ultralcd.cpp 256 KB

1234567891011121314151617181920212223242526272829303132333435363738394041424344454647484950515253545556575859606162636465666768697071727374757677787980818283848586878889909192939495969798991001011021031041051061071081091101111121131141151161171181191201211221231241251261271281291301311321331341351361371381391401411421431441451461471481491501511521531541551561571581591601611621631641651661671681691701711721731741751761771781791801811821831841851861871881891901911921931941951961971981992002012022032042052062072082092102112122132142152162172182192202212222232242252262272282292302312322332342352362372382392402412422432442452462472482492502512522532542552562572582592602612622632642652662672682692702712722732742752762772782792802812822832842852862872882892902912922932942952962972982993003013023033043053063073083093103113123133143153163173183193203213223233243253263273283293303313323333343353363373383393403413423433443453463473483493503513523533543553563573583593603613623633643653663673683693703713723733743753763773783793803813823833843853863873883893903913923933943953963973983994004014024034044054064074084094104114124134144154164174184194204214224234244254264274284294304314324334344354364374384394404414424434444454464474484494504514524534544554564574584594604614624634644654664674684694704714724734744754764774784794804814824834844854864874884894904914924934944954964974984995005015025035045055065075085095105115125135145155165175185195205215225235245255265275285295305315325335345355365375385395405415425435445455465475485495505515525535545555565575585595605615625635645655665675685695705715725735745755765775785795805815825835845855865875885895905915925935945955965975985996006016026036046056066076086096106116126136146156166176186196206216226236246256266276286296306316326336346356366376386396406416426436446456466476486496506516526536546556566576586596606616626636646656666676686696706716726736746756766776786796806816826836846856866876886896906916926936946956966976986997007017027037047057067077087097107117127137147157167177187197207217227237247257267277287297307317327337347357367377387397407417427437447457467477487497507517527537547557567577587597607617627637647657667677687697707717727737747757767777787797807817827837847857867877887897907917927937947957967977987998008018028038048058068078088098108118128138148158168178188198208218228238248258268278288298308318328338348358368378388398408418428438448458468478488498508518528538548558568578588598608618628638648658668678688698708718728738748758768778788798808818828838848858868878888898908918928938948958968978988999009019029039049059069079089099109119129139149159169179189199209219229239249259269279289299309319329339349359369379389399409419429439449459469479489499509519529539549559569579589599609619629639649659669679689699709719729739749759769779789799809819829839849859869879889899909919929939949959969979989991000100110021003100410051006100710081009101010111012101310141015101610171018101910201021102210231024102510261027102810291030103110321033103410351036103710381039104010411042104310441045104610471048104910501051105210531054105510561057105810591060106110621063106410651066106710681069107010711072107310741075107610771078107910801081108210831084108510861087108810891090109110921093109410951096109710981099110011011102110311041105110611071108110911101111111211131114111511161117111811191120112111221123112411251126112711281129113011311132113311341135113611371138113911401141114211431144114511461147114811491150115111521153115411551156115711581159116011611162116311641165116611671168116911701171117211731174117511761177117811791180118111821183118411851186118711881189119011911192119311941195119611971198119912001201120212031204120512061207120812091210121112121213121412151216121712181219122012211222122312241225122612271228122912301231123212331234123512361237123812391240124112421243124412451246124712481249125012511252125312541255125612571258125912601261126212631264126512661267126812691270127112721273127412751276127712781279128012811282128312841285128612871288128912901291129212931294129512961297129812991300130113021303130413051306130713081309131013111312131313141315131613171318131913201321132213231324132513261327132813291330133113321333133413351336133713381339134013411342134313441345134613471348134913501351135213531354135513561357135813591360136113621363136413651366136713681369137013711372137313741375137613771378137913801381138213831384138513861387138813891390139113921393139413951396139713981399140014011402140314041405140614071408140914101411141214131414141514161417141814191420142114221423142414251426142714281429143014311432143314341435143614371438143914401441144214431444144514461447144814491450145114521453145414551456145714581459146014611462146314641465146614671468146914701471147214731474147514761477147814791480148114821483148414851486148714881489149014911492149314941495149614971498149915001501150215031504150515061507150815091510151115121513151415151516151715181519152015211522152315241525152615271528152915301531153215331534153515361537153815391540154115421543154415451546154715481549155015511552155315541555155615571558155915601561156215631564156515661567156815691570157115721573157415751576157715781579158015811582158315841585158615871588158915901591159215931594159515961597159815991600160116021603160416051606160716081609161016111612161316141615161616171618161916201621162216231624162516261627162816291630163116321633163416351636163716381639164016411642164316441645164616471648164916501651165216531654165516561657165816591660166116621663166416651666166716681669167016711672167316741675167616771678167916801681168216831684168516861687168816891690169116921693169416951696169716981699170017011702170317041705170617071708170917101711171217131714171517161717171817191720172117221723172417251726172717281729173017311732173317341735173617371738173917401741174217431744174517461747174817491750175117521753175417551756175717581759176017611762176317641765176617671768176917701771177217731774177517761777177817791780178117821783178417851786178717881789179017911792179317941795179617971798179918001801180218031804180518061807180818091810181118121813181418151816181718181819182018211822182318241825182618271828182918301831183218331834183518361837183818391840184118421843184418451846184718481849185018511852185318541855185618571858185918601861186218631864186518661867186818691870187118721873187418751876187718781879188018811882188318841885188618871888188918901891189218931894189518961897189818991900190119021903190419051906190719081909191019111912191319141915191619171918191919201921192219231924192519261927192819291930193119321933193419351936193719381939194019411942194319441945194619471948194919501951195219531954195519561957195819591960196119621963196419651966196719681969197019711972197319741975197619771978197919801981198219831984198519861987198819891990199119921993199419951996199719981999200020012002200320042005200620072008200920102011201220132014201520162017201820192020202120222023202420252026202720282029203020312032203320342035203620372038203920402041204220432044204520462047204820492050205120522053205420552056205720582059206020612062206320642065206620672068206920702071207220732074207520762077207820792080208120822083208420852086208720882089209020912092209320942095209620972098209921002101210221032104210521062107210821092110211121122113211421152116211721182119212021212122212321242125212621272128212921302131213221332134213521362137213821392140214121422143214421452146214721482149215021512152215321542155215621572158215921602161216221632164216521662167216821692170217121722173217421752176217721782179218021812182218321842185218621872188218921902191219221932194219521962197219821992200220122022203220422052206220722082209221022112212221322142215221622172218221922202221222222232224222522262227222822292230223122322233223422352236223722382239224022412242224322442245224622472248224922502251225222532254225522562257225822592260226122622263226422652266226722682269227022712272227322742275227622772278227922802281228222832284228522862287228822892290229122922293229422952296229722982299230023012302230323042305230623072308230923102311231223132314231523162317231823192320232123222323232423252326232723282329233023312332233323342335233623372338233923402341234223432344234523462347234823492350235123522353235423552356235723582359236023612362236323642365236623672368236923702371237223732374237523762377237823792380238123822383238423852386238723882389239023912392239323942395239623972398239924002401240224032404240524062407240824092410241124122413241424152416241724182419242024212422242324242425242624272428242924302431243224332434243524362437243824392440244124422443244424452446244724482449245024512452245324542455245624572458245924602461246224632464246524662467246824692470247124722473247424752476247724782479248024812482248324842485248624872488248924902491249224932494249524962497249824992500250125022503250425052506250725082509251025112512251325142515251625172518251925202521252225232524252525262527252825292530253125322533253425352536253725382539254025412542254325442545254625472548254925502551255225532554255525562557255825592560256125622563256425652566256725682569257025712572257325742575257625772578257925802581258225832584258525862587258825892590259125922593259425952596259725982599260026012602260326042605260626072608260926102611261226132614261526162617261826192620262126222623262426252626262726282629263026312632263326342635263626372638263926402641264226432644264526462647264826492650265126522653265426552656265726582659266026612662266326642665266626672668266926702671267226732674267526762677267826792680268126822683268426852686268726882689269026912692269326942695269626972698269927002701270227032704270527062707270827092710271127122713271427152716271727182719272027212722272327242725272627272728272927302731273227332734273527362737273827392740274127422743274427452746274727482749275027512752275327542755275627572758275927602761276227632764276527662767276827692770277127722773277427752776277727782779278027812782278327842785278627872788278927902791279227932794279527962797279827992800280128022803280428052806280728082809281028112812281328142815281628172818281928202821282228232824282528262827282828292830283128322833283428352836283728382839284028412842284328442845284628472848284928502851285228532854285528562857285828592860286128622863286428652866286728682869287028712872287328742875287628772878287928802881288228832884288528862887288828892890289128922893289428952896289728982899290029012902290329042905290629072908290929102911291229132914291529162917291829192920292129222923292429252926292729282929293029312932293329342935293629372938293929402941294229432944294529462947294829492950295129522953295429552956295729582959296029612962296329642965296629672968296929702971297229732974297529762977297829792980298129822983298429852986298729882989299029912992299329942995299629972998299930003001300230033004300530063007300830093010301130123013301430153016301730183019302030213022302330243025302630273028302930303031303230333034303530363037303830393040304130423043304430453046304730483049305030513052305330543055305630573058305930603061306230633064306530663067306830693070307130723073307430753076307730783079308030813082308330843085308630873088308930903091309230933094309530963097309830993100310131023103310431053106310731083109311031113112311331143115311631173118311931203121312231233124312531263127312831293130313131323133313431353136313731383139314031413142314331443145314631473148314931503151315231533154315531563157315831593160316131623163316431653166316731683169317031713172317331743175317631773178317931803181318231833184318531863187318831893190319131923193319431953196319731983199320032013202320332043205320632073208320932103211321232133214321532163217321832193220322132223223322432253226322732283229323032313232323332343235323632373238323932403241324232433244324532463247324832493250325132523253325432553256325732583259326032613262326332643265326632673268326932703271327232733274327532763277327832793280328132823283328432853286328732883289329032913292329332943295329632973298329933003301330233033304330533063307330833093310331133123313331433153316331733183319332033213322332333243325332633273328332933303331333233333334333533363337333833393340334133423343334433453346334733483349335033513352335333543355335633573358335933603361336233633364336533663367336833693370337133723373337433753376337733783379338033813382338333843385338633873388338933903391339233933394339533963397339833993400340134023403340434053406340734083409341034113412341334143415341634173418341934203421342234233424342534263427342834293430343134323433343434353436343734383439344034413442344334443445344634473448344934503451345234533454345534563457345834593460346134623463346434653466346734683469347034713472347334743475347634773478347934803481348234833484348534863487348834893490349134923493349434953496349734983499350035013502350335043505350635073508350935103511351235133514351535163517351835193520352135223523352435253526352735283529353035313532353335343535353635373538353935403541354235433544354535463547354835493550355135523553355435553556355735583559356035613562356335643565356635673568356935703571357235733574357535763577357835793580358135823583358435853586358735883589359035913592359335943595359635973598359936003601360236033604360536063607360836093610361136123613361436153616361736183619362036213622362336243625362636273628362936303631363236333634363536363637363836393640364136423643364436453646364736483649365036513652365336543655365636573658365936603661366236633664366536663667366836693670367136723673367436753676367736783679368036813682368336843685368636873688368936903691369236933694369536963697369836993700370137023703370437053706370737083709371037113712371337143715371637173718371937203721372237233724372537263727372837293730373137323733373437353736373737383739374037413742374337443745374637473748374937503751375237533754375537563757375837593760376137623763376437653766376737683769377037713772377337743775377637773778377937803781378237833784378537863787378837893790379137923793379437953796379737983799380038013802380338043805380638073808380938103811381238133814381538163817381838193820382138223823382438253826382738283829383038313832383338343835383638373838383938403841384238433844384538463847384838493850385138523853385438553856385738583859386038613862386338643865386638673868386938703871387238733874387538763877387838793880388138823883388438853886388738883889389038913892389338943895389638973898389939003901390239033904390539063907390839093910391139123913391439153916391739183919392039213922392339243925392639273928392939303931393239333934393539363937393839393940394139423943394439453946394739483949395039513952395339543955395639573958395939603961396239633964396539663967396839693970397139723973397439753976397739783979398039813982398339843985398639873988398939903991399239933994399539963997399839994000400140024003400440054006400740084009401040114012401340144015401640174018401940204021402240234024402540264027402840294030403140324033403440354036403740384039404040414042404340444045404640474048404940504051405240534054405540564057405840594060406140624063406440654066406740684069407040714072407340744075407640774078407940804081408240834084408540864087408840894090409140924093409440954096409740984099410041014102410341044105410641074108410941104111411241134114411541164117411841194120412141224123412441254126412741284129413041314132413341344135413641374138413941404141414241434144414541464147414841494150415141524153415441554156415741584159416041614162416341644165416641674168416941704171417241734174417541764177417841794180418141824183418441854186418741884189419041914192419341944195419641974198419942004201420242034204420542064207420842094210421142124213421442154216421742184219422042214222422342244225422642274228422942304231423242334234423542364237423842394240424142424243424442454246424742484249425042514252425342544255425642574258425942604261426242634264426542664267426842694270427142724273427442754276427742784279428042814282428342844285428642874288428942904291429242934294429542964297429842994300430143024303430443054306430743084309431043114312431343144315431643174318431943204321432243234324432543264327432843294330433143324333433443354336433743384339434043414342434343444345434643474348434943504351435243534354435543564357435843594360436143624363436443654366436743684369437043714372437343744375437643774378437943804381438243834384438543864387438843894390439143924393439443954396439743984399440044014402440344044405440644074408440944104411441244134414441544164417441844194420442144224423442444254426442744284429443044314432443344344435443644374438443944404441444244434444444544464447444844494450445144524453445444554456445744584459446044614462446344644465446644674468446944704471447244734474447544764477447844794480448144824483448444854486448744884489449044914492449344944495449644974498449945004501450245034504450545064507450845094510451145124513451445154516451745184519452045214522452345244525452645274528452945304531453245334534453545364537453845394540454145424543454445454546454745484549455045514552455345544555455645574558455945604561456245634564456545664567456845694570457145724573457445754576457745784579458045814582458345844585458645874588458945904591459245934594459545964597459845994600460146024603460446054606460746084609461046114612461346144615461646174618461946204621462246234624462546264627462846294630463146324633463446354636463746384639464046414642464346444645464646474648464946504651465246534654465546564657465846594660466146624663466446654666466746684669467046714672467346744675467646774678467946804681468246834684468546864687468846894690469146924693469446954696469746984699470047014702470347044705470647074708470947104711471247134714471547164717471847194720472147224723472447254726472747284729473047314732473347344735473647374738473947404741474247434744474547464747474847494750475147524753475447554756475747584759476047614762476347644765476647674768476947704771477247734774477547764777477847794780478147824783478447854786478747884789479047914792479347944795479647974798479948004801480248034804480548064807480848094810481148124813481448154816481748184819482048214822482348244825482648274828482948304831483248334834483548364837483848394840484148424843484448454846484748484849485048514852485348544855485648574858485948604861486248634864486548664867486848694870487148724873487448754876487748784879488048814882488348844885488648874888488948904891489248934894489548964897489848994900490149024903490449054906490749084909491049114912491349144915491649174918491949204921492249234924492549264927492849294930493149324933493449354936493749384939494049414942494349444945494649474948494949504951495249534954495549564957495849594960496149624963496449654966496749684969497049714972497349744975497649774978497949804981498249834984498549864987498849894990499149924993499449954996499749984999500050015002500350045005500650075008500950105011501250135014501550165017501850195020502150225023502450255026502750285029503050315032503350345035503650375038503950405041504250435044504550465047504850495050505150525053505450555056505750585059506050615062506350645065506650675068506950705071507250735074507550765077507850795080508150825083508450855086508750885089509050915092509350945095509650975098509951005101510251035104510551065107510851095110511151125113511451155116511751185119512051215122512351245125512651275128512951305131513251335134513551365137513851395140514151425143514451455146514751485149515051515152515351545155515651575158515951605161516251635164516551665167516851695170517151725173517451755176517751785179518051815182518351845185518651875188518951905191519251935194519551965197519851995200520152025203520452055206520752085209521052115212521352145215521652175218521952205221522252235224522552265227522852295230523152325233523452355236523752385239524052415242524352445245524652475248524952505251525252535254525552565257525852595260526152625263526452655266526752685269527052715272527352745275527652775278527952805281528252835284528552865287528852895290529152925293529452955296529752985299530053015302530353045305530653075308530953105311531253135314531553165317531853195320532153225323532453255326532753285329533053315332533353345335533653375338533953405341534253435344534553465347534853495350535153525353535453555356535753585359536053615362536353645365536653675368536953705371537253735374537553765377537853795380538153825383538453855386538753885389539053915392539353945395539653975398539954005401540254035404540554065407540854095410541154125413541454155416541754185419542054215422542354245425542654275428542954305431543254335434543554365437543854395440544154425443544454455446544754485449545054515452545354545455545654575458545954605461546254635464546554665467546854695470547154725473547454755476547754785479548054815482548354845485548654875488548954905491549254935494549554965497549854995500550155025503550455055506550755085509551055115512551355145515551655175518551955205521552255235524552555265527552855295530553155325533553455355536553755385539554055415542554355445545554655475548554955505551555255535554555555565557555855595560556155625563556455655566556755685569557055715572557355745575557655775578557955805581558255835584558555865587558855895590559155925593559455955596559755985599560056015602560356045605560656075608560956105611561256135614561556165617561856195620562156225623562456255626562756285629563056315632563356345635563656375638563956405641564256435644564556465647564856495650565156525653565456555656565756585659566056615662566356645665566656675668566956705671567256735674567556765677567856795680568156825683568456855686568756885689569056915692569356945695569656975698569957005701570257035704570557065707570857095710571157125713571457155716571757185719572057215722572357245725572657275728572957305731573257335734573557365737573857395740574157425743574457455746574757485749575057515752575357545755575657575758575957605761576257635764576557665767576857695770577157725773577457755776577757785779578057815782578357845785578657875788578957905791579257935794579557965797579857995800580158025803580458055806580758085809581058115812581358145815581658175818581958205821582258235824582558265827582858295830583158325833583458355836583758385839584058415842584358445845584658475848584958505851585258535854585558565857585858595860586158625863586458655866586758685869587058715872587358745875587658775878587958805881588258835884588558865887588858895890589158925893589458955896589758985899590059015902590359045905590659075908590959105911591259135914591559165917591859195920592159225923592459255926592759285929593059315932593359345935593659375938593959405941594259435944594559465947594859495950595159525953595459555956595759585959596059615962596359645965596659675968596959705971597259735974597559765977597859795980598159825983598459855986598759885989599059915992599359945995599659975998599960006001600260036004600560066007600860096010601160126013601460156016601760186019602060216022602360246025602660276028602960306031603260336034603560366037603860396040604160426043604460456046604760486049605060516052605360546055605660576058605960606061606260636064606560666067606860696070607160726073607460756076607760786079608060816082608360846085608660876088608960906091609260936094609560966097609860996100610161026103610461056106610761086109611061116112611361146115611661176118611961206121612261236124612561266127612861296130613161326133613461356136613761386139614061416142614361446145614661476148614961506151615261536154615561566157615861596160616161626163616461656166616761686169617061716172617361746175617661776178617961806181618261836184618561866187618861896190619161926193619461956196619761986199620062016202620362046205620662076208620962106211621262136214621562166217621862196220622162226223622462256226622762286229623062316232623362346235623662376238623962406241624262436244624562466247624862496250625162526253625462556256625762586259626062616262626362646265626662676268626962706271627262736274627562766277627862796280628162826283628462856286628762886289629062916292629362946295629662976298629963006301630263036304630563066307630863096310631163126313631463156316631763186319632063216322632363246325632663276328632963306331633263336334633563366337633863396340634163426343634463456346634763486349635063516352635363546355635663576358635963606361636263636364636563666367636863696370637163726373637463756376637763786379638063816382638363846385638663876388638963906391639263936394639563966397639863996400640164026403640464056406640764086409641064116412641364146415641664176418641964206421642264236424642564266427642864296430643164326433643464356436643764386439644064416442644364446445644664476448644964506451645264536454645564566457645864596460646164626463646464656466646764686469647064716472647364746475647664776478647964806481648264836484648564866487648864896490649164926493649464956496649764986499650065016502650365046505650665076508650965106511651265136514651565166517651865196520652165226523652465256526652765286529653065316532653365346535653665376538653965406541654265436544654565466547654865496550655165526553655465556556655765586559656065616562656365646565656665676568656965706571657265736574657565766577657865796580658165826583658465856586658765886589659065916592659365946595659665976598659966006601660266036604660566066607660866096610661166126613661466156616661766186619662066216622662366246625662666276628662966306631663266336634663566366637663866396640664166426643664466456646664766486649665066516652665366546655665666576658665966606661666266636664666566666667666866696670667166726673667466756676667766786679668066816682668366846685668666876688668966906691669266936694669566966697669866996700670167026703670467056706670767086709671067116712671367146715671667176718671967206721672267236724672567266727672867296730673167326733673467356736673767386739674067416742674367446745674667476748674967506751675267536754675567566757675867596760676167626763676467656766676767686769677067716772677367746775677667776778677967806781678267836784678567866787678867896790679167926793679467956796679767986799680068016802680368046805680668076808680968106811681268136814681568166817681868196820682168226823682468256826682768286829683068316832683368346835683668376838683968406841684268436844684568466847684868496850685168526853685468556856685768586859686068616862686368646865686668676868686968706871687268736874687568766877687868796880688168826883688468856886688768886889689068916892689368946895689668976898689969006901690269036904690569066907690869096910691169126913691469156916691769186919692069216922692369246925692669276928692969306931693269336934693569366937693869396940694169426943694469456946694769486949695069516952695369546955695669576958695969606961696269636964696569666967696869696970697169726973697469756976697769786979698069816982698369846985698669876988698969906991699269936994699569966997699869997000700170027003700470057006700770087009701070117012701370147015701670177018701970207021702270237024702570267027702870297030703170327033703470357036703770387039704070417042704370447045704670477048704970507051705270537054705570567057705870597060706170627063706470657066706770687069707070717072707370747075707670777078707970807081708270837084708570867087708870897090709170927093709470957096709770987099710071017102710371047105710671077108710971107111711271137114711571167117711871197120712171227123712471257126712771287129713071317132713371347135713671377138713971407141714271437144714571467147714871497150715171527153715471557156715771587159716071617162716371647165716671677168716971707171717271737174717571767177717871797180718171827183718471857186718771887189719071917192719371947195719671977198719972007201720272037204720572067207720872097210721172127213721472157216721772187219722072217222722372247225722672277228722972307231723272337234723572367237723872397240724172427243724472457246724772487249725072517252725372547255725672577258725972607261726272637264726572667267726872697270727172727273727472757276727772787279728072817282728372847285728672877288728972907291729272937294729572967297729872997300730173027303730473057306730773087309731073117312731373147315731673177318731973207321732273237324732573267327732873297330733173327333733473357336733773387339734073417342734373447345734673477348734973507351735273537354735573567357735873597360736173627363736473657366736773687369737073717372737373747375737673777378737973807381738273837384738573867387738873897390739173927393739473957396739773987399740074017402740374047405740674077408740974107411741274137414741574167417741874197420742174227423742474257426742774287429743074317432743374347435743674377438743974407441744274437444744574467447744874497450745174527453745474557456745774587459746074617462746374647465746674677468746974707471747274737474747574767477747874797480748174827483748474857486748774887489749074917492749374947495749674977498749975007501750275037504750575067507750875097510751175127513751475157516751775187519752075217522752375247525752675277528752975307531753275337534753575367537753875397540754175427543754475457546754775487549755075517552755375547555755675577558755975607561756275637564756575667567756875697570757175727573757475757576757775787579758075817582758375847585758675877588758975907591759275937594759575967597759875997600760176027603760476057606760776087609761076117612761376147615761676177618761976207621762276237624762576267627762876297630763176327633763476357636763776387639764076417642764376447645764676477648764976507651765276537654765576567657765876597660766176627663766476657666766776687669767076717672767376747675767676777678767976807681768276837684768576867687768876897690769176927693769476957696769776987699770077017702770377047705770677077708770977107711771277137714771577167717771877197720772177227723772477257726772777287729773077317732773377347735773677377738773977407741774277437744774577467747774877497750775177527753775477557756775777587759776077617762776377647765776677677768776977707771777277737774777577767777777877797780778177827783778477857786778777887789779077917792779377947795779677977798779978007801780278037804780578067807780878097810781178127813781478157816781778187819782078217822782378247825782678277828782978307831783278337834783578367837783878397840784178427843784478457846784778487849785078517852785378547855785678577858785978607861786278637864786578667867786878697870787178727873787478757876787778787879788078817882788378847885788678877888788978907891789278937894789578967897789878997900790179027903790479057906790779087909791079117912791379147915791679177918791979207921792279237924792579267927792879297930793179327933793479357936793779387939794079417942794379447945794679477948794979507951795279537954795579567957795879597960796179627963796479657966796779687969797079717972797379747975797679777978797979807981798279837984798579867987798879897990799179927993799479957996799779987999800080018002800380048005800680078008800980108011801280138014801580168017801880198020802180228023802480258026802780288029803080318032803380348035803680378038803980408041804280438044804580468047804880498050805180528053805480558056805780588059806080618062806380648065806680678068806980708071807280738074807580768077807880798080808180828083808480858086808780888089809080918092809380948095809680978098809981008101810281038104810581068107810881098110811181128113811481158116811781188119812081218122812381248125812681278128812981308131813281338134813581368137813881398140814181428143814481458146814781488149815081518152815381548155815681578158815981608161816281638164816581668167816881698170817181728173817481758176817781788179818081818182818381848185818681878188818981908191819281938194819581968197819881998200820182028203820482058206820782088209821082118212821382148215821682178218821982208221822282238224822582268227822882298230823182328233823482358236823782388239824082418242824382448245824682478248824982508251825282538254825582568257825882598260826182628263826482658266826782688269827082718272827382748275827682778278827982808281828282838284828582868287828882898290829182928293829482958296829782988299830083018302830383048305830683078308830983108311831283138314831583168317831883198320832183228323832483258326832783288329833083318332833383348335833683378338833983408341834283438344834583468347834883498350835183528353835483558356835783588359836083618362836383648365836683678368836983708371837283738374837583768377837883798380838183828383838483858386838783888389839083918392839383948395839683978398839984008401840284038404840584068407840884098410841184128413841484158416841784188419842084218422842384248425842684278428842984308431843284338434843584368437843884398440844184428443844484458446844784488449845084518452845384548455845684578458845984608461846284638464846584668467846884698470847184728473847484758476847784788479848084818482848384848485848684878488848984908491849284938494849584968497849884998500850185028503850485058506850785088509851085118512851385148515851685178518851985208521852285238524852585268527852885298530853185328533853485358536853785388539854085418542854385448545854685478548854985508551855285538554855585568557855885598560856185628563856485658566856785688569857085718572857385748575857685778578857985808581858285838584858585868587858885898590859185928593859485958596859785988599860086018602860386048605860686078608860986108611861286138614861586168617861886198620862186228623862486258626862786288629863086318632863386348635863686378638863986408641864286438644864586468647864886498650865186528653865486558656865786588659866086618662866386648665866686678668866986708671867286738674867586768677867886798680868186828683868486858686868786888689869086918692869386948695869686978698869987008701870287038704870587068707870887098710871187128713871487158716871787188719872087218722872387248725872687278728872987308731873287338734873587368737873887398740874187428743874487458746874787488749875087518752875387548755875687578758875987608761876287638764876587668767876887698770877187728773877487758776877787788779878087818782878387848785878687878788878987908791879287938794879587968797879887998800880188028803880488058806880788088809881088118812881388148815881688178818881988208821882288238824882588268827882888298830883188328833883488358836883788388839884088418842884388448845884688478848884988508851885288538854885588568857885888598860886188628863886488658866886788688869887088718872887388748875887688778878887988808881888288838884888588868887888888898890889188928893
  1. //! @file
  2. //! @date Aug 28, 2019
  3. //! @author mkbel
  4. //! @brief LCD
  5. #include "temperature.h"
  6. #include "ultralcd.h"
  7. #include "fsensor.h"
  8. #include "Marlin.h"
  9. #include "language.h"
  10. #include "cardreader.h"
  11. #include "temperature.h"
  12. #include "stepper.h"
  13. #include "ConfigurationStore.h"
  14. #include "printers.h"
  15. #include <string.h>
  16. #include "lcd.h"
  17. #include "menu.h"
  18. #ifdef LCD_BL_PIN
  19. #include "backlight.h"
  20. #endif //LCD_BL_PIN
  21. #include "util.h"
  22. #include "mesh_bed_leveling.h"
  23. #include "mesh_bed_calibration.h"
  24. //#include "Configuration.h"
  25. #include "cmdqueue.h"
  26. #include "SdFatUtil.h"
  27. #ifdef FILAMENT_SENSOR
  28. #include "pat9125.h"
  29. #include "fsensor.h"
  30. #endif //FILAMENT_SENSOR
  31. #ifdef TMC2130
  32. #include "tmc2130.h"
  33. #endif //TMC2130
  34. #include "sound.h"
  35. #include "mmu.h"
  36. #include "static_assert.h"
  37. #include "io_atmega2560.h"
  38. #include "first_lay_cal.h"
  39. int scrollstuff = 0;
  40. char longFilenameOLD[LONG_FILENAME_LENGTH];
  41. static void lcd_sd_updir();
  42. static void lcd_mesh_bed_leveling_settings();
  43. int8_t ReInitLCD = 0;
  44. int8_t SilentModeMenu = SILENT_MODE_OFF;
  45. uint8_t SilentModeMenu_MMU = 1; //activate mmu unit stealth mode
  46. int8_t FSensorStateMenu = 1;
  47. extern bool fsensor_enable();
  48. extern void fsensor_disable();
  49. #ifdef SDCARD_SORT_ALPHA
  50. bool presort_flag = false;
  51. #endif
  52. LcdCommands lcd_commands_type = LcdCommands::Idle;
  53. static uint8_t lcd_commands_step = 0;
  54. CustomMsg custom_message_type = CustomMsg::Status;
  55. unsigned int custom_message_state = 0;
  56. bool isPrintPaused = false;
  57. uint8_t farm_mode = 0;
  58. int farm_no = 0;
  59. int farm_timer = 8;
  60. uint8_t farm_status = 0;
  61. bool printer_connected = true;
  62. unsigned long display_time; //just timer for showing pid finished message on lcd;
  63. float pid_temp = DEFAULT_PID_TEMP;
  64. static bool forceMenuExpire = false;
  65. static bool lcd_autoDeplete;
  66. static float manual_feedrate[] = MANUAL_FEEDRATE;
  67. /* !Configuration settings */
  68. uint8_t lcd_status_message_level;
  69. char lcd_status_message[LCD_WIDTH + 1] = ""; //////WELCOME!
  70. unsigned char firstrun = 1;
  71. static uint8_t lay1cal_filament = 0;
  72. static const char separator[] PROGMEM = "--------------------";
  73. /** forward declarations **/
  74. static const char* lcd_display_message_fullscreen_nonBlocking_P(const char *msg, uint8_t &nlines);
  75. // void copy_and_scalePID_i();
  76. // void copy_and_scalePID_d();
  77. /* Different menus */
  78. static void lcd_status_screen();
  79. static void lcd_language_menu();
  80. static void lcd_main_menu();
  81. static void lcd_tune_menu();
  82. //static void lcd_move_menu();
  83. static void lcd_settings_menu();
  84. static void lcd_calibration_menu();
  85. static void lcd_control_temperature_menu();
  86. static void lcd_settings_linearity_correction_menu_save();
  87. static void prusa_stat_printerstatus(int _status);
  88. static void prusa_stat_farm_number();
  89. static void prusa_stat_diameter();
  90. static void prusa_stat_temperatures();
  91. static void prusa_stat_printinfo();
  92. static void lcd_farm_no();
  93. static void lcd_menu_xyz_y_min();
  94. static void lcd_menu_xyz_skew();
  95. static void lcd_menu_xyz_offset();
  96. static void lcd_menu_fails_stats_mmu();
  97. static void lcd_menu_fails_stats_mmu_print();
  98. static void lcd_menu_fails_stats_mmu_total();
  99. static void mmu_unload_filament();
  100. static void lcd_v2_calibration();
  101. //static void lcd_menu_show_sensors_state(); // NOT static due to using inside "Marlin_main" module ("manage_inactivity()")
  102. static void mmu_fil_eject_menu();
  103. static void mmu_load_to_nozzle_menu();
  104. static void preheat_or_continue();
  105. #ifdef MMU_HAS_CUTTER
  106. static void mmu_cut_filament_menu();
  107. #endif //MMU_HAS_CUTTER
  108. #if defined(TMC2130) || defined(FILAMENT_SENSOR)
  109. static void lcd_menu_fails_stats();
  110. #endif //TMC2130 or FILAMENT_SENSOR
  111. static void lcd_selftest_v();
  112. #ifdef TMC2130
  113. static void reset_crash_det(unsigned char axis);
  114. static bool lcd_selfcheck_axis_sg(unsigned char axis);
  115. static bool lcd_selfcheck_axis(int _axis, int _travel);
  116. #else
  117. static bool lcd_selfcheck_endstops();
  118. static bool lcd_selfcheck_axis(int _axis, int _travel);
  119. static bool lcd_selfcheck_pulleys(int axis);
  120. #endif //TMC2130
  121. static bool lcd_selfcheck_check_heater(bool _isbed);
  122. enum class TestScreen : uint_least8_t
  123. {
  124. ExtruderFan,
  125. PrintFan,
  126. FansOk,
  127. EndStops,
  128. AxisX,
  129. AxisY,
  130. AxisZ,
  131. Bed,
  132. Hotend,
  133. HotendOk,
  134. Fsensor,
  135. FsensorOk,
  136. AllCorrect,
  137. Failed,
  138. Home,
  139. };
  140. enum class TestError : uint_least8_t
  141. {
  142. Heater,
  143. Bed,
  144. Endstops,
  145. Motor,
  146. Endstop,
  147. PrintFan,
  148. ExtruderFan,
  149. Pulley,
  150. Axis,
  151. SwappedFan,
  152. WiringFsensor,
  153. TriggeringFsensor,
  154. };
  155. static int lcd_selftest_screen(TestScreen screen, int _progress, int _progress_scale, bool _clear, int _delay);
  156. static void lcd_selftest_screen_step(int _row, int _col, int _state, const char *_name, const char *_indicator);
  157. static bool lcd_selftest_manual_fan_check(int _fan, bool check_opposite,
  158. bool _default=false);
  159. #ifdef FANCHECK
  160. /** Enumerate for lcd_selftest_fan_auto function.
  161. */
  162. enum class FanCheck : uint_least8_t {
  163. Success,
  164. PrintFan,
  165. ExtruderFan,
  166. SwappedFan,
  167. };
  168. /**
  169. * Try to check fan working and wiring.
  170. *
  171. * @param _fan i fan number 0 means extruder fan, 1 means print fan.
  172. *
  173. * @returns a TestError noerror, extruderFan, printFan or swappedFan.
  174. */
  175. static FanCheck lcd_selftest_fan_auto(int _fan);
  176. #endif //FANCHECK
  177. #ifdef PAT9125
  178. static bool lcd_selftest_fsensor();
  179. #endif //PAT9125
  180. static bool selftest_irsensor();
  181. static void lcd_selftest_error(TestError error, const char *_error_1, const char *_error_2);
  182. static void lcd_colorprint_change();
  183. #ifdef SNMM
  184. static int get_ext_nr();
  185. #endif //SNMM
  186. #if defined (SNMM) || defined(SNMM_V2)
  187. static void fil_load_menu();
  188. static void fil_unload_menu();
  189. #endif // SNMM || SNMM_V2
  190. static void lcd_disable_farm_mode();
  191. static void lcd_set_fan_check();
  192. static void lcd_cutter_enabled();
  193. static char snmm_stop_print_menu();
  194. #ifdef SDCARD_SORT_ALPHA
  195. static void lcd_sort_type_set();
  196. #endif
  197. static void lcd_babystep_z();
  198. static void lcd_send_status();
  199. #ifdef FARM_CONNECT_MESSAGE
  200. static void lcd_connect_printer();
  201. #endif //FARM_CONNECT_MESSAGE
  202. //! Beware: has side effects - forces lcd_draw_update to 2, which means clear the display
  203. void lcd_finishstatus();
  204. static void lcd_sdcard_menu();
  205. static void lcd_sheet_menu();
  206. #ifdef DELTA_CALIBRATION_MENU
  207. static void lcd_delta_calibrate_menu();
  208. #endif // DELTA_CALIBRATION_MENU
  209. /* Different types of actions that can be used in menu items. */
  210. static void menu_action_sdfile(const char* filename);
  211. static void menu_action_sddirectory(const char* filename);
  212. #define ENCODER_FEEDRATE_DEADZONE 10
  213. #define STATE_NA 255
  214. #define STATE_OFF 0
  215. #define STATE_ON 1
  216. /*
  217. #define MENU_ITEM(type, label, args...) do { \
  218. if (menu_item == menu_line) { \
  219. if (lcd_draw_update) { \
  220. const char* _label_pstr = (label); \
  221. if (lcd_encoder == menu_item) { \
  222. lcd_implementation_drawmenu_ ## type ## _selected (menu_row, _label_pstr , ## args ); \
  223. }else{\
  224. lcd_implementation_drawmenu_ ## type (menu_row, _label_pstr , ## args ); \
  225. }\
  226. }\
  227. if (menu_clicked && (lcd_encoder == menu_item)) {\
  228. lcd_quick_feedback(); \
  229. menu_action_ ## type ( args ); \
  230. return;\
  231. }\
  232. }\
  233. menu_item++;\
  234. } while(0)
  235. */
  236. #if (SDCARDDETECT > 0)
  237. bool lcd_oldcardstatus;
  238. #endif
  239. uint8_t selected_sheet = 0;
  240. bool ignore_click = false;
  241. bool wait_for_unclick;
  242. // place-holders for Ki and Kd edits
  243. #ifdef PIDTEMP
  244. // float raw_Ki, raw_Kd;
  245. #endif
  246. bool bMain; // flag (i.e. 'fake parameter') for 'lcd_sdcard_menu()' function
  247. bool bSettings; // flag (i.e. 'fake parameter') for 'lcd_hw_setup_menu()' function
  248. const char STR_SEPARATOR[] PROGMEM = "------------";
  249. static void lcd_implementation_drawmenu_sdfile_selected(uint8_t row, char* longFilename)
  250. {
  251. char c;
  252. int enc_dif = lcd_encoder_diff;
  253. uint8_t n = LCD_WIDTH - 1;
  254. for(uint_least8_t g = 0; g<4;g++){
  255. lcd_set_cursor(0, g);
  256. lcd_print(' ');
  257. }
  258. lcd_set_cursor(0, row);
  259. lcd_print('>');
  260. int i = 1;
  261. int j = 0;
  262. char* longFilenameTMP = longFilename;
  263. while((c = *longFilenameTMP) != '\0')
  264. {
  265. lcd_set_cursor(i, row);
  266. lcd_print(c);
  267. i++;
  268. longFilenameTMP++;
  269. if(i==LCD_WIDTH){
  270. i=1;
  271. j++;
  272. longFilenameTMP = longFilename + j;
  273. n = LCD_WIDTH - 1;
  274. for(int g = 0; g<300 ;g++){
  275. manage_heater();
  276. if(LCD_CLICKED || ( enc_dif != lcd_encoder_diff )){
  277. longFilenameTMP = longFilename;
  278. *(longFilenameTMP + LCD_WIDTH - 2) = '\0';
  279. i = 1;
  280. j = 0;
  281. break;
  282. }else{
  283. if (j == 1) _delay_ms(3); //wait around 1.2 s to start scrolling text
  284. _delay_ms(1); //then scroll with redrawing every 300 ms
  285. }
  286. }
  287. }
  288. }
  289. if(c!='\0'){
  290. lcd_set_cursor(i, row);
  291. lcd_print(c);
  292. i++;
  293. }
  294. n=n-i+1;
  295. while(n--)
  296. lcd_print(' ');
  297. }
  298. static void lcd_implementation_drawmenu_sdfile(uint8_t row, const char* filename, char* longFilename)
  299. {
  300. char c;
  301. uint8_t n = LCD_WIDTH - 1;
  302. lcd_set_cursor(0, row);
  303. lcd_print(' ');
  304. if (longFilename[0] != '\0')
  305. {
  306. filename = longFilename;
  307. longFilename[LCD_WIDTH-1] = '\0';
  308. }
  309. while( ((c = *filename) != '\0') && (n>0) )
  310. {
  311. lcd_print(c);
  312. filename++;
  313. n--;
  314. }
  315. while(n--)
  316. lcd_print(' ');
  317. }
  318. static void lcd_implementation_drawmenu_sddirectory_selected(uint8_t row, const char* filename, char* longFilename)
  319. {
  320. char c;
  321. uint8_t n = LCD_WIDTH - 2;
  322. lcd_set_cursor(0, row);
  323. lcd_print('>');
  324. lcd_print(LCD_STR_FOLDER[0]);
  325. if (longFilename[0] != '\0')
  326. {
  327. filename = longFilename;
  328. longFilename[LCD_WIDTH-2] = '\0';
  329. }
  330. while( ((c = *filename) != '\0') && (n>0) )
  331. {
  332. lcd_print(c);
  333. filename++;
  334. n--;
  335. }
  336. while(n--)
  337. lcd_print(' ');
  338. }
  339. static void lcd_implementation_drawmenu_sddirectory(uint8_t row, const char* filename, char* longFilename)
  340. {
  341. char c;
  342. uint8_t n = LCD_WIDTH - 2;
  343. lcd_set_cursor(0, row);
  344. lcd_print(' ');
  345. lcd_print(LCD_STR_FOLDER[0]);
  346. if (longFilename[0] != '\0')
  347. {
  348. filename = longFilename;
  349. longFilename[LCD_WIDTH-2] = '\0';
  350. }
  351. while( ((c = *filename) != '\0') && (n>0) )
  352. {
  353. lcd_print(c);
  354. filename++;
  355. n--;
  356. }
  357. while(n--)
  358. lcd_print(' ');
  359. }
  360. #define MENU_ITEM_SDDIR(str_fn, str_fnl) do { if (menu_item_sddir(str_fn, str_fnl)) return; } while (0)
  361. //#define MENU_ITEM_SDDIR(str, str_fn, str_fnl) MENU_ITEM(sddirectory, str, str_fn, str_fnl)
  362. //extern uint8_t menu_item_sddir(const char* str, const char* str_fn, char* str_fnl);
  363. #define MENU_ITEM_SDFILE(str, str_fn, str_fnl) do { if (menu_item_sdfile(str, str_fn, str_fnl)) return; } while (0)
  364. //#define MENU_ITEM_SDFILE(str, str_fn, str_fnl) MENU_ITEM(sdfile, str, str_fn, str_fnl)
  365. //extern uint8_t menu_item_sdfile(const char* str, const char* str_fn, char* str_fnl);
  366. uint8_t menu_item_sddir(const char* str_fn, char* str_fnl)
  367. {
  368. #ifdef NEW_SD_MENU
  369. // str_fnl[18] = 0;
  370. // printf_P(PSTR("menu dir %d '%s' '%s'\n"), menu_row, str_fn, str_fnl);
  371. if (menu_item == menu_line)
  372. {
  373. if (lcd_draw_update)
  374. {
  375. lcd_set_cursor(0, menu_row);
  376. int cnt = lcd_printf_P(PSTR("%c%c%-18s"), (lcd_encoder == menu_item)?'>':' ', LCD_STR_FOLDER[0], str_fnl[0]?str_fnl:str_fn);
  377. // int cnt = lcd_printf_P(PSTR("%c%c%-18s"), (lcd_encoder == menu_item)?'>':' ', LCD_STR_FOLDER[0], str_fn);
  378. }
  379. if (menu_clicked && (lcd_encoder == menu_item))
  380. {
  381. uint8_t depth = (uint8_t)card.getWorkDirDepth();
  382. strcpy(dir_names[depth], str_fn);
  383. // printf_P(PSTR("%s\n"), dir_names[depth]);
  384. card.chdir(str_fn);
  385. lcd_encoder = 0;
  386. return menu_item_ret();
  387. }
  388. }
  389. menu_item++;
  390. return 0;
  391. #else //NEW_SD_MENU
  392. if (menu_item == menu_line)
  393. {
  394. if (lcd_draw_update)
  395. {
  396. if (lcd_encoder == menu_item)
  397. lcd_implementation_drawmenu_sddirectory_selected(menu_row, str_fn, str_fnl);
  398. else
  399. lcd_implementation_drawmenu_sddirectory(menu_row, str_fn, str_fnl);
  400. }
  401. if (menu_clicked && (lcd_encoder == menu_item))
  402. {
  403. menu_clicked = false;
  404. lcd_update_enabled = 0;
  405. menu_action_sddirectory(str_fn);
  406. lcd_update_enabled = 1;
  407. return menu_item_ret();
  408. }
  409. }
  410. menu_item++;
  411. return 0;
  412. #endif //NEW_SD_MENU
  413. }
  414. static uint8_t menu_item_sdfile(const char*
  415. #ifdef NEW_SD_MENU
  416. str
  417. #endif //NEW_SD_MENU
  418. ,const char* str_fn, char* str_fnl)
  419. {
  420. #ifdef NEW_SD_MENU
  421. // printf_P(PSTR("menu sdfile\n"));
  422. // str_fnl[19] = 0;
  423. // printf_P(PSTR("menu file %d '%s' '%s'\n"), menu_row, str_fn, str_fnl);
  424. if (menu_item == menu_line)
  425. {
  426. if (lcd_draw_update)
  427. {
  428. // printf_P(PSTR("menu file %d %d '%s'\n"), menu_row, menuData.sdcard_menu.viewState, str_fnl[0]?str_fnl:str_fn);
  429. lcd_set_cursor(0, menu_row);
  430. /* if (lcd_encoder == menu_item)
  431. {
  432. lcd_printf_P(PSTR("%c%-19s"), (lcd_encoder == menu_item)?'>':' ', (str_fnl[0]?str_fnl:str_fn) + 1);
  433. if (menuData.sdcard_menu.viewState == 0)
  434. {
  435. menuData.sdcard_menu.viewState++;
  436. lcd_printf_P(PSTR("%c%-19s"), (lcd_encoder == menu_item)?'>':' ', (str_fnl[0]?str_fnl:str_fn) + 1);
  437. }
  438. else if (menuData.sdcard_menu.viewState == 1)
  439. {
  440. lcd_printf_P(PSTR("%c%-19s"), (lcd_encoder == menu_item)?'>':' ', (str_fnl[0]?str_fnl:str_fn) + 2);
  441. }
  442. }
  443. else*/
  444. {
  445. str_fnl[19] = 0;
  446. lcd_printf_P(PSTR("%c%-19s"), (lcd_encoder == menu_item)?'>':' ', str_fnl[0]?str_fnl:str_fn);
  447. }
  448. // int cnt = lcd_printf_P(PSTR("%c%-19s"), (lcd_encoder == menu_item)?'>':' ', str_fnl);
  449. // int cnt = lcd_printf_P(PSTR("%cTESTIK.gcode"), (lcd_encoder == menu_item)?'>':' ');
  450. }
  451. if (menu_clicked && (lcd_encoder == menu_item))
  452. {
  453. return menu_item_ret();
  454. }
  455. }
  456. menu_item++;
  457. return 0;
  458. #else //NEW_SD_MENU
  459. if (menu_item == menu_line)
  460. {
  461. if (lcd_draw_update)
  462. {
  463. if (lcd_encoder == menu_item)
  464. lcd_implementation_drawmenu_sdfile_selected(menu_row, str_fnl);
  465. else
  466. lcd_implementation_drawmenu_sdfile(menu_row, str_fn, str_fnl);
  467. }
  468. if (menu_clicked && (lcd_encoder == menu_item))
  469. {
  470. lcd_consume_click();
  471. menu_action_sdfile(str_fn);
  472. return menu_item_ret();
  473. }
  474. }
  475. menu_item++;
  476. return 0;
  477. #endif //NEW_SD_MENU
  478. }
  479. // Print temperature (nozzle/bed) (9 chars total)
  480. void lcdui_print_temp(char type, int val_current, int val_target)
  481. {
  482. int chars = lcd_printf_P(_N("%c%3d/%d%c"), type, val_current, val_target, LCD_STR_DEGREE[0]);
  483. lcd_space(9 - chars);
  484. }
  485. // Print Z-coordinate (8 chars total)
  486. void lcdui_print_Z_coord(void)
  487. {
  488. if (custom_message_type == CustomMsg::MeshBedLeveling)
  489. lcd_puts_P(_N("Z --- "));
  490. else
  491. lcd_printf_P(_N("Z%6.2f "), current_position[Z_AXIS]);
  492. }
  493. #ifdef PLANNER_DIAGNOSTICS
  494. // Print planner diagnostics (8 chars total)
  495. void lcdui_print_planner_diag(void)
  496. {
  497. lcd_set_cursor(LCD_WIDTH - 8-2, 1);
  498. lcd_print(LCD_STR_FEEDRATE[0]);
  499. lcd_print(itostr3(feedmultiply));
  500. lcd_puts_P(PSTR("% Q"));
  501. {
  502. uint8_t queue = planner_queue_min();
  503. if (queue < (BLOCK_BUFFER_SIZE >> 1))
  504. lcd_putc('!');
  505. else
  506. {
  507. lcd_putc((char)(queue / 10) + '0');
  508. queue %= 10;
  509. }
  510. lcd_putc((char)queue + '0');
  511. planner_queue_min_reset();
  512. }
  513. }
  514. #endif // PLANNER_DIAGNOSTICS
  515. // Print feedrate (8 chars total)
  516. void lcdui_print_feedrate(void)
  517. {
  518. int chars = lcd_printf_P(_N("%c%3d%%"), LCD_STR_FEEDRATE[0], feedmultiply);
  519. lcd_space(8 - chars);
  520. }
  521. // Print percent done in form "USB---%", " SD---%", " ---%" (7 chars total)
  522. void lcdui_print_percent_done(void)
  523. {
  524. const char* src = is_usb_printing?_N("USB"):(IS_SD_PRINTING?_N(" SD"):_N(" "));
  525. char per[4];
  526. bool num = IS_SD_PRINTING || (PRINTER_ACTIVE && (print_percent_done_normal != PRINT_PERCENT_DONE_INIT));
  527. sprintf_P(per, num?_N("%3hhd"):_N("---"), calc_percent_done());
  528. lcd_printf_P(_N("%3S%3s%%"), src, per);
  529. }
  530. // Print extruder status (5 chars total)
  531. void lcdui_print_extruder(void)
  532. {
  533. int chars = 0;
  534. if (mmu_extruder == tmp_extruder) {
  535. if (mmu_extruder == MMU_FILAMENT_UNKNOWN) chars = lcd_printf_P(_N(" F?"));
  536. else chars = lcd_printf_P(_N(" F%u"), mmu_extruder + 1);
  537. }
  538. else
  539. {
  540. if (mmu_extruder == MMU_FILAMENT_UNKNOWN) chars = lcd_printf_P(_N(" ?>%u"), tmp_extruder + 1);
  541. else chars = lcd_printf_P(_N(" %u>%u"), mmu_extruder + 1, tmp_extruder + 1);
  542. }
  543. lcd_space(5 - chars);
  544. }
  545. // Print farm number (5 chars total)
  546. void lcdui_print_farm(void)
  547. {
  548. int chars = lcd_printf_P(_N(" F0 "));
  549. // lcd_space(5 - chars);
  550. /*
  551. // Farm number display
  552. if (farm_mode)
  553. {
  554. lcd_set_cursor(6, 2);
  555. lcd_puts_P(PSTR(" F"));
  556. lcd_print(farm_no);
  557. lcd_puts_P(PSTR(" "));
  558. // Beat display
  559. lcd_set_cursor(LCD_WIDTH - 1, 0);
  560. if ( (_millis() - kicktime) < 60000 ) {
  561. lcd_puts_P(PSTR("L"));
  562. }else{
  563. lcd_puts_P(PSTR(" "));
  564. }
  565. }
  566. else {
  567. #ifdef SNMM
  568. lcd_puts_P(PSTR(" E"));
  569. lcd_print(get_ext_nr() + 1);
  570. #else
  571. lcd_set_cursor(LCD_WIDTH - 8 - 2, 2);
  572. lcd_puts_P(PSTR(" "));
  573. #endif
  574. }
  575. */
  576. }
  577. #ifdef CMD_DIAGNOSTICS
  578. // Print CMD queue diagnostic (8 chars total)
  579. void lcdui_print_cmd_diag(void)
  580. {
  581. lcd_set_cursor(LCD_WIDTH - 8 -1, 2);
  582. lcd_puts_P(PSTR(" C"));
  583. lcd_print(buflen); // number of commands in cmd buffer
  584. if (buflen < 9) lcd_puts_P(" ");
  585. }
  586. #endif //CMD_DIAGNOSTICS
  587. // Print time (8 chars total)
  588. void lcdui_print_time(void)
  589. {
  590. //if remaining print time estimation is available print it else print elapsed time
  591. uint16_t print_t = 0;
  592. if (print_time_remaining_normal != PRINT_TIME_REMAINING_INIT)
  593. print_t = print_time_remaining();
  594. else if(starttime != 0)
  595. print_t = _millis() / 60000 - starttime / 60000;
  596. int chars = 0;
  597. if ((PRINTER_ACTIVE) && ((print_time_remaining_normal != PRINT_TIME_REMAINING_INIT) || (starttime != 0)))
  598. {
  599. char suff = ' ';
  600. char suff_doubt = ' ';
  601. if (print_time_remaining_normal != PRINT_TIME_REMAINING_INIT)
  602. {
  603. suff = 'R';
  604. if (feedmultiply != 100)
  605. suff_doubt = '?';
  606. }
  607. if (print_t < 6000) //time<100h
  608. chars = lcd_printf_P(_N("%c%02u:%02u%c%c"), LCD_STR_CLOCK[0], print_t / 60, print_t % 60, suff, suff_doubt);
  609. else //time>=100h
  610. chars = lcd_printf_P(_N("%c%3uh %c%c"), LCD_STR_CLOCK[0], print_t / 60, suff, suff_doubt);
  611. }
  612. else
  613. chars = lcd_printf_P(_N("%c--:-- "), LCD_STR_CLOCK[0]);
  614. lcd_space(8 - chars);
  615. }
  616. //Print status line on status screen
  617. void lcdui_print_status_line(void)
  618. {
  619. if (IS_SD_PRINTING)
  620. {
  621. if (strcmp(longFilenameOLD, card.longFilename) != 0)
  622. {
  623. memset(longFilenameOLD, '\0', strlen(longFilenameOLD));
  624. sprintf_P(longFilenameOLD, PSTR("%s"), card.longFilename);
  625. scrollstuff = 0;
  626. }
  627. }
  628. if (heating_status)
  629. { // If heating flag, show progress of heating
  630. heating_status_counter++;
  631. if (heating_status_counter > 13)
  632. {
  633. heating_status_counter = 0;
  634. }
  635. lcd_set_cursor(7, 3);
  636. lcd_puts_P(PSTR(" "));
  637. for (unsigned int dots = 0; dots < heating_status_counter; dots++)
  638. {
  639. lcd_set_cursor(7 + dots, 3);
  640. lcd_print('.');
  641. }
  642. switch (heating_status)
  643. {
  644. case 1:
  645. lcd_set_cursor(0, 3);
  646. lcd_puts_P(_T(MSG_HEATING));
  647. break;
  648. case 2:
  649. lcd_set_cursor(0, 3);
  650. lcd_puts_P(_T(MSG_HEATING_COMPLETE));
  651. heating_status = 0;
  652. heating_status_counter = 0;
  653. break;
  654. case 3:
  655. lcd_set_cursor(0, 3);
  656. lcd_puts_P(_T(MSG_BED_HEATING));
  657. break;
  658. case 4:
  659. lcd_set_cursor(0, 3);
  660. lcd_puts_P(_T(MSG_BED_DONE));
  661. heating_status = 0;
  662. heating_status_counter = 0;
  663. break;
  664. default:
  665. break;
  666. }
  667. }
  668. else if ((IS_SD_PRINTING) && (custom_message_type == CustomMsg::Status))
  669. { // If printing from SD, show what we are printing
  670. if(strlen(card.longFilename) > LCD_WIDTH)
  671. {
  672. int inters = 0;
  673. int gh = scrollstuff;
  674. while (((gh - scrollstuff) < LCD_WIDTH) && (inters == 0))
  675. {
  676. if (card.longFilename[gh] == '\0')
  677. {
  678. lcd_set_cursor(gh - scrollstuff, 3);
  679. lcd_print(card.longFilename[gh - 1]);
  680. scrollstuff = 0;
  681. gh = scrollstuff;
  682. inters = 1;
  683. }
  684. else
  685. {
  686. lcd_set_cursor(gh - scrollstuff, 3);
  687. lcd_print(card.longFilename[gh - 1]);
  688. gh++;
  689. }
  690. }
  691. scrollstuff++;
  692. }
  693. else
  694. {
  695. lcd_print(longFilenameOLD);
  696. }
  697. }
  698. else
  699. { // Otherwise check for other special events
  700. switch (custom_message_type)
  701. {
  702. case CustomMsg::Status: // Nothing special, print status message normally
  703. lcd_print(lcd_status_message);
  704. break;
  705. case CustomMsg::MeshBedLeveling: // If mesh bed leveling in progress, show the status
  706. if (custom_message_state > 10)
  707. {
  708. lcd_set_cursor(0, 3);
  709. lcd_puts_P(PSTR(" "));
  710. lcd_set_cursor(0, 3);
  711. lcd_puts_P(_T(MSG_CALIBRATE_Z_AUTO));
  712. lcd_puts_P(PSTR(" : "));
  713. lcd_print(custom_message_state-10);
  714. }
  715. else
  716. {
  717. if (custom_message_state == 3)
  718. {
  719. lcd_puts_P(_T(WELCOME_MSG));
  720. lcd_setstatuspgm(_T(WELCOME_MSG));
  721. custom_message_type = CustomMsg::Status;
  722. }
  723. if (custom_message_state > 3 && custom_message_state <= 10 )
  724. {
  725. lcd_set_cursor(0, 3);
  726. lcd_puts_P(PSTR(" "));
  727. lcd_set_cursor(0, 3);
  728. lcd_puts_P(_i("Calibration done"));////MSG_HOMEYZ_DONE
  729. custom_message_state--;
  730. }
  731. }
  732. break;
  733. case CustomMsg::FilamentLoading: // If loading filament, print status
  734. lcd_print(lcd_status_message);
  735. break;
  736. case CustomMsg::PidCal: // PID tuning in progress
  737. lcd_print(lcd_status_message);
  738. if (pid_cycle <= pid_number_of_cycles && custom_message_state > 0)
  739. {
  740. lcd_set_cursor(10, 3);
  741. lcd_print(itostr3(pid_cycle));
  742. lcd_print('/');
  743. lcd_print(itostr3left(pid_number_of_cycles));
  744. }
  745. break;
  746. case CustomMsg::TempCal: // PINDA temp calibration in progress
  747. {
  748. char progress[4];
  749. lcd_set_cursor(0, 3);
  750. lcd_puts_P(_T(MSG_TEMP_CALIBRATION));
  751. lcd_set_cursor(12, 3);
  752. sprintf(progress, "%d/6", custom_message_state);
  753. lcd_print(progress);
  754. }
  755. break;
  756. case CustomMsg::TempCompPreheat: // temp compensation preheat
  757. lcd_set_cursor(0, 3);
  758. lcd_puts_P(_i("PINDA Heating"));////MSG_PINDA_PREHEAT c=20 r=1
  759. if (custom_message_state <= PINDA_HEAT_T)
  760. {
  761. lcd_puts_P(PSTR(": "));
  762. lcd_print(custom_message_state); //seconds
  763. lcd_print(' ');
  764. }
  765. break;
  766. }
  767. }
  768. // Fill the rest of line to have nice and clean output
  769. for(int fillspace = 0; fillspace < 20; fillspace++)
  770. if ((lcd_status_message[fillspace] <= 31 ))
  771. lcd_print(' ');
  772. }
  773. //! @brief Show Status Screen
  774. //!
  775. //! @code{.unparsed}
  776. //! |01234567890123456789|
  777. //! |N 000/000D Z000.0 |
  778. //! |B 000/000D F100% |
  779. //! |USB100% T0 t--:-- |
  780. //! |Status line.........|
  781. //! ----------------------
  782. //! N - nozzle temp symbol LCD_STR_THERMOMETER
  783. //! D - Degree sysmbol LCD_STR_DEGREE
  784. //! B - bed temp symbol LCD_STR_BEDTEMP
  785. //! F - feedrate symbol LCD_STR_FEEDRATE
  786. //! t - clock symbol LCD_STR_THERMOMETER
  787. //! @endcode
  788. void lcdui_print_status_screen(void)
  789. {
  790. lcd_set_cursor(0, 0); //line 0
  791. //Print the hotend temperature (9 chars total)
  792. lcdui_print_temp(LCD_STR_THERMOMETER[0], (int)(degHotend(0) + 0.5), (int)(degTargetHotend(0) + 0.5));
  793. lcd_space(3); //3 spaces
  794. //Print Z-coordinate (8 chars total)
  795. lcdui_print_Z_coord();
  796. lcd_set_cursor(0, 1); //line 1
  797. //Print the Bed temperature (9 chars total)
  798. lcdui_print_temp(LCD_STR_BEDTEMP[0], (int)(degBed() + 0.5), (int)(degTargetBed() + 0.5));
  799. lcd_space(3); //3 spaces
  800. #ifdef PLANNER_DIAGNOSTICS
  801. //Print planner diagnostics (8 chars)
  802. lcdui_print_planner_diag();
  803. #else // PLANNER_DIAGNOSTICS
  804. //Print Feedrate (8 chars)
  805. lcdui_print_feedrate();
  806. #endif // PLANNER_DIAGNOSTICS
  807. lcd_set_cursor(0, 2); //line 2
  808. //Print SD status (7 chars)
  809. lcdui_print_percent_done();
  810. if (mmu_enabled)
  811. //Print extruder status (5 chars)
  812. lcdui_print_extruder();
  813. else if (farm_mode)
  814. //Print farm number (5 chars)
  815. lcdui_print_farm();
  816. else
  817. lcd_space(5); //5 spaces
  818. #ifdef CMD_DIAGNOSTICS
  819. //Print cmd queue diagnostics (8chars)
  820. lcdui_print_cmd_diag();
  821. #else
  822. //Print time (8chars)
  823. lcdui_print_time();
  824. #endif //CMD_DIAGNOSTICS
  825. lcd_set_cursor(0, 3); //line 3
  826. #ifndef DEBUG_DISABLE_LCD_STATUS_LINE
  827. lcdui_print_status_line();
  828. #endif //DEBUG_DISABLE_LCD_STATUS_LINE
  829. }
  830. // Main status screen. It's up to the implementation specific part to show what is needed. As this is very display dependent
  831. static void lcd_status_screen()
  832. {
  833. if (firstrun == 1)
  834. {
  835. firstrun = 0;
  836. if(lcd_status_message_level == 0)
  837. {
  838. strncpy_P(lcd_status_message, _T(WELCOME_MSG), LCD_WIDTH);
  839. lcd_finishstatus();
  840. }
  841. if (eeprom_read_byte((uint8_t *)EEPROM_TOTALTIME) == 255 && eeprom_read_byte((uint8_t *)EEPROM_TOTALTIME + 1) == 255 && eeprom_read_byte((uint8_t *)EEPROM_TOTALTIME + 2) == 255 && eeprom_read_byte((uint8_t *)EEPROM_TOTALTIME + 3) == 255)
  842. {
  843. eeprom_update_dword((uint32_t *)EEPROM_TOTALTIME, 0);
  844. eeprom_update_dword((uint32_t *)EEPROM_FILAMENTUSED, 0);
  845. }
  846. }
  847. if (lcd_status_update_delay)
  848. lcd_status_update_delay--;
  849. else
  850. lcd_draw_update = 1;
  851. if (lcd_draw_update)
  852. {
  853. ReInitLCD++;
  854. if (ReInitLCD == 30)
  855. {
  856. lcd_refresh(); // to maybe revive the LCD if static electricity killed it.
  857. ReInitLCD = 0 ;
  858. }
  859. else
  860. {
  861. if ((ReInitLCD % 10) == 0)
  862. lcd_refresh_noclear(); //to maybe revive the LCD if static electricity killed it.
  863. }
  864. lcdui_print_status_screen();
  865. if (farm_mode)
  866. {
  867. farm_timer--;
  868. if (farm_timer < 1)
  869. {
  870. farm_timer = 10;
  871. prusa_statistics(0);
  872. }
  873. switch (farm_timer)
  874. {
  875. case 8:
  876. prusa_statistics(21);
  877. if(loading_flag)
  878. prusa_statistics(22);
  879. break;
  880. case 5:
  881. if (IS_SD_PRINTING)
  882. prusa_statistics(20);
  883. break;
  884. }
  885. } // end of farm_mode
  886. lcd_status_update_delay = 10; /* redraw the main screen every second. This is easier then trying keep track of all things that change on the screen */
  887. if (lcd_commands_type != LcdCommands::Idle)
  888. lcd_commands();
  889. } // end of lcd_draw_update
  890. bool current_click = LCD_CLICKED;
  891. if (ignore_click)
  892. {
  893. if (wait_for_unclick)
  894. {
  895. if (!current_click)
  896. ignore_click = wait_for_unclick = false;
  897. else
  898. current_click = false;
  899. }
  900. else if (current_click)
  901. {
  902. lcd_quick_feedback();
  903. wait_for_unclick = true;
  904. current_click = false;
  905. }
  906. }
  907. if (current_click
  908. && (lcd_commands_type != LcdCommands::StopPrint) //click is aborted unless stop print finishes
  909. && ( menu_block_entering_on_serious_errors == SERIOUS_ERR_NONE ) // or a serious error blocks entering the menu
  910. )
  911. {
  912. menu_depth = 0; //redundant, as already done in lcd_return_to_status(), just to be sure
  913. menu_submenu(lcd_main_menu);
  914. lcd_refresh(); // to maybe revive the LCD if static electricity killed it.
  915. }
  916. #ifdef ULTIPANEL_FEEDMULTIPLY
  917. // Dead zone at 100% feedrate
  918. if ((feedmultiply < 100 && (feedmultiply + int(lcd_encoder)) > 100) ||
  919. (feedmultiply > 100 && (feedmultiply + int(lcd_encoder)) < 100))
  920. {
  921. lcd_encoder = 0;
  922. feedmultiply = 100;
  923. }
  924. if (feedmultiply == 100 && int(lcd_encoder) > ENCODER_FEEDRATE_DEADZONE)
  925. {
  926. feedmultiply += int(lcd_encoder) - ENCODER_FEEDRATE_DEADZONE;
  927. lcd_encoder = 0;
  928. }
  929. else if (feedmultiply == 100 && int(lcd_encoder) < -ENCODER_FEEDRATE_DEADZONE)
  930. {
  931. feedmultiply += int(lcd_encoder) + ENCODER_FEEDRATE_DEADZONE;
  932. lcd_encoder = 0;
  933. }
  934. else if (feedmultiply != 100)
  935. {
  936. feedmultiply += int(lcd_encoder);
  937. lcd_encoder = 0;
  938. }
  939. #endif //ULTIPANEL_FEEDMULTIPLY
  940. if (feedmultiply < 10)
  941. feedmultiply = 10;
  942. else if (feedmultiply > 999)
  943. feedmultiply = 999;
  944. }
  945. void lcd_commands()
  946. {
  947. if (lcd_commands_type == LcdCommands::LongPause)
  948. {
  949. if (!blocks_queued() && !homing_flag)
  950. {
  951. lcd_setstatuspgm(_i("Print paused"));////MSG_PRINT_PAUSED c=20 r=1
  952. long_pause();
  953. if (lcd_commands_type == LcdCommands::LongPause) // !!! because "lcd_commands_type" can be changed during/inside "long_pause()"
  954. {
  955. lcd_commands_type = LcdCommands::Idle;
  956. lcd_commands_step = 0;
  957. }
  958. }
  959. }
  960. #ifdef SNMM
  961. if (lcd_commands_type == LcdCommands::Layer1Cal)
  962. {
  963. char cmd1[30];
  964. float width = 0.4;
  965. float length = 20 - width;
  966. float extr = count_e(0.2, width, length);
  967. float extr_short_segment = count_e(0.2, width, width);
  968. if (lcd_commands_step>1) lcd_timeoutToStatus.start(); //if user dont confirm live adjust Z value by pressing the knob, we are saving last value by timeout to status screen
  969. if (lcd_commands_step == 0)
  970. {
  971. lcd_commands_step = 10;
  972. }
  973. if (lcd_commands_step == 10 && !blocks_queued() && cmd_buffer_empty())
  974. {
  975. enquecommand_P(PSTR("M107"));
  976. enquecommand_P(PSTR("M104 S" STRINGIFY(PLA_PREHEAT_HOTEND_TEMP)));
  977. enquecommand_P(PSTR("M140 S" STRINGIFY(PLA_PREHEAT_HPB_TEMP)));
  978. enquecommand_P(PSTR("M190 S" STRINGIFY(PLA_PREHEAT_HPB_TEMP)));
  979. enquecommand_P(PSTR("M109 S" STRINGIFY(PLA_PREHEAT_HOTEND_TEMP)));
  980. enquecommand_P(PSTR("T0"));
  981. enquecommand_P(_T(MSG_M117_V2_CALIBRATION));
  982. enquecommand_P(PSTR("G87")); //sets calibration status
  983. enquecommand_P(PSTR("G28"));
  984. enquecommand_P(PSTR("G21")); //set units to millimeters
  985. enquecommand_P(PSTR("G90")); //use absolute coordinates
  986. enquecommand_P(PSTR("M83")); //use relative distances for extrusion
  987. enquecommand_P(PSTR("G92 E0"));
  988. enquecommand_P(PSTR("M203 E100"));
  989. enquecommand_P(PSTR("M92 E140"));
  990. lcd_commands_step = 9;
  991. }
  992. if (lcd_commands_step == 9 && !blocks_queued() && cmd_buffer_empty())
  993. {
  994. lcd_timeoutToStatus.start();
  995. enquecommand_P(PSTR("G1 Z0.250 F7200.000"));
  996. enquecommand_P(PSTR("G1 X50.0 E80.0 F1000.0"));
  997. enquecommand_P(PSTR("G1 X160.0 E20.0 F1000.0"));
  998. enquecommand_P(PSTR("G1 Z0.200 F7200.000"));
  999. enquecommand_P(PSTR("G1 X220.0 E13 F1000.0"));
  1000. enquecommand_P(PSTR("G1 X240.0 E0 F1000.0"));
  1001. enquecommand_P(PSTR("G92 E0.0"));
  1002. enquecommand_P(PSTR("G21"));
  1003. enquecommand_P(PSTR("G90"));
  1004. enquecommand_P(PSTR("M83"));
  1005. enquecommand_P(PSTR("G1 E-4 F2100.00000"));
  1006. enquecommand_P(PSTR("G1 Z0.150 F7200.000"));
  1007. enquecommand_P(PSTR("M204 S1000"));
  1008. enquecommand_P(PSTR("G1 F4000"));
  1009. lcd_clear();
  1010. menu_goto(lcd_babystep_z, 0, false, true);
  1011. lcd_commands_step = 8;
  1012. }
  1013. if (lcd_commands_step == 8 && !blocks_queued() && cmd_buffer_empty()) //draw meander
  1014. {
  1015. lcd_timeoutToStatus.start();
  1016. enquecommand_P(PSTR("G1 X50 Y155"));
  1017. enquecommand_P(PSTR("G1 X60 Y155 E4"));
  1018. enquecommand_P(PSTR("G1 F1080"));
  1019. enquecommand_P(PSTR("G1 X75 Y155 E2.5"));
  1020. enquecommand_P(PSTR("G1 X100 Y155 E2"));
  1021. enquecommand_P(PSTR("G1 X200 Y155 E2.62773"));
  1022. enquecommand_P(PSTR("G1 X200 Y135 E0.66174"));
  1023. enquecommand_P(PSTR("G1 X50 Y135 E3.62773"));
  1024. enquecommand_P(PSTR("G1 X50 Y115 E0.49386"));
  1025. enquecommand_P(PSTR("G1 X200 Y115 E3.62773"));
  1026. enquecommand_P(PSTR("G1 X200 Y95 E0.49386"));
  1027. enquecommand_P(PSTR("G1 X50 Y95 E3.62773"));
  1028. enquecommand_P(PSTR("G1 X50 Y75 E0.49386"));
  1029. enquecommand_P(PSTR("G1 X200 Y75 E3.62773"));
  1030. enquecommand_P(PSTR("G1 X200 Y55 E0.49386"));
  1031. enquecommand_P(PSTR("G1 X50 Y55 E3.62773"));
  1032. lcd_commands_step = 7;
  1033. }
  1034. if (lcd_commands_step == 7 && !blocks_queued() && cmd_buffer_empty())
  1035. {
  1036. lcd_timeoutToStatus.start();
  1037. strcpy(cmd1, "G1 X50 Y35 E");
  1038. strcat(cmd1, ftostr43(extr));
  1039. enquecommand(cmd1);
  1040. for (int i = 0; i < 4; i++) {
  1041. strcpy(cmd1, "G1 X70 Y");
  1042. strcat(cmd1, ftostr32(35 - i*width * 2));
  1043. strcat(cmd1, " E");
  1044. strcat(cmd1, ftostr43(extr));
  1045. enquecommand(cmd1);
  1046. strcpy(cmd1, "G1 Y");
  1047. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1048. strcat(cmd1, " E");
  1049. strcat(cmd1, ftostr43(extr_short_segment));
  1050. enquecommand(cmd1);
  1051. strcpy(cmd1, "G1 X50 Y");
  1052. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1053. strcat(cmd1, " E");
  1054. strcat(cmd1, ftostr43(extr));
  1055. enquecommand(cmd1);
  1056. strcpy(cmd1, "G1 Y");
  1057. strcat(cmd1, ftostr32(35 - (i + 1)*width * 2));
  1058. strcat(cmd1, " E");
  1059. strcat(cmd1, ftostr43(extr_short_segment));
  1060. enquecommand(cmd1);
  1061. }
  1062. lcd_commands_step = 6;
  1063. }
  1064. if (lcd_commands_step == 6 && !blocks_queued() && cmd_buffer_empty())
  1065. {
  1066. lcd_timeoutToStatus.start();
  1067. for (int i = 4; i < 8; i++) {
  1068. strcpy(cmd1, "G1 X70 Y");
  1069. strcat(cmd1, ftostr32(35 - i*width * 2));
  1070. strcat(cmd1, " E");
  1071. strcat(cmd1, ftostr43(extr));
  1072. enquecommand(cmd1);
  1073. strcpy(cmd1, "G1 Y");
  1074. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1075. strcat(cmd1, " E");
  1076. strcat(cmd1, ftostr43(extr_short_segment));
  1077. enquecommand(cmd1);
  1078. strcpy(cmd1, "G1 X50 Y");
  1079. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1080. strcat(cmd1, " E");
  1081. strcat(cmd1, ftostr43(extr));
  1082. enquecommand(cmd1);
  1083. strcpy(cmd1, "G1 Y");
  1084. strcat(cmd1, ftostr32(35 - (i + 1)*width * 2));
  1085. strcat(cmd1, " E");
  1086. strcat(cmd1, ftostr43(extr_short_segment));
  1087. enquecommand(cmd1);
  1088. }
  1089. lcd_commands_step = 5;
  1090. }
  1091. if (lcd_commands_step == 5 && !blocks_queued() && cmd_buffer_empty())
  1092. {
  1093. lcd_timeoutToStatus.start();
  1094. for (int i = 8; i < 12; i++) {
  1095. strcpy(cmd1, "G1 X70 Y");
  1096. strcat(cmd1, ftostr32(35 - i*width * 2));
  1097. strcat(cmd1, " E");
  1098. strcat(cmd1, ftostr43(extr));
  1099. enquecommand(cmd1);
  1100. strcpy(cmd1, "G1 Y");
  1101. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1102. strcat(cmd1, " E");
  1103. strcat(cmd1, ftostr43(extr_short_segment));
  1104. enquecommand(cmd1);
  1105. strcpy(cmd1, "G1 X50 Y");
  1106. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1107. strcat(cmd1, " E");
  1108. strcat(cmd1, ftostr43(extr));
  1109. enquecommand(cmd1);
  1110. strcpy(cmd1, "G1 Y");
  1111. strcat(cmd1, ftostr32(35 - (i + 1)*width * 2));
  1112. strcat(cmd1, " E");
  1113. strcat(cmd1, ftostr43(extr_short_segment));
  1114. enquecommand(cmd1);
  1115. }
  1116. lcd_commands_step = 4;
  1117. }
  1118. if (lcd_commands_step == 4 && !blocks_queued() && cmd_buffer_empty())
  1119. {
  1120. lcd_timeoutToStatus.start();
  1121. for (int i = 12; i < 16; i++) {
  1122. strcpy(cmd1, "G1 X70 Y");
  1123. strcat(cmd1, ftostr32(35 - i*width * 2));
  1124. strcat(cmd1, " E");
  1125. strcat(cmd1, ftostr43(extr));
  1126. enquecommand(cmd1);
  1127. strcpy(cmd1, "G1 Y");
  1128. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1129. strcat(cmd1, " E");
  1130. strcat(cmd1, ftostr43(extr_short_segment));
  1131. enquecommand(cmd1);
  1132. strcpy(cmd1, "G1 X50 Y");
  1133. strcat(cmd1, ftostr32(35 - (2 * i + 1)*width));
  1134. strcat(cmd1, " E");
  1135. strcat(cmd1, ftostr43(extr));
  1136. enquecommand(cmd1);
  1137. strcpy(cmd1, "G1 Y");
  1138. strcat(cmd1, ftostr32(35 - (i + 1)*width * 2));
  1139. strcat(cmd1, " E");
  1140. strcat(cmd1, ftostr43(extr_short_segment));
  1141. enquecommand(cmd1);
  1142. }
  1143. lcd_commands_step = 3;
  1144. }
  1145. if (lcd_commands_step == 3 && !blocks_queued() && cmd_buffer_empty())
  1146. {
  1147. lcd_timeoutToStatus.start();
  1148. enquecommand_P(PSTR("G1 E-0.07500 F2100.00000"));
  1149. enquecommand_P(PSTR("G4 S0"));
  1150. enquecommand_P(PSTR("G1 E-4 F2100.00000"));
  1151. enquecommand_P(PSTR("G1 Z0.5 F7200.000"));
  1152. enquecommand_P(PSTR("G1 X245 Y1"));
  1153. enquecommand_P(PSTR("G1 X240 E4"));
  1154. enquecommand_P(PSTR("G1 F4000"));
  1155. enquecommand_P(PSTR("G1 X190 E2.7"));
  1156. enquecommand_P(PSTR("G1 F4600"));
  1157. enquecommand_P(PSTR("G1 X110 E2.8"));
  1158. enquecommand_P(PSTR("G1 F5200"));
  1159. enquecommand_P(PSTR("G1 X40 E3"));
  1160. enquecommand_P(PSTR("G1 E-15.0000 F5000"));
  1161. enquecommand_P(PSTR("G1 E-50.0000 F5400"));
  1162. enquecommand_P(PSTR("G1 E-15.0000 F3000"));
  1163. enquecommand_P(PSTR("G1 E-12.0000 F2000"));
  1164. enquecommand_P(PSTR("G1 F1600"));
  1165. lcd_commands_step = 2;
  1166. }
  1167. if (lcd_commands_step == 2 && !blocks_queued() && cmd_buffer_empty())
  1168. {
  1169. lcd_timeoutToStatus.start();
  1170. enquecommand_P(PSTR("G1 X0 Y1 E3.0000"));
  1171. enquecommand_P(PSTR("G1 X50 Y1 E-5.0000"));
  1172. enquecommand_P(PSTR("G1 F2000"));
  1173. enquecommand_P(PSTR("G1 X0 Y1 E5.0000"));
  1174. enquecommand_P(PSTR("G1 X50 Y1 E-5.0000"));
  1175. enquecommand_P(PSTR("G1 F2400"));
  1176. enquecommand_P(PSTR("G1 X0 Y1 E5.0000"));
  1177. enquecommand_P(PSTR("G1 X50 Y1 E-5.0000"));
  1178. enquecommand_P(PSTR("G1 F2400"));
  1179. enquecommand_P(PSTR("G1 X0 Y1 E5.0000"));
  1180. enquecommand_P(PSTR("G1 X50 Y1 E-3.0000"));
  1181. enquecommand_P(PSTR("G4 S0"));
  1182. enquecommand_P(PSTR("M107"));
  1183. enquecommand_P(PSTR("M104 S0"));
  1184. enquecommand_P(PSTR("M140 S0"));
  1185. enquecommand_P(PSTR("G1 X10 Y180 F4000"));
  1186. enquecommand_P(PSTR("G1 Z10 F1300.000"));
  1187. enquecommand_P(PSTR("M84"));
  1188. lcd_commands_step = 1;
  1189. }
  1190. if (lcd_commands_step == 1 && !blocks_queued() && cmd_buffer_empty())
  1191. {
  1192. lcd_setstatuspgm(_T(WELCOME_MSG));
  1193. lcd_commands_step = 0;
  1194. lcd_commands_type = 0;
  1195. if (eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE) == 1) {
  1196. lcd_wizard(WizState::RepeatLay1Cal);
  1197. }
  1198. }
  1199. }
  1200. #else //if not SNMM
  1201. if (lcd_commands_type == LcdCommands::Layer1Cal)
  1202. {
  1203. char cmd1[30];
  1204. if(lcd_commands_step>1) lcd_timeoutToStatus.start(); //if user dont confirm live adjust Z value by pressing the knob, we are saving last value by timeout to status screen
  1205. if (!blocks_queued() && cmd_buffer_empty() && !saved_printing)
  1206. {
  1207. switch(lcd_commands_step)
  1208. {
  1209. case 0:
  1210. lcd_commands_step = 11;
  1211. break;
  1212. case 11:
  1213. lay1cal_wait_preheat();
  1214. lcd_commands_step = 10;
  1215. break;
  1216. case 10:
  1217. lay1cal_load_filament(cmd1, lay1cal_filament);
  1218. lcd_commands_step = 9;
  1219. break;
  1220. case 9:
  1221. lcd_clear();
  1222. menu_depth = 0;
  1223. menu_submenu(lcd_babystep_z);
  1224. lay1cal_intro_line();
  1225. lcd_commands_step = 8;
  1226. break;
  1227. case 8:
  1228. lay1cal_before_meander();
  1229. lcd_commands_step = 7;
  1230. break;
  1231. case 7:
  1232. lay1cal_meander(cmd1);
  1233. lcd_commands_step = 6;
  1234. break;
  1235. case 6:
  1236. for (uint8_t i = 0; i < 4; i++)
  1237. {
  1238. lay1cal_square(cmd1, i);
  1239. }
  1240. lcd_commands_step = 5;
  1241. break;
  1242. case 5:
  1243. for (uint8_t i = 4; i < 8; i++)
  1244. {
  1245. lay1cal_square(cmd1, i);
  1246. }
  1247. lcd_commands_step = 4;
  1248. break;
  1249. case 4:
  1250. for (uint8_t i = 8; i < 12; i++)
  1251. {
  1252. lay1cal_square(cmd1, i);
  1253. }
  1254. lcd_commands_step = 3;
  1255. break;
  1256. case 3:
  1257. for (uint8_t i = 12; i < 16; i++)
  1258. {
  1259. lay1cal_square(cmd1, i);
  1260. }
  1261. lcd_commands_step = 2;
  1262. break;
  1263. case 2:
  1264. enquecommand_P(PSTR("M107")); //turn off printer fan
  1265. enquecommand_P(PSTR("G1 E-0.07500 F2100.00000")); //retract
  1266. enquecommand_P(PSTR("M104 S0")); // turn off temperature
  1267. enquecommand_P(PSTR("M140 S0")); // turn off heatbed
  1268. enquecommand_P(PSTR("G1 Z10 F1300.000")); //lift Z
  1269. enquecommand_P(PSTR("G1 X10 Y180 F4000")); //Go to parking position
  1270. if (mmu_enabled) enquecommand_P(PSTR("M702 C")); //unload from nozzle
  1271. enquecommand_P(PSTR("M84"));// disable motors
  1272. forceMenuExpire = true; //if user dont confirm live adjust Z value by pressing the knob, we are saving last value by timeout to status screen
  1273. lcd_commands_step = 1;
  1274. break;
  1275. case 1:
  1276. lcd_setstatuspgm(_T(WELCOME_MSG));
  1277. lcd_commands_step = 0;
  1278. lcd_commands_type = LcdCommands::Idle;
  1279. if (eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE) == 1)
  1280. {
  1281. lcd_wizard(WizState::RepeatLay1Cal);
  1282. }
  1283. break;
  1284. }
  1285. }
  1286. }
  1287. #endif // not SNMM
  1288. if (lcd_commands_type == LcdCommands::StopPrint) /// stop print
  1289. {
  1290. if (lcd_commands_step == 0)
  1291. {
  1292. lcd_commands_step = 6;
  1293. }
  1294. if (lcd_commands_step == 1 && !blocks_queued())
  1295. {
  1296. lcd_commands_step = 0;
  1297. lcd_commands_type = LcdCommands::Idle;
  1298. lcd_setstatuspgm(_T(WELCOME_MSG));
  1299. custom_message_type = CustomMsg::Status;
  1300. isPrintPaused = false;
  1301. }
  1302. if (lcd_commands_step == 2 && !blocks_queued())
  1303. {
  1304. setTargetBed(0);
  1305. enquecommand_P(PSTR("M104 S0")); //set hotend temp to 0
  1306. manage_heater();
  1307. lcd_setstatuspgm(_T(WELCOME_MSG));
  1308. cancel_heatup = false;
  1309. lcd_commands_step = 1;
  1310. }
  1311. if (lcd_commands_step == 3 && !blocks_queued())
  1312. {
  1313. // M84: Disable steppers.
  1314. enquecommand_P(PSTR("M84"));
  1315. autotempShutdown();
  1316. lcd_commands_step = 2;
  1317. }
  1318. if (lcd_commands_step == 4 && !blocks_queued())
  1319. {
  1320. lcd_setstatuspgm(_T(MSG_PLEASE_WAIT));
  1321. // G90: Absolute positioning.
  1322. enquecommand_P(PSTR("G90"));
  1323. // M83: Set extruder to relative mode.
  1324. enquecommand_P(PSTR("M83"));
  1325. #ifdef X_CANCEL_POS
  1326. enquecommand_P(PSTR("G1 X" STRINGIFY(X_CANCEL_POS) " Y" STRINGIFY(Y_CANCEL_POS) " E0 F7000"));
  1327. #else
  1328. enquecommand_P(PSTR("G1 X50 Y" STRINGIFY(Y_MAX_POS) " E0 F7000"));
  1329. #endif
  1330. lcd_ignore_click(false);
  1331. if (mmu_enabled)
  1332. lcd_commands_step = 8;
  1333. else
  1334. lcd_commands_step = 3;
  1335. }
  1336. if (lcd_commands_step == 5 && !blocks_queued())
  1337. {
  1338. lcd_setstatuspgm(_T(MSG_PRINT_ABORTED));
  1339. // G91: Set to relative positioning.
  1340. enquecommand_P(PSTR("G91"));
  1341. // Lift up.
  1342. enquecommand_P(PSTR("G1 Z15 F1500"));
  1343. if (axis_known_position[X_AXIS] && axis_known_position[Y_AXIS]) lcd_commands_step = 4;
  1344. else lcd_commands_step = 3;
  1345. }
  1346. if (lcd_commands_step == 6 && !blocks_queued())
  1347. {
  1348. lcd_setstatuspgm(_T(MSG_PRINT_ABORTED));
  1349. cancel_heatup = true;
  1350. setTargetBed(0);
  1351. if (mmu_enabled)
  1352. setAllTargetHotends(0);
  1353. manage_heater();
  1354. custom_message_type = CustomMsg::FilamentLoading;
  1355. lcd_commands_step = 5;
  1356. }
  1357. if (lcd_commands_step == 7 && !blocks_queued())
  1358. {
  1359. if (mmu_enabled)
  1360. enquecommand_P(PSTR("M702 C")); //current
  1361. else
  1362. switch(snmm_stop_print_menu())
  1363. {
  1364. case 0: enquecommand_P(PSTR("M702")); break;//all
  1365. case 1: enquecommand_P(PSTR("M702 U")); break; //used
  1366. case 2: enquecommand_P(PSTR("M702 C")); break; //current
  1367. default: enquecommand_P(PSTR("M702")); break;
  1368. }
  1369. lcd_commands_step = 3;
  1370. }
  1371. if (lcd_commands_step == 8 && !blocks_queued()) { //step 8 is here for delay (going to next step after execution of all gcodes from step 4)
  1372. lcd_commands_step = 7;
  1373. }
  1374. }
  1375. if (lcd_commands_type == LcdCommands::FarmModeConfirm) /// farm mode confirm
  1376. {
  1377. if (lcd_commands_step == 0) { lcd_commands_step = 6; }
  1378. if (lcd_commands_step == 1 && !blocks_queued())
  1379. {
  1380. lcd_confirm_print();
  1381. lcd_commands_step = 0;
  1382. lcd_commands_type = LcdCommands::Idle;
  1383. }
  1384. if (lcd_commands_step == 2 && !blocks_queued())
  1385. {
  1386. lcd_commands_step = 1;
  1387. }
  1388. if (lcd_commands_step == 3 && !blocks_queued())
  1389. {
  1390. lcd_commands_step = 2;
  1391. }
  1392. if (lcd_commands_step == 4 && !blocks_queued())
  1393. {
  1394. enquecommand_P(PSTR("G90"));
  1395. enquecommand_P(PSTR("G1 X" STRINGIFY(X_CANCEL_POS) " Y" STRINGIFY(Y_CANCEL_POS) " E0 F7000"));
  1396. lcd_commands_step = 3;
  1397. }
  1398. if (lcd_commands_step == 5 && !blocks_queued())
  1399. {
  1400. lcd_commands_step = 4;
  1401. }
  1402. if (lcd_commands_step == 6 && !blocks_queued())
  1403. {
  1404. enquecommand_P(PSTR("G91"));
  1405. enquecommand_P(PSTR("G1 Z15 F1500"));
  1406. st_synchronize();
  1407. #ifdef SNMM
  1408. lcd_commands_step = 7;
  1409. #else
  1410. lcd_commands_step = 5;
  1411. #endif
  1412. }
  1413. }
  1414. if (lcd_commands_type == LcdCommands::PidExtruder) {
  1415. char cmd1[30];
  1416. if (lcd_commands_step == 0) {
  1417. custom_message_type = CustomMsg::PidCal;
  1418. custom_message_state = 1;
  1419. lcd_draw_update = 3;
  1420. lcd_commands_step = 3;
  1421. }
  1422. if (lcd_commands_step == 3 && !blocks_queued()) { //PID calibration
  1423. strcpy(cmd1, "M303 E0 S");
  1424. strcat(cmd1, ftostr3(pid_temp));
  1425. // setting the correct target temperature (for visualization) is done in PID_autotune
  1426. enquecommand(cmd1);
  1427. lcd_setstatuspgm(_i("PID cal. "));////MSG_PID_RUNNING c=20 r=1
  1428. lcd_commands_step = 2;
  1429. }
  1430. if (lcd_commands_step == 2 && pid_tuning_finished) { //saving to eeprom
  1431. pid_tuning_finished = false;
  1432. custom_message_state = 0;
  1433. lcd_setstatuspgm(_i("PID cal. finished"));////MSG_PID_FINISHED c=20 r=1
  1434. setAllTargetHotends(0); // reset all hotends temperature including the number displayed on the main screen
  1435. if (_Kp != 0 || _Ki != 0 || _Kd != 0) {
  1436. strcpy(cmd1, "M301 P");
  1437. strcat(cmd1, ftostr32(_Kp));
  1438. strcat(cmd1, " I");
  1439. strcat(cmd1, ftostr32(_Ki));
  1440. strcat(cmd1, " D");
  1441. strcat(cmd1, ftostr32(_Kd));
  1442. enquecommand(cmd1);
  1443. enquecommand_P(PSTR("M500"));
  1444. }
  1445. else {
  1446. SERIAL_ECHOPGM("Invalid PID cal. results. Not stored to EEPROM.");
  1447. }
  1448. display_time = _millis();
  1449. lcd_commands_step = 1;
  1450. }
  1451. if ((lcd_commands_step == 1) && ((_millis()- display_time)>2000)) { //calibration finished message
  1452. lcd_setstatuspgm(_T(WELCOME_MSG));
  1453. custom_message_type = CustomMsg::Status;
  1454. pid_temp = DEFAULT_PID_TEMP;
  1455. lcd_commands_step = 0;
  1456. lcd_commands_type = LcdCommands::Idle;
  1457. }
  1458. }
  1459. }
  1460. void lcd_return_to_status()
  1461. {
  1462. lcd_refresh(); // to maybe revive the LCD if static electricity killed it.
  1463. menu_goto(lcd_status_screen, 0, false, true);
  1464. menu_depth = 0;
  1465. eFilamentAction = FilamentAction::None; // i.e. non-autoLoad
  1466. }
  1467. //! @brief Pause print, disable nozzle heater, move to park position
  1468. void lcd_pause_print()
  1469. {
  1470. lcd_return_to_status();
  1471. stop_and_save_print_to_ram(0.0,0.0);
  1472. setAllTargetHotends(0);
  1473. isPrintPaused = true;
  1474. if (LcdCommands::Idle == lcd_commands_type)
  1475. {
  1476. lcd_commands_type = LcdCommands::LongPause;
  1477. }
  1478. SERIAL_PROTOCOLLNRPGM(MSG_OCTOPRINT_PAUSED); //pause for octoprint
  1479. }
  1480. float move_menu_scale;
  1481. static void lcd_move_menu_axis();
  1482. /* Menu implementation */
  1483. static void lcd_cooldown()
  1484. {
  1485. setAllTargetHotends(0);
  1486. setTargetBed(0);
  1487. fanSpeed = 0;
  1488. eFilamentAction = FilamentAction::None;
  1489. lcd_return_to_status();
  1490. }
  1491. //! @brief append text label with a colon and format it into a fixed size output buffer
  1492. //! It would have been much easier if there was a ':' in the labels.
  1493. //! But since the texts like Bed, Nozzle and PINDA are used in other places
  1494. //! it is better to reuse these texts even though it requires some extra formatting code.
  1495. //! @param [in] ipgmLabel pointer to string in PROGMEM
  1496. //! @param [out] pointer to string in RAM which will receive the formatted text. Must be allocated to appropriate size
  1497. //! @param [in] dstSize allocated length of dst
  1498. static void pgmtext_with_colon(const char *ipgmLabel, char *dst, uint8_t dstSize){
  1499. uint8_t i = 0;
  1500. for(; i < dstSize - 2; ++i){ // 2 byte less than buffer, we'd be adding a ':' to the end
  1501. uint8_t b = pgm_read_byte(ipgmLabel + i);
  1502. if( ! b )
  1503. break;
  1504. dst[i] = b;
  1505. }
  1506. dst[i] = ':'; // append the colon
  1507. ++i;
  1508. for(; i < dstSize - 1; ++i) // fill the rest with spaces
  1509. dst[i] = ' ';
  1510. dst[dstSize-1] = '\0'; // terminate the string properly
  1511. }
  1512. //! @brief Show Extruder Info
  1513. //!
  1514. //! @code{.unparsed}
  1515. //! |01234567890123456789|
  1516. //! |Nozzle FAN: 0000 RPM| FAN c=10 r=1 SPEED c=3 r=1
  1517. //! |Print FAN: 0000 RPM| FAN c=10 r=1 SPEED c=3 r=1
  1518. //! |Fil. Xd:000 Yd:000 | Fil. c=4 r=1
  1519. //! |Int: 000 Shut: 000 | Int: c=4 r=1 Shut: c=4 r=1
  1520. //! ----------------------
  1521. //! @endcode
  1522. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1523. void lcd_menu_extruder_info() // NOT static due to using inside "Marlin_main" module ("manage_inactivity()")
  1524. {
  1525. // Display Nozzle fan RPM
  1526. lcd_timeoutToStatus.stop(); //infinite timeout
  1527. lcd_home();
  1528. static const size_t maxChars = 12;
  1529. char nozzle[maxChars], print[maxChars];
  1530. pgmtext_with_colon(_i("Nozzle FAN"), nozzle, maxChars); ////c=10 r=1
  1531. pgmtext_with_colon(_i("Print FAN"), print, maxChars); ////c=10 r=1
  1532. lcd_printf_P(_N("%s %4d RPM\n" "%s %4d RPM\n"), nozzle, 60*fan_speed[0], print, 60*fan_speed[1] );
  1533. #ifdef PAT9125
  1534. // Display X and Y difference from Filament sensor
  1535. // Display Light intensity from Filament sensor
  1536. // Frame_Avg register represents the average brightness of all pixels within a frame (324 pixels). This
  1537. // value ranges from 0(darkest) to 255(brightest).
  1538. // Display LASER shutter time from Filament sensor
  1539. // Shutter register is an index of LASER shutter time. It is automatically controlled by the chip's internal
  1540. // auto-exposure algorithm. When the chip is tracking on a good reflection surface, the Shutter is small.
  1541. // When the chip is tracking on a poor reflection surface, the Shutter is large. Value ranges from 0 to 46.
  1542. if (mmu_enabled == false)
  1543. {
  1544. if (!fsensor_enabled)
  1545. lcd_puts_P(_N("Filament sensor\n" "is disabled."));
  1546. else
  1547. {
  1548. if (!moves_planned() && !IS_SD_PRINTING && !is_usb_printing && (lcd_commands_type != LcdCommands::Layer1Cal))
  1549. pat9125_update();
  1550. lcd_printf_P(_N(
  1551. "Fil. Xd:%3d Yd:%3d\n" ////c=4 r=1
  1552. "Int: %3d " ////c=4 r=1
  1553. "Shut: %3d" ////c=4 r=1
  1554. ),
  1555. pat9125_x, pat9125_y,
  1556. pat9125_b, pat9125_s
  1557. );
  1558. }
  1559. }
  1560. #endif //PAT9125
  1561. menu_back_if_clicked();
  1562. }
  1563. //! @brief Show Fails Statistics MMU
  1564. //!
  1565. //! @code{.unparsed}
  1566. //! |01234567890123456789|
  1567. //! | Main | c=18 r=1
  1568. //! | Last print | c=18 r=1
  1569. //! | Total | c=18 r=1
  1570. //! | |
  1571. //! ----------------------
  1572. //! @endcode
  1573. static void lcd_menu_fails_stats_mmu()
  1574. {
  1575. MENU_BEGIN();
  1576. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  1577. MENU_ITEM_SUBMENU_P(_i("Last print"), lcd_menu_fails_stats_mmu_print); ////c=18 r=1
  1578. MENU_ITEM_SUBMENU_P(_i("Total"), lcd_menu_fails_stats_mmu_total); ////c=18 r=1
  1579. MENU_END();
  1580. }
  1581. //! @brief Show Last Print Failures Statistics MMU
  1582. //!
  1583. //! @code{.unparsed}
  1584. //! |01234567890123456789|
  1585. //! |Last print failures | c=20 r=1
  1586. //! | MMU fails: 000| c=14 r=1
  1587. //! | MMU load fails: 000| c=14 r=1
  1588. //! | |
  1589. //! ----------------------
  1590. //! @endcode
  1591. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1592. static void lcd_menu_fails_stats_mmu_print()
  1593. {
  1594. lcd_timeoutToStatus.stop(); //infinite timeout
  1595. uint8_t fails = eeprom_read_byte((uint8_t*)EEPROM_MMU_FAIL);
  1596. uint16_t load_fails = eeprom_read_byte((uint8_t*)EEPROM_MMU_LOAD_FAIL);
  1597. lcd_home();
  1598. lcd_printf_P(PSTR("%S\n" " %-16.16S%-3d\n" " %-16.16S%-3d"),
  1599. _i("Last print failures"), ////c=20 r=1
  1600. _i("MMU fails"), fails, ////c=14 r=1
  1601. _i("MMU load fails"), load_fails); ////c=14 r=1
  1602. menu_back_if_clicked_fb();
  1603. }
  1604. //! @brief Show Total Failures Statistics MMU
  1605. //!
  1606. //! @code{.unparsed}
  1607. //! |01234567890123456789|
  1608. //! |Total failures | c=20 r=1
  1609. //! | MMU fails: 000| c=14 r=1
  1610. //! | MMU load fails: 000| c=14 r=1
  1611. //! | MMU power fails:000| c=14 r=1
  1612. //! ----------------------
  1613. //! @endcode
  1614. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1615. static void lcd_menu_fails_stats_mmu_total()
  1616. {
  1617. mmu_command(MmuCmd::S3);
  1618. lcd_timeoutToStatus.stop(); //infinite timeout
  1619. uint8_t fails = eeprom_read_byte((uint8_t*)EEPROM_MMU_FAIL_TOT);
  1620. uint16_t load_fails = eeprom_read_byte((uint8_t*)EEPROM_MMU_LOAD_FAIL_TOT);
  1621. lcd_home();
  1622. lcd_printf_P(PSTR("%S\n" " %-16.16S%-3d\n" " %-16.16S%-3d\n" " %-16.16S%-3d"),
  1623. _i("Total failures"), ////c=20 r=1
  1624. _i("MMU fails"), fails, ////c=14 r=1
  1625. _i("MMU load fails"), load_fails, ////c=14 r=1
  1626. _i("MMU power fails"), mmu_power_failures); ////c=14 r=1
  1627. menu_back_if_clicked_fb();
  1628. }
  1629. #if defined(TMC2130) && defined(FILAMENT_SENSOR)
  1630. static const char failStatsFmt[] PROGMEM = "%S\n" " %-16.16S%-3d\n" " %-16.16S%-3d\n" " %-7.7SX %-3d Y %-3d";
  1631. //! @brief Show Total Failures Statistics MMU
  1632. //!
  1633. //! @code{.unparsed}
  1634. //! |01234567890123456789|
  1635. //! |Total failures | c=20 r=1
  1636. //! | Power failures: 000| c=14 r=1
  1637. //! | Filam. runouts: 000| c=14 r=1
  1638. //! | Crash X:000 Y:000| c=7 r=1
  1639. //! ----------------------
  1640. //! @endcode
  1641. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1642. static void lcd_menu_fails_stats_total()
  1643. {
  1644. lcd_timeoutToStatus.stop(); //infinite timeout
  1645. uint16_t power = eeprom_read_word((uint16_t*)EEPROM_POWER_COUNT_TOT);
  1646. uint16_t filam = eeprom_read_word((uint16_t*)EEPROM_FERROR_COUNT_TOT);
  1647. uint16_t crashX = eeprom_read_word((uint16_t*)EEPROM_CRASH_COUNT_X_TOT);
  1648. uint16_t crashY = eeprom_read_word((uint16_t*)EEPROM_CRASH_COUNT_Y_TOT);
  1649. lcd_home();
  1650. lcd_printf_P(failStatsFmt,
  1651. _i("Total failures"), ////c=20 r=1
  1652. _i("Power failures"), power, ////c=14 r=1
  1653. _i("Filam. runouts"), filam, ////c=14 r=1
  1654. _i("Crash"), crashX, crashY); ////c=7 r=1
  1655. menu_back_if_clicked_fb();
  1656. }
  1657. //! @brief Show Last Print Failures Statistics
  1658. //!
  1659. //! @code{.unparsed}
  1660. //! |01234567890123456789|
  1661. //! |Last print failures | c=20 r=1
  1662. //! | Power failures: 000| c=14 r=1
  1663. //! | Filam. runouts: 000| c=14 r=1
  1664. //! | Crash X:000 Y:000| c=7 r=1
  1665. //! ----------------------
  1666. //! @endcode
  1667. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1668. static void lcd_menu_fails_stats_print()
  1669. {
  1670. lcd_timeoutToStatus.stop(); //infinite timeout
  1671. uint8_t power = eeprom_read_byte((uint8_t*)EEPROM_POWER_COUNT);
  1672. uint8_t filam = eeprom_read_byte((uint8_t*)EEPROM_FERROR_COUNT);
  1673. uint8_t crashX = eeprom_read_byte((uint8_t*)EEPROM_CRASH_COUNT_X);
  1674. uint8_t crashY = eeprom_read_byte((uint8_t*)EEPROM_CRASH_COUNT_Y);
  1675. lcd_home();
  1676. lcd_printf_P(failStatsFmt,
  1677. _i("Last print failures"), ////c=20 r=1
  1678. _i("Power failures"), power, ////c=14 r=1
  1679. _i("Filam. runouts"), filam, ////c=14 r=1
  1680. _i("Crash"), crashX, crashY); ////c=7 r=1
  1681. menu_back_if_clicked_fb();
  1682. }
  1683. //! @brief Open fail statistics menu
  1684. //!
  1685. //! This version of function is used, when there is filament sensor,
  1686. //! power failure and crash detection.
  1687. //! There are Last print and Total menu items.
  1688. //!
  1689. //! @code{.unparsed}
  1690. //! |01234567890123456789|
  1691. //! | Main | c=18 r=1
  1692. //! | Last print | c=18 r=1
  1693. //! | Total | c=18 r=1
  1694. //! | |
  1695. //! ----------------------
  1696. //! @endcode
  1697. static void lcd_menu_fails_stats()
  1698. {
  1699. MENU_BEGIN();
  1700. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  1701. MENU_ITEM_SUBMENU_P(_i("Last print"), lcd_menu_fails_stats_print); ////c=18 r=1
  1702. MENU_ITEM_SUBMENU_P(_i("Total"), lcd_menu_fails_stats_total); ////c=18 r=1
  1703. MENU_END();
  1704. }
  1705. #elif defined(FILAMENT_SENSOR)
  1706. //!
  1707. //! @brief Print last print and total filament run outs
  1708. //!
  1709. //! This version of function is used, when there is filament sensor,
  1710. //! but no other sensors (e.g. power failure, crash detection).
  1711. //!
  1712. //! Example screen:
  1713. //! @code{.unparsed}
  1714. //! |01234567890123456789|
  1715. //! |Last print failures | c=20 r=1
  1716. //! | Filam. runouts: 000| c=14 r=1
  1717. //! |Total failures | c=20 r=1
  1718. //! | Filam. runouts: 000| c=14 r=1
  1719. //! ----------------------
  1720. //! @endcode
  1721. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1722. static void lcd_menu_fails_stats()
  1723. {
  1724. lcd_timeoutToStatus.stop(); //infinite timeout
  1725. uint8_t filamentLast = eeprom_read_byte((uint8_t*)EEPROM_FERROR_COUNT);
  1726. uint16_t filamentTotal = eeprom_read_word((uint16_t*)EEPROM_FERROR_COUNT_TOT);
  1727. lcd_home();
  1728. lcd_printf_P(PSTR("Last print failures\n" ////c=20 r=1
  1729. " Filam. runouts %-3d\n" ////c=14 r=1
  1730. "Total failures\n" ////c=20 r=1
  1731. " Filam. runouts %-3d"), filamentLast, filamentTotal); ////c=14 r=1
  1732. menu_back_if_clicked();
  1733. }
  1734. #else
  1735. static void lcd_menu_fails_stats()
  1736. {
  1737. lcd_timeoutToStatus.stop(); //infinite timeout
  1738. MENU_BEGIN();
  1739. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  1740. MENU_END();
  1741. }
  1742. #endif //TMC2130
  1743. #ifdef DEBUG_BUILD
  1744. #ifdef DEBUG_STACK_MONITOR
  1745. extern uint16_t SP_min;
  1746. extern char* __malloc_heap_start;
  1747. extern char* __malloc_heap_end;
  1748. #endif //DEBUG_STACK_MONITOR
  1749. //! @brief Show Debug Information
  1750. //!
  1751. //! @code{.unparsed}
  1752. //! |01234567890123456789|
  1753. //! |RAM statistics | c=20 r=1
  1754. //! | SP_min: 0000| c=14 r=1
  1755. //! | heap_start: 0000| c=14 r=1
  1756. //! | heap_end: 0000| c=14 r=1
  1757. //! ----------------------
  1758. //! @endcode
  1759. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1760. static void lcd_menu_debug()
  1761. {
  1762. #ifdef DEBUG_STACK_MONITOR
  1763. lcd_home();
  1764. lcd_printf_P(PSTR("RAM statistics\n" ////c=20 r=1
  1765. " SP_min: 0x%04x\n" ////c=14 r=1
  1766. " heap_start: 0x%04x\n" ////c=14 r=1
  1767. " heap_end: 0x%04x"), SP_min, __malloc_heap_start, __malloc_heap_end); ////c=14 r=1
  1768. #endif //DEBUG_STACK_MONITOR
  1769. menu_back_if_clicked_fb();
  1770. }
  1771. #endif /* DEBUG_BUILD */
  1772. //! @brief common line print for lcd_menu_temperatures
  1773. //! @param [in] ipgmLabel pointer to string in PROGMEM
  1774. //! @param [in] value to be printed behind the label
  1775. static void lcd_menu_temperatures_line(const char *ipgmLabel, int value){
  1776. static const size_t maxChars = 15;
  1777. char tmp[maxChars];
  1778. pgmtext_with_colon(ipgmLabel, tmp, maxChars);
  1779. lcd_printf_P(PSTR(" %s%3d\x01 \n"), tmp, value); // no need to add -14.14 to string alignment
  1780. }
  1781. //! @brief Show Temperatures
  1782. //!
  1783. //! @code{.unparsed}
  1784. //! |01234567890123456789|
  1785. //! | Nozzle: 000D| c=14 r=1
  1786. //! | Bed: 000D| c=14 r=1
  1787. //! | Ambient: 000D| c=14 r=1
  1788. //! | PINDA: 000D| c=14 r=1
  1789. //! ----------------------
  1790. //! D - Degree sysmbol LCD_STR_DEGREE
  1791. //! @endcode
  1792. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1793. static void lcd_menu_temperatures()
  1794. {
  1795. lcd_timeoutToStatus.stop(); //infinite timeout
  1796. lcd_home();
  1797. lcd_menu_temperatures_line( _T(MSG_NOZZLE), (int)current_temperature[0] ); ////c=14 r=1
  1798. lcd_menu_temperatures_line( _T(MSG_BED), (int)current_temperature_bed ); ////c=14 r=1
  1799. #ifdef AMBIENT_THERMISTOR
  1800. lcd_menu_temperatures_line( _i("Ambient"), (int)current_temperature_ambient ); ////c=14 r=1
  1801. #endif //AMBIENT_THERMISTOR
  1802. #ifdef PINDA_THERMISTOR
  1803. lcd_menu_temperatures_line( _i("PINDA"), (int)current_temperature_pinda ); ////c=14 r=1
  1804. #endif //PINDA_THERMISTOR
  1805. menu_back_if_clicked();
  1806. }
  1807. #if defined (VOLT_BED_PIN) || defined (VOLT_PWR_PIN)
  1808. #define VOLT_DIV_R1 10000
  1809. #define VOLT_DIV_R2 2370
  1810. #define VOLT_DIV_FAC ((float)VOLT_DIV_R2 / (VOLT_DIV_R2 + VOLT_DIV_R1))
  1811. #define VOLT_DIV_REF 5
  1812. //! @brief Show Voltages
  1813. //!
  1814. //! @code{.unparsed}
  1815. //! |01234567890123456789|
  1816. //! | |
  1817. //! | PWR: 00.0V | c=12 r=1
  1818. //! | Bed: 00.0V | c=12 r=1
  1819. //! | |
  1820. //! ----------------------
  1821. //! @endcode
  1822. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1823. static void lcd_menu_voltages()
  1824. {
  1825. lcd_timeoutToStatus.stop(); //infinite timeout
  1826. float volt_pwr = VOLT_DIV_REF * ((float)current_voltage_raw_pwr / (1023 * OVERSAMPLENR)) / VOLT_DIV_FAC;
  1827. float volt_bed = VOLT_DIV_REF * ((float)current_voltage_raw_bed / (1023 * OVERSAMPLENR)) / VOLT_DIV_FAC;
  1828. lcd_home();
  1829. lcd_printf_P(PSTR(" PWR: %d.%01dV\n" " BED: %d.%01dV"), (int)volt_pwr, (int)(10*fabs(volt_pwr - (int)volt_pwr)), (int)volt_bed, (int)(10*fabs(volt_bed - (int)volt_bed)));
  1830. menu_back_if_clicked();
  1831. }
  1832. #endif //defined VOLT_BED_PIN || defined VOLT_PWR_PIN
  1833. #ifdef TMC2130
  1834. //! @brief Show Belt Status
  1835. //!
  1836. //! @code{.unparsed}
  1837. //! |01234567890123456789|
  1838. //! | Belt status | c=18 r=1
  1839. //! | X: 000 |
  1840. //! | Y: 000 |
  1841. //! | |
  1842. //! ----------------------
  1843. //! @endcode
  1844. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  1845. static void lcd_menu_belt_status()
  1846. {
  1847. lcd_home();
  1848. lcd_printf_P(PSTR("%S\n" " X %d\n" " Y %d"), _i("Belt status"), eeprom_read_word((uint16_t*)(EEPROM_BELTSTATUS_X)), eeprom_read_word((uint16_t*)(EEPROM_BELTSTATUS_Y)));
  1849. menu_back_if_clicked();
  1850. }
  1851. #endif //TMC2130
  1852. #ifdef RESUME_DEBUG
  1853. extern void stop_and_save_print_to_ram(float z_move, float e_move);
  1854. extern void restore_print_from_ram_and_continue(float e_move);
  1855. static void lcd_menu_test_save()
  1856. {
  1857. stop_and_save_print_to_ram(10, -0.8);
  1858. }
  1859. static void lcd_menu_test_restore()
  1860. {
  1861. restore_print_from_ram_and_continue(0.8);
  1862. }
  1863. #endif //RESUME_DEBUG
  1864. //! @brief Show Preheat Menu
  1865. static void lcd_preheat_menu()
  1866. {
  1867. eFilamentAction = FilamentAction::Preheat;
  1868. lcd_generic_preheat_menu();
  1869. }
  1870. //! @brief Show Support Menu
  1871. //!
  1872. //! @code{.unparsed}
  1873. //! |01234567890123456789|
  1874. //! | Main |
  1875. //! | Firmware: | c=18 r=1
  1876. //! | 3.7.2.-2363 | c=16 r=1
  1877. //! | prusa3d.com | MSG_PRUSA3D
  1878. //! | forum.prusa3d.com | MSG_PRUSA3D_FORUM
  1879. //! | howto.prusa3d.com | MSG_PRUSA3D_HOWTO
  1880. //! | -------------- | STR_SEPARATOR
  1881. //! | 1_75mm_MK3 | FILAMENT_SIZE
  1882. //! | howto.prusa3d.com | ELECTRONICS
  1883. //! | howto.prusa3d.com | NOZZLE_TYPE
  1884. //! | -------------- | STR_SEPARATOR
  1885. //! | Date: | c=17 r=1
  1886. //! | MMM DD YYYY | __DATE__
  1887. //! | -------------- | STR_SEPARATOR
  1888. //! @endcode
  1889. //!
  1890. //! If MMU is connected
  1891. //!
  1892. //! @code{.unparsed}
  1893. //! | MMU2 connected | c=18 r=1
  1894. //! | FW: 1.0.6-7064523 |
  1895. //! @endcode
  1896. //!
  1897. //! If MMU is not connected
  1898. //!
  1899. //! @code{.unparsed}
  1900. //! | MMU2 N/A | c=18 r=1
  1901. //! @endcode
  1902. //!
  1903. //! If Flash Air is connected
  1904. //!
  1905. //! @code{.unparsed}
  1906. //! | -------------- | STR_SEPARATOR
  1907. //! | FlashAir IP Addr: | c=18 r=1
  1908. //! | 192.168.1.100 |
  1909. //! @endcode
  1910. //!
  1911. //! @code{.unparsed}
  1912. //! | -------------- | STR_SEPARATOR
  1913. //! | XYZ cal. details | MSG_XYZ_DETAILS
  1914. //! | Extruder info | MSG_INFO_EXTRUDER
  1915. //! | XYZ cal. details | MSG_INFO_SENSORS
  1916. //! @endcode
  1917. //!
  1918. //! If TMC2130 defined
  1919. //!
  1920. //! @code{.unparsed}
  1921. //! | Belt status | MSG_MENU_BELT_STATUS
  1922. //! @endcode
  1923. //!
  1924. //! @code{.unparsed}
  1925. //! | Temperatures | MSG_MENU_TEMPERATURES
  1926. //! @endcode
  1927. //!
  1928. //! If Voltage Bed and PWR Pin are defined
  1929. //!
  1930. //! @code{.unparsed}
  1931. //! | Voltages | MSG_MENU_VOLTAGES
  1932. //! @endcode
  1933. //!
  1934. //!
  1935. //! If DEBUG_BUILD is defined
  1936. //!
  1937. //! @code{.unparsed}
  1938. //! | Debug | c=18 r=1
  1939. //! @endcode
  1940. //! ----------------------
  1941. //! @endcode
  1942. static void lcd_support_menu()
  1943. {
  1944. typedef struct
  1945. { // 22bytes total
  1946. int8_t status; // 1byte
  1947. bool is_flash_air; // 1byte
  1948. uint8_t ip[4]; // 4bytes
  1949. char ip_str[3*4+3+1]; // 16bytes
  1950. } _menu_data_t;
  1951. static_assert(sizeof(menu_data)>= sizeof(_menu_data_t),"_menu_data_t doesn't fit into menu_data");
  1952. _menu_data_t* _md = (_menu_data_t*)&(menu_data[0]);
  1953. if (_md->status == 0 || lcd_draw_update == 2)
  1954. {
  1955. // Menu was entered or SD card status has changed (plugged in or removed).
  1956. // Initialize its status.
  1957. _md->status = 1;
  1958. _md->is_flash_air = card.ToshibaFlashAir_isEnabled() && card.ToshibaFlashAir_GetIP(_md->ip);
  1959. if (_md->is_flash_air)
  1960. sprintf_P(_md->ip_str, PSTR("%d.%d.%d.%d"),
  1961. _md->ip[0], _md->ip[1],
  1962. _md->ip[2], _md->ip[3]);
  1963. } else if (_md->is_flash_air &&
  1964. _md->ip[0] == 0 && _md->ip[1] == 0 &&
  1965. _md->ip[2] == 0 && _md->ip[3] == 0 &&
  1966. ++ _md->status == 16)
  1967. {
  1968. // Waiting for the FlashAir card to get an IP address from a router. Force an update.
  1969. _md->status = 0;
  1970. }
  1971. MENU_BEGIN();
  1972. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  1973. MENU_ITEM_BACK_P(PSTR("Firmware:"));
  1974. MENU_ITEM_BACK_P(PSTR(" " FW_VERSION_FULL));
  1975. #if (FW_DEV_VERSION != FW_VERSION_GOLD) && (FW_DEV_VERSION != FW_VERSION_RC)
  1976. MENU_ITEM_BACK_P(PSTR(" repo " FW_REPOSITORY));
  1977. #endif
  1978. // Ideally this block would be optimized out by the compiler.
  1979. /* const uint8_t fw_string_len = strlen_P(FW_VERSION_STR_P());
  1980. if (fw_string_len < 6) {
  1981. MENU_ITEM_BACK_P(PSTR(MSG_FW_VERSION " - " FW_version));
  1982. } else {
  1983. MENU_ITEM_BACK_P(PSTR("FW - " FW_version));
  1984. }*/
  1985. MENU_ITEM_BACK_P(_i("prusa3d.com"));////MSG_PRUSA3D
  1986. MENU_ITEM_BACK_P(_i("forum.prusa3d.com"));////MSG_PRUSA3D_FORUM
  1987. MENU_ITEM_BACK_P(_i("howto.prusa3d.com"));////MSG_PRUSA3D_HOWTO
  1988. MENU_ITEM_BACK_P(STR_SEPARATOR);
  1989. MENU_ITEM_BACK_P(PSTR(FILAMENT_SIZE));
  1990. MENU_ITEM_BACK_P(PSTR(ELECTRONICS));
  1991. MENU_ITEM_BACK_P(PSTR(NOZZLE_TYPE));
  1992. MENU_ITEM_BACK_P(STR_SEPARATOR);
  1993. MENU_ITEM_BACK_P(_i("Date:"));////MSG_DATE c=17 r=1
  1994. MENU_ITEM_BACK_P(PSTR(__DATE__));
  1995. MENU_ITEM_BACK_P(STR_SEPARATOR);
  1996. if (mmu_enabled)
  1997. {
  1998. MENU_ITEM_BACK_P(_i("MMU2 connected")); ////c=18 r=1
  1999. MENU_ITEM_BACK_P(PSTR(" FW:")); ////c=17 r=1
  2000. if (((menu_item - 1) == menu_line) && lcd_draw_update)
  2001. {
  2002. lcd_set_cursor(6, menu_row);
  2003. if ((mmu_version > 0) && (mmu_buildnr > 0))
  2004. lcd_printf_P(PSTR("%d.%d.%d-%d"), mmu_version/100, mmu_version%100/10, mmu_version%10, mmu_buildnr);
  2005. else
  2006. lcd_puts_P(_i("unknown"));
  2007. }
  2008. }
  2009. else
  2010. MENU_ITEM_BACK_P(PSTR("MMU2 N/A"));
  2011. // Show the FlashAir IP address, if the card is available.
  2012. if (_md->is_flash_air) {
  2013. MENU_ITEM_BACK_P(STR_SEPARATOR);
  2014. MENU_ITEM_BACK_P(PSTR("FlashAir IP Addr:")); //c=18 r=1
  2015. ///! MENU_ITEM(back_RAM, _md->ip_str, 0);
  2016. }
  2017. #ifndef MK1BP
  2018. MENU_ITEM_BACK_P(STR_SEPARATOR);
  2019. MENU_ITEM_SUBMENU_P(_i("XYZ cal. details"), lcd_menu_xyz_y_min);////MSG_XYZ_DETAILS c=19 r=1
  2020. MENU_ITEM_SUBMENU_P(_i("Extruder info"), lcd_menu_extruder_info);////MSG_INFO_EXTRUDER c=18 r=1
  2021. MENU_ITEM_SUBMENU_P(_i("Sensor info"), lcd_menu_show_sensors_state);////MSG_INFO_SENSORS c=18 r=1
  2022. #ifdef TMC2130
  2023. MENU_ITEM_SUBMENU_P(_i("Belt status"), lcd_menu_belt_status);////MSG_MENU_BELT_STATUS c=18 r=1
  2024. #endif //TMC2130
  2025. MENU_ITEM_SUBMENU_P(_i("Temperatures"), lcd_menu_temperatures);////MSG_MENU_TEMPERATURES c=18 r=1
  2026. #if defined (VOLT_BED_PIN) || defined (VOLT_PWR_PIN)
  2027. MENU_ITEM_SUBMENU_P(_i("Voltages"), lcd_menu_voltages);////MSG_MENU_VOLTAGES c=18 r=1
  2028. #endif //defined VOLT_BED_PIN || defined VOLT_PWR_PIN
  2029. #ifdef DEBUG_BUILD
  2030. MENU_ITEM_SUBMENU_P(PSTR("Debug"), lcd_menu_debug);////c=18 r=1
  2031. #endif /* DEBUG_BUILD */
  2032. #endif //MK1BP
  2033. MENU_END();
  2034. }
  2035. void lcd_set_fan_check() {
  2036. fans_check_enabled = !fans_check_enabled;
  2037. eeprom_update_byte((unsigned char *)EEPROM_FAN_CHECK_ENABLED, fans_check_enabled);
  2038. }
  2039. #ifdef MMU_HAS_CUTTER
  2040. void lcd_cutter_enabled()
  2041. {
  2042. if (EEPROM_MMU_CUTTER_ENABLED_enabled == eeprom_read_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED))
  2043. {
  2044. #ifndef MMU_ALWAYS_CUT
  2045. eeprom_update_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED, 0);
  2046. }
  2047. #else //MMU_ALWAYS_CUT
  2048. eeprom_update_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED, EEPROM_MMU_CUTTER_ENABLED_always);
  2049. }
  2050. else if (EEPROM_MMU_CUTTER_ENABLED_always == eeprom_read_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED))
  2051. {
  2052. eeprom_update_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED, 0);
  2053. }
  2054. #endif //MMU_ALWAYS_CUT
  2055. else
  2056. {
  2057. eeprom_update_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED, EEPROM_MMU_CUTTER_ENABLED_enabled);
  2058. }
  2059. }
  2060. #endif //MMU_HAS_CUTTER
  2061. void lcd_set_filament_autoload() {
  2062. fsensor_autoload_set(!fsensor_autoload_enabled);
  2063. }
  2064. void lcd_set_filament_oq_meass()
  2065. {
  2066. fsensor_oq_meassure_set(!fsensor_oq_meassure_enabled);
  2067. }
  2068. FilamentAction eFilamentAction=FilamentAction::None; // must be initialized as 'non-autoLoad'
  2069. bool bFilamentFirstRun;
  2070. bool bFilamentPreheatState;
  2071. bool bFilamentAction=false;
  2072. static bool bFilamentWaitingFlag=false;
  2073. static void mFilamentPrompt()
  2074. {
  2075. uint8_t nLevel;
  2076. lcd_set_cursor(0,0);
  2077. lcdui_print_temp(LCD_STR_THERMOMETER[0],(int)degHotend(0),(int)degTargetHotend(0));
  2078. lcd_set_cursor(0,2);
  2079. lcd_puts_P(_i("Press the knob")); ////MSG_ c=20 r=1
  2080. lcd_set_cursor(0,3);
  2081. switch(eFilamentAction)
  2082. {
  2083. case FilamentAction::Load:
  2084. case FilamentAction::AutoLoad:
  2085. case FilamentAction::MmuLoad:
  2086. lcd_puts_P(_i("to load filament")); ////MSG_ c=20 r=1
  2087. break;
  2088. case FilamentAction::UnLoad:
  2089. case FilamentAction::MmuUnLoad:
  2090. lcd_puts_P(_i("to unload filament")); ////MSG_ c=20 r=1
  2091. break;
  2092. case FilamentAction::MmuEject:
  2093. case FilamentAction::MmuCut:
  2094. case FilamentAction::None:
  2095. case FilamentAction::Preheat:
  2096. case FilamentAction::Lay1Cal:
  2097. break;
  2098. }
  2099. if(lcd_clicked())
  2100. {
  2101. nLevel=2;
  2102. if(!bFilamentPreheatState)
  2103. {
  2104. nLevel++;
  2105. // setTargetHotend0(0.0); // uncoment if return to base-state is required
  2106. }
  2107. menu_back(nLevel);
  2108. switch(eFilamentAction)
  2109. {
  2110. case FilamentAction::AutoLoad:
  2111. eFilamentAction=FilamentAction::None; // i.e. non-autoLoad
  2112. // no break
  2113. case FilamentAction::Load:
  2114. loading_flag=true;
  2115. enquecommand_P(PSTR("M701")); // load filament
  2116. break;
  2117. case FilamentAction::UnLoad:
  2118. enquecommand_P(PSTR("M702")); // unload filament
  2119. break;
  2120. case FilamentAction::MmuLoad:
  2121. case FilamentAction::MmuUnLoad:
  2122. case FilamentAction::MmuEject:
  2123. case FilamentAction::MmuCut:
  2124. case FilamentAction::None:
  2125. case FilamentAction::Preheat:
  2126. case FilamentAction::Lay1Cal:
  2127. break;
  2128. }
  2129. }
  2130. }
  2131. void mFilamentItem(uint16_t nTemp, uint16_t nTempBed)
  2132. {
  2133. static int nTargetOld;
  2134. static int nTargetBedOld;
  2135. uint8_t nLevel;
  2136. nTargetOld = target_temperature[0];
  2137. nTargetBedOld = target_temperature_bed;
  2138. setTargetHotend0((float )nTemp);
  2139. setTargetBed((float) nTempBed);
  2140. {
  2141. const FilamentAction action = eFilamentAction;
  2142. if (action == FilamentAction::Preheat || action == FilamentAction::Lay1Cal)
  2143. {
  2144. lcd_return_to_status();
  2145. if (action == FilamentAction::Lay1Cal)
  2146. {
  2147. lcd_commands_type = LcdCommands::Layer1Cal;
  2148. }
  2149. else if (eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE))
  2150. {
  2151. lcd_wizard(WizState::LoadFilHot);
  2152. }
  2153. return;
  2154. }
  2155. }
  2156. lcd_timeoutToStatus.stop();
  2157. if (current_temperature[0] > (target_temperature[0] * 0.95))
  2158. {
  2159. switch (eFilamentAction)
  2160. {
  2161. case FilamentAction::Load:
  2162. case FilamentAction::AutoLoad:
  2163. case FilamentAction::UnLoad:
  2164. if (bFilamentWaitingFlag) menu_submenu(mFilamentPrompt);
  2165. else
  2166. {
  2167. nLevel = bFilamentPreheatState ? 1 : 2;
  2168. menu_back(nLevel);
  2169. if ((eFilamentAction == FilamentAction::Load) || (eFilamentAction == FilamentAction::AutoLoad))
  2170. {
  2171. loading_flag = true;
  2172. enquecommand_P(PSTR("M701")); // load filament
  2173. if (eFilamentAction == FilamentAction::AutoLoad) eFilamentAction = FilamentAction::None; // i.e. non-autoLoad
  2174. }
  2175. if (eFilamentAction == FilamentAction::UnLoad)
  2176. enquecommand_P(PSTR("M702")); // unload filament
  2177. }
  2178. break;
  2179. case FilamentAction::MmuLoad:
  2180. nLevel = bFilamentPreheatState ? 1 : 2;
  2181. bFilamentAction = true;
  2182. menu_back(nLevel);
  2183. menu_submenu(mmu_load_to_nozzle_menu);
  2184. break;
  2185. case FilamentAction::MmuUnLoad:
  2186. nLevel = bFilamentPreheatState ? 1 : 2;
  2187. bFilamentAction = true;
  2188. menu_back(nLevel);
  2189. extr_unload();
  2190. break;
  2191. case FilamentAction::MmuEject:
  2192. nLevel = bFilamentPreheatState ? 1 : 2;
  2193. bFilamentAction = true;
  2194. menu_back(nLevel);
  2195. menu_submenu(mmu_fil_eject_menu);
  2196. break;
  2197. case FilamentAction::MmuCut:
  2198. #ifdef MMU_HAS_CUTTER
  2199. nLevel=bFilamentPreheatState?1:2;
  2200. bFilamentAction=true;
  2201. menu_back(nLevel);
  2202. menu_submenu(mmu_cut_filament_menu);
  2203. #endif //MMU_HAS_CUTTER
  2204. break;
  2205. case FilamentAction::None:
  2206. case FilamentAction::Preheat:
  2207. case FilamentAction::Lay1Cal:
  2208. break;
  2209. }
  2210. if (bFilamentWaitingFlag) Sound_MakeSound(e_SOUND_TYPE_StandardPrompt);
  2211. bFilamentWaitingFlag = false;
  2212. }
  2213. else
  2214. {
  2215. bFilamentWaitingFlag = true;
  2216. lcd_set_cursor(0, 0);
  2217. lcdui_print_temp(LCD_STR_THERMOMETER[0], (int) degHotend(0), (int) degTargetHotend(0));
  2218. lcd_set_cursor(0, 1);
  2219. switch (eFilamentAction)
  2220. {
  2221. case FilamentAction::Load:
  2222. case FilamentAction::AutoLoad:
  2223. case FilamentAction::MmuLoad:
  2224. lcd_puts_P(_i("Preheating to load")); ////MSG_ c=20 r=1
  2225. break;
  2226. case FilamentAction::UnLoad:
  2227. case FilamentAction::MmuUnLoad:
  2228. lcd_puts_P(_i("Preheating to unload")); ////MSG_ c=20 r=1
  2229. break;
  2230. case FilamentAction::MmuEject:
  2231. lcd_puts_P(_i("Preheating to eject")); ////MSG_ c=20 r=1
  2232. break;
  2233. case FilamentAction::MmuCut:
  2234. lcd_puts_P(_i("Preheating to cut")); ////MSG_ c=20 r=1
  2235. break;
  2236. case FilamentAction::None:
  2237. case FilamentAction::Preheat:
  2238. case FilamentAction::Lay1Cal:
  2239. break;
  2240. }
  2241. lcd_set_cursor(0, 3);
  2242. lcd_puts_P(_i(">Cancel")); ////MSG_ c=20 r=1
  2243. if (lcd_clicked())
  2244. {
  2245. bFilamentWaitingFlag = false;
  2246. if (!bFilamentPreheatState)
  2247. {
  2248. setTargetHotend0(0.0);
  2249. setTargetBed(0.0);
  2250. menu_back();
  2251. }
  2252. else
  2253. {
  2254. setTargetHotend0((float )nTargetOld);
  2255. setTargetBed((float) nTargetBedOld);
  2256. }
  2257. menu_back();
  2258. if (eFilamentAction == FilamentAction::AutoLoad) eFilamentAction = FilamentAction::None; // i.e. non-autoLoad
  2259. }
  2260. }
  2261. }
  2262. static void mFilamentItem_farm()
  2263. {
  2264. bFilamentPreheatState = false;
  2265. mFilamentItem(FARM_PREHEAT_HOTEND_TEMP, FARM_PREHEAT_HPB_TEMP);
  2266. }
  2267. static void mFilamentItem_farm_nozzle()
  2268. {
  2269. bFilamentPreheatState = false;
  2270. mFilamentItem(FARM_PREHEAT_HOTEND_TEMP, 0);
  2271. }
  2272. static void mFilamentItem_PLA()
  2273. {
  2274. bFilamentPreheatState = false;
  2275. mFilamentItem(PLA_PREHEAT_HOTEND_TEMP, PLA_PREHEAT_HPB_TEMP);
  2276. }
  2277. static void mFilamentItem_PET()
  2278. {
  2279. bFilamentPreheatState = false;
  2280. mFilamentItem(PET_PREHEAT_HOTEND_TEMP, PET_PREHEAT_HPB_TEMP);
  2281. }
  2282. static void mFilamentItem_ASA()
  2283. {
  2284. bFilamentPreheatState = false;
  2285. mFilamentItem(ASA_PREHEAT_HOTEND_TEMP, ASA_PREHEAT_HPB_TEMP);
  2286. }
  2287. static void mFilamentItem_ABS()
  2288. {
  2289. bFilamentPreheatState = false;
  2290. mFilamentItem(ABS_PREHEAT_HOTEND_TEMP, ABS_PREHEAT_HPB_TEMP);
  2291. }
  2292. static void mFilamentItem_HIPS()
  2293. {
  2294. bFilamentPreheatState = false;
  2295. mFilamentItem(HIPS_PREHEAT_HOTEND_TEMP, HIPS_PREHEAT_HPB_TEMP);
  2296. }
  2297. static void mFilamentItem_PP()
  2298. {
  2299. bFilamentPreheatState = false;
  2300. mFilamentItem(PP_PREHEAT_HOTEND_TEMP, PP_PREHEAT_HPB_TEMP);
  2301. }
  2302. static void mFilamentItem_FLEX()
  2303. {
  2304. bFilamentPreheatState = false;
  2305. mFilamentItem(FLEX_PREHEAT_HOTEND_TEMP, FLEX_PREHEAT_HPB_TEMP);
  2306. }
  2307. void mFilamentBack()
  2308. {
  2309. menu_back();
  2310. if (eFilamentAction == FilamentAction::AutoLoad ||
  2311. eFilamentAction == FilamentAction::Preheat ||
  2312. eFilamentAction == FilamentAction::Lay1Cal)
  2313. {
  2314. eFilamentAction = FilamentAction::None; // i.e. non-autoLoad
  2315. }
  2316. }
  2317. void lcd_generic_preheat_menu()
  2318. {
  2319. MENU_BEGIN();
  2320. if (!eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE))
  2321. {
  2322. if (eFilamentAction == FilamentAction::Lay1Cal)
  2323. {
  2324. MENU_ITEM_FUNCTION_P(_T(MSG_BACK), mFilamentBack);
  2325. }
  2326. else
  2327. {
  2328. MENU_ITEM_FUNCTION_P(_T(MSG_MAIN), mFilamentBack);
  2329. }
  2330. }
  2331. if (farm_mode)
  2332. {
  2333. MENU_ITEM_FUNCTION_P(PSTR("farm - " STRINGIFY(FARM_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(FARM_PREHEAT_HPB_TEMP)), mFilamentItem_farm);
  2334. MENU_ITEM_FUNCTION_P(PSTR("nozzle - " STRINGIFY(FARM_PREHEAT_HOTEND_TEMP) "/0"), mFilamentItem_farm_nozzle);
  2335. }
  2336. else
  2337. {
  2338. MENU_ITEM_SUBMENU_P(PSTR("PLA - " STRINGIFY(PLA_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(PLA_PREHEAT_HPB_TEMP)),mFilamentItem_PLA);
  2339. MENU_ITEM_SUBMENU_P(PSTR("PET - " STRINGIFY(PET_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(PET_PREHEAT_HPB_TEMP)),mFilamentItem_PET);
  2340. MENU_ITEM_SUBMENU_P(PSTR("ASA - " STRINGIFY(ASA_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(ASA_PREHEAT_HPB_TEMP)),mFilamentItem_ASA);
  2341. MENU_ITEM_SUBMENU_P(PSTR("ABS - " STRINGIFY(ABS_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(ABS_PREHEAT_HPB_TEMP)),mFilamentItem_ABS);
  2342. MENU_ITEM_SUBMENU_P(PSTR("HIPS - " STRINGIFY(HIPS_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(HIPS_PREHEAT_HPB_TEMP)),mFilamentItem_HIPS);
  2343. MENU_ITEM_SUBMENU_P(PSTR("PP - " STRINGIFY(PP_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(PP_PREHEAT_HPB_TEMP)),mFilamentItem_PP);
  2344. MENU_ITEM_SUBMENU_P(PSTR("FLEX - " STRINGIFY(FLEX_PREHEAT_HOTEND_TEMP) "/" STRINGIFY(FLEX_PREHEAT_HPB_TEMP)),mFilamentItem_FLEX);
  2345. }
  2346. if (!eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE) && eFilamentAction == FilamentAction::Preheat) MENU_ITEM_FUNCTION_P(_T(MSG_COOLDOWN), lcd_cooldown);
  2347. MENU_END();
  2348. }
  2349. void mFilamentItemForce()
  2350. {
  2351. mFilamentItem(target_temperature[0],target_temperature_bed);
  2352. }
  2353. void lcd_unLoadFilament()
  2354. {
  2355. eFilamentAction=FilamentAction::UnLoad;
  2356. preheat_or_continue();
  2357. }
  2358. static void mmu_unload_filament()
  2359. {
  2360. eFilamentAction = FilamentAction::MmuUnLoad;
  2361. preheat_or_continue();
  2362. }
  2363. void lcd_wait_interact() {
  2364. lcd_clear();
  2365. lcd_set_cursor(0, 1);
  2366. #ifdef SNMM
  2367. lcd_puts_P(_i("Prepare new filament"));////MSG_PREPARE_FILAMENT c=20 r=1
  2368. #else
  2369. lcd_puts_P(_i("Insert filament"));////MSG_INSERT_FILAMENT c=20
  2370. #endif
  2371. if (!fsensor_autoload_enabled) {
  2372. lcd_set_cursor(0, 2);
  2373. lcd_puts_P(_i("and press the knob"));////MSG_PRESS c=20
  2374. }
  2375. }
  2376. void lcd_change_success() {
  2377. lcd_clear();
  2378. lcd_set_cursor(0, 2);
  2379. lcd_puts_P(_i("Change success!"));////MSG_CHANGE_SUCCESS
  2380. }
  2381. static void lcd_loading_progress_bar(uint16_t loading_time_ms) {
  2382. for (uint_least8_t i = 0; i < 20; i++) {
  2383. lcd_set_cursor(i, 3);
  2384. lcd_print(".");
  2385. //loading_time_ms/20 delay
  2386. for (uint_least8_t j = 0; j < 5; j++) {
  2387. delay_keep_alive(loading_time_ms / 100);
  2388. }
  2389. }
  2390. }
  2391. void lcd_loading_color() {
  2392. //we are extruding 25mm with feedrate 200mm/min -> 7.5 seconds for whole action, 0.375 s for one character
  2393. lcd_clear();
  2394. lcd_set_cursor(0, 0);
  2395. lcd_puts_P(_i("Loading color"));////MSG_LOADING_COLOR
  2396. lcd_set_cursor(0, 2);
  2397. lcd_puts_P(_T(MSG_PLEASE_WAIT));
  2398. lcd_loading_progress_bar((FILAMENTCHANGE_FINALFEED * 1000ul) / FILAMENTCHANGE_EFEED_FINAL); //show progress bar during filament loading slow sequence
  2399. }
  2400. void lcd_loading_filament() {
  2401. lcd_clear();
  2402. lcd_set_cursor(0, 0);
  2403. lcd_puts_P(_T(MSG_LOADING_FILAMENT));
  2404. lcd_set_cursor(0, 2);
  2405. lcd_puts_P(_T(MSG_PLEASE_WAIT));
  2406. #ifdef SNMM
  2407. for (int i = 0; i < 20; i++) {
  2408. lcd_set_cursor(i, 3);
  2409. lcd_print(".");
  2410. for (int j = 0; j < 10 ; j++) {
  2411. manage_heater();
  2412. manage_inactivity(true);
  2413. _delay(153);
  2414. }
  2415. }
  2416. #else //SNMM
  2417. uint16_t slow_seq_time = (FILAMENTCHANGE_FINALFEED * 1000ul) / FILAMENTCHANGE_EFEED_FINAL;
  2418. uint16_t fast_seq_time = (FILAMENTCHANGE_FIRSTFEED * 1000ul) / FILAMENTCHANGE_EFEED_FIRST;
  2419. lcd_loading_progress_bar(slow_seq_time + fast_seq_time); //show progress bar for total time of filament loading fast + slow sequence
  2420. #endif //SNMM
  2421. }
  2422. void lcd_alright() {
  2423. int enc_dif = 0;
  2424. int cursor_pos = 1;
  2425. lcd_clear();
  2426. lcd_set_cursor(0, 0);
  2427. lcd_puts_P(_i("Changed correctly?"));////MSG_CORRECTLY c=20
  2428. lcd_set_cursor(1, 1);
  2429. lcd_puts_P(_T(MSG_YES));
  2430. lcd_set_cursor(1, 2);
  2431. lcd_puts_P(_i("Filament not loaded"));////MSG_NOT_LOADED c=19
  2432. lcd_set_cursor(1, 3);
  2433. lcd_puts_P(_i("Color not correct"));////MSG_NOT_COLOR
  2434. lcd_set_cursor(0, 1);
  2435. lcd_print(">");
  2436. enc_dif = lcd_encoder_diff;
  2437. lcd_consume_click();
  2438. while (lcd_change_fil_state == 0) {
  2439. manage_heater();
  2440. manage_inactivity(true);
  2441. if ( abs((enc_dif - lcd_encoder_diff)) > 4 ) {
  2442. if ( (abs(enc_dif - lcd_encoder_diff)) > 1 ) {
  2443. if (enc_dif > lcd_encoder_diff ) {
  2444. cursor_pos --;
  2445. }
  2446. if (enc_dif < lcd_encoder_diff ) {
  2447. cursor_pos ++;
  2448. }
  2449. if (cursor_pos > 3) {
  2450. cursor_pos = 3;
  2451. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  2452. }
  2453. if (cursor_pos < 1) {
  2454. cursor_pos = 1;
  2455. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  2456. }
  2457. lcd_set_cursor(0, 1);
  2458. lcd_print(" ");
  2459. lcd_set_cursor(0, 2);
  2460. lcd_print(" ");
  2461. lcd_set_cursor(0, 3);
  2462. lcd_print(" ");
  2463. lcd_set_cursor(0, cursor_pos);
  2464. lcd_print(">");
  2465. enc_dif = lcd_encoder_diff;
  2466. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  2467. _delay(100);
  2468. }
  2469. }
  2470. if (lcd_clicked()) {
  2471. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  2472. lcd_change_fil_state = cursor_pos;
  2473. _delay(500);
  2474. }
  2475. };
  2476. lcd_clear();
  2477. lcd_return_to_status();
  2478. }
  2479. void show_preheat_nozzle_warning()
  2480. {
  2481. lcd_clear();
  2482. lcd_set_cursor(0, 0);
  2483. lcd_puts_P(_T(MSG_ERROR));
  2484. lcd_set_cursor(0, 2);
  2485. lcd_puts_P(_T(MSG_PREHEAT_NOZZLE));
  2486. _delay(2000);
  2487. lcd_clear();
  2488. }
  2489. void lcd_load_filament_color_check()
  2490. {
  2491. bool clean = lcd_show_fullscreen_message_yes_no_and_wait_P(_T(MSG_FILAMENT_CLEAN), false, true);
  2492. while (!clean) {
  2493. lcd_update_enable(true);
  2494. lcd_update(2);
  2495. load_filament_final_feed();
  2496. st_synchronize();
  2497. clean = lcd_show_fullscreen_message_yes_no_and_wait_P(_T(MSG_FILAMENT_CLEAN), false, true);
  2498. }
  2499. }
  2500. #ifdef FILAMENT_SENSOR
  2501. static void lcd_menu_AutoLoadFilament()
  2502. {
  2503. uint8_t nlines;
  2504. lcd_display_message_fullscreen_nonBlocking_P(_i("Autoloading filament is active, just press the knob and insert filament..."),nlines);////MSG_AUTOLOADING_ENABLED c=20 r=4
  2505. menu_back_if_clicked();
  2506. }
  2507. #endif //FILAMENT_SENSOR
  2508. static void preheat_or_continue()
  2509. {
  2510. bFilamentFirstRun = false;
  2511. if (target_temperature[0] >= EXTRUDE_MINTEMP)
  2512. {
  2513. bFilamentPreheatState = true;
  2514. mFilamentItem(target_temperature[0], target_temperature_bed);
  2515. }
  2516. else lcd_generic_preheat_menu();
  2517. }
  2518. static void lcd_LoadFilament()
  2519. {
  2520. eFilamentAction = FilamentAction::Load;
  2521. preheat_or_continue();
  2522. }
  2523. //! @brief Show filament used a print time
  2524. //!
  2525. //! If printing current print statistics are shown
  2526. //!
  2527. //! @code{.unparsed}
  2528. //! |01234567890123456789|
  2529. //! |Filament used: | c=18 r=1
  2530. //! | 00.00m |
  2531. //! |Print time: | c=18 r=1
  2532. //! | 00h 00m 00s |
  2533. //! ----------------------
  2534. //! @endcode
  2535. //!
  2536. //! If not printing, total statistics are shown
  2537. //!
  2538. //! @code{.unparsed}
  2539. //! |01234567890123456789|
  2540. //! |Total filament : | c=18 r=1
  2541. //! | 000.00 m |
  2542. //! |Total print time : | c=18 r=1
  2543. //! | 00d :00h :00 m |
  2544. //! ----------------------
  2545. //! @endcode
  2546. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations. Translations missing for "d"days, "h"ours, "m"inutes", "s"seconds".
  2547. void lcd_menu_statistics()
  2548. {
  2549. if (IS_SD_PRINTING)
  2550. {
  2551. const float _met = ((float)total_filament_used) / (100000.f);
  2552. const uint32_t _t = (_millis() - starttime) / 1000ul;
  2553. const int _h = _t / 3600;
  2554. const int _m = (_t - (_h * 3600ul)) / 60ul;
  2555. const int _s = _t - ((_h * 3600ul) + (_m * 60ul));
  2556. lcd_clear();
  2557. lcd_printf_P(_N(
  2558. "%S:\n"
  2559. "%17.2fm \n"
  2560. "%S:\n"
  2561. "%2dh %02dm %02ds"
  2562. ),
  2563. _i("Filament used"), _met, ////c=18 r=1
  2564. _i("Print time"), _h, _m, _s); ////c=18 r=1
  2565. menu_back_if_clicked_fb();
  2566. }
  2567. else
  2568. {
  2569. unsigned long _filament = eeprom_read_dword((uint32_t *)EEPROM_FILAMENTUSED);
  2570. unsigned long _time = eeprom_read_dword((uint32_t *)EEPROM_TOTALTIME); //in minutes
  2571. uint8_t _hours, _minutes;
  2572. uint32_t _days;
  2573. float _filament_m = (float)_filament/100;
  2574. // int _filament_km = (_filament >= 100000) ? _filament / 100000 : 0;
  2575. // if (_filament_km > 0) _filament_m = _filament - (_filament_km * 100000);
  2576. _days = _time / 1440;
  2577. _hours = (_time - (_days * 1440)) / 60;
  2578. _minutes = _time - ((_days * 1440) + (_hours * 60));
  2579. lcd_clear();
  2580. lcd_printf_P(_N(
  2581. "%S:\n"
  2582. "%17.2fm \n"
  2583. "%S:\n"
  2584. "%7ldd :%2hhdh :%02hhdm"
  2585. ), _i("Total filament"), _filament_m, _i("Total print time"), _days, _hours, _minutes);
  2586. KEEPALIVE_STATE(PAUSED_FOR_USER);
  2587. while (!lcd_clicked())
  2588. {
  2589. manage_heater();
  2590. manage_inactivity(true);
  2591. _delay(100);
  2592. }
  2593. KEEPALIVE_STATE(NOT_BUSY);
  2594. lcd_quick_feedback();
  2595. menu_back();
  2596. }
  2597. }
  2598. static void _lcd_move(const char *name, int axis, int min, int max)
  2599. {
  2600. typedef struct
  2601. { // 2bytes total
  2602. bool initialized; // 1byte
  2603. bool endstopsEnabledPrevious; // 1byte
  2604. } _menu_data_t;
  2605. static_assert(sizeof(menu_data)>= sizeof(_menu_data_t),"_menu_data_t doesn't fit into menu_data");
  2606. _menu_data_t* _md = (_menu_data_t*)&(menu_data[0]);
  2607. if (!_md->initialized)
  2608. {
  2609. _md->endstopsEnabledPrevious = enable_endstops(false);
  2610. _md->initialized = true;
  2611. }
  2612. if (lcd_encoder != 0)
  2613. {
  2614. refresh_cmd_timeout();
  2615. if (! planner_queue_full())
  2616. {
  2617. current_position[axis] += float((int)lcd_encoder) * move_menu_scale;
  2618. if (min_software_endstops && current_position[axis] < min) current_position[axis] = min;
  2619. if (max_software_endstops && current_position[axis] > max) current_position[axis] = max;
  2620. lcd_encoder = 0;
  2621. world2machine_clamp(current_position[X_AXIS], current_position[Y_AXIS]);
  2622. plan_buffer_line_curposXYZE(manual_feedrate[axis] / 60, active_extruder);
  2623. lcd_draw_update = 1;
  2624. }
  2625. }
  2626. if (lcd_draw_update)
  2627. {
  2628. lcd_set_cursor(0, 1);
  2629. menu_draw_float31(name, current_position[axis]);
  2630. }
  2631. if (menu_leaving || LCD_CLICKED) (void)enable_endstops(_md->endstopsEnabledPrevious);
  2632. if (LCD_CLICKED) menu_back();
  2633. }
  2634. static void lcd_move_e()
  2635. {
  2636. if (degHotend0() > EXTRUDE_MINTEMP)
  2637. {
  2638. if (lcd_encoder != 0)
  2639. {
  2640. refresh_cmd_timeout();
  2641. if (! planner_queue_full())
  2642. {
  2643. current_position[E_AXIS] += float((int)lcd_encoder) * move_menu_scale;
  2644. lcd_encoder = 0;
  2645. plan_buffer_line_curposXYZE(manual_feedrate[E_AXIS] / 60, active_extruder);
  2646. lcd_draw_update = 1;
  2647. }
  2648. }
  2649. if (lcd_draw_update)
  2650. {
  2651. lcd_set_cursor(0, 1);
  2652. // Note: the colon behind the text is necessary to greatly shorten
  2653. // the implementation of menu_draw_float31
  2654. menu_draw_float31(PSTR("Extruder:"), current_position[E_AXIS]);
  2655. }
  2656. if (LCD_CLICKED) menu_back();
  2657. }
  2658. else
  2659. {
  2660. show_preheat_nozzle_warning();
  2661. lcd_return_to_status();
  2662. }
  2663. }
  2664. //! @brief Show measured Y distance of front calibration points from Y_MIN_POS
  2665. //! If those points are detected too close to edge of reachable area, their confidence is lowered.
  2666. //! This functionality is applied more often for MK2 printers.
  2667. //! @code{.unparsed}
  2668. //! |01234567890123456789|
  2669. //! |Y distance from min | c=19 r=1
  2670. //! | -------------- | STR_SEPARATOR
  2671. //! |Left: 00.00mm | c=11 r=1
  2672. //! |Right: 00.00mm | c=11 r=1
  2673. //! ----------------------
  2674. //! @endcode
  2675. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  2676. static void lcd_menu_xyz_y_min()
  2677. {
  2678. float distanceMin[2];
  2679. count_xyz_details(distanceMin);
  2680. lcd_home();
  2681. lcd_printf_P(_N(
  2682. "%S:\n"
  2683. "%S\n"
  2684. "%S:\n"
  2685. "%S:"
  2686. ),
  2687. _i("Y distance from min"), ////c=19 r=1
  2688. separator,
  2689. _i("Left"), ////c=11 r=1
  2690. _i("Right") ////c=11 r=1
  2691. );
  2692. for (uint8_t i = 0; i < 2; i++)
  2693. {
  2694. lcd_set_cursor(11,2+i);
  2695. if (distanceMin[i] >= 200) lcd_puts_P(_N("N/A")); ////c=3 r=1
  2696. else lcd_printf_P(_N("%6.2fmm"), distanceMin[i]);
  2697. }
  2698. if (lcd_clicked())
  2699. menu_goto(lcd_menu_xyz_skew, 0, true, true);
  2700. }
  2701. //@brief Show measured axis skewness
  2702. float _deg(float rad)
  2703. {
  2704. return rad * 180 / M_PI;
  2705. }
  2706. //! @brief Show Measured XYZ Skew
  2707. //!
  2708. //! @code{.unparsed}
  2709. //! |01234567890123456789|
  2710. //! |Measured skew: 0.00D| c=13 r=1
  2711. //! | -------------- | STR_SEPARATOR
  2712. //! |Slight skew: 0.12D| c=13 r=1 c=4 r=1
  2713. //! |Severe skew: 0.25D| c=13 r=1 c=4 r=1
  2714. //! ----------------------
  2715. //! D - Degree sysmbol LCD_STR_DEGREE
  2716. //! @endcode
  2717. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  2718. static void lcd_menu_xyz_skew()
  2719. {
  2720. float angleDiff = eeprom_read_float((float*)(EEPROM_XYZ_CAL_SKEW));
  2721. lcd_home();
  2722. lcd_printf_P(_N(
  2723. "%S:\n"
  2724. "%S\n"
  2725. "%-15.15S%3.2f\x01\n"
  2726. "%-15.15S%3.2f\x01"
  2727. ),
  2728. _i("Measured skew"), ////c=13 r=1
  2729. separator,
  2730. _i("Slight skew:"), _deg(bed_skew_angle_mild), ////c=13 r=1 c=4 r=1
  2731. _i("Severe skew:"), _deg(bed_skew_angle_extreme) ////c=13 r=1 c=4 r=1
  2732. );
  2733. if (angleDiff < 100){
  2734. lcd_set_cursor(15,0);
  2735. lcd_printf_P(_N("%3.2f\x01"), _deg(angleDiff));
  2736. }
  2737. else{
  2738. lcd_set_cursor(15,0);
  2739. lcd_puts_P(_N("N/A"));
  2740. }
  2741. if (lcd_clicked())
  2742. menu_goto(lcd_menu_xyz_offset, 0, true, true);
  2743. }
  2744. //! @brief Show measured bed offset from expected position
  2745. //!
  2746. //! @code{.unparsed}
  2747. //! |01234567890123456789|
  2748. //! |[0;0] point offset | c=20 r=1
  2749. //! | -------------- | STR_SEPARATOR
  2750. //! |X: 000.00mm| c=10 r=1
  2751. //! |Y: 000.00mm| c=10 r=1
  2752. //! ----------------------
  2753. //! @endcode
  2754. //! @todo Positioning of the messages and values on LCD aren't fixed to their exact place. This causes issues with translations.
  2755. static void lcd_menu_xyz_offset()
  2756. {
  2757. lcd_set_cursor(0,0);
  2758. lcd_puts_P(_i("[0;0] point offset"));////MSG_MEASURED_OFFSET
  2759. lcd_puts_at_P(0, 1, separator);
  2760. lcd_puts_at_P(0, 2, PSTR("X")); ////c=10 r=1
  2761. lcd_puts_at_P(0, 3, PSTR("Y")); ////c=10 r=1
  2762. float vec_x[2];
  2763. float vec_y[2];
  2764. float cntr[2];
  2765. world2machine_read_valid(vec_x, vec_y, cntr);
  2766. for (uint_least8_t i = 0; i < 2; i++)
  2767. {
  2768. lcd_set_cursor((cntr[i] < 0) ? 10 : 11, i+2);
  2769. lcd_print(cntr[i]);
  2770. lcd_puts_at_P(16, i + 2, PSTR("mm"));
  2771. }
  2772. menu_back_if_clicked();
  2773. }
  2774. // Save a single axis babystep value.
  2775. void EEPROM_save_B(int pos, int* value)
  2776. {
  2777. eeprom_update_byte((unsigned char*)pos, (unsigned char)((*value) & 0xff));
  2778. eeprom_update_byte((unsigned char*)pos + 1, (unsigned char)((*value) >> 8));
  2779. }
  2780. // Read a single axis babystep value.
  2781. void EEPROM_read_B(int pos, int* value)
  2782. {
  2783. *value = (int)eeprom_read_byte((unsigned char*)pos) | (int)(eeprom_read_byte((unsigned char*)pos + 1) << 8);
  2784. }
  2785. // Note: the colon behind the text (X, Y, Z) is necessary to greatly shorten
  2786. // the implementation of menu_draw_float31
  2787. static void lcd_move_x() {
  2788. _lcd_move(PSTR("X:"), X_AXIS, X_MIN_POS, X_MAX_POS);
  2789. }
  2790. static void lcd_move_y() {
  2791. _lcd_move(PSTR("Y:"), Y_AXIS, Y_MIN_POS, Y_MAX_POS);
  2792. }
  2793. static void lcd_move_z() {
  2794. _lcd_move(PSTR("Z:"), Z_AXIS, Z_MIN_POS, Z_MAX_POS);
  2795. }
  2796. /**
  2797. * @brief Adjust first layer offset from bed if axis is Z_AXIS
  2798. *
  2799. * If menu is left (button pushed or timed out), value is stored to EEPROM and
  2800. * if the axis is Z_AXIS, CALIBRATION_STATUS_CALIBRATED is also stored.
  2801. * Purpose of this function for other axis then Z is unknown.
  2802. *
  2803. * @param axis AxisEnum X_AXIS Y_AXIS Z_AXIS
  2804. * other value leads to storing Z_AXIS
  2805. * @param msg text to be displayed
  2806. */
  2807. static void lcd_babystep_z()
  2808. {
  2809. typedef struct
  2810. {
  2811. int8_t status;
  2812. int16_t babystepMemZ;
  2813. float babystepMemMMZ;
  2814. } _menu_data_t;
  2815. static_assert(sizeof(menu_data)>= sizeof(_menu_data_t),"_menu_data_t doesn't fit into menu_data");
  2816. _menu_data_t* _md = (_menu_data_t*)&(menu_data[0]);
  2817. if (_md->status == 0)
  2818. {
  2819. // Menu was entered.
  2820. // Initialize its status.
  2821. _md->status = 1;
  2822. check_babystep();
  2823. if(!eeprom_is_sheet_initialized(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))){
  2824. _md->babystepMemZ = 0;
  2825. }
  2826. else{
  2827. _md->babystepMemZ = eeprom_read_word(reinterpret_cast<uint16_t *>(&(EEPROM_Sheets_base->
  2828. s[(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))].z_offset)));
  2829. }
  2830. // same logic as in babystep_load
  2831. if (calibration_status() >= CALIBRATION_STATUS_LIVE_ADJUST)
  2832. _md->babystepMemZ = 0;
  2833. _md->babystepMemMMZ = _md->babystepMemZ/cs.axis_steps_per_unit[Z_AXIS];
  2834. lcd_draw_update = 1;
  2835. //SERIAL_ECHO("Z baby step: ");
  2836. //SERIAL_ECHO(_md->babystepMem[2]);
  2837. // Wait 90 seconds before closing the live adjust dialog.
  2838. lcd_timeoutToStatus.start();
  2839. }
  2840. if (lcd_encoder != 0)
  2841. {
  2842. if (homing_flag) lcd_encoder = 0;
  2843. _md->babystepMemZ += (int)lcd_encoder;
  2844. if (_md->babystepMemZ < Z_BABYSTEP_MIN) _md->babystepMemZ = Z_BABYSTEP_MIN; //-3999 -> -9.99 mm
  2845. else if (_md->babystepMemZ > Z_BABYSTEP_MAX) _md->babystepMemZ = Z_BABYSTEP_MAX; //0
  2846. else
  2847. {
  2848. CRITICAL_SECTION_START
  2849. babystepsTodo[Z_AXIS] += (int)lcd_encoder;
  2850. CRITICAL_SECTION_END
  2851. }
  2852. _md->babystepMemMMZ = _md->babystepMemZ/cs.axis_steps_per_unit[Z_AXIS];
  2853. _delay(50);
  2854. lcd_encoder = 0;
  2855. lcd_draw_update = 1;
  2856. }
  2857. if (lcd_draw_update)
  2858. {
  2859. SheetFormatBuffer buffer;
  2860. menu_format_sheet_E(EEPROM_Sheets_base->s[(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))], buffer);
  2861. lcd_set_cursor(0, 0);
  2862. lcd_print(buffer.c);
  2863. lcd_set_cursor(0, 1);
  2864. menu_draw_float13(_i("Adjusting Z:"), _md->babystepMemMMZ); ////MSG_BABYSTEPPING_Z c=15 Beware: must include the ':' as its last character
  2865. }
  2866. if (LCD_CLICKED || menu_leaving)
  2867. {
  2868. // Only update the EEPROM when leaving the menu.
  2869. uint8_t active_sheet=eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet));
  2870. eeprom_update_word(reinterpret_cast<uint16_t *>(&(EEPROM_Sheets_base->s[active_sheet].z_offset)),_md->babystepMemZ);
  2871. eeprom_update_byte(&(EEPROM_Sheets_base->s[active_sheet].bed_temp),target_temperature_bed);
  2872. #ifdef PINDA_THERMISTOR
  2873. eeprom_update_byte(&(EEPROM_Sheets_base->s[active_sheet].pinda_temp),current_temperature_pinda);
  2874. #endif //PINDA_THERMISTOR
  2875. calibration_status_store(CALIBRATION_STATUS_CALIBRATED);
  2876. }
  2877. if (LCD_CLICKED) menu_back();
  2878. }
  2879. typedef struct
  2880. { // 12bytes + 9bytes = 21bytes total
  2881. menu_data_edit_t reserved; //12 bytes reserved for number editing functions
  2882. int8_t status; // 1byte
  2883. int16_t left; // 2byte
  2884. int16_t right; // 2byte
  2885. int16_t front; // 2byte
  2886. int16_t rear; // 2byte
  2887. } _menu_data_adjust_bed_t;
  2888. static_assert(sizeof(menu_data)>= sizeof(_menu_data_adjust_bed_t),"_menu_data_adjust_bed_t doesn't fit into menu_data");
  2889. void lcd_adjust_bed_reset(void)
  2890. {
  2891. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_VALID, 1);
  2892. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_LEFT , 0);
  2893. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_RIGHT, 0);
  2894. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_FRONT, 0);
  2895. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_REAR , 0);
  2896. _menu_data_adjust_bed_t* _md = (_menu_data_adjust_bed_t*)&(menu_data[0]);
  2897. _md->status = 0;
  2898. }
  2899. //! @brief Show Bed level correct
  2900. //!
  2901. //! @code{.unparsed}
  2902. //! |01234567890123456789|
  2903. //! |Settings: | MSG_SETTINGS
  2904. //! |Left side [um]: | MSG_BED_CORRECTION_LEFT
  2905. //! |Right side[um]: | MSG_BED_CORRECTION_RIGHT
  2906. //! |Front side[um]: | MSG_BED_CORRECTION_FRONT
  2907. //! |Rear side [um]: | MSG_BED_CORRECTION_REAR
  2908. //! |Reset | MSG_BED_CORRECTION_RESET
  2909. //! ----------------------
  2910. //! @endcode
  2911. void lcd_adjust_bed(void)
  2912. {
  2913. _menu_data_adjust_bed_t* _md = (_menu_data_adjust_bed_t*)&(menu_data[0]);
  2914. if (_md->status == 0)
  2915. {
  2916. // Menu was entered.
  2917. _md->left = 0;
  2918. _md->right = 0;
  2919. _md->front = 0;
  2920. _md->rear = 0;
  2921. if (eeprom_read_byte((unsigned char*)EEPROM_BED_CORRECTION_VALID) == 1)
  2922. {
  2923. _md->left = eeprom_read_int8((unsigned char*)EEPROM_BED_CORRECTION_LEFT);
  2924. _md->right = eeprom_read_int8((unsigned char*)EEPROM_BED_CORRECTION_RIGHT);
  2925. _md->front = eeprom_read_int8((unsigned char*)EEPROM_BED_CORRECTION_FRONT);
  2926. _md->rear = eeprom_read_int8((unsigned char*)EEPROM_BED_CORRECTION_REAR);
  2927. }
  2928. _md->status = 1;
  2929. }
  2930. MENU_BEGIN();
  2931. // leaving menu - this condition must be immediately before MENU_ITEM_BACK_P
  2932. ON_MENU_LEAVE(
  2933. eeprom_update_int8((unsigned char*)EEPROM_BED_CORRECTION_LEFT, _md->left);
  2934. eeprom_update_int8((unsigned char*)EEPROM_BED_CORRECTION_RIGHT, _md->right);
  2935. eeprom_update_int8((unsigned char*)EEPROM_BED_CORRECTION_FRONT, _md->front);
  2936. eeprom_update_int8((unsigned char*)EEPROM_BED_CORRECTION_REAR, _md->rear);
  2937. eeprom_update_byte((unsigned char*)EEPROM_BED_CORRECTION_VALID, 1);
  2938. );
  2939. MENU_ITEM_BACK_P(_T(MSG_SETTINGS));
  2940. MENU_ITEM_EDIT_int3_P(_i("Left side [um]"), &_md->left, -BED_ADJUSTMENT_UM_MAX, BED_ADJUSTMENT_UM_MAX);////MSG_BED_CORRECTION_LEFT c=14 r=1
  2941. MENU_ITEM_EDIT_int3_P(_i("Right side[um]"), &_md->right, -BED_ADJUSTMENT_UM_MAX, BED_ADJUSTMENT_UM_MAX);////MSG_BED_CORRECTION_RIGHT c=14 r=1
  2942. MENU_ITEM_EDIT_int3_P(_i("Front side[um]"), &_md->front, -BED_ADJUSTMENT_UM_MAX, BED_ADJUSTMENT_UM_MAX);////MSG_BED_CORRECTION_FRONT c=14 r=1
  2943. MENU_ITEM_EDIT_int3_P(_i("Rear side [um]"), &_md->rear, -BED_ADJUSTMENT_UM_MAX, BED_ADJUSTMENT_UM_MAX);////MSG_BED_CORRECTION_REAR c=14 r=1
  2944. MENU_ITEM_FUNCTION_P(_i("Reset"), lcd_adjust_bed_reset);////MSG_BED_CORRECTION_RESET
  2945. MENU_END();
  2946. }
  2947. //! @brief Show PID Extruder
  2948. //!
  2949. //! @code{.unparsed}
  2950. //! |01234567890123456789|
  2951. //! | Set temperature: | MSG_SET_TEMPERATURE
  2952. //! | |
  2953. //! | 210 |
  2954. //! | |
  2955. //! ----------------------
  2956. //! @endcode
  2957. void pid_extruder()
  2958. {
  2959. lcd_clear();
  2960. lcd_set_cursor(1, 0);
  2961. lcd_puts_P(_i("Set temperature:"));////MSG_SET_TEMPERATURE c=19 r=1
  2962. pid_temp += int(lcd_encoder);
  2963. if (pid_temp > HEATER_0_MAXTEMP) pid_temp = HEATER_0_MAXTEMP;
  2964. if (pid_temp < HEATER_0_MINTEMP) pid_temp = HEATER_0_MINTEMP;
  2965. lcd_encoder = 0;
  2966. lcd_set_cursor(1, 2);
  2967. lcd_print(ftostr3(pid_temp));
  2968. if (lcd_clicked()) {
  2969. lcd_commands_type = LcdCommands::PidExtruder;
  2970. lcd_return_to_status();
  2971. lcd_update(2);
  2972. }
  2973. }
  2974. /*
  2975. void lcd_adjust_z() {
  2976. int enc_dif = 0;
  2977. int cursor_pos = 1;
  2978. int fsm = 0;
  2979. lcd_clear();
  2980. lcd_set_cursor(0, 0);
  2981. lcd_puts_P(_i("Auto adjust Z?"));////MSG_ADJUSTZ
  2982. lcd_set_cursor(1, 1);
  2983. lcd_puts_P(_T(MSG_YES));
  2984. lcd_set_cursor(1, 2);
  2985. lcd_puts_P(_T(MSG_NO));
  2986. lcd_set_cursor(0, 1);
  2987. lcd_print(">");
  2988. enc_dif = lcd_encoder_diff;
  2989. while (fsm == 0) {
  2990. manage_heater();
  2991. manage_inactivity(true);
  2992. if ( abs((enc_dif - lcd_encoder_diff)) > 4 ) {
  2993. if ( (abs(enc_dif - lcd_encoder_diff)) > 1 ) {
  2994. if (enc_dif > lcd_encoder_diff ) {
  2995. cursor_pos --;
  2996. }
  2997. if (enc_dif < lcd_encoder_diff ) {
  2998. cursor_pos ++;
  2999. }
  3000. if (cursor_pos > 2) {
  3001. cursor_pos = 2;
  3002. }
  3003. if (cursor_pos < 1) {
  3004. cursor_pos = 1;
  3005. }
  3006. lcd_set_cursor(0, 1);
  3007. lcd_print(" ");
  3008. lcd_set_cursor(0, 2);
  3009. lcd_print(" ");
  3010. lcd_set_cursor(0, cursor_pos);
  3011. lcd_print(">");
  3012. enc_dif = lcd_encoder_diff;
  3013. _delay(100);
  3014. }
  3015. }
  3016. if (lcd_clicked()) {
  3017. fsm = cursor_pos;
  3018. if (fsm == 1) {
  3019. int babystepLoadZ = 0;
  3020. EEPROM_read_B(EEPROM_BABYSTEP_Z, &babystepLoadZ);
  3021. CRITICAL_SECTION_START
  3022. babystepsTodo[Z_AXIS] = babystepLoadZ;
  3023. CRITICAL_SECTION_END
  3024. } else {
  3025. int zero = 0;
  3026. EEPROM_save_B(EEPROM_BABYSTEP_X, &zero);
  3027. EEPROM_save_B(EEPROM_BABYSTEP_Y, &zero);
  3028. EEPROM_save_B(EEPROM_BABYSTEP_Z, &zero);
  3029. }
  3030. _delay(500);
  3031. }
  3032. };
  3033. lcd_clear();
  3034. lcd_return_to_status();
  3035. }*/
  3036. #ifdef PINDA_THERMISTOR
  3037. bool lcd_wait_for_pinda(float temp) {
  3038. lcd_set_custom_characters_degree();
  3039. setAllTargetHotends(0);
  3040. setTargetBed(0);
  3041. LongTimer pinda_timeout;
  3042. pinda_timeout.start();
  3043. bool target_temp_reached = true;
  3044. while (current_temperature_pinda > temp){
  3045. lcd_display_message_fullscreen_P(_i("Waiting for PINDA probe cooling"));////MSG_WAITING_TEMP_PINDA c=20 r=3
  3046. lcd_set_cursor(0, 4);
  3047. lcd_print(LCD_STR_THERMOMETER[0]);
  3048. lcd_print(ftostr3(current_temperature_pinda));
  3049. lcd_print("/");
  3050. lcd_print(ftostr3(temp));
  3051. lcd_print(LCD_STR_DEGREE);
  3052. delay_keep_alive(1000);
  3053. serialecho_temperatures();
  3054. if (pinda_timeout.expired(8 * 60 * 1000ul)) { //PINDA cooling from 60 C to 35 C takes about 7 minutes
  3055. target_temp_reached = false;
  3056. break;
  3057. }
  3058. }
  3059. lcd_set_custom_characters_arrows();
  3060. lcd_update_enable(true);
  3061. return target_temp_reached;
  3062. }
  3063. #endif //PINDA_THERMISTOR
  3064. void lcd_wait_for_heater() {
  3065. lcd_display_message_fullscreen_P(_T(MSG_WIZARD_HEATING));
  3066. lcd_set_degree();
  3067. lcd_set_cursor(0, 4);
  3068. lcd_print(LCD_STR_THERMOMETER[0]);
  3069. lcd_print(ftostr3(degHotend(active_extruder)));
  3070. lcd_print("/");
  3071. lcd_print(ftostr3(degTargetHotend(active_extruder)));
  3072. lcd_print(LCD_STR_DEGREE);
  3073. }
  3074. void lcd_wait_for_cool_down() {
  3075. lcd_set_custom_characters_degree();
  3076. setAllTargetHotends(0);
  3077. setTargetBed(0);
  3078. while ((degHotend(0)>MAX_HOTEND_TEMP_CALIBRATION) || (degBed() > MAX_BED_TEMP_CALIBRATION)) {
  3079. lcd_display_message_fullscreen_P(_i("Waiting for nozzle and bed cooling"));////MSG_WAITING_TEMP c=20 r=3
  3080. lcd_set_cursor(0, 4);
  3081. lcd_print(LCD_STR_THERMOMETER[0]);
  3082. lcd_print(ftostr3(degHotend(0)));
  3083. lcd_print("/0");
  3084. lcd_print(LCD_STR_DEGREE);
  3085. lcd_set_cursor(9, 4);
  3086. lcd_print(LCD_STR_BEDTEMP[0]);
  3087. lcd_print(ftostr3(degBed()));
  3088. lcd_print("/0");
  3089. lcd_print(LCD_STR_DEGREE);
  3090. lcd_set_custom_characters();
  3091. delay_keep_alive(1000);
  3092. serialecho_temperatures();
  3093. }
  3094. lcd_set_custom_characters_arrows();
  3095. lcd_update_enable(true);
  3096. }
  3097. // Lets the user move the Z carriage up to the end stoppers.
  3098. // When done, it sets the current Z to Z_MAX_POS and returns true.
  3099. // Otherwise the Z calibration is not changed and false is returned.
  3100. #ifndef TMC2130
  3101. bool lcd_calibrate_z_end_stop_manual(bool only_z)
  3102. {
  3103. // Don't know where we are. Let's claim we are Z=0, so the soft end stops will not be triggered when moving up.
  3104. current_position[Z_AXIS] = 0;
  3105. plan_set_position(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  3106. // Until confirmed by the confirmation dialog.
  3107. for (;;) {
  3108. const char *msg = only_z ? _i("Calibrating Z. Rotate the knob to move the Z carriage up to the end stoppers. Click when done.") : _i("Calibrating XYZ. Rotate the knob to move the Z carriage up to the end stoppers. Click when done.");////MSG_MOVE_CARRIAGE_TO_THE_TOP c=20 r=8////MSG_MOVE_CARRIAGE_TO_THE_TOP_Z c=20 r=8
  3109. const char *msg_next = lcd_display_message_fullscreen_P(msg);
  3110. const bool multi_screen = msg_next != NULL;
  3111. unsigned long previous_millis_msg = _millis();
  3112. // Until the user finishes the z up movement.
  3113. lcd_encoder_diff = 0;
  3114. lcd_encoder = 0;
  3115. for (;;) {
  3116. manage_heater();
  3117. manage_inactivity(true);
  3118. if (abs(lcd_encoder_diff) >= ENCODER_PULSES_PER_STEP) {
  3119. _delay(50);
  3120. lcd_encoder += abs(lcd_encoder_diff / ENCODER_PULSES_PER_STEP);
  3121. lcd_encoder_diff = 0;
  3122. if (! planner_queue_full()) {
  3123. // Only move up, whatever direction the user rotates the encoder.
  3124. current_position[Z_AXIS] += fabs(lcd_encoder);
  3125. lcd_encoder = 0;
  3126. plan_buffer_line_curposXYZE(manual_feedrate[Z_AXIS] / 60, active_extruder);
  3127. }
  3128. }
  3129. if (lcd_clicked()) {
  3130. // Abort a move if in progress.
  3131. planner_abort_hard();
  3132. while (lcd_clicked()) ;
  3133. _delay(10);
  3134. while (lcd_clicked()) ;
  3135. break;
  3136. }
  3137. if (multi_screen && _millis() - previous_millis_msg > 5000) {
  3138. if (msg_next == NULL)
  3139. msg_next = msg;
  3140. msg_next = lcd_display_message_fullscreen_P(msg_next);
  3141. previous_millis_msg = _millis();
  3142. }
  3143. }
  3144. // Let the user confirm, that the Z carriage is at the top end stoppers.
  3145. int8_t result = lcd_show_fullscreen_message_yes_no_and_wait_P(_i("Are left and right Z~carriages all up?"), false);////MSG_CONFIRM_CARRIAGE_AT_THE_TOP c=20 r=2
  3146. if (result == -1)
  3147. goto canceled;
  3148. else if (result == 1)
  3149. goto calibrated;
  3150. // otherwise perform another round of the Z up dialog.
  3151. }
  3152. calibrated:
  3153. // Let the machine think the Z axis is a bit higher than it is, so it will not home into the bed
  3154. // during the search for the induction points.
  3155. if ((PRINTER_TYPE == PRINTER_MK25) || (PRINTER_TYPE == PRINTER_MK2) || (PRINTER_TYPE == PRINTER_MK2_SNMM)) {
  3156. current_position[Z_AXIS] = Z_MAX_POS-3.f;
  3157. }
  3158. else {
  3159. current_position[Z_AXIS] = Z_MAX_POS+4.f;
  3160. }
  3161. plan_set_position(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  3162. return true;
  3163. canceled:
  3164. return false;
  3165. }
  3166. #endif // TMC2130
  3167. static inline bool pgm_is_whitespace(const char *c_addr)
  3168. {
  3169. const char c = pgm_read_byte(c_addr);
  3170. return c == ' ' || c == '\t' || c == '\r' || c == '\n';
  3171. }
  3172. static inline bool pgm_is_interpunction(const char *c_addr)
  3173. {
  3174. const char c = pgm_read_byte(c_addr);
  3175. return c == '.' || c == ',' || c == ':'|| c == ';' || c == '?' || c == '!' || c == '/';
  3176. }
  3177. /**
  3178. * @brief show full screen message
  3179. *
  3180. * This function is non-blocking
  3181. * @param msg message to be displayed from PROGMEM
  3182. * @param nlines
  3183. * @return rest of the text (to be displayed on next page)
  3184. */
  3185. static const char* lcd_display_message_fullscreen_nonBlocking_P(const char *msg, uint8_t &nlines)
  3186. {
  3187. lcd_set_cursor(0, 0);
  3188. const char *msgend = msg;
  3189. uint8_t row = 0;
  3190. bool multi_screen = false;
  3191. for (; row < 4; ++ row) {
  3192. while (pgm_is_whitespace(msg))
  3193. ++ msg;
  3194. if (pgm_read_byte(msg) == 0)
  3195. // End of the message.
  3196. break;
  3197. lcd_set_cursor(0, row);
  3198. uint8_t linelen = min(strlen_P(msg), 20);
  3199. const char *msgend2 = msg + linelen;
  3200. msgend = msgend2;
  3201. if (row == 3 && linelen == 20) {
  3202. // Last line of the display, full line shall be displayed.
  3203. // Find out, whether this message will be split into multiple screens.
  3204. while (pgm_is_whitespace(msgend))
  3205. ++ msgend;
  3206. multi_screen = pgm_read_byte(msgend) != 0;
  3207. if (multi_screen)
  3208. msgend = (msgend2 -= 2);
  3209. }
  3210. if (pgm_read_byte(msgend) != 0 && ! pgm_is_whitespace(msgend) && ! pgm_is_interpunction(msgend)) {
  3211. // Splitting a word. Find the start of the current word.
  3212. while (msgend > msg && ! pgm_is_whitespace(msgend - 1))
  3213. -- msgend;
  3214. if (msgend == msg)
  3215. // Found a single long word, which cannot be split. Just cut it.
  3216. msgend = msgend2;
  3217. }
  3218. for (; msg < msgend; ++ msg) {
  3219. char c = char(pgm_read_byte(msg));
  3220. if (c == '~')
  3221. c = ' ';
  3222. lcd_print(c);
  3223. }
  3224. }
  3225. if (multi_screen) {
  3226. // Display the "next screen" indicator character.
  3227. // lcd_set_custom_characters_arrows();
  3228. lcd_set_custom_characters_nextpage();
  3229. lcd_set_cursor(19, 3);
  3230. // Display the down arrow.
  3231. lcd_print(char(1));
  3232. }
  3233. nlines = row;
  3234. return multi_screen ? msgend : NULL;
  3235. }
  3236. const char* lcd_display_message_fullscreen_P(const char *msg, uint8_t &nlines)
  3237. {
  3238. // Disable update of the screen by the usual lcd_update(0) routine.
  3239. lcd_update_enable(false);
  3240. lcd_clear();
  3241. // uint8_t nlines;
  3242. return lcd_display_message_fullscreen_nonBlocking_P(msg, nlines);
  3243. }
  3244. const char* lcd_display_message_fullscreen_P(const char *msg)
  3245. {
  3246. uint8_t nlines;
  3247. return lcd_display_message_fullscreen_P(msg, nlines);
  3248. }
  3249. /**
  3250. * @brief show full screen message and wait
  3251. *
  3252. * This function is blocking.
  3253. * @param msg message to be displayed from PROGMEM
  3254. */
  3255. void lcd_show_fullscreen_message_and_wait_P(const char *msg)
  3256. {
  3257. LcdUpdateDisabler lcdUpdateDisabler;
  3258. const char *msg_next = lcd_display_message_fullscreen_P(msg);
  3259. bool multi_screen = msg_next != NULL;
  3260. lcd_set_custom_characters_nextpage();
  3261. lcd_consume_click();
  3262. KEEPALIVE_STATE(PAUSED_FOR_USER);
  3263. // Until confirmed by a button click.
  3264. for (;;) {
  3265. if (!multi_screen) {
  3266. lcd_set_cursor(19, 3);
  3267. // Display the confirm char.
  3268. lcd_print(char(2));
  3269. }
  3270. // Wait for 5 seconds before displaying the next text.
  3271. for (uint8_t i = 0; i < 100; ++ i) {
  3272. delay_keep_alive(50);
  3273. if (lcd_clicked()) {
  3274. if (msg_next == NULL) {
  3275. KEEPALIVE_STATE(IN_HANDLER);
  3276. lcd_set_custom_characters();
  3277. lcd_update_enable(true);
  3278. lcd_update(2);
  3279. return;
  3280. }
  3281. else {
  3282. break;
  3283. }
  3284. }
  3285. }
  3286. if (multi_screen) {
  3287. if (msg_next == NULL)
  3288. msg_next = msg;
  3289. msg_next = lcd_display_message_fullscreen_P(msg_next);
  3290. if (msg_next == NULL) {
  3291. lcd_set_cursor(19, 3);
  3292. // Display the confirm char.
  3293. lcd_print(char(2));
  3294. }
  3295. }
  3296. }
  3297. }
  3298. bool lcd_wait_for_click_delay(uint16_t nDelay)
  3299. // nDelay :: timeout [s] (0 ~ no timeout)
  3300. // true ~ clicked, false ~ delayed
  3301. {
  3302. bool bDelayed;
  3303. long nTime0 = _millis()/1000;
  3304. lcd_consume_click();
  3305. KEEPALIVE_STATE(PAUSED_FOR_USER);
  3306. for (;;) {
  3307. manage_heater();
  3308. manage_inactivity(true);
  3309. bDelayed = ((_millis()/1000-nTime0) > nDelay);
  3310. bDelayed = (bDelayed && (nDelay != 0)); // 0 ~ no timeout, always waiting for click
  3311. if (lcd_clicked() || bDelayed) {
  3312. KEEPALIVE_STATE(IN_HANDLER);
  3313. return(!bDelayed);
  3314. }
  3315. }
  3316. }
  3317. void lcd_wait_for_click()
  3318. {
  3319. lcd_wait_for_click_delay(0);
  3320. }
  3321. //! @brief Show multiple screen message with yes and no possible choices and wait with possible timeout
  3322. //! @param msg Message to show
  3323. //! @param allow_timeouting if true, allows time outing of the screen
  3324. //! @param default_yes if true, yes choice is selected by default, otherwise no choice is preselected
  3325. //! @retval 1 yes choice selected by user
  3326. //! @retval 0 no choice selected by user
  3327. //! @retval -1 screen timed out
  3328. int8_t lcd_show_multiscreen_message_yes_no_and_wait_P(const char *msg, bool allow_timeouting, bool default_yes) //currently just max. n*4 + 3 lines supported (set in language header files)
  3329. {
  3330. return lcd_show_multiscreen_message_two_choices_and_wait_P(msg, allow_timeouting, default_yes, _T(MSG_YES), _T(MSG_NO));
  3331. }
  3332. //! @brief Show multiple screen message with two possible choices and wait with possible timeout
  3333. //! @param msg Message to show
  3334. //! @param allow_timeouting if true, allows time outing of the screen
  3335. //! @param default_first if true, fist choice is selected by default, otherwise second choice is preselected
  3336. //! @param first_choice text caption of first possible choice
  3337. //! @param second_choice text caption of second possible choice
  3338. //! @retval 1 first choice selected by user
  3339. //! @retval 0 second choice selected by user
  3340. //! @retval -1 screen timed out
  3341. int8_t lcd_show_multiscreen_message_two_choices_and_wait_P(const char *msg, bool allow_timeouting, bool default_first,
  3342. const char *first_choice, const char *second_choice)
  3343. {
  3344. const char *msg_next = lcd_display_message_fullscreen_P(msg);
  3345. bool multi_screen = msg_next != NULL;
  3346. bool yes = default_first ? true : false;
  3347. // Wait for user confirmation or a timeout.
  3348. unsigned long previous_millis_cmd = _millis();
  3349. int8_t enc_dif = lcd_encoder_diff;
  3350. lcd_consume_click();
  3351. //KEEPALIVE_STATE(PAUSED_FOR_USER);
  3352. for (;;) {
  3353. for (uint8_t i = 0; i < 100; ++i) {
  3354. delay_keep_alive(50);
  3355. if (allow_timeouting && _millis() - previous_millis_cmd > LCD_TIMEOUT_TO_STATUS)
  3356. return -1;
  3357. manage_heater();
  3358. manage_inactivity(true);
  3359. if (abs(enc_dif - lcd_encoder_diff) > 4) {
  3360. if (msg_next == NULL) {
  3361. lcd_set_cursor(0, 3);
  3362. if (enc_dif < lcd_encoder_diff && yes) {
  3363. lcd_puts_P((PSTR(" ")));
  3364. lcd_set_cursor(7, 3);
  3365. lcd_puts_P((PSTR(">")));
  3366. yes = false;
  3367. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  3368. }
  3369. else if (enc_dif > lcd_encoder_diff && !yes) {
  3370. lcd_puts_P((PSTR(">")));
  3371. lcd_set_cursor(7, 3);
  3372. lcd_puts_P((PSTR(" ")));
  3373. yes = true;
  3374. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  3375. }
  3376. enc_dif = lcd_encoder_diff;
  3377. }
  3378. else {
  3379. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  3380. break; //turning knob skips waiting loop
  3381. }
  3382. }
  3383. if (lcd_clicked()) {
  3384. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  3385. if (msg_next == NULL) {
  3386. //KEEPALIVE_STATE(IN_HANDLER);
  3387. lcd_set_custom_characters();
  3388. return yes;
  3389. }
  3390. else break;
  3391. }
  3392. }
  3393. if (multi_screen) {
  3394. if (msg_next == NULL) {
  3395. msg_next = msg;
  3396. }
  3397. msg_next = lcd_display_message_fullscreen_P(msg_next);
  3398. }
  3399. if (msg_next == NULL) {
  3400. lcd_set_cursor(0, 3);
  3401. if (yes) lcd_puts_P(PSTR(">"));
  3402. lcd_set_cursor(1, 3);
  3403. lcd_puts_P(first_choice);
  3404. lcd_set_cursor(7, 3);
  3405. if (!yes) lcd_puts_P(PSTR(">"));
  3406. lcd_set_cursor(8, 3);
  3407. lcd_puts_P(second_choice);
  3408. }
  3409. }
  3410. }
  3411. //! @brief Show single screen message with yes and no possible choices and wait with possible timeout
  3412. //! @param msg Message to show
  3413. //! @param allow_timeouting if true, allows time outing of the screen
  3414. //! @param default_yes if true, yes choice is selected by default, otherwise no choice is preselected
  3415. //! @retval 1 yes choice selected by user
  3416. //! @retval 0 no choice selected by user
  3417. //! @retval -1 screen timed out
  3418. int8_t lcd_show_fullscreen_message_yes_no_and_wait_P(const char *msg, bool allow_timeouting, bool default_yes)
  3419. {
  3420. lcd_display_message_fullscreen_P(msg);
  3421. if (default_yes) {
  3422. lcd_set_cursor(0, 2);
  3423. lcd_puts_P(PSTR(">"));
  3424. lcd_puts_P(_T(MSG_YES));
  3425. lcd_set_cursor(1, 3);
  3426. lcd_puts_P(_T(MSG_NO));
  3427. }
  3428. else {
  3429. lcd_set_cursor(1, 2);
  3430. lcd_puts_P(_T(MSG_YES));
  3431. lcd_set_cursor(0, 3);
  3432. lcd_puts_P(PSTR(">"));
  3433. lcd_puts_P(_T(MSG_NO));
  3434. }
  3435. int8_t retval = default_yes ? true : false;
  3436. // Wait for user confirmation or a timeout.
  3437. unsigned long previous_millis_cmd = _millis();
  3438. int8_t enc_dif = lcd_encoder_diff;
  3439. lcd_consume_click();
  3440. KEEPALIVE_STATE(PAUSED_FOR_USER);
  3441. for (;;) {
  3442. if (allow_timeouting && _millis() - previous_millis_cmd > LCD_TIMEOUT_TO_STATUS)
  3443. {
  3444. retval = -1;
  3445. break;
  3446. }
  3447. manage_heater();
  3448. manage_inactivity(true);
  3449. if (abs(enc_dif - lcd_encoder_diff) > 4) {
  3450. lcd_set_cursor(0, 2);
  3451. if (enc_dif < lcd_encoder_diff && retval) {
  3452. lcd_puts_P((PSTR(" ")));
  3453. lcd_set_cursor(0, 3);
  3454. lcd_puts_P((PSTR(">")));
  3455. retval = 0;
  3456. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  3457. }
  3458. else if (enc_dif > lcd_encoder_diff && !retval) {
  3459. lcd_puts_P((PSTR(">")));
  3460. lcd_set_cursor(0, 3);
  3461. lcd_puts_P((PSTR(" ")));
  3462. retval = 1;
  3463. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  3464. }
  3465. enc_dif = lcd_encoder_diff;
  3466. }
  3467. if (lcd_clicked()) {
  3468. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  3469. KEEPALIVE_STATE(IN_HANDLER);
  3470. break;
  3471. }
  3472. }
  3473. lcd_encoder_diff = 0;
  3474. return retval;
  3475. }
  3476. void lcd_bed_calibration_show_result(BedSkewOffsetDetectionResultType result, uint8_t point_too_far_mask)
  3477. {
  3478. const char *msg = NULL;
  3479. if (result == BED_SKEW_OFFSET_DETECTION_POINT_NOT_FOUND) {
  3480. lcd_show_fullscreen_message_and_wait_P(_i("XYZ calibration failed. Bed calibration point was not found."));////MSG_BED_SKEW_OFFSET_DETECTION_POINT_NOT_FOUND c=20 r=8
  3481. } else if (result == BED_SKEW_OFFSET_DETECTION_FITTING_FAILED) {
  3482. if (point_too_far_mask == 0)
  3483. msg = _T(MSG_BED_SKEW_OFFSET_DETECTION_FITTING_FAILED);
  3484. else if (point_too_far_mask == 2 || point_too_far_mask == 7)
  3485. // Only the center point or all the three front points.
  3486. msg = _i("XYZ calibration failed. Front calibration points not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_FAILED_FRONT_BOTH_FAR c=20 r=8
  3487. else if ((point_too_far_mask & 1) == 0)
  3488. // The right and maybe the center point out of reach.
  3489. msg = _i("XYZ calibration failed. Right front calibration point not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_FAILED_FRONT_RIGHT_FAR c=20 r=8
  3490. else
  3491. // The left and maybe the center point out of reach.
  3492. msg = _i("XYZ calibration failed. Left front calibration point not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_FAILED_FRONT_LEFT_FAR c=20 r=8
  3493. lcd_show_fullscreen_message_and_wait_P(msg);
  3494. } else {
  3495. if (point_too_far_mask != 0) {
  3496. if (point_too_far_mask == 2 || point_too_far_mask == 7)
  3497. // Only the center point or all the three front points.
  3498. msg = _i("XYZ calibration compromised. Front calibration points not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_WARNING_FRONT_BOTH_FAR c=20 r=8
  3499. else if ((point_too_far_mask & 1) == 0)
  3500. // The right and maybe the center point out of reach.
  3501. msg = _i("XYZ calibration compromised. Right front calibration point not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_WARNING_FRONT_RIGHT_FAR c=20 r=8
  3502. else
  3503. // The left and maybe the center point out of reach.
  3504. msg = _i("XYZ calibration compromised. Left front calibration point not reachable.");////MSG_BED_SKEW_OFFSET_DETECTION_WARNING_FRONT_LEFT_FAR c=20 r=8
  3505. lcd_show_fullscreen_message_and_wait_P(msg);
  3506. }
  3507. if (point_too_far_mask == 0 || result > 0) {
  3508. switch (result) {
  3509. default:
  3510. // should not happen
  3511. msg = _T(MSG_BED_SKEW_OFFSET_DETECTION_FITTING_FAILED);
  3512. break;
  3513. case BED_SKEW_OFFSET_DETECTION_PERFECT:
  3514. msg = _i("XYZ calibration ok. X/Y axes are perpendicular. Congratulations!");////MSG_BED_SKEW_OFFSET_DETECTION_PERFECT c=20 r=8
  3515. break;
  3516. case BED_SKEW_OFFSET_DETECTION_SKEW_MILD:
  3517. msg = _i("XYZ calibration all right. X/Y axes are slightly skewed. Good job!");////MSG_BED_SKEW_OFFSET_DETECTION_SKEW_MILD c=20 r=8
  3518. break;
  3519. case BED_SKEW_OFFSET_DETECTION_SKEW_EXTREME:
  3520. msg = _i("XYZ calibration all right. Skew will be corrected automatically.");////MSG_BED_SKEW_OFFSET_DETECTION_SKEW_EXTREME c=20 r=8
  3521. break;
  3522. }
  3523. lcd_show_fullscreen_message_and_wait_P(msg);
  3524. }
  3525. }
  3526. }
  3527. void lcd_temp_cal_show_result(bool result) {
  3528. custom_message_type = CustomMsg::Status;
  3529. disable_x();
  3530. disable_y();
  3531. disable_z();
  3532. disable_e0();
  3533. disable_e1();
  3534. disable_e2();
  3535. setTargetBed(0); //set bed target temperature back to 0
  3536. if (result == true) {
  3537. eeprom_update_byte((uint8_t*)EEPROM_CALIBRATION_STATUS_PINDA, 1);
  3538. SERIAL_ECHOLNPGM("Temperature calibration done. Continue with pressing the knob.");
  3539. lcd_show_fullscreen_message_and_wait_P(_T(MSG_TEMP_CALIBRATION_DONE));
  3540. temp_cal_active = true;
  3541. eeprom_update_byte((unsigned char *)EEPROM_TEMP_CAL_ACTIVE, 1);
  3542. }
  3543. else {
  3544. eeprom_update_byte((uint8_t*)EEPROM_CALIBRATION_STATUS_PINDA, 0);
  3545. SERIAL_ECHOLNPGM("Temperature calibration failed. Continue with pressing the knob.");
  3546. lcd_show_fullscreen_message_and_wait_P(_i("Temperature calibration failed"));////MSG_TEMP_CAL_FAILED c=20 r=8
  3547. temp_cal_active = false;
  3548. eeprom_update_byte((unsigned char *)EEPROM_TEMP_CAL_ACTIVE, 0);
  3549. }
  3550. lcd_update_enable(true);
  3551. lcd_update(2);
  3552. }
  3553. static void lcd_show_end_stops() {
  3554. lcd_set_cursor(0, 0);
  3555. lcd_puts_P((PSTR("End stops diag")));
  3556. lcd_set_cursor(0, 1);
  3557. lcd_puts_P((READ(X_MIN_PIN) ^ (bool)X_MIN_ENDSTOP_INVERTING) ? (PSTR("X1")) : (PSTR("X0")));
  3558. lcd_set_cursor(0, 2);
  3559. lcd_puts_P((READ(Y_MIN_PIN) ^ (bool)Y_MIN_ENDSTOP_INVERTING) ? (PSTR("Y1")) : (PSTR("Y0")));
  3560. lcd_set_cursor(0, 3);
  3561. lcd_puts_P((READ(Z_MIN_PIN) ^ (bool)Z_MIN_ENDSTOP_INVERTING) ? (PSTR("Z1")) : (PSTR("Z0")));
  3562. }
  3563. #ifndef TMC2130
  3564. static void menu_show_end_stops() {
  3565. lcd_show_end_stops();
  3566. if (LCD_CLICKED) menu_back();
  3567. }
  3568. #endif // not defined TMC2130
  3569. // Lets the user move the Z carriage up to the end stoppers.
  3570. // When done, it sets the current Z to Z_MAX_POS and returns true.
  3571. // Otherwise the Z calibration is not changed and false is returned.
  3572. void lcd_diag_show_end_stops()
  3573. {
  3574. lcd_clear();
  3575. lcd_consume_click();
  3576. for (;;) {
  3577. manage_heater();
  3578. manage_inactivity(true);
  3579. lcd_show_end_stops();
  3580. if (lcd_clicked()) {
  3581. break;
  3582. }
  3583. }
  3584. lcd_clear();
  3585. lcd_return_to_status();
  3586. }
  3587. static void lcd_print_state(uint8_t state)
  3588. {
  3589. switch (state) {
  3590. case STATE_ON:
  3591. lcd_puts_P(_i(" 1"));
  3592. break;
  3593. case STATE_OFF:
  3594. lcd_puts_P(_i(" 0"));
  3595. break;
  3596. default:
  3597. lcd_puts_P(_i("N/A"));
  3598. break;
  3599. }
  3600. }
  3601. static void lcd_show_sensors_state()
  3602. {
  3603. //0: N/A; 1: OFF; 2: ON
  3604. uint8_t pinda_state = STATE_NA;
  3605. uint8_t finda_state = STATE_NA;
  3606. uint8_t idler_state = STATE_NA;
  3607. pinda_state = READ(Z_MIN_PIN);
  3608. if (mmu_enabled) {
  3609. finda_state = mmu_finda;
  3610. }
  3611. if (ir_sensor_detected) {
  3612. idler_state = !PIN_GET(IR_SENSOR_PIN);
  3613. }
  3614. lcd_puts_at_P(0, 0, _i("Sensor state"));
  3615. lcd_puts_at_P(1, 1, _i("PINDA:"));
  3616. lcd_set_cursor(LCD_WIDTH - 4, 1);
  3617. lcd_print_state(pinda_state);
  3618. lcd_puts_at_P(1, 2, _i("FINDA:"));
  3619. lcd_set_cursor(LCD_WIDTH - 4, 2);
  3620. lcd_print_state(finda_state);
  3621. lcd_puts_at_P(1, 3, _i("IR:"));
  3622. lcd_set_cursor(LCD_WIDTH - 4, 3);
  3623. lcd_print_state(idler_state);
  3624. }
  3625. void lcd_menu_show_sensors_state() // NOT static due to using inside "Marlin_main" module ("manage_inactivity()")
  3626. {
  3627. lcd_timeoutToStatus.stop();
  3628. lcd_show_sensors_state();
  3629. if(LCD_CLICKED)
  3630. {
  3631. lcd_timeoutToStatus.start();
  3632. menu_back();
  3633. }
  3634. }
  3635. void prusa_statistics_err(char c){
  3636. SERIAL_ECHO("{[ERR:");
  3637. SERIAL_ECHO(c);
  3638. SERIAL_ECHO(']');
  3639. prusa_stat_farm_number();
  3640. }
  3641. static void prusa_statistics_case0(uint8_t statnr){
  3642. SERIAL_ECHO("{");
  3643. prusa_stat_printerstatus(statnr);
  3644. prusa_stat_farm_number();
  3645. prusa_stat_printinfo();
  3646. }
  3647. void prusa_statistics(int _message, uint8_t _fil_nr) {
  3648. #ifdef DEBUG_DISABLE_PRUSA_STATISTICS
  3649. return;
  3650. #endif //DEBUG_DISABLE_PRUSA_STATISTICS
  3651. switch (_message)
  3652. {
  3653. case 0: // default message
  3654. if (busy_state == PAUSED_FOR_USER)
  3655. {
  3656. prusa_statistics_case0(15);
  3657. }
  3658. else if (isPrintPaused || card.paused)
  3659. {
  3660. prusa_statistics_case0(14);
  3661. }
  3662. else if (IS_SD_PRINTING || loading_flag)
  3663. {
  3664. prusa_statistics_case0(4);
  3665. }
  3666. else
  3667. {
  3668. SERIAL_ECHO("{");
  3669. prusa_stat_printerstatus(1);
  3670. prusa_stat_farm_number();
  3671. prusa_stat_diameter();
  3672. status_number = 1;
  3673. }
  3674. break;
  3675. case 1: // 1 heating
  3676. farm_status = 2;
  3677. SERIAL_ECHO('{');
  3678. prusa_stat_printerstatus(2);
  3679. prusa_stat_farm_number();
  3680. status_number = 2;
  3681. farm_timer = 1;
  3682. break;
  3683. case 2: // heating done
  3684. farm_status = 3;
  3685. SERIAL_ECHO('{');
  3686. prusa_stat_printerstatus(3);
  3687. prusa_stat_farm_number();
  3688. SERIAL_ECHOLN('}');
  3689. status_number = 3;
  3690. farm_timer = 1;
  3691. if (IS_SD_PRINTING || loading_flag)
  3692. {
  3693. farm_status = 4;
  3694. SERIAL_ECHO('{');
  3695. prusa_stat_printerstatus(4);
  3696. prusa_stat_farm_number();
  3697. status_number = 4;
  3698. }
  3699. else
  3700. {
  3701. SERIAL_ECHO('{');
  3702. prusa_stat_printerstatus(3);
  3703. prusa_stat_farm_number();
  3704. status_number = 3;
  3705. }
  3706. farm_timer = 1;
  3707. break;
  3708. case 3: // filament change
  3709. // must do a return here to prevent doing SERIAL_ECHOLN("}") at the very end of this function
  3710. // saved a considerable amount of FLASH
  3711. return;
  3712. break;
  3713. case 4: // print succesfull
  3714. SERIAL_ECHO("{[RES:1][FIL:");
  3715. MYSERIAL.print(int(_fil_nr));
  3716. SERIAL_ECHO(']');
  3717. prusa_stat_printerstatus(status_number);
  3718. prusa_stat_farm_number();
  3719. farm_timer = 2;
  3720. break;
  3721. case 5: // print not succesfull
  3722. SERIAL_ECHO("{[RES:0][FIL:");
  3723. MYSERIAL.print(int(_fil_nr));
  3724. SERIAL_ECHO(']');
  3725. prusa_stat_printerstatus(status_number);
  3726. prusa_stat_farm_number();
  3727. farm_timer = 2;
  3728. break;
  3729. case 6: // print done
  3730. SERIAL_ECHO("{[PRN:8]");
  3731. prusa_stat_farm_number();
  3732. status_number = 8;
  3733. farm_timer = 2;
  3734. break;
  3735. case 7: // print done - stopped
  3736. SERIAL_ECHO("{[PRN:9]");
  3737. prusa_stat_farm_number();
  3738. status_number = 9;
  3739. farm_timer = 2;
  3740. break;
  3741. case 8: // printer started
  3742. SERIAL_ECHO("{[PRN:0][PFN:");
  3743. status_number = 0;
  3744. SERIAL_ECHO(farm_no);
  3745. SERIAL_ECHO(']');
  3746. farm_timer = 2;
  3747. break;
  3748. case 20: // echo farm no
  3749. SERIAL_ECHO('{');
  3750. prusa_stat_printerstatus(status_number);
  3751. prusa_stat_farm_number();
  3752. farm_timer = 4;
  3753. break;
  3754. case 21: // temperatures
  3755. SERIAL_ECHO('{');
  3756. prusa_stat_temperatures();
  3757. prusa_stat_farm_number();
  3758. prusa_stat_printerstatus(status_number);
  3759. break;
  3760. case 22: // waiting for filament change
  3761. SERIAL_ECHO("{[PRN:5]");
  3762. prusa_stat_farm_number();
  3763. status_number = 5;
  3764. break;
  3765. case 90: // Error - Thermal Runaway
  3766. prusa_statistics_err('1');
  3767. break;
  3768. case 91: // Error - Thermal Runaway Preheat
  3769. prusa_statistics_err('2');
  3770. break;
  3771. case 92: // Error - Min temp
  3772. prusa_statistics_err('3');
  3773. break;
  3774. case 93: // Error - Max temp
  3775. prusa_statistics_err('4');
  3776. break;
  3777. case 99: // heartbeat
  3778. SERIAL_ECHO("{[PRN:99]");
  3779. prusa_stat_temperatures();
  3780. SERIAL_ECHO("[PFN:");
  3781. SERIAL_ECHO(farm_no);
  3782. SERIAL_ECHO(']');
  3783. break;
  3784. }
  3785. SERIAL_ECHOLN('}');
  3786. }
  3787. static void prusa_stat_printerstatus(int _status)
  3788. {
  3789. SERIAL_ECHO("[PRN:");
  3790. SERIAL_ECHO(_status);
  3791. SERIAL_ECHO(']');
  3792. }
  3793. static void prusa_stat_farm_number() {
  3794. SERIAL_ECHO("[PFN:");
  3795. SERIAL_ECHO(farm_no);
  3796. SERIAL_ECHO(']');
  3797. }
  3798. static void prusa_stat_diameter() {
  3799. SERIAL_ECHO("[DIA:");
  3800. SERIAL_ECHO(eeprom_read_word((uint16_t*)EEPROM_NOZZLE_DIAMETER_uM));
  3801. SERIAL_ECHO(']');
  3802. }
  3803. static void prusa_stat_temperatures()
  3804. {
  3805. SERIAL_ECHO("[ST0:");
  3806. SERIAL_ECHO(target_temperature[0]);
  3807. SERIAL_ECHO("][STB:");
  3808. SERIAL_ECHO(target_temperature_bed);
  3809. SERIAL_ECHO("][AT0:");
  3810. SERIAL_ECHO(current_temperature[0]);
  3811. SERIAL_ECHO("][ATB:");
  3812. SERIAL_ECHO(current_temperature_bed);
  3813. SERIAL_ECHO(']');
  3814. }
  3815. static void prusa_stat_printinfo()
  3816. {
  3817. SERIAL_ECHO("[TFU:");
  3818. SERIAL_ECHO(total_filament_used);
  3819. SERIAL_ECHO("][PCD:");
  3820. SERIAL_ECHO(itostr3(card.percentDone()));
  3821. SERIAL_ECHO("][FEM:");
  3822. SERIAL_ECHO(itostr3(feedmultiply));
  3823. SERIAL_ECHO("][FNM:");
  3824. SERIAL_ECHO(longFilenameOLD);
  3825. SERIAL_ECHO("][TIM:");
  3826. if (starttime != 0)
  3827. {
  3828. SERIAL_ECHO(_millis() / 1000 - starttime / 1000);
  3829. }
  3830. else
  3831. {
  3832. SERIAL_ECHO(0);
  3833. }
  3834. SERIAL_ECHO("][FWR:");
  3835. SERIAL_ECHO(FW_VERSION);
  3836. SERIAL_ECHO(']');
  3837. prusa_stat_diameter();
  3838. }
  3839. /*
  3840. void lcd_pick_babystep(){
  3841. int enc_dif = 0;
  3842. int cursor_pos = 1;
  3843. int fsm = 0;
  3844. lcd_clear();
  3845. lcd_set_cursor(0, 0);
  3846. lcd_puts_P(_i("Pick print"));////MSG_PICK_Z
  3847. lcd_set_cursor(3, 2);
  3848. lcd_print("1");
  3849. lcd_set_cursor(3, 3);
  3850. lcd_print("2");
  3851. lcd_set_cursor(12, 2);
  3852. lcd_print("3");
  3853. lcd_set_cursor(12, 3);
  3854. lcd_print("4");
  3855. lcd_set_cursor(1, 2);
  3856. lcd_print(">");
  3857. enc_dif = lcd_encoder_diff;
  3858. while (fsm == 0) {
  3859. manage_heater();
  3860. manage_inactivity(true);
  3861. if ( abs((enc_dif - lcd_encoder_diff)) > 4 ) {
  3862. if ( (abs(enc_dif - lcd_encoder_diff)) > 1 ) {
  3863. if (enc_dif > lcd_encoder_diff ) {
  3864. cursor_pos --;
  3865. }
  3866. if (enc_dif < lcd_encoder_diff ) {
  3867. cursor_pos ++;
  3868. }
  3869. if (cursor_pos > 4) {
  3870. cursor_pos = 4;
  3871. }
  3872. if (cursor_pos < 1) {
  3873. cursor_pos = 1;
  3874. }
  3875. lcd_set_cursor(1, 2);
  3876. lcd_print(" ");
  3877. lcd_set_cursor(1, 3);
  3878. lcd_print(" ");
  3879. lcd_set_cursor(10, 2);
  3880. lcd_print(" ");
  3881. lcd_set_cursor(10, 3);
  3882. lcd_print(" ");
  3883. if (cursor_pos < 3) {
  3884. lcd_set_cursor(1, cursor_pos+1);
  3885. lcd_print(">");
  3886. }else{
  3887. lcd_set_cursor(10, cursor_pos-1);
  3888. lcd_print(">");
  3889. }
  3890. enc_dif = lcd_encoder_diff;
  3891. _delay(100);
  3892. }
  3893. }
  3894. if (lcd_clicked()) {
  3895. fsm = cursor_pos;
  3896. int babyStepZ;
  3897. EEPROM_read_B(EEPROM_BABYSTEP_Z0+((fsm-1)*2),&babyStepZ);
  3898. EEPROM_save_B(EEPROM_BABYSTEP_Z,&babyStepZ);
  3899. calibration_status_store(CALIBRATION_STATUS_CALIBRATED);
  3900. _delay(500);
  3901. }
  3902. };
  3903. lcd_clear();
  3904. lcd_return_to_status();
  3905. }
  3906. */
  3907. void lcd_move_menu_axis()
  3908. {
  3909. MENU_BEGIN();
  3910. MENU_ITEM_BACK_P(_T(MSG_SETTINGS));
  3911. MENU_ITEM_SUBMENU_P(_i("Move X"), lcd_move_x);////MSG_MOVE_X
  3912. MENU_ITEM_SUBMENU_P(_i("Move Y"), lcd_move_y);////MSG_MOVE_Y
  3913. MENU_ITEM_SUBMENU_P(_i("Move Z"), lcd_move_z);////MSG_MOVE_Z
  3914. MENU_ITEM_SUBMENU_P(_i("Extruder"), lcd_move_e);////MSG_MOVE_E
  3915. MENU_END();
  3916. }
  3917. static void lcd_move_menu_1mm()
  3918. {
  3919. move_menu_scale = 1.0;
  3920. lcd_move_menu_axis();
  3921. }
  3922. void EEPROM_save(int pos, uint8_t* value, uint8_t size)
  3923. {
  3924. do
  3925. {
  3926. eeprom_write_byte((unsigned char*)pos, *value);
  3927. pos++;
  3928. value++;
  3929. } while (--size);
  3930. }
  3931. void EEPROM_read(int pos, uint8_t* value, uint8_t size)
  3932. {
  3933. do
  3934. {
  3935. *value = eeprom_read_byte((unsigned char*)pos);
  3936. pos++;
  3937. value++;
  3938. } while (--size);
  3939. }
  3940. #ifdef SDCARD_SORT_ALPHA
  3941. static void lcd_sort_type_set() {
  3942. uint8_t sdSort;
  3943. EEPROM_read(EEPROM_SD_SORT, (uint8_t*)&sdSort, sizeof(sdSort));
  3944. switch (sdSort) {
  3945. case SD_SORT_TIME: sdSort = SD_SORT_ALPHA; break;
  3946. case SD_SORT_ALPHA: sdSort = SD_SORT_NONE; break;
  3947. default: sdSort = SD_SORT_TIME;
  3948. }
  3949. eeprom_update_byte((unsigned char *)EEPROM_SD_SORT, sdSort);
  3950. presort_flag = true;
  3951. }
  3952. #endif //SDCARD_SORT_ALPHA
  3953. #ifdef TMC2130
  3954. static void lcd_crash_mode_info()
  3955. {
  3956. lcd_update_enable(true);
  3957. static uint32_t tim = 0;
  3958. if ((tim + 1000) < _millis())
  3959. {
  3960. lcd_clear();
  3961. fputs_P(_i("Crash detection can\nbe turned on only in\nNormal mode"), lcdout);////MSG_CRASH_DET_ONLY_IN_NORMAL c=20 r=4
  3962. tim = _millis();
  3963. }
  3964. menu_back_if_clicked();
  3965. }
  3966. static void lcd_crash_mode_info2()
  3967. {
  3968. lcd_update_enable(true);
  3969. static uint32_t tim = 0;
  3970. if ((tim + 1000) < _millis())
  3971. {
  3972. lcd_clear();
  3973. fputs_P(_i("WARNING:\nCrash detection\ndisabled in\nStealth mode"), lcdout);////MSG_CRASH_DET_STEALTH_FORCE_OFF c=20 r=4
  3974. tim = _millis();
  3975. }
  3976. menu_back_if_clicked();
  3977. }
  3978. #endif //TMC2130
  3979. #ifdef FILAMENT_SENSOR
  3980. static void lcd_filament_autoload_info()
  3981. {
  3982. uint8_t nlines;
  3983. lcd_update_enable(true);
  3984. static uint32_t tim = 0;
  3985. if ((tim + 1000) < _millis())
  3986. {
  3987. lcd_display_message_fullscreen_nonBlocking_P(_i("Autoloading filament available only when filament sensor is turned on..."), nlines); ////MSG_AUTOLOADING_ONLY_IF_FSENS_ON c=20 r=4
  3988. tim = _millis();
  3989. }
  3990. menu_back_if_clicked();
  3991. }
  3992. static void lcd_fsensor_fail()
  3993. {
  3994. uint8_t nlines;
  3995. lcd_update_enable(true);
  3996. static uint32_t tim = 0;
  3997. if ((tim + 1000) < _millis())
  3998. {
  3999. lcd_display_message_fullscreen_nonBlocking_P(_i("ERROR: Filament sensor is not responding, please check connection."), nlines);////MSG_FSENS_NOT_RESPONDING c=20 r=4
  4000. tim = _millis();
  4001. }
  4002. menu_back_if_clicked();
  4003. }
  4004. #endif //FILAMENT_SENSOR
  4005. //-//
  4006. static void lcd_sound_state_set(void)
  4007. {
  4008. Sound_CycleState();
  4009. }
  4010. #ifndef MMU_FORCE_STEALTH_MODE
  4011. static void lcd_silent_mode_mmu_set() {
  4012. if (SilentModeMenu_MMU == 1) SilentModeMenu_MMU = 0;
  4013. else SilentModeMenu_MMU = 1;
  4014. //saving to eeprom is done in mmu_loop() after mmu actually switches state and confirms with "ok"
  4015. }
  4016. #endif //MMU_FORCE_STEALTH_MODE
  4017. static void lcd_silent_mode_set() {
  4018. switch (SilentModeMenu) {
  4019. #ifdef TMC2130
  4020. case SILENT_MODE_NORMAL: SilentModeMenu = SILENT_MODE_STEALTH; break;
  4021. case SILENT_MODE_STEALTH: SilentModeMenu = SILENT_MODE_NORMAL; break;
  4022. default: SilentModeMenu = SILENT_MODE_NORMAL; break; // (probably) not needed
  4023. #else
  4024. case SILENT_MODE_POWER: SilentModeMenu = SILENT_MODE_SILENT; break;
  4025. case SILENT_MODE_SILENT: SilentModeMenu = SILENT_MODE_AUTO; break;
  4026. case SILENT_MODE_AUTO: SilentModeMenu = SILENT_MODE_POWER; break;
  4027. default: SilentModeMenu = SILENT_MODE_POWER; break; // (probably) not needed
  4028. #endif //TMC2130
  4029. }
  4030. eeprom_update_byte((unsigned char *)EEPROM_SILENT, SilentModeMenu);
  4031. #ifdef TMC2130
  4032. lcd_display_message_fullscreen_P(_i("Mode change in progress ..."));
  4033. // Wait until the planner queue is drained and the stepper routine achieves
  4034. // an idle state.
  4035. st_synchronize();
  4036. if (tmc2130_wait_standstill_xy(1000)) {}
  4037. // MYSERIAL.print("standstill OK");
  4038. // else
  4039. // MYSERIAL.print("standstill NG!");
  4040. cli();
  4041. tmc2130_mode = (SilentModeMenu != SILENT_MODE_NORMAL)?TMC2130_MODE_SILENT:TMC2130_MODE_NORMAL;
  4042. update_mode_profile();
  4043. tmc2130_init();
  4044. // We may have missed a stepper timer interrupt due to the time spent in tmc2130_init.
  4045. // Be safe than sorry, reset the stepper timer before re-enabling interrupts.
  4046. st_reset_timer();
  4047. sei();
  4048. #endif //TMC2130
  4049. st_current_init();
  4050. #ifdef TMC2130
  4051. if (lcd_crash_detect_enabled() && (SilentModeMenu != SILENT_MODE_NORMAL))
  4052. menu_submenu(lcd_crash_mode_info2);
  4053. lcd_encoder_diff=0; // reset 'encoder buffer'
  4054. #endif //TMC2130
  4055. }
  4056. #ifdef TMC2130
  4057. static void crash_mode_switch()
  4058. {
  4059. if (lcd_crash_detect_enabled())
  4060. {
  4061. lcd_crash_detect_disable();
  4062. }
  4063. else
  4064. {
  4065. lcd_crash_detect_enable();
  4066. }
  4067. if (IS_SD_PRINTING || is_usb_printing || (lcd_commands_type == LcdCommands::Layer1Cal)) menu_goto(lcd_tune_menu, 9, true, true);
  4068. else menu_goto(lcd_settings_menu, 9, true, true);
  4069. }
  4070. #endif //TMC2130
  4071. #ifdef FILAMENT_SENSOR
  4072. static void lcd_fsensor_state_set()
  4073. {
  4074. FSensorStateMenu = !FSensorStateMenu; //set also from fsensor_enable() and fsensor_disable()
  4075. if (!FSensorStateMenu) {
  4076. fsensor_disable();
  4077. if (fsensor_autoload_enabled && !mmu_enabled)
  4078. menu_submenu(lcd_filament_autoload_info);
  4079. }
  4080. else {
  4081. fsensor_enable();
  4082. if (fsensor_not_responding && !mmu_enabled)
  4083. menu_submenu(lcd_fsensor_fail);
  4084. }
  4085. }
  4086. #endif //FILAMENT_SENSOR
  4087. #if !SDSORT_USES_RAM
  4088. void lcd_set_degree() {
  4089. lcd_set_custom_characters_degree();
  4090. }
  4091. void lcd_set_progress() {
  4092. lcd_set_custom_characters_progress();
  4093. }
  4094. #endif
  4095. #if (LANG_MODE != 0)
  4096. void menu_setlang(unsigned char lang)
  4097. {
  4098. if (!lang_select(lang))
  4099. {
  4100. if (lcd_show_fullscreen_message_yes_no_and_wait_P(_i("Copy selected language?"), false, true))
  4101. lang_boot_update_start(lang);
  4102. lcd_update_enable(true);
  4103. lcd_clear();
  4104. menu_goto(lcd_language_menu, 0, true, true);
  4105. lcd_timeoutToStatus.stop(); //infinite timeout
  4106. lcd_draw_update = 2;
  4107. }
  4108. }
  4109. static void lcd_language_menu()
  4110. {
  4111. MENU_BEGIN();
  4112. if (lang_is_selected()) MENU_ITEM_BACK_P(_T(MSG_SETTINGS)); //
  4113. if (menu_item_text_P(lang_get_name_by_code(lang_get_code(0)))) //primary language
  4114. {
  4115. menu_setlang(0);
  4116. return;
  4117. }
  4118. uint8_t cnt = lang_get_count();
  4119. #ifdef W25X20CL
  4120. if (cnt == 2) //display secondary language in case of clear xflash
  4121. {
  4122. if (menu_item_text_P(lang_get_name_by_code(lang_get_code(1))))
  4123. {
  4124. menu_setlang(1);
  4125. return;
  4126. }
  4127. }
  4128. else
  4129. for (int i = 2; i < cnt; i++) //skip seconday language - solved in lang_select (MK3)
  4130. #else //W25X20CL
  4131. for (int i = 1; i < cnt; i++) //all seconday languages (MK2/25)
  4132. #endif //W25X20CL
  4133. if (menu_item_text_P(lang_get_name_by_code(lang_get_code(i))))
  4134. {
  4135. menu_setlang(i);
  4136. return;
  4137. }
  4138. MENU_END();
  4139. }
  4140. #endif //(LANG_MODE != 0)
  4141. void lcd_mesh_bedleveling()
  4142. {
  4143. mesh_bed_run_from_menu = true;
  4144. enquecommand_P(PSTR("G80"));
  4145. lcd_return_to_status();
  4146. }
  4147. void lcd_mesh_calibration()
  4148. {
  4149. enquecommand_P(PSTR("M45"));
  4150. lcd_return_to_status();
  4151. }
  4152. void lcd_mesh_calibration_z()
  4153. {
  4154. enquecommand_P(PSTR("M45 Z"));
  4155. lcd_return_to_status();
  4156. }
  4157. void lcd_pinda_calibration_menu()
  4158. {
  4159. MENU_BEGIN();
  4160. MENU_ITEM_BACK_P(_T(MSG_MENU_CALIBRATION));
  4161. MENU_ITEM_SUBMENU_P(_i("Calibrate"), lcd_calibrate_pinda);////MSG_CALIBRATE_PINDA c=17 r=1
  4162. MENU_END();
  4163. }
  4164. void lcd_temp_calibration_set() {
  4165. temp_cal_active = !temp_cal_active;
  4166. eeprom_update_byte((unsigned char *)EEPROM_TEMP_CAL_ACTIVE, temp_cal_active);
  4167. st_current_init();
  4168. }
  4169. #ifdef HAS_SECOND_SERIAL_PORT
  4170. void lcd_second_serial_set() {
  4171. if(selectedSerialPort == 1) selectedSerialPort = 0;
  4172. else selectedSerialPort = 1;
  4173. eeprom_update_byte((unsigned char *)EEPROM_SECOND_SERIAL_ACTIVE, selectedSerialPort);
  4174. MYSERIAL.begin(BAUDRATE);
  4175. }
  4176. #endif //HAS_SECOND_SERIAL_PORT
  4177. void lcd_calibrate_pinda() {
  4178. enquecommand_P(PSTR("G76"));
  4179. lcd_return_to_status();
  4180. }
  4181. #ifndef SNMM
  4182. /*void lcd_calibrate_extruder() {
  4183. if (degHotend0() > EXTRUDE_MINTEMP)
  4184. {
  4185. current_position[E_AXIS] = 0; //set initial position to zero
  4186. plan_set_e_position(current_position[E_AXIS]);
  4187. //long steps_start = st_get_position(E_AXIS);
  4188. long steps_final;
  4189. float e_steps_per_unit;
  4190. float feedrate = (180 / axis_steps_per_unit[E_AXIS]) * 1; //3 //initial automatic extrusion feedrate (depends on current value of axis_steps_per_unit to avoid too fast extrusion)
  4191. float e_shift_calibration = (axis_steps_per_unit[E_AXIS] > 180 ) ? ((180 / axis_steps_per_unit[E_AXIS]) * 70): 70; //length of initial automatic extrusion sequence
  4192. const char *msg_e_cal_knob = _i("Rotate knob until mark reaches extruder body. Click when done.");////MSG_E_CAL_KNOB c=20 r=8
  4193. const char *msg_next_e_cal_knob = lcd_display_message_fullscreen_P(msg_e_cal_knob);
  4194. const bool multi_screen = msg_next_e_cal_knob != NULL;
  4195. unsigned long msg_millis;
  4196. lcd_show_fullscreen_message_and_wait_P(_i("Mark filament 100mm from extruder body. Click when done."));////MSG_MARK_FIL c=20 r=8
  4197. lcd_clear();
  4198. lcd_set_cursor(0, 1); lcd_puts_P(_T(MSG_PLEASE_WAIT));
  4199. current_position[E_AXIS] += e_shift_calibration;
  4200. plan_buffer_line_curposXYZE(feedrate, active_extruder);
  4201. st_synchronize();
  4202. lcd_display_message_fullscreen_P(msg_e_cal_knob);
  4203. msg_millis = _millis();
  4204. while (!LCD_CLICKED) {
  4205. if (multi_screen && _millis() - msg_millis > 5000) {
  4206. if (msg_next_e_cal_knob == NULL)
  4207. msg_next_e_cal_knob = msg_e_cal_knob;
  4208. msg_next_e_cal_knob = lcd_display_message_fullscreen_P(msg_next_e_cal_knob);
  4209. msg_millis = _millis();
  4210. }
  4211. //manage_inactivity(true);
  4212. manage_heater();
  4213. if (abs(lcd_encoder_diff) >= ENCODER_PULSES_PER_STEP) { //adjusting mark by knob rotation
  4214. delay_keep_alive(50);
  4215. //previous_millis_cmd = _millis();
  4216. lcd_encoder += (lcd_encoder_diff / ENCODER_PULSES_PER_STEP);
  4217. lcd_encoder_diff = 0;
  4218. if (!planner_queue_full()) {
  4219. current_position[E_AXIS] += float(abs((int)lcd_encoder)) * 0.01; //0.05
  4220. lcd_encoder = 0;
  4221. plan_buffer_line_curposXYZE(feedrate, active_extruder);
  4222. }
  4223. }
  4224. }
  4225. steps_final = current_position[E_AXIS] * axis_steps_per_unit[E_AXIS];
  4226. //steps_final = st_get_position(E_AXIS);
  4227. lcd_draw_update = 1;
  4228. e_steps_per_unit = ((float)(steps_final)) / 100.0f;
  4229. if (e_steps_per_unit < MIN_E_STEPS_PER_UNIT) e_steps_per_unit = MIN_E_STEPS_PER_UNIT;
  4230. if (e_steps_per_unit > MAX_E_STEPS_PER_UNIT) e_steps_per_unit = MAX_E_STEPS_PER_UNIT;
  4231. lcd_clear();
  4232. axis_steps_per_unit[E_AXIS] = e_steps_per_unit;
  4233. enquecommand_P(PSTR("M500")); //store settings to eeprom
  4234. //lcd_drawedit(PSTR("Result"), ftostr31(axis_steps_per_unit[E_AXIS]));
  4235. //delay_keep_alive(2000);
  4236. delay_keep_alive(500);
  4237. lcd_show_fullscreen_message_and_wait_P(_i("E calibration finished. Please clean the nozzle. Click when done."));////MSG_CLEAN_NOZZLE_E c=20 r=8
  4238. lcd_update_enable(true);
  4239. lcd_draw_update = 2;
  4240. }
  4241. else
  4242. {
  4243. show_preheat_nozzle_warning();
  4244. }
  4245. lcd_return_to_status();
  4246. }
  4247. void lcd_extr_cal_reset() {
  4248. float tmp1[] = DEFAULT_AXIS_STEPS_PER_UNIT;
  4249. axis_steps_per_unit[E_AXIS] = tmp1[3];
  4250. //extrudemultiply = 100;
  4251. enquecommand_P(PSTR("M500"));
  4252. }*/
  4253. #endif
  4254. void lcd_toshiba_flash_air_compatibility_toggle()
  4255. {
  4256. card.ToshibaFlashAir_enable(! card.ToshibaFlashAir_isEnabled());
  4257. eeprom_update_byte((uint8_t*)EEPROM_TOSHIBA_FLASH_AIR_COMPATIBLITY, card.ToshibaFlashAir_isEnabled());
  4258. }
  4259. //! @brief Continue first layer calibration with previous value or start from zero?
  4260. //!
  4261. //! @code{.unparsed}
  4262. //! |01234567890123456789|
  4263. //! |[Smooth1]Live adj. Z| c=11
  4264. //! |value set, continue | c=20
  4265. //! |or start from zero? | c=20
  4266. //! |>Continue Reset | c=a, c=b, a+b = 18
  4267. //! ----------------------
  4268. //! @endcode
  4269. void lcd_first_layer_calibration_reset()
  4270. {
  4271. typedef struct
  4272. {
  4273. bool reset;
  4274. } MenuData;
  4275. static_assert(sizeof(menu_data)>= sizeof(MenuData),"_menu_data_t doesn't fit into menu_data");
  4276. MenuData* menuData = (MenuData*)&(menu_data[0]);
  4277. if(LCD_CLICKED || !eeprom_is_sheet_initialized(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet))) ||
  4278. (calibration_status() >= CALIBRATION_STATUS_LIVE_ADJUST) ||
  4279. (0 == static_cast<int16_t>(eeprom_read_word(reinterpret_cast<uint16_t*>
  4280. (&EEPROM_Sheets_base->s[(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))].z_offset)))))
  4281. {
  4282. if (menuData->reset)
  4283. {
  4284. eeprom_update_word(reinterpret_cast<uint16_t*>(&EEPROM_Sheets_base->s[(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))].z_offset), 0xffff);
  4285. }
  4286. menu_goto(lcd_v2_calibration,0,true,true);
  4287. }
  4288. if (lcd_encoder > 0)
  4289. {
  4290. menuData->reset = true;
  4291. lcd_encoder = 1;
  4292. }
  4293. else if (lcd_encoder < 1)
  4294. {
  4295. menuData->reset = false;
  4296. lcd_encoder = 0;
  4297. }
  4298. char sheet_name[sizeof(Sheet::name)];
  4299. eeprom_read_block(sheet_name, &EEPROM_Sheets_base->s[(eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))].name, sizeof(Sheet::name));
  4300. lcd_set_cursor(0, 0);
  4301. lcd_printf_P(_i("[%.7s]Live adj. Z\nvalue set, continue\nor start from zero?\n%cContinue%cReset"), //// \n denotes line break, %.7s is replaced by 7 character long sheet name, %+1.3f is replaced by 6 character long floating point number, %c is replaced by > or white space (one character) based on whether first or second option is selected. % denoted place holders can not be reordered. r=4
  4302. sheet_name, menuData->reset ? ' ' : '>', menuData->reset ? '>' : ' ');
  4303. }
  4304. void lcd_v2_calibration()
  4305. {
  4306. if (mmu_enabled)
  4307. {
  4308. const uint8_t filament = choose_menu_P(
  4309. _i("Select filament:"), ////c=20 r=1
  4310. _T(MSG_FILAMENT),_i("Cancel")); ////c=19 r=1
  4311. if (filament < 5)
  4312. {
  4313. lay1cal_filament = filament;
  4314. }
  4315. else
  4316. {
  4317. menu_back();
  4318. return;
  4319. }
  4320. }
  4321. else if (!eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE))
  4322. {
  4323. bool loaded = false;
  4324. if (fsensor_enabled && ir_sensor_detected)
  4325. {
  4326. loaded = (digitalRead(IR_SENSOR_PIN) == 0);
  4327. }
  4328. else
  4329. {
  4330. loaded = lcd_show_fullscreen_message_yes_no_and_wait_P(_i("Is filament loaded?"), false, true);////MSG_PLA_FILAMENT_LOADED c=20 r=2
  4331. lcd_update_enabled = true;
  4332. }
  4333. if (!loaded)
  4334. {
  4335. lcd_display_message_fullscreen_P(_i("Please load filament first."));////MSG_PLEASE_LOAD_PLA c=20 r=4
  4336. lcd_consume_click();
  4337. for (uint_least8_t i = 0; i < 20; i++) { //wait max. 2s
  4338. delay_keep_alive(100);
  4339. if (lcd_clicked()) {
  4340. break;
  4341. }
  4342. }
  4343. lcd_update_enabled = true;
  4344. menu_back();
  4345. return;
  4346. }
  4347. }
  4348. eFilamentAction = FilamentAction::Lay1Cal;
  4349. menu_goto(lcd_generic_preheat_menu, 0, true, true);
  4350. }
  4351. void lcd_wizard() {
  4352. bool result = true;
  4353. if (calibration_status() != CALIBRATION_STATUS_ASSEMBLED) {
  4354. result = lcd_show_multiscreen_message_yes_no_and_wait_P(_i("Running Wizard will delete current calibration results and start from the beginning. Continue?"), false, false);////MSG_WIZARD_RERUN c=20 r=7
  4355. }
  4356. if (result) {
  4357. calibration_status_store(CALIBRATION_STATUS_ASSEMBLED);
  4358. lcd_wizard(WizState::Run);
  4359. }
  4360. else {
  4361. lcd_return_to_status();
  4362. lcd_update_enable(true);
  4363. lcd_update(2);
  4364. }
  4365. }
  4366. void lcd_language()
  4367. {
  4368. lcd_update_enable(true);
  4369. lcd_clear();
  4370. menu_goto(lcd_language_menu, 0, true, true);
  4371. lcd_timeoutToStatus.stop(); //infinite timeout
  4372. lcd_draw_update = 2;
  4373. while ((menu_menu != lcd_status_screen) && (!lang_is_selected()))
  4374. {
  4375. _delay(50);
  4376. lcd_update(0);
  4377. manage_heater();
  4378. manage_inactivity(true);
  4379. }
  4380. if (lang_is_selected())
  4381. lcd_return_to_status();
  4382. else
  4383. lang_select(LANG_ID_PRI);
  4384. }
  4385. static void wait_preheat()
  4386. {
  4387. current_position[Z_AXIS] = 100; //move in z axis to make space for loading filament
  4388. plan_buffer_line_curposXYZE(homing_feedrate[Z_AXIS] / 60, active_extruder);
  4389. delay_keep_alive(2000);
  4390. lcd_display_message_fullscreen_P(_T(MSG_WIZARD_HEATING));
  4391. lcd_set_custom_characters();
  4392. while (abs(degHotend(0) - degTargetHotend(0)) > 3) {
  4393. lcd_display_message_fullscreen_P(_T(MSG_WIZARD_HEATING));
  4394. lcd_set_cursor(0, 4);
  4395. //Print the hotend temperature (9 chars total)
  4396. lcdui_print_temp(LCD_STR_THERMOMETER[0], (int)(degHotend(0) + 0.5), (int)(degTargetHotend(0) + 0.5));
  4397. delay_keep_alive(1000);
  4398. }
  4399. }
  4400. static void lcd_wizard_load()
  4401. {
  4402. if (mmu_enabled)
  4403. {
  4404. lcd_show_fullscreen_message_and_wait_P(_i("Please insert filament to the first tube of MMU, then press the knob to load it."));////c=20 r=8
  4405. tmp_extruder = 0;
  4406. }
  4407. else
  4408. {
  4409. lcd_show_fullscreen_message_and_wait_P(_i("Please insert filament to the extruder, then press knob to load it."));////MSG_WIZARD_LOAD_FILAMENT c=20 r=8
  4410. }
  4411. lcd_update_enable(false);
  4412. lcd_clear();
  4413. lcd_puts_at_P(0, 2, _T(MSG_LOADING_FILAMENT));
  4414. #ifdef SNMM
  4415. change_extr(0);
  4416. #endif
  4417. loading_flag = true;
  4418. gcode_M701();
  4419. }
  4420. bool lcd_autoDepleteEnabled()
  4421. {
  4422. return (lcd_autoDeplete && fsensor_enabled);
  4423. }
  4424. static void wizard_lay1cal_message(bool cold)
  4425. {
  4426. lcd_show_fullscreen_message_and_wait_P(
  4427. _i("Now I will calibrate distance between tip of the nozzle and heatbed surface.")); ////MSG_WIZARD_V2_CAL c=20 r=8
  4428. if (mmu_enabled)
  4429. {
  4430. lcd_show_fullscreen_message_and_wait_P(
  4431. _i("First you will select filament you wish to use for calibration. Then select temperature which matches your material."));
  4432. }
  4433. else if (cold)
  4434. {
  4435. lcd_show_fullscreen_message_and_wait_P(
  4436. _i("Select temperature which matches your material."));
  4437. }
  4438. lcd_show_fullscreen_message_and_wait_P(
  4439. _i("I will start to print line and you will gradually lower the nozzle by rotating the knob, until you reach optimal height. Check the pictures in our handbook in chapter Calibration.")); ////MSG_WIZARD_V2_CAL_2 c=20 r=12
  4440. }
  4441. //! @brief Printer first run wizard (Selftest and calibration)
  4442. //!
  4443. //!
  4444. //! First layer calibration with MMU state diagram
  4445. //!
  4446. //! @startuml
  4447. //! [*] --> IsFil
  4448. //! IsFil : Is any filament loaded?
  4449. //! LoadFilCold : Push the button to start loading Filament 1
  4450. //!
  4451. //! IsFil --> Lay1CalCold : yes
  4452. //! IsFil --> LoadFilCold : no
  4453. //! LoadFilCold --> Lay1CalCold : click
  4454. //! @enduml
  4455. //!
  4456. //! First layer calibration without MMU state diagram
  4457. //!
  4458. //! @startuml
  4459. //! [*] --> IsFil
  4460. //! IsFil : Is filament loaded?
  4461. //! Preheat : Select nozle temperature which matches your material.
  4462. //! LoadFilHot : Insert filament to extruder and press the knob.
  4463. //!
  4464. //! IsFil --> Lay1CalCold : yes
  4465. //! IsFil --> Preheat : no
  4466. //! Preheat --> LoadFilHot : select
  4467. //! LoadFilHot --> Lay1CalHot : click
  4468. //! @enduml
  4469. //!
  4470. //! @param state Entry point of the wizard
  4471. //!
  4472. //! state | description
  4473. //! ---------------------- | ----------------
  4474. //! WizState::Run | Main entry point
  4475. //! WizState::RepeatLay1Cal | Entry point after passing 1st layer calibration
  4476. //! WizState::LoadFilHot | Entry point after temporarily left for preheat before load filament
  4477. void lcd_wizard(WizState state)
  4478. {
  4479. using S = WizState;
  4480. bool end = false;
  4481. int wizard_event;
  4482. const char *msg = NULL;
  4483. // Make sure EEPROM_WIZARD_ACTIVE is true if entering using different entry point
  4484. // other than WizState::Run - it is useful for debugging wizard.
  4485. if (state != S::Run) eeprom_update_byte((uint8_t*)EEPROM_WIZARD_ACTIVE, 1);
  4486. while (!end) {
  4487. printf_P(PSTR("Wizard state: %d\n"), state);
  4488. switch (state) {
  4489. case S::Run: //Run wizard?
  4490. // 2019-08-07 brutal hack - solving the "viper" situation.
  4491. // It is caused by the fact, that tmc2130_st_isr makes a crash detection before the printers really starts.
  4492. // And thus it calles stop_and_save_print_to_ram which sets the saved_printing flag.
  4493. // Having this flag set during normal printing is lethal - mesh_plan_buffer_line exist in the middle of planning long travels
  4494. // which results in distorted print.
  4495. // This primarily happens when the printer is new and parked in 0,0
  4496. // So any new printer will fail the first layer calibration unless being reset or the Stop function gets called.
  4497. // We really must find a way to prevent the crash from happening before the printer is started - that would be the correct solution.
  4498. // Btw. the flag may even trigger the viper situation on normal start this way and the user won't be able to find out why.
  4499. saved_printing = false;
  4500. wizard_event = lcd_show_multiscreen_message_yes_no_and_wait_P(_i("Hi, I am your Original Prusa i3 printer. Would you like me to guide you through the setup process?"), false, true);////MSG_WIZARD_WELCOME c=20 r=7
  4501. if (wizard_event) {
  4502. state = S::Restore;
  4503. eeprom_update_byte((uint8_t*)EEPROM_WIZARD_ACTIVE, 1);
  4504. }
  4505. else {
  4506. eeprom_update_byte((uint8_t*)EEPROM_WIZARD_ACTIVE, 0);
  4507. end = true;
  4508. }
  4509. break;
  4510. case S::Restore:
  4511. switch (calibration_status()) {
  4512. case CALIBRATION_STATUS_ASSEMBLED: state = S::Selftest; break; //run selftest
  4513. case CALIBRATION_STATUS_XYZ_CALIBRATION: state = S::Xyz; break; //run xyz cal.
  4514. case CALIBRATION_STATUS_Z_CALIBRATION: state = S::Z; break; //run z cal.
  4515. case CALIBRATION_STATUS_LIVE_ADJUST: state = S::IsFil; break; //run live adjust
  4516. case CALIBRATION_STATUS_CALIBRATED: end = true; eeprom_update_byte((uint8_t*)EEPROM_WIZARD_ACTIVE, 0); break;
  4517. default: state = S::Selftest; break; //if calibration status is unknown, run wizard from the beginning
  4518. }
  4519. break;
  4520. case S::Selftest:
  4521. lcd_show_fullscreen_message_and_wait_P(_i("First, I will run the selftest to check most common assembly problems."));////MSG_WIZARD_SELFTEST c=20 r=8
  4522. wizard_event = lcd_selftest();
  4523. if (wizard_event) {
  4524. calibration_status_store(CALIBRATION_STATUS_XYZ_CALIBRATION);
  4525. state = S::Xyz;
  4526. }
  4527. else end = true;
  4528. break;
  4529. case S::Xyz:
  4530. lcd_show_fullscreen_message_and_wait_P(_i("I will run xyz calibration now. It will take approx. 12 mins."));////MSG_WIZARD_XYZ_CAL c=20 r=8
  4531. wizard_event = gcode_M45(false, 0);
  4532. if (wizard_event) state = S::IsFil;
  4533. else end = true;
  4534. break;
  4535. case S::Z:
  4536. lcd_show_fullscreen_message_and_wait_P(_i("Please remove shipping helpers first."));
  4537. lcd_show_fullscreen_message_and_wait_P(_i("Now remove the test print from steel sheet."));
  4538. lcd_show_fullscreen_message_and_wait_P(_i("I will run z calibration now."));////MSG_WIZARD_Z_CAL c=20 r=8
  4539. wizard_event = lcd_show_fullscreen_message_yes_no_and_wait_P(_T(MSG_STEEL_SHEET_CHECK), false, false);
  4540. if (!wizard_event) lcd_show_fullscreen_message_and_wait_P(_T(MSG_PLACE_STEEL_SHEET));
  4541. wizard_event = gcode_M45(true, 0);
  4542. if (wizard_event) {
  4543. //current filament needs to be unloaded and then new filament should be loaded
  4544. //start to preheat nozzle for unloading remaining PLA filament
  4545. setTargetHotend(PLA_PREHEAT_HOTEND_TEMP, 0);
  4546. lcd_display_message_fullscreen_P(_i("Now I will preheat nozzle for PLA."));
  4547. wait_preheat();
  4548. //unload current filament
  4549. unload_filament();
  4550. //load filament
  4551. lcd_wizard_load();
  4552. setTargetHotend(0, 0); //we are finished, cooldown nozzle
  4553. state = S::Finish; //shipped, no need to set first layer, go to final message directly
  4554. }
  4555. else end = true;
  4556. break;
  4557. case S::IsFil:
  4558. //start to preheat nozzle and bed to save some time later
  4559. setTargetHotend(PLA_PREHEAT_HOTEND_TEMP, 0);
  4560. setTargetBed(PLA_PREHEAT_HPB_TEMP);
  4561. if (mmu_enabled)
  4562. {
  4563. wizard_event = lcd_show_fullscreen_message_yes_no_and_wait_P(_i("Is any filament loaded?"), true);////c=20 r=2
  4564. } else
  4565. {
  4566. wizard_event = lcd_show_fullscreen_message_yes_no_and_wait_P(_i("Is filament loaded?"), true);////MSG_WIZARD_FILAMENT_LOADED c=20 r=2
  4567. }
  4568. if (wizard_event) state = S::Lay1CalCold;
  4569. else
  4570. {
  4571. if(mmu_enabled) state = S::LoadFilCold;
  4572. else state = S::Preheat;
  4573. }
  4574. break;
  4575. case S::Preheat:
  4576. menu_goto(lcd_preheat_menu,0,false,true);
  4577. lcd_show_fullscreen_message_and_wait_P(_i("Select nozzle preheat temperature which matches your material."));
  4578. end = true; // Leave wizard temporarily for lcd_preheat_menu
  4579. break;
  4580. case S::LoadFilHot:
  4581. wait_preheat();
  4582. lcd_wizard_load();
  4583. state = S::Lay1CalHot;
  4584. break;
  4585. case S::LoadFilCold:
  4586. lcd_wizard_load();
  4587. state = S::Lay1CalCold;
  4588. break;
  4589. case S::Lay1CalCold:
  4590. wizard_lay1cal_message(true);
  4591. menu_goto(lcd_v2_calibration,0,false,true);
  4592. end = true; // Leave wizard temporarily for lcd_v2_calibration
  4593. break;
  4594. case S::Lay1CalHot:
  4595. wizard_lay1cal_message(false);
  4596. lcd_commands_type = LcdCommands::Layer1Cal;
  4597. end = true; // Leave wizard temporarily for lcd_v2_calibration
  4598. break;
  4599. case S::RepeatLay1Cal:
  4600. wizard_event = lcd_show_multiscreen_message_yes_no_and_wait_P(_i("Do you want to repeat last step to readjust distance between nozzle and heatbed?"), false);////MSG_WIZARD_REPEAT_V2_CAL c=20 r=7
  4601. if (wizard_event)
  4602. {
  4603. lcd_show_fullscreen_message_and_wait_P(_i("Please clean heatbed and then press the knob."));////MSG_WIZARD_CLEAN_HEATBED c=20 r=8
  4604. state = S::Lay1CalCold;
  4605. }
  4606. else
  4607. {
  4608. lcd_show_fullscreen_message_and_wait_P(_i("If you have more steel sheets you can calibrate additional presets in Settings / HW Setup / Steel sheets."));
  4609. state = S::Finish;
  4610. }
  4611. break;
  4612. case S::Finish:
  4613. eeprom_update_byte((uint8_t*)EEPROM_WIZARD_ACTIVE, 0);
  4614. end = true;
  4615. break;
  4616. default: break;
  4617. }
  4618. }
  4619. printf_P(_N("Wizard end state: %d\n"), state);
  4620. switch (state) { //final message
  4621. case S::Restore: //printer was already calibrated
  4622. msg = _T(MSG_WIZARD_DONE);
  4623. break;
  4624. case S::Selftest: //selftest
  4625. case S::Xyz: //xyz cal.
  4626. case S::Z: //z cal.
  4627. msg = _T(MSG_WIZARD_CALIBRATION_FAILED);
  4628. break;
  4629. case S::Finish: //we are finished
  4630. msg = _T(MSG_WIZARD_DONE);
  4631. lcd_reset_alert_level();
  4632. lcd_setstatuspgm(_T(WELCOME_MSG));
  4633. lcd_return_to_status();
  4634. break;
  4635. default:
  4636. msg = _T(MSG_WIZARD_QUIT);
  4637. break;
  4638. }
  4639. if (!((S::Lay1CalCold == state) || (S::Lay1CalHot == state) || (S::Preheat == state)))
  4640. {
  4641. lcd_show_fullscreen_message_and_wait_P(msg);
  4642. }
  4643. lcd_update_enable(true);
  4644. lcd_update(2);
  4645. }
  4646. #ifdef TMC2130
  4647. void lcd_settings_linearity_correction_menu(void)
  4648. {
  4649. MENU_BEGIN();
  4650. ON_MENU_LEAVE(
  4651. lcd_settings_linearity_correction_menu_save();
  4652. );
  4653. MENU_ITEM_BACK_P(_T(MSG_SETTINGS));
  4654. #ifdef TMC2130_LINEARITY_CORRECTION_XYZ
  4655. //tmc2130_wave_fac[X_AXIS]
  4656. MENU_ITEM_EDIT_int3_P(_i("X-correct:"), &tmc2130_wave_fac[X_AXIS], TMC2130_WAVE_FAC1000_MIN-TMC2130_WAVE_FAC1000_STP, TMC2130_WAVE_FAC1000_MAX);////MSG_EXTRUDER_CORRECTION c=10
  4657. MENU_ITEM_EDIT_int3_P(_i("Y-correct:"), &tmc2130_wave_fac[Y_AXIS], TMC2130_WAVE_FAC1000_MIN-TMC2130_WAVE_FAC1000_STP, TMC2130_WAVE_FAC1000_MAX);////MSG_EXTRUDER_CORRECTION c=10
  4658. MENU_ITEM_EDIT_int3_P(_i("Z-correct:"), &tmc2130_wave_fac[Z_AXIS], TMC2130_WAVE_FAC1000_MIN-TMC2130_WAVE_FAC1000_STP, TMC2130_WAVE_FAC1000_MAX);////MSG_EXTRUDER_CORRECTION c=10
  4659. #endif //TMC2130_LINEARITY_CORRECTION_XYZ
  4660. MENU_ITEM_EDIT_int3_P(_i("E-correct:"), &tmc2130_wave_fac[E_AXIS], TMC2130_WAVE_FAC1000_MIN-TMC2130_WAVE_FAC1000_STP, TMC2130_WAVE_FAC1000_MAX);////MSG_EXTRUDER_CORRECTION c=10
  4661. MENU_END();
  4662. }
  4663. #endif // TMC2130
  4664. #ifdef FILAMENT_SENSOR
  4665. #define SETTINGS_FILAMENT_SENSOR \
  4666. do\
  4667. {\
  4668. if (FSensorStateMenu == 0)\
  4669. {\
  4670. if (fsensor_not_responding && (mmu_enabled == false))\
  4671. {\
  4672. /* Filament sensor not working*/\
  4673. MENU_ITEM_FUNCTION_P(_i("Fil. sensor [N/A]"), lcd_fsensor_state_set);/*////MSG_FSENSOR_NA*/\
  4674. MENU_ITEM_SUBMENU_P(_T(MSG_FSENS_AUTOLOAD_NA), lcd_fsensor_fail);\
  4675. }\
  4676. else\
  4677. {\
  4678. /* Filament sensor turned off, working, no problems*/\
  4679. MENU_ITEM_FUNCTION_P(_T(MSG_FSENSOR_OFF), lcd_fsensor_state_set);\
  4680. if (mmu_enabled == false)\
  4681. {\
  4682. MENU_ITEM_SUBMENU_P(_T(MSG_FSENS_AUTOLOAD_NA), lcd_filament_autoload_info);\
  4683. }\
  4684. }\
  4685. }\
  4686. else\
  4687. {\
  4688. /* Filament sensor turned on, working, no problems*/\
  4689. MENU_ITEM_FUNCTION_P(_T(MSG_FSENSOR_ON), lcd_fsensor_state_set);\
  4690. if (mmu_enabled == false)\
  4691. {\
  4692. if (fsensor_autoload_enabled)\
  4693. MENU_ITEM_FUNCTION_P(_i("F. autoload [on]"), lcd_set_filament_autoload);/*////MSG_FSENS_AUTOLOAD_ON c=17 r=1*/\
  4694. else\
  4695. MENU_ITEM_FUNCTION_P(_i("F. autoload [off]"), lcd_set_filament_autoload);/*////MSG_FSENS_AUTOLOAD_OFF c=17 r=1*/\
  4696. /*if (fsensor_oq_meassure_enabled)*/\
  4697. /*MENU_ITEM_FUNCTION_P(_i("F. OQ meass. [on]"), lcd_set_filament_oq_meass);*//*////MSG_FSENS_OQMEASS_ON c=17 r=1*/\
  4698. /*else*/\
  4699. /*MENU_ITEM_FUNCTION_P(_i("F. OQ meass.[off]"), lcd_set_filament_oq_meass);*//*////MSG_FSENS_OQMEASS_OFF c=17 r=1*/\
  4700. }\
  4701. }\
  4702. }\
  4703. while(0)
  4704. #else //FILAMENT_SENSOR
  4705. #define SETTINGS_FILAMENT_SENSOR do{}while(0)
  4706. #endif //FILAMENT_SENSOR
  4707. static void auto_deplete_switch()
  4708. {
  4709. lcd_autoDeplete = !lcd_autoDeplete;
  4710. eeprom_update_byte((unsigned char *)EEPROM_AUTO_DEPLETE, lcd_autoDeplete);
  4711. }
  4712. static bool settingsAutoDeplete()
  4713. {
  4714. if (mmu_enabled)
  4715. {
  4716. if (!fsensor_enabled)
  4717. {
  4718. if (menu_item_text_P(_i("SpoolJoin [N/A]"))) return true;
  4719. }
  4720. else if (lcd_autoDeplete)
  4721. {
  4722. if (menu_item_function_P(_i("SpoolJoin [on]"), auto_deplete_switch)) return true;
  4723. }
  4724. else
  4725. {
  4726. if (menu_item_function_P(_i("SpoolJoin [off]"), auto_deplete_switch)) return true;
  4727. }
  4728. }
  4729. return false;
  4730. }
  4731. #define SETTINGS_AUTO_DEPLETE \
  4732. do\
  4733. {\
  4734. if(settingsAutoDeplete()) return;\
  4735. }\
  4736. while(0)\
  4737. #ifdef MMU_HAS_CUTTER
  4738. static bool settingsCutter()
  4739. {
  4740. if (mmu_enabled)
  4741. {
  4742. if (EEPROM_MMU_CUTTER_ENABLED_enabled == eeprom_read_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED))
  4743. {
  4744. if (menu_item_function_P(_i("Cutter [on]"), lcd_cutter_enabled)) return true;//// c=17 r=1
  4745. }
  4746. #ifdef MMU_ALWAYS_CUT
  4747. else if (EEPROM_MMU_CUTTER_ENABLED_always == eeprom_read_byte((uint8_t*)EEPROM_MMU_CUTTER_ENABLED))
  4748. {
  4749. if (menu_item_function_P(_i("Cutter [always]"), lcd_cutter_enabled)) return true;//// c=17 r=1
  4750. }
  4751. #endif
  4752. else
  4753. {
  4754. if (menu_item_function_P(_i("Cutter [off]"), lcd_cutter_enabled)) return true;//// c=17 r=1
  4755. }
  4756. }
  4757. return false;
  4758. }
  4759. #define SETTINGS_CUTTER \
  4760. do\
  4761. {\
  4762. if(settingsCutter()) return;\
  4763. }\
  4764. while(0)
  4765. #else
  4766. #define SETTINGS_CUTTER
  4767. #endif //MMU_HAS_CUTTER
  4768. #ifdef TMC2130
  4769. #define SETTINGS_SILENT_MODE \
  4770. do\
  4771. {\
  4772. if(!farm_mode)\
  4773. {\
  4774. if (SilentModeMenu == SILENT_MODE_NORMAL)\
  4775. {\
  4776. MENU_ITEM_FUNCTION_P(_T(MSG_STEALTH_MODE_OFF), lcd_silent_mode_set);\
  4777. }\
  4778. else MENU_ITEM_FUNCTION_P(_T(MSG_STEALTH_MODE_ON), lcd_silent_mode_set);\
  4779. if (SilentModeMenu == SILENT_MODE_NORMAL)\
  4780. {\
  4781. if (lcd_crash_detect_enabled())\
  4782. {\
  4783. MENU_ITEM_FUNCTION_P(_T(MSG_CRASHDETECT_ON), crash_mode_switch);\
  4784. }\
  4785. else MENU_ITEM_FUNCTION_P(_T(MSG_CRASHDETECT_OFF), crash_mode_switch);\
  4786. }\
  4787. else MENU_ITEM_SUBMENU_P(_T(MSG_CRASHDETECT_NA), lcd_crash_mode_info);\
  4788. }\
  4789. }\
  4790. while (0)
  4791. #else //TMC2130
  4792. #define SETTINGS_SILENT_MODE \
  4793. do\
  4794. {\
  4795. if(!farm_mode)\
  4796. {\
  4797. switch (SilentModeMenu)\
  4798. {\
  4799. case SILENT_MODE_POWER:\
  4800. MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_OFF), lcd_silent_mode_set);\
  4801. break;\
  4802. case SILENT_MODE_SILENT:\
  4803. MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_ON), lcd_silent_mode_set);\
  4804. break;\
  4805. case SILENT_MODE_AUTO:\
  4806. MENU_ITEM_FUNCTION_P(_T(MSG_AUTO_MODE_ON), lcd_silent_mode_set);\
  4807. break;\
  4808. default:\
  4809. MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_OFF), lcd_silent_mode_set);\
  4810. break; /* (probably) not needed*/\
  4811. }\
  4812. }\
  4813. }\
  4814. while (0)
  4815. #endif //TMC2130
  4816. #ifndef MMU_FORCE_STEALTH_MODE
  4817. #define SETTINGS_MMU_MODE \
  4818. do\
  4819. {\
  4820. if (mmu_enabled)\
  4821. {\
  4822. if (SilentModeMenu_MMU == 0) MENU_ITEM_FUNCTION_P(_i("MMU Mode [Normal]"), lcd_silent_mode_mmu_set); \
  4823. else MENU_ITEM_FUNCTION_P(_i("MMU Mode[Stealth]"), lcd_silent_mode_mmu_set); \
  4824. }\
  4825. }\
  4826. while (0)
  4827. #else //MMU_FORCE_STEALTH_MODE
  4828. #define SETTINGS_MMU_MODE
  4829. #endif //MMU_FORCE_STEALTH_MODE
  4830. #ifdef SDCARD_SORT_ALPHA
  4831. #define SETTINGS_SD \
  4832. do\
  4833. {\
  4834. if (card.ToshibaFlashAir_isEnabled())\
  4835. MENU_ITEM_FUNCTION_P(_i("SD card [flshAir]"), lcd_toshiba_flash_air_compatibility_toggle);/*////MSG_TOSHIBA_FLASH_AIR_COMPATIBILITY_ON c=19 r=1*/\
  4836. else\
  4837. MENU_ITEM_FUNCTION_P(_i("SD card [normal]"), lcd_toshiba_flash_air_compatibility_toggle);/*////MSG_TOSHIBA_FLASH_AIR_COMPATIBILITY_OFF c=19 r=1*/\
  4838. \
  4839. if (!farm_mode)\
  4840. {\
  4841. uint8_t sdSort;\
  4842. EEPROM_read(EEPROM_SD_SORT, (uint8_t*)&sdSort, sizeof(sdSort));\
  4843. switch (sdSort)\
  4844. {\
  4845. case SD_SORT_TIME: MENU_ITEM_FUNCTION_P(_i("Sort [time]"), lcd_sort_type_set); break;/*////MSG_SORT_TIME c=17 r=1*/\
  4846. case SD_SORT_ALPHA: MENU_ITEM_FUNCTION_P(_i("Sort [alphabet]"), lcd_sort_type_set); break;/*////MSG_SORT_ALPHA c=17 r=1*/\
  4847. default: MENU_ITEM_FUNCTION_P(_i("Sort [none]"), lcd_sort_type_set);/*////MSG_SORT_NONE c=17 r=1*/\
  4848. }\
  4849. }\
  4850. }\
  4851. while (0)
  4852. #else // SDCARD_SORT_ALPHA
  4853. #define SETTINGS_SD \
  4854. do\
  4855. {\
  4856. if (card.ToshibaFlashAir_isEnabled())\
  4857. MENU_ITEM_FUNCTION_P(_i("SD card [flshAir]"), lcd_toshiba_flash_air_compatibility_toggle);/*////MSG_TOSHIBA_FLASH_AIR_COMPATIBILITY_ON c=19 r=1*/\
  4858. else\
  4859. MENU_ITEM_FUNCTION_P(_i("SD card [normal]"), lcd_toshiba_flash_air_compatibility_toggle);/*////MSG_TOSHIBA_FLASH_AIR_COMPATIBILITY_OFF c=19 r=1*/\
  4860. }\
  4861. while (0)
  4862. #endif // SDCARD_SORT_ALPHA
  4863. /*
  4864. #define SETTINGS_MBL_MODE \
  4865. do\
  4866. {\
  4867. switch(e_mbl_type)\
  4868. {\
  4869. case e_MBL_FAST:\
  4870. MENU_ITEM_FUNCTION_P(_i("Mode [Fast]"),mbl_mode_set);\
  4871. break; \
  4872. case e_MBL_OPTIMAL:\
  4873. MENU_ITEM_FUNCTION_P(_i("Mode [Optimal]"), mbl_mode_set); \
  4874. break; \
  4875. case e_MBL_PREC:\
  4876. MENU_ITEM_FUNCTION_P(_i("Mode [Precise]"), mbl_mode_set); \
  4877. break; \
  4878. default:\
  4879. MENU_ITEM_FUNCTION_P(_i("Mode [Optimal]"), mbl_mode_set); \
  4880. break; \
  4881. }\
  4882. }\
  4883. while (0)
  4884. */
  4885. #define SETTINGS_SOUND \
  4886. do\
  4887. {\
  4888. switch(eSoundMode)\
  4889. {\
  4890. case e_SOUND_MODE_LOUD:\
  4891. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_LOUD),lcd_sound_state_set);\
  4892. break;\
  4893. case e_SOUND_MODE_ONCE:\
  4894. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_ONCE),lcd_sound_state_set);\
  4895. break;\
  4896. case e_SOUND_MODE_SILENT:\
  4897. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_SILENT),lcd_sound_state_set);\
  4898. break;\
  4899. case e_SOUND_MODE_BLIND:\
  4900. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_BLIND),lcd_sound_state_set);\
  4901. break;\
  4902. default:\
  4903. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_LOUD),lcd_sound_state_set);\
  4904. }\
  4905. }\
  4906. while (0)
  4907. //-//
  4908. static void lcd_check_mode_set(void)
  4909. {
  4910. switch(oCheckMode)
  4911. {
  4912. case ClCheckMode::_None:
  4913. oCheckMode=ClCheckMode::_Warn;
  4914. break;
  4915. case ClCheckMode::_Warn:
  4916. oCheckMode=ClCheckMode::_Strict;
  4917. break;
  4918. case ClCheckMode::_Strict:
  4919. oCheckMode=ClCheckMode::_None;
  4920. break;
  4921. default:
  4922. oCheckMode=ClCheckMode::_None;
  4923. }
  4924. eeprom_update_byte((uint8_t*)EEPROM_CHECK_MODE,(uint8_t)oCheckMode);
  4925. }
  4926. #define SETTINGS_MODE \
  4927. do\
  4928. {\
  4929. switch(oCheckMode)\
  4930. {\
  4931. case ClCheckMode::_None:\
  4932. MENU_ITEM_FUNCTION_P(_i("Nozzle [none]"),lcd_check_mode_set);\
  4933. break;\
  4934. case ClCheckMode::_Warn:\
  4935. MENU_ITEM_FUNCTION_P(_i("Nozzle [warn]"),lcd_check_mode_set);\
  4936. break;\
  4937. case ClCheckMode::_Strict:\
  4938. MENU_ITEM_FUNCTION_P(_i("Nozzle [strict]"),lcd_check_mode_set);\
  4939. break;\
  4940. default:\
  4941. MENU_ITEM_FUNCTION_P(_i("Nozzle [none]"),lcd_check_mode_set);\
  4942. }\
  4943. }\
  4944. while (0)
  4945. static void lcd_nozzle_diameter_set(void)
  4946. {
  4947. uint16_t nDiameter;
  4948. switch(oNozzleDiameter)
  4949. {
  4950. case ClNozzleDiameter::_Diameter_250:
  4951. oNozzleDiameter=ClNozzleDiameter::_Diameter_400;
  4952. nDiameter=400;
  4953. break;
  4954. case ClNozzleDiameter::_Diameter_400:
  4955. oNozzleDiameter=ClNozzleDiameter::_Diameter_600;
  4956. nDiameter=600;
  4957. break;
  4958. case ClNozzleDiameter::_Diameter_600:
  4959. oNozzleDiameter=ClNozzleDiameter::_Diameter_250;
  4960. nDiameter=250;
  4961. break;
  4962. default:
  4963. oNozzleDiameter=ClNozzleDiameter::_Diameter_400;
  4964. nDiameter=400;
  4965. }
  4966. eeprom_update_byte((uint8_t*)EEPROM_NOZZLE_DIAMETER,(uint8_t)oNozzleDiameter);
  4967. eeprom_update_word((uint16_t*)EEPROM_NOZZLE_DIAMETER_uM,nDiameter);
  4968. }
  4969. #define SETTINGS_NOZZLE \
  4970. do\
  4971. {\
  4972. switch(oNozzleDiameter)\
  4973. {\
  4974. case ClNozzleDiameter::_Diameter_250:\
  4975. MENU_ITEM_FUNCTION_P(_i("Nozzle d. [0.25]"),lcd_nozzle_diameter_set);\
  4976. break;\
  4977. case ClNozzleDiameter::_Diameter_400:\
  4978. MENU_ITEM_FUNCTION_P(_i("Nozzle d. [0.40]"),lcd_nozzle_diameter_set);\
  4979. break;\
  4980. case ClNozzleDiameter::_Diameter_600:\
  4981. MENU_ITEM_FUNCTION_P(_i("Nozzle d. [0.60]"),lcd_nozzle_diameter_set);\
  4982. break;\
  4983. default:\
  4984. MENU_ITEM_FUNCTION_P(_i("Nozzle d. [0.40]"),lcd_nozzle_diameter_set);\
  4985. }\
  4986. }\
  4987. while (0)
  4988. static void lcd_check_model_set(void)
  4989. {
  4990. switch(oCheckModel)
  4991. {
  4992. case ClCheckModel::_None:
  4993. oCheckModel=ClCheckModel::_Warn;
  4994. break;
  4995. case ClCheckModel::_Warn:
  4996. oCheckModel=ClCheckModel::_Strict;
  4997. break;
  4998. case ClCheckModel::_Strict:
  4999. oCheckModel=ClCheckModel::_None;
  5000. break;
  5001. default:
  5002. oCheckModel=ClCheckModel::_None;
  5003. }
  5004. eeprom_update_byte((uint8_t*)EEPROM_CHECK_MODEL,(uint8_t)oCheckModel);
  5005. }
  5006. #define SETTINGS_MODEL \
  5007. do\
  5008. {\
  5009. switch(oCheckModel)\
  5010. {\
  5011. case ClCheckModel::_None:\
  5012. MENU_ITEM_FUNCTION_P(_i("Model [none]"),lcd_check_model_set);\
  5013. break;\
  5014. case ClCheckModel::_Warn:\
  5015. MENU_ITEM_FUNCTION_P(_i("Model [warn]"),lcd_check_model_set);\
  5016. break;\
  5017. case ClCheckModel::_Strict:\
  5018. MENU_ITEM_FUNCTION_P(_i("Model [strict]"),lcd_check_model_set);\
  5019. break;\
  5020. default:\
  5021. MENU_ITEM_FUNCTION_P(_i("Model [none]"),lcd_check_model_set);\
  5022. }\
  5023. }\
  5024. while (0)
  5025. static void lcd_check_version_set(void)
  5026. {
  5027. switch(oCheckVersion)
  5028. {
  5029. case ClCheckVersion::_None:
  5030. oCheckVersion=ClCheckVersion::_Warn;
  5031. break;
  5032. case ClCheckVersion::_Warn:
  5033. oCheckVersion=ClCheckVersion::_Strict;
  5034. break;
  5035. case ClCheckVersion::_Strict:
  5036. oCheckVersion=ClCheckVersion::_None;
  5037. break;
  5038. default:
  5039. oCheckVersion=ClCheckVersion::_None;
  5040. }
  5041. eeprom_update_byte((uint8_t*)EEPROM_CHECK_VERSION,(uint8_t)oCheckVersion);
  5042. }
  5043. #define SETTINGS_VERSION \
  5044. do\
  5045. {\
  5046. switch(oCheckVersion)\
  5047. {\
  5048. case ClCheckVersion::_None:\
  5049. MENU_ITEM_FUNCTION_P(_i("Firmware [none]"),lcd_check_version_set);\
  5050. break;\
  5051. case ClCheckVersion::_Warn:\
  5052. MENU_ITEM_FUNCTION_P(_i("Firmware [warn]"),lcd_check_version_set);\
  5053. break;\
  5054. case ClCheckVersion::_Strict:\
  5055. MENU_ITEM_FUNCTION_P(_i("Firmware [strict]"),lcd_check_version_set);\
  5056. break;\
  5057. default:\
  5058. MENU_ITEM_FUNCTION_P(_i("Firmware [none]"),lcd_check_version_set);\
  5059. }\
  5060. }\
  5061. while (0)
  5062. static void lcd_check_gcode_set(void)
  5063. {
  5064. switch(oCheckGcode)
  5065. {
  5066. case ClCheckGcode::_None:
  5067. oCheckGcode=ClCheckGcode::_Warn;
  5068. break;
  5069. case ClCheckGcode::_Warn:
  5070. oCheckGcode=ClCheckGcode::_Strict;
  5071. break;
  5072. case ClCheckGcode::_Strict:
  5073. oCheckGcode=ClCheckGcode::_None;
  5074. break;
  5075. default:
  5076. oCheckGcode=ClCheckGcode::_None;
  5077. }
  5078. eeprom_update_byte((uint8_t*)EEPROM_CHECK_GCODE,(uint8_t)oCheckGcode);
  5079. }
  5080. #define SETTINGS_GCODE \
  5081. do\
  5082. {\
  5083. switch(oCheckGcode)\
  5084. {\
  5085. case ClCheckGcode::_None:\
  5086. MENU_ITEM_FUNCTION_P(_i("Gcode [none]"),lcd_check_gcode_set);\
  5087. break;\
  5088. case ClCheckGcode::_Warn:\
  5089. MENU_ITEM_FUNCTION_P(_i("Gcode [warn]"),lcd_check_gcode_set);\
  5090. break;\
  5091. case ClCheckGcode::_Strict:\
  5092. MENU_ITEM_FUNCTION_P(_i("Gcode [strict]"),lcd_check_gcode_set);\
  5093. break;\
  5094. default:\
  5095. MENU_ITEM_FUNCTION_P(_i("Gcode [none]"),lcd_check_gcode_set);\
  5096. }\
  5097. }\
  5098. while (0)
  5099. static void lcd_checking_menu(void)
  5100. {
  5101. MENU_BEGIN();
  5102. MENU_ITEM_BACK_P(_T(MSG_HW_SETUP));
  5103. SETTINGS_MODE;
  5104. SETTINGS_MODEL;
  5105. SETTINGS_VERSION;
  5106. //-// temporarily disabled
  5107. //SETTINGS_GCODE;
  5108. MENU_END();
  5109. }
  5110. template <uint8_t number>
  5111. static void select_sheet_menu()
  5112. {
  5113. selected_sheet = number;
  5114. lcd_sheet_menu();
  5115. }
  5116. static void sheets_menu()
  5117. {
  5118. MENU_BEGIN();
  5119. MENU_ITEM_BACK_P(_i("HW Setup"));
  5120. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[0], select_sheet_menu<0>);
  5121. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[1], select_sheet_menu<1>);
  5122. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[2], select_sheet_menu<2>);
  5123. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[3], select_sheet_menu<3>);
  5124. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[4], select_sheet_menu<4>);
  5125. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[5], select_sheet_menu<5>);
  5126. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[6], select_sheet_menu<6>);
  5127. MENU_ITEM_SUBMENU_E(EEPROM_Sheets_base->s[7], select_sheet_menu<7>);
  5128. MENU_END();
  5129. }
  5130. void lcd_hw_setup_menu(void) // can not be "static"
  5131. {
  5132. MENU_BEGIN();
  5133. MENU_ITEM_BACK_P(_T(bSettings?MSG_SETTINGS:MSG_BACK)); // i.e. default menu-item / menu-item after checking mismatch
  5134. MENU_ITEM_SUBMENU_P(_i("Steel sheets"), sheets_menu);
  5135. SETTINGS_NOZZLE;
  5136. MENU_ITEM_SUBMENU_P(_i("Checks"), lcd_checking_menu);
  5137. MENU_END();
  5138. }
  5139. static void lcd_settings_menu()
  5140. {
  5141. EEPROM_read(EEPROM_SILENT, (uint8_t*)&SilentModeMenu, sizeof(SilentModeMenu));
  5142. MENU_BEGIN();
  5143. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5144. MENU_ITEM_SUBMENU_P(_i("Temperature"), lcd_control_temperature_menu);////MSG_TEMPERATURE
  5145. if (!homing_flag)
  5146. MENU_ITEM_SUBMENU_P(_i("Move axis"), lcd_move_menu_1mm);////MSG_MOVE_AXIS
  5147. if (!isPrintPaused)
  5148. MENU_ITEM_GCODE_P(_i("Disable steppers"), PSTR("M84"));////MSG_DISABLE_STEPPERS
  5149. SETTINGS_FILAMENT_SENSOR;
  5150. SETTINGS_AUTO_DEPLETE;
  5151. SETTINGS_CUTTER;
  5152. if (fans_check_enabled == true)
  5153. MENU_ITEM_FUNCTION_P(_i("Fans check [on]"), lcd_set_fan_check);////MSG_FANS_CHECK_ON c=17 r=1
  5154. else
  5155. MENU_ITEM_FUNCTION_P(_i("Fans check [off]"), lcd_set_fan_check);////MSG_FANS_CHECK_OFF c=17 r=1
  5156. SETTINGS_SILENT_MODE;
  5157. if(!farm_mode)
  5158. {
  5159. bSettings=true; // flag ('fake parameter') for 'lcd_hw_setup_menu()' function
  5160. MENU_ITEM_SUBMENU_P(_i("HW Setup"), lcd_hw_setup_menu);////MSG_HW_SETUP
  5161. }
  5162. SETTINGS_MMU_MODE;
  5163. MENU_ITEM_SUBMENU_P(_i("Mesh bed leveling"), lcd_mesh_bed_leveling_settings);////MSG_MBL_SETTINGS c=18 r=1
  5164. #if defined (TMC2130) && defined (LINEARITY_CORRECTION)
  5165. MENU_ITEM_SUBMENU_P(_i("Lin. correction"), lcd_settings_linearity_correction_menu);
  5166. #endif //LINEARITY_CORRECTION && TMC2130
  5167. if (temp_cal_active == false)
  5168. MENU_ITEM_FUNCTION_P(_i("Temp. cal. [off]"), lcd_temp_calibration_set);////MSG_TEMP_CALIBRATION_OFF c=20 r=1
  5169. else
  5170. MENU_ITEM_FUNCTION_P(_i("Temp. cal. [on]"), lcd_temp_calibration_set);////MSG_TEMP_CALIBRATION_ON c=20 r=1
  5171. #ifdef HAS_SECOND_SERIAL_PORT
  5172. if (selectedSerialPort == 0)
  5173. MENU_ITEM_FUNCTION_P(_i("RPi port [off]"), lcd_second_serial_set);////MSG_SECOND_SERIAL_OFF c=17 r=1
  5174. else
  5175. MENU_ITEM_FUNCTION_P(_i("RPi port [on]"), lcd_second_serial_set);////MSG_SECOND_SERIAL_ON c=17 r=1
  5176. #endif //HAS_SECOND_SERIAL
  5177. if (!isPrintPaused && !homing_flag)
  5178. MENU_ITEM_SUBMENU_P(_T(MSG_BABYSTEP_Z), lcd_babystep_z);
  5179. #if (LANG_MODE != 0)
  5180. MENU_ITEM_SUBMENU_P(_i("Select language"), lcd_language_menu);////MSG_LANGUAGE_SELECT
  5181. #endif //(LANG_MODE != 0)
  5182. SETTINGS_SD;
  5183. SETTINGS_SOUND;
  5184. #ifdef LCD_BL_PIN
  5185. MENU_ITEM_EDIT_int3_P(_i("Backlight"), &backlightLevel, 0, 255);
  5186. #endif //LCD_BL_PIN
  5187. if (farm_mode)
  5188. {
  5189. MENU_ITEM_SUBMENU_P(PSTR("Farm number"), lcd_farm_no);
  5190. MENU_ITEM_FUNCTION_P(PSTR("Disable farm mode"), lcd_disable_farm_mode);
  5191. }
  5192. MENU_END();
  5193. }
  5194. #ifdef TMC2130
  5195. static void lcd_ustep_linearity_menu_save()
  5196. {
  5197. eeprom_update_byte((uint8_t*)EEPROM_TMC2130_WAVE_X_FAC, tmc2130_wave_fac[X_AXIS]);
  5198. eeprom_update_byte((uint8_t*)EEPROM_TMC2130_WAVE_Y_FAC, tmc2130_wave_fac[Y_AXIS]);
  5199. eeprom_update_byte((uint8_t*)EEPROM_TMC2130_WAVE_Z_FAC, tmc2130_wave_fac[Z_AXIS]);
  5200. eeprom_update_byte((uint8_t*)EEPROM_TMC2130_WAVE_E_FAC, tmc2130_wave_fac[E_AXIS]);
  5201. }
  5202. #endif //TMC2130
  5203. #ifdef TMC2130
  5204. static void lcd_settings_linearity_correction_menu_save()
  5205. {
  5206. bool changed = false;
  5207. if (tmc2130_wave_fac[X_AXIS] < TMC2130_WAVE_FAC1000_MIN) tmc2130_wave_fac[X_AXIS] = 0;
  5208. if (tmc2130_wave_fac[Y_AXIS] < TMC2130_WAVE_FAC1000_MIN) tmc2130_wave_fac[Y_AXIS] = 0;
  5209. if (tmc2130_wave_fac[Z_AXIS] < TMC2130_WAVE_FAC1000_MIN) tmc2130_wave_fac[Z_AXIS] = 0;
  5210. if (tmc2130_wave_fac[E_AXIS] < TMC2130_WAVE_FAC1000_MIN) tmc2130_wave_fac[E_AXIS] = 0;
  5211. changed |= (eeprom_read_byte((uint8_t*)EEPROM_TMC2130_WAVE_X_FAC) != tmc2130_wave_fac[X_AXIS]);
  5212. changed |= (eeprom_read_byte((uint8_t*)EEPROM_TMC2130_WAVE_Y_FAC) != tmc2130_wave_fac[Y_AXIS]);
  5213. changed |= (eeprom_read_byte((uint8_t*)EEPROM_TMC2130_WAVE_Z_FAC) != tmc2130_wave_fac[Z_AXIS]);
  5214. changed |= (eeprom_read_byte((uint8_t*)EEPROM_TMC2130_WAVE_E_FAC) != tmc2130_wave_fac[E_AXIS]);
  5215. lcd_ustep_linearity_menu_save();
  5216. if (changed) tmc2130_init();
  5217. }
  5218. #endif //TMC2130
  5219. static void lcd_calibration_menu()
  5220. {
  5221. MENU_BEGIN();
  5222. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5223. if (!isPrintPaused)
  5224. {
  5225. MENU_ITEM_FUNCTION_P(_i("Wizard"), lcd_wizard);////MSG_WIZARD c=17 r=1
  5226. if (lcd_commands_type == LcdCommands::Idle)
  5227. {
  5228. MENU_ITEM_SUBMENU_P(_T(MSG_V2_CALIBRATION), lcd_first_layer_calibration_reset);
  5229. }
  5230. MENU_ITEM_GCODE_P(_T(MSG_AUTO_HOME), PSTR("G28 W"));
  5231. MENU_ITEM_FUNCTION_P(_i("Selftest "), lcd_selftest_v);////MSG_SELFTEST
  5232. #ifdef MK1BP
  5233. // MK1
  5234. // "Calibrate Z"
  5235. MENU_ITEM_GCODE_P(_T(MSG_HOMEYZ), PSTR("G28 Z"));
  5236. #else //MK1BP
  5237. // MK2
  5238. MENU_ITEM_FUNCTION_P(_i("Calibrate XYZ"), lcd_mesh_calibration);////MSG_CALIBRATE_BED
  5239. // "Calibrate Z" with storing the reference values to EEPROM.
  5240. MENU_ITEM_SUBMENU_P(_T(MSG_HOMEYZ), lcd_mesh_calibration_z);
  5241. #ifndef SNMM
  5242. //MENU_ITEM_FUNCTION_P(_i("Calibrate E"), lcd_calibrate_extruder);////MSG_CALIBRATE_E c=20 r=1
  5243. #endif
  5244. // "Mesh Bed Leveling"
  5245. MENU_ITEM_SUBMENU_P(_i("Mesh Bed Leveling"), lcd_mesh_bedleveling);////MSG_MESH_BED_LEVELING
  5246. #endif //MK1BP
  5247. MENU_ITEM_SUBMENU_P(_i("Bed level correct"), lcd_adjust_bed);////MSG_BED_CORRECTION_MENU
  5248. MENU_ITEM_SUBMENU_P(_i("PID calibration"), pid_extruder);////MSG_PID_EXTRUDER c=17 r=1
  5249. #ifndef TMC2130
  5250. MENU_ITEM_SUBMENU_P(_i("Show end stops"), menu_show_end_stops);////MSG_SHOW_END_STOPS c=17 r=1
  5251. #endif
  5252. #ifndef MK1BP
  5253. MENU_ITEM_GCODE_P(_i("Reset XYZ calibr."), PSTR("M44"));////MSG_CALIBRATE_BED_RESET
  5254. #endif //MK1BP
  5255. #ifndef SNMM
  5256. //MENU_ITEM_FUNCTION_P(MSG_RESET_CALIBRATE_E, lcd_extr_cal_reset);
  5257. #endif
  5258. #ifndef MK1BP
  5259. MENU_ITEM_SUBMENU_P(_i("Temp. calibration"), lcd_pinda_calibration_menu);////MSG_CALIBRATION_PINDA_MENU c=17 r=1
  5260. #endif //MK1BP
  5261. }
  5262. MENU_END();
  5263. }
  5264. void bowden_menu() {
  5265. int enc_dif = lcd_encoder_diff;
  5266. int cursor_pos = 0;
  5267. lcd_clear();
  5268. lcd_set_cursor(0, 0);
  5269. lcd_print(">");
  5270. for (uint_least8_t i = 0; i < 4; i++) {
  5271. lcd_set_cursor(1, i);
  5272. lcd_print("Extruder ");
  5273. lcd_print(i);
  5274. lcd_print(": ");
  5275. EEPROM_read_B(EEPROM_BOWDEN_LENGTH + i * 2, &bowden_length[i]);
  5276. lcd_print(bowden_length[i] - 48);
  5277. }
  5278. enc_dif = lcd_encoder_diff;
  5279. lcd_consume_click();
  5280. while (1) {
  5281. manage_heater();
  5282. manage_inactivity(true);
  5283. if (abs((enc_dif - lcd_encoder_diff)) > 2) {
  5284. if (enc_dif > lcd_encoder_diff) {
  5285. cursor_pos--;
  5286. }
  5287. if (enc_dif < lcd_encoder_diff) {
  5288. cursor_pos++;
  5289. }
  5290. if (cursor_pos > 3) {
  5291. cursor_pos = 3;
  5292. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5293. }
  5294. if (cursor_pos < 0) {
  5295. cursor_pos = 0;
  5296. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5297. }
  5298. lcd_set_cursor(0, 0);
  5299. lcd_print(" ");
  5300. lcd_set_cursor(0, 1);
  5301. lcd_print(" ");
  5302. lcd_set_cursor(0, 2);
  5303. lcd_print(" ");
  5304. lcd_set_cursor(0, 3);
  5305. lcd_print(" ");
  5306. lcd_set_cursor(0, cursor_pos);
  5307. lcd_print(">");
  5308. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  5309. enc_dif = lcd_encoder_diff;
  5310. _delay(100);
  5311. }
  5312. if (lcd_clicked()) {
  5313. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5314. lcd_clear();
  5315. while (1) {
  5316. manage_heater();
  5317. manage_inactivity(true);
  5318. lcd_set_cursor(1, 1);
  5319. lcd_print("Extruder ");
  5320. lcd_print(cursor_pos);
  5321. lcd_print(": ");
  5322. lcd_set_cursor(13, 1);
  5323. lcd_print(bowden_length[cursor_pos] - 48);
  5324. if (abs((enc_dif - lcd_encoder_diff)) > 2) {
  5325. if (enc_dif > lcd_encoder_diff) {
  5326. bowden_length[cursor_pos]--;
  5327. lcd_set_cursor(13, 1);
  5328. lcd_print(bowden_length[cursor_pos] - 48);
  5329. enc_dif = lcd_encoder_diff;
  5330. }
  5331. if (enc_dif < lcd_encoder_diff) {
  5332. bowden_length[cursor_pos]++;
  5333. lcd_set_cursor(13, 1);
  5334. lcd_print(bowden_length[cursor_pos] - 48);
  5335. enc_dif = lcd_encoder_diff;
  5336. }
  5337. }
  5338. _delay(100);
  5339. if (lcd_clicked()) {
  5340. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5341. EEPROM_save_B(EEPROM_BOWDEN_LENGTH + cursor_pos * 2, &bowden_length[cursor_pos]);
  5342. if (lcd_show_fullscreen_message_yes_no_and_wait_P(PSTR("Continue with another bowden?"))) {
  5343. lcd_update_enable(true);
  5344. lcd_clear();
  5345. enc_dif = lcd_encoder_diff;
  5346. lcd_set_cursor(0, cursor_pos);
  5347. lcd_print(">");
  5348. for (uint_least8_t i = 0; i < 4; i++) {
  5349. lcd_set_cursor(1, i);
  5350. lcd_print("Extruder ");
  5351. lcd_print(i);
  5352. lcd_print(": ");
  5353. EEPROM_read_B(EEPROM_BOWDEN_LENGTH + i * 2, &bowden_length[i]);
  5354. lcd_print(bowden_length[i] - 48);
  5355. }
  5356. break;
  5357. }
  5358. else return;
  5359. }
  5360. }
  5361. }
  5362. }
  5363. }
  5364. //#ifdef SNMM
  5365. static char snmm_stop_print_menu() { //menu for choosing which filaments will be unloaded in stop print
  5366. lcd_clear();
  5367. lcd_puts_at_P(0,0,_T(MSG_UNLOAD_FILAMENT)); lcd_print(":");
  5368. lcd_set_cursor(0, 1); lcd_print(">");
  5369. lcd_puts_at_P(1,2,_i("Used during print"));////MSG_USED c=19 r=1
  5370. lcd_puts_at_P(1,3,_i("Current"));////MSG_CURRENT c=19 r=1
  5371. char cursor_pos = 1;
  5372. int enc_dif = 0;
  5373. KEEPALIVE_STATE(PAUSED_FOR_USER);
  5374. lcd_consume_click();
  5375. while (1) {
  5376. manage_heater();
  5377. manage_inactivity(true);
  5378. if (abs((enc_dif - lcd_encoder_diff)) > 4) {
  5379. if ((abs(enc_dif - lcd_encoder_diff)) > 1) {
  5380. if (enc_dif > lcd_encoder_diff) cursor_pos--;
  5381. if (enc_dif < lcd_encoder_diff) cursor_pos++;
  5382. if (cursor_pos > 3) {
  5383. cursor_pos = 3;
  5384. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5385. }
  5386. if (cursor_pos < 1){
  5387. cursor_pos = 1;
  5388. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5389. }
  5390. lcd_set_cursor(0, 1);
  5391. lcd_print(" ");
  5392. lcd_set_cursor(0, 2);
  5393. lcd_print(" ");
  5394. lcd_set_cursor(0, 3);
  5395. lcd_print(" ");
  5396. lcd_set_cursor(0, cursor_pos);
  5397. lcd_print(">");
  5398. enc_dif = lcd_encoder_diff;
  5399. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  5400. _delay(100);
  5401. }
  5402. }
  5403. if (lcd_clicked()) {
  5404. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5405. KEEPALIVE_STATE(IN_HANDLER);
  5406. return(cursor_pos - 1);
  5407. }
  5408. }
  5409. }
  5410. //! @brief Select one of numbered items
  5411. //!
  5412. //! Create list of items with header. Header can not be selected.
  5413. //! Each item has text description passed by function parameter and
  5414. //! number. There are 5 numbered items, if mmu_enabled, 4 otherwise.
  5415. //! Items are numbered from 1 to 4 or 5. But index returned starts at 0.
  5416. //! There can be last item with different text and no number.
  5417. //!
  5418. //! @param header Header text
  5419. //! @param item Item text
  5420. //! @param last_item Last item text, or nullptr if there is no Last item
  5421. //! @return selected item index, first item index is 0
  5422. uint8_t choose_menu_P(const char *header, const char *item, const char *last_item)
  5423. {
  5424. //following code should handle 3 to 127 number of items well
  5425. const int8_t items_no = last_item?(mmu_enabled?6:5):(mmu_enabled?5:4);
  5426. const uint8_t item_len = item?strlen_P(item):0;
  5427. int8_t first = 0;
  5428. int8_t enc_dif = lcd_encoder_diff;
  5429. int8_t cursor_pos = 1;
  5430. lcd_clear();
  5431. KEEPALIVE_STATE(PAUSED_FOR_USER);
  5432. while (1)
  5433. {
  5434. manage_heater();
  5435. manage_inactivity(true);
  5436. if (abs((enc_dif - lcd_encoder_diff)) > 4)
  5437. {
  5438. if (enc_dif > lcd_encoder_diff)
  5439. {
  5440. cursor_pos--;
  5441. }
  5442. if (enc_dif < lcd_encoder_diff)
  5443. {
  5444. cursor_pos++;
  5445. }
  5446. enc_dif = lcd_encoder_diff;
  5447. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  5448. }
  5449. if (cursor_pos > 3)
  5450. {
  5451. cursor_pos = 3;
  5452. if (first < items_no - 3)
  5453. {
  5454. first++;
  5455. lcd_clear();
  5456. } else { // here we are at the very end of the list
  5457. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5458. }
  5459. }
  5460. if (cursor_pos < 1)
  5461. {
  5462. cursor_pos = 1;
  5463. if (first > 0)
  5464. {
  5465. first--;
  5466. lcd_clear();
  5467. } else { // here we are at the very end of the list
  5468. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5469. }
  5470. }
  5471. if (header) lcd_puts_at_P(0,0,header);
  5472. const bool last_visible = (first == items_no - 3);
  5473. const uint_least8_t ordinary_items = (last_item&&last_visible)?2:3;
  5474. for (uint_least8_t i = 0; i < ordinary_items; i++)
  5475. {
  5476. if (item) lcd_puts_at_P(1, i + 1, item);
  5477. }
  5478. for (uint_least8_t i = 0; i < ordinary_items; i++)
  5479. {
  5480. lcd_set_cursor(2 + item_len, i+1);
  5481. lcd_print(first + i + 1);
  5482. }
  5483. if (last_item&&last_visible) lcd_puts_at_P(1, 3, last_item);
  5484. lcd_set_cursor(0, 1);
  5485. lcd_print(" ");
  5486. lcd_set_cursor(0, 2);
  5487. lcd_print(" ");
  5488. lcd_set_cursor(0, 3);
  5489. lcd_print(" ");
  5490. lcd_set_cursor(0, cursor_pos);
  5491. lcd_print(">");
  5492. _delay(100);
  5493. if (lcd_clicked())
  5494. {
  5495. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5496. KEEPALIVE_STATE(IN_HANDLER);
  5497. lcd_encoder_diff = 0;
  5498. return(cursor_pos + first - 1);
  5499. }
  5500. }
  5501. }
  5502. char reset_menu() {
  5503. #ifdef SNMM
  5504. int items_no = 5;
  5505. #else
  5506. int items_no = 4;
  5507. #endif
  5508. static int first = 0;
  5509. int enc_dif = 0;
  5510. char cursor_pos = 0;
  5511. const char *item [items_no];
  5512. item[0] = "Language";
  5513. item[1] = "Statistics";
  5514. item[2] = "Shipping prep";
  5515. item[3] = "All Data";
  5516. #ifdef SNMM
  5517. item[4] = "Bowden length";
  5518. #endif // SNMM
  5519. enc_dif = lcd_encoder_diff;
  5520. lcd_clear();
  5521. lcd_set_cursor(0, 0);
  5522. lcd_print(">");
  5523. lcd_consume_click();
  5524. while (1) {
  5525. for (uint_least8_t i = 0; i < 4; i++) {
  5526. lcd_set_cursor(1, i);
  5527. lcd_print(item[first + i]);
  5528. }
  5529. manage_heater();
  5530. manage_inactivity(true);
  5531. if (abs((enc_dif - lcd_encoder_diff)) > 4) {
  5532. if ((abs(enc_dif - lcd_encoder_diff)) > 1) {
  5533. if (enc_dif > lcd_encoder_diff) {
  5534. cursor_pos--;
  5535. }
  5536. if (enc_dif < lcd_encoder_diff) {
  5537. cursor_pos++;
  5538. }
  5539. if (cursor_pos > 3) {
  5540. cursor_pos = 3;
  5541. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5542. if (first < items_no - 4) {
  5543. first++;
  5544. lcd_clear();
  5545. }
  5546. }
  5547. if (cursor_pos < 0) {
  5548. cursor_pos = 0;
  5549. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5550. if (first > 0) {
  5551. first--;
  5552. lcd_clear();
  5553. }
  5554. }
  5555. lcd_set_cursor(0, 0);
  5556. lcd_print(" ");
  5557. lcd_set_cursor(0, 1);
  5558. lcd_print(" ");
  5559. lcd_set_cursor(0, 2);
  5560. lcd_print(" ");
  5561. lcd_set_cursor(0, 3);
  5562. lcd_print(" ");
  5563. lcd_set_cursor(0, cursor_pos);
  5564. lcd_print(">");
  5565. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  5566. enc_dif = lcd_encoder_diff;
  5567. _delay(100);
  5568. }
  5569. }
  5570. if (lcd_clicked()) {
  5571. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5572. return(cursor_pos + first);
  5573. }
  5574. }
  5575. }
  5576. static void lcd_disable_farm_mode()
  5577. {
  5578. int8_t disable = lcd_show_fullscreen_message_yes_no_and_wait_P(PSTR("Disable farm mode?"), true, false); //allow timeouting, default no
  5579. if (disable)
  5580. {
  5581. enquecommand_P(PSTR("G99"));
  5582. lcd_return_to_status();
  5583. }
  5584. lcd_update_enable(true);
  5585. lcd_draw_update = 2;
  5586. }
  5587. static void fil_load_menu()
  5588. {
  5589. MENU_BEGIN();
  5590. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5591. MENU_ITEM_FUNCTION_P(_i("Load all"), load_all); ////MSG_LOAD_ALL c=17
  5592. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '1', extr_adj, 0); ////MSG_LOAD_FILAMENT_1 c=16
  5593. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '2', extr_adj, 1); ////MSG_LOAD_FILAMENT_2 c=17
  5594. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '3', extr_adj, 2); ////MSG_LOAD_FILAMENT_3 c=17
  5595. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '4', extr_adj, 3); ////MSG_LOAD_FILAMENT_4 c=17
  5596. if (mmu_enabled)
  5597. {
  5598. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '5', extr_adj, 4);
  5599. }
  5600. MENU_END();
  5601. }
  5602. static void mmu_load_to_nozzle_menu()
  5603. {
  5604. if (bFilamentAction)
  5605. {
  5606. MENU_BEGIN();
  5607. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5608. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '1', lcd_mmu_load_to_nozzle, 0);
  5609. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '2', lcd_mmu_load_to_nozzle, 1);
  5610. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '3', lcd_mmu_load_to_nozzle, 2);
  5611. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '4', lcd_mmu_load_to_nozzle, 3);
  5612. MENU_ITEM_FUNCTION_NR_P(_T(MSG_LOAD_FILAMENT), '5', lcd_mmu_load_to_nozzle, 4);
  5613. MENU_END();
  5614. }
  5615. else
  5616. {
  5617. eFilamentAction = FilamentAction::MmuLoad;
  5618. preheat_or_continue();
  5619. }
  5620. }
  5621. static void mmu_eject_filament(uint8_t filament)
  5622. {
  5623. menu_back();
  5624. mmu_eject_filament(filament, true);
  5625. }
  5626. static void mmu_fil_eject_menu()
  5627. {
  5628. if (bFilamentAction)
  5629. {
  5630. MENU_BEGIN();
  5631. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5632. MENU_ITEM_FUNCTION_NR_P(_T(MSG_EJECT_FILAMENT), '1', mmu_eject_filament, 0);
  5633. MENU_ITEM_FUNCTION_NR_P(_T(MSG_EJECT_FILAMENT), '2', mmu_eject_filament, 1);
  5634. MENU_ITEM_FUNCTION_NR_P(_T(MSG_EJECT_FILAMENT), '3', mmu_eject_filament, 2);
  5635. MENU_ITEM_FUNCTION_NR_P(_T(MSG_EJECT_FILAMENT), '4', mmu_eject_filament, 3);
  5636. MENU_ITEM_FUNCTION_NR_P(_T(MSG_EJECT_FILAMENT), '5', mmu_eject_filament, 4);
  5637. MENU_END();
  5638. }
  5639. else
  5640. {
  5641. eFilamentAction = FilamentAction::MmuEject;
  5642. preheat_or_continue();
  5643. }
  5644. }
  5645. #ifdef MMU_HAS_CUTTER
  5646. static void mmu_cut_filament_menu()
  5647. {
  5648. if(bFilamentAction)
  5649. {
  5650. MENU_BEGIN();
  5651. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5652. MENU_ITEM_FUNCTION_NR_P(_T(MSG_CUT_FILAMENT), '1', mmu_cut_filament, 0);
  5653. MENU_ITEM_FUNCTION_NR_P(_T(MSG_CUT_FILAMENT), '2', mmu_cut_filament, 1);
  5654. MENU_ITEM_FUNCTION_NR_P(_T(MSG_CUT_FILAMENT), '3', mmu_cut_filament, 2);
  5655. MENU_ITEM_FUNCTION_NR_P(_T(MSG_CUT_FILAMENT), '4', mmu_cut_filament, 3);
  5656. MENU_ITEM_FUNCTION_NR_P(_T(MSG_CUT_FILAMENT), '5', mmu_cut_filament, 4);
  5657. MENU_END();
  5658. }
  5659. else
  5660. {
  5661. eFilamentAction=FilamentAction::MmuCut;
  5662. bFilamentFirstRun=false;
  5663. if(target_temperature[0]>=EXTRUDE_MINTEMP)
  5664. {
  5665. bFilamentPreheatState=true;
  5666. mFilamentItem(target_temperature[0],target_temperature_bed);
  5667. }
  5668. else lcd_generic_preheat_menu();
  5669. }
  5670. }
  5671. #endif //MMU_HAS_CUTTER
  5672. #ifdef SNMM
  5673. static void fil_unload_menu()
  5674. {
  5675. MENU_BEGIN();
  5676. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5677. MENU_ITEM_FUNCTION_P(_i("Unload all"), extr_unload_all);////MSG_UNLOAD_ALL c=17
  5678. MENU_ITEM_FUNCTION_P(_i("Unload filament 1"), extr_unload_0);////MSG_UNLOAD_FILAMENT_1 c=17
  5679. MENU_ITEM_FUNCTION_P(_i("Unload filament 2"), extr_unload_1);////MSG_UNLOAD_FILAMENT_2 c=17
  5680. MENU_ITEM_FUNCTION_P(_i("Unload filament 3"), extr_unload_2);////MSG_UNLOAD_FILAMENT_3 c=17
  5681. MENU_ITEM_FUNCTION_P(_i("Unload filament 4"), extr_unload_3);////MSG_UNLOAD_FILAMENT_4 c=17
  5682. if (mmu_enabled)
  5683. MENU_ITEM_FUNCTION_P(_i("Unload filament 5"), extr_unload_4);////MSG_UNLOAD_FILAMENT_5 c=17
  5684. MENU_END();
  5685. }
  5686. static void change_extr_menu(){
  5687. MENU_BEGIN();
  5688. MENU_ITEM_BACK_P(_T(MSG_MAIN));
  5689. MENU_ITEM_FUNCTION_P(_i("Extruder 1"), extr_change_0);////MSG_EXTRUDER_1 c=17 r=1
  5690. MENU_ITEM_FUNCTION_P(_i("Extruder 2"), extr_change_1);////MSG_EXTRUDER_2 c=17 r=1
  5691. MENU_ITEM_FUNCTION_P(_i("Extruder 3"), extr_change_2);////MSG_EXTRUDER_3 c=17 r=1
  5692. MENU_ITEM_FUNCTION_P(_i("Extruder 4"), extr_change_3);////MSG_EXTRUDER_4 c=17 r=1
  5693. MENU_END();
  5694. }
  5695. #endif //SNMM
  5696. //unload filament for single material printer (used in M702 gcode)
  5697. void unload_filament()
  5698. {
  5699. custom_message_type = CustomMsg::FilamentLoading;
  5700. lcd_setstatuspgm(_T(MSG_UNLOADING_FILAMENT));
  5701. // extr_unload2();
  5702. current_position[E_AXIS] -= 45;
  5703. plan_buffer_line_curposXYZE(5200 / 60, active_extruder);
  5704. st_synchronize();
  5705. current_position[E_AXIS] -= 15;
  5706. plan_buffer_line_curposXYZE(1000 / 60, active_extruder);
  5707. st_synchronize();
  5708. current_position[E_AXIS] -= 20;
  5709. plan_buffer_line_curposXYZE(1000 / 60, active_extruder);
  5710. st_synchronize();
  5711. lcd_display_message_fullscreen_P(_T(MSG_PULL_OUT_FILAMENT));
  5712. //disable extruder steppers so filament can be removed
  5713. disable_e0();
  5714. disable_e1();
  5715. disable_e2();
  5716. _delay(100);
  5717. Sound_MakeSound(e_SOUND_TYPE_StandardPrompt);
  5718. uint8_t counterBeep = 0;
  5719. while (!lcd_clicked() && (counterBeep < 50)) {
  5720. delay_keep_alive(100);
  5721. counterBeep++;
  5722. }
  5723. st_synchronize();
  5724. while (lcd_clicked()) delay_keep_alive(100);
  5725. lcd_update_enable(true);
  5726. lcd_setstatuspgm(_T(WELCOME_MSG));
  5727. custom_message_type = CustomMsg::Status;
  5728. }
  5729. static void lcd_farm_no()
  5730. {
  5731. char step = 0;
  5732. int enc_dif = 0;
  5733. int _farmno = farm_no;
  5734. int _ret = 0;
  5735. lcd_clear();
  5736. lcd_set_cursor(0, 0);
  5737. lcd_print("Farm no");
  5738. do
  5739. {
  5740. if (abs((enc_dif - lcd_encoder_diff)) > 2) {
  5741. if (enc_dif > lcd_encoder_diff) {
  5742. switch (step) {
  5743. case(0): if (_farmno >= 100) _farmno -= 100; break;
  5744. case(1): if (_farmno % 100 >= 10) _farmno -= 10; break;
  5745. case(2): if (_farmno % 10 >= 1) _farmno--; break;
  5746. default: break;
  5747. }
  5748. }
  5749. if (enc_dif < lcd_encoder_diff) {
  5750. switch (step) {
  5751. case(0): if (_farmno < 900) _farmno += 100; break;
  5752. case(1): if (_farmno % 100 < 90) _farmno += 10; break;
  5753. case(2): if (_farmno % 10 <= 8)_farmno++; break;
  5754. default: break;
  5755. }
  5756. }
  5757. enc_dif = 0;
  5758. lcd_encoder_diff = 0;
  5759. }
  5760. lcd_set_cursor(0, 2);
  5761. if (_farmno < 100) lcd_print("0");
  5762. if (_farmno < 10) lcd_print("0");
  5763. lcd_print(_farmno);
  5764. lcd_print(" ");
  5765. lcd_set_cursor(0, 3);
  5766. lcd_print(" ");
  5767. lcd_set_cursor(step, 3);
  5768. lcd_print("^");
  5769. _delay(100);
  5770. if (lcd_clicked())
  5771. {
  5772. _delay(200);
  5773. step++;
  5774. if(step == 3) {
  5775. _ret = 1;
  5776. farm_no = _farmno;
  5777. EEPROM_save_B(EEPROM_FARM_NUMBER, &farm_no);
  5778. prusa_statistics(20);
  5779. lcd_return_to_status();
  5780. }
  5781. }
  5782. manage_heater();
  5783. } while (_ret == 0);
  5784. }
  5785. unsigned char lcd_choose_color() {
  5786. //function returns index of currently chosen item
  5787. //following part can be modified from 2 to 255 items:
  5788. //-----------------------------------------------------
  5789. unsigned char items_no = 2;
  5790. const char *item[items_no];
  5791. item[0] = "Orange";
  5792. item[1] = "Black";
  5793. //-----------------------------------------------------
  5794. uint_least8_t active_rows;
  5795. static int first = 0;
  5796. int enc_dif = 0;
  5797. unsigned char cursor_pos = 1;
  5798. enc_dif = lcd_encoder_diff;
  5799. lcd_clear();
  5800. lcd_set_cursor(0, 1);
  5801. lcd_print(">");
  5802. active_rows = items_no < 3 ? items_no : 3;
  5803. lcd_consume_click();
  5804. while (1) {
  5805. lcd_puts_at_P(0, 0, PSTR("Choose color:"));
  5806. for (uint_least8_t i = 0; i < active_rows; i++) {
  5807. lcd_set_cursor(1, i+1);
  5808. lcd_print(item[first + i]);
  5809. }
  5810. manage_heater();
  5811. manage_inactivity(true);
  5812. proc_commands();
  5813. if (abs((enc_dif - lcd_encoder_diff)) > 12) {
  5814. if (enc_dif > lcd_encoder_diff) {
  5815. cursor_pos--;
  5816. }
  5817. if (enc_dif < lcd_encoder_diff) {
  5818. cursor_pos++;
  5819. }
  5820. if (cursor_pos > active_rows) {
  5821. cursor_pos = active_rows;
  5822. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5823. if (first < items_no - active_rows) {
  5824. first++;
  5825. lcd_clear();
  5826. }
  5827. }
  5828. if (cursor_pos < 1) {
  5829. cursor_pos = 1;
  5830. Sound_MakeSound(e_SOUND_TYPE_BlindAlert);
  5831. if (first > 0) {
  5832. first--;
  5833. lcd_clear();
  5834. }
  5835. }
  5836. lcd_set_cursor(0, 1);
  5837. lcd_print(" ");
  5838. lcd_set_cursor(0, 2);
  5839. lcd_print(" ");
  5840. lcd_set_cursor(0, 3);
  5841. lcd_print(" ");
  5842. lcd_set_cursor(0, cursor_pos);
  5843. lcd_print(">");
  5844. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  5845. enc_dif = lcd_encoder_diff;
  5846. _delay(100);
  5847. }
  5848. if (lcd_clicked()) {
  5849. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  5850. switch(cursor_pos + first - 1) {
  5851. case 0: return 1; break;
  5852. case 1: return 0; break;
  5853. default: return 99; break;
  5854. }
  5855. }
  5856. }
  5857. }
  5858. void lcd_confirm_print()
  5859. {
  5860. uint8_t filament_type;
  5861. int enc_dif = 0;
  5862. int cursor_pos = 1;
  5863. int _ret = 0;
  5864. int _t = 0;
  5865. enc_dif = lcd_encoder_diff;
  5866. lcd_clear();
  5867. lcd_set_cursor(0, 0);
  5868. lcd_print("Print ok ?");
  5869. do
  5870. {
  5871. if (abs(enc_dif - lcd_encoder_diff) > 12) {
  5872. if (enc_dif > lcd_encoder_diff) {
  5873. cursor_pos--;
  5874. }
  5875. if (enc_dif < lcd_encoder_diff) {
  5876. cursor_pos++;
  5877. }
  5878. enc_dif = lcd_encoder_diff;
  5879. }
  5880. if (cursor_pos > 2) { cursor_pos = 2; }
  5881. if (cursor_pos < 1) { cursor_pos = 1; }
  5882. lcd_set_cursor(0, 2); lcd_print(" ");
  5883. lcd_set_cursor(0, 3); lcd_print(" ");
  5884. lcd_set_cursor(2, 2);
  5885. lcd_puts_P(_T(MSG_YES));
  5886. lcd_set_cursor(2, 3);
  5887. lcd_puts_P(_T(MSG_NO));
  5888. lcd_set_cursor(0, 1 + cursor_pos);
  5889. lcd_print(">");
  5890. _delay(100);
  5891. _t = _t + 1;
  5892. if (_t>100)
  5893. {
  5894. prusa_statistics(99);
  5895. _t = 0;
  5896. }
  5897. if (lcd_clicked())
  5898. {
  5899. filament_type = FARM_FILAMENT_COLOR_NONE;
  5900. if (cursor_pos == 1)
  5901. {
  5902. _ret = 1;
  5903. // filament_type = lcd_choose_color();
  5904. prusa_statistics(4, filament_type);
  5905. no_response = true; //we need confirmation by recieving PRUSA thx
  5906. important_status = 4;
  5907. saved_filament_type = filament_type;
  5908. NcTime = _millis();
  5909. }
  5910. if (cursor_pos == 2)
  5911. {
  5912. _ret = 2;
  5913. // filament_type = lcd_choose_color();
  5914. prusa_statistics(5, filament_type);
  5915. no_response = true; //we need confirmation by recieving PRUSA thx
  5916. important_status = 5;
  5917. saved_filament_type = filament_type;
  5918. NcTime = _millis();
  5919. }
  5920. }
  5921. manage_heater();
  5922. manage_inactivity();
  5923. proc_commands();
  5924. } while (_ret == 0);
  5925. }
  5926. #include "w25x20cl.h"
  5927. #ifdef LCD_TEST
  5928. static void lcd_test_menu()
  5929. {
  5930. W25X20CL_SPI_ENTER();
  5931. w25x20cl_enable_wr();
  5932. w25x20cl_chip_erase();
  5933. w25x20cl_disable_wr();
  5934. }
  5935. #endif //LCD_TEST
  5936. static bool fan_error_selftest()
  5937. {
  5938. #ifdef FANCHECK
  5939. fanSpeed = 255;
  5940. #ifdef FAN_SOFT_PWM
  5941. fanSpeedSoftPwm = 255;
  5942. #endif //FAN_SOFT_PWM
  5943. manage_heater(); //enables print fan
  5944. setExtruderAutoFanState(EXTRUDER_0_AUTO_FAN_PIN, 1); //force enables the extruder fan untill the first manage_heater() call.
  5945. #ifdef FAN_SOFT_PWM
  5946. extruder_autofan_last_check = _millis();
  5947. fan_measuring = true;
  5948. #endif //FAN_SOFT_PWM
  5949. _delay(1000); //delay_keep_alive would turn off extruder fan, because temerature is too low (maybe)
  5950. manage_heater();
  5951. fanSpeed = 0;
  5952. #ifdef FAN_SOFT_PWM
  5953. fanSpeedSoftPwm = 0;
  5954. #endif //FAN_SOFT_PWM
  5955. manage_heater();
  5956. #ifdef TACH_0
  5957. if (fan_speed[0] <= 20) { //extruder fan error
  5958. LCD_ALERTMESSAGERPGM(MSG_FANCHECK_EXTRUDER);
  5959. return 1;
  5960. }
  5961. #endif
  5962. #ifdef TACH_1
  5963. if (fan_speed[1] <= 20) { //print fan error
  5964. LCD_ALERTMESSAGERPGM(MSG_FANCHECK_PRINT);
  5965. return 1;
  5966. }
  5967. #endif
  5968. return 0;
  5969. #endif //FANCHECK
  5970. }
  5971. //! @brief Resume paused print
  5972. //! @todo It is not good to call restore_print_from_ram_and_continue() from function called by lcd_update(),
  5973. //! as restore_print_from_ram_and_continue() calls lcd_update() internally.
  5974. void lcd_resume_print()
  5975. {
  5976. lcd_return_to_status();
  5977. lcd_reset_alert_level();
  5978. lcd_setstatuspgm(_T(MSG_RESUMING_PRINT));
  5979. lcd_reset_alert_level(); //for fan speed error
  5980. if (fan_error_selftest()) return; //abort if error persists
  5981. restore_print_from_ram_and_continue(0.0);
  5982. pause_time += (_millis() - start_pause_print); //accumulate time when print is paused for correct statistics calculation
  5983. refresh_cmd_timeout();
  5984. isPrintPaused = false;
  5985. SERIAL_PROTOCOLLNRPGM(MSG_OCTOPRINT_RESUMED); //resume octoprint
  5986. }
  5987. static void change_sheet()
  5988. {
  5989. eeprom_update_byte(&(EEPROM_Sheets_base->active_sheet), selected_sheet);
  5990. menu_back(3);
  5991. }
  5992. static void lcd_rename_sheet_menu()
  5993. {
  5994. struct MenuData
  5995. {
  5996. bool initialized;
  5997. uint8_t selected;
  5998. char name[sizeof(Sheet::name)];
  5999. };
  6000. static_assert(sizeof(menu_data)>= sizeof(MenuData),"MenuData doesn't fit into menu_data");
  6001. MenuData* menuData = (MenuData*)&(menu_data[0]);
  6002. if (!menuData->initialized)
  6003. {
  6004. eeprom_read_block(menuData->name, EEPROM_Sheets_base->s[selected_sheet].name, sizeof(Sheet::name));
  6005. lcd_encoder = menuData->name[0];
  6006. menuData->initialized = true;
  6007. }
  6008. if (lcd_encoder < '\x20') lcd_encoder = '\x20';
  6009. if (lcd_encoder > '\x7F') lcd_encoder = '\x7F';
  6010. menuData->name[menuData->selected] = lcd_encoder;
  6011. lcd_set_cursor(0,0);
  6012. for (uint_least8_t i = 0; i < sizeof(Sheet::name); ++i)
  6013. {
  6014. lcd_putc(menuData->name[i]);
  6015. }
  6016. lcd_set_cursor(menuData->selected, 1);
  6017. lcd_putc('^');
  6018. if (lcd_clicked())
  6019. {
  6020. if ((menuData->selected + 1u) < sizeof(Sheet::name))
  6021. {
  6022. lcd_encoder = menuData->name[++(menuData->selected)];
  6023. }
  6024. else
  6025. {
  6026. eeprom_update_block(menuData->name,
  6027. EEPROM_Sheets_base->s[selected_sheet].name,
  6028. sizeof(Sheet::name));
  6029. menu_back();
  6030. }
  6031. }
  6032. }
  6033. static void lcd_reset_sheet()
  6034. {
  6035. SheetName sheetName;
  6036. eeprom_default_sheet_name(selected_sheet, sheetName);
  6037. eeprom_update_word(reinterpret_cast<uint16_t *>(&(EEPROM_Sheets_base->s[selected_sheet].z_offset)),EEPROM_EMPTY_VALUE16);
  6038. eeprom_update_block(sheetName.c,EEPROM_Sheets_base->s[selected_sheet].name,sizeof(Sheet::name));
  6039. if (selected_sheet == eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet)))
  6040. {
  6041. eeprom_switch_to_next_sheet();
  6042. if((-1 == eeprom_next_initialized_sheet(0)) && (CALIBRATION_STATUS_CALIBRATED == calibration_status()))
  6043. {
  6044. calibration_status_store(CALIBRATION_STATUS_LIVE_ADJUST);
  6045. }
  6046. }
  6047. menu_back();
  6048. }
  6049. //! @brief Activate selected_sheet and run first layer calibration
  6050. static void activate_calibrate_sheet()
  6051. {
  6052. eeprom_update_byte(&(EEPROM_Sheets_base->active_sheet), selected_sheet);
  6053. lcd_first_layer_calibration_reset();
  6054. }
  6055. static void lcd_sheet_menu()
  6056. {
  6057. MENU_BEGIN();
  6058. MENU_ITEM_BACK_P(_i("Steel sheets"));
  6059. if(eeprom_is_sheet_initialized(selected_sheet)){
  6060. MENU_ITEM_SUBMENU_P(_i("Select"), change_sheet); //// c=18
  6061. }
  6062. if (lcd_commands_type == LcdCommands::Idle)
  6063. {
  6064. MENU_ITEM_SUBMENU_P(_T(MSG_V2_CALIBRATION), activate_calibrate_sheet);
  6065. }
  6066. MENU_ITEM_SUBMENU_P(_i("Rename"), lcd_rename_sheet_menu); //// c=18
  6067. MENU_ITEM_FUNCTION_P(_i("Reset"), lcd_reset_sheet); //// c=18
  6068. MENU_END();
  6069. }
  6070. static void lcd_main_menu()
  6071. {
  6072. MENU_BEGIN();
  6073. // Majkl superawesome menu
  6074. MENU_ITEM_BACK_P(_T(MSG_WATCH));
  6075. #ifdef RESUME_DEBUG
  6076. if (!saved_printing)
  6077. MENU_ITEM_FUNCTION_P(PSTR("tst - Save"), lcd_menu_test_save);
  6078. else
  6079. MENU_ITEM_FUNCTION_P(PSTR("tst - Restore"), lcd_menu_test_restore);
  6080. #endif //RESUME_DEBUG
  6081. #ifdef TMC2130_DEBUG
  6082. MENU_ITEM_FUNCTION_P(PSTR("recover print"), recover_print);
  6083. MENU_ITEM_FUNCTION_P(PSTR("power panic"), uvlo_);
  6084. #endif //TMC2130_DEBUG
  6085. if ( ( IS_SD_PRINTING || is_usb_printing || (lcd_commands_type == LcdCommands::Layer1Cal)) && (current_position[Z_AXIS] < Z_HEIGHT_HIDE_LIVE_ADJUST_MENU) && !homing_flag && !mesh_bed_leveling_flag)
  6086. {
  6087. MENU_ITEM_SUBMENU_P(_T(MSG_BABYSTEP_Z), lcd_babystep_z);//8
  6088. }
  6089. if ( moves_planned() || IS_SD_PRINTING || is_usb_printing || (lcd_commands_type == LcdCommands::Layer1Cal))
  6090. {
  6091. MENU_ITEM_SUBMENU_P(_i("Tune"), lcd_tune_menu);////MSG_TUNE
  6092. } else
  6093. {
  6094. MENU_ITEM_SUBMENU_P(_i("Preheat"), lcd_preheat_menu);////MSG_PREHEAT
  6095. }
  6096. #ifdef FANCHECK
  6097. if((fan_check_error == EFCE_FIXED) && (saved_printing_type == PRINTING_TYPE_USB))
  6098. MENU_ITEM_SUBMENU_P(_i("Resume print"), lcd_resume_print);////MSG_RESUME_PRINT
  6099. #endif
  6100. #ifdef SDSUPPORT
  6101. if (card.cardOK || lcd_commands_type == LcdCommands::Layer1Cal)
  6102. {
  6103. if (card.isFileOpen())
  6104. {
  6105. if (mesh_bed_leveling_flag == false && homing_flag == false) {
  6106. if (card.sdprinting)
  6107. {
  6108. MENU_ITEM_FUNCTION_P(_i("Pause print"), lcd_pause_print);////MSG_PAUSE_PRINT
  6109. }
  6110. else
  6111. {
  6112. #ifdef FANCHECK
  6113. if((fan_check_error == EFCE_FIXED) || (fan_check_error == EFCE_OK))
  6114. MENU_ITEM_SUBMENU_P(_i("Resume print"), lcd_resume_print);////MSG_RESUME_PRINT
  6115. #else
  6116. MENU_ITEM_SUBMENU_P(_i("Resume print"), lcd_resume_print);////MSG_RESUME_PRINT
  6117. #endif
  6118. }
  6119. MENU_ITEM_SUBMENU_P(_T(MSG_STOP_PRINT), lcd_sdcard_stop);
  6120. }
  6121. }
  6122. else if (lcd_commands_type == LcdCommands::Layer1Cal && mesh_bed_leveling_flag == false && homing_flag == false) {
  6123. //MENU_ITEM_SUBMENU_P(_T(MSG_STOP_PRINT), lcd_sdcard_stop);
  6124. }
  6125. else
  6126. {
  6127. if (!is_usb_printing && (lcd_commands_type != LcdCommands::Layer1Cal))
  6128. {
  6129. //if (farm_mode) MENU_ITEM_SUBMENU_P(MSG_FARM_CARD_MENU, lcd_farm_sdcard_menu);
  6130. /*else*/ {
  6131. bMain=true; // flag ('fake parameter') for 'lcd_sdcard_menu()' function
  6132. MENU_ITEM_SUBMENU_P(_T(MSG_CARD_MENU), lcd_sdcard_menu);
  6133. }
  6134. }
  6135. #if SDCARDDETECT < 1
  6136. MENU_ITEM_GCODE_P(_i("Change SD card"), PSTR("M21")); // SD-card changed by user////MSG_CNG_SDCARD
  6137. #endif
  6138. }
  6139. } else
  6140. {
  6141. bMain=true; // flag (i.e. 'fake parameter') for 'lcd_sdcard_menu()' function
  6142. MENU_ITEM_SUBMENU_P(_i("No SD card"), lcd_sdcard_menu);////MSG_NO_CARD
  6143. #if SDCARDDETECT < 1
  6144. MENU_ITEM_GCODE_P(_i("Init. SD card"), PSTR("M21")); // Manually initialize the SD-card via user interface////MSG_INIT_SDCARD
  6145. #endif
  6146. }
  6147. #endif
  6148. if(!isPrintPaused && !IS_SD_PRINTING && !is_usb_printing && (lcd_commands_type != LcdCommands::Layer1Cal))
  6149. {
  6150. if (!farm_mode)
  6151. {
  6152. const int8_t sheet = eeprom_read_byte(&(EEPROM_Sheets_base->active_sheet));
  6153. const int8_t nextSheet = eeprom_next_initialized_sheet(sheet);
  6154. if ((nextSheet >= 0) && (sheet != nextSheet)) // show menu only if we have 2 or more sheets initialized
  6155. {
  6156. MENU_ITEM_FUNCTION_E(EEPROM_Sheets_base->s[sheet], eeprom_switch_to_next_sheet);
  6157. }
  6158. }
  6159. }
  6160. if (IS_SD_PRINTING || is_usb_printing || (lcd_commands_type == LcdCommands::Layer1Cal))
  6161. {
  6162. if (farm_mode)
  6163. {
  6164. MENU_ITEM_SUBMENU_P(PSTR("Farm number"), lcd_farm_no);
  6165. }
  6166. }
  6167. else
  6168. {
  6169. if (mmu_enabled)
  6170. {
  6171. MENU_ITEM_SUBMENU_P(_T(MSG_LOAD_FILAMENT), fil_load_menu);
  6172. MENU_ITEM_SUBMENU_P(_i("Load to nozzle"), mmu_load_to_nozzle_menu);
  6173. //-// MENU_ITEM_FUNCTION_P(_T(MSG_UNLOAD_FILAMENT), extr_unload);
  6174. //bFilamentFirstRun=true;
  6175. MENU_ITEM_SUBMENU_P(_T(MSG_UNLOAD_FILAMENT), mmu_unload_filament);
  6176. MENU_ITEM_SUBMENU_P(_i("Eject filament"), mmu_fil_eject_menu);
  6177. #ifdef MMU_HAS_CUTTER
  6178. MENU_ITEM_SUBMENU_P(_i("Cut filament"), mmu_cut_filament_menu);
  6179. #endif //MMU_HAS_CUTTER
  6180. }
  6181. else
  6182. {
  6183. #ifdef SNMM
  6184. MENU_ITEM_SUBMENU_P(_T(MSG_UNLOAD_FILAMENT), fil_unload_menu);
  6185. MENU_ITEM_SUBMENU_P(_i("Change extruder"), change_extr_menu);////MSG_CHANGE_EXTR c=20 r=1
  6186. #endif
  6187. #ifdef FILAMENT_SENSOR
  6188. if ((fsensor_autoload_enabled == true) && (fsensor_enabled == true) && (mmu_enabled == false))
  6189. MENU_ITEM_SUBMENU_P(_i("AutoLoad filament"), lcd_menu_AutoLoadFilament);////MSG_AUTOLOAD_FILAMENT c=17
  6190. else
  6191. #endif //FILAMENT_SENSOR
  6192. {
  6193. bFilamentFirstRun=true;
  6194. MENU_ITEM_SUBMENU_P(_T(MSG_LOAD_FILAMENT), lcd_LoadFilament);
  6195. }
  6196. bFilamentFirstRun=true;
  6197. MENU_ITEM_SUBMENU_P(_T(MSG_UNLOAD_FILAMENT), lcd_unLoadFilament);
  6198. }
  6199. MENU_ITEM_SUBMENU_P(_T(MSG_SETTINGS), lcd_settings_menu);
  6200. if(!isPrintPaused) MENU_ITEM_SUBMENU_P(_T(MSG_MENU_CALIBRATION), lcd_calibration_menu);
  6201. }
  6202. if (!is_usb_printing && (lcd_commands_type != LcdCommands::Layer1Cal))
  6203. {
  6204. MENU_ITEM_SUBMENU_P(_i("Statistics "), lcd_menu_statistics);////MSG_STATISTICS
  6205. }
  6206. #if defined(TMC2130) || defined(FILAMENT_SENSOR)
  6207. MENU_ITEM_SUBMENU_P(_i("Fail stats"), lcd_menu_fails_stats);
  6208. #endif
  6209. if (mmu_enabled) {
  6210. MENU_ITEM_SUBMENU_P(_i("Fail stats MMU"), lcd_menu_fails_stats_mmu);
  6211. }
  6212. MENU_ITEM_SUBMENU_P(_i("Support"), lcd_support_menu);////MSG_SUPPORT
  6213. #ifdef LCD_TEST
  6214. MENU_ITEM_SUBMENU_P(_i("W25x20CL init"), lcd_test_menu);////MSG_SUPPORT
  6215. #endif //LCD_TEST
  6216. MENU_END();
  6217. }
  6218. void stack_error() {
  6219. Sound_MakeCustom(1000,0,true);
  6220. lcd_display_message_fullscreen_P(_i("Error - static memory has been overwritten"));////MSG_STACK_ERROR c=20 r=4
  6221. //err_triggered = 1;
  6222. while (1) delay_keep_alive(1000);
  6223. }
  6224. #ifdef DEBUG_STEPPER_TIMER_MISSED
  6225. bool stepper_timer_overflow_state = false;
  6226. uint16_t stepper_timer_overflow_max = 0;
  6227. uint16_t stepper_timer_overflow_last = 0;
  6228. uint16_t stepper_timer_overflow_cnt = 0;
  6229. void stepper_timer_overflow() {
  6230. char msg[28];
  6231. sprintf_P(msg, PSTR("#%d %d max %d"), ++ stepper_timer_overflow_cnt, stepper_timer_overflow_last >> 1, stepper_timer_overflow_max >> 1);
  6232. lcd_setstatus(msg);
  6233. stepper_timer_overflow_state = false;
  6234. if (stepper_timer_overflow_last > stepper_timer_overflow_max)
  6235. stepper_timer_overflow_max = stepper_timer_overflow_last;
  6236. SERIAL_ECHOPGM("Stepper timer overflow: ");
  6237. MYSERIAL.print(msg);
  6238. SERIAL_ECHOLNPGM("");
  6239. WRITE(BEEPER, LOW);
  6240. }
  6241. #endif /* DEBUG_STEPPER_TIMER_MISSED */
  6242. static void lcd_colorprint_change() {
  6243. enquecommand_P(PSTR("M600"));
  6244. custom_message_type = CustomMsg::FilamentLoading; //just print status message
  6245. lcd_setstatuspgm(_T(MSG_FINISHING_MOVEMENTS));
  6246. lcd_return_to_status();
  6247. lcd_draw_update = 3;
  6248. }
  6249. static void lcd_tune_menu()
  6250. {
  6251. typedef struct
  6252. {
  6253. menu_data_edit_t reserved; //!< reserved for number editing functions
  6254. int8_t status; //!< To recognize, whether the menu has been just initialized.
  6255. //! Backup of extrudemultiply, to recognize, that the value has been changed and
  6256. //! it needs to be applied.
  6257. int16_t extrudemultiply;
  6258. } _menu_data_t;
  6259. static_assert(sizeof(menu_data)>= sizeof(_menu_data_t),"_menu_data_t doesn't fit into menu_data");
  6260. _menu_data_t* _md = (_menu_data_t*)&(menu_data[0]);
  6261. if (_md->status == 0)
  6262. {
  6263. // Menu was entered. Mark the menu as entered and save the current extrudemultiply value.
  6264. _md->status = 1;
  6265. _md->extrudemultiply = extrudemultiply;
  6266. }
  6267. else if (_md->extrudemultiply != extrudemultiply)
  6268. {
  6269. // extrudemultiply has been changed from the child menu. Apply the new value.
  6270. _md->extrudemultiply = extrudemultiply;
  6271. calculate_extruder_multipliers();
  6272. }
  6273. EEPROM_read(EEPROM_SILENT, (uint8_t*)&SilentModeMenu, sizeof(SilentModeMenu));
  6274. MENU_BEGIN();
  6275. MENU_ITEM_BACK_P(_T(MSG_MAIN)); //1
  6276. MENU_ITEM_EDIT_int3_P(_i("Speed"), &feedmultiply, 10, 999);//2////MSG_SPEED
  6277. MENU_ITEM_EDIT_int3_P(_T(MSG_NOZZLE), &target_temperature[0], 0, HEATER_0_MAXTEMP - 10);//3
  6278. MENU_ITEM_EDIT_int3_P(_T(MSG_BED), &target_temperature_bed, 0, BED_MAXTEMP - 10);//4
  6279. MENU_ITEM_EDIT_int3_P(_T(MSG_FAN_SPEED), &fanSpeed, 0, 255);//5
  6280. MENU_ITEM_EDIT_int3_P(_i("Flow"), &extrudemultiply, 10, 999);//6////MSG_FLOW
  6281. #ifdef FILAMENTCHANGEENABLE
  6282. MENU_ITEM_FUNCTION_P(_T(MSG_FILAMENTCHANGE), lcd_colorprint_change);//7
  6283. #endif
  6284. #ifdef FILAMENT_SENSOR
  6285. if (FSensorStateMenu == 0) {
  6286. MENU_ITEM_FUNCTION_P(_T(MSG_FSENSOR_OFF), lcd_fsensor_state_set);
  6287. }
  6288. else {
  6289. MENU_ITEM_FUNCTION_P(_T(MSG_FSENSOR_ON), lcd_fsensor_state_set);
  6290. }
  6291. #endif //FILAMENT_SENSOR
  6292. SETTINGS_AUTO_DEPLETE;
  6293. SETTINGS_CUTTER;
  6294. if(farm_mode)
  6295. {
  6296. if (fans_check_enabled == true)
  6297. MENU_ITEM_FUNCTION_P(_i("Fans check [on]"), lcd_set_fan_check);////MSG_FANS_CHECK_ON c=17 r=1
  6298. else
  6299. MENU_ITEM_FUNCTION_P(_i("Fans check [off]"), lcd_set_fan_check);////MSG_FANS_CHECK_OFF c=17 r=1
  6300. }
  6301. #ifdef TMC2130
  6302. if(!farm_mode)
  6303. {
  6304. if (SilentModeMenu == SILENT_MODE_NORMAL) MENU_ITEM_FUNCTION_P(_T(MSG_STEALTH_MODE_OFF), lcd_silent_mode_set);
  6305. else MENU_ITEM_FUNCTION_P(_T(MSG_STEALTH_MODE_ON), lcd_silent_mode_set);
  6306. if (SilentModeMenu == SILENT_MODE_NORMAL)
  6307. {
  6308. if (lcd_crash_detect_enabled()) MENU_ITEM_FUNCTION_P(_T(MSG_CRASHDETECT_ON), crash_mode_switch);
  6309. else MENU_ITEM_FUNCTION_P(_T(MSG_CRASHDETECT_OFF), crash_mode_switch);
  6310. }
  6311. else MENU_ITEM_SUBMENU_P(_T(MSG_CRASHDETECT_NA), lcd_crash_mode_info);
  6312. }
  6313. #else //TMC2130
  6314. if (!farm_mode) { //dont show in menu if we are in farm mode
  6315. switch (SilentModeMenu) {
  6316. case SILENT_MODE_POWER: MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_OFF), lcd_silent_mode_set); break;
  6317. case SILENT_MODE_SILENT: MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_ON), lcd_silent_mode_set); break;
  6318. case SILENT_MODE_AUTO: MENU_ITEM_FUNCTION_P(_T(MSG_AUTO_MODE_ON), lcd_silent_mode_set); break;
  6319. default: MENU_ITEM_FUNCTION_P(_T(MSG_SILENT_MODE_OFF), lcd_silent_mode_set); break; // (probably) not needed
  6320. }
  6321. }
  6322. #endif //TMC2130
  6323. SETTINGS_MMU_MODE;
  6324. switch(eSoundMode)
  6325. {
  6326. case e_SOUND_MODE_LOUD:
  6327. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_LOUD),lcd_sound_state_set);
  6328. break;
  6329. case e_SOUND_MODE_ONCE:
  6330. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_ONCE),lcd_sound_state_set);
  6331. break;
  6332. case e_SOUND_MODE_SILENT:
  6333. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_SILENT),lcd_sound_state_set);
  6334. break;
  6335. case e_SOUND_MODE_BLIND:
  6336. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_BLIND),lcd_sound_state_set);
  6337. break;
  6338. default:
  6339. MENU_ITEM_FUNCTION_P(_i(MSG_SOUND_MODE_LOUD),lcd_sound_state_set);
  6340. }
  6341. MENU_END();
  6342. }
  6343. static void mbl_magnets_elimination_toggle() {
  6344. bool magnet_elimination = (eeprom_read_byte((uint8_t*)EEPROM_MBL_MAGNET_ELIMINATION) > 0);
  6345. magnet_elimination = !magnet_elimination;
  6346. eeprom_update_byte((uint8_t*)EEPROM_MBL_MAGNET_ELIMINATION, (uint8_t)magnet_elimination);
  6347. }
  6348. static void mbl_mesh_toggle() {
  6349. uint8_t mesh_nr = eeprom_read_byte((uint8_t*)EEPROM_MBL_POINTS_NR);
  6350. if(mesh_nr == 3) mesh_nr = 7;
  6351. else mesh_nr = 3;
  6352. eeprom_update_byte((uint8_t*)EEPROM_MBL_POINTS_NR, mesh_nr);
  6353. }
  6354. static void mbl_probe_nr_toggle() {
  6355. mbl_z_probe_nr = eeprom_read_byte((uint8_t*)EEPROM_MBL_PROBE_NR);
  6356. switch (mbl_z_probe_nr) {
  6357. case 1: mbl_z_probe_nr = 3; break;
  6358. case 3: mbl_z_probe_nr = 5; break;
  6359. case 5: mbl_z_probe_nr = 1; break;
  6360. default: mbl_z_probe_nr = 3; break;
  6361. }
  6362. eeprom_update_byte((uint8_t*)EEPROM_MBL_PROBE_NR, mbl_z_probe_nr);
  6363. }
  6364. static void lcd_mesh_bed_leveling_settings()
  6365. {
  6366. bool magnet_elimination = (eeprom_read_byte((uint8_t*)EEPROM_MBL_MAGNET_ELIMINATION) > 0);
  6367. uint8_t points_nr = eeprom_read_byte((uint8_t*)EEPROM_MBL_POINTS_NR);
  6368. MENU_BEGIN();
  6369. MENU_ITEM_BACK_P(_T(MSG_SETTINGS));
  6370. if(points_nr == 3) MENU_ITEM_FUNCTION_P(_i("Mesh [3x3]"), mbl_mesh_toggle); ////MSG_MESH_3x3 c=18
  6371. else MENU_ITEM_FUNCTION_P(_i("Mesh [7x7]"), mbl_mesh_toggle); ////MSG_MESH_7x7 c=18
  6372. switch (mbl_z_probe_nr) {
  6373. case 1: MENU_ITEM_FUNCTION_P(_i("Z-probe nr. [1]"), mbl_probe_nr_toggle); break; ////MSG_Z_PROBE_NR_1 c=18
  6374. case 5: MENU_ITEM_FUNCTION_P(_i("Z-probe nr. [5]"), mbl_probe_nr_toggle); break; ////MSG_Z_PROBE_NR_1 c=18
  6375. default: MENU_ITEM_FUNCTION_P(_i("Z-probe nr. [3]"), mbl_probe_nr_toggle); break; ////MSG_Z_PROBE_NR_1 c=18
  6376. }
  6377. if (points_nr == 7) {
  6378. if (magnet_elimination) MENU_ITEM_FUNCTION_P(_i("Magnets comp. [On]"), mbl_magnets_elimination_toggle); ////MSG_MAGNETS_COMP_ON c=18
  6379. else MENU_ITEM_FUNCTION_P(_i("Magnets comp.[Off]"), mbl_magnets_elimination_toggle); ////MSG_MAGNETS_COMP_OFF c=18
  6380. }
  6381. else menu_item_text_P(_i("Magnets comp.[N/A]")); ////MSG_MAGNETS_COMP_NA c=18
  6382. MENU_END();
  6383. //SETTINGS_MBL_MODE;
  6384. }
  6385. static void lcd_control_temperature_menu()
  6386. {
  6387. #ifdef PIDTEMP
  6388. // set up temp variables - undo the default scaling
  6389. // raw_Ki = unscalePID_i(Ki);
  6390. // raw_Kd = unscalePID_d(Kd);
  6391. #endif
  6392. MENU_BEGIN();
  6393. MENU_ITEM_BACK_P(_T(MSG_SETTINGS));
  6394. #if TEMP_SENSOR_0 != 0
  6395. MENU_ITEM_EDIT_int3_P(_T(MSG_NOZZLE), &target_temperature[0], 0, HEATER_0_MAXTEMP - 10);
  6396. #endif
  6397. #if TEMP_SENSOR_1 != 0
  6398. MENU_ITEM_EDIT_int3_P(_i("Nozzle2"), &target_temperature[1], 0, HEATER_1_MAXTEMP - 10);////MSG_NOZZLE1
  6399. #endif
  6400. #if TEMP_SENSOR_2 != 0
  6401. MENU_ITEM_EDIT_int3_P(_i("Nozzle3"), &target_temperature[2], 0, HEATER_2_MAXTEMP - 10);////MSG_NOZZLE2
  6402. #endif
  6403. #if TEMP_SENSOR_BED != 0
  6404. MENU_ITEM_EDIT_int3_P(_T(MSG_BED), &target_temperature_bed, 0, BED_MAXTEMP - 3);
  6405. #endif
  6406. MENU_ITEM_EDIT_int3_P(_T(MSG_FAN_SPEED), &fanSpeed, 0, 255);
  6407. #if defined AUTOTEMP && (TEMP_SENSOR_0 != 0)
  6408. //MENU_ITEM_EDIT removed, following code must be redesigned if AUTOTEMP enabled
  6409. MENU_ITEM_EDIT(bool, MSG_AUTOTEMP, &autotemp_enabled);
  6410. MENU_ITEM_EDIT(float3, _i(" \002 Min"), &autotemp_min, 0, HEATER_0_MAXTEMP - 10);////MSG_MIN
  6411. MENU_ITEM_EDIT(float3, _i(" \002 Max"), &autotemp_max, 0, HEATER_0_MAXTEMP - 10);////MSG_MAX
  6412. MENU_ITEM_EDIT(float32, _i(" \002 Fact"), &autotemp_factor, 0.0, 1.0);////MSG_FACTOR
  6413. #endif
  6414. MENU_END();
  6415. }
  6416. #if SDCARDDETECT == -1
  6417. static void lcd_sd_refresh()
  6418. {
  6419. card.initsd();
  6420. menu_top = 0;
  6421. }
  6422. #endif
  6423. static void lcd_sd_updir()
  6424. {
  6425. card.updir();
  6426. menu_top = 0;
  6427. }
  6428. void lcd_print_stop()
  6429. {
  6430. //-//
  6431. if(!card.sdprinting)
  6432. {
  6433. SERIAL_ECHOLNRPGM(MSG_OCTOPRINT_CANCEL); // for Octoprint
  6434. }
  6435. saved_printing = false;
  6436. saved_printing_type = PRINTING_TYPE_NONE;
  6437. cancel_heatup = true;
  6438. #ifdef MESH_BED_LEVELING
  6439. mbl.active = false;
  6440. #endif
  6441. // Stop the stoppers, update the position from the stoppers.
  6442. if (mesh_bed_leveling_flag == false && homing_flag == false)
  6443. {
  6444. planner_abort_hard();
  6445. // Because the planner_abort_hard() initialized current_position[Z] from the stepper,
  6446. // Z baystep is no more applied. Reset it.
  6447. babystep_reset();
  6448. }
  6449. // Clean the input command queue.
  6450. cmdqueue_reset();
  6451. lcd_setstatuspgm(_T(MSG_PRINT_ABORTED));
  6452. card.sdprinting = false;
  6453. card.closefile();
  6454. stoptime = _millis();
  6455. unsigned long t = (stoptime - starttime - pause_time) / 1000; //time in s
  6456. pause_time = 0;
  6457. save_statistics(total_filament_used, t);
  6458. lcd_return_to_status();
  6459. lcd_ignore_click(true);
  6460. lcd_commands_step = 0;
  6461. lcd_commands_type = LcdCommands::StopPrint;
  6462. // Turn off the print fan
  6463. SET_OUTPUT(FAN_PIN);
  6464. WRITE(FAN_PIN, 0);
  6465. fanSpeed = 0;
  6466. }
  6467. void lcd_sdcard_stop()
  6468. {
  6469. lcd_set_cursor(0, 0);
  6470. lcd_puts_P(_T(MSG_STOP_PRINT));
  6471. lcd_set_cursor(2, 2);
  6472. lcd_puts_P(_T(MSG_NO));
  6473. lcd_set_cursor(2, 3);
  6474. lcd_puts_P(_T(MSG_YES));
  6475. lcd_set_cursor(0, 2); lcd_print(" ");
  6476. lcd_set_cursor(0, 3); lcd_print(" ");
  6477. if ((int32_t)lcd_encoder > 2) { lcd_encoder = 2; }
  6478. if ((int32_t)lcd_encoder < 1) { lcd_encoder = 1; }
  6479. lcd_set_cursor(0, 1 + lcd_encoder);
  6480. lcd_print(">");
  6481. if (lcd_clicked())
  6482. {
  6483. Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);
  6484. if ((int32_t)lcd_encoder == 1)
  6485. {
  6486. lcd_return_to_status();
  6487. }
  6488. if ((int32_t)lcd_encoder == 2)
  6489. {
  6490. lcd_print_stop();
  6491. }
  6492. }
  6493. }
  6494. void lcd_sdcard_menu()
  6495. {
  6496. uint8_t sdSort = eeprom_read_byte((uint8_t*)EEPROM_SD_SORT);
  6497. if (presort_flag == true) {
  6498. presort_flag = false;
  6499. card.presort();
  6500. }
  6501. if (lcd_draw_update == 0 && LCD_CLICKED == 0)
  6502. //_delay(100);
  6503. return; // nothing to do (so don't thrash the SD card)
  6504. uint16_t fileCnt = card.getnrfilenames();
  6505. MENU_BEGIN();
  6506. MENU_ITEM_BACK_P(_T(bMain?MSG_MAIN:MSG_BACK)); // i.e. default menu-item / menu-item after card insertion
  6507. card.getWorkDirName();
  6508. if (card.filename[0] == '/')
  6509. {
  6510. #if SDCARDDETECT == -1
  6511. MENU_ITEM_FUNCTION_P(_T(MSG_REFRESH), lcd_sd_refresh);
  6512. #endif
  6513. } else {
  6514. MENU_ITEM_FUNCTION_P(PSTR(LCD_STR_FOLDER ".."), lcd_sd_updir);
  6515. }
  6516. for (uint16_t i = 0; i < fileCnt; i++)
  6517. {
  6518. if (menu_item == menu_line)
  6519. {
  6520. const uint16_t nr = ((sdSort == SD_SORT_NONE) || farm_mode || (sdSort == SD_SORT_TIME)) ? (fileCnt - 1 - i) : i;
  6521. /*#ifdef SDCARD_RATHERRECENTFIRST
  6522. #ifndef SDCARD_SORT_ALPHA
  6523. fileCnt - 1 -
  6524. #endif
  6525. #endif
  6526. i;*/
  6527. #ifdef SDCARD_SORT_ALPHA
  6528. if (sdSort == SD_SORT_NONE) card.getfilename(nr);
  6529. else card.getfilename_sorted(nr);
  6530. #else
  6531. card.getfilename(nr);
  6532. #endif
  6533. if (card.filenameIsDir)
  6534. MENU_ITEM_SDDIR(card.filename, card.longFilename);
  6535. else
  6536. MENU_ITEM_SDFILE(_T(MSG_CARD_MENU), card.filename, card.longFilename);
  6537. } else {
  6538. MENU_ITEM_DUMMY();
  6539. }
  6540. }
  6541. MENU_END();
  6542. }
  6543. static void lcd_selftest_v()
  6544. {
  6545. (void)lcd_selftest();
  6546. }
  6547. bool lcd_selftest()
  6548. {
  6549. int _progress = 0;
  6550. bool _result = true;
  6551. bool _swapped_fan = false;
  6552. lcd_wait_for_cool_down();
  6553. lcd_clear();
  6554. lcd_set_cursor(0, 0); lcd_puts_P(_i("Self test start "));////MSG_SELFTEST_START c=20
  6555. #ifdef TMC2130
  6556. FORCE_HIGH_POWER_START;
  6557. #endif // TMC2130
  6558. _delay(2000);
  6559. KEEPALIVE_STATE(IN_HANDLER);
  6560. _progress = lcd_selftest_screen(TestScreen::ExtruderFan, _progress, 3, true, 2000);
  6561. #if (defined(FANCHECK) && defined(TACH_0))
  6562. switch (lcd_selftest_fan_auto(0)){ // check extruder Fan
  6563. case FanCheck::ExtruderFan:
  6564. _result = false;
  6565. break;
  6566. case FanCheck::SwappedFan:
  6567. _swapped_fan = true;
  6568. // no break
  6569. default:
  6570. _result = true;
  6571. break;
  6572. }
  6573. #else //defined(TACH_0)
  6574. _result = lcd_selftest_manual_fan_check(0, false);
  6575. #endif //defined(TACH_0)
  6576. if (!_result)
  6577. {
  6578. lcd_selftest_error(TestError::ExtruderFan, "", "");
  6579. }
  6580. if (_result)
  6581. {
  6582. _progress = lcd_selftest_screen(TestScreen::PrintFan, _progress, 3, true, 2000);
  6583. #if (defined(FANCHECK) && defined(TACH_1))
  6584. switch (lcd_selftest_fan_auto(1)){ // check print fan
  6585. case FanCheck::PrintFan:
  6586. _result = false;
  6587. break;
  6588. case FanCheck::SwappedFan:
  6589. _swapped_fan = true;
  6590. // no break
  6591. default:
  6592. _result = true;
  6593. break;
  6594. }
  6595. #else //defined(TACH_1)
  6596. _result = lcd_selftest_manual_fan_check(1, false);
  6597. #endif //defined(TACH_1)
  6598. if (!_result)
  6599. {
  6600. lcd_selftest_error(TestError::PrintFan, "", ""); //print fan not spinning
  6601. }
  6602. }
  6603. if (_swapped_fan) {
  6604. //turn on print fan and check that left extruder fan is not spinning
  6605. _result = lcd_selftest_manual_fan_check(1, true);
  6606. if (_result) {
  6607. //print fan is stil turned on; check that it is spinning
  6608. _result = lcd_selftest_manual_fan_check(1, false, true);
  6609. if (!_result){
  6610. lcd_selftest_error(TestError::PrintFan, "", "");
  6611. }
  6612. }
  6613. else {
  6614. // fans are swapped
  6615. lcd_selftest_error(TestError::SwappedFan, "", "");
  6616. }
  6617. }
  6618. if (_result)
  6619. {
  6620. _progress = lcd_selftest_screen(TestScreen::FansOk, _progress, 3, true, 2000);
  6621. #ifndef TMC2130
  6622. _result = lcd_selfcheck_endstops();
  6623. #else
  6624. _result = true;
  6625. #endif
  6626. }
  6627. if (_result)
  6628. {
  6629. //current_position[Z_AXIS] += 15; //move Z axis higher to avoid false triggering of Z end stop in case that we are very low - just above heatbed
  6630. _progress = lcd_selftest_screen(TestScreen::AxisX, _progress, 3, true, 2000);
  6631. #ifdef TMC2130
  6632. _result = lcd_selfcheck_axis_sg(X_AXIS);
  6633. #else
  6634. _result = lcd_selfcheck_axis(X_AXIS, X_MAX_POS);
  6635. #endif //TMC2130
  6636. }
  6637. if (_result)
  6638. {
  6639. _progress = lcd_selftest_screen(TestScreen::AxisX, _progress, 3, true, 0);
  6640. #ifndef TMC2130
  6641. _result = lcd_selfcheck_pulleys(X_AXIS);
  6642. #endif
  6643. }
  6644. if (_result)
  6645. {
  6646. _progress = lcd_selftest_screen(TestScreen::AxisY, _progress, 3, true, 1500);
  6647. #ifdef TMC2130
  6648. _result = lcd_selfcheck_axis_sg(Y_AXIS);
  6649. #else
  6650. _result = lcd_selfcheck_axis(Y_AXIS, Y_MAX_POS);
  6651. #endif // TMC2130
  6652. }
  6653. if (_result)
  6654. {
  6655. _progress = lcd_selftest_screen(TestScreen::AxisZ, _progress, 3, true, 0);
  6656. #ifndef TMC2130
  6657. _result = lcd_selfcheck_pulleys(Y_AXIS);
  6658. #endif // TMC2130
  6659. }
  6660. if (_result)
  6661. {
  6662. #ifdef TMC2130
  6663. tmc2130_home_exit();
  6664. enable_endstops(false);
  6665. current_position[X_AXIS] = current_position[X_AXIS] + 14;
  6666. current_position[Y_AXIS] = current_position[Y_AXIS] + 12;
  6667. #endif
  6668. //homeaxis(X_AXIS);
  6669. //homeaxis(Y_AXIS);
  6670. current_position[Z_AXIS] = current_position[Z_AXIS] + 10;
  6671. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6672. st_synchronize();
  6673. _progress = lcd_selftest_screen(TestScreen::AxisZ, _progress, 3, true, 1500);
  6674. _result = lcd_selfcheck_axis(2, Z_MAX_POS);
  6675. if (eeprom_read_byte((uint8_t*)EEPROM_WIZARD_ACTIVE) != 1) {
  6676. enquecommand_P(PSTR("G28 W"));
  6677. enquecommand_P(PSTR("G1 Z15 F1000"));
  6678. }
  6679. }
  6680. #ifdef TMC2130
  6681. if (_result)
  6682. {
  6683. current_position[Z_AXIS] = current_position[Z_AXIS] + 10;
  6684. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6685. st_synchronize();
  6686. _progress = lcd_selftest_screen(TestScreen::Home, 0, 2, true, 0);
  6687. bool bres = tmc2130_home_calibrate(X_AXIS);
  6688. _progress = lcd_selftest_screen(TestScreen::Home, 1, 2, true, 0);
  6689. bres &= tmc2130_home_calibrate(Y_AXIS);
  6690. _progress = lcd_selftest_screen(TestScreen::Home, 2, 2, true, 0);
  6691. if (bres)
  6692. eeprom_update_byte((uint8_t*)EEPROM_TMC2130_HOME_ENABLED, 1);
  6693. _result = bres;
  6694. }
  6695. #endif //TMC2130
  6696. if (_result)
  6697. {
  6698. _progress = lcd_selftest_screen(TestScreen::Bed, _progress, 3, true, 2000);
  6699. _result = lcd_selfcheck_check_heater(true);
  6700. }
  6701. if (_result)
  6702. {
  6703. _progress = lcd_selftest_screen(TestScreen::Hotend, _progress, 3, true, 1000);
  6704. _result = lcd_selfcheck_check_heater(false);
  6705. }
  6706. if (_result)
  6707. {
  6708. _progress = lcd_selftest_screen(TestScreen::HotendOk, _progress, 3, true, 2000); //nozzle ok
  6709. }
  6710. #ifdef FILAMENT_SENSOR
  6711. if (_result)
  6712. {
  6713. if (mmu_enabled)
  6714. {
  6715. _progress = lcd_selftest_screen(TestScreen::Fsensor, _progress, 3, true, 2000); //check filaments sensor
  6716. _result = selftest_irsensor();
  6717. if (_result)
  6718. {
  6719. _progress = lcd_selftest_screen(TestScreen::FsensorOk, _progress, 3, true, 2000); //fil sensor OK
  6720. }
  6721. } else
  6722. {
  6723. #ifdef PAT9125
  6724. _progress = lcd_selftest_screen(TestScreen::Fsensor, _progress, 3, true, 2000); //check filaments sensor
  6725. _result = lcd_selftest_fsensor();
  6726. if (_result)
  6727. {
  6728. _progress = lcd_selftest_screen(TestScreen::FsensorOk, _progress, 3, true, 2000); //fil sensor OK
  6729. }
  6730. #endif //PAT9125
  6731. }
  6732. }
  6733. #endif //FILAMENT_SENSOR
  6734. if (_result)
  6735. {
  6736. _progress = lcd_selftest_screen(TestScreen::AllCorrect, _progress, 3, true, 5000); //all correct
  6737. }
  6738. else
  6739. {
  6740. _progress = lcd_selftest_screen(TestScreen::Failed, _progress, 3, true, 5000);
  6741. }
  6742. lcd_reset_alert_level();
  6743. enquecommand_P(PSTR("M84"));
  6744. lcd_update_enable(true);
  6745. if (_result)
  6746. {
  6747. LCD_ALERTMESSAGERPGM(_i("Self test OK"));////MSG_SELFTEST_OK
  6748. }
  6749. else
  6750. {
  6751. LCD_ALERTMESSAGERPGM(_T(MSG_SELFTEST_FAILED));
  6752. }
  6753. #ifdef TMC2130
  6754. FORCE_HIGH_POWER_END;
  6755. #endif // TMC2130
  6756. KEEPALIVE_STATE(NOT_BUSY);
  6757. return(_result);
  6758. }
  6759. #ifdef TMC2130
  6760. static void reset_crash_det(unsigned char axis) {
  6761. current_position[axis] += 10;
  6762. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6763. st_synchronize();
  6764. if (eeprom_read_byte((uint8_t*)EEPROM_CRASH_DET)) tmc2130_sg_stop_on_crash = true;
  6765. }
  6766. static bool lcd_selfcheck_axis_sg(unsigned char axis) {
  6767. // each axis length is measured twice
  6768. float axis_length, current_position_init, current_position_final;
  6769. float measured_axis_length[2];
  6770. float margin = 60;
  6771. float max_error_mm = 5;
  6772. switch (axis) {
  6773. case 0: axis_length = X_MAX_POS; break;
  6774. case 1: axis_length = Y_MAX_POS + 8; break;
  6775. default: axis_length = 210; break;
  6776. }
  6777. tmc2130_sg_stop_on_crash = false;
  6778. tmc2130_home_exit();
  6779. enable_endstops(true);
  6780. if (axis == X_AXIS) { //there is collision between cables and PSU cover in X axis if Z coordinate is too low
  6781. current_position[Z_AXIS] += 17;
  6782. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6783. tmc2130_home_enter(Z_AXIS_MASK);
  6784. st_synchronize();
  6785. tmc2130_home_exit();
  6786. }
  6787. // first axis length measurement begin
  6788. current_position[axis] -= (axis_length + margin);
  6789. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6790. st_synchronize();
  6791. tmc2130_sg_meassure_start(axis);
  6792. current_position_init = st_get_position_mm(axis);
  6793. current_position[axis] += 2 * margin;
  6794. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6795. st_synchronize();
  6796. current_position[axis] += axis_length;
  6797. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6798. st_synchronize();
  6799. uint16_t sg1 = tmc2130_sg_meassure_stop();
  6800. printf_P(PSTR("%c AXIS SG1=%d\n"), 'X'+axis, sg1);
  6801. eeprom_write_word(((uint16_t*)((axis == X_AXIS)?EEPROM_BELTSTATUS_X:EEPROM_BELTSTATUS_Y)), sg1);
  6802. current_position_final = st_get_position_mm(axis);
  6803. measured_axis_length[0] = abs(current_position_final - current_position_init);
  6804. // first measurement end and second measurement begin
  6805. current_position[axis] -= margin;
  6806. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6807. st_synchronize();
  6808. current_position[axis] -= (axis_length + margin);
  6809. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6810. st_synchronize();
  6811. current_position_init = st_get_position_mm(axis);
  6812. measured_axis_length[1] = abs(current_position_final - current_position_init);
  6813. //end of second measurement, now check for possible errors:
  6814. for(uint_least8_t i = 0; i < 2; i++){ //check if measured axis length corresponds to expected length
  6815. printf_P(_N("Measured axis length:%.3f\n"), measured_axis_length[i]);
  6816. if (abs(measured_axis_length[i] - axis_length) > max_error_mm) {
  6817. enable_endstops(false);
  6818. const char *_error_1;
  6819. if (axis == X_AXIS) _error_1 = "X";
  6820. if (axis == Y_AXIS) _error_1 = "Y";
  6821. if (axis == Z_AXIS) _error_1 = "Z";
  6822. lcd_selftest_error(TestError::Axis, _error_1, "");
  6823. current_position[axis] = 0;
  6824. plan_set_position(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  6825. reset_crash_det(axis);
  6826. return false;
  6827. }
  6828. }
  6829. printf_P(_N("Axis length difference:%.3f\n"), abs(measured_axis_length[0] - measured_axis_length[1]));
  6830. if (abs(measured_axis_length[0] - measured_axis_length[1]) > 1) { //check if difference between first and second measurement is low
  6831. //loose pulleys
  6832. const char *_error_1;
  6833. if (axis == X_AXIS) _error_1 = "X";
  6834. if (axis == Y_AXIS) _error_1 = "Y";
  6835. if (axis == Z_AXIS) _error_1 = "Z";
  6836. lcd_selftest_error(TestError::Pulley, _error_1, "");
  6837. current_position[axis] = 0;
  6838. plan_set_position(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  6839. reset_crash_det(axis);
  6840. return false;
  6841. }
  6842. current_position[axis] = 0;
  6843. plan_set_position(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  6844. reset_crash_det(axis);
  6845. return true;
  6846. }
  6847. #endif //TMC2130
  6848. //#ifndef TMC2130
  6849. static bool lcd_selfcheck_axis(int _axis, int _travel)
  6850. {
  6851. // printf_P(PSTR("lcd_selfcheck_axis %d, %d\n"), _axis, _travel);
  6852. bool _stepdone = false;
  6853. bool _stepresult = false;
  6854. int _progress = 0;
  6855. int _travel_done = 0;
  6856. int _err_endstop = 0;
  6857. int _lcd_refresh = 0;
  6858. _travel = _travel + (_travel / 10);
  6859. if (_axis == X_AXIS) {
  6860. current_position[Z_AXIS] += 17;
  6861. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6862. }
  6863. do {
  6864. current_position[_axis] = current_position[_axis] - 1;
  6865. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6866. st_synchronize();
  6867. #ifdef TMC2130
  6868. if ((READ(Z_MIN_PIN) ^ (bool)Z_MIN_ENDSTOP_INVERTING))
  6869. #else //TMC2130
  6870. if ((READ(X_MIN_PIN) ^ (bool)X_MIN_ENDSTOP_INVERTING) ||
  6871. (READ(Y_MIN_PIN) ^ (bool)Y_MIN_ENDSTOP_INVERTING) ||
  6872. (READ(Z_MIN_PIN) ^ (bool)Z_MIN_ENDSTOP_INVERTING))
  6873. #endif //TMC2130
  6874. {
  6875. if (_axis == 0)
  6876. {
  6877. _stepresult = ((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ? true : false;
  6878. _err_endstop = ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) ? 1 : 2;
  6879. }
  6880. if (_axis == 1)
  6881. {
  6882. _stepresult = ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) ? true : false;
  6883. _err_endstop = ((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ? 0 : 2;
  6884. }
  6885. if (_axis == 2)
  6886. {
  6887. _stepresult = ((READ(Z_MIN_PIN) ^ Z_MIN_ENDSTOP_INVERTING) == 1) ? true : false;
  6888. _err_endstop = ((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ? 0 : 1;
  6889. printf_P(PSTR("lcd_selfcheck_axis %d, %d\n"), _stepresult, _err_endstop);
  6890. /*disable_x();
  6891. disable_y();
  6892. disable_z();*/
  6893. }
  6894. _stepdone = true;
  6895. }
  6896. if (_lcd_refresh < 6)
  6897. {
  6898. _lcd_refresh++;
  6899. }
  6900. else
  6901. {
  6902. _progress = lcd_selftest_screen(static_cast<TestScreen>(static_cast<int>(TestScreen::AxisX) + _axis), _progress, 3, false, 0);
  6903. _lcd_refresh = 0;
  6904. }
  6905. manage_heater();
  6906. manage_inactivity(true);
  6907. //_delay(100);
  6908. (_travel_done <= _travel) ? _travel_done++ : _stepdone = true;
  6909. } while (!_stepdone);
  6910. //current_position[_axis] = current_position[_axis] + 15;
  6911. //plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6912. if (!_stepresult)
  6913. {
  6914. const char *_error_1;
  6915. const char *_error_2;
  6916. if (_axis == X_AXIS) _error_1 = "X";
  6917. if (_axis == Y_AXIS) _error_1 = "Y";
  6918. if (_axis == Z_AXIS) _error_1 = "Z";
  6919. if (_err_endstop == 0) _error_2 = "X";
  6920. if (_err_endstop == 1) _error_2 = "Y";
  6921. if (_err_endstop == 2) _error_2 = "Z";
  6922. if (_travel_done >= _travel)
  6923. {
  6924. lcd_selftest_error(TestError::Endstop, _error_1, _error_2);
  6925. }
  6926. else
  6927. {
  6928. lcd_selftest_error(TestError::Motor, _error_1, _error_2);
  6929. }
  6930. }
  6931. return _stepresult;
  6932. }
  6933. #ifndef TMC2130
  6934. static bool lcd_selfcheck_pulleys(int axis)
  6935. {
  6936. float tmp_motor_loud[3] = DEFAULT_PWM_MOTOR_CURRENT_LOUD;
  6937. float tmp_motor[3] = DEFAULT_PWM_MOTOR_CURRENT;
  6938. float current_position_init;
  6939. float move;
  6940. bool endstop_triggered = false;
  6941. int i;
  6942. unsigned long timeout_counter;
  6943. refresh_cmd_timeout();
  6944. manage_inactivity(true);
  6945. if (axis == 0) move = 50; //X_AXIS
  6946. else move = 50; //Y_AXIS
  6947. current_position_init = current_position[axis];
  6948. current_position[axis] += 2;
  6949. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6950. for (i = 0; i < 5; i++) {
  6951. refresh_cmd_timeout();
  6952. current_position[axis] = current_position[axis] + move;
  6953. st_current_set(0, 850); //set motor current higher
  6954. plan_buffer_line_curposXYZE(200, active_extruder);
  6955. st_synchronize();
  6956. if (SilentModeMenu != SILENT_MODE_OFF) st_current_set(0, tmp_motor[0]); //set back to normal operation currents
  6957. else st_current_set(0, tmp_motor_loud[0]); //set motor current back
  6958. current_position[axis] = current_position[axis] - move;
  6959. plan_buffer_line_curposXYZE(50, active_extruder);
  6960. st_synchronize();
  6961. if (((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ||
  6962. ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1)) {
  6963. lcd_selftest_error(TestError::Pulley, (axis == 0) ? "X" : "Y", "");
  6964. return(false);
  6965. }
  6966. }
  6967. timeout_counter = _millis() + 2500;
  6968. endstop_triggered = false;
  6969. manage_inactivity(true);
  6970. while (!endstop_triggered) {
  6971. if (((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ||
  6972. ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1)) {
  6973. endstop_triggered = true;
  6974. if (current_position_init - 1 <= current_position[axis] && current_position_init + 1 >= current_position[axis]) {
  6975. current_position[axis] += (axis == X_AXIS) ? 13 : 9;
  6976. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6977. st_synchronize();
  6978. return(true);
  6979. }
  6980. else {
  6981. lcd_selftest_error(TestError::Pulley, (axis == 0) ? "X" : "Y", "");
  6982. return(false);
  6983. }
  6984. }
  6985. else {
  6986. current_position[axis] -= 1;
  6987. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  6988. st_synchronize();
  6989. if (_millis() > timeout_counter) {
  6990. lcd_selftest_error(TestError::Pulley, (axis == 0) ? "X" : "Y", "");
  6991. return(false);
  6992. }
  6993. }
  6994. }
  6995. return(true);
  6996. }
  6997. static bool lcd_selfcheck_endstops()
  6998. {
  6999. bool _result = true;
  7000. if (((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ||
  7001. ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) ||
  7002. ((READ(Z_MIN_PIN) ^ Z_MIN_ENDSTOP_INVERTING) == 1))
  7003. {
  7004. if ((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) current_position[0] += 10;
  7005. if ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) current_position[1] += 10;
  7006. if ((READ(Z_MIN_PIN) ^ Z_MIN_ENDSTOP_INVERTING) == 1) current_position[2] += 10;
  7007. }
  7008. plan_buffer_line_curposXYZE(manual_feedrate[0] / 60, active_extruder);
  7009. _delay(500);
  7010. if (((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) ||
  7011. ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) ||
  7012. ((READ(Z_MIN_PIN) ^ Z_MIN_ENDSTOP_INVERTING) == 1))
  7013. {
  7014. _result = false;
  7015. char _error[4] = "";
  7016. if ((READ(X_MIN_PIN) ^ X_MIN_ENDSTOP_INVERTING) == 1) strcat(_error, "X");
  7017. if ((READ(Y_MIN_PIN) ^ Y_MIN_ENDSTOP_INVERTING) == 1) strcat(_error, "Y");
  7018. if ((READ(Z_MIN_PIN) ^ Z_MIN_ENDSTOP_INVERTING) == 1) strcat(_error, "Z");
  7019. lcd_selftest_error(TestError::Endstops, _error, "");
  7020. }
  7021. manage_heater();
  7022. manage_inactivity(true);
  7023. return _result;
  7024. }
  7025. #endif //not defined TMC2130
  7026. static bool lcd_selfcheck_check_heater(bool _isbed)
  7027. {
  7028. int _counter = 0;
  7029. int _progress = 0;
  7030. bool _stepresult = false;
  7031. bool _docycle = true;
  7032. int _checked_snapshot = (_isbed) ? degBed() : degHotend(0);
  7033. int _opposite_snapshot = (_isbed) ? degHotend(0) : degBed();
  7034. int _cycles = (_isbed) ? 180 : 60; //~ 90s / 30s
  7035. target_temperature[0] = (_isbed) ? 0 : 200;
  7036. target_temperature_bed = (_isbed) ? 100 : 0;
  7037. manage_heater();
  7038. manage_inactivity(true);
  7039. KEEPALIVE_STATE(NOT_BUSY); //we are sending temperatures on serial line, so no need to send host keepalive messages
  7040. do {
  7041. _counter++;
  7042. _docycle = (_counter < _cycles) ? true : false;
  7043. manage_heater();
  7044. manage_inactivity(true);
  7045. _progress = (_isbed) ? lcd_selftest_screen(TestScreen::Bed, _progress, 2, false, 400) : lcd_selftest_screen(TestScreen::Hotend, _progress, 2, false, 400);
  7046. /*if (_isbed) {
  7047. MYSERIAL.print("Bed temp:");
  7048. MYSERIAL.println(degBed());
  7049. }
  7050. else {
  7051. MYSERIAL.print("Hotend temp:");
  7052. MYSERIAL.println(degHotend(0));
  7053. }*/
  7054. if(_counter%5 == 0) serialecho_temperatures(); //show temperatures once in two seconds
  7055. } while (_docycle);
  7056. target_temperature[0] = 0;
  7057. target_temperature_bed = 0;
  7058. manage_heater();
  7059. int _checked_result = (_isbed) ? degBed() - _checked_snapshot : degHotend(0) - _checked_snapshot;
  7060. int _opposite_result = (_isbed) ? degHotend(0) - _opposite_snapshot : degBed() - _opposite_snapshot;
  7061. /*
  7062. MYSERIAL.println("");
  7063. MYSERIAL.print("Checked result:");
  7064. MYSERIAL.println(_checked_result);
  7065. MYSERIAL.print("Opposite result:");
  7066. MYSERIAL.println(_opposite_result);
  7067. */
  7068. if (_opposite_result < ((_isbed) ? 30 : 9))
  7069. {
  7070. if (_checked_result >= ((_isbed) ? 9 : 30))
  7071. {
  7072. _stepresult = true;
  7073. }
  7074. else
  7075. {
  7076. lcd_selftest_error(TestError::Heater, "", "");
  7077. }
  7078. }
  7079. else
  7080. {
  7081. lcd_selftest_error(TestError::Bed, "", "");
  7082. }
  7083. manage_heater();
  7084. manage_inactivity(true);
  7085. KEEPALIVE_STATE(IN_HANDLER);
  7086. return _stepresult;
  7087. }
  7088. static void lcd_selftest_error(TestError testError, const char *_error_1, const char *_error_2)
  7089. {
  7090. lcd_beeper_quick_feedback();
  7091. target_temperature[0] = 0;
  7092. target_temperature_bed = 0;
  7093. manage_heater();
  7094. manage_inactivity();
  7095. lcd_clear();
  7096. lcd_set_cursor(0, 0);
  7097. lcd_puts_P(_i("Selftest error !"));////MSG_SELFTEST_ERROR
  7098. lcd_set_cursor(0, 1);
  7099. lcd_puts_P(_i("Please check :"));////MSG_SELFTEST_PLEASECHECK
  7100. switch (testError)
  7101. {
  7102. case TestError::Heater:
  7103. lcd_set_cursor(0, 2);
  7104. lcd_puts_P(_i("Heater/Thermistor"));////MSG_SELFTEST_HEATERTHERMISTOR
  7105. lcd_set_cursor(0, 3);
  7106. lcd_puts_P(_i("Not connected"));////MSG_SELFTEST_NOTCONNECTED
  7107. break;
  7108. case TestError::Bed:
  7109. lcd_set_cursor(0, 2);
  7110. lcd_puts_P(_i("Bed / Heater"));////MSG_SELFTEST_BEDHEATER
  7111. lcd_set_cursor(0, 3);
  7112. lcd_puts_P(_T(MSG_SELFTEST_WIRINGERROR));
  7113. break;
  7114. case TestError::Endstops:
  7115. lcd_set_cursor(0, 2);
  7116. lcd_puts_P(_i("Endstops"));////MSG_SELFTEST_ENDSTOPS
  7117. lcd_set_cursor(0, 3);
  7118. lcd_puts_P(_T(MSG_SELFTEST_WIRINGERROR));
  7119. lcd_set_cursor(17, 3);
  7120. lcd_print(_error_1);
  7121. break;
  7122. case TestError::Motor:
  7123. lcd_set_cursor(0, 2);
  7124. lcd_puts_P(_T(MSG_SELFTEST_MOTOR));
  7125. lcd_set_cursor(18, 2);
  7126. lcd_print(_error_1);
  7127. lcd_set_cursor(0, 3);
  7128. lcd_puts_P(_i("Endstop"));////MSG_SELFTEST_ENDSTOP
  7129. lcd_set_cursor(18, 3);
  7130. lcd_print(_error_2);
  7131. break;
  7132. case TestError::Endstop:
  7133. lcd_set_cursor(0, 2);
  7134. lcd_puts_P(_i("Endstop not hit"));////MSG_SELFTEST_ENDSTOP_NOTHIT c=20 r=1
  7135. lcd_set_cursor(0, 3);
  7136. lcd_puts_P(_T(MSG_SELFTEST_MOTOR));
  7137. lcd_set_cursor(18, 3);
  7138. lcd_print(_error_1);
  7139. break;
  7140. case TestError::PrintFan:
  7141. lcd_set_cursor(0, 2);
  7142. lcd_puts_P(_T(MSG_SELFTEST_COOLING_FAN));
  7143. lcd_set_cursor(0, 3);
  7144. lcd_puts_P(_T(MSG_SELFTEST_WIRINGERROR));
  7145. lcd_set_cursor(18, 3);
  7146. lcd_print(_error_1);
  7147. break;
  7148. case TestError::ExtruderFan:
  7149. lcd_set_cursor(0, 2);
  7150. lcd_puts_P(_T(MSG_SELFTEST_EXTRUDER_FAN));
  7151. lcd_set_cursor(0, 3);
  7152. lcd_puts_P(_T(MSG_SELFTEST_WIRINGERROR));
  7153. lcd_set_cursor(18, 3);
  7154. lcd_print(_error_1);
  7155. break;
  7156. case TestError::Pulley:
  7157. lcd_set_cursor(0, 2);
  7158. lcd_puts_P(_i("Loose pulley"));////MSG_LOOSE_PULLEY c=20 r=1
  7159. lcd_set_cursor(0, 3);
  7160. lcd_puts_P(_T(MSG_SELFTEST_MOTOR));
  7161. lcd_set_cursor(18, 3);
  7162. lcd_print(_error_1);
  7163. break;
  7164. case TestError::Axis:
  7165. lcd_set_cursor(0, 2);
  7166. lcd_puts_P(_i("Axis length"));////MSG_SELFTEST_AXIS_LENGTH
  7167. lcd_set_cursor(0, 3);
  7168. lcd_puts_P(_i("Axis"));////MSG_SELFTEST_AXIS
  7169. lcd_set_cursor(18, 3);
  7170. lcd_print(_error_1);
  7171. break;
  7172. case TestError::SwappedFan:
  7173. lcd_set_cursor(0, 2);
  7174. lcd_puts_P(_i("Front/left fans"));////MSG_SELFTEST_FANS
  7175. lcd_set_cursor(0, 3);
  7176. lcd_puts_P(_i("Swapped"));////MSG_SELFTEST_SWAPPED
  7177. lcd_set_cursor(18, 3);
  7178. lcd_print(_error_1);
  7179. break;
  7180. case TestError::WiringFsensor:
  7181. lcd_set_cursor(0, 2);
  7182. lcd_puts_P(_T(MSG_SELFTEST_FILAMENT_SENSOR));
  7183. lcd_set_cursor(0, 3);
  7184. lcd_puts_P(_T(MSG_SELFTEST_WIRINGERROR));
  7185. break;
  7186. case TestError::TriggeringFsensor:
  7187. lcd_set_cursor(0, 2);
  7188. lcd_puts_P(_T(MSG_SELFTEST_FILAMENT_SENSOR));
  7189. lcd_set_cursor(0, 3);
  7190. lcd_puts_P(_i("False triggering"));////c=20
  7191. break;
  7192. }
  7193. _delay(1000);
  7194. lcd_beeper_quick_feedback();
  7195. do {
  7196. _delay(100);
  7197. manage_heater();
  7198. manage_inactivity();
  7199. } while (!lcd_clicked());
  7200. LCD_ALERTMESSAGERPGM(_T(MSG_SELFTEST_FAILED));
  7201. lcd_return_to_status();
  7202. }
  7203. #ifdef FILAMENT_SENSOR
  7204. #ifdef PAT9125
  7205. static bool lcd_selftest_fsensor(void)
  7206. {
  7207. fsensor_init();
  7208. if (fsensor_not_responding)
  7209. {
  7210. lcd_selftest_error(TestError::WiringFsensor, "", "");
  7211. }
  7212. return (!fsensor_not_responding);
  7213. }
  7214. #endif //PAT9125
  7215. //! @brief Self-test of infrared barrier filament sensor mounted on MK3S with MMUv2 printer
  7216. //!
  7217. //! Test whether sensor is not triggering filament presence when extruder idler is moving without filament.
  7218. //!
  7219. //! Steps:
  7220. //! * Backup current active extruder temperature
  7221. //! * Pre-heat to PLA extrude temperature.
  7222. //! * Unload filament possibly present.
  7223. //! * Move extruder idler same way as during filament load
  7224. //! and sample IR_SENSOR_PIN.
  7225. //! * Check that pin doesn't go low.
  7226. //!
  7227. //! @retval true passed
  7228. //! @retval false failed
  7229. static bool selftest_irsensor()
  7230. {
  7231. class TempBackup
  7232. {
  7233. public:
  7234. TempBackup():
  7235. m_temp(degTargetHotend(active_extruder)),
  7236. m_extruder(active_extruder){}
  7237. ~TempBackup(){setTargetHotend(m_temp,m_extruder);}
  7238. private:
  7239. float m_temp;
  7240. uint8_t m_extruder;
  7241. };
  7242. uint8_t progress;
  7243. {
  7244. TempBackup tempBackup;
  7245. setTargetHotend(ABS_PREHEAT_HOTEND_TEMP,active_extruder);
  7246. mmu_wait_for_heater_blocking();
  7247. progress = lcd_selftest_screen(TestScreen::Fsensor, 0, 1, true, 0);
  7248. mmu_filament_ramming();
  7249. }
  7250. progress = lcd_selftest_screen(TestScreen::Fsensor, progress, 1, true, 0);
  7251. mmu_command(MmuCmd::U0);
  7252. manage_response(false, false);
  7253. for(uint_least8_t i = 0; i < 200; ++i)
  7254. {
  7255. if (0 == (i % 32)) progress = lcd_selftest_screen(TestScreen::Fsensor, progress, 1, true, 0);
  7256. mmu_load_step(false);
  7257. while (blocks_queued())
  7258. {
  7259. if (PIN_GET(IR_SENSOR_PIN) == 0)
  7260. {
  7261. lcd_selftest_error(TestError::TriggeringFsensor, "", "");
  7262. return false;
  7263. }
  7264. #ifdef TMC2130
  7265. manage_heater();
  7266. // Vojtech: Don't disable motors inside the planner!
  7267. if (!tmc2130_update_sg())
  7268. {
  7269. manage_inactivity(true);
  7270. }
  7271. #else //TMC2130
  7272. manage_heater();
  7273. // Vojtech: Don't disable motors inside the planner!
  7274. manage_inactivity(true);
  7275. #endif //TMC2130
  7276. }
  7277. }
  7278. return true;
  7279. }
  7280. #endif //FILAMENT_SENSOR
  7281. static bool lcd_selftest_manual_fan_check(int _fan, bool check_opposite,
  7282. bool _default)
  7283. {
  7284. bool _result = check_opposite;
  7285. lcd_clear();
  7286. lcd_set_cursor(0, 0); lcd_puts_P(_T(MSG_SELFTEST_FAN));
  7287. switch (_fan)
  7288. {
  7289. case 0:
  7290. // extruder cooling fan
  7291. lcd_set_cursor(0, 1);
  7292. if(check_opposite == true) lcd_puts_P(_T(MSG_SELFTEST_COOLING_FAN));
  7293. else lcd_puts_P(_T(MSG_SELFTEST_EXTRUDER_FAN));
  7294. SET_OUTPUT(EXTRUDER_0_AUTO_FAN_PIN);
  7295. WRITE(EXTRUDER_0_AUTO_FAN_PIN, 1);
  7296. break;
  7297. case 1:
  7298. // object cooling fan
  7299. lcd_set_cursor(0, 1);
  7300. if (check_opposite == true) lcd_puts_P(_T(MSG_SELFTEST_EXTRUDER_FAN));
  7301. else lcd_puts_P(_T(MSG_SELFTEST_COOLING_FAN));
  7302. SET_OUTPUT(FAN_PIN);
  7303. #ifdef FAN_SOFT_PWM
  7304. fanSpeedSoftPwm = 255;
  7305. #else //FAN_SOFT_PWM
  7306. analogWrite(FAN_PIN, 255);
  7307. #endif //FAN_SOFT_PWM
  7308. break;
  7309. }
  7310. _delay(500);
  7311. lcd_set_cursor(1, 2); lcd_puts_P(_T(MSG_SELFTEST_FAN_YES));
  7312. lcd_set_cursor(0, 3); lcd_print(">");
  7313. lcd_set_cursor(1, 3); lcd_puts_P(_T(MSG_SELFTEST_FAN_NO));
  7314. int8_t enc_dif = int(_default)*3;
  7315. KEEPALIVE_STATE(PAUSED_FOR_USER);
  7316. lcd_button_pressed = false;
  7317. do
  7318. {
  7319. switch (_fan)
  7320. {
  7321. case 0:
  7322. // extruder cooling fan
  7323. SET_OUTPUT(EXTRUDER_0_AUTO_FAN_PIN);
  7324. WRITE(EXTRUDER_0_AUTO_FAN_PIN, 1);
  7325. break;
  7326. case 1:
  7327. // object cooling fan
  7328. SET_OUTPUT(FAN_PIN);
  7329. #ifdef FAN_SOFT_PWM
  7330. fanSpeedSoftPwm = 255;
  7331. #else //FAN_SOFT_PWM
  7332. analogWrite(FAN_PIN, 255);
  7333. #endif //FAN_SOFT_PWM
  7334. break;
  7335. }
  7336. if (abs((enc_dif - lcd_encoder_diff)) > 2) {
  7337. if (enc_dif > lcd_encoder_diff) {
  7338. _result = !check_opposite;
  7339. lcd_set_cursor(0, 2); lcd_print(">");
  7340. lcd_set_cursor(1, 2); lcd_puts_P(_T(MSG_SELFTEST_FAN_YES));
  7341. lcd_set_cursor(0, 3); lcd_print(" ");
  7342. lcd_set_cursor(1, 3); lcd_puts_P(_T(MSG_SELFTEST_FAN_NO));
  7343. }
  7344. if (enc_dif < lcd_encoder_diff) {
  7345. _result = check_opposite;
  7346. lcd_set_cursor(0, 2); lcd_print(" ");
  7347. lcd_set_cursor(1, 2); lcd_puts_P(_T(MSG_SELFTEST_FAN_YES));
  7348. lcd_set_cursor(0, 3); lcd_print(">");
  7349. lcd_set_cursor(1, 3); lcd_puts_P(_T(MSG_SELFTEST_FAN_NO));
  7350. }
  7351. enc_dif = 0;
  7352. lcd_encoder_diff = 0;
  7353. }
  7354. manage_heater();
  7355. _delay(100);
  7356. } while (!lcd_clicked());
  7357. KEEPALIVE_STATE(IN_HANDLER);
  7358. SET_OUTPUT(EXTRUDER_0_AUTO_FAN_PIN);
  7359. WRITE(EXTRUDER_0_AUTO_FAN_PIN, 0);
  7360. SET_OUTPUT(FAN_PIN);
  7361. #ifdef FAN_SOFT_PWM
  7362. fanSpeedSoftPwm = 0;
  7363. #else //FAN_SOFT_PWM
  7364. analogWrite(FAN_PIN, 0);
  7365. #endif //FAN_SOFT_PWM
  7366. fanSpeed = 0;
  7367. manage_heater();
  7368. return _result;
  7369. }
  7370. #ifdef FANCHECK
  7371. static FanCheck lcd_selftest_fan_auto(int _fan)
  7372. {
  7373. switch (_fan) {
  7374. case 0:
  7375. fanSpeed = 0;
  7376. manage_heater(); //turn off fan
  7377. setExtruderAutoFanState(EXTRUDER_0_AUTO_FAN_PIN, 1); //extruder fan
  7378. #ifdef FAN_SOFT_PWM
  7379. extruder_autofan_last_check = _millis();
  7380. fan_measuring = true;
  7381. #endif //FAN_SOFT_PWM
  7382. _delay(2000); //delay_keep_alive would turn off extruder fan, because temerature is too low
  7383. manage_heater(); //count average fan speed from 2s delay and turn off fans
  7384. printf_P(PSTR("Test 1:\n"));
  7385. printf_P(PSTR("Print fan speed: %d \n"), fan_speed[1]);
  7386. printf_P(PSTR("Extr fan speed: %d \n"), fan_speed[0]);
  7387. if (!fan_speed[0]) {
  7388. return FanCheck::ExtruderFan;
  7389. }
  7390. #ifdef FAN_SOFT_PWM
  7391. else if (fan_speed[0] > 50 ) { // printerFan is faster
  7392. return FanCheck::SwappedFan;
  7393. }
  7394. break;
  7395. #endif
  7396. case 1:
  7397. //will it work with Thotend > 50 C ?
  7398. #ifdef FAN_SOFT_PWM
  7399. fanSpeed = 255;
  7400. fanSpeedSoftPwm = 255;
  7401. extruder_autofan_last_check = _millis(); //store time when measurement starts
  7402. fan_measuring = true; //start fan measuring, rest is on manage_heater
  7403. #else //FAN_SOFT_PWM
  7404. fanSpeed = 150; //print fan
  7405. #endif //FAN_SOFT_PWM
  7406. for (uint8_t i = 0; i < 5; i++) {
  7407. delay_keep_alive(1000);
  7408. lcd_set_cursor(18, 3);
  7409. lcd_print("-");
  7410. delay_keep_alive(1000);
  7411. lcd_set_cursor(18, 3);
  7412. lcd_print("|");
  7413. }
  7414. fanSpeed = 0;
  7415. #ifdef FAN_SOFT_PWM
  7416. fanSpeedSoftPwm = 0;
  7417. #else //FAN_SOFT_PWM
  7418. manage_heater(); //turn off fan
  7419. manage_inactivity(true); //to turn off print fan
  7420. #endif //FAN_SOFT_PWM
  7421. printf_P(PSTR("Test 2:\n"));
  7422. printf_P(PSTR("Print fan speed: %d \n"), fan_speed[1]);
  7423. printf_P(PSTR("Extr fan speed: %d \n"), fan_speed[0]);
  7424. if (!fan_speed[1]) {
  7425. return FanCheck::PrintFan;
  7426. }
  7427. #ifdef FAN_SOFT_PWM
  7428. fanSpeed = 80;
  7429. fanSpeedSoftPwm = 80;
  7430. for (uint8_t i = 0; i < 5; i++) {
  7431. delay_keep_alive(1000);
  7432. lcd_set_cursor(18, 3);
  7433. lcd_print("-");
  7434. delay_keep_alive(1000);
  7435. lcd_set_cursor(18, 3);
  7436. lcd_print("|");
  7437. }
  7438. fanSpeed = 0;
  7439. // noctua speed is between 17 and 24, turbine more then 30
  7440. if (fan_speed[1] < 30) {
  7441. return FanCheck::SwappedFan;
  7442. }
  7443. #else
  7444. // fan is spinning, but measured RPM are too low for print fan, it must
  7445. // be left extruder fan
  7446. else if (fan_speed[1] < 34) {
  7447. return FanCheck::SwappedFan;
  7448. }
  7449. #endif //FAN_SOFT_PWM
  7450. break;
  7451. }
  7452. return FanCheck::Success;
  7453. }
  7454. #endif //FANCHECK
  7455. static int lcd_selftest_screen(TestScreen screen, int _progress, int _progress_scale, bool _clear, int _delay)
  7456. {
  7457. lcd_update_enable(false);
  7458. const char *_indicator = (_progress >= _progress_scale) ? "-" : "|";
  7459. if (_clear) lcd_clear();
  7460. lcd_set_cursor(0, 0);
  7461. if (screen == TestScreen::ExtruderFan) lcd_puts_P(_T(MSG_SELFTEST_FAN));
  7462. if (screen == TestScreen::PrintFan) lcd_puts_P(_T(MSG_SELFTEST_FAN));
  7463. if (screen == TestScreen::FansOk) lcd_puts_P(_T(MSG_SELFTEST_FAN));
  7464. if (screen == TestScreen::EndStops) lcd_puts_P(_i("Checking endstops"));////MSG_SELFTEST_CHECK_ENDSTOPS c=20
  7465. if (screen == TestScreen::AxisX) lcd_puts_P(_i("Checking X axis "));////MSG_SELFTEST_CHECK_X c=20
  7466. if (screen == TestScreen::AxisY) lcd_puts_P(_i("Checking Y axis "));////MSG_SELFTEST_CHECK_Y c=20
  7467. if (screen == TestScreen::AxisZ) lcd_puts_P(_i("Checking Z axis "));////MSG_SELFTEST_CHECK_Z c=20
  7468. if (screen == TestScreen::Bed) lcd_puts_P(_T(MSG_SELFTEST_CHECK_BED));
  7469. if (screen == TestScreen::Hotend
  7470. || screen == TestScreen::HotendOk) lcd_puts_P(_i("Checking hotend "));////MSG_SELFTEST_CHECK_HOTEND c=20
  7471. if (screen == TestScreen::Fsensor) lcd_puts_P(_T(MSG_SELFTEST_CHECK_FSENSOR));
  7472. if (screen == TestScreen::FsensorOk) lcd_puts_P(_T(MSG_SELFTEST_CHECK_FSENSOR));
  7473. if (screen == TestScreen::AllCorrect) lcd_puts_P(_i("All correct "));////MSG_SELFTEST_CHECK_ALLCORRECT c=20
  7474. if (screen == TestScreen::Failed) lcd_puts_P(_T(MSG_SELFTEST_FAILED));
  7475. if (screen == TestScreen::Home) lcd_puts_P(_i("Calibrating home"));////c=20 r=1
  7476. lcd_set_cursor(0, 1);
  7477. lcd_puts_P(separator);
  7478. if ((screen >= TestScreen::ExtruderFan) && (screen <= TestScreen::FansOk))
  7479. {
  7480. //SERIAL_ECHOLNPGM("Fan test");
  7481. lcd_puts_at_P(0, 2, _i("Extruder fan:"));////MSG_SELFTEST_EXTRUDER_FAN_SPEED c=18
  7482. lcd_set_cursor(18, 2);
  7483. (screen < TestScreen::PrintFan) ? lcd_print(_indicator) : lcd_print("OK");
  7484. lcd_puts_at_P(0, 3, _i("Print fan:"));////MSG_SELFTEST_PRINT_FAN_SPEED c=18
  7485. lcd_set_cursor(18, 3);
  7486. (screen < TestScreen::FansOk) ? lcd_print(_indicator) : lcd_print("OK");
  7487. }
  7488. else if (screen >= TestScreen::Fsensor && screen <= TestScreen::FsensorOk)
  7489. {
  7490. lcd_puts_at_P(0, 2, _T(MSG_SELFTEST_FILAMENT_SENSOR));
  7491. lcd_putc(':');
  7492. lcd_set_cursor(18, 2);
  7493. (screen == TestScreen::Fsensor) ? lcd_print(_indicator) : lcd_print("OK");
  7494. }
  7495. else if (screen < TestScreen::Fsensor)
  7496. {
  7497. //SERIAL_ECHOLNPGM("Other tests");
  7498. TestScreen _step_block = TestScreen::AxisX;
  7499. lcd_selftest_screen_step(2, 2, ((screen == _step_block) ? 1 : (screen < _step_block) ? 0 : 2), "X", _indicator);
  7500. _step_block = TestScreen::AxisY;
  7501. lcd_selftest_screen_step(2, 8, ((screen == _step_block) ? 1 : (screen < _step_block) ? 0 : 2), "Y", _indicator);
  7502. _step_block = TestScreen::AxisZ;
  7503. lcd_selftest_screen_step(2, 14, ((screen == _step_block) ? 1 : (screen < _step_block) ? 0 : 2), "Z", _indicator);
  7504. _step_block = TestScreen::Bed;
  7505. lcd_selftest_screen_step(3, 0, ((screen == _step_block) ? 1 : (screen < _step_block) ? 0 : 2), "Bed", _indicator);
  7506. _step_block = TestScreen::Hotend;
  7507. lcd_selftest_screen_step(3, 9, ((screen == _step_block) ? 1 : (screen < _step_block) ? 0 : 2), "Hotend", _indicator);
  7508. }
  7509. if (_delay > 0) delay_keep_alive(_delay);
  7510. _progress++;
  7511. return (_progress >= _progress_scale * 2) ? 0 : _progress;
  7512. }
  7513. static void lcd_selftest_screen_step(int _row, int _col, int _state, const char *_name, const char *_indicator)
  7514. {
  7515. lcd_set_cursor(_col, _row);
  7516. switch (_state)
  7517. {
  7518. case 1:
  7519. lcd_print(_name);
  7520. lcd_set_cursor(_col + strlen(_name), _row);
  7521. lcd_print(":");
  7522. lcd_set_cursor(_col + strlen(_name) + 1, _row);
  7523. lcd_print(_indicator);
  7524. break;
  7525. case 2:
  7526. lcd_print(_name);
  7527. lcd_set_cursor(_col + strlen(_name), _row);
  7528. lcd_print(":");
  7529. lcd_set_cursor(_col + strlen(_name) + 1, _row);
  7530. lcd_print("OK");
  7531. break;
  7532. default:
  7533. lcd_print(_name);
  7534. }
  7535. }
  7536. /** End of menus **/
  7537. /** Menu action functions **/
  7538. static bool check_file(const char* filename) {
  7539. if (farm_mode) return true;
  7540. bool result = false;
  7541. uint32_t filesize;
  7542. card.openFile((char*)filename, true);
  7543. filesize = card.getFileSize();
  7544. if (filesize > END_FILE_SECTION) {
  7545. card.setIndex(filesize - END_FILE_SECTION);
  7546. }
  7547. while (!card.eof() && !result) {
  7548. card.sdprinting = true;
  7549. get_command();
  7550. result = check_commands();
  7551. }
  7552. card.printingHasFinished();
  7553. strncpy_P(lcd_status_message, _T(WELCOME_MSG), LCD_WIDTH);
  7554. lcd_finishstatus();
  7555. return result;
  7556. }
  7557. static void menu_action_sdfile(const char* filename)
  7558. {
  7559. loading_flag = false;
  7560. char cmd[30];
  7561. char* c;
  7562. bool result = true;
  7563. sprintf_P(cmd, PSTR("M23 %s"), filename);
  7564. for (c = &cmd[4]; *c; c++)
  7565. *c = tolower(*c);
  7566. const char end[5] = ".gco";
  7567. //we are storing just first 8 characters of 8.3 filename assuming that extension is always ".gco"
  7568. for (uint_least8_t i = 0; i < 8; i++) {
  7569. if (strcmp((cmd + i + 4), end) == 0) {
  7570. //filename is shorter then 8.3, store '\0' character on position where ".gco" string was found to terminate stored string properly
  7571. eeprom_write_byte((uint8_t*)EEPROM_FILENAME + i, '\0');
  7572. break;
  7573. }
  7574. else {
  7575. eeprom_write_byte((uint8_t*)EEPROM_FILENAME + i, cmd[i + 4]);
  7576. }
  7577. }
  7578. uint8_t depth = (uint8_t)card.getWorkDirDepth();
  7579. eeprom_write_byte((uint8_t*)EEPROM_DIR_DEPTH, depth);
  7580. for (uint_least8_t i = 0; i < depth; i++) {
  7581. for (uint_least8_t j = 0; j < 8; j++) {
  7582. eeprom_write_byte((uint8_t*)EEPROM_DIRS + j + 8 * i, dir_names[i][j]);
  7583. }
  7584. }
  7585. if (!check_file(filename)) {
  7586. result = lcd_show_fullscreen_message_yes_no_and_wait_P(_i("File incomplete. Continue anyway?"), false, false);////MSG_FILE_INCOMPLETE c=20 r=2
  7587. lcd_update_enable(true);
  7588. }
  7589. if (result) {
  7590. enquecommand(cmd);
  7591. enquecommand_P(PSTR("M24"));
  7592. }
  7593. lcd_return_to_status();
  7594. }
  7595. void menu_action_sddirectory(const char* filename)
  7596. {
  7597. uint8_t depth = (uint8_t)card.getWorkDirDepth();
  7598. strcpy(dir_names[depth], filename);
  7599. MYSERIAL.println(dir_names[depth]);
  7600. card.chdir(filename);
  7601. lcd_encoder = 0;
  7602. }
  7603. /** LCD API **/
  7604. void ultralcd_init()
  7605. {
  7606. {
  7607. uint8_t autoDepleteRaw = eeprom_read_byte(reinterpret_cast<uint8_t*>(EEPROM_AUTO_DEPLETE));
  7608. if (0xff == autoDepleteRaw) lcd_autoDeplete = false;
  7609. else lcd_autoDeplete = autoDepleteRaw;
  7610. }
  7611. #ifdef LCD_BL_PIN
  7612. backlight_init();
  7613. #endif //LCD_BL_PIN
  7614. lcd_init();
  7615. lcd_refresh();
  7616. lcd_longpress_func = menu_lcd_longpress_func;
  7617. lcd_charsetup_func = menu_lcd_charsetup_func;
  7618. lcd_lcdupdate_func = menu_lcd_lcdupdate_func;
  7619. menu_menu = lcd_status_screen;
  7620. menu_lcd_charsetup_func();
  7621. SET_INPUT(BTN_EN1);
  7622. SET_INPUT(BTN_EN2);
  7623. WRITE(BTN_EN1, HIGH);
  7624. WRITE(BTN_EN2, HIGH);
  7625. #if BTN_ENC > 0
  7626. SET_INPUT(BTN_ENC);
  7627. WRITE(BTN_ENC, HIGH);
  7628. #endif
  7629. #if defined (SDSUPPORT) && defined(SDCARDDETECT) && (SDCARDDETECT > 0)
  7630. pinMode(SDCARDDETECT, INPUT);
  7631. WRITE(SDCARDDETECT, HIGH);
  7632. lcd_oldcardstatus = IS_SD_INSERTED;
  7633. #endif//(SDCARDDETECT > 0)
  7634. lcd_encoder_diff = 0;
  7635. }
  7636. void lcd_printer_connected() {
  7637. printer_connected = true;
  7638. }
  7639. static void lcd_send_status() {
  7640. if (farm_mode && no_response && ((_millis() - NcTime) > (NC_TIME * 1000))) {
  7641. //send important status messages periodicaly
  7642. prusa_statistics(important_status, saved_filament_type);
  7643. NcTime = _millis();
  7644. #ifdef FARM_CONNECT_MESSAGE
  7645. lcd_connect_printer();
  7646. #endif //FARM_CONNECT_MESSAGE
  7647. }
  7648. }
  7649. #ifdef FARM_CONNECT_MESSAGE
  7650. static void lcd_connect_printer() {
  7651. lcd_update_enable(false);
  7652. lcd_clear();
  7653. int i = 0;
  7654. int t = 0;
  7655. lcd_set_custom_characters_progress();
  7656. lcd_puts_at_P(0, 0, _i("Connect printer to"));
  7657. lcd_puts_at_P(0, 1, _i("monitoring or hold"));
  7658. lcd_puts_at_P(0, 2, _i("the knob to continue"));
  7659. while (no_response) {
  7660. i++;
  7661. t++;
  7662. delay_keep_alive(100);
  7663. proc_commands();
  7664. if (t == 10) {
  7665. prusa_statistics(important_status, saved_filament_type);
  7666. t = 0;
  7667. }
  7668. if (READ(BTN_ENC)) { //if button is not pressed
  7669. i = 0;
  7670. lcd_puts_at_P(0, 3, PSTR(" "));
  7671. }
  7672. if (i!=0) lcd_puts_at_P((i * 20) / (NC_BUTTON_LONG_PRESS * 10), 3, "\x01");
  7673. if (i == NC_BUTTON_LONG_PRESS * 10) {
  7674. no_response = false;
  7675. }
  7676. }
  7677. lcd_set_custom_characters_degree();
  7678. lcd_update_enable(true);
  7679. lcd_update(2);
  7680. }
  7681. #endif //FARM_CONNECT_MESSAGE
  7682. void lcd_ping() { //chceck if printer is connected to monitoring when in farm mode
  7683. if (farm_mode) {
  7684. bool empty = is_buffer_empty();
  7685. if ((_millis() - PingTime) * 0.001 > (empty ? PING_TIME : PING_TIME_LONG)) { //if commands buffer is empty use shorter time period
  7686. //if there are comamnds in buffer, some long gcodes can delay execution of ping command
  7687. //therefore longer period is used
  7688. printer_connected = false;
  7689. }
  7690. else {
  7691. lcd_printer_connected();
  7692. }
  7693. }
  7694. }
  7695. void lcd_ignore_click(bool b)
  7696. {
  7697. ignore_click = b;
  7698. wait_for_unclick = false;
  7699. }
  7700. void lcd_finishstatus() {
  7701. int len = strlen(lcd_status_message);
  7702. if (len > 0) {
  7703. while (len < LCD_WIDTH) {
  7704. lcd_status_message[len++] = ' ';
  7705. }
  7706. }
  7707. lcd_status_message[LCD_WIDTH] = '\0';
  7708. lcd_draw_update = 2;
  7709. }
  7710. void lcd_setstatus(const char* message)
  7711. {
  7712. if (lcd_status_message_level > 0)
  7713. return;
  7714. strncpy(lcd_status_message, message, LCD_WIDTH);
  7715. lcd_finishstatus();
  7716. }
  7717. void lcd_updatestatuspgm(const char *message){
  7718. strncpy_P(lcd_status_message, message, LCD_WIDTH);
  7719. lcd_status_message[LCD_WIDTH] = 0;
  7720. lcd_finishstatus();
  7721. // hack lcd_draw_update to 1, i.e. without clear
  7722. lcd_draw_update = 1;
  7723. }
  7724. void lcd_setstatuspgm(const char* message)
  7725. {
  7726. if (lcd_status_message_level > 0)
  7727. return;
  7728. lcd_updatestatuspgm(message);
  7729. }
  7730. void lcd_setalertstatuspgm(const char* message)
  7731. {
  7732. lcd_setstatuspgm(message);
  7733. lcd_status_message_level = 1;
  7734. lcd_return_to_status();
  7735. }
  7736. void lcd_reset_alert_level()
  7737. {
  7738. lcd_status_message_level = 0;
  7739. }
  7740. uint8_t get_message_level()
  7741. {
  7742. return lcd_status_message_level;
  7743. }
  7744. void menu_lcd_longpress_func(void)
  7745. {
  7746. if (homing_flag || mesh_bed_leveling_flag || menu_menu == lcd_babystep_z || menu_menu == lcd_move_z)
  7747. {
  7748. // disable longpress during re-entry, while homing or calibration
  7749. lcd_quick_feedback();
  7750. return;
  7751. }
  7752. // explicitely listed menus which are allowed to rise the move-z or live-adj-z functions
  7753. // The lists are not the same for both functions, so first decide which function is to be performed
  7754. if ( (moves_planned() || IS_SD_PRINTING || is_usb_printing )){ // long press as live-adj-z
  7755. if(( current_position[Z_AXIS] < Z_HEIGHT_HIDE_LIVE_ADJUST_MENU ) // only allow live-adj-z up to 2mm of print height
  7756. && ( menu_menu == lcd_status_screen // and in listed menus...
  7757. || menu_menu == lcd_main_menu
  7758. || menu_menu == lcd_tune_menu
  7759. || menu_menu == lcd_support_menu
  7760. )
  7761. ){
  7762. lcd_clear();
  7763. menu_submenu(lcd_babystep_z);
  7764. } else {
  7765. // otherwise consume the long press as normal click
  7766. if( menu_menu != lcd_status_screen )
  7767. menu_back();
  7768. }
  7769. } else { // long press as move-z
  7770. if(menu_menu == lcd_status_screen
  7771. || menu_menu == lcd_main_menu
  7772. || menu_menu == lcd_preheat_menu
  7773. || menu_menu == lcd_sdcard_menu
  7774. || menu_menu == lcd_settings_menu
  7775. || menu_menu == lcd_control_temperature_menu
  7776. #if (LANG_MODE != 0)
  7777. || menu_menu == lcd_language
  7778. #endif
  7779. || menu_menu == lcd_support_menu
  7780. ){
  7781. move_menu_scale = 1.0;
  7782. menu_submenu(lcd_move_z);
  7783. } else {
  7784. // otherwise consume the long press as normal click
  7785. if( menu_menu != lcd_status_screen )
  7786. menu_back();
  7787. }
  7788. }
  7789. }
  7790. void menu_lcd_charsetup_func(void)
  7791. {
  7792. if (menu_menu == lcd_status_screen)
  7793. lcd_set_custom_characters_degree();
  7794. else
  7795. lcd_set_custom_characters_arrows();
  7796. }
  7797. static inline bool z_menu_expired()
  7798. {
  7799. return (menu_menu == lcd_babystep_z
  7800. && lcd_timeoutToStatus.expired(LCD_TIMEOUT_TO_STATUS_BABYSTEP_Z));
  7801. }
  7802. static inline bool other_menu_expired()
  7803. {
  7804. return (menu_menu != lcd_status_screen
  7805. && menu_menu != lcd_babystep_z
  7806. && lcd_timeoutToStatus.expired(LCD_TIMEOUT_TO_STATUS));
  7807. }
  7808. static inline bool forced_menu_expire()
  7809. {
  7810. bool retval = (menu_menu != lcd_status_screen
  7811. && forceMenuExpire);
  7812. forceMenuExpire = false;
  7813. return retval;
  7814. }
  7815. void menu_lcd_lcdupdate_func(void)
  7816. {
  7817. #if (SDCARDDETECT > 0)
  7818. if ((IS_SD_INSERTED != lcd_oldcardstatus))
  7819. {
  7820. lcd_draw_update = 2;
  7821. lcd_oldcardstatus = IS_SD_INSERTED;
  7822. lcd_refresh(); // to maybe revive the LCD if static electricity killed it.
  7823. if (lcd_oldcardstatus)
  7824. {
  7825. card.initsd();
  7826. LCD_MESSAGERPGM(_T(WELCOME_MSG));
  7827. bMain=false; // flag (i.e. 'fake parameter') for 'lcd_sdcard_menu()' function
  7828. menu_submenu(lcd_sdcard_menu);
  7829. //get_description();
  7830. }
  7831. else
  7832. {
  7833. if(menu_menu==lcd_sdcard_menu)
  7834. menu_back();
  7835. card.release();
  7836. LCD_MESSAGERPGM(_i("Card removed"));////MSG_SD_REMOVED
  7837. }
  7838. }
  7839. #endif//CARDINSERTED
  7840. #ifdef LCD_BL_PIN
  7841. backlight_update();
  7842. #endif //LCD_BL_PIN
  7843. if (lcd_next_update_millis < _millis())
  7844. {
  7845. if (abs(lcd_encoder_diff) >= ENCODER_PULSES_PER_STEP)
  7846. {
  7847. if (lcd_draw_update == 0)
  7848. lcd_draw_update = 1;
  7849. lcd_encoder += lcd_encoder_diff / ENCODER_PULSES_PER_STEP;
  7850. Sound_MakeSound(e_SOUND_TYPE_EncoderMove);
  7851. lcd_encoder_diff = 0;
  7852. lcd_timeoutToStatus.start();
  7853. }
  7854. if (LCD_CLICKED) lcd_timeoutToStatus.start();
  7855. (*menu_menu)();
  7856. if (z_menu_expired() || other_menu_expired() || forced_menu_expire())
  7857. {
  7858. // Exiting a menu. Let's call the menu function the last time with menu_leaving flag set to true
  7859. // to give it a chance to save its state.
  7860. // This is useful for example, when the babystep value has to be written into EEPROM.
  7861. if (menu_menu != NULL)
  7862. {
  7863. menu_leaving = 1;
  7864. (*menu_menu)();
  7865. menu_leaving = 0;
  7866. }
  7867. lcd_clear();
  7868. lcd_return_to_status();
  7869. lcd_draw_update = 2;
  7870. }
  7871. if (lcd_draw_update == 2) lcd_clear();
  7872. if (lcd_draw_update) lcd_draw_update--;
  7873. lcd_next_update_millis = _millis() + LCD_UPDATE_INTERVAL;
  7874. }
  7875. if (!SdFatUtil::test_stack_integrity()) stack_error();
  7876. lcd_ping(); //check that we have received ping command if we are in farm mode
  7877. lcd_send_status();
  7878. if (lcd_commands_type == LcdCommands::Layer1Cal) lcd_commands();
  7879. }
  7880. #ifdef TMC2130
  7881. //! @brief Is crash detection enabled?
  7882. //!
  7883. //! @retval true crash detection enabled
  7884. //! @retval false crash detection disabled
  7885. bool lcd_crash_detect_enabled()
  7886. {
  7887. return eeprom_read_byte((uint8_t*)EEPROM_CRASH_DET);
  7888. }
  7889. void lcd_crash_detect_enable()
  7890. {
  7891. tmc2130_sg_stop_on_crash = true;
  7892. eeprom_update_byte((uint8_t*)EEPROM_CRASH_DET, 0xFF);
  7893. }
  7894. void lcd_crash_detect_disable()
  7895. {
  7896. tmc2130_sg_stop_on_crash = false;
  7897. tmc2130_sg_crash = 0;
  7898. eeprom_update_byte((uint8_t*)EEPROM_CRASH_DET, 0x00);
  7899. }
  7900. #endif