#include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "beaglebone.h" #define DDR2_RD_DQS 0x12 #define DDR2_PHY_FIFO_WE 0x80 #define DDR2_WR_DQS 0x00 #define DDR2_PHY_WRLVL 0x00 #define DDR2_PHY_GATELVL 0x00 #define DDR2_PHY_WR_DATA 0x40 static const struct am33xx_cmd_control ddr2_cmd_ctrl = { .slave_ratio0 = 0x80, .dll_lock_diff0 = 0x0, .invert_clkout0 = 0x0, .slave_ratio1 = 0x80, .dll_lock_diff1 = 0x0, .invert_clkout1 = 0x0, .slave_ratio2 = 0x80, .dll_lock_diff2 = 0x0, .invert_clkout2 = 0x0, }; static const struct am33xx_emif_regs ddr2_regs = { .emif_read_latency = 0x100005, .emif_tim1 = 0x0666B3C9, .emif_tim2 = 0x243631CA, .emif_tim3 = 0x0000033F, .sdram_config = 0x41805332, .sdram_config2 = 0x41805332, .sdram_ref_ctrl = 0x0000081A, }; static const struct am33xx_ddr_data ddr2_data = { .rd_slave_ratio0 = (DDR2_RD_DQS << 30) | (DDR2_RD_DQS << 20) | (DDR2_RD_DQS << 10) | (DDR2_RD_DQS << 0), .wr_dqs_slave_ratio0 = (DDR2_WR_DQS << 30) | (DDR2_WR_DQS << 20) | (DDR2_WR_DQS << 10) | (DDR2_WR_DQS << 0), .wrlvl_init_ratio0 = (DDR2_PHY_WRLVL << 30) | (DDR2_PHY_WRLVL << 20) | (DDR2_PHY_WRLVL << 10) | (DDR2_PHY_WRLVL << 0), .gatelvl_init_ratio0 = (DDR2_PHY_GATELVL << 30) | (DDR2_PHY_GATELVL << 20) | (DDR2_PHY_GATELVL << 10) | (DDR2_PHY_GATELVL << 0), .fifo_we_slave_ratio0 = (DDR2_PHY_FIFO_WE << 30) | (DDR2_PHY_FIFO_WE << 20) | (DDR2_PHY_FIFO_WE << 10) | (DDR2_PHY_FIFO_WE << 0), .wr_slave_ratio0 = (DDR2_PHY_WR_DATA << 30) | (DDR2_PHY_WR_DATA << 20) | (DDR2_PHY_WR_DATA << 10) | (DDR2_PHY_WR_DATA << 0), .use_rank0_delay = 0x01, .dll_lock_diff0 = 0x0, }; static const struct am33xx_ddr_data ddr3_data = { .rd_slave_ratio0 = 0x38, .wr_dqs_slave_ratio0 = 0x44, .fifo_we_slave_ratio0 = 0x94, .wr_slave_ratio0 = 0x7D, .use_rank0_delay = 0x01, .dll_lock_diff0 = 0x0, }; static const struct am33xx_cmd_control ddr3_cmd_ctrl = { .slave_ratio0 = 0x80, .dll_lock_diff0 = 0x1, .invert_clkout0 = 0x0, .slave_ratio1 = 0x80, .dll_lock_diff1 = 0x1, .invert_clkout1 = 0x0, .slave_ratio2 = 0x80, .dll_lock_diff2 = 0x1, .invert_clkout2 = 0x0, }; static const struct am33xx_emif_regs ddr3_regs = { .emif_read_latency = 0x100007, .emif_tim1 = 0x0AAAD4DB, .emif_tim2 = 0x266B7FDA, .emif_tim3 = 0x501F867F, .zq_config = 0x50074BE4, .sdram_config = 0x61C05332, .sdram_config2 = 0x0, .sdram_ref_ctrl = 0xC30, }; extern char __dtb_am335x_boneblack_start[]; extern char __dtb_am335x_bone_start[]; /** * @brief The basic entry point for board initialization. * * This is called as part of machine init (after arch init). * This is again called with stack in SRAM, so not too many * constructs possible here. * * @return void */ static noinline int beaglebone_sram_init(void) { uint32_t sdram_size; void *fdt; if (is_beaglebone_black()) { sdram_size = SZ_512M; fdt = __dtb_am335x_boneblack_start; } else { sdram_size = SZ_256M; fdt = __dtb_am335x_bone_start; } /* WDT1 is already running when the bootloader gets control * Disable it to avoid "random" resets */ __raw_writel(WDT_DISABLE_CODE1, AM33XX_WDT_REG(WSPR)); while(__raw_readl(AM33XX_WDT_REG(WWPS)) != 0x0); __raw_writel(WDT_DISABLE_CODE2, AM33XX_WDT_REG(WSPR)); while(__raw_readl(AM33XX_WDT_REG(WWPS)) != 0x0); /* Setup the PLLs and the clocks for the peripherals */ if (is_beaglebone_black()) { am33xx_pll_init(MPUPLL_M_500, 24, DDRPLL_M_400); am335x_sdram_init(0x18B, &ddr3_cmd_ctrl, &ddr3_regs, &ddr3_data); } else { am33xx_pll_init(MPUPLL_M_500, 24, DDRPLL_M_266); am335x_sdram_init(0x18B, &ddr2_cmd_ctrl, &ddr2_regs, &ddr2_data); } am33xx_uart0_soft_reset(); am33xx_enable_uart0_pin_mux(); omap_uart_lowlevel_init((void *)AM33XX_UART0_BASE); putc_ll('>'); barebox_arm_entry(0x80000000, sdram_size, fdt); } ENTRY_FUNCTION(start_am33xx_beaglebone_sram, bootinfo, r1, r2) { am33xx_save_bootinfo((void *)bootinfo); /* * Setup C environment, the board init code uses global variables. * Stackpointer has already been initialized by the ROM code. */ relocate_to_current_adr(); setup_c(); beaglebone_sram_init(); } ENTRY_FUNCTION(start_am33xx_beaglebone_sdram, r0, r1, r2) { uint32_t sdram_size; void *fdt; if (is_beaglebone_black()) { sdram_size = SZ_512M; fdt = __dtb_am335x_boneblack_start; } else { sdram_size = SZ_256M; fdt = __dtb_am335x_bone_start; } fdt -= get_runtime_offset(); barebox_arm_entry(0x80000000, sdram_size, fdt); }