serialhdl: Calculate baudadjust from MCU's baud instead of host baud
Store the baud rate the MCU is configured for in the "identify" data and use that rate when calculating the baudadjust parameter. Signed-off-by: Kevin O'Connor <kevin@koconnor.net>
This commit is contained in:
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4988ba9a71
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777a0b817b
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@ -39,8 +39,7 @@ defs_serialqueue = """
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double sent_time, receive_time;
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double sent_time, receive_time;
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};
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};
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struct serialqueue *serialqueue_alloc(int serial_fd, double baud_adjust
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struct serialqueue *serialqueue_alloc(int serial_fd, int write_only);
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, int write_only);
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void serialqueue_exit(struct serialqueue *sq);
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void serialqueue_exit(struct serialqueue *sq);
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struct command_queue *serialqueue_alloc_commandqueue(void);
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struct command_queue *serialqueue_alloc_commandqueue(void);
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void serialqueue_send(struct serialqueue *sq, struct command_queue *cq
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void serialqueue_send(struct serialqueue *sq, struct command_queue *cq
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@ -49,6 +48,7 @@ defs_serialqueue = """
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, struct command_queue *cq, uint32_t *data, int len
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, struct command_queue *cq, uint32_t *data, int len
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, uint64_t min_clock, uint64_t req_clock);
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, uint64_t min_clock, uint64_t req_clock);
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void serialqueue_pull(struct serialqueue *sq, struct pull_queue_message *pqm);
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void serialqueue_pull(struct serialqueue *sq, struct pull_queue_message *pqm);
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void serialqueue_set_baud_adjust(struct serialqueue *sq, double baud_adjust);
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void serialqueue_set_clock_est(struct serialqueue *sq, double est_clock
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void serialqueue_set_clock_est(struct serialqueue *sq, double est_clock
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, double last_ack_time, uint64_t last_ack_clock);
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, double last_ack_time, uint64_t last_ack_clock);
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void serialqueue_flush_ready(struct serialqueue *sq);
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void serialqueue_flush_ready(struct serialqueue *sq);
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@ -9,7 +9,7 @@ import serial
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import msgproto, chelper
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import msgproto, chelper
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class SerialReader:
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class SerialReader:
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BITS_PER_BYTE = 10
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BITS_PER_BYTE = 10.
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def __init__(self, reactor, serialport, baud):
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def __init__(self, reactor, serialport, baud):
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self.reactor = reactor
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self.reactor = reactor
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self.serialport = serialport
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self.serialport = serialport
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@ -60,22 +60,17 @@ class SerialReader:
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logging.info("Starting serial connect")
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logging.info("Starting serial connect")
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self.ser = serial.Serial(self.serialport, self.baud, timeout=0)
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self.ser = serial.Serial(self.serialport, self.baud, timeout=0)
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stk500v2_leave(self.ser)
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stk500v2_leave(self.ser)
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baud_adjust = float(self.BITS_PER_BYTE) / self.baud
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self.serialqueue = self.ffi_lib.serialqueue_alloc(self.ser.fileno(), 0)
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self.serialqueue = self.ffi_lib.serialqueue_alloc(
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self.ser.fileno(), baud_adjust, 0)
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SerialBootStrap(self)
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SerialBootStrap(self)
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self.background_thread = threading.Thread(target=self._bg_thread)
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self.background_thread = threading.Thread(target=self._bg_thread)
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self.background_thread.start()
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self.background_thread.start()
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def connect_file(self, debugoutput, dictionary, pace=False):
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def connect_file(self, debugoutput, dictionary, pace=False):
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self.ser = debugoutput
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self.ser = debugoutput
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self.msgparser.process_identify(dictionary, decompress=False)
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self.msgparser.process_identify(dictionary, decompress=False)
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baud_adjust = 0.
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est_clock = 1000000000000.
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est_clock = 1000000000000.
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if pace:
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if pace:
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baud_adjust = float(self.BITS_PER_BYTE) / self.baud
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est_clock = self.msgparser.config['CLOCK_FREQ']
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est_clock = self.msgparser.config['CLOCK_FREQ']
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self.serialqueue = self.ffi_lib.serialqueue_alloc(
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self.serialqueue = self.ffi_lib.serialqueue_alloc(self.ser.fileno(), 1)
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self.ser.fileno(), baud_adjust, 1)
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self.est_clock = est_clock
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self.est_clock = est_clock
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self.last_ack_time = time.time()
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self.last_ack_time = time.time()
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self.last_ack_clock = 0
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self.last_ack_clock = 0
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@ -241,6 +236,11 @@ class SerialBootStrap:
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logging.info("MCU version: %s" % (self.serial.msgparser.version,))
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logging.info("MCU version: %s" % (self.serial.msgparser.version,))
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self.serial.unregister_callback('identify_response')
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self.serial.unregister_callback('identify_response')
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self.serial.register_callback(self.serial.handle_unknown, '#unknown')
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self.serial.register_callback(self.serial.handle_unknown, '#unknown')
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mcu_baud = float(self.serial.msgparser.config.get('SERIAL_BAUD', 0.))
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if mcu_baud:
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baud_adjust = self.serial.BITS_PER_BYTE / mcu_baud
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self.serial.ffi_lib.serialqueue_set_baud_adjust(
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self.serial.serialqueue, baud_adjust)
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get_status = self.serial.msgparser.lookup_command('get_status')
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get_status = self.serial.msgparser.lookup_command('get_status')
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self.serial.status_cmd = get_status.encode()
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self.serial.status_cmd = get_status.encode()
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with self.serial.lock:
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with self.serial.lock:
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@ -770,11 +770,10 @@ background_thread(void *data)
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// Create a new 'struct serialqueue' object
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// Create a new 'struct serialqueue' object
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struct serialqueue *
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struct serialqueue *
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serialqueue_alloc(int serial_fd, double baud_adjust, int write_only)
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serialqueue_alloc(int serial_fd, int write_only)
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{
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{
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struct serialqueue *sq = malloc(sizeof(*sq));
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struct serialqueue *sq = malloc(sizeof(*sq));
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memset(sq, 0, sizeof(*sq));
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memset(sq, 0, sizeof(*sq));
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sq->baud_adjust = baud_adjust;
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// Reactor setup
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// Reactor setup
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sq->serial_fd = serial_fd;
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sq->serial_fd = serial_fd;
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@ -961,6 +960,14 @@ exit:
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pthread_mutex_unlock(&sq->lock);
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pthread_mutex_unlock(&sq->lock);
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}
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}
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void
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serialqueue_set_baud_adjust(struct serialqueue *sq, double baud_adjust)
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{
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pthread_mutex_lock(&sq->lock);
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sq->baud_adjust = baud_adjust;
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pthread_mutex_unlock(&sq->lock);
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}
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// Set the estimated clock rate of the mcu on the other end of the
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// Set the estimated clock rate of the mcu on the other end of the
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// serial port
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// serial port
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void
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void
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@ -43,8 +43,7 @@ struct pull_queue_message {
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};
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};
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struct serialqueue;
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struct serialqueue;
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struct serialqueue *serialqueue_alloc(int serial_fd, double baud_adjust
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struct serialqueue *serialqueue_alloc(int serial_fd, int write_only);
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, int write_only);
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void serialqueue_exit(struct serialqueue *sq);
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void serialqueue_exit(struct serialqueue *sq);
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struct command_queue *serialqueue_alloc_commandqueue(void);
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struct command_queue *serialqueue_alloc_commandqueue(void);
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void serialqueue_send_batch(struct serialqueue *sq, struct command_queue *cq
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void serialqueue_send_batch(struct serialqueue *sq, struct command_queue *cq
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@ -56,6 +55,7 @@ void serialqueue_encode_and_send(struct serialqueue *sq, struct command_queue *c
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, uint32_t *data, int len
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, uint32_t *data, int len
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, uint64_t min_clock, uint64_t req_clock);
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, uint64_t min_clock, uint64_t req_clock);
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void serialqueue_pull(struct serialqueue *sq, struct pull_queue_message *pqm);
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void serialqueue_pull(struct serialqueue *sq, struct pull_queue_message *pqm);
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void serialqueue_set_baud_adjust(struct serialqueue *sq, double baud_adjust);
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void serialqueue_set_clock_est(struct serialqueue *sq, double est_clock
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void serialqueue_set_clock_est(struct serialqueue *sq, double est_clock
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, double last_ack_time, uint64_t last_ack_clock);
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, double last_ack_time, uint64_t last_ack_clock);
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void serialqueue_flush_ready(struct serialqueue *sq);
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void serialqueue_flush_ready(struct serialqueue *sq);
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@ -153,7 +153,7 @@ def build_identify(cmd_by_id, msg_to_id, responses, static_strings
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data['commands'] = sorted(cmd_by_id.keys())
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data['commands'] = sorted(cmd_by_id.keys())
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data['responses'] = sorted(responses)
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data['responses'] = sorted(responses)
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data['static_strings'] = static_strings
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data['static_strings'] = static_strings
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configlist = ['MCU', 'CLOCK_FREQ']
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configlist = ['MCU', 'CLOCK_FREQ', 'SERIAL_BAUD']
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data['config'] = dict((i, config['CONFIG_'+i]) for i in configlist
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data['config'] = dict((i, config['CONFIG_'+i]) for i in configlist
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if 'CONFIG_'+i in config)
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if 'CONFIG_'+i in config)
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data['version'] = version
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data['version'] = version
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