Decide venue before writing a single evaluation section. MICRO is the flagship symposium of the microarchitecture community specifically — the 2026 edition is the 59th, which places its lineage back to the 1968 microprogramming workshops. Reviewers here are calibrated to mechanisms measured in cycles, bytes of state, and milliwatts.
Ask where the proposed mechanism physically lives and what evidence proves it works:
| Symptom of the project | Better home | Why |
|---|---|---|
| Mechanism spans ISA design, coherence protocols, or whole-system organization | ISCA (2027: abstracts Nov 10, papers Nov 17, 2026; Atlanta, June 2027) | Broadest architecture scope |
| Same community, but your evidence matures mid-summer | HPCA (2027: papers July 24, 2026; Salt Lake City, March 2027) | Nearest-cycle sibling |
| Compiler/OS/runtime co-designed with hardware | ASPLOS (2027: April 15 or Sept 9, 2026 deadlines) | Cross-layer is its charter |
| Circuit, EDA-flow, or physical-design contribution | DAC / ICCAD | Below the microarchitecture abstraction |
| Application-scale HPC performance study | SC | Workload, not mechanism |
| ML training/serving systems without new hardware structures | MLSys | Systems-for-ML community |
| Production silicon retrospective, deployment lessons, negative results at scale | MICRO 2026 Industry Track (inaugural) | Tailored review for industry constraints |
The Test of Time record is a usable fit oracle. Recent awardees (SIGMICRO ToT pages, verified 2026-07-08): utility-based cache partitioning (MICRO 2006), 3D die-stacking microarchitecture, and the CACTI 6.0 NUCA modeling work (both honored in 2025). The pattern: a general mechanism or model that other groups can adopt, not a point-solution tuned to one workload. Accelerator papers have the same shape — DaDianNao (MICRO 2014) won by making the memory locality argument for ML accelerators, a structural insight, not a benchmark victory.
Strong MICRO shapes:
Weak MICRO shapes: pure software optimizations, ISA proposals with no implementation sketch, "we ran X on Y and report numbers" characterization with no mechanism, and circuits work with no architectural consequence.
Q1 Mechanism sentence written without software actors? yes / no
Q2 Modified hardware structure named? <structure>
Q3 Cost line estimable (KB, mm2, mW)? yes / no
Q4 Evidence plan reaches at least cycle-level simulation? yes / no
Q5 Would the idea survive a 2x-better software baseline? yes / no
Q6 Is the primary audience microarchitects, not systems builders? yes / no
Four or more "yes" answers → draft for MICRO. Q1 or Q6 failing → run the ASPLOS/ISCA comparison seriously before investing in the MICRO evaluation stack. Record the answers in the project README — when reviews later dispute the framing, the original fit reasoning is the fastest input to the resubmission routing decision.
Recurring gray zones and how MICRO's own record resolves them:
MICRO's submission deadline sits in early April (2026 cycle: abstracts March 31,
papers April 7, both 11:59 PM EDT — not AoE), with the conference in the
October/November slot (MICRO 2026: Athens, Greece, Oct 31 – Nov 4). If you are
reading this after the April deadline, micro-workflow maps the fallback lattice:
HPCA in July, ASPLOS in September, ISCA in November, MICRO again next April. Dates
above are one cycle's snapshot — reopen microarch.org before committing a plan.
[Venue fit] MICRO main / MICRO industry track / re-route to <venue>
[Mechanism sentence] <one sentence, hardware actors only>
[Structure modified] <named pipeline/cache/predictor/accelerator structure>
[Cost line] <area, storage, power estimate or "cannot estimate — warning">
[Evidence plan] analytical / trace-driven / cycle-level sim / RTL / FPGA / silicon
[Nearest competing venue] <venue + one-line reason it loses>
[Next deadline to target] <venue, date, source URL to re-verify>