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111 lines
3.1 KiB
111 lines
3.1 KiB
6 years ago
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//
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// Created by MightyPork on 2018/02/03.
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//
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#include "platform.h"
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#include "unit_base.h"
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#include "unit_sipo.h"
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#define SIPO_INTERNAL
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#include "_sipo_internal.h"
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static void send_pulse(bool pol, GPIO_TypeDef *port, uint32_t ll)
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{
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if (pol) {
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LL_GPIO_SetOutputPin(port, ll);
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}
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else {
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LL_GPIO_ResetOutputPin(port, ll);
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}
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__asm_loop(2);
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if (pol) {
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LL_GPIO_ResetOutputPin(port, ll);
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}
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else {
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LL_GPIO_SetOutputPin(port, ll);
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}
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}
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#pragma GCC push_options
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#pragma GCC optimize ("O2")
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error_t UU_SIPO_Write(Unit *unit, const uint8_t *buffer, uint16_t buflen, uint16_t terminal_data)
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{
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CHECK_TYPE(unit, &UNIT_SIPO);
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struct priv *priv = unit->data;
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if (buflen % priv->data_width != 0) {
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dbg("Buflen %d vs width %d", (int)buflen, (int)priv->data_width);
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return E_BAD_COUNT; // must be a multiple of the channel count
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}
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// buffer contains data for the individual data pins, back to back as AAA BBB CCC (whole bytes)
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const uint8_t data_width = priv->data_width;
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const uint16_t bytelen = buflen / data_width;
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const uint16_t mask = priv->cfg.data_pins;
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uint8_t offsets[16];
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for (int i=0; i<16; i++) offsets[i] = (uint8_t) (bytelen * i);
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for (int32_t bn = bytelen - 1; bn >= 0; bn--) {
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// send the byte
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for (int32_t i = 0; i < 8; i++) {
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uint16_t packed = 0;
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for (int32_t j = data_width - 1; j >= 0; j--) {
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packed |= (buffer[bn + offsets[j]] >> i) & 1;
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if (j > 0) packed <<= 1;
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}
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uint16_t spread = pinmask_spread(packed, mask);
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priv->data_port->BSRR = spread | (((~spread) & mask) << 16);
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// Shift clock pulse
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send_pulse(priv->cfg.shift_pol, priv->shift_port, priv->shift_ll);
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}
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}
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// load the final data - this may be used by some other circuitry or
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// simply to rest the lines at a defined known level
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uint16_t spread = pinmask_spread(terminal_data, mask);
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priv->data_port->BSRR = spread | (((~spread) & mask) << 16);
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send_pulse(priv->cfg.store_pol, priv->store_port, priv->store_ll);
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return E_SUCCESS;
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}
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#pragma GCC pop_options
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error_t UU_SIPO_DirectData(Unit *unit, uint16_t data_packed)
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{
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CHECK_TYPE(unit, &UNIT_SIPO);
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struct priv *priv = unit->data;
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uint16_t spread = pinmask_spread(data_packed, priv->cfg.data_pins);
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priv->data_port->BSRR = spread | (((~spread) & priv->cfg.data_pins) << 16);
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return E_SUCCESS;
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}
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error_t UU_SIPO_DirectClear(Unit *unit)
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{
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CHECK_TYPE(unit, &UNIT_SIPO);
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struct priv *priv = unit->data;
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send_pulse(priv->cfg.clear_pol, priv->clear_port, priv->clear_ll);
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return E_SUCCESS;
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}
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error_t UU_SIPO_DirectShift(Unit *unit)
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{
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CHECK_TYPE(unit, &UNIT_SIPO);
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struct priv *priv = unit->data;
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send_pulse(priv->cfg.shift_pol, priv->shift_port, priv->shift_ll);
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return E_SUCCESS;
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}
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error_t UU_SIPO_DirectStore(Unit *unit)
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{
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CHECK_TYPE(unit, &UNIT_SIPO);
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struct priv *priv = unit->data;
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send_pulse(priv->cfg.store_pol, priv->store_port, priv->store_ll);
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return E_SUCCESS;
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}
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