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tools/: rearranged cwtest/atrf-path to be more clear about reset and do re-init
- include/cwtest.h (cw_test_needs_reset), lib/cwtest.c (cw_test_needs_reset): new function to indicate all cases where the transceiver needs to be reset (instead of using SLP_TR) - lib/cwtest.c (cw_test_end): use cw_test_needs_reset instead of open-coding the decision - lib/cwtest.c (enter_test_mode_230, start_test_mode_231): always wait for the PLL to lock. Contrary to the assumption in the previous commit, we should always see this interrupt. - atrf-path/atrf-path.c (sample): initialize the transceiver if we had to reset it - atrf-path/atrf-path.c (sample), atrf-path/atrf-path.c (do_half_sweep): moved the tTR19 delay to "sweep", so that all branches share it and it is taken only once
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@ -74,14 +74,11 @@ static void sample(const struct sweep *sweep, int cont_tx,
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int sum = 0, min = -1, max = -1;
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double offset = tx_power_step2dBm(sweep->tx, sweep->power);
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/*
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* For the 230, we don't have reset-less exit from test mode (yet ?) and
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* need to set up things from scratch:
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*
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* init_tx(sweep->tx, sweep->trim_tx, sweep->power);
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* set_channel(sweep->tx, chan);
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* usleep(155); / * table 7-2, tTR19 * /
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*/
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if (cw_test_needs_reset(sweep->tx)) {
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init_tx(sweep->tx, sweep->trim_tx, sweep->power);
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need_init = 1;
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}
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usleep(155); /* table 7-2, tTR19 */
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if (first || need_init) {
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cw_test_begin(sweep->tx, cont_tx);
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need_init = 0;
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@ -123,7 +120,6 @@ static int do_half_sweep(const struct sweep *sweep, int cont_tx,
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for (i = 0; i != N_CHAN; i++) {
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set_channel(sweep->rx, chan);
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set_channel(sweep->tx, chan);
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usleep(155); /* table 7-2, tTR19 */
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sample(sweep, cont_tx, res, chan == 11 && !sweep->cont_tx);
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if (res->avg > sweep->max[i])
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@ -19,6 +19,7 @@
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#include "atrf.h"
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int cw_test_needs_reset(struct atrf_dsc *dsc);
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void cw_test_begin(struct atrf_dsc *dsc, uint8_t cont_tx);
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void cw_test_resume(struct atrf_dsc *dsc);
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void cw_test_end(struct atrf_dsc *dsc);
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@ -26,6 +26,16 @@
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static int last_cont_tx; /* @@@ hack for resuming on the 230 */
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int cw_test_needs_reset(struct atrf_dsc *dsc)
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{
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if (atrf_usb_handle(dsc))
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return 1;
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if (atrf_identify(dsc) == artf_at86rf230)
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return 1;
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return 0;
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}
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static void enter_test_mode_230(struct atrf_dsc *dsc, uint8_t cont_tx)
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{
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atrf_buf_write(dsc, "", 1);
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@ -39,7 +49,7 @@ static void enter_test_mode_230(struct atrf_dsc *dsc, uint8_t cont_tx)
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}
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atrf_reg_write(dsc, REG_TRX_STATE, TRX_CMD_PLL_ON);
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wait_for_interrupt(dsc, IRQ_PLL_LOCK, IRQ_PLL_LOCK, 10, 20);
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wait_for_interrupt(dsc, IRQ_PLL_LOCK, IRQ_PLL_LOCK, 10, 0);
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atrf_reg_write(dsc, REG_TRX_STATE, TRX_CMD_TX_START);
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}
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@ -92,7 +102,7 @@ static void start_test_mode_231(struct atrf_dsc *dsc)
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atrf_reg_write(dsc, REG_PART_NUM, 0x46); /*14 */
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atrf_reg_write(dsc, REG_TRX_STATE, TRX_CMD_PLL_ON); /*15 */
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wait_for_interrupt(dsc, IRQ_PLL_LOCK, IRQ_PLL_LOCK, 10, 20); /*16 */
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wait_for_interrupt(dsc, IRQ_PLL_LOCK, IRQ_PLL_LOCK, 10, 0); /*16 */
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atrf_reg_write(dsc, REG_TRX_STATE, TRX_CMD_TX_START); /*17 */
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}
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@ -142,7 +152,7 @@ void cw_test_end(struct atrf_dsc *dsc)
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* AT86RF231 also exits test mode if we send it to sleep for a
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* moment.
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*/
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if (atrf_identify(dsc) == artf_at86rf230 || atrf_usb_handle(dsc))
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if (cw_test_needs_reset(dsc))
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atrf_reset_rf(dsc);
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else {
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usleep(2); /* table 7-1: tTR12(typ) = 1 us */
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