CC26xx Driver Library
pka.c File Reference
#include "pka.h"

Macros

#define MAX(x, y)    (((x) > (y)) ? (x) : (y))
 
#define MIN(x, y)    (((x) < (y)) ? (x) : (y))
 
#define INRANGE(x, y, z)    ((x) > (y) && (x) < (z))
 
#define PKA_MAX_CURVE_SIZE_32_BIT_WORD   12
 
#define PKA_MAX_LEN_IN_32_BIT_WORD   PKA_MAX_CURVE_SIZE_32_BIT_WORD
 
#define PKA_NO_POINTER_REG   0xFF
 

Functions

void PKAClearPkaRam (void)
 Zeroizes PKA RAM. More...
 
static uint32_t PKAWritePkaParam (const uint8_t *param, uint32_t paramLength, uint32_t paramOffset, uint32_t ptrRegOffset)
 
static uint32_t PKAWritePkaParamExtraOffset (const uint8_t *param, uint32_t paramLength, uint32_t paramOffset, uint32_t ptrRegOffset)
 
static uint32_t PKAGetBigNumResult (uint8_t *resultBuf, uint32_t *resultLength, uint32_t resultPKAMemAddr)
 
static uint32_t PKAGetBigNumResultRemainder (uint8_t *resultBuf, uint32_t *resultLength, uint32_t resultPKAMemAddr)
 
static uint32_t PKAGetECCResult (uint8_t *curvePointX, uint8_t *curvePointY, uint32_t resultPKAMemAddr, uint32_t length)
 
uint32_t PKAGetOpsStatus (void)
 Gets the PKA operation status. More...
 
bool PKAArrayAllZeros (const uint8_t *array, uint32_t arrayLength)
 Checks whether and array only consists of zeros. More...
 
void PKAZeroOutArray (const uint8_t *array, uint32_t arrayLength)
 Zeros-out an array. More...
 
uint32_t PKABigNumModStart (const uint8_t *bigNum, uint32_t bigNumLength, const uint8_t *modulus, uint32_t modulusLength, uint32_t *resultPKAMemAddr)
 Starts a big number modulus operation. More...
 
uint32_t PKABigNumModGetResult (uint8_t *resultBuf, uint32_t length, uint32_t resultPKAMemAddr)
 Gets the result of the big number modulus operation. More...
 
uint32_t PKABigNumDivideStart (const uint8_t *dividend, uint32_t dividendLength, const uint8_t *divisor, uint32_t divisorLength, uint32_t *resultQuotientMemAddr, uint32_t *resultRemainderMemAddr)
 Starts a big number divide operation. More...
 
uint32_t PKABigNumDivideGetQuotient (uint8_t *resultBuf, uint32_t *length, uint32_t resultQuotientMemAddr)
 Gets the quotient of the big number divide operation. More...
 
uint32_t PKABigNumDivideGetRemainder (uint8_t *resultBuf, uint32_t *length, uint32_t resultQuotientMemAddr)
 Gets the remainder of the big number divide operation. More...
 
uint32_t PKABigNumCmpStart (const uint8_t *bigNum1, const uint8_t *bigNum2, uint32_t length)
 Starts the comparison of two big numbers. More...
 
uint32_t PKABigNumCmpGetResult (void)
 Gets the result of the comparison operation of two big numbers. More...
 
uint32_t PKABigNumInvModStart (const uint8_t *bigNum, uint32_t bigNumLength, const uint8_t *modulus, uint32_t modulusLength, uint32_t *resultPKAMemAddr)
 Starts a big number inverse modulo operation. More...
 
uint32_t PKABigNumInvModGetResult (uint8_t *resultBuf, uint32_t length, uint32_t resultPKAMemAddr)
 Gets the result of the big number inverse modulo operation. More...
 
uint32_t PKABigNumMultiplyStart (const uint8_t *multiplicand, uint32_t multiplicandLength, const uint8_t *multiplier, uint32_t multiplierLength, uint32_t *resultPKAMemAddr)
 Starts the multiplication of two big numbers. More...
 
uint32_t PKABigNumMultGetResult (uint8_t *resultBuf, uint32_t *resultLength, uint32_t resultPKAMemAddr)
 Gets the result of the big number multiplication. More...
 
uint32_t PKABigNumAddStart (const uint8_t *bigNum1, uint32_t bigNum1Length, const uint8_t *bigNum2, uint32_t bigNum2Length, uint32_t *resultPKAMemAddr)
 Starts the addition of two big numbers. More...
 
uint32_t PKABigNumSubGetResult (uint8_t *resultBuf, uint32_t *resultLength, uint32_t resultPKAMemAddr)
 Gets the result of the subtraction operation on two big numbers. More...
 
uint32_t PKABigNumSubStart (const uint8_t *minuend, uint32_t minuendLength, const uint8_t *subtrahend, uint32_t subtrahendLength, uint32_t *resultPKAMemAddr)
 Starts the subtraction of one big number from another. More...
 
uint32_t PKABigNumAddGetResult (uint8_t *resultBuf, uint32_t *resultLength, uint32_t resultPKAMemAddr)
 Gets the result of the addition operation on two big numbers. More...
 
uint32_t PKAEccMultiplyStart (const uint8_t *scalar, const uint8_t *curvePointX, const uint8_t *curvePointY, const uint8_t *prime, const uint8_t *a, const uint8_t *b, uint32_t length, uint32_t *resultPKAMemAddr)
 Starts ECC multiplication. More...
 
uint32_t PKAEccMontgomeryMultiplyStart (const uint8_t *scalar, const uint8_t *curvePointX, const uint8_t *prime, const uint8_t *a, uint32_t length, uint32_t *resultPKAMemAddr)
 Starts ECC Montgomery multiplication. More...
 
uint32_t PKAEccMultiplyGetResult (uint8_t *curvePointX, uint8_t *curvePointY, uint32_t resultPKAMemAddr, uint32_t length)
 Gets the result of ECC multiplication. More...
 
uint32_t PKAEccAddStart (const uint8_t *curvePoint1X, const uint8_t *curvePoint1Y, const uint8_t *curvePoint2X, const uint8_t *curvePoint2Y, const uint8_t *prime, const uint8_t *a, uint32_t length, uint32_t *resultPKAMemAddr)
 Starts the ECC addition. More...
 
uint32_t PKAEccAddGetResult (uint8_t *curvePointX, uint8_t *curvePointY, uint32_t resultPKAMemAddr, uint32_t length)
 Gets the result of the ECC addition. More...
 
uint32_t PKAEccVerifyPublicKeyWeierstrassStart (const uint8_t *curvePointX, const uint8_t *curvePointY, const uint8_t *prime, const uint8_t *a, const uint8_t *b, const uint8_t *order, uint32_t length)
 Begins the validation of a public key against a Short-Weierstrass curve. More...
 

Variables

const PKA_EccPoint224 NISTP224_generator
 X coordinate of the generator point of the NISTP224 curve. More...
 
const PKA_EccParam224 NISTP224_prime
 Prime of the NISTP224 curve. More...
 
const PKA_EccParam224 NISTP224_a
 a constant of the NISTP224 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam224 NISTP224_b
 b constant of the NISTP224 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam224 NISTP224_order
 Order of the NISTP224 curve. More...
 
const PKA_EccPoint256 NISTP256_generator
 X coordinate of the generator point of the NISTP256 curve. More...
 
const PKA_EccParam256 NISTP256_prime
 Prime of the NISTP256 curve. More...
 
const PKA_EccParam256 NISTP256_a
 a constant of the NISTP256 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam256 NISTP256_b
 b constant of the NISTP256 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam256 NISTP256_order
 Order of the NISTP256 curve. More...
 
const PKA_EccPoint384 NISTP384_generator
 X coordinate of the generator point of the NISTP384 curve. More...
 
const PKA_EccParam384 NISTP384_prime
 Prime of the NISTP384 curve. More...
 
const PKA_EccParam384 NISTP384_a
 a constant of the NISTP384 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam384 NISTP384_b
 b constant of the NISTP384 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam384 NISTP384_order
 Order of the NISTP384 curve. More...
 
const PKA_EccPoint521 NISTP521_generator
 X coordinate of the generator point of the NISTP521 curve. More...
 
const PKA_EccParam521 NISTP521_prime
 Prime of the NISTP521 curve. More...
 
const PKA_EccParam521 NISTP521_a
 a constant of the NISTP521 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam521 NISTP521_b
 b constant of the NISTP521 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam521 NISTP521_order
 Order of the NISTP521 curve. More...
 
const PKA_EccPoint256 BrainpoolP256R1_generator
 X coordinate of the generator point of the BrainpoolP256R1 curve. More...
 
const PKA_EccParam256 BrainpoolP256R1_prime
 Prime of the BrainpoolP256R1 curve. More...
 
const PKA_EccParam256 BrainpoolP256R1_a
 a constant of the BrainpoolP256R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam256 BrainpoolP256R1_b
 b constant of the BrainpoolP256R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam256 BrainpoolP256R1_order
 Order of the BrainpoolP256R1 curve. More...
 
const PKA_EccPoint384 BrainpoolP384R1_generator
 X coordinate of the generator point of the BrainpoolP384R1 curve. More...
 
const PKA_EccParam384 BrainpoolP384R1_prime
 Prime of the BrainpoolP384R1 curve. More...
 
const PKA_EccParam384 BrainpoolP384R1_a
 a constant of the BrainpoolP384R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam384 BrainpoolP384R1_b
 b constant of the BrainpoolP384R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam384 BrainpoolP384R1_order
 Order of the BrainpoolP384R1 curve. More...
 
const PKA_EccPoint512 BrainpoolP512R1_generator
 X coordinate of the generator point of the BrainpoolP512R1 curve. More...
 
const PKA_EccParam512 BrainpoolP512R1_prime
 Prime of the BrainpoolP512R1 curve. More...
 
const PKA_EccParam512 BrainpoolP512R1_a
 a constant of the BrainpoolP512R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam512 BrainpoolP512R1_b
 b constant of the BrainpoolP512R1 curve when expressed in short Weierstrass form (y^3 = x^2 + a*x + b). More...
 
const PKA_EccParam512 BrainpoolP512R1_order
 Order of the BrainpoolP512R1 curve. More...
 
const PKA_EccPoint256 Curve25519_generator
 X coordinate of the generator point of the Curve25519 curve. More...
 
const PKA_EccParam256 Curve25519_prime
 Prime of the Curve25519 curve. More...
 
const PKA_EccParam256 Curve25519_a
 a constant of the Curve25519 curve when expressed in Montgomery form (By^2 = x^3 + a*x^2 + x). More...
 
const PKA_EccParam256 Curve25519_b
 b constant of the Curve25519 curve when expressed in Montgomery form (By^2 = x^3 + a*x^2 + x). More...
 
const PKA_EccParam256 Curve25519_order
 Order of the Curve25519 curve. More...
 

Macro Definition Documentation

#define INRANGE (   x,
  y,
 
)    ((x) > (y) && (x) < (z))
#define MAX (   x,
 
)    (((x) > (y)) ? (x) : (y))
#define MIN (   x,
 
)    (((x) < (y)) ? (x) : (y))
#define PKA_MAX_CURVE_SIZE_32_BIT_WORD   12
#define PKA_MAX_LEN_IN_32_BIT_WORD   PKA_MAX_CURVE_SIZE_32_BIT_WORD
#define PKA_NO_POINTER_REG   0xFF

Function Documentation

static uint32_t PKAGetBigNumResult ( uint8_t *  resultBuf,
uint32_t *  resultLength,
uint32_t  resultPKAMemAddr 
)
static

Referenced by PKABigNumAddGetResult(), PKABigNumDivideGetQuotient(), PKABigNumInvModGetResult(), PKABigNumMultGetResult(), and PKABigNumSubGetResult().

627 {
628  uint32_t mswOffset;
629  uint32_t lswOffset;
630  uint32_t lengthInWords;
631  uint32_t i;
632  uint32_t *resultWordAlias = (uint32_t *)resultBuf;
633 
634  // Check the arguments.
635  ASSERT(resultBuf);
636  ASSERT((resultPKAMemAddr > PKA_RAM_BASE) &&
637  (resultPKAMemAddr < (PKA_RAM_BASE + PKA_RAM_TOT_BYTE_SIZE)));
638 
639  // Verify that the operation is complete.
640  if (HWREG(PKA_BASE + PKA_O_FUNCTION) & PKA_FUNCTION_RUN) {
642  }
643 
644  // Get the MSW register value.
645  mswOffset = HWREG(PKA_BASE + PKA_O_MSW);
646 
647  // If the result vector is zero, write back one zero byte so the caller does not need
648  // to handle a special error for the perhaps valid result of zero.
649  // They will only get the error status if they do not provide a buffer
650  if (mswOffset & PKA_MSW_RESULT_IS_ZERO_M) {
651  if (*resultLength){
652  if(resultBuf){
653  resultBuf[0] = 0;
654  }
655 
656  *resultLength = 1;
657 
658  return PKA_STATUS_SUCCESS;
659  }
660  else {
662  }
663  }
664 
665  // Get the length of the result
666  mswOffset = ((mswOffset & PKA_MSW_MSW_ADDRESS_M) + 1);
667  lswOffset = ((resultPKAMemAddr - PKA_RAM_BASE) >> 2);
668 
669  if (mswOffset >= lswOffset) {
670  lengthInWords = mswOffset - lswOffset;
671  }
672  else {
674  }
675 
676  // Check if the provided buffer length is adequate to store the result data.
677  if (*resultLength < lengthInWords * sizeof(uint32_t)) {
679  }
680 
681  // Copy the resultant length.
682  *resultLength = lengthInWords * sizeof(uint32_t);
683 
684 
685  if (resultBuf) {
686  // Copy the result into the resultBuf.
687  for (i = 0; i < lengthInWords; i++) {
688  resultWordAlias[i]= HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
689  }
690  }
691 
692  return PKA_STATUS_SUCCESS;
693 }
#define PKA_STATUS_BUF_UNDERFLOW
Buffer underflow.
Definition: pka.h:124
#define PKA_STATUS_RESULT_ADDRESS_INCORRECT
The address of the result passed into one of the PKA*GetResult functions is incorrect.
Definition: pka.h:137
#define PKA_STATUS_OPERATION_BUSY
PKA operation is in progress.
Definition: pka.h:129
#define PKA_STATUS_SUCCESS
Success.
Definition: pka.h:121
#define ASSERT(expr)
Definition: debug.h:73
static uint32_t PKAGetBigNumResultRemainder ( uint8_t *  resultBuf,
uint32_t *  resultLength,
uint32_t  resultPKAMemAddr 
)
static

Referenced by PKABigNumDivideGetRemainder(), and PKABigNumModGetResult().

701 {
702  uint32_t regMSWVal;
703  uint32_t lengthInWords;
704  uint32_t i;
705  uint32_t *resultWordAlias = (uint32_t *)resultBuf;
706 
707  // Check the arguments.
708  ASSERT(resultBuf);
709  ASSERT((resultPKAMemAddr > PKA_RAM_BASE) &&
710  (resultPKAMemAddr < (PKA_RAM_BASE + PKA_RAM_TOT_BYTE_SIZE)));
711 
712  // Verify that the operation is complete.
713  if (HWREG(PKA_BASE + PKA_O_FUNCTION) & PKA_FUNCTION_RUN) {
715  }
716 
717  // Get the MSW register value.
718  regMSWVal = HWREG(PKA_BASE + PKA_O_DIVMSW);
719 
720  // If the result vector is zero, write back one zero byte so the caller does not need
721  // to handle a special error for the perhaps valid result of zero.
722  // They will only get the error status if they do not provide a buffer
723  if (regMSWVal & PKA_DIVMSW_RESULT_IS_ZERO_M) {
724  if (*resultLength){
725  if(resultBuf){
726  resultBuf[0] = 0;
727  }
728 
729  *resultLength = 1;
730 
731  return PKA_STATUS_SUCCESS;
732  }
733  else {
735  }
736  }
737 
738  // Get the length of the result
739  lengthInWords = ((regMSWVal & PKA_DIVMSW_MSW_ADDRESS_M) + 1) - ((resultPKAMemAddr - PKA_RAM_BASE) >> 2);
740 
741  // Check if the provided buffer length is adequate to store the result data.
742  if (*resultLength < lengthInWords * sizeof(uint32_t)) {
744  }
745 
746  // Copy the resultant length.
747  *resultLength = lengthInWords * sizeof(uint32_t);
748 
749  if (resultBuf) {
750  // Copy the result into the resultBuf.
751  for (i = 0; i < lengthInWords; i++) {
752  resultWordAlias[i] = HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
753  }
754  }
755 
756  return PKA_STATUS_SUCCESS;
757 }
#define PKA_STATUS_BUF_UNDERFLOW
Buffer underflow.
Definition: pka.h:124
#define PKA_STATUS_OPERATION_BUSY
PKA operation is in progress.
Definition: pka.h:129
#define PKA_STATUS_SUCCESS
Success.
Definition: pka.h:121
#define ASSERT(expr)
Definition: debug.h:73
static uint32_t PKAGetECCResult ( uint8_t *  curvePointX,
uint8_t *  curvePointY,
uint32_t  resultPKAMemAddr,
uint32_t  length 
)
static

Referenced by PKAEccAddGetResult(), and PKAEccMultiplyGetResult().

765 {
766  uint32_t i = 0;
767  uint32_t *xWordAlias = (uint32_t *)curvePointX;
768  uint32_t *yWordAlias = (uint32_t *)curvePointY;
769  uint32_t lengthInWordsCeiling = 0;
770 
771  // Check for the arguments.
772  ASSERT(curvePointX);
773  ASSERT(curvePointY);
774  ASSERT((resultPKAMemAddr > PKA_RAM_BASE) &&
775  (resultPKAMemAddr < (PKA_RAM_BASE + PKA_RAM_TOT_BYTE_SIZE)));
776 
777  // Verify that the operation is completed.
778  if (HWREG(PKA_BASE + PKA_O_FUNCTION) & PKA_FUNCTION_RUN) {
780  }
781 
782  if (HWREG(PKA_BASE + PKA_O_SHIFT)) {
783  return PKA_STATUS_FAILURE;
784  }
785 
786  // Check to make sure that the result vector is not the point at infinity.
787  if (HWREG(PKA_BASE + PKA_O_MSW) & PKA_MSW_RESULT_IS_ZERO) {
789  }
790 
791  if (curvePointX != NULL) {
792  // Copy the x co-ordinate value of the result from vector D into
793  // the curvePoint.
794  for (i = 0; i < (length / sizeof(uint32_t)); i++) {
795  xWordAlias[i] = HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
796  }
797 
798  // If the length is not a word-multiple, fill up a temporary word and copy that in
799  // to avoid a bus error.
800  if (length % sizeof(uint32_t)) {
801  uint32_t temp = 0;
802  uint8_t j;
803 
804  // Load the entire word line of the coordinate remainder
805  temp = HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
806 
807  // Write all remaining bytes to the coordinate
808  for (j = 0; j < length % sizeof(uint32_t); j++) {
809  curvePointX[i * sizeof(uint32_t) + j] = ((uint8_t *)&temp)[j];
810  }
811 
812  }
813  }
814 
815  lengthInWordsCeiling = (length % sizeof(uint32_t)) ? length / sizeof(uint32_t) + 1 : length / sizeof(uint32_t);
816 
817  resultPKAMemAddr += sizeof(uint32_t) * (2 + lengthInWordsCeiling + (lengthInWordsCeiling % 2));
818 
819  if (curvePointY != NULL) {
820  // Copy the y co-ordinate value of the result from vector D into
821  // the curvePoint.
822  for (i = 0; i < (length / sizeof(uint32_t)); i++) {
823  yWordAlias[i] = HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
824  }
825 
826  // If the length is not a word-multiple, fill up a temporary word and copy that in
827  // to avoid a bus error.
828  if (length % sizeof(uint32_t)) {
829  uint32_t temp = 0;
830  uint8_t j;
831 
832  // Load the entire word line of the coordinate remainder
833  temp = HWREG(resultPKAMemAddr + sizeof(uint32_t) * i);
834 
835  // Write all remaining bytes to the coordinate
836  for (j = 0; j < length % sizeof(uint32_t); j++) {
837  curvePointY[i * sizeof(uint32_t) + j] = ((uint8_t *)&temp)[j];
838  }
839  }
840  }
841 
842 
843  return PKA_STATUS_SUCCESS;
844 }
#define PKA_STATUS_FAILURE
Failure.
Definition: pka.h:122
#define PKA_STATUS_OPERATION_BUSY
PKA operation is in progress.
Definition: pka.h:129
#define PKA_STATUS_SUCCESS
Success.
Definition: pka.h:121
#define ASSERT(expr)
Definition: debug.h:73
#define PKA_STATUS_POINT_AT_INFINITY
The ECC operation resulted in the point at infinity.
Definition: pka.h:138
static uint32_t PKAWritePkaParam ( const uint8_t *  param,
uint32_t  paramLength,
uint32_t  paramOffset,
uint32_t  ptrRegOffset 
)
static

Referenced by PKABigNumAddStart(), PKABigNumCmpStart(), PKABigNumDivideStart(), PKABigNumInvModStart(), PKABigNumModStart(), PKABigNumMultiplyStart(), PKABigNumSubStart(), PKAEccMontgomeryMultiplyStart(), PKAEccMultiplyStart(), and PKAWritePkaParamExtraOffset().

546 {
547  uint32_t i;
548  uint32_t *paramWordAlias = (uint32_t *)param;
549  // Take the floor of paramLength in 32-bit words
550  uint32_t paramLengthInWords = paramLength / sizeof(uint32_t);
551 
552  // Only copy data if it is specified. We may wish to simply allocate another buffer and get
553  // the required offset.
554  if (param) {
555  // Load the number in PKA RAM
556  for (i = 0; i < paramLengthInWords; i++) {
557  HWREG(PKA_RAM_BASE + paramOffset + sizeof(uint32_t) * i) = paramWordAlias[i];
558  }
559 
560  // If the length is not a word-multiple, fill up a temporary word and copy that in
561  // to avoid a bus error. The extra zeros at the end should not matter, as the large
562  // number is little-endian and thus has no effect.
563  // We could have correctly calculated ceiling(paramLength / sizeof(uint32_t)) above.
564  // However, we would not have been able to zero-out the extra few most significant
565  // bytes of the most significant word. That would have resulted in doing maths operations
566  // on whatever follows param in RAM.
567  if (paramLength % sizeof(uint32_t)) {
568  uint32_t temp = 0;
569  uint8_t j;
570 
571  // Load the entire word line of the param remainder
572  temp = paramWordAlias[i];
573 
574  // Zero-out all bytes beyond the end of the param
575  for (j = paramLength % sizeof(uint32_t); j < sizeof(uint32_t); j++) {
576  ((uint8_t *)&temp)[j] = 0;
577  }
578 
579  HWREG(PKA_RAM_BASE + paramOffset + sizeof(uint32_t) * i) = temp;
580 
581  // Increment paramLengthInWords since we take the ceiling of length / sizeof(uint32_t)
582  paramLengthInWords++;
583  }
584  }
585 
586  // Update the A, B, C, or D pointer with the offset address of the PKA RAM location
587  // where the number will be stored.
588  switch (ptrRegOffset) {
589  case PKA_O_APTR:
590  HWREG(PKA_BASE + PKA_O_APTR) = paramOffset >> 2;
591  HWREG(PKA_BASE + PKA_O_ALENGTH) = paramLengthInWords;
592  break;
593  case PKA_O_BPTR:
594  HWREG(PKA_BASE + PKA_O_BPTR) = paramOffset >> 2;
595  HWREG(PKA_BASE + PKA_O_BLENGTH) = paramLengthInWords;
596  break;
597  case PKA_O_CPTR:
598  HWREG(PKA_BASE + PKA_O_CPTR) = paramOffset >> 2;
599  break;
600  case PKA_O_DPTR:
601  HWREG(PKA_BASE + PKA_O_DPTR) = paramOffset >> 2;
602  break;
603  }
604 
605  // Ensure 8-byte alignment of next parameter.
606  // Returns the offset for the next parameter.
607  return paramOffset + sizeof(uint32_t) * (paramLengthInWords + (paramLengthInWords % 2));
608 }
static uint32_t PKAWritePkaParamExtraOffset ( const uint8_t *  param,
uint32_t  paramLength,
uint32_t  paramOffset,
uint32_t  ptrRegOffset 
)
static

Referenced by PKABigNumDivideStart(), PKABigNumModStart(), PKAEccAddStart(), PKAEccMontgomeryMultiplyStart(), and PKAEccMultiplyStart().

616 {
617  // Ensure 16-byte alignment.
618  return (sizeof(uint32_t) * 2) + PKAWritePkaParam(param, paramLength, paramOffset, ptrRegOffset);
619 }
static uint32_t PKAWritePkaParam(const uint8_t *param, uint32_t paramLength, uint32_t paramOffset, uint32_t ptrRegOffset)
Definition: pka.c:545

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