335 lines
9.7 KiB
C
335 lines
9.7 KiB
C
#include <avr/io.h>
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#include <avr/interrupt.h> /* for sei() */
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#include <util/delay.h> /* for _delay_ms() */
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#include <stdlib.h>
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#include <avr/pgmspace.h> /* required by usbdrv.h */
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#include "usbdrv.h"
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#include "oddebug.h" /* This is also an example for using debug
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* macros */
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#include "config.h"
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#include "requests.h" /* The custom request numbers we use */
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#include "uart.h"
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#include "sram.h"
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#include "debug.h"
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#include "crc.h"
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#include "usb_bulk.h"
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extern FILE uart_stdout;
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uint8_t debug_level = ( DEBUG | DEBUG_USB );
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uint8_t read_buffer[TRANSFER_BUFFER_SIZE];
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uint32_t req_addr = 0;
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uint32_t req_size;
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uint8_t req_bank;
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uint16_t req_bank_size;
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uint8_t req_state = REQ_STATUS_IDLE;
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uint8_t rx_remaining = 0;
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uint8_t tx_remaining = 0;
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uint16_t sync_errors = 0;
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uint8_t tx_buffer[32];
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uint8_t data_buffer[4];
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uint32_t addr;
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uint16_t crc = 0;
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usbMsgLen_t usbFunctionSetup(uchar data[8])
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{
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usbRequest_t *rq = (void *) data;
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uint8_t ret_len = 0;
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/*
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* -------------------------------------------------------------------------
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*/
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if (rq->bRequest == USB_UPLOAD_INIT) {
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if (req_state != REQ_STATUS_IDLE){
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debug(DEBUG_USB,"USB_UPLOAD_INIT: ERROR state is not REQ_STATUS_IDLE\n");
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return 0;
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}
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req_bank = 0;
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rx_remaining = 0;
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req_bank_size = 1 << rq->wValue.word;
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sync_errors = 0;
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crc = 0;
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debug(DEBUG_USB,"USB_UPLOAD_INIT: bank_size=0x%x\n", req_bank_size);
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_UPLOAD_ADDR) {
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req_state = REQ_STATUS_UPLOAD;
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req_addr = rq->wValue.word;
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req_addr = req_addr << 16;
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req_addr = req_addr | rq->wIndex.word;
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if (rx_remaining) {
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sync_errors++;
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debug
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(DEBUG_USB,"USB_UPLOAD_ADDR: Out of sync addr=0x%lx remain=%i packet=%i sync_error=%i\n",
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req_addr, rx_remaining, rq->wLength.word, sync_errors);
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ret_len = 0;
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}
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rx_remaining = rq->wLength.word;
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ret_len = USB_MAX_TRANS;
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if (req_addr && (req_addr % 0x1000) == 0) {
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debug(DEBUG_USB,"USB_UPLOAD_ADDR: bank=0x%02x addr=0x%08lx\n",
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req_bank, req_addr);
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crc_check_bulk_memory(req_addr - 0x1000,req_addr);
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}
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if (req_addr && req_addr % req_bank_size == 0) {
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debug(DEBUG_USB,"USB_UPLOAD_ADDR: req_bank=0x%02x addr=0x%08lx\n",
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req_bank, req_addr);
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req_bank++;
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}
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ret_len = USB_MAX_TRANS;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_DOWNLOAD_INIT) {
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debug(DEBUG_USB,"USB_DOWNLOAD_INIT\n");
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_DOWNLOAD_ADDR) {
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debug(DEBUG_USB,"USB_DOWNLOAD_ADDR\n");
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_BULK_UPLOAD_INIT) {
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if (req_state != REQ_STATUS_IDLE){
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debug(DEBUG_USB,"USB_BULK_UPLOAD_INIT: ERROR state is not REQ_STATUS_IDLE\n");
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return 0;
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}
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req_bank = 0;
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rx_remaining = 0;
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req_bank_size = (1 << rq->wValue.word) & 0xffff;
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sync_errors = 0;
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debug(DEBUG_USB,"USB_BULK_UPLOAD_INIT: bank_size=0x%x\n", req_bank_size);
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_BULK_UPLOAD_ADDR) {
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if (req_state != REQ_STATUS_IDLE){
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debug(DEBUG_USB,"USB_BULK_UPLOAD_ADDR: ERROR state is not REQ_STATUS_IDLE\n");
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return 0;
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}
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req_state = REQ_STATUS_BULK_UPLOAD;
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req_addr = rq->wValue.word;
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req_addr = req_addr << 16;
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req_addr = req_addr | rq->wIndex.word;
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debug(DEBUG_USB,"USB_BULK_UPLOAD_ADDR: req_bank=0x%02x addr=0x%08lx \n",req_bank,req_addr);
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ret_len = 0;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_BULK_UPLOAD_NEXT) {
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if (req_state != REQ_STATUS_BULK_UPLOAD){
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debug(DEBUG_USB,"USB_BULK_UPLOAD_NEXT: ERROR state is not REQ_STATUS_BULK_UPLOAD\n");
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return 0;
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}
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if (rx_remaining) {
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sync_errors++;
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debug(DEBUG_USB,
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"USB_BULK_UPLOAD_NEXT: Out of sync addr=0x%lx remain=%i packet=%i sync_error=%i\n",
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req_addr, rx_remaining, rq->wLength.word, sync_errors);
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ret_len = 0;
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}
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rx_remaining = rq->wLength.word;
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ret_len = USB_MAX_TRANS;
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if (req_addr && req_addr % req_bank_size == 0) {
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debug(DEBUG_USB,"USB_BULK_UPLOAD_NEXT: req_bank=0x%02x addr= 0x%08lx \n",
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req_bank, req_addr);
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req_bank++;
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}
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ret_len = USB_MAX_TRANS;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_BULK_UPLOAD_END) {
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if (req_state != REQ_STATUS_BULK_UPLOAD){
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debug(DEBUG_USB,"USB_BULK_UPLOAD_END: ERROR state is not REQ_STATUS_BULK_UPLOAD\n");
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return 0;
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}
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debug(DEBUG_USB,"USB_BULK_UPLOAD_END:\n");
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req_state = REQ_STATUS_IDLE;
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sram_bulk_write_end();
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ret_len = 0;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_CRC) {
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req_addr = rq->wValue.word;
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req_addr = req_addr << 16;
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req_addr = req_addr | rq->wIndex.word;
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debug(DEBUG_USB,"USB_CRC: addr=0x%08lx \n", req_addr);
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crc_check_bulk_memory(0x000000,req_addr);
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ret_len = 0;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_SNES_BOOT) {
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req_state = REQ_STATUS_BOOT;
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debug(DEBUG_USB,"USB_SNES_BOOT: ");
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ret_len = 0;
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/*
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* -------------------------------------------------------------------------
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*/
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} else if (rq->bRequest == USB_CRC_ADDR) {
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req_state = REQ_STATUS_CRC;
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req_addr = rq->wValue.word;
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req_addr = req_addr << 16;
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req_addr = req_addr | rq->wIndex.word;
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debug(DEBUG_USB,"USB_CRC_ADDR: addr=0x%lx size=%i\n", req_addr,
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rq->wLength.word);
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req_size = rq->wLength.word;
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req_size = req_size << 2;
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tx_remaining = 2;
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debug(DEBUG_USB,"USB_CRC_ADDR: addr=0x%lx size=%li\n", req_addr, req_size);
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crc = crc_check_memory_range(req_addr,req_size,read_buffer);
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tx_buffer[0] = crc & 0xff;
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tx_buffer[1] = (crc >> 8) & 0xff;
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ret_len = 2;
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req_state = REQ_STATUS_IDLE;
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}
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usbMsgPtr = data_buffer;
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return ret_len; /* default for not implemented requests: return
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* no data back to host */
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}
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/*
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* -------------------------------------------------------------------------
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*/
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void test_read_write(){
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uint8_t i;
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uint32_t addr;
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avr_bus_active();
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addr = 0x000000;
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i = 1;
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while (addr++ <= 0x0000ff){
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sram_write(addr,i++);
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}
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addr = 0x000000;
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while (addr++ <= 0x0000ff){
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printf("read addr=0x%08lx %x\n",addr,sram_read(addr));
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}
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}
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void test_bulk_read_write(){
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uint8_t i;
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uint32_t addr;
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avr_bus_active();
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addr = 0x000000;
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i = 0;
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sram_bulk_write_start(addr);
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while (addr++ <= 0x3fffff){
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sram_bulk_write(i++);
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sram_bulk_write_next();
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}
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sram_bulk_write_end();
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addr = 0x000000;
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sram_bulk_read_start(addr);
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while (addr <= 0x3fffff){
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printf("addr=0x%08lx %x\n",addr,sram_bulk_read());
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sram_bulk_read_next();
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addr ++;
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}
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sram_bulk_read_end();
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}
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void test_non_zero_memory(uint32_t bottom_addr,uint32_t top_addr)
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{
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uint32_t addr = 0;
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uint8_t c;
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sram_bulk_read_start(bottom_addr);
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for (addr = bottom_addr; addr < top_addr; addr++) {
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c = sram_bulk_read();
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if (c!=0xff)
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printf("addr=0x%08lx c=0x%x\n",addr,c);
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sram_bulk_read_next();
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}
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sram_bulk_read_end();
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}
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void test_crc(){
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printf("test_crc: clear\n");
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avr_bus_active();
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sram_bulk_set(0x000000,0x10000,0xff);
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printf("test_crc: crc\n");
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crc_check_bulk_memory(0x000000,0x10000);
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printf("test_crc: check\n");
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test_non_zero_memory(0x000000,0x10000);
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}
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int main(void)
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{
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uint8_t i;
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uart_init();
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stdout = &uart_stdout;
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system_init();
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printf("Sytem Init\n");
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avr_bus_active();
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usbInit();
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printf("USB Init\n");
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usbDeviceDisconnect(); /* enforce re-enumeration, do this while
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* interrupts are disabled! */
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cli();
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printf("USB disconnect\n");
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i = 10;
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while (--i) { /* fake USB disconnect for > 250 ms */
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led_on();
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_delay_ms(35);
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led_off();
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_delay_ms(65);
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}
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led_on();
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usbDeviceConnect();
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printf("USB connect\n");
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sei();
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printf("USB poll\n");
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while (req_state != REQ_STATUS_BOOT){
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usbPoll();
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}
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printf("USB poll done\n");
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usbDeviceDisconnect();
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printf("USB disconnect\n");
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crc_check_bulk_memory(0x000000,0x1000);
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printf("Disable snes WR\n");
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snes_wr_disable();
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printf("Use Snes lowrom\n");
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snes_lorom();
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printf("Activate Snes bus\n");
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snes_bus_active();
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while(1);
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return 0;
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}
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