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310 lines
6.1 KiB
Go
310 lines
6.1 KiB
Go
// go-qrcode
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// Copyright 2014 Tom Harwood
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package qrcode
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import (
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bitset "github.com/skip2/go-qrcode/bitset"
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)
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type regularSymbol struct {
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version qrCodeVersion
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mask int
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data *bitset.Bitset
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symbol *symbol
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size int
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}
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// Abbreviated true/false.
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const (
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b0 = false
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b1 = true
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)
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var (
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alignmentPatternCenter = [][]int{
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{}, // Version 0 doesn't exist.
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{}, // Version 1 doesn't use alignment patterns.
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{6, 18},
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{6, 22},
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{6, 26},
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{6, 30},
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{6, 34},
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{6, 22, 38},
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{6, 24, 42},
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{6, 26, 46},
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{6, 28, 50},
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{6, 30, 54},
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{6, 32, 58},
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{6, 34, 62},
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{6, 26, 46, 66},
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{6, 26, 48, 70},
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{6, 26, 50, 74},
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{6, 30, 54, 78},
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{6, 30, 56, 82},
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{6, 30, 58, 86},
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{6, 34, 62, 90},
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{6, 28, 50, 72, 94},
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{6, 26, 50, 74, 98},
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{6, 30, 54, 78, 102},
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{6, 28, 54, 80, 106},
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{6, 32, 58, 84, 110},
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{6, 30, 58, 86, 114},
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{6, 34, 62, 90, 118},
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{6, 26, 50, 74, 98, 122},
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{6, 30, 54, 78, 102, 126},
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{6, 26, 52, 78, 104, 130},
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{6, 30, 56, 82, 108, 134},
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{6, 34, 60, 86, 112, 138},
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{6, 30, 58, 86, 114, 142},
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{6, 34, 62, 90, 118, 146},
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{6, 30, 54, 78, 102, 126, 150},
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{6, 24, 50, 76, 102, 128, 154},
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{6, 28, 54, 80, 106, 132, 158},
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{6, 32, 58, 84, 110, 136, 162},
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{6, 26, 54, 82, 110, 138, 166},
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{6, 30, 58, 86, 114, 142, 170},
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}
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finderPattern = [][]bool{
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{b1, b1, b1, b1, b1, b1, b1},
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{b1, b0, b0, b0, b0, b0, b1},
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{b1, b0, b1, b1, b1, b0, b1},
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{b1, b0, b1, b1, b1, b0, b1},
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{b1, b0, b1, b1, b1, b0, b1},
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{b1, b0, b0, b0, b0, b0, b1},
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{b1, b1, b1, b1, b1, b1, b1},
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}
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finderPatternSize = 7
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finderPatternHorizontalBorder = [][]bool{
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{b0, b0, b0, b0, b0, b0, b0, b0},
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}
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finderPatternVerticalBorder = [][]bool{
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{b0},
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{b0},
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{b0},
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{b0},
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{b0},
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{b0},
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{b0},
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{b0},
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}
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alignmentPattern = [][]bool{
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{b1, b1, b1, b1, b1},
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{b1, b0, b0, b0, b1},
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{b1, b0, b1, b0, b1},
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{b1, b0, b0, b0, b1},
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{b1, b1, b1, b1, b1},
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}
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)
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func buildRegularSymbol(version qrCodeVersion, mask int,
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data *bitset.Bitset) (*symbol, error) {
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m := ®ularSymbol{
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version: version,
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mask: mask,
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data: data,
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symbol: newSymbol(version.symbolSize(), version.quietZoneSize()),
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size: version.symbolSize(),
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}
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m.addFinderPatterns()
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m.addAlignmentPatterns()
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m.addTimingPatterns()
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m.addFormatInfo()
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m.addVersionInfo()
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ok, err := m.addData()
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if !ok {
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return nil, err
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}
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return m.symbol, nil
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}
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func (m *regularSymbol) addFinderPatterns() {
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fpSize := finderPatternSize
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fp := finderPattern
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fpHBorder := finderPatternHorizontalBorder
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fpVBorder := finderPatternVerticalBorder
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// Top left Finder Pattern.
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m.symbol.set2dPattern(0, 0, fp)
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m.symbol.set2dPattern(0, fpSize, fpHBorder)
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m.symbol.set2dPattern(fpSize, 0, fpVBorder)
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// Top right Finder Pattern.
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m.symbol.set2dPattern(m.size-fpSize, 0, fp)
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m.symbol.set2dPattern(m.size-fpSize-1, fpSize, fpHBorder)
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m.symbol.set2dPattern(m.size-fpSize-1, 0, fpVBorder)
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// Bottom left Finder Pattern.
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m.symbol.set2dPattern(0, m.size-fpSize, fp)
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m.symbol.set2dPattern(0, m.size-fpSize-1, fpHBorder)
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m.symbol.set2dPattern(fpSize, m.size-fpSize-1, fpVBorder)
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}
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func (m *regularSymbol) addAlignmentPatterns() {
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for _, x := range alignmentPatternCenter[m.version.version] {
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for _, y := range alignmentPatternCenter[m.version.version] {
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if !m.symbol.empty(x, y) {
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continue
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}
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m.symbol.set2dPattern(x-2, y-2, alignmentPattern)
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}
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}
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}
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func (m *regularSymbol) addTimingPatterns() {
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value := true
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for i := finderPatternSize + 1; i < m.size-finderPatternSize; i++ {
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m.symbol.set(i, finderPatternSize-1, value)
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m.symbol.set(finderPatternSize-1, i, value)
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value = !value
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}
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}
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func (m *regularSymbol) addFormatInfo() {
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fpSize := finderPatternSize
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l := formatInfoLengthBits - 1
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f := m.version.formatInfo(m.mask)
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// Bits 0-7, under the top right finder pattern.
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for i := 0; i <= 7; i++ {
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m.symbol.set(m.size-i-1, fpSize+1, f.At(l-i))
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}
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// Bits 0-5, right of the top left finder pattern.
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for i := 0; i <= 5; i++ {
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m.symbol.set(fpSize+1, i, f.At(l-i))
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}
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// Bits 6-8 on the corner of the top left finder pattern.
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m.symbol.set(fpSize+1, fpSize, f.At(l-6))
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m.symbol.set(fpSize+1, fpSize+1, f.At(l-7))
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m.symbol.set(fpSize, fpSize+1, f.At(l-8))
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// Bits 9-14 on the underside of the top left finder pattern.
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for i := 9; i <= 14; i++ {
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m.symbol.set(14-i, fpSize+1, f.At(l-i))
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}
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// Bits 8-14 on the right side of the bottom left finder pattern.
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for i := 8; i <= 14; i++ {
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m.symbol.set(fpSize+1, m.size-fpSize+i-8, f.At(l-i))
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}
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// Always dark symbol.
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m.symbol.set(fpSize+1, m.size-fpSize-1, true)
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}
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func (m *regularSymbol) addVersionInfo() {
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fpSize := finderPatternSize
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v := m.version.versionInfo()
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l := versionInfoLengthBits - 1
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if v == nil {
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return
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}
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for i := 0; i < v.Len(); i++ {
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// Above the bottom left finder pattern.
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m.symbol.set(i/3, m.size-fpSize-4+i%3, v.At(l-i))
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// Left of the top right finder pattern.
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m.symbol.set(m.size-fpSize-4+i%3, i/3, v.At(l-i))
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}
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}
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type direction uint8
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const (
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up direction = iota
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down
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)
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func (m *regularSymbol) addData() (bool, error) {
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xOffset := 1
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dir := up
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x := m.size - 2
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y := m.size - 1
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for i := 0; i < m.data.Len(); i++ {
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var mask bool
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switch m.mask {
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case 0:
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mask = (y+x+xOffset)%2 == 0
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case 1:
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mask = y%2 == 0
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case 2:
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mask = (x+xOffset)%3 == 0
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case 3:
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mask = (y+x+xOffset)%3 == 0
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case 4:
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mask = (y/2+(x+xOffset)/3)%2 == 0
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case 5:
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mask = (y*(x+xOffset))%2+(y*(x+xOffset))%3 == 0
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case 6:
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mask = ((y*(x+xOffset))%2+((y*(x+xOffset))%3))%2 == 0
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case 7:
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mask = ((y+x+xOffset)%2+((y*(x+xOffset))%3))%2 == 0
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}
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// != is equivalent to XOR.
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m.symbol.set(x+xOffset, y, mask != m.data.At(i))
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if i == m.data.Len()-1 {
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break
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}
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// Find next free bit in the symbol.
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for {
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if xOffset == 1 {
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xOffset = 0
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} else {
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xOffset = 1
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if dir == up {
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if y > 0 {
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y--
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} else {
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dir = down
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x -= 2
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}
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} else {
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if y < m.size-1 {
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y++
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} else {
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dir = up
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x -= 2
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}
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}
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}
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// Skip over the vertical timing pattern entirely.
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if x == 5 {
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x--
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}
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if m.symbol.empty(x+xOffset, y) {
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break
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}
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}
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}
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return true, nil
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}
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