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staging: rtl8723au: suspect code indent for conditional statements
Correct a number of indentation-with-spaces-and-tabs issues in rtl8723au's rtw_security.c, according to checkpatch.pl: WARNING: suspect code indent for conditional statements Signed-off-by: M. Vefa Bicakci <m.v.b@runbox.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -929,9 +929,9 @@ static void mix_column(u8 *in, u8 *out)
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for (i = 0; i < 4; i++) {
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if ((in[i] & 0x80) == 0x80)
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add1b[i] = 0x1b;
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add1b[i] = 0x1b;
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else
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add1b[i] = 0x00;
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add1b[i] = 0x00;
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}
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swap_halfs[0] = in[2]; /* Swap halfs */
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@ -986,21 +986,21 @@ static void aes128k128d(u8 *key, u8 *data, u8 *ciphertext)
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for (round = 0; round < 11; round++) {
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if (round == 0) {
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xor_128(round_key, data, ciphertext);
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next_key(round_key, round);
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xor_128(round_key, data, ciphertext);
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next_key(round_key, round);
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} else if (round == 10) {
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byte_sub(ciphertext, intermediatea);
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shift_row(intermediatea, intermediateb);
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xor_128(intermediateb, round_key, ciphertext);
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byte_sub(ciphertext, intermediatea);
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shift_row(intermediatea, intermediateb);
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xor_128(intermediateb, round_key, ciphertext);
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} else { /* 1 - 9 */
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byte_sub(ciphertext, intermediatea);
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shift_row(intermediatea, intermediateb);
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mix_column(&intermediateb[0], &intermediatea[0]);
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mix_column(&intermediateb[4], &intermediatea[4]);
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mix_column(&intermediateb[8], &intermediatea[8]);
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mix_column(&intermediateb[12], &intermediatea[12]);
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xor_128(intermediatea, round_key, ciphertext);
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next_key(round_key, round);
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byte_sub(ciphertext, intermediatea);
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shift_row(intermediatea, intermediateb);
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mix_column(&intermediateb[0], &intermediatea[0]);
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mix_column(&intermediateb[4], &intermediatea[4]);
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mix_column(&intermediateb[8], &intermediatea[8]);
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mix_column(&intermediateb[12], &intermediatea[12]);
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xor_128(intermediatea, round_key, ciphertext);
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next_key(round_key, round);
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}
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}
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@ -1501,7 +1501,7 @@ static int aes_decipher(u8 *key, uint hdrlen, u8 *pframe, uint plen)
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for (j = 0; j < 16; j++)
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padded_buffer[j] = 0x00;
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for (j = 0; j < payload_remainder; j++)
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padded_buffer[j] = message[payload_index++];
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padded_buffer[j] = message[payload_index++];
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bitwise_xor(aes_out, padded_buffer, chain_buffer);
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aes128k128d(key, chain_buffer, aes_out);
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}
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@ -1531,7 +1531,7 @@ static int aes_decipher(u8 *key, uint hdrlen, u8 *pframe, uint plen)
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message, pn_vector, num_blocks + 1);
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for (j = 0; j < 16; j++)
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padded_buffer[j] = 0x00;
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padded_buffer[j] = 0x00;
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for (j = 0; j < payload_remainder; j++)
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padded_buffer[j] = message[payload_index + j];
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aes128k128d(key, ctr_preload, aes_out);
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