201 lines
5.8 KiB
Plaintext
201 lines
5.8 KiB
Plaintext
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/*******************************************************************************
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* Filename: OSAL_Math.s51
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* Revised: $Date: 2010-02-23 10:47:02 -0800 (Tue, 23 Feb 2010) $
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* Revision: $Revision: 21759 $
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*
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* Description: This module contains optimized math routines needed to
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* perform efficient as possible calculations for BLE operations
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* such as timer drift adjustments.
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*
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* Copyright 2010 Texas Instruments Incorporated. All rights reserved.
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*
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* IMPORTANT: Your use of this Software is limited to those specific rights
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* granted under the terms of a software license agreement between the user
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* who downloaded the software, his/her employer (which must be your employer)
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* and Texas Instruments Incorporated (the "License"). You may not use this
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* Software unless you agree to abide by the terms of the License. The License
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* limits your use, and you acknowledge, that the Software may not be modified,
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* copied or distributed unless embedded on a Texas Instruments microcontroller
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* or used solely and exclusively in conjunction with a Texas Instruments radio
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* frequency transceiver, which is integrated into your product. Other than for
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* the foregoing purpose, you may not use, reproduce, copy, prepare derivative
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* works of, modify, distribute, perform, display or sell this Software and/or
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* its documentation for any purpose.
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* YOU FURTHER ACKNOWLEDGE AND AGREE THAT THE SOFTWARE AND DOCUMENTATION ARE
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* PROVIDED <20>AS IS<49> WITHOUT WARRANTY OF ANY KIND, EITHER EXPRESS OR IMPLIED,
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* INCLUDING WITHOUT LIMITATION, ANY WARRANTY OF MERCHANTABILITY, TITLE,
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* NON-INFRINGEMENT AND FITNESS FOR A PARTICULAR PURPOSE. IN NO EVENT SHALL
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* TEXAS INSTRUMENTS OR ITS LICENSORS BE LIABLE OR OBLIGATED UNDER CONTRACT,
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* NEGLIGENCE, STRICT LIABILITY, CONTRIBUTION, BREACH OF WARRANTY, OR OTHER
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* LEGAL EQUITABLE THEORY ANY DIRECT OR INDIRECT DAMAGES OR EXPENSES
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* INCLUDING BUT NOT LIMITED TO ANY INCIDENTAL, SPECIAL, INDIRECT, PUNITIVE
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* OR CONSEQUENTIAL DAMAGES, LOST PROFITS OR LOST DATA, COST OF PROCUREMENT
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* OF SUBSTITUTE GOODS, TECHNOLOGY, SERVICES, OR ANY CLAIMS BY THIRD PARTIES
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* (INCLUDING BUT NOT LIMITED TO ANY DEFENSE THEREOF), OR OTHER SIMILAR COSTS.
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*
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* Should you have any questions regarding your right to use this Software,
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* contact Texas Instruments Incorporated at www.TI.com.
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*******************************************************************************/
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MODULE OSAL_Math.s51
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/*******************************************************************************
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*
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* @fn osalMcuDivide31By16To16
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*
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* @brief This function is used to divide a 31 bit dividend by a 16 bit
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* divisor and return a packed 16 bit quotient and 16 bit
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* remainder.
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*
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* C Syntax
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* uint32 osalMcuDivide31By16To16( uint32 dividend, uint16 divisor );
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*
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* Preserved registers used:
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* R7:R6
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*
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* Note: This routine takes ~25.6us @32MHz. With C overhead, the
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* time is ~32us.
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*
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* input parameters
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*
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* @param R5:R4:R3:R2 - 31 bit dividend.
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* @param XDATA Stack - 16 bit divisor.
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*
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* After initialization, the following register mapping is used:
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* R7:R6 - divisor
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* R5:R4 - quotient
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* R3:R2 - upper half of dividend; will become the remainder
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* R1:R0 - lower half of dividend
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* B - loop counter
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*
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* output parameters
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*
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* @param None.
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*
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* @return R5:R4:R3:R2 - The 16 bit quotient is in R5:R4 and the 16 bit
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* remainder is in R3:R2.
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*
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******************************************************************************/
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PUBLIC osalMcuDivide31By16To16
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FUNCTION osalMcuDivide31By16To16,0201H
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EXTERN ?XSP
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RSEG DATA_Z:DATA:NOROOT(0)
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savedR6:
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DS 1
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savedR7:
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DS 1
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savedRemHi:
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DS 1
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savedRemLow:
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DS 1
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savedDPH:
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DS 1
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savedDPL:
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DS 1
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RSEG NEAR_CODE:CODE:NOROOT(2)
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osalMcuDivide31By16To16:
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#ifdef DEBUG_GPIO
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//SETB P0.1
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#endif
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// initialize loop counter
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MOV B,#16
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// save preserved registers R6 and R7
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MOV savedR6,R6
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MOV savedR7,R7
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// save DPTR (which ever one is currently selected)
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MOV savedDPL,DPL
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MOV savedDPH,DPH
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// get divisor from the XDATA stack
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MOV DPL,?XSP
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MOV DPH,?XSP+1
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MOVX A,@DPTR
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XCH A,R6
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INC DPTR
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MOVX A,@DPTR
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XCH A,R7
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// restore DPTR
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MOV DPL,savedDPL
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MOV DPH,savedDPH
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// move lower dividend R3:R2 to R1:R0
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MOV A,R3
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XCH A,R1
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MOV A,R2
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XCH A,R0
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// move upper dividend R5:R4 to what will be the remainder R3:R2
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MOV A,R5
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XCH A,R3
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MOV A,R4
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XCH A,R2
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TopOfLoop:
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// Step 1: Shift dividend and remainder left, feeding dividend into remainder.
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CLR C
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MOV A,R0
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RLC A
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XCH A,R0
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MOV A,R1
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RLC A
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XCH A,R1
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MOV A,R2
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RLC A
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XCH A,R2
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MOV A,R3
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RLC A
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XCH A,R3
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// Step 2: Subtract divisor from remainder. If there is a borrow, then restore
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// the remainder.
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CLR C
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MOV A,R2
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SUBB A,R6
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MOV savedRemLow,A ; save remainder in case it needs to be restored
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MOV A,R3
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SUBB A,R7
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MOV savedRemHi,A ; save remainder in case it needs to be restored
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// Step 3: Shift quotient left, feeding complement of borrow bit
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// Note: Remainder is left unchanged if there was a borrow.
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CPL C
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JNC ShiftQuotient
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//
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MOV R3,savedRemHi
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MOV R2,savedRemLow
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ShiftQuotient:
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MOV A,R4
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RLC A
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XCH A,R4
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MOV A,R5
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RLC A
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XCH A,R5
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// Step 4: Decrement count and loop if not zero.
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DJNZ B,TopOfLoop
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// restore R6 and R7
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MOV R6,savedR6
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MOV R7,savedR7
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#ifdef DEBUG_GPIO
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//CLR P0.1
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#endif
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RET
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/*******************************************************************************
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*******************************************************************************/
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END
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