S03_CH07_AXI_VDMA_OV5640摄像头采集系统
7.1概述
本章内容和《S03_CH06_AXI_VDMA_OV7725摄像头采集系统》只是摄像头采用的分辨率不同,其他原理都一样,由于在《S03_CH06_AXI_VDMA_OV7725摄像头采集系统》中详细介绍了VDMA的原理,如果读者只是购买了OV5640,可以回到《S03_CH06_AXI_VDMA_OV7725摄像头采集系统》仔细阅读VDMA的基础知识。
7.2 搭建VDMA图像系统
7.2.1构架方案图
可以看到VMDA的图像系统和前面介绍的DMA系统相比非常类似。实际上他们都是属于DMA系统,只是VDMA在配置完成后,可以无需依赖CPU可以独立运行,有点类似显卡的功能了。
7.2.2构BLOCK模块化设计方案图
7.3 PS部分
本课程提供了二种方式启动VDMA,第一种是通过库函数版本,第二种是通过寄存器版本。寄存器版本主要是验证我们对VDMA的寄存器掌握情况。库函数具备更强的功能,和可维护性。和OV7725相比,这里的分辨率设置为1280X720
表6-6-1
#include "sys_intr.h" #include "xaxivdma.h" #include "xaxivdma_i.h" #define VTC_BASEADDR XPAR_MIZ702_VTG_VGA_0_BASEADDR #define DDR_BASEADDR 0x00000000 //#define UART_BASEADDR 0xe0001000 #define VDMA_BASEADDR XPAR_AXI_VDMA_0_BASEADDR #define H_STRIDE 1280 #define H_ACTIVE 1280 #define V_ACTIVE 720 #define COUNTS_PER_SECOND (XPAR_CPU_CORTEXA9_CORE_CLOCK_FREQ_HZ)/64 #define VIDEO_LENGTH (H_STRIDE*V_ACTIVE) #define VIDEO_BASEADDR0 DDR_BASEADDR + 0x2000000 #define VIDEO_BASEADDR1 DDR_BASEADDR + 0x3000000 #define VIDEO_BASEADDR2 DDR_BASEADDR + 0x4000000 u32 *BufferPtr[3]; unsigned int srcBuffer = (XPAR_PS7_DDR_0_S_AXI_BASEADDR + 0x1000000); int run_triple_frame_buffer(XAxiVdma* InstancePtr, int DeviceId, int hsize, int vsize, int buf_base_addr, int number_frame_count, int enable_frm_cnt_intr); int main(void) { u32 Status; Miz702_EMIO_init(); ov7725_init_rgb(); XAxiVdma InstancePtr; xil_printf("Starting the first VDMA \n\r"); Status = run_triple_frame_buffer(&InstancePtr, 0, 1280, 720, srcBuffer, 2, 0); if (Status != XST_SUCCESS) { xil_printf("Transfer of frames failed with error = %d\r\n",Status); return XST_FAILURE; } else { xil_printf("Transfer of frames started \r\n"); } print("TEST PASS\r\n"); //VDMA configurateAXI VDMA0 /****************往DDR写数据设置**********************/ /*Xil_Out32((VDMA_BASEADDR + 0x030), 0x00000003);// enable circular mode Xil_Out32((VDMA_BASEADDR + 0x0AC), VIDEO_BASEADDR0); // start address Xil_Out32((VDMA_BASEADDR + 0x0B0), VIDEO_BASEADDR1); // start address Xil_Out32((VDMA_BASEADDR + 0x0B4), VIDEO_BASEADDR2); // start address Xil_Out32((VDMA_BASEADDR + 0x0A8), (H_STRIDE*4)); // h offset (640 * 4) bytes Xil_Out32((VDMA_BASEADDR + 0x0A4), (H_ACTIVE*4)); // h size (640 * 4) bytes Xil_Out32((VDMA_BASEADDR + 0x0A0), V_ACTIVE);*/ // v size (480) /*****************从DDR读数据设置**********************/ /*Xil_Out32((VDMA_BASEADDR + 0x000), 0x00000003); // enable circular mode Xil_Out32((VDMA_BASEADDR + 0x05c), VIDEO_BASEADDR0); // start address Xil_Out32((VDMA_BASEADDR + 0x060), VIDEO_BASEADDR1); // start address Xil_Out32((VDMA_BASEADDR + 0x064), VIDEO_BASEADDR2); // start address Xil_Out32((VDMA_BASEADDR + 0x058), (H_STRIDE*4)); // h offset (640 * 4) bytes Xil_Out32((VDMA_BASEADDR + 0x054), (H_ACTIVE*4)); // h size (640 * 4) bytes Xil_Out32((VDMA_BASEADDR + 0x050), V_ACTIVE); // v size (480) */ while (1) ; return XST_SUCCESS; } |