Mesh export in Bilinear + UBL M503
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@ -44,6 +44,28 @@
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SERIAL_PROTOCOLPGM_P(port, "Unified Bed Leveling");
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SERIAL_PROTOCOLPGM_P(port, "Unified Bed Leveling");
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}
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}
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void unified_bed_leveling::report_current_mesh(
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#if NUM_SERIAL > 1
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const int8_t port/*= -1*/
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#endif
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) {
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if (!leveling_is_valid()) return;
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SERIAL_ECHO_START_P(port);
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SERIAL_ECHOLNPGM_P(port, " G29 I 999");
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for (uint8_t x = 0; x < GRID_MAX_POINTS_X; x++)
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for (uint8_t y = 0; y < GRID_MAX_POINTS_Y; y++)
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if (!isnan(z_values[x][y])) {
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SERIAL_ECHO_START_P(port);
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SERIAL_ECHOPAIR_P(port, " M421 I", x);
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SERIAL_ECHOPAIR_P(port, " J", y);
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SERIAL_ECHOPGM_P(port, " Z");
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SERIAL_ECHO_F_P(port, z_values[x][y], 6);
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SERIAL_ECHOPAIR_P(port, " ; X", LOGICAL_X_POSITION(mesh_index_to_xpos(x)));
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SERIAL_ECHOPAIR_P(port, ", Y", LOGICAL_Y_POSITION(mesh_index_to_ypos(y)));
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SERIAL_EOL_P(port);
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}
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}
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void unified_bed_leveling::report_state(
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void unified_bed_leveling::report_state(
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#if NUM_SERIAL > 1
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#if NUM_SERIAL > 1
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const int8_t port/*= -1*/
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const int8_t port/*= -1*/
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@ -107,6 +107,11 @@ class unified_bed_leveling {
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const int8_t port = -1
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const int8_t port = -1
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#endif
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#endif
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);
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);
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static void report_current_mesh(
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#if NUM_SERIAL > 1
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const int8_t port = -1
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#endif
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);
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static void report_state(
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static void report_state(
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#if NUM_SERIAL > 1
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#if NUM_SERIAL > 1
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const int8_t port = -1
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const int8_t port = -1
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@ -600,21 +600,8 @@
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if (parser.seen('S')) { // Store (or Save) Current Mesh Data
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if (parser.seen('S')) { // Store (or Save) Current Mesh Data
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g29_storage_slot = parser.has_value() ? parser.value_int() : storage_slot;
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g29_storage_slot = parser.has_value() ? parser.value_int() : storage_slot;
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if (g29_storage_slot == -1) { // Special case, we are going to 'Export' the mesh to the
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if (g29_storage_slot == -1) // Special case, we are going to 'Export' the mesh to the
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SERIAL_ECHOLNPGM("G29 I 999"); // host in a form it can be reconstructed on a different machine
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return report_current_mesh();
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for (uint8_t x = 0; x < GRID_MAX_POINTS_X; x++)
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for (uint8_t y = 0; y < GRID_MAX_POINTS_Y; y++)
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if (!isnan(z_values[x][y])) {
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SERIAL_ECHOPAIR("M421 I ", x);
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SERIAL_ECHOPAIR(" J ", y);
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SERIAL_ECHOPGM(" Z ");
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SERIAL_ECHO_F(z_values[x][y], 6);
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SERIAL_ECHOPAIR(" ; X ", LOGICAL_X_POSITION(mesh_index_to_xpos(x)));
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SERIAL_ECHOPAIR(", Y ", LOGICAL_Y_POSITION(mesh_index_to_ypos(y)));
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SERIAL_EOL();
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}
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return;
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}
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int16_t a = settings.calc_num_meshes();
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int16_t a = settings.calc_num_meshes();
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@ -2098,14 +2098,16 @@ void MarlinSettings::reset(
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#if ENABLED(MESH_BED_LEVELING)
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#if ENABLED(MESH_BED_LEVELING)
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for (uint8_t py = 0; py < GRID_MAX_POINTS_Y; py++) {
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if (leveling_is_valid()) {
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for (uint8_t px = 0; px < GRID_MAX_POINTS_X; px++) {
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for (uint8_t py = 0; py < GRID_MAX_POINTS_Y; py++) {
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CONFIG_ECHO_START;
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for (uint8_t px = 0; px < GRID_MAX_POINTS_X; px++) {
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SERIAL_ECHOPAIR_P(port, " G29 S3 X", (int)px + 1);
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CONFIG_ECHO_START;
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SERIAL_ECHOPAIR_P(port, " Y", (int)py + 1);
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SERIAL_ECHOPAIR_P(port, " G29 S3 X", (int)px + 1);
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SERIAL_ECHOPGM_P(port, " Z");
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SERIAL_ECHOPAIR_P(port, " Y", (int)py + 1);
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SERIAL_PROTOCOL_F_P(port, LINEAR_UNIT(mbl.z_values[px][py]), 5);
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SERIAL_ECHOPGM_P(port, " Z");
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SERIAL_EOL_P(port);
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SERIAL_PROTOCOL_F_P(port, LINEAR_UNIT(mbl.z_values[px][py]), 5);
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SERIAL_EOL_P(port);
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}
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}
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}
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}
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}
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@ -2119,6 +2121,27 @@ void MarlinSettings::reset(
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SERIAL_ECHOLNPGM_P(port, " meshes.\n");
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SERIAL_ECHOLNPGM_P(port, " meshes.\n");
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}
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}
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ubl.report_current_mesh(
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#if ADD_PORT_ARG
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port
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#endif
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);
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#elif ENABLED(AUTO_BED_LEVELING_BILINEAR)
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if (leveling_is_valid()) {
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for (uint8_t py = 0; py < GRID_MAX_POINTS_Y; py++) {
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for (uint8_t px = 0; px < GRID_MAX_POINTS_X; px++) {
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CONFIG_ECHO_START;
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SERIAL_ECHOPAIR_P(port, " G29 W I", (int)px + 1);
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SERIAL_ECHOPAIR_P(port, " J", (int)py + 1);
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SERIAL_ECHOPGM_P(port, " Z");
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SERIAL_PROTOCOL_F_P(port, LINEAR_UNIT(z_values[px][py]), 5);
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SERIAL_EOL_P(port);
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}
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}
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}
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#endif
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#endif
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#endif // HAS_LEVELING
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#endif // HAS_LEVELING
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