Compressing multiple images before uploading them to firebase android

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I am working on application users have to upload multiple images. Now the problem I am facing is their size. As users can upload multiple images it takes a lot of time to upload them through the application because of their heavy size which users do not like and also make my application and database heavy. Can you please guide me on how can I compress multiple images before uploading them to firebase?

1 Answers

yup, you can compress your image file by the following function

@Throws(IOException::class)
fun File.compressImage(
    reqWidth: Float,
    reqHeight: Float,
    compressFormat: Bitmap.CompressFormat,
    quality: Int,
    destinationPath: String
): File {
    var fileOutputStream: FileOutputStream? = null
    val file = File(destinationPath).parentFile ?: return File(destinationPath)

    if (!file.exists()) {
        file.mkdirs()
    }
    try {
        fileOutputStream = FileOutputStream(destinationPath)
        // write the compressed bitmap at the destination specified by destinationPath.
        decodeSampledBitmapFromFile(this, reqWidth, reqHeight)?.compress(
            compressFormat,
            quality,
            fileOutputStream
        )
    } finally {
        if (fileOutputStream != null) {
            fileOutputStream.flush()
            fileOutputStream.close()
        }
    }

    return File(destinationPath)
}

@Throws(IOException::class)
private fun decodeSampledBitmapFromFile(
    imageFile: File,
    reqWidth: Float,
    reqHeight: Float
): Bitmap? {
    // First decode with inJustDecodeBounds=true to check dimensions

    val options = BitmapFactory.Options()
    options.inJustDecodeBounds = true
    var bmp: Bitmap? = BitmapFactory.decodeFile(imageFile.absolutePath, options)

    var actualHeight = options.outHeight
    var actualWidth = options.outWidth

    var imgRatio = actualWidth.toFloat() / actualHeight.toFloat()
    val maxRatio = reqWidth / reqHeight

    if (actualHeight > reqHeight || actualWidth > reqWidth) {
        // If Height is greater
        when {
            imgRatio < maxRatio -> {
                imgRatio = reqHeight / actualHeight
                actualWidth = (imgRatio * actualWidth).toInt()
                actualHeight = reqHeight.toInt()
            } // If Width is greater
            imgRatio > maxRatio -> {
                imgRatio = reqWidth / actualWidth
                actualHeight = (imgRatio * actualHeight).toInt()
                actualWidth = reqWidth.toInt()
            }
            else -> {
                actualHeight = reqHeight.toInt()
                actualWidth = reqWidth.toInt()
            }
        }
    }

    // Calculate inSampleSize
    options.inSampleSize = calculateInSampleSize(options, actualWidth, actualHeight)
    options.inJustDecodeBounds = false

    if (bmp != null && canUseForInBitmap(bmp, options)) {
        // inBitmap only works with mutable bitmaps, so force the decoder to
        // return mutable bitmaps.
        options.inMutable = true
        options.inBitmap = bmp
    }
    options.inTempStorage = ByteArray(16 * 1024)

    try {
        bmp = BitmapFactory.decodeFile(imageFile.absolutePath, options)
    } catch (exception: OutOfMemoryError) {
        exception.printStackTrace()
    }

    var scaledBitmap: Bitmap? = null
    try {
        scaledBitmap = Bitmap.createBitmap(actualWidth, actualHeight, Bitmap.Config.ARGB_8888)
    } catch (exception: OutOfMemoryError) {
        exception.printStackTrace()
    }

    val ratioX = actualWidth / options.outWidth.toFloat()
    val ratioY = actualHeight / options.outHeight.toFloat()
    val middleX = actualWidth / 2.0f
    val middleY = actualHeight / 2.0f

    val scaleMatrix = Matrix()
    scaleMatrix.setScale(ratioX, ratioY, middleX, middleY)

    val canvas = Canvas(scaledBitmap!!)
    canvas.setMatrix(scaleMatrix)
    canvas.drawBitmap(
        bmp!!, middleX - bmp.width / 2,
        middleY - bmp.height / 2, Paint(Paint.FILTER_BITMAP_FLAG)
    )
    bmp.recycle()
    val exif: ExifInterface
    try {
        exif = ExifInterface(imageFile.absolutePath)
        val orientation = exif.getAttributeInt(ExifInterface.TAG_ORIENTATION, 0)
        val matrix = Matrix()
        if (orientation == 6) {
            matrix.postRotate(90f)
        } else if (orientation == 3) {
            matrix.postRotate(180f)
        } else if (orientation == 8) {
            matrix.postRotate(270f)
        }
        scaledBitmap = Bitmap.createBitmap(
            scaledBitmap, 0, 0, scaledBitmap.width,
            scaledBitmap.height, matrix, true
        )
    } catch (e: IOException) {
        e.printStackTrace()
    }

    return scaledBitmap
}

private fun calculateInSampleSize(
    options: BitmapFactory.Options,
    reqWidth: Int,
    reqHeight: Int
): Int {
    // Raw height and width of image
    val height = options.outHeight
    val width = options.outWidth
    var inSampleSize = 1

    if (height > reqHeight || width > reqWidth) {
        inSampleSize *= 2
        val halfHeight = height / 2
        val halfWidth = width / 2

        // Calculate the largest inSampleSize value that is a power of 2 and keeps both
        // height and width larger than the requested height and width.
        while (halfHeight / inSampleSize >= reqHeight && halfWidth / inSampleSize >= reqWidth) {
            inSampleSize *= 2
        }
    }

    return inSampleSize
}

/**
 * Ref: https://developer.android.com/topic/performance/graphics/manage-memory#kotlin
 */
private fun canUseForInBitmap(candidate: Bitmap, targetOptions: BitmapFactory.Options): Boolean {
    return if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.KITKAT) {
        // From Android 4.4 (KitKat) onward we can re-use if the byte size of
        // the new bitmap is smaller than the reusable bitmap candidate
        // allocation byte count.
        val width: Int = targetOptions.outWidth / targetOptions.inSampleSize
        val height: Int = targetOptions.outHeight / targetOptions.inSampleSize
        val byteCount: Int = width * height * getBytesPerPixel(candidate.config)
        byteCount <= candidate.allocationByteCount
    } else {
        // On earlier versions, the dimensions must match exactly and the inSampleSize must be 1
        candidate.width == targetOptions.outWidth &&
                candidate.height == targetOptions.outHeight &&
                targetOptions.inSampleSize == 1
    }
}

/**
 * A helper function to return the byte usage per pixel of a bitmap based on its configuration.
 */
private fun getBytesPerPixel(config: Bitmap.Config): Int {
    return when (config) {
        Bitmap.Config.ARGB_8888 -> 4
        Bitmap.Config.RGB_565, Bitmap.Config.ARGB_4444 -> 2
        Bitmap.Config.ALPHA_8 -> 1
        else -> 1
    }
}

@Throws(IOException::class)
fun Context.createImageFile(): File {
    // Create an image file name
    val storageDir: File? = getExternalFilesDir(Environment.DIRECTORY_PICTURES)
    return File.createTempFile(
        "JPEG_${System.currentTimeMillis()}_", /* prefix */
        ".jpg", /* suffix */
        storageDir /* directory */
    )
}

and simply call the following method to create compressed image file. here file is you image file

file.compressImage(
                    1024f,
                    1024f,
                    Bitmap.CompressFormat.JPEG,
                    70,
                    context.createImageFile().path
                )
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