mirror of
https://github.com/sle118/squeezelite-esp32.git
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205 lines
7.0 KiB
C
205 lines
7.0 KiB
C
/**
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* Copyright (c) 2017-2018 Tara Keeling
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* 2020 Philippe G.
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*
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* This software is released under the MIT License.
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* https://opensource.org/licenses/MIT
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*/
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#include <stdio.h>
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#include <string.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include <esp_heap_caps.h>
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#include <esp_log.h>
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#include "gds.h"
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#include "gds_private.h"
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#define SHADOW_BUFFER
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#define PAGE_BLOCK 1024
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#define min(a, b) (((a) < (b)) ? (a) : (b))
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static char TAG[] = "SSD1322";
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struct PrivateSpace {
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uint8_t *iRAM, *Shadowbuffer;
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uint8_t ReMap, PageSize;
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uint8_t Offset;
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};
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// Functions are not declared to minimize # of lines
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static void WriteDataByte(struct GDS_Device* Device, uint8_t Data) { Device->WriteData(Device, &Data, 1); }
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static void SetColumnAddress(struct GDS_Device* Device, uint8_t Start, uint8_t End) {
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Device->WriteCommand(Device, 0x15);
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Device->WriteData(Device, &Start, 1);
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Device->WriteData(Device, &End, 1);
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}
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static void SetRowAddress(struct GDS_Device* Device, uint8_t Start, uint8_t End) {
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Device->WriteCommand(Device, 0x75);
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Device->WriteData(Device, &Start, 1);
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Device->WriteData(Device, &End, 1);
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}
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static void Update(struct GDS_Device* Device) {
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struct PrivateSpace* Private = (struct PrivateSpace*)Device->Private;
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// RAM is by columns of 4 pixels ...
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SetColumnAddress(Device, Private->Offset, Private->Offset + Device->Width / 4 - 1);
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#ifdef SHADOW_BUFFER
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uint16_t *optr = (uint16_t*)Private->Shadowbuffer, *iptr = (uint16_t*)Device->Framebuffer;
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bool dirty = false;
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for(int r = 0, page = 0; r < Device->Height; r++) {
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// look for change and update shadow (cheap optimization = width always / by 2)
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for(int c = Device->Width / 2 / 2; --c >= 0;) {
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if(*optr != *iptr) {
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dirty = true;
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*optr = *iptr;
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}
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iptr++;
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optr++;
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}
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// one line done, check for page boundary
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if(++page == Private->PageSize) {
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if(dirty) {
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uint16_t *optr = (uint16_t*)Private->iRAM, *iptr = (uint16_t*)(Private->Shadowbuffer + (r - page + 1) * Device->Width / 2);
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SetRowAddress(Device, r - page + 1, r);
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for(int i = page * Device->Width / 2 / 2; --i >= 0; iptr++) *optr++ = (*iptr >> 8) | (*iptr << 8);
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//memcpy(Private->iRAM, Private->Shadowbuffer + (r - page + 1) * Device->Width / 2, page * Device->Width / 2 );
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Device->WriteCommand(Device, 0x5c);
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Device->WriteData(Device, Private->iRAM, Device->Width * page / 2);
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dirty = false;
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}
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page = 0;
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}
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}
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#else
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for(int r = 0; r < Device->Height; r += Private->PageSize) {
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SetRowAddress(Device, r, r + Private->PageSize - 1);
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Device->WriteCommand(Device, 0x5c);
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if(Private->iRAM) {
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uint16_t *optr = (uint16_t*)Private->iRAM, *iptr = (uint16_t*)(Device->Framebuffer + r * Device->Width / 2);
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for(int i = Private->PageSize * Device->Width / 2 / 2; --i >= 0; iptr++) *optr++ = (*iptr >> 8) | (*iptr << 8);
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//memcpy(Private->iRAM, Device->Framebuffer + r * Device->Width / 2, Private->PageSize * Device->Width / 2 );
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Device->WriteData(Device, Private->iRAM, Private->PageSize * Device->Width / 2);
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} else {
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Device->WriteData(Device, Device->Framebuffer + r * Device->Width / 2, Private->PageSize * Device->Width / 2);
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}
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}
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#endif
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}
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static void SetLayout(struct GDS_Device* Device, struct GDS_Layout* Layout) {
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struct PrivateSpace* Private = (struct PrivateSpace*)Device->Private;
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Private->ReMap = Layout->HFlip ? (Private->ReMap & ~(1 << 1)) : (Private->ReMap | (1 << 1));
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Private->ReMap = Layout->VFlip ? (Private->ReMap | (1 << 4)) : (Private->ReMap & ~(1 << 4));
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Device->WriteCommand(Device, 0xA0);
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Device->WriteData(Device, &Private->ReMap, 1);
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WriteDataByte(Device, 0x11);
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Device->WriteCommand(Device, Layout->Invert ? 0xA7 : 0xA6);
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}
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static void DisplayOn(struct GDS_Device* Device) { Device->WriteCommand(Device, 0xAF); }
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static void DisplayOff(struct GDS_Device* Device) { Device->WriteCommand(Device, 0xAE); }
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static void SetContrast(struct GDS_Device* Device, uint8_t Contrast) {
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Device->WriteCommand(Device, 0xC1);
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Device->WriteData(Device, &Contrast, 1);
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}
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static bool Init(struct GDS_Device* Device) {
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struct PrivateSpace* Private = (struct PrivateSpace*)Device->Private;
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// these displays seems to be layout centered (1 column = 4 pixels of 4 bits each, little endian)
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Private->Offset = (480 - Device->Width) / 4 / 2;
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// find a page size that is not too small is an integer of height
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Private->PageSize = min(8, PAGE_BLOCK / (Device->Width / 2));
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while(Private->PageSize && Device->Height != (Device->Height / Private->PageSize) * Private->PageSize) Private->PageSize--;
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#ifdef SHADOW_BUFFER
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Private->Shadowbuffer = malloc(Device->FramebufferSize);
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memset(Private->Shadowbuffer, 0xFF, Device->FramebufferSize);
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#endif
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Private->iRAM = heap_caps_malloc(Private->PageSize * Device->Width / 2, MALLOC_CAP_INTERNAL | MALLOC_CAP_DMA);
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ESP_LOGI(TAG, "SSD1322 with offset %u, page %u, iRAM %p", Private->Offset, Private->PageSize, Private->iRAM);
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// need to be off and disable display RAM
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Device->DisplayOff(Device);
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Device->WriteCommand(Device, 0xA5);
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// Display Offset
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Device->WriteCommand(Device, 0xA2);
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WriteDataByte(Device, 0);
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// Display Start Line
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Device->WriteCommand(Device, 0xA1);
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WriteDataByte(Device, 0x00);
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// set flip modes
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Private->ReMap = 0;
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struct GDS_Layout Layout = {};
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Device->SetLayout(Device, &Layout);
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// set Display Enhancement
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Device->WriteCommand(Device, 0xB4);
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WriteDataByte(Device, 0xA0);
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WriteDataByte(Device, 0xB5);
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// set Clocks
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Device->WriteCommand(Device, 0xB3);
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WriteDataByte(Device, 0xB2); // 0x91 seems to be common but is too slow for 5.5'
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// set MUX
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Device->WriteCommand(Device, 0xCA);
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WriteDataByte(Device, Device->Height - 1);
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// phase 1 & 2 period
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Device->WriteCommand(Device, 0xB1);
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WriteDataByte(Device, 0xE3); // 0xE2 was recommended
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// set pre-charge V
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Device->WriteCommand(Device, 0xBB);
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WriteDataByte(Device, 0x0F); // 0x1F causes column interferences
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// set COM deselect voltage
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Device->WriteCommand(Device, 0xBE);
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WriteDataByte(Device, 0x07);
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// no Display Inversion
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Device->WriteCommand(Device, 0xA6);
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// gone with the wind
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Device->DisplayOn(Device);
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Device->Update(Device);
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return true;
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}
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static const struct GDS_Device SSD1322 = {
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.DisplayOn = DisplayOn,
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.DisplayOff = DisplayOff,
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.SetContrast = SetContrast,
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.SetLayout = SetLayout,
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.Update = Update,
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.Init = Init,
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.Mode = GDS_GRAYSCALE,
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.Depth = 4,
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};
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struct GDS_Device* SSD1322_Detect(sys_display_config* Driver, struct GDS_Device* Device) {
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if(Driver->common.driver != sys_display_drivers_SSD1322) return NULL;
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if(!Device) Device = calloc(1, sizeof(struct GDS_Device));
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*Device = SSD1322;
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return Device;
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} |