/** * @license * Copyright 2020 Google LLC. All Rights Reserved. * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * ============================================================================= */ import { ENGINE } from '../engine'; import { Less } from '../kernel_names'; import { makeTypesMatch } from '../tensor_util'; import { convertToTensor } from '../tensor_util_env'; import { assertAndGetBroadcastShape } from './broadcast_util'; import { op } from './operation'; /** * Returns the truth value of (a < b) element-wise. Supports broadcasting. * * ```js * const a = tf.tensor1d([1, 2, 3]); * const b = tf.tensor1d([2, 2, 2]); * * a.less(b).print(); * ``` * @param a The first input tensor. * @param b The second input tensor. Must have the same dtype as `a`. * * @doc {heading: 'Operations', subheading: 'Logical'} */ function less_(a, b) { let $a = convertToTensor(a, 'a', 'less', 'string_or_numeric'); let $b = convertToTensor(b, 'b', 'less', 'string_or_numeric'); [$a, $b] = makeTypesMatch($a, $b); assertAndGetBroadcastShape($a.shape, $b.shape); const inputs = { a: $a, b: $b }; return ENGINE.runKernel(Less, inputs); } export const less = /* @__PURE__ */ op({ less_ }); //# sourceMappingURL=data:application/json;base64,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