#include "Bitmap.h" #include #include uint16_t Bitmap::readLE16(File& f) { const int c0 = f.read(); const int c1 = f.read(); const auto b0 = static_cast(c0 < 0 ? 0 : c0); const auto b1 = static_cast(c1 < 0 ? 0 : c1); return static_cast(b0) | (static_cast(b1) << 8); } uint32_t Bitmap::readLE32(File& f) { const int c0 = f.read(); const int c1 = f.read(); const int c2 = f.read(); const int c3 = f.read(); const auto b0 = static_cast(c0 < 0 ? 0 : c0); const auto b1 = static_cast(c1 < 0 ? 0 : c1); const auto b2 = static_cast(c2 < 0 ? 0 : c2); const auto b3 = static_cast(c3 < 0 ? 0 : c3); return static_cast(b0) | (static_cast(b1) << 8) | (static_cast(b2) << 16) | (static_cast(b3) << 24); } const char* Bitmap::errorToString(BmpReaderError err) { switch (err) { case BmpReaderError::Ok: return "Ok"; case BmpReaderError::FileInvalid: return "FileInvalid"; case BmpReaderError::SeekStartFailed: return "SeekStartFailed"; case BmpReaderError::NotBMP: return "NotBMP (missing 'BM')"; case BmpReaderError::DIBTooSmall: return "DIBTooSmall (<40 bytes)"; case BmpReaderError::BadPlanes: return "BadPlanes (!= 1)"; case BmpReaderError::UnsupportedBpp: return "UnsupportedBpp (expected 1, 2, 8, 24, or 32)"; case BmpReaderError::UnsupportedCompression: return "UnsupportedCompression (expected BI_RGB or BI_BITFIELDS for 32bpp)"; case BmpReaderError::BadDimensions: return "BadDimensions"; case BmpReaderError::PaletteTooLarge: return "PaletteTooLarge"; case BmpReaderError::SeekPixelDataFailed: return "SeekPixelDataFailed"; case BmpReaderError::BufferTooSmall: return "BufferTooSmall"; case BmpReaderError::OomRowBuffer: return "OomRowBuffer"; case BmpReaderError::ShortReadRow: return "ShortReadRow"; } return "Unknown"; } BmpReaderError Bitmap::parseHeaders() { if (!file) return BmpReaderError::FileInvalid; if (!file.seek(0)) return BmpReaderError::SeekStartFailed; // --- BMP FILE HEADER --- const uint16_t bfType = readLE16(file); if (bfType != 0x4D42) return BmpReaderError::NotBMP; file.seek(8, SeekCur); bfOffBits = readLE32(file); // --- DIB HEADER --- const uint32_t biSize = readLE32(file); if (biSize < 40) return BmpReaderError::DIBTooSmall; width = static_cast(readLE32(file)); const auto rawHeight = static_cast(readLE32(file)); topDown = rawHeight < 0; height = topDown ? -rawHeight : rawHeight; const uint16_t planes = readLE16(file); bpp = readLE16(file); const uint32_t comp = readLE32(file); const bool validBpp = bpp == 1 || bpp == 2 || bpp == 8 || bpp == 24 || bpp == 32; if (planes != 1) return BmpReaderError::BadPlanes; if (!validBpp) return BmpReaderError::UnsupportedBpp; // Allow BI_RGB (0) for all, and BI_BITFIELDS (3) for 32bpp which is common for BGRA masks. if (!(comp == 0 || (bpp == 32 && comp == 3))) return BmpReaderError::UnsupportedCompression; file.seek(12, SeekCur); // biSizeImage, biXPelsPerMeter, biYPelsPerMeter const uint32_t colorsUsed = readLE32(file); if (colorsUsed > 256u) return BmpReaderError::PaletteTooLarge; file.seek(4, SeekCur); // biClrImportant if (width <= 0 || height <= 0) return BmpReaderError::BadDimensions; // Pre-calculate Row Bytes to avoid doing this every row rowBytes = (width * bpp + 31) / 32 * 4; for (int i = 0; i < 256; i++) paletteLum[i] = static_cast(i); if (colorsUsed > 0) { for (uint32_t i = 0; i < colorsUsed; i++) { uint8_t rgb[4]; file.read(rgb, 4); // Read B, G, R, Reserved in one go paletteLum[i] = (77u * rgb[2] + 150u * rgb[1] + 29u * rgb[0]) >> 8; } } if (!file.seek(bfOffBits)) { return BmpReaderError::SeekPixelDataFailed; } return BmpReaderError::Ok; } // packed 2bpp output, 0 = black, 1 = dark gray, 2 = light gray, 3 = white BmpReaderError Bitmap::readRow(uint8_t* data, uint8_t* rowBuffer) const { // Note: rowBuffer should be pre-allocated by the caller to size 'rowBytes' if (file.read(rowBuffer, rowBytes) != rowBytes) return BmpReaderError::ShortReadRow; uint8_t* outPtr = data; uint8_t currentOutByte = 0; int bitShift = 6; // Helper lambda to pack 2bpp color into the output stream auto packPixel = [&](uint8_t lum) { uint8_t color = (lum >> 6); // Simple 2-bit reduction: 0-255 -> 0-3 currentOutByte |= (color << bitShift); if (bitShift == 0) { *outPtr++ = currentOutByte; currentOutByte = 0; bitShift = 6; } else { bitShift -= 2; } }; switch (bpp) { case 8: { for (int x = 0; x < width; x++) { packPixel(paletteLum[rowBuffer[x]]); } break; } case 24: { const uint8_t* p = rowBuffer; for (int x = 0; x < width; x++) { uint8_t lum = (77u * p[2] + 150u * p[1] + 29u * p[0]) >> 8; packPixel(lum); p += 3; } break; } case 1: { for (int x = 0; x < width; x++) { uint8_t lum = (rowBuffer[x >> 3] & (0x80 >> (x & 7))) ? 0xFF : 0x00; packPixel(lum); } break; } case 32: { const uint8_t* p = rowBuffer; for (int x = 0; x < width; x++) { uint8_t lum = (77u * p[2] + 150u * p[1] + 29u * p[0]) >> 8; packPixel(lum); p += 4; } break; } } // Flush remaining bits if width is not a multiple of 4 if (bitShift != 6) *outPtr = currentOutByte; return BmpReaderError::Ok; } BmpReaderError Bitmap::rewindToData() const { if (!file.seek(bfOffBits)) { return BmpReaderError::SeekPixelDataFailed; } return BmpReaderError::Ok; }