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https://gitea.osmocom.org/sim-card/simtrace2.git
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We need to refer to g_dfu as a pointer from all code. In DFU mode, it gets assigned to the address of _g_dfu, which is placed by the linker script at the start of RAM. In runtime mode, the pointer is statically defined to point at the start of RAM. The linker script for the runtime (dfu environment) is adjusted to save the first 32 bytes for the _g_dfu structure.
194 lines
4.9 KiB
C
194 lines
4.9 KiB
C
#include "board.h"
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#include "utils.h"
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#include "usb/device/dfu/dfu.h"
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#include "usb/common/dfu/usb_dfu.h"
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#include "manifest.h"
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#define ALTIF_RAM 0
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#define ALTIF_FLASH 1
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unsigned int g_unique_id[4];
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/*----------------------------------------------------------------------------
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* Callbacks
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*----------------------------------------------------------------------------*/
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#define RAM_ADDR(offset) (IRAM_ADDR + BOARD_DFU_RAM_SIZE + offset)
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#define FLASH_ADDR(offset) (IFLASH_ADDR + BOARD_DFU_BOOT_SIZE + offset)
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#define IFLASH_END ((uint8_t *)IFLASH_ADDR + IFLASH_SIZE)
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#define IRAM_END ((uint8_t *)IRAM_ADDR + IRAM_SIZE)
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/* incoming call-back: Host has transfered 'len' bytes (stored at
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* 'data'), which we shall write to 'offset' into the partition
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* associated with 'altif'. Guaranted to be les than
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* BOARD_DFU_PAGE_SIZE */
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int USBDFU_handle_dnload(uint8_t altif, unsigned int offset,
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uint8_t *data, unsigned int len)
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{
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uint32_t addr;
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int rc;
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printf("dnload(altif=%u, offset=%u, len=%u\n\r", altif, offset, len);
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switch (altif) {
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case ALTIF_RAM:
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addr = RAM_ADDR(offset);
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if (addr > IRAM_ADDR + IRAM_SIZE) {
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g_dfu->state = DFU_STATE_dfuERROR;
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g_dfu->status = DFU_STATUS_errADDRESS;
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return DFU_RET_STALL;
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}
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memcpy((void *)addr, data, len);
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return DFU_RET_ZLP;
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case ALTIF_FLASH:
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addr = FLASH_ADDR(offset);
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if (addr > IFLASH_ADDR + IFLASH_SIZE) {
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g_dfu->state = DFU_STATE_dfuERROR;
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g_dfu->status = DFU_STATUS_errADDRESS;
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return DFU_RET_STALL;
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}
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rc = FLASHD_Write(addr, data, len);
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if (rc != 0) {
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/* FIXME: set error codes */
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return DFU_RET_STALL;
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}
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return DFU_RET_ZLP;
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default:
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/* FIXME: set error codes */
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TRACE_ERROR("DFU download for unknown AltIf %d\n\r", altif);
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return DFU_RET_STALL;
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}
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}
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/* incoming call-back: Host has requested to read back 'req_len' bytes
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* starting from 'offset' of the firmware * associated with partition
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* 'altif' */
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int USBDFU_handle_upload(uint8_t altif, unsigned int offset,
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uint8_t *data, unsigned int req_len)
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{
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uint32_t addr;
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printf("upload(altif=%u, offset=%u, len=%u)", altif, offset, req_len);
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switch (altif) {
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case ALTIF_RAM:
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addr = RAM_ADDR(offset);
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if (addr > IRAM_ADDR + IRAM_SIZE) {
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g_dfu->state = DFU_STATE_dfuERROR;
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g_dfu->status = DFU_STATUS_errADDRESS;
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return -1;
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}
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if ((uint8_t *)addr + req_len > IRAM_END)
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req_len = IRAM_END - (uint8_t *)addr;
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memcpy(data, (void *)addr, req_len);
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break;
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case ALTIF_FLASH:
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addr = FLASH_ADDR(offset);
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if (addr > IFLASH_ADDR + IFLASH_SIZE) {
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g_dfu->state = DFU_STATE_dfuERROR;
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g_dfu->status = DFU_STATUS_errADDRESS;
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return -1;
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}
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if ((uint8_t *)addr + req_len > IFLASH_END)
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req_len = IFLASH_END - (uint8_t *)addr;
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memcpy(data, (void *)addr, req_len);
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break;
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default:
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TRACE_ERROR("DFU upload for unknown AltIf %d\n\r", altif);
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/* FIXME: set error codes */
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return -1;
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}
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printf("=%u\r\n", req_len);
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return req_len;
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}
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/* returns '1' in case we should break any endless loop */
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static void check_exec_dbg_cmd(void)
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{
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int ch;
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if (!UART_IsRxReady())
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return;
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ch = UART_GetChar();
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//board_exec_dbg_cmd(ch);
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}
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/*------------------------------------------------------------------------------
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* Main
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*------------------------------------------------------------------------------*/
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#define MAX_USB_ITER BOARD_MCK/72 // This should be around a second
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extern int main(void)
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{
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uint8_t isUsbConnected = 0;
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unsigned int i = 0;
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LED_Configure(LED_NUM_RED);
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LED_Configure(LED_NUM_GREEN);
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LED_Set(LED_NUM_RED);
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/* Disable watchdog */
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WDT_Disable(WDT);
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//req_ctx_init();
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PIO_InitializeInterrupts(0);
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EEFC_ReadUniqueID(g_unique_id);
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printf("\r\n\r\n"
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"=============================================================================\r\n"
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"DFU bootloader %s for board %s (C) 2010-2017 by Harald Welte\r\n"
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"=============================================================================\r\n",
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manifest_revision, manifest_board);
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TRACE_INFO("Serial Nr. %08x-%08x-%08x-%08x\r\n",
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g_unique_id[0], g_unique_id[1],
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g_unique_id[2], g_unique_id[3]);
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//board_main_top();
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TRACE_INFO("USB init...\r\n");
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USBDFU_Initialize(&dfu_descriptors);
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while (USBD_GetState() < USBD_STATE_CONFIGURED) {
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check_exec_dbg_cmd();
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#if 1
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if (i >= MAX_USB_ITER * 3) {
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TRACE_ERROR("Resetting board (USB could "
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"not be configured)\r\n");
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NVIC_SystemReset();
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}
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#endif
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i++;
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}
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TRACE_INFO("entering main loop...\r\n");
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while (1) {
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#if TRACE_LEVEL >= TRACE_LEVEL_DEBUG
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const char rotor[] = { '-', '\\', '|', '/' };
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putchar('\b');
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putchar(rotor[i++ % ARRAY_SIZE(rotor)]);
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#endif
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check_exec_dbg_cmd();
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//osmo_timers_prepare();
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//osmo_timers_update();
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if (USBD_GetState() < USBD_STATE_CONFIGURED) {
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if (isUsbConnected) {
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isUsbConnected = 0;
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}
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} else if (isUsbConnected == 0) {
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TRACE_INFO("USB is now configured\r\n");
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LED_Set(LED_NUM_GREEN);
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LED_Clear(LED_NUM_RED);
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isUsbConnected = 1;
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}
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}
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}
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