mirror of
https://github.com/simonmichael/hledger.git
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173 lines
7.0 KiB
Haskell
173 lines
7.0 KiB
Haskell
{- | UIState operations. -}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE RecordWildCards #-}
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module Hledger.UI.UIState
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where
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import Brick
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import Brick.Widgets.Edit
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import Data.List
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import Data.Text.Zipper (gotoEOL)
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import Data.Time.Calendar (Day)
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import Hledger
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import Hledger.Cli.CliOptions
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import Hledger.UI.UITypes
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import Hledger.UI.UIOptions
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-- | Toggle between showing only cleared items or all items.
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toggleCleared :: UIState -> UIState
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toggleCleared ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=toggleCleared ropts}}}
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where
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toggleCleared ropts = ropts{cleared_=not $ cleared_ ropts, uncleared_=False, pending_=False}
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-- | Toggle between showing only pending items or all items.
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togglePending :: UIState -> UIState
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togglePending ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=togglePending ropts}}}
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where
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togglePending ropts = ropts{pending_=not $ pending_ ropts, uncleared_=False, cleared_=False}
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-- | Toggle between showing only uncleared items or all items.
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toggleUncleared :: UIState -> UIState
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toggleUncleared ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=toggleUncleared ropts}}}
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where
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toggleUncleared ropts = ropts{uncleared_=not $ uncleared_ ropts, cleared_=False, pending_=False}
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-- | Toggle between showing all and showing only nonempty (more precisely, nonzero) items.
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toggleEmpty :: UIState -> UIState
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toggleEmpty ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=toggleEmpty ropts}}}
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where
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toggleEmpty ropts = ropts{empty_=not $ empty_ ropts}
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-- | Toggle between flat and tree mode. If in the third "default" mode, go to flat mode.
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toggleFlat :: UIState -> UIState
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toggleFlat ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=toggleFlatMode ropts}}}
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where
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toggleFlatMode ropts@ReportOpts{accountlistmode_=ALFlat} = ropts{accountlistmode_=ALTree}
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toggleFlatMode ropts = ropts{accountlistmode_=ALFlat}
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-- | Toggle between showing all and showing only real (non-virtual) items.
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toggleReal :: UIState -> UIState
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toggleReal ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=toggleReal ropts}}}
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where
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toggleReal ropts = ropts{real_=not $ real_ ropts}
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-- | Apply a new filter query.
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setFilter :: String -> UIState -> UIState
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setFilter s ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{query_=s}}}}
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-- | Clear all filter queries/flags.
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resetFilter :: UIState -> UIState
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resetFilter ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{
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empty_=True
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,cleared_=False
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,pending_=False
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,uncleared_=False
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,real_=False
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,query_=""
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}}}}
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resetDepth :: UIState -> UIState
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resetDepth ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}} =
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ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{depth_=Nothing}}}}
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-- | Get the maximum account depth in the current journal.
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maxDepth :: UIState -> Int
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maxDepth UIState{ajournal=j} = maximum $ map accountNameLevel $ journalAccountNames j
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-- | Decrement the current depth limit towards 0. If there was no depth limit,
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-- set it to one less than the maximum account depth.
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decDepth :: UIState -> UIState
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decDepth ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts@ReportOpts{..}}}}
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= ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{depth_=dec depth_}}}}
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where
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dec (Just d) = Just $ max 0 (d-1)
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dec Nothing = Just $ maxDepth ui - 1
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-- | Increment the current depth limit. If this makes it equal to the
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-- the maximum account depth, remove the depth limit.
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incDepth :: UIState -> UIState
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incDepth ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts@ReportOpts{..}}}}
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= ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{depth_=inc depth_}}}}
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where
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inc (Just d) | d < (maxDepth ui - 1) = Just $ d+1
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inc _ = Nothing
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-- | Set the current depth limit to the specified depth, or remove the depth limit.
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-- Also remove the depth limit if the specified depth is greater than the current
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-- maximum account depth. If the specified depth is negative, reset the depth limit
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-- to whatever was specified at uiartup.
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setDepth :: Maybe Int -> UIState -> UIState
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setDepth mdepth ui@UIState{aopts=uopts@UIOpts{cliopts_=copts@CliOpts{reportopts_=ropts}}}
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= ui{aopts=uopts{cliopts_=copts{reportopts_=ropts{depth_=mdepth'}}}}
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where
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mdepth' = case mdepth of
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Nothing -> Nothing
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Just d | d < 0 -> depth_ ropts
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| d >= maxDepth ui -> Nothing
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| otherwise -> mdepth
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-- | Open the minibuffer, setting its content to the current query with the cursor at the end.
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showMinibuffer :: UIState -> UIState
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showMinibuffer ui = setMode (Minibuffer e) ui
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where
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e = applyEdit gotoEOL $ editor "minibuffer" (str . unlines) (Just 1) oldq
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oldq = query_ $ reportopts_ $ cliopts_ $ aopts ui
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-- | Close the minibuffer, discarding any edit in progress.
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closeMinibuffer :: UIState -> UIState
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closeMinibuffer = setMode Normal
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setMode :: Mode -> UIState -> UIState
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setMode m ui = ui{aMode=m}
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-- | Regenerate the content for the current and previous screens, from a new journal and current date.
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regenerateScreens :: Journal -> Day -> UIState -> UIState
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regenerateScreens j d ui@UIState{aScreen=s,aPrevScreens=ss} =
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-- XXX clumsy due to entanglement of UIState and Screen.
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-- sInit operates only on an appstate's current screen, so
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-- remove all the screens from the appstate and then add them back
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-- one at a time, regenerating as we go.
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let
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first:rest = reverse $ s:ss :: [Screen]
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ui0 = ui{ajournal=j, aScreen=first, aPrevScreens=[]} :: UIState
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ui1 = (sInit first) d False ui0 :: UIState
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ui2 = foldl' (\ui s -> (sInit s) d False $ pushScreen s ui) ui1 rest :: UIState
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in
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ui2
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pushScreen :: Screen -> UIState -> UIState
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pushScreen scr ui = ui{aPrevScreens=(aScreen ui:aPrevScreens ui)
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,aScreen=scr
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}
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popScreen :: UIState -> UIState
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popScreen ui@UIState{aPrevScreens=s:ss} = ui{aScreen=s, aPrevScreens=ss}
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popScreen ui = ui
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resetScreens :: Day -> UIState -> UIState
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resetScreens d ui@UIState{aScreen=s,aPrevScreens=ss} =
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(sInit topscreen) d True $ resetDepth $ resetFilter $ closeMinibuffer ui{aScreen=topscreen, aPrevScreens=[]}
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where
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topscreen = case ss of _:_ -> last ss
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[] -> s
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-- | Enter a new screen, saving the old screen & state in the
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-- navigation history and initialising the new screen's state.
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screenEnter :: Day -> Screen -> UIState -> UIState
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screenEnter d scr ui = (sInit scr) d True $
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pushScreen scr
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ui
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