Searched refs:vec1 (Results 1 – 5 of 5) sorted by relevance
| /freebsd-12.1/contrib/gcc/ |
| H A D | lambda.h | 245 vec2[i] = const1 * vec1[i]; in lambda_vector_mult_const() 254 lambda_vector_mult_const (vec1, vec2, size, -1); in lambda_vector_negate() 265 vec3[i] = vec1[i] + vec2[i]; in lambda_vector_add() 277 vec3[i] = const1 * vec1[i] + const2 * vec2[i]; in lambda_vector_add_mc() 286 memcpy (vec2, vec1, size * sizeof (*vec1)); in lambda_vector_copy() 296 if (vec1[i] != 0) in lambda_vector_zerop() 306 memset (vec1, 0, size * sizeof (*vec1)); in lambda_vector_clear() 316 if (vec1[i] != vec2[i]) in lambda_vector_equal() 333 if (vec1[j]) in lambda_vector_min_nz() 334 if (min < 0 || vec1[j] < vec1[min]) in lambda_vector_min_nz() [all …]
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| /freebsd-12.1/contrib/gcc/cp/ |
| H A D | tree.c | 1550 tree vec1, vec2; in cp_tree_equal() local 1554 vec1 = TREE_OPERAND (t1, 1); in cp_tree_equal() 1557 if (!vec1 || !vec2) in cp_tree_equal() 1558 return !vec1 && !vec2; in cp_tree_equal() 1560 if (TREE_VEC_LENGTH (vec1) != TREE_VEC_LENGTH (vec2)) in cp_tree_equal() 1563 for (ix = TREE_VEC_LENGTH (vec1); ix--;) in cp_tree_equal() 1564 if (!cp_tree_equal (TREE_VEC_ELT (vec1, ix), in cp_tree_equal()
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| /freebsd-12.1/contrib/llvm/lib/Target/SystemZ/ |
| H A D | SystemZPatterns.td | 175 : Pat<(tr.vt (operator (tr.vt tr.op:$vec1), (tr.vt tr.op:$vec2))), 176 (insn tr.op:$vec1, tr.op:$vec2, function)>;
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| /freebsd-12.1/contrib/libucl/src/ |
| H A D | ucl_util.c | 3318 UCL_ARRAY_GET (vec1, o1); 3323 for (i = 0; i < vec1->n; i ++) { 3324 it1 = kv_A (*vec1, i);
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| /freebsd-12.1/contrib/gcc/doc/ |
| H A D | rtl.texi | 2270 @item (vec_merge:@var{m} @var{vec1} @var{vec2} @var{items}) 2272 of mode @var{m}; its elements are selected from either @var{vec1} or 2276 a set bit indicates it is taken from @var{vec1}. 2279 @item (vec_select:@var{m} @var{vec1} @var{selection}) 2280 This describes an operation that selects parts of a vector. @var{vec1} is 2286 @item (vec_concat:@var{m} @var{vec1} @var{vec2}) 2288 vectors @var{vec1} and @var{vec2}; its length is the sum of the lengths of
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