package com.google.zxing.datamatrix.encoder;

import com.google.zxing.Dimension;
import java.util.Arrays;

/* JADX INFO: loaded from: classes.dex */
public final class HighLevelEncoder {
    static final int ASCII_ENCODATION = 0;
    static final int BASE256_ENCODATION = 5;
    static final int C40_ENCODATION = 1;
    static final char C40_UNLATCH = 254;
    static final int EDIFACT_ENCODATION = 4;
    static final char LATCH_TO_ANSIX12 = 238;
    static final char LATCH_TO_BASE256 = 231;
    static final char LATCH_TO_C40 = 230;
    static final char LATCH_TO_EDIFACT = 240;
    static final char LATCH_TO_TEXT = 239;
    private static final char MACRO_05 = 236;
    private static final String MACRO_05_HEADER = "[)>\u001e05\u001d";
    private static final char MACRO_06 = 237;
    private static final String MACRO_06_HEADER = "[)>\u001e06\u001d";
    private static final String MACRO_TRAILER = "\u001e\u0004";
    private static final char PAD = 129;
    static final int TEXT_ENCODATION = 2;
    static final char UPPER_SHIFT = 235;
    static final int X12_ENCODATION = 3;
    static final char X12_UNLATCH = 254;

    static boolean isDigit(char c) {
        return c >= '0' && c <= '9';
    }

    static boolean isExtendedASCII(char c) {
        return c >= 128 && c <= 255;
    }

    private static boolean isNativeC40(char c) {
        if (c == ' ') {
            return true;
        }
        if (c < '0' || c > '9') {
            return c >= 'A' && c <= 'Z';
        }
        return true;
    }

    private static boolean isNativeEDIFACT(char c) {
        return c >= ' ' && c <= '^';
    }

    private static boolean isNativeText(char c) {
        if (c == ' ') {
            return true;
        }
        if (c < '0' || c > '9') {
            return c >= 'a' && c <= 'z';
        }
        return true;
    }

    private static boolean isSpecialB256(char c) {
        return false;
    }

    private static boolean isX12TermSep(char c) {
        return c == '\r' || c == '*' || c == '>';
    }

    private HighLevelEncoder() {
    }

    private static char randomize253State(char c, int i) {
        int i2 = c + ((i * 149) % 253) + 1;
        if (i2 > 254) {
            i2 -= 254;
        }
        return (char) i2;
    }

    public static String encodeHighLevel(String str) {
        return encodeHighLevel(str, SymbolShapeHint.FORCE_NONE, null, null);
    }

    public static String encodeHighLevel(String str, SymbolShapeHint symbolShapeHint, Dimension dimension, Dimension dimension2) {
        int newEncoding = 0;
        Encoder[] encoderArr = {new ASCIIEncoder(), new C40Encoder(), new TextEncoder(), new X12Encoder(), new EdifactEncoder(), new Base256Encoder()};
        EncoderContext encoderContext = new EncoderContext(str);
        encoderContext.setSymbolShape(symbolShapeHint);
        encoderContext.setSizeConstraints(dimension, dimension2);
        if (str.startsWith(MACRO_05_HEADER) && str.endsWith(MACRO_TRAILER)) {
            encoderContext.writeCodeword(MACRO_05);
            encoderContext.setSkipAtEnd(2);
            encoderContext.pos += 7;
        } else if (str.startsWith(MACRO_06_HEADER) && str.endsWith(MACRO_TRAILER)) {
            encoderContext.writeCodeword(MACRO_06);
            encoderContext.setSkipAtEnd(2);
            encoderContext.pos += 7;
        }
        while (encoderContext.hasMoreCharacters()) {
            encoderArr[newEncoding].encode(encoderContext);
            if (encoderContext.getNewEncoding() >= 0) {
                newEncoding = encoderContext.getNewEncoding();
                encoderContext.resetEncoderSignal();
            }
        }
        int codewordCount = encoderContext.getCodewordCount();
        encoderContext.updateSymbolInfo();
        int dataCapacity = encoderContext.getSymbolInfo().getDataCapacity();
        if (codewordCount < dataCapacity && newEncoding != 0 && newEncoding != 5 && newEncoding != 4) {
            encoderContext.writeCodeword((char) 254);
        }
        StringBuilder codewords = encoderContext.getCodewords();
        if (codewords.length() < dataCapacity) {
            codewords.append(PAD);
        }
        while (codewords.length() < dataCapacity) {
            codewords.append(randomize253State(PAD, codewords.length() + 1));
        }
        return encoderContext.getCodewords().toString();
    }

    /* JADX WARN: Code restructure failed: missing block: B:122:0x01dc, code lost:
    
        return 5;
     */
    /*
        Code decompiled incorrectly, please refer to instructions dump.
        To view partially-correct add '--show-bad-code' argument
    */
    static int lookAheadTest(java.lang.CharSequence r20, int r21, int r22) {
        /*
            Method dump skipped, instruction units count: 486
            To view this dump add '--comments-level debug' option
        */
        throw new UnsupportedOperationException("Method not decompiled: com.google.zxing.datamatrix.encoder.HighLevelEncoder.lookAheadTest(java.lang.CharSequence, int, int):int");
    }

    private static int findMinimums(float[] fArr, int[] iArr, int i, byte[] bArr) {
        Arrays.fill(bArr, (byte) 0);
        for (int i2 = 0; i2 < 6; i2++) {
            int iCeil = (int) Math.ceil(fArr[i2]);
            iArr[i2] = iCeil;
            if (i > iCeil) {
                Arrays.fill(bArr, (byte) 0);
                i = iCeil;
            }
            if (i == iCeil) {
                bArr[i2] = (byte) (bArr[i2] + 1);
            }
        }
        return i;
    }

    private static int getMinimumCount(byte[] bArr) {
        int i = 0;
        for (int i2 = 0; i2 < 6; i2++) {
            i += bArr[i2];
        }
        return i;
    }

    private static boolean isNativeX12(char c) {
        if (isX12TermSep(c) || c == ' ') {
            return true;
        }
        if (c < '0' || c > '9') {
            return c >= 'A' && c <= 'Z';
        }
        return true;
    }

    public static int determineConsecutiveDigitCount(CharSequence charSequence, int i) {
        int length = charSequence.length();
        int i2 = 0;
        if (i < length) {
            char cCharAt = charSequence.charAt(i);
            while (isDigit(cCharAt) && i < length) {
                i2++;
                i++;
                if (i < length) {
                    cCharAt = charSequence.charAt(i);
                }
            }
        }
        return i2;
    }

    static void illegalCharacter(char c) {
        String hexString = Integer.toHexString(c);
        throw new IllegalArgumentException("Illegal character: " + c + " (0x" + ("0000".substring(0, 4 - hexString.length()) + hexString) + ')');
    }
}
