feat: implement 4-bit SPI encoding at 3.0 MHz to align with byte boundaries and prevent gap stretching

This commit is contained in:
2026-07-08 13:21:32 +08:00
parent 85b805963a
commit 486b225bb3

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@@ -128,29 +128,25 @@ void UI_ShowSosPage(void);
* WS2812B 幻彩 LED 单线驱动函数 (24MHz 1T 模式下精准时序控制) * WS2812B 幻彩 LED 单线驱动函数 (24MHz 1T 模式下精准时序控制)
* ========================================================================= */ * ========================================================================= */
const u16 code SPI_LUT[16] = { void WS2812_EncodeByte4(u8 v, u8 *buf)
0x924, 0x926, 0x934, 0x936, 0x9A4, 0x9A6, 0x9B4, 0x9B6,
0xD24, 0xD26, 0xD34, 0xD36, 0xDA4, 0xDA6, 0xDB4, 0xDB6
};
void WS2812_EncodeByte(u8 v, u8 *buf)
{ {
u16 p1 = SPI_LUT[v >> 4]; // Encode 8 FCOB bits into 4 SPI bytes (2 FCOB bits per byte)
u16 p2 = SPI_LUT[v & 0x0F]; // 0-code -> 1000 (binary), 1-code -> 1100 (binary)
buf[0] = p1 >> 4; buf[0] = ((v & 0x80) ? 0xC0 : 0x80) | ((v & 0x40) ? 0x0C : 0x08);
buf[1] = ((p1 & 0x0F) << 4) | (p2 >> 8); buf[1] = ((v & 0x20) ? 0xC0 : 0x80) | ((v & 0x10) ? 0x0C : 0x08);
buf[2] = p2; buf[2] = ((v & 0x08) ? 0xC0 : 0x80) | ((v & 0x04) ? 0x0C : 0x08);
buf[3] = ((v & 0x02) ? 0xC0 : 0x80) | ((v & 0x01) ? 0x0C : 0x08);
} }
void WS2812_Write24Bit(u8 g, u8 r, u8 b) void WS2812_Write24Bit(u8 g, u8 r, u8 b)
{ {
u8 xdata buf[9]; u8 xdata buf[12];
u8 i; u8 i;
u16 timeout; u16 timeout;
WS2812_EncodeByte(g, &buf[0]); WS2812_EncodeByte4(g, &buf[0]);
WS2812_EncodeByte(r, &buf[3]); WS2812_EncodeByte4(r, &buf[4]);
WS2812_EncodeByte(b, &buf[6]); WS2812_EncodeByte4(b, &buf[8]);
EA = 0; EA = 0;
@@ -161,30 +157,14 @@ void WS2812_Write24Bit(u8 g, u8 r, u8 b)
SPCTL = 0xD0; // Enable SPI at SYSCLK/4 (3.0 MHz actual clock on board) SPCTL = 0xD0; // Enable SPI at SYSCLK/4 (3.0 MHz actual clock on board)
SPSTAT = 0xC0; // Clear flags SPSTAT = 0xC0; // Clear flags
SPDAT = buf[0]; // Goes to shift register immediately for (i = 0; i < 12; i++)
// Wait about 20 system cycles to avoid WCOL
_nop_(); _nop_(); _nop_(); _nop_(); _nop_();
_nop_(); _nop_(); _nop_(); _nop_(); _nop_();
_nop_(); _nop_(); _nop_(); _nop_(); _nop_();
_nop_(); _nop_(); _nop_(); _nop_(); _nop_();
SPDAT = buf[1]; // Goes to transmit buffer
for (i = 2; i < 9; i++)
{ {
SPDAT = buf[i];
timeout = 2000; timeout = 2000;
while (!(SPSTAT & 0x80) && --timeout); // Wait with timeout while (!(SPSTAT & 0x80) && --timeout); // Safe wait with timeout
SPSTAT = 0xC0; SPSTAT = 0xC0;
SPDAT = buf[i]; // Write buf[i] to transmit buffer (zero gap!)
} }
timeout = 2000;
while (!(SPSTAT & 0x80) && --timeout); // Wait for buf[7]
SPSTAT = 0xC0;
timeout = 2000;
while (!(SPSTAT & 0x80) && --timeout); // Wait for buf[8]
SPSTAT = 0xC0;
SPCTL = 0x90; // Disable SPI SPCTL = 0x90; // Disable SPI
WS2812_DI = 0; WS2812_DI = 0;
MOTOR = 0; // Ensure motor is off MOTOR = 0; // Ensure motor is off