507 3572135817 45827004
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4091357400 2695950683 148956394
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280992948 874337342 4717290
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3585981058 4137845928 59569723
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1194193608 267159640 344153941
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3645550781 2226309992 39998882
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2606341883 3617962821 85797789
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2452453972 3769910232 153887911
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4279991062 2844907077 14976234
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4240313794 4089111562 39677268
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285710238 0 193653773
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662503718 1585706204 31021965
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4052965876 2266308874 21159985
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2226309992 2287468859 226143980
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0 248145132 19014508
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3685549663 2513612839 182337844
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2857453091 3351556136 90385414
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1139702249 193653773 54491359
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3913714511 4128788830 9057098
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916232734 1062194339 223469515
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1615682848 611313581 263023761
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693525683 1362999153 222707051
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3519831436 3703760610 66149622
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humidity-to-location map:
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3722067319 3568864729 46052123
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761939125 1263883488 182519766
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3952597071 3400791743 168072986
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1928058 204065059 218803536
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1797120632 863951513 248903371
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||||
3409129274 3614916852 109595510
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0 1261955430 1928058
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3854871689 2940386871 97725382
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3518724784 3898809601 159455982
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220731594 1446403254 100124613
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944458891 1813379640 207908225
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3194065032 4058265583 117770911
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||||
3059317673 3222157831 134747359
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||||
3678180766 3356905190 43886553
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||||
3375153977 3124864500 33975297
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2940386871 4176036494 118930802
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1152367116 2021287865 24736138
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3311835943 3158839797 63318034
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320856207 422868595 441082918
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1593055573 0 204065059
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4120670057 3724512362 174297239
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1177103254 1112854884 149100546
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1326203800 1546527867 266851773
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3768119442 3038112253 86752247
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365
5/src/main.rs
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5/src/main.rs
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use std::fs::File;
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use std::io::{BufRead, BufReader, Lines};
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use std::ops::Range;
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// --- Day 5: If You Give A Seed A Fertilizer ---
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// You take the boat and find the gardener right where you were told he would be:
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// managing a giant "garden" that looks more to you like a farm.
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// "A water source? Island Island is the water source!" You point out that Snow Island
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// isn't receiving any water.
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// "Oh, we had to stop the water because we ran out of sand to filter it with! Can't
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// make snow with dirty water. Don't worry, I'm sure we'll get more sand soon; we only
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// turned off the water a few days... weeks... oh no." His face sinks into a look of
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// horrified realization.
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// "I've been so busy making sure everyone here has food that I completely forgot to
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// check why we stopped getting more sand! There's a ferry leaving soon that is headed
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// over in that direction - it's much faster than your boat. Could you please go check
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// it out?"
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// You barely have time to agree to this request when he brings up another. "While you
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// wait for the ferry, maybe you can help us with our food production problem. The
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// latest Island Island Almanac just arrived and we're having trouble making sense of
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// it."
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// The almanac (your puzzle input) lists all of the seeds that need to be planted. It
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// also lists what type of soil to use with each kind of seed, what type of fertilizer
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// to use with each kind of soil, what type of water to use with each kind of
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// fertilizer, and so on. Every type of seed, soil, fertilizer and so on is identified
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// with a number, but numbers are reused by each category - that is, soil 123 and
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// fertilizer 123 aren't necessarily related to each other.
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// For example:
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// seeds: 79 14 55 13
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//
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// seed-to-soil map:
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// 50 98 2
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// 52 50 48
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//
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// soil-to-fertilizer map:
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// 0 15 37
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// 37 52 2
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// 39 0 15
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//
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// fertilizer-to-water map:
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// 49 53 8
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// 0 11 42
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// 42 0 7
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// 57 7 4
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//
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// water-to-light map:
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// 88 18 7
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// 18 25 70
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//
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// light-to-temperature map:
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// 45 77 23
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// 81 45 19
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// 68 64 13
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//
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// temperature-to-humidity map:
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// 0 69 1
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// 1 0 69
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//
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// humidity-to-location map:
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// 60 56 37
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// 56 93 4
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// The almanac starts by listing which seeds need to be planted: seeds 79, 14, 55, and 13.
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// The rest of the almanac contains a list of maps which describe how to convert numbers
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// from a source category into numbers in a destination category. That is, the section
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// that starts with seed-to-soil map: describes how to convert a seed number (the
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// source) to a soil number (the destination). This lets the gardener and his team know
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// which soil to use with which seeds, which water to use with which fertilizer, and so
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// on.
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// Rather than list every source number and its corresponding destination number one by
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// one, the maps describe entire ranges of numbers that can be converted. Each line
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// within a map contains three numbers: the destination range start, the source range
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// start, and the range length.
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// Consider again the example seed-to-soil map:
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// 50 98 2
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// 52 50 48
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// The first line has a destination range start of 50, a source range start of 98, and a
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// range length of 2. This line means that the source range starts at 98 and contains
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// two values: 98 and 99. The destination range is the same length, but it starts at 50,
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// so its two values are 50 and 51. With this information, you know that seed number 98
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// corresponds to soil number 50 and that seed number 99 corresponds to soil number 51.
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// The second line means that the source range starts at 50 and contains 48 values: 50,
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// 51, ..., 96, 97. This corresponds to a destination range starting at 52 and also
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// containing 48 values: 52, 53, ..., 98, 99. So, seed number 53 corresponds to soil
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// number 55.
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// Any source numbers that aren't mapped correspond to the same destination number. So,
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// seed number 10 corresponds to soil number 10.
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// So, the entire list of seed numbers and their corresponding soil numbers looks like
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// this:
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// seed soil
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// 0 0
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// 1 1
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// ... ...
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// 48 48
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// 49 49
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// 50 52
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// 51 53
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// ... ...
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// 96 98
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// 97 99
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// 98 50
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// 99 51
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// With this map, you can look up the soil number required for each initial seed number:
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// Seed number 79 corresponds to soil number 81.
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// Seed number 14 corresponds to soil number 14.
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// Seed number 55 corresponds to soil number 57.
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// Seed number 13 corresponds to soil number 13.
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// BOILERPLATE
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type InputIter = Lines<BufReader<File>>;
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fn get_input() -> InputIter {
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let f = File::open("input").unwrap();
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let br = BufReader::new(f);
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br.lines()
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}
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fn main() {
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println!("Problem 1 solution: {}", problem1(get_input()));
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println!("Problem 2 solution: {}", problem2(get_input()));
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}
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// PARSING
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#[derive(Debug)]
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struct AlmanacMapping {
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source_range: Range<u64>,
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dest_range: Range<u64>,
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}
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impl From<&str> for AlmanacMapping {
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fn from(s: &str) -> Self {
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let s_nums: Vec<_> = s.split_whitespace().take(3).collect();
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let length: u64 = s_nums[2].parse().unwrap();
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let source_start: u64 = s_nums[1].parse().unwrap();
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let dest_start: u64 = s_nums[0].parse().unwrap();
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AlmanacMapping {
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source_range: source_start..source_start + length,
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dest_range: dest_start..dest_start + length,
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}
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}
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}
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impl AlmanacMapping {
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fn lookup(&self, key: u64) -> Option<u64> {
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if self.source_range.contains(&key) {
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match self.source_range.clone().position(|x| x == key) {
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Some(i) => self.dest_range.clone().nth(i),
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None => None,
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}
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} else {
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None
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}
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}
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}
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#[derive(Debug)]
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struct AlmanacMappingTable {
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name: String,
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mappings: Vec<AlmanacMapping>,
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}
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impl AlmanacMappingTable {
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fn lookup(&self, key: u64) -> u64 {
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self.mappings
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.iter()
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.find_map(|map| map.lookup(key))
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.unwrap_or(key)
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}
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}
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impl<T: BufRead> From<&mut Lines<T>> for AlmanacMappingTable {
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fn from(lines: &mut Lines<T>) -> Self {
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let name = lines
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.next()
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.unwrap()
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.unwrap()
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.split_once(':')
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.unwrap()
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.0
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.into();
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let mut mappings = Vec::new();
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for line in lines.map(|l| l.unwrap()) {
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if line == "" {
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break;
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}
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mappings.push(AlmanacMapping::from(line.as_str()));
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}
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AlmanacMappingTable { name, mappings }
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}
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}
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#[derive(Debug)]
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struct Almanac {
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seeds: Vec<u64>,
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seed_to_soil: AlmanacMappingTable,
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soil_to_fertilizer: AlmanacMappingTable,
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fertilizer_to_water: AlmanacMappingTable,
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water_to_light: AlmanacMappingTable,
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light_to_temperature: AlmanacMappingTable,
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temperature_to_humidity: AlmanacMappingTable,
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humidity_to_location: AlmanacMappingTable,
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}
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impl<T: BufRead> From<Lines<T>> for Almanac {
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fn from(mut lines: Lines<T>) -> Self {
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let seeds_s = lines.next().unwrap().unwrap();
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let seeds: Vec<u64> = seeds_s
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.split_once(": ")
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.unwrap()
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.1
|
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.split_whitespace()
|
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.map(|s| s.parse().unwrap())
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.collect();
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lines.next();
|
||||
|
||||
Almanac {
|
||||
seeds,
|
||||
seed_to_soil: AlmanacMappingTable::from(&mut lines),
|
||||
soil_to_fertilizer: AlmanacMappingTable::from(&mut lines),
|
||||
fertilizer_to_water: AlmanacMappingTable::from(&mut lines),
|
||||
water_to_light: AlmanacMappingTable::from(&mut lines),
|
||||
light_to_temperature: AlmanacMappingTable::from(&mut lines),
|
||||
temperature_to_humidity: AlmanacMappingTable::from(&mut lines),
|
||||
humidity_to_location: AlmanacMappingTable::from(&mut lines),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
impl Almanac {
|
||||
fn lookup(&self, seed_id: u64) -> u64 {
|
||||
self.humidity_to_location.lookup(
|
||||
self.temperature_to_humidity.lookup(
|
||||
self.light_to_temperature.lookup(
|
||||
self.water_to_light.lookup(
|
||||
self.fertilizer_to_water.lookup(
|
||||
self.soil_to_fertilizer
|
||||
.lookup(self.seed_to_soil.lookup(seed_id)),
|
||||
),
|
||||
),
|
||||
),
|
||||
),
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// PROBLEM 1 solution
|
||||
|
||||
// The gardener and his team want to get started as soon as possible, so they'd like to
|
||||
// know the closest location that needs a seed. Using these maps, find the lowest
|
||||
// location number that corresponds to any of the initial seeds. To do this, you'll need
|
||||
// to convert each seed number through other categories until you can find its
|
||||
// corresponding location number. In this example, the corresponding types are:
|
||||
|
||||
// Seed 79, soil 81, fertilizer 81, water 81, light 74, temperature 78, humidity 78, location 82.
|
||||
// Seed 14, soil 14, fertilizer 53, water 49, light 42, temperature 42, humidity 43, location 43.
|
||||
// Seed 55, soil 57, fertilizer 57, water 53, light 46, temperature 82, humidity 82, location 86.
|
||||
// Seed 13, soil 13, fertilizer 52, water 41, light 34, temperature 34, humidity 35, location 35.
|
||||
|
||||
// So, the lowest location number in this example is 35.
|
||||
|
||||
// What is the lowest location number that corresponds to any of the initial seed numbers?
|
||||
|
||||
fn problem1_lowest_location(almanac: &Almanac) -> u64 {
|
||||
almanac.seeds.iter().map(|seed| almanac.lookup(*seed)).min().unwrap()
|
||||
}
|
||||
|
||||
fn problem1<T: BufRead>(input: Lines<T>) -> u64 {
|
||||
let almanac = Almanac::from(input);
|
||||
problem1_lowest_location(&almanac)
|
||||
}
|
||||
|
||||
// PROBLEM 2 solution
|
||||
fn problem2<T: BufRead>(input: Lines<T>) -> u64 {
|
||||
0
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use std::io::{BufRead, Cursor};
|
||||
|
||||
use crate::{Almanac, AlmanacMapping, problem1_lowest_location};
|
||||
|
||||
const EXAMPLE_ALMANAC: &str = &"seeds: 79 14 55 13
|
||||
|
||||
seed-to-soil map:
|
||||
50 98 2
|
||||
52 50 48
|
||||
|
||||
soil-to-fertilizer map:
|
||||
0 15 37
|
||||
37 52 2
|
||||
39 0 15
|
||||
|
||||
fertilizer-to-water map:
|
||||
49 53 8
|
||||
0 11 42
|
||||
42 0 7
|
||||
57 7 4
|
||||
|
||||
water-to-light map:
|
||||
88 18 7
|
||||
18 25 70
|
||||
|
||||
light-to-temperature map:
|
||||
45 77 23
|
||||
81 45 19
|
||||
68 64 13
|
||||
|
||||
temperature-to-humidity map:
|
||||
0 69 1
|
||||
1 0 69
|
||||
|
||||
humidity-to-location map:
|
||||
60 56 37
|
||||
56 93 4";
|
||||
|
||||
#[test]
|
||||
fn test_almanac_mapping_parse() {
|
||||
let s = "50 98 2";
|
||||
let a = AlmanacMapping::from(s);
|
||||
assert_eq!(a.source_range, 98..100);
|
||||
assert_eq!(a.dest_range, 50..52);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_almanac_mapping_lookup() {
|
||||
let s = "50 98 2";
|
||||
let a = AlmanacMapping::from(s);
|
||||
assert_eq!(a.lookup(99), Some(51));
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_almanac_parsing() {
|
||||
let c = Cursor::new(EXAMPLE_ALMANAC);
|
||||
let a = Almanac::from(c.lines());
|
||||
assert_eq!(a.lookup(79), 82);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_problem1_example() {
|
||||
let c = Cursor::new(EXAMPLE_ALMANAC);
|
||||
let a = Almanac::from(c.lines());
|
||||
assert_eq!(problem1_lowest_location(&a), 35);
|
||||
}
|
||||
}
|
Loading…
Reference in New Issue
Block a user