/* * Copyright (c) 2015, Freescale Semiconductor, Inc. * All rights reserved. * * Redistribution and use in source and binary forms, with or without modification, * are permitted provided that the following conditions are met: * * o Redistributions of source code must retain the above copyright notice, this list * of conditions and the following disclaimer. * * o Redistributions in binary form must reproduce the above copyright notice, this * list of conditions and the following disclaimer in the documentation and/or * other materials provided with the distribution. * * o Neither the name of Freescale Semiconductor, Inc. nor the names of its * contributors may be used to endorse or promote products derived from this * software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "ccm_analog_imx7d.h" /******************************************************************************* * Code ******************************************************************************/ /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetArmPllFreq * Description : Get ARM PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetArmPllFreq(CCM_ANALOG_Type * base) { if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPllArmControl)) return 24000000ul; return 12000000ul * (CCM_ANALOG_PLL_ARM & CCM_ANALOG_PLL_ARM_DIV_SELECT_MASK); } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetSysPllFreq * Description : Get system PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetSysPllFreq(CCM_ANALOG_Type * base) { if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPll480Control)) return 24000000ul; if (CCM_ANALOG_PLL_480 & CCM_ANALOG_PLL_480_DIV_SELECT_MASK) return 528000000ul; else return 480000000ul; } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetDdrPllFreq * Description : Get DDR PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetDdrPllFreq(CCM_ANALOG_Type * base) { uint8_t divSelect, divTestSelect; float factor; if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPllDdrControl)) return 24000000ul; divSelect = CCM_ANALOG_PLL_DDR_REG(CCM_ANALOG) & CCM_ANALOG_PLL_DDR_DIV_SELECT_MASK; divTestSelect = (CCM_ANALOG_PLL_DDR_REG(CCM_ANALOG) & CCM_ANALOG_PLL_DDR_TEST_DIV_SELECT_MASK) >> CCM_ANALOG_PLL_DDR_TEST_DIV_SELECT_SHIFT; switch (divTestSelect) { case 0x0: divTestSelect = 2; break; case 0x1: divTestSelect = 1; break; case 0x2: case 0x3: divTestSelect = 0; break; } if (CCM_ANALOG_PLL_DDR_SS_REG(base) & CCM_ANALOG_PLL_DDR_SS_ENABLE_MASK) { factor = ((float)(CCM_ANALOG_PLL_DDR_SS_REG(base) & CCM_ANALOG_PLL_DDR_SS_STEP_MASK)) / ((float)(CCM_ANALOG_PLL_DDR_DENOM_REG(base) & CCM_ANALOG_PLL_DDR_DENOM_B_MASK)) * ((float)(CCM_ANALOG_PLL_DDR_NUM_REG(base) & CCM_ANALOG_PLL_DDR_NUM_A_MASK)); return (uint32_t)((24000000ul >> divTestSelect) * (divSelect + factor)); } else { return (24000000ul >> divTestSelect) * divSelect; } } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetEnetPllFreq * Description : Get Ethernet PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetEnetPllFreq(CCM_ANALOG_Type * base) { if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPllEnetControl)) return 24000000ul; return 1000000000ul; } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetAudioPllFreq * Description : Get Ethernet PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetAudioPllFreq(CCM_ANALOG_Type * base) { uint8_t divSelect, divPostSelect, divTestSelect; float factor; if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPllAudioControl)) return 24000000ul; divSelect = CCM_ANALOG_PLL_AUDIO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_AUDIO_DIV_SELECT_MASK; divPostSelect = (CCM_ANALOG_PLL_AUDIO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_AUDIO_POST_DIV_SEL_MASK) >> CCM_ANALOG_PLL_AUDIO_POST_DIV_SEL_SHIFT; divTestSelect = (CCM_ANALOG_PLL_AUDIO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_AUDIO_TEST_DIV_SELECT_MASK) >> CCM_ANALOG_PLL_AUDIO_TEST_DIV_SELECT_SHIFT; switch (divPostSelect) { case 0x0: case 0x2: divPostSelect = 0; break; case 0x1: divPostSelect = 1; break; case 0x3: divPostSelect = 2; break; } switch (divTestSelect) { case 0x0: divTestSelect = 2; break; case 0x1: divTestSelect = 1; break; case 0x2: case 0x3: divTestSelect = 0; break; } if (CCM_ANALOG_PLL_AUDIO_SS_REG(base) & CCM_ANALOG_PLL_AUDIO_SS_ENABLE_MASK) { factor = ((float)(CCM_ANALOG_PLL_AUDIO_SS_REG(base) & CCM_ANALOG_PLL_AUDIO_SS_STEP_MASK)) / ((float)(CCM_ANALOG_PLL_AUDIO_DENOM_REG(base) & CCM_ANALOG_PLL_AUDIO_DENOM_B_MASK)) * ((float)(CCM_ANALOG_PLL_AUDIO_NUM_REG(base) & CCM_ANALOG_PLL_AUDIO_NUM_A_MASK)); return (uint32_t)(((24000000ul >> divTestSelect) >> divPostSelect) * (divSelect + factor)); } else { return ((24000000ul >> divTestSelect) >> divPostSelect) * divSelect; } } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetVideoPllFreq * Description : Get Ethernet PLL frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetVideoPllFreq(CCM_ANALOG_Type * base) { uint8_t divSelect, divPostSelect, divTestSelect; float factor; if (CCM_ANALOG_IsPllBypassed(base, ccmAnalogPllVideoControl)) return 24000000ul; divSelect = CCM_ANALOG_PLL_VIDEO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_VIDEO_DIV_SELECT_MASK; divPostSelect = (CCM_ANALOG_PLL_VIDEO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_VIDEO_POST_DIV_SEL_MASK) >> CCM_ANALOG_PLL_VIDEO_POST_DIV_SEL_SHIFT; divTestSelect = (CCM_ANALOG_PLL_VIDEO_REG(CCM_ANALOG) & CCM_ANALOG_PLL_VIDEO_TEST_DIV_SELECT_MASK) >> CCM_ANALOG_PLL_VIDEO_TEST_DIV_SELECT_SHIFT; switch (divPostSelect) { case 0x0: case 0x2: divPostSelect = 0; break; case 0x1: divPostSelect = 1; break; case 0x3: divPostSelect = 2; break; } switch (divTestSelect) { case 0x0: divTestSelect = 2; break; case 0x1: divTestSelect = 1; break; case 0x2: case 0x3: divTestSelect = 0; break; } if (CCM_ANALOG_PLL_VIDEO_SS_REG(base) & CCM_ANALOG_PLL_VIDEO_SS_ENABLE_MASK) { factor = ((float)(CCM_ANALOG_PLL_VIDEO_SS_REG(base) & CCM_ANALOG_PLL_VIDEO_SS_STEP_MASK)) / ((float)(CCM_ANALOG_PLL_VIDEO_DENOM_REG(base) & CCM_ANALOG_PLL_VIDEO_DENOM_B_MASK)) * ((float)(CCM_ANALOG_PLL_VIDEO_NUM_REG(base) & CCM_ANALOG_PLL_VIDEO_NUM_A_MASK)); return (uint32_t)(((24000000ul >> divTestSelect) >> divPostSelect) * (divSelect + factor)); } else { return ((24000000ul >> divTestSelect) >> divPostSelect) * divSelect; } } /*FUNCTION********************************************************************** * * Function Name : CCM_ANALOG_GetPfdFreq * Description : Get PFD frequency * *END**************************************************************************/ uint32_t CCM_ANALOG_GetPfdFreq(CCM_ANALOG_Type * base, uint32_t pfdFrac) { uint32_t main, frac; /* PFD should work with system PLL without bypass */ assert(!CCM_ANALOG_IsPllBypassed(base, ccmAnalogPll480Control)); main = CCM_ANALOG_GetSysPllFreq(base); frac = CCM_ANALOG_GetPfdFrac(base, pfdFrac); return main / frac * 18; } /******************************************************************************* * EOF ******************************************************************************/