Katta Uzunlikdagi Buyruq So‘zlariga Ishlov Berish va Ko‘p Yadroli Protsessorlar Strategiyasi
Annotatsiya
Ushbu maqolada zamonaviy hisoblash tizimlarining unumdorligini oshirishda muhim o‘rin tutadigan VLIW (Very Long Instruction Word – Katta Uzunlikdagi Buyruq So‘zi) arxitekturasi va ko‘p yadroli protsessorlar strategiyasi tahlil qilinadi. parallel hisoblash tizimlarida buyruqlar darajasidagi paralellikni (ILP) va ip darajasidagi paralellikni (TLP) samarali boshqarish muammolari ko‘rib chiqilgan. Maqolada VLIW va ko‘p yadroli tizimlarning o‘zaro integratsiyasi, kompilyator texnologiyalarining roli, kesh-xotira mosligi hamda resurslarni taqsimlash strategiyalari tizimli yondashuv asosida tadqiq etilgan. Shuningdek, ushbu texnologiyalarning energiya samaradorligi va yuqori unumdorlikka ega hisoblash tizimlaridagi (HPC) istiqbollari yoritilgan.
Kalit so‘zlar: VLIW, ko‘p yadroli protsessorlar, buyruqlar darajasidagi paralellik (ILP), kompilyator optimizatsiyasi, kesh mosligi, energiya samaradorligi, superkompyuterlar, resurslarni taqsimlash.
##submission.citations##
1. Hennessy, J. L., & Patterson, D. A. (2019). Computer Architecture: A Quantitative Approach (6th ed.). Morgan Kaufmann.
2. Fisher, J. A., Faraboschi, P., & Young, C. (2005). Embedded Computing: A VLIW Approach to Architecture, Compilers, and Tools. Morgan Kaufmann.
3. Culler, D. E., & Singh, J. P. (1999). Parallel Computer Architecture: A Hardware/Software Approach. Gulf Professional Publishing.
4. Stallings, W. (2016). Computer Organization and Architecture: Designing for Performance (10th ed.). Pearson.
5. Aho, A. V., Lam, M. S., Sethi, R., & Ullman, J. D. (2006). Compilers: Principles, Techniques, and Tools (2nd ed.). Addison-Wesley.
6. Tanenbaum, A. S., & Austin, T. (2012). Structured Computer Organization (6th ed.). Pearson.
7. IEEE Transactions on Computers. Special Issues on Multi-Core and VLIW Architectures (2020-2025). IEEE Computer Society.
8. ACM Transactions on Computer Systems (TOCS). Research Papers on Instruction-Level Parallelism and Compiler Optimization Techniques (2022-2026). Association for Computing Machinery.


