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@@ -54,14 +54,12 @@ static inline uint64_t complete_integer_division_u64(
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return result;
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}
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-#define BITS_PER_FRACTIONAL_PART \
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- 32
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#define FRACTIONAL_PART_MASK \
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- ((1ULL << BITS_PER_FRACTIONAL_PART) - 1)
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+ ((1ULL << FIXED31_32_BITS_PER_FRACTIONAL_PART) - 1)
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#define GET_INTEGER_PART(x) \
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- ((x) >> BITS_PER_FRACTIONAL_PART)
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+ ((x) >> FIXED31_32_BITS_PER_FRACTIONAL_PART)
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#define GET_FRACTIONAL_PART(x) \
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(FRACTIONAL_PART_MASK & (x))
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@@ -89,7 +87,7 @@ struct fixed31_32 dal_fixed31_32_from_fraction(
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/* determine fractional part */
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{
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- uint32_t i = BITS_PER_FRACTIONAL_PART;
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+ uint32_t i = FIXED31_32_BITS_PER_FRACTIONAL_PART;
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do {
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remainder <<= 1;
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@@ -120,14 +118,14 @@ struct fixed31_32 dal_fixed31_32_from_fraction(
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return res;
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}
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-struct fixed31_32 dal_fixed31_32_from_int(
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+struct fixed31_32 dal_fixed31_32_from_int_nonconst(
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int64_t arg)
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{
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struct fixed31_32 res;
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ASSERT((LONG_MIN <= arg) && (arg <= LONG_MAX));
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- res.value = arg << BITS_PER_FRACTIONAL_PART;
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+ res.value = arg << FIXED31_32_BITS_PER_FRACTIONAL_PART;
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return res;
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}
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@@ -198,7 +196,7 @@ struct fixed31_32 dal_fixed31_32_mul(
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ASSERT(res.value <= LONG_MAX);
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- res.value <<= BITS_PER_FRACTIONAL_PART;
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+ res.value <<= FIXED31_32_BITS_PER_FRACTIONAL_PART;
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tmp = arg1_int * arg2_fra;
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@@ -214,7 +212,7 @@ struct fixed31_32 dal_fixed31_32_mul(
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tmp = arg1_fra * arg2_fra;
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- tmp = (tmp >> BITS_PER_FRACTIONAL_PART) +
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+ tmp = (tmp >> FIXED31_32_BITS_PER_FRACTIONAL_PART) +
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(tmp >= (uint64_t)dal_fixed31_32_half.value);
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ASSERT(tmp <= (uint64_t)(LLONG_MAX - res.value));
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@@ -244,7 +242,7 @@ struct fixed31_32 dal_fixed31_32_sqr(
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ASSERT(res.value <= LONG_MAX);
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- res.value <<= BITS_PER_FRACTIONAL_PART;
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+ res.value <<= FIXED31_32_BITS_PER_FRACTIONAL_PART;
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tmp = arg_int * arg_fra;
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@@ -258,7 +256,7 @@ struct fixed31_32 dal_fixed31_32_sqr(
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tmp = arg_fra * arg_fra;
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- tmp = (tmp >> BITS_PER_FRACTIONAL_PART) +
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+ tmp = (tmp >> FIXED31_32_BITS_PER_FRACTIONAL_PART) +
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(tmp >= (uint64_t)dal_fixed31_32_half.value);
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ASSERT(tmp <= (uint64_t)(LLONG_MAX - res.value));
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@@ -560,7 +558,7 @@ static inline uint32_t ux_dy(
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/* 4. make space for fractional part to be filled in after integer */
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result <<= fractional_bits;
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/* 5. shrink fixed point fractional part to of fractional_bits width*/
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- fractional_part >>= BITS_PER_FRACTIONAL_PART - fractional_bits;
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+ fractional_part >>= FIXED31_32_BITS_PER_FRACTIONAL_PART - fractional_bits;
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/* 6. merge the result */
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return result | fractional_part;
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}
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