chromium/third_party/boringssl/src/crypto/fipsmodule/modes/ctr.c.inc

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#include <assert.h>
#include <string.h>

#include "internal.h"
#include "../../internal.h"


// NOTE: the IV/counter CTR mode is big-endian.  The code itself
// is endian-neutral.

// increment counter (128-bit int) by 1
static void ctr128_inc(uint8_t *counter) {}

static_assert;

// The input encrypted as though 128bit counter mode is being used.  The extra
// state information to record how much of the 128bit block we have used is
// contained in *num, and the encrypted counter is kept in ecount_buf.  Both
// *num and ecount_buf must be initialised with zeros before the first call to
// CRYPTO_ctr128_encrypt().
//
// This algorithm assumes that the counter is in the x lower bits of the IV
// (ivec), and that the application has full control over overflow and the rest
// of the IV.  This implementation takes NO responsibility for checking that
// the counter doesn't overflow into the rest of the IV when incremented.
void CRYPTO_ctr128_encrypt(const uint8_t *in, uint8_t *out, size_t len,
                           const AES_KEY *key, uint8_t ivec[16],
                           uint8_t ecount_buf[16], unsigned int *num,
                           block128_f block) {}

// increment upper 96 bits of 128-bit counter by 1
static void ctr96_inc(uint8_t *counter) {}

void CRYPTO_ctr128_encrypt_ctr32(const uint8_t *in, uint8_t *out, size_t len,
                                 const AES_KEY *key, uint8_t ivec[16],
                                 uint8_t ecount_buf[16], unsigned int *num,
                                 ctr128_f func) {}