SLAU367P October 2012 – April 2020 MSP430FR5041 , MSP430FR5043 , MSP430FR50431 , MSP430FR5847 , MSP430FR58471 , MSP430FR5848 , MSP430FR5849 , MSP430FR5857 , MSP430FR5858 , MSP430FR5859 , MSP430FR5867 , MSP430FR58671 , MSP430FR5868 , MSP430FR5869 , MSP430FR5870 , MSP430FR5872 , MSP430FR58721 , MSP430FR5887 , MSP430FR5888 , MSP430FR5889 , MSP430FR58891 , MSP430FR5922 , MSP430FR59221 , MSP430FR5947 , MSP430FR59471 , MSP430FR5948 , MSP430FR5949 , MSP430FR5957 , MSP430FR5958 , MSP430FR5959 , MSP430FR5962 , MSP430FR5964 , MSP430FR5967 , MSP430FR5968 , MSP430FR5969 , MSP430FR5969-SP , MSP430FR59691 , MSP430FR5970 , MSP430FR5972 , MSP430FR59721 , MSP430FR5986 , MSP430FR5987 , MSP430FR5988 , MSP430FR5989 , MSP430FR5989-EP , MSP430FR59891 , MSP430FR5992 , MSP430FR5994 , MSP430FR59941 , MSP430FR6005 , MSP430FR6007 , MSP430FR6035 , MSP430FR6037 , MSP430FR60371 , MSP430FR6041 , MSP430FR6043 , MSP430FR60431 , MSP430FR6045 , MSP430FR6047 , MSP430FR60471 , MSP430FR6820 , MSP430FR6822 , MSP430FR68221 , MSP430FR6870 , MSP430FR6872 , MSP430FR68721 , MSP430FR6877 , MSP430FR6879 , MSP430FR68791 , MSP430FR6887 , MSP430FR6888 , MSP430FR6889 , MSP430FR68891 , MSP430FR6920 , MSP430FR6922 , MSP430FR69221 , MSP430FR6927 , MSP430FR69271 , MSP430FR6928 , MSP430FR6970 , MSP430FR6972 , MSP430FR69721 , MSP430FR6977 , MSP430FR6979 , MSP430FR69791 , MSP430FR6987 , MSP430FR6988 , MSP430FR6989 , MSP430FR69891
* RLCX.A | Rotate left through carry address-word | ||
* RLCX.[W] | Rotate left through carry word | ||
* RLCX.B | Rotate left through carry byte | ||
Syntax | RLCX.A dst | ||
RLCX dst or RLCX.W dst | |||
RLCX.B dst | |||
Operation | C ← MSB ← MSB-1 .... LSB+1 ← LSB ← C | ||
Emulation | ADDCX.A dst,dst | ||
ADDCX dst,dst | |||
ADDCX.B dst,dst | |||
Description | The destination operand is shifted left 1 position as shown in Figure 4-46. The carry bit (C) is shifted into the LSB and the MSB is shifted into the carry bit (C). | ||
Status Bits | N: | Set if result is negative, reset if positive | |
Z: | Set if result is zero, reset otherwise | ||
C: | Loaded from the MSB | ||
V: | .A: Set if an arithmetic overflow occurs: the initial value is 040000h ≤ dst < 0C0000h; reset otherwise | ||
.W: Set if an arithmetic overflow occurs: the initial value is 04000h ≤ dst < 0C000h; reset otherwise | |||
.B: Set if an arithmetic overflow occurs: the initial value is 040h ≤ dst < 0C0h; reset otherwise | |||
Mode Bits | OSCOFF, CPUOFF, and GIE are not affected. | ||
Example | The 20-bit value in R5 is shifted left 1 position. |
RLCX.A R5 ; (R5 x 2) + C -> R5
Example | The RAM byte LEO is shifted left 1 position. PC is pointing to upper memory. |
RLCX.B LEO ; RAM(LEO) x 2 + C -> RAM(LEO)