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− | '''Cortex-A72''' (codename ''' | + | '''Cortex-A72''' (codename '''Maia''') is the successor to the {{armh|Cortex-A57|l=arch}}, a low-power high-performance [[ARM]] [[microarchitecture]] designed by [[ARM Holdings]] for the mobile market. This microarchitecture is designed as a synthesizable [[IP core]] and is sold to other semiconductor companies to be implemented in their own chips. The Cortex-A72, which implemented the {{arm|ARMv8}} ISA, is a performant core which is often combined with a number of lower power cores (e.g. {{\\|Cortex-A53}}) in a {{armh|big.LITTLE}} configuration to achieve better energy/performance. |
+ | |||
+ | == Compiler support == | ||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | ! Compiler !! Arch-Specific || Arch-Favorable | ||
+ | |- | ||
+ | | [[Arm Compiler]] || <code>-mcpu=cortex-a72</code> || <code>-mtune=cortex-a72</code> | ||
+ | |- | ||
+ | | [[GCC]] || <code>-mcpu=cortex-a72</code> || <code>-mtune=cortex-a72</code> | ||
+ | |- | ||
+ | | [[LLVM]] || <code>-mcpu=cortex-a72</code> || <code>-mtune=cortex-a72</code> | ||
+ | |} | ||
+ | |||
+ | If the Cortex-A72 is coupled with the {{\\|Cortex-A53}} or the {{\\|Cortex-A35}} in a [[big.LITTLE]] system, GCC also supports the following option: | ||
+ | |||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | ! Compiler !! Tune | ||
+ | |- | ||
+ | | [[GCC]] || <code>-mtune=cortex-a72.cortex-a53</code><br><code>-mtune=cortex-a72.cortex-a35</code> | ||
+ | |} | ||
== Architecture == | == Architecture == |
Latest revision as of 14:57, 4 July 2022
Edit Values | |
Cortex-A72 µarch | |
General Info | |
Arch Type | CPU |
Designer | ARM Holdings |
Manufacturer | TSMC |
Introduction | April 23, 2015 |
Instructions | |
ISA | ARMv8 |
Succession | |
Cortex-A72 (codename Maia) is the successor to the Cortex-A57, a low-power high-performance ARM microarchitecture designed by ARM Holdings for the mobile market. This microarchitecture is designed as a synthesizable IP core and is sold to other semiconductor companies to be implemented in their own chips. The Cortex-A72, which implemented the ARMv8 ISA, is a performant core which is often combined with a number of lower power cores (e.g. Cortex-A53) in a big.LITTLE configuration to achieve better energy/performance.
Contents
Compiler support[edit]
Compiler | Arch-Specific | Arch-Favorable |
---|---|---|
Arm Compiler | -mcpu=cortex-a72 |
-mtune=cortex-a72
|
GCC | -mcpu=cortex-a72 |
-mtune=cortex-a72
|
LLVM | -mcpu=cortex-a72 |
-mtune=cortex-a72
|
If the Cortex-A72 is coupled with the Cortex-A53 or the Cortex-A35 in a big.LITTLE system, GCC also supports the following option:
Compiler | Tune |
---|---|
GCC | -mtune=cortex-a72.cortex-a53 -mtune=cortex-a72.cortex-a35
|
Architecture[edit]
Key changes from Cortex-A57[edit]
This section is empty; you can help add the missing info by editing this page. |
Block Diagram[edit]
This section is empty; you can help add the missing info by editing this page. |
Memory Hierarchy[edit]
This section is empty; you can help add the missing info by editing this page. |
Die[edit]
MediaTek Helio X20[edit]
- TSMC 20 nm process
- 100 mm² die size
- Quad-core ULP Cortex-A53
- ~21.81 mm² per cluster
- ~4.23 mm² per core
- ~21.81 mm² per cluster
- Quad-core efficient Cortex-A53
- ~29.73 mm² per cluster
- ~5.41 mm² per core
- ~29.73 mm² per cluster
- Dual-core High-performance Cortex-A72 + 1 MiB L2
- ~27.36 mm² per cluster
- ~ 9.60 mm² per core
- ~ 7.50 mm² for 1 MiB L2
- ~27.36 mm² per cluster
Bibliography[edit]
- Mair, Hugh T., et al. "4.3 A 20nm 2.5 GHz ultra-low-power tri-cluster CPU subsystem with adaptive power allocation for optimal mobile SoC performance." Solid-State Circuits Conference (ISSCC), 2016 IEEE International. IEEE, 2016.
Facts about "Cortex-A72 - Microarchitectures - ARM"
codename | Cortex-A72 + |
designer | ARM Holdings + |
first launched | April 23, 2015 + |
full page name | arm holdings/microarchitectures/cortex-a72 + |
instance of | microarchitecture + |
instruction set architecture | ARMv8 + |
manufacturer | TSMC + |
microarchitecture type | CPU + |
name | Cortex-A72 + |