/* * Copyright 2008 ZXing authors * * 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. */ use super::rss::expanded::RSSExpandedReader; use super::rss::RSS14Reader; use super::CodaBarReader; use super::Code128Reader; use super::Code39Reader; use super::Code93Reader; use super::ITFReader; use super::MultiFormatUPCEANReader; use super::OneDReader; use crate::common::Result; use crate::BarcodeFormat; use crate::DecodeHintValue; use crate::Exceptions; /** * @author dswitkin@google.com (Daniel Switkin) * @author Sean Owen */ #[derive(Default)] pub struct MultiFormatOneDReader(Vec>); impl OneDReader for MultiFormatOneDReader { fn decodeRow( &mut self, rowNumber: u32, row: &crate::common::BitArray, hints: &crate::DecodingHintDictionary, ) -> Result { for reader in self.0.iter_mut() { if let Ok(res) = reader.decodeRow(rowNumber, row, hints) { return Ok(res); } } Err(Exceptions::NotFoundException(None)) } } impl MultiFormatOneDReader { pub fn new(hints: &DecodingHintDictionary) -> Self { let useCode39CheckDigit = matches!( hints.get(&DecodeHintType::ASSUME_CODE_39_CHECK_DIGIT), Some(DecodeHintValue::AssumeCode39CheckDigit(true)) ); let mut readers: Vec> = Vec::new(); if let Some(DecodeHintValue::PossibleFormats(possibleFormats)) = hints.get(&DecodeHintType::POSSIBLE_FORMATS) { if possibleFormats.contains(&BarcodeFormat::EAN_13) || possibleFormats.contains(&BarcodeFormat::UPC_A) || possibleFormats.contains(&BarcodeFormat::EAN_8) || possibleFormats.contains(&BarcodeFormat::UPC_E) { readers.push(Box::new(MultiFormatUPCEANReader::new(hints))); } if possibleFormats.contains(&BarcodeFormat::CODE_39) { readers.push(Box::new(Code39Reader::with_use_check_digit( useCode39CheckDigit, ))); } if possibleFormats.contains(&BarcodeFormat::CODE_93) { readers.push(Box::::default()); } if possibleFormats.contains(&BarcodeFormat::CODE_128) { readers.push(Box::::default()); } if possibleFormats.contains(&BarcodeFormat::ITF) { readers.push(Box::::default()); } if possibleFormats.contains(&BarcodeFormat::CODABAR) { readers.push(Box::::default()); } if possibleFormats.contains(&BarcodeFormat::RSS_14) { readers.push(Box::::default()); } if possibleFormats.contains(&BarcodeFormat::RSS_EXPANDED) { readers.push(Box::::default()); } } if readers.is_empty() { readers.push(Box::new(MultiFormatUPCEANReader::new(hints))); readers.push(Box::::default()); readers.push(Box::::default()); readers.push(Box::::default()); readers.push(Box::::default()); readers.push(Box::::default()); readers.push(Box::::default()); readers.push(Box::::default()); } Self(readers) } } use crate::DecodeHintType; use crate::DecodingHintDictionary; use crate::RXingResultMetadataType; use crate::RXingResultMetadataValue; use crate::Reader; use std::collections::HashMap; impl Reader for MultiFormatOneDReader { fn decode(&mut self, image: &mut crate::BinaryBitmap) -> Result { self.decode_with_hints(image, &HashMap::new()) } // Note that we don't try rotation without the try harder flag, even if rotation was supported. fn decode_with_hints( &mut self, image: &mut crate::BinaryBitmap, hints: &DecodingHintDictionary, ) -> Result { let first_try = self.doDecode(image, hints); if first_try.is_ok() { return first_try; } let tryHarder = matches!( hints.get(&DecodeHintType::TRY_HARDER), Some(DecodeHintValue::TryHarder(true)) ); if tryHarder && image.isRotateSupported() { let mut rotatedImage = image.rotateCounterClockwise(); let mut result = self.doDecode(&mut rotatedImage, hints)?; // Record that we found it rotated 90 degrees CCW / 270 degrees CW let metadata = result.getRXingResultMetadata(); let mut orientation = 270; if metadata.contains_key(&RXingResultMetadataType::ORIENTATION) { // But if we found it reversed in doDecode(), add in that result here: orientation = (orientation + if let Some(crate::RXingResultMetadataValue::Orientation(or)) = metadata.get(&RXingResultMetadataType::ORIENTATION) { *or } else { 0 }) % 360; } result.putMetadata( RXingResultMetadataType::ORIENTATION, RXingResultMetadataValue::Orientation(orientation), ); // Update result points let height = rotatedImage.getHeight(); let total_points = result.getRXingResultPoints().len(); let points = result.getRXingResultPointsMut(); for point in points.iter_mut().take(total_points) { std::mem::swap(&mut point.x, &mut point.y); point.x = height as f32 - point.x - 1.0; } Ok(result) } else { Err(Exceptions::NotFoundException(None)) } } fn reset(&mut self) { for reader in self.0.iter_mut() { reader.reset(); } } }