Hachiro Yamada

14 papers Journal 13Unranked 1
YearRankTypeTitle / Venue / Authors
1997 J jnl
IEEE J. Solid State Circuits
Yasuhiko Hagihara, Shigeto Inui, Fuyuki Okamoto, Masato Nishida, Toshihiko Nakamura, Hachiro Yamada
1996 J jnl
IEEE J. Solid State Circuits
Tohru Miwa, Hachiro Yamada, Yoshinori Hirota, Toshiya Satoh, Hideki Hara
1996 J jnl
IEEE J. Solid State Circuits
Masayuki Mizuno, Masakazu Yamashina, Koichiro Furuta, Hiroyuki Igura, Hitoshi Abiko, Kazuhiro Okabe, Atsuki Ono, Hachiro Yamada
1995 J jnl
IEEE J. Solid State Circuits
Masato Motomura, Toshiaki Inoue, Hachiro Yamada, Akihiko Konagaya
1994 J jnl
IEEE J. Solid State Circuits
Masahiro Nomura, Masakazu Yamashina, Junichi Goto, Toshiaki Inoue, Kazumasa Suzuki, Masato Motomura, Youichi Koseki, Benjamin S. Shih, Tadahiko Horiuchi, Nobuhisa Hamatake, Kouichi Kumagai, Tadayoshi Enomoto, Hachiro Yamada
1994 J jnl
IEEE J. Solid State Circuits
Kazumasa Suzuki, Masakazu Yamashina, Takashi Nakayama, Masanori Izumikawa, Masahiro Nomura, Hiroyuki Igura, Hideki Heiuchi, Junichi Goto, Toshiaki Inoue, Youichi Koseki, Hitoshi Abiko, Kazuhiro Okabe, Atsuki Ono, Youich Yano, Hachiro Yamada
1993 J jnl
IEEE J. Solid State Circuits
Toshiaki Inoue, Junichi Goto, Masakazu Yamashina, Kazumasa Suzuki, Masahiro Nomura, Youichi Koseki, Tohru Kimura, Takao Atsumo, Masato Motomura, Benjamin S. Shih, Tadahiko Horiuchi, Nobuhisa Hamatake, Kouichi Kumagai, Tadayoshi Enomoto, Hachiro Yamada, Masahide Takada
1992 J jnl
IEEE J. Solid State Circuits
Masato Motomura, Hachiro Yamada, Tadayoshi Enomoto
1991 J jnl
IEEE J. Solid State Circuits
Junichi Goto, Koichi Ando, Toshiaki Inoue, Masakazu Yamashina, Hachiro Yamada, Tadayoshi Enomoto
1991 J jnl
IEEE J. Solid State Circuits
Fuyuki Okamoto, Yasuhiko Hagihara, Chie Ohkubo, Naoki Nishi, Hachiro Yamada, Tadayoshi Enomoto
1990 J jnl
IEEE J. Solid State Circuits
Masato Motomura, Jun Toyoura, Kazumi Hirata, Hideyuki Ooka, Hachiro Yamada, Tadayoshi Enomoto
1989 J jnl
IEEE J. Solid State Circuits
Masakazu Yamashina, Junichi Goto, Fuyuki Okamoto, Koichi Ando, Hachiro Yamada, Tadahiko Horiuchi, Kimiko Nakamura, Tadayoshi Enomoto
1988 J jnl
IEEE J. Solid State Circuits
Masaki Hirata, Hachiro Yamada, Hajime Nagai, Kousuke Takahashi
1987 conf
IWDM
Kousuke Takahashi, Hachiro Yamada, Hajime Nagai, Masaki Hirata
redb/extractors/js_extractors/js_suspicious_apis.py
← Index redb/extractors/js_extractors/js_suspicious_apis.py python
import inspect
from datetime import datetime, timezone
from typing import Any

from redb.extractors.enum import Tag
from redb.extractors.js_extractor import JSExtractor
from redb.extractors.js_extractors.js_patterns import CATEGORIES, PATTERNS


# Backwards-compatible export: `{category: [(raw_pattern_string, api_name), ...]}`
# in canonical PATTERNS insertion order (code_execution, network, filesystem,
# process, registry, crypto_encoding, dom_manipulation). Kept so external
# callers (notably JSDeobfuscationExtractor pre-cleanup) keep working until
# they are migrated to PATTERNS directly.
SUSPICIOUS_APIS: "dict[str, list[tuple[str, str]]]" = {}
for _name, _compiled in PATTERNS.items():
    SUSPICIOUS_APIS.setdefault(CATEGORIES[_name], []).append((_compiled.pattern, _name))


class JSSuspiciousAPIsExtractor(JSExtractor):

    def __init__(
        self, filepath, log, exporters=None, index_prefix=None,
        known_benign=False, known_malicious=False, source=None, context=None,
    ):
        super().__init__(
            filepath, log, exporters, index_prefix,
            known_benign, known_malicious, source, context=context,
        )
        self.api_findings = None
        self.log.debug(inspect.currentframe().f_code.co_name)

    def tag(self):
        return Tag.JS_SUSPICIOUS_APIS.value

    def _get_context_snippet(self, line, max_len=200):
        """Get a truncated context snippet around a match."""
        line = line.strip()
        if len(line) > max_len:
            return line[:max_len] + "..."
        return line

    def extract(self):
        src = self.js_source
        if not src:
            return None

        # Pass 1: shared per-sample scan over the raw source. The dict contains
        # entries for both PATTERNS and FEATURE_PATTERNS; the loop below only
        # consults PATTERNS keys, so feature-only entries are ignored.
        raw_scan = self._context.scan or {}
        raw_lines = self.lines

        # Pass 2: same patterns over the deobfuscated text, when the
        # deobfuscator produced something meaningfully different. APIs hidden
        # behind one obfuscation layer (Vjw0rm-style array.join + eval,
        # Dean-Edwards packers, jjencode, ...) only surface here. The scan is
        # cached on JSContext so JSDeobfuscationExtractor (which computes the
        # new_apis_found diff) reuses the same result.
        deobf_scan = self._context.scan_deobfuscated
        if deobf_scan:
            deobf_text, _ = self._context.deobfuscated
            deobf_lines = deobf_text.splitlines()
        else:
            deobf_lines = []

        findings = []
        # Iterate PATTERNS in canonical order so output is deterministic and
        # matches the historical category/pattern ordering. For each api_name,
        # raw findings take precedence; if an API is found only in the
        # deobfuscated text, we surface it as a row tagged revealed_by_deobf=1
        # with line numbers / snippets pulled from the deobfuscated source.
        for api_name in PATTERNS:
            raw_info = raw_scan.get(api_name)
            if raw_info:
                line_numbers = raw_info["lines"]
                lines_for_snippets = raw_lines
                revealed_by_deobf = 0
            else:
                deobf_info = deobf_scan.get(api_name)
                if not deobf_info:
                    continue
                line_numbers = deobf_info["lines"]
                lines_for_snippets = deobf_lines
                revealed_by_deobf = 1

            snippets = [
                self._get_context_snippet(lines_for_snippets[ln - 1])
                for ln in line_numbers[:3]
                if 0 < ln <= len(lines_for_snippets)
            ]
            findings.append({
                "api_name": api_name,
                "api_category": CATEGORIES[api_name],
                # Historical semantics: count = number of unique lines with a
                # match, not total in-source match count.
                "call_count": len(line_numbers),
                "line_numbers": line_numbers,
                "context_snippet": " | ".join(snippets),
                "revealed_by_deobf": revealed_by_deobf,
            })

        if not findings:
            return None

        self.api_findings = findings
        return findings

    def prepare_export_data(self, exporter_type: str) -> Any:
        if exporter_type == "ClickHouseExporter":
            if not self.api_findings:
                return None

            current_time = datetime.now(timezone.utc)
            data = []
            for f in self.api_findings:
                data.append([
                    self.sha256,
                    f['api_name'],
                    f['api_category'],
                    f['call_count'],
                    f['line_numbers'],
                    f['context_snippet'],
                    f['revealed_by_deobf'],
                    current_time,
                ])

            column_names = [
                "sha256", "api_name", "api_category",
                "call_count", "line_numbers", "context_snippet",
                "revealed_by_deobf",
                "analysis_date",
            ]

            column_type_names = [
                "FixedString(64)", "String", "LowCardinality(String)",
                "UInt32", "Array(UInt32)", "String",
                "UInt8",
                "DateTime64(3, 'UTC')",
            ]

            return (data, column_names, column_type_names)

    def get_clickhouse_table(self) -> str:
        return "redb_js_suspicious_apis"