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Fix misuse of signed ints in the HAVEGE module
The elements of the HAVEGE state are manipulated with bitwise operations, with the expectations that the elements are 32-bit unsigned integers (or larger). But they are declared as int, and so the code has undefined behavior. Clang with Asan correctly points out some shifts that reach the sign bit. Use unsigned int internally. This is technically an aliasing violation since we're accessing an array of `int` via a pointer to `unsigned int`, but since we don't access the array directly inside the same function, it's very unlikely to be compiled in an unintended manner.
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@ -54,7 +54,7 @@
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* ------------------------------------------------------------------------
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*/
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#define SWAP(X,Y) { int *T = (X); (X) = (Y); (Y) = T; }
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#define SWAP(X,Y) { unsigned *T = (X); (X) = (Y); (Y) = T; }
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#define TST1_ENTER if( PTEST & 1 ) { PTEST ^= 3; PTEST >>= 1;
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#define TST2_ENTER if( PTEST & 1 ) { PTEST ^= 3; PTEST >>= 1;
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@ -77,7 +77,7 @@
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PTX = (PT1 >> 18) & 7; \
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PT1 &= 0x1FFF; \
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PT2 &= 0x1FFF; \
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CLK = (int) mbedtls_timing_hardclock(); \
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CLK = (unsigned) mbedtls_timing_hardclock(); \
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\
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i = 0; \
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A = &WALK[PT1 ]; RES[i++] ^= *A; \
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@ -100,7 +100,7 @@
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\
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IN = (*A >> (5)) ^ (*A << (27)) ^ CLK; \
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*A = (*B >> (6)) ^ (*B << (26)) ^ CLK; \
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*B = IN; CLK = (int) mbedtls_timing_hardclock(); \
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*B = IN; CLK = (unsigned) mbedtls_timing_hardclock(); \
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*C = (*C >> (7)) ^ (*C << (25)) ^ CLK; \
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*D = (*D >> (8)) ^ (*D << (24)) ^ CLK; \
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\
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@ -151,19 +151,20 @@
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PT1 ^= (PT2 ^ 0x10) & 0x10; \
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\
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for( n++, i = 0; i < 16; i++ ) \
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hs->pool[n % MBEDTLS_HAVEGE_COLLECT_SIZE] ^= RES[i];
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POOL[n % MBEDTLS_HAVEGE_COLLECT_SIZE] ^= RES[i];
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/*
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* Entropy gathering function
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*/
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static void havege_fill( mbedtls_havege_state *hs )
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{
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int i, n = 0;
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int U1, U2, *A, *B, *C, *D;
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int PT1, PT2, *WALK, RES[16];
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int PTX, PTY, CLK, PTEST, IN;
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unsigned i, n = 0;
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unsigned U1, U2, *A, *B, *C, *D;
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unsigned PT1, PT2, *WALK, *POOL, RES[16];
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unsigned PTX, PTY, CLK, PTEST, IN;
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WALK = hs->WALK;
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WALK = (unsigned *) hs->WALK;
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POOL = (unsigned *) hs->pool;
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PT1 = hs->PT1;
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PT2 = hs->PT2;
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