Files
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blinds / hardware_design / pcb / blinds_v60.brd
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blinds / hardware_design / pcb / blinds_v60.sch
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braids / hardware_design / pcb / braids_v50.brd
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braids / hardware_design / pcb / braids_v50.sch
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branches / hardware_design / pcb / branches_v40.brd
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branches / hardware_design / pcb / branches_v40.sch
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clouds / hardware_design / pcb / clouds_v30.brd
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clouds / hardware_design / pcb / clouds_v30.sch
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ears / hardware_design / panel / ears_panel_v30.brd
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ears / hardware_design / panel / ears_panel_v30.sch
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ears / hardware_design / pcb / ears_v40.brd
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ears / hardware_design / pcb / ears_v40.sch
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edges / hardware_design / pcb / edges_expander_v01.brd
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edges / hardware_design / pcb / edges_expander_v01.sch
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edges / hardware_design / pcb / edges_v20.brd
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edges / hardware_design / pcb / edges_v20.sch
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elements / hardware_design / pcb / elements_v02.brd
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elements / hardware_design / pcb / elements_v02.sch
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frames / hardware_design / pcb / frames_v03.brd
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frames / hardware_design / pcb / frames_v03.sch
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grids / hardware_design / pcb / grids_v02.brd
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grids / hardware_design / pcb / grids_v02.sch
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kinks / hardware_design / pcb / kinks_v41.brd
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kinks / hardware_design / pcb / kinks_v41.sch
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links / hardware_design / pcb / links_v40.brd
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links / hardware_design / pcb / links_v40.sch
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marbles / hardware_design / pcb / marbles_v70.brd
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marbles / hardware_design / pcb / marbles_v70.sch
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peaks / hardware_design / pcb / peaks_v30.brd
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peaks / hardware_design / pcb / peaks_v30.sch
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plaits / hardware_design / pcb / plaits_v50.brd
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plaits / hardware_design / pcb / plaits_v50.sch
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rings / hardware_design / pcb / rings_v30.brd
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rings / hardware_design / pcb / rings_v30.sch
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ripples / hardware_design / pcb / ripples_v40.brd
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ripples / hardware_design / pcb / ripples_v40.sch
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shades / hardware_design / pcb / shades_v30.brd
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shades / hardware_design / pcb / shades_v30.sch
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shelves / hardware_design / pcb / shelves_expander_v10.brd
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shelves / hardware_design / pcb / shelves_expander_v10.sch
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shelves / hardware_design / pcb / shelves_v05.brd
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shelves / hardware_design / pcb / shelves_v05.sch
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stages / hardware_design / pcb / stages_v70.brd
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stages / hardware_design / pcb / stages_v70.sch
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streams / hardware_design / pcb / streams_v02_bargraph.brd
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streams / hardware_design / pcb / streams_v02_bargraph.sch
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streams / hardware_design / pcb / streams_v05.brd
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streams / hardware_design / pcb / streams_v05.sch
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tides / hardware_design / pcb / tides_v40.brd
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tides / hardware_design / pcb / tides_v40.sch
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veils / hardware_design / pcb / veils_v40.brd
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veils / hardware_design / pcb / veils_v40.sch
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volts / hardware_design / pcb / volts_v01.brd
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volts / hardware_design / pcb / volts_v01.sch
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warps / hardware_design / pcb / warps_v30.brd
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warps / hardware_design / pcb / warps_v30.sch
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yarns / hardware_design / pcb / yarns_v03.brd
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yarns / hardware_design / pcb / yarns_v03.sch
Last update 6 years 2 months
by
Olivier Gillet
leds.cc// Copyright 2017 Olivier Gillet. // // Author: Olivier Gillet (ol.gillet@gmail.com) // // Permission is hereby granted, free of charge, to any person obtaining a copy // of this software and associated documentation files (the "Software"), to deal // in the Software without restriction, including without limitation the rights // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell // copies of the Software, and to permit persons to whom the Software is // furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN // THE SOFTWARE. // // See http://creativecommons.org/licenses/MIT/ for more information. // // ----------------------------------------------------------------------------- // // Drivers for the sliders and UI LEDs. #include "stages/drivers/leds.h" #include <algorithm> #include <stm32f37x_conf.h> namespace stages { using namespace std; struct SliderLedDefinition { GPIO_TypeDef* gpio; uint16_t pin; }; const uint16_t kPinClk = GPIO_Pin_6; const uint16_t kPinEnable = GPIO_Pin_7; const uint16_t kPinData = GPIO_Pin_5; const SliderLedDefinition slider_led_definition[kNumLEDs] = { { GPIOA, GPIO_Pin_12 }, { GPIOC, GPIO_Pin_13 }, { GPIOC, GPIO_Pin_14 }, { GPIOC, GPIO_Pin_15 }, { GPIOA, GPIO_Pin_2 }, { GPIOB, GPIO_Pin_2 } }; /* static */ const uint16_t red_bitmask[] = { 1 << 5, 1 << 7, 1 << 2, 1 << 9, 1 << 10, 1 << 12 }; /* static */ const uint16_t green_bitmask[] = { 1 << 4, 1 << 6, 1 << 3, 1 << 8, 1 << 11, 1 << 13 }; void Leds::Init() { // GPIOs for sliders. RCC_AHBPeriphClockCmd(RCC_AHBPeriph_GPIOA, ENABLE); RCC_AHBPeriphClockCmd(RCC_AHBPeriph_GPIOC, ENABLE); RCC_AHBPeriphClockCmd(RCC_AHBPeriph_GPIOB, ENABLE); GPIO_InitTypeDef gpio_init; gpio_init.GPIO_Mode = GPIO_Mode_OUT; gpio_init.GPIO_OType = GPIO_OType_PP; gpio_init.GPIO_Speed = GPIO_Speed_2MHz; gpio_init.GPIO_PuPd = GPIO_PuPd_NOPULL; for (int i = 0; i < kNumLEDs; ++i) { const SliderLedDefinition& d = slider_led_definition[i]; gpio_init.GPIO_Pin = d.pin; GPIO_Init(d.gpio, &gpio_init); } // GPIOs for UI leds. gpio_init.GPIO_Pin = kPinClk | kPinEnable | kPinData; GPIO_Init(GPIOB, &gpio_init); Clear(); } void Leds::Clear() { fill(&colors_[0], &colors_[LED_GROUP_SLIDER + kNumLEDs], LED_COLOR_OFF); } void Leds::Write() { uint16_t leds_data = 0; for (int i = 0; i < kNumLEDs; ++i) { const SliderLedDefinition& d = slider_led_definition[i]; if ((colors_[LED_GROUP_SLIDER + i] & 0x008000) >> 15) { d.gpio->BSRR = d.pin; } else { d.gpio->BRR = d.pin; } if (colors_[LED_GROUP_UI + i] & 0x800000) { leds_data |= red_bitmask[i]; } if (colors_[LED_GROUP_UI + i] & 0x008000) { leds_data |= green_bitmask[i]; } } // GPIO_WriteBit(GPIOB, kPinEnable, Bit_RESET); GPIOB->BRR = kPinEnable; for (uint16_t i = 0; i < 16; ++i) { // GPIO_WriteBit(GPIOB, kPinClk, Bit_RESET); GPIOB->BRR = kPinClk; if (leds_data & 0x8000) { // GPIO_WriteBit(GPIOB, kPinData, Bit_SET); GPIOB->BSRR = kPinData; } else { // GPIO_WriteBit(GPIOB, kPinData, Bit_RESET); GPIOB->BRR = kPinData; } leds_data <<= 1; // GPIO_WriteBit(GPIOB, kPinClk, Bit_SET); GPIOB->BSRR = kPinClk; } // GPIO_WriteBit(GPIOB, kPinEnable, Bit_SET); GPIOB->BSRR = kPinEnable; } } // namespace stages