refactor: 完整C++面向对象重构(LedManager/SdramManager)

This commit is contained in:
2026-04-26 21:25:00 +08:00
parent ff91e324cf
commit 128852dd0e
5 changed files with 692 additions and 972 deletions
+147 -118
View File
@@ -12,62 +12,27 @@
__attribute__((section(".sdram"))) uint8_t sdram_big_buffer[1024 * 1024];
#define LED1_PORT GPIOE
#define LED1_PIN GPIO_PIN_3
#define LED2_PORT GPIOD
#define LED2_PIN GPIO_PIN_7
#define LED3_PORT GPIOG
#define LED3_PIN GPIO_PIN_3
#define LED4_PORT GPIOA
#define LED4_PIN GPIO_PIN_5
static void delay_16m(uint32_t ms)
{
for (volatile uint32_t i = 0; i < ms * 4000U; i++);
}
static void led_on(uint32_t port, uint32_t pin)
{
gpio_bit_set(port, pin);
}
static void led_off(uint32_t port, uint32_t pin)
{
gpio_bit_reset(port, pin);
for (volatile uint32_t i = 0; i < ms * 4000U; i++)
;
}
static void led_pattern(uint8_t p)
{
led_off(LED1_PORT, LED1_PIN);
led_off(LED2_PORT, LED2_PIN);
led_off(LED3_PORT, LED3_PIN);
led_off(LED4_PORT, LED4_PIN);
if (p & 0x01) led_on(LED1_PORT, LED1_PIN);
if (p & 0x02) led_on(LED2_PORT, LED2_PIN);
if (p & 0x04) led_on(LED3_PORT, LED3_PIN);
if (p & 0x08) led_on(LED4_PORT, LED4_PIN);
}
static void init_leds(void)
{
rcu_periph_clock_enable(RCU_GPIOA);
rcu_periph_clock_enable(RCU_GPIOE);
rcu_periph_clock_enable(RCU_GPIOG);
rcu_periph_clock_enable(RCU_GPIOD);
gpio_mode_set(LED1_PORT, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, LED1_PIN);
gpio_output_options_set(LED1_PORT, GPIO_OTYPE_PP, GPIO_OSPEED_50MHZ, LED1_PIN);
gpio_mode_set(LED2_PORT, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, LED2_PIN);
gpio_output_options_set(LED2_PORT, GPIO_OTYPE_PP, GPIO_OSPEED_50MHZ, LED2_PIN);
gpio_mode_set(LED3_PORT, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, LED3_PIN);
gpio_output_options_set(LED3_PORT, GPIO_OTYPE_PP, GPIO_OSPEED_50MHZ, LED3_PIN);
gpio_mode_set(LED4_PORT, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE, LED4_PIN);
gpio_output_options_set(LED4_PORT, GPIO_OTYPE_PP, GPIO_OSPEED_50MHZ, LED4_PIN);
led_off(LED1_PORT, LED1_PIN);
led_off(LED2_PORT, LED2_PIN);
led_off(LED3_PORT, LED3_PIN);
led_off(LED4_PORT, LED4_PIN);
LedManager &lm = LedManager::instance();
lm.led(0).off();
lm.led(1).off();
lm.led(2).off();
lm.led(3).off();
if (p & 0x01)
lm.led(0).on();
if (p & 0x02)
lm.led(1).on();
if (p & 0x04)
lm.led(2).on();
if (p & 0x08)
lm.led(3).on();
}
static void init_usart0(void)
@@ -89,21 +54,32 @@ static void init_usart0(void)
static void uart_putchar(char c)
{
usart_data_transmit(USART0, (uint8_t)c);
while (RESET == usart_flag_get(USART0, USART_FLAG_TBE));
while (RESET == usart_flag_get(USART0, USART_FLAG_TBE))
;
}
static void uart_puts(const char *s)
{
while (*s) uart_putchar(*s++);
while (*s)
uart_putchar(*s++);
}
static void uart_putdec(uint32_t val)
{
char buf[16];
int idx = 0;
if (val == 0) { uart_puts("0"); return; }
while (val > 0) { buf[idx++] = '0' + (val % 10); val /= 10; }
while (idx > 0) uart_putchar(buf[--idx]);
if (val == 0)
{
uart_puts("0");
return;
}
while (val > 0)
{
buf[idx++] = '0' + (val % 10);
val /= 10;
}
while (idx > 0)
uart_putchar(buf[--idx]);
}
static void reinit_usart0_168m(void)
@@ -121,7 +97,8 @@ static void test_sdram_driver(void)
SdramManager &sdram = SdramManager::instance();
RetCode ret = sdram.init();
if (ret != RET_OK) {
if (ret != RET_OK)
{
printf(" SDRAM 初始化失败: 错误码=%d\r\n", ret);
return;
}
@@ -134,10 +111,12 @@ static void test_sdram_driver(void)
delay_1ms(1);
bool diag1_ok = true;
for (uint32_t i = 0; i < 8; i++) {
for (uint32_t i = 0; i < 8; i++)
{
uint16_t val = sram16[i];
uint16_t expected = (uint16_t)(0xAA00 + i);
if (val != expected) {
if (val != expected)
{
printf(" 16位错误 @ [%lu]: 期望=0x%04X, 读取=0x%04X\r\n", i, expected, val);
diag1_ok = false;
}
@@ -154,11 +133,14 @@ static void test_sdram_driver(void)
delay_1ms(1);
bool diag2_ok = true;
for (uint32_t i = 0; i < 4; i++) {
for (uint32_t i = 0; i < 4; i++)
{
uint32_t val = sram32[i];
uint32_t expected = (i == 0) ? 0xDEADBEEF : (i == 1) ? 0xCAFEBABE
: (i == 2) ? 0x12345678 : 0x87654321;
if (val != expected) {
: (i == 2) ? 0x12345678
: 0x87654321;
if (val != expected)
{
printf(" 32位错误 @ [%lu]: 期望=0x%08lX, 读取=0x%08lX\r\n", i, expected, val);
diag2_ok = false;
}
@@ -169,9 +151,12 @@ static void test_sdram_driver(void)
uint32_t write_val = 0xA5A55A5A;
uint32_t read_val = 0;
ret = sdram.write(64, &write_val, sizeof(write_val));
if (ret != RET_OK) {
if (ret != RET_OK)
{
printf(" 驱动写入失败: %d\r\n", ret);
} else {
}
else
{
__DSB();
ret = sdram.read(64, &read_val, sizeof(read_val));
if (ret != RET_OK)
@@ -190,7 +175,8 @@ static void test_flash_driver(void)
FlashManager &flash = FlashManager::instance();
RetCode ret = flash.init();
if (ret != RET_OK) {
if (ret != RET_OK)
{
printf(" Flash 初始化失败: %d\r\n", ret);
return;
}
@@ -208,32 +194,49 @@ static void test_flash_driver(void)
printf(" 擦除 Flash 扇区...\r\n");
ret = flash.erase(test_address, flash.sector_size());
if (ret != RET_OK) { printf(" Flash 擦除失败: 错误码=%d\r\n", ret); return; }
if (ret != RET_OK)
{
printf(" Flash 擦除失败: 错误码=%d\r\n", ret);
return;
}
printf(" Flash 擦除成功\r\n");
printf(" 写入 Flash 数据...\r\n");
ret = flash.write(test_address, write_buffer, sizeof(write_buffer));
if (ret != RET_OK) { printf(" Flash 写入失败: %d\r\n", ret); return; }
if (ret != RET_OK)
{
printf(" Flash 写入失败: %d\r\n", ret);
return;
}
printf(" Flash 写入成功\r\n");
printf(" 读取 Flash 数据...\r\n");
ret = flash.read(test_address, read_buffer, sizeof(read_buffer));
if (ret != RET_OK) { printf(" Flash 读取失败: %d\r\n", ret); return; }
if (ret != RET_OK)
{
printf(" Flash 读取失败: %d\r\n", ret);
return;
}
printf(" Flash 读取成功\r\n");
bool verify_ok = true;
for (int i = 0; i < 256; i++) {
if (read_buffer[i] != write_buffer[i]) {
for (int i = 0; i < 256; i++)
{
if (read_buffer[i] != write_buffer[i])
{
verify_ok = false;
printf(" 数据错误 @ %d: 写入=%02X, 读取=%02X\r\n", i, write_buffer[i], read_buffer[i]);
break;
}
}
if (verify_ok) printf(" Flash 数据验证成功\r\n");
if (verify_ok)
printf(" Flash 数据验证成功\r\n");
ret = flash.self_test(256);
if (ret == RET_OK) printf(" Flash 自测试通过\r\n");
else printf(" Flash 自测试失败: %d\r\n", ret);
if (ret == RET_OK)
printf(" Flash 自测试通过\r\n");
else
printf(" Flash 自测试失败: %d\r\n", ret);
printf("Flash 驱动测试完成\r\n");
}
@@ -249,7 +252,8 @@ static void test_lcd(void)
delay_1ms(500);
uint16_t bands[4] = {Lcd::RED, Lcd::GREEN, Lcd::BLUE, Lcd::WHITE};
for (int i = 0; i < 4; i++) {
for (int i = 0; i < 4; i++)
{
int y0 = i * 200;
int y1 = y0 + 199;
lcd.blockWrite(0, 479, y0, y1);
@@ -279,10 +283,12 @@ static void test_sdram_after_lcd(void)
bool ok = true;
volatile uint16_t *sram16 = (volatile uint16_t *)0xC0000000;
for (uint32_t i = 0; i < 8; i++) {
for (uint32_t i = 0; i < 8; i++)
{
uint16_t val = sram16[i];
uint16_t expected = (uint16_t)(0xAA00 + i);
if (val != expected) {
if (val != expected)
{
printf(" 16位错误 @ [%lu]: 期望=0x%04X, 读取=0x%04X\r\n", i, expected, val);
ok = false;
}
@@ -290,9 +296,11 @@ static void test_sdram_after_lcd(void)
volatile uint32_t *sram32 = (volatile uint32_t *)0xC0000000;
uint32_t expected_32[4] = {0xDEADBEEF, 0xCAFEBABE, 0x12345678, 0x87654321};
for (uint32_t i = 0; i < 4; i++) {
for (uint32_t i = 0; i < 4; i++)
{
uint32_t val = sram32[i];
if (val != expected_32[i]) {
if (val != expected_32[i])
{
printf(" 32位错误 @ [%lu]: 期望=0x%08lX, 读取=0x%08lX\r\n", i, expected_32[i], val);
ok = false;
}
@@ -312,17 +320,18 @@ static void concurrent_loop(void)
uint32_t counter = 0;
volatile uint16_t *sram16 = (volatile uint16_t *)0xC0000000;
for (int iter = 0; iter < 10; iter++) {
led_on(LED1_PORT, LED1_PIN);
led_off(LED2_PORT, LED2_PIN);
for (int iter = 0; iter < 10; iter++)
{
LedManager::instance().led(0).on();
LedManager::instance().led(1).off();
sram16[100 + iter] = (uint16_t)(iter * 0x1111);
__DSB();
uint16_t val = sram16[100 + iter];
printf("[并发] iter=%d, SDRAM[%d]=0x%04X, LED1=ON\r\n", iter, 100 + iter, val);
delay_1ms(500);
led_off(LED1_PORT, LED1_PIN);
led_on(LED2_PORT, LED2_PIN);
LedManager::instance().led(0).off();
LedManager::instance().led(1).on();
sram16[200 + iter] = (uint16_t)(iter * 0x2222);
__DSB();
val = sram16[200 + iter];
@@ -345,18 +354,19 @@ static void test_touch(void)
printf("\r\n===== Touch 测试 (多点触控) =====\r\n");
RetCode ret = touch.init();
if (ret != RET_OK) {
if (ret != RET_OK)
{
printf(" Touch 初始化失败 (ret=%d)\r\n", ret);
return;
}
printf(" Touch 初始化成功,等待触摸中断...\r\n");
static const uint16_t TP_COLORS[5] = {
0xFFE0, // YELLOW - point 0
0x07FF, // CYAN - point 1
0xF81F, // MAGENTA - point 2
0x07E0, // GREEN - point 3
0xF800 // RED - point 4
0xFFE0, // YELLOW - point 0
0x07FF, // CYAN - point 1
0xF81F, // MAGENTA - point 2
0x07E0, // GREEN - point 3
0xF800 // RED - point 4
};
const uint16_t BG_COLOR = 0x0841;
@@ -367,7 +377,8 @@ static void test_touch(void)
lcd.setForeground(Lcd::WHITE);
lcd.showString(10, 30, 460, 24, 16, 0, (uint8_t *)"Touch with up to 5 fingers");
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++) {
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++)
{
lcd.setForeground(TP_COLORS[i]);
char lbl[8];
sprintf(lbl, "P%d: --", i);
@@ -377,7 +388,8 @@ static void test_touch(void)
uint16_t last_x[5];
uint16_t last_y[5];
bool was_active[5];
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++) {
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++)
{
last_x[i] = 0xFFFF;
last_y[i] = 0xFFFF;
was_active[i] = false;
@@ -386,8 +398,10 @@ static void test_touch(void)
uint32_t idle_counter = 0;
GT1151::irq_flag = 0;
while (1) {
if (GT1151::irq_flag) {
while (1)
{
if (GT1151::irq_flag)
{
GT1151::irq_flag = 0;
delay_1ms(5);
@@ -399,21 +413,25 @@ static void test_touch(void)
uint8_t active_cnt = touch.activeCount();
uint8_t mask = sta & 0x1F;
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++) {
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++)
{
bool active = (mask & (1 << i)) != 0;
if (active) {
if (active)
{
uint16_t x = touch.x(i);
uint16_t y = touch.y(i);
if (x < lcd.width() && y < lcd.height()) {
if (x < lcd.width() && y < lcd.height())
{
lcd.setForeground(TP_COLORS[i]);
char buf[20];
sprintf(buf, "P%d: X:%-3d Y:%-3d", i, x, y);
lcd.fillRectangle(10, 52 + i * 18, 200, 52 + i * 18 + 17);
lcd.showString(10, 52 + i * 18, 200, 18, 16, 0, (uint8_t *)buf);
if (was_active[i] && last_x[i] != 0xFFFF) {
if (was_active[i] && last_x[i] != 0xFFFF)
{
lcd.setForeground(TP_COLORS[i]);
lcd.drawLine(last_x[i], last_y[i], x, y);
}
@@ -425,8 +443,11 @@ static void test_touch(void)
last_y[i] = y;
was_active[i] = true;
}
} else {
if (was_active[i]) {
}
else
{
if (was_active[i])
{
lcd.setForeground(BG_COLOR);
lcd.fillCircle(last_x[i], last_y[i], 6);
@@ -442,15 +463,19 @@ static void test_touch(void)
}
printf("[TOUCH] cnt=%d sta=0x%02X", active_cnt, sta);
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++) {
for (uint8_t i = 0; i < GT1151::kMaxTouch; i++)
{
if (mask & (1 << i))
printf(" P%d(%u,%u)", i, touch.x(i), touch.y(i));
}
printf("\r\n");
} else {
}
else
{
idle_counter++;
delay_1ms(10);
if (idle_counter > 500) {
if (idle_counter > 500)
{
printf(" 无触摸超过 5 秒,退出 Touch 测试\r\n");
break;
}
@@ -464,7 +489,7 @@ static void test_touch(void)
int main(void)
{
init_leds();
LedManager::instance().init_all();
led_pattern(0x01);
init_usart0();
@@ -475,18 +500,23 @@ int main(void)
uint32_t cs = RCU_CFG0 & RCU_CFG0_SCS;
uart_puts("Clock source: ");
if (cs == RCU_SCSS_IRC16M) uart_puts("IRC16M (16MHz)\r\n");
else if (cs == RCU_SCSS_HXTAL) uart_puts("HXTAL (25MHz)\r\n");
else if (cs == RCU_SCSS_PLLP) uart_puts("PLL (168MHz)\r\n");
else uart_puts("UNKNOWN\r\n");
if (cs == RCU_SCSS_IRC16M)
uart_puts("IRC16M (16MHz)\r\n");
else if (cs == RCU_SCSS_HXTAL)
uart_puts("HXTAL (25MHz)\r\n");
else if (cs == RCU_SCSS_PLLP)
uart_puts("PLL (168MHz)\r\n");
else
uart_puts("UNKNOWN\r\n");
uart_puts("SystemCoreClock: ");
uart_putdec(SystemCoreClock);
uart_puts(" Hz\r\n");
for (int i = 0; i < 3; i++) {
led_on(LED2_PORT, LED2_PIN);
for (int i = 0; i < 3; i++)
{
LedManager::instance().led(1).on();
delay_16m(200);
led_off(LED2_PORT, LED2_PIN);
LedManager::instance().led(1).off();
delay_16m(200);
}
uart_puts("LED blink OK\r\n");
@@ -500,17 +530,15 @@ int main(void)
cs = RCU_CFG0 & RCU_CFG0_SCS;
uart_puts("Clock after init: ");
if (cs == RCU_SCSS_PLLP) uart_puts("PLL (168MHz)\r\n");
else uart_puts("UNKNOWN\r\n");
if (cs == RCU_SCSS_PLLP)
uart_puts("PLL (168MHz)\r\n");
else
uart_puts("UNKNOWN\r\n");
uart_puts("SystemCoreClock: ");
uart_putdec(SystemCoreClock);
uart_puts(" Hz\r\n");
led_pattern(0x07);
LedManager::instance().init_all();
LedManager::instance().led(1).on();
delay_16m(100);
LedManager::instance().led(1).off();
uart_puts("LedManager OK\r\n");
led_pattern(0x09);
@@ -554,10 +582,11 @@ int main(void)
printf("系统运行于 168MHz, Flash/SDRAM/LCD/UART/LED 全部正常\r\n");
uint32_t tick = 0;
while (1) {
led_on(LED4_PORT, LED4_PIN);
while (1)
{
LedManager::instance().led(3).on();
delay_1ms(250);
led_off(LED4_PORT, LED4_PIN);
LedManager::instance().led(3).off();
delay_1ms(250);
tick++;