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| #include "xparameters.h" #include "xqspips.h" #include "xil_printf.h"
#define QSPI_DEVICE_ID XPAR_XQSPIPS_0_DEVICE_ID
#define WRITE_STATUS_CMD 0x01 #define WRITE_CMD 0x02 #define READ_CMD 0x03 #define WRITE_DISABLE_CMD 0x04 #define READ_STATUS_CMD 0x05 #define WRITE_ENABLE_CMD 0x06 #define FAST_READ_CMD 0x0B #define DUAL_READ_CMD 0x3B #define QUAD_READ_CMD 0x6B #define BULK_ERASE_CMD 0xC7 #define SEC_ERASE_CMD 0xD8 #define READ_ID 0x9F
#define COMMAND_OFFSET 0 #define ADDRESS_1_OFFSET 1 #define ADDRESS_2_OFFSET 2 #define ADDRESS_3_OFFSET 3 #define DATA_OFFSET 4 #define DUMMY_OFFSET 4
#define DUMMY_SIZE 1 #define RD_ID_SIZE 4 #define BULK_ERASE_SIZE 1 #define SEC_ERASE_SIZE 4
#define OVERHEAD_SIZE 4
#define SECTOR_SIZE 0x10000 #define NUM_SECTORS 0x100 #define NUM_PAGES 0x10000 #define PAGE_SIZE 256
#define PAGE_COUNT 16
#define TEST_ADDRESS 0x00055000 #define UNIQUE_VALUE 0x05
#define MAX_DATA (PAGE_COUNT * PAGE_SIZE)
void FlashErase(XQspiPs *QspiPtr, u32 Address, u32 ByteCount); void FlashWrite(XQspiPs *QspiPtr, u32 Address, u32 ByteCount, u8 Command); void FlashRead(XQspiPs *QspiPtr, u32 Address, u32 ByteCount, u8 Command); int FlashReadID(void); void FlashQuadEnable(XQspiPs *QspiPtr); int QspiFlashPolledExample(XQspiPs *QspiInstancePtr, u16 QspiDeviceId);
static XQspiPs QspiInstance;
int Test = 5;
u8 ReadBuffer[MAX_DATA + DATA_OFFSET + DUMMY_SIZE]; u8 WriteBuffer[PAGE_SIZE + DATA_OFFSET];
int main(void) {
xil_printf("QSPI FLASH Polled Example Test \r\n"); QspiFlashPolledExample(&QspiInstance, QSPI_DEVICE_ID); xil_printf("Successfully ran QSPI FLASH Polled Example Test\r\n"); return XST_SUCCESS; }
int QspiFlashPolledExample(XQspiPs *QspiInstancePtr, u16 QspiDeviceId) { u8 *BufferPtr; u8 UniqueValue; int Count; int Page; XQspiPs_Config *QspiConfig;
QspiConfig = XQspiPs_LookupConfig(QspiDeviceId); XQspiPs_CfgInitialize(QspiInstancePtr, QspiConfig, QspiConfig->BaseAddress); for (UniqueValue = UNIQUE_VALUE, Count = 0; Count < PAGE_SIZE; Count++, UniqueValue++) { WriteBuffer[DATA_OFFSET + Count] = (u8)(UniqueValue + Test); } memset(ReadBuffer, 0x00, sizeof(ReadBuffer));
XQspiPs_SetOptions(QspiInstancePtr, XQSPIPS_MANUAL_START_OPTION | XQSPIPS_FORCE_SSELECT_OPTION | XQSPIPS_HOLD_B_DRIVE_OPTION); XQspiPs_SetClkPrescaler(QspiInstancePtr, XQSPIPS_CLK_PRESCALE_8); XQspiPs_SetSlaveSelect(QspiInstancePtr); FlashReadID(); FlashQuadEnable(QspiInstancePtr); FlashErase(QspiInstancePtr, TEST_ADDRESS, MAX_DATA); for (Page = 0; Page < PAGE_COUNT; Page++) { FlashWrite(QspiInstancePtr, (Page * PAGE_SIZE) + TEST_ADDRESS, PAGE_SIZE, WRITE_CMD); } FlashRead(QspiInstancePtr, TEST_ADDRESS, MAX_DATA, QUAD_READ_CMD);
BufferPtr = &ReadBuffer[DATA_OFFSET + DUMMY_SIZE]; for (UniqueValue = UNIQUE_VALUE, Count = 0; Count < MAX_DATA; Count++, UniqueValue++) { if (BufferPtr[Count] != (u8)(UniqueValue + Test)) { return XST_FAILURE; } }
return XST_SUCCESS; }
void FlashWrite(XQspiPs *QspiPtr, u32 Address, u32 ByteCount, u8 Command) { u8 WriteEnableCmd = { WRITE_ENABLE_CMD }; u8 ReadStatusCmd[] = { READ_STATUS_CMD, 0 }; u8 FlashStatus[2];
XQspiPs_PolledTransfer(QspiPtr, &WriteEnableCmd, NULL, sizeof(WriteEnableCmd));
WriteBuffer[COMMAND_OFFSET] = Command; WriteBuffer[ADDRESS_1_OFFSET] = (u8)((Address & 0xFF0000) >> 16); WriteBuffer[ADDRESS_2_OFFSET] = (u8)((Address & 0xFF00) >> 8); WriteBuffer[ADDRESS_3_OFFSET] = (u8)(Address & 0xFF);
XQspiPs_PolledTransfer(QspiPtr, WriteBuffer, NULL, ByteCount + OVERHEAD_SIZE);
while (1) {
XQspiPs_PolledTransfer(QspiPtr, ReadStatusCmd, FlashStatus, sizeof(ReadStatusCmd));
if ((FlashStatus[1] & 0x01) == 0) { break; } } }
void FlashRead(XQspiPs *QspiPtr, u32 Address, u32 ByteCount, u8 Command) {
WriteBuffer[COMMAND_OFFSET] = Command; WriteBuffer[ADDRESS_1_OFFSET] = (u8)((Address & 0xFF0000) >> 16); WriteBuffer[ADDRESS_2_OFFSET] = (u8)((Address & 0xFF00) >> 8); WriteBuffer[ADDRESS_3_OFFSET] = (u8)(Address & 0xFF);
if ((Command == FAST_READ_CMD) || (Command == DUAL_READ_CMD) || (Command == QUAD_READ_CMD)) { ByteCount += DUMMY_SIZE; }
XQspiPs_PolledTransfer(QspiPtr, WriteBuffer, ReadBuffer, ByteCount + OVERHEAD_SIZE); }
void FlashErase(XQspiPs *QspiPtr, u32 Address, u32 ByteCount) { u8 WriteEnableCmd = { WRITE_ENABLE_CMD }; u8 ReadStatusCmd[] = { READ_STATUS_CMD, 0 }; u8 FlashStatus[2]; int Sector;
if (ByteCount == (NUM_SECTORS * SECTOR_SIZE)) {
XQspiPs_PolledTransfer(QspiPtr, &WriteEnableCmd, NULL, sizeof(WriteEnableCmd));
WriteBuffer[COMMAND_OFFSET] = BULK_ERASE_CMD;
XQspiPs_PolledTransfer(QspiPtr, WriteBuffer, NULL, BULK_ERASE_SIZE);
while (1) {
XQspiPs_PolledTransfer(QspiPtr, ReadStatusCmd, FlashStatus, sizeof(ReadStatusCmd));
if ((FlashStatus[1] & 0x01) == 0) { break; } }
return; }
for (Sector = 0; Sector < ((ByteCount / SECTOR_SIZE) + 1); Sector++) {
XQspiPs_PolledTransfer(QspiPtr, &WriteEnableCmd, NULL, sizeof(WriteEnableCmd));
WriteBuffer[COMMAND_OFFSET] = SEC_ERASE_CMD; WriteBuffer[ADDRESS_1_OFFSET] = (u8)(Address >> 16); WriteBuffer[ADDRESS_2_OFFSET] = (u8)(Address >> 8); WriteBuffer[ADDRESS_3_OFFSET] = (u8)(Address & 0xFF);
XQspiPs_PolledTransfer(QspiPtr, WriteBuffer, NULL, SEC_ERASE_SIZE);
while (1) {
XQspiPs_PolledTransfer(QspiPtr, ReadStatusCmd, FlashStatus, sizeof(ReadStatusCmd));
if ((FlashStatus[1] & 0x01) == 0) { break; } }
Address += SECTOR_SIZE; } }
int FlashReadID(void) { WriteBuffer[COMMAND_OFFSET] = READ_ID; WriteBuffer[ADDRESS_1_OFFSET] = 0x23; WriteBuffer[ADDRESS_2_OFFSET] = 0x08; WriteBuffer[ADDRESS_3_OFFSET] = 0x09;
XQspiPs_PolledTransfer(&QspiInstance, WriteBuffer, ReadBuffer, RD_ID_SIZE);
xil_printf("FlashID=0x%x 0x%x 0x%x\n", ReadBuffer[1], ReadBuffer[2], ReadBuffer[3]);
return XST_SUCCESS; }
void FlashQuadEnable(XQspiPs *QspiPtr) { u8 WriteEnableCmd = {WRITE_ENABLE_CMD}; u8 ReadStatusCmd[] = {READ_STATUS_CMD, 0}; u8 QuadEnableCmd[] = {WRITE_STATUS_CMD, 0}; u8 FlashStatus[2];
if (ReadBuffer[1] == 0x9D) {
XQspiPs_PolledTransfer(QspiPtr, ReadStatusCmd, FlashStatus, sizeof(ReadStatusCmd));
QuadEnableCmd[1] = FlashStatus[1] | 1 << 6;
XQspiPs_PolledTransfer(QspiPtr, &WriteEnableCmd, NULL, sizeof(WriteEnableCmd));
XQspiPs_PolledTransfer(QspiPtr, QuadEnableCmd, NULL, sizeof(QuadEnableCmd)); } }
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