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| # AUTO_MEMORIES: generated memory macros | |
| **Experimental.** AUTO_MEMORIES detects memories in a design's RTL | |
| before synthesis and generates abstract `.lib`/`.lef` macro views for | |
| them, so an existing design gets macro-based synthesis and physical | |
| design results — including RTL-MP macro placement — without a memory | |
| compiler or hand-maintained fakeram files. | |
| The intended audience is flows built on top of ORFS (for example | |
| bazel-orfs based in-house flows) that need early, reasonable physical | |
| results on designs whose memories exist only as behavioral RTL. Support | |
| posture: if it works for you, great; if it needs fixing, the report is | |
| itself a welcome signal that someone is using it. | |
| ## What it does | |
| With `AUTO_MEMORIES=1`, a pre-synthesis step runs | |
| `scripts/memories/gen_memories.py` over `VERILOG_FILES` and writes: | |
| | File | Content | | |
| | --- | --- | | |
| | `$(RESULTS_DIR)/memories.json` | Inventory of every detected memory: geometry, full pin list with pin functions, behavioral model, and whether it was converted (`idiomatic`) with a reason. | | |
| | `$(RESULTS_DIR)/memories/<m>.lib` | Generated Liberty view per converted memory. | | |
| | `$(RESULTS_DIR)/memories/<m>_pre_layout.lib` | Ideal-clock (zero clock-tree insertion) variant for pre-CTS consumers that select lib files themselves. The Makefile flow uses `<m>.lib` throughout. | | |
| | `$(RESULTS_DIR)/memories/<m>.lef` | Abstract LEF per converted memory. | | |
| | `$(RESULTS_DIR)/memories/blackboxes.txt` | Names of the converted modules — what synthesis blackboxes. | | |
| Synthesis (canonicalization) blackboxes the converted modules so the | |
| liberty view wins over their behavioral bodies; floorplan through final | |
| read the generated `.lib`/`.lef` alongside `ADDITIONAL_LIBS`/ | |
| `ADDITIONAL_LEFS`. Everything downstream keys off the files above — | |
| nothing else passes between the generator and the flow. That file-based | |
| handoff is what lets build systems (e.g. bazel-orfs) declare the | |
| generated artifacts as ordinary stage outputs and transitive | |
| dependencies of the remaining stages. | |
| Memories that are *not* converted stay in the netlist and synthesize to | |
| flip-flops, like any other RTL. | |
| ## How memories are detected | |
| Detection is a fast Python scan (`scripts/memories/detect.py`) for | |
| modules whose entire port list follows the firtool (CIRCT) memory port | |
| convention: every port named `<R|W|RW><n>_<function>`, e.g. `R0_addr`, | |
| `W0_en`, `RW0_wdata`, including the subword-split forms `RW0_wdata_3` / | |
| `W0_mask_2`. This is what Chisel/firtool emits for module-separated | |
| memories, and what the rocket-chip generation of Chisel emitted (the | |
| in-tree tinyRocket design). | |
| Two consequences, documented as deliberate scope: | |
| - **Module boundary only.** A memory embedded inside a larger module | |
| (a bare `reg [7:0] mem [0:255]` next to other logic) is not detected. | |
| Yosys's memory-inference pass sees those; FPGA tools extract them | |
| into block RAMs. Wiring yosys up as the detector — or growing such a | |
| pass in OpenROAD SYN, which currently has no memory inference and | |
| therefore cannot be leaned on here either — is future work; this | |
| feature punts on it with the simple scanner. | |
| - **No banking.** Each detected memory maps to exactly one macro. A | |
| memory too wide, too deep, or too ported for a single sensible macro | |
| is not decomposed across several macros — a future extension. | |
| ## The idiomatic gate | |
| Not every detected memory should be a macro. `scripts/memories/ | |
| idiomatic.py` applies simple floors (minimum depth 16, minimum capacity | |
| 256 bits, at most 4 ports); memories below them are cheaper as | |
| flip-flops than as a macro paying the fixed control/decode/sense-amp | |
| floor. Rejected memories are kept in `memories.json` with | |
| `"idiomatic": false` and a reason. | |
| To overrule the gate, list a `.memories` file in `ADDITIONAL_MEMORIES`: | |
| ```json | |
| { | |
| "version": 1, | |
| "memories": [ | |
| { | |
| "name": "tag_array", | |
| "idiomatic": true, | |
| "reason": "forced: the RTL provides no behavioral fallback" | |
| } | |
| ] | |
| } | |
| ``` | |
| Entries merge by name onto the detected set: fields the override | |
| carries win, everything else (geometry, pins) is kept from detection. A | |
| `.memories` entry naming a module the scanner never found is taken | |
| whole — it must then describe its pins itself. The | |
| `designs/asap7/tinyRocket` design demonstrates the forced-conversion | |
| case: its `tag_array` wrapper is 4 entries deep (rejected by the gate) | |
| but instantiates a module the sources never define, so flops are not an | |
| option and the design forces conversion. | |
| ## Generated views | |
| The `.lib` mirrors the structural shape OpenROAD's abstract writer | |
| produces for hardened blocks: `bus()` groups **with per-bit `pin()` | |
| records** (a bus without per-bit siblings makes yosys silently drop bit | |
| connections at parent instances), per-port clock pins with | |
| `min/max_clock_tree_path` arcs, setup/hold constraints on inputs, | |
| clock-to-out arcs on outputs, and `internal_power()` records under a | |
| `power_lut_template` so SAIF-driven power reporting is non-zero. | |
| The `.lef` is an abstract following the conventions of the platform's | |
| fakeram abstracts: `CLASS BLOCK`, per-bit signal pin pads stacked along | |
| the macro edge, interleaved horizontal power/ground straps the | |
| platform's PDN macro grid connects to, and a full-footprint multi-layer | |
| `OBS`. | |
| Timing and area come from simple parametric models | |
| (`scripts/memories/liberty.py`, `scripts/memories/sram_area_model.py`): | |
| log2(rows) decode depth and √bits bit-line scaling for timing; an area | |
| model anchored to published 7 nm SP-SRAM figures (Suzuki et al., ISSCC | |
| 2018). These are budgetary models — good enough to make floorplanning, | |
| placement, and timing behave representatively; not sign-off numbers. | |
| ## Platform support | |
| **asap7 only.** The emitters are split into general structure | |
| (`liberty.py`, `lef.py`, parameterized by a `PdkParams`) and platform | |
| constants (`pdk_asap7.py`: pins and power straps on M4 — where the | |
| platform's PDN macro grid connects — pin pad/pitch, strap geometry, | |
| OBS layers, nominal voltage). Generalizing to other PDKs means | |
| providing their `PdkParams` — the code seam exists, the calibration | |
| work does not. `AUTO_MEMORIES=1` on any other platform fails with a | |
| clear error. | |
| ## Trying it | |
| ```shell | |
| # Unit tests (fast, no EDA tools): | |
| bazelisk test //flow:memories_tests | |
| # The demo design: | |
| make DESIGN_CONFIG=designs/asap7/tinyRocket/config.mk synth floorplan | |
| ``` | |
| The generator can also be run standalone to inspect what it would do: | |
| ```shell | |
| python3 flow/scripts/memories/gen_memories.py \ | |
| --platform asap7 --out-dir /tmp/mems --json /tmp/memories.json \ | |
| --verilog flow/designs/src/tinyRocket/freechips.rocketchip.system.TinyConfig.v | |
| ``` | |
| ## Consuming from bazel-orfs | |
| Everything downstream keys off generated files, so a build system can | |
| declare them as ordinary stage outputs and transitive dependencies. In | |
| bazel-orfs each stage runs in a sandbox where only declared outputs | |
| survive, so it additionally needs to declare `memories.json` plus the | |
| `memories/` directory (a directory artifact — the per-memory file | |
| names are only known at run time) as canonicalize outputs and stage | |
| them into every downstream stage's sandbox. The bazel-orfs change that | |
| does this is carried alongside this feature as | |
| `flow/scripts/memories/bazel-orfs-auto-memories.patch`, to be | |
| upstreamed to bazel-orfs once the feature lands here. | |
| ## Variables | |
| - [AUTO_MEMORIES](FlowVariables.md#AUTO_MEMORIES) | |
| - [ADDITIONAL_MEMORIES](FlowVariables.md#ADDITIONAL_MEMORIES) | |