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17 Commits
Author SHA1 Message Date
cjdenio d50b572fb5 license 2026-10-02 09:11:04 -06:00
cjdenio 7b35f86e32 fix issues 2026-10-01 16:07:45 -06:00
cjdenio 419f0ae3cf handle empty copyright 2026-10-01 10:40:54 -06:00
cjdenio b918c5be23 parse rebus cells 2026-09-29 22:50:24 -04:00
cjdenio 60d1bd644c reveal/check/clear 2026-09-29 22:26:49 -04:00
cjdenio 50be9ab605 refactor .puz parser + detect rebuses 2026-09-29 21:20:13 -04:00
cjdenio b7c64dabe3 fix ipuz bug 2026-09-29 14:39:48 -04:00
cjdenio c139490dc2 handle line breaks in clues 2026-09-29 13:47:29 -04:00
cjdenio 21f9caec34 support ipuz files 2026-09-27 12:40:14 -04:00
cjdenio 5d62a4b611 check word 2026-09-24 15:36:49 -06:00
cjdenio 176c3997cd better readme 2026-09-23 08:19:39 -06:00
cjdenio 4f92cdd941 make it possible to check puzzle in the future 2026-09-22 22:17:50 -06:00
cjdenio 143020a21d use "enum" for solve state 2026-09-17 13:50:57 -06:00
cjdenio 644ce0d273 fix bug 2026-09-11 22:00:00 -05:00
cjdenio c1d024a97e fix text encoding for utf-8 puz files 2026-09-11 17:38:37 -05:00
cjdenio 0f1da4c461 some SSH logging 2026-09-11 14:35:53 -05:00
cjdenio e6798b1a67 jump backwards 2026-09-11 14:25:51 -05:00
10 changed files with 772 additions and 130 deletions

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+21
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@@ -0,0 +1,21 @@
MIT License
Copyright (c) 2026 Caleb Denio
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
+3 -3
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@@ -1,6 +1,6 @@
all: bin/crossword bin/crossword-ssh all: bin/crossword bin/crossword-ssh
bin/crossword: main.go puz/puz.go game/game.go bin/crossword: cmd/main.go puz/*.go game/game.go
go build -o $@ . go build -o $@ ./cmd
bin/crossword-ssh: ssh/main.go puz/puz.go game/game.go bin/crossword-ssh: ssh/main.go puz/*.go game/game.go
go build -o $@ ./ssh go build -o $@ ./ssh
+12 -6
View File
@@ -1,10 +1,16 @@
Very silly terminal-based crossword solver. It can play .puz / .ipuz files from a variety of sources, including [Crosshare](https://crosshare.org).
- Requirements: [Go](https://go.dev)
- Build: `make`
- Usage: `./bin/crossword <file>.puz`
![demo](demo.gif)
---
todo todo
- fix bug with that one 6x6 puzzle
- correctly calculate uiHeight with multi-line clues
- timer - timer
- reveal grid/word
- .puz checksums - .puz checksums
- fix shift+enter / short+tab in other terminals - fix shift+enter / shift+tab in other terminals
- after entering letter, jump to next unfilled cell (even if it's backwards) - rebus
- clear grid
+19 -12
View File
@@ -2,6 +2,7 @@ package main
import ( import (
"bufio" "bufio"
"encoding/json"
"flag" "flag"
"fmt" "fmt"
"log" "log"
@@ -12,6 +13,11 @@ import (
"golang.org/x/term" "golang.org/x/term"
) )
func getTermWidth() int {
w, _, _ := term.GetSize(int(os.Stdin.Fd()))
return w
}
func main() { func main() {
defer func() { defer func() {
if r := recover(); r != nil { if r := recover(); r != nil {
@@ -20,10 +26,11 @@ func main() {
}() }()
debugMode := flag.Bool("debug", false, "") debugMode := flag.Bool("debug", false, "")
dumpMode := flag.Bool("dump", false, "")
flag.Parse() flag.Parse()
filename := flag.Arg(0) filename := flag.Arg(0)
file, err := os.ReadFile(filename) file, err := os.Open(filename)
if err != nil { if err != nil {
log.Fatal(err) log.Fatal(err)
} }
@@ -33,11 +40,17 @@ func main() {
log.Fatal(err) log.Fatal(err)
} }
puzzle, err := puz.ParsePuz(file) puzzle, err := puz.LoadPuzzle(file)
if err != nil { if err != nil {
log.Fatal(err) log.Fatal(err)
} }
if dumpMode != nil && *dumpMode {
json.NewEncoder(os.Stdout).Encode(puzzle)
fmt.Print("\r\n")
return
}
fmt.Print("\x1b[?25l") fmt.Print("\x1b[?25l")
defer func() { defer func() {
@@ -50,12 +63,7 @@ func main() {
defer term.Restore(int(os.Stdin.Fd()), termState) defer term.Restore(int(os.Stdin.Fd()), termState)
state := game.State{ state := game.NewState(puzzle)
Puzzle: puzzle,
PuzzleState: []rune(puzzle.State),
SelectedClue: puzzle.Clues[0],
SelectedCell: puzzle.Clues[0].Cells[0],
}
if debugMode != nil { if debugMode != nil {
state.DebugMode = *debugMode state.DebugMode = *debugMode
} }
@@ -69,7 +77,7 @@ func main() {
} }
} }
uiHeight := state.RenderUI(os.Stdout) uiHeight := state.RenderUI(os.Stdout, getTermWidth())
scanner := bufio.NewScanner(os.Stdin) scanner := bufio.NewScanner(os.Stdin)
scanner.Split(func(data []byte, atEOF bool) (advance int, token []byte, err error) { scanner.Split(func(data []byte, atEOF bool) (advance int, token []byte, err error) {
@@ -103,16 +111,15 @@ func main() {
} }
state.SelectedClue = nil state.SelectedClue = nil
state.SelectedCell = -1 state.SelectedCell = -1
state.Goodbye = true
fmt.Printf("\r\x1b[%dA", uiHeight) fmt.Printf("\r\x1b[%dA", uiHeight)
fmt.Print("\x1b[J") fmt.Print("\x1b[J")
state.RenderUI(os.Stdout) state.RenderUI(os.Stdout, getTermWidth())
return return
} }
fmt.Printf("\r\x1b[%dA", uiHeight) fmt.Printf("\r\x1b[%dA", uiHeight)
fmt.Print("\x1b[J") fmt.Print("\x1b[J")
uiHeight = state.RenderUI(os.Stdout) uiHeight = state.RenderUI(os.Stdout, getTermWidth())
} }
} }
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+272 -45
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@@ -12,15 +12,90 @@ import (
"github.com/cjdenio/crossword/puz" "github.com/cjdenio/crossword/puz"
) )
type SolveState int
const (
Unsolved SolveState = iota
FilledNotSolved
Solved
)
type UIState int
const (
StateGame UIState = iota
StateRebusConfirmation
StateMenu
StateRevealMenu
StateCheckMenu
)
type State struct { type State struct {
Puzzle *puz.Puzzle Puzzle *puz.Puzzle
PuzzleState []rune PuzzleState []rune
SelectedCell int SelectedCell int
SelectedClue *puz.Clue SelectedClue *puz.Clue
Goodbye bool
LastKeySequence string LastKeySequence string
DebugMode bool DebugMode bool
SolveState int SolveState SolveState
CheckState []rune
UIState UIState
}
func RenderWithLineWrap(s string, width int) (out string, lines int) {
builder := strings.Builder{}
runes := []rune(s)
counter := 0
lines = 1
for i := 0; i < len(runes); i++ {
char := runes[i]
if char == '\n' {
builder.WriteString("\r\n")
lines++
counter = 0
continue
}
if char == '\r' && i < len(runes)-1 && runes[i+1] == '\n' {
builder.WriteString("\r\n")
lines++
counter = 0
i++
continue
}
builder.WriteRune(char)
counter++
if counter >= width && i < len(runes)-1 {
lines++
builder.WriteString("\r\n")
counter = 0
}
}
builder.WriteString("\r\n")
out = builder.String()
return
}
func NewState(puzzle *puz.Puzzle) *State {
state := StateGame
if puzzle.HasRebus {
state = StateRebusConfirmation
}
return &State{
Puzzle: puzzle,
PuzzleState: []rune(puzzle.State),
SelectedClue: puzzle.Clues[0],
SelectedCell: puzzle.Clues[0].Cells[0],
CheckState: make([]rune, len(puzzle.State)),
UIState: state,
}
} }
func (state *State) MoveCursor(direction int) { func (state *State) MoveCursor(direction int) {
@@ -179,7 +254,7 @@ func (state *State) GridFilled() bool {
return !slices.Contains(state.PuzzleState, '-') return !slices.Contains(state.PuzzleState, '-')
} }
func (state *State) CheckPuzzle() bool { func (state *State) PuzzleSolved() bool {
for i, cell := range state.PuzzleState { for i, cell := range state.PuzzleState {
if cell == '.' { if cell == '.' {
continue continue
@@ -191,10 +266,59 @@ func (state *State) CheckPuzzle() bool {
return true return true
} }
func (state *State) RenderUI(w io.Writer) int { func (state *State) CheckPuzzle() {
selectedClueCells := []int{} result := make([]rune, len(state.PuzzleState))
if state.SelectedClue != nil {
selectedClueCells = state.SelectedClue.Cells for i, cell := range state.PuzzleState {
if cell == '.' || cell == '-' {
continue
}
if cell == rune(state.Puzzle.Solution[i]) {
result[i] = 'y'
} else {
result[i] = 'n'
}
}
state.CheckState = result
}
func (state *State) CheckWord(clue *puz.Clue) {
for i, cellIdx := range clue.Cells {
cellState := state.PuzzleState[cellIdx]
if cellState == '-' || cellState == '.' {
continue
}
if cellState == rune(clue.Solution[i]) {
state.CheckState[cellIdx] = 'y'
} else {
state.CheckState[cellIdx] = 'n'
}
}
}
func (state *State) RevealWord(clue *puz.Clue) {
for i, cellIdx := range clue.Cells {
state.PuzzleState[cellIdx] = rune(clue.Solution[i])
state.CheckState[cellIdx] = 'y'
}
}
func (state *State) RevealPuzzle() {
for i, cell := range state.PuzzleState {
if cell == '.' {
continue
}
state.PuzzleState[i] = rune(state.Puzzle.Solution[i])
state.CheckState[i] = 'y'
}
}
func (state *State) RenderUI(w io.Writer, width int) int {
if state.UIState == StateRebusConfirmation {
fmt.Fprint(w, "This puzzle contains a rebus. This tool does not support rebuses.\r\nPress 'y' to continue anyway, or press any other key to exit.\r\n")
return 2
} }
uiHeight := 0 uiHeight := 0
@@ -203,24 +327,45 @@ func (state *State) RenderUI(w io.Writer) int {
uiHeight += 2 uiHeight += 2
fmt.Fprintf(w, "AUTHOR: %s\r\n", state.Puzzle.Author) fmt.Fprintf(w, "AUTHOR: %s\r\n", state.Puzzle.Author)
uiHeight += 1 uiHeight += 1
fmt.Fprint(w, RenderPuzzle(state.PuzzleState, state.Puzzle.Width, state.Puzzle.Height, selectedClueCells, state.SelectedCell)+"\r\n") fmt.Fprint(w, state.RenderPuzzle()+"\r\n")
uiHeight += state.Puzzle.Height + 3 uiHeight += state.Puzzle.Height + 3
if state.SelectedClue != nil { if state.SelectedClue != nil {
directionStr := "down"
if state.SelectedClue.Direction == puz.DirectionAcross { if state.SelectedClue.Direction == puz.DirectionAcross {
fmt.Fprintf(w, "%d-across: %s\r\n\r\n", state.SelectedClue.Number, state.SelectedClue.Clue) directionStr = "across"
} else {
fmt.Fprintf(w, "%d-down: %s\r\n\r\n", state.SelectedClue.Number, state.SelectedClue.Clue)
} }
clueStr, clueLines := RenderWithLineWrap(fmt.Sprintf("%d-%s: %s", state.SelectedClue.Number, directionStr, state.SelectedClue.Clue), width)
w.Write([]byte(clueStr))
uiHeight += clueLines
io.WriteString(w, "\r\n")
uiHeight += 1
}
if state.Puzzle.Copyright != "" {
fmt.Fprintf(w, "%s\r\n\r\n", state.Puzzle.Copyright)
uiHeight += 2 uiHeight += 2
} }
fmt.Fprintf(w, "%s\r\n", state.Puzzle.Copyright)
switch state.UIState {
case StateGame:
fmt.Fprint(w, AnsiDimmed("[enter]/[tab]: next word | [ctrl+a]: menu | [ctrl+c]: exit\r\n"))
uiHeight += 1 uiHeight += 1
case StateMenu:
fmt.Fprint(w, AnsiDimmed("[c]: check puzzle/word | [r]: reveal puzzle/word | [x]: clear grid | [q]: exit menu\r\n"))
uiHeight += 1
case StateCheckMenu:
fmt.Fprint(w, AnsiDimmed("[w]: check word | [p]: check puzzle | [q]: exit menu\r\n"))
uiHeight += 1
case StateRevealMenu:
fmt.Fprint(w, AnsiDimmed("[w]: reveal word | [p]: reveal puzzle | [q]: exit menu\r\n"))
uiHeight += 1
}
switch state.SolveState { switch state.SolveState {
case 1: case FilledNotSolved:
fmt.Fprintf(w, "\r\n%s\r\n", AnsiRed("The puzzle was filled, but at least 1 letter is incorrect...")) fmt.Fprintf(w, "\r\n%s\r\n", AnsiRed("The puzzle was filled, but at least 1 letter is incorrect..."))
uiHeight += 2 uiHeight += 2
case 2: case Solved:
fmt.Fprintf(w, "\r\n%s\r\n", AnsiGreen("The puzzle was solved!")) fmt.Fprintf(w, "\r\n%s\r\n", AnsiGreen("The puzzle was solved!"))
uiHeight += 2 uiHeight += 2
} }
@@ -230,11 +375,6 @@ func (state *State) RenderUI(w io.Writer) int {
uiHeight += 2 uiHeight += 2
} }
if state.Goodbye {
fmt.Fprint(w, "\r\nsee ya\r\n")
uiHeight += 2
}
return uiHeight return uiHeight
} }
@@ -260,17 +400,22 @@ func AnsiRed(s string) string {
return fmt.Sprintf("\x1b[31m%s\x1b[0m", s) return fmt.Sprintf("\x1b[31m%s\x1b[0m", s)
} }
func RenderPuzzle(puzzle []rune, width, height int, selectedClueCells []int, selectedCell int) string { func (state *State) RenderPuzzle() string {
selectedClueCells := []int{}
if state.SelectedClue != nil {
selectedClueCells = state.SelectedClue.Cells
}
b := strings.Builder{} b := strings.Builder{}
b.WriteRune('┌') b.WriteRune('┌')
for range (width * 2) + 1 { for range (state.Puzzle.Width * 2) + 1 {
b.WriteRune('─') b.WriteRune('─')
} }
b.WriteString("┐\r\n") b.WriteString("┐\r\n")
for index, char := range puzzle { for index, char := range state.PuzzleState {
if index%width == 0 { if index%state.Puzzle.Width == 0 {
b.WriteString("│ ") b.WriteString("│ ")
} }
@@ -284,17 +429,26 @@ func RenderPuzzle(puzzle []rune, width, height int, selectedClueCells []int, sel
cell = string(char) cell = string(char)
} }
if selectedCell == index { if state.SelectedCell == index {
cell = AnsiInverted(cell) cell = AnsiInverted(cell)
} else if slices.Contains(selectedClueCells, index) { } else if slices.Contains(selectedClueCells, index) {
cell = AnsiWhiteBackgrounded(cell) cell = AnsiWhiteBackgrounded(cell)
} }
if len(state.CheckState) == len(state.PuzzleState) {
switch state.CheckState[index] {
case 'y':
cell = AnsiGreen(cell)
case 'n':
cell = AnsiRed(cell)
}
}
b.WriteString(cell) b.WriteString(cell)
if (index+1)%width == 0 { if (index+1)%state.Puzzle.Width == 0 {
b.WriteString(" │\r\n") b.WriteString(" │\r\n")
} else if char == '.' && puzzle[index+1] == '.' { } else if char == '.' && state.PuzzleState[index+1] == '.' {
b.WriteRune(0x2588) b.WriteRune(0x2588)
} else { } else {
// inefficient // inefficient
@@ -307,7 +461,7 @@ func RenderPuzzle(puzzle []rune, width, height int, selectedClueCells []int, sel
} }
b.WriteRune('└') b.WriteRune('└')
for range (width * 2) + 1 { for range (state.Puzzle.Width * 2) + 1 {
b.WriteRune('─') b.WriteRune('─')
} }
b.WriteString("┘\r\n") b.WriteString("┘\r\n")
@@ -348,6 +502,32 @@ func (state *State) LoadSaveFile(f []byte) error {
return nil return nil
} }
func (state *State) SwitchDirections() bool {
switch state.SelectedClue.Direction {
case puz.DirectionAcross:
if state.Puzzle.Cells[state.SelectedCell][1] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1]
}
return true
case puz.DirectionDown:
if state.Puzzle.Cells[state.SelectedCell][0] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0]
}
return true
}
return false
}
func (state *State) ClearGrid() {
for i, cell := range state.PuzzleState {
if cell != '.' {
state.PuzzleState[i] = '-'
state.CheckState[i] = '\x00'
}
}
}
func (state *State) HandleInput(buffer []byte) (exited bool) { func (state *State) HandleInput(buffer []byte) (exited bool) {
if len(buffer) == 0 { if len(buffer) == 0 {
return false return false
@@ -359,28 +539,67 @@ func (state *State) HandleInput(buffer []byte) (exited bool) {
return true return true
} }
switch state.UIState {
case StateRebusConfirmation:
if buffer[0] == 'y' {
state.UIState = StateGame
return false
} else {
return true
}
case StateMenu:
switch buffer[0] {
case 'c':
state.UIState = StateCheckMenu
case 'r':
state.UIState = StateRevealMenu
case 'x':
state.ClearGrid()
state.UIState = StateGame
default:
state.UIState = StateGame
}
return false
case StateCheckMenu:
switch buffer[0] {
case 'w':
state.CheckWord(state.SelectedClue)
case 'p':
state.CheckPuzzle()
}
state.UIState = StateGame
return false
case StateRevealMenu:
switch buffer[0] {
case 'w':
state.RevealWord(state.SelectedClue)
case 'p':
state.RevealPuzzle()
return true
}
state.UIState = StateGame
return false
}
if buffer[0] == '\x01' {
state.UIState = StateMenu
return false
}
if buffer[0] == ' ' { if buffer[0] == ' ' {
switch state.SelectedClue.Direction { state.SwitchDirections()
case puz.DirectionAcross:
if state.Puzzle.Cells[state.SelectedCell][1] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1]
}
case puz.DirectionDown:
if state.Puzzle.Cells[state.SelectedCell][0] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0]
}
}
} }
if buffer[0] >= 0x61 && buffer[0] <= 0x7a { if buffer[0] >= 0x61 && buffer[0] <= 0x7a {
cellWasFilled := state.PuzzleState[state.SelectedCell] != '-' cellWasFilled := state.PuzzleState[state.SelectedCell] != '-'
state.PuzzleState[state.SelectedCell] = unicode.ToUpper(rune(buffer[0])) state.PuzzleState[state.SelectedCell] = unicode.ToUpper(rune(buffer[0]))
state.CheckState[state.SelectedCell] = 0x00
i := slices.Index(state.SelectedClue.Cells, state.SelectedCell) i := slices.Index(state.SelectedClue.Cells, state.SelectedCell)
if !cellWasFilled { if !cellWasFilled {
// jump to next unfilled cell in clue // jump to next unfilled cell in clue
for x := i + 1; x < len(state.SelectedClue.Cells); x++ { for x := (i + 1) % len(state.SelectedClue.Cells); x != i; x = ((x + 1) % len(state.SelectedClue.Cells)) {
if state.PuzzleState[state.SelectedClue.Cells[x]] == '-' { if state.PuzzleState[state.SelectedClue.Cells[x]] == '-' {
state.SelectedCell = state.SelectedClue.Cells[x] state.SelectedCell = state.SelectedClue.Cells[x]
break break
@@ -394,14 +613,14 @@ func (state *State) HandleInput(buffer []byte) (exited bool) {
} }
if state.GridFilled() { if state.GridFilled() {
if state.CheckPuzzle() { if state.PuzzleSolved() {
state.SolveState = 2 state.SolveState = Solved
return true return true
} else { } else {
state.SolveState = 1 state.SolveState = FilledNotSolved
} }
} else { } else {
state.SolveState = 0 state.SolveState = Unsolved
} }
} }
@@ -427,9 +646,9 @@ func (state *State) HandleInput(buffer []byte) (exited bool) {
if string(buffer[0:2]) == "\x1b[" { if string(buffer[0:2]) == "\x1b[" {
if (buffer[2] == 68 || buffer[2] == 67) && state.SelectedClue != nil && state.SelectedClue.Direction == puz.DirectionDown { if (buffer[2] == 68 || buffer[2] == 67) && state.SelectedClue != nil && state.SelectedClue.Direction == puz.DirectionDown {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0] state.SwitchDirections()
} else if (buffer[2] == 65 || buffer[2] == 66) && state.SelectedClue != nil && state.SelectedClue.Direction == puz.DirectionAcross { } else if (buffer[2] == 65 || buffer[2] == 66) && state.SelectedClue != nil && state.SelectedClue.Direction == puz.DirectionAcross {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1] state.SwitchDirections()
} else { } else {
switch buffer[2] { switch buffer[2] {
case 68: // left case 68: // left
@@ -444,10 +663,18 @@ func (state *State) HandleInput(buffer []byte) (exited bool) {
switch state.SelectedClue.Direction { switch state.SelectedClue.Direction {
case puz.DirectionAcross: case puz.DirectionAcross:
if state.Puzzle.Cells[state.SelectedCell][0] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0] state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0]
case puz.DirectionDown: } else {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1] state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1]
} }
case puz.DirectionDown:
if state.Puzzle.Cells[state.SelectedCell][1] != nil {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][1]
} else {
state.SelectedClue = state.Puzzle.Cells[state.SelectedCell][0]
}
}
} }
} }
return false return false
+183
View File
@@ -0,0 +1,183 @@
package puz
import (
"encoding/json"
"errors"
"slices"
"strconv"
"strings"
)
type iPuzDimensions struct {
Width int `json:"width"`
Height int `json:"height"`
}
type iPuzClue struct {
Number int `json:"number"`
Clue string `json:"clue"`
}
type iPuzFile struct {
Kind []string `json:"kind"`
Title string `json:"title"`
Author string `json:"author"`
Copyright string `json:"copyright"`
Puzzle [][]any `json:"puzzle"`
Solution [][]string `json:"solution"`
Dimensions iPuzDimensions `json:"dimensions"`
Clues map[string][]iPuzClue `json:"clues"`
}
func unwrapCell(cell any) (any, error) {
switch c := cell.(type) {
case string:
if c == "#" {
return "#", nil
} else if i, err := strconv.Atoi(c); err == nil {
return i, nil
} else {
return nil, errors.New("invalid string")
}
case float64:
return int(c), nil
case map[string]any:
if unwrappedCell, ok := c["cell"]; ok {
return unwrapCell(unwrappedCell) // recursion babyyyyyy
}
}
return nil, errors.New("unknown type")
}
func ParseIPuz(file []byte) (*Puzzle, error) {
var parsed iPuzFile
err := json.Unmarshal(file, &parsed)
if err != nil {
return nil, err
}
if len(parsed.Kind) == 0 || !slices.ContainsFunc(parsed.Kind, func(k string) bool {
return strings.HasPrefix(k, "http://ipuz.org/crossword")
}) {
return nil, errors.New("ipuz file is not a crossword")
}
puzzle := new(Puzzle)
puzzle.RebusCells = make(map[int]string)
puzzle.Title = parsed.Title
puzzle.Author = parsed.Author
puzzle.Copyright = parsed.Copyright
puzzle.Width = parsed.Dimensions.Width
puzzle.Height = parsed.Dimensions.Height
puzzle.ClueCount = len(parsed.Clues["Across"]) + len(parsed.Clues["Down"])
clueToCellMap := make(map[int][2]int)
state := strings.Builder{}
for y, row := range parsed.Puzzle {
for x, cell := range row {
unwrappedCell, err := unwrapCell(cell)
if err != nil {
return nil, err
}
switch c := unwrappedCell.(type) {
case string:
state.WriteRune('.')
case int:
clueToCellMap[c] = [2]int{x, y}
state.WriteRune('-')
default:
return nil, errors.New("unexpected type in .ipuz file")
}
}
}
puzzle.State = state.String()
solution := strings.Builder{}
for y, row := range parsed.Solution {
for x, cell := range row {
if cell == "#" {
solution.WriteRune('.')
} else if len(cell) > 1 {
solution.WriteByte(cell[0])
puzzle.RebusCells[y*puzzle.Width+x] = cell
puzzle.HasRebus = true
} else if len(cell) == 1 {
solution.WriteString(cell)
} else {
return nil, errors.New("invalid ipuz file")
}
}
}
puzzle.Solution = solution.String()
puzzle.Clues = make([]*Clue, 0, puzzle.ClueCount)
puzzle.Cells = make([][2]*Clue, puzzle.Width*puzzle.Height)
for _, clue := range parsed.Clues["Across"] {
cellCoords := clueToCellMap[clue.Number]
clueCells := make([]int, 0)
clueSolution := strings.Builder{}
clueStruct := &Clue{
Clue: clue.Clue,
Direction: DirectionAcross,
Number: clue.Number,
}
for i := cellCoords[0]; i < puzzle.Width; i++ {
cell := parsed.Solution[cellCoords[1]][i]
if cell == "#" {
break
}
cellIdx := cellCoords[1]*puzzle.Width + i
clueCells = append(clueCells, cellIdx)
puzzle.Cells[cellIdx][0] = clueStruct
clueSolution.WriteByte(cell[0])
}
clueStruct.Solution = clueSolution.String()
clueStruct.Cells = clueCells
puzzle.Clues = append(puzzle.Clues, clueStruct)
}
for _, clue := range parsed.Clues["Down"] {
cellCoords := clueToCellMap[clue.Number]
clueCells := make([]int, 0)
clueSolution := strings.Builder{}
clueStruct := &Clue{
Clue: clue.Clue,
Direction: DirectionDown,
Number: clue.Number,
}
for i := cellCoords[1]; i < puzzle.Height; i++ {
cell := parsed.Solution[i][cellCoords[0]]
if cell == "#" {
break
}
cellIdx := i*puzzle.Width + cellCoords[0]
clueCells = append(clueCells, cellIdx)
puzzle.Cells[cellIdx][1] = clueStruct
clueSolution.WriteByte(cell[0])
}
clueStruct.Solution = clueSolution.String()
clueStruct.Cells = clueCells
puzzle.Clues = append(puzzle.Clues, clueStruct)
}
return puzzle, nil
}
+164 -51
View File
@@ -5,44 +5,15 @@ import (
"bytes" "bytes"
"encoding/binary" "encoding/binary"
"errors" "errors"
"io"
"math" "math"
"regexp"
"strconv"
"strings" "strings"
"golang.org/x/text/encoding/charmap" "golang.org/x/text/encoding/charmap"
) )
type Direction int
const (
DirectionAcross Direction = iota
DirectionDown
)
type Clue struct {
Clue string
Solution string
Cells []int
Direction Direction
Number int
}
type Puzzle struct {
ClueCount int
Width int
Height int
Title string
Author string
Copyright string
Solution string
State string
Clues []*Clue
Cells [][2]*Clue
}
func startOfDownClue(puzzle string, width, height, index int) bool { func startOfDownClue(puzzle string, width, height, index int) bool {
if puzzle[index] == '.' { if puzzle[index] == '.' {
return false return false
@@ -75,60 +46,160 @@ func startOfAcrossClue(puzzle string, width, index int) bool {
return false return false
} }
func readText(b *bufio.Reader) (string, error) { func readText(b *bufio.Reader, version string) (string, error) {
text, err := b.ReadString(0x00) text, err := b.ReadString(0x00)
if err != nil { if err != nil {
return "", err return "", err
} }
if version == "1" {
decoded, err := charmap.ISO8859_1.NewDecoder().String(text[:len(text)-1]) decoded, err := charmap.ISO8859_1.NewDecoder().String(text[:len(text)-1])
if err != nil { if err != nil {
return "", err return "", err
} }
return decoded, nil return strings.TrimSpace(decoded), nil
} else {
return strings.TrimSpace(string(text[:len(text)-1])), nil
}
}
type ExtraBlock struct {
Name string
Data []byte
}
func readExtraBlock(r *bufio.Reader) (*ExtraBlock, error) {
name := make([]byte, 4)
_, err := r.Read(name)
if err != nil {
return nil, err
}
length := make([]byte, 2)
_, err = r.Read(length)
if err != nil {
return nil, err
}
_, err = r.Discard(2)
if err != nil {
return nil, err
}
data := make([]byte, binary.LittleEndian.Uint16(length))
_, err = r.Read(data)
if err != nil {
return nil, err
}
// consume trailing null byte
_, err = r.Discard(1)
if err != nil {
return nil, err
}
return &ExtraBlock{
Name: string(name),
Data: data,
}, nil
} }
func ParsePuz(file []byte) (*Puzzle, error) { func ParsePuz(file []byte) (*Puzzle, error) {
r := bytes.NewReader(file)
_, err := r.Seek(2, io.SeekStart) // consume the checksum
if err != nil {
return nil, err
}
// read magic bytes // read magic bytes
magic := string(file[2:14]) magic := make([]byte, 12)
if magic != "ACROSS&DOWN\x00" { _, err = r.Read(magic)
if err != nil {
return nil, err
}
if !bytes.Equal(magic, []byte("ACROSS&DOWN\x00")) {
return nil, errors.New("not a valid .puz file") return nil, errors.New("not a valid .puz file")
} }
puzzle := new(Puzzle) puzzle := new(Puzzle)
puzzle.RebusCells = make(map[int]string)
_, err = r.Seek(10, io.SeekCurrent)
if err != nil {
return nil, err
}
// read header // read header
puzzle.Width = int(file[0x2C]) version := make([]byte, 4)
puzzle.Height = int(file[0x2D]) _, err = r.Read(version)
puzzle.ClueCount = int(binary.LittleEndian.Uint16(file[0x2E:0x30])) if err != nil {
return nil, err
}
_, err = r.Seek(16, io.SeekCurrent)
if err != nil {
return nil, err
}
width, err := r.ReadByte()
if err != nil {
return nil, err
}
height, err := r.ReadByte()
if err != nil {
return nil, err
}
puzzle.Width = int(width)
puzzle.Height = int(height)
clueCount := make([]byte, 2)
_, err = r.Read(clueCount)
if err != nil {
return nil, err
}
puzzle.ClueCount = int(binary.LittleEndian.Uint16(clueCount))
puzzleSize := puzzle.Width * puzzle.Height puzzleSize := puzzle.Width * puzzle.Height
solutionStart := 0x34
solutionEnd := 0x34 + puzzleSize
stateStart := solutionEnd _, err = r.Seek(4, io.SeekCurrent)
stateEnd := stateStart + puzzleSize if err != nil {
return nil, err
}
puzzle.Solution = string(file[solutionStart:solutionEnd]) solution := make([]byte, puzzleSize)
puzzle.State = string(file[stateStart:stateEnd]) _, err = r.Read(solution)
if err != nil {
return nil, err
}
state := make([]byte, puzzleSize)
_, err = r.Read(state)
if err != nil {
return nil, err
}
// read text puzzle.Solution = string(solution)
buf := bufio.NewReader(bytes.NewReader(file[stateEnd:])) puzzle.State = string(state)
title, err := readText(buf) // read text fields
buf := bufio.NewReader(r)
title, err := readText(buf, string(version[0]))
if err != nil { if err != nil {
return nil, err return nil, err
} }
puzzle.Title = title puzzle.Title = title
author, err := readText(buf) author, err := readText(buf, string(version[0]))
if err != nil { if err != nil {
return nil, err return nil, err
} }
puzzle.Author = author puzzle.Author = author
copyright, err := readText(buf) copyright, err := readText(buf, string(version[0]))
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -137,13 +208,55 @@ func ParsePuz(file []byte) (*Puzzle, error) {
// read clues // read clues
clues := make([]string, 0, puzzle.ClueCount) clues := make([]string, 0, puzzle.ClueCount)
for range puzzle.ClueCount { for range puzzle.ClueCount {
clue, err := readText(buf) clue, err := readText(buf, string(version[0]))
if err != nil { if err != nil {
return nil, err return nil, err
} }
clues = append(clues, clue) clues = append(clues, clue)
} }
// read the "note" field, currently unused
_, err = readText(buf, string(version[0]))
if err != nil {
return nil, err
}
extraBlocks := make(map[string]*ExtraBlock)
for {
extra, err := readExtraBlock(buf)
if errors.Is(err, io.EOF) {
break
} else if err != nil {
return nil, err
}
extraBlocks[extra.Name] = extra
}
grbs, grbsOk := extraBlocks["GRBS"]
trbl, trblOk := extraBlocks["RTBL"]
if grbsOk && trblOk {
puzzle.HasRebus = true
rebusCellMap := make(map[int][]int)
for i, b := range grbs.Data {
if b > 0 {
rebusCellMap[int(b)-1] = append(rebusCellMap[int(b)-1], i)
}
}
rebusData := regexp.MustCompile(`\s*(\d+):(\w+);\s*`).FindAllStringSubmatch(string(trbl.Data), -1)
for _, rebus := range rebusData {
cell, err := strconv.Atoi(rebus[1])
if err != nil {
continue
}
for _, c := range rebusCellMap[cell] {
puzzle.RebusCells[c] = rebus[2]
}
}
}
// assign clue numbers // assign clue numbers
puzzle.Clues = make([]*Clue, 0, puzzle.ClueCount) puzzle.Clues = make([]*Clue, 0, puzzle.ClueCount)
puzzle.Cells = make([][2]*Clue, len(puzzle.Solution)) puzzle.Cells = make([][2]*Clue, len(puzzle.Solution))
+67
View File
@@ -0,0 +1,67 @@
package puz
import (
"bufio"
"errors"
"io"
)
type Direction int
const (
DirectionAcross Direction = iota
DirectionDown
)
type Clue struct {
Clue string
Solution string
Cells []int
Direction Direction
Number int
}
type Puzzle struct {
ClueCount int
Width int
Height int
Title string
Author string
Copyright string
Solution string
State string
Clues []*Clue
Cells [][2]*Clue
HasRebus bool
RebusCells map[int]string
}
func LoadPuzzle(r io.Reader) (*Puzzle, error) {
bufReader := bufio.NewReader(r)
header, err := bufReader.Peek(16)
if err != nil {
return nil, err
}
if string(header[2:14]) == "ACROSS&DOWN\x00" {
file, err := io.ReadAll(bufReader)
if err != nil {
return nil, err
}
return ParsePuz(file)
} else if header[0] == '{' {
file, err := io.ReadAll(bufReader)
if err != nil {
return nil, err
}
return ParseIPuz(file)
} else {
return nil, errors.New("could not detect file type")
}
}
+31 -13
View File
@@ -13,22 +13,25 @@ import (
) )
func main() { func main() {
ssh.Handle(func(s ssh.Session) {
file, err := os.ReadFile(os.Args[1]) file, err := os.ReadFile(os.Args[1])
if err != nil { if err != nil {
log.Fatal(err) log.Fatal(err)
} }
port := ":2222"
if portEnv, ok := os.LookupEnv("PORT"); ok && portEnv != "" {
port = ":" + portEnv
}
ssh.Handle(func(s ssh.Session) {
log.Printf("new connection from %s (username %s)\n", s.RemoteAddr().String(), s.User())
puzzle, err := puz.ParsePuz(file) puzzle, err := puz.ParsePuz(file)
if err != nil { if err != nil {
log.Fatal(err) log.Fatal(err)
} }
state := game.State{ state := game.NewState(puzzle)
Puzzle: puzzle,
PuzzleState: []rune(puzzle.State),
SelectedClue: puzzle.Clues[0],
SelectedCell: puzzle.Clues[0].Cells[0],
}
io.WriteString(s, "\x1b[?25l") io.WriteString(s, "\x1b[?25l")
@@ -36,7 +39,20 @@ func main() {
io.WriteString(s, "\x1b[?25h") io.WriteString(s, "\x1b[?25h")
}() }()
uiHeight := state.RenderUI(s) pty, winCh, isPty := s.Pty()
if !isPty {
return
}
windowWidth := pty.Window.Width
uiHeight := state.RenderUI(s, windowWidth)
go func() {
for window := range winCh {
windowWidth = window.Width
}
}()
scanner := bufio.NewScanner(s) scanner := bufio.NewScanner(s)
scanner.Split(func(data []byte, atEOF bool) (advance int, token []byte, err error) { scanner.Split(func(data []byte, atEOF bool) (advance int, token []byte, err error) {
@@ -66,18 +82,20 @@ func main() {
if exited { if exited {
state.SelectedClue = nil state.SelectedClue = nil
state.SelectedCell = -1 state.SelectedCell = -1
state.Goodbye = true
fmt.Fprintf(s, "\r\x1b[%dA", uiHeight) fmt.Fprintf(s, "\r\x1b[%dA", uiHeight)
fmt.Fprint(s, "\x1b[J") fmt.Fprint(s, "\x1b[J")
state.RenderUI(s) state.RenderUI(s, windowWidth)
return break
} }
fmt.Fprintf(s, "\r\x1b[%dA", uiHeight) fmt.Fprintf(s, "\r\x1b[%dA", uiHeight)
fmt.Fprint(s, "\x1b[J") fmt.Fprint(s, "\x1b[J")
uiHeight = state.RenderUI(s) uiHeight = state.RenderUI(s, windowWidth)
} }
log.Printf("%s disconnected\n", s.RemoteAddr().String())
}) })
log.Fatal(ssh.ListenAndServe(":1234", nil)) log.Printf("starting on port %s...\n", port)
log.Fatal(ssh.ListenAndServe(port, nil))
} }