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IDF Spring 2021, day two: real releases went…
Our correspondent Alexander Medvedev aka Unclesam continues his online report from California, with the IDF Spring 2021 conference held there. By this minute, a large amount of information has already been received from him, and it continues to flow further via ICQ, directly from the presentation hall, therefore, do not be surprised if this report grows even more in the morning 🙂
So, a word to Alexander:
At the moment, the second keynote is underway, dedicated to basic client. So, Prescott was officially mentioned for the first time and even a finished plate with chips was demonstrated. Chief Client and Desktop Platform – Louis Burns:
Let’s briefly list its key specifications:
- 90 nanometers
- 1 Megabyte cache
- improved more performance architecture
- improved HyperThreading technology
- starts at 3 GHz
- designed for a range of 4..5 GHz
- seven-layer design and low-k dielectric
- doubled up to 16 kilobytes of the first level cache
- 800 MHz QPB bus
- 13 new instructions:
- Converting FP to Integer (FISTTP)
- Complex arithmetic (!) ADDSUBPD, ADDSUBPS, MOVDDUP, MOVSHDDUP, MOVSLDUP
- video encoding and decoding (!) LDDQU
- SIMD FP using AOS format HADDPD, HSUBPD, HADDPS, HSUBPS
- Synchronization of threads (!) MONITOR, MWAIT
- improved data and command prefetching
- increased speed of integer multiplication
additional lazy write buffers
- improved power management
- support for LaGrande hardware protection technology
Prescott chips will use strained silicon technology, resulting in higher clock speeds and lower heat dissipation.
The new version of HyperThreading technology allows you to set priorities, i.e.e. let’s say one thread is the main one, and it takes over 50% of the resources, and the other auxiliary three share the remaining 50% among themselves, and which is the main and which is not, the compiler itself can decide
automatically if necessary.
There will be no new execution units in the processor, it was decided that it would be better to “spend” transistors on new features, such as improved prefetching of new instructions and improved HyperThreading.
Intel intends to reach 15 – 20 GHz clock speeds and widespread use of multi-threaded and multi-core processors by 2021.
In the evening (t.e. in the morning in Moscow) I plan to send an additional
information about Prescott and its server relatives, which will undoubtedly appear as a result of communication with Intel specialists.
In addition, the first samples of Manitoba (PX800) were demonstrated, which showed enviable performance in Java OS in tests and made the first call from a prototype communicator based on this very
a small but very remote chip.
Interestingly, on-chip flash memory (4 MB) and RAM (512 KB) allow Manitoba to demonstrate
significant several times higher than processors of similar frequency
performance. The reason is obvious – the memory on the chip is not only
associated with it with a wide channel, but also has very small delays:
accessing flash memory takes three times less time from Manitoba (!),
than even referring to an external 50 MHz SRAM in the case of the big brother
Several new chipsets and platforms (high performance Canterwood and mainstream Springdale) were also mentioned, which will be launched into mass production in 2021 and early 2021:
And also the audio solution planned in 2021 from Intel (Azalia), aimed at both gaming and business applications, was also mentioned for the first time. In the asset:
- DVD Audio and SACD (!) playback
- 3D game sound
- Special conference technology including
- auto-configurable set of multiple microphones
for better voice capture
Intel introduces such a feature-rich audio solution for the first time.
To be continued…