// /* // * Copyright 2016 Nu-book Inc. // * Copyright 2016 ZXing authors // */ // // SPDX-License-Identifier: Apache-2.0 use crate::{ common::{BitMatrix, Result}, qrcode::decoder::{FormatInformation, Version, VersionRef}, Exceptions, }; use super::detector::AppendBit; pub fn getBit(bitMatrix: &BitMatrix, x: u32, y: u32, mirrored: Option) -> bool { let mirrored = mirrored.unwrap_or(false); if mirrored { bitMatrix.get(y, x) } else { bitMatrix.get(x, y) } } pub fn hasValidDimension(bitMatrix: &BitMatrix, isMicro: bool) -> bool { let dimension = bitMatrix.height(); if (isMicro) { dimension >= 11 && dimension <= 17 && (dimension % 2) == 1 } else { dimension >= 21 && dimension <= 177 && (dimension % 4) == 1 } } pub fn ReadVersion(bitMatrix: &BitMatrix) -> Result { let dimension = bitMatrix.height(); let mut version = Version::FromDimension(dimension)?; if (version.getVersionNumber() < 7) { return Ok(version); } for mirror in [false, true] { // for (bool mirror : {false, true}) { // Read top-right/bottom-left version info: 3 wide by 6 tall (depending on mirrored) let mut versionBits = 0; for y in (0..=5).rev() { // for (int y = 5; y >= 0; --y) { for x in ((dimension - 11)..=(dimension - 9)).rev() { // for (int x = dimension - 9; x >= dimension - 11; --x) { AppendBit(&mut versionBits, getBit(bitMatrix, x, y, Some(mirror))); } } version = Version::DecodeVersionInformation(versionBits, 0)?; // THIS MIGHT BE WRONG todo!() if (version.getDimensionForVersion() == dimension) { return Ok(version); } } return Err(Exceptions::FORMAT); } pub fn ReadFormatInformation(bitMatrix: &BitMatrix, isMicro: bool) -> Result { todo!() // if (!hasValidDimension(bitMatrix, isMicro)) // return {}; // if (isMicro) { // // Read top-left format info bits // int formatInfoBits = 0; // for (int x = 1; x < 9; x++) // AppendBit(formatInfoBits, getBit(bitMatrix, x, 8)); // for (int y = 7; y >= 1; y--) // AppendBit(formatInfoBits, getBit(bitMatrix, 8, y)); // return FormatInformation::DecodeMQR(formatInfoBits); // } // // Read top-left format info bits // int formatInfoBits1 = 0; // for (int x = 0; x < 6; x++) // AppendBit(formatInfoBits1, getBit(bitMatrix, x, 8)); // // .. and skip a bit in the timing pattern ... // AppendBit(formatInfoBits1, getBit(bitMatrix, 7, 8)); // AppendBit(formatInfoBits1, getBit(bitMatrix, 8, 8)); // AppendBit(formatInfoBits1, getBit(bitMatrix, 8, 7)); // // .. and skip a bit in the timing pattern ... // for (int y = 5; y >= 0; y--) // AppendBit(formatInfoBits1, getBit(bitMatrix, 8, y)); // // Read the top-right/bottom-left pattern including the 'Dark Module' from the bottom-left // // part that has to be considered separately when looking for mirrored symbols. // // See also FormatInformation::DecodeQR // int dimension = bitMatrix.height(); // int formatInfoBits2 = 0; // for (int y = dimension - 1; y >= dimension - 8; y--) // AppendBit(formatInfoBits2, getBit(bitMatrix, 8, y)); // for (int x = dimension - 8; x < dimension; x++) // AppendBit(formatInfoBits2, getBit(bitMatrix, x, 8)); // return FormatInformation::DecodeQR(formatInfoBits1, formatInfoBits2); } pub fn ReadQRCodewords( bitMatrix: &BitMatrix, version: VersionRef, formatInfo: &FormatInformation, ) -> Result> { todo!() // BitMatrix functionPattern = version.buildFunctionPattern(); // ByteArray result; // result.reserve(version.totalCodewords()); // uint8_t currentByte = 0; // bool readingUp = true; // int bitsRead = 0; // int dimension = bitMatrix.height(); // // Read columns in pairs, from right to left // for (int x = dimension - 1; x > 0; x -= 2) { // // Skip whole column with vertical timing pattern. // if (x == 6) // x--; // // Read alternatingly from bottom to top then top to bottom // for (int row = 0; row < dimension; row++) { // int y = readingUp ? dimension - 1 - row : row; // for (int col = 0; col < 2; col++) { // int xx = x - col; // // Ignore bits covered by the function pattern // if (!functionPattern.get(xx, y)) { // // Read a bit // AppendBit(currentByte, // GetDataMaskBit(formatInfo.dataMask, xx, y) != getBit(bitMatrix, xx, y, formatInfo.isMirrored)); // // If we've made a whole byte, save it off // if (++bitsRead % 8 == 0) // result.push_back(std::exchange(currentByte, 0)); // } // } // } // readingUp = !readingUp; // switch directions // } // if (Size(result) != version.totalCodewords()) // return {}; // return result; } pub fn ReadMQRCodewords( bitMatrix: &BitMatrix, version: VersionRef, formatInfo: &FormatInformation, ) -> Result> { todo!() // BitMatrix functionPattern = version.buildFunctionPattern(); // // D3 in a Version M1 symbol, D11 in a Version M3-L symbol and D9 // // in a Version M3-M symbol is a 2x2 square 4-module block. // // See ISO 18004:2006 6.7.3. // bool hasD4mBlock = version.versionNumber() % 2 == 1; // int d4mBlockIndex = // version.versionNumber() == 1 ? 3 : (formatInfo.ecLevel == QRCode::ErrorCorrectionLevel::Low ? 11 : 9); // ByteArray result; // result.reserve(version.totalCodewords()); // uint8_t currentByte = 0; // bool readingUp = true; // int bitsRead = 0; // int dimension = bitMatrix.height(); // // Read columns in pairs, from right to left // for (int x = dimension - 1; x > 0; x -= 2) { // // Read alternatingly from bottom to top then top to bottom // for (int row = 0; row < dimension; row++) { // int y = readingUp ? dimension - 1 - row : row; // for (int col = 0; col < 2; col++) { // int xx = x - col; // // Ignore bits covered by the function pattern // if (!functionPattern.get(xx, y)) { // // Read a bit // AppendBit(currentByte, // GetDataMaskBit(formatInfo.dataMask, xx, y, true) != getBit(bitMatrix, xx, y, formatInfo.isMirrored)); // ++bitsRead; // // If we've made a whole byte, save it off; save early if 2x2 data block. // if (bitsRead == 8 || (bitsRead == 4 && hasD4mBlock && Size(result) == d4mBlockIndex - 1)) { // result.push_back(std::exchange(currentByte, 0)); // bitsRead = 0; // } // } // } // } // readingUp = !readingUp; // switch directions // } // if (Size(result) != version.totalCodewords()) // return {}; // return result; } pub fn ReadCodewords( bitMatrix: &BitMatrix, version: VersionRef, formatInfo: &FormatInformation, ) -> Result> { if (!hasValidDimension(bitMatrix, version.isMicroQRCode())) { return Err(Exceptions::FORMAT); } if version.isMicroQRCode() { ReadMQRCodewords(bitMatrix, version, formatInfo) } else { ReadQRCodewords(bitMatrix, version, formatInfo) } }