stepcompress: Move stepcompress_push_* functions to their own section
This is only code movement; no code changes. Signed-off-by: Kevin O'Connor <kevin@koconnor.net>
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@ -16,6 +16,10 @@ defs_stepcompress = """
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, uint32_t queue_step_msgid, uint32_t set_next_step_dir_msgid
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, uint32_t invert_sdir, uint32_t oid);
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void stepcompress_free(struct stepcompress *sc);
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int stepcompress_reset(struct stepcompress *sc, uint64_t last_step_clock);
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int stepcompress_set_homing(struct stepcompress *sc, uint64_t homing_clock);
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int stepcompress_queue_msg(struct stepcompress *sc, uint32_t *data, int len);
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int stepcompress_push(struct stepcompress *sc, double step_clock
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, int32_t sdir);
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int32_t stepcompress_push_factor(struct stepcompress *sc
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@ -32,9 +36,6 @@ defs_stepcompress = """
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, double clock_offset, double dist, double start_pos
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, double accel_multiplier, double step_dist, double height
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, double closestxy_d, double closest_height2, double movez_r);
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int stepcompress_reset(struct stepcompress *sc, uint64_t last_step_clock);
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int stepcompress_set_homing(struct stepcompress *sc, uint64_t homing_clock);
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int stepcompress_queue_msg(struct stepcompress *sc, uint32_t *data, int len);
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struct steppersync *steppersync_alloc(struct serialqueue *sq
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, struct stepcompress **sc_list, int sc_num, int move_num);
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@ -275,22 +275,6 @@ check_line(struct stepcompress *sc, struct step_move move)
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* Step compress interface
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****************************************************************/
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#define likely(x) __builtin_expect(!!(x), 1)
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// Wrapper around sqrt() to handle small negative numbers
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static double
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_safe_sqrt(double v)
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{
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// Due to floating point truncation, it's possible to get a small
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// negative number - treat it as zero.
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if (v < -0.001)
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errorf("safe_sqrt of %.9f", v);
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return 0.;
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}
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static inline double safe_sqrt(double v) {
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return likely(v >= 0.) ? sqrt(v) : _safe_sqrt(v);
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}
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// Allocate a new 'stepcompress' object
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struct stepcompress *
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stepcompress_alloc(uint32_t max_error, uint32_t queue_step_msgid
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@ -378,6 +362,8 @@ set_next_step_dir(struct stepcompress *sc, int sdir)
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return 0;
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}
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#define likely(x) __builtin_expect(!!(x), 1)
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// Check if the internal queue needs to be expanded, and expand if so
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static int
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_check_expand(struct stepcompress *sc, uint64_t *qn)
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@ -405,6 +391,62 @@ check_expand(struct stepcompress *sc, uint64_t **pqn, uint64_t **pqend)
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return 0;
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}
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// Reset the internal state of the stepcompress object
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int
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stepcompress_reset(struct stepcompress *sc, uint64_t last_step_clock)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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sc->last_step_clock = last_step_clock;
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sc->sdir = -1;
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return 0;
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}
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// Indicate the stepper is in homing mode (or done homing if zero)
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int
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stepcompress_set_homing(struct stepcompress *sc, uint64_t homing_clock)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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sc->homing_clock = homing_clock;
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return 0;
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}
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// Queue an mcu command to go out in order with stepper commands
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int
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stepcompress_queue_msg(struct stepcompress *sc, uint32_t *data, int len)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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struct queue_message *qm = message_alloc_and_encode(data, len);
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qm->req_clock = sc->homing_clock ?: sc->last_step_clock;
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list_add_tail(&qm->node, &sc->msg_queue);
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return 0;
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}
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/****************************************************************
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* Motion to step conversions
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****************************************************************/
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// Wrapper around sqrt() to handle small negative numbers
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static double
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_safe_sqrt(double v)
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{
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// Due to floating point truncation, it's possible to get a small
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// negative number - treat it as zero.
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if (v < -0.001)
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errorf("safe_sqrt of %.9f", v);
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return 0.;
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}
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static inline double safe_sqrt(double v) {
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return likely(v >= 0.) ? sqrt(v) : _safe_sqrt(v);
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}
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// Schedule a step event at the specified step_clock time
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int
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stepcompress_push(struct stepcompress *sc, double step_clock, int32_t sdir)
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@ -625,43 +667,6 @@ stepcompress_push_delta_accel(
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return res;
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}
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// Reset the internal state of the stepcompress object
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int
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stepcompress_reset(struct stepcompress *sc, uint64_t last_step_clock)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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sc->last_step_clock = last_step_clock;
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sc->sdir = -1;
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return 0;
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}
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// Indicate the stepper is in homing mode (or done homing if zero)
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int
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stepcompress_set_homing(struct stepcompress *sc, uint64_t homing_clock)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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sc->homing_clock = homing_clock;
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return 0;
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}
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// Queue an mcu command to go out in order with stepper commands
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int
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stepcompress_queue_msg(struct stepcompress *sc, uint32_t *data, int len)
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{
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int ret = stepcompress_flush(sc, UINT64_MAX);
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if (ret)
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return ret;
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struct queue_message *qm = message_alloc_and_encode(data, len);
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qm->req_clock = sc->homing_clock ?: sc->last_step_clock;
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list_add_tail(&qm->node, &sc->msg_queue);
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return 0;
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}
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/****************************************************************
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* Step compress synchronization
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