void displayGame()
{
	frameIndex = frame_gameScreen;
	if (XST_FAILURE == XAxiVdma_StartParking(&videoDMAController, frameIndex,  XAXIVDMA_READ)) {
		 xil_printf("vdma parking failed\n\r");
	}
}
Ejemplo n.º 2
0
int StartParking(int writeFrame, int readFrame, int output)
{
	if (output)
		xil_printf("\r\nStarting parking...");

	int Status = XST_SUCCESS;

	//XAxiVdma_DmaStop(&AxiVdma, XAXIVDMA_WRITE);

	Status = XAxiVdma_StartParking(&AxiVdma, writeFrame, XAXIVDMA_WRITE); // Park write on frame 2 (to stop writing to frame 0)
	Status &= XAxiVdma_StartParking(&AxiVdma, readFrame, XAXIVDMA_READ); // Park read on frame 0 (output should be frozen)

	if (Status != XST_SUCCESS) {
		xil_printf(
			"Start Write transfer failed %d\r\n", Status);

		return XST_FAILURE;
	}

	if (output)
		xil_printf("done");
	return Status;
}
void initVideo()
{
	init_platform(); // Necessary for all programs.
	int Status; // Keep track of success/failure of system function calls.
	// There are 3 steps to initializing the vdma driver and IP.
	// Step 1: lookup the memory structure that is used to access the vdma driver.
	XAxiVdma_Config * VideoDMAConfig = XAxiVdma_LookupConfig(
			XPAR_AXI_VDMA_0_DEVICE_ID);
	// Step 2: Initialize the memory structure and the hardware.
	if (XST_FAILURE == XAxiVdma_CfgInitialize(&videoDMAController,
			VideoDMAConfig, XPAR_AXI_VDMA_0_BASEADDR)) {
		xil_printf("VideoDMA Did not initialize.\r\n");
	}
	// Step 3: (optional) set the frame store number.
	if (XST_FAILURE == XAxiVdma_SetFrmStore(&videoDMAController, 2,
			XAXIVDMA_READ)) {
		xil_printf("Set Frame Store Failed.");
	}
	// Initialization is complete at this point.

	// Setup the frame counter. We want two read frames. We don't need any write frames but the
	// function generates an error if you set the write frame count to 0. We set it to 2
	// but ignore it because we don't need a write channel at all.
	XAxiVdma_FrameCounter myFrameConfig;
	myFrameConfig.ReadFrameCount = 2;
	myFrameConfig.ReadDelayTimerCount = 10;
	myFrameConfig.WriteFrameCount = 2;
	myFrameConfig.WriteDelayTimerCount = 10;
	Status = XAxiVdma_SetFrameCounter(&videoDMAController, &myFrameConfig);
	if (Status != XST_SUCCESS) {
		xil_printf("Set frame counter failed %d\r\n", Status);
		if (Status == XST_VDMA_MISMATCH_ERROR)
			xil_printf("DMA Mismatch Error\r\n");
	}
	// Now we tell the driver about the geometry of our frame buffer and a few other things.
	// Our image is 480 x 640.
	XAxiVdma_DmaSetup myFrameBuffer;

	myFrameBuffer.VertSizeInput = 480; // 480 vertical pixels.
	myFrameBuffer.HoriSizeInput = 640 * 4; // 640 horizontal (32-bit pixels).
	myFrameBuffer.Stride = 640 * 4; // Dont' worry about the rest of the values.
	myFrameBuffer.FrameDelay = 0;
	myFrameBuffer.EnableCircularBuf = 1;
	myFrameBuffer.EnableSync = 0;
	myFrameBuffer.PointNum = 0;
	myFrameBuffer.EnableFrameCounter = 0;
	myFrameBuffer.FixedFrameStoreAddr = 0;
	if (XST_FAILURE == XAxiVdma_DmaConfig(&videoDMAController, XAXIVDMA_READ,
			&myFrameBuffer)) {
		xil_printf("DMA Config Failed\r\n");
	}
	// We need to give the frame buffer pointers to the memory that it will use. This memory
	// is where you will write your video data. The vdma IP/driver then streams it to the HDMI
	// IP.
	myFrameBuffer.FrameStoreStartAddr[0] = FRAME_BUFFER_ADDR;
	myFrameBuffer.FrameStoreStartAddr[1] = FRAME_BUFFER_ADDR + 4*640*480;

	if (XST_FAILURE == XAxiVdma_DmaSetBufferAddr(&videoDMAController,
			XAXIVDMA_READ, myFrameBuffer.FrameStoreStartAddr)) {
		xil_printf("DMA Set Address Failed Failed\r\n");
	}
	// Print a sanity message if you get this far.
	xil_printf("Woohoo! I made it through initialization.\n\r");
	// Now, let's get ready to start displaying some stuff on the screen.
	// The variables framePointer and framePointer1 are just pointers to the base address
	// of frame 0 and frame 1.

	// This tells the HDMI controller the resolution of your display (there must be a better way to do this).
	XIo_Out32(XPAR_AXI_HDMI_0_BASEADDR, 640*480);

	// Start the DMA for the read channel only.
	if (XST_FAILURE == XAxiVdma_DmaStart(&videoDMAController, XAXIVDMA_READ)) {
		xil_printf("DMA START FAILED\r\n");
	}
	// We have two frames, let's park on frame 0. Use frameIndex to index them.
	// Note that you have to start the DMA process before parking on a frame.
	if (XST_FAILURE == XAxiVdma_StartParking(&videoDMAController, frameIndex,
			XAXIVDMA_READ)) {
		xil_printf("vdma parking failed\n\r");
	}
}