2009-04-27 14:35:31 -05:00
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/***************************************************************************
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* Copyright (C) 2009 by Simon Qian *
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* SimonQian@SimonQian.com *
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 2 of the License, or *
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* (at your option) any later version. *
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* *
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* This program is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program; if not, write to the *
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* Free Software Foundation, Inc., *
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* 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
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***************************************************************************/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "avrt.h"
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#include "target.h"
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2009-05-31 07:38:28 -05:00
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#include "target_type.h"
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2009-04-27 14:35:31 -05:00
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2009-05-10 23:56:37 -05:00
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#define AVR_JTAG_INS_LEN 4
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2009-04-27 14:35:31 -05:00
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/* cli handling */
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int avr_register_commands(struct command_context_s *cmd_ctx);
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/* forward declarations */
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int avr_target_create(struct target_s *target, Jim_Interp *interp);
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int avr_init_target(struct command_context_s *cmd_ctx, struct target_s *target);
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int avr_quit(void);
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int avr_arch_state(struct target_s *target);
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int avr_poll(target_t *target);
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int avr_halt(target_t *target);
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int avr_resume(struct target_s *target, int current, u32 address, int handle_breakpoints, int debug_execution);
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int avr_step(struct target_s *target, int current, u32 address, int handle_breakpoints);
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int avr_assert_reset(target_t *target);
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int avr_deassert_reset(target_t *target);
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int avr_soft_reset_halt(struct target_s *target);
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/* IR and DR functions */
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int avr_jtag_sendinstr(jtag_tap_t *tap, u8 *ir_in, u8 ir_out);
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int avr_jtag_senddat(jtag_tap_t *tap, u32 *dr_in, u32 dr_out, int len);
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int mcu_write_ir(jtag_tap_t *tap, u8 *ir_in, u8 *ir_out, int ir_len, int rti);
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int mcu_write_dr(jtag_tap_t *tap, u8 *dr_in, u8 *dr_out, int dr_len, int rti);
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int mcu_write_ir_u8(jtag_tap_t *tap, u8 *ir_in, u8 ir_out, int ir_len, int rti);
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int mcu_write_dr_u8(jtag_tap_t *tap, u8 *ir_in, u8 ir_out, int dr_len, int rti);
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int mcu_write_ir_u16(jtag_tap_t *tap, u16 *ir_in, u16 ir_out, int ir_len, int rti);
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int mcu_write_dr_u16(jtag_tap_t *tap, u16 *ir_in, u16 ir_out, int dr_len, int rti);
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int mcu_write_ir_u32(jtag_tap_t *tap, u32 *ir_in, u32 ir_out, int ir_len, int rti);
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int mcu_write_dr_u32(jtag_tap_t *tap, u32 *ir_in, u32 ir_out, int dr_len, int rti);
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int mcu_execute_queue(void);
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target_type_t avr_target =
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{
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.name = "avr",
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.poll = avr_poll,
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.arch_state = avr_arch_state,
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.target_request_data = NULL,
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.halt = avr_halt,
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.resume = avr_resume,
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.step = avr_step,
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.assert_reset = avr_assert_reset,
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.deassert_reset = avr_deassert_reset,
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.soft_reset_halt = avr_soft_reset_halt,
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/*
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.get_gdb_reg_list = avr_get_gdb_reg_list,
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.read_memory = avr_read_memory,
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.write_memory = avr_write_memory,
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.bulk_write_memory = avr_bulk_write_memory,
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.checksum_memory = avr_checksum_memory,
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.blank_check_memory = avr_blank_check_memory,
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.run_algorithm = avr_run_algorithm,
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.add_breakpoint = avr_add_breakpoint,
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.remove_breakpoint = avr_remove_breakpoint,
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.add_watchpoint = avr_add_watchpoint,
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.remove_watchpoint = avr_remove_watchpoint,
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*/
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.register_commands = avr_register_commands,
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.target_create = avr_target_create,
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.init_target = avr_init_target,
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.quit = avr_quit,
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/*
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.virt2phys = avr_virt2phys,
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.mmu = avr_mmu
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*/
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};
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int avr_register_commands(struct command_context_s *cmd_ctx)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_target_create(struct target_s *target, Jim_Interp *interp)
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{
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avr_common_t *avr = calloc(1, sizeof(avr_common_t));
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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avr->jtag_info.tap = target->tap;
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target->arch_info = avr;
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_init_target(struct command_context_s *cmd_ctx, struct target_s *target)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_quit(void)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_arch_state(struct target_s *target)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_poll(target_t *target)
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{
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if ((target->state == TARGET_RUNNING) || (target->state == TARGET_DEBUG_RUNNING))
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{
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target->state = TARGET_HALTED;
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}
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2009-05-08 04:48:00 -05:00
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_halt(target_t *target)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_resume(struct target_s *target, int current, u32 address, int handle_breakpoints, int debug_execution)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_step(struct target_s *target, int current, u32 address, int handle_breakpoints)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_assert_reset(target_t *target)
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{
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target->state = TARGET_RESET;
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2009-05-08 04:48:00 -05:00
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_deassert_reset(target_t *target)
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{
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target->state = TARGET_RUNNING;
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2009-05-08 04:48:00 -05:00
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_soft_reset_halt(struct target_s *target)
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{
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2009-05-03 10:10:16 -05:00
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LOG_DEBUG("%s", __FUNCTION__);
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int avr_jtag_senddat(jtag_tap_t *tap, u32* dr_in, u32 dr_out, int len)
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{
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return mcu_write_dr_u32(tap, dr_in, dr_out, len, 1);
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}
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int avr_jtag_sendinstr(jtag_tap_t *tap, u8 *ir_in, u8 ir_out)
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{
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return mcu_write_ir_u8(tap, ir_in, ir_out, AVR_JTAG_INS_LEN, 1);
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}
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/* IR and DR functions */
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int mcu_write_ir(jtag_tap_t *tap, u8 *ir_in, u8 *ir_out, int ir_len, int rti)
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{
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if (NULL == tap)
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{
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LOG_ERROR("invalid tap");
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return ERROR_FAIL;
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}
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if (ir_len != tap->ir_length)
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{
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LOG_ERROR("invalid ir_len");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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{
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scan_field_t field[1];
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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field[0].tap = tap;
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field[0].num_bits = tap->ir_length;
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field[0].out_value = ir_out;
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field[0].in_value = ir_in;
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2009-06-04 08:18:07 -05:00
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jtag_add_plain_ir_scan(sizeof(field) / sizeof(field[0]), field, jtag_set_end_state(TAP_IDLE));
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2009-04-27 14:35:31 -05:00
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_dr(jtag_tap_t *tap, u8 *dr_in, u8 *dr_out, int dr_len, int rti)
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{
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if (NULL == tap)
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{
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LOG_ERROR("invalid tap");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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{
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scan_field_t field[1];
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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field[0].tap = tap;
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field[0].num_bits = dr_len;
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field[0].out_value = dr_out;
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field[0].in_value = dr_in;
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2009-06-04 08:18:07 -05:00
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jtag_add_plain_dr_scan(sizeof(field) / sizeof(field[0]), field, jtag_set_end_state(TAP_IDLE));
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2009-04-27 14:35:31 -05:00
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_ir_u8(jtag_tap_t *tap, u8 *ir_in, u8 ir_out, int ir_len, int rti)
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{
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if (ir_len > 8)
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{
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LOG_ERROR("ir_len overflow, maxium is 8");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_ir(tap, ir_in, &ir_out, ir_len, rti);
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_dr_u8(jtag_tap_t *tap, u8 *dr_in, u8 dr_out, int dr_len, int rti)
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{
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if (dr_len > 8)
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{
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LOG_ERROR("dr_len overflow, maxium is 8");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_dr(tap, dr_in, &dr_out, dr_len, rti);
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_ir_u16(jtag_tap_t *tap, u16 *ir_in, u16 ir_out, int ir_len, int rti)
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{
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if (ir_len > 16)
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{
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LOG_ERROR("ir_len overflow, maxium is 16");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_ir(tap, (u8*)ir_in, (u8*)&ir_out, ir_len, rti);
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_dr_u16(jtag_tap_t *tap, u16 *dr_in, u16 dr_out, int dr_len, int rti)
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{
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if (dr_len > 16)
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{
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LOG_ERROR("dr_len overflow, maxium is 16");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_dr(tap, (u8*)dr_in, (u8*)&dr_out, dr_len, rti);
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_ir_u32(jtag_tap_t *tap, u32 *ir_in, u32 ir_out, int ir_len, int rti)
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{
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if (ir_len > 32)
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{
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LOG_ERROR("ir_len overflow, maxium is 32");
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return ERROR_FAIL;
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}
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_ir(tap, (u8*)ir_in, (u8*)&ir_out, ir_len, rti);
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2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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return ERROR_OK;
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}
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int mcu_write_dr_u32(jtag_tap_t *tap, u32 *dr_in, u32 dr_out, int dr_len, int rti)
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|
|
|
{
|
|
|
|
if (dr_len > 32)
|
|
|
|
{
|
|
|
|
LOG_ERROR("dr_len overflow, maxium is 32");
|
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|
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return ERROR_FAIL;
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}
|
2009-05-08 04:48:00 -05:00
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2009-04-27 14:35:31 -05:00
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mcu_write_dr(tap, (u8*)dr_in, (u8*)&dr_out, dr_len, rti);
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2009-05-08 04:48:00 -05:00
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|
|
2009-04-27 14:35:31 -05:00
|
|
|
return ERROR_OK;
|
|
|
|
}
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|
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|
|
|
int mcu_execute_queue(void)
|
|
|
|
{
|
|
|
|
return jtag_execute_queue();
|
|
|
|
}
|