Track spindle direction in set-spindle events
This commit is contained in:
@@ -59,6 +59,7 @@ The first useful target is:
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- 已有五轴 RTCP 第一版几何内核,可根据编程刀尖点、A/B/C 姿态和刀长计算枢轴/主轴点补偿位置。
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- 已有坐标系事件回归语料,覆盖 `G10 L2`、`G10 L20` 的 G5X/XY 旋转事件和 `G92.1` 清零事件。
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- 已有探针事件回归语料,LinuxCNC `G38.3` 会输出独立 `probe` 事件,不再混作普通直线进给。
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- 已有主轴方向状态回归语料,`M3/M4/M5` 会通过 `set-spindle.reserved` 输出 `1=顺时针`、`2=逆时针`、`0=停止`。
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- LinuxCNC Canon bridge 会把当前解释行号补到没有自带 `lineno` 的回调事件上,方便 Web 端诊断和源码高亮。
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- 下一步是继续替换源码级链接中残留的 Python、INI/HAL、文件系统和动态加载依赖,并把 RTCP 内核接入 canon 事件流和机型配置。
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@@ -78,6 +79,7 @@ The first useful target is:
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- LinuxCNC RS274 源文件语法探针和对象编译探针
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- LinuxCNC RS274 源码级链接 smoke
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- 五轴 RTCP 几何内核 smoke
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- `M3` / `M4` / `M5` 主轴方向事件回归
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- `G10 L2` / `G10 L20` / `G92.1` 坐标系事件回归
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- `G38.3` 探针事件回归
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@@ -8,6 +8,7 @@ void CanonEventSink::reset() {
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unit_scale_ = 1.0;
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feed_ = 0.0;
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spindle_ = 0.0;
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spindle_direction_ = 0;
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selected_tool_ = 0;
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callback_status_ = 0;
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kinematics_type_ = 1;
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@@ -114,6 +115,23 @@ void CanonEventSink::set_spindle_speed(double spindle, int line) {
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spindle_ = spindle;
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CncSimEvent event = base_event(CNC_SIM_EVENT_SET_SPINDLE, line);
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event.spindle = spindle_;
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event.reserved = spindle_direction_;
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emit(event);
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}
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void CanonEventSink::start_spindle(int direction, int line) {
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spindle_direction_ = direction < 0 ? 2 : 1;
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CncSimEvent event = base_event(CNC_SIM_EVENT_SET_SPINDLE, line);
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event.spindle = spindle_;
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event.reserved = spindle_direction_;
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emit(event);
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}
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void CanonEventSink::stop_spindle(int line) {
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spindle_direction_ = 0;
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CncSimEvent event = base_event(CNC_SIM_EVENT_SET_SPINDLE, line);
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event.spindle = 0.0;
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event.reserved = spindle_direction_;
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emit(event);
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}
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@@ -201,6 +219,10 @@ double CanonEventSink::spindle_speed() const {
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return spindle_;
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}
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int CanonEventSink::spindle_direction() const {
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return spindle_direction_;
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}
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int CanonEventSink::selected_tool() const {
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return selected_tool_;
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}
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@@ -22,6 +22,8 @@ public:
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void select_plane(int plane, int line);
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void set_feed_rate(double feed, int line);
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void set_spindle_speed(double spindle, int line);
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void start_spindle(int direction, int line);
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void stop_spindle(int line);
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void select_tool(int tool);
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void change_tool(int line);
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void straight_traverse(int line, const CncSimPose &end);
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@@ -37,6 +39,7 @@ public:
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double unit_scale() const;
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double feed_rate() const;
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double spindle_speed() const;
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int spindle_direction() const;
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int selected_tool() const;
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int kinematics_type() const;
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bool rtcp_enabled() const;
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@@ -55,6 +58,7 @@ private:
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double unit_scale_ = 1.0;
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double feed_ = 0.0;
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double spindle_ = 0.0;
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int spindle_direction_ = 0;
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int selected_tool_ = 0;
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bool rtcp_enabled_ = false;
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double default_rtcp_tool_length_ = 0.0;
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@@ -355,14 +355,20 @@ void SPINDLE_RETRACT_TRAVERSE() {
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}
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void START_SPINDLE_CLOCKWISE(int, int) {
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if (active_sink) {
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active_sink->start_spindle(1, event_line());
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}
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}
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void START_SPINDLE_COUNTERCLOCKWISE(int, int) {
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if (active_sink) {
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active_sink->start_spindle(-1, event_line());
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}
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}
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void STOP_SPINDLE_TURNING(int) {
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if (active_sink) {
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active_sink->set_spindle_speed(0.0, 0);
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active_sink->stop_spindle(event_line());
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}
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}
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@@ -621,7 +627,16 @@ double GET_EXTERNAL_SPEED(int) {
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}
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CANON_DIRECTION GET_EXTERNAL_SPINDLE(int) {
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return active_sink && active_sink->spindle_speed() != 0.0 ? CANON_CLOCKWISE : CANON_STOPPED;
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if (!active_sink) {
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return CANON_STOPPED;
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}
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if (active_sink->spindle_direction() == 1) {
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return CANON_CLOCKWISE;
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}
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if (active_sink->spindle_direction() == 2) {
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return CANON_COUNTERCLOCKWISE;
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}
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return CANON_STOPPED;
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}
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double GET_EXTERNAL_TOOL_LENGTH_XOFFSET() { return 0.0; }
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@@ -336,8 +336,18 @@ int SmokeGcodeParser::parse(const char *program, size_t program_len, std::string
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bool program_end = false;
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for (int m : m_codes) {
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if (m == 3 || m == 4 || m == 5) {
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sink_.set_spindle_speed(m == 5 ? 0.0 : sink_.spindle_speed(), line_number);
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if (m == 3) {
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sink_.start_spindle(1, line_number);
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if (stop_if_callback_aborted(sink_, error)) {
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return -1;
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}
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} else if (m == 4) {
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sink_.start_spindle(-1, line_number);
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if (stop_if_callback_aborted(sink_, error)) {
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return -1;
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}
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} else if (m == 5) {
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sink_.stop_spindle(line_number);
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if (stop_if_callback_aborted(sink_, error)) {
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return -1;
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}
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@@ -73,6 +73,9 @@ int main() {
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bool saw_l20_end_line = false;
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bool saw_probe = false;
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bool saw_probe_as_feed = false;
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bool saw_spindle_cw = false;
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bool saw_spindle_ccw = false;
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bool saw_spindle_stop = false;
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for (const auto &event : events) {
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saw_tool = saw_tool || event.type == CNC_SIM_EVENT_TOOL_CHANGE;
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saw_rapid = saw_rapid || event.type == CNC_SIM_EVENT_RAPID;
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@@ -121,6 +124,36 @@ int main() {
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ok &= expect(saw_g49, "expected LinuxCNC G49 RTCP off state");
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ok &= expect(saw_g434, "expected LinuxCNC G43.4 RTCP on state with H code");
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const char spindle_program[] =
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"G21 G90 G17\n"
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"S1200 M3\n"
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"M4\n"
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"M5\n"
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"M30\n";
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events.clear();
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ok &= expect(cnc_sim_parse_program(sim, spindle_program, sizeof(spindle_program) - 1) == 0,
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cnc_sim_last_error(sim));
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for (const auto &event : events) {
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saw_spindle_cw = saw_spindle_cw ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 2 &&
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event.spindle == 1200.0 &&
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event.reserved == 1);
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saw_spindle_ccw = saw_spindle_ccw ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 3 &&
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event.spindle == 1200.0 &&
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event.reserved == 2);
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saw_spindle_stop = saw_spindle_stop ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 4 &&
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event.spindle == 0.0 &&
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event.reserved == 0);
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}
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ok &= expect(saw_spindle_cw, "expected LinuxCNC M3 clockwise spindle state");
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ok &= expect(saw_spindle_ccw, "expected LinuxCNC M4 counterclockwise spindle state");
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ok &= expect(saw_spindle_stop, "expected LinuxCNC M5 stopped spindle state");
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const char probe_program[] =
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"G21 G90 G17\n"
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"G0 X0 Y0 Z5\n"
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@@ -67,6 +67,9 @@ int main() {
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bool saw_m430 = false;
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bool saw_g49 = false;
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bool saw_g434 = false;
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bool saw_spindle_cw = false;
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bool saw_spindle_ccw = false;
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bool saw_spindle_stop = false;
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bool saw_incremental_move = false;
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bool saw_r_arc_center = false;
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for (const auto &event : events) {
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@@ -106,6 +109,11 @@ int main() {
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event.feed == 1.0 &&
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event.tool == 7 &&
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event.dwell_seconds == 125.0);
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saw_spindle_cw = saw_spindle_cw ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 6 &&
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event.spindle == 8000.0 &&
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event.reserved == 1);
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saw_incremental_move = saw_incremental_move ||
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(event.type == CNC_SIM_EVENT_LINEAR_FEED &&
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event.start.x == 20.0 && event.end.x == 25.0);
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@@ -127,9 +135,33 @@ int main() {
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ok &= expect(saw_m430, "expected M430 five-axis BC kinematics switch");
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ok &= expect(saw_g49, "expected G49 RTCP off state");
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ok &= expect(saw_g434, "expected G43.4 RTCP on state with H code");
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ok &= expect(saw_spindle_cw, "expected M3 clockwise spindle state");
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ok &= expect(saw_incremental_move, "expected G91 incremental move");
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ok &= expect(saw_r_arc_center, "expected R arc center calculation");
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const char spindle_program[] =
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"G21\n"
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"S1200 M3\n"
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"M4\n"
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"M5\n";
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events.clear();
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ok &= expect(cnc_sim_parse_program(sim, spindle_program, sizeof(spindle_program) - 1) == 0,
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cnc_sim_last_error(sim));
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for (const auto &event : events) {
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saw_spindle_ccw = saw_spindle_ccw ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 3 &&
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event.spindle == 1200.0 &&
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event.reserved == 2);
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saw_spindle_stop = saw_spindle_stop ||
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(event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.line == 4 &&
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event.spindle == 0.0 &&
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event.reserved == 0);
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}
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ok &= expect(saw_spindle_ccw, "expected M4 counterclockwise spindle state");
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ok &= expect(saw_spindle_stop, "expected M5 stopped spindle state");
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const char linuxcnc_config[] = "{\"backend\":\"linuxcnc-rs274\"}";
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config_rc = cnc_sim_load_config_json(sim, linuxcnc_config, sizeof(linuxcnc_config) - 1);
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rc = cnc_sim_parse_program(sim, program, sizeof(program) - 1);
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@@ -34,6 +34,10 @@ int main() {
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USE_LENGTH_UNITS(CANON_UNITS_MM);
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SELECT_PLANE(CANON_PLANE::XY);
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SET_FEED_RATE(500.0);
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SET_SPINDLE_SPEED(0, 1200.0);
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START_SPINDLE_CLOCKWISE(0, 0);
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START_SPINDLE_COUNTERCLOCKWISE(0, 0);
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STOP_SPINDLE_TURNING(0);
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SELECT_TOOL(7);
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CHANGE_TOOL();
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STRAIGHT_TRAVERSE(10, 0.0, 0.0, 5.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0);
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@@ -53,6 +57,9 @@ int main() {
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bool saw_tool = false;
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bool saw_rapid = false;
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bool saw_feed = false;
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bool saw_spindle_cw = false;
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bool saw_spindle_ccw = false;
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bool saw_spindle_stop = false;
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bool saw_arc = false;
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bool saw_probe = false;
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bool saw_g5x = false;
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@@ -61,6 +68,15 @@ int main() {
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bool saw_end = false;
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for (const auto &event : events) {
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saw_tool = saw_tool || (event.type == CNC_SIM_EVENT_TOOL_CHANGE && event.tool == 7);
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saw_spindle_cw = saw_spindle_cw || (event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.spindle == 1200.0 &&
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event.reserved == 1);
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saw_spindle_ccw = saw_spindle_ccw || (event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.spindle == 1200.0 &&
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event.reserved == 2);
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saw_spindle_stop = saw_spindle_stop || (event.type == CNC_SIM_EVENT_SET_SPINDLE &&
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event.spindle == 0.0 &&
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event.reserved == 0);
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saw_rapid = saw_rapid || (event.type == CNC_SIM_EVENT_RAPID && event.end.z == 5.0);
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saw_feed = saw_feed || (event.type == CNC_SIM_EVENT_LINEAR_FEED && event.end.x == 10.0);
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saw_arc = saw_arc || (event.type == CNC_SIM_EVENT_ARC_FEED &&
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@@ -90,6 +106,9 @@ int main() {
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}
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ok &= expect(saw_tool, "expected tool change");
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ok &= expect(saw_spindle_cw, "expected clockwise spindle state");
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ok &= expect(saw_spindle_ccw, "expected counterclockwise spindle state");
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ok &= expect(saw_spindle_stop, "expected stopped spindle state");
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ok &= expect(saw_rapid, "expected rapid move");
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ok &= expect(saw_feed, "expected linear feed");
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ok &= expect(saw_arc, "expected arc feed");
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@@ -37,6 +37,7 @@ cp "$base_var_file" "$var_file"
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/linuxcnc_basic_motion.ngc >/tmp/cnc_sim_linuxcnc_basic_motion.json
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/basic_mill.ngc >/tmp/cnc_sim_linuxcnc_basic_mill.json
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/linuxcnc_rtcp_controls.ngc >/tmp/cnc_sim_linuxcnc_rtcp_controls.json
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/linuxcnc_spindle_direction.ngc >/tmp/cnc_sim_linuxcnc_spindle_direction.json
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/linuxcnc_canned_cycle.ngc >/tmp/cnc_sim_linuxcnc_canned_cycle.json
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CNC_SIM_RS274_VAR="$var_file" "$build_dir/linuxcnc_rs274_dump" tests/gcode/linuxcnc_probe_no_error.ngc >/tmp/cnc_sim_linuxcnc_probe_no_error.json
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cp "$base_var_file" "$var_file"
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@@ -70,6 +71,19 @@ rtcp = [event for event in controls if event["type"] == "rtcp-state"]
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if [(event["line"], event["tool"], event["feed"]) for event in rtcp] != [(3, 0, 0), (4, 7, 1)]:
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raise SystemExit("unexpected RTCP state sequence")
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spindle = json.loads(Path("/tmp/cnc_sim_linuxcnc_spindle_direction.json").read_text())
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spindle_states = [
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(event["line"], event["spindle"], event["reserved"])
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for event in spindle
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if event["type"] == "set-spindle"
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]
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if (2, 1200, 1) not in spindle_states:
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raise SystemExit("missing M3 clockwise spindle state")
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if (3, 1200, 2) not in spindle_states:
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raise SystemExit("missing M4 counterclockwise spindle state")
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if (4, 0, 0) not in spindle_states:
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raise SystemExit("missing M5 stopped spindle state")
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cycle = json.loads(Path("/tmp/cnc_sim_linuxcnc_canned_cycle.json").read_text())
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motions = [event for event in cycle if event["type"] in {"rapid", "linear-feed"}]
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expected_cycle = [
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@@ -141,6 +155,7 @@ echo "linuxcnc rs274 native smoke passed"
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echo "dumped /tmp/cnc_sim_linuxcnc_basic_motion.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_basic_mill.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_rtcp_controls.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_spindle_direction.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_canned_cycle.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_probe_no_error.json"
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echo "dumped /tmp/cnc_sim_linuxcnc_coordinate_offsets.json"
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5
tests/gcode/linuxcnc_spindle_direction.ngc
Normal file
5
tests/gcode/linuxcnc_spindle_direction.ngc
Normal file
@@ -0,0 +1,5 @@
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G21 G90 G17
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S1200 M3
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M4
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M5
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M30
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