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#!/bin/sh
# returns 0 on successful build or nothing to build
# non-zero exit status only on error during building
set -e  # stop immediately on error

# [0-9]*.cc -> subx.cc -> subx_bin
# (layers)   |          |
#          tangle      $CXX

# can also be called with a layer to only build until
#   $ ./build --until 050
UNTIL_LAYER=${2:-zzz}

# we use two mechanisms to speed up rebuilds:
# - older_than: run a command if the output is older than any of the inputs
# - update: if a command is quick to run, always run it but update the result only on any change
#
# avoid combining both mechanisms to generate a single file
# otherwise you'll see spurious messages about files being updated
# risk: a file may unnecessarily update without changes, causing unnecessary work downstream

test "$CXX" || export CXX=c++
test "$CC" || export CC=cc
test "$CFLAGS" || export CFLAGS="-g -O3 -std=c++98"  # CI has an ancient version; don't expect recent dialects
export CFLAGS="$CFLAGS -Wall -Wextra -fno-strict-aliasing"

# return 1 if $1 is older than _any_ of the remaining args
older_than() {
  local target=$1
  shift
  if [ ! -e $target ]
  then
#?     echo "$target doesn't exist"
    echo "updating $target" >&2
    return 0  # success
  fi
  local f
  for f in $*
  do
    if [ $f -nt $target ]
    then
      echo "updating $target" >&2
      return 0  # success
    fi
  done
  return 1  # failure
}

# redirect to $1, unless it's already identical
update() {
  if [ ! -e $1 ]
  then
    cat > $1
  else
    cat > $1.tmp
    diff -q $1 $1.tmp >/dev/null  &&  rm $1.tmp  ||  mv $1.tmp $1
  fi
}

update_cp() {
  if [ ! -e $2/$1 ]
  then
    cp $1 $2
  elif [ $1 -nt $2/$1 ]
  then
    cp $1 $2
  fi
}

noisy_cd() {
  cd $1
  echo "-- `pwd`" >&2
}

older_than ../enumerate/enumerate ../enumerate/enumerate.cc && {
  $CXX $CFLAGS ../enumerate/enumerate.cc -o ../enumerate/enumerate
}

older_than ../tangle/tangle ../tangle/*.cc && {
  noisy_cd ../tangle
    {
      grep -h "^struct .* {" [0-9]*.cc  |sed 's/\(struct *[^ ]*\).*/\1;/'
      grep -h "^typedef " [0-9]*.cc
    }  |update type_list
    grep -h "^[^ #].*) {" [0-9]*.cc  |sed 's/ {.*/;/'  |update function_list
    ls [0-9]*.cc  |grep -v "\.test\.cc$"  |sed 's/.*/#include "&"/'  |update file_list
    ls [0-9]*.test.cc  |sed 's/.*/#include "&"/'  |update test_file_list
    grep -h "^[[:space:]]*void test_" [0-9]*.cc  |sed 's/^\s*void \(.*\)() {$/\1,/'  |update test_list
    grep -h "^\s*void test_" [0-9]*.cc  |sed 's/^\s*void \(.*\)() {.*/"\1",/'  |update test_name_list
    $CXX $CFLAGS boot.cc -o tangle
    ./tangle test
  noisy_cd ../subx  # no effect; just to show us returning to the parent directory
}

LAYERS=$(../enumerate/enumerate --until $UNTIL_LAYER  |grep '.cc$')
older_than subx.cc $LAYERS ../enumerate/enumerate ../tangle/tangle && {
  # no update here; rely on 'update' calls downstream
  ../tangle/tangle $LAYERS  > subx.cc
}

grep -h "^[^[:space:]#].*) {$" subx.cc  |grep -v ":.*("  |sed 's/ {.*/;/'  |update function_list
grep -h "^\s*void test_" subx.cc  |sed 's/^\s*void \(.*\)() {.*/\1,/'  |update test_list
grep -h "^\s*void test_" subx.cc  |sed 's/^\s*void \(.*\)() {.*/"\1",/'  |update test_name_list

older_than subx_bin subx.cc *_list && {
  $CXX $CFLAGS subx.cc -o subx_bin
}

if [ $# -eq 0 ]
then

  # Assumption: SubX programs don't need to be retranslated every time we
  # rebuild the C++ bootstrap.

  # simple example programs
  for n in `seq 1 12`
  do
    older_than examples/ex$n examples/ex$n.subx && {
      ./subx_bin translate examples/ex$n.subx -o examples/ex$n
    }
  done

  # simple apps that use the standard library
  for app in factorial crenshaw2-1 crenshaw2-1b handle
  do
    older_than apps/$app apps/$app.subx [0-9]*.subx && {
      ./subx_bin translate [0-9]*.subx apps/$app.subx -o apps/$app
    }
  done

  # self-hosting translator
  for phase in hex survey pack assort dquotes tests
  do
    older_than apps/$phase apps/$phase.subx apps/subx-common.subx [0-9]*.subx && {
      ./subx_bin translate [0-9]*.subx apps/subx-common.subx apps/$phase.subx -o apps/$phase
    }
  done

fi

exit 0
class="p">(addr int) <- get self, top copy-to *top, 0 } fn grapheme-stack-empty? _self: (addr grapheme-stack) -> _/eax: boolean { var self/esi: (addr grapheme-stack) <- copy _self var top/eax: (addr int) <- get self, top compare *top, 0 { break-if-!= return 1/true } return 0/false } fn grapheme-stack-length _self: (addr grapheme-stack) -> _/eax: int { var self/esi: (addr grapheme-stack) <- copy _self var top/eax: (addr int) <- get self, top return *top } fn push-grapheme-stack _self: (addr grapheme-stack), _val: grapheme { var self/esi: (addr grapheme-stack) <- copy _self var top-addr/ecx: (addr int) <- get self, top var data-ah/edx: (addr handle array grapheme) <- get self, data var data/eax: (addr array grapheme) <- lookup *data-ah var top/edx: int <- copy *top-addr var dest-addr/edx: (addr grapheme) <- index data, top var val/eax: grapheme <- copy _val copy-to *dest-addr, val add-to *top-addr, 1 } fn pop-grapheme-stack _self: (addr grapheme-stack) -> _/eax: grapheme { var self/esi: (addr grapheme-stack) <- copy _self var top-addr/ecx: (addr int) <- get self, top { compare *top-addr, 0 break-if-> return -1 } subtract-from *top-addr, 1 var data-ah/edx: (addr handle array grapheme) <- get self, data var data/eax: (addr array grapheme) <- lookup *data-ah var top/edx: int <- copy *top-addr var result-addr/eax: (addr grapheme) <- index data, top return *result-addr } fn copy-grapheme-stack _src: (addr grapheme-stack), dest: (addr grapheme-stack) { var src/esi: (addr grapheme-stack) <- copy _src var data-ah/edi: (addr handle array grapheme) <- get src, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edi: (addr array grapheme) <- copy _data var top-addr/ecx: (addr int) <- get src, top var i/eax: int <- copy 0 { compare i, *top-addr break-if->= var g/edx: (addr grapheme) <- index data, i push-grapheme-stack dest, *g i <- increment loop } } # dump stack to screen from bottom to top # hardcoded colors: # matching paren fn render-stack-from-bottom-wrapping-right-then-down screen: (addr screen), _self: (addr grapheme-stack), xmin: int, ymin: int, xmax: int, ymax: int, _x: int, _y: int, highlight-matching-open-paren?: boolean, open-paren-depth: int, color: int, background-color: int -> _/eax: int, _/ecx: int { var self/esi: (addr grapheme-stack) <- copy _self var matching-open-paren-index/edx: int <- get-matching-open-paren-index self, highlight-matching-open-paren?, open-paren-depth var data-ah/edi: (addr handle array grapheme) <- get self, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edi: (addr array grapheme) <- copy _data var x/eax: int <- copy _x var y/ecx: int <- copy _y var top-addr/esi: (addr int) <- get self, top var i/ebx: int <- copy 0 { compare i, *top-addr break-if->= { var g/esi: (addr grapheme) <- index data, i var fg: int { var tmp/eax: int <- copy color copy-to fg, tmp } { compare i, matching-open-paren-index break-if-!= copy-to fg, 0xf/highlight } x, y <- render-grapheme screen, *g, xmin, ymin, xmax, ymax, x, y, fg, background-color } i <- increment loop } return x, y } # helper for small words fn render-stack-from-bottom screen: (addr screen), self: (addr grapheme-stack), x: int, y: int, highlight-matching-open-paren?: boolean, open-paren-depth: int -> _/eax: int { var _width/eax: int <- copy 0 var _height/ecx: int <- copy 0 _width, _height <- screen-size screen var width/edx: int <- copy _width var height/ebx: int <- copy _height var x2/eax: int <- copy 0 var y2/ecx: int <- copy 0 x2, y2 <- render-stack-from-bottom-wrapping-right-then-down screen, self, x, y, width, height, x, y, highlight-matching-open-paren?, open-paren-depth, 3/fg=cyan, 0xc5/bg=blue-bg return x2 # y2? yolo } # dump stack to screen from top to bottom # optionally render a 'cursor' with the top grapheme # hard-coded colors: # matching paren # cursor fn render-stack-from-top-wrapping-right-then-down screen: (addr screen), _self: (addr grapheme-stack), xmin: int, ymin: int, xmax: int, ymax: int, _x: int, _y: int, render-cursor?: boolean, color: int, background-color: int -> _/eax: int, _/ecx: int { var self/esi: (addr grapheme-stack) <- copy _self var matching-close-paren-index/edx: int <- get-matching-close-paren-index self, render-cursor? var data-ah/eax: (addr handle array grapheme) <- get self, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edi: (addr array grapheme) <- copy _data var x/eax: int <- copy _x var y/ecx: int <- copy _y var top-addr/ebx: (addr int) <- get self, top var i/ebx: int <- copy *top-addr i <- decrement # if render-cursor?, peel off first iteration { compare render-cursor?, 0/false break-if-= compare i, 0 break-if-< var g/esi: (addr grapheme) <- index data, i x, y <- render-grapheme screen, *g, xmin, ymin, xmax, ymax, x, y, color, 7/bg=cursor i <- decrement } # remaining iterations { compare i, 0 break-if-< # highlight matching paren if needed var fg: int { var tmp/eax: int <- copy color copy-to fg, tmp } compare i, matching-close-paren-index { break-if-!= copy-to fg, 0xf/highlight } # var g/esi: (addr grapheme) <- index data, i x, y <- render-grapheme screen, *g, xmin, ymin, xmax, ymax, x, y, fg, background-color i <- decrement loop } return x, y } # helper for small words fn render-stack-from-top screen: (addr screen), self: (addr grapheme-stack), x: int, y: int, render-cursor?: boolean -> _/eax: int { var _width/eax: int <- copy 0 var _height/ecx: int <- copy 0 _width, _height <- screen-size screen var width/edx: int <- copy _width var height/ebx: int <- copy _height var x2/eax: int <- copy 0 var y2/ecx: int <- copy 0 x2, y2 <- render-stack-from-top-wrapping-right-then-down screen, self, x, y, width, height, x, y, render-cursor?, 3/fg=cyan, 0xc5/bg=blue-bg return x2 # y2? yolo } fn test-render-grapheme-stack { # setup: gs = "abc" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 5 var g/eax: grapheme <- copy 0x61/a push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x63/c push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-bottom screen, gs, 0/x, 0/y, 0/no-highlight-matching-open-paren, 0/open-paren-depth check-screen-row screen, 0/y, "abc ", "F - test-render-grapheme-stack from bottom" check-ints-equal x, 3, "F - test-render-grapheme-stack from bottom: result" check-background-color-in-screen-row screen, 7/bg=cursor, 0/y, " ", "F - test-render-grapheme-stack from bottom: bg" # var x/eax: int <- render-stack-from-top screen, gs, 0/x, 1/y, 0/cursor=false check-screen-row screen, 1/y, "cba ", "F - test-render-grapheme-stack from top without cursor" check-ints-equal x, 3, "F - test-render-grapheme-stack from top without cursor: result" check-background-color-in-screen-row screen, 7/bg=cursor, 1/y, " ", "F - test-render-grapheme-stack from top without cursor: bg" # var x/eax: int <- render-stack-from-top screen, gs, 0/x, 2/y, 1/cursor=true check-screen-row screen, 2/y, "cba ", "F - test-render-grapheme-stack from top with cursor" check-ints-equal x, 3, "F - test-render-grapheme-stack from top with cursor: result" check-background-color-in-screen-row screen, 7/bg=cursor, 2/y, "| ", "F - test-render-grapheme-stack from top with cursor: bg" } fn test-render-grapheme-stack-while-highlighting-matching-close-paren { # setup: gs = "(b)" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 5 var g/eax: grapheme <- copy 0x29/close-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-top screen, gs, 0/x, 2/y, 1/cursor=true check-screen-row screen, 2/y, "(b) ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren" check-background-color-in-screen-row screen, 7/bg=cursor, 2/y, "| ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren: cursor" check-screen-row-in-color screen, 0xf/fg=white, 2/y, " ) ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren: matching paren" } fn test-render-grapheme-stack-while-highlighting-matching-close-paren-2 { # setup: gs = "(a (b)) c" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 0x10 var g/eax: grapheme <- copy 0x63/c push-grapheme-stack gs, g g <- copy 0x20/space push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x20/space push-grapheme-stack gs, g g <- copy 0x61/a push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-top screen, gs, 0/x, 2/y, 1/cursor=true check-screen-row screen, 2/y, "(a (b)) c ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren-2" check-background-color-in-screen-row screen, 7/bg=cursor, 2/y, "| ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren-2: cursor" check-screen-row-in-color screen, 0xf/fg=white, 2/y, " ) ", "F - test-render-grapheme-stack-while-highlighting-matching-close-paren-2: matching paren" } fn test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end { # setup: gs = "(b)" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 5 var g/eax: grapheme <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-bottom screen, gs, 0/x, 2/y, 1/highlight-matching-open-paren, 1/open-paren-depth check-screen-row screen, 2/y, "(b) ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end" check-screen-row-in-color screen, 0xf/fg=white, 2/y, "( ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end: matching paren" } fn test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end-2 { # setup: gs = "a((b))" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 0x10 var g/eax: grapheme <- copy 0x61/a push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-bottom screen, gs, 0/x, 2/y, 1/highlight-matching-open-paren, 1/open-paren-depth check-screen-row screen, 2/y, "a((b)) ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end-2" check-screen-row-in-color screen, 0xf/fg=white, 2/y, " ( ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-with-close-paren-at-end-2: matching paren" } fn test-render-grapheme-stack-while-highlighting-matching-open-paren { # setup: gs = "(b" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 5 var g/eax: grapheme <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-bottom screen, gs, 0/x, 2/y, 1/highlight-matching-open-paren, 0/open-paren-depth check-screen-row screen, 2/y, "(b ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren" check-screen-row-in-color screen, 0xf/fg=white, 2/y, "( ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren: matching paren" } fn test-render-grapheme-stack-while-highlighting-matching-open-paren-2 { # setup: gs = "a((b)" var gs-storage: grapheme-stack var gs/edi: (addr grapheme-stack) <- address gs-storage initialize-grapheme-stack gs, 0x10 var g/eax: grapheme <- copy 0x61/a push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x28/open-paren push-grapheme-stack gs, g g <- copy 0x62/b push-grapheme-stack gs, g g <- copy 0x29/close-paren push-grapheme-stack gs, g # setup: screen var screen-on-stack: screen var screen/esi: (addr screen) <- address screen-on-stack initialize-screen screen, 5, 4, 0/no-pixel-graphics # var x/eax: int <- render-stack-from-bottom screen, gs, 0/x, 2/y, 1/highlight-matching-open-paren, 0/open-paren-depth check-screen-row screen, 2/y, "a((b) ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-2" check-screen-row-in-color screen, 0xf/fg=white, 2/y, " ( ", "F - test-render-grapheme-stack-while-highlighting-matching-open-paren-2: matching paren" } # return the index of the matching close-paren of the grapheme at cursor (top of stack) # or top index if there's no matching close-paren fn get-matching-close-paren-index _self: (addr grapheme-stack), render-cursor?: boolean -> _/edx: int { var self/esi: (addr grapheme-stack) <- copy _self var top-addr/edx: (addr int) <- get self, top # if not rendering cursor, return compare render-cursor?, 0/false { break-if-!= return *top-addr } var data-ah/eax: (addr handle array grapheme) <- get self, data var data/eax: (addr array grapheme) <- lookup *data-ah var i/ecx: int <- copy *top-addr # if stack is empty, return compare i, 0 { break-if-> return *top-addr } # if cursor is not '(' return i <- decrement var g/esi: (addr grapheme) <- index data, i compare *g, 0x28/open-paren { break-if-= return *top-addr } # otherwise scan to matching paren var paren-count/ebx: int <- copy 1 i <- decrement { compare i, 0 break-if-< var g/esi: (addr grapheme) <- index data, i compare *g, 0x28/open-paren { break-if-!= paren-count <- increment } compare *g, 0x29/close-paren { break-if-!= compare paren-count, 1 { break-if-!= return i } paren-count <- decrement } i <- decrement loop } return *top-addr } # return the index of the first open-paren at the given depth # or top index if there's no matching close-paren fn get-matching-open-paren-index _self: (addr grapheme-stack), control: boolean, depth: int -> _/edx: int { var self/esi: (addr grapheme-stack) <- copy _self var top-addr/edx: (addr int) <- get self, top # if not rendering cursor, return compare control, 0/false { break-if-!= return *top-addr } var data-ah/eax: (addr handle array grapheme) <- get self, data var data/eax: (addr array grapheme) <- lookup *data-ah var i/ecx: int <- copy *top-addr # if stack is empty, return compare i, 0 { break-if-> return *top-addr } # scan to matching open paren var paren-count/ebx: int <- copy 0 i <- decrement { compare i, 0 break-if-< var g/esi: (addr grapheme) <- index data, i compare *g, 0x29/close-paren { break-if-!= paren-count <- increment } compare *g, 0x28/open-paren { break-if-!= compare paren-count, depth { break-if-!= return i } paren-count <- decrement } i <- decrement loop } return *top-addr } # compare from bottom # beware: modifies 'stream', which must be disposed of after a false result fn prefix-match? _self: (addr grapheme-stack), s: (addr stream byte) -> _/eax: boolean { var self/esi: (addr grapheme-stack) <- copy _self var data-ah/edi: (addr handle array grapheme) <- get self, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edi: (addr array grapheme) <- copy _data var top-addr/ecx: (addr int) <- get self, top var i/ebx: int <- copy 0 { compare i, *top-addr break-if->= # if curr != expected, return false { var curr-a/edx: (addr grapheme) <- index data, i var expected/eax: grapheme <- read-grapheme s { compare expected, *curr-a break-if-= return 0/false } } i <- increment loop } return 1 # true } # compare from bottom # beware: modifies 'stream', which must be disposed of after a false result fn suffix-match? _self: (addr grapheme-stack), s: (addr stream byte) -> _/eax: boolean { var self/esi: (addr grapheme-stack) <- copy _self var data-ah/edi: (addr handle array grapheme) <- get self, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edi: (addr array grapheme) <- copy _data var top-addr/eax: (addr int) <- get self, top var i/ebx: int <- copy *top-addr i <- decrement { compare i, 0 break-if-< { var curr-a/edx: (addr grapheme) <- index data, i var expected/eax: grapheme <- read-grapheme s # if curr != expected, return false { compare expected, *curr-a break-if-= return 0/false } } i <- decrement loop } return 1 # true } fn grapheme-stack-is-decimal-integer? _self: (addr grapheme-stack) -> _/eax: boolean { var self/esi: (addr grapheme-stack) <- copy _self var data-ah/eax: (addr handle array grapheme) <- get self, data var _data/eax: (addr array grapheme) <- lookup *data-ah var data/edx: (addr array grapheme) <- copy _data var top-addr/ecx: (addr int) <- get self, top var i/ebx: int <- copy 0 var result/eax: boolean <- copy 1/true $grapheme-stack-is-integer?:loop: { compare i, *top-addr break-if->= var g/edx: (addr grapheme) <- index data, i result <- decimal-digit? *g compare result, 0/false break-if-= i <- increment loop } return result }