SLAU144K December 2004 – August 2022 MSP430AFE221 , MSP430AFE222 , MSP430AFE223 , MSP430AFE231 , MSP430AFE232 , MSP430AFE233 , MSP430AFE251 , MSP430AFE252 , MSP430AFE253 , MSP430F2001 , MSP430F2002 , MSP430F2003 , MSP430F2011 , MSP430F2012 , MSP430F2013 , MSP430F2101 , MSP430F2111 , MSP430F2112 , MSP430F2121 , MSP430F2122 , MSP430F2131 , MSP430F2132 , MSP430F2132-EP , MSP430F2232 , MSP430F2234 , MSP430F2252 , MSP430F2252-Q1 , MSP430F2254 , MSP430F2272 , MSP430F2272-Q1 , MSP430F2274 , MSP430F2274-EP , MSP430F233 , MSP430F2330 , MSP430F235 , MSP430F2350 , MSP430F2370 , MSP430F2410 , MSP430F2416 , MSP430F2417 , MSP430F2418 , MSP430F2419 , MSP430F247 , MSP430F2471 , MSP430F248 , MSP430F2481 , MSP430F249 , MSP430F2491 , MSP430F2616 , MSP430F2617 , MSP430F2618 , MSP430F2619 , MSP430G2001 , MSP430G2101 , MSP430G2102 , MSP430G2111 , MSP430G2112 , MSP430G2121 , MSP430G2131 , MSP430G2132 , MSP430G2152 , MSP430G2153 , MSP430G2201 , MSP430G2201-Q1 , MSP430G2202 , MSP430G2203 , MSP430G2210 , MSP430G2211 , MSP430G2212 , MSP430G2213 , MSP430G2221 , MSP430G2230 , MSP430G2231 , MSP430G2231-Q1 , MSP430G2232 , MSP430G2233 , MSP430G2252 , MSP430G2253 , MSP430G2302 , MSP430G2303 , MSP430G2312 , MSP430G2313 , MSP430G2332 , MSP430G2333 , MSP430G2352 , MSP430G2353 , MSP430G2402 , MSP430G2403 , MSP430G2412 , MSP430G2413 , MSP430G2432 , MSP430G2433 , MSP430G2444 , MSP430G2452 , MSP430G2453 , MSP430G2513 , MSP430G2533 , MSP430G2544 , MSP430G2553 , MSP430G2744 , MSP430G2755 , MSP430G2855 , MSP430G2955 , MSP430TCH5E
RRAX.A | Rotate right arithmetically the 20-bit operand | ||
RRAX.[W] | Rotate right arithmetically the 16-bit operand | ||
RRAX.B | Rotate right arithmetically the 8-bit operand | ||
Syntax |
RRAX.A Rdst | ||
RRAX.W Rdst | |||
RRAX Rdst | |||
RRAX.B Rdst | |||
RRAX.A dst | |||
RRAX dst
or
RRAX.W dst | |||
RRAX.B dst | |||
Operation | MSB → MSB → MSB–1 ... LSB+1 → LSB → C | ||
Description | Register mode for the destination: the destination operand is shifted right by one bit position as shown in Figure 4-47. The MSB retains its value (sign). The word instruction RRAX.W clears the bits Rdst.19:16, the byte instruction RRAX.B clears the bits Rdst.19:8. The MSB retains its value (sign), the LSB is shifted into the carry bit. RRAX here operates equal to a signed division by 2. | ||
All other modes for the destination: the destination operand is shifted right arithmetically by one bit position as shown in Figure 4-48. The MSB retains its value (sign), the LSB is shifted into the carry bit. RRAX here operates equal to a signed division by 2. All addressing modes, with the exception of the Immediate mode, are possible in the full memory. | |||
Status Bits | N: | Set if result is negative, reset if positive | |
.A: dst.19 = 1, reset if dst.19 = 0 | |||
.W: dst.15 = 1, reset if dst.15 = 0 | |||
.B: dst.7 = 1, reset if dst.7 = 0 | |||
Z: | Set if result is zero, reset otherwise | ||
C: | Loaded from the LSB | ||
V: | Reset | ||
Mode Bits | OSCOFF, CPUOFF, and GIE are not affected. | ||
Example | The signed 20-bit number in R5 is shifted arithmetically right four positions. |
RPT #4
RRAX.A R5 ; R5/16 -> R5
Example | The signed 8-bit value in EDE is multiplied by 0.5. |
RRAX.B &EDE ; EDE/2 -> EDE