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https://github.com/sle118/squeezelite-esp32.git
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907 lines
28 KiB
C
907 lines
28 KiB
C
/*
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* (c) 2004,2006 Richard Titmuss for SlimProtoLib
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* (c) Philippe G. 2019, philippe_44@outlook.com
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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#include <ctype.h>
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#include <math.h>
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#include "esp_dsp.h"
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#include "squeezelite.h"
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#include "slimproto.h"
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#include "display.h"
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#include "gds.h"
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#include "gds_text.h"
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#include "gds_draw.h"
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#pragma pack(push, 1)
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struct grfb_packet {
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char opcode[4];
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s16_t brightness;
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};
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struct grfe_packet {
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char opcode[4];
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u16_t offset;
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u8_t transition;
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u8_t param;
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};
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struct grfs_packet {
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char opcode[4];
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u8_t screen;
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u8_t direction; // 1=left, 2=right
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u32_t pause; // in ms
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u32_t speed; // in ms
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u16_t by; // # of pixel of scroll step
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u16_t mode; // 0=continuous, 1=once and stop, 2=once and end
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u16_t width; // total width of animation
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u16_t offset; // offset if multiple packets are sent
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};
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struct grfg_packet {
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char opcode[4];
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u16_t screen;
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u16_t width; // # of pixels of scrollable
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};
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struct visu_packet {
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char opcode[4];
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u8_t which;
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u8_t count;
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union {
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struct {
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u32_t bars;
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u32_t spectrum_scale;
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} full;
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struct {
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u32_t width;
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u32_t height;
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s32_t col;
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s32_t row;
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u32_t border;
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u32_t bars;
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u32_t spectrum_scale;
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};
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};
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};
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struct ANIC_header {
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char opcode[4];
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u32_t length;
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u8_t mode;
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};
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#pragma pack(pop)
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static struct {
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TaskHandle_t task;
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SemaphoreHandle_t mutex;
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int width, height;
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bool dirty;
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bool owned;
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} displayer = { .dirty = true, .owned = true };
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#define LONG_WAKE (10*1000)
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#define SB_HEIGHT 32
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// lenght are number of frames, i.e. 2 channels of 16 bits
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#define FFT_LEN_BIT 6
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#define FFT_LEN (1 << FFT_LEN_BIT)
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#define RMS_LEN_BIT 6
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#define RMS_LEN (1 << RMS_LEN_BIT)
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#define DISPLAY_BW 20000
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static struct scroller_s {
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// copy of grfs content
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u8_t screen;
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u32_t pause, speed;
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int wake;
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u16_t mode;
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s16_t by;
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// scroller management & sharing between grfg and scrolling task
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bool active, first;
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int scrolled;
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struct {
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u8_t *frame;
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u32_t width;
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u32_t max, size;
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} scroll;
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struct {
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u8_t *frame;
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u32_t width;
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} back;
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u8_t *frame;
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u32_t width;
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} scroller;
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#define MAX_BARS 32
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static EXT_RAM_ATTR struct {
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int bar_gap, bar_width, bar_border;
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struct {
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int current, max;
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int limit;
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} bars[MAX_BARS];
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float spectrum_scale;
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int n, col, row, height, width, border;
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enum { VISU_BLANK, VISU_VUMETER, VISU_SPECTRUM, VISU_WAVEFORM } mode;
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int speed, wake;
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float fft[FFT_LEN*2], samples[FFT_LEN*2], hanning[FFT_LEN];
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} visu;
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#define ANIM_NONE 0x00
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#define ANIM_TRANSITION 0x01 // A transition animation has finished
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#define ANIM_SCROLL_ONCE 0x02
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#define ANIM_SCREEN_1 0x04
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#define ANIM_SCREEN_2 0x08
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static u8_t ANIC_resp = ANIM_NONE;
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static u8_t SETD_width;
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#define SCROLL_STACK_SIZE (3*1024)
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#define LINELEN 40
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static log_level loglevel = lINFO;
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static bool (*slimp_handler_chain)(u8_t *data, int len);
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static void (*slimp_loop_chain)(void);
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static void (*notify_chain)(in_addr_t ip, u16_t hport, u16_t cport);
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static bool (*display_bus_chain)(void *from, enum display_bus_cmd_e cmd);
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#define max(a,b) (((a) > (b)) ? (a) : (b))
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static void server(in_addr_t ip, u16_t hport, u16_t cport);
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static void send_server(void);
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static bool handler(u8_t *data, int len);
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static bool display_bus_handler(void *from, enum display_bus_cmd_e cmd);
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static void vfdc_handler( u8_t *_data, int bytes_read);
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static void grfe_handler( u8_t *data, int len);
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static void grfb_handler(u8_t *data, int len);
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static void grfs_handler(u8_t *data, int len);
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static void grfg_handler(u8_t *data, int len);
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static void visu_handler(u8_t *data, int len);
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static void displayer_task(void* arg);
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/* scrolling undocumented information
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grfs
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B: screen number
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B:1 = left, 2 = right,
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Q: scroll pause once done (ms)
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Q: scroll speed (ms)
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W: # of pixels to scroll each time
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W: 0 = continue scrolling after pause, 1 = scroll to scrollend and then stop, 2 = scroll to scrollend and then end animation (causing new update)
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W: width of total scroll area in pixels
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grfd
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W: screen number
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W: width of scrollable area in pixels
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anic ( two versions, don't know what to chose)
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B: flag
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ANIM_TRANSITION (0x01) - transition animation has finished (previous use of ANIC)
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ANIM_SCREEN_1 (0x04) - end of first scroll on screen 1
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ANIM_SCREEN_2 (0x08) - end of first scroll on screen 2
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ANIM_SCROLL_ONCE (0x02) | ANIM_SCREEN_1 (0x04) - end of scroll once on screen 1
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ANIM_SCROLL_ONCE (0x02) | ANIM_SCREEN_2 (0x08) - end of scroll once on screen 2
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- or -
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ANIM_TRANSITION 0x01 # A transition animation has finished
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ANIM_SCROLL_ONCE 0x02 # A scrollonce has finished
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ANIM_SCREEN_1 0x04 # For scrollonce only, screen 1 was scrolling
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ANIM_SCREEN_2 0x08 # For scrollonce only, screen 2 was scrolling
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*/
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/****************************************************************************************
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*
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*/
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bool sb_display_init(void) {
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static DRAM_ATTR StaticTask_t xTaskBuffer __attribute__ ((aligned (4)));
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static EXT_RAM_ATTR StackType_t xStack[SCROLL_STACK_SIZE] __attribute__ ((aligned (4)));
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// no display, just make sure we won't have requests
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if (!display || GDS_GetWidth(display) <= 0 || GDS_GetHeight(display) <= 0) {
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LOG_INFO("no display for LMS");
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return false;
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}
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// need to force height to 32 maximum
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displayer.width = GDS_GetWidth(display);
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displayer.height = min(GDS_GetHeight(display), SB_HEIGHT);
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SETD_width = displayer.width;
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// create visu configuration
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visu.bar_gap = 1;
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visu.speed = 100;
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dsps_fft2r_init_fc32(visu.fft, FFT_LEN);
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dsps_wind_hann_f32(visu.hanning, FFT_LEN);
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// create scroll management task
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displayer.mutex = xSemaphoreCreateMutex();
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displayer.task = xTaskCreateStatic( (TaskFunction_t) displayer_task, "displayer_thread", SCROLL_STACK_SIZE, NULL, ESP_TASK_PRIO_MIN + 1, xStack, &xTaskBuffer);
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// size scroller
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scroller.scroll.max = (displayer.width * displayer.height / 8) * 10;
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scroller.scroll.frame = malloc(scroller.scroll.max);
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scroller.back.frame = malloc(displayer.width * displayer.height / 8);
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scroller.frame = malloc(displayer.width * displayer.height / 8);
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// chain handlers
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slimp_handler_chain = slimp_handler;
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slimp_handler = handler;
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slimp_loop_chain = slimp_loop;
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slimp_loop = send_server;
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notify_chain = server_notify;
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server_notify = server;
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display_bus_chain = display_bus;
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display_bus = display_bus_handler;
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return true;
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}
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/****************************************************************************************
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* Receive display bus commands
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*/
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static bool display_bus_handler(void *from, enum display_bus_cmd_e cmd) {
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// don't answer to own requests
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if (from == &displayer) return false ;
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LOG_INFO("Display bus command %d", cmd);
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xSemaphoreTake(displayer.mutex, portMAX_DELAY);
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switch (cmd) {
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case DISPLAY_BUS_TAKE:
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displayer.owned = false;
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break;
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case DISPLAY_BUS_GIVE:
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displayer.owned = true;
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break;
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}
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xSemaphoreGive(displayer.mutex);
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// chain to rest of "bus"
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if (display_bus_chain) return (*display_bus_chain)(from, cmd);
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else return true;
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}
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/****************************************************************************************
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* Send message to server (ANIC at that time)
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*/
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static void send_server(void) {
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/*
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This complication is needed as we cannot send direclty to LMS, because
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send_packet is not thread safe. So must subscribe to slimproto busy loop
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end send from there
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*/
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if (ANIC_resp != ANIM_NONE) {
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struct ANIC_header pkt_header;
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memset(&pkt_header, 0, sizeof(pkt_header));
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memcpy(&pkt_header.opcode, "ANIC", 4);
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pkt_header.length = htonl(sizeof(pkt_header) - 8);
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pkt_header.mode = ANIC_resp;
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send_packet((u8_t *)&pkt_header, sizeof(pkt_header));
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ANIC_resp = ANIM_NONE;
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}
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if (SETD_width) {
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struct SETD_header pkt_header;
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LOG_INFO("sending width %u", SETD_width);
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memset(&pkt_header, 0, sizeof(pkt_header));
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memcpy(&pkt_header.opcode, "SETD", 4);
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pkt_header.id = 0xfe; // id 0xfe is width S:P:Squeezebox2
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pkt_header.length = htonl(sizeof(pkt_header) + 2 - 8);
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send_packet((u8_t *)&pkt_header, sizeof(pkt_header));
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send_packet(&SETD_width, 2);
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SETD_width = 0;
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}
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if (slimp_loop_chain) (*slimp_loop_chain)();
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}
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/****************************************************************************************
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*
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*/
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static void server(in_addr_t ip, u16_t hport, u16_t cport) {
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char msg[32];
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sprintf(msg, "%s:%hu", inet_ntoa(ip), hport);
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if (displayer.owned) GDS_TextPos(display, GDS_FONT_DEFAULT, GDS_TEXT_CENTERED, GDS_TEXT_CLEAR | GDS_TEXT_UPDATE, msg);
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SETD_width = displayer.width;
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displayer.dirty = true;
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if (notify_chain) (*notify_chain)(ip, hport, cport);
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}
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/****************************************************************************************
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* Process graphic display data
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*/
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static bool handler(u8_t *data, int len){
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bool res = true;
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if (!strncmp((char*) data, "vfdc", 4)) {
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vfdc_handler(data, len);
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} else if (!strncmp((char*) data, "grfe", 4)) {
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grfe_handler(data, len);
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} else if (!strncmp((char*) data, "grfb", 4)) {
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grfb_handler(data, len);
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} else if (!strncmp((char*) data, "grfs", 4)) {
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grfs_handler(data, len);
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} else if (!strncmp((char*) data, "grfg", 4)) {
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grfg_handler(data, len);
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} else if (!strncmp((char*) data, "visu", 4)) {
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visu_handler(data, len);
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} else {
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res = false;
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}
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// chain protocol handlers (bitwise or is fine)
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if (*slimp_handler_chain) res |= (*slimp_handler_chain)(data, len);
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return res;
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}
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/****************************************************************************************
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* Change special LCD chars to something more printable on screen
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*/
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static void makeprintable(unsigned char * line) {
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for (int n = 0; n < LINELEN; n++) {
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switch (line[n]) {
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case 11: /* block */
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line[n] = '#';
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break;;
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case 16: /* rightarrow */
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line[n] = '>';
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break;;
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case 22: /* circle */
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line[n] = '@';
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break;;
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case 145: /* note */
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line[n] = ' ';
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break;;
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case 152: /* bell */
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line[n] = 'o';
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break;
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default:
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break;
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}
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}
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}
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/****************************************************************************************
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* Check if char is printable, or a valid symbol
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*/
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static bool charisok(unsigned char c) {
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switch (c) {
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case 11: /* block */
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case 16: /* rightarrow */
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case 22: /* circle */
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case 145: /* note */
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case 152: /* bell */
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return true;
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break;;
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default:
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return isprint(c);
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}
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}
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/****************************************************************************************
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* Show the display (text mode)
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*/
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static void show_display_buffer(char *ddram) {
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char line1[LINELEN+1];
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char *line2;
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memset(line1, 0, LINELEN+1);
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strncpy(line1, ddram, LINELEN);
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line2 = &(ddram[LINELEN]);
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line2[LINELEN] = '\0';
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/* Convert special LCD chars */
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makeprintable((unsigned char *)line1);
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makeprintable((unsigned char *)line2);
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LOG_DEBUG("\n\t%.40s\n\t%.40s", line1, line2);
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GDS_TextLine(display, 1, GDS_TEXT_LEFT, GDS_TEXT_CLEAR, line1);
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GDS_TextLine(display, 2, GDS_TEXT_LEFT, GDS_TEXT_CLEAR | GDS_TEXT_UPDATE, line2);
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}
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/****************************************************************************************
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* Process display data
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*/
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static void vfdc_handler( u8_t *_data, int bytes_read) {
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unsigned short *data = (unsigned short*) _data, *display_data;
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char ddram[(LINELEN + 1) * 2];
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int n, addr = 0; /* counter */
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bytes_read -= 4;
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if (bytes_read % 2) bytes_read--; /* even number of bytes */
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// if we use Noritake VFD codes, display data starts at 12
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display_data = &(data[5]); /* display data starts at byte 10 */
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memset(ddram, ' ', LINELEN * 2);
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for (n = 0; n < (bytes_read/2); n++) {
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unsigned short d; /* data element */
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unsigned char t, c;
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d = ntohs(display_data[n]);
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t = (d & 0x00ff00) >> 8; /* type of display data */
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c = (d & 0x0000ff); /* character/command */
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switch (t) {
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case 0x03: /* character */
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if (!charisok(c)) c = ' ';
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if (addr <= LINELEN * 2) {
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ddram[addr++] = c;
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}
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break;
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case 0x02: /* command */
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switch (c) {
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case 0x06: /* display clear */
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memset(ddram, ' ', LINELEN * 2);
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break;
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case 0x02: /* cursor home */
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addr = 0;
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break;
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case 0xc0: /* cursor home2 */
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addr = LINELEN;
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break;
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}
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}
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}
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show_display_buffer(ddram);
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}
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/****************************************************************************************
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* Process graphic display data
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*/
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static void grfe_handler( u8_t *data, int len) {
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xSemaphoreTake(displayer.mutex, portMAX_DELAY);
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scroller.active = false;
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// we are not in control or we are displaying visu on a small screen, do not do screen update
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if (visu.mode && !visu.col && visu.row < SB_HEIGHT) {
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xSemaphoreGive(displayer.mutex);
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return;
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}
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if (displayer.owned) {
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// did we have something that might have write on the bottom of a SB_HEIGHT+ display
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if (displayer.dirty) {
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GDS_ClearExt(display, true);
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displayer.dirty = false;
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}
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// draw new frame
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GDS_DrawBitmapCBR(display, data + sizeof(struct grfe_packet), displayer.width, displayer.height);
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GDS_Update(display);
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}
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xSemaphoreGive(displayer.mutex);
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LOG_DEBUG("grfe frame %u", len);
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}
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/****************************************************************************************
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* Brightness
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*/
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static void grfb_handler(u8_t *data, int len) {
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struct grfb_packet *pkt = (struct grfb_packet*) data;
|
|
|
|
pkt->brightness = htons(pkt->brightness);
|
|
|
|
LOG_INFO("brightness %hu", pkt->brightness);
|
|
if (pkt->brightness < 0) {
|
|
GDS_DisplayOff(display);
|
|
} else {
|
|
GDS_DisplayOn(display);
|
|
GDS_SetContrast(display, pkt->brightness);
|
|
}
|
|
}
|
|
|
|
/****************************************************************************************
|
|
* Scroll set
|
|
*/
|
|
static void grfs_handler(u8_t *data, int len) {
|
|
struct grfs_packet *pkt = (struct grfs_packet*) data;
|
|
int size = len - sizeof(struct grfs_packet);
|
|
int offset = htons(pkt->offset);
|
|
|
|
LOG_DEBUG("gfrs s:%u d:%u p:%u sp:%u by:%hu m:%hu w:%hu o:%hu",
|
|
(int) pkt->screen,
|
|
(int) pkt->direction, // 1=left, 2=right
|
|
htonl(pkt->pause), // in ms
|
|
htonl(pkt->speed), // in ms
|
|
htons(pkt->by), // # of pixel of scroll step
|
|
htons(pkt->mode), // 0=continuous, 1=once and stop, 2=once and end
|
|
htons(pkt->width), // last column of animation that contains a "full" screen
|
|
htons(pkt->offset) // offset if multiple packets are sent
|
|
);
|
|
|
|
// new grfs frame, build scroller info
|
|
if (!offset) {
|
|
// use the display as a general lock
|
|
xSemaphoreTake(displayer.mutex, portMAX_DELAY);
|
|
|
|
// copy & set scroll parameters
|
|
scroller.screen = pkt->screen;
|
|
scroller.pause = htonl(pkt->pause);
|
|
scroller.speed = htonl(pkt->speed);
|
|
scroller.mode = htons(pkt->mode);
|
|
scroller.scroll.width = htons(pkt->width);
|
|
scroller.first = true;
|
|
|
|
// background excludes space taken by visu (if any)
|
|
scroller.back.width = displayer.width - ((visu.mode && visu.row < SB_HEIGHT) ? visu.width : 0);
|
|
|
|
// set scroller steps & beginning
|
|
if (pkt->direction == 1) {
|
|
scroller.scrolled = 0;
|
|
scroller.by = htons(pkt->by);
|
|
} else {
|
|
scroller.scrolled = scroller.scroll.width;
|
|
scroller.by = -htons(pkt->by);
|
|
}
|
|
|
|
xSemaphoreGive(displayer.mutex);
|
|
}
|
|
|
|
// copy scroll frame data (no semaphore needed)
|
|
if (scroller.scroll.size + size < scroller.scroll.max) {
|
|
memcpy(scroller.scroll.frame + offset, data + sizeof(struct grfs_packet), size);
|
|
scroller.scroll.size = offset + size;
|
|
LOG_INFO("scroller current size %u", scroller.scroll.size);
|
|
} else {
|
|
LOG_INFO("scroller too larger %u/%u", scroller.scroll.size + size, scroller.scroll.max);
|
|
}
|
|
}
|
|
|
|
/****************************************************************************************
|
|
* Scroll background frame update & go
|
|
*/
|
|
static void grfg_handler(u8_t *data, int len) {
|
|
struct grfg_packet *pkt = (struct grfg_packet*) data;
|
|
|
|
LOG_DEBUG("gfrg s:%hu w:%hu (len:%u)", htons(pkt->screen), htons(pkt->width), len);
|
|
|
|
xSemaphoreTake(displayer.mutex, portMAX_DELAY);
|
|
|
|
// size of scrollable area (less than background)
|
|
scroller.width = htons(pkt->width);
|
|
memcpy(scroller.back.frame, data + sizeof(struct grfg_packet), len - sizeof(struct grfg_packet));
|
|
|
|
// update display asynchronously (frames are oganized by columns)
|
|
memcpy(scroller.frame, scroller.back.frame, scroller.back.width * displayer.height / 8);
|
|
for (int i = 0; i < scroller.width * displayer.height / 8; i++) scroller.frame[i] |= scroller.scroll.frame[scroller.scrolled * displayer.height / 8 + i];
|
|
|
|
// can only write if we really own display
|
|
if (displayer.owned) {
|
|
GDS_DrawBitmapCBR(display, scroller.frame, scroller.back.width, displayer.height);
|
|
GDS_Update(display);
|
|
}
|
|
|
|
// now we can active scrolling, but only if we are not on a small screen
|
|
if (!visu.mode || visu.col || visu.row >= SB_HEIGHT) scroller.active = true;
|
|
|
|
// if we just got a content update, let the scroller manage the screen
|
|
LOG_DEBUG("resuming scrolling task");
|
|
|
|
xSemaphoreGive(displayer.mutex);
|
|
|
|
// resume task once we have background, not in grfs
|
|
vTaskResume(displayer.task);
|
|
}
|
|
|
|
/****************************************************************************************
|
|
* Update visualization bars
|
|
*/
|
|
static void visu_update(void) {
|
|
// no need to protect against no woning the display as we are playing
|
|
if (pthread_mutex_trylock(&visu_export.mutex)) return;
|
|
|
|
// not enough samples
|
|
if (visu_export.level < (visu.mode == VISU_VUMETER ? RMS_LEN : FFT_LEN) * 2 && visu_export.running) {
|
|
pthread_mutex_unlock(&visu_export.mutex);
|
|
return;
|
|
}
|
|
|
|
// reset bars for all cases first
|
|
for (int i = visu.n; --i >= 0;) visu.bars[i].current = 0;
|
|
|
|
if (visu_export.running && visu_export.running) {
|
|
|
|
if (visu.mode == VISU_VUMETER) {
|
|
s16_t *iptr = visu_export.buffer;
|
|
|
|
// calculate sum(L²+R²), try to not overflow at the expense of some precision
|
|
for (int i = RMS_LEN; --i >= 0;) {
|
|
visu.bars[0].current += (*iptr * *iptr + (1 << (RMS_LEN_BIT - 2))) >> (RMS_LEN_BIT - 1);
|
|
iptr++;
|
|
visu.bars[1].current += (*iptr * *iptr + (1 << (RMS_LEN_BIT - 2))) >> (RMS_LEN_BIT - 1);
|
|
iptr++;
|
|
}
|
|
|
|
// convert to dB (1 bit remaining for getting X²/N, 60dB dynamic starting from 0dBFS = 3 bits back-off)
|
|
for (int i = visu.n; --i >= 0;) {
|
|
visu.bars[i].current = 32 * (0.01667f*10*log10f(0.0000001f + (visu.bars[i].current >> 1)) - 0.2543f);
|
|
if (visu.bars[i].current > 31) visu.bars[i].current = 31;
|
|
else if (visu.bars[i].current < 0) visu.bars[i].current = 0;
|
|
}
|
|
} else {
|
|
// on xtensa/esp32 the floating point FFT takes 1/2 cycles of the fixed point
|
|
for (int i = 0 ; i < FFT_LEN ; i++) {
|
|
// don't normalize here, but we are due INT16_MAX and FFT_LEN / 2 / 2
|
|
visu.samples[i * 2 + 0] = (float) (visu_export.buffer[2*i] + visu_export.buffer[2*i + 1]) * visu.hanning[i];
|
|
visu.samples[i * 2 + 1] = 0;
|
|
}
|
|
|
|
// actual FFT that might be less cycle than all the crap below
|
|
dsps_fft2r_fc32_ae32(visu.samples, FFT_LEN);
|
|
dsps_bit_rev_fc32_ansi(visu.samples, FFT_LEN);
|
|
float rate = visu_export.rate;
|
|
|
|
// now arrange the result with the number of bar and sampling rate (don't want DC)
|
|
for (int i = 0, j = 1; i < visu.n && j < (FFT_LEN / 2); i++) {
|
|
float power, count;
|
|
|
|
// find the next point in FFT (this is real signal, so only half matters)
|
|
for (count = 0, power = 0; j * visu_export.rate < visu.bars[i].limit * FFT_LEN && j < FFT_LEN / 2; j++, count += 1) {
|
|
power += visu.samples[2*j] * visu.samples[2*j] + visu.samples[2*j+1] * visu.samples[2*j+1];
|
|
}
|
|
// due to sample rate, we have reached the end of the available spectrum
|
|
if (j >= (FFT_LEN / 2)) {
|
|
// normalize accumulated data
|
|
if (count) power /= count * 2.;
|
|
} else if (count) {
|
|
// how much of what remains do we need to add
|
|
float ratio = j - (visu.bars[i].limit * FFT_LEN) / rate;
|
|
power += (visu.samples[2*j] * visu.samples[2*j] + visu.samples[2*j+1] * visu.samples[2*j+1]) * ratio;
|
|
|
|
// normalize accumulated data
|
|
power /= (count + ratio) * 2;
|
|
} else {
|
|
// no data for that band (sampling rate too high), just assume same as previous one
|
|
power = (visu.samples[2*j] * visu.samples[2*j] + visu.samples[2*j+1] * visu.samples[2*j+1]) / 2.;
|
|
}
|
|
|
|
// convert to dB and bars, same back-off
|
|
if (power) visu.bars[i].current = 32 * (0.01667f*10*(log10f(power) - log10f(FFT_LEN/2*2)) - 0.2543f);
|
|
if (visu.bars[i].current > 31) visu.bars[i].current = 31;
|
|
else if (visu.bars[i].current < 0) visu.bars[i].current = 0;
|
|
}
|
|
}
|
|
}
|
|
|
|
// we took what we want, we can release the buffer
|
|
visu_export.level = 0;
|
|
pthread_mutex_unlock(&visu_export.mutex);
|
|
|
|
GDS_ClearExt(display, false, false, visu.col, visu.row, visu.col + visu.width - 1, visu.row + visu.height - 1);
|
|
|
|
for (int i = visu.n; --i >= 0;) {
|
|
int x1 = visu.col + visu.border + visu.bar_border + i*(visu.bar_width + visu.bar_gap);
|
|
int y1 = visu.row + visu.height - 1;
|
|
|
|
if (visu.bars[i].current > visu.bars[i].max) visu.bars[i].max = visu.bars[i].current;
|
|
else if (visu.bars[i].max) visu.bars[i].max--;
|
|
|
|
for (int j = 0; j <= visu.bars[i].current; j += 2)
|
|
GDS_DrawLine(display, x1, y1 - j, x1 + visu.bar_width - 1, y1 - j, GDS_COLOR_WHITE);
|
|
|
|
if (visu.bars[i].max > 2) {
|
|
GDS_DrawLine(display, x1, y1 - visu.bars[i].max, x1 + visu.bar_width - 1, y1 - visu.bars[i].max, GDS_COLOR_WHITE);
|
|
GDS_DrawLine(display, x1, y1 - visu.bars[i].max + 1, x1 + visu.bar_width - 1, y1 - visu.bars[i].max + 1, GDS_COLOR_WHITE);
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
/****************************************************************************************
|
|
* Visu packet handler
|
|
*/
|
|
void spectrum_limits(int min, int n, int pos) {
|
|
if (n / 2) {
|
|
int step = ((DISPLAY_BW - min) * visu.spectrum_scale * 2) / n;
|
|
visu.bars[pos].limit = min + step;
|
|
for (int i = 1; i < n/2; i++) visu.bars[pos+i].limit = visu.bars[pos+i-1].limit + step;
|
|
spectrum_limits(visu.bars[pos + n/2 - 1].limit, n/2, pos + n/2);
|
|
} else {
|
|
visu.bars[pos].limit = DISPLAY_BW;
|
|
}
|
|
}
|
|
|
|
/****************************************************************************************
|
|
* Visu packet handler
|
|
*/
|
|
static void visu_handler( u8_t *data, int len) {
|
|
struct visu_packet *pkt = (struct visu_packet*) data;
|
|
int bars = 0;
|
|
|
|
LOG_DEBUG("visu %u with %u parameters", pkt->which, pkt->count);
|
|
|
|
/*
|
|
If width is specified, then respect all coordinates, otherwise we try to
|
|
use the bottom part of the display and if it is a small display, we overwrite
|
|
text
|
|
*/
|
|
|
|
xSemaphoreTake(displayer.mutex, portMAX_DELAY);
|
|
visu.mode = pkt->which;
|
|
|
|
// little trick to clean the taller screens when switching visu
|
|
if (visu.row >= SB_HEIGHT) GDS_ClearExt(display, false, true, visu.col, visu.row, visu.col + visu.width - 1, visu.row - visu.height - 1);
|
|
|
|
if (visu.mode) {
|
|
if (pkt->count >= 4) {
|
|
// small visu, then go were we are told to
|
|
pkt->height = htonl(pkt->height);
|
|
pkt->row = htonl(pkt->row);
|
|
pkt->col = htonl(pkt->col);
|
|
|
|
visu.width = htonl(pkt->width);
|
|
visu.height = pkt->height ? pkt->height : SB_HEIGHT;
|
|
visu.col = pkt->col < 0 ? displayer.width + pkt->col : pkt->col;
|
|
visu.row = pkt->row < 0 ? GDS_GetHeight(display) + pkt->row : pkt->row;
|
|
visu.border = htonl(pkt->border);
|
|
bars = htonl(pkt->bars);
|
|
visu.spectrum_scale = htonl(pkt->spectrum_scale) / 100.;
|
|
} else {
|
|
// full screen visu, try to use bottom screen if available
|
|
visu.width = displayer.width;
|
|
visu.height = GDS_GetHeight(display) > SB_HEIGHT ? GDS_GetHeight(display) - SB_HEIGHT : GDS_GetHeight(display);
|
|
visu.col = visu.border = 0;
|
|
visu.row = GDS_GetHeight(display) - visu.height;
|
|
bars = htonl(pkt->full.bars);
|
|
visu.spectrum_scale = htonl(pkt->full.spectrum_scale) / 100.;
|
|
}
|
|
|
|
// try to adapt to what we have
|
|
if (visu.mode == VISU_SPECTRUM) {
|
|
visu.n = bars ? bars : MAX_BARS;
|
|
if (visu.spectrum_scale <= 0 || visu.spectrum_scale > 0.5) visu.spectrum_scale = 0.5;
|
|
spectrum_limits(0, visu.n, 0);
|
|
} else {
|
|
visu.n = 2;
|
|
}
|
|
|
|
do {
|
|
visu.bar_width = (visu.width - visu.border - visu.bar_gap * (visu.n - 1)) / visu.n;
|
|
if (visu.bar_width > 0) break;
|
|
} while (--visu.n);
|
|
visu.bar_border = (visu.width - visu.border - (visu.bar_width + visu.bar_gap) * visu.n + visu.bar_gap) / 2;
|
|
|
|
// give up if not enough space
|
|
if (visu.bar_width < 0) {
|
|
visu.mode = VISU_BLANK;
|
|
LOG_WARN("Not enough room for displaying visu");
|
|
} else {
|
|
// de-activate scroller if we are taking main screen
|
|
if (visu.row < SB_HEIGHT) scroller.active = false;
|
|
vTaskResume(displayer.task);
|
|
}
|
|
visu.wake = 0;
|
|
|
|
// reset bars maximum
|
|
for (int i = visu.n; --i >= 0;) visu.bars[i].max = 0;
|
|
|
|
GDS_ClearExt(display, false, true, visu.col, visu.row, visu.col + visu.width - 1, visu.row - visu.height - 1);
|
|
|
|
LOG_INFO("Visualizer with %u bars of width %d:%d:%d:%d (%w:%u,h:%u,c:%u,r:%u,s:%.02f)", visu.n, visu.bar_border, visu.bar_width, visu.bar_gap, visu.border, visu.width, visu.height, visu.col, visu.row, visu.spectrum_scale);
|
|
} else {
|
|
LOG_INFO("Stopping visualizer");
|
|
}
|
|
|
|
xSemaphoreGive(displayer.mutex);
|
|
}
|
|
|
|
/****************************************************************************************
|
|
* Scroll task
|
|
* - with the addition of the visualizer, it's a bit a 2-headed beast not easy to
|
|
* maintain, so som better separation between the visu and scroll is probably needed
|
|
*/
|
|
static void displayer_task(void *args) {
|
|
int sleep;
|
|
|
|
while (1) {
|
|
xSemaphoreTake(displayer.mutex, portMAX_DELAY);
|
|
|
|
// suspend ourselves if nothing to do, grfg or visu will wake us up
|
|
if (!scroller.active && !visu.mode) {
|
|
xSemaphoreGive(displayer.mutex);
|
|
vTaskSuspend(NULL);
|
|
xSemaphoreTake(displayer.mutex, portMAX_DELAY);
|
|
scroller.wake = visu.wake = 0;
|
|
}
|
|
|
|
// go for long sleep when either item is disabled
|
|
if (!visu.mode) visu.wake = LONG_WAKE;
|
|
if (!scroller.active) scroller.wake = LONG_WAKE;
|
|
|
|
// scroll required amount of columns (within the window)
|
|
if (scroller.active && scroller.wake <= 0) {
|
|
// by default go for the long sleep, will change below if required
|
|
scroller.wake = LONG_WAKE;
|
|
|
|
// do we have more to scroll (scroll.width is the last column from which we havea full zone)
|
|
if (scroller.by > 0 ? (scroller.scrolled <= scroller.scroll.width) : (scroller.scrolled >= 0)) {
|
|
memcpy(scroller.frame, scroller.back.frame, scroller.back.width * displayer.height / 8);
|
|
for (int i = 0; i < scroller.width * displayer.height / 8; i++) scroller.frame[i] |= scroller.scroll.frame[scroller.scrolled * displayer.height / 8 + i];
|
|
scroller.scrolled += scroller.by;
|
|
if (displayer.owned) GDS_DrawBitmapCBR(display, scroller.frame, scroller.width, displayer.height);
|
|
|
|
// short sleep & don't need background update
|
|
scroller.wake = scroller.speed;
|
|
} else if (scroller.first || !scroller.mode) {
|
|
// at least one round done
|
|
scroller.first = false;
|
|
|
|
// see if we need to pause or if we are done
|
|
if (scroller.mode) {
|
|
// can't call directly send_packet from slimproto as it's not re-entrant
|
|
ANIC_resp = ANIM_SCROLL_ONCE | ANIM_SCREEN_1;
|
|
LOG_INFO("scroll-once terminated");
|
|
} else {
|
|
scroller.wake = scroller.pause;
|
|
LOG_DEBUG("scroll cycle done, pausing for %u (ms)", scroller.pause);
|
|
}
|
|
|
|
// need to reset pointers for next scroll
|
|
scroller.scrolled = scroller.by < 0 ? scroller.scroll.width : 0;
|
|
}
|
|
}
|
|
|
|
// update visu if active
|
|
if (visu.mode && visu.wake <= 0) {
|
|
visu_update();
|
|
visu.wake = 100;
|
|
}
|
|
|
|
// need to make sure we own display
|
|
if (displayer.owned) GDS_Update(display);
|
|
|
|
// release semaphore and sleep what's needed
|
|
xSemaphoreGive(displayer.mutex);
|
|
|
|
sleep = min(visu.wake, scroller.wake);
|
|
vTaskDelay(sleep / portTICK_PERIOD_MS);
|
|
scroller.wake -= sleep;
|
|
visu.wake -= sleep;
|
|
}
|
|
}
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|