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265 lines
9.9 KiB
265 lines
9.9 KiB
package com.huateng.util.sm4;
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import java.io.ByteArrayInputStream;
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import java.io.ByteArrayOutputStream;
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public class SM4 {
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protected static final int SM4_ENCRYPT = 1;
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protected static final int SM4_DECRYPT = 0;
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protected static final byte[] SboxTable = new byte[]{-42, -112, -23, -2, -52, -31, 61, -73, 22, -74, 20, -62, 40, -5, 44, 5, 43, 103, -102, 118, 42, -66, 4, -61, -86, 68, 19, 38, 73, -122, 6, -103, -100, 66, 80, -12, -111, -17, -104, 122, 51, 84, 11, 67, -19, -49, -84, 98, -28, -77, 28, -87, -55, 8, -24, -107, -128, -33, -108, -6, 117, -113, 63, -90, 71, 7, -89, -4, -13, 115, 23, -70, -125, 89, 60, 25, -26, -123, 79, -88, 104, 107, -127, -78, 113, 100, -38, -117, -8, -21, 15, 75, 112, 86, -99, 53, 30, 36, 14, 94, 99, 88, -47, -94, 37, 34, 124, 59, 1, 33, 120, -121, -44, 0, 70, 87, -97, -45, 39, 82, 76, 54, 2, -25, -96, -60, -56, -98, -22, -65, -118, -46, 64, -57, 56, -75, -93, -9, -14, -50, -7, 97, 21, -95, -32, -82, 93, -92, -101, 52, 26, 85, -83, -109, 50, 48, -11, -116, -79, -29, 29, -10, -30, 46, -126, 102, -54, 96, -64, 41, 35, -85, 13, 83, 78, 111, -43, -37, 55, 69, -34, -3, -114, 47, 3, -1, 106, 114, 109, 108, 91, 81, -115, 27, -81, -110, -69, -35, -68, 127, 17, -39, 92, 65, 31, 16, 90, -40, 10, -63, 49, -120, -91, -51, 123, -67, 45, 116, -48, 18, -72, -27, -76, -80, -119, 105, -105, 74, 12, -106, 119, 126, 101, -71, -15, 9, -59, 110, -58, -124, 24, -16, 125, -20, 58, -36, 77, 32, 121, -18, 95, 62, -41, -53, 57, 72};
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protected static final int[] FK = new int[]{-1548633402, 1453994832, 1736282519, -1301273892};
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protected static final int[] CK = new int[]{462357, 472066609, 943670861, 1415275113, 1886879365, -1936483679, -1464879427, -993275175, -521670923, -66909679, 404694573, 876298825, 1347903077, 1819507329, -2003855715, -1532251463, -1060647211, -589042959, -117504499, 337322537, 808926789, 1280531041, 1752135293, -2071227751, -1599623499, -1128019247, -656414995, -184876535, 269950501, 741554753, 1213159005, 1684763257};
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public SM4() {
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}
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private long GET_ULONG_BE(byte[] b, int i) {
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long n = (long)(b[i] & 255) << 24 | (long)((b[i + 1] & 255) << 16) | (long)((b[i + 2] & 255) << 8) | (long)(b[i + 3] & 255) & 4294967295L;
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return n;
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}
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private void PUT_ULONG_BE(long n, byte[] b, int i) {
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b[i] = (byte)((int)(255L & n >> 24));
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b[i + 1] = (byte)((int)(255L & n >> 16));
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b[i + 2] = (byte)((int)(255L & n >> 8));
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b[i + 3] = (byte)((int)(255L & n));
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}
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private long SHL(long x, int n) {
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return (x & -1L) << n;
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}
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private long ROTL(long x, int n) {
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return this.SHL(x, n) | x >> 32 - n;
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}
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private void SWAP(long[] sk, int i) {
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long t = sk[i];
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sk[i] = sk[31 - i];
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sk[31 - i] = t;
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}
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private byte sm4Sbox(byte inch) {
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int i = inch & 255;
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byte retVal = SboxTable[i];
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return retVal;
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}
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private long sm4Lt(long ka) {
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long bb = 0L;
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long c = 0L;
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byte[] a = new byte[4];
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byte[] b = new byte[4];
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this.PUT_ULONG_BE(ka, a, 0);
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b[0] = this.sm4Sbox(a[0]);
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b[1] = this.sm4Sbox(a[1]);
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b[2] = this.sm4Sbox(a[2]);
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b[3] = this.sm4Sbox(a[3]);
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bb = this.GET_ULONG_BE(b, 0);
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c = bb ^ this.ROTL(bb, 2) ^ this.ROTL(bb, 10) ^ this.ROTL(bb, 18) ^ this.ROTL(bb, 24);
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return c;
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}
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private long sm4F(long x0, long x1, long x2, long x3, long rk) {
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return x0 ^ this.sm4Lt(x1 ^ x2 ^ x3 ^ rk);
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}
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private long sm4CalciRK(long ka) {
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long bb = 0L;
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long rk = 0L;
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byte[] a = new byte[4];
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byte[] b = new byte[4];
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this.PUT_ULONG_BE(ka, a, 0);
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b[0] = this.sm4Sbox(a[0]);
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b[1] = this.sm4Sbox(a[1]);
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b[2] = this.sm4Sbox(a[2]);
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b[3] = this.sm4Sbox(a[3]);
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bb = this.GET_ULONG_BE(b, 0);
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rk = bb ^ this.ROTL(bb, 13) ^ this.ROTL(bb, 23);
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return rk;
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}
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private void sm4_setkey(long[] SK, byte[] key) {
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long[] MK = new long[4];
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long[] k = new long[36];
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int i = 0;
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MK[0] = this.GET_ULONG_BE(key, 0);
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MK[1] = this.GET_ULONG_BE(key, 4);
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MK[2] = this.GET_ULONG_BE(key, 8);
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MK[3] = this.GET_ULONG_BE(key, 12);
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k[0] = MK[0] ^ (long)FK[0];
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k[1] = MK[1] ^ (long)FK[1];
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k[2] = MK[2] ^ (long)FK[2];
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for(k[3] = MK[3] ^ (long)FK[3]; i < 32; ++i) {
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k[i + 4] = k[i] ^ this.sm4CalciRK(k[i + 1] ^ k[i + 2] ^ k[i + 3] ^ (long)CK[i]);
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SK[i] = k[i + 4];
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}
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}
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private void sm4_one_round(long[] sk, byte[] input, byte[] output) {
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int i = 0;
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long[] ulbuf = new long[36];
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ulbuf[0] = this.GET_ULONG_BE(input, 0);
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ulbuf[1] = this.GET_ULONG_BE(input, 4);
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ulbuf[2] = this.GET_ULONG_BE(input, 8);
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for(ulbuf[3] = this.GET_ULONG_BE(input, 12); i < 32; ++i) {
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ulbuf[i + 4] = this.sm4F(ulbuf[i], ulbuf[i + 1], ulbuf[i + 2], ulbuf[i + 3], sk[i]);
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}
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this.PUT_ULONG_BE(ulbuf[35], output, 0);
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this.PUT_ULONG_BE(ulbuf[34], output, 4);
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this.PUT_ULONG_BE(ulbuf[33], output, 8);
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this.PUT_ULONG_BE(ulbuf[32], output, 12);
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}
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private byte[] padding(byte[] input, int mode) {
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if (input == null) {
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return null;
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} else if (input.length % 16 == 0) {
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return input;
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} else {
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byte[] ret = (byte[])null;
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if (mode == 1) {
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int p = 16 - input.length % 16;
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ret = new byte[input.length + p];
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System.arraycopy(input, 0, ret, 0, input.length);
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for(int i = 0; i < p; ++i) {
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ret[input.length + i] = 0;
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}
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} else {
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int p = input[input.length - 1];
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ret = new byte[input.length - p];
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System.arraycopy(input, 0, ret, 0, input.length - p);
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}
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return ret;
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}
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}
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protected void sm4_setkey_enc(SM4_Context ctx, byte[] key) throws Exception {
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if (ctx == null) {
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throw new Exception("ctx is null!");
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} else if (key != null && key.length == 16) {
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ctx.mode = 1;
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this.sm4_setkey(ctx.sk, key);
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} else {
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throw new Exception("key error!");
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}
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}
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protected void sm4_setkey_dec(SM4_Context ctx, byte[] key) throws Exception {
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if (ctx == null) {
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throw new Exception("ctx is null!");
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} else if (key != null && key.length == 16) {
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ctx.mode = 0;
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this.sm4_setkey(ctx.sk, key);
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for(int i = 0; i < 16; ++i) {
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this.SWAP(ctx.sk, i);
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}
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} else {
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throw new Exception("key error!");
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}
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}
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protected byte[] sm4_crypt_ecb(SM4_Context ctx, byte[] input) throws Exception {
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if (input == null) {
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throw new Exception("input is null!");
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} else {
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if (ctx.isPadding && ctx.mode == 1) {
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input = this.padding(input, 1);
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}
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int length = input.length;
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ByteArrayInputStream bins = new ByteArrayInputStream(input);
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ByteArrayOutputStream bous;
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byte[] output;
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for(bous = new ByteArrayOutputStream(); length > 0; length -= 16) {
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output = new byte[16];
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byte[] out = new byte[16];
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bins.read(output);
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this.sm4_one_round(ctx.sk, output, out);
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bous.write(out);
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}
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output = bous.toByteArray();
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if (ctx.isPadding && ctx.mode == 0) {
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output = this.padding(output, 0);
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}
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bins.close();
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bous.close();
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return output;
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}
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}
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protected byte[] sm4_crypt_cbc(SM4_Context ctx, byte[] iv, byte[] input) throws Exception {
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if (iv != null && iv.length == 16) {
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if (input == null) {
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throw new Exception("input is null!");
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} else {
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if (ctx.isPadding && ctx.mode == 1) {
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input = this.padding(input, 1);
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}
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int length = input.length;
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ByteArrayInputStream bins = new ByteArrayInputStream(input);
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ByteArrayOutputStream bous = new ByteArrayOutputStream();
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byte[] temp;
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byte[] out;
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int i;
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if (ctx.mode != 1) {
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for(temp = new byte[16]; length > 0; length -= 16) {
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out = new byte[16];
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out = new byte[16];
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byte[] out1 = new byte[16];
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bins.read(out);
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System.arraycopy(out, 0, temp, 0, 16);
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this.sm4_one_round(ctx.sk, out, out);
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for(i = 0; i < 16; ++i) {
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out1[i] = (byte)(out[i] ^ iv[i]);
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}
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System.arraycopy(temp, 0, iv, 0, 16);
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bous.write(out1);
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}
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} else {
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while(length > 0) {
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temp = new byte[16];
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out = new byte[16];
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out = new byte[16];
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bins.read(temp);
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for(i = 0; i < 16; ++i) {
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out[i] = (byte)(temp[i] ^ iv[i]);
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}
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this.sm4_one_round(ctx.sk, out, out);
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System.arraycopy(out, 0, iv, 0, 16);
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bous.write(out);
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length -= 16;
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}
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}
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temp = bous.toByteArray();
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if (ctx.isPadding) {
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int var10000 = ctx.mode;
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}
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bins.close();
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bous.close();
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return temp;
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}
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} else {
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throw new Exception("iv error!");
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}
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}
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}
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