Setup el2008
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@@ -38,9 +38,6 @@ static ec_master_state_t master_state = {};
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static ec_domain_t *domain1 = NULL;
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static ec_domain_state_t domain1_state = {};
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static ec_slave_config_t *sc_ana_in = NULL;
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static ec_slave_config_state_t sc_ana_in_state = {};
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/****************************************************************************/
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// process data
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@@ -52,23 +49,13 @@ static uint8_t *domain1_pd = NULL;
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#define AnaOutSlavePos 0, 4
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#define Beckhoff_EK1100 0x00000002, 0x044c2c52
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#define Beckhoff_EL2004 0x00000002, 0x07d43052
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#define Beckhoff_EL2032 0x00000002, 0x07f03052
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#define Beckhoff_EL3152 0x00000002, 0x0c503052
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#define Beckhoff_EL3102 0x00000002, 0x0c1e3052
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#define Beckhoff_EL4102 0x00000002, 0x10063052
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#define Beckhoff_EL2008 0x00000002, 0x07d43052
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// offsets for PDO entries
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static unsigned int off_ana_in_status;
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static unsigned int off_ana_in_value;
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static unsigned int off_ana_out;
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static unsigned int off_dig_out;
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const static ec_pdo_entry_reg_t domain1_regs[] = {
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{AnaInSlavePos, Beckhoff_EL3102, 0x3101, 1, &off_ana_in_status},
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{AnaInSlavePos, Beckhoff_EL3102, 0x3101, 2, &off_ana_in_value},
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{AnaOutSlavePos, Beckhoff_EL4102, 0x3001, 1, &off_ana_out},
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{DigOutSlavePos, Beckhoff_EL2032, 0x3001, 1, &off_dig_out},
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{DigOutSlavePos, Beckhoff_EL2008, 0x3001, 1, &off_dig_out},
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{}
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};
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@@ -77,65 +64,32 @@ static unsigned int blink = 0;
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/*****************************************************************************/
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// Analog in --------------------------
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static ec_pdo_entry_info_t el3102_pdo_entries[] = {
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{0x3101, 1, 8}, // channel 1 status
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{0x3101, 2, 16}, // channel 1 value
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{0x3102, 1, 8}, // channel 2 status
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{0x3102, 2, 16}, // channel 2 value
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{0x6401, 1, 16}, // channel 1 value (alt.)
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{0x6401, 2, 16} // channel 2 value (alt.)
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};
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static ec_pdo_info_t el3102_pdos[] = {
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{0x1A00, 2, el3102_pdo_entries},
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{0x1A01, 2, el3102_pdo_entries + 2}
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};
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static ec_sync_info_t el3102_syncs[] = {
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{2, EC_DIR_OUTPUT},
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{3, EC_DIR_INPUT, 2, el3102_pdos},
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{0xff}
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};
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// Analog out -------------------------
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static ec_pdo_entry_info_t el4102_pdo_entries[] = {
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{0x3001, 1, 16}, // channel 1 value
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{0x3002, 1, 16}, // channel 2 value
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};
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static ec_pdo_info_t el4102_pdos[] = {
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{0x1600, 1, el4102_pdo_entries},
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{0x1601, 1, el4102_pdo_entries + 1}
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};
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static ec_sync_info_t el4102_syncs[] = {
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{2, EC_DIR_OUTPUT, 2, el4102_pdos},
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{3, EC_DIR_INPUT},
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{0xff}
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};
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// Digital out ------------------------
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static ec_pdo_entry_info_t el2004_channels[] = {
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{0x3001, 1, 1}, // Value 1
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{0x3001, 2, 1}, // Value 2
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{0x3001, 3, 1}, // Value 3
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{0x3001, 4, 1} // Value 4
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static ec_pdo_entry_info_t el2008_pdo_entries[] = {
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{0x7000, 0x01, 1}, /* Output */
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{0x7010, 0x01, 1}, /* Output */
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{0x7020, 0x01, 1}, /* Output */
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{0x7030, 0x01, 1}, /* Output */
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{0x7040, 0x01, 1}, /* Output */
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{0x7050, 0x01, 1}, /* Output */
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{0x7060, 0x01, 1}, /* Output */
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{0x7070, 0x01, 1}, /* Output */
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};
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static ec_pdo_info_t el2004_pdos[] = {
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{0x1600, 1, &el2004_channels[0]},
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{0x1601, 1, &el2004_channels[1]},
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{0x1602, 1, &el2004_channels[2]},
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{0x1603, 1, &el2004_channels[3]}
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static ec_pdo_info_t el2008_pdos[] = {
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{0x1600, 1, el2008_pdo_entries + 0}, /* Channel 1 */
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{0x1601, 1, el2008_pdo_entries + 1}, /* Channel 2 */
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{0x1602, 1, el2008_pdo_entries + 2}, /* Channel 3 */
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{0x1603, 1, el2008_pdo_entries + 3}, /* Channel 4 */
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{0x1604, 1, el2008_pdo_entries + 4}, /* Channel 5 */
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{0x1605, 1, el2008_pdo_entries + 5}, /* Channel 6 */
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{0x1606, 1, el2008_pdo_entries + 6}, /* Channel 7 */
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{0x1607, 1, el2008_pdo_entries + 7}, /* Channel 8 */
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};
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static ec_sync_info_t el2004_syncs[] = {
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{0, EC_DIR_OUTPUT, 4, el2004_pdos},
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{1, EC_DIR_INPUT},
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static ec_sync_info_t el2008_syncs[] = {
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{0, EC_DIR_OUTPUT, 8, el2008_pdos + 0, EC_WD_ENABLE},
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{0xff}
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};
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@@ -180,27 +134,6 @@ void check_master_state(void)
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/*****************************************************************************/
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void check_slave_config_states(void)
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{
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ec_slave_config_state_t s;
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ecrt_slave_config_state(sc_ana_in, &s);
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if (s.al_state != sc_ana_in_state.al_state) {
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printf("AnaIn: State 0x%02X.\n", s.al_state);
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}
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if (s.online != sc_ana_in_state.online) {
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printf("AnaIn: %s.\n", s.online ? "online" : "offline");
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}
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if (s.operational != sc_ana_in_state.operational) {
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printf("AnaIn: %soperational.\n", s.operational ? "" : "Not ");
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}
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sc_ana_in_state = s;
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}
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/*****************************************************************************/
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void cyclic_task()
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{
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// receive process data
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@@ -220,22 +153,10 @@ void cyclic_task()
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// check for master state (optional)
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check_master_state();
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// check for slave configuration state(s) (optional)
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check_slave_config_states();
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}
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#if 0
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// read process data
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printf("AnaIn: state %u value %u\n",
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EC_READ_U8(domain1_pd + off_ana_in_status),
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EC_READ_U16(domain1_pd + off_ana_in_value));
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#endif
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#if 1
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// write process data
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EC_WRITE_U8(domain1_pd + off_dig_out, blink ? 0x06 : 0x09);
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#endif
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// send process data
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ecrt_domain_queue(domain1);
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@@ -270,36 +191,7 @@ int main_loop()
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return -1;
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}
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if (!(sc_ana_in = ecrt_master_slave_config(
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master, AnaInSlavePos, Beckhoff_EL3102))) {
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fprintf(stderr, "Failed to get slave configuration.\n");
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return -1;
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}
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printf("Configuring PDOs...\n");
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if (ecrt_slave_config_pdos(sc_ana_in, EC_END, el3102_syncs)) {
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fprintf(stderr, "Failed to configure PDOs.\n");
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return -1;
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}
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if (!(sc = ecrt_master_slave_config(
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master, AnaOutSlavePos, Beckhoff_EL4102))) {
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fprintf(stderr, "Failed to get slave configuration.\n");
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return -1;
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}
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if (ecrt_slave_config_pdos(sc, EC_END, el4102_syncs)) {
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fprintf(stderr, "Failed to configure PDOs.\n");
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return -1;
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}
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if (!(sc = ecrt_master_slave_config(
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master, DigOutSlavePos, Beckhoff_EL2032))) {
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fprintf(stderr, "Failed to get slave configuration.\n");
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return -1;
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}
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if (ecrt_slave_config_pdos(sc, EC_END, el2004_syncs)) {
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if (ecrt_slave_config_pdos(sc, EC_END, el2008_syncs)) {
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fprintf(stderr, "Failed to configure PDOs.\n");
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return -1;
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}
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