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path: root/tests/destructor/tgcdestructors.nim
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discard """
  cmd: '''nim c -d:nimAllocStats --newruntime $file'''
  output: '''hi
ho
ha
@["arg", "asdfklasdfkl", "asdkfj", "dfasj", "klfjl"]
@[1, 2, 3]
@["red", "yellow", "orange", "rtrt1", "pink"]
a: @[4, 2, 3]
0
30
true
(allocCount: 27, deallocCount: 27)'''
"""

include system / ansi_c

proc main =
  var s: seq[string] = @[]
  for i in 0..<80: s.add "foo"

main()

const
  test = @["hi", "ho", "ha"]

for t in test:
  echo t

type
  InterpolatedKind* = enum
    ikStr,                   ## ``str`` part of the interpolated string
    ikDollar,                ## escaped ``$`` part of the interpolated string
    ikVar,                   ## ``var`` part of the interpolated string
    ikExpr                   ## ``expr`` part of the interpolated string

iterator interpolatedFragments*(s: string): tuple[kind: InterpolatedKind,
                                                  value: string] =
  var i = 0
  var kind: InterpolatedKind
  while true:
    var j = i
    if j < s.len and s[j] == '$':
      if j+1 < s.len and s[j+1] == '{':
        inc j, 2
        var nesting = 0
        block curlies:
          while j < s.len:
            case s[j]
            of '{': inc nesting
            of '}':
              if nesting == 0:
pre { line-height: 125%; }
td.linenos .normal { color: inherit; background-color: transparent; padding-left: 5px; padding-right: 5px; }
span.linenos { color: inherit; background-color: transparent; padding-left: 5px; padding-right: 5px; }
td.linenos .special { color: #000000; background-color: #ffffc0; padding-left: 5px; padding-right: 5px; }
span.linenos.special { color: #000000; background-color: #ffffc0; padding-left: 5px; padding-right: 5px; }
.highlight .hll { background-color: #ffffcc }
.highlight .c { color: #888888 } /* Comment */
.highlight .err { color: #a61717; background-color: #e3d2d2 } /* Error */
.highlight .k { color: #008800; font-weight: bold } /* Keyword */
.highlight .ch { color: #888888 } /* Comment.Hashbang */
.highlight .cm { color: #888888 } /* Comment.Multiline */
.highlight .cp { color: #cc0000; font-weight: bold } /* Comment.Preproc */
.highlight .cpf { color: #888888 } /* Comment.PreprocFile */
.highlight .c1 { color: #888888 } /* Comment.Single */
.highlight .cs { color: #cc0000; font-weight: bold; background-color: #fff0f0 } /* Comment.Special */
.highlight .gd { color: #000000; background-color: #ffdddd } /* Generic.Deleted */
.highlight .ge { font-style: italic } /* Generic.Emph */
.highlight .ges { font-weight: bold; font-style: italic } /* Generic.EmphStrong */
.highlight .gr { color: #aa0000 } /* Generic.Error */
.highlight .gh { color: #333333 } /* Generic.Heading */
.highlight .gi { color: #000000; background-color: #ddffdd } /* Generic.Inserted */
.highlight .go { color: #888888 } /* Generic.Output */
.highlight .gp { color: #555555 } /* Generic.Prompt */
.highlight .gs { font-weight: bold } /* Generic.Strong */
.highlight .gu { color: #666666 } /* Generic.Subheading */
.highlight .gt { color: #aa0000 } /* Generic.Traceback */
.highlight .kc { color: #008800; font-weight: bold } /* Keyword.Constant */
.highlight .kd { color: #008800; font-weight: bold } /* Keyword.Declaration */
.highlight .kn { color: #008800; font-weight: bold } /* Keyword.Namespace */
.highlight .kp { color: #008800 } /* Keyword.Pseudo */
.highlight .kr { color: #008800; font-weight: bold } /* Keyword.Reserved */
.highlight .kt { color: #888888; font-weight: bold } /* Keyword.Type */
.highlight .m { color: #0000DD; font-weight: bold } /* Literal.Number */
.highlight .s { color: #dd2200; background-color: #fff0f0 } /* Literal.String */
.highlight .na { color: #336699 } /* Name.Attribute */
.highlight .nb { color: #003388 } /* Name.Builtin */
.highlight .nc { color: #bb0066; font-weight: bold } /* Name.Class */
.highlight .no { color: #003366; font-weight: bold } /* Name.Constant */
.highlight .nd { color: #555555 } /* Name.Decorator */
.highlight .ne { color: #bb0066; font-weight: bold } /* Name.Exception */
.highlight .nf { color: #0066bb; font-weight: bold } /* Name.Function */
.highlight .nl { color: #336699; font-style: italic } /* Name.Label */
.highlight .nn { color: #bb0066; font-weight: bold } /* Name.Namespace */
.highlight .py { color: #336699; font-weight: bold } /* Name.Property */
.highlight .nt { color: #bb0066; font-weight: bold } /* Name.Tag */
.highlight .nv { color: #336699 } /* Name.Variable */
.highlight .ow { color: #008800 } /* Operator.Word */
.highlight .w { color: #bbbbbb } /* Text.Whitespace */
.highlight .mb { color: #0000DD; font-weight: bold } /* Literal.Number.Bin */
.highlight .mf { color: #0000DD; font-weight: bold } /* Literal.Number.Float */
.highlight .mh { color: #0000DD; font-weight: bold } /* Literal.Number.Hex */
.highlight .mi { color: #0000DD; font-weight: bold } /* Literal.Number.Integer */
.highlight .mo { color: #0000DD; font-weight: bold } /* Literal.Number.Oct */
.highlight .sa { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Affix */
.highlight .sb { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Backtick */
.highlight .sc { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Char */
.highlight .dl { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Delimiter */
.highlight .sd { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Doc */
.highlight .s2 { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Double */
.highlight .se { color: #0044dd; background-color: #fff0f0 } /* Literal.String.Escape */
.highlight .sh { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Heredoc */
.highlight .si { color: #3333bb; background-color: #fff0f0 } /* Literal.String.Interpol */
.highlight .sx { color: #22bb22; background-color: #f0fff0 } /* Literal.String.Other */
.highlight .sr { color: #008800; background-color: #fff0ff } /* Literal.String.Regex */
.highlight .s1 { color: #dd2200; background-color: #fff0f0 } /* Literal.String.Single */
.highlight .ss { color: #aa6600; background-color: #fff0f0 } /* Literal.String.Symbol */
.highlight .bp { color: #003388 } /* Name.Builtin.Pseudo */
.highlight .fm { color: #0066bb; font-weight: bold } /* Name.Function.Magic */
.highlight .vc { color: #336699 } /* Name.Variable.Class */
.highlight .vg { color: #dd7700 } /* Name.Variable.Global */
.highlight .vi { color: #3333bb } /* Name.Variable.Instance */
.highlight .vm { color: #336699 } /* Name.Variable.Magic */
.highlight .il { color: #0000DD; font-weight: bold } /* Literal.Number.Integer.Long */
# Chessboard program: you type in moves in algebraic notation, and it'll
# display the position after each move.

# recipes are mu's names for functions
recipe main [
  open-console  # take control of screen, keyboard and mouse

  # The chessboard recipe takes keyboard and screen objects as 'ingredients'.
  #
  # In mu it is good form (though not required) to explicitly show the
  # hardware you rely on.
  #
  # The chessboard also returns the same keyboard and screen objects. In mu it
  # is good form to not modify ingredients of a recipe unless they are also
  # results. Here we clearly modify both keyboard and screen, so we return
  # both.
  #
  # Here the console and screen are both 0, which usually indicates real
  # hardware rather than a fake for testing as you'll see below.
  0/screen, 0/console <- chessboard 0/screen, 0/console

  close-console  # cleanup screen, keyboard and mouse
]

## But enough about mu. Here's what it looks like to run the chessboard program.

scenario print-board-and-read-move [
  trace-until 100/app
  # we'll make the screen really wide because the program currently prints out a long line
  assume-screen 120/width, 20/height
  # initialize keyboard to type in a move
  assume-console [
    type [a2-a4
]
  ]
  run [
    screen:address:screen, console:address:console <- chessboard screen:address:screen, console:address:console
    # icon for the cursor
    screen <- print-character screen, 9251/  ]
  screen-should-contain [
  #            1         2         3         4         5         6         7         8         9         10        11
  #  012345678901234567890123456789012345678901234567890123456789012345678901234567890123456789012345678901234567890123456789
    .Stupid text-mode chessboard. White pieces in uppercase; black pieces in lowercase. No checking for legal moves.         .
    .                                                                                                                        .
    .8 | r n b q k b n r                                                                                                     .
    .7 | p p p p p p p p                                                                                                     .
    .6 |                                                                                                                     .
    .5 |                                                                                                                     .
    .4 | P                                                                                                                   .
    .3 |                                                                                                                     .
    .2 |   P P P P P P P                                                                                                     .
    .1 | R N B Q K B N R                                                                                                     .
    .  +----------------                                                                                                     .
    .    a b c d e f g h                                                                                                     .
    .                                                                                                                        .
    .Type in your move as <from square>-<to square>. For example: 'a2-a4'. Then press <enter>.                               .
    .                                                                                                                        .
    .Hit 'q' to exit.                                                                                                        .
    .                                                                                                                        .
    .move:                                                                                                                  .
    .                                                                                                                        .
    .                                                                                                                        .
  ]
]

## Here's
ipe chessboard [ local-scope screen:address:screen <- next-ingredient console:address:console <- next-ingredient board:address:array:address:array:character <- initial-position # hook up stdin stdin:address:channel <- new-channel 10/capacity start-running send-keys-to-channel:recipe, console, stdin, screen # buffer lines in stdin buffered-stdin:address:channel <- new-channel 10/capacity start-running buffer-lines:recipe, stdin, buffered-stdin { msg:address:array:character <- new [Stupid text-mode chessboard. White pieces in uppercase; black pieces in lowercase. No checking for legal moves. ] print-string screen, msg cursor-to-next-line screen print-board screen, board cursor-to-next-line screen msg <- new [Type in your move as <from square>-<to square>. For example: 'a2-a4'. Then press <enter>. ] print-string screen, msg cursor-to-next-line screen msg <- new [Hit 'q' to exit. ] print-string screen, msg { cursor-to-next-line screen msg <- new [move: ] print-string screen, msg m:address:move, quit:boolean, error:boolean <- read-move buffered-stdin, screen break-if quit, +quit:label buffered-stdin <- clear-channel buffered-stdin # cleanup after error. todo: test this? loop-if error } board <- make-move board, m clear-screen screen loop } +quit ] ## a board is an array of files, a file is an array of characters (squares) recipe new-board [ local-scope initial-position:address:array:character <- next-ingredient # assert(length(initial-position) == 64) len:number <- length *initial-position correct-length?:boolean <- equal len, 64 assert correct-length?, [chessboard had incorrect size] # board is an array of pointers to files; file is an array of characters board:address:array:address:array:character <- new location:type, 8 col:number <- copy 0 { done?:boolean <- equal col, 8 break-if done? file:address:address:array:character <- index-address *board, col *file <- new-file initial-position, col col <- add col, 1 loop } reply board ] recipe new-file [ local-scope position:address:array:character <- next-ingredient index:number <- next-ingredient index <- multiply index, 8 result:address:array:character <- new character:type, 8 row:number <- copy 0 { done?:boolean <- equal row, 8 break-if done? dest:address:character <- index-address *result, row *dest <- index *position, index row <- add row, 1 index <- add index, 1 loop } reply result ] recipe print-board [ local-scope screen:address:screen <- next-ingredient board:address:array:address:array:character <- next-ingredient row:number <- copy 7 # start printing from the top of the board # print each row { done?:boolean <- lesser-than row, 0 break-if done? # print rank number as a legend rank:number <- add row, 1 print-integer screen, rank s:address:array:character <- new [ | ] print-string screen, s # print each square in the row col:number <- copy 0 { done?:boolean <- equal col:number, 8 break-if done?:boolean f:address:array:character <- index *board, col c:character <- index *f, row print-character screen, c print-character screen, 32/space col <- add col, 1 loop } row <- subtract row, 1 cursor-to-next-line screen loop } # print file letters as legend s <- new [ +----------------] print-string screen, s screen <- cursor-to-next-line screen s <- new [ a b c d e f g h] screen <- print-string screen, s screen <- cursor-to-next-line screen ] # board:address:array:address:array:character <- initial-position recipe initial-position [ local-scope # layout in memory (in raster order): # R P _ _ _ _ p r # N P _ _ _ _ p n # B P _ _ _ _ p b # Q P _ _ _ _ p q # K P _ _ _ _ p k # B P _ _ _ _ p B # N P _ _ _ _ p n # R P _ _ _ _ p r initial-position:address:array:character <- new-array 82/R, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 114/r, 78/N, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 110/n, 66/B, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 98/b, 81/Q, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 113/q, 75/K, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 107/k, 66/B, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 98/b, 78/N, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 110/n, 82/R, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 114/r #? 82/R, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 114/r, #? 78/N, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 110/n, #? 66/B, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 98/b, #? 81/Q, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 113/q, #? 75/K, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 107/k, #? 66/B, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 98/b, #? 78/N, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 110/n, #? 82/R, 80/P, 32/blank, 32/blank, 32/blank, 32/blank, 112/p, 114/r board:address:array:address:array:character <- new-board initial-position reply board ] scenario printing-the-board [ assume-screen 30/width, 12/height run [ 1:address:array:address:array:character/board <- initial-position screen:address:screen <- print-board screen:address:screen, 1:address:array:address:array:character/board ] screen-should-contain [ # 012345678901234567890123456789 .8 | r n b q k b n r . .7 | p p p p p p p p . .6 | . .5 | . .4 | . .3 | . .2 | P P P P P P P P . .1 | R N B Q K B N R . . +---------------- . . a b c d e f g h . . . . . ] ] ## data structure: move container move [ # valid range: 0-7 from-file:number from-rank:number to-file:number to-rank:number ] # result:address:move, quit?:boolean, error?:boolean <- read-move stdin:address:channel, screen:address:screen # prints only error messages to screen recipe read-move [ local-scope stdin:address:channel <- next-ingredient screen:address:screen <- next-ingredient from-file:number, quit?:boolean, error?:boolean <- read-file stdin, screen reply-if quit?, 0/dummy, quit?, error? reply-if error?, 0/dummy, quit?, error? # construct the move object result:address:move <- new move:type x:address:number <- get-address *result, from-file:offset *x <- copy from-file x <- get-address *result, from-rank:offset *x, quit?, error? <- read-rank stdin, screen reply-if quit?, 0/dummy, quit?, error? reply-if error?, 0/dummy, quit?, error? error? <- expect-from-channel stdin, 45/dash, screen reply-if error?, 0/dummy, 0/quit, error? x <- get-address *result, to-file:offset *x, quit?, error? <- read-file stdin, screen reply-if quit?:boolean, 0/dummy, quit?:boolean, error?:boolean reply-if error?:boolean, 0/dummy, quit?:boolean, error?:boolean x:address:number <- get-address *result, to-rank:offset *x, quit?, error? <- read-rank stdin, screen reply-if quit?, 0/dummy, quit?, error? reply-if error?, 0/dummy, quit?, error? error? <- expect-from-channel stdin, 10/newline, screen reply-if error?, 0/dummy, 0/quit, error? reply result, quit?, error? ] # file:number, quit:boolean, error:boolean <- read-file stdin:address:channel, screen:address:screen # valid values for file: 0-7 recipe read-file [ local-scope stdin:address:channel <- next-ingredient screen:address:screen <- next-ingredient c:character, stdin <- read stdin { q-pressed?:boolean <- equal c, 81/Q break-unless q-pressed? reply 0/dummy, 1/quit, 0/error } { q-pressed? <- equal c, 113/q break-unless q-pressed? reply 0/dummy, 1/quit, 0/error } { empty-fake-keyboard?:boolean <- equal c, 0/eof break-unless empty-fake-keyboard? reply 0/dummy, 1/quit, 0/error } { newline?:boolean <- equal c, 10/newline break-unless newline? error-message:address:array:character <- new [that's not enough] print-string screen, error-message reply 0/dummy, 0/quit, 1/error } file:number <- subtract c, 97/a # 'a' <= file <= 'h' { above-min:boolean <- greater-or-equal file, 0 break-if above-min error-message:address:array:character <- new [file too low: ] print-string screen, error-message print-character screen, c cursor-to-next-line screen reply 0/dummy, 0/quit, 1/error } { below-max:boolean <- lesser-than file, 8 break-if below-max error-message <- new [file too high: ] print-string screen, error-message print-character screen, c reply 0/dummy, 0/quit, 1/error } reply file, 0/quit, 0/error ] # rank:number <- read-rank stdin:address:channel, screen:address:screen # valid values: 0-7, -1 (quit), -2 (error) recipe read-rank [ local-scope stdin:address:channel <- next-ingredient screen:address:screen <- next-ingredient c:character, stdin <- read stdin { q-pressed?:boolean <- equal c, 8/Q break-unless q-pressed? reply 0/dummy, 1/quit, 0/error } { q-pressed? <- equal c, 113/q break-unless q-pressed? reply 0/dummy, 1/quit, 0/error } { newline?:boolean <- equal c, 10 # newline break-unless newline? error-message:address:array:character <- new [that's not enough] print-string screen, error-message reply 0/dummy, 0/quit, 1/error } rank:number <- subtract c, 49/'1' # assert'1' <= rank <= '8' { above-min:boolean <- greater-or-equal rank, 0 break-if above-min error-message <- new [rank too low: ] print-string screen, error-message print-character screen, c reply 0/dummy, 0/quit, 1/error } { below-max:boolean <- lesser-or-equal rank, 7 break-if below-max error-message <- new [rank too high: ] print-string screen, error-message print-character screen, c reply 0/dummy, 0/quit, 1/error } reply rank, 0/quit, 0/error ] # read a character from the given channel and check that it's what we expect # return true on error recipe expect-from-channel [ local-scope stdin:address:channel <- next-ingredient expected:character <- next-ingredient screen:address:screen <- next-ingredient c:character, stdin <- read stdin { match?:boolean <- equal c, expected break-if match? s:address:array:character <- new [expected character not found] print-string screen, s } result:boolean <- not match? reply result ] scenario read-move-blocking [ assume-screen 20/width, 2/height run [ 1:address:channel <- new-channel 2 2:number/routine <- start-running read-move:recipe, 1:address:channel, screen:address:screen # 'read-move' is waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-blocking: routine failed to pause after coming up (before any keys were pressed)] # press 'a' 1:address:channel <- write 1:address:channel, 97/a restart 2:number/routine # 'read-move' still waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-blocking: routine failed to pause after rank 'a'] # press '2' 1:address:channel <- write 1:address:channel, 50/'2' restart 2:number/routine # 'read-move' still waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-blocking: routine failed to pause after file 'a2'] # press '-' 1:address:channel <- write 1:address:channel, 45/'-' restart 2:number/routine # 'read-move' still waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?/routine-state, [ F read-move-blocking: routine failed to pause after hyphen 'a2-'] # press 'a' 1:address:channel <- write 1:address:channel, 97/a restart 2:number/routine # 'read-move' still waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?/routine-state, [ F read-move-blocking: routine failed to pause after rank 'a2-a'] # press '4' 1:address:channel <- write 1:address:channel, 52/'4' restart 2:number/routine # 'read-move' still waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-blocking: routine failed to pause after file 'a2-a4'] # press 'newline' 1:address:channel <- write 1:address:channel, 10 # newline restart 2:number/routine # 'read-move' now completes wait-for-routine 2:number 3:number <- routine-state 2:number 4:boolean/completed? <- equal 3:number/routine-state, 1/completed assert 4:boolean/completed?, [ F read-move-blocking: routine failed to terminate on newline] trace 1, [test], [reached end] ] trace-should-contain [ test: reached end ] ] scenario read-move-quit [ assume-screen 20/width, 2/height run [ 1:address:channel <- new-channel 2 2:number/routine <- start-running read-move:recipe, 1:address:channel, screen:address:screen # 'read-move' is waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-quit: routine failed to pause after coming up (before any keys were pressed)] # press 'q' 1:address:channel <- write 1:address:channel, 113/q restart 2:number/routine # 'read-move' completes wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/completed? <- equal 3:number/routine-state, 1/completed assert 4:boolean/completed?, [ F read-move-quit: routine failed to terminate on 'q'] trace 1, [test], [reached end] ] trace-should-contain [ test: reached end ] ] scenario read-move-illegal-file [ assume-screen 20/width, 2/height run [ 1:address:channel <- new-channel 2 2:number/routine <- start-running read-move:recipe, 1:address:channel, screen:address:screen # 'read-move' is waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-file: routine failed to pause after coming up (before any keys were pressed)] 1:address:channel <- write 1:address:channel, 50/'2' restart 2:number/routine wait-for-routine 2:number ] screen-should-contain [ .file too low: 2 . . . ] ] scenario read-move-illegal-rank [ assume-screen 20/width, 2/height run [ 1:address:channel <- new-channel 2 2:number/routine <- start-running read-move:recipe, 1:address:channel, screen:address:screen # 'read-move' is waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-file: routine failed to pause after coming up (before any keys were pressed)] 1:address:channel <- write 1:address:channel, 97/a 1:address:channel <- write 1:address:channel, 97/a restart 2:number/routine wait-for-routine 2:number ] screen-should-contain [ .rank too high: a . . . ] ] scenario read-move-empty [ assume-screen 20/width, 2/height run [ 1:address:channel <- new-channel 2 2:number/routine <- start-running read-move:recipe, 1:address:channel, screen:address:screen # 'read-move' is waiting for input wait-for-routine 2:number 3:number <- routine-state 2:number/id 4:boolean/waiting? <- equal 3:number/routine-state, 3/waiting assert 4:boolean/waiting?, [ F read-move-file: routine failed to pause after coming up (before any keys were pressed)] 1:address:channel <- write 1:address:channel, 10/newline 1:address:channel <- write 1:address:channel, 97/a restart 2:number/routine wait-for-routine 2:number ] screen-should-contain [ .that's not enough . . . ] ] recipe make-move [ local-scope b:address:array:address:array:character <- next-ingredient m:address:move <- next-ingredient from-file:number <- get *m, from-file:offset from-rank:number <- get *m, from-rank:offset to-file:number <- get *m, to-file:offset to-rank:number <- get *m, to-rank:offset f:address:array:character <- index *b, from-file src:address:character/square <- index-address *f, from-rank f <- index *b, to-file dest:address:character/square <- index-address *f, to-rank *dest <- copy *src *src <- copy 32/space reply b/same-as-ingredient:0 ] scenario making-a-move [ assume-screen 30/width, 12/height run [ 2:address:array:address:array:character/board <- initial-position 3:address:move <- new move:type 4:address:number <- get-address *3:address:move, from-file:offset *4:address:number <- copy 6/g 5:address:number <- get-address *3:address:move, from-rank:offset *5:address:number <- copy 1/'2' 6:address:number <- get-address *3:address:move, to-file:offset *6:address:number <- copy 6/g 7:address:number <- get-address *3:address:move, to-rank:offset *7:address:number <- copy 3/'4' 2:address:array:address:array:character/board <- make-move 2:address:array:address:array:character/board, 3:address:move screen:address:screen <- print-board screen:address:screen, 2:address:array:address:array:character/board ] screen-should-contain [ # 012345678901234567890123456789 .8 | r n b q k b n r . .7 | p p p p p p p p . .6 | . .5 | . .4 | P . .3 | . .2 | P P P P P P P . .1 | R N B Q K B N R . . +---------------- . . a b c d e f g h . . . ] ]