forked from M-Labs/nac3
core: Update __builtin_assume expressions
No dimension size should be 0.
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@ -205,8 +205,8 @@ uint32_t __nac3_ndarray_calc_size(
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uint32_t num_elems = 1;
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for (uint32_t i = 0; i < list_len; ++i) {
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uint64_t val = list_data[i];
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__builtin_assume(val >= 0);
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num_elems *= list_data[i];
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__builtin_assume(val > 0);
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num_elems *= val;
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}
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return num_elems;
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}
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@ -218,8 +218,8 @@ uint64_t __nac3_ndarray_calc_size64(
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uint64_t num_elems = 1;
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for (uint64_t i = 0; i < list_len; ++i) {
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uint64_t val = list_data[i];
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__builtin_assume(val >= 0);
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num_elems *= list_data[i];
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__builtin_assume(val > 0);
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num_elems *= val;
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}
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return num_elems;
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}
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@ -233,6 +233,7 @@ void __nac3_ndarray_calc_nd_indices(
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uint32_t stride = 1;
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for (uint32_t dim = 0; dim < num_dims; dim++) {
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uint32_t i = num_dims - dim - 1;
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__builtin_assume(dims[i] > 0);
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idxs[i] = (index / stride) % dims[i];
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stride *= dims[i];
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}
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@ -247,6 +248,7 @@ void __nac3_ndarray_calc_nd_indices64(
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uint64_t stride = 1;
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for (uint64_t dim = 0; dim < num_dims; dim++) {
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uint64_t i = num_dims - dim - 1;
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__builtin_assume(dims[i] > 0);
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idxs[i] = (index / stride) % dims[i];
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stride *= dims[i];
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}
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@ -266,6 +268,7 @@ uint32_t __nac3_ndarray_flatten_index(
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idx += (stride * indices[ri]);
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}
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__builtin_assume(dims[i] > 0);
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stride *= dims[ri];
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}
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return idx;
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@ -285,6 +288,7 @@ uint64_t __nac3_ndarray_flatten_index64(
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idx += (stride * indices[ri]);
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}
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__builtin_assume(dims[i] > 0);
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stride *= dims[ri];
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}
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return idx;
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