202 lines
4.6 KiB
C
202 lines
4.6 KiB
C
/*
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* Copyright (c) 2006-2018, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2017-09-06 勤为本 first version
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*/
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// 封装硬件pwm接口
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#include "ls1c_public.h"
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#include "ls1c_pin.h"
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#include "ls1c_pwm.h"
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#include "ls1c_clock.h"
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#include "ls1c_regs.h"
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// pwm的最大周期
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#define PWM_MAX_PERIOD (0xFFFFFF) // 计数器的值
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/*
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* 根据gpio获取相应pwm的基地址
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* @gpio pwm引脚
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* @ret pwm基地址
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*/
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unsigned int pwm_get_reg_base(unsigned int gpio)
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{
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unsigned int reg_base = 0;
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switch (gpio)
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{
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case LS1C_PWM0_GPIO06:
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case LS1C_PWM0_GPIO04:
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reg_base = LS1C_REG_BASE_PWM0;
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break;
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case LS1C_PWM1_GPIO92:
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case LS1C_PWM1_GPIO05:
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reg_base = LS1C_REG_BASE_PWM1;
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break;
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case LS1C_PWM2_GPIO52:
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case LS1C_PWM2_GPIO46:
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reg_base = LS1C_REG_BASE_PWM2;
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break;
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case LS1C_PWM3_GPIO47:
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case LS1C_PWM3_GPIO53:
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reg_base = LS1C_REG_BASE_PWM3;
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break;
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}
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return reg_base;
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}
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/*
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* 禁止pwm
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* @pwm_info PWMn的详细信息
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*/
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void pwm_disable(pwm_info_t *pwm_info)
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{
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unsigned int pwm_reg_base = 0;
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// 检查入参
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if (NULL == pwm_info)
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{
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return ;
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}
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pwm_reg_base = pwm_get_reg_base(pwm_info->gpio);
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reg_write_32(0, (volatile unsigned int *)(pwm_reg_base + LS1C_PWM_CTRL));
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return ;
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}
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/*
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* 使能PWM
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* @pwm_info PWMn的详细信息
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*/
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void pwm_enable(pwm_info_t *pwm_info)
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{
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unsigned int pwm_reg_base = 0;
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unsigned int ctrl = 0;
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// 检查入参
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if (NULL == pwm_info)
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{
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return ;
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}
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// 获取基地址
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pwm_reg_base = pwm_get_reg_base(pwm_info->gpio);
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// 清零计数器
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reg_write_32(0, (volatile unsigned int *)(pwm_reg_base + LS1C_PWM_CNTR));
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// 设置控制寄存器
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ctrl = (0 << LS1C_PWM_INT_LRC_EN)
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| (0 << LS1C_PWM_INT_HRC_EN)
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| (0 << LS1C_PWM_CNTR_RST)
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| (0 << LS1C_PWM_INT_SR)
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| (0 << LS1C_PWM_INTEN)
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| (0 << LS1C_PWM_OE)
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| (1 << LS1C_PWM_CNT_EN);
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if (PWM_MODE_PULSE == pwm_info->mode) // 单脉冲
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{
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ctrl |= (1 << LS1C_PWM_SINGLE);
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}
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else // 连续脉冲
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{
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ctrl &= ~(1 << LS1C_PWM_SINGLE);
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}
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reg_write_32(ctrl, (volatile unsigned int *)(pwm_reg_base + LS1C_PWM_CTRL));
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return ;
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}
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/*
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* 初始化PWMn
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* @pwm_info PWMn的详细信息
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*/
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void pwm_init(pwm_info_t *pwm_info)
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{
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unsigned int gpio;
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unsigned long pwm_clk = 0; // pwm模块的时钟频率
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unsigned long tmp = 0;
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unsigned int pwm_reg_base = 0;
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unsigned long period = 0;
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// 判断入参
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if (NULL == pwm_info)
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{
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// 入参非法,则直接返回
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return ;
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}
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gpio = pwm_info->gpio;
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// 配置相应引脚用作pwm,而非gpio
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pin_set_purpose(gpio, PIN_PURPOSE_OTHER);
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// 复用
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switch (gpio)
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{
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// 不需要复用
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case LS1C_PWM0_GPIO06:
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case LS1C_PWM1_GPIO92:
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break;
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case LS1C_PWM0_GPIO04: // gpio04的第三复用
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pin_set_remap(LS1C_PWM0_GPIO04, PIN_REMAP_THIRD);
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break;
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case LS1C_PWM1_GPIO05: // gpio05的第三复用
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pin_set_remap(LS1C_PWM1_GPIO05, PIN_REMAP_THIRD);
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break;
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case LS1C_PWM2_GPIO52: // gpio52的第四复用
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pin_set_remap(LS1C_PWM2_GPIO52, PIN_REMAP_FOURTH);
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break;
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case LS1C_PWM2_GPIO46: // gpio46的第四复用
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pin_set_remap(LS1C_PWM2_GPIO46, PIN_REMAP_FOURTH);
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break;
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case LS1C_PWM3_GPIO47: // gpio47的第四复用
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pin_set_remap(LS1C_PWM3_GPIO47, PIN_REMAP_FOURTH);
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break;
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case LS1C_PWM3_GPIO53: // gpio53的第四复用
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pin_set_remap(LS1C_PWM3_GPIO53, PIN_REMAP_FOURTH);
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break;
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default:
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break;
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}
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// 根据占空比和pwm周期计算寄存器HRC和LRC的值
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// 两个64位数相乘,只能得到低32位,linux下却可以得到64位结果,
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// 暂不清楚原因,用浮点运算代替
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pwm_clk = clk_get_apb_rate();
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period = (1.0 * pwm_clk * pwm_info->period_ns) / 1000000000;
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period = MIN(period, PWM_MAX_PERIOD); // 限制周期不能超过最大值
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tmp = period - (period * pwm_info->duty);
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// 写寄存器HRC和LRC
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pwm_reg_base = pwm_get_reg_base(gpio);
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reg_write_32(--tmp, (volatile unsigned int *)(pwm_reg_base + LS1C_PWM_HRC));
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reg_write_32(--period, (volatile unsigned int *)(pwm_reg_base + LS1C_PWM_LRC));
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// 写主计数器
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pwm_enable(pwm_info);
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return ;
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}
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